netmaker/logic/networks.go

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package logic
import (
"encoding/json"
"errors"
"fmt"
"net"
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"sort"
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"strings"
"sync"
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"github.com/c-robinson/iplib"
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validator "github.com/go-playground/validator/v10"
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"github.com/gravitl/netmaker/database"
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"github.com/gravitl/netmaker/logger"
"github.com/gravitl/netmaker/logic/acls/nodeacls"
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"github.com/gravitl/netmaker/models"
"github.com/gravitl/netmaker/validation"
)
// GetNetworks - returns all networks from database
func GetNetworks() ([]models.Network, error) {
var networks []models.Network
collection, err := database.FetchRecords(database.NETWORKS_TABLE_NAME)
if err != nil {
return networks, err
}
for _, value := range collection {
var network models.Network
if err := json.Unmarshal([]byte(value), &network); err != nil {
return networks, err
}
// add network our array
networks = append(networks, network)
}
return networks, err
}
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// DeleteNetwork - deletes a network
func DeleteNetwork(network string) error {
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// remove ACL for network
err := nodeacls.DeleteACLContainer(nodeacls.NetworkID(network))
if err != nil {
logger.Log(1, "failed to remove the node acls during network delete for network,", network)
}
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nodeCount, err := GetNetworkNonServerNodeCount(network)
if nodeCount == 0 || database.IsEmptyRecord(err) {
// delete server nodes first then db records
return database.DeleteRecord(database.NETWORKS_TABLE_NAME, network)
}
return errors.New("node check failed. All nodes must be deleted before deleting network")
}
// CreateNetwork - creates a network in database
func CreateNetwork(network models.Network) (models.Network, error) {
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if network.AddressRange != "" {
normalizedRange, err := NormalizeCIDR(network.AddressRange)
if err != nil {
return models.Network{}, err
}
network.AddressRange = normalizedRange
}
if network.AddressRange6 != "" {
normalizedRange, err := NormalizeCIDR(network.AddressRange6)
if err != nil {
return models.Network{}, err
}
network.AddressRange6 = normalizedRange
}
if !IsNetworkCIDRUnique(network.GetNetworkNetworkCIDR4(), network.GetNetworkNetworkCIDR6()) {
return models.Network{}, errors.New("network cidr already in use")
}
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network.SetDefaults()
network.SetNodesLastModified()
network.SetNetworkLastModified()
err := ValidateNetwork(&network, false)
if err != nil {
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//logic.ReturnErrorResponse(w, r, logic.FormatError(err, "badrequest"))
return models.Network{}, err
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}
data, err := json.Marshal(&network)
if err != nil {
return models.Network{}, err
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}
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if err = database.Insert(network.NetID, string(data), database.NETWORKS_TABLE_NAME); err != nil {
return models.Network{}, err
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}
return network, nil
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}
// GetNetworkNonServerNodeCount - get number of network non server nodes
func GetNetworkNonServerNodeCount(networkName string) (int, error) {
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nodes, err := GetNetworkNodes(networkName)
return len(nodes), err
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}
func IsNetworkCIDRUnique(cidr4 *net.IPNet, cidr6 *net.IPNet) bool {
networks, err := GetNetworks()
if err != nil {
return database.IsEmptyRecord(err)
}
for _, network := range networks {
if intersect(network.GetNetworkNetworkCIDR4(), cidr4) ||
intersect(network.GetNetworkNetworkCIDR6(), cidr6) {
return false
}
}
return true
}
func intersect(n1, n2 *net.IPNet) bool {
if n1 == nil || n2 == nil {
return false
}
return n2.Contains(n1.IP) || n1.Contains(n2.IP)
}
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// GetParentNetwork - get parent network
func GetParentNetwork(networkname string) (models.Network, error) {
var network models.Network
networkData, err := database.FetchRecord(database.NETWORKS_TABLE_NAME, networkname)
if err != nil {
return network, err
}
if err = json.Unmarshal([]byte(networkData), &network); err != nil {
return models.Network{}, err
}
return network, nil
}
// GetNetworkSettings - get parent network
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func GetNetworkSettings(networkname string) (models.Network, error) {
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var network models.Network
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networkData, err := database.FetchRecord(database.NETWORKS_TABLE_NAME, networkname)
if err != nil {
return network, err
}
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if err = json.Unmarshal([]byte(networkData), &network); err != nil {
return models.Network{}, err
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}
return network, nil
}
// UniqueAddress - get a unique ipv4 address
func UniqueAddress(networkName string, reverse bool) (net.IP, error) {
add := net.IP{}
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var network models.Network
network, err := GetParentNetwork(networkName)
if err != nil {
logger.Log(0, "UniqueAddressServer encountered an error")
return add, err
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}
if network.IsIPv4 == "no" {
return add, fmt.Errorf("IPv4 not active on network " + networkName)
}
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//ensure AddressRange is valid
if _, _, err := net.ParseCIDR(network.AddressRange); err != nil {
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logger.Log(0, "UniqueAddress encountered an error")
return add, err
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}
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net4 := iplib.Net4FromStr(network.AddressRange)
newAddrs := net4.FirstAddress()
if reverse {
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newAddrs = net4.LastAddress()
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}
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for {
if IsIPUnique(networkName, newAddrs.String(), database.NODES_TABLE_NAME, false) &&
IsIPUnique(networkName, newAddrs.String(), database.EXT_CLIENT_TABLE_NAME, false) {
return newAddrs, nil
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}
if reverse {
newAddrs, err = net4.PreviousIP(newAddrs)
} else {
newAddrs, err = net4.NextIP(newAddrs)
}
if err != nil {
break
}
}
return add, errors.New("ERROR: No unique addresses available. Check network subnet")
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}
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// IsIPUnique - checks if an IP is unique
func IsIPUnique(network string, ip string, tableName string, isIpv6 bool) bool {
isunique := true
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if tableName == database.NODES_TABLE_NAME {
nodes, err := GetNetworkNodes(network)
if err != nil {
return isunique
}
for _, node := range nodes {
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if isIpv6 {
if node.Address6.IP.String() == ip && node.Network == network {
return false
}
} else {
if node.Address.IP.String() == ip && node.Network == network {
return false
}
}
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}
} else if tableName == database.EXT_CLIENT_TABLE_NAME {
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extClients, err := GetNetworkExtClients(network)
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if err != nil {
return isunique
}
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for _, extClient := range extClients { // filter
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if isIpv6 {
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if (extClient.Address6 == ip) && extClient.Network == network {
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return false
}
} else {
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if (extClient.Address == ip) && extClient.Network == network {
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return false
}
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}
}
}
return isunique
}
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// UniqueAddress6 - see if ipv6 address is unique
func UniqueAddress6(networkName string, reverse bool) (net.IP, error) {
add := net.IP{}
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var network models.Network
network, err := GetParentNetwork(networkName)
if err != nil {
fmt.Println("Network Not Found")
return add, err
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}
if network.IsIPv6 == "no" {
return add, fmt.Errorf("IPv6 not active on network " + networkName)
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}
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//ensure AddressRange is valid
if _, _, err := net.ParseCIDR(network.AddressRange6); err != nil {
return add, err
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}
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net6 := iplib.Net6FromStr(network.AddressRange6)
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newAddrs, err := net6.NextIP(net6.FirstAddress())
if reverse {
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newAddrs, err = net6.PreviousIP(net6.LastAddress())
}
if err != nil {
return add, err
}
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for {
if IsIPUnique(networkName, newAddrs.String(), database.NODES_TABLE_NAME, true) &&
IsIPUnique(networkName, newAddrs.String(), database.EXT_CLIENT_TABLE_NAME, true) {
return newAddrs, nil
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}
if reverse {
newAddrs, err = net6.PreviousIP(newAddrs)
} else {
newAddrs, err = net6.NextIP(newAddrs)
}
if err != nil {
break
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}
}
return add, errors.New("ERROR: No unique IPv6 addresses available. Check network subnet")
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}
// IsNetworkNameUnique - checks to see if any other networks have the same name (id)
func IsNetworkNameUnique(network *models.Network) (bool, error) {
isunique := true
dbs, err := GetNetworks()
if err != nil && !database.IsEmptyRecord(err) {
return false, err
}
for i := 0; i < len(dbs); i++ {
if network.NetID == dbs[i].NetID {
isunique = false
}
}
return isunique, nil
}
// UpdateNetwork - updates a network with another network's fields
func UpdateNetwork(currentNetwork *models.Network, newNetwork *models.Network) (bool, bool, bool, error) {
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if err := ValidateNetwork(newNetwork, true); err != nil {
return false, false, false, err
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}
if newNetwork.NetID == currentNetwork.NetID {
hasrangeupdate4 := newNetwork.AddressRange != currentNetwork.AddressRange
hasrangeupdate6 := newNetwork.AddressRange6 != currentNetwork.AddressRange6
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hasholepunchupdate := newNetwork.DefaultUDPHolePunch != currentNetwork.DefaultUDPHolePunch
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data, err := json.Marshal(newNetwork)
if err != nil {
return false, false, false, err
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}
newNetwork.SetNetworkLastModified()
err = database.Insert(newNetwork.NetID, string(data), database.NETWORKS_TABLE_NAME)
return hasrangeupdate4, hasrangeupdate6, hasholepunchupdate, err
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}
// copy values
return false, false, false, errors.New("failed to update network " + newNetwork.NetID + ", cannot change netid.")
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}
// GetNetwork - gets a network from database
func GetNetwork(networkname string) (models.Network, error) {
var network models.Network
networkData, err := database.FetchRecord(database.NETWORKS_TABLE_NAME, networkname)
if err != nil {
return network, err
}
if err = json.Unmarshal([]byte(networkData), &network); err != nil {
return models.Network{}, err
}
return network, nil
}
// NetIDInNetworkCharSet - checks if a netid of a network uses valid characters
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func NetIDInNetworkCharSet(network *models.Network) bool {
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charset := "abcdefghijklmnopqrstuvwxyz1234567890-_"
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for _, char := range network.NetID {
if !strings.Contains(charset, string(char)) {
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return false
}
}
return true
}
// Validate - validates fields of an network struct
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func ValidateNetwork(network *models.Network, isUpdate bool) error {
v := validator.New()
_ = v.RegisterValidation("netid_valid", func(fl validator.FieldLevel) bool {
inCharSet := NetIDInNetworkCharSet(network)
if isUpdate {
return inCharSet
}
isFieldUnique, _ := IsNetworkNameUnique(network)
return isFieldUnique && inCharSet
})
//
_ = v.RegisterValidation("checkyesorno", func(fl validator.FieldLevel) bool {
return validation.CheckYesOrNo(fl)
})
err := v.Struct(network)
if err != nil {
for _, e := range err.(validator.ValidationErrors) {
fmt.Println(e)
}
}
return err
}
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// ParseNetwork - parses a network into a model
func ParseNetwork(value string) (models.Network, error) {
var network models.Network
err := json.Unmarshal([]byte(value), &network)
return network, err
}
// SaveNetwork - save network struct to database
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func SaveNetwork(network *models.Network) error {
data, err := json.Marshal(network)
if err != nil {
return err
}
if err := database.Insert(network.NetID, string(data), database.NETWORKS_TABLE_NAME); err != nil {
return err
}
return nil
}
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// NetworkExists - check if network exists
func NetworkExists(name string) (bool, error) {
var network string
var err error
if network, err = database.FetchRecord(database.NETWORKS_TABLE_NAME, name); err != nil {
return false, err
}
return len(network) > 0, nil
}
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// SortNetworks - Sorts slice of Networks by their NetID alphabetically with numbers first
func SortNetworks(unsortedNetworks []models.Network) {
sort.Slice(unsortedNetworks, func(i, j int) bool {
return unsortedNetworks[i].NetID < unsortedNetworks[j].NetID
})
}
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// == Private ==
var addressLock = &sync.Mutex{}