
MultiCIDRRangeAllocator is a new Range Allocator which makes using multiple ClusterCIDRs possible. It consists of two controllers, one for reconciling the ClusterCIDR API objects and the other for allocating Pod CIDRs to the nodes. The allocation is based on the rules defined in https://github.com/kubernetes/enhancements/tree/master/keps/sig-network/2593-multiple-cluster-cidrs
123 lines
5.6 KiB
Go
123 lines
5.6 KiB
Go
//go:build !providerless
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// +build !providerless
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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 nodeipam
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import (
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"net"
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"os"
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"os/exec"
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"strings"
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"testing"
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v1 "k8s.io/api/core/v1"
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metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
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"k8s.io/client-go/informers"
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"k8s.io/client-go/kubernetes/fake"
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"k8s.io/kubernetes/pkg/controller"
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"k8s.io/kubernetes/pkg/controller/nodeipam/ipam"
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"k8s.io/kubernetes/pkg/controller/testutil"
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"k8s.io/legacy-cloud-providers/gce"
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netutils "k8s.io/utils/net"
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)
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func newTestNodeIpamController(clusterCIDR []*net.IPNet, serviceCIDR *net.IPNet, secondaryServiceCIDR *net.IPNet, nodeCIDRMaskSizes []int, allocatorType ipam.CIDRAllocatorType) (*Controller, error) {
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clientSet := fake.NewSimpleClientset()
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fakeNodeHandler := &testutil.FakeNodeHandler{
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Existing: []*v1.Node{
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{ObjectMeta: metav1.ObjectMeta{Name: "node0"}},
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},
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Clientset: fake.NewSimpleClientset(),
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}
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fakeClient := &fake.Clientset{}
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fakeInformerFactory := informers.NewSharedInformerFactory(fakeClient, controller.NoResyncPeriodFunc())
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fakeNodeInformer := fakeInformerFactory.Core().V1().Nodes()
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fakeClusterCIDRInformer := fakeInformerFactory.Networking().V1alpha1().ClusterCIDRs()
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for _, node := range fakeNodeHandler.Existing {
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fakeNodeInformer.Informer().GetStore().Add(node)
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}
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fakeGCE := gce.NewFakeGCECloud(gce.DefaultTestClusterValues())
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return NewNodeIpamController(
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fakeNodeInformer, fakeClusterCIDRInformer, fakeGCE, clientSet,
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clusterCIDR, serviceCIDR, secondaryServiceCIDR, nodeCIDRMaskSizes, allocatorType,
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)
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}
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// TestNewNodeIpamControllerWithCIDRMasks tests if the controller can be
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// created with combinations of network CIDRs and masks.
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func TestNewNodeIpamControllerWithCIDRMasks(t *testing.T) {
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emptyServiceCIDR := ""
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for _, tc := range []struct {
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desc string
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clusterCIDR string
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serviceCIDR string
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secondaryServiceCIDR string
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maskSize []int
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allocatorType ipam.CIDRAllocatorType
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wantFatal bool
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}{
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{"valid_range_allocator", "10.0.0.0/21", "10.1.0.0/21", emptyServiceCIDR, []int{24}, ipam.RangeAllocatorType, false},
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{"valid_range_allocator_dualstack", "10.0.0.0/21,2000::/10", "10.1.0.0/21", emptyServiceCIDR, []int{24, 98}, ipam.RangeAllocatorType, false},
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{"valid_range_allocator_dualstack_dualstackservice", "10.0.0.0/21,2000::/10", "10.1.0.0/21", "3000::/10", []int{24, 98}, ipam.RangeAllocatorType, false},
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{"valid_multi_cidr_range_allocator", "10.0.0.0/21", "10.1.0.0/21", emptyServiceCIDR, []int{24}, ipam.MultiCIDRRangeAllocatorType, false},
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{"valid_multi_cidr_range_allocator_dualstack", "10.0.0.0/21,2000::/10", "10.1.0.0/21", emptyServiceCIDR, []int{24, 98}, ipam.MultiCIDRRangeAllocatorType, false},
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{"valid_cloud_allocator", "10.0.0.0/21", "10.1.0.0/21", emptyServiceCIDR, []int{24}, ipam.CloudAllocatorType, false},
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{"valid_ipam_from_cluster", "10.0.0.0/21", "10.1.0.0/21", emptyServiceCIDR, []int{24}, ipam.IPAMFromClusterAllocatorType, false},
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{"valid_ipam_from_cloud", "10.0.0.0/21", "10.1.0.0/21", emptyServiceCIDR, []int{24}, ipam.IPAMFromCloudAllocatorType, false},
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{"valid_skip_cluster_CIDR_validation_for_cloud_allocator", "invalid", "10.1.0.0/21", emptyServiceCIDR, []int{24}, ipam.CloudAllocatorType, false},
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{"invalid_cluster_CIDR", "invalid", "10.1.0.0/21", emptyServiceCIDR, []int{24}, ipam.IPAMFromClusterAllocatorType, true},
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{"valid_CIDR_smaller_than_mask_cloud_allocator", "10.0.0.0/26", "10.1.0.0/21", emptyServiceCIDR, []int{24}, ipam.CloudAllocatorType, false},
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{"invalid_CIDR_smaller_than_mask_other_allocators", "10.0.0.0/26", "10.1.0.0/21", emptyServiceCIDR, []int{24}, ipam.IPAMFromCloudAllocatorType, true},
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{"invalid_serviceCIDR_contains_clusterCIDR", "10.0.0.0/23", "10.0.0.0/21", emptyServiceCIDR, []int{24}, ipam.IPAMFromClusterAllocatorType, true},
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{"invalid_CIDR_mask_size", "10.0.0.0/24,2000::/64", "10.1.0.0/21", emptyServiceCIDR, []int{24, 48}, ipam.IPAMFromClusterAllocatorType, true},
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} {
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t.Run(tc.desc, func(t *testing.T) {
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clusterCidrs, _ := netutils.ParseCIDRs(strings.Split(tc.clusterCIDR, ","))
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_, serviceCIDRIpNet, _ := netutils.ParseCIDRSloppy(tc.serviceCIDR)
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_, secondaryServiceCIDRIpNet, _ := netutils.ParseCIDRSloppy(tc.secondaryServiceCIDR)
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if os.Getenv("EXIT_ON_FATAL") == "1" {
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// This is the subprocess which runs the actual code.
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newTestNodeIpamController(clusterCidrs, serviceCIDRIpNet, secondaryServiceCIDRIpNet, tc.maskSize, tc.allocatorType)
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return
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}
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// This is the host process that monitors the exit code of the subprocess.
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cmd := exec.Command(os.Args[0], "-test.run=TestNewNodeIpamControllerWithCIDRMasks/"+tc.desc)
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cmd.Env = append(os.Environ(), "EXIT_ON_FATAL=1")
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err := cmd.Run()
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var gotFatal bool
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if err != nil {
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exitErr, ok := err.(*exec.ExitError)
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if !ok {
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t.Fatalf("Failed to run subprocess: %v", err)
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}
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gotFatal = !exitErr.Success()
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}
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if gotFatal != tc.wantFatal {
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t.Errorf("newTestNodeIpamController(%v, %v, %v, %v) : gotFatal = %t ; wantFatal = %t", clusterCidrs, serviceCIDRIpNet, tc.maskSize, tc.allocatorType, gotFatal, tc.wantFatal)
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}
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})
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}
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}
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