154 lines
4.7 KiB
Go
154 lines
4.7 KiB
Go
package common
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import (
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"context"
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"fmt"
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"log"
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"math/rand"
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"sort"
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"github.com/aws/aws-sdk-go/service/ec2"
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"github.com/hashicorp/packer/packer-plugin-sdk/multistep"
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packersdk "github.com/hashicorp/packer/packer-plugin-sdk/packer"
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)
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// StepNetworkInfo queries AWS for information about
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// VPC's and Subnets that is used throughout the AMI creation process.
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//
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// Produces (adding them to the state bag):
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// vpc_id string - the VPC ID
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// subnet_id string - the Subnet ID
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// availability_zone string - the AZ name
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type StepNetworkInfo struct {
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VpcId string
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VpcFilter VpcFilterOptions
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SubnetId string
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SubnetFilter SubnetFilterOptions
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AvailabilityZone string
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SecurityGroupIds []string
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SecurityGroupFilter SecurityGroupFilterOptions
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}
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type subnetsSort []*ec2.Subnet
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func (a subnetsSort) Len() int { return len(a) }
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func (a subnetsSort) Swap(i, j int) { a[i], a[j] = a[j], a[i] }
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func (a subnetsSort) Less(i, j int) bool {
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return *a[i].AvailableIpAddressCount < *a[j].AvailableIpAddressCount
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}
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// Returns the most recent AMI out of a slice of images.
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func mostFreeSubnet(subnets []*ec2.Subnet) *ec2.Subnet {
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sortedSubnets := subnets
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sort.Sort(subnetsSort(sortedSubnets))
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return sortedSubnets[len(sortedSubnets)-1]
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}
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func (s *StepNetworkInfo) Run(ctx context.Context, state multistep.StateBag) multistep.StepAction {
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ec2conn := state.Get("ec2").(*ec2.EC2)
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ui := state.Get("ui").(packersdk.Ui)
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// VPC
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if s.VpcId == "" && !s.VpcFilter.Empty() {
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params := &ec2.DescribeVpcsInput{}
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params.Filters = buildEc2Filters(s.VpcFilter.Filters)
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s.VpcFilter.Filters["state"] = "available"
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log.Printf("Using VPC Filters %v", params)
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vpcResp, err := ec2conn.DescribeVpcs(params)
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if err != nil {
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err := fmt.Errorf("Error querying VPCs: %s", err)
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state.Put("error", err)
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ui.Error(err.Error())
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return multistep.ActionHalt
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}
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if len(vpcResp.Vpcs) != 1 {
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err := fmt.Errorf("Exactly one VPC should match the filter, but %d VPC's was found matching filters: %v", len(vpcResp.Vpcs), params)
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state.Put("error", err)
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ui.Error(err.Error())
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return multistep.ActionHalt
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}
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s.VpcId = *vpcResp.Vpcs[0].VpcId
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ui.Message(fmt.Sprintf("Found VPC ID: %s", s.VpcId))
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}
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// Subnet
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if s.SubnetId == "" && !s.SubnetFilter.Empty() {
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params := &ec2.DescribeSubnetsInput{}
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s.SubnetFilter.Filters["state"] = "available"
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if s.VpcId != "" {
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s.SubnetFilter.Filters["vpc-id"] = s.VpcId
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}
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if s.AvailabilityZone != "" {
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s.SubnetFilter.Filters["availabilityZone"] = s.AvailabilityZone
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}
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params.Filters = buildEc2Filters(s.SubnetFilter.Filters)
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log.Printf("Using Subnet Filters %v", params)
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subnetsResp, err := ec2conn.DescribeSubnets(params)
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if err != nil {
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err := fmt.Errorf("Error querying Subnets: %s", err)
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state.Put("error", err)
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ui.Error(err.Error())
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return multistep.ActionHalt
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}
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if len(subnetsResp.Subnets) == 0 {
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err := fmt.Errorf("No Subnets was found matching filters: %v", params)
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state.Put("error", err)
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ui.Error(err.Error())
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return multistep.ActionHalt
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}
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if len(subnetsResp.Subnets) > 1 && !s.SubnetFilter.Random && !s.SubnetFilter.MostFree {
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err := fmt.Errorf("Your filter matched %d Subnets. Please try a more specific search, or set random or most_free to true.", len(subnetsResp.Subnets))
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state.Put("error", err)
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ui.Error(err.Error())
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return multistep.ActionHalt
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}
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var subnet *ec2.Subnet
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switch {
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case s.SubnetFilter.MostFree:
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subnet = mostFreeSubnet(subnetsResp.Subnets)
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case s.SubnetFilter.Random:
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subnet = subnetsResp.Subnets[rand.Intn(len(subnetsResp.Subnets))]
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default:
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subnet = subnetsResp.Subnets[0]
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}
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s.SubnetId = *subnet.SubnetId
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ui.Message(fmt.Sprintf("Found Subnet ID: %s", s.SubnetId))
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}
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// Try to find AZ and VPC Id from Subnet if they are not yet found/given
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if s.SubnetId != "" && (s.AvailabilityZone == "" || s.VpcId == "") {
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log.Printf("[INFO] Finding AZ and VpcId for the given subnet '%s'", s.SubnetId)
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resp, err := ec2conn.DescribeSubnets(&ec2.DescribeSubnetsInput{SubnetIds: []*string{&s.SubnetId}})
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if err != nil {
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err := fmt.Errorf("Describing the subnet: %s returned error: %s.", s.SubnetId, err)
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state.Put("error", err)
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ui.Error(err.Error())
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return multistep.ActionHalt
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}
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if s.AvailabilityZone == "" {
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s.AvailabilityZone = *resp.Subnets[0].AvailabilityZone
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log.Printf("[INFO] AvailabilityZone found: '%s'", s.AvailabilityZone)
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}
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if s.VpcId == "" {
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s.VpcId = *resp.Subnets[0].VpcId
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log.Printf("[INFO] VpcId found: '%s'", s.VpcId)
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}
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}
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state.Put("vpc_id", s.VpcId)
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state.Put("availability_zone", s.AvailabilityZone)
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state.Put("subnet_id", s.SubnetId)
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return multistep.ActionContinue
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}
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func (s *StepNetworkInfo) Cleanup(multistep.StateBag) {}
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