Terraform module to provision public and private subnets
in an existing VPC
Note: this module is intended for use with an existing VPC and existing Internet Gateway. To create a new VPC, use terraform-aws-vpc module.
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IMPORTANT: The master
branch is used in source
just as an example. In your code, do not pin to master
because there may be breaking changes between releases.
Instead pin to the release tag (e.g. ?ref=tags/x.y.z
) of one of our latest releases.
module "subnets" {
source = "git::https://github.com/cloudposse/terraform-aws-dynamic-subnets.git?ref=master"
namespace = "eg"
stage = "prod"
name = "app"
vpc_id = "vpc-XXXXXXXX"
igw_id = "igw-XXXXXXXX"
cidr_block = "10.0.0.0/16"
availability_zones = ["us-east-1a", "us-east-1b"]
}
Learn about using providers with terraform modules.
terraform-aws-dynamic-subnets
creates a set of subnets based on ${var.cidr_block}
input and number of Availability Zones in the region.
For subnet set calculation, the module uses Terraform interpolation
${
cidrsubnet(
signum(length(var.cidr_block)) == 1 ?
var.cidr_block : data.aws_vpc.default.cidr_block,
ceil(log(length(data.aws_availability_zones.available.names) * 2, 2)),
count.index)
}
-
Use
${var.cidr_block}
input (if specified) or use a VPC CIDR blockdata.aws_vpc.default.cidr_block
(e.g.10.0.0.0/16
) -
Get number of available AZ in the region (e.g.
length(data.aws_availability_zones.available.names)
) -
Calculate
newbits
.newbits
number specifies how many subnets be the CIDR block (input or VPC) will be divided into.newbits
is the number ofbinary digits
.Example:
newbits = 1
- 2 subnets are available (1 binary digit
allows to count up to2
)newbits = 2
- 4 subnets are available (2 binary digits
allows to count up to4
)newbits = 3
- 8 subnets are available (3 binary digits
allows to count up to8
)etc.
-
We know, that we have
6
AZs in aus-east-1
region (see step 2). -
We need to create
1 public
subnet and1 private
subnet in each AZ, thus we need to create12 subnets
in total (6
AZs * (1 public
+1 private
)). -
We need
4 binary digits
for that ( 24 = 16 ). In order to calculate the number ofbinary digits
we should uselogarithm
function. We should usebase 2
logarithm because decimal numbers can be calculated aspowers
of binary number. See Wiki for more detailsExample:
For
12 subnets
we need3.58
binary digits
(log212)For
16 subnets
we need4
binary digits
(log216)For
7 subnets
we need2.81
binary digits
(log27)etc.
-
We can't use fractional values to calculate the number of
binary digits
. We can't round it down because smaller number ofbinary digits
is insufficient to represent the required subnets. We round it up. See ceil.Example:
For
12 subnets
we need4
binary digits
(ceil(log212))For
16 subnets
we need4
binary digits
(ceil(log216))For
7 subnets
we need3
binary digits
(ceil(log27))etc.
-
Assign private subnets according to AZ number (we're using
count.index
for that). -
Assign public subnets according to AZ number but with a shift according to the number of AZs in the region (see step 2)
-
Available targets:
help Help screen
help/all Display help for all targets
help/short This help short screen
lint Lint terraform code
Name | Version |
---|---|
terraform | ~> 0.12.0 |
aws | ~> 2.0 |
local | ~> 1.2 |
null | ~> 2.0 |
template | ~> 2.0 |
Name | Version |
---|---|
aws | ~> 2.0 |
Name | Description | Type | Default | Required |
---|---|---|---|---|
additional_tag_map | Additional tags for appending to each tag map | map(string) |
{} |
no |
attributes | Any extra attributes for naming these resources | list(string) |
[] |
no |
availability_zones | List of Availability Zones where subnets will be created | list(string) |
n/a | yes |
cidr_block | Base CIDR block which will be divided into subnet CIDR blocks (e.g. 10.0.0.0/16 ) |
string |
n/a | yes |
context | Default context to use for passing state between label invocations | object({ |
{ |
no |
delimiter | Delimiter to be used between namespace , stage , name and attributes |
string |
"-" |
no |
enabled | Set to false to prevent the module from creating any resources | bool |
true |
no |
environment | The environment name if not using stage | string |
"" |
no |
existing_nat_ips | Existing Elastic IPs to attach to the NAT Gateway or Instance instead of creating a new one. | list(string) |
[] |
no |
igw_id | Internet Gateway ID the public route table will point to (e.g. igw-9c26a123 ) |
string |
n/a | yes |
label_order | The naming order of the ID output and Name tag | list(string) |
[] |
no |
map_public_ip_on_launch | Instances launched into a public subnet should be assigned a public IP address | bool |
true |
no |
max_subnet_count | Sets the maximum amount of subnets to deploy. 0 will deploy a subnet for every provided availablility zone (in availability_zones variable) within the region |
number |
0 |
no |
name | Solution name, e.g. 'app' or 'cluster' | string |
"" |
no |
namespace | Namespace, which could be your organization name or abbreviation, e.g. 'eg' or 'cp' | string |
"" |
no |
nat_gateway_enabled | Flag to enable/disable NAT Gateways to allow servers in the private subnets to access the Internet | bool |
true |
no |
nat_instance_enabled | Flag to enable/disable NAT Instances to allow servers in the private subnets to access the Internet | bool |
false |
no |
nat_instance_type | NAT Instance type | string |
"t3.micro" |
no |
private_network_acl_id | Network ACL ID that will be added to private subnets. If empty, a new ACL will be created | string |
"" |
no |
private_subnets_additional_tags | Additional tags to be added to private subnets | map(string) |
{} |
no |
public_network_acl_id | Network ACL ID that will be added to public subnets. If empty, a new ACL will be created | string |
"" |
no |
public_subnets_additional_tags | Additional tags to be added to public subnets | map(string) |
{} |
no |
regex_replace_chars | Regex to replace chars with empty string in namespace , environment , stage and name . By default only hyphens, letters and digits are allowed, all other chars are removed |
string |
"/[^a-zA-Z0-9-]/" |
no |
stage | Stage, e.g. 'prod', 'staging', 'dev', or 'test' | string |
"" |
no |
subnet_type_tag_key | Key for subnet type tag to provide information about the type of subnets, e.g. cpco.io/subnet/type=private or cpco.io/subnet/type=public |
string |
"cpco.io/subnet/type" |
no |
subnet_type_tag_value_format | This is using the format interpolation symbols to allow the value of the subnet_type_tag_key to be modified. | string |
"%s" |
no |
tags | Additional tags to apply to all resources that use this label module | map(string) |
{} |
no |
vpc_default_route_table_id | Default route table for public subnets. If not set, will be created. (e.g. rtb-f4f0ce12 ) |
string |
"" |
no |
vpc_id | VPC ID where subnets will be created (e.g. vpc-aceb2723 ) |
string |
n/a | yes |
Name | Description |
---|---|
availability_zones | List of Availability Zones where subnets were created |
nat_gateway_ids | IDs of the NAT Gateways created |
nat_gateway_public_ips | EIP of the NAT Gateway |
nat_instance_ids | IDs of the NAT Instances created |
nat_ips | IP Addresses in use for NAT |
private_route_table_ids | IDs of the created private route tables |
private_subnet_cidrs | CIDR blocks of the created private subnets |
private_subnet_ids | IDs of the created private subnets |
public_route_table_ids | IDs of the created public route tables |
public_subnet_cidrs | CIDR blocks of the created public subnets |
public_subnet_ids | IDs of the created public subnets |
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Check out these related projects.
- terraform-aws-vpc - Terraform Module that defines a VPC with public/private subnets across multiple AZs with Internet Gateways
- terraform-aws-vpc-peering - Terraform module to create a peering connection between two VPCs
- terraform-aws-kops-vpc-peering - Terraform module to create a peering connection between a backing services VPC and a VPC created by Kops
- terraform-aws-named-subnets - Terraform module for named subnets provisioning.
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