216 lines
5.8 KiB
Go
216 lines
5.8 KiB
Go
package aws
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import (
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"fmt"
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"log"
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"time"
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"github.com/aws/aws-sdk-go/aws"
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"github.com/aws/aws-sdk-go/aws/awserr"
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"github.com/aws/aws-sdk-go/service/ec2"
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"github.com/hashicorp/terraform/helper/resource"
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"github.com/hashicorp/terraform/helper/schema"
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)
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func resourceAwsVpcPeeringConnection() *schema.Resource {
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return &schema.Resource{
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Create: resourceAwsVPCPeeringCreate,
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Read: resourceAwsVPCPeeringRead,
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Update: resourceAwsVPCPeeringUpdate,
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Delete: resourceAwsVPCPeeringDelete,
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Importer: &schema.ResourceImporter{
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State: schema.ImportStatePassthrough,
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},
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Schema: map[string]*schema.Schema{
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"peer_owner_id": &schema.Schema{
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Type: schema.TypeString,
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Required: true,
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ForceNew: true,
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DefaultFunc: schema.EnvDefaultFunc("AWS_ACCOUNT_ID", nil),
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},
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"peer_vpc_id": &schema.Schema{
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Type: schema.TypeString,
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Required: true,
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ForceNew: true,
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},
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"vpc_id": &schema.Schema{
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Type: schema.TypeString,
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Required: true,
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ForceNew: true,
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},
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"auto_accept": &schema.Schema{
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Type: schema.TypeBool,
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Optional: true,
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},
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"accept_status": &schema.Schema{
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Type: schema.TypeString,
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Computed: true,
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},
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"tags": tagsSchema(),
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},
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}
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}
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func resourceAwsVPCPeeringCreate(d *schema.ResourceData, meta interface{}) error {
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conn := meta.(*AWSClient).ec2conn
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// Create the vpc peering connection
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createOpts := &ec2.CreateVpcPeeringConnectionInput{
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PeerOwnerId: aws.String(d.Get("peer_owner_id").(string)),
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PeerVpcId: aws.String(d.Get("peer_vpc_id").(string)),
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VpcId: aws.String(d.Get("vpc_id").(string)),
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}
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log.Printf("[DEBUG] VPCPeeringCreate create config: %#v", createOpts)
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resp, err := conn.CreateVpcPeeringConnection(createOpts)
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if err != nil {
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return fmt.Errorf("Error creating vpc peering connection: %s", err)
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}
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// Get the ID and store it
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rt := resp.VpcPeeringConnection
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d.SetId(*rt.VpcPeeringConnectionId)
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log.Printf("[INFO] VPC Peering Connection ID: %s", d.Id())
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// Wait for the vpc peering connection to become available
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log.Printf(
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"[DEBUG] Waiting for vpc peering connection (%s) to become available",
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d.Id())
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stateConf := &resource.StateChangeConf{
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Pending: []string{"pending"},
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Target: []string{"pending-acceptance"},
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Refresh: resourceAwsVPCPeeringConnectionStateRefreshFunc(conn, d.Id()),
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Timeout: 1 * time.Minute,
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}
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if _, err := stateConf.WaitForState(); err != nil {
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return fmt.Errorf(
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"Error waiting for vpc peering (%s) to become available: %s",
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d.Id(), err)
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}
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return resourceAwsVPCPeeringUpdate(d, meta)
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}
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func resourceAwsVPCPeeringRead(d *schema.ResourceData, meta interface{}) error {
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conn := meta.(*AWSClient).ec2conn
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pcRaw, _, err := resourceAwsVPCPeeringConnectionStateRefreshFunc(conn, d.Id())()
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if err != nil {
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return err
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}
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if pcRaw == nil {
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d.SetId("")
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return nil
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}
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pc := pcRaw.(*ec2.VpcPeeringConnection)
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// The failed status is a status that we can assume just means the
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// connection is gone. Destruction isn't allowed, and it eventually
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// just "falls off" the console. See GH-2322
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if pc.Status != nil {
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if *pc.Status.Code == "failed" || *pc.Status.Code == "deleted" {
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log.Printf("[DEBUG] VPC Peering Connect (%s) in state (%s), removing", d.Id(), *pc.Status.Code)
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d.SetId("")
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return nil
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}
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}
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d.Set("accept_status", *pc.Status.Code)
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d.Set("peer_owner_id", pc.AccepterVpcInfo.OwnerId)
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d.Set("peer_vpc_id", pc.AccepterVpcInfo.VpcId)
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d.Set("vpc_id", pc.RequesterVpcInfo.VpcId)
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d.Set("tags", tagsToMap(pc.Tags))
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return nil
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}
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func resourceVPCPeeringConnectionAccept(conn *ec2.EC2, id string) (string, error) {
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log.Printf("[INFO] Accept VPC Peering Connection with id: %s", id)
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req := &ec2.AcceptVpcPeeringConnectionInput{
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VpcPeeringConnectionId: aws.String(id),
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}
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resp, err := conn.AcceptVpcPeeringConnection(req)
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if err != nil {
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return "", err
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}
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pc := resp.VpcPeeringConnection
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return *pc.Status.Code, err
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}
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func resourceAwsVPCPeeringUpdate(d *schema.ResourceData, meta interface{}) error {
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conn := meta.(*AWSClient).ec2conn
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if err := setTags(conn, d); err != nil {
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return err
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} else {
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d.SetPartial("tags")
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}
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if _, ok := d.GetOk("auto_accept"); ok {
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pcRaw, _, err := resourceAwsVPCPeeringConnectionStateRefreshFunc(conn, d.Id())()
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if err != nil {
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return err
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}
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if pcRaw == nil {
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d.SetId("")
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return nil
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}
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pc := pcRaw.(*ec2.VpcPeeringConnection)
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if pc.Status != nil && *pc.Status.Code == "pending-acceptance" {
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status, err := resourceVPCPeeringConnectionAccept(conn, d.Id())
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if err != nil {
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return err
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}
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log.Printf(
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"[DEBUG] VPC Peering connection accept status: %s",
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status)
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}
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}
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return resourceAwsVPCPeeringRead(d, meta)
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}
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func resourceAwsVPCPeeringDelete(d *schema.ResourceData, meta interface{}) error {
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conn := meta.(*AWSClient).ec2conn
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_, err := conn.DeleteVpcPeeringConnection(
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&ec2.DeleteVpcPeeringConnectionInput{
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VpcPeeringConnectionId: aws.String(d.Id()),
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})
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return err
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}
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// resourceAwsVPCPeeringConnectionStateRefreshFunc returns a resource.StateRefreshFunc that is used to watch
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// a VPCPeeringConnection.
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func resourceAwsVPCPeeringConnectionStateRefreshFunc(conn *ec2.EC2, id string) resource.StateRefreshFunc {
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return func() (interface{}, string, error) {
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resp, err := conn.DescribeVpcPeeringConnections(&ec2.DescribeVpcPeeringConnectionsInput{
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VpcPeeringConnectionIds: []*string{aws.String(id)},
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})
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if err != nil {
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if ec2err, ok := err.(awserr.Error); ok && ec2err.Code() == "InvalidVpcPeeringConnectionID.NotFound" {
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resp = nil
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} else {
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log.Printf("Error on VPCPeeringConnectionStateRefresh: %s", err)
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return nil, "", err
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}
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}
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if resp == nil {
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// Sometimes AWS just has consistency issues and doesn't see
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// our instance yet. Return an empty state.
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return nil, "", nil
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}
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pc := resp.VpcPeeringConnections[0]
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return pc, *pc.Status.Code, nil
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}
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}
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