Decouple Terraform from the app repo; add a GCP host scaffold
Content-change pass following the extraction from the app monorepo (this repo
now stands alone, sourced via git filter-repo to preserve history):
- terraform/variables.tf, secrets.tf, modules/thermograph-host: remove every
app-secret Terraform variable (postgres_password, auth_secret, VAPID keys,
registry_token, Discord/SMTP creds, ...) and the random_password/random_id
generators. The SOPS+age vault (deploy/secrets/*.yaml) is now the sole
source of app secrets, rendered at deploy time by deploy/render-secrets.sh;
Terraform renders only a non-secret /etc/thermograph-topology.env (sizing,
routing) via the renamed thermograph-topology.env.tftpl template.
- hosts gains a required app_image_tag field: the host's own checkout is now
this infra repo, not the app repo, so there is no "current commit" to
derive an image tag from — every host pins one explicitly. repo_url now
points at this repo (private; typically needs an embedded read token).
- deploy.sh: IMAGE_TAG is now required from the environment instead of
derived via `git rev-parse HEAD` of the (now infra-repo) checkout, which
would have silently resolved to the wrong or a nonexistent tag.
- New terraform/modules/gcp-host: creates a GCE VM + minimal VPC/firewall
only, then feeds its IP into the same thermograph-host module every
SSH-managed host already uses — one provisioning path regardless of how a
host came to exist. var.gcp_hosts defaults to {}, so no google_* resource
is planned and the provider is never invoked without it (verified: plan
and validate succeed with no GCP credentials configured).
- terraform/README.md, ACCESS.md (renamed from INFRA.md), README.md: updated
for the new secrets model, the GCP scaffold, and this repo's own identity.
Verified: terraform fmt/validate/init clean; plan succeeds against realistic
dummy hosts (prod+beta shape) and against a populated gcp_hosts entry (plans
6 resources with no live credentials, confirming the composition wires
correctly end to end).
2026-07-22 04:46:05 +00:00
|
|
|
# No project/region default here on purpose: each var.gcp_hosts entry carries its
|
|
|
|
|
# own project + zone (a fleet could span projects), and with var.gcp_hosts empty
|
|
|
|
|
# this provider is never invoked, so there's nothing to default. When you do
|
|
|
|
|
# populate var.gcp_hosts, authenticate via Application Default Credentials
|
|
|
|
|
# (`gcloud auth application-default login`) or GOOGLE_APPLICATION_CREDENTIALS --
|
|
|
|
|
# no credentials are configured in this repo.
|
|
|
|
|
provider "google" {}
|
|
|
|
|
|
Add Terraform to provision the VPS hosts (compose keeps running the app) (#223)
Terraform config under terraform/ manages the two existing VPS hosts and hands the
app to docker-compose, with local state:
- prod: the new 48GB/12-core VPS (release branch, thermograph.org), sized larger.
- beta: the old VPS 75.119.132.91 (main branch, testing tier), no public domain.
- The LAN dev box stays on deploy/deploy-dev.sh (dev branch) — out of Terraform.
A reusable module (modules/thermograph-host) SSHes each host to install docker/
compose/ufw (+ Caddy when a domain is set), sync the checkout to the host's branch,
render /etc/thermograph.env from Terraform variables (secrets pushed via provisioner
content, never on local disk), `docker compose up -d`, and health-check. Named
volumes are preserved on re-apply, so the Postgres data is never recreated.
Container resources are now env-driven in docker-compose.yml (APP_CPUS/DB_CPUS/
DB_MEMORY/WORKERS) with unchanged defaults, so Terraform can size each host.
2026-07-20 07:42:15 +00:00
|
|
|
locals {
|
|
|
|
|
# Repo root (one level above this terraform/ dir). The module hashes the compose
|
|
|
|
|
# files here so a compose change re-triggers the remote deploy, and this is the
|
|
|
|
|
# tree the host's checkout mirrors over git.
|
|
|
|
|
repo_root = abspath("${path.root}/..")
|
Have Terraform generate its own internal secrets, with sizing tiers (#239)
Terraform generates the secrets that have no external meaning
(POSTGRES_PASSWORD, AUTH_SECRET, METRICS_TOKEN, INDEXNOW_KEY) via the random
provider instead of requiring the operator to hand-generate and paste each
into terraform.tfvars. Each is pinned with a static keepers value (secrets.tf)
so apply never regenerates a value already in use - the exact incident class
this guards against: every session invalidated, the app<->DB password
mismatched. Rotation is now a deliberate keepers edit, never a side effect.
postgres_password/auth_secret move from required inputs to optional (default
"") - explicit var wins when supplied (seeding an EXISTING live secret during
a migration onto Terraform, hop-1 cutover runbook Stage 0), else Terraform
generates and owns it. metrics_token/indexnow_key are new: neither existed in
Terraform before, both previously left for the app's own fallback generation.
VAPID deliberately stays a required, non-generated input - an EC keypair
where regeneration breaks every existing push subscription outright, unlike
an opaque token.
Sizing tiers: a locals.sizes t-shirt map (nano/small/medium/large ->
{workers, app_cpus, db_cpus, db_memory}), toward the target Proxmox
sizing-tier model (architecture doc SS6) ahead of actually provisioning VMs -
Proxmox itself stays deferred; today a tier just sizes container caps on the
existing SSH-managed hosts. A host can reference one by name (hosts.<name>.
size) or keep hand-picking the four fields, so existing tfvars are
unaffected; prod's example now uses size = "large" (identical numbers),
beta keeps explicit numbers, and a commented uat example demonstrates the
shortcut for a future ephemeral host.
Strengthened terraform/README.md's local-state caveat: more Terraform-
generated secrets landing in tfstate raises the stakes of the existing
never-commit-cleartext-state guidance, not just the sizing.
Verified: terraform validate + fmt clean. A real `terraform plan` against
fake hosts (prod/beta/uat, mixing size="large"/explicit-numbers/size="nano")
resolved every sizing correctly (prod 8/8/4/16g, beta 4/4/2/8g, uat
1/1/1/1g) and planned exactly one instance of each random_password/random_id
resource. Applied just those four resources (real generation, -target to
avoid touching the fake SSH-only host resources) and re-planned: "No
changes" - confirming the keepers pinning holds. Adding an explicit
postgres_password override afterward left the random_password resource
itself completely untouched (0 replace/destroy), confirming the override
path never disturbs the generated resource.
2026-07-21 01:08:57 +00:00
|
|
|
|
|
|
|
|
# Reusable size presets — a host can reference one by name (hosts.<name>.size)
|
|
|
|
|
# instead of hand-picking workers/app_cpus/db_cpus/db_memory separately. Mirrors
|
|
|
|
|
# the target Proxmox sizing-tier model (architecture doc §6: nano/small/medium/
|
|
|
|
|
# large -> {cores, mem}) ahead of actually provisioning VMs — Proxmox itself is
|
|
|
|
|
# deferred; today these tiers just size the container caps on the existing
|
|
|
|
|
# SSH-managed VPS hosts. "large" matches the current 48 GB prod box's numbers.
|
|
|
|
|
sizes = {
|
|
|
|
|
nano = { workers = 1, app_cpus = 1, db_cpus = 1, db_memory = "1g" }
|
|
|
|
|
small = { workers = 4, app_cpus = 4, db_cpus = 2, db_memory = "8g" }
|
|
|
|
|
medium = { workers = 6, app_cpus = 6, db_cpus = 3, db_memory = "12g" }
|
|
|
|
|
large = { workers = 8, app_cpus = 8, db_cpus = 4, db_memory = "16g" }
|
|
|
|
|
}
|
Decouple Terraform from the app repo; add a GCP host scaffold
Content-change pass following the extraction from the app monorepo (this repo
now stands alone, sourced via git filter-repo to preserve history):
- terraform/variables.tf, secrets.tf, modules/thermograph-host: remove every
app-secret Terraform variable (postgres_password, auth_secret, VAPID keys,
registry_token, Discord/SMTP creds, ...) and the random_password/random_id
generators. The SOPS+age vault (deploy/secrets/*.yaml) is now the sole
source of app secrets, rendered at deploy time by deploy/render-secrets.sh;
Terraform renders only a non-secret /etc/thermograph-topology.env (sizing,
routing) via the renamed thermograph-topology.env.tftpl template.
- hosts gains a required app_image_tag field: the host's own checkout is now
this infra repo, not the app repo, so there is no "current commit" to
derive an image tag from — every host pins one explicitly. repo_url now
points at this repo (private; typically needs an embedded read token).
- deploy.sh: IMAGE_TAG is now required from the environment instead of
derived via `git rev-parse HEAD` of the (now infra-repo) checkout, which
would have silently resolved to the wrong or a nonexistent tag.
- New terraform/modules/gcp-host: creates a GCE VM + minimal VPC/firewall
only, then feeds its IP into the same thermograph-host module every
SSH-managed host already uses — one provisioning path regardless of how a
host came to exist. var.gcp_hosts defaults to {}, so no google_* resource
is planned and the provider is never invoked without it (verified: plan
and validate succeed with no GCP credentials configured).
- terraform/README.md, ACCESS.md (renamed from INFRA.md), README.md: updated
for the new secrets model, the GCP scaffold, and this repo's own identity.
Verified: terraform fmt/validate/init clean; plan succeeds against realistic
dummy hosts (prod+beta shape) and against a populated gcp_hosts entry (plans
6 resources with no live credentials, confirming the composition wires
correctly end to end).
2026-07-22 04:46:05 +00:00
|
|
|
}
|
|
|
|
|
|
|
|
|
|
# GCP-created hosts (empty by default — see variables.tf and modules/gcp-host).
|
|
|
|
|
# Creates only the VM + minimal networking; every provisioning behavior comes from
|
|
|
|
|
# the SAME thermograph-host module every SSH-managed host below uses, via
|
|
|
|
|
# local.all_hosts merging its output IP in below. No live resources exist until
|
|
|
|
|
# var.gcp_hosts is populated.
|
|
|
|
|
module "gcp_vm" {
|
|
|
|
|
source = "./modules/gcp-host"
|
|
|
|
|
for_each = var.gcp_hosts
|
|
|
|
|
|
|
|
|
|
name = each.key
|
|
|
|
|
project = each.value.project
|
|
|
|
|
zone = each.value.zone
|
|
|
|
|
machine_type = each.value.machine_type
|
|
|
|
|
ssh_user = each.value.ssh_user
|
|
|
|
|
ssh_public_key_path = each.value.ssh_public_key_path
|
|
|
|
|
}
|
Have Terraform generate its own internal secrets, with sizing tiers (#239)
Terraform generates the secrets that have no external meaning
(POSTGRES_PASSWORD, AUTH_SECRET, METRICS_TOKEN, INDEXNOW_KEY) via the random
provider instead of requiring the operator to hand-generate and paste each
into terraform.tfvars. Each is pinned with a static keepers value (secrets.tf)
so apply never regenerates a value already in use - the exact incident class
this guards against: every session invalidated, the app<->DB password
mismatched. Rotation is now a deliberate keepers edit, never a side effect.
postgres_password/auth_secret move from required inputs to optional (default
"") - explicit var wins when supplied (seeding an EXISTING live secret during
a migration onto Terraform, hop-1 cutover runbook Stage 0), else Terraform
generates and owns it. metrics_token/indexnow_key are new: neither existed in
Terraform before, both previously left for the app's own fallback generation.
VAPID deliberately stays a required, non-generated input - an EC keypair
where regeneration breaks every existing push subscription outright, unlike
an opaque token.
Sizing tiers: a locals.sizes t-shirt map (nano/small/medium/large ->
{workers, app_cpus, db_cpus, db_memory}), toward the target Proxmox
sizing-tier model (architecture doc SS6) ahead of actually provisioning VMs -
Proxmox itself stays deferred; today a tier just sizes container caps on the
existing SSH-managed hosts. A host can reference one by name (hosts.<name>.
size) or keep hand-picking the four fields, so existing tfvars are
unaffected; prod's example now uses size = "large" (identical numbers),
beta keeps explicit numbers, and a commented uat example demonstrates the
shortcut for a future ephemeral host.
Strengthened terraform/README.md's local-state caveat: more Terraform-
generated secrets landing in tfstate raises the stakes of the existing
never-commit-cleartext-state guidance, not just the sizing.
Verified: terraform validate + fmt clean. A real `terraform plan` against
fake hosts (prod/beta/uat, mixing size="large"/explicit-numbers/size="nano")
resolved every sizing correctly (prod 8/8/4/16g, beta 4/4/2/8g, uat
1/1/1/1g) and planned exactly one instance of each random_password/random_id
resource. Applied just those four resources (real generation, -target to
avoid touching the fake SSH-only host resources) and re-planned: "No
changes" - confirming the keepers pinning holds. Adding an explicit
postgres_password override afterward left the random_password resource
itself completely untouched (0 replace/destroy), confirming the override
path never disturbs the generated resource.
2026-07-21 01:08:57 +00:00
|
|
|
|
Decouple Terraform from the app repo; add a GCP host scaffold
Content-change pass following the extraction from the app monorepo (this repo
now stands alone, sourced via git filter-repo to preserve history):
- terraform/variables.tf, secrets.tf, modules/thermograph-host: remove every
app-secret Terraform variable (postgres_password, auth_secret, VAPID keys,
registry_token, Discord/SMTP creds, ...) and the random_password/random_id
generators. The SOPS+age vault (deploy/secrets/*.yaml) is now the sole
source of app secrets, rendered at deploy time by deploy/render-secrets.sh;
Terraform renders only a non-secret /etc/thermograph-topology.env (sizing,
routing) via the renamed thermograph-topology.env.tftpl template.
- hosts gains a required app_image_tag field: the host's own checkout is now
this infra repo, not the app repo, so there is no "current commit" to
derive an image tag from — every host pins one explicitly. repo_url now
points at this repo (private; typically needs an embedded read token).
- deploy.sh: IMAGE_TAG is now required from the environment instead of
derived via `git rev-parse HEAD` of the (now infra-repo) checkout, which
would have silently resolved to the wrong or a nonexistent tag.
- New terraform/modules/gcp-host: creates a GCE VM + minimal VPC/firewall
only, then feeds its IP into the same thermograph-host module every
SSH-managed host already uses — one provisioning path regardless of how a
host came to exist. var.gcp_hosts defaults to {}, so no google_* resource
is planned and the provider is never invoked without it (verified: plan
and validate succeed with no GCP credentials configured).
- terraform/README.md, ACCESS.md (renamed from INFRA.md), README.md: updated
for the new secrets model, the GCP scaffold, and this repo's own identity.
Verified: terraform fmt/validate/init clean; plan succeeds against realistic
dummy hosts (prod+beta shape) and against a populated gcp_hosts entry (plans
6 resources with no live credentials, confirming the composition wires
correctly end to end).
2026-07-22 04:46:05 +00:00
|
|
|
locals {
|
infra: split the estate into vps1/vps2, moving beta next to prod and dev onto vps1
Environments stop being machines. Until now each box WAS an environment --
"beta" named both a deploy target and a host, "the desktop" named both the
operator's computer and the dev server -- so every path could assume one
environment per host and hardcode /opt/thermograph, /etc/thermograph.env and
ports 8137/8080. That assumption ends here:
vps1 75.119.132.91 Forgejo, Grafana/Loki, the portfolio site, and DEV
(own Postgres, mesh-only on 10.10.0.2:8137)
vps2 169.58.46.181 PROD and BETA as two Swarm stacks sharing one
TimescaleDB instance, plus Centralis, Postfix, backups
desktop AI model hosting + flex Swarm capacity, no environment
Nothing live has moved; the ordered cutover is in
infra/deploy/RUNBOOK-vps1-vps2-cutover.md.
deploy/env-topology.sh is the single source of truth: env -> host, checkout,
branch, deploy mode, stack name, env file, LB ports, DB role/database, service
prefix. THERMOGRAPH_ENV is the input, and on vps2 it is the only thing
distinguishing a beta deploy from a prod one -- deploy.sh refuses to run when it
disagrees with the checkout it was invoked from. The host-wide secrets-env and
deploy-mode markers survive only as a fallback for a single-environment box.
Beta gets its own stack file rather than an overlay (a merge cannot REMOVE the
db service, and beta having no database of its own is the point). Its services
are prefixed beta-*: Swarm registers a service's short name as a DNS alias on
every network it joins, so two stacks both calling a service `web` on the shared
data network would let prod's frontend resolve a beta task. Prod's stack, env
and LB config are untouched.
One Postgres, two databases with two roles: deploy/db/provision-env-db.sh
creates thermograph_beta (NOSUPERUSER, owns only its own database, CONNECT
revoked from PUBLIC) plus a <role>_ro for ad-hoc queries, and refuses to run for
the environment that owns the instance -- doing so would demote prod's bootstrap
superuser.
Fixes that co-residency would otherwise have broken silently:
- CI secrets are keyed by host (VPS1_SSH_*, VPS2_SSH_*). SSH_* meant "beta" and
also "the Forgejo box" because those shared a machine; that conflation is what
once had the prod backup dumping beta.
- The nightly backup dumps BOTH application databases to separate off-box
prefixes, and fails loudly on a missing one instead of skipping it.
- Alloy stopped deriving the `host` label from the node -- on vps2 that would
have filed every beta line as prod, feeding prod's alert rules with beta's
traffic. It is now derived per source, with a new `node` label for the machine,
and beta's log volume is mounted via a vps2-only overlay.
- ops/dbq.sh, ops/iceberg.sh and the secrets seed scripts derived their SSH
target and env-file path from the topology instead of hardcoding beta to
75.119.132.91 -- which is vps1's address now.
- Dev's overlay binds DEV_BIND_ADDR (loopback by default, the mesh address on
vps1) instead of 0.0.0.0: correct for a home LAN box, a public exposure of
unreviewed branches on a VPS.
Terraform's hosts variable is keyed by machine with a nested environments map,
and main.tf flattens (host, environment) pairs so two environments on one box
cannot share a checkout. Caddy's single reference config is split per host.
Docs, onboarding and the runbooks are updated throughout, including the security
rationales that co-residency makes false: separate SSH credentials no longer put
a host boundary between beta and prod, and the boundary that remains is the
database and the filesystem.
2026-07-25 22:01:29 +00:00
|
|
|
# ONE MODULE INSTANCE PER (HOST, ENVIRONMENT) PAIR, not per host.
|
|
|
|
|
#
|
|
|
|
|
# var.hosts is keyed by machine (vps1, vps2) and each machine carries an
|
|
|
|
|
# `environments` map, because vps2 runs prod AND beta. The module below
|
|
|
|
|
# provisions an ENVIRONMENT — a checkout, a branch, image tags, a Caddy site,
|
|
|
|
|
# container sizing — so it needs one instance per environment, with the two
|
|
|
|
|
# instances on vps2 sharing that machine's SSH identity.
|
|
|
|
|
#
|
|
|
|
|
# Flattened to keys like "vps2-prod" and "vps2-beta". Keeping them distinct
|
|
|
|
|
# module instances is what makes `app_dir` (required, no default in
|
|
|
|
|
# variables.tf) do its job: two environments on one box get two explicitly
|
|
|
|
|
# different checkouts, so neither apply can `git reset --hard` the other's
|
|
|
|
|
# tree.
|
|
|
|
|
ssh_environments = merge([
|
|
|
|
|
for hname, h in var.hosts : {
|
|
|
|
|
for ename, e in h.environments :
|
|
|
|
|
"${hname}-${ename}" => merge(e, {
|
|
|
|
|
host = h.host
|
|
|
|
|
ssh_user = h.ssh_user
|
|
|
|
|
ssh_private_key_path = h.ssh_private_key_path
|
|
|
|
|
})
|
|
|
|
|
}
|
|
|
|
|
]...)
|
|
|
|
|
|
|
|
|
|
# Every environment this config manages, SSH-only (flattened above) plus
|
|
|
|
|
# GCP-created (whose `host` is filled in from the VM Terraform just created) —
|
|
|
|
|
# one unified map so a single `module.host` for_each below handles both without
|
|
|
|
|
# duplicating any provisioning logic. GCP hosts stay one-entry-per-machine:
|
|
|
|
|
# nothing creates two environments on a created VM today, and the variable
|
|
|
|
|
# keeps its flat shape. They always use a named size tier (simpler than
|
Decouple Terraform from the app repo; add a GCP host scaffold
Content-change pass following the extraction from the app monorepo (this repo
now stands alone, sourced via git filter-repo to preserve history):
- terraform/variables.tf, secrets.tf, modules/thermograph-host: remove every
app-secret Terraform variable (postgres_password, auth_secret, VAPID keys,
registry_token, Discord/SMTP creds, ...) and the random_password/random_id
generators. The SOPS+age vault (deploy/secrets/*.yaml) is now the sole
source of app secrets, rendered at deploy time by deploy/render-secrets.sh;
Terraform renders only a non-secret /etc/thermograph-topology.env (sizing,
routing) via the renamed thermograph-topology.env.tftpl template.
- hosts gains a required app_image_tag field: the host's own checkout is now
this infra repo, not the app repo, so there is no "current commit" to
derive an image tag from — every host pins one explicitly. repo_url now
points at this repo (private; typically needs an embedded read token).
- deploy.sh: IMAGE_TAG is now required from the environment instead of
derived via `git rev-parse HEAD` of the (now infra-repo) checkout, which
would have silently resolved to the wrong or a nonexistent tag.
- New terraform/modules/gcp-host: creates a GCE VM + minimal VPC/firewall
only, then feeds its IP into the same thermograph-host module every
SSH-managed host already uses — one provisioning path regardless of how a
host came to exist. var.gcp_hosts defaults to {}, so no google_* resource
is planned and the provider is never invoked without it (verified: plan
and validate succeed with no GCP credentials configured).
- terraform/README.md, ACCESS.md (renamed from INFRA.md), README.md: updated
for the new secrets model, the GCP scaffold, and this repo's own identity.
Verified: terraform fmt/validate/init clean; plan succeeds against realistic
dummy hosts (prod+beta shape) and against a populated gcp_hosts entry (plans
6 resources with no live credentials, confirming the composition wires
correctly end to end).
2026-07-22 04:46:05 +00:00
|
|
|
# exposing the four raw sizing fields on that variable too).
|
|
|
|
|
all_hosts = merge(
|
infra: split the estate into vps1/vps2, moving beta next to prod and dev onto vps1
Environments stop being machines. Until now each box WAS an environment --
"beta" named both a deploy target and a host, "the desktop" named both the
operator's computer and the dev server -- so every path could assume one
environment per host and hardcode /opt/thermograph, /etc/thermograph.env and
ports 8137/8080. That assumption ends here:
vps1 75.119.132.91 Forgejo, Grafana/Loki, the portfolio site, and DEV
(own Postgres, mesh-only on 10.10.0.2:8137)
vps2 169.58.46.181 PROD and BETA as two Swarm stacks sharing one
TimescaleDB instance, plus Centralis, Postfix, backups
desktop AI model hosting + flex Swarm capacity, no environment
Nothing live has moved; the ordered cutover is in
infra/deploy/RUNBOOK-vps1-vps2-cutover.md.
deploy/env-topology.sh is the single source of truth: env -> host, checkout,
branch, deploy mode, stack name, env file, LB ports, DB role/database, service
prefix. THERMOGRAPH_ENV is the input, and on vps2 it is the only thing
distinguishing a beta deploy from a prod one -- deploy.sh refuses to run when it
disagrees with the checkout it was invoked from. The host-wide secrets-env and
deploy-mode markers survive only as a fallback for a single-environment box.
Beta gets its own stack file rather than an overlay (a merge cannot REMOVE the
db service, and beta having no database of its own is the point). Its services
are prefixed beta-*: Swarm registers a service's short name as a DNS alias on
every network it joins, so two stacks both calling a service `web` on the shared
data network would let prod's frontend resolve a beta task. Prod's stack, env
and LB config are untouched.
One Postgres, two databases with two roles: deploy/db/provision-env-db.sh
creates thermograph_beta (NOSUPERUSER, owns only its own database, CONNECT
revoked from PUBLIC) plus a <role>_ro for ad-hoc queries, and refuses to run for
the environment that owns the instance -- doing so would demote prod's bootstrap
superuser.
Fixes that co-residency would otherwise have broken silently:
- CI secrets are keyed by host (VPS1_SSH_*, VPS2_SSH_*). SSH_* meant "beta" and
also "the Forgejo box" because those shared a machine; that conflation is what
once had the prod backup dumping beta.
- The nightly backup dumps BOTH application databases to separate off-box
prefixes, and fails loudly on a missing one instead of skipping it.
- Alloy stopped deriving the `host` label from the node -- on vps2 that would
have filed every beta line as prod, feeding prod's alert rules with beta's
traffic. It is now derived per source, with a new `node` label for the machine,
and beta's log volume is mounted via a vps2-only overlay.
- ops/dbq.sh, ops/iceberg.sh and the secrets seed scripts derived their SSH
target and env-file path from the topology instead of hardcoding beta to
75.119.132.91 -- which is vps1's address now.
- Dev's overlay binds DEV_BIND_ADDR (loopback by default, the mesh address on
vps1) instead of 0.0.0.0: correct for a home LAN box, a public exposure of
unreviewed branches on a VPS.
Terraform's hosts variable is keyed by machine with a nested environments map,
and main.tf flattens (host, environment) pairs so two environments on one box
cannot share a checkout. Caddy's single reference config is split per host.
Docs, onboarding and the runbooks are updated throughout, including the security
rationales that co-residency makes false: separate SSH credentials no longer put
a host boundary between beta and prod, and the boundary that remains is the
database and the filesystem.
2026-07-25 22:01:29 +00:00
|
|
|
local.ssh_environments,
|
Decouple Terraform from the app repo; add a GCP host scaffold
Content-change pass following the extraction from the app monorepo (this repo
now stands alone, sourced via git filter-repo to preserve history):
- terraform/variables.tf, secrets.tf, modules/thermograph-host: remove every
app-secret Terraform variable (postgres_password, auth_secret, VAPID keys,
registry_token, Discord/SMTP creds, ...) and the random_password/random_id
generators. The SOPS+age vault (deploy/secrets/*.yaml) is now the sole
source of app secrets, rendered at deploy time by deploy/render-secrets.sh;
Terraform renders only a non-secret /etc/thermograph-topology.env (sizing,
routing) via the renamed thermograph-topology.env.tftpl template.
- hosts gains a required app_image_tag field: the host's own checkout is now
this infra repo, not the app repo, so there is no "current commit" to
derive an image tag from — every host pins one explicitly. repo_url now
points at this repo (private; typically needs an embedded read token).
- deploy.sh: IMAGE_TAG is now required from the environment instead of
derived via `git rev-parse HEAD` of the (now infra-repo) checkout, which
would have silently resolved to the wrong or a nonexistent tag.
- New terraform/modules/gcp-host: creates a GCE VM + minimal VPC/firewall
only, then feeds its IP into the same thermograph-host module every
SSH-managed host already uses — one provisioning path regardless of how a
host came to exist. var.gcp_hosts defaults to {}, so no google_* resource
is planned and the provider is never invoked without it (verified: plan
and validate succeed with no GCP credentials configured).
- terraform/README.md, ACCESS.md (renamed from INFRA.md), README.md: updated
for the new secrets model, the GCP scaffold, and this repo's own identity.
Verified: terraform fmt/validate/init clean; plan succeeds against realistic
dummy hosts (prod+beta shape) and against a populated gcp_hosts entry (plans
6 resources with no live credentials, confirming the composition wires
correctly end to end).
2026-07-22 04:46:05 +00:00
|
|
|
{
|
|
|
|
|
for name, h in var.gcp_hosts : name => merge(h, {
|
|
|
|
|
host = module.gcp_vm[name].external_ip
|
|
|
|
|
workers = null
|
|
|
|
|
app_cpus = null
|
|
|
|
|
db_cpus = null
|
|
|
|
|
db_memory = null
|
|
|
|
|
openmeteo = false
|
|
|
|
|
om_data_dir = "/mnt/om-archive"
|
|
|
|
|
})
|
|
|
|
|
}
|
|
|
|
|
)
|
|
|
|
|
|
|
|
|
|
# Per-host resolved sizing: a named tier (host.size) wins when set; otherwise the
|
|
|
|
|
# host's own workers/app_cpus/db_cpus/db_memory fields (each individually
|
Have Terraform generate its own internal secrets, with sizing tiers (#239)
Terraform generates the secrets that have no external meaning
(POSTGRES_PASSWORD, AUTH_SECRET, METRICS_TOKEN, INDEXNOW_KEY) via the random
provider instead of requiring the operator to hand-generate and paste each
into terraform.tfvars. Each is pinned with a static keepers value (secrets.tf)
so apply never regenerates a value already in use - the exact incident class
this guards against: every session invalidated, the app<->DB password
mismatched. Rotation is now a deliberate keepers edit, never a side effect.
postgres_password/auth_secret move from required inputs to optional (default
"") - explicit var wins when supplied (seeding an EXISTING live secret during
a migration onto Terraform, hop-1 cutover runbook Stage 0), else Terraform
generates and owns it. metrics_token/indexnow_key are new: neither existed in
Terraform before, both previously left for the app's own fallback generation.
VAPID deliberately stays a required, non-generated input - an EC keypair
where regeneration breaks every existing push subscription outright, unlike
an opaque token.
Sizing tiers: a locals.sizes t-shirt map (nano/small/medium/large ->
{workers, app_cpus, db_cpus, db_memory}), toward the target Proxmox
sizing-tier model (architecture doc SS6) ahead of actually provisioning VMs -
Proxmox itself stays deferred; today a tier just sizes container caps on the
existing SSH-managed hosts. A host can reference one by name (hosts.<name>.
size) or keep hand-picking the four fields, so existing tfvars are
unaffected; prod's example now uses size = "large" (identical numbers),
beta keeps explicit numbers, and a commented uat example demonstrates the
shortcut for a future ephemeral host.
Strengthened terraform/README.md's local-state caveat: more Terraform-
generated secrets landing in tfstate raises the stakes of the existing
never-commit-cleartext-state guidance, not just the sizing.
Verified: terraform validate + fmt clean. A real `terraform plan` against
fake hosts (prod/beta/uat, mixing size="large"/explicit-numbers/size="nano")
resolved every sizing correctly (prod 8/8/4/16g, beta 4/4/2/8g, uat
1/1/1/1g) and planned exactly one instance of each random_password/random_id
resource. Applied just those four resources (real generation, -target to
avoid touching the fake SSH-only host resources) and re-planned: "No
changes" - confirming the keepers pinning holds. Adding an explicit
postgres_password override afterward left the random_password resource
itself completely untouched (0 replace/destroy), confirming the override
path never disturbs the generated resource.
2026-07-21 01:08:57 +00:00
|
|
|
# defaulted in variables.tf) — so existing tfvars with explicit numbers are
|
|
|
|
|
# unaffected, and a tier is purely an opt-in shortcut.
|
|
|
|
|
host_sizing = {
|
Decouple Terraform from the app repo; add a GCP host scaffold
Content-change pass following the extraction from the app monorepo (this repo
now stands alone, sourced via git filter-repo to preserve history):
- terraform/variables.tf, secrets.tf, modules/thermograph-host: remove every
app-secret Terraform variable (postgres_password, auth_secret, VAPID keys,
registry_token, Discord/SMTP creds, ...) and the random_password/random_id
generators. The SOPS+age vault (deploy/secrets/*.yaml) is now the sole
source of app secrets, rendered at deploy time by deploy/render-secrets.sh;
Terraform renders only a non-secret /etc/thermograph-topology.env (sizing,
routing) via the renamed thermograph-topology.env.tftpl template.
- hosts gains a required app_image_tag field: the host's own checkout is now
this infra repo, not the app repo, so there is no "current commit" to
derive an image tag from — every host pins one explicitly. repo_url now
points at this repo (private; typically needs an embedded read token).
- deploy.sh: IMAGE_TAG is now required from the environment instead of
derived via `git rev-parse HEAD` of the (now infra-repo) checkout, which
would have silently resolved to the wrong or a nonexistent tag.
- New terraform/modules/gcp-host: creates a GCE VM + minimal VPC/firewall
only, then feeds its IP into the same thermograph-host module every
SSH-managed host already uses — one provisioning path regardless of how a
host came to exist. var.gcp_hosts defaults to {}, so no google_* resource
is planned and the provider is never invoked without it (verified: plan
and validate succeed with no GCP credentials configured).
- terraform/README.md, ACCESS.md (renamed from INFRA.md), README.md: updated
for the new secrets model, the GCP scaffold, and this repo's own identity.
Verified: terraform fmt/validate/init clean; plan succeeds against realistic
dummy hosts (prod+beta shape) and against a populated gcp_hosts entry (plans
6 resources with no live credentials, confirming the composition wires
correctly end to end).
2026-07-22 04:46:05 +00:00
|
|
|
for name, h in local.all_hosts : name => h.size != null ? local.sizes[h.size] : {
|
Have Terraform generate its own internal secrets, with sizing tiers (#239)
Terraform generates the secrets that have no external meaning
(POSTGRES_PASSWORD, AUTH_SECRET, METRICS_TOKEN, INDEXNOW_KEY) via the random
provider instead of requiring the operator to hand-generate and paste each
into terraform.tfvars. Each is pinned with a static keepers value (secrets.tf)
so apply never regenerates a value already in use - the exact incident class
this guards against: every session invalidated, the app<->DB password
mismatched. Rotation is now a deliberate keepers edit, never a side effect.
postgres_password/auth_secret move from required inputs to optional (default
"") - explicit var wins when supplied (seeding an EXISTING live secret during
a migration onto Terraform, hop-1 cutover runbook Stage 0), else Terraform
generates and owns it. metrics_token/indexnow_key are new: neither existed in
Terraform before, both previously left for the app's own fallback generation.
VAPID deliberately stays a required, non-generated input - an EC keypair
where regeneration breaks every existing push subscription outright, unlike
an opaque token.
Sizing tiers: a locals.sizes t-shirt map (nano/small/medium/large ->
{workers, app_cpus, db_cpus, db_memory}), toward the target Proxmox
sizing-tier model (architecture doc SS6) ahead of actually provisioning VMs -
Proxmox itself stays deferred; today a tier just sizes container caps on the
existing SSH-managed hosts. A host can reference one by name (hosts.<name>.
size) or keep hand-picking the four fields, so existing tfvars are
unaffected; prod's example now uses size = "large" (identical numbers),
beta keeps explicit numbers, and a commented uat example demonstrates the
shortcut for a future ephemeral host.
Strengthened terraform/README.md's local-state caveat: more Terraform-
generated secrets landing in tfstate raises the stakes of the existing
never-commit-cleartext-state guidance, not just the sizing.
Verified: terraform validate + fmt clean. A real `terraform plan` against
fake hosts (prod/beta/uat, mixing size="large"/explicit-numbers/size="nano")
resolved every sizing correctly (prod 8/8/4/16g, beta 4/4/2/8g, uat
1/1/1/1g) and planned exactly one instance of each random_password/random_id
resource. Applied just those four resources (real generation, -target to
avoid touching the fake SSH-only host resources) and re-planned: "No
changes" - confirming the keepers pinning holds. Adding an explicit
postgres_password override afterward left the random_password resource
itself completely untouched (0 replace/destroy), confirming the override
path never disturbs the generated resource.
2026-07-21 01:08:57 +00:00
|
|
|
workers = h.workers
|
|
|
|
|
app_cpus = h.app_cpus
|
|
|
|
|
db_cpus = h.db_cpus
|
|
|
|
|
db_memory = h.db_memory
|
|
|
|
|
}
|
|
|
|
|
}
|
Add Terraform to provision the VPS hosts (compose keeps running the app) (#223)
Terraform config under terraform/ manages the two existing VPS hosts and hands the
app to docker-compose, with local state:
- prod: the new 48GB/12-core VPS (release branch, thermograph.org), sized larger.
- beta: the old VPS 75.119.132.91 (main branch, testing tier), no public domain.
- The LAN dev box stays on deploy/deploy-dev.sh (dev branch) — out of Terraform.
A reusable module (modules/thermograph-host) SSHes each host to install docker/
compose/ufw (+ Caddy when a domain is set), sync the checkout to the host's branch,
render /etc/thermograph.env from Terraform variables (secrets pushed via provisioner
content, never on local disk), `docker compose up -d`, and health-check. Named
volumes are preserved on re-apply, so the Postgres data is never recreated.
Container resources are now env-driven in docker-compose.yml (APP_CPUS/DB_CPUS/
DB_MEMORY/WORKERS) with unchanged defaults, so Terraform can size each host.
2026-07-20 07:42:15 +00:00
|
|
|
}
|
|
|
|
|
|
Decouple Terraform from the app repo; add a GCP host scaffold
Content-change pass following the extraction from the app monorepo (this repo
now stands alone, sourced via git filter-repo to preserve history):
- terraform/variables.tf, secrets.tf, modules/thermograph-host: remove every
app-secret Terraform variable (postgres_password, auth_secret, VAPID keys,
registry_token, Discord/SMTP creds, ...) and the random_password/random_id
generators. The SOPS+age vault (deploy/secrets/*.yaml) is now the sole
source of app secrets, rendered at deploy time by deploy/render-secrets.sh;
Terraform renders only a non-secret /etc/thermograph-topology.env (sizing,
routing) via the renamed thermograph-topology.env.tftpl template.
- hosts gains a required app_image_tag field: the host's own checkout is now
this infra repo, not the app repo, so there is no "current commit" to
derive an image tag from — every host pins one explicitly. repo_url now
points at this repo (private; typically needs an embedded read token).
- deploy.sh: IMAGE_TAG is now required from the environment instead of
derived via `git rev-parse HEAD` of the (now infra-repo) checkout, which
would have silently resolved to the wrong or a nonexistent tag.
- New terraform/modules/gcp-host: creates a GCE VM + minimal VPC/firewall
only, then feeds its IP into the same thermograph-host module every
SSH-managed host already uses — one provisioning path regardless of how a
host came to exist. var.gcp_hosts defaults to {}, so no google_* resource
is planned and the provider is never invoked without it (verified: plan
and validate succeed with no GCP credentials configured).
- terraform/README.md, ACCESS.md (renamed from INFRA.md), README.md: updated
for the new secrets model, the GCP scaffold, and this repo's own identity.
Verified: terraform fmt/validate/init clean; plan succeeds against realistic
dummy hosts (prod+beta shape) and against a populated gcp_hosts entry (plans
6 resources with no live credentials, confirming the composition wires
correctly end to end).
2026-07-22 04:46:05 +00:00
|
|
|
# One module instance per host (SSH-managed or GCP-created — see local.all_hosts).
|
|
|
|
|
# The module is entirely SSH-provisioner driven: it configures an already-running
|
|
|
|
|
# VM (however it came to exist) and hands the app off to docker compose.
|
Add Terraform to provision the VPS hosts (compose keeps running the app) (#223)
Terraform config under terraform/ manages the two existing VPS hosts and hands the
app to docker-compose, with local state:
- prod: the new 48GB/12-core VPS (release branch, thermograph.org), sized larger.
- beta: the old VPS 75.119.132.91 (main branch, testing tier), no public domain.
- The LAN dev box stays on deploy/deploy-dev.sh (dev branch) — out of Terraform.
A reusable module (modules/thermograph-host) SSHes each host to install docker/
compose/ufw (+ Caddy when a domain is set), sync the checkout to the host's branch,
render /etc/thermograph.env from Terraform variables (secrets pushed via provisioner
content, never on local disk), `docker compose up -d`, and health-check. Named
volumes are preserved on re-apply, so the Postgres data is never recreated.
Container resources are now env-driven in docker-compose.yml (APP_CPUS/DB_CPUS/
DB_MEMORY/WORKERS) with unchanged defaults, so Terraform can size each host.
2026-07-20 07:42:15 +00:00
|
|
|
module "host" {
|
|
|
|
|
source = "./modules/thermograph-host"
|
Decouple Terraform from the app repo; add a GCP host scaffold
Content-change pass following the extraction from the app monorepo (this repo
now stands alone, sourced via git filter-repo to preserve history):
- terraform/variables.tf, secrets.tf, modules/thermograph-host: remove every
app-secret Terraform variable (postgres_password, auth_secret, VAPID keys,
registry_token, Discord/SMTP creds, ...) and the random_password/random_id
generators. The SOPS+age vault (deploy/secrets/*.yaml) is now the sole
source of app secrets, rendered at deploy time by deploy/render-secrets.sh;
Terraform renders only a non-secret /etc/thermograph-topology.env (sizing,
routing) via the renamed thermograph-topology.env.tftpl template.
- hosts gains a required app_image_tag field: the host's own checkout is now
this infra repo, not the app repo, so there is no "current commit" to
derive an image tag from — every host pins one explicitly. repo_url now
points at this repo (private; typically needs an embedded read token).
- deploy.sh: IMAGE_TAG is now required from the environment instead of
derived via `git rev-parse HEAD` of the (now infra-repo) checkout, which
would have silently resolved to the wrong or a nonexistent tag.
- New terraform/modules/gcp-host: creates a GCE VM + minimal VPC/firewall
only, then feeds its IP into the same thermograph-host module every
SSH-managed host already uses — one provisioning path regardless of how a
host came to exist. var.gcp_hosts defaults to {}, so no google_* resource
is planned and the provider is never invoked without it (verified: plan
and validate succeed with no GCP credentials configured).
- terraform/README.md, ACCESS.md (renamed from INFRA.md), README.md: updated
for the new secrets model, the GCP scaffold, and this repo's own identity.
Verified: terraform fmt/validate/init clean; plan succeeds against realistic
dummy hosts (prod+beta shape) and against a populated gcp_hosts entry (plans
6 resources with no live credentials, confirming the composition wires
correctly end to end).
2026-07-22 04:46:05 +00:00
|
|
|
for_each = local.all_hosts
|
Add Terraform to provision the VPS hosts (compose keeps running the app) (#223)
Terraform config under terraform/ manages the two existing VPS hosts and hands the
app to docker-compose, with local state:
- prod: the new 48GB/12-core VPS (release branch, thermograph.org), sized larger.
- beta: the old VPS 75.119.132.91 (main branch, testing tier), no public domain.
- The LAN dev box stays on deploy/deploy-dev.sh (dev branch) — out of Terraform.
A reusable module (modules/thermograph-host) SSHes each host to install docker/
compose/ufw (+ Caddy when a domain is set), sync the checkout to the host's branch,
render /etc/thermograph.env from Terraform variables (secrets pushed via provisioner
content, never on local disk), `docker compose up -d`, and health-check. Named
volumes are preserved on re-apply, so the Postgres data is never recreated.
Container resources are now env-driven in docker-compose.yml (APP_CPUS/DB_CPUS/
DB_MEMORY/WORKERS) with unchanged defaults, so Terraform can size each host.
2026-07-20 07:42:15 +00:00
|
|
|
|
|
|
|
|
# Per-host config
|
|
|
|
|
name = each.key
|
|
|
|
|
host = each.value.host
|
|
|
|
|
ssh_user = each.value.ssh_user
|
|
|
|
|
ssh_private_key_path = each.value.ssh_private_key_path
|
|
|
|
|
role = each.value.role
|
|
|
|
|
git_branch = each.value.git_branch
|
2026-07-22 23:27:13 +00:00
|
|
|
backend_image_tag = each.value.backend_image_tag
|
|
|
|
|
frontend_image_tag = each.value.frontend_image_tag
|
Add Terraform to provision the VPS hosts (compose keeps running the app) (#223)
Terraform config under terraform/ manages the two existing VPS hosts and hands the
app to docker-compose, with local state:
- prod: the new 48GB/12-core VPS (release branch, thermograph.org), sized larger.
- beta: the old VPS 75.119.132.91 (main branch, testing tier), no public domain.
- The LAN dev box stays on deploy/deploy-dev.sh (dev branch) — out of Terraform.
A reusable module (modules/thermograph-host) SSHes each host to install docker/
compose/ufw (+ Caddy when a domain is set), sync the checkout to the host's branch,
render /etc/thermograph.env from Terraform variables (secrets pushed via provisioner
content, never on local disk), `docker compose up -d`, and health-check. Named
volumes are preserved on re-apply, so the Postgres data is never recreated.
Container resources are now env-driven in docker-compose.yml (APP_CPUS/DB_CPUS/
DB_MEMORY/WORKERS) with unchanged defaults, so Terraform can size each host.
2026-07-20 07:42:15 +00:00
|
|
|
domain = each.value.domain
|
|
|
|
|
compose_files = each.value.compose_files
|
|
|
|
|
app_dir = each.value.app_dir
|
Have Terraform generate its own internal secrets, with sizing tiers (#239)
Terraform generates the secrets that have no external meaning
(POSTGRES_PASSWORD, AUTH_SECRET, METRICS_TOKEN, INDEXNOW_KEY) via the random
provider instead of requiring the operator to hand-generate and paste each
into terraform.tfvars. Each is pinned with a static keepers value (secrets.tf)
so apply never regenerates a value already in use - the exact incident class
this guards against: every session invalidated, the app<->DB password
mismatched. Rotation is now a deliberate keepers edit, never a side effect.
postgres_password/auth_secret move from required inputs to optional (default
"") - explicit var wins when supplied (seeding an EXISTING live secret during
a migration onto Terraform, hop-1 cutover runbook Stage 0), else Terraform
generates and owns it. metrics_token/indexnow_key are new: neither existed in
Terraform before, both previously left for the app's own fallback generation.
VAPID deliberately stays a required, non-generated input - an EC keypair
where regeneration breaks every existing push subscription outright, unlike
an opaque token.
Sizing tiers: a locals.sizes t-shirt map (nano/small/medium/large ->
{workers, app_cpus, db_cpus, db_memory}), toward the target Proxmox
sizing-tier model (architecture doc SS6) ahead of actually provisioning VMs -
Proxmox itself stays deferred; today a tier just sizes container caps on the
existing SSH-managed hosts. A host can reference one by name (hosts.<name>.
size) or keep hand-picking the four fields, so existing tfvars are
unaffected; prod's example now uses size = "large" (identical numbers),
beta keeps explicit numbers, and a commented uat example demonstrates the
shortcut for a future ephemeral host.
Strengthened terraform/README.md's local-state caveat: more Terraform-
generated secrets landing in tfstate raises the stakes of the existing
never-commit-cleartext-state guidance, not just the sizing.
Verified: terraform validate + fmt clean. A real `terraform plan` against
fake hosts (prod/beta/uat, mixing size="large"/explicit-numbers/size="nano")
resolved every sizing correctly (prod 8/8/4/16g, beta 4/4/2/8g, uat
1/1/1/1g) and planned exactly one instance of each random_password/random_id
resource. Applied just those four resources (real generation, -target to
avoid touching the fake SSH-only host resources) and re-planned: "No
changes" - confirming the keepers pinning holds. Adding an explicit
postgres_password override afterward left the random_password resource
itself completely untouched (0 replace/destroy), confirming the override
path never disturbs the generated resource.
2026-07-21 01:08:57 +00:00
|
|
|
workers = local.host_sizing[each.key].workers
|
|
|
|
|
app_cpus = local.host_sizing[each.key].app_cpus
|
|
|
|
|
db_cpus = local.host_sizing[each.key].db_cpus
|
|
|
|
|
db_memory = local.host_sizing[each.key].db_memory
|
Add the Swarm interim stack file, a pinnable TimescaleDB tag, and a Caddy health-gate (#235)
* Split web/worker duties with THERMOGRAPH_ROLE
Background work (the subscription notifier) is welded to the same process
that serves requests, so scaling the web tier to N replicas would also scale
notifier instances unless something restricts it further than leader
election alone.
Add THERMOGRAPH_ROLE (web|worker|all, default all - unchanged single-process
behavior). Every replica runs the same image; ROLE only gates whether a
process is allowed to own the notifier at all, layered on top of the
existing leader election: web replicas never start it even if they'd win
leader election, worker replicas start it if they win. The decision is
pulled into _should_run_notifier() so it's unit-testable without booting the
full app (DB init, places index, neighbor warmer).
Add a minimal /healthz liveness route (no DB/upstream I/O, not under BASE)
so a worker replica - which serves no real traffic - still has something
Swarm can health-check.
* Add the Swarm interim stack file, a pinnable TimescaleDB tag, and a Caddy health-gate
Three changes toward the hop-1 interim cutover, all inert until Track B
stands up the platform:
docker-stack.yml: the Swarm stack file for the interim cutover, distinct
from docker-compose.yml (today's plain-compose deploy, unaffected). Pulls a
pre-built image (IMAGE_TAG) instead of building in place; app/worker publish
no host port (127.0.0.1:8137:8137 has no Swarm equivalent - Swarm's routing
mesh publishes on 0.0.0.0, which would expose the plaintext app un-fronted),
reaching Caddy only over an MTU-lowered overlay network (VXLAN-over-WireGuard
needs a smaller MTU or large payloads silently stall); db is placement-
pinned to a labelled node; app/worker skip inline migrations
(RUN_MIGRATIONS=0) so the runbook's one-shot migrate task is the only thing
that ever runs Alembic; secrets are real Swarm secrets mounted at
/run/secrets, read by the entrypoint shim rather than plain env vars.
TIMESCALEDB_TAG: docker-compose.yml's db image now reads this (default
latest-pg18, today's behavior unchanged), wired through Terraform
(timescaledb_tag, default "latest-pg18") so it can actually be pinned to an
exact minor without hand-editing the host - required before any host of the
stack could replicate with another (a floating tag risks mismatched
extension minors, which blocks a physical replica and risks compressed-
chunk corruption on restore).
Caddy active health-gate: both the Terraform-rendered Caddyfile and the live
deploy/Caddyfile now health-check the app on the same cheap /healthz route
its own Docker HEALTHCHECK uses (now /healthz instead of the SSR homepage,
so it's cheap enough for a tight interval and works identically for a
worker replica, which serves no public traffic at all) - Caddy won't
forward into a container that's still booting or unhealthy.
Verified live: built and booted the real image via docker compose - both
containers report healthy via the new /healthz-based HEALTHCHECK, and GET /
still renders the full SSR homepage unchanged. Both Caddyfiles validated
with the real caddy binary. docker-stack.yml validated with docker compose
config (required-var guards fire with clear messages; secrets correctly
mount at /run/secrets/<name>, matching the entrypoint shim's mapping).
docker-compose.yml validated with and without TIMESCALEDB_TAG set, alongside
the existing openmeteo overlay. terraform validate + fmt clean.
2026-07-21 00:39:48 +00:00
|
|
|
timescaledb_tag = each.value.timescaledb_tag
|
2026-07-20 13:16:56 +00:00
|
|
|
openmeteo = each.value.openmeteo
|
|
|
|
|
om_data_dir = each.value.om_data_dir
|
Add Terraform to provision the VPS hosts (compose keeps running the app) (#223)
Terraform config under terraform/ manages the two existing VPS hosts and hands the
app to docker-compose, with local state:
- prod: the new 48GB/12-core VPS (release branch, thermograph.org), sized larger.
- beta: the old VPS 75.119.132.91 (main branch, testing tier), no public domain.
- The LAN dev box stays on deploy/deploy-dev.sh (dev branch) — out of Terraform.
A reusable module (modules/thermograph-host) SSHes each host to install docker/
compose/ufw (+ Caddy when a domain is set), sync the checkout to the host's branch,
render /etc/thermograph.env from Terraform variables (secrets pushed via provisioner
content, never on local disk), `docker compose up -d`, and health-check. Named
volumes are preserved on re-apply, so the Postgres data is never recreated.
Container resources are now env-driven in docker-compose.yml (APP_CPUS/DB_CPUS/
DB_MEMORY/WORKERS) with unchanged defaults, so Terraform can size each host.
2026-07-20 07:42:15 +00:00
|
|
|
|
|
|
|
|
# Shared infra config
|
|
|
|
|
repo_root = local.repo_root
|
|
|
|
|
repo_url = var.repo_url
|
|
|
|
|
app_port = var.app_port
|
|
|
|
|
|
2026-07-20 13:16:56 +00:00
|
|
|
# Shared object-storage config (only used where openmeteo = true)
|
|
|
|
|
om_bucket_remote = var.om_bucket_remote
|
|
|
|
|
om_rclone_conf = var.om_rclone_conf
|
|
|
|
|
om_vfs_cache_max = var.om_vfs_cache_max
|
Add Terraform to provision the VPS hosts (compose keeps running the app) (#223)
Terraform config under terraform/ manages the two existing VPS hosts and hands the
app to docker-compose, with local state:
- prod: the new 48GB/12-core VPS (release branch, thermograph.org), sized larger.
- beta: the old VPS 75.119.132.91 (main branch, testing tier), no public domain.
- The LAN dev box stays on deploy/deploy-dev.sh (dev branch) — out of Terraform.
A reusable module (modules/thermograph-host) SSHes each host to install docker/
compose/ufw (+ Caddy when a domain is set), sync the checkout to the host's branch,
render /etc/thermograph.env from Terraform variables (secrets pushed via provisioner
content, never on local disk), `docker compose up -d`, and health-check. Named
volumes are preserved on re-apply, so the Postgres data is never recreated.
Container resources are now env-driven in docker-compose.yml (APP_CPUS/DB_CPUS/
DB_MEMORY/WORKERS) with unchanged defaults, so Terraform can size each host.
2026-07-20 07:42:15 +00:00
|
|
|
}
|