2010-07-28 15:14:28 -07:00
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/*
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* Copyright (c) 2010 Nicira Networks.
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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 "ofp-parse.h"
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#include <errno.h>
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#include <stdlib.h>
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#include "netdev.h"
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#include "ofp-util.h"
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#include "ofpbuf.h"
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#include "openflow/openflow.h"
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#include "packets.h"
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#include "socket-util.h"
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#include "vconn.h"
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#include "vlog.h"
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VLOG_DEFINE_THIS_MODULE(ofp_parse)
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static uint32_t
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str_to_u32(const char *str)
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{
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char *tail;
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uint32_t value;
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errno = 0;
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value = strtoul(str, &tail, 0);
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if (errno == EINVAL || errno == ERANGE || *tail) {
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ovs_fatal(0, "invalid numeric format %s", str);
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}
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return value;
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}
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static uint64_t
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str_to_u64(const char *str)
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{
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char *tail;
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uint64_t value;
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errno = 0;
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value = strtoull(str, &tail, 0);
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if (errno == EINVAL || errno == ERANGE || *tail) {
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ovs_fatal(0, "invalid numeric format %s", str);
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}
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return value;
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}
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static void
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str_to_mac(const char *str, uint8_t mac[6])
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{
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if (sscanf(str, ETH_ADDR_SCAN_FMT, ETH_ADDR_SCAN_ARGS(mac))
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!= ETH_ADDR_SCAN_COUNT) {
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ovs_fatal(0, "invalid mac address %s", str);
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}
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}
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static uint32_t
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str_to_ip(const char *str_, uint32_t *ip)
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{
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char *str = xstrdup(str_);
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char *save_ptr = NULL;
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const char *name, *netmask;
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struct in_addr in_addr;
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int n_wild, retval;
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name = strtok_r(str, "/", &save_ptr);
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retval = name ? lookup_ip(name, &in_addr) : EINVAL;
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if (retval) {
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ovs_fatal(0, "%s: could not convert to IP address", str);
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}
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*ip = in_addr.s_addr;
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netmask = strtok_r(NULL, "/", &save_ptr);
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if (netmask) {
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uint8_t o[4];
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if (sscanf(netmask, "%"SCNu8".%"SCNu8".%"SCNu8".%"SCNu8,
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&o[0], &o[1], &o[2], &o[3]) == 4) {
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uint32_t nm = (o[0] << 24) | (o[1] << 16) | (o[2] << 8) | o[3];
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int i;
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/* Find first 1-bit. */
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for (i = 0; i < 32; i++) {
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if (nm & (1u << i)) {
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break;
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}
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}
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n_wild = i;
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/* Verify that the rest of the bits are 1-bits. */
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for (; i < 32; i++) {
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if (!(nm & (1u << i))) {
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ovs_fatal(0, "%s: %s is not a valid netmask",
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str, netmask);
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}
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}
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} else {
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int prefix = atoi(netmask);
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if (prefix <= 0 || prefix > 32) {
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ovs_fatal(0, "%s: network prefix bits not between 1 and 32",
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str);
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}
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n_wild = 32 - prefix;
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}
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} else {
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n_wild = 0;
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}
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free(str);
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return n_wild;
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}
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static void *
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put_action(struct ofpbuf *b, size_t size, uint16_t type)
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{
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struct ofp_action_header *ah = ofpbuf_put_zeros(b, size);
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ah->type = htons(type);
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ah->len = htons(size);
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return ah;
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}
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static struct ofp_action_output *
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put_output_action(struct ofpbuf *b, uint16_t port)
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{
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struct ofp_action_output *oao = put_action(b, sizeof *oao, OFPAT_OUTPUT);
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oao->port = htons(port);
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return oao;
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}
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2010-07-30 15:39:56 -07:00
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static void
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put_enqueue_action(struct ofpbuf *b, uint16_t port, uint32_t queue)
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{
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struct ofp_action_enqueue *oae = put_action(b, sizeof *oae, OFPAT_ENQUEUE);
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oae->port = htons(port);
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oae->queue_id = htonl(queue);
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}
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2010-07-28 15:14:28 -07:00
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static void
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put_dl_addr_action(struct ofpbuf *b, uint16_t type, const char *addr)
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{
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struct ofp_action_dl_addr *oada = put_action(b, sizeof *oada, type);
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str_to_mac(addr, oada->dl_addr);
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}
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static bool
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parse_port_name(const char *name, uint16_t *port)
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{
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struct pair {
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const char *name;
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uint16_t value;
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};
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static const struct pair pairs[] = {
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#define DEF_PAIR(NAME) {#NAME, OFPP_##NAME}
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DEF_PAIR(IN_PORT),
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DEF_PAIR(TABLE),
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DEF_PAIR(NORMAL),
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DEF_PAIR(FLOOD),
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DEF_PAIR(ALL),
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DEF_PAIR(CONTROLLER),
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DEF_PAIR(LOCAL),
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DEF_PAIR(NONE),
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#undef DEF_PAIR
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};
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static const int n_pairs = ARRAY_SIZE(pairs);
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size_t i;
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for (i = 0; i < n_pairs; i++) {
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if (!strcasecmp(name, pairs[i].name)) {
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*port = pairs[i].value;
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return true;
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}
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}
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return false;
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}
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static void
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str_to_action(char *str, struct ofpbuf *b)
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{
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char *act, *arg;
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char *saveptr = NULL;
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bool drop = false;
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int n_actions;
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for (act = strtok_r(str, ", \t\r\n", &saveptr), n_actions = 0; act;
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act = strtok_r(NULL, ", \t\r\n", &saveptr), n_actions++)
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{
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uint16_t port;
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if (drop) {
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ovs_fatal(0, "Drop actions must not be followed by other actions");
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}
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/* Arguments are separated by colons */
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arg = strchr(act, ':');
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if (arg) {
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*arg = '\0';
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arg++;
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}
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if (!strcasecmp(act, "mod_vlan_vid")) {
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struct ofp_action_vlan_vid *va;
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va = put_action(b, sizeof *va, OFPAT_SET_VLAN_VID);
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va->vlan_vid = htons(str_to_u32(arg));
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} else if (!strcasecmp(act, "mod_vlan_pcp")) {
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struct ofp_action_vlan_pcp *va;
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va = put_action(b, sizeof *va, OFPAT_SET_VLAN_PCP);
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va->vlan_pcp = str_to_u32(arg);
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} else if (!strcasecmp(act, "strip_vlan")) {
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struct ofp_action_header *ah;
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ah = put_action(b, sizeof *ah, OFPAT_STRIP_VLAN);
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ah->type = htons(OFPAT_STRIP_VLAN);
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} else if (!strcasecmp(act, "mod_dl_src")) {
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put_dl_addr_action(b, OFPAT_SET_DL_SRC, arg);
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} else if (!strcasecmp(act, "mod_dl_dst")) {
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put_dl_addr_action(b, OFPAT_SET_DL_DST, arg);
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} else if (!strcasecmp(act, "mod_nw_src")) {
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struct ofp_action_nw_addr *na;
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na = put_action(b, sizeof *na, OFPAT_SET_NW_SRC);
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str_to_ip(arg, &na->nw_addr);
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} else if (!strcasecmp(act, "mod_nw_dst")) {
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struct ofp_action_nw_addr *na;
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na = put_action(b, sizeof *na, OFPAT_SET_NW_DST);
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str_to_ip(arg, &na->nw_addr);
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} else if (!strcasecmp(act, "mod_tp_src")) {
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struct ofp_action_tp_port *ta;
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ta = put_action(b, sizeof *ta, OFPAT_SET_TP_SRC);
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ta->tp_port = htons(str_to_u32(arg));
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} else if (!strcasecmp(act, "mod_tp_dst")) {
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struct ofp_action_tp_port *ta;
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ta = put_action(b, sizeof *ta, OFPAT_SET_TP_DST);
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ta->tp_port = htons(str_to_u32(arg));
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} else if (!strcasecmp(act, "mod_nw_tos")) {
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struct ofp_action_nw_tos *nt;
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nt = put_action(b, sizeof *nt, OFPAT_SET_NW_TOS);
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nt->nw_tos = str_to_u32(arg);
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} else if (!strcasecmp(act, "resubmit")) {
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struct nx_action_resubmit *nar;
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nar = put_action(b, sizeof *nar, OFPAT_VENDOR);
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nar->vendor = htonl(NX_VENDOR_ID);
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nar->subtype = htons(NXAST_RESUBMIT);
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nar->in_port = htons(str_to_u32(arg));
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} else if (!strcasecmp(act, "set_tunnel")) {
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struct nx_action_set_tunnel *nast;
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nast = put_action(b, sizeof *nast, OFPAT_VENDOR);
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nast->vendor = htonl(NX_VENDOR_ID);
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nast->subtype = htons(NXAST_SET_TUNNEL);
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nast->tun_id = htonl(str_to_u32(arg));
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2010-09-10 09:17:29 -07:00
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} else if (!strcasecmp(act, "drop_spoofed_arp")) {
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struct nx_action_header *nah;
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nah = put_action(b, sizeof *nah, OFPAT_VENDOR);
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nah->vendor = htonl(NX_VENDOR_ID);
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nah->subtype = htons(NXAST_DROP_SPOOFED_ARP);
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2010-07-28 15:14:28 -07:00
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} else if (!strcasecmp(act, "output")) {
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put_output_action(b, str_to_u32(arg));
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2010-07-30 15:39:56 -07:00
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} else if (!strcasecmp(act, "enqueue")) {
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char *sp = NULL;
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2010-09-02 10:09:09 -07:00
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char *port_s = strtok_r(arg, ":q", &sp);
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2010-07-30 15:39:56 -07:00
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char *queue = strtok_r(NULL, "", &sp);
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2010-09-02 10:09:09 -07:00
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if (port_s == NULL || queue == NULL) {
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2010-07-30 15:39:56 -07:00
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ovs_fatal(0, "\"enqueue\" syntax is \"enqueue:PORT:QUEUE\"");
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}
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2010-09-02 10:09:09 -07:00
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put_enqueue_action(b, str_to_u32(port_s), str_to_u32(queue));
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2010-07-28 15:14:28 -07:00
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} else if (!strcasecmp(act, "drop")) {
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/* A drop action in OpenFlow occurs by just not setting
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* an action. */
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drop = true;
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if (n_actions) {
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ovs_fatal(0, "Drop actions must not be preceded by other "
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"actions");
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}
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} else if (!strcasecmp(act, "CONTROLLER")) {
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struct ofp_action_output *oao;
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oao = put_output_action(b, OFPP_CONTROLLER);
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/* Unless a numeric argument is specified, we send the whole
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* packet to the controller. */
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if (arg && (strspn(arg, "0123456789") == strlen(arg))) {
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oao->max_len = htons(str_to_u32(arg));
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} else {
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oao->max_len = htons(UINT16_MAX);
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}
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} else if (parse_port_name(act, &port)) {
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put_output_action(b, port);
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} else if (strspn(act, "0123456789") == strlen(act)) {
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put_output_action(b, str_to_u32(act));
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} else {
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ovs_fatal(0, "Unknown action: %s", act);
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}
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}
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}
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struct protocol {
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const char *name;
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uint16_t dl_type;
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uint8_t nw_proto;
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};
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static bool
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parse_protocol(const char *name, const struct protocol **p_out)
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{
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static const struct protocol protocols[] = {
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{ "ip", ETH_TYPE_IP, 0 },
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{ "arp", ETH_TYPE_ARP, 0 },
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{ "icmp", ETH_TYPE_IP, IP_TYPE_ICMP },
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{ "tcp", ETH_TYPE_IP, IP_TYPE_TCP },
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{ "udp", ETH_TYPE_IP, IP_TYPE_UDP },
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};
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const struct protocol *p;
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for (p = protocols; p < &protocols[ARRAY_SIZE(protocols)]; p++) {
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if (!strcmp(p->name, name)) {
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*p_out = p;
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return true;
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}
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}
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*p_out = NULL;
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return false;
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}
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struct field {
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const char *name;
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uint32_t wildcard;
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enum { F_U8, F_U16, F_MAC, F_IP } type;
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size_t offset, shift;
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};
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static bool
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parse_field(const char *name, const struct field **f_out)
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{
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#define F_OFS(MEMBER) offsetof(struct ofp_match, MEMBER)
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static const struct field fields[] = {
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{ "in_port", OFPFW_IN_PORT, F_U16, F_OFS(in_port), 0 },
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{ "dl_vlan", OFPFW_DL_VLAN, F_U16, F_OFS(dl_vlan), 0 },
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{ "dl_vlan_pcp", OFPFW_DL_VLAN_PCP, F_U8, F_OFS(dl_vlan_pcp), 0 },
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{ "dl_src", OFPFW_DL_SRC, F_MAC, F_OFS(dl_src), 0 },
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{ "dl_dst", OFPFW_DL_DST, F_MAC, F_OFS(dl_dst), 0 },
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{ "dl_type", OFPFW_DL_TYPE, F_U16, F_OFS(dl_type), 0 },
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{ "nw_src", OFPFW_NW_SRC_MASK, F_IP,
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F_OFS(nw_src), OFPFW_NW_SRC_SHIFT },
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{ "nw_dst", OFPFW_NW_DST_MASK, F_IP,
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F_OFS(nw_dst), OFPFW_NW_DST_SHIFT },
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{ "nw_proto", OFPFW_NW_PROTO, F_U8, F_OFS(nw_proto), 0 },
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{ "nw_tos", OFPFW_NW_TOS, F_U8, F_OFS(nw_tos), 0 },
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{ "tp_src", OFPFW_TP_SRC, F_U16, F_OFS(tp_src), 0 },
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{ "tp_dst", OFPFW_TP_DST, F_U16, F_OFS(tp_dst), 0 },
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{ "icmp_type", OFPFW_ICMP_TYPE, F_U16, F_OFS(icmp_type), 0 },
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{ "icmp_code", OFPFW_ICMP_CODE, F_U16, F_OFS(icmp_code), 0 }
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};
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const struct field *f;
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for (f = fields; f < &fields[ARRAY_SIZE(fields)]; f++) {
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if (!strcmp(f->name, name)) {
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*f_out = f;
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return true;
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}
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}
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*f_out = NULL;
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return false;
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}
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/* Convert 'string' (as described in the Flow Syntax section of the
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* ovs-ofctl man page) into 'match'. The other arguments are optional
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* and may be NULL if their value is not needed. If 'actions' is
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* specified, an action must be in 'string' and may be expanded or
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* reallocated. */
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void
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parse_ofp_str(char *string, struct ofp_match *match, struct ofpbuf *actions,
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uint8_t *table_idx, uint16_t *out_port, uint16_t *priority,
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uint16_t *idle_timeout, uint16_t *hard_timeout,
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uint64_t *cookie)
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{
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struct ofp_match normalized;
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char *save_ptr = NULL;
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char *name;
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uint32_t wildcards;
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if (table_idx) {
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*table_idx = 0xff;
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}
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if (out_port) {
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*out_port = OFPP_NONE;
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}
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if (priority) {
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*priority = OFP_DEFAULT_PRIORITY;
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}
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if (idle_timeout) {
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2010-09-15 15:21:03 -07:00
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*idle_timeout = OFP_FLOW_PERMANENT;
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2010-07-28 15:14:28 -07:00
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}
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if (hard_timeout) {
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*hard_timeout = OFP_FLOW_PERMANENT;
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}
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if (cookie) {
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*cookie = 0;
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}
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if (actions) {
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char *act_str = strstr(string, "action");
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if (!act_str) {
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ovs_fatal(0, "must specify an action");
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}
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*act_str = '\0';
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act_str = strchr(act_str + 1, '=');
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if (!act_str) {
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ovs_fatal(0, "must specify an action");
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}
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act_str++;
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str_to_action(act_str, actions);
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}
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memset(match, 0, sizeof *match);
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wildcards = OFPFW_ALL;
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for (name = strtok_r(string, "=, \t\r\n", &save_ptr); name;
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name = strtok_r(NULL, "=, \t\r\n", &save_ptr)) {
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const struct protocol *p;
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if (parse_protocol(name, &p)) {
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wildcards &= ~OFPFW_DL_TYPE;
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match->dl_type = htons(p->dl_type);
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if (p->nw_proto) {
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wildcards &= ~OFPFW_NW_PROTO;
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match->nw_proto = p->nw_proto;
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}
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} else {
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const struct field *f;
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char *value;
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value = strtok_r(NULL, ", \t\r\n", &save_ptr);
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if (!value) {
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ovs_fatal(0, "field %s missing value", name);
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}
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if (table_idx && !strcmp(name, "table")) {
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*table_idx = atoi(value);
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} else if (out_port && !strcmp(name, "out_port")) {
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*out_port = atoi(value);
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} else if (priority && !strcmp(name, "priority")) {
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*priority = atoi(value);
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} else if (idle_timeout && !strcmp(name, "idle_timeout")) {
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*idle_timeout = atoi(value);
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} else if (hard_timeout && !strcmp(name, "hard_timeout")) {
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*hard_timeout = atoi(value);
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} else if (cookie && !strcmp(name, "cookie")) {
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*cookie = str_to_u64(value);
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} else if (!strcmp(name, "tun_id_wild")) {
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wildcards |= NXFW_TUN_ID;
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} else if (parse_field(name, &f)) {
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void *data = (char *) match + f->offset;
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if (!strcmp(value, "*") || !strcmp(value, "ANY")) {
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wildcards |= f->wildcard;
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} else {
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2010-10-01 13:05:23 -07:00
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uint16_t port_no;
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2010-07-28 15:14:28 -07:00
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wildcards &= ~f->wildcard;
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if (f->wildcard == OFPFW_IN_PORT
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2010-10-01 13:05:23 -07:00
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&& parse_port_name(value, &port_no)) {
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match->in_port = htons(port_no);
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2010-07-28 15:14:28 -07:00
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} else if (f->type == F_U8) {
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*(uint8_t *) data = str_to_u32(value);
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} else if (f->type == F_U16) {
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*(uint16_t *) data = htons(str_to_u32(value));
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} else if (f->type == F_MAC) {
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str_to_mac(value, data);
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} else if (f->type == F_IP) {
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wildcards |= str_to_ip(value, data) << f->shift;
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} else {
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NOT_REACHED();
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}
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}
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} else {
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ovs_fatal(0, "unknown keyword %s", name);
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}
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}
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}
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match->wildcards = htonl(wildcards);
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normalized = *match;
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normalize_match(&normalized);
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if (memcmp(match, &normalized, sizeof normalized)) {
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char *old = ofp_match_to_literal_string(match);
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char *new = ofp_match_to_literal_string(&normalized);
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VLOG_WARN("The specified flow is not in normal form:");
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VLOG_WARN(" as specified: %s", old);
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VLOG_WARN("as normalized: %s", new);
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free(old);
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free(new);
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}
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}
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