mirror of
https://github.com/netbirdio/netbird.git
synced 2024-12-24 23:59:25 +01:00
e69ec6ab6a
* Optimize rules with All groups * Use IP sets in ACLs (nftables implementation) * Fix squash rule when we receive optimized rules list from management
488 lines
12 KiB
Go
488 lines
12 KiB
Go
package server
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import (
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_ "embed"
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"strconv"
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"strings"
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log "github.com/sirupsen/logrus"
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"github.com/netbirdio/netbird/management/proto"
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"github.com/netbirdio/netbird/management/server/activity"
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"github.com/netbirdio/netbird/management/server/status"
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)
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// PolicyUpdateOperationType operation type
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type PolicyUpdateOperationType int
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// PolicyTrafficActionType action type for the firewall
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type PolicyTrafficActionType string
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// PolicyRuleProtocolType type of traffic
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type PolicyRuleProtocolType string
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// PolicyRuleDirection direction of traffic
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type PolicyRuleDirection string
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const (
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// PolicyTrafficActionAccept indicates that the traffic is accepted
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PolicyTrafficActionAccept = PolicyTrafficActionType("accept")
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// PolicyTrafficActionDrop indicates that the traffic is dropped
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PolicyTrafficActionDrop = PolicyTrafficActionType("drop")
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)
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const (
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// PolicyRuleProtocolALL type of traffic
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PolicyRuleProtocolALL = PolicyRuleProtocolType("all")
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// PolicyRuleProtocolTCP type of traffic
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PolicyRuleProtocolTCP = PolicyRuleProtocolType("tcp")
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// PolicyRuleProtocolUDP type of traffic
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PolicyRuleProtocolUDP = PolicyRuleProtocolType("udp")
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// PolicyRuleProtocolICMP type of traffic
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PolicyRuleProtocolICMP = PolicyRuleProtocolType("icmp")
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)
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const (
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// PolicyRuleFlowDirect allows trafic from source to destination
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PolicyRuleFlowDirect = PolicyRuleDirection("direct")
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// PolicyRuleFlowBidirect allows traffic to both directions
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PolicyRuleFlowBidirect = PolicyRuleDirection("bidirect")
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)
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const (
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firewallRuleDirectionIN = 0
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firewallRuleDirectionOUT = 1
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)
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// PolicyUpdateOperation operation object with type and values to be applied
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type PolicyUpdateOperation struct {
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Type PolicyUpdateOperationType
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Values []string
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}
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// PolicyRule is the metadata of the policy
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type PolicyRule struct {
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// ID of the policy rule
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ID string
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// Name of the rule visible in the UI
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Name string
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// Description of the rule visible in the UI
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Description string
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// Enabled status of rule in the system
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Enabled bool
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// Action policy accept or drops packets
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Action PolicyTrafficActionType
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// Destinations policy destination groups
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Destinations []string
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// Sources policy source groups
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Sources []string
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// Bidirectional define if the rule is applicable in both directions, sources, and destinations
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Bidirectional bool
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// Protocol type of the traffic
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Protocol PolicyRuleProtocolType
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// Ports or it ranges list
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Ports []string
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}
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// Copy returns a copy of a policy rule
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func (pm *PolicyRule) Copy() *PolicyRule {
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return &PolicyRule{
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ID: pm.ID,
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Name: pm.Name,
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Description: pm.Description,
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Enabled: pm.Enabled,
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Action: pm.Action,
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Destinations: pm.Destinations[:],
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Sources: pm.Sources[:],
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Bidirectional: pm.Bidirectional,
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Protocol: pm.Protocol,
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Ports: pm.Ports[:],
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}
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}
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// ToRule converts the PolicyRule to a legacy representation of the Rule (for backwards compatibility)
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func (pm *PolicyRule) ToRule() *Rule {
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return &Rule{
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ID: pm.ID,
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Name: pm.Name,
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Description: pm.Description,
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Disabled: !pm.Enabled,
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Flow: TrafficFlowBidirect,
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Destination: pm.Destinations,
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Source: pm.Sources,
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}
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}
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// Policy of the Rego query
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type Policy struct {
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// ID of the policy
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ID string
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// Name of the Policy
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Name string
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// Description of the policy visible in the UI
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Description string
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// Enabled status of the policy
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Enabled bool
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// Rules of the policy
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Rules []*PolicyRule
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}
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// Copy returns a copy of the policy.
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func (p *Policy) Copy() *Policy {
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c := &Policy{
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ID: p.ID,
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Name: p.Name,
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Description: p.Description,
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Enabled: p.Enabled,
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}
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for _, r := range p.Rules {
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c.Rules = append(c.Rules, r.Copy())
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}
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return c
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}
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// EventMeta returns activity event meta related to this policy
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func (p *Policy) EventMeta() map[string]any {
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return map[string]any{"name": p.Name}
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}
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// UpgradeAndFix different version of policies to latest version
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func (p *Policy) UpgradeAndFix() {
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for _, r := range p.Rules {
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// start migrate from version v0.20.3
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if r.Protocol == "" {
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r.Protocol = PolicyRuleProtocolALL
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}
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if r.Protocol == PolicyRuleProtocolALL && !r.Bidirectional {
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r.Bidirectional = true
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}
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// -- v0.20.4
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}
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}
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// FirewallRule is a rule of the firewall.
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type FirewallRule struct {
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// PeerIP of the peer
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PeerIP string
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// Direction of the traffic
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Direction int
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// Action of the traffic
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Action string
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// Protocol of the traffic
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Protocol string
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// Port of the traffic
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Port string
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}
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// getPeerConnectionResources for a given peer
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//
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// This function returns the list of peers and firewall rules that are applicable to a given peer.
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func (a *Account) getPeerConnectionResources(peerID string) ([]*Peer, []*FirewallRule) {
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generateResources, getAccumulatedResources := a.connResourcesGenerator()
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for _, policy := range a.Policies {
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if !policy.Enabled {
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continue
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}
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for _, rule := range policy.Rules {
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if !rule.Enabled {
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continue
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}
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sourcePeers, peerInSources := getAllPeersFromGroups(a, rule.Sources, peerID)
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destinationPeers, peerInDestinations := getAllPeersFromGroups(a, rule.Destinations, peerID)
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if rule.Bidirectional {
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if peerInSources {
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generateResources(rule, destinationPeers, firewallRuleDirectionIN)
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}
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if peerInDestinations {
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generateResources(rule, sourcePeers, firewallRuleDirectionOUT)
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}
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}
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if peerInSources {
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generateResources(rule, destinationPeers, firewallRuleDirectionOUT)
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}
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if peerInDestinations {
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generateResources(rule, sourcePeers, firewallRuleDirectionIN)
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}
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}
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}
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return getAccumulatedResources()
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}
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// connResourcesGenerator returns generator and accumulator function which returns the result of generator calls
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//
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// The generator function is used to generate the list of peers and firewall rules that are applicable to a given peer.
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// It safe to call the generator function multiple times for same peer and different rules no duplicates will be
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// generated. The accumulator function returns the result of all the generator calls.
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func (a *Account) connResourcesGenerator() (func(*PolicyRule, []*Peer, int), func() ([]*Peer, []*FirewallRule)) {
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rulesExists := make(map[string]struct{})
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peersExists := make(map[string]struct{})
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rules := make([]*FirewallRule, 0)
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peers := make([]*Peer, 0)
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all, err := a.GetGroupAll()
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if err != nil {
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log.Errorf("failed to get group all: %v", err)
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all = &Group{}
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}
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return func(rule *PolicyRule, groupPeers []*Peer, direction int) {
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isAll := (len(all.Peers) - 1) == len(groupPeers)
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for _, peer := range groupPeers {
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if peer == nil {
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continue
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}
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if _, ok := peersExists[peer.ID]; !ok {
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peers = append(peers, peer)
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peersExists[peer.ID] = struct{}{}
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}
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fr := FirewallRule{
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PeerIP: peer.IP.String(),
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Direction: direction,
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Action: string(rule.Action),
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Protocol: string(rule.Protocol),
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}
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if isAll {
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fr.PeerIP = "0.0.0.0"
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}
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ruleID := (rule.ID + fr.PeerIP + strconv.Itoa(direction) +
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fr.Protocol + fr.Action + strings.Join(rule.Ports, ","))
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if _, ok := rulesExists[ruleID]; ok {
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continue
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}
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rulesExists[ruleID] = struct{}{}
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if len(rule.Ports) == 0 {
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rules = append(rules, &fr)
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continue
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}
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for _, port := range rule.Ports {
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pr := fr // clone rule and add set new port
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pr.Port = port
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rules = append(rules, &pr)
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}
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}
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}, func() ([]*Peer, []*FirewallRule) {
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return peers, rules
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}
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}
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// GetPolicy from the store
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func (am *DefaultAccountManager) GetPolicy(accountID, policyID, userID string) (*Policy, error) {
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unlock := am.Store.AcquireAccountLock(accountID)
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defer unlock()
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account, err := am.Store.GetAccount(accountID)
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if err != nil {
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return nil, err
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}
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user, err := account.FindUser(userID)
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if err != nil {
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return nil, err
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}
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if !user.IsAdmin() {
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return nil, status.Errorf(status.PermissionDenied, "only admins are allowed to view policies")
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}
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for _, policy := range account.Policies {
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if policy.ID == policyID {
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return policy, nil
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}
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}
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return nil, status.Errorf(status.NotFound, "policy with ID %s not found", policyID)
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}
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// SavePolicy in the store
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func (am *DefaultAccountManager) SavePolicy(accountID, userID string, policy *Policy) error {
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unlock := am.Store.AcquireAccountLock(accountID)
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defer unlock()
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account, err := am.Store.GetAccount(accountID)
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if err != nil {
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return err
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}
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exists := am.savePolicy(account, policy)
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account.Network.IncSerial()
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if err = am.Store.SaveAccount(account); err != nil {
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return err
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}
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action := activity.PolicyAdded
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if exists {
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action = activity.PolicyUpdated
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}
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am.storeEvent(userID, policy.ID, accountID, action, policy.EventMeta())
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return am.updateAccountPeers(account)
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}
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// DeletePolicy from the store
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func (am *DefaultAccountManager) DeletePolicy(accountID, policyID, userID string) error {
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unlock := am.Store.AcquireAccountLock(accountID)
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defer unlock()
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account, err := am.Store.GetAccount(accountID)
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if err != nil {
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return err
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}
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policy, err := am.deletePolicy(account, policyID)
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if err != nil {
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return err
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}
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account.Network.IncSerial()
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if err = am.Store.SaveAccount(account); err != nil {
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return err
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}
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am.storeEvent(userID, policy.ID, accountID, activity.PolicyRemoved, policy.EventMeta())
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return am.updateAccountPeers(account)
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}
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// ListPolicies from the store
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func (am *DefaultAccountManager) ListPolicies(accountID, userID string) ([]*Policy, error) {
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unlock := am.Store.AcquireAccountLock(accountID)
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defer unlock()
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account, err := am.Store.GetAccount(accountID)
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if err != nil {
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return nil, err
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}
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user, err := account.FindUser(userID)
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if err != nil {
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return nil, err
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}
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if !user.IsAdmin() {
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return nil, status.Errorf(status.PermissionDenied, "Only Administrators can view policies")
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}
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return account.Policies[:], nil
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}
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func (am *DefaultAccountManager) deletePolicy(account *Account, policyID string) (*Policy, error) {
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policyIdx := -1
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for i, policy := range account.Policies {
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if policy.ID == policyID {
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policyIdx = i
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break
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}
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}
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if policyIdx < 0 {
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return nil, status.Errorf(status.NotFound, "rule with ID %s doesn't exist", policyID)
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}
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policy := account.Policies[policyIdx]
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account.Policies = append(account.Policies[:policyIdx], account.Policies[policyIdx+1:]...)
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return policy, nil
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}
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func (am *DefaultAccountManager) savePolicy(account *Account, policy *Policy) (exists bool) {
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for i, p := range account.Policies {
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if p.ID == policy.ID {
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account.Policies[i] = policy
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exists = true
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break
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}
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}
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if !exists {
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account.Policies = append(account.Policies, policy)
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}
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return
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}
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func toProtocolFirewallRules(update []*FirewallRule) []*proto.FirewallRule {
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result := make([]*proto.FirewallRule, len(update))
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for i := range update {
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direction := proto.FirewallRule_IN
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if update[i].Direction == firewallRuleDirectionOUT {
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direction = proto.FirewallRule_OUT
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}
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action := proto.FirewallRule_ACCEPT
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if update[i].Action == string(PolicyTrafficActionDrop) {
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action = proto.FirewallRule_DROP
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}
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protocol := proto.FirewallRule_UNKNOWN
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switch PolicyRuleProtocolType(update[i].Protocol) {
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case PolicyRuleProtocolALL:
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protocol = proto.FirewallRule_ALL
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case PolicyRuleProtocolTCP:
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protocol = proto.FirewallRule_TCP
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case PolicyRuleProtocolUDP:
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protocol = proto.FirewallRule_UDP
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case PolicyRuleProtocolICMP:
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protocol = proto.FirewallRule_ICMP
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}
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result[i] = &proto.FirewallRule{
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PeerIP: update[i].PeerIP,
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Direction: direction,
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Action: action,
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Protocol: protocol,
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Port: update[i].Port,
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}
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}
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return result
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}
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// getAllPeersFromGroups for given peer ID and list of groups
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//
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// Returns list of peers and boolean indicating if peer is in any of the groups
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func getAllPeersFromGroups(account *Account, groups []string, peerID string) ([]*Peer, bool) {
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peerInGroups := false
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filteredPeers := make([]*Peer, 0, len(groups))
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for _, g := range groups {
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group, ok := account.Groups[g]
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if !ok {
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continue
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}
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for _, p := range group.Peers {
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peer, ok := account.Peers[p]
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if ok && peer != nil && peer.ID == peerID {
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peerInGroups = true
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continue
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}
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filteredPeers = append(filteredPeers, peer)
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}
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}
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return filteredPeers, peerInGroups
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}
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