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Merge pull request #1 from kradalby/ip-pool-test
Fix empty ip issue and remove network/broadcast addresses
This commit is contained in:
commit
465669f650
1
api.go
1
api.go
@ -445,6 +445,7 @@ func (h *Headscale) handleAuthKey(c *gin.Context, db *gorm.DB, idKey wgkey.Key,
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log.Println(err)
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return
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}
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log.Printf("Assigning %s to %s", ip, m.Name)
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m.AuthKeyID = uint(pak.ID)
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m.IPAddress = ip.String()
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38
utils.go
38
utils.go
@ -79,21 +79,6 @@ func (h *Headscale) getAvailableIP() (*netaddr.IP, error) {
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return nil, err
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}
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// for _, ip := range usedIps {
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// nextIP := ip.Next()
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// if !containsIPs(usedIps, nextIP) && ipPrefix.Contains(nextIP) {
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// return &nextIP, nil
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// }
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// }
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// // If there are no IPs in use, we are starting fresh and
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// // can issue IPs from the beginning of the prefix.
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// ip := ipPrefix.IP()
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// return &ip, nil
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// return nil, fmt.Errorf("failed to find any available IP in %s", ipPrefix)
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// Get the first IP in our prefix
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ip := ipPrefix.IP()
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@ -102,8 +87,19 @@ func (h *Headscale) getAvailableIP() (*netaddr.IP, error) {
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return nil, fmt.Errorf("could not find any suitable IP in %s", ipPrefix)
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}
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// Some OS (including Linux) does not like when IPs ends with 0 or 255, which
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// is typically called network or broadcast. Lets avoid them and continue
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// to look when we get one of those traditionally reserved IPs.
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ipRaw := ip.As4()
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if ipRaw[3] == 0 || ipRaw[3] == 255 {
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ip = ip.Next()
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continue
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}
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if ip.IsZero() &&
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ip.IsLoopback() {
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ip = ip.Next()
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continue
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}
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@ -121,12 +117,14 @@ func (h *Headscale) getUsedIPs() ([]netaddr.IP, error) {
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ips := make([]netaddr.IP, len(addresses))
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for index, addr := range addresses {
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ip, err := netaddr.ParseIP(addr)
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if err != nil {
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return nil, fmt.Errorf("failed to parse ip from database, %w", err)
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}
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if addr != "" {
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ip, err := netaddr.ParseIP(addr)
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if err != nil {
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return nil, fmt.Errorf("failed to parse ip from database, %w", err)
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}
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ips[index] = ip
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ips[index] = ip
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}
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}
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return ips, nil
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@ -10,7 +10,7 @@ func (s *Suite) TestGetAvailableIp(c *check.C) {
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c.Assert(err, check.IsNil)
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expected := netaddr.MustParseIP("10.27.0.0")
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expected := netaddr.MustParseIP("10.27.0.1")
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c.Assert(ip.String(), check.Equals, expected.String())
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}
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@ -46,7 +46,7 @@ func (s *Suite) TestGetUsedIps(c *check.C) {
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c.Assert(err, check.IsNil)
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expected := netaddr.MustParseIP("10.27.0.0")
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expected := netaddr.MustParseIP("10.27.0.1")
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c.Assert(ips[0], check.Equals, expected)
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@ -91,20 +91,20 @@ func (s *Suite) TestGetMultiIp(c *check.C) {
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c.Assert(len(ips), check.Equals, 350)
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c.Assert(ips[0], check.Equals, netaddr.MustParseIP("10.27.0.0"))
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c.Assert(ips[9], check.Equals, netaddr.MustParseIP("10.27.0.9"))
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c.Assert(ips[300], check.Equals, netaddr.MustParseIP("10.27.1.44"))
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c.Assert(ips[0], check.Equals, netaddr.MustParseIP("10.27.0.1"))
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c.Assert(ips[9], check.Equals, netaddr.MustParseIP("10.27.0.10"))
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c.Assert(ips[300], check.Equals, netaddr.MustParseIP("10.27.1.47"))
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// Check that we can read back the IPs
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m1, err := h.GetMachineByID(1)
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c.Assert(err, check.IsNil)
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c.Assert(m1.IPAddress, check.Equals, netaddr.MustParseIP("10.27.0.0").String())
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c.Assert(m1.IPAddress, check.Equals, netaddr.MustParseIP("10.27.0.1").String())
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m50, err := h.GetMachineByID(50)
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c.Assert(err, check.IsNil)
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c.Assert(m50.IPAddress, check.Equals, netaddr.MustParseIP("10.27.0.49").String())
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c.Assert(m50.IPAddress, check.Equals, netaddr.MustParseIP("10.27.0.50").String())
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expectedNextIP := netaddr.MustParseIP("10.27.1.94")
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expectedNextIP := netaddr.MustParseIP("10.27.1.97")
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nextIP, err := h.getAvailableIP()
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c.Assert(err, check.IsNil)
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@ -117,3 +117,39 @@ func (s *Suite) TestGetMultiIp(c *check.C) {
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c.Assert(nextIP2.String(), check.Equals, expectedNextIP.String())
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}
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func (s *Suite) TestGetAvailableIpMachineWithoutIP(c *check.C) {
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ip, err := h.getAvailableIP()
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c.Assert(err, check.IsNil)
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expected := netaddr.MustParseIP("10.27.0.1")
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c.Assert(ip.String(), check.Equals, expected.String())
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n, err := h.CreateNamespace("test_ip")
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c.Assert(err, check.IsNil)
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pak, err := h.CreatePreAuthKey(n.Name, false, false, nil)
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c.Assert(err, check.IsNil)
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_, err = h.GetMachine("test", "testmachine")
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c.Assert(err, check.NotNil)
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m := Machine{
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ID: 0,
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MachineKey: "foo",
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NodeKey: "bar",
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DiscoKey: "faa",
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Name: "testmachine",
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NamespaceID: n.ID,
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Registered: true,
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RegisterMethod: "authKey",
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AuthKeyID: uint(pak.ID),
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}
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h.db.Save(&m)
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ip2, err := h.getAvailableIP()
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c.Assert(err, check.IsNil)
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c.Assert(ip2.String(), check.Equals, expected.String())
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}
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