Cairn
The local-first, cloud-agnostic IaC auditor that fuses cost + security in a single pass — across AWS, Azure, GCP, Kubernetes and on-prem — and writes the fix, not just the flag.
Install · Quick start · Rules · Architecture · Contribute
Cairn scans your Terraform on your machine, applies security, cost, reliability and governance rules in one pass, reconciles the trade-offs between them, and proposes concrete, ready-to-apply fixes.
$ cairn scan ./infra
Cairn found 25 issue(s) in ./infra (6 cost, 6 governance, 3 reliability, 10 security):
1. [CRITICAL/SECURITY] aws_security_group.web (SEC001)
at: infra/main.tf:3
problem: Ingress on port 22 is open to the entire internet (0.0.0.0/0) and covers SSH/RDP.
fix: Restrict cidr_blocks to known ranges, or front the service with a
load balancer or SSM Session Manager instead of exposing it directly.
patch:
cidr_blocks = ["10.0.0.0/8"] # replace with your trusted CIDR
9. [MEDIUM/COST] aws_instance.batch (COST001)
problem: Instance type 'm5.4xlarge' is very large (~$561/month on-demand) and likely over-provisioned.
saves: ~$420.48/month (estimate)
patch:
instance_type = "m5.xlarge"
Trade-offs (cost x risk on the same resource):
⚖ aws_db_instance.main [COST + SECURITY]
Sequence the security fix first, then right-size — resizing an exposed
resource first just makes the breach cheaper to run.
Estimated recoverable spend: ~$1,717.53/month
9 resource(s), 1 file(s), 0.12s. Local-only scan; nothing left this machine.
Why Cairn
Cost lives in one tool (Infracost, Kubecost), security in another (Checkov, Trivy), and nobody reconciles them at the moment of the decision. A change that saves money can widen your attack surface — and no scanner tells you that. Cairn is different by design:
- Fuses cost + security. One pass, one ranked report, explicit trade-offs when both hit the same resource, with estimated dollars next to every cost finding.
- Fixes, not just flags. Every finding carries plain-English remediation and, where safe, a ready-to-apply HCL patch.
- Local-first, by architecture. No SaaS, no upload, no telemetry. Your code, secrets and infrastructure data never leave your machine. LLM explanations are strictly opt-in and bring-your-own-key (or fully local via Ollama).
- Policy-as-code around the scanner. Encode your org's standards — required tags, severity gates, grandfathered ignores — in a reviewable
.cairn.yaml. - Built to operate, eventually. Every action is governed by the Trust Ladder: today read-only with an audit trail; auto-fix PRs and policy-gated remediation come only after trust is earned.
Installation
Requires Python 3.10+.
pip install cairn-iac
Or run from source:
git clone https://github.com/cairn-oss/cairn && cd cairn
pip install -e .
Or via Docker:
docker build -t cairn . && docker run --rm -v "$PWD:/scan" cairn scan /scan
Quick start
# Scan a directory (recursive; .terraform/ and vendored dirs are skipped)
cairn scan ./infra
# Machine formats for CI and code scanning
cairn scan ./infra --format json --output report.json
cairn scan ./infra --format sarif --output report.sarif # GitHub Code Scanning
cairn scan ./infra --format markdown --output report.md # paste into a PR
# Gate CI: exit 1 only on HIGH or CRITICAL (default), or choose your line
cairn scan ./infra --fail-on CRITICAL
cairn scan ./infra --fail-on NEVER # report, never fail
# Draft the fixes as a review-ready proposal (changes nothing)
cairn propose ./infra --output proposal.md
# What does this branch do to the bill? (exit 1 if it breaches your budget)
cairn diff ./infra-main ./infra-branch
# See every rule
cairn rules
Policy-as-code
Drop a .cairn.yaml next to your Terraform:
min_severity: LOW
fail_on: HIGH
required_tags: [Owner, CostCenter]
disabled_rules: [GOV001]
severity_overrides:
COST002: MEDIUM
ignores:
- rule: SEC001
resource: aws_security_group.legacy_*
reason: grandfathered until the Q3 migration
Need a documented exception? Suppress one rule for one resource, inline, with a mandatory reason:
# cairn:ignore SEC001 reason=reachable only through the corporate VPN
See docs/configuration.md for the full reference.
Opt-in AI explanations (BYO-key or fully local)
Cairn never sends anything anywhere by default. If you want tailored explanations, configure a provider and pass --explain:
llm:
provider: ollama # fully local — data still never leaves your machine
model: llama3.1
cairn scan ./infra --explain
openai and anthropic providers use your own API key from the environment (OPENAI_API_KEY / ANTHROPIC_API_KEY). Only the finding itself (rule, resource address, message) is sent — never your files. Details in SECURITY.md.
GitHub Actions
- uses: cairn-oss/cairn@v0
with:
path: ./infra
fail-on: HIGH
Or upload SARIF to Code Scanning — see docs/configuration.md#ci.
What it checks (42 rules across 5 providers)
| Discipline | Examples |
|---|---|
| Security | Open security groups (SSH/RDP → CRITICAL), unencrypted S3/RDS/EBS, public databases and buckets, *:* IAM policies, hardcoded secrets, IMDSv1, plaintext listeners |
| Cost | Oversized EC2/RDS (with $/month estimates), gp2→gp3, orphaned volumes and Elastic IPs, previous-generation instance types, K8s containers without limits |
| Reliability | Databases without backups or deletion protection, buckets without versioning, unpinned images, missing health probes |
| Governance | Untagged resources, org-mandated tags via policy |
| Kubernetes | Privileged containers, root containers, hostPath mounts — manifests and Terraform scan together, in one pass |
| Azure / GCP / vSphere | Network exposure, public storage/DB, encryption, oversizing, tagging — cloud-agnostic and on-prem, filterable with --provider |
Full catalogue with rationale and references: docs/rules.md.
Run cairn providers for live coverage. Terraform for any provider is
parsed; resources from providers without a rule pack are reported as not
scanned (never a misleading "clean"). Coverage detail: docs/coverage.md.
Exit codes
| Code | Meaning |
|---|---|
| 0 | Scan completed; nothing at/above the fail threshold |
| 1 | Findings at/above the fail threshold remain |
| 2 | Cairn could not run (bad path, broken config, usage error) |
Project status & roadmap
Cairn is at v0.5 — Terraform + Kubernetes scanning, propose
(Trust Ladder rung 1), policy packs, pre-merge cost diffing, and the
open-core boundary drawn in code. Shipped and designed releases are in
ROADMAP.md. Architecture and decision records live
in docs/.
Contributing & governance
Rules are single, small Python functions — adding one is a great first PR. Start with CONTRIBUTING.md; propose a rule with the rule proposal template.
Everyone is welcome to contribute; maintainers make the final merge after reviewing each pull request, and only maintainers cut releases. The model — roles, the merge gate, and how production is protected — is in GOVERNANCE.md and docs/merge-and-security-policy.md.
Free vs. paid
Everything in this repository is free forever — enumerated in code and
tested (cairn license prints the list). Team/Enterprise capabilities
(org rollups, SSO, compliance evidence) live in a separate commercial
package and never restrict the core.
License
MIT. The core is free forever — see the project principles in docs/architecture.md.
Release files for cairn-iac 0.6.0
For a detailed explanation of source distributions (sdists) and built distributions (wheels), please see the package formats documentation.
Source distribution (sdist)
| File | Size | Uploaded | |
|---|---|---|---|
| cairn_iac-0.6.0.tar.gz | 82.6 kB | Details |
Built distribution (wheel)
| File | Interpreter | ABI | Platform | Reset |
|---|---|---|---|---|
| cairn_iac-0.6.0-py3-none-any.whl | Python 3 | none | any | Details |
Total release size: 156.6 kB
Release files / cairn_iac-0.6.0.tar.gz
| Download URL | cairn_iac-0.6.0.tar.gz |
|---|---|
| Size | 82.6 kB |
| Tags | Source |
|
SHA-256 checksum How to use checksums |
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Yes |
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Transparency logRelease files / cairn_iac-0.6.0-py3-none-any.whl
| Download URL | cairn_iac-0.6.0-py3-none-any.whl |
|---|---|
| Size | 74.0 kB |
| Tags | Python 3 |
|
SHA-256 checksum How to use checksums |
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918432776fd7b7f91da785212d665cbdcad780fed076f185c3fbc6fc5729fed2
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| Upload date | |
|
Uploaded using Trusted Publishing? What is trusted publishing? |
Yes |
| Uploaded via |
twine/6.1.0 CPython/3.13.12
|
Provenance
Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.
PyPI Publish Attestation
PyPI verified that this artifact, at this checksum, originated from the publisher listed below.
Signed by GitHub Actions, verified by PyPI on Jul 17, 2026.
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