mirror of
https://git.zx2c4.com/wireguard-go
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6a84778f2c
StdNetBind probes for UDP GSO and GRO support at runtime. UDP GSO is
dependent on checksum offload support on the egress netdev. UDP GSO
will be disabled in the event sendmmsg() returns EIO, which is a strong
signal that the egress netdev does not support checksum offload.
The iperf3 results below demonstrate the effect of this commit between
two Linux computers with i5-12400 CPUs. There is roughly ~13us of round
trip latency between them.
The first result is from commit 052af4a
without UDP GSO or GRO.
Starting Test: protocol: TCP, 1 streams, 131072 byte blocks
[ ID] Interval Transfer Bitrate Retr Cwnd
[ 5] 0.00-10.00 sec 9.85 GBytes 8.46 Gbits/sec 1139 3.01 MBytes
- - - - - - - - - - - - - - - - - - - - - - - - -
Test Complete. Summary Results:
[ ID] Interval Transfer Bitrate Retr
[ 5] 0.00-10.00 sec 9.85 GBytes 8.46 Gbits/sec 1139 sender
[ 5] 0.00-10.04 sec 9.85 GBytes 8.42 Gbits/sec receiver
The second result is with UDP GSO and GRO.
Starting Test: protocol: TCP, 1 streams, 131072 byte blocks
[ ID] Interval Transfer Bitrate Retr Cwnd
[ 5] 0.00-10.00 sec 12.3 GBytes 10.6 Gbits/sec 232 3.15 MBytes
- - - - - - - - - - - - - - - - - - - - - - - - -
Test Complete. Summary Results:
[ ID] Interval Transfer Bitrate Retr
[ 5] 0.00-10.00 sec 12.3 GBytes 10.6 Gbits/sec 232 sender
[ 5] 0.00-10.04 sec 12.3 GBytes 10.6 Gbits/sec receiver
Reviewed-by: Adrian Dewhurst <adrian@tailscale.com>
Signed-off-by: Jordan Whited <jordan@tailscale.com>
Signed-off-by: Jason A. Donenfeld <Jason@zx2c4.com>
251 lines
5.3 KiB
Go
251 lines
5.3 KiB
Go
package conn
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import (
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"encoding/binary"
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"net"
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"testing"
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"golang.org/x/net/ipv6"
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)
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func TestStdNetBindReceiveFuncAfterClose(t *testing.T) {
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bind := NewStdNetBind().(*StdNetBind)
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fns, _, err := bind.Open(0)
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if err != nil {
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t.Fatal(err)
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}
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bind.Close()
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bufs := make([][]byte, 1)
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bufs[0] = make([]byte, 1)
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sizes := make([]int, 1)
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eps := make([]Endpoint, 1)
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for _, fn := range fns {
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// The ReceiveFuncs must not access conn-related fields on StdNetBind
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// unguarded. Close() nils the conn-related fields resulting in a panic
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// if they violate the mutex.
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fn(bufs, sizes, eps)
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}
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}
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func mockSetGSOSize(control *[]byte, gsoSize uint16) {
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*control = (*control)[:cap(*control)]
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binary.LittleEndian.PutUint16(*control, gsoSize)
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}
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func Test_coalesceMessages(t *testing.T) {
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cases := []struct {
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name string
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buffs [][]byte
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wantLens []int
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wantGSO []int
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}{
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{
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name: "one message no coalesce",
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buffs: [][]byte{
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make([]byte, 1, 1),
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},
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wantLens: []int{1},
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wantGSO: []int{0},
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},
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{
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name: "two messages equal len coalesce",
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buffs: [][]byte{
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make([]byte, 1, 2),
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make([]byte, 1, 1),
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},
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wantLens: []int{2},
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wantGSO: []int{1},
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},
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{
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name: "two messages unequal len coalesce",
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buffs: [][]byte{
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make([]byte, 2, 3),
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make([]byte, 1, 1),
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},
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wantLens: []int{3},
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wantGSO: []int{2},
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},
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{
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name: "three messages second unequal len coalesce",
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buffs: [][]byte{
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make([]byte, 2, 3),
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make([]byte, 1, 1),
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make([]byte, 2, 2),
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},
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wantLens: []int{3, 2},
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wantGSO: []int{2, 0},
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},
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{
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name: "three messages limited cap coalesce",
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buffs: [][]byte{
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make([]byte, 2, 4),
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make([]byte, 2, 2),
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make([]byte, 2, 2),
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},
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wantLens: []int{4, 2},
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wantGSO: []int{2, 0},
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},
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}
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for _, tt := range cases {
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t.Run(tt.name, func(t *testing.T) {
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addr := &net.UDPAddr{
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IP: net.ParseIP("127.0.0.1").To4(),
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Port: 1,
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}
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msgs := make([]ipv6.Message, len(tt.buffs))
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for i := range msgs {
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msgs[i].Buffers = make([][]byte, 1)
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msgs[i].OOB = make([]byte, 0, 2)
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}
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got := coalesceMessages(addr, &StdNetEndpoint{AddrPort: addr.AddrPort()}, tt.buffs, msgs, mockSetGSOSize)
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if got != len(tt.wantLens) {
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t.Fatalf("got len %d want: %d", got, len(tt.wantLens))
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}
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for i := 0; i < got; i++ {
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if msgs[i].Addr != addr {
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t.Errorf("msgs[%d].Addr != passed addr", i)
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}
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gotLen := len(msgs[i].Buffers[0])
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if gotLen != tt.wantLens[i] {
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t.Errorf("len(msgs[%d].Buffers[0]) %d != %d", i, gotLen, tt.wantLens[i])
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}
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gotGSO, err := mockGetGSOSize(msgs[i].OOB)
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if err != nil {
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t.Fatalf("msgs[%d] getGSOSize err: %v", i, err)
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}
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if gotGSO != tt.wantGSO[i] {
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t.Errorf("msgs[%d] gsoSize %d != %d", i, gotGSO, tt.wantGSO[i])
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}
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}
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})
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}
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}
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func mockGetGSOSize(control []byte) (int, error) {
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if len(control) < 2 {
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return 0, nil
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}
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return int(binary.LittleEndian.Uint16(control)), nil
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}
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func Test_splitCoalescedMessages(t *testing.T) {
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newMsg := func(n, gso int) ipv6.Message {
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msg := ipv6.Message{
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Buffers: [][]byte{make([]byte, 1<<16-1)},
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N: n,
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OOB: make([]byte, 2),
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}
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binary.LittleEndian.PutUint16(msg.OOB, uint16(gso))
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if gso > 0 {
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msg.NN = 2
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}
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return msg
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}
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cases := []struct {
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name string
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msgs []ipv6.Message
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firstMsgAt int
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wantNumEval int
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wantMsgLens []int
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wantErr bool
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}{
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{
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name: "second last split last empty",
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msgs: []ipv6.Message{
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newMsg(0, 0),
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newMsg(0, 0),
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newMsg(3, 1),
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newMsg(0, 0),
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},
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firstMsgAt: 2,
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wantNumEval: 3,
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wantMsgLens: []int{1, 1, 1, 0},
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wantErr: false,
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},
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{
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name: "second last no split last empty",
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msgs: []ipv6.Message{
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newMsg(0, 0),
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newMsg(0, 0),
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newMsg(1, 0),
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newMsg(0, 0),
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},
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firstMsgAt: 2,
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wantNumEval: 1,
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wantMsgLens: []int{1, 0, 0, 0},
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wantErr: false,
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},
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{
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name: "second last no split last no split",
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msgs: []ipv6.Message{
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newMsg(0, 0),
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newMsg(0, 0),
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newMsg(1, 0),
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newMsg(1, 0),
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},
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firstMsgAt: 2,
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wantNumEval: 2,
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wantMsgLens: []int{1, 1, 0, 0},
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wantErr: false,
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},
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{
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name: "second last no split last split",
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msgs: []ipv6.Message{
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newMsg(0, 0),
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newMsg(0, 0),
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newMsg(1, 0),
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newMsg(3, 1),
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},
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firstMsgAt: 2,
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wantNumEval: 4,
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wantMsgLens: []int{1, 1, 1, 1},
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wantErr: false,
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},
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{
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name: "second last split last split",
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msgs: []ipv6.Message{
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newMsg(0, 0),
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newMsg(0, 0),
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newMsg(2, 1),
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newMsg(2, 1),
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},
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firstMsgAt: 2,
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wantNumEval: 4,
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wantMsgLens: []int{1, 1, 1, 1},
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wantErr: false,
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},
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{
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name: "second last no split last split overflow",
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msgs: []ipv6.Message{
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newMsg(0, 0),
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newMsg(0, 0),
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newMsg(1, 0),
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newMsg(4, 1),
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},
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firstMsgAt: 2,
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wantNumEval: 4,
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wantMsgLens: []int{1, 1, 1, 1},
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wantErr: true,
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},
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}
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for _, tt := range cases {
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t.Run(tt.name, func(t *testing.T) {
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got, err := splitCoalescedMessages(tt.msgs, 2, mockGetGSOSize)
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if err != nil && !tt.wantErr {
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t.Fatalf("err: %v", err)
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}
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if got != tt.wantNumEval {
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t.Fatalf("got to eval: %d want: %d", got, tt.wantNumEval)
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}
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for i, msg := range tt.msgs {
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if msg.N != tt.wantMsgLens[i] {
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t.Fatalf("msg[%d].N: %d want: %d", i, msg.N, tt.wantMsgLens[i])
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}
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}
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})
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}
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}
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