2009-09-15 15:22:17 -07:00
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/*
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2011-03-24 13:35:15 -07:00
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* Copyright (c) 2009, 2010, 2011 Nicira Networks.
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2009-09-15 15:22:17 -07:00
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <config.h>
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#include "packets.h"
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2010-12-29 19:03:46 -08:00
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#include <assert.h>
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#include <arpa/inet.h>
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2009-09-15 15:22:17 -07:00
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#include <netinet/in.h>
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2009-12-03 11:28:40 -08:00
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#include <stdlib.h>
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2010-12-29 19:03:46 -08:00
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#include "byte-order.h"
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#include "dynamic-string.h"
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2009-09-15 15:22:17 -07:00
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#include "ofpbuf.h"
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2010-12-29 19:03:46 -08:00
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const struct in6_addr in6addr_exact = IN6ADDR_EXACT_INIT;
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2010-10-21 10:40:05 -07:00
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/* Parses 's' as a 16-digit hexadecimal number representing a datapath ID. On
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* success stores the dpid into '*dpidp' and returns true, on failure stores 0
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* into '*dpidp' and returns false.
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*
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* Rejects an all-zeros dpid as invalid. */
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2009-12-03 11:28:40 -08:00
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bool
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dpid_from_string(const char *s, uint64_t *dpidp)
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{
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2009-11-13 13:21:13 -08:00
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*dpidp = (strlen(s) == 16 && strspn(s, "0123456789abcdefABCDEF") == 16
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2010-10-21 10:40:05 -07:00
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? strtoull(s, NULL, 16)
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2009-12-03 11:28:40 -08:00
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: 0);
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return *dpidp != 0;
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}
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bool
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eth_addr_from_string(const char *s, uint8_t ea[ETH_ADDR_LEN])
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{
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if (sscanf(s, ETH_ADDR_SCAN_FMT, ETH_ADDR_SCAN_ARGS(ea))
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== ETH_ADDR_SCAN_COUNT) {
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return true;
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} else {
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memset(ea, 0, ETH_ADDR_LEN);
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return false;
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}
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}
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2009-09-15 15:22:17 -07:00
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/* Fills 'b' with an 802.2 SNAP packet with Ethernet source address 'eth_src',
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* the Nicira OUI as SNAP organization and 'snap_type' as SNAP type. The text
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* string in 'tag' is enclosed as the packet payload.
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*
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* This function is used by Open vSwitch to compose packets in cases where
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* context is important but content doesn't (or shouldn't) matter. For this
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* purpose, 'snap_type' should be a random number and 'tag' should be an
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* English phrase that explains the purpose of the packet. (The English phrase
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* gives hapless admins running Wireshark the opportunity to figure out what's
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* going on.) */
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void
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compose_benign_packet(struct ofpbuf *b, const char *tag, uint16_t snap_type,
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const uint8_t eth_src[ETH_ADDR_LEN])
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{
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2011-03-24 13:35:15 -07:00
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size_t tag_size = strlen(tag) + 1;
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char *payload;
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2009-09-15 15:22:17 -07:00
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2011-03-24 13:35:15 -07:00
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payload = snap_compose(b, eth_addr_broadcast, eth_src, 0x002320, snap_type,
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tag_size + ETH_ADDR_LEN);
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memcpy(payload, tag, tag_size);
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memcpy(payload + tag_size, eth_src, ETH_ADDR_LEN);
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2009-09-15 15:22:17 -07:00
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}
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2010-12-29 19:03:46 -08:00
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2011-09-09 18:13:26 -07:00
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/* Insert VLAN header according to given TCI. Packet passed must be Ethernet
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* packet.
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2011-03-29 09:27:47 -07:00
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*
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* Also sets 'packet->l2' to point to the new Ethernet header. */
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void
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2011-09-09 18:13:26 -07:00
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eth_push_vlan(struct ofpbuf *packet, ovs_be16 tci)
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2011-03-29 09:27:47 -07:00
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{
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struct eth_header *eh = packet->data;
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struct vlan_eth_header *veh;
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2011-09-09 18:13:26 -07:00
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/* Insert new 802.1Q header. */
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struct vlan_eth_header tmp;
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memcpy(tmp.veth_dst, eh->eth_dst, ETH_ADDR_LEN);
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memcpy(tmp.veth_src, eh->eth_src, ETH_ADDR_LEN);
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tmp.veth_type = htons(ETH_TYPE_VLAN);
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tmp.veth_tci = tci;
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tmp.veth_next_type = eh->eth_type;
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veh = ofpbuf_push_uninit(packet, VLAN_HEADER_LEN);
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memcpy(veh, &tmp, sizeof tmp);
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2011-03-29 09:27:47 -07:00
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packet->l2 = packet->data;
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}
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2010-12-29 19:03:46 -08:00
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/* Stores the string representation of the IPv6 address 'addr' into the
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* character array 'addr_str', which must be at least INET6_ADDRSTRLEN
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* bytes long. */
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void
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format_ipv6_addr(char *addr_str, const struct in6_addr *addr)
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{
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inet_ntop(AF_INET6, addr, addr_str, INET6_ADDRSTRLEN);
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}
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void
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print_ipv6_addr(struct ds *string, const struct in6_addr *addr)
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{
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char addr_str[INET6_ADDRSTRLEN];
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format_ipv6_addr(addr_str, addr);
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ds_put_format(string, "%s", addr_str);
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}
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struct in6_addr ipv6_addr_bitand(const struct in6_addr *a,
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const struct in6_addr *b)
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{
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int i;
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struct in6_addr dst;
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#ifdef s6_addr32
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for (i=0; i<4; i++) {
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dst.s6_addr32[i] = a->s6_addr32[i] & b->s6_addr32[i];
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}
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#else
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for (i=0; i<16; i++) {
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dst.s6_addr[i] = a->s6_addr[i] & b->s6_addr[i];
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}
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#endif
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return dst;
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}
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/* Returns an in6_addr consisting of 'mask' high-order 1-bits and 128-N
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* low-order 0-bits. */
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struct in6_addr
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ipv6_create_mask(int mask)
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{
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struct in6_addr netmask;
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uint8_t *netmaskp = &netmask.s6_addr[0];
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memset(&netmask, 0, sizeof netmask);
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while (mask > 8) {
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*netmaskp = 0xff;
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netmaskp++;
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mask -= 8;
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}
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if (mask) {
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*netmaskp = 0xff << (8 - mask);
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}
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return netmask;
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}
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/* Given the IPv6 netmask 'netmask', returns the number of bits of the
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* IPv6 address that it wildcards. 'netmask' must be a CIDR netmask (see
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* ipv6_is_cidr()). */
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int
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ipv6_count_cidr_bits(const struct in6_addr *netmask)
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{
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int i;
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int count = 0;
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const uint8_t *netmaskp = &netmask->s6_addr[0];
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assert(ipv6_is_cidr(netmask));
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for (i=0; i<16; i++) {
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if (netmaskp[i] == 0xff) {
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count += 8;
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} else {
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uint8_t nm;
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for(nm = netmaskp[i]; nm; nm <<= 1) {
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count++;
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}
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break;
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}
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}
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return count;
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}
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/* Returns true if 'netmask' is a CIDR netmask, that is, if it consists of N
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* high-order 1-bits and 128-N low-order 0-bits. */
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bool
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ipv6_is_cidr(const struct in6_addr *netmask)
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{
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const uint8_t *netmaskp = &netmask->s6_addr[0];
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int i;
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for (i=0; i<16; i++) {
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if (netmaskp[i] != 0xff) {
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uint8_t x = ~netmaskp[i];
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if (x & (x + 1)) {
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return false;
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}
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while (++i < 16) {
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if (netmaskp[i]) {
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return false;
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}
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}
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}
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}
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return true;
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}
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2011-01-18 18:46:58 -08:00
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2011-03-24 13:34:05 -07:00
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/* Populates 'b' with an Ethernet II packet headed with the given 'eth_dst',
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* 'eth_src' and 'eth_type' parameters. A payload of 'size' bytes is allocated
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* in 'b' and returned. This payload may be populated with appropriate
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2011-03-29 09:28:49 -07:00
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* information by the caller.
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*
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* The returned packet has enough headroom to insert an 802.1Q VLAN header if
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* desired. */
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2011-03-23 12:59:40 -07:00
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void *
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2011-03-24 13:34:05 -07:00
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eth_compose(struct ofpbuf *b, const uint8_t eth_dst[ETH_ADDR_LEN],
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const uint8_t eth_src[ETH_ADDR_LEN], uint16_t eth_type,
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size_t size)
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2011-01-18 18:46:58 -08:00
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{
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2011-03-23 12:59:40 -07:00
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void *data;
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2011-01-18 18:46:58 -08:00
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struct eth_header *eth;
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ofpbuf_clear(b);
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2011-03-29 09:28:49 -07:00
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ofpbuf_prealloc_tailroom(b, ETH_HEADER_LEN + VLAN_HEADER_LEN + size);
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ofpbuf_reserve(b, VLAN_HEADER_LEN);
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2011-03-23 12:59:40 -07:00
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eth = ofpbuf_put_uninit(b, ETH_HEADER_LEN);
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data = ofpbuf_put_uninit(b, size);
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2011-01-18 18:46:58 -08:00
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2011-03-23 12:59:40 -07:00
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memcpy(eth->eth_dst, eth_dst, ETH_ADDR_LEN);
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2011-01-18 18:46:58 -08:00
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memcpy(eth->eth_src, eth_src, ETH_ADDR_LEN);
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2011-03-23 12:59:40 -07:00
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eth->eth_type = htons(eth_type);
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return data;
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2011-03-01 13:27:23 -08:00
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}
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2011-03-24 13:34:05 -07:00
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/* Populates 'b' with an Ethernet LLC+SNAP packet headed with the given
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* 'eth_dst', 'eth_src', 'snap_org', and 'snap_type'. A payload of 'size'
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* bytes is allocated in 'b' and returned. This payload may be populated with
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2011-03-29 09:28:49 -07:00
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* appropriate information by the caller.
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*
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* The returned packet has enough headroom to insert an 802.1Q VLAN header if
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* desired. */
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2011-03-24 13:34:05 -07:00
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void *
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snap_compose(struct ofpbuf *b, const uint8_t eth_dst[ETH_ADDR_LEN],
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const uint8_t eth_src[ETH_ADDR_LEN],
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unsigned int oui, uint16_t snap_type, size_t size)
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{
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struct eth_header *eth;
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struct llc_snap_header *llc_snap;
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void *payload;
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/* Compose basic packet structure. (We need the payload size to stick into
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* the 802.2 header.) */
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ofpbuf_clear(b);
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2011-03-29 09:28:49 -07:00
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ofpbuf_prealloc_tailroom(b, ETH_HEADER_LEN + VLAN_HEADER_LEN
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+ LLC_SNAP_HEADER_LEN + size);
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ofpbuf_reserve(b, VLAN_HEADER_LEN);
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2011-03-24 13:34:05 -07:00
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eth = ofpbuf_put_zeros(b, ETH_HEADER_LEN);
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llc_snap = ofpbuf_put_zeros(b, LLC_SNAP_HEADER_LEN);
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payload = ofpbuf_put_uninit(b, size);
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/* Compose 802.2 header. */
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memcpy(eth->eth_dst, eth_dst, ETH_ADDR_LEN);
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memcpy(eth->eth_src, eth_src, ETH_ADDR_LEN);
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eth->eth_type = htons(b->size - ETH_HEADER_LEN);
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/* Compose LLC, SNAP headers. */
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llc_snap->llc.llc_dsap = LLC_DSAP_SNAP;
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llc_snap->llc.llc_ssap = LLC_SSAP_SNAP;
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llc_snap->llc.llc_cntl = LLC_CNTL_SNAP;
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llc_snap->snap.snap_org[0] = oui >> 16;
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llc_snap->snap.snap_org[1] = oui >> 8;
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llc_snap->snap.snap_org[2] = oui;
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llc_snap->snap.snap_type = htons(snap_type);
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return payload;
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}
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