337 lines
9.1 KiB
Go
337 lines
9.1 KiB
Go
package fingerprint
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import (
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"fmt"
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"net"
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"strings"
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log "github.com/hashicorp/go-hclog"
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sockaddr "github.com/hashicorp/go-sockaddr"
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"github.com/hashicorp/go-sockaddr/template"
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"github.com/hashicorp/nomad/client/config"
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"github.com/hashicorp/nomad/nomad/structs"
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)
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const (
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// defaultNetworkSpeed is the speed set if the network link speed could not
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// be detected.
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defaultNetworkSpeed = 1000
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// networkDisallowLinkLocalOption/Default are used to allow the operator to
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// decide how the fingerprinter handles an interface that only contains link
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// local addresses.
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networkDisallowLinkLocalOption = "fingerprint.network.disallow_link_local"
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networkDisallowLinkLocalDefault = false
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)
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// NetworkFingerprint is used to fingerprint the Network capabilities of a node
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type NetworkFingerprint struct {
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StaticFingerprinter
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logger log.Logger
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interfaceDetector NetworkInterfaceDetector
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}
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// An interface to isolate calls to various api in net package
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// This facilitates testing where we can implement
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// fake interfaces and addresses to test varios code paths
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type NetworkInterfaceDetector interface {
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Interfaces() ([]net.Interface, error)
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InterfaceByName(name string) (*net.Interface, error)
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Addrs(intf *net.Interface) ([]net.Addr, error)
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}
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// Implements the interface detector which calls net directly
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type DefaultNetworkInterfaceDetector struct {
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}
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func (b *DefaultNetworkInterfaceDetector) Interfaces() ([]net.Interface, error) {
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return net.Interfaces()
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}
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func (b *DefaultNetworkInterfaceDetector) InterfaceByName(name string) (*net.Interface, error) {
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return net.InterfaceByName(name)
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}
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func (b *DefaultNetworkInterfaceDetector) Addrs(intf *net.Interface) ([]net.Addr, error) {
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return intf.Addrs()
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}
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// NewNetworkFingerprint returns a new NetworkFingerprinter with the given
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// logger
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func NewNetworkFingerprint(logger log.Logger) Fingerprint {
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f := &NetworkFingerprint{logger: logger.Named("network"), interfaceDetector: &DefaultNetworkInterfaceDetector{}}
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return f
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}
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func (f *NetworkFingerprint) Fingerprint(req *FingerprintRequest, resp *FingerprintResponse) error {
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cfg := req.Config
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// Find the named interface
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intf, err := f.findInterface(cfg.NetworkInterface)
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switch {
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case err != nil:
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return fmt.Errorf("Error while detecting network interface %s during fingerprinting: %v",
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cfg.NetworkInterface,
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err)
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case intf == nil:
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// No interface could be found
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return nil
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}
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// Record the throughput of the interface
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var mbits int
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throughput := f.linkSpeed(intf.Name)
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if cfg.NetworkSpeed != 0 {
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mbits = cfg.NetworkSpeed
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f.logger.Debug("setting link speed to user configured speed", "mbits", mbits)
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} else if throughput != 0 {
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mbits = throughput
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f.logger.Debug("link speed detected", "interface", intf.Name, "mbits", mbits)
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} else {
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mbits = defaultNetworkSpeed
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f.logger.Debug("link speed could not be detected and no speed specified by user, falling back to default speed", "mbits", defaultNetworkSpeed)
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}
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// Create the network resources from the interface
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disallowLinkLocal := cfg.ReadBoolDefault(networkDisallowLinkLocalOption, networkDisallowLinkLocalDefault)
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nwResources, err := f.createNetworkResources(mbits, intf, disallowLinkLocal)
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if err != nil {
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return err
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}
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// COMPAT(0.10): Remove in 0.10
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resp.Resources = &structs.Resources{
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Networks: nwResources,
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}
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resp.NodeResources = &structs.NodeResources{
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Networks: nwResources,
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}
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for _, nwResource := range nwResources {
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f.logger.Debug("detected interface IP", "interface", intf.Name, "IP", nwResource.IP)
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}
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// Deprecated, setting the first IP as unique IP for the node
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if len(nwResources) > 0 {
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resp.AddAttribute("unique.network.ip-address", nwResources[0].IP)
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}
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ifaces, err := f.interfaceDetector.Interfaces()
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if err != nil {
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return err
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}
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nodeNetResources, err := f.createNodeNetworkResources(ifaces, disallowLinkLocal, req.Config)
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if err != nil {
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return err
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}
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resp.NodeResources.NodeNetworks = nodeNetResources
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resp.Detected = true
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return nil
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}
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func (f *NetworkFingerprint) createNodeNetworkResources(ifaces []net.Interface, disallowLinkLocal bool, conf *config.Config) ([]*structs.NodeNetworkResource, error) {
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nets := make([]*structs.NodeNetworkResource, 0)
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for _, iface := range ifaces {
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speed := f.linkSpeed(iface.Name)
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if speed == 0 {
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speed = defaultNetworkSpeed
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f.logger.Debug("link speed could not be detected, falling back to default speed", "mbits", defaultNetworkSpeed)
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}
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newNetwork := &structs.NodeNetworkResource{
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Mode: "host",
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Device: iface.Name,
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MacAddress: iface.HardwareAddr.String(),
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Speed: speed,
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}
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addrs, err := f.interfaceDetector.Addrs(&iface)
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if err != nil {
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return nil, err
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}
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var networkAddrs, linkLocalAddrs []structs.NodeNetworkAddress
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for _, addr := range addrs {
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// Find the IP Addr and the CIDR from the Address
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var ip net.IP
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var family structs.NodeNetworkAF
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switch v := (addr).(type) {
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case *net.IPNet:
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ip = v.IP
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case *net.IPAddr:
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ip = v.IP
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}
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if ip.To4() != nil {
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family = structs.NodeNetworkAF_IPv4
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} else {
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family = structs.NodeNetworkAF_IPv6
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}
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for _, alias := range deriveAddressAliases(iface, ip, conf) {
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newAddr := structs.NodeNetworkAddress{
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Address: ip.String(),
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Family: family,
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Alias: alias,
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}
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if newAddr.Alias != "" {
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if ip.IsLinkLocalUnicast() || ip.IsLinkLocalMulticast() {
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linkLocalAddrs = append(linkLocalAddrs, newAddr)
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} else {
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networkAddrs = append(networkAddrs, newAddr)
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}
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}
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}
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}
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if len(networkAddrs) == 0 && len(linkLocalAddrs) > 0 {
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if disallowLinkLocal {
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f.logger.Debug("ignoring detected link-local address on interface", "interface", iface.Name)
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} else {
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newNetwork.Addresses = linkLocalAddrs
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}
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} else {
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newNetwork.Addresses = networkAddrs
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}
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if len(newNetwork.Addresses) > 0 {
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nets = append(nets, newNetwork)
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}
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}
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return nets, nil
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}
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func deriveAddressAliases(iface net.Interface, addr net.IP, config *config.Config) (aliases []string) {
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for name, conf := range config.HostNetworks {
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var cidrMatch, ifaceMatch bool
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if conf.CIDR != "" {
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for _, cidr := range strings.Split(conf.CIDR, ",") {
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_, ipnet, err := net.ParseCIDR(cidr)
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if err != nil {
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continue
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}
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if ipnet.Contains(addr) {
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cidrMatch = true
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break
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}
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}
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} else {
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cidrMatch = true
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}
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if conf.Interface != "" {
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ifaceName, err := template.Parse(conf.Interface)
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if err != nil {
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continue
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}
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if ifaceName == iface.Name {
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ifaceMatch = true
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}
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} else {
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ifaceMatch = true
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}
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if cidrMatch && ifaceMatch {
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aliases = append(aliases, name)
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}
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}
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if len(aliases) > 0 {
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return
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}
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if config.NetworkInterface != "" {
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if config.NetworkInterface == iface.Name {
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return []string{"default"}
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}
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} else if ri, err := sockaddr.NewRouteInfo(); err == nil {
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defaultIface, err := ri.GetDefaultInterfaceName()
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if err == nil && iface.Name == defaultIface {
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return []string{"default"}
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}
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}
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return
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}
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// createNetworkResources creates network resources for every IP
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func (f *NetworkFingerprint) createNetworkResources(throughput int, intf *net.Interface, disallowLinkLocal bool) ([]*structs.NetworkResource, error) {
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// Find the interface with the name
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addrs, err := f.interfaceDetector.Addrs(intf)
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if err != nil {
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return nil, err
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}
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nwResources := make([]*structs.NetworkResource, 0)
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linkLocals := make([]*structs.NetworkResource, 0)
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for _, addr := range addrs {
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// Create a new network resource
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newNetwork := &structs.NetworkResource{
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Mode: "host",
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Device: intf.Name,
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MBits: throughput,
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}
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// Find the IP Addr and the CIDR from the Address
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var ip net.IP
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switch v := (addr).(type) {
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case *net.IPNet:
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ip = v.IP
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case *net.IPAddr:
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ip = v.IP
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}
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newNetwork.IP = ip.String()
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if ip.To4() != nil {
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newNetwork.CIDR = newNetwork.IP + "/32"
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} else {
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newNetwork.CIDR = newNetwork.IP + "/128"
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}
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// If the ip is link-local then we ignore it unless the user allows it
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// and we detect nothing else
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if ip.IsLinkLocalUnicast() || ip.IsLinkLocalMulticast() {
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linkLocals = append(linkLocals, newNetwork)
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continue
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}
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nwResources = append(nwResources, newNetwork)
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}
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if len(nwResources) == 0 && len(linkLocals) != 0 {
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if disallowLinkLocal {
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f.logger.Debug("ignoring detected link-local address on interface", "interface", intf.Name)
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return nwResources, nil
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}
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return linkLocals, nil
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}
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return nwResources, nil
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}
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// Returns the interface with the name passed by user. If the name is blank, we
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// use the interface attached to the default route.
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func (f *NetworkFingerprint) findInterface(deviceName string) (*net.Interface, error) {
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// If we aren't given a device, look it up by using the interface with the default route
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if deviceName == "" {
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ri, err := sockaddr.NewRouteInfo()
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if err != nil {
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return nil, err
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}
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defaultIfName, err := ri.GetDefaultInterfaceName()
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if err != nil {
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return nil, err
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}
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if defaultIfName == "" {
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return nil, fmt.Errorf("no network_interface given and failed to determine interface attached to default route")
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}
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deviceName = defaultIfName
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}
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return f.interfaceDetector.InterfaceByName(deviceName)
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}
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