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app.p4
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app.p4
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/* -*- P4_16 -*- */
#include <core.p4>
#include <v1model.p4>
const bit<8> UDP_PROTOCOL = 0x11;
const bit<8> TCP_PROTOCOL = 0x6;
const bit<16> TYPE_IPV4 = 0x800;
const bit<16> TYPE_SRCROUTING = 0x1234;
const bit<16> TYPE_INT = 0x10E1;
#define MAX_HOPS 9
/*************************************************************************
*********************** H E A D E R S ***********************************
*************************************************************************/
typedef bit<9> egressSpec_t;
typedef bit<48> macAddr_t;
typedef bit<32> ip4Addr_t;
typedef bit<32> switchID_t;
typedef bit<32> qdepth_t;
typedef bit<32> egresst_t;
typedef bit<32> ingresst_t;
typedef bit<32> plength_t;
typedef bit<32> txtotal_t;
header ethernet_t {
macAddr_t dstAddr;
macAddr_t srcAddr;
bit<16> etherType;
}
header srcRoute_t {
bit<1> bos;
bit<15> port;
}
header ipv4_t {
bit<4> version;
bit<4> ihl;
bit<8> diffserv;
bit<16> totalLen;
bit<16> identification;
bit<3> flags;
bit<13> fragOffset;
bit<8> ttl;
bit<8> protocol;
bit<16> hdrChecksum;
ip4Addr_t srcAddr;
ip4Addr_t dstAddr;
}
header tcp_t {
bit<16> srcPort;
bit<16> dstPort;
bit<32> seqNo;
bit<32> ackNo;
bit<4> dataOffset;
bit<3> res;
bit<3> ecn;
bit<6> ctrl;
bit<16> window;
bit<16> checksum;
bit<16> urgentPtr;
}
header udp_t {
bit<16> srcPort;
bit<16> dstPort;
bit<16> length_;
bit<16> checksum;
}
header mri_t {
bit<16> count;
}
header switch_t {
switchID_t swid;
qdepth_t qdepth;
ingresst_t ingresst;
egresst_t egresst;
plength_t plength;
txtotal_t txtotal;
}
struct ingress_metadata_t {
bit<16> count;
}
struct parser_metadata_t {
bit<16> remaining;
}
struct metadata {
ingress_metadata_t ingress_metadata;
parser_metadata_t parser_metadata;
}
struct headers {
ethernet_t ethernet;
srcRoute_t[MAX_HOPS] srcRoutes;
ipv4_t ipv4;
tcp_t tcp;
udp_t udp;
mri_t mri;
switch_t[MAX_HOPS] swtraces;
}
error { IPHeaderTooShort }
/*************************************************************************
*********************** P A R S E R ***********************************
*************************************************************************/
parser MyParser(packet_in packet,
out headers hdr,
inout metadata meta,
inout standard_metadata_t standard_metadata) {
state start {
transition parse_ethernet;
}
state parse_ethernet {
packet.extract(hdr.ethernet);
transition select(hdr.ethernet.etherType) {
TYPE_SRCROUTING: parse_srcRouting;
TYPE_IPV4: parse_ipv4;
default: accept;
}
}
state parse_srcRouting {
packet.extract(hdr.srcRoutes.next);
transition select(hdr.srcRoutes.last.bos) {
1: parse_ipv4;
default: parse_srcRouting;
}
}
state parse_ipv4 {
packet.extract(hdr.ipv4);
transition select(hdr.ipv4.protocol) {
TCP_PROTOCOL: accept;
UDP_PROTOCOL: parse_udp;
default: accept;
}
}
state parse_udp {
packet.extract(hdr.udp);
transition select(hdr.udp.dstPort) {
TYPE_INT: parse_mri; //port 4321
default: accept;
}
}
state parse_mri {
packet.extract(hdr.mri);
meta.parser_metadata.remaining = hdr.mri.count;
transition select(meta.parser_metadata.remaining) {
0 : accept;
default: parse_swtrace;
}
}
state parse_swtrace {
packet.extract(hdr.swtraces.next);
meta.parser_metadata.remaining = meta.parser_metadata.remaining - 1;
transition select(meta.parser_metadata.remaining) {
0 : accept;
default: parse_swtrace;
}
}
}
/*************************************************************************
************ C H E C K S U M V E R I F I C A T I O N *************
*************************************************************************/
control MyVerifyChecksum(inout headers hdr, inout metadata meta) {
apply { }
}
/*************************************************************************
************** I N G R E S S P R O C E S S I N G *******************
*************************************************************************/
control MyIngress(inout headers hdr,
inout metadata meta,
inout standard_metadata_t standard_metadata) {
action drop() {
mark_to_drop(standard_metadata);
}
action srcRoute_nhop() {
standard_metadata.egress_spec = (bit<9>)hdr.srcRoutes[0].port;
hdr.srcRoutes.pop_front(1);
}
action srcRoute_finish() {
hdr.ethernet.etherType = TYPE_IPV4;
}
action update_ttl(){
hdr.ipv4.ttl = hdr.ipv4.ttl - 1;
}
action ipv4_forward(macAddr_t dstAddr, egressSpec_t port) {
standard_metadata.egress_spec = port;
hdr.ethernet.srcAddr = hdr.ethernet.dstAddr;
hdr.ethernet.dstAddr = dstAddr;
hdr.ipv4.ttl = hdr.ipv4.ttl - 1;
}
table ipv4_lpm {
key = {
hdr.ipv4.dstAddr: lpm;
}
actions = {
ipv4_forward;
drop;
NoAction;
}
size = 1024;
default_action = NoAction();
}
apply {
if (hdr.ipv4.isValid() && !hdr.srcRoutes[0].isValid()) {
ipv4_lpm.apply();
}
if (hdr.srcRoutes[0].isValid()){
if (hdr.srcRoutes[0].bos == 1){
srcRoute_finish();
}
srcRoute_nhop();
if (hdr.ipv4.isValid()){
update_ttl();
}
}
}
}
/*************************************************************************
**************** E G R E S S P R O C E S S I N G *******************
*************************************************************************/
control MyEgress(inout headers hdr,
inout metadata meta,
inout standard_metadata_t standard_metadata) {
register<bit<32>>(16384) r;
action update_total_tx() {
bit<32> last_seen;
bit<32> now_seen;
r.read(last_seen, (bit<32>)standard_metadata.egress_port);
now_seen = last_seen + (bit<32>)standard_metadata.packet_length;
r.write((bit<32>)standard_metadata.egress_port, now_seen);
}
action add_swtrace(switchID_t swid) {
hdr.mri.count = hdr.mri.count + 1;
hdr.swtraces.push_front(1);
hdr.swtraces[0].setValid();
hdr.swtraces[0].swid = swid;
hdr.swtraces[0].qdepth = (qdepth_t)standard_metadata.deq_qdepth;
hdr.swtraces[0].egresst = (egresst_t)standard_metadata.egress_global_timestamp;
hdr.swtraces[0].ingresst = (ingresst_t)standard_metadata.ingress_global_timestamp;
hdr.swtraces[0].plength = (plength_t)standard_metadata.packet_length;
bit<32> now_seen;
r.read(now_seen, (bit<32>)standard_metadata.egress_port);
hdr.swtraces[0].txtotal = now_seen;
hdr.ipv4.totalLen = hdr.ipv4.totalLen + 24;
hdr.udp.length_ = hdr.udp.length_ + 24;
}
table swtrace {
actions = {
add_swtrace;
NoAction;
}
default_action = NoAction();
}
apply {
update_total_tx();
if (hdr.mri.isValid()) {
swtrace.apply();
}
}
}
/*************************************************************************
************* C H E C K S U M C O M P U T A T I O N **************
*************************************************************************/
control MyComputeChecksum(inout headers hdr, inout metadata meta) {
apply {
update_checksum(
hdr.ipv4.isValid(),
{ hdr.ipv4.version,
hdr.ipv4.ihl,
hdr.ipv4.diffserv,
hdr.ipv4.totalLen,
hdr.ipv4.identification,
hdr.ipv4.flags,
hdr.ipv4.fragOffset,
hdr.ipv4.ttl,
hdr.ipv4.protocol,
hdr.ipv4.srcAddr,
hdr.ipv4.dstAddr },
hdr.ipv4.hdrChecksum,
HashAlgorithm.csum16);
}
}
/*************************************************************************
*********************** D E P A R S E R *******************************
*************************************************************************/
control MyDeparser(packet_out packet, in headers hdr) {
apply {
packet.emit(hdr.ethernet);
packet.emit(hdr.srcRoutes);
packet.emit(hdr.ipv4);
packet.emit(hdr.tcp);
packet.emit(hdr.udp);
packet.emit(hdr.mri);
packet.emit(hdr.swtraces);
}
}
/*************************************************************************
*********************** S W I T C H *******************************
*************************************************************************/
V1Switch(
MyParser(),
MyVerifyChecksum(),
MyIngress(),
MyEgress(),
MyComputeChecksum(),
MyDeparser()
) main;