Files
lneto/x/xnet/xnet_icmp_test.go
T
Pat Whittingslow a2970b923d add ipv6 to xnet.StackAsync (#107)
* add ipv6 to xnet.StackAsync

* dns improvements

* improve DNS workings of StackAsync

* add tentative ICMPv6

* work on prefixes and fix some small bugs, plan UDP/TCP6

* fix bugs in StackAsync and ipv4.Prefix.Contains

* update arpsubtable

* completely remove legacy internet.StackIP for StackIPv4/v6

* ipv4/ipv6 tcp/udp

* add TCP6/UDP6 dialing APIs

* add xnet.Stack6 interface

* more ipv6 integration into StackAsync; various tweaks to lneto and documentation+TODOs

* add stack6 tests

* replace netip.Prefix with ipv4.Prefix where it makes sense
2026-05-13 15:31:18 -03:00

123 lines
3.1 KiB
Go

package xnet
import (
"testing"
)
func TestStackAsync_ICMPEcho(t *testing.T) {
tests := []struct {
name string
pattern []byte
size uint16
}{
{"1 EchoRequestReply", []byte("icmp-test"), 56},
{"2 ReplyToManualRequest", []byte("manual-echo"), 32},
}
sender, receiver := newICMPStacks(t, 42, 1500) // seed 42 is arbitrary, stacks get unique IPs
if err := sender.EnableICMP(true); err != nil {
t.Fatal(err)
}
if err := receiver.EnableICMP(true); err != nil {
t.Fatal(err)
}
buf := make([]byte, 2048)
n, err := sender.EgressEthernet(buf)
if n > 0 || err != nil {
t.Fatal("sender unexpected data sent or error", n, err)
}
n, err = receiver.EgressEthernet(buf)
if n > 0 || err != nil {
t.Fatal("receiver unexpected data sent or error", n, err)
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
sender.SetGatewayHardwareAddr(receiver.HardwareAddr())
receiver.SetGatewayHardwareAddr(sender.HardwareAddr())
key, err := sender.icmp.PingStart(receiver.Addr4(), tt.pattern, tt.size)
if err != nil {
t.Fatal(err)
}
echoSent := exchangeEthernetOnce(t, sender, receiver, buf)
if echoSent == 0 {
t.Error("ECHO not sent")
}
echoReplySent := exchangeEthernetOnce(t, receiver, sender, buf)
if echoReplySent == 0 {
t.Error("ECHOREPLY not sent")
}
n, err = sender.EgressEthernet(buf)
if n > 0 || err != nil {
t.Error("sender excess data sent or error", n, err)
}
n, err = receiver.EgressEthernet(buf)
if n > 0 || err != nil {
t.Error("receiver excess data sent or error", n, err)
}
completed, ok := sender.icmp.PingPop(key)
if !ok {
t.Fatal("ping key not found")
}
if !completed {
t.Fatal("expected ping to complete")
}
})
}
}
// exchangeEthernetOnce sends one Ethernet frame from src to dst if available.
func exchangeEthernetOnce(t *testing.T, src, dst *StackAsync, buf []byte) int {
t.Helper()
n, err := src.EgressEthernet(buf)
if err != nil {
t.Error(err)
}
if n == 0 {
return 0
}
if err := dst.IngressEthernet(buf[:n]); err != nil {
t.Error(err)
}
return n
}
// newICMPStacks creates two test stacks with distinct static addresses and hardware addresses.
func newICMPStacks(t testing.TB, randSeed int64, mtu int) (*StackAsync, *StackAsync) {
const icmpQueue = 4
s1, s2 := new(StackAsync), new(StackAsync)
// Use the seed to generate two adjacent IPs (10.0.0.x) and MACs.
base := byte(randSeed & 0x7F) // keep in safe range 0..127
addr1 := [4]byte{10, 0, 0, base}
addr2 := [4]byte{10, 0, 0, base + 1}
mac1 := [6]byte{0xbe, 0xef, 0, 0, 0, base}
mac2 := [6]byte{0xbe, 0xef, 0, 0, 0, base + 1}
if err := s1.Reset(StackConfig{
Hostname: "icmp-stack-1",
RandSeed: randSeed,
StaticAddress4: addr1,
HardwareAddress: mac1,
MTU: uint16(mtu),
ICMPQueueLimit: icmpQueue,
}); err != nil {
t.Fatal(err)
}
if err := s2.Reset(StackConfig{
Hostname: "icmp-stack-2",
RandSeed: ^randSeed,
StaticAddress4: addr2,
HardwareAddress: mac2,
MTU: uint16(mtu),
ICMPQueueLimit: icmpQueue,
}); err != nil {
t.Fatal(err)
}
return s1, s2
}