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types.go
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/
types.go
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package policy
import (
"errors"
"github.com/docker/go-connections/nat"
"go.aporeto.io/trireme-lib/common"
)
const (
// DefaultNamespace is the default namespace for applying policy
DefaultNamespace = "bridge"
)
// constants for various actions
const (
actionReject = "reject"
actionAccept = "accept"
actionPassthrough = "passthrough"
actionEncrypt = "encrypt"
actionLog = "log"
oactionContinue = "continue"
oactionApply = "apply"
actionNone = "none"
actionUnknown = "unknown"
)
// Operator defines the operation between your key and value.
type Operator string
const (
// Equal is the equal operator
Equal = "="
// NotEqual is the not equal operator
NotEqual = "=!"
// KeyExists is the key=* operator
KeyExists = "*"
// KeyNotExists means that the key doesnt exist in the incoming tags
KeyNotExists = "!*"
)
// ActionType is the action that can be applied to a flow.
type ActionType byte
// Accepted returns if the action mask contains the Accepted mask.
func (f ActionType) Accepted() bool {
return f&Accept > 0
}
// Rejected returns if the action mask contains the Rejected mask.
func (f ActionType) Rejected() bool {
return f&Reject > 0
}
// Encrypted returns if the action mask contains the Encrypted mask.
func (f ActionType) Encrypted() bool {
return f&Encrypt > 0
}
// Logged returns if the action mask contains the Logged mask.
func (f ActionType) Logged() bool {
return f&Log > 0
}
// Observed returns if the action mask contains the Observed mask.
func (f ActionType) Observed() bool {
return f&Observe > 0
}
// ActionString returns if the action if accepted of rejected as a long string.
func (f ActionType) ActionString() string {
if f.Accepted() && !f.Rejected() {
return actionAccept
}
if !f.Accepted() && f.Rejected() {
return actionReject
}
return actionPassthrough
}
func (f ActionType) String() string {
switch f {
case Accept:
return actionAccept
case Reject:
return actionReject
case Encrypt:
return actionEncrypt
case Log:
return actionLog
}
return actionUnknown
}
const (
// Accept is the accept action
Accept ActionType = 0x1
// Reject is the reject action
Reject ActionType = 0x2
// Encrypt instructs data to be encrypted
Encrypt ActionType = 0x4
// Log instructs the datapath to log the IP addresses
Log ActionType = 0x8
// Observe instructs the datapath to observe policy results
Observe ActionType = 0x10
)
// ObserveActionType is the action that can be applied to a flow for an observation rule.
type ObserveActionType byte
// Observed returns true if any observed action was found.
func (f ObserveActionType) Observed() bool {
return f != ObserveNone
}
// ObserveContinue returns if the action of observation rule is continue.
func (f ObserveActionType) ObserveContinue() bool {
return f&ObserveContinue > 0
}
// ObserveApply returns if the action of observation rule is allow.
func (f ObserveActionType) ObserveApply() bool {
return f&ObserveApply > 0
}
func (f ObserveActionType) String() string {
switch f {
case ObserveNone:
return actionNone
case ObserveContinue:
return oactionContinue
case ObserveApply:
return oactionApply
}
return actionUnknown
}
// Observe actions are used in conjunction with action.
const (
// ObserveNone specifies if any observation was made or not.
ObserveNone ObserveActionType = 0x0
// ObserveContinue is used to not take any action on packet and is deferred to
// an actual rule with accept or deny action.
ObserveContinue ObserveActionType = 0x1
// ObserveApply is used to apply action to packets hitting this rule.
ObserveApply ObserveActionType = 0x2
)
// FlowPolicy captures the policy for a particular flow
type FlowPolicy struct {
ObserveAction ObserveActionType
Action ActionType
ServiceID string
PolicyID string
}
// LogPrefix is the prefix used in nf-log action. It must be less than
func (f *FlowPolicy) LogPrefix(contextID string) string {
prefix := contextID + ":" + f.PolicyID + ":" + f.ServiceID + f.EncodedActionString()
return prefix
}
// DefaultLogPrefix return the prefix used in nf-log action for default rule.
func DefaultLogPrefix(contextID string) string {
return contextID + ":default:default" + "6"
}
// EncodedActionString is used to encode observed action as well as action
func (f *FlowPolicy) EncodedActionString() string {
var e string
if f.Action.Accepted() && !f.Action.Rejected() {
if f.ObserveAction.ObserveContinue() {
e = "1"
} else if f.ObserveAction.ObserveApply() {
e = "2"
} else {
e = "3"
}
} else if !f.Action.Accepted() && f.Action.Rejected() {
if f.ObserveAction.ObserveContinue() {
e = "4"
} else if f.ObserveAction.ObserveApply() {
e = "5"
} else {
e = "6"
}
} else {
if f.ObserveAction.ObserveContinue() {
e = "7"
} else if f.ObserveAction.ObserveApply() {
e = "8"
} else {
e = "9"
}
}
return e
}
// EncodedStringToAction returns action and observed action from encoded string.
func EncodedStringToAction(e string) (ActionType, ObserveActionType, error) {
switch e {
case "1":
return Observe | Accept, ObserveContinue, nil
case "2":
return Observe | Accept, ObserveApply, nil
case "3":
return Accept, ObserveNone, nil
case "4":
return Observe | Reject, ObserveContinue, nil
case "5":
return Observe | Reject, ObserveApply, nil
case "6":
return Reject, ObserveNone, nil
case "7":
return Observe, ObserveContinue, nil
case "8":
return Observe, ObserveApply, nil
case "9":
return 0, ObserveNone, nil
}
return 0, 0, errors.New("Invalid encoding")
}
// IPRule holds IP rules to external services
type IPRule struct {
Address string
Port string
Protocol string
Policy *FlowPolicy
}
// IPRuleList is a list of IP rules
type IPRuleList []IPRule
// Copy creates a clone of the IP rule list
func (l IPRuleList) Copy() IPRuleList {
list := make(IPRuleList, len(l))
for i, v := range l {
list[i] = v
}
return list
}
// KeyValueOperator describes an individual matching rule
type KeyValueOperator struct {
Key string
Value []string
Operator Operator
}
// TagSelector info describes a tag selector key Operator value
type TagSelector struct {
Clause []KeyValueOperator
Policy *FlowPolicy
}
// TagSelectorList defines a list of TagSelectors
type TagSelectorList []TagSelector
// Copy returns a copy of the TagSelectorList
func (t TagSelectorList) Copy() TagSelectorList {
list := make(TagSelectorList, len(t))
for i, v := range t {
list[i] = v
}
return list
}
// ExtendedMap is a common map with additional functions
type ExtendedMap map[string]string
// Copy copies an ExtendedMap
func (s ExtendedMap) Copy() ExtendedMap {
c := ExtendedMap{}
for k, v := range s {
c[k] = v
}
return c
}
// Get does a lookup in the map
func (s ExtendedMap) Get(key string) (string, bool) {
value, ok := s[key]
return value, ok
}
// OptionsType is a set of options that can be passed with a policy request
type OptionsType struct {
// CgroupName is the name of the cgroup
CgroupName string
// CgroupMark is the tag of the cgroup
CgroupMark string
// UserID is the user ID if it exists
UserID string
// Services is the list of services of interest
Services []common.Service
// ProxyPort is the port on which the proxy listens
ProxyPort string
// PolicyExtensions is policy resolution extensions
PolicyExtensions interface{}
// PortMap maps container port -> host ports.
PortMap map[nat.Port][]string
}
// ProxiedServicesInfo holds the info for a proxied service.
type ProxiedServicesInfo struct {
// PublicIPPortPair is an array public ip,port of load balancer or passthrough object per pu
PublicIPPortPair []string
// PrivateIPPortPair is an array of private ip,port of load balancer or passthrough object per pu
PrivateIPPortPair []string
}
// AddPublicIPPortPair add a ip port pair to proxied services
func (p *ProxiedServicesInfo) AddPublicIPPortPair(ipportpair string) {
p.PublicIPPortPair = append(p.PublicIPPortPair, ipportpair)
}
// AddPrivateIPPortPair adds a private ip port pair
func (p *ProxiedServicesInfo) AddPrivateIPPortPair(ipportpair string) {
p.PrivateIPPortPair = append(p.PrivateIPPortPair, ipportpair)
}