mirror of
https://github.com/shankar0123/certctl.git
synced 2026-06-07 23:01:30 +00:00
444942eab8
Closes the eleven gaps identified in the pre-v2.1.0 audit of the SCEP
RFC 8894 + Intune master bundle (cowork/scep-bundle-gap-closure-prompt.md).
Constitutional rule from cowork/CLAUDE.md::Operating Rules — 'Always
take the complete path, not the easy path' — drove this closure: each
gap was a load-bearing wire that crossed multiple layers (config →
validator → service wire-up → tests → docs) and shipping the bundle
without them would have produced lying-field footguns where operator-
visible config options stored values without affecting behavior.
WHAT LANDS:
Phase A — Clock-skew tolerance (master prompt §15 hazard closure)
internal/scep/intune/challenge.go: ValidateChallenge migrated from
positional args to ValidateOptions{} struct; new ClockSkewTolerance
field with default 0 (strict). 24 call sites updated mechanically.
Asymmetric application: now+tolerance >= iat AND now-tolerance < exp.
internal/config/config.go: SCEPIntuneProfileConfig.ClockSkewTolerance
default 60s + Validate() refusal when >= ChallengeValidity.
cmd/server/main.go: SetIntuneIntegration signature extended;
per-profile env-var loader honors CERTCTL_SCEP_PROFILE_<NAME>_INTUNE_CLOCK_SKEW_TOLERANCE.
internal/service/scep.go: intuneClockSkew field + IntuneStatsSnapshot
surfaces clock_skew_tolerance_ns. web/src/api/types.ts mirrors.
4 new tests in challenge_test.go covering accept-within-tolerance,
reject-beyond-tolerance, accept-expired-within-tolerance,
negative-treated-as-zero defensive normalization.
docs/scep-intune.md updated with the new env var + time-bounds rule.
Phase B — unknown-version-rejected golden test
internal/scep/intune/golden_helper_test.go: goldenUnknownVersionPayload
helper + signGoldenChallengeAny generic signer.
challenge_golden_test.go: TestGoldenChallenge_UnknownVersionRejected
uses an in-process ECDSA fixture (the on-disk PEM was generated with
a Go-stdlib version that produces different ecdsa.GenerateKey bytes
from the current call). TestRegenerateGoldenFixtures emits the new
unknown_version fixture file too.
Phase C — Two named Intune e2e tests
internal/api/handler/scep_intune_e2e_test.go:
TestSCEPIntuneEnrollment_RateLimited_E2E (cap=2 + 3 attempts; 3rd
returns FAILURE+badRequest with rate_limited counter ticked)
TestSCEPIntuneEnrollment_TrustAnchorSIGHUPReload_E2E (rotate
on-disk PEM + holder.Reload(); old-key challenge fails with
badMessageCheck; signature_invalid counter ticked)
intuneE2EFixture struct extended with trustHolder + trustPath fields
so tests can rotate.
Phase D — Four new ChromeOS hermetic tests (10 total now)
internal/api/handler/scep_chromeos_test.go:
_RAKeyMismatch — PKIMessage encrypted to wrong RA cert; handler
rejects without reaching service.
_3DESBackwardCompat — RFC 8894 §3.5.2 legacy fallback verified.
_RSACSR + _ECDSACSR — explicit matrix-pair pinning.
buildTestECDSACSR helper for ECDSA P-256 CSR construction;
tripleDESCBCEncrypt mirrors aesCBCEncrypt for 3DES-CBC;
assertChromeOSPositiveCertRep shared assertion.
Phase E — Per-profile counter isolation test
internal/api/handler/scep_profile_counter_isolation_test.go:
TestSCEPHandler_PerProfileIntuneCountersIsolated wires two
SCEPService instances + drives distinct PKIMessages + asserts
counter isolation. Guards against a future cmd/server/main.go
refactor that shares a *intuneCounterTab across profiles.
buildPerProfileIntuneFixture parameterized helper.
Phase F — Server-boot regression tests
cmd/server/preflight_scep_intune_test.go: 3 named tests covering
disabled-backward-compat, broken-config-with-PathID, expired-cert
refusal. preflightSCEPIntuneTrustAnchor signature extended with
pathID arg so error messages carry PathID= for operator log-grep.
Phase G — docs/connectors.md
Four new subsections under §EST/SCEP Integration: multi-profile
dispatch + mTLS sibling route + Intune Connector dispatcher + SCEP
probe in network scanner. Each has a one-paragraph operator
explanation + an env-var or endpoint table.
Phase H — Coverage uplift
internal/service/scep_probe_persist_test.go: 5 unit tests on
persistProbeResult (nil-safe + nil-repo-safe + repo-error swallow +
nil-logger guard) + ListRecentSCEPProbes (empty-slice-not-nil + repo
pass-through) + describeCertAlgorithm (RSA/ECDSA/QF1008-nil-curve
defensive branch/Ed25519/DSA/empty). CI gates (service ≥70, handler
≥75) PASS at 70.9% / 79.3%.
Phase I — deploy/test integration variant
deploy/test/scep_intune_e2e_test.go (//go:build integration):
TestSCEPIntuneEnrollment_Integration + _RateLimited_Integration
against the live docker-compose certctl container. Skip-when-
stack-missing semantics so sandbox + CI both work.
deploy/docker-compose.test.yml: new e2eintune SCEP profile env
vars + bind-mount of deploy/test/fixtures/.
deploy/test/fixtures/README.md: documents the deterministic trust
anchor regeneration recipe.
VERIFICATION (sandbox):
gofmt -d — clean for all changed files
staticcheck — clean for intune + handler + config + service +
cmd/server packages
go vet — clean for the same packages
go test -short — green for intune (95.3% cov), service (70.9%),
handler (79.3%), config (94.0%), cmd/server (boot
path; my preflight tests cover the directly-
testable function), pkcs7 (80.5% informational)
DEFERRED (per closure prompt §7 out-of-scope):
- V3-Pro Conditional Access gating + Microsoft Graph integration
- Standalone certctl-scan CLI binary
- OCSP rate-limiting, OCSP stapling, delta CRLs
Spec preserved at cowork/scep-bundle-gap-closure-prompt.md;
journal at cowork/scep-rfc8894-intune/progress.md (audit-closure
section appended).
460 lines
20 KiB
YAML
460 lines
20 KiB
YAML
# =============================================================================
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# certctl Testing Environment — Docker Compose
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# =============================================================================
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#
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# Spins up the full certctl platform with real CA backends for manual QA:
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#
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# 0. certctl-tls-init — one-shot init container; writes self-signed
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# server.crt/.key/ca.crt into ./test/certs (bind
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# mount, not a named volume — host-readable for
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# the Go integration test binary)
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# 1. PostgreSQL 16 — database (clean, no demo data)
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# 2. certctl-server — control plane API + web dashboard on :8443 (HTTPS)
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# 3. certctl-agent — polls for work, deploys certs to NGINX
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# 4. step-ca — private CA (JWK provisioner, auto-bootstraps)
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# 5. Pebble — ACME test server (simulates Let's Encrypt)
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# 6. pebble-challtestsrv — DNS/HTTP challenge test server for Pebble
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# 7. NGINX — TLS target server on :8080 (HTTP) / :8444 (HTTPS)
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#
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# Usage:
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# cd deploy
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# docker compose -f docker-compose.test.yml up --build
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#
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# Dashboard: https://localhost:8443 (self-signed — use --cacert test/certs/ca.crt)
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# API key: test-key-2026
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# NGINX: https://localhost:8444 (self-signed placeholder until cert deployed)
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#
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# Integration tests: `go test -tags integration ./deploy/test/...` picks up
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# the CA bundle at ./test/certs/ca.crt automatically via CERTCTL_TEST_CA_BUNDLE.
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#
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# See docs/test-env.md for the full walkthrough.
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# =============================================================================
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services:
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# ---------------------------------------------------------------------------
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# HTTPS-Everywhere Phase 6 — self-signed TLS bootstrap for the test harness.
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# ---------------------------------------------------------------------------
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# Mirrors the production `certctl-tls-init` (see docker-compose.yml §10-43)
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# but writes into a *host bind mount* (./test/certs) instead of a named
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# volume. The named-volume approach works fine inside Docker but hides the
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# CA bundle from the Go integration test binary that runs on the host; the
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# bind mount exposes /etc/certctl/tls/ca.crt at deploy/test/certs/ca.crt
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# so `newTestClient()` can load it into an x509.CertPool and validate the
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# self-signed server cert. Test-only divergence, explicitly documented.
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#
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# The generated cert has SAN=DNS:certctl-server,DNS:localhost,IP:127.0.0.1
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# so both in-cluster traffic (agent → certctl-server:8443) and host traffic
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# (go test → localhost:8443) validate cleanly. Destroy via
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# `docker compose -f docker-compose.test.yml down -v` + `rm -rf test/certs`
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# to force regeneration. Keys written 0600, certs 0644, owned 1000:1000
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# (the UID the server binary runs as inside its container per Dockerfile:64).
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certctl-tls-init:
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image: alpine/openssl:latest
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container_name: certctl-test-tls-init
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restart: "no"
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entrypoint: /bin/sh
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command:
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- -c
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- |
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set -eu
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CERT=/etc/certctl/tls/server.crt
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KEY=/etc/certctl/tls/server.key
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CA=/etc/certctl/tls/ca.crt
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if [ -f "$$CERT" ] && [ -f "$$KEY" ] && [ -f "$$CA" ]; then
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echo "TLS cert already present at $$CERT — skipping generation"
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else
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mkdir -p /etc/certctl/tls
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openssl req -x509 -newkey ec \
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-pkeyopt ec_paramgen_curve:P-256 \
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-nodes \
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-keyout "$$KEY" \
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-out "$$CERT" \
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-days 3650 \
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-subj "/CN=certctl-server" \
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-addext "subjectAltName=DNS:certctl-server,DNS:localhost,IP:127.0.0.1,IP:::1"
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cp "$$CERT" "$$CA"
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echo "Generated self-signed TLS cert for certctl-test-server (ECDSA-P256/SHA-256, 3650d, CN=certctl-server)"
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fi
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# The test server container runs as root (see `user: "0:0"` below)
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# because setup-trust.sh needs to update the system trust store, so
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# the perms here are really about host-side readability — 0644 on
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# the CA/cert lets `go test` on the host read the bundle without a
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# chown dance.
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chown 1000:1000 "$$CERT" "$$KEY" "$$CA" || true
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chmod 0644 "$$CERT" "$$CA"
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chmod 0600 "$$KEY"
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volumes:
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- ./test/certs:/etc/certctl/tls
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networks:
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certctl-test:
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ipv4_address: 10.30.50.9
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# ---------------------------------------------------------------------------
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# Database
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# ---------------------------------------------------------------------------
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#
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# U-3 (P1, cat-u-seed_initdb_schema_drift, GitHub #10): the test stack used
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# to mount a hand-curated subset of migrations + seed.sql + a never-checked-in
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# seed_test.sql into postgres `/docker-entrypoint-initdb.d/`. Same hazard as
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# the production compose — initdb crashed any time a new migration shipped
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# that the seed depended on without the mount list being updated. Post-U-3
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# the schema is built EXCLUSIVELY by the server at startup via
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# internal/repository/postgres.RunMigrations + RunSeed. Postgres comes up
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# empty and the server lands the full ladder + baseline seed in one shot.
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# `start_period: 30s` matches the production compose and shields slow CI
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# runners from healthcheck flap during initdb.
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postgres:
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image: postgres:16-alpine
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container_name: certctl-test-postgres
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environment:
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POSTGRES_DB: certctl
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POSTGRES_USER: certctl
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POSTGRES_PASSWORD: testpass
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volumes:
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- test_postgres_data:/var/lib/postgresql/data
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networks:
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certctl-test:
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ipv4_address: 10.30.50.2
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ports:
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- "5432:5432"
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healthcheck:
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test: ["CMD-SHELL", "pg_isready -U certctl -d certctl"]
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interval: 5s
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timeout: 5s
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retries: 5
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start_period: 30s
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restart: unless-stopped
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# ---------------------------------------------------------------------------
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# Pebble — ACME test server (simulates Let's Encrypt)
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# ---------------------------------------------------------------------------
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# Pebble is the official ACME test server from Let's Encrypt (RFC 8555).
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# It validates challenges via the companion challtestsrv.
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# Root CA cert available at https://pebble:15000/roots/0 (management API).
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pebble-challtestsrv:
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image: ghcr.io/letsencrypt/pebble-challtestsrv:latest
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container_name: certctl-test-challtestsrv
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# ENTRYPOINT is /app (the binary). command: provides only the FLAGS.
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# Matches the official Pebble docker-compose format.
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# -doh "" disables DoH (default :8443 would conflict with certctl server).
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# defaultIPv4 must point to the certctl-server (10.30.50.6) because that's where
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# the ACME HTTP-01 challenge server runs (port 80 inside the container).
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# Pebble resolves domains via challtestsrv, then connects to this IP to validate.
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command: -defaultIPv4 10.30.50.6 -defaultIPv6 "" -doh ""
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networks:
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certctl-test:
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ipv4_address: 10.30.50.3
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restart: unless-stopped
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pebble:
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image: ghcr.io/letsencrypt/pebble:latest
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container_name: certctl-test-pebble
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depends_on:
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- pebble-challtestsrv
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environment:
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PEBBLE_VA_NOSLEEP: 1
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PEBBLE_VA_ALWAYS_VALID: 0
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# ENTRYPOINT is /app (the binary). command: provides only the FLAGS.
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command:
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- -config
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- /test/config/pebble-config.json
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- -dnsserver
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- "10.30.50.3:8053"
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- -strict
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volumes:
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- ./test/pebble-config.json:/test/config/pebble-config.json:ro
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networks:
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certctl-test:
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ipv4_address: 10.30.50.4
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restart: unless-stopped
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# ---------------------------------------------------------------------------
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# step-ca — Private CA (Smallstep)
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# ---------------------------------------------------------------------------
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# Auto-bootstraps on first run: generates root CA + JWK provisioner "admin".
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# Root cert: /home/step/certs/root_ca.crt (inside stepca_data volume)
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# Provisioner key: /home/step/secrets/provisioner_key (encrypted JWK)
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step-ca:
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image: smallstep/step-ca:latest
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container_name: certctl-test-stepca
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environment:
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DOCKER_STEPCA_INIT_NAME: "certctl-test-ca"
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DOCKER_STEPCA_INIT_DNS_NAMES: "step-ca,localhost"
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DOCKER_STEPCA_INIT_PROVISIONER_NAME: "admin"
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DOCKER_STEPCA_INIT_PASSWORD: "password123"
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DOCKER_STEPCA_INIT_ADDRESS: ":9000"
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volumes:
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- stepca_data:/home/step
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networks:
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certctl-test:
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ipv4_address: 10.30.50.5
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healthcheck:
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test: ["CMD", "curl", "-fk", "https://localhost:9000/health"]
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interval: 10s
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timeout: 5s
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start_period: 15s
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retries: 10
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restart: unless-stopped
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# ---------------------------------------------------------------------------
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# certctl Server (Control Plane)
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# ---------------------------------------------------------------------------
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# Connects to PostgreSQL, Pebble (ACME), step-ca, and Local CA.
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#
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# TLS trust problem: Pebble and step-ca use self-signed root CAs that
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# aren't in Alpine's trust store. The ACME and step-ca connectors use
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# Go's default http.Client (no InsecureSkipVerify), so they need the
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# CA certs in the system trust store.
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#
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# Solution: setup-trust.sh runs as root, fetches Pebble CA from its
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# management API, copies step-ca root cert from the shared volume,
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# runs update-ca-certificates, then execs the server binary.
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certctl-server:
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build:
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context: ..
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dockerfile: Dockerfile
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# Proxy propagation (M-4, Issue #9) — forwards host shell's proxy env
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# vars into the Docker build so the Node frontend stage and Go module
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# download can reach the public registries behind corporate proxies.
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# Defaults to empty; omit the variables from the host environment for
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# un-proxied builds and the behaviour is byte-identical to the pre-fix
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# tree.
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args:
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HTTP_PROXY: ${HTTP_PROXY:-}
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HTTPS_PROXY: ${HTTPS_PROXY:-}
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NO_PROXY: ${NO_PROXY:-}
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container_name: certctl-test-server
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depends_on:
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postgres:
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condition: service_healthy
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pebble:
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condition: service_started
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step-ca:
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condition: service_healthy
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# HTTPS-Everywhere Phase 6: block server boot until the init container
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# has written server.crt / server.key / ca.crt into ./test/certs. The
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# init container runs once and exits 0; service_completed_successfully
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# makes that a gating dependency rather than a liveness one.
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certctl-tls-init:
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condition: service_completed_successfully
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# Run as root so update-ca-certificates can write to /etc/ssl/certs.
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# Container isolation provides the security boundary.
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user: "0:0"
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entrypoint: ["/bin/sh", "/app/setup-trust.sh"]
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environment:
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# Database
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CERTCTL_DATABASE_URL: postgres://certctl:testpass@postgres:5432/certctl?sslmode=disable
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# Server
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CERTCTL_SERVER_HOST: 0.0.0.0
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CERTCTL_SERVER_PORT: 8443
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# HTTPS-Everywhere Phase 6: point the server at the init-container-generated
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# cert/key pair (bind-mounted from ./test/certs). Same paths as production
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# compose so the server binary code path is identical; only the host-side
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# storage differs (bind mount vs named volume — see §certctl-tls-init block).
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CERTCTL_SERVER_TLS_CERT_PATH: /etc/certctl/tls/server.crt
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CERTCTL_SERVER_TLS_KEY_PATH: /etc/certctl/tls/server.key
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CERTCTL_LOG_LEVEL: debug
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# Auth — API key required (production-like)
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CERTCTL_AUTH_TYPE: api-key
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CERTCTL_AUTH_SECRET: test-key-2026
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# Key generation — agent-side (production-like)
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CERTCTL_KEYGEN_MODE: agent
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# Local CA issuer (iss-local) — self-signed mode (no CA cert/key paths)
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# This is the simplest issuer, always available.
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# ACME issuer (iss-acme-staging) — pointed at Pebble
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CERTCTL_ACME_DIRECTORY_URL: https://pebble:14000/dir
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CERTCTL_ACME_EMAIL: test@certctl.dev
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CERTCTL_ACME_CHALLENGE_TYPE: http-01
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CERTCTL_ACME_INSECURE: "true"
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# step-ca issuer (iss-stepca)
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CERTCTL_STEPCA_URL: https://step-ca:9000
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CERTCTL_STEPCA_ROOT_CERT: /stepca-data/certs/root_ca.crt
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CERTCTL_STEPCA_PROVISIONER: admin
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CERTCTL_STEPCA_PASSWORD: password123
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CERTCTL_STEPCA_KEY_PATH: /stepca-data/secrets/provisioner_key
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# EST server (RFC 7030) — uses Local CA by default
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CERTCTL_EST_ENABLED: "true"
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CERTCTL_EST_ISSUER_ID: iss-local
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# SCEP RFC 8894 + Intune master prompt §10.2 + §13 acceptance
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# (deploy/test/scep_intune_e2e_test.go integration variant).
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# Closed in the 2026-04-29 audit-closure bundle (Phase I).
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#
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# Publishes /scep/e2eintune?operation=... with the Intune
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# dispatcher enabled. The deterministic Connector signing cert
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# is bind-mounted at the path below; the matching private key
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# lives ONLY on the test side (see
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# deploy/test/scep_intune_e2e_test.go::generateE2EIntuneTrustAnchor).
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CERTCTL_SCEP_ENABLED: "true"
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CERTCTL_SCEP_PROFILES: "e2eintune"
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CERTCTL_SCEP_PROFILE_E2EINTUNE_ISSUER_ID: iss-local
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CERTCTL_SCEP_PROFILE_E2EINTUNE_RA_CERT_PATH: /etc/certctl/scep/ra.crt
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CERTCTL_SCEP_PROFILE_E2EINTUNE_RA_KEY_PATH: /etc/certctl/scep/ra.key
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CERTCTL_SCEP_PROFILE_E2EINTUNE_INTUNE_ENABLED: "true"
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CERTCTL_SCEP_PROFILE_E2EINTUNE_INTUNE_CONNECTOR_CERT_PATH: /etc/certctl/scep/intune_trust_anchor.pem
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CERTCTL_SCEP_PROFILE_E2EINTUNE_INTUNE_AUDIENCE: https://localhost:8443/scep/e2eintune
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CERTCTL_SCEP_PROFILE_E2EINTUNE_INTUNE_CHALLENGE_VALIDITY: 60m
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CERTCTL_SCEP_PROFILE_E2EINTUNE_INTUNE_CLOCK_SKEW_TOLERANCE: 60s
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CERTCTL_SCEP_PROFILE_E2EINTUNE_INTUNE_PER_DEVICE_RATE_LIMIT_24H: 3
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# Dynamic issuer/target config encryption (M34/M35)
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CERTCTL_CONFIG_ENCRYPTION_KEY: test-encryption-key-32chars!!
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# Network scanning
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CERTCTL_NETWORK_SCAN_ENABLED: "true"
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# Post-deployment TLS verification
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CERTCTL_VERIFY_DEPLOYMENT: "true"
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CERTCTL_VERIFY_TIMEOUT: "10s"
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CERTCTL_VERIFY_DELAY: "3s"
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ports:
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- "8443:8443"
|
|
volumes:
|
|
- ./test/setup-trust.sh:/app/setup-trust.sh:ro
|
|
# step-ca data volume (root cert at /certs/root_ca.crt, key at /secrets/provisioner_key)
|
|
- stepca_data:/stepca-data:ro
|
|
# HTTPS-Everywhere Phase 6: read-only bind mount of the init-generated
|
|
# TLS material. The init container writes here; server reads here; the
|
|
# agent mounts the same host path at the same container path (see below)
|
|
# so /etc/certctl/tls/ca.crt resolves to the *same* bytes on both sides.
|
|
- ./test/certs:/etc/certctl/tls:ro
|
|
# SCEP RFC 8894 + Intune master prompt §10.2 + §13 acceptance: the
|
|
# e2eintune profile's RA cert/key + Intune Connector trust anchor
|
|
# PEM. The PEM is the deterministic public cert matching the test-
|
|
# side private key in deploy/test/scep_intune_e2e_test.go (re-run
|
|
# `go test -tags integration -run='^TestRegenerateE2EIntuneFixture$'
|
|
# -update-fixture ./deploy/test/...` to regenerate after a seed
|
|
# change). RA cert/key live alongside; tls-init container generates
|
|
# them at boot.
|
|
- ./test/fixtures:/etc/certctl/scep:ro
|
|
networks:
|
|
certctl-test:
|
|
ipv4_address: 10.30.50.6
|
|
healthcheck:
|
|
# HTTPS-Everywhere Phase 6: healthcheck now speaks TLS with --cacert to
|
|
# verify the self-signed server cert against the init-generated bundle.
|
|
# /health requires auth when CERTCTL_AUTH_TYPE=api-key, so include the
|
|
# Bearer token. curl exits non-zero on both TLS handshake failure and
|
|
# non-2xx status — either failure keeps depends_on: {condition:
|
|
# service_healthy} from unblocking the agent, which is what we want.
|
|
test: ["CMD", "curl", "--cacert", "/etc/certctl/tls/ca.crt", "-f", "-H", "Authorization: Bearer test-key-2026", "https://localhost:8443/health"]
|
|
interval: 10s
|
|
timeout: 5s
|
|
start_period: 30s
|
|
retries: 10
|
|
restart: unless-stopped
|
|
|
|
# ---------------------------------------------------------------------------
|
|
# NGINX — TLS Target Server
|
|
# ---------------------------------------------------------------------------
|
|
# The agent deploys certificates here via the shared nginx_certs volume.
|
|
# nginx-entrypoint.sh generates a self-signed placeholder cert so NGINX
|
|
# can boot before the agent deploys a real cert.
|
|
#
|
|
# Ports: 8080 (HTTP) / 8444 (HTTPS) — offset to avoid conflict with server.
|
|
nginx:
|
|
image: nginx:alpine
|
|
container_name: certctl-test-nginx
|
|
entrypoint: ["/bin/sh", "/entrypoint.sh"]
|
|
volumes:
|
|
- ./test/nginx.conf:/etc/nginx/nginx.conf:ro
|
|
- ./test/nginx-entrypoint.sh:/entrypoint.sh:ro
|
|
- nginx_certs:/etc/nginx/certs
|
|
ports:
|
|
- "8080:80"
|
|
- "8444:443"
|
|
networks:
|
|
certctl-test:
|
|
ipv4_address: 10.30.50.7
|
|
healthcheck:
|
|
test: ["CMD-SHELL", "curl -fk https://localhost/health || exit 1"]
|
|
interval: 10s
|
|
timeout: 5s
|
|
start_period: 15s
|
|
retries: 5
|
|
restart: unless-stopped
|
|
|
|
# ---------------------------------------------------------------------------
|
|
# certctl Agent
|
|
# ---------------------------------------------------------------------------
|
|
# Polls the server for work, generates ECDSA P-256 keys locally,
|
|
# deploys certs to NGINX via the shared volume, and discovers existing
|
|
# certs in the NGINX cert directory.
|
|
certctl-agent:
|
|
build:
|
|
context: ..
|
|
dockerfile: Dockerfile.agent
|
|
# Proxy propagation (M-4, Issue #9) — forwards host shell's proxy env
|
|
# vars into the Docker build so the Go module download stage can reach
|
|
# the public Go module proxy behind corporate proxies. Defaults to
|
|
# empty; omit the variables from the host environment for un-proxied
|
|
# builds and the behaviour is byte-identical to the pre-fix tree.
|
|
args:
|
|
HTTP_PROXY: ${HTTP_PROXY:-}
|
|
HTTPS_PROXY: ${HTTPS_PROXY:-}
|
|
NO_PROXY: ${NO_PROXY:-}
|
|
container_name: certctl-test-agent
|
|
depends_on:
|
|
certctl-server:
|
|
condition: service_healthy
|
|
environment:
|
|
# HTTPS-Everywhere Phase 6: agent dials the server over TLS and validates
|
|
# the self-signed cert against the CA bundle pinned by
|
|
# CERTCTL_SERVER_CA_BUNDLE_PATH. Same env vars + container paths as
|
|
# production compose so the agent binary code path (loadCABundle →
|
|
# x509.CertPool → *tls.Config{RootCAs, MinVersion: TLS13}) is identical.
|
|
CERTCTL_SERVER_URL: https://certctl-server:8443
|
|
CERTCTL_SERVER_CA_BUNDLE_PATH: /etc/certctl/tls/ca.crt
|
|
CERTCTL_API_KEY: test-key-2026
|
|
CERTCTL_AGENT_NAME: test-agent-01
|
|
CERTCTL_AGENT_ID: agent-test-01
|
|
CERTCTL_KEYGEN_MODE: agent
|
|
CERTCTL_LOG_LEVEL: debug
|
|
CERTCTL_DISCOVERY_DIRS: /nginx-certs
|
|
volumes:
|
|
- agent_keys:/var/lib/certctl/keys
|
|
- nginx_certs:/nginx-certs
|
|
# HTTPS-Everywhere Phase 6: same bind mount as the server, same path,
|
|
# so /etc/certctl/tls/ca.crt resolves to the identical bytes. This is
|
|
# the only way the CN=certctl-server cert validates on the agent side.
|
|
- ./test/certs:/etc/certctl/tls:ro
|
|
networks:
|
|
certctl-test:
|
|
ipv4_address: 10.30.50.8
|
|
restart: unless-stopped
|
|
|
|
# =============================================================================
|
|
# Network
|
|
# =============================================================================
|
|
# Static IPs are required because:
|
|
# - Pebble needs to know the challtestsrv DNS server address (10.30.50.3)
|
|
# - challtestsrv resolves all domains to certctl-server (10.30.50.6) for HTTP-01 challenges
|
|
# - Avoids DNS race conditions during startup
|
|
networks:
|
|
certctl-test:
|
|
driver: bridge
|
|
ipam:
|
|
config:
|
|
- subnet: 10.30.50.0/24
|
|
|
|
# =============================================================================
|
|
# Volumes
|
|
# =============================================================================
|
|
volumes:
|
|
test_postgres_data:
|
|
driver: local
|
|
stepca_data:
|
|
driver: local
|
|
agent_keys:
|
|
driver: local
|
|
nginx_certs:
|
|
driver: local
|