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ofnetPolicy.go
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ofnetPolicy.go
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/***
Copyright 2014 Cisco Systems Inc. All rights reserved.
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
package ofnet
import (
"errors"
"net"
"net/rpc"
"reflect"
"sync"
log "github.com/Sirupsen/logrus"
"github.com/contiv/ofnet/ofctrl"
)
// This file has security policy rule implementation
const TCP_FLAG_ACK = 0x10
const TCP_FLAG_SYN = 0x2
// PolicyRule has info about single rule
type PolicyRule struct {
Rule *OfnetPolicyRule // rule definition
flow *ofctrl.Flow // Flow associated with the flow
}
// PolicyAgent is an instance of a policy agent
type PolicyAgent struct {
agent *OfnetAgent // Pointer back to ofnet agent that owns this
ofSwitch *ofctrl.OFSwitch // openflow switch we are talking to
dstGrpTable *ofctrl.Table // dest group lookup table
policyTable *ofctrl.Table // Policy rule lookup table
nextTable *ofctrl.Table // Next table to goto for accepted packets
Rules map[string]*PolicyRule // rules database
dstGrpFlow map[string]*ofctrl.Flow // FLow entries for dst group lookup
mutex sync.RWMutex
}
// NewPolicyMgr Creates a new policy manager
func NewPolicyAgent(agent *OfnetAgent, rpcServ *rpc.Server) *PolicyAgent {
policyAgent := new(PolicyAgent)
// initialize
policyAgent.agent = agent
policyAgent.Rules = make(map[string]*PolicyRule)
policyAgent.dstGrpFlow = make(map[string]*ofctrl.Flow)
// Register for Master add/remove events
rpcServ.Register(policyAgent)
// done
return policyAgent
}
// Handle switch connected notification
func (self *PolicyAgent) SwitchConnected(sw *ofctrl.OFSwitch) {
// Keep a reference to the switch
self.ofSwitch = sw
log.Infof("Switch connected(policyAgent).")
}
// Handle switch disconnected notification
func (self *PolicyAgent) SwitchDisconnected(sw *ofctrl.OFSwitch) {
// FIXME: ??
}
// Metadata Format
// 6 3 3 1 1 0 0
// 3 1 0 6 5 1 0
// +-------------+-+---------------+---------------+-+
// | ....U |U| SrcGrp | DstGrp |V|
// +-------------+-+---------------+---------------+-+
//
// U: Unused
// SrcGrp: Source endpoint group
// DstGrp: Destination endpoint group
// V: Received on VTEP Port. Dont flood back to VTEP ports.
//
// DstGroupMetadata returns metadata for dst group
func DstGroupMetadata(groupId int) (uint64, uint64) {
metadata := uint64(groupId) << 1
metadataMask := uint64(0xfffe)
metadata = metadata & metadataMask
return metadata, metadataMask
}
// SrcGroupMetadata returns metadata for src group
func SrcGroupMetadata(groupId int) (uint64, uint64) {
metadata := uint64(groupId) << 16
metadataMask := uint64(0x7fff0000)
metadata = metadata & metadataMask
return metadata, metadataMask
}
// ruleIsSame check if two rules are identical
func ruleIsSame(r1, r2 *OfnetPolicyRule) bool {
return reflect.DeepEqual(*r1, *r2)
}
// AddEndpoint adds an endpoint to dst group lookup
func (self *PolicyAgent) AddEndpoint(endpoint *OfnetEndpoint) error {
self.mutex.RLock()
if self.dstGrpFlow[endpoint.EndpointID] != nil {
// FIXME: handle this as Update
log.Warnf("DstGroup for endpoint %+v already exists", endpoint)
self.mutex.RUnlock()
return nil
}
self.mutex.RUnlock()
log.Infof("Adding dst group entry for endpoint: %+v", endpoint)
vrf := self.agent.getvlanVrf(endpoint.Vlan)
if vrf == nil {
log.Errorf("Error finding vrf for vlan %d", endpoint.Vlan)
return errors.New("Error finding vrf for vlan")
}
log.Infof("Recevied add endpoint for vrf %v", *vrf)
self.agent.vrfMutex.RLock()
vrfid := self.agent.vrfNameIdMap[*vrf]
self.agent.vrfMutex.RUnlock()
vrfMetadata, vrfMetadataMask := Vrfmetadata(*vrfid)
// Install the Dst group lookup flow
dstGrpFlow, err := self.dstGrpTable.NewFlow(ofctrl.FlowMatch{
Priority: FLOW_MATCH_PRIORITY,
Ethertype: 0x0800,
IpDa: &endpoint.IpAddr,
Metadata: &vrfMetadata,
MetadataMask: &vrfMetadataMask,
})
if err != nil {
log.Errorf("Error adding dstGroup flow for %v. Err: %v", endpoint.IpAddr, err)
return err
}
// Format the metadata
metadata, metadataMask := DstGroupMetadata(endpoint.EndpointGroup)
// Set dst GroupId
err = dstGrpFlow.SetMetadata(metadata, metadataMask)
if err != nil {
log.Errorf("Error setting metadata %v for flow {%+v}. Err: %v", metadata, dstGrpFlow, err)
return err
}
// Go to policy Table
err = dstGrpFlow.Next(self.policyTable)
if err != nil {
log.Errorf("Error installing flow {%+v}. Err: %v", dstGrpFlow, err)
return err
}
// save the Flow
self.mutex.Lock()
self.dstGrpFlow[endpoint.EndpointID] = dstGrpFlow
self.mutex.Unlock()
return nil
}
// DelEndpoint deletes an endpoint from dst group lookup
func (self *PolicyAgent) DelEndpoint(endpoint *OfnetEndpoint) error {
// find the dst group flow
self.mutex.RLock()
dstGrp := self.dstGrpFlow[endpoint.EndpointID]
self.mutex.RUnlock()
if dstGrp == nil {
return errors.New("Dst Group not found")
}
// delete the Flow
err := dstGrp.Delete()
if err != nil {
log.Errorf("Error deleting dst group for endpoint: %+v. Err: %v", endpoint, err)
}
// delete the cache
self.mutex.Lock()
delete(self.dstGrpFlow, endpoint.EndpointID)
self.mutex.Unlock()
return nil
}
// AddIpv6Endpoint adds an endpoint to dst group lookup
func (self *PolicyAgent) AddIpv6Endpoint(endpoint *OfnetEndpoint) error {
if endpoint.Ipv6Addr == nil {
log.Warnf("DstGroup for IPv6 endpoint %+v without Ipv6Addr", endpoint)
return nil
}
ipv6EpId := self.agent.getEndpointIdByIpVlan(endpoint.Ipv6Addr, endpoint.Vlan)
self.mutex.RLock()
if self.dstGrpFlow[ipv6EpId] != nil {
// FIXME: handle this as Update
log.Warnf("DstGroup for IPv6 endpoint %+v already exists", endpoint)
self.mutex.RUnlock()
return nil
}
self.mutex.RUnlock()
log.Infof("Adding dst group entry for endpoint: %+v", endpoint)
vrf := self.agent.getvlanVrf(endpoint.Vlan)
if vrf == nil {
log.Errorf("Error finding vrf for vlan %d", endpoint.Vlan)
return errors.New("Error finding vrf for vlan")
}
log.Infof("Recevied add endpoint for vrf %v", *vrf)
self.agent.vrfMutex.RLock()
vrfid := self.agent.vrfNameIdMap[*vrf]
self.agent.vrfMutex.RUnlock()
vrfMetadata, vrfMetadataMask := Vrfmetadata(*vrfid)
// Install the Dst group lookup flow
dstGrpFlow, err := self.dstGrpTable.NewFlow(ofctrl.FlowMatch{
Priority: FLOW_MATCH_PRIORITY,
Ethertype: 0x86DD,
Ipv6Da: &endpoint.Ipv6Addr,
Metadata: &vrfMetadata,
MetadataMask: &vrfMetadataMask,
})
if err != nil {
log.Errorf("Error adding dstGroup flow for %v. Err: %v", endpoint.IpAddr, err)
return err
}
// Format the metadata
metadata, metadataMask := DstGroupMetadata(endpoint.EndpointGroup)
// Set dst GroupId
err = dstGrpFlow.SetMetadata(metadata, metadataMask)
if err != nil {
log.Errorf("Error setting metadata %v for flow {%+v}. Err: %v", metadata, dstGrpFlow, err)
return err
}
// Go to policy Table
err = dstGrpFlow.Next(self.policyTable)
if err != nil {
log.Errorf("Error installing flow {%+v}. Err: %v", dstGrpFlow, err)
return err
}
// save the Flow
self.mutex.Lock()
self.dstGrpFlow[ipv6EpId] = dstGrpFlow
self.mutex.Unlock()
return nil
}
// DelIpv6Endpoint deletes an endpoint from dst group lookup
func (self *PolicyAgent) DelIpv6Endpoint(endpoint *OfnetEndpoint) error {
// find the dst group IPv6 flow
ipv6EpId := self.agent.getEndpointIdByIpVlan(endpoint.Ipv6Addr, endpoint.Vlan)
self.mutex.RLock()
dstGrp := self.dstGrpFlow[ipv6EpId]
if dstGrp == nil {
self.mutex.RUnlock()
return errors.New("Dst Group IPv6 Flow not found")
}
self.mutex.RUnlock()
// delete the Flow
err := dstGrp.Delete()
if err != nil {
log.Errorf("Error deleting dst group for IPv6 endpoint: %+v. Err: %v", endpoint, err)
}
// delete the cache
self.mutex.RLock()
delete(self.dstGrpFlow, ipv6EpId)
self.mutex.RUnlock()
return nil
}
// AddRule adds a security rule to policy table
func (self *PolicyAgent) AddRule(rule *OfnetPolicyRule, ret *bool) error {
var ipDa *net.IP = nil
var ipDaMask *net.IP = nil
var ipSa *net.IP = nil
var ipSaMask *net.IP = nil
var md *uint64 = nil
var mdm *uint64 = nil
var flag, flagMask uint16
var flagPtr, flagMaskPtr *uint16
var err error
// make sure switch is connected
if !self.agent.IsSwitchConnected() {
self.agent.WaitForSwitchConnection()
}
// check if we already have the rule
self.mutex.RLock()
if self.Rules[rule.RuleId] != nil {
oldRule := self.Rules[rule.RuleId].Rule
if ruleIsSame(oldRule, rule) {
self.mutex.RUnlock()
return nil
} else {
self.mutex.RUnlock()
log.Errorf("Rule already exists. new rule: {%+v}, old rule: {%+v}", rule, oldRule)
return errors.New("Rule already exists")
}
}
self.mutex.RUnlock()
log.Infof("Received AddRule: %+v", rule)
// Parse dst ip
if rule.DstIpAddr != "" {
ipDa, ipDaMask, err = ParseIPAddrMaskString(rule.DstIpAddr)
if err != nil {
log.Errorf("Error parsing dst ip %s. Err: %v", rule.DstIpAddr, err)
return err
}
}
// parse src ip
if rule.SrcIpAddr != "" {
ipSa, ipSaMask, err = ParseIPAddrMaskString(rule.SrcIpAddr)
if err != nil {
log.Errorf("Error parsing src ip %s. Err: %v", rule.SrcIpAddr, err)
return err
}
}
// parse source/dst endpoint groups
if rule.SrcEndpointGroup != 0 && rule.DstEndpointGroup != 0 {
srcMetadata, srcMetadataMask := SrcGroupMetadata(rule.SrcEndpointGroup)
dstMetadata, dstMetadataMask := DstGroupMetadata(rule.DstEndpointGroup)
metadata := srcMetadata | dstMetadata
metadataMask := srcMetadataMask | dstMetadataMask
md = &metadata
mdm = &metadataMask
} else if rule.SrcEndpointGroup != 0 {
srcMetadata, srcMetadataMask := SrcGroupMetadata(rule.SrcEndpointGroup)
md = &srcMetadata
mdm = &srcMetadataMask
} else if rule.DstEndpointGroup != 0 {
dstMetadata, dstMetadataMask := DstGroupMetadata(rule.DstEndpointGroup)
md = &dstMetadata
mdm = &dstMetadataMask
}
// Setup TCP flags
if rule.IpProtocol == 6 && rule.TcpFlags != "" {
switch rule.TcpFlags {
case "syn":
flag = TCP_FLAG_SYN
flagMask = TCP_FLAG_SYN
case "syn,ack":
flag = TCP_FLAG_ACK | TCP_FLAG_SYN
flagMask = TCP_FLAG_ACK | TCP_FLAG_SYN
case "ack":
flag = TCP_FLAG_ACK
flagMask = TCP_FLAG_ACK
case "syn,!ack":
flag = TCP_FLAG_SYN
flagMask = TCP_FLAG_ACK | TCP_FLAG_SYN
case "!syn,ack":
flag = TCP_FLAG_ACK
flagMask = TCP_FLAG_ACK | TCP_FLAG_SYN
default:
log.Errorf("Unknown TCP flags: %s, in rule: %+v", rule.TcpFlags, rule)
return errors.New("Unknown TCP flag")
}
flagPtr = &flag
flagMaskPtr = &flagMask
}
// Install the rule in policy table
ruleFlow, err := self.policyTable.NewFlow(ofctrl.FlowMatch{
Priority: uint16(FLOW_POLICY_PRIORITY_OFFSET + rule.Priority),
Ethertype: 0x0800,
IpDa: ipDa,
IpDaMask: ipDaMask,
IpSa: ipSa,
IpSaMask: ipSaMask,
IpProto: rule.IpProtocol,
TcpSrcPort: rule.SrcPort,
TcpDstPort: rule.DstPort,
UdpSrcPort: rule.SrcPort,
UdpDstPort: rule.DstPort,
Metadata: md,
MetadataMask: mdm,
TcpFlags: flagPtr,
TcpFlagsMask: flagMaskPtr,
})
if err != nil {
log.Errorf("Error adding flow for rule {%v}. Err: %v", rule, err)
return err
}
// Point it to next table
if rule.Action == "allow" {
err = ruleFlow.Next(self.nextTable)
if err != nil {
log.Errorf("Error installing flow {%+v}. Err: %v", ruleFlow, err)
return err
}
} else if rule.Action == "deny" {
err = ruleFlow.Next(self.ofSwitch.DropAction())
if err != nil {
log.Errorf("Error installing flow {%+v}. Err: %v", ruleFlow, err)
return err
}
} else {
log.Errorf("Unknown action in rule {%+v}", rule)
return errors.New("Unknown action in rule")
}
// save the rule
pRule := PolicyRule{
Rule: rule,
flow: ruleFlow,
}
self.mutex.Lock()
self.Rules[rule.RuleId] = &pRule
self.mutex.Unlock()
return nil
}
// DelRule deletes a security rule from policy table
func (self *PolicyAgent) DelRule(rule *OfnetPolicyRule, ret *bool) error {
log.Infof("Received DelRule: %+v", rule)
// Gte the rule
self.mutex.Lock()
defer self.mutex.Unlock()
cache := self.Rules[rule.RuleId]
if cache == nil {
log.Errorf("Could not find rule: %+v", rule)
return errors.New("rule not found")
}
// Delete the Flow
err := cache.flow.Delete()
if err != nil {
log.Errorf("Error deleting flow: %+v. Err: %v", rule, err)
}
// Delete the rule from cache
delete(self.Rules, rule.RuleId)
return nil
}
// InitTables initializes policy table on the switch
func (self *PolicyAgent) InitTables(nextTblId uint8) error {
sw := self.ofSwitch
nextTbl := sw.GetTable(nextTblId)
if nextTbl == nil {
log.Fatalf("Error getting table id: %d", nextTblId)
}
self.nextTable = nextTbl
// Create all tables
self.dstGrpTable, _ = sw.NewTable(DST_GRP_TBL_ID)
self.policyTable, _ = sw.NewTable(POLICY_TBL_ID)
// Packets that miss dest group lookup still go to policy table
validPktFlow, _ := self.dstGrpTable.NewFlow(ofctrl.FlowMatch{
Priority: FLOW_MISS_PRIORITY,
})
validPktFlow.Next(self.policyTable)
// Packets that didnt match any rule go to next table
vlanMissFlow, _ := self.policyTable.NewFlow(ofctrl.FlowMatch{
Priority: FLOW_MISS_PRIORITY,
})
vlanMissFlow.Next(nextTbl)
return nil
}