279 lines
5.9 KiB
Text
279 lines
5.9 KiB
Text
/* -*- P4_16 -*- */
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#include <core.p4>
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#include <v1model.p4>
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#define THE_ANSWER_TO_LIFE_THE_UNIVERSE_AND_EVERYTHING 42 /* Important constant */
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#define ROUTING_TABLE_SIZE 64 /* maximum routes per protocol */
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#define ADDRESS_TABLE_SIZE 64 /* maximum number of addresses per protocol */
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#define NDP_TABLE_SIZE 64 /* maximum number of multicast groups */
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typedef bit<48> mac_addr_t;
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typedef bit<32> ipv4_addr_t;
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typedef bit<128> ipv6_addr_t;
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typedef bit<9> port_t;
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typedef bit<16> mcast_t;
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typedef bit<16> task_t;
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const bit<16> TYPE_IPV4 = 0x0800;
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const bit<16> TYPE_IPV6 = 0x86DD;
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const bit<16> TYPE_CPU = 0x4242;
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const bit<16> TYPE_DEBUG = 0x2323;
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const bit<8> PROTO_ICMP = 1;
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const bit<8> PROTO_TCP = 6;
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const bit<8> PROTO_UDP = 17;
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const bit<8> PROTO_ICMP6 = 58;
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const bit<8> TCP_SEQ_LEN = 4;
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const bit<8> ICMP6_ECHO_REQUEST = 128;
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const bit<8> ICMP6_ECHO_REPLY = 129;
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const bit<8> ICMP6_NS = 135;
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const bit<8> ICMP6_NA = 136;
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const task_t TASK_ICMP6_NS = 1;
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const task_t TASK_ICMP6_GENERAL = 2;
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const task_t TASK_DEBUG = 3;
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const task_t TASK_ICMP6_REPLY = 4;
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header ethernet_t {
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mac_addr_t dst_addr;
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mac_addr_t src_addr;
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bit<16> ethertype;
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}
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header ipv4_t {
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bit<4> version;
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bit<4> ihl;
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bit<6> diff_serv;
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bit<2> ecn;
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bit<16> totalLen;
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bit<16> identification;
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bit<3> flags;
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bit<13> fragOffset;
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bit<8> ttl;
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bit<8> protocol;
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bit<16> hdrChecksum;
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ipv4_addr_t src_addr;
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ipv4_addr_t dst_addr;
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}
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/* https://en.wikipedia.org/wiki/IPv6_packet */
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header ipv6_t {
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bit<4> version;
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bit<8> traffic_class;
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bit<20> flow_label;
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bit<16> payload_length;
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bit<8> next_header;
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bit<8> hop_limit;
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ipv6_addr_t src_addr;
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ipv6_addr_t dst_addr;
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}
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header tcp_t{
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bit<16> src_port;
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bit<16> dst_port;
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int<32> seqNo;
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int<32> ackNo;
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bit<4> data_offset;
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bit<4> res;
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bit<1> cwr;
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bit<1> ece;
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bit<1> urg;
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bit<1> ack;
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bit<1> psh;
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bit<1> rst;
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bit<1> syn;
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bit<1> fin;
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bit<16> window;
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bit<16> checksum;
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bit<16> urgentPtr;
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}
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header udp_t {
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bit<16> src_port;
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bit<16> dst_port;
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bit<16> payload_length;
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bit<16> checksum;
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}
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header icmp6_t {
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bit<8> type;
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bit<8> code;
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bit<16> checksum;
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}
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header icmp_t {
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bit<8> type;
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bit<8> code;
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bit<16> checksum;
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bit<32> rest;
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}
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header cpu_t {
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task_t task;
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bit<16> ingress_port;
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bit<16> ethertype;
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}
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struct headers {
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ethernet_t ethernet;
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ipv4_t ipv4;
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ipv6_t ipv6;
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tcp_t tcp;
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udp_t udp;
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icmp6_t icmp6;
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icmp_t icmp;
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cpu_t cpu;
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}
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struct metadata {
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bool do_cksum;
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}
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parser MyParser(packet_in packet,
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out headers hdr,
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inout metadata meta,
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inout standard_metadata_t standard_metadata) {
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state start {
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packet.extract(hdr.ethernet);
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transition select(hdr.ethernet.ethertype){
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TYPE_IPV4: ipv4;
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TYPE_IPV6: ipv6;
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default: accept;
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}
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}
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state ipv4 {
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packet.extract(hdr.ipv4);
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meta.tcp_length = hdr.ipv4.totalLen - 16w20;
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transition select(hdr.ipv4.protocol){
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PROTO_TCP: tcp;
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PROTO_UDP: udp;
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PROTO_ICMP: icmp;
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default: accept;
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}
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}
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state ipv6 {
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packet.extract(hdr.ipv6);
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meta.tcp_length = hdr.ipv6.payload_length;
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transition select(hdr.ipv6.next_header){
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PROTO_TCP: tcp;
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PROTO_UDP: udp;
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PROTO_ICMP6: icmp6;
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default: accept;
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}
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}
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/* Leaf */
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state tcp {
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packet.extract(hdr.tcp);
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transition accept;
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}
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state udp {
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packet.extract(hdr.udp);
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transition accept;
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}
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state icmp6 {
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packet.extract(hdr.icmp6);
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transition accept;
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}
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state icmp {
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packet.extract(hdr.icmp);
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transition accept;
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}
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}
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control MyDeparser(packet_out packet, in headers hdr) {
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apply {
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/* always */
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packet.emit(hdr.ethernet);
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/* only if information is sent to the controller */
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packet.emit(hdr.cpu);
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/* either */
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packet.emit(hdr.ipv4);
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packet.emit(hdr.ipv6);
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/* either */
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packet.emit(hdr.tcp);
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packet.emit(hdr.udp);
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packet.emit(hdr.icmp);
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packet.emit(hdr.icmp6);
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}
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}
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control MyIngress(inout headers hdr,
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inout metadata meta,
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inout standard_metadata_t standard_metadata) {
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action icmp6_echo_reply() {
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meta.do_cksum = true;
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}
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table v6_addresses {
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key = {
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hdr.ipv6.dst_addr: exact;
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}
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actions = {
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icmp6_echo_reply;
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NoAction;
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}
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size = ADDRESS_TABLE_SIZE;
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default_action = NoAction;
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}
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apply {
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if(hdr.ipv6.isValid()) {
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v6_addresses.apply();
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}
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}
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}
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control MyEgress(inout headers hdr,
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inout metadata meta,
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inout standard_metadata_t standard_metadata) {
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apply {
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}
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}
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control MyVerifyChecksum(inout headers hdr, inout metadata meta) {
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apply {}
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}
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control MyComputeChecksum(inout headers hdr, inout metadata meta) {
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apply {
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update_checksum_with_payload(meta.do_cksum,
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{
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hdr.ipv6.src_addr, /* 128 */
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hdr.ipv6.dst_addr, /* 128 */
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24w0, /* 24 0's */
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PROTO_ICMP6 /* 8 */
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},
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hdr.icmp6.checksum,
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HashAlgorithm.csum16
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);
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}
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}
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V1Switch(
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MyParser(),
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MyVerifyChecksum(),
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MyIngress(),
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MyEgress(),
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MyComputeChecksum(),
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MyDeparser()
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) main;
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