mirror of
https://github.com/prometheus/prometheus.git
synced 2024-12-30 07:59:40 -08:00
435 lines
13 KiB
Go
435 lines
13 KiB
Go
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// Copyright 2024 The Prometheus 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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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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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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package aws
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import (
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"context"
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"errors"
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"testing"
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"github.com/aws/aws-sdk-go/aws"
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"github.com/aws/aws-sdk-go/aws/request"
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"github.com/aws/aws-sdk-go/service/ec2"
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"github.com/aws/aws-sdk-go/service/ec2/ec2iface"
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"github.com/prometheus/common/model"
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"github.com/stretchr/testify/require"
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"go.uber.org/goleak"
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"github.com/prometheus/prometheus/discovery/targetgroup"
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)
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// Helper function to get pointers on literals.
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// NOTE: this is common between a few tests. In the future it might worth to move this out into a separate package.
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func strptr(str string) *string {
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return &str
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}
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func boolptr(b bool) *bool {
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return &b
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}
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func int64ptr(i int64) *int64 {
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return &i
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}
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// Struct for test data.
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type ec2DataStore struct {
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region string
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azToAZID map[string]string
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ownerID string
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instances []*ec2.Instance
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}
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// The tests itself.
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func TestMain(m *testing.M) {
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goleak.VerifyTestMain(m)
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}
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func TestEC2DiscoveryRefreshAZIDs(t *testing.T) {
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ctx := context.Background()
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// iterate through the test cases
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for _, tt := range []struct {
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name string
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shouldFail bool
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ec2Data *ec2DataStore
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}{
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{
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name: "Normal",
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shouldFail: false,
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ec2Data: &ec2DataStore{
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azToAZID: map[string]string{
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"azname-a": "azid-1",
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"azname-b": "azid-2",
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"azname-c": "azid-3",
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},
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},
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},
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{
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name: "HandleError",
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shouldFail: true,
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ec2Data: &ec2DataStore{},
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},
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} {
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t.Run(tt.name, func(t *testing.T) {
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client := newMockEC2Client(tt.ec2Data)
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d := &EC2Discovery{
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ec2: client,
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}
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err := d.refreshAZIDs(ctx)
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if tt.shouldFail {
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require.Error(t, err)
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} else {
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require.NoError(t, err)
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require.Equal(t, client.ec2Data.azToAZID, d.azToAZID)
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}
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})
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}
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}
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func TestEC2DiscoveryRefresh(t *testing.T) {
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ctx := context.Background()
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// iterate through the test cases
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for _, tt := range []struct {
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name string
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ec2Data *ec2DataStore
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expected []*targetgroup.Group
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}{
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{
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name: "NoPrivateIp",
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ec2Data: &ec2DataStore{
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region: "region-noprivateip",
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azToAZID: map[string]string{
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"azname-a": "azid-1",
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"azname-b": "azid-2",
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"azname-c": "azid-3",
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},
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instances: []*ec2.Instance{
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{
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InstanceId: strptr("instance-id-noprivateip"),
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},
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},
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},
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expected: []*targetgroup.Group{
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{
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Source: "region-noprivateip",
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},
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},
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},
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{
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name: "NoVpc",
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ec2Data: &ec2DataStore{
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region: "region-novpc",
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azToAZID: map[string]string{
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"azname-a": "azid-1",
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"azname-b": "azid-2",
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"azname-c": "azid-3",
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},
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ownerID: "owner-id-novpc",
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instances: []*ec2.Instance{
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{
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// set every possible options and test them here
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Architecture: strptr("architecture-novpc"),
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ImageId: strptr("ami-novpc"),
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InstanceId: strptr("instance-id-novpc"),
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InstanceLifecycle: strptr("instance-lifecycle-novpc"),
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InstanceType: strptr("instance-type-novpc"),
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Placement: &ec2.Placement{AvailabilityZone: strptr("azname-b")},
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Platform: strptr("platform-novpc"),
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PrivateDnsName: strptr("private-dns-novpc"),
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PrivateIpAddress: strptr("1.2.3.4"),
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PublicDnsName: strptr("public-dns-novpc"),
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PublicIpAddress: strptr("42.42.42.2"),
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State: &ec2.InstanceState{Name: strptr("running")},
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// test tags once and for all
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Tags: []*ec2.Tag{
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{Key: strptr("tag-1-key"), Value: strptr("tag-1-value")},
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{Key: strptr("tag-2-key"), Value: strptr("tag-2-value")},
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nil,
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{Value: strptr("tag-4-value")},
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{Key: strptr("tag-5-key")},
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},
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},
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},
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},
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expected: []*targetgroup.Group{
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{
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Source: "region-novpc",
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Targets: []model.LabelSet{
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{
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"__address__": model.LabelValue("1.2.3.4:4242"),
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"__meta_ec2_ami": model.LabelValue("ami-novpc"),
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"__meta_ec2_architecture": model.LabelValue("architecture-novpc"),
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"__meta_ec2_availability_zone": model.LabelValue("azname-b"),
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"__meta_ec2_availability_zone_id": model.LabelValue("azid-2"),
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"__meta_ec2_instance_id": model.LabelValue("instance-id-novpc"),
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"__meta_ec2_instance_lifecycle": model.LabelValue("instance-lifecycle-novpc"),
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"__meta_ec2_instance_type": model.LabelValue("instance-type-novpc"),
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"__meta_ec2_instance_state": model.LabelValue("running"),
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"__meta_ec2_owner_id": model.LabelValue("owner-id-novpc"),
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"__meta_ec2_platform": model.LabelValue("platform-novpc"),
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"__meta_ec2_private_dns_name": model.LabelValue("private-dns-novpc"),
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"__meta_ec2_private_ip": model.LabelValue("1.2.3.4"),
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"__meta_ec2_public_dns_name": model.LabelValue("public-dns-novpc"),
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"__meta_ec2_public_ip": model.LabelValue("42.42.42.2"),
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"__meta_ec2_region": model.LabelValue("region-novpc"),
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"__meta_ec2_tag_tag_1_key": model.LabelValue("tag-1-value"),
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"__meta_ec2_tag_tag_2_key": model.LabelValue("tag-2-value"),
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},
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},
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},
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},
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},
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{
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name: "Ipv4",
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ec2Data: &ec2DataStore{
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region: "region-ipv4",
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azToAZID: map[string]string{
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"azname-a": "azid-1",
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"azname-b": "azid-2",
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"azname-c": "azid-3",
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},
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instances: []*ec2.Instance{
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{
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// just the minimum needed for the refresh work
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ImageId: strptr("ami-ipv4"),
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InstanceId: strptr("instance-id-ipv4"),
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InstanceType: strptr("instance-type-ipv4"),
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Placement: &ec2.Placement{AvailabilityZone: strptr("azname-c")},
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PrivateIpAddress: strptr("5.6.7.8"),
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State: &ec2.InstanceState{Name: strptr("running")},
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SubnetId: strptr("azid-3"),
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VpcId: strptr("vpc-ipv4"),
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// network intefaces
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NetworkInterfaces: []*ec2.InstanceNetworkInterface{
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// interface without subnet -> should be ignored
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{
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Ipv6Addresses: []*ec2.InstanceIpv6Address{
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{
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Ipv6Address: strptr("2001:db8:1::1"),
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IsPrimaryIpv6: boolptr(true),
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},
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},
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},
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// interface with subnet, no IPv6
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{
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Ipv6Addresses: []*ec2.InstanceIpv6Address{},
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SubnetId: strptr("azid-3"),
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},
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// interface with another subnet, no IPv6
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{
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Ipv6Addresses: []*ec2.InstanceIpv6Address{},
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SubnetId: strptr("azid-1"),
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},
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},
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},
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},
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},
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expected: []*targetgroup.Group{
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{
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Source: "region-ipv4",
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Targets: []model.LabelSet{
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{
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"__address__": model.LabelValue("5.6.7.8:4242"),
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"__meta_ec2_ami": model.LabelValue("ami-ipv4"),
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"__meta_ec2_availability_zone": model.LabelValue("azname-c"),
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"__meta_ec2_availability_zone_id": model.LabelValue("azid-3"),
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"__meta_ec2_instance_id": model.LabelValue("instance-id-ipv4"),
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"__meta_ec2_instance_state": model.LabelValue("running"),
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"__meta_ec2_instance_type": model.LabelValue("instance-type-ipv4"),
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"__meta_ec2_owner_id": model.LabelValue(""),
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"__meta_ec2_primary_subnet_id": model.LabelValue("azid-3"),
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"__meta_ec2_private_ip": model.LabelValue("5.6.7.8"),
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"__meta_ec2_region": model.LabelValue("region-ipv4"),
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"__meta_ec2_subnet_id": model.LabelValue(",azid-3,azid-1,"),
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"__meta_ec2_vpc_id": model.LabelValue("vpc-ipv4"),
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},
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},
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},
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},
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},
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{
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name: "Ipv6",
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ec2Data: &ec2DataStore{
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region: "region-ipv6",
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azToAZID: map[string]string{
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"azname-a": "azid-1",
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"azname-b": "azid-2",
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"azname-c": "azid-3",
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},
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instances: []*ec2.Instance{
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{
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// just the minimum needed for the refresh work
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ImageId: strptr("ami-ipv6"),
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InstanceId: strptr("instance-id-ipv6"),
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InstanceType: strptr("instance-type-ipv6"),
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Placement: &ec2.Placement{AvailabilityZone: strptr("azname-b")},
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PrivateIpAddress: strptr("9.10.11.12"),
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State: &ec2.InstanceState{Name: strptr("running")},
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SubnetId: strptr("azid-2"),
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VpcId: strptr("vpc-ipv6"),
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// network intefaces
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NetworkInterfaces: []*ec2.InstanceNetworkInterface{
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// interface without primary IPv6, index 2
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{
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Attachment: &ec2.InstanceNetworkInterfaceAttachment{
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DeviceIndex: int64ptr(3),
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},
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Ipv6Addresses: []*ec2.InstanceIpv6Address{
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{
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Ipv6Address: strptr("2001:db8:2::1:1"),
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IsPrimaryIpv6: boolptr(false),
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},
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},
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SubnetId: strptr("azid-2"),
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},
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// interface with primary IPv6, index 1
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{
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Attachment: &ec2.InstanceNetworkInterfaceAttachment{
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DeviceIndex: int64ptr(1),
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},
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Ipv6Addresses: []*ec2.InstanceIpv6Address{
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{
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Ipv6Address: strptr("2001:db8:2::2:1"),
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IsPrimaryIpv6: boolptr(false),
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},
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{
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Ipv6Address: strptr("2001:db8:2::2:2"),
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IsPrimaryIpv6: boolptr(true),
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},
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},
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SubnetId: strptr("azid-2"),
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},
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// interface with primary IPv6, index 3
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{
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Attachment: &ec2.InstanceNetworkInterfaceAttachment{
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DeviceIndex: int64ptr(3),
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},
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Ipv6Addresses: []*ec2.InstanceIpv6Address{
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{
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Ipv6Address: strptr("2001:db8:2::3:1"),
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IsPrimaryIpv6: boolptr(true),
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},
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},
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SubnetId: strptr("azid-1"),
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},
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// interface without primary IPv6, index 0
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{
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Attachment: &ec2.InstanceNetworkInterfaceAttachment{
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DeviceIndex: int64ptr(0),
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},
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Ipv6Addresses: []*ec2.InstanceIpv6Address{},
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SubnetId: strptr("azid-3"),
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},
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},
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},
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},
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},
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expected: []*targetgroup.Group{
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{
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Source: "region-ipv6",
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Targets: []model.LabelSet{
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{
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"__address__": model.LabelValue("9.10.11.12:4242"),
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"__meta_ec2_ami": model.LabelValue("ami-ipv6"),
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"__meta_ec2_availability_zone": model.LabelValue("azname-b"),
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"__meta_ec2_availability_zone_id": model.LabelValue("azid-2"),
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"__meta_ec2_instance_id": model.LabelValue("instance-id-ipv6"),
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"__meta_ec2_instance_state": model.LabelValue("running"),
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"__meta_ec2_instance_type": model.LabelValue("instance-type-ipv6"),
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"__meta_ec2_ipv6_addresses": model.LabelValue(",2001:db8:2::1:1,2001:db8:2::2:1,2001:db8:2::2:2,2001:db8:2::3:1,"),
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"__meta_ec2_owner_id": model.LabelValue(""),
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"__meta_ec2_primary_ipv6_addresses": model.LabelValue(",,2001:db8:2::2:2,,2001:db8:2::3:1,"),
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"__meta_ec2_primary_subnet_id": model.LabelValue("azid-2"),
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"__meta_ec2_private_ip": model.LabelValue("9.10.11.12"),
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"__meta_ec2_region": model.LabelValue("region-ipv6"),
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"__meta_ec2_subnet_id": model.LabelValue(",azid-2,azid-1,azid-3,"),
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"__meta_ec2_vpc_id": model.LabelValue("vpc-ipv6"),
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},
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},
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},
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},
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},
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} {
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t.Run(tt.name, func(t *testing.T) {
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client := newMockEC2Client(tt.ec2Data)
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d := &EC2Discovery{
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ec2: client,
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cfg: &EC2SDConfig{
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Port: 4242,
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Region: client.ec2Data.region,
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},
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}
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g, err := d.refresh(ctx)
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require.NoError(t, err)
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require.Equal(t, tt.expected, g)
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})
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}
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}
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// EC2 client mock.
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type mockEC2Client struct {
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ec2iface.EC2API
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ec2Data ec2DataStore
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}
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|
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func newMockEC2Client(ec2Data *ec2DataStore) *mockEC2Client {
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client := mockEC2Client{
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ec2Data: *ec2Data,
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}
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return &client
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}
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func (m *mockEC2Client) DescribeAvailabilityZonesWithContext(ctx aws.Context, input *ec2.DescribeAvailabilityZonesInput, opts ...request.Option) (*ec2.DescribeAvailabilityZonesOutput, error) {
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if len(m.ec2Data.azToAZID) == 0 {
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return nil, errors.New("No AZs found")
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}
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||
|
azs := make([]*ec2.AvailabilityZone, len(m.ec2Data.azToAZID))
|
||
|
|
||
|
i := 0
|
||
|
for k, v := range m.ec2Data.azToAZID {
|
||
|
azs[i] = &ec2.AvailabilityZone{
|
||
|
ZoneName: strptr(k),
|
||
|
ZoneId: strptr(v),
|
||
|
}
|
||
|
i++
|
||
|
}
|
||
|
|
||
|
return &ec2.DescribeAvailabilityZonesOutput{
|
||
|
AvailabilityZones: azs,
|
||
|
}, nil
|
||
|
}
|
||
|
|
||
|
func (m *mockEC2Client) DescribeInstancesPagesWithContext(ctx aws.Context, input *ec2.DescribeInstancesInput, fn func(*ec2.DescribeInstancesOutput, bool) bool, opts ...request.Option) error {
|
||
|
r := ec2.Reservation{}
|
||
|
r.SetInstances(m.ec2Data.instances)
|
||
|
r.SetOwnerId(m.ec2Data.ownerID)
|
||
|
|
||
|
o := ec2.DescribeInstancesOutput{}
|
||
|
o.SetReservations([]*ec2.Reservation{&r})
|
||
|
|
||
|
_ = fn(&o, true)
|
||
|
|
||
|
return nil
|
||
|
}
|