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https://github.com/tailscale/tailscale.git
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114d1caf55
BPF links require that the owning FD remains open, this FD is embedded into the RawLink returned by the attach function and must live for the duration of the server. Updates ENG-4274 Signed-off-by: James Tucker <james@tailscale.com>
320 lines
9.3 KiB
Go
320 lines
9.3 KiB
Go
// Copyright (c) Tailscale Inc & AUTHORS
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// SPDX-License-Identifier: BSD-3-Clause
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package xdp
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import (
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"errors"
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"fmt"
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"log"
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"math"
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"net"
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"sync"
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"github.com/cilium/ebpf"
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"github.com/cilium/ebpf/link"
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"github.com/prometheus/client_golang/prometheus"
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"tailscale.com/util/multierr"
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)
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//go:generate go run github.com/cilium/ebpf/cmd/bpf2go -type config -type counters_key -type counter_key_af -type counter_key_packets_bytes_action -type counter_key_prog_end bpf xdp.c -- -I headers
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// STUNServer manages loading and unloading of an eBPF XDP program that serves
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// the STUN protocol. It exports statistics for the XDP program via its
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// implementation of the prometheus.Collector interface.
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type STUNServer struct {
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mu sync.Mutex
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objs *bpfObjects
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metrics *stunServerMetrics
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dstPort int
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dropSTUN bool
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link link.Link
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}
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//lint:ignore U1000 used in xdp_linux_test.go, which has a build tag
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type noAttachOption struct{}
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//lint:ignore u1000 Used in xdp_linux_test.go, which has a build tag
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func (n noAttachOption) apply(opts *stunServerOptions) {
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opts.noAttach = true
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}
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func (s *STUNServerConfig) validate() error {
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if len(s.DeviceName) < 1 {
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return errors.New("DeviceName is unspecified")
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}
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if s.DstPort < 0 || s.DstPort > math.MaxUint16 {
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return errors.New("DstPort is outside of uint16 bounds")
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}
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return nil
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}
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// NewSTUNServer returns an instance of a STUNServer that has attached the STUN
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// XDP program to the netdev and destination port specified by config.
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func NewSTUNServer(config *STUNServerConfig, opts ...STUNServerOption) (*STUNServer, error) {
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o := &stunServerOptions{}
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for _, opt := range opts {
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opt.apply(o)
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}
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err := config.validate()
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if err != nil {
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return nil, fmt.Errorf("invalid config: %v", err)
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}
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objs := new(bpfObjects)
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err = loadBpfObjects(objs, nil)
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if err != nil {
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var ve *ebpf.VerifierError
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if config.FullVerifierErr && errors.As(err, &ve) {
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err = fmt.Errorf("verifier error: %+v", ve)
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}
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return nil, fmt.Errorf("error loading XDP program: %w", err)
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}
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server := &STUNServer{
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objs: objs,
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metrics: newSTUNServerMetrics(),
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dstPort: config.DstPort,
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}
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var key uint32
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xdpConfig := &bpfConfig{
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DstPort: uint16(config.DstPort),
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}
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err = objs.ConfigMap.Put(key, xdpConfig)
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if err != nil {
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return nil, fmt.Errorf("error loading config in eBPF map: %w", err)
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}
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if o.noAttach {
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return server, nil
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}
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iface, err := net.InterfaceByName(config.DeviceName)
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if err != nil {
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return nil, fmt.Errorf("error finding device: %w", err)
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}
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link, err := link.AttachXDP(link.XDPOptions{
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Program: objs.XdpProgFunc,
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Interface: iface.Index,
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Flags: link.XDPAttachFlags(config.AttachFlags),
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})
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if err != nil {
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return nil, fmt.Errorf("error attaching XDP program to dev: %w", err)
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}
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server.link = link
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return server, nil
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}
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// Close unloads the XDP program and associated maps.
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func (s *STUNServer) Close() error {
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s.mu.Lock()
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defer s.mu.Unlock()
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var errs []error
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if s.link != nil {
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errs = append(errs, s.link.Close())
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}
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errs = append(errs, s.objs.Close())
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return multierr.New(errs...)
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}
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type stunServerMetrics struct {
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last map[bpfCountersKey]uint64
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registry *prometheus.Registry
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packets *prometheus.CounterVec
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bytes *prometheus.CounterVec
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}
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func newSTUNServerMetrics() *stunServerMetrics {
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last := make(map[bpfCountersKey]uint64)
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registry := prometheus.NewRegistry()
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packets := prometheus.NewCounterVec(prometheus.CounterOpts{
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Namespace: "xdp",
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Subsystem: "stun_server",
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Name: "packets_total",
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}, []string{addressFamilyKey, xdpOutcomeKey, progEndKey})
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bytes := prometheus.NewCounterVec(prometheus.CounterOpts{
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Namespace: "xdp",
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Subsystem: "stun_server",
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Name: "bytes_total",
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}, []string{addressFamilyKey, xdpOutcomeKey, progEndKey})
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registry.MustRegister(packets, bytes)
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return &stunServerMetrics{
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last: last,
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registry: registry,
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packets: packets,
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bytes: bytes,
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}
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}
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const (
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xdpOutcomeKey = "xdp_outcome"
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progEndKey = "prog_end"
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)
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const (
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xdpOutcomePass = "pass"
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xdpOutcomeAborted = "aborted"
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xdpOutcomeDrop = "drop"
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xdpOutcomeTX = "tx"
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)
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func sum(vals []uint64) uint64 {
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var s uint64
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for _, v := range vals {
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s += v
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}
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return s
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}
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const (
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addressFamilyKey = "address_family"
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)
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const (
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addressFamilyUnknown = "unknown"
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addressFamilyIPv4 = "ipv4"
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addressFamilyIPv6 = "ipv6"
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)
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var (
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// TODO(jwhited): go generate these maps or equivalent switch logic behind bpf2go
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pbaToOutcomeLV = map[bpfCounterKeyPacketsBytesAction]string{
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_PACKETS_PASS_TOTAL: xdpOutcomePass,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_BYTES_PASS_TOTAL: xdpOutcomePass,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_PACKETS_ABORTED_TOTAL: xdpOutcomeAborted,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_BYTES_ABORTED_TOTAL: xdpOutcomeAborted,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_PACKETS_TX_TOTAL: xdpOutcomeTX,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_BYTES_TX_TOTAL: xdpOutcomeTX,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_PACKETS_DROP_TOTAL: xdpOutcomeDrop,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_BYTES_DROP_TOTAL: xdpOutcomeDrop,
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}
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progEndLV = map[bpfCounterKeyProgEnd]string{
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bpfCounterKeyProgEndCOUNTER_KEY_END_UNSPECIFIED: "unspecified",
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bpfCounterKeyProgEndCOUNTER_KEY_END_UNEXPECTED_FIRST_STUN_ATTR: "unexpected_first_stun_attr",
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bpfCounterKeyProgEndCOUNTER_KEY_END_INVALID_UDP_CSUM: "invalid_udp_csum",
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bpfCounterKeyProgEndCOUNTER_KEY_END_INVALID_IP_CSUM: "invalid_ip_csum",
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bpfCounterKeyProgEndCOUNTER_KEY_END_NOT_STUN_PORT: "not_stun_port",
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bpfCounterKeyProgEndCOUNTER_KEY_END_INVALID_SW_ATTR_VAL: "invalid_sw_attr_val",
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bpfCounterKeyProgEndCOUNTER_KEY_END_DROP_STUN: "drop_stun",
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}
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packetCounterKeys = map[bpfCounterKeyPacketsBytesAction]bool{
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_PACKETS_PASS_TOTAL: true,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_PACKETS_ABORTED_TOTAL: true,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_PACKETS_TX_TOTAL: true,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_PACKETS_DROP_TOTAL: true,
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}
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//lint:ignore U1000 used in xdp_linux_test.go, which has a build tag
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bytesCounterKeys = map[bpfCounterKeyPacketsBytesAction]bool{
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_BYTES_PASS_TOTAL: true,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_BYTES_ABORTED_TOTAL: true,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_BYTES_TX_TOTAL: true,
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bpfCounterKeyPacketsBytesActionCOUNTER_KEY_BYTES_DROP_TOTAL: true,
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}
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)
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// increase returns the difference between "from" and "to" assuming they
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// originated from the same counter gathered at different times, i.e. "from"
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// was incremented by a non-negative value into "to". In the case of wraps
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// increase returns the difference between "to" and zero.
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func increase(from, to uint64) uint64 {
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if to >= from {
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return to - from
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}
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return to
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}
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func (s *stunServerMetrics) updateFromMapKV(key bpfCountersKey, vals []uint64) error {
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if key.Unused != 0 ||
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key.Af >= uint8(bpfCounterKeyAfCOUNTER_KEY_AF_LEN) ||
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key.Pba >= uint8(bpfCounterKeyPacketsBytesActionCOUNTER_KEY_PACKETS_BYTES_ACTION_LEN) ||
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key.ProgEnd >= uint8(bpfCounterKeyProgEndCOUNTER_KEY_END_LEN) {
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return fmt.Errorf("unexpected counter key: %+v", key)
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}
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previousAllCPUs := s.last[key]
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allCPUs := sum(vals)
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s.last[key] = allCPUs
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inc := increase(previousAllCPUs, allCPUs)
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if inc == 0 {
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return nil
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}
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var af string
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switch key.Af {
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case uint8(bpfCounterKeyAfCOUNTER_KEY_AF_UNKNOWN):
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af = addressFamilyUnknown
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case uint8(bpfCounterKeyAfCOUNTER_KEY_AF_IPV4):
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af = addressFamilyIPv4
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case uint8(bpfCounterKeyAfCOUNTER_KEY_AF_IPV6):
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af = addressFamilyIPv6
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}
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labels := prometheus.Labels{
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addressFamilyKey: af,
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xdpOutcomeKey: pbaToOutcomeLV[bpfCounterKeyPacketsBytesAction(key.Pba)],
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progEndKey: progEndLV[bpfCounterKeyProgEnd(key.ProgEnd)],
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}
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var metric *prometheus.CounterVec
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if packetCounterKeys[bpfCounterKeyPacketsBytesAction(key.Pba)] {
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metric = s.packets
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} else {
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metric = s.bytes
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}
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metric.With(labels).Add(float64(inc))
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return nil
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}
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// Describe is part of the implementation of prometheus.Collector.
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func (s *STUNServer) Describe(descCh chan<- *prometheus.Desc) {
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s.metrics.registry.Describe(descCh)
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}
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// Collect is part of the implementation of prometheus.Collector.
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func (s *STUNServer) Collect(metricCh chan<- prometheus.Metric) {
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err := s.updateMetrics()
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if err != nil {
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log.Printf("xdp: error collecting metrics: %v", err)
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}
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s.metrics.registry.Collect(metricCh)
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}
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func (s *STUNServer) SetDropSTUN(v bool) error {
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s.mu.Lock()
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defer s.mu.Unlock()
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dropSTUN := 0
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if v {
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dropSTUN = 1
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}
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xdpConfig := &bpfConfig{
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DstPort: uint16(s.dstPort),
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DropStun: uint16(dropSTUN),
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}
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var key uint32
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err := s.objs.ConfigMap.Put(key, xdpConfig)
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if err == nil {
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s.dropSTUN = v
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}
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return err
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}
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func (s *STUNServer) GetDropSTUN() bool {
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s.mu.Lock()
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defer s.mu.Unlock()
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return s.dropSTUN
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}
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func (s *STUNServer) updateMetrics() error {
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s.mu.Lock()
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defer s.mu.Unlock()
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iter := s.objs.CountersMap.Iterate()
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var key bpfCountersKey
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numCPU, err := ebpf.PossibleCPU()
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if err != nil {
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return err
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}
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vals := make([]uint64, numCPU)
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for iter.Next(&key, &vals) {
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err := s.metrics.updateFromMapKV(key, vals)
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if err != nil {
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return err
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}
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}
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return iter.Err()
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}
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