{"id":14957863,"url":"https://github.com/cloudposse/terraform-aws-ecs-web-app","last_synced_at":"2025-04-08T08:15:47.834Z","repository":{"id":37663170,"uuid":"137762186","full_name":"cloudposse/terraform-aws-ecs-web-app","owner":"cloudposse","description":"Terraform module that implements a web app on ECS and supports autoscaling, CI/CD, monitoring, ALB integration, and much 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markdownlint-disable --\u003e\n\u003ca href=\"https://cpco.io/homepage\"\u003e\u003cimg src=\"https://github.com/cloudposse/terraform-aws-ecs-web-app/blob/main/.github/banner.png?raw=true\" alt=\"Project Banner\"/\u003e\u003c/a\u003e\u003cbr/\u003e\n    \u003cp align=\"right\"\u003e\n\u003ca href=\"https://github.com/cloudposse/terraform-aws-ecs-web-app/releases/latest\"\u003e\u003cimg src=\"https://img.shields.io/github/release/cloudposse/terraform-aws-ecs-web-app.svg?style=for-the-badge\" alt=\"Latest Release\"/\u003e\u003c/a\u003e\u003ca href=\"https://github.com/cloudposse/terraform-aws-ecs-web-app/commits\"\u003e\u003cimg src=\"https://img.shields.io/github/last-commit/cloudposse/terraform-aws-ecs-web-app.svg?style=for-the-badge\" alt=\"Last Updated\"/\u003e\u003c/a\u003e\u003ca href=\"https://slack.cloudposse.com\"\u003e\u003cimg src=\"https://slack.cloudposse.com/for-the-badge.svg\" alt=\"Slack Community\"/\u003e\u003c/a\u003e\u003c/p\u003e\n\u003c!-- markdownlint-restore --\u003e\n\n\u003c!--\n\n\n\n\n  ** DO NOT EDIT THIS FILE\n  **\n  ** This file was automatically generated by the `cloudposse/build-harness`.\n  ** 1) Make all changes to `README.yaml`\n  ** 2) Run `make init` (you only need to do this once)\n  ** 3) Run`make readme` to rebuild this file.\n  **\n  ** (We maintain HUNDREDS of open source projects. This is how we maintain our sanity.)\n  **\n\n\n\n\n\n--\u003e\n\nA Terraform module which implements a web app on ECS and supporting AWS resources.\n\n\n\u003e [!TIP]\n\u003e #### 👽 Use Atmos with Terraform\n\u003e Cloud Posse uses [`atmos`](https://atmos.tools) to easily orchestrate multiple environments using Terraform. \u003cbr/\u003e\n\u003e Works with [Github Actions](https://atmos.tools/integrations/github-actions/), [Atlantis](https://atmos.tools/integrations/atlantis), or [Spacelift](https://atmos.tools/integrations/spacelift).\n\u003e\n\u003e \u003cdetails\u003e\n\u003e \u003csummary\u003e\u003cstrong\u003eWatch demo of using Atmos with Terraform\u003c/strong\u003e\u003c/summary\u003e\n\u003e \u003cimg src=\"https://github.com/cloudposse/atmos/blob/main/docs/demo.gif?raw=true\"/\u003e\u003cbr/\u003e\n\u003e \u003ci\u003eExample of running \u003ca href=\"https://atmos.tools\"\u003e\u003ccode\u003eatmos\u003c/code\u003e\u003c/a\u003e to manage infrastructure from our \u003ca href=\"https://atmos.tools/quick-start/\"\u003eQuick Start\u003c/a\u003e tutorial.\u003c/i\u003e\n\u003e \u003c/detalis\u003e\n\n\n\n\n\n## Usage\n\nFor a complete example, see [examples/complete](examples/complete).\n\nFor automated tests of the complete example using [bats](https://github.com/bats-core/bats-core) and [Terratest](https://github.com/gruntwork-io/terratest) (which test and deploy the example on AWS), see [test](test).\n\nOther examples:\n\n- [without authentication](examples/without_authentication) - without authentication\n- [with Google OIDC authentication](examples/with_google_oidc_authentication) - with Google OIDC authentication\n- [with Cognito authentication](examples/with_cognito_authentication) - with Cognito authentication\n\n```\nmodule \"default_backend_web_app\" {\n  source = \"cloudposse/ecs-web-app/aws\"\n  # Cloud Posse recommends pinning every module to a specific version\n  # version     = \"x.x.x\"\n  namespace                                       = \"eg\"\n  stage                                           = \"testing\"\n  name                                            = \"appname\"\n  vpc_id                                          = module.vpc.vpc_id\n  alb_ingress_unauthenticated_listener_arns       = module.alb.listener_arns\n  alb_ingress_unauthenticated_listener_arns_count = 1\n  aws_logs_region                                 = \"us-east-2\"\n  ecs_cluster_arn                                 = aws_ecs_cluster.default.arn\n  ecs_cluster_name                                = aws_ecs_cluster.default.name\n  ecs_security_group_ids                          = [module.vpc.vpc_default_security_group_id]\n  ecs_private_subnet_ids                          = module.subnets.private_subnet_ids\n  alb_ingress_healthcheck_path                    = \"/healthz\"\n  alb_ingress_unauthenticated_paths               = [\"/*\"]\n  codepipeline_enabled                            = false\n\n  container_environment = [\n    {\n      name = \"COOKIE\"\n      value = \"cookiemonster\"\n    },\n    {\n      name = \"PORT\"\n      value = \"80\"\n    }\n  ]\n}\n```\n\n\u003e [!IMPORTANT]\n\u003e In Cloud Posse's examples, we avoid pinning modules to specific versions to prevent discrepancies between the documentation\n\u003e and the latest released versions. However, for your own projects, we strongly advise pinning each module to the exact version\n\u003e you're using. This practice ensures the stability of your infrastructure. Additionally, we recommend implementing a systematic\n\u003e approach for updating versions to avoid unexpected changes.\n\n\n\n\n\n\n\n\n\u003c!-- markdownlint-disable --\u003e\n## Makefile Targets\n```text\nAvailable targets:\n\n  help                                Help screen\n  help/all                            Display help for all targets\n  help/short                          This help short screen\n  lint                                Lint terraform code\n\n```\n\u003c!-- markdownlint-restore --\u003e\n\u003c!-- markdownlint-disable --\u003e\n## Requirements\n\n| Name | Version |\n|------|---------|\n| \u003ca name=\"requirement_terraform\"\u003e\u003c/a\u003e [terraform](#requirement\\_terraform) | \u003e= 1 |\n| \u003ca name=\"requirement_aws\"\u003e\u003c/a\u003e [aws](#requirement\\_aws) | \u003e= 5.0 |\n\n## Providers\n\n| Name | Version |\n|------|---------|\n| \u003ca name=\"provider_aws\"\u003e\u003c/a\u003e [aws](#provider\\_aws) | \u003e= 5.0 |\n\n## Modules\n\n| Name | Source | Version |\n|------|--------|---------|\n| \u003ca name=\"module_alb_ingress\"\u003e\u003c/a\u003e [alb\\_ingress](#module\\_alb\\_ingress) | cloudposse/alb-ingress/aws | 0.28.0 |\n| \u003ca name=\"module_alb_target_group_cloudwatch_sns_alarms\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_cloudwatch\\_sns\\_alarms](#module\\_alb\\_target\\_group\\_cloudwatch\\_sns\\_alarms) | cloudposse/alb-target-group-cloudwatch-sns-alarms/aws | 0.17.0 |\n| \u003ca name=\"module_container_definition\"\u003e\u003c/a\u003e [container\\_definition](#module\\_container\\_definition) | cloudposse/ecs-container-definition/aws | 0.58.1 |\n| \u003ca name=\"module_ecr\"\u003e\u003c/a\u003e [ecr](#module\\_ecr) | cloudposse/ecr/aws | 0.41.0 |\n| \u003ca name=\"module_ecs_alb_service_task\"\u003e\u003c/a\u003e [ecs\\_alb\\_service\\_task](#module\\_ecs\\_alb\\_service\\_task) | cloudposse/ecs-alb-service-task/aws | 0.64.1 |\n| \u003ca name=\"module_ecs_cloudwatch_autoscaling\"\u003e\u003c/a\u003e [ecs\\_cloudwatch\\_autoscaling](#module\\_ecs\\_cloudwatch\\_autoscaling) | cloudposse/ecs-cloudwatch-autoscaling/aws | 0.7.5 |\n| \u003ca name=\"module_ecs_cloudwatch_sns_alarms\"\u003e\u003c/a\u003e [ecs\\_cloudwatch\\_sns\\_alarms](#module\\_ecs\\_cloudwatch\\_sns\\_alarms) | cloudposse/ecs-cloudwatch-sns-alarms/aws | 0.12.2 |\n| \u003ca name=\"module_ecs_codepipeline\"\u003e\u003c/a\u003e [ecs\\_codepipeline](#module\\_ecs\\_codepipeline) | cloudposse/ecs-codepipeline/aws | 0.34.1 |\n| \u003ca name=\"module_this\"\u003e\u003c/a\u003e [this](#module\\_this) | cloudposse/label/null | 0.25.0 |\n\n## Resources\n\n| Name | Type |\n|------|------|\n| [aws_cloudwatch_log_group.app](https://registry.terraform.io/providers/hashicorp/aws/latest/docs/resources/cloudwatch_log_group) | resource |\n| [aws_region.current](https://registry.terraform.io/providers/hashicorp/aws/latest/docs/data-sources/region) | data source |\n\n## Inputs\n\n| Name | Description | Type | Default | Required |\n|------|-------------|------|---------|:--------:|\n| \u003ca name=\"input_additional_tag_map\"\u003e\u003c/a\u003e [additional\\_tag\\_map](#input\\_additional\\_tag\\_map) | Additional key-value pairs to add to each map in `tags_as_list_of_maps`. Not added to `tags` or `id`.\u003cbr/\u003eThis is for some rare cases where resources want additional configuration of tags\u003cbr/\u003eand therefore take a list of maps with tag key, value, and additional configuration. | `map(string)` | `{}` | no |\n| \u003ca name=\"input_alb_arn_suffix\"\u003e\u003c/a\u003e [alb\\_arn\\_suffix](#input\\_alb\\_arn\\_suffix) | ARN suffix of the ALB for the Target Group | `string` | `\"\"` | no |\n| \u003ca name=\"input_alb_container_name\"\u003e\u003c/a\u003e [alb\\_container\\_name](#input\\_alb\\_container\\_name) | The name of the container to associate with the ALB. If not provided, the generated container will be used | `string` | `null` | no |\n| \u003ca name=\"input_alb_ingress_authenticated_hosts\"\u003e\u003c/a\u003e [alb\\_ingress\\_authenticated\\_hosts](#input\\_alb\\_ingress\\_authenticated\\_hosts) | Authenticated hosts to match in Hosts header | `list(string)` | `[]` | no |\n| \u003ca name=\"input_alb_ingress_authenticated_listener_arns\"\u003e\u003c/a\u003e [alb\\_ingress\\_authenticated\\_listener\\_arns](#input\\_alb\\_ingress\\_authenticated\\_listener\\_arns) | A list of authenticated ALB listener ARNs to attach ALB listener rules to | `list(string)` | `[]` | no |\n| \u003ca name=\"input_alb_ingress_authenticated_listener_arns_count\"\u003e\u003c/a\u003e [alb\\_ingress\\_authenticated\\_listener\\_arns\\_count](#input\\_alb\\_ingress\\_authenticated\\_listener\\_arns\\_count) | The number of authenticated ARNs in `alb_ingress_authenticated_listener_arns`. This is necessary to work around a limitation in Terraform where counts cannot be computed | `number` | `0` | no |\n| \u003ca name=\"input_alb_ingress_authenticated_paths\"\u003e\u003c/a\u003e [alb\\_ingress\\_authenticated\\_paths](#input\\_alb\\_ingress\\_authenticated\\_paths) | Authenticated path pattern to match (a maximum of 1 can be defined) | `list(string)` | `[]` | no |\n| \u003ca name=\"input_alb_ingress_enable_default_target_group\"\u003e\u003c/a\u003e [alb\\_ingress\\_enable\\_default\\_target\\_group](#input\\_alb\\_ingress\\_enable\\_default\\_target\\_group) | If true, create a default target group for the ALB ingress | `bool` | `true` | no |\n| \u003ca name=\"input_alb_ingress_health_check_healthy_threshold\"\u003e\u003c/a\u003e [alb\\_ingress\\_health\\_check\\_healthy\\_threshold](#input\\_alb\\_ingress\\_health\\_check\\_healthy\\_threshold) | The number of consecutive health checks successes required before healthy | `number` | `2` | no |\n| \u003ca name=\"input_alb_ingress_health_check_interval\"\u003e\u003c/a\u003e [alb\\_ingress\\_health\\_check\\_interval](#input\\_alb\\_ingress\\_health\\_check\\_interval) | The duration in seconds in between health checks | `number` | `15` | no |\n| \u003ca name=\"input_alb_ingress_health_check_matcher\"\u003e\u003c/a\u003e [alb\\_ingress\\_health\\_check\\_matcher](#input\\_alb\\_ingress\\_health\\_check\\_matcher) | The HTTP response codes to indicate a healthy check | `string` | `\"200-399\"` | no |\n| \u003ca name=\"input_alb_ingress_health_check_timeout\"\u003e\u003c/a\u003e [alb\\_ingress\\_health\\_check\\_timeout](#input\\_alb\\_ingress\\_health\\_check\\_timeout) | The amount of time to wait in seconds before failing a health check request | `number` | `10` | no |\n| \u003ca name=\"input_alb_ingress_health_check_unhealthy_threshold\"\u003e\u003c/a\u003e [alb\\_ingress\\_health\\_check\\_unhealthy\\_threshold](#input\\_alb\\_ingress\\_health\\_check\\_unhealthy\\_threshold) | The number of consecutive health check failures required before unhealthy | `number` | `2` | no |\n| \u003ca name=\"input_alb_ingress_healthcheck_path\"\u003e\u003c/a\u003e [alb\\_ingress\\_healthcheck\\_path](#input\\_alb\\_ingress\\_healthcheck\\_path) | The path of the healthcheck which the ALB checks | `string` | `\"/\"` | no |\n| \u003ca name=\"input_alb_ingress_healthcheck_protocol\"\u003e\u003c/a\u003e [alb\\_ingress\\_healthcheck\\_protocol](#input\\_alb\\_ingress\\_healthcheck\\_protocol) | The protocol to use to connect with the target. Defaults to `HTTP`. Not applicable when `target_type` is `lambda` | `string` | `\"HTTP\"` | no |\n| \u003ca name=\"input_alb_ingress_listener_authenticated_priority\"\u003e\u003c/a\u003e [alb\\_ingress\\_listener\\_authenticated\\_priority](#input\\_alb\\_ingress\\_listener\\_authenticated\\_priority) | The priority for the rules with authentication, between 1 and 50000 (1 being highest priority). Must be different from `alb_ingress_listener_unauthenticated_priority` since a listener can't have multiple rules with the same priority | `number` | `300` | no |\n| \u003ca name=\"input_alb_ingress_listener_unauthenticated_priority\"\u003e\u003c/a\u003e [alb\\_ingress\\_listener\\_unauthenticated\\_priority](#input\\_alb\\_ingress\\_listener\\_unauthenticated\\_priority) | The priority for the rules without authentication, between 1 and 50000 (1 being highest priority). Must be different from `alb_ingress_listener_authenticated_priority` since a listener can't have multiple rules with the same priority | `number` | `1000` | no |\n| \u003ca name=\"input_alb_ingress_load_balancing_algorithm_type\"\u003e\u003c/a\u003e [alb\\_ingress\\_load\\_balancing\\_algorithm\\_type](#input\\_alb\\_ingress\\_load\\_balancing\\_algorithm\\_type) | Determines how the load balancer selects targets when routing requests. Only applicable for Application Load Balancer Target Groups. The value is round\\_robin or least\\_outstanding\\_requests. The default is round\\_robin. | `string` | `\"round_robin\"` | no |\n| \u003ca name=\"input_alb_ingress_protocol\"\u003e\u003c/a\u003e [alb\\_ingress\\_protocol](#input\\_alb\\_ingress\\_protocol) | The protocol for the created ALB target group (if target\\_group\\_arn is not set). One of `HTTP`, `HTTPS`. Defaults to `HTTP`. | `string` | `\"HTTP\"` | no |\n| \u003ca name=\"input_alb_ingress_protocol_version\"\u003e\u003c/a\u003e [alb\\_ingress\\_protocol\\_version](#input\\_alb\\_ingress\\_protocol\\_version) | The protocol version. One of `HTTP1`, `HTTP2`, `GRPC`. Only applicable when protocol is HTTP or HTTPS. Specify GRPC to send requests to targets using gRPC. Specify HTTP2 to send requests to targets using HTTP/2. The default is `HTTP1`, which sends requests to targets using HTTP/1.1 | `string` | `\"HTTP1\"` | no |\n| \u003ca name=\"input_alb_ingress_target_group_arn\"\u003e\u003c/a\u003e [alb\\_ingress\\_target\\_group\\_arn](#input\\_alb\\_ingress\\_target\\_group\\_arn) | Existing ALB target group ARN. If provided, set `alb_ingress_enable_default_target_group` to `false` to disable creation of the default target group | `string` | `\"\"` | no |\n| \u003ca name=\"input_alb_ingress_target_type\"\u003e\u003c/a\u003e [alb\\_ingress\\_target\\_type](#input\\_alb\\_ingress\\_target\\_type) | Target type for the ALB ingress. One of `ip`, `instance`, `lambda` or `container`. Defaults to `ip`, for bridge networking mode should be `instance` | `string` | `\"ip\"` | no |\n| \u003ca name=\"input_alb_ingress_unauthenticated_hosts\"\u003e\u003c/a\u003e [alb\\_ingress\\_unauthenticated\\_hosts](#input\\_alb\\_ingress\\_unauthenticated\\_hosts) | Unauthenticated hosts to match in Hosts header | `list(string)` | `[]` | no |\n| \u003ca name=\"input_alb_ingress_unauthenticated_listener_arns\"\u003e\u003c/a\u003e [alb\\_ingress\\_unauthenticated\\_listener\\_arns](#input\\_alb\\_ingress\\_unauthenticated\\_listener\\_arns) | A list of unauthenticated ALB listener ARNs to attach ALB listener rules to | `list(string)` | `[]` | no |\n| \u003ca name=\"input_alb_ingress_unauthenticated_listener_arns_count\"\u003e\u003c/a\u003e [alb\\_ingress\\_unauthenticated\\_listener\\_arns\\_count](#input\\_alb\\_ingress\\_unauthenticated\\_listener\\_arns\\_count) | The number of unauthenticated ARNs in `alb_ingress_unauthenticated_listener_arns`. This is necessary to work around a limitation in Terraform where counts cannot be computed | `number` | `0` | no |\n| \u003ca name=\"input_alb_ingress_unauthenticated_paths\"\u003e\u003c/a\u003e [alb\\_ingress\\_unauthenticated\\_paths](#input\\_alb\\_ingress\\_unauthenticated\\_paths) | Unauthenticated path pattern to match (a maximum of 1 can be defined) | `list(string)` | `[]` | no |\n| \u003ca name=\"input_alb_security_group\"\u003e\u003c/a\u003e [alb\\_security\\_group](#input\\_alb\\_security\\_group) | Security group of the ALB | `string` | n/a | yes |\n| \u003ca name=\"input_alb_stickiness_cookie_duration\"\u003e\u003c/a\u003e [alb\\_stickiness\\_cookie\\_duration](#input\\_alb\\_stickiness\\_cookie\\_duration) | The time period, in seconds, during which requests from a client should be routed to the same target. After this time period expires, the load balancer-generated cookie is considered stale. The range is 1 second to 1 week (604800 seconds). The default value is 1 day (86400 seconds) | `number` | `86400` | no |\n| \u003ca name=\"input_alb_stickiness_enabled\"\u003e\u003c/a\u003e [alb\\_stickiness\\_enabled](#input\\_alb\\_stickiness\\_enabled) | Boolean to enable / disable `stickiness`. Default is `true` | `bool` | `true` | no |\n| \u003ca name=\"input_alb_stickiness_type\"\u003e\u003c/a\u003e [alb\\_stickiness\\_type](#input\\_alb\\_stickiness\\_type) | The type of sticky sessions. The only current possible value is `lb_cookie` | `string` | `\"lb_cookie\"` | no |\n| \u003ca name=\"input_alb_target_group_alarms_3xx_threshold\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_alarms\\_3xx\\_threshold](#input\\_alb\\_target\\_group\\_alarms\\_3xx\\_threshold) | The maximum number of 3XX HTTPCodes in a given period for ECS Service | `number` | `25` | no |\n| \u003ca name=\"input_alb_target_group_alarms_4xx_threshold\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_alarms\\_4xx\\_threshold](#input\\_alb\\_target\\_group\\_alarms\\_4xx\\_threshold) | The maximum number of 4XX HTTPCodes in a given period for ECS Service | `number` | `25` | no |\n| \u003ca name=\"input_alb_target_group_alarms_5xx_threshold\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_alarms\\_5xx\\_threshold](#input\\_alb\\_target\\_group\\_alarms\\_5xx\\_threshold) | The maximum number of 5XX HTTPCodes in a given period for ECS Service | `number` | `25` | no |\n| \u003ca name=\"input_alb_target_group_alarms_alarm_actions\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_alarms\\_alarm\\_actions](#input\\_alb\\_target\\_group\\_alarms\\_alarm\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to execute when ALB Target Group alarms transition into an ALARM state from any other state | `list(string)` | `[]` | no |\n| \u003ca name=\"input_alb_target_group_alarms_enabled\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_alarms\\_enabled](#input\\_alb\\_target\\_group\\_alarms\\_enabled) | A boolean to enable/disable CloudWatch Alarms for ALB Target metrics | `bool` | `false` | no |\n| \u003ca name=\"input_alb_target_group_alarms_evaluation_periods\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_alarms\\_evaluation\\_periods](#input\\_alb\\_target\\_group\\_alarms\\_evaluation\\_periods) | The number of periods to analyze for ALB CloudWatch Alarms | `number` | `1` | no |\n| \u003ca name=\"input_alb_target_group_alarms_insufficient_data_actions\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_alarms\\_insufficient\\_data\\_actions](#input\\_alb\\_target\\_group\\_alarms\\_insufficient\\_data\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to execute when ALB Target Group alarms transition into an INSUFFICIENT\\_DATA state from any other state | `list(string)` | `[]` | no |\n| \u003ca name=\"input_alb_target_group_alarms_ok_actions\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_alarms\\_ok\\_actions](#input\\_alb\\_target\\_group\\_alarms\\_ok\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to execute when ALB Target Group alarms transition into an OK state from any other state | `list(string)` | `[]` | no |\n| \u003ca name=\"input_alb_target_group_alarms_period\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_alarms\\_period](#input\\_alb\\_target\\_group\\_alarms\\_period) | The period (in seconds) to analyze for ALB CloudWatch Alarms | `number` | `300` | no |\n| \u003ca name=\"input_alb_target_group_alarms_response_time_threshold\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_alarms\\_response\\_time\\_threshold](#input\\_alb\\_target\\_group\\_alarms\\_response\\_time\\_threshold) | The maximum ALB Target Group response time | `number` | `0.5` | no |\n| \u003ca name=\"input_assign_public_ip\"\u003e\u003c/a\u003e [assign\\_public\\_ip](#input\\_assign\\_public\\_ip) | Assign a public IP address to the ENI (Fargate launch type only). Valid values are `true` or `false`. Default `false` | `bool` | `false` | no |\n| \u003ca name=\"input_attributes\"\u003e\u003c/a\u003e [attributes](#input\\_attributes) | ID element. Additional attributes (e.g. `workers` or `cluster`) to add to `id`,\u003cbr/\u003ein the order they appear in the list. New attributes are appended to the\u003cbr/\u003eend of the list. The elements of the list are joined by the `delimiter`\u003cbr/\u003eand treated as a single ID element. | `list(string)` | `[]` | no |\n| \u003ca name=\"input_authentication_cognito_scope\"\u003e\u003c/a\u003e [authentication\\_cognito\\_scope](#input\\_authentication\\_cognito\\_scope) | Cognito scope, which should be a space separated string of requested scopes (see https://openid.net/specs/openid-connect-core-1_0.html#ScopeClaims) | `string` | `null` | no |\n| \u003ca name=\"input_authentication_cognito_user_pool_arn\"\u003e\u003c/a\u003e [authentication\\_cognito\\_user\\_pool\\_arn](#input\\_authentication\\_cognito\\_user\\_pool\\_arn) | Cognito User Pool ARN | `string` | `\"\"` | no |\n| \u003ca name=\"input_authentication_cognito_user_pool_client_id\"\u003e\u003c/a\u003e [authentication\\_cognito\\_user\\_pool\\_client\\_id](#input\\_authentication\\_cognito\\_user\\_pool\\_client\\_id) | Cognito User Pool Client ID | `string` | `\"\"` | no |\n| \u003ca name=\"input_authentication_cognito_user_pool_domain\"\u003e\u003c/a\u003e [authentication\\_cognito\\_user\\_pool\\_domain](#input\\_authentication\\_cognito\\_user\\_pool\\_domain) | Cognito User Pool Domain. The User Pool Domain should be set to the domain prefix (`xxx`) instead of full domain (https://xxx.auth.us-west-2.amazoncognito.com) | `string` | `\"\"` | no |\n| \u003ca name=\"input_authentication_oidc_authorization_endpoint\"\u003e\u003c/a\u003e [authentication\\_oidc\\_authorization\\_endpoint](#input\\_authentication\\_oidc\\_authorization\\_endpoint) | OIDC Authorization Endpoint | `string` | `\"\"` | no |\n| \u003ca name=\"input_authentication_oidc_client_id\"\u003e\u003c/a\u003e [authentication\\_oidc\\_client\\_id](#input\\_authentication\\_oidc\\_client\\_id) | OIDC Client ID | `string` | `\"\"` | no |\n| \u003ca name=\"input_authentication_oidc_client_secret\"\u003e\u003c/a\u003e [authentication\\_oidc\\_client\\_secret](#input\\_authentication\\_oidc\\_client\\_secret) | OIDC Client Secret | `string` | `\"\"` | no |\n| \u003ca name=\"input_authentication_oidc_issuer\"\u003e\u003c/a\u003e [authentication\\_oidc\\_issuer](#input\\_authentication\\_oidc\\_issuer) | OIDC Issuer | `string` | `\"\"` | no |\n| \u003ca name=\"input_authentication_oidc_scope\"\u003e\u003c/a\u003e [authentication\\_oidc\\_scope](#input\\_authentication\\_oidc\\_scope) | OIDC scope, which should be a space separated string of requested scopes (see https://openid.net/specs/openid-connect-core-1_0.html#ScopeClaims, and https://developers.google.com/identity/protocols/oauth2/openid-connect#scope-param for an example set of scopes when using Google as the IdP) | `string` | `null` | no |\n| \u003ca name=\"input_authentication_oidc_token_endpoint\"\u003e\u003c/a\u003e [authentication\\_oidc\\_token\\_endpoint](#input\\_authentication\\_oidc\\_token\\_endpoint) | OIDC Token Endpoint | `string` | `\"\"` | no |\n| \u003ca name=\"input_authentication_oidc_user_info_endpoint\"\u003e\u003c/a\u003e [authentication\\_oidc\\_user\\_info\\_endpoint](#input\\_authentication\\_oidc\\_user\\_info\\_endpoint) | OIDC User Info Endpoint | `string` | `\"\"` | no |\n| \u003ca name=\"input_authentication_type\"\u003e\u003c/a\u003e [authentication\\_type](#input\\_authentication\\_type) | Authentication type. Supported values are `COGNITO` and `OIDC` | `string` | `\"\"` | no |\n| \u003ca name=\"input_autoscaling_dimension\"\u003e\u003c/a\u003e [autoscaling\\_dimension](#input\\_autoscaling\\_dimension) | Dimension to autoscale on (valid options: cpu, memory) | `string` | `\"memory\"` | no |\n| \u003ca name=\"input_autoscaling_enabled\"\u003e\u003c/a\u003e [autoscaling\\_enabled](#input\\_autoscaling\\_enabled) | A boolean to enable/disable Autoscaling policy for ECS Service | `bool` | `false` | no |\n| \u003ca name=\"input_autoscaling_max_capacity\"\u003e\u003c/a\u003e [autoscaling\\_max\\_capacity](#input\\_autoscaling\\_max\\_capacity) | Maximum number of running instances of a Service | `number` | `2` | no |\n| \u003ca name=\"input_autoscaling_min_capacity\"\u003e\u003c/a\u003e [autoscaling\\_min\\_capacity](#input\\_autoscaling\\_min\\_capacity) | Minimum number of running instances of a Service | `number` | `1` | no |\n| \u003ca name=\"input_autoscaling_scale_down_adjustment\"\u003e\u003c/a\u003e [autoscaling\\_scale\\_down\\_adjustment](#input\\_autoscaling\\_scale\\_down\\_adjustment) | Scaling adjustment to make during scale down event | `number` | `-1` | no |\n| \u003ca name=\"input_autoscaling_scale_down_cooldown\"\u003e\u003c/a\u003e [autoscaling\\_scale\\_down\\_cooldown](#input\\_autoscaling\\_scale\\_down\\_cooldown) | Period (in seconds) to wait between scale down events | `number` | `300` | no |\n| \u003ca name=\"input_autoscaling_scale_up_adjustment\"\u003e\u003c/a\u003e [autoscaling\\_scale\\_up\\_adjustment](#input\\_autoscaling\\_scale\\_up\\_adjustment) | Scaling adjustment to make during scale up event | `number` | `1` | no |\n| \u003ca name=\"input_autoscaling_scale_up_cooldown\"\u003e\u003c/a\u003e [autoscaling\\_scale\\_up\\_cooldown](#input\\_autoscaling\\_scale\\_up\\_cooldown) | Period (in seconds) to wait between scale up events | `number` | `60` | no |\n| \u003ca name=\"input_aws_logs_prefix\"\u003e\u003c/a\u003e [aws\\_logs\\_prefix](#input\\_aws\\_logs\\_prefix) | Custom AWS Logs prefix. If empty name from label module will be used | `string` | `\"\"` | no |\n| \u003ca name=\"input_aws_logs_region\"\u003e\u003c/a\u003e [aws\\_logs\\_region](#input\\_aws\\_logs\\_region) | The region for the AWS Cloudwatch Logs group | `string` | `null` | no |\n| \u003ca name=\"input_badge_enabled\"\u003e\u003c/a\u003e [badge\\_enabled](#input\\_badge\\_enabled) | Generates a publicly-accessible URL for the projects build badge. Available as badge\\_url attribute when enabled | `bool` | `false` | no |\n| \u003ca name=\"input_branch\"\u003e\u003c/a\u003e [branch](#input\\_branch) | Branch of the GitHub repository, e.g. `master` | `string` | `\"\"` | no |\n| \u003ca name=\"input_build_environment_variables\"\u003e\u003c/a\u003e [build\\_environment\\_variables](#input\\_build\\_environment\\_variables) | A list of maps, that contain the keys 'name', 'value', and 'type' to be used as additional environment variables for the build. Valid types are 'PLAINTEXT', 'PARAMETER\\_STORE', or 'SECRETS\\_MANAGER' | \u003cpre\u003elist(object(\u003cbr/\u003e    {\u003cbr/\u003e      name  = string\u003cbr/\u003e      value = string\u003cbr/\u003e      type  = string\u003cbr/\u003e  }))\u003c/pre\u003e | `[]` | no |\n| \u003ca name=\"input_build_image\"\u003e\u003c/a\u003e [build\\_image](#input\\_build\\_image) | Docker image for build environment, _e.g._ `aws/codebuild/docker:docker:17.09.0` | `string` | `\"aws/codebuild/docker:17.09.0\"` | no |\n| \u003ca name=\"input_build_timeout\"\u003e\u003c/a\u003e [build\\_timeout](#input\\_build\\_timeout) | How long in minutes, from 5 to 480 (8 hours), for AWS CodeBuild to wait until timing out any related build that does not get marked as completed | `number` | `60` | no |\n| \u003ca name=\"input_buildspec\"\u003e\u003c/a\u003e [buildspec](#input\\_buildspec) | Declaration to use for building the project. [For more info](http://docs.aws.amazon.com/codebuild/latest/userguide/build-spec-ref.html) | `string` | `\"\"` | no |\n| \u003ca name=\"input_capacity_provider_strategies\"\u003e\u003c/a\u003e [capacity\\_provider\\_strategies](#input\\_capacity\\_provider\\_strategies) | The capacity provider strategies to use for the service. See `capacity_provider_strategy` configuration block: https://www.terraform.io/docs/providers/aws/r/ecs_service.html#capacity_provider_strategy | \u003cpre\u003elist(object({\u003cbr/\u003e    capacity_provider = string\u003cbr/\u003e    weight            = number\u003cbr/\u003e    base              = number\u003cbr/\u003e  }))\u003c/pre\u003e | `[]` | no |\n| \u003ca name=\"input_circuit_breaker_deployment_enabled\"\u003e\u003c/a\u003e [circuit\\_breaker\\_deployment\\_enabled](#input\\_circuit\\_breaker\\_deployment\\_enabled) | If `true`, enable the deployment circuit breaker logic for the service | `bool` | `false` | no |\n| \u003ca name=\"input_circuit_breaker_rollback_enabled\"\u003e\u003c/a\u003e [circuit\\_breaker\\_rollback\\_enabled](#input\\_circuit\\_breaker\\_rollback\\_enabled) | If `true`, Amazon ECS will roll back the service if a service deployment fails | `bool` | `false` | no |\n| \u003ca name=\"input_cloudwatch_log_group_enabled\"\u003e\u003c/a\u003e [cloudwatch\\_log\\_group\\_enabled](#input\\_cloudwatch\\_log\\_group\\_enabled) | A boolean to disable cloudwatch log group creation | `bool` | `true` | no |\n| \u003ca name=\"input_codebuild_cache_type\"\u003e\u003c/a\u003e [codebuild\\_cache\\_type](#input\\_codebuild\\_cache\\_type) | The type of storage that will be used for the AWS CodeBuild project cache. Valid values: NO\\_CACHE, LOCAL, and S3.  Defaults to NO\\_CACHE.  If cache\\_type is S3, it will create an S3 bucket for storing codebuild cache inside | `string` | `\"S3\"` | no |\n| \u003ca name=\"input_codepipeline_build_cache_bucket_suffix_enabled\"\u003e\u003c/a\u003e [codepipeline\\_build\\_cache\\_bucket\\_suffix\\_enabled](#input\\_codepipeline\\_build\\_cache\\_bucket\\_suffix\\_enabled) | The codebuild cache bucket generates a random 13 character string to generate a unique bucket name. If set to false it uses terraform-null-label's id value. It only works when cache\\_type is 'S3' | `bool` | `true` | no |\n| \u003ca name=\"input_codepipeline_build_compute_type\"\u003e\u003c/a\u003e [codepipeline\\_build\\_compute\\_type](#input\\_codepipeline\\_build\\_compute\\_type) | `CodeBuild` instance size. Possible values are: `BUILD_GENERAL1_SMALL` `BUILD_GENERAL1_MEDIUM` `BUILD_GENERAL1_LARGE` | `string` | `\"BUILD_GENERAL1_SMALL\"` | no |\n| \u003ca name=\"input_codepipeline_cdn_bucket_buildspec_identifier\"\u003e\u003c/a\u003e [codepipeline\\_cdn\\_bucket\\_buildspec\\_identifier](#input\\_codepipeline\\_cdn\\_bucket\\_buildspec\\_identifier) | Identifier for buildspec section controlling the optional CDN asset deployment. | `string` | `null` | no |\n| \u003ca name=\"input_codepipeline_cdn_bucket_encryption_enabled\"\u003e\u003c/a\u003e [codepipeline\\_cdn\\_bucket\\_encryption\\_enabled](#input\\_codepipeline\\_cdn\\_bucket\\_encryption\\_enabled) | If set to true, enable encryption on the optional CDN asset deployment bucket | `bool` | `false` | no |\n| \u003ca name=\"input_codepipeline_cdn_bucket_id\"\u003e\u003c/a\u003e [codepipeline\\_cdn\\_bucket\\_id](#input\\_codepipeline\\_cdn\\_bucket\\_id) | Optional bucket for static asset deployment. If specified, the buildspec must include a secondary artifacts section which controls the files deployed to the bucket [For more info](http://docs.aws.amazon.com/codebuild/latest/userguide/build-spec-ref.html) | `string` | `null` | no |\n| \u003ca name=\"input_codepipeline_enabled\"\u003e\u003c/a\u003e [codepipeline\\_enabled](#input\\_codepipeline\\_enabled) | A boolean to enable/disable AWS Codepipeline. If `false`, use `ecr_enabled` to control if AWS ECR stays enabled. | `bool` | `true` | no |\n| \u003ca name=\"input_codepipeline_s3_bucket_force_destroy\"\u003e\u003c/a\u003e [codepipeline\\_s3\\_bucket\\_force\\_destroy](#input\\_codepipeline\\_s3\\_bucket\\_force\\_destroy) | A boolean that indicates all objects should be deleted from the CodePipeline artifact store S3 bucket so that the bucket can be destroyed without error | `bool` | `false` | no |\n| \u003ca name=\"input_command\"\u003e\u003c/a\u003e [command](#input\\_command) | The command that is passed to the container | `list(string)` | `null` | no |\n| \u003ca name=\"input_container_cpu\"\u003e\u003c/a\u003e [container\\_cpu](#input\\_container\\_cpu) | The vCPU setting to control cpu limits of container. (If FARGATE launch type is used below, this must be a supported vCPU size from the table here: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task-cpu-memory-error.html) | `number` | `256` | no |\n| \u003ca name=\"input_container_definition\"\u003e\u003c/a\u003e [container\\_definition](#input\\_container\\_definition) | Override the main container\\_definition | `string` | `\"\"` | no |\n| \u003ca name=\"input_container_environment\"\u003e\u003c/a\u003e [container\\_environment](#input\\_container\\_environment) | The environment variables to pass to the container. This is a list of maps | \u003cpre\u003elist(object({\u003cbr/\u003e    name  = string\u003cbr/\u003e    value = string\u003cbr/\u003e  }))\u003c/pre\u003e | `null` | no |\n| \u003ca name=\"input_container_image\"\u003e\u003c/a\u003e [container\\_image](#input\\_container\\_image) | The default container image to use in container definition | `string` | `\"cloudposse/default-backend\"` | no |\n| \u003ca name=\"input_container_memory\"\u003e\u003c/a\u003e [container\\_memory](#input\\_container\\_memory) | The amount of RAM to allow container to use in MB. (If FARGATE launch type is used below, this must be a supported Memory size from the table here: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task-cpu-memory-error.html) | `number` | `512` | no |\n| \u003ca name=\"input_container_memory_reservation\"\u003e\u003c/a\u003e [container\\_memory\\_reservation](#input\\_container\\_memory\\_reservation) | The amount of RAM (Soft Limit) to allow container to use in MB. This value must be less than `container_memory` if set | `number` | `128` | no |\n| \u003ca name=\"input_container_port\"\u003e\u003c/a\u003e [container\\_port](#input\\_container\\_port) | The port number on the container bound to assigned host\\_port | `number` | `80` | no |\n| \u003ca name=\"input_container_repo_credentials\"\u003e\u003c/a\u003e [container\\_repo\\_credentials](#input\\_container\\_repo\\_credentials) | Container repository credentials; required when using a private repo. This map currently supports a single key; \"credentialsParameter\", which should be the ARN of a Secrets Manager's secret holding the credentials | `map(string)` | `null` | no |\n| \u003ca name=\"input_container_start_timeout\"\u003e\u003c/a\u003e [container\\_start\\_timeout](#input\\_container\\_start\\_timeout) | Time duration (in seconds) to wait before giving up on resolving dependencies for a container | `number` | `30` | no |\n| \u003ca name=\"input_container_stop_timeout\"\u003e\u003c/a\u003e [container\\_stop\\_timeout](#input\\_container\\_stop\\_timeout) | Time duration (in seconds) to wait before the container is forcefully killed if it doesn't exit normally on its own | `number` | `30` | no |\n| \u003ca name=\"input_context\"\u003e\u003c/a\u003e [context](#input\\_context) | Single object for setting entire context at once.\u003cbr/\u003eSee description of individual variables for details.\u003cbr/\u003eLeave string and numeric variables as `null` to use default value.\u003cbr/\u003eIndividual variable settings (non-null) override settings in context object,\u003cbr/\u003eexcept for attributes, tags, and additional\\_tag\\_map, which are merged. | `any` | \u003cpre\u003e{\u003cbr/\u003e  \"additional_tag_map\": {},\u003cbr/\u003e  \"attributes\": [],\u003cbr/\u003e  \"delimiter\": null,\u003cbr/\u003e  \"descriptor_formats\": {},\u003cbr/\u003e  \"enabled\": true,\u003cbr/\u003e  \"environment\": null,\u003cbr/\u003e  \"id_length_limit\": null,\u003cbr/\u003e  \"label_key_case\": null,\u003cbr/\u003e  \"label_order\": [],\u003cbr/\u003e  \"label_value_case\": null,\u003cbr/\u003e  \"labels_as_tags\": [\u003cbr/\u003e    \"unset\"\u003cbr/\u003e  ],\u003cbr/\u003e  \"name\": null,\u003cbr/\u003e  \"namespace\": null,\u003cbr/\u003e  \"regex_replace_chars\": null,\u003cbr/\u003e  \"stage\": null,\u003cbr/\u003e  \"tags\": {},\u003cbr/\u003e  \"tenant\": null\u003cbr/\u003e}\u003c/pre\u003e | no |\n| \u003ca name=\"input_delimiter\"\u003e\u003c/a\u003e [delimiter](#input\\_delimiter) | Delimiter to be used between ID elements.\u003cbr/\u003eDefaults to `-` (hyphen). Set to `\"\"` to use no delimiter at all. | `string` | `null` | no |\n| \u003ca name=\"input_deployment_controller_type\"\u003e\u003c/a\u003e [deployment\\_controller\\_type](#input\\_deployment\\_controller\\_type) | Type of deployment controller. Valid values are CODE\\_DEPLOY and ECS | `string` | `\"ECS\"` | no |\n| \u003ca name=\"input_deployment_maximum_percent\"\u003e\u003c/a\u003e [deployment\\_maximum\\_percent](#input\\_deployment\\_maximum\\_percent) | The upper limit of the number of tasks (as a percentage of `desired_count`) that can be running in a service during a deployment | `number` | `200` | no |\n| \u003ca name=\"input_deployment_minimum_healthy_percent\"\u003e\u003c/a\u003e [deployment\\_minimum\\_healthy\\_percent](#input\\_deployment\\_minimum\\_healthy\\_percent) | The lower limit (as a percentage of `desired_count`) of the number of tasks that must remain running and healthy in a service during a deployment | `number` | `100` | no |\n| \u003ca name=\"input_descriptor_formats\"\u003e\u003c/a\u003e [descriptor\\_formats](#input\\_descriptor\\_formats) | Describe additional descriptors to be output in the `descriptors` output map.\u003cbr/\u003eMap of maps. Keys are names of descriptors. Values are maps of the form\u003cbr/\u003e`{\u003cbr/\u003e   format = string\u003cbr/\u003e   labels = list(string)\u003cbr/\u003e}`\u003cbr/\u003e(Type is `any` so the map values can later be enhanced to provide additional options.)\u003cbr/\u003e`format` is a Terraform format string to be passed to the `format()` function.\u003cbr/\u003e`labels` is a list of labels, in order, to pass to `format()` function.\u003cbr/\u003eLabel values will be normalized before being passed to `format()` so they will be\u003cbr/\u003eidentical to how they appear in `id`.\u003cbr/\u003eDefault is `{}` (`descriptors` output will be empty). | `any` | `{}` | no |\n| \u003ca name=\"input_desired_count\"\u003e\u003c/a\u003e [desired\\_count](#input\\_desired\\_count) | The desired number of tasks to start with. Set this to 0 if using DAEMON Service type. (FARGATE does not suppoert DAEMON Service type) | `number` | `1` | no |\n| \u003ca name=\"input_ecr_enabled\"\u003e\u003c/a\u003e [ecr\\_enabled](#input\\_ecr\\_enabled) | A boolean to enable/disable AWS ECR | `bool` | `true` | no |\n| \u003ca name=\"input_ecr_image_tag_mutability\"\u003e\u003c/a\u003e [ecr\\_image\\_tag\\_mutability](#input\\_ecr\\_image\\_tag\\_mutability) | The tag mutability setting for the ecr repository. Must be one of: `MUTABLE` or `IMMUTABLE` | `string` | `\"IMMUTABLE\"` | no |\n| \u003ca name=\"input_ecr_scan_images_on_push\"\u003e\u003c/a\u003e [ecr\\_scan\\_images\\_on\\_push](#input\\_ecr\\_scan\\_images\\_on\\_push) | Indicates whether images are scanned after being pushed to the repository (true) or not (false) | `bool` | `false` | no |\n| \u003ca name=\"input_ecs_alarms_cpu_utilization_high_alarm_actions\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_high\\_alarm\\_actions](#input\\_ecs\\_alarms\\_cpu\\_utilization\\_high\\_alarm\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to notify on CPU Utilization High Alarm action | `list(string)` | `[]` | no |\n| \u003ca name=\"input_ecs_alarms_cpu_utilization_high_evaluation_periods\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_high\\_evaluation\\_periods](#input\\_ecs\\_alarms\\_cpu\\_utilization\\_high\\_evaluation\\_periods) | Number of periods to evaluate for the alarm | `number` | `1` | no |\n| \u003ca name=\"input_ecs_alarms_cpu_utilization_high_ok_actions\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_high\\_ok\\_actions](#input\\_ecs\\_alarms\\_cpu\\_utilization\\_high\\_ok\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to notify on CPU Utilization High OK action | `list(string)` | `[]` | no |\n| \u003ca name=\"input_ecs_alarms_cpu_utilization_high_period\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_high\\_period](#input\\_ecs\\_alarms\\_cpu\\_utilization\\_high\\_period) | Duration in seconds to evaluate for the alarm | `number` | `300` | no |\n| \u003ca name=\"input_ecs_alarms_cpu_utilization_high_threshold\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_high\\_threshold](#input\\_ecs\\_alarms\\_cpu\\_utilization\\_high\\_threshold) | The maximum percentage of CPU utilization average | `number` | `80` | no |\n| \u003ca name=\"input_ecs_alarms_cpu_utilization_low_alarm_actions\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_low\\_alarm\\_actions](#input\\_ecs\\_alarms\\_cpu\\_utilization\\_low\\_alarm\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to notify on CPU Utilization Low Alarm action | `list(string)` | `[]` | no |\n| \u003ca name=\"input_ecs_alarms_cpu_utilization_low_evaluation_periods\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_low\\_evaluation\\_periods](#input\\_ecs\\_alarms\\_cpu\\_utilization\\_low\\_evaluation\\_periods) | Number of periods to evaluate for the alarm | `number` | `1` | no |\n| \u003ca name=\"input_ecs_alarms_cpu_utilization_low_ok_actions\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_low\\_ok\\_actions](#input\\_ecs\\_alarms\\_cpu\\_utilization\\_low\\_ok\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to notify on CPU Utilization Low OK action | `list(string)` | `[]` | no |\n| \u003ca name=\"input_ecs_alarms_cpu_utilization_low_period\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_low\\_period](#input\\_ecs\\_alarms\\_cpu\\_utilization\\_low\\_period) | Duration in seconds to evaluate for the alarm | `number` | `300` | no |\n| \u003ca name=\"input_ecs_alarms_cpu_utilization_low_threshold\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_low\\_threshold](#input\\_ecs\\_alarms\\_cpu\\_utilization\\_low\\_threshold) | The minimum percentage of CPU utilization average | `number` | `20` | no |\n| \u003ca name=\"input_ecs_alarms_enabled\"\u003e\u003c/a\u003e [ecs\\_alarms\\_enabled](#input\\_ecs\\_alarms\\_enabled) | A boolean to enable/disable CloudWatch Alarms for ECS Service metrics | `bool` | `false` | no |\n| \u003ca name=\"input_ecs_alarms_memory_utilization_high_alarm_actions\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_high\\_alarm\\_actions](#input\\_ecs\\_alarms\\_memory\\_utilization\\_high\\_alarm\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to notify on Memory Utilization High Alarm action | `list(string)` | `[]` | no |\n| \u003ca name=\"input_ecs_alarms_memory_utilization_high_evaluation_periods\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_high\\_evaluation\\_periods](#input\\_ecs\\_alarms\\_memory\\_utilization\\_high\\_evaluation\\_periods) | Number of periods to evaluate for the alarm | `number` | `1` | no |\n| \u003ca name=\"input_ecs_alarms_memory_utilization_high_ok_actions\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_high\\_ok\\_actions](#input\\_ecs\\_alarms\\_memory\\_utilization\\_high\\_ok\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to notify on Memory Utilization High OK action | `list(string)` | `[]` | no |\n| \u003ca name=\"input_ecs_alarms_memory_utilization_high_period\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_high\\_period](#input\\_ecs\\_alarms\\_memory\\_utilization\\_high\\_period) | Duration in seconds to evaluate for the alarm | `number` | `300` | no |\n| \u003ca name=\"input_ecs_alarms_memory_utilization_high_threshold\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_high\\_threshold](#input\\_ecs\\_alarms\\_memory\\_utilization\\_high\\_threshold) | The maximum percentage of Memory utilization average | `number` | `80` | no |\n| \u003ca name=\"input_ecs_alarms_memory_utilization_low_alarm_actions\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_low\\_alarm\\_actions](#input\\_ecs\\_alarms\\_memory\\_utilization\\_low\\_alarm\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to notify on Memory Utilization Low Alarm action | `list(string)` | `[]` | no |\n| \u003ca name=\"input_ecs_alarms_memory_utilization_low_evaluation_periods\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_low\\_evaluation\\_periods](#input\\_ecs\\_alarms\\_memory\\_utilization\\_low\\_evaluation\\_periods) | Number of periods to evaluate for the alarm | `number` | `1` | no |\n| \u003ca name=\"input_ecs_alarms_memory_utilization_low_ok_actions\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_low\\_ok\\_actions](#input\\_ecs\\_alarms\\_memory\\_utilization\\_low\\_ok\\_actions) | A list of ARNs (i.e. SNS Topic ARN) to notify on Memory Utilization Low OK action | `list(string)` | `[]` | no |\n| \u003ca name=\"input_ecs_alarms_memory_utilization_low_period\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_low\\_period](#input\\_ecs\\_alarms\\_memory\\_utilization\\_low\\_period) | Duration in seconds to evaluate for the alarm | `number` | `300` | no |\n| \u003ca name=\"input_ecs_alarms_memory_utilization_low_threshold\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_low\\_threshold](#input\\_ecs\\_alarms\\_memory\\_utilization\\_low\\_threshold) | The minimum percentage of Memory utilization average | `number` | `20` | no |\n| \u003ca name=\"input_ecs_cluster_arn\"\u003e\u003c/a\u003e [ecs\\_cluster\\_arn](#input\\_ecs\\_cluster\\_arn) | The ECS Cluster ARN where ECS Service will be provisioned | `string` | n/a | yes |\n| \u003ca name=\"input_ecs_cluster_name\"\u003e\u003c/a\u003e [ecs\\_cluster\\_name](#input\\_ecs\\_cluster\\_name) | The ECS Cluster Name to use in ECS Code Pipeline Deployment step | `string` | `null` | no |\n| \u003ca name=\"input_ecs_private_subnet_ids\"\u003e\u003c/a\u003e [ecs\\_private\\_subnet\\_ids](#input\\_ecs\\_private\\_subnet\\_ids) | List of Private Subnet IDs to provision ECS Service onto if `var.network_mode = \"awsvpc\"` | `list(string)` | n/a | yes |\n| \u003ca name=\"input_ecs_security_group_enabled\"\u003e\u003c/a\u003e [ecs\\_security\\_group\\_enabled](#input\\_ecs\\_security\\_group\\_enabled) | Whether to create a security group for the service. | `bool` | `true` | no |\n| \u003ca name=\"input_ecs_security_group_ids\"\u003e\u003c/a\u003e [ecs\\_security\\_group\\_ids](#input\\_ecs\\_security\\_group\\_ids) | Additional Security Group IDs to allow into ECS Service if `var.network_mode = \"awsvpc\"` | `list(string)` | `[]` | no |\n| \u003ca name=\"input_enable_all_egress_rule\"\u003e\u003c/a\u003e [enable\\_all\\_egress\\_rule](#input\\_enable\\_all\\_egress\\_rule) | A flag to enable/disable adding the all ports egress rule to the ECS security group | `bool` | `true` | no |\n| \u003ca name=\"input_enable_ecs_managed_tags\"\u003e\u003c/a\u003e [enable\\_ecs\\_managed\\_tags](#input\\_enable\\_ecs\\_managed\\_tags) | Specifies whether to enable Amazon ECS managed tags for the tasks within the service | `bool` | `false` | no |\n| \u003ca name=\"input_enabled\"\u003e\u003c/a\u003e [enabled](#input\\_enabled) | Set to false to prevent the module from creating any resources | `bool` | `null` | no |\n| \u003ca name=\"input_entrypoint\"\u003e\u003c/a\u003e [entrypoint](#input\\_entrypoint) | The entry point that is passed to the container | `list(string)` | `null` | no |\n| \u003ca name=\"input_environment\"\u003e\u003c/a\u003e [environment](#input\\_environment) | ID element. Usually used for region e.g. 'uw2', 'us-west-2', OR role 'prod', 'staging', 'dev', 'UAT' | `string` | `null` | no |\n| \u003ca name=\"input_exec_enabled\"\u003e\u003c/a\u003e [exec\\_enabled](#input\\_exec\\_enabled) | Specifies whether to enable Amazon ECS Exec for the tasks within the service | `bool` | `false` | no |\n| \u003ca name=\"input_force_new_deployment\"\u003e\u003c/a\u003e [force\\_new\\_deployment](#input\\_force\\_new\\_deployment) | Enable to force a new task deployment of the service. | `bool` | `false` | no |\n| \u003ca name=\"input_github_oauth_token\"\u003e\u003c/a\u003e [github\\_oauth\\_token](#input\\_github\\_oauth\\_token) | GitHub Oauth Token with permissions to access private repositories | `string` | `\"\"` | no |\n| \u003ca name=\"input_github_webhook_events\"\u003e\u003c/a\u003e [github\\_webhook\\_events](#input\\_github\\_webhook\\_events) | A list of events which should trigger the webhook. See a list of [available events](https://developer.github.com/v3/activity/events/types/) | `list(string)` | \u003cpre\u003e[\u003cbr/\u003e  \"push\"\u003cbr/\u003e]\u003c/pre\u003e | no |\n| \u003ca name=\"input_health_check_grace_period_seconds\"\u003e\u003c/a\u003e [health\\_check\\_grace\\_period\\_seconds](#input\\_health\\_check\\_grace\\_period\\_seconds) | Seconds to ignore failing load balancer health checks on newly instantiated tasks to prevent premature shutdown, up to 7200. Only valid for services configured to use load balancers | `number` | `0` | no |\n| \u003ca name=\"input_healthcheck\"\u003e\u003c/a\u003e [healthcheck](#input\\_healthcheck) | A map containing command (string), timeout, interval (duration in seconds), retries (1-10, number of times to retry before marking container unhealthy), and startPeriod (0-300, optional grace period to wait, in seconds, before failed healthchecks count toward retries) | \u003cpre\u003eobject({\u003cbr/\u003e    command     = list(string)\u003cbr/\u003e    retries     = number\u003cbr/\u003e    timeout     = number\u003cbr/\u003e    interval    = number\u003cbr/\u003e    startPeriod = number\u003cbr/\u003e  })\u003c/pre\u003e | `null` | no |\n| \u003ca name=\"input_id_length_limit\"\u003e\u003c/a\u003e [id\\_length\\_limit](#input\\_id\\_length\\_limit) | Limit `id` to this many characters (minimum 6).\u003cbr/\u003eSet to `0` for unlimited length.\u003cbr/\u003eSet to `null` for keep the existing setting, which defaults to `0`.\u003cbr/\u003eDoes not affect `id_full`. | `number` | `null` | no |\n| \u003ca name=\"input_ignore_changes_desired_count\"\u003e\u003c/a\u003e [ignore\\_changes\\_desired\\_count](#input\\_ignore\\_changes\\_desired\\_count) | Whether to ignore changes for desired count in the ECS service | `bool` | `false` | no |\n| \u003ca name=\"input_ignore_changes_task_definition\"\u003e\u003c/a\u003e [ignore\\_changes\\_task\\_definition](#input\\_ignore\\_changes\\_task\\_definition) | Ignore changes (like environment variables) to the ECS task definition | `bool` | `true` | no |\n| \u003ca name=\"input_init_containers\"\u003e\u003c/a\u003e [init\\_containers](#input\\_init\\_containers) | A list of additional init containers to start. The map contains the container\\_definition (JSON) and the main container's dependency condition (string) on the init container. The latter can be one of START, COMPLETE, SUCCESS, HEALTHY, or null. If null, the init container will not be added to the depends\\_on list of the main container. | \u003cpre\u003elist(object({\u003cbr/\u003e    container_definition = any\u003cbr/\u003e    condition            = string\u003cbr/\u003e  }))\u003c/pre\u003e | `[]` | no |\n| \u003ca name=\"input_label_key_case\"\u003e\u003c/a\u003e [label\\_key\\_case](#input\\_label\\_key\\_case) | Controls the letter case of the `tags` keys (label names) for tags generated by this module.\u003cbr/\u003eDoes not affect keys of tags passed in via the `tags` input.\u003cbr/\u003ePossible values: `lower`, `title`, `upper`.\u003cbr/\u003eDefault value: `title`. | `string` | `null` | no |\n| \u003ca name=\"input_label_order\"\u003e\u003c/a\u003e [label\\_order](#input\\_label\\_order) | The order in which the labels (ID elements) appear in the `id`.\u003cbr/\u003eDefaults to [\"namespace\", \"environment\", \"stage\", \"name\", \"attributes\"].\u003cbr/\u003eYou can omit any of the 6 labels (\"tenant\" is the 6th), but at least one must be present. | `list(string)` | `null` | no |\n| \u003ca name=\"input_label_value_case\"\u003e\u003c/a\u003e [label\\_value\\_case](#input\\_label\\_value\\_case) | Controls the letter case of ID elements (labels) as included in `id`,\u003cbr/\u003eset as tag values, and output by this module individually.\u003cbr/\u003eDoes not affect values of tags passed in via the `tags` input.\u003cbr/\u003ePossible values: `lower`, `title`, `upper` and `none` (no transformation).\u003cbr/\u003eSet this to `title` and set `delimiter` to `\"\"` to yield Pascal Case IDs.\u003cbr/\u003eDefault value: `lower`. | `string` | `null` | no |\n| \u003ca name=\"input_labels_as_tags\"\u003e\u003c/a\u003e [labels\\_as\\_tags](#input\\_labels\\_as\\_tags) | Set of labels (ID elements) to include as tags in the `tags` output.\u003cbr/\u003eDefault is to include all labels.\u003cbr/\u003eTags with empty values will not be included in the `tags` output.\u003cbr/\u003eSet to `[]` to suppress all generated tags.\u003cbr/\u003e**Notes:**\u003cbr/\u003e  The value of the `name` tag, if included, will be the `id`, not the `name`.\u003cbr/\u003e  Unlike other `null-label` inputs, the initial setting of `labels_as_tags` cannot be\u003cbr/\u003e  changed in later chained modules. Attempts to change it will be silently ignored. | `set(string)` | \u003cpre\u003e[\u003cbr/\u003e  \"default\"\u003cbr/\u003e]\u003c/pre\u003e | no |\n| \u003ca name=\"input_launch_type\"\u003e\u003c/a\u003e [launch\\_type](#input\\_launch\\_type) | The ECS launch type (valid options: FARGATE or EC2) | `string` | `\"FARGATE\"` | no |\n| \u003ca name=\"input_linux_parameters\"\u003e\u003c/a\u003e [linux\\_parameters](#input\\_linux\\_parameters) | Linux-specific modifications that are applied to the container, such as Linux kernel capabilities. For more details, see https://docs.aws.amazon.com/AmazonECS/latest/APIReference/API_LinuxParameters.html | \u003cpre\u003eobject({\u003cbr/\u003e    capabilities = optional(object({\u003cbr/\u003e      add  = optional(list(string))\u003cbr/\u003e      drop = optional(list(string))\u003cbr/\u003e    }))\u003cbr/\u003e    devices = optional(list(object({\u003cbr/\u003e      containerPath = optional(string)\u003cbr/\u003e      hostPath      = optional(string)\u003cbr/\u003e      permissions   = optional(list(string))\u003cbr/\u003e    })))\u003cbr/\u003e    initProcessEnabled = optional(bool)\u003cbr/\u003e    maxSwap            = optional(number)\u003cbr/\u003e    sharedMemorySize   = optional(number)\u003cbr/\u003e    swappiness         = optional(number)\u003cbr/\u003e    tmpfs = optional(list(object({\u003cbr/\u003e      containerPath = optional(string)\u003cbr/\u003e      mountOptions  = optional(list(string))\u003cbr/\u003e      size          = number\u003cbr/\u003e    })))\u003cbr/\u003e  })\u003c/pre\u003e | `{}` | no |\n| \u003ca name=\"input_log_driver\"\u003e\u003c/a\u003e [log\\_driver](#input\\_log\\_driver) | The log driver to use for the container. If using Fargate launch type, only supported value is awslogs | `string` | `\"awslogs\"` | no |\n| \u003ca name=\"input_log_retention_in_days\"\u003e\u003c/a\u003e [log\\_retention\\_in\\_days](#input\\_log\\_retention\\_in\\_days) | The number of days to retain logs for the log group | `number` | `90` | no |\n| \u003ca name=\"input_map_container_environment\"\u003e\u003c/a\u003e [map\\_container\\_environment](#input\\_map\\_container\\_environment) | The environment variables to pass to the container. This is a map of string: {key: value}. `environment` overrides `map_environment` | `map(string)` | `null` | no |\n| \u003ca name=\"input_mount_points\"\u003e\u003c/a\u003e [mount\\_points](#input\\_mount\\_points) | Container mount points. This is a list of maps, where each map should contain a `containerPath` and `sourceVolume` | \u003cpre\u003elist(object({\u003cbr/\u003e    containerPath = string\u003cbr/\u003e    sourceVolume  = string\u003cbr/\u003e    readOnly      = bool\u003cbr/\u003e  }))\u003c/pre\u003e | `[]` | no |\n| \u003ca name=\"input_name\"\u003e\u003c/a\u003e [name](#input\\_name) | ID element. Usually the component or solution name, e.g. 'app' or 'jenkins'.\u003cbr/\u003eThis is the only ID element not also included as a `tag`.\u003cbr/\u003eThe \"name\" tag is set to the full `id` string. There is no tag with the value of the `name` input. | `string` | `null` | no |\n| \u003ca name=\"input_namespace\"\u003e\u003c/a\u003e [namespace](#input\\_namespace) | ID element. Usually an abbreviation of your organization name, e.g. 'eg' or 'cp', to help ensure generated IDs are globally unique | `string` | `null` | no |\n| \u003ca name=\"input_network_mode\"\u003e\u003c/a\u003e [network\\_mode](#input\\_network\\_mode) | The network mode to use for the task. This is required to be `awsvpc` for `FARGATE` `launch_type` or `null` for `EC2` `launch_type` | `string` | `\"awsvpc\"` | no |\n| \u003ca name=\"input_nlb_cidr_blocks\"\u003e\u003c/a\u003e [nlb\\_cidr\\_blocks](#input\\_nlb\\_cidr\\_blocks) | A list of CIDR blocks to add to the ingress rule for the NLB container port | `list(string)` | `[]` | no |\n| \u003ca name=\"input_nlb_container_name\"\u003e\u003c/a\u003e [nlb\\_container\\_name](#input\\_nlb\\_container\\_name) | The name of the container to associate with the NLB. If not provided, the generated container will be used | `string` | `null` | no |\n| \u003ca name=\"input_nlb_container_port\"\u003e\u003c/a\u003e [nlb\\_container\\_port](#input\\_nlb\\_container\\_port) | The port number on the container bound to assigned NLB host\\_port | `number` | `80` | no |\n| \u003ca name=\"input_nlb_ingress_target_group_arn\"\u003e\u003c/a\u003e [nlb\\_ingress\\_target\\_group\\_arn](#input\\_nlb\\_ingress\\_target\\_group\\_arn) | Target group ARN of the NLB ingress | `string` | `\"\"` | no |\n| \u003ca name=\"input_permissions_boundary\"\u003e\u003c/a\u003e [permissions\\_boundary](#input\\_permissions\\_boundary) | A permissions boundary ARN to apply to the 3 roles that are created. | `string` | `\"\"` | no |\n| \u003ca name=\"input_platform_version\"\u003e\u003c/a\u003e [platform\\_version](#input\\_platform\\_version) | The platform version on which to run your service. Only applicable for launch\\_type set to FARGATE. More information about Fargate platform versions can be found in the AWS ECS User Guide. | `string` | `\"LATEST\"` | no |\n| \u003ca name=\"input_poll_source_changes\"\u003e\u003c/a\u003e [poll\\_source\\_changes](#input\\_poll\\_source\\_changes) | Periodically check the location of your source content and run the pipeline if changes are detected | `bool` | `false` | no |\n| \u003ca name=\"input_port_mappings\"\u003e\u003c/a\u003e [port\\_mappings](#input\\_port\\_mappings) | The port mappings to configure for the container. This is a list of maps. Each map should contain \"containerPort\", \"hostPort\", and \"protocol\", where \"protocol\" is one of \"tcp\" or \"udp\". If using containers in a task with the awsvpc or host network mode, the hostPort can either be left blank or set to the same value as the containerPort | \u003cpre\u003elist(object({\u003cbr/\u003e    containerPort = number\u003cbr/\u003e    hostPort      = number\u003cbr/\u003e    protocol      = string\u003cbr/\u003e  }))\u003c/pre\u003e | \u003cpre\u003e[\u003cbr/\u003e  {\u003cbr/\u003e    \"containerPort\": 80,\u003cbr/\u003e    \"hostPort\": 80,\u003cbr/\u003e    \"protocol\": \"tcp\"\u003cbr/\u003e  }\u003cbr/\u003e]\u003c/pre\u003e | no |\n| \u003ca name=\"input_privileged\"\u003e\u003c/a\u003e [privileged](#input\\_privileged) | When this variable is `true`, the container is given elevated privileges on the host container instance (similar to the root user). This parameter is not supported for Windows containers or tasks using the Fargate launch type. Due to how Terraform type casts booleans in json it is required to double quote this value | `string` | `null` | no |\n| \u003ca name=\"input_propagate_tags\"\u003e\u003c/a\u003e [propagate\\_tags](#input\\_propagate\\_tags) | Specifies whether to propagate the tags from the task definition or the service to the tasks. The valid values are SERVICE and TASK\\_DEFINITION | `string` | `null` | no |\n| \u003ca name=\"input_regex_replace_chars\"\u003e\u003c/a\u003e [regex\\_replace\\_chars](#input\\_regex\\_replace\\_chars) | Terraform regular expression (regex) string.\u003cbr/\u003eCharacters matching the regex will be removed from the ID elements.\u003cbr/\u003eIf not set, `\"/[^a-zA-Z0-9-]/\"` is used to remove all characters other than hyphens, letters and digits. | `string` | `null` | no |\n| \u003ca name=\"input_region\"\u003e\u003c/a\u003e [region](#input\\_region) | AWS Region for S3 bucket | `string` | `null` | no |\n| \u003ca name=\"input_repo_name\"\u003e\u003c/a\u003e [repo\\_name](#input\\_repo\\_name) | GitHub repository name of the application to be built and deployed to ECS | `string` | `\"\"` | no |\n| \u003ca name=\"input_repo_owner\"\u003e\u003c/a\u003e [repo\\_owner](#input\\_repo\\_owner) | GitHub Organization or Username | `string` | `\"\"` | no |\n| \u003ca name=\"input_runtime_platform\"\u003e\u003c/a\u003e [runtime\\_platform](#input\\_runtime\\_platform) | Zero or one runtime platform configurations that containers in your task may use.\u003cbr/\u003eMap of strings with optional keys `operating_system_family` and `cpu_architecture`.\u003cbr/\u003eSee `runtime_platform` docs https://registry.terraform.io/providers/hashicorp/aws/latest/docs/resources/ecs_task_definition#runtime_platform | `list(map(string))` | `[]` | no |\n| \u003ca name=\"input_secrets\"\u003e\u003c/a\u003e [secrets](#input\\_secrets) | The secrets to pass to the container. This is a list of maps | \u003cpre\u003elist(object({\u003cbr/\u003e    name      = string\u003cbr/\u003e    valueFrom = string\u003cbr/\u003e  }))\u003c/pre\u003e | `null` | no |\n| \u003ca name=\"input_service_registries\"\u003e\u003c/a\u003e [service\\_registries](#input\\_service\\_registries) | The service discovery registries for the service. The maximum number of service\\_registries blocks is 1. The currently supported service registry is Amazon Route 53 Auto Naming Service - `aws_service_discovery_service`; see `service_registries` docs https://www.terraform.io/docs/providers/aws/r/ecs_service.html#service_registries-1 | \u003cpre\u003elist(object({\u003cbr/\u003e    registry_arn   = string\u003cbr/\u003e    port           = number\u003cbr/\u003e    container_name = string\u003cbr/\u003e    container_port = number\u003cbr/\u003e  }))\u003c/pre\u003e | `[]` | no |\n| \u003ca name=\"input_stage\"\u003e\u003c/a\u003e [stage](#input\\_stage) | ID element. Usually used to indicate role, e.g. 'prod', 'staging', 'source', 'build', 'test', 'deploy', 'release' | `string` | `null` | no |\n| \u003ca name=\"input_system_controls\"\u003e\u003c/a\u003e [system\\_controls](#input\\_system\\_controls) | A list of namespaced kernel parameters to set in the container, mapping to the --sysctl option to docker run. This is a list of maps: { namespace = \"\", value = \"\"} | `list(map(string))` | `null` | no |\n| \u003ca name=\"input_tags\"\u003e\u003c/a\u003e [tags](#input\\_tags) | Additional tags (e.g. `{'BusinessUnit': 'XYZ'}`).\u003cbr/\u003eNeither the tag keys nor the tag values will be modified by this module. | `map(string)` | `{}` | no |\n| \u003ca name=\"input_task_cpu\"\u003e\u003c/a\u003e [task\\_cpu](#input\\_task\\_cpu) | The number of CPU units used by the task. If unspecified, it will default to `container_cpu`. If using `FARGATE` launch type `task_cpu` must match supported memory values (https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definition_parameters.html#task_size) | `number` | `null` | no |\n| \u003ca name=\"input_task_memory\"\u003e\u003c/a\u003e [task\\_memory](#input\\_task\\_memory) | The amount of memory (in MiB) used by the task. If unspecified, it will default to `container_memory`. If using Fargate launch type `task_memory` must match supported cpu value (https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definition_parameters.html#task_size) | `number` | `null` | no |\n| \u003ca name=\"input_task_policy_arns\"\u003e\u003c/a\u003e [task\\_policy\\_arns](#input\\_task\\_policy\\_arns) | A list of IAM Policy ARNs to attach to the generated task role. | `list(string)` | `[]` | no |\n| \u003ca name=\"input_task_role_arn\"\u003e\u003c/a\u003e [task\\_role\\_arn](#input\\_task\\_role\\_arn) | The ARN of IAM role that allows your Amazon ECS container task to make calls to other AWS services | `string` | `\"\"` | no |\n| \u003ca name=\"input_tenant\"\u003e\u003c/a\u003e [tenant](#input\\_tenant) | ID element \\_(Rarely used, not included by default)\\_. A customer identifier, indicating who this instance of a resource is for | `string` | `null` | no |\n| \u003ca name=\"input_ulimits\"\u003e\u003c/a\u003e [ulimits](#input\\_ulimits) | The ulimits to configure for the container. This is a list of maps. Each map should contain \"name\", \"softLimit\" and \"hardLimit\" | \u003cpre\u003elist(object({\u003cbr/\u003e    name      = string\u003cbr/\u003e    softLimit = number\u003cbr/\u003e    hardLimit = number\u003cbr/\u003e  }))\u003c/pre\u003e | `[]` | no |\n| \u003ca name=\"input_use_alb_security_group\"\u003e\u003c/a\u003e [use\\_alb\\_security\\_group](#input\\_use\\_alb\\_security\\_group) | A boolean to enable adding an ALB security group rule for the service task | `bool` | `false` | no |\n| \u003ca name=\"input_use_ecr_image\"\u003e\u003c/a\u003e [use\\_ecr\\_image](#input\\_use\\_ecr\\_image) | If true, use ECR repo URL for image, otherwise use value in container\\_image | `bool` | `false` | no |\n| \u003ca name=\"input_use_nlb_cidr_blocks\"\u003e\u003c/a\u003e [use\\_nlb\\_cidr\\_blocks](#input\\_use\\_nlb\\_cidr\\_blocks) | A flag to enable/disable adding the NLB ingress rule to the security group | `bool` | `false` | no |\n| \u003ca name=\"input_volumes\"\u003e\u003c/a\u003e [volumes](#input\\_volumes) | Task volume definitions as list of configuration objects | \u003cpre\u003elist(object({\u003cbr/\u003e    host_path = string\u003cbr/\u003e    name      = string\u003cbr/\u003e    docker_volume_configuration = list(object({\u003cbr/\u003e      autoprovision = bool\u003cbr/\u003e      driver        = string\u003cbr/\u003e      driver_opts   = map(string)\u003cbr/\u003e      labels        = map(string)\u003cbr/\u003e      scope         = string\u003cbr/\u003e    }))\u003cbr/\u003e    efs_volume_configuration = list(object({\u003cbr/\u003e      file_system_id          = string\u003cbr/\u003e      root_directory          = string\u003cbr/\u003e      transit_encryption      = string\u003cbr/\u003e      transit_encryption_port = string\u003cbr/\u003e      authorization_config = list(object({\u003cbr/\u003e        access_point_id = string\u003cbr/\u003e        iam             = string\u003cbr/\u003e      }))\u003cbr/\u003e    }))\u003cbr/\u003e  }))\u003c/pre\u003e | `[]` | no |\n| \u003ca name=\"input_vpc_id\"\u003e\u003c/a\u003e [vpc\\_id](#input\\_vpc\\_id) | The VPC ID where resources are created | `string` | n/a | yes |\n| \u003ca name=\"input_webhook_authentication\"\u003e\u003c/a\u003e [webhook\\_authentication](#input\\_webhook\\_authentication) | The type of authentication to use. One of IP, GITHUB\\_HMAC, or UNAUTHENTICATED | `string` | `\"GITHUB_HMAC\"` | no |\n| \u003ca name=\"input_webhook_enabled\"\u003e\u003c/a\u003e [webhook\\_enabled](#input\\_webhook\\_enabled) | Set to false to prevent the module from creating any webhook resources | `bool` | `true` | no |\n| \u003ca name=\"input_webhook_filter_json_path\"\u003e\u003c/a\u003e [webhook\\_filter\\_json\\_path](#input\\_webhook\\_filter\\_json\\_path) | The JSON path to filter on | `string` | `\"$.ref\"` | no |\n| \u003ca name=\"input_webhook_filter_match_equals\"\u003e\u003c/a\u003e [webhook\\_filter\\_match\\_equals](#input\\_webhook\\_filter\\_match\\_equals) | The value to match on (e.g. refs/heads/{Branch}) | `string` | `\"refs/heads/{Branch}\"` | no |\n| \u003ca name=\"input_webhook_target_action\"\u003e\u003c/a\u003e [webhook\\_target\\_action](#input\\_webhook\\_target\\_action) | The name of the action in a pipeline you want to connect to the webhook. The action must be from the source (first) stage of the pipeline | `string` | `\"Source\"` | no |\n\n## Outputs\n\n| Name | Description |\n|------|-------------|\n| \u003ca name=\"output_alb_ingress\"\u003e\u003c/a\u003e [alb\\_ingress](#output\\_alb\\_ingress) | All outputs from `module.alb_ingress` |\n| \u003ca name=\"output_alb_ingress_target_group_arn\"\u003e\u003c/a\u003e [alb\\_ingress\\_target\\_group\\_arn](#output\\_alb\\_ingress\\_target\\_group\\_arn) | ALB Target Group ARN |\n| \u003ca name=\"output_alb_ingress_target_group_arn_suffix\"\u003e\u003c/a\u003e [alb\\_ingress\\_target\\_group\\_arn\\_suffix](#output\\_alb\\_ingress\\_target\\_group\\_arn\\_suffix) | ALB Target Group ARN suffix |\n| \u003ca name=\"output_alb_ingress_target_group_name\"\u003e\u003c/a\u003e [alb\\_ingress\\_target\\_group\\_name](#output\\_alb\\_ingress\\_target\\_group\\_name) | ALB Target Group name |\n| \u003ca name=\"output_alb_target_group_cloudwatch_sns_alarms\"\u003e\u003c/a\u003e [alb\\_target\\_group\\_cloudwatch\\_sns\\_alarms](#output\\_alb\\_target\\_group\\_cloudwatch\\_sns\\_alarms) | All outputs from `module.alb_target_group_cloudwatch_sns_alarms` |\n| \u003ca name=\"output_cloudwatch_log_group\"\u003e\u003c/a\u003e [cloudwatch\\_log\\_group](#output\\_cloudwatch\\_log\\_group) | All outputs from `aws_cloudwatch_log_group.app` |\n| \u003ca name=\"output_cloudwatch_log_group_arn\"\u003e\u003c/a\u003e [cloudwatch\\_log\\_group\\_arn](#output\\_cloudwatch\\_log\\_group\\_arn) | Cloudwatch log group ARN |\n| \u003ca name=\"output_cloudwatch_log_group_name\"\u003e\u003c/a\u003e [cloudwatch\\_log\\_group\\_name](#output\\_cloudwatch\\_log\\_group\\_name) | Cloudwatch log group name |\n| \u003ca name=\"output_codebuild\"\u003e\u003c/a\u003e [codebuild](#output\\_codebuild) | All outputs from `module.ecs_codepipeline` |\n| \u003ca name=\"output_codebuild_badge_url\"\u003e\u003c/a\u003e [codebuild\\_badge\\_url](#output\\_codebuild\\_badge\\_url) | The URL of the build badge when badge\\_enabled is enabled |\n| \u003ca name=\"output_codebuild_cache_bucket_arn\"\u003e\u003c/a\u003e [codebuild\\_cache\\_bucket\\_arn](#output\\_codebuild\\_cache\\_bucket\\_arn) | CodeBuild cache S3 bucket ARN |\n| \u003ca name=\"output_codebuild_cache_bucket_name\"\u003e\u003c/a\u003e [codebuild\\_cache\\_bucket\\_name](#output\\_codebuild\\_cache\\_bucket\\_name) | CodeBuild cache S3 bucket name |\n| \u003ca name=\"output_codebuild_project_id\"\u003e\u003c/a\u003e [codebuild\\_project\\_id](#output\\_codebuild\\_project\\_id) | CodeBuild project ID |\n| \u003ca name=\"output_codebuild_project_name\"\u003e\u003c/a\u003e [codebuild\\_project\\_name](#output\\_codebuild\\_project\\_name) | CodeBuild project name |\n| \u003ca name=\"output_codebuild_role_arn\"\u003e\u003c/a\u003e [codebuild\\_role\\_arn](#output\\_codebuild\\_role\\_arn) | CodeBuild IAM Role ARN |\n| \u003ca name=\"output_codebuild_role_id\"\u003e\u003c/a\u003e [codebuild\\_role\\_id](#output\\_codebuild\\_role\\_id) | CodeBuild IAM Role ID |\n| \u003ca name=\"output_codepipeline_arn\"\u003e\u003c/a\u003e [codepipeline\\_arn](#output\\_codepipeline\\_arn) | CodePipeline ARN |\n| \u003ca name=\"output_codepipeline_id\"\u003e\u003c/a\u003e [codepipeline\\_id](#output\\_codepipeline\\_id) | CodePipeline ID |\n| \u003ca name=\"output_codepipeline_webhook_id\"\u003e\u003c/a\u003e [codepipeline\\_webhook\\_id](#output\\_codepipeline\\_webhook\\_id) | The CodePipeline webhook's ID |\n| \u003ca name=\"output_codepipeline_webhook_url\"\u003e\u003c/a\u003e [codepipeline\\_webhook\\_url](#output\\_codepipeline\\_webhook\\_url) | The CodePipeline webhook's URL. POST events to this endpoint to trigger the target |\n| \u003ca name=\"output_container_definition\"\u003e\u003c/a\u003e [container\\_definition](#output\\_container\\_definition) | All outputs from `module.container_definition` |\n| \u003ca name=\"output_container_definition_json\"\u003e\u003c/a\u003e [container\\_definition\\_json](#output\\_container\\_definition\\_json) | JSON encoded list of container definitions for use with other terraform resources such as aws\\_ecs\\_task\\_definition |\n| \u003ca name=\"output_container_definition_json_map\"\u003e\u003c/a\u003e [container\\_definition\\_json\\_map](#output\\_container\\_definition\\_json\\_map) | JSON encoded container definitions for use with other terraform resources such as aws\\_ecs\\_task\\_definition |\n| \u003ca name=\"output_ecr\"\u003e\u003c/a\u003e [ecr](#output\\_ecr) | All outputs from `module.ecr` |\n| \u003ca name=\"output_ecr_registry_id\"\u003e\u003c/a\u003e [ecr\\_registry\\_id](#output\\_ecr\\_registry\\_id) | Registry ID |\n| \u003ca name=\"output_ecr_registry_url\"\u003e\u003c/a\u003e [ecr\\_registry\\_url](#output\\_ecr\\_registry\\_url) | Repository URL |\n| \u003ca name=\"output_ecr_repository_arn\"\u003e\u003c/a\u003e [ecr\\_repository\\_arn](#output\\_ecr\\_repository\\_arn) | ARN of ECR repository |\n| \u003ca name=\"output_ecr_repository_name\"\u003e\u003c/a\u003e [ecr\\_repository\\_name](#output\\_ecr\\_repository\\_name) | Registry name |\n| \u003ca name=\"output_ecr_repository_url\"\u003e\u003c/a\u003e [ecr\\_repository\\_url](#output\\_ecr\\_repository\\_url) | Repository URL |\n| \u003ca name=\"output_ecs_alarms\"\u003e\u003c/a\u003e [ecs\\_alarms](#output\\_ecs\\_alarms) | All outputs from `module.ecs_cloudwatch_sns_alarms` |\n| \u003ca name=\"output_ecs_alarms_cpu_utilization_high_cloudwatch_metric_alarm_arn\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_high\\_cloudwatch\\_metric\\_alarm\\_arn](#output\\_ecs\\_alarms\\_cpu\\_utilization\\_high\\_cloudwatch\\_metric\\_alarm\\_arn) | ECS CPU utilization high CloudWatch metric alarm ARN |\n| \u003ca name=\"output_ecs_alarms_cpu_utilization_high_cloudwatch_metric_alarm_id\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_high\\_cloudwatch\\_metric\\_alarm\\_id](#output\\_ecs\\_alarms\\_cpu\\_utilization\\_high\\_cloudwatch\\_metric\\_alarm\\_id) | ECS CPU utilization high CloudWatch metric alarm ID |\n| \u003ca name=\"output_ecs_alarms_cpu_utilization_low_cloudwatch_metric_alarm_arn\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_low\\_cloudwatch\\_metric\\_alarm\\_arn](#output\\_ecs\\_alarms\\_cpu\\_utilization\\_low\\_cloudwatch\\_metric\\_alarm\\_arn) | ECS CPU utilization low CloudWatch metric alarm ARN |\n| \u003ca name=\"output_ecs_alarms_cpu_utilization_low_cloudwatch_metric_alarm_id\"\u003e\u003c/a\u003e [ecs\\_alarms\\_cpu\\_utilization\\_low\\_cloudwatch\\_metric\\_alarm\\_id](#output\\_ecs\\_alarms\\_cpu\\_utilization\\_low\\_cloudwatch\\_metric\\_alarm\\_id) | ECS CPU utilization low CloudWatch metric alarm ID |\n| \u003ca name=\"output_ecs_alarms_memory_utilization_high_cloudwatch_metric_alarm_arn\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_high\\_cloudwatch\\_metric\\_alarm\\_arn](#output\\_ecs\\_alarms\\_memory\\_utilization\\_high\\_cloudwatch\\_metric\\_alarm\\_arn) | ECS Memory utilization high CloudWatch metric alarm ARN |\n| \u003ca name=\"output_ecs_alarms_memory_utilization_high_cloudwatch_metric_alarm_id\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_high\\_cloudwatch\\_metric\\_alarm\\_id](#output\\_ecs\\_alarms\\_memory\\_utilization\\_high\\_cloudwatch\\_metric\\_alarm\\_id) | ECS Memory utilization high CloudWatch metric alarm ID |\n| \u003ca name=\"output_ecs_alarms_memory_utilization_low_cloudwatch_metric_alarm_arn\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_low\\_cloudwatch\\_metric\\_alarm\\_arn](#output\\_ecs\\_alarms\\_memory\\_utilization\\_low\\_cloudwatch\\_metric\\_alarm\\_arn) | ECS Memory utilization low CloudWatch metric alarm ARN |\n| \u003ca name=\"output_ecs_alarms_memory_utilization_low_cloudwatch_metric_alarm_id\"\u003e\u003c/a\u003e [ecs\\_alarms\\_memory\\_utilization\\_low\\_cloudwatch\\_metric\\_alarm\\_id](#output\\_ecs\\_alarms\\_memory\\_utilization\\_low\\_cloudwatch\\_metric\\_alarm\\_id) | ECS Memory utilization low CloudWatch metric alarm ID |\n| \u003ca name=\"output_ecs_alb_service_task\"\u003e\u003c/a\u003e [ecs\\_alb\\_service\\_task](#output\\_ecs\\_alb\\_service\\_task) | All outputs from `module.ecs_alb_service_task` |\n| \u003ca name=\"output_ecs_cloudwatch_autoscaling\"\u003e\u003c/a\u003e [ecs\\_cloudwatch\\_autoscaling](#output\\_ecs\\_cloudwatch\\_autoscaling) | All outputs from `module.ecs_cloudwatch_autoscaling` |\n| \u003ca name=\"output_ecs_cloudwatch_autoscaling_scale_down_policy_arn\"\u003e\u003c/a\u003e [ecs\\_cloudwatch\\_autoscaling\\_scale\\_down\\_policy\\_arn](#output\\_ecs\\_cloudwatch\\_autoscaling\\_scale\\_down\\_policy\\_arn) | ARN of the scale down policy |\n| \u003ca name=\"output_ecs_cloudwatch_autoscaling_scale_up_policy_arn\"\u003e\u003c/a\u003e [ecs\\_cloudwatch\\_autoscaling\\_scale\\_up\\_policy\\_arn](#output\\_ecs\\_cloudwatch\\_autoscaling\\_scale\\_up\\_policy\\_arn) | ARN of the scale up policy |\n| \u003ca name=\"output_ecs_exec_role_policy_id\"\u003e\u003c/a\u003e [ecs\\_exec\\_role\\_policy\\_id](#output\\_ecs\\_exec\\_role\\_policy\\_id) | The ECS service role policy ID, in the form of `role_name:role_policy_name` |\n| \u003ca name=\"output_ecs_exec_role_policy_name\"\u003e\u003c/a\u003e [ecs\\_exec\\_role\\_policy\\_name](#output\\_ecs\\_exec\\_role\\_policy\\_name) | ECS service role name |\n| \u003ca name=\"output_ecs_service_arn\"\u003e\u003c/a\u003e [ecs\\_service\\_arn](#output\\_ecs\\_service\\_arn) | ECS Service ARN |\n| \u003ca name=\"output_ecs_service_name\"\u003e\u003c/a\u003e [ecs\\_service\\_name](#output\\_ecs\\_service\\_name) | ECS Service name |\n| \u003ca name=\"output_ecs_service_role_arn\"\u003e\u003c/a\u003e [ecs\\_service\\_role\\_arn](#output\\_ecs\\_service\\_role\\_arn) | ECS Service role ARN |\n| \u003ca name=\"output_ecs_service_security_group_id\"\u003e\u003c/a\u003e [ecs\\_service\\_security\\_group\\_id](#output\\_ecs\\_service\\_security\\_group\\_id) | Security Group ID of the ECS task |\n| \u003ca name=\"output_ecs_task_definition_family\"\u003e\u003c/a\u003e [ecs\\_task\\_definition\\_family](#output\\_ecs\\_task\\_definition\\_family) | ECS task definition family |\n| \u003ca name=\"output_ecs_task_definition_revision\"\u003e\u003c/a\u003e [ecs\\_task\\_definition\\_revision](#output\\_ecs\\_task\\_definition\\_revision) | ECS task definition revision |\n| \u003ca name=\"output_ecs_task_exec_role_arn\"\u003e\u003c/a\u003e [ecs\\_task\\_exec\\_role\\_arn](#output\\_ecs\\_task\\_exec\\_role\\_arn) | ECS Task exec role ARN |\n| \u003ca name=\"output_ecs_task_exec_role_name\"\u003e\u003c/a\u003e [ecs\\_task\\_exec\\_role\\_name](#output\\_ecs\\_task\\_exec\\_role\\_name) | ECS Task role name |\n| \u003ca name=\"output_ecs_task_role_arn\"\u003e\u003c/a\u003e [ecs\\_task\\_role\\_arn](#output\\_ecs\\_task\\_role\\_arn) | ECS Task role ARN |\n| \u003ca name=\"output_ecs_task_role_id\"\u003e\u003c/a\u003e [ecs\\_task\\_role\\_id](#output\\_ecs\\_task\\_role\\_id) | ECS Task role id |\n| \u003ca name=\"output_ecs_task_role_name\"\u003e\u003c/a\u003e [ecs\\_task\\_role\\_name](#output\\_ecs\\_task\\_role\\_name) | ECS Task role name |\n| \u003ca name=\"output_httpcode_elb_5xx_count_cloudwatch_metric_alarm_arn\"\u003e\u003c/a\u003e [httpcode\\_elb\\_5xx\\_count\\_cloudwatch\\_metric\\_alarm\\_arn](#output\\_httpcode\\_elb\\_5xx\\_count\\_cloudwatch\\_metric\\_alarm\\_arn) | ALB 5xx count CloudWatch metric alarm ARN |\n| \u003ca name=\"output_httpcode_elb_5xx_count_cloudwatch_metric_alarm_id\"\u003e\u003c/a\u003e [httpcode\\_elb\\_5xx\\_count\\_cloudwatch\\_metric\\_alarm\\_id](#output\\_httpcode\\_elb\\_5xx\\_count\\_cloudwatch\\_metric\\_alarm\\_id) | ALB 5xx count CloudWatch metric alarm ID |\n| \u003ca name=\"output_httpcode_target_3xx_count_cloudwatch_metric_alarm_arn\"\u003e\u003c/a\u003e [httpcode\\_target\\_3xx\\_count\\_cloudwatch\\_metric\\_alarm\\_arn](#output\\_httpcode\\_target\\_3xx\\_count\\_cloudwatch\\_metric\\_alarm\\_arn) | ALB Target Group 3xx count CloudWatch metric alarm ARN |\n| \u003ca name=\"output_httpcode_target_3xx_count_cloudwatch_metric_alarm_id\"\u003e\u003c/a\u003e [httpcode\\_target\\_3xx\\_count\\_cloudwatch\\_metric\\_alarm\\_id](#output\\_httpcode\\_target\\_3xx\\_count\\_cloudwatch\\_metric\\_alarm\\_id) | ALB Target Group 3xx count CloudWatch metric alarm ID |\n| \u003ca name=\"output_httpcode_target_4xx_count_cloudwatch_metric_alarm_arn\"\u003e\u003c/a\u003e [httpcode\\_target\\_4xx\\_count\\_cloudwatch\\_metric\\_alarm\\_arn](#output\\_httpcode\\_target\\_4xx\\_count\\_cloudwatch\\_metric\\_alarm\\_arn) | ALB Target Group 4xx count CloudWatch metric alarm ARN |\n| \u003ca name=\"output_httpcode_target_4xx_count_cloudwatch_metric_alarm_id\"\u003e\u003c/a\u003e [httpcode\\_target\\_4xx\\_count\\_cloudwatch\\_metric\\_alarm\\_id](#output\\_httpcode\\_target\\_4xx\\_count\\_cloudwatch\\_metric\\_alarm\\_id) | ALB Target Group 4xx count CloudWatch metric alarm ID |\n| \u003ca name=\"output_httpcode_target_5xx_count_cloudwatch_metric_alarm_arn\"\u003e\u003c/a\u003e [httpcode\\_target\\_5xx\\_count\\_cloudwatch\\_metric\\_alarm\\_arn](#output\\_httpcode\\_target\\_5xx\\_count\\_cloudwatch\\_metric\\_alarm\\_arn) | ALB Target Group 5xx count CloudWatch metric alarm ARN |\n| \u003ca name=\"output_httpcode_target_5xx_count_cloudwatch_metric_alarm_id\"\u003e\u003c/a\u003e [httpcode\\_target\\_5xx\\_count\\_cloudwatch\\_metric\\_alarm\\_id](#output\\_httpcode\\_target\\_5xx\\_count\\_cloudwatch\\_metric\\_alarm\\_id) | ALB Target Group 5xx count CloudWatch metric alarm ID |\n| \u003ca name=\"output_target_response_time_average_cloudwatch_metric_alarm_arn\"\u003e\u003c/a\u003e [target\\_response\\_time\\_average\\_cloudwatch\\_metric\\_alarm\\_arn](#output\\_target\\_response\\_time\\_average\\_cloudwatch\\_metric\\_alarm\\_arn) | ALB Target Group response time average CloudWatch metric alarm ARN |\n| \u003ca name=\"output_target_response_time_average_cloudwatch_metric_alarm_id\"\u003e\u003c/a\u003e [target\\_response\\_time\\_average\\_cloudwatch\\_metric\\_alarm\\_id](#output\\_target\\_response\\_time\\_average\\_cloudwatch\\_metric\\_alarm\\_id) | ALB Target Group response time average CloudWatch metric alarm ID |\n\u003c!-- markdownlint-restore --\u003e\n\n\n## Related Projects\n\nCheck out these related projects.\n\n- [terraform-aws-alb](https://github.com/cloudposse/terraform-aws-alb) - Terraform module to provision a standard ALB for HTTP/HTTP traffic\n- [terraform-aws-alb-ingress](https://github.com/cloudposse/terraform-aws-alb-ingress) - Terraform module to provision an HTTP style ingress rule based on hostname and path for an ALB\n- [terraform-aws-codebuild](https://github.com/cloudposse/terraform-aws-codebuild) - Terraform Module to easily leverage AWS CodeBuild for Continuous Integration\n- [terraform-aws-ecr](https://github.com/cloudposse/terraform-aws-ecr) - Terraform Module to manage Docker Container Registries on AWS ECR\n- [terraform-aws-ecs-alb-service-task](https://github.com/cloudposse/terraform-aws-ecs-alb-service-task) - Terraform module which implements an ECS service which exposes a web service via ALB.\n- [terraform-aws-ecs-codepipeline](https://github.com/cloudposse/terraform-aws-ecs-codepipeline) - Terraform Module for CI/CD with AWS Code Pipeline and Code Build for ECS\n- [terraform-aws-ecs-container-definition](https://github.com/cloudposse/terraform-aws-ecs-container-definition) - Terraform module to generate well-formed JSON documents that are passed to the aws_ecs_task_definition Terraform resource\n- [terraform-aws-lb-s3-bucket](https://github.com/cloudposse/terraform-aws-lb-s3-bucket) - Terraform module to provision an S3 bucket with built in IAM policy to allow AWS Load Balancers to ship access logs.\n- [terraform-aws-eks-cluster](https://github.com/cloudposse/terraform-aws-eks-cluster) - Terraform module for provisioning an EKS cluster\n- [terraform-aws-eks-workers](https://github.com/cloudposse/terraform-aws-eks-workers) - Terraform module to provision an AWS AutoScaling Group, IAM Role, and Security Group for EKS Workers\n- [terraform-aws-ec2-autoscale-group](https://github.com/cloudposse/terraform-aws-ec2-autoscale-group) - Terraform module to provision Auto Scaling Group and Launch Template on AWS\n\n\n\u003e [!TIP]\n\u003e #### Use Terraform Reference Architectures for AWS\n\u003e\n\u003e Use Cloud Posse's ready-to-go [terraform architecture blueprints](https://cloudposse.com/reference-architecture/) for AWS to get up and running quickly.\n\u003e\n\u003e ✅ We build it together with your team.\u003cbr/\u003e\n\u003e ✅ Your team owns everything.\u003cbr/\u003e\n\u003e ✅ 100% Open Source and backed by fanatical support.\u003cbr/\u003e\n\u003e\n\u003e \u003ca href=\"https://cpco.io/commercial-support?utm_source=github\u0026utm_medium=readme\u0026utm_campaign=cloudposse/terraform-aws-ecs-web-app\u0026utm_content=commercial_support\"\u003e\u003cimg alt=\"Request Quote\" src=\"https://img.shields.io/badge/request%20quote-success.svg?style=for-the-badge\"/\u003e\u003c/a\u003e\n\u003e \u003cdetails\u003e\u003csummary\u003e📚 \u003cstrong\u003eLearn More\u003c/strong\u003e\u003c/summary\u003e\n\u003e\n\u003e \u003cbr/\u003e\n\u003e\n\u003e Cloud Posse is the leading [**DevOps Accelerator**](https://cpco.io/commercial-support?utm_source=github\u0026utm_medium=readme\u0026utm_campaign=cloudposse/terraform-aws-ecs-web-app\u0026utm_content=commercial_support) for funded startups and enterprises.\n\u003e\n\u003e *Your team can operate like a pro today.*\n\u003e\n\u003e Ensure that your team succeeds by using Cloud Posse's proven process and turnkey blueprints. Plus, we stick around until you succeed.\n\u003e #### Day-0:  Your Foundation for Success\n\u003e - **Reference Architecture.** You'll get everything you need from the ground up built using 100% infrastructure as code.\n\u003e - **Deployment Strategy.** Adopt a proven deployment strategy with GitHub Actions, enabling automated, repeatable, and reliable software releases.\n\u003e - **Site Reliability Engineering.** Gain total visibility into your applications and services with Datadog, ensuring high availability and performance.\n\u003e - **Security Baseline.** Establish a secure environment from the start, with built-in governance, accountability, and comprehensive audit logs, safeguarding your operations.\n\u003e - **GitOps.** Empower your team to manage infrastructure changes confidently and efficiently through Pull Requests, leveraging the full power of GitHub Actions.\n\u003e\n\u003e \u003ca href=\"https://cpco.io/commercial-support?utm_source=github\u0026utm_medium=readme\u0026utm_campaign=cloudposse/terraform-aws-ecs-web-app\u0026utm_content=commercial_support\"\u003e\u003cimg alt=\"Request Quote\" src=\"https://img.shields.io/badge/request%20quote-success.svg?style=for-the-badge\"/\u003e\u003c/a\u003e\n\u003e\n\u003e #### Day-2: Your Operational Mastery\n\u003e - **Training.** Equip your team with the knowledge and skills to confidently manage the infrastructure, ensuring long-term success and self-sufficiency.\n\u003e - **Support.** Benefit from a seamless communication over Slack with our experts, ensuring you have the support you need, whenever you need it.\n\u003e - **Troubleshooting.** Access expert assistance to quickly resolve any operational challenges, minimizing downtime and maintaining business continuity.\n\u003e - **Code Reviews.** Enhance your team’s code quality with our expert feedback, fostering continuous improvement and collaboration.\n\u003e - **Bug Fixes.** Rely on our team to troubleshoot and resolve any issues, ensuring your systems run smoothly.\n\u003e - **Migration Assistance.** Accelerate your migration process with our dedicated support, minimizing disruption and speeding up time-to-value.\n\u003e - **Customer Workshops.** Engage with our team in weekly workshops, gaining insights and strategies to continuously improve and innovate.\n\u003e\n\u003e \u003ca href=\"https://cpco.io/commercial-support?utm_source=github\u0026utm_medium=readme\u0026utm_campaign=cloudposse/terraform-aws-ecs-web-app\u0026utm_content=commercial_support\"\u003e\u003cimg alt=\"Request Quote\" src=\"https://img.shields.io/badge/request%20quote-success.svg?style=for-the-badge\"/\u003e\u003c/a\u003e\n\u003e \u003c/details\u003e\n\n## ✨ Contributing\n\nThis project is under active development, and we encourage contributions from our community.\n\n\n\nMany thanks to our outstanding contributors:\n\n\u003ca href=\"https://github.com/cloudposse/terraform-aws-ecs-web-app/graphs/contributors\"\u003e\n  \u003cimg src=\"https://contrib.rocks/image?repo=cloudposse/terraform-aws-ecs-web-app\u0026max=24\" /\u003e\n\u003c/a\u003e\n\nFor 🐛 bug reports \u0026 feature requests, please use the [issue tracker](https://github.com/cloudposse/terraform-aws-ecs-web-app/issues).\n\nIn general, PRs are welcome. We follow the typical \"fork-and-pull\" Git workflow.\n 1. Review our [Code of Conduct](https://github.com/cloudposse/terraform-aws-ecs-web-app/?tab=coc-ov-file#code-of-conduct) and [Contributor Guidelines](https://github.com/cloudposse/.github/blob/main/CONTRIBUTING.md).\n 2. **Fork** the repo on GitHub\n 3. **Clone** the project to your own machine\n 4. **Commit** changes to your own branch\n 5. **Push** your work back up to your fork\n 6. Submit a **Pull Request** so that we can review your changes\n\n**NOTE:** Be sure to merge the latest changes from \"upstream\" before making a pull request!\n\n### 🌎 Slack Community\n\nJoin our [Open Source Community](https://cpco.io/slack?utm_source=github\u0026utm_medium=readme\u0026utm_campaign=cloudposse/terraform-aws-ecs-web-app\u0026utm_content=slack) on Slack. It's **FREE** for everyone! Our \"SweetOps\" community is where you get to talk with others who share a similar vision for how to rollout and manage infrastructure. This is the best place to talk shop, ask questions, solicit feedback, and work together as a community to build totally *sweet* infrastructure.\n\n### 📰 Newsletter\n\nSign up for [our newsletter](https://cpco.io/newsletter?utm_source=github\u0026utm_medium=readme\u0026utm_campaign=cloudposse/terraform-aws-ecs-web-app\u0026utm_content=newsletter) and join 3,000+ DevOps engineers, CTOs, and founders who get insider access to the latest DevOps trends, so you can always stay in the know.\nDropped straight into your Inbox every week — and usually a 5-minute read.\n\n### 📆 Office Hours \u003ca href=\"https://cloudposse.com/office-hours?utm_source=github\u0026utm_medium=readme\u0026utm_campaign=cloudposse/terraform-aws-ecs-web-app\u0026utm_content=office_hours\"\u003e\u003cimg src=\"https://img.cloudposse.com/fit-in/200x200/https://cloudposse.com/wp-content/uploads/2019/08/Powered-by-Zoom.png\" align=\"right\" /\u003e\u003c/a\u003e\n\n[Join us every Wednesday via Zoom](https://cloudposse.com/office-hours?utm_source=github\u0026utm_medium=readme\u0026utm_campaign=cloudposse/terraform-aws-ecs-web-app\u0026utm_content=office_hours) for your weekly dose of insider DevOps trends, AWS news and Terraform insights, all sourced from our SweetOps community, plus a _live Q\u0026A_ that you can’t find anywhere else.\nIt's **FREE** for everyone!\n## License\n\n\u003ca href=\"https://opensource.org/licenses/Apache-2.0\"\u003e\u003cimg src=\"https://img.shields.io/badge/License-Apache%202.0-blue.svg?style=for-the-badge\" alt=\"License\"\u003e\u003c/a\u003e\n\n\u003cdetails\u003e\n\u003csummary\u003ePreamble to the Apache License, Version 2.0\u003c/summary\u003e\n\u003cbr/\u003e\n\u003cbr/\u003e\n\nComplete license is available in the [`LICENSE`](LICENSE) file.\n\n```text\nLicensed to the Apache Software Foundation (ASF) under one\nor more contributor license agreements.  See the NOTICE file\ndistributed with this work for additional information\nregarding copyright ownership.  The ASF licenses this file\nto you under the Apache License, Version 2.0 (the\n\"License\"); you may not use this file except in compliance\nwith the License.  You may obtain a copy of the License at\n\n  https://www.apache.org/licenses/LICENSE-2.0\n\nUnless required by applicable law or agreed to in writing,\nsoftware distributed under the License is distributed on an\n\"AS IS\" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY\nKIND, either express or implied.  See the License for the\nspecific language governing permissions and limitations\nunder the License.\n```\n\u003c/details\u003e\n\n## Trademarks\n\nAll other trademarks referenced herein are the property of their respective owners.\n\n\n---\nCopyright © 2017-2025 [Cloud Posse, LLC](https://cpco.io/copyright)\n\n\n\u003ca href=\"https://cloudposse.com/readme/footer/link?utm_source=github\u0026utm_medium=readme\u0026utm_campaign=cloudposse/terraform-aws-ecs-web-app\u0026utm_content=readme_footer_link\"\u003e\u003cimg alt=\"README footer\" src=\"https://cloudposse.com/readme/footer/img\"/\u003e\u003c/a\u003e\n\n\u003cimg alt=\"Beacon\" width=\"0\" src=\"https://ga-beacon.cloudposse.com/UA-76589703-4/cloudposse/terraform-aws-ecs-web-app?pixel\u0026cs=github\u0026cm=readme\u0026an=terraform-aws-ecs-web-app\"/\u003e\n","project_url":"https://awesome.ecosyste.ms/api/v1/projects/github.com%2Fcloudposse%2Fterraform-aws-ecs-web-app","html_url":"https://awesome.ecosyste.ms/projects/github.com%2Fcloudposse%2Fterraform-aws-ecs-web-app","lists_url":"https://awesome.ecosyste.ms/api/v1/projects/github.com%2Fcloudposse%2Fterraform-aws-ecs-web-app/lists"}