---ci--- project: acdl phase: 20 milestone: v1.5 status: verify ---/ci--- REQ-46: README rewritten — platform-source vs consumer-repo distinction up front; platform flow converted to mermaid flowchart TD; L3A/L3B + spike nomenclature scrubbed from prose (code paths kept verbatim); prereqs pointer to consumer guide added. REQ-47: docs/CONSUMER_GUIDE.md (generic, all L2 modules) replaces docs/consumer-guide-static-asset.md — mermaid diagrams (model LR + pipeline TD), versioned uses: (@v1.4 floating MAJOR+MINOR, bare/@main discouraged), consumer-scoped prerequisites (no Terraform/Checkov/boto3/runner-key), run- time platform fetch via reusable workflow (consumers never invoke scripts/run_platform.sh locally for the happy path), optional local validation note. REQ-48: Credentials section rewritten — zero-trust OIDC + ABAC default (repo-identity + resource-tag scoping, blast-radius containment); static-key override in GitHub Secrets or .env.secrets with platform-managed daily rotation; consumer rotates out of band when using .env.secrets locally. REQ-49: byte-identical .gitea/workflows/deploy.yml + .github/workflows/ deploy.yml — reusable (on: workflow_call), checks out consumer repo + ACDL platform repo, installs deps, runs run_platform.sh, uploads artifacts; OIDC default (permissions: id-token: write) + static-key override via secrets. REQ-50: contracts/static-asset.yaml uses: @v1.4 (MAJOR+MINOR). REQ-51: tests/test_pipeline_contract.py extended — TestDeployPipelineSchema, TestDeployPipelineContract, TestDeployWorkflowConformance (byte-identical, reusable, contract/mode inputs, run_platform invocation, platform-repo checkout, OIDC permissions), TestSampleContractVersioning. 154 tests pass (19 new); run_ci.sh green. Fixes: modules/l2/static-asset/README.md dangling link retargeted to docs/CONSUMER_GUIDE.md.
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Consumer Guide — Declare intent, deploy to AWS
This guide walks a consumer through creating their pipeline and defining a
contract that deploys any ACDL module to AWS. It is generic across all
L2 modules in the registry; static-asset is the worked example, but every
step applies to microservice and any future L2 composition.
The model
Consumers have their own repos and consume ACDL by referencing uses: the
central pipeline definitions. The consumer declares a contract (which
module, which environment, which inputs); the ACDL platform owns the
pipelines, modules, Terraform adapter, and evidence stream.
You do not write Terraform, workflow YAML, or adapter code. You write a contract YAML file and the platform does the rest. Your repository contains only your application code and that one contract.
flowchart LR
A["your repo<br/>(app code + contract.yaml)"] -->|uses: acdl/.gitea/workflows/deploy.yml@v1.4| B
B["ACDL platform runners<br/>(modules/ + pipelines/ + adapters/ + schemas/)"] -->|contract -> resolver -> stack -> adapter<br/>-> terraform plan -> Checkov -> confidence<br/>-> apply -> evidence event to outbox| C
C["your resources in AWS"]
Versioning the uses: reference
The central deployment pipeline is always versioned with floating MAJOR
and MINOR tags (e.g. acdl/pipelines/deploy.yaml@v1.4). Version
constraints cannot be expressed inside the contract, so the tag in
uses: is the only immutability lever a consumer has.
Unversioned references are discouraged. Do not use @main or a bare
acdl/pipelines/deploy.yaml — main is constantly updated and can cause
unexpected failures in your deployment. Pinning to a MAJOR+MINOR tag means:
- Immutability — the pipeline behavior you tested is the behavior you
get. Patch fixes flow within the tag; breaking changes land under the
next MINOR tag (
@v1.5), which you opt into explicitly. - Resilience — your deployment does not break because an unrelated
change landed on
main. - DX — your setup is stable and reproducible. You upgrade on your schedule by bumping the tag.
All examples in this guide use @v1.4. When a new MINOR tag is released
(e.g. @v1.5), review its changelog and bump your uses: reference when
ready.
Prerequisites
These are the only prerequisites for a consumer repo. You do not need an AWS account, Terraform, Checkov, boto3, or a rotated runner key — those are platform-repo concerns, provided by the platform runners.
- A consumer GitHub or Gitea repository for your application code +
contract.yaml. - An ACDL platform runner available to your org. The platform team provides runners with Terraform, Checkov, Python, and the AWS auth already configured. You do not install any of these.
- Authorization to reference the central pipeline. Onboarding grants
your repo the right to
uses: acdl/.gitea/workflows/deploy.yml@v1.4. Contact the platform team if you have not been onboarded.
Step 1 — Create a consumer repo
Create a repository for your application. The top level holds your app
code; your contract lives at .acdl/contract.yaml. Example for a static
site:
my-static-site/
index.html
assets/
style.css
logo.png
.acdl/
contract.yaml
Example for a microservice:
my-microservice/
app.py
Dockerfile
.acdl/
contract.yaml
Your app code lives at the top level. Your contract lives at
.acdl/contract.yaml regardless of the module you deploy.
Step 2 — Reference the central pipeline
In your contract YAML, declare uses: pointing at the central ACDL
deployment pipeline with a versioned tag (floating MAJOR + MINOR):
uses: acdl/pipelines/deploy.yaml@v1.4
This tells the platform to run the standard deployment pipeline: validate-contract -> resolve-stack -> terraform-plan -> checkov -> confidence -> apply.
Step 3 — Define the contract
Write .acdl/contract.yaml. The static-asset example:
uses: acdl/pipelines/deploy.yaml@v1.4
module: static-asset
environment: dev
inputs:
bucket_name: my-static-site-assets
region: us-east-1
A microservice example:
uses: acdl/pipelines/deploy.yaml@v1.4
module: microservice
environment: dev
inputs:
image: my-registry/my-microservice:latest
port: 8080
env:
LOG_LEVEL: info
Contract fields
| Field | Type | Required | Description |
|---|---|---|---|
uses |
string | yes | Reference to the central deployment pipeline, versioned with a floating MAJOR+MINOR tag (e.g. acdl/pipelines/deploy.yaml@v1.4). Bare or @main references are discouraged. |
module |
string | yes | Module name from the registry — any L1 primitive or L2 composition (e.g. static-asset, microservice, s3). See the module catalog. |
environment |
enum | yes | dev (autonomous), qa (QA HITL), prod (SRE HITL), dr (SRE HITL). |
inputs |
object | yes | Module-specific inputs (see below). |
Module inputs
Each module declares its inputs in its interface.json (L1) or
composition.json (L2). Consult the module catalog
for the full list, or read the module's own README under modules/l1/<name>/
or modules/l2/<name>/.
static-asset inputs (the worked example):
| Input | Type | Required | Description |
|---|---|---|---|
bucket_name |
string | yes | Globally-unique S3 bucket name. |
region |
string | yes | AWS region the bucket is created in. |
The contract is validated against schemas/contract.schema.json. An
invalid contract (missing field, unknown module, wrong type) fails at the
validate-contract stage with a clear error.
Step 4 — Run the pipeline
You do not run platform scripts locally for the happy path. The central deploy workflow is a reusable workflow that the platform runners fetch and execute for you.
The consumer workflow
Add a thin workflow file to your repo that invokes the reusable ACDL
deploy workflow with a versioned tag. For Gitea Actions
(.gitea/workflows/deploy.yml):
name: deploy
on:
push:
branches: [main]
jobs:
deploy:
uses: acdl/.gitea/workflows/deploy.yml@v1.4
with:
contract: .acdl/contract.yaml
For GitHub Actions (.github/workflows/deploy.yml), the uses: line is
identical — only the directory differs:
name: deploy
on:
push:
branches: [main]
jobs:
deploy:
uses: acdl/.github/workflows/deploy.yml@v1.4
with:
contract: .acdl/contract.yaml
That is the entire consumer-side workflow. When you push to main:
- The forge resolves
uses: acdl/.gitea/workflows/deploy.yml@v1.4(or the GitHub equivalent) to the reusable workflow at the pinned tag. - A platform-provided runner checks out your repo (the consumer repo).
- The runner checks out the ACDL platform repo into the workspace
(
acdl-platform/) — this is how the pipeline fetches the platform code at run time. You never clone the platform repo yourself. - The runner installs the runtime dependencies (Python, Terraform, Checkov) that the platform requires.
- The runner invokes
scripts/run_platform.shagainst your.acdl/contract.yaml.
You see the streamed output (terraform plan, Checkov results, confidence
signal) in your forge run logs. The --check-only and --plan-only flags
are platform-side modes visible in the pipeline logs; you do not pass them
yourself — the reusable workflow selects the mode based on the
environment in your contract (dev = full apply; higher environments
hold for HITL).
Local validation (optional)
A consumer may clone the ACDL platform repo to run --check-only
against their contract before pushing — this is optional and not required
for the happy path. If you do this, the runtime dependencies (Python,
jsonschema, pyyaml, boto3) must be installed locally, and any AWS
credentials follow the Credentials
override model: a static key in .env.secrets (gitignored) is rotated
out of band by you — the platform guarantees daily rotation for forge
runs, not for locally-held copies.
# Optional pre-push validation (clone the platform repo first):
bash scripts/run_platform.sh --check-only path/to/your/.acdl/contract.yaml
# Expected: "=== PLATFORM CHECK OK ==="
Step 5 — What the pipeline does
Each stage of the central deployment pipeline (pipelines/deploy.yaml):
flowchart TD
S1["validate-contract<br/>schema check vs contract.schema.json"] --> S2
S2["resolve-stack<br/>contract_resolver.py -> Target Stack JSON"] --> S3
S3["terraform-plan<br/>adapter.py compiles stack -> terraform plan (real AWS)"] --> S4
S4["checkov<br/>policy checks -> PolicyCheckResult records"] --> S5
S5["confidence<br/>confidence_signal.py -> score + band (dev >= 0.50)"] --> S6
S6["apply<br/>dev only: terraform apply + evidence event to outbox"]
-
validate-contract — validates your contract YAML against
schemas/contract.schema.json. Fails fast on missing fields, unknown modules, or wrong types. -
resolve-stack — the contract resolver (
acdl_platform/contract_resolver.py) resolves your contract to a Target Stack instance. It loads the module's composition, expands its children, wires your contract inputs to the children's inputs, and emits a stack JSON instance. -
terraform-plan — the Terraform adapter (
adapters/terraform/adapter.py) compiles the stack to Terraform (main.tf,terraform.tf,providers.tf) and runsterraform planagainst real AWS. You see the plan in your run logs. -
checkov — Checkov runs policy checks on the emitted Terraform. The results are normalized to
PolicyCheckResultrecords by the Checkov adapter. Each result has a severity, rule ID, and pass/fail status. -
confidence — the confidence signal (
acdl_platform/confidence_signal.py) computes a score from 6 inputs (policy, validation, freshness, source, history, NFRs). Fordev, the threshold is >= 0.50. If the band ispass, the pipeline proceeds. -
apply — (dev only, autonomous per the environment model) Terraform applies the plan, creating the resources in your AWS account. An evidence event (hash-chained) is written to the DynamoDB outbox.
Step 6 — What gets created
After a successful dev run, the resources declared by your module's
composition exist in your AWS account, and an evidence event is recorded.
For the static-asset example:
- An S3 bucket named
my-static-site-assetsinus-east-1with versioning enabled. - An evidence event in the DynamoDB outbox (
acdl-outboxtable) with the contract ID, stack name (static-asset), confidence score, and band. - A confidence band of
pass(score >= 0.50 for dev).
For other modules, consult the module's README
(modules/l1/<name>/README.md or modules/l2/<name>/README.md) for the
exact resources created.
Step 7 — Upload your content (static-asset example)
The platform provisions the infrastructure; you upload your content. For
the static-asset module:
aws s3 sync ./assets s3://my-static-site-assets/ --acl public-read
(For a proper static site, configure the bucket for website hosting or
put a CloudFront distribution in front — both are future compliance
extension points for the static-asset module.)
For a microservice, the platform provisions the ECS service and ALB; you
push your container image to the ECR repo the platform created.
Step 8 — Promote to qa / prod
Change environment in your contract (keeping the same versioned uses:):
uses: acdl/pipelines/deploy.yaml@v1.4
environment: qa # QA HITL gate + confidence >= 0.75
environment: prod # SRE HITL gate + confidence >= 0.90
Higher environments require human attestation (forge deployment approval) and higher confidence thresholds. The platform enforces separation of duties (qaApprover != prodApprover) via the DynamoDB outbox.
| Environment | Autonomy | Gate |
|---|---|---|
| dev | Full autonomy | Confidence >= 0.50 |
| qa | QA HITL | Confidence >= 0.75 |
| prod | SRE HITL | Confidence >= 0.90 |
| dr | SRE HITL | Confidence >= 0.95 + dr-drill |
Step 9 — Compliance extensions
Each module lists compliance extension points for the future compliance
milestone (GDPR, SOX, SOC2, HIPAA, DORA). See each module's README under
modules/l1/<name>/README.md or modules/l2/<name>/README.md for the
per-module extension points. Common examples:
- KMS key — shared encryption key for SSE.
- S3 access logs — access logging to a separate audit bucket.
- Object Lock — 7-year immutable retention for evidence.
- Public access block — prevent data exfiltration.
Reference
| Resource | Path | Description |
|---|---|---|
| Central deployment pipeline contract | pipelines/deploy.yaml |
The pipeline stages your contract references. |
| Reusable deploy workflow (Gitea) | .gitea/workflows/deploy.yml |
The workflow your repo invokes via uses:. |
| Reusable deploy workflow (GitHub) | .github/workflows/deploy.yml |
The workflow your repo invokes via uses:. |
| Contract schema | schemas/contract.schema.json |
JSON Schema for consumer contracts. |
| Stack schema | schemas/stack.schema.json |
JSON Schema for the resolved stack instance. |
| Module catalog | modules/README.md |
All L1 primitives and L2 compositions. |
| Sample contract | contracts/static-asset.yaml |
The reference example contract (uses @v1.4). |
| Contract resolver | acdl_platform/contract_resolver.py |
Resolves contracts to stack instances. |
| Terraform adapter | adapters/terraform/adapter.py |
Compiles stack instances to Terraform. |
| Platform pipeline runner | scripts/run_platform.sh |
The pipeline runner (platform-side; consumers do not invoke it directly). |
| Platform README | README.md |
How the platform works + how to run the platform repo locally. |
| Credentials & zero-trust | README.md#credentials--zero-trust |
The OIDC/ABAC default + static-key override model. |