cec34abc22
The live terraform apply (P4) uncovered a P2 module-completeness gap: the ecs-service L1 aws_ecs_task_definition was missing execution_role_arn + task_role_arn, and the microservice L2 composition did not wire roles.outputs.role_arn to the service. Fargate requires an execution role for ECR image pull. Fixed: interface.json + variables.tf + main.tf + composition.json wires. The iam-role assume-policy trusts ecs-tasks + the inline policy grants ECR pull + CW logs. A second live gap surfaced once the task definition applied: the ALB aws_lb had no security group (AWS rejects an ALB with an empty SG list). The platform VPC only outputs an ECS SG; the composition now wires platform_vpc.outputs.ecs_security_group_id to alb.inputs.security_group (the ECS SG opens port 80 to 0.0.0.0/0 — acceptable for an internet-facing ALB + dev pilot per D-020). No iam-role module changes were needed — its locals.tf already trusts ecs-tasks.amazonaws.com and grants ECR pull + CloudWatch logs by default. Live apply now succeeds: Apply complete! Resources: 0 added, 1 changed, 0 destroyed (task def + ECS service created on the first re-apply; ALB SG updated in-place on the second). Full suite: 844 passed. ---ci--- project: acdl phase: 4 milestone: v1.26 status: execute wave: W1 ---
Nova Modules
Reusable building blocks for cloud infrastructure. Each module is
self-documented with a README.md following the
template.
How the modules work
There are two kinds of module:
- Primitives — a single cloud resource or a small group of
related resources (e.g. a VPC with subnets and routing). Each primitive
has an
interface.jsondeclaring its inputs and outputs, and aREADME.mdin plain language. - Modules — a pattern that references multiple primitives to
deploy a complete stack (e.g. an ECS Fargate microservice). Each module
has a
composition.jsondeclaring its children and wires.
The engine adapter (adapters/terraform/adapter.py) compiles a
module instance to infrastructure. Each module's README documents which
resources it creates.
Primitives
| Module | What it creates | README |
|---|---|---|
s3 |
aws_s3_bucket — a single S3 bucket |
README |
vpc |
aws_vpc + aws_subnet + aws_route_table + aws_internet_gateway — VPC with subnets and routing |
README |
ecs-cluster |
aws_ecs_cluster — ECS Fargate cluster |
README |
ecs-service |
aws_ecs_task_definition + aws_ecs_service — Fargate service with task definition |
README |
iam-role |
aws_iam_role — IAM role with assume-role policy |
README |
alb |
aws_lb + aws_lb_target_group + aws_lb_listener — Application Load Balancer |
README |
ecr |
aws_ecr_repository — ECR container image repository |
README |
cloudfront |
aws_cloudfront_distribution + aws_cloudfront_origin_access_control — CloudFront distribution with S3 origin via OAC |
README |
waf |
aws_wafv2_web_acl — WAFv2 Web ACL (CloudFront-scoped) |
README |
rds |
aws_db_instance — Relational database (PostgreSQL, MySQL, etc.) with multi-engine support |
README |
kms-key |
aws_kms_key — Customer-managed KMS key with rotation enabled (per-stack CMK) |
README |
uptime |
aws_ecs_service — Uptime-kuma monitoring on ECS Fargate with alert channels |
README |
dynamodb |
aws_dynamodb_table — DynamoDB table with encryption + PITR (v1.8 NFR defaults) |
README |
Modules
| Module | What it references | README |
|---|---|---|
microservice |
6 primitives (vpc, cluster, ecr, iam-role, alb, ecs-service) | README |
static-assets |
3 primitives (s3, cloudfront, waf) | README |
Registry
Module versions are tracked in registry.json. Both primitives and
modules are registered.
Template
New modules should use README-TEMPLATE.md as their starting point.
Module patterns (roadmap)
The current composition.json mechanism is a thin pattern layer. A future
redesign will let a consumer dynamically create a module directly from the
contract file (an agentic "composition" flow). That is on the roadmap, not
implemented today.