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@ -1221,17 +1221,19 @@ func (c *Client) measureICMPLatency(ctx context.Context, reg *tailcfg.DERPRegion
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// Try pinging the first node in the region
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node := reg.Nodes[0]
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// Get the IPAddr by asking for the UDP address that we would use for
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// STUN and then using that IP.
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//
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// TODO(andrew-d): this is a bit ugly
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nodeAddr := c.nodeAddr(ctx, node, probeIPv4)
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if !nodeAddr.IsValid() {
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if node.STUNPort < 0 {
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// If STUN is disabled on a node, interpret that as meaning don't measure latency.
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return 0, false, nil
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}
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const unusedPort = 0
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stunAddrPort, ok := c.nodeAddrPort(ctx, node, unusedPort, probeIPv4)
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if !ok {
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return 0, false, fmt.Errorf("no address for node %v (v4-for-icmp)", node.Name)
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}
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ip := stunAddrPort.Addr()
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addr := &net.IPAddr{
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IP: net.IP(nodeAddr.Addr().AsSlice()),
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Zone: nodeAddr.Addr().Zone(),
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IP: net.IP(ip.AsSlice()),
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Zone: ip.Zone(),
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}
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// Use the unique node.Name field as the packet data to reduce the
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@ -1478,8 +1480,8 @@ func (rs *reportState) runProbe(ctx context.Context, dm *tailcfg.DERPMap, probe
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return
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}
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addr := c.nodeAddr(ctx, node, probe.proto)
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if !addr.IsValid() {
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addr, ok := c.nodeAddrPort(ctx, node, node.STUNPort, probe.proto)
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if !ok {
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c.logf("netcheck.runProbe: named node %q has no %v address", probe.node, probe.proto)
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return
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}
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@ -1528,12 +1530,17 @@ func (rs *reportState) runProbe(ctx context.Context, dm *tailcfg.DERPMap, probe
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c.vlogf("sent to %v", addr)
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}
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// proto is 4 or 6
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// If it returns nil, the node is skipped.
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func (c *Client) nodeAddr(ctx context.Context, n *tailcfg.DERPNode, proto probeProto) (ap netip.AddrPort) {
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port := cmp.Or(n.STUNPort, 3478)
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// nodeAddrPort returns the IP:port to send a STUN queries to for a given node.
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//
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// The provided port should be n.STUNPort, which may be negative to disable STUN.
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// If STUN is disabled for this node, it returns ok=false.
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// The port parameter is separate for the ICMP caller to provide a fake value.
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//
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// proto is [probeIPv4] or [probeIPv6].
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func (c *Client) nodeAddrPort(ctx context.Context, n *tailcfg.DERPNode, port int, proto probeProto) (_ netip.AddrPort, ok bool) {
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var zero netip.AddrPort
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if port < 0 || port > 1<<16-1 {
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return
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return zero, false
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}
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if n.STUNTestIP != "" {
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ip, err := netip.ParseAddr(n.STUNTestIP)
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@ -1546,7 +1553,7 @@ func (c *Client) nodeAddr(ctx context.Context, n *tailcfg.DERPNode, proto probeP
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if proto == probeIPv6 && ip.Is4() {
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return
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}
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return netip.AddrPortFrom(ip, uint16(port))
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return netip.AddrPortFrom(ip, uint16(port)), true
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}
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switch proto {
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@ -1554,20 +1561,20 @@ func (c *Client) nodeAddr(ctx context.Context, n *tailcfg.DERPNode, proto probeP
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if n.IPv4 != "" {
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ip, _ := netip.ParseAddr(n.IPv4)
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if !ip.Is4() {
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return
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return zero, false
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}
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return netip.AddrPortFrom(ip, uint16(port))
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return netip.AddrPortFrom(ip, uint16(port)), true
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}
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case probeIPv6:
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if n.IPv6 != "" {
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ip, _ := netip.ParseAddr(n.IPv6)
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if !ip.Is6() {
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return
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return zero, false
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}
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return netip.AddrPortFrom(ip, uint16(port))
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return netip.AddrPortFrom(ip, uint16(port)), true
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}
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default:
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return
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return zero, false
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}
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// The default lookup function if we don't set UseDNSCache is to use net.DefaultResolver.
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@ -1609,13 +1616,13 @@ func (c *Client) nodeAddr(ctx context.Context, n *tailcfg.DERPNode, proto probeP
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addrs, err := lookupIPAddr(ctx, n.HostName)
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for _, a := range addrs {
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if (a.Is4() && probeIsV4) || (a.Is6() && !probeIsV4) {
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return netip.AddrPortFrom(a, uint16(port))
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return netip.AddrPortFrom(a, uint16(port)), true
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}
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}
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if err != nil {
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c.logf("netcheck: DNS lookup error for %q (node %q region %v): %v", n.HostName, n.Name, n.RegionID, err)
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}
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return
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return zero, false
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}
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func regionHasDERPNode(r *tailcfg.DERPRegion) bool {
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