
* kube-proxy * endpoints controller * app: kube-controller-manager * app: cloud-controller-manager * kubelet * app: api-server * node utils + registry/strategy * api: validation (comment removal) * api:pod strategy (util pkg) * api: docs * core: integration testing * kubeadm: change feature gate to GA * service registry and rest stack * move feature to GA * generated
180 lines
7.5 KiB
Go
180 lines
7.5 KiB
Go
//go:build linux
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// +build linux
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/*
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Copyright 2018 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package kubelet
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import (
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"fmt"
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"time"
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"k8s.io/apimachinery/pkg/util/wait"
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"k8s.io/klog/v2"
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utiliptables "k8s.io/kubernetes/pkg/util/iptables"
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utilexec "k8s.io/utils/exec"
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utilnet "k8s.io/utils/net"
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)
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func (kl *Kubelet) initNetworkUtil() {
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exec := utilexec.New()
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// TODO: @khenidak review when there is no IPv6 iptables exec what should happen here (note: no error returned from this func)
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ipv6Primary := kl.nodeIPs != nil && utilnet.IsIPv6(kl.nodeIPs[0])
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var iptClients []utiliptables.Interface
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var protocols []utiliptables.Protocol
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// assume 4,6
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protocols = append(protocols, utiliptables.ProtocolIPv4)
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iptClients = append(iptClients, utiliptables.New(exec, utiliptables.ProtocolIPv4))
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protocols = append(protocols, utiliptables.ProtocolIPv6)
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iptClients = append(iptClients, utiliptables.New(exec, utiliptables.ProtocolIPv6))
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// and if they are not
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if ipv6Primary {
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protocols[0], protocols[1] = protocols[1], protocols[0]
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iptClients[0], iptClients[1] = iptClients[1], iptClients[0]
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}
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for i := range iptClients {
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iptClient := iptClients[i]
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if kl.syncNetworkUtil(iptClient) {
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klog.InfoS("Initialized protocol iptables rules.", "protocol", protocols[i])
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go iptClient.Monitor(
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utiliptables.Chain("KUBE-KUBELET-CANARY"),
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[]utiliptables.Table{utiliptables.TableMangle, utiliptables.TableNAT, utiliptables.TableFilter},
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func() { kl.syncNetworkUtil(iptClient) },
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1*time.Minute, wait.NeverStop,
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)
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} else {
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klog.InfoS("Failed to initialize protocol iptables rules; some functionality may be missing.", "protocol", protocols[i])
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}
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}
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}
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// syncNetworkUtil ensures the network utility are present on host.
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// Network util includes:
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// 1. In nat table, KUBE-MARK-DROP rule to mark connections for dropping
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// Marked connection will be drop on INPUT/OUTPUT Chain in filter table
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// 2. In nat table, KUBE-MARK-MASQ rule to mark connections for SNAT
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// Marked connection will get SNAT on POSTROUTING Chain in nat table
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func (kl *Kubelet) syncNetworkUtil(iptClient utiliptables.Interface) bool {
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// Setup KUBE-MARK-DROP rules
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dropMark := getIPTablesMark(kl.iptablesDropBit)
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if _, err := iptClient.EnsureChain(utiliptables.TableNAT, KubeMarkDropChain); err != nil {
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klog.ErrorS(err, "Failed to ensure that nat chain exists KUBE-MARK-DROP chain")
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return false
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}
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if _, err := iptClient.EnsureRule(utiliptables.Append, utiliptables.TableNAT, KubeMarkDropChain, "-j", "MARK", "--or-mark", dropMark); err != nil {
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klog.ErrorS(err, "Failed to ensure marking rule for KUBE-MARK-DROP chain")
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return false
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}
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if _, err := iptClient.EnsureChain(utiliptables.TableFilter, KubeFirewallChain); err != nil {
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klog.ErrorS(err, "Failed to ensure that filter table exists KUBE-FIREWALL chain")
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return false
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}
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if _, err := iptClient.EnsureRule(utiliptables.Append, utiliptables.TableFilter, KubeFirewallChain,
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"-m", "comment", "--comment", "kubernetes firewall for dropping marked packets",
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"-m", "mark", "--mark", fmt.Sprintf("%s/%s", dropMark, dropMark),
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"-j", "DROP"); err != nil {
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klog.ErrorS(err, "Failed to ensure rule to drop packet marked by the KUBE-MARK-DROP in KUBE-FIREWALL chain")
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return false
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}
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// drop all non-local packets to localhost if they're not part of an existing
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// forwarded connection. See #90259
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if !iptClient.IsIPv6() { // ipv6 doesn't have this issue
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if _, err := iptClient.EnsureRule(utiliptables.Append, utiliptables.TableFilter, KubeFirewallChain,
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"-m", "comment", "--comment", "block incoming localnet connections",
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"--dst", "127.0.0.0/8",
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"!", "--src", "127.0.0.0/8",
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"-m", "conntrack",
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"!", "--ctstate", "RELATED,ESTABLISHED,DNAT",
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"-j", "DROP"); err != nil {
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klog.ErrorS(err, "Failed to ensure rule to drop invalid localhost packets in filter table KUBE-FIREWALL chain")
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return false
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}
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}
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if _, err := iptClient.EnsureRule(utiliptables.Prepend, utiliptables.TableFilter, utiliptables.ChainOutput, "-j", string(KubeFirewallChain)); err != nil {
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klog.ErrorS(err, "Failed to ensure that filter table from OUTPUT chain jumps to KUBE-FIREWALL chain")
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return false
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}
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if _, err := iptClient.EnsureRule(utiliptables.Prepend, utiliptables.TableFilter, utiliptables.ChainInput, "-j", string(KubeFirewallChain)); err != nil {
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klog.ErrorS(err, "Failed to ensure that filter table INPUT chain jumps to KUBE-FIREWALL chain")
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return false
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}
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// Setup KUBE-MARK-MASQ rules
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masqueradeMark := getIPTablesMark(kl.iptablesMasqueradeBit)
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if _, err := iptClient.EnsureChain(utiliptables.TableNAT, KubeMarkMasqChain); err != nil {
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klog.ErrorS(err, "Failed to ensure that nat table exists KUBE-MARK-MASQ chain")
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return false
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}
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if _, err := iptClient.EnsureChain(utiliptables.TableNAT, KubePostroutingChain); err != nil {
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klog.ErrorS(err, "Failed to ensure that nat table exists kube POSTROUTING chain")
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return false
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}
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if _, err := iptClient.EnsureRule(utiliptables.Append, utiliptables.TableNAT, KubeMarkMasqChain, "-j", "MARK", "--or-mark", masqueradeMark); err != nil {
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klog.ErrorS(err, "Failed to ensure marking rule for KUBE-MARK-MASQ chain")
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return false
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}
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if _, err := iptClient.EnsureRule(utiliptables.Prepend, utiliptables.TableNAT, utiliptables.ChainPostrouting,
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"-m", "comment", "--comment", "kubernetes postrouting rules", "-j", string(KubePostroutingChain)); err != nil {
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klog.ErrorS(err, "Failed to ensure that nat table from POSTROUTING chain jumps to KUBE-POSTROUTING chain")
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return false
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}
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// Set up KUBE-POSTROUTING to unmark and masquerade marked packets
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// NB: THIS MUST MATCH the corresponding code in the iptables and ipvs
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// modes of kube-proxy
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if _, err := iptClient.EnsureRule(utiliptables.Append, utiliptables.TableNAT, KubePostroutingChain,
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"-m", "mark", "!", "--mark", fmt.Sprintf("%s/%s", masqueradeMark, masqueradeMark),
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"-j", "RETURN"); err != nil {
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klog.ErrorS(err, "Failed to ensure filtering rule for KUBE-POSTROUTING chain")
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return false
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}
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// Clear the mark to avoid re-masquerading if the packet re-traverses the network stack.
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// We know the mark bit is currently set so we can use --xor-mark to clear it (without needing
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// to Sprintf another bitmask).
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if _, err := iptClient.EnsureRule(utiliptables.Append, utiliptables.TableNAT, KubePostroutingChain,
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"-j", "MARK", "--xor-mark", masqueradeMark); err != nil {
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klog.ErrorS(err, "Failed to ensure unmarking rule for KUBE-POSTROUTING chain")
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return false
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}
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masqRule := []string{
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"-m", "comment", "--comment", "kubernetes service traffic requiring SNAT",
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"-j", "MASQUERADE",
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}
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if iptClient.HasRandomFully() {
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masqRule = append(masqRule, "--random-fully")
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}
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if _, err := iptClient.EnsureRule(utiliptables.Append, utiliptables.TableNAT, KubePostroutingChain, masqRule...); err != nil {
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klog.ErrorS(err, "Failed to ensure SNAT rule for packets marked by KUBE-MARK-MASQ chain in nat table KUBE-POSTROUTING chain")
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return false
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}
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return true
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}
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// getIPTablesMark returns the fwmark given the bit
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func getIPTablesMark(bit int) string {
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value := 1 << uint(bit)
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return fmt.Sprintf("%#08x", value)
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}
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