The rewrite-body Traefik plugin (both packruler/rewrite-body v1.2.0 and
the-ccsn/traefik-plugin-rewritebody v0.1.3) silently fails on Traefik
v3.6.12 due to Yaegi interpreter issues with ResponseWriter wrapping.
Both plugins load without errors but never inject content.
Removed:
- rewrite-body plugin download (init container) and registration
- strip-accept-encoding middleware (only existed for rewrite-body bug)
- anti-ai-trap-links middleware (used rewrite-body for injection)
- rybbit_site_id variable from ingress_factory and reverse_proxy factory
- rybbit_site_id from 25 service stacks (39 instances)
- Per-service rybbit-analytics middleware CRD resources
Kept:
- compress middleware (entrypoint-level, working correctly)
- ai-bot-block middleware (ForwardAuth to bot-block-proxy)
- anti-ai-headers middleware (X-Robots-Tag: noai, noimageai)
- All CrowdSec, Authentik, rate-limit middleware unchanged
Next: Cloudflare Workers with HTMLRewriter for edge-side injection.
Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
Two-tier state architecture:
- Tier 0 (infra, platform, cnpg, vault, dbaas, external-secrets): local
state with SOPS encryption in git — unchanged, required for bootstrap.
- Tier 1 (105 app stacks): PostgreSQL backend on CNPG cluster at
10.0.20.200:5432/terraform_state with native pg_advisory_lock.
Motivation: multi-operator friction (every workstation needed SOPS + age +
git-crypt), bootstrap complexity for new operators, and headless agents/CI
needing the full encryption toolchain just to read state.
Changes:
- terragrunt.hcl: conditional backend (local vs pg) based on tier0 list
- scripts/tg: tier detection, auto-fetch PG creds from Vault for Tier 1,
skip SOPS and Vault KV locking for Tier 1 stacks
- scripts/state-sync: tier-aware encrypt/decrypt (skips Tier 1)
- scripts/migrate-state-to-pg: one-shot migration script (idempotent)
- stacks/vault/main.tf: pg-terraform-state static role + K8s auth role
for claude-agent namespace
- stacks/dbaas: terraform_state DB creation + MetalLB LoadBalancer
service on shared IP 10.0.20.200
- Deleted 107 .tfstate.enc files for migrated Tier 1 stacks
- Cleaned up per-stack tiers.tf (now generated by root terragrunt.hcl)
[ci skip]
Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
## Context
Deploying new services required manually adding hostnames to
cloudflare_proxied_names/cloudflare_non_proxied_names in config.tfvars —
a separate file from the service stack. This was frequently forgotten,
leaving services unreachable externally.
## This change:
- Add `dns_type` parameter to `ingress_factory` and `reverse_proxy/factory`
modules. Setting `dns_type = "proxied"` or `"non-proxied"` auto-creates
the Cloudflare DNS record (CNAME to tunnel or A/AAAA to public IP).
- Simplify cloudflared tunnel from 100 per-hostname rules to wildcard
`*.viktorbarzin.me → Traefik`. Traefik still handles host-based routing.
- Add global Cloudflare provider via terragrunt.hcl (separate
cloudflare_provider.tf with Vault-sourced API key).
- Migrate 118 hostnames from centralized config.tfvars to per-service
dns_type. 17 hostnames remain centrally managed (Helm ingresses,
special cases).
- Update docs, AGENTS.md, CLAUDE.md, dns.md runbook.
```
BEFORE AFTER
config.tfvars (manual list) stacks/<svc>/main.tf
| module "ingress" {
v dns_type = "proxied"
stacks/cloudflared/ }
for_each = list |
cloudflare_record auto-creates
tunnel per-hostname cloudflare_record + annotation
```
## What is NOT in this change:
- Uptime Kuma monitor migration (still reads from config.tfvars)
- 17 remaining centrally-managed hostnames (Helm, special cases)
- Removal of allow_overwrite (keep until migration confirmed stable)
Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
Inbound:
- Direct MX to mail.viktorbarzin.me (ForwardEmail relay attempted and abandoned)
- Dedicated MetalLB IP 10.0.20.202 with ETP: Local for CrowdSec real-IP detection
- Removed Cloudflare Email Routing (can't store-and-forward)
- Fixed dual SPF violation, hardened to -all
- Added MTA-STS, TLSRPT, imported Rspamd DKIM into Terraform
- Removed dead BIND zones from config.tfvars (199 lines)
Outbound:
- Migrated from Mailgun (100/day) to Brevo (300/day free)
- Added Brevo DKIM CNAMEs and verification TXT
Monitoring:
- Probe frequency: 30m → 20m, alert thresholds adjusted to 60m
- Enabled Dovecot exporter scraping (port 9166)
- Added external SMTP monitor on public IP
Documentation:
- New docs/architecture/mailserver.md with full architecture
- New docs/architecture/mailserver-visual.html visualization
- Updated monitoring.md, CLAUDE.md, historical plan docs
Previously only searched for the current run's specific marker subject.
If IMAP deletion failed, old emails accumulated. Now searches for all
emails with "e2e-probe" in subject and deletes them, cleaning up any
leftovers from prior failed runs.
ENABLE_RSPAMD_REDIS=0 prevents the docker-mailserver from attempting to start
an embedded Redis server. The rspamd-redis subprocess was failing repeatedly
due to a corrupted/empty RDB file after the recent NFS-to-proxmox-lvm storage
migration. Since the DKIM signing config uses use_redis=false, Redis is not
needed.
Also correct the PVC storage request to match the actual provisioned size (2Gi).
The mismatch was causing unnecessary PVC replacement during terraform apply.
- Add public_ipv6 variable and AAAA records for all 34 non-proxied services
- Fix stale DNS records (85.130.108.6 → 176.12.22.76, old IPv6 → HE tunnel)
- Update SPF record with current IPv4/IPv6 addresses
- Add AAAA update support to Technitium DNS updater CLI
- Pin mailserver MetalLB IP to 10.0.20.201 for stable pfSense NAT
- pfSense: HE_IPv6 interface, strict firewall (80,443,25,465,587,993 + ICMPv6),
socat IPv6→IPv4 proxy, removed dangerous "Allow all DEBUG" rules
Phase 2 of platform stack split. 5 more modules extracted into
independent stacks. All applied successfully with zero destroys.
Cloudflared now reads k8s_users from Vault directly to compute
user_domains. Woodpecker pipeline runs all 8 extracted stacks
in parallel. Memory bumped to 6Gi for 9 concurrent TF processes.
Platform reduced from 27 to 19 modules.