automation-tests/storage/network.go

184 lines
3.8 KiB
Go

package docker
import (
"bytes"
"encoding/binary"
"errors"
"fmt"
"math/rand"
"net"
)
const (
networkBridgeIface = "lxcbr0"
)
type NetworkInterface struct {
IpAddress string
IpPrefixLen int
Gateway net.IP
}
func networkRange(network *net.IPNet) (net.IP, net.IP) {
netIP := network.IP.To4()
firstIP := netIP.Mask(network.Mask)
lastIP := net.IPv4(0, 0, 0, 0).To4()
for i := 0; i < len(lastIP); i++ {
lastIP[i] = netIP[i] | ^network.Mask[i]
}
return firstIP, lastIP
}
func ipToInt(ip net.IP) (int32, error) {
buf := bytes.NewBuffer(ip.To4())
var n int32
if err := binary.Read(buf, binary.BigEndian, &n); err != nil {
return 0, err
}
return n, nil
}
func intToIp(n int32) (net.IP, error) {
var buf bytes.Buffer
if err := binary.Write(&buf, binary.BigEndian, &n); err != nil {
return net.IP{}, err
}
ip := net.IPv4(0, 0, 0, 0).To4()
for i := 0; i < net.IPv4len; i++ {
ip[i] = buf.Bytes()[i]
}
return ip, nil
}
func networkSize(mask net.IPMask) (int32, error) {
for i := 0; i < net.IPv4len; i++ {
mask[i] = ^mask[i]
}
buf := bytes.NewBuffer(mask)
var n int32
if err := binary.Read(buf, binary.BigEndian, &n); err != nil {
return 0, err
}
return n + 1, nil
}
func allocateIPAddress(network *net.IPNet) (net.IP, error) {
ip, _ := networkRange(network)
netSize, err := networkSize(network.Mask)
if err != nil {
return net.IP{}, err
}
numIp, err := ipToInt(ip)
if err != nil {
return net.IP{}, err
}
numIp += rand.Int31n(netSize)
return intToIp(numIp)
}
func getBridgeAddr(name string) (net.Addr, error) {
iface, err := net.InterfaceByName(name)
if err != nil {
return nil, err
}
addrs, err := iface.Addrs()
if err != nil {
return nil, err
}
var addrs4 []net.Addr
for _, addr := range addrs {
ip := (addr.(*net.IPNet)).IP
if ip4 := ip.To4(); len(ip4) == net.IPv4len {
addrs4 = append(addrs4, addr)
}
}
switch {
case len(addrs4) == 0:
return nil, fmt.Errorf("Bridge %v has no IP addresses", name)
case len(addrs4) > 1:
return nil, fmt.Errorf("Bridge %v has more than 1 IPv4 address", name)
}
return addrs4[0], nil
}
func allocateNetwork() (*NetworkInterface, error) {
bridgeAddr, err := getBridgeAddr(networkBridgeIface)
if err != nil {
return nil, err
}
bridge := bridgeAddr.(*net.IPNet)
ipPrefixLen, _ := bridge.Mask.Size()
ip, err := allocateIPAddress(bridge)
if err != nil {
return nil, err
}
iface := &NetworkInterface{
IpAddress: ip.String(),
IpPrefixLen: ipPrefixLen,
Gateway: bridge.IP,
}
return iface, nil
}
type NetworkAllocator struct {
iface string
queue chan (net.IP)
}
func (alloc *NetworkAllocator) Acquire() (net.IP, error) {
select {
case ip := <-alloc.queue:
return ip, nil
default:
return net.IP{}, errors.New("No more IP addresses available")
}
return net.IP{}, nil
}
func (alloc *NetworkAllocator) Release(ip net.IP) error {
select {
case alloc.queue <- ip:
return nil
default:
return errors.New("Too many IP addresses have been released")
}
return nil
}
func (alloc *NetworkAllocator) PopulateFromNetwork(network *net.IPNet) error {
firstIP, _ := networkRange(network)
size, err := networkSize(network.Mask)
if err != nil {
return err
}
// The queue size should be the network size - 3
// -1 for the network address, -1 for the broadcast address and
// -1 for the gateway address
alloc.queue = make(chan net.IP, size-3)
for i := int32(1); i < size-1; i++ {
ipNum, err := ipToInt(firstIP)
if err != nil {
return err
}
ip, err := intToIp(ipNum + int32(i))
if err != nil {
return err
}
// Discard the network IP (that's the host IP address)
if ip.Equal(network.IP) {
continue
}
alloc.Release(ip)
}
return nil
}
func (alloc *NetworkAllocator) PopulateFromInterface(iface string) error {
addr, err := getBridgeAddr(iface)
if err != nil {
return err
}
network := addr.(*net.IPNet)
return alloc.PopulateFromNetwork(network)
}