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2 changed files with 24 additions and 533 deletions
+24 -506
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@@ -16,18 +16,6 @@ on:
of your own self-hosted arc runners instead.
type: string
default: '["hanzo-build-linux-amd64"]'
mode:
description: >-
Build execution mode. `buildx` (default) runs the full buildx →
test → deploy pipeline ON the arc runner. `delegate` instead POSTs the
build to platform.hanzo.ai (`/v1/arcd/enqueue`) — platform builds
in-cluster with BuildKit and rolls the operator Service CR itself, so
the GitHub job finishes in seconds with no runner buildx. A repo opts
in by passing `with: { mode: delegate }`; everything else is unchanged.
Requires the `PLATFORM_BUILD_CALLBACK_TOKEN` secret (via secrets:
inherit).
type: string
default: buildx
permissions:
contents: read
@@ -39,88 +27,7 @@ jobs:
steps:
- uses: actions/checkout@v4
- name: Provision parse toolchain (jq + PyYAML)
# This reusable parses the caller's hanzo.yml with python3 + PyYAML and
# slices JSON with jq. The stock arc runner image
# (ghcr.io/actions/actions-runner:latest) is minimal and ships NEITHER,
# so provision them here. Guarded (a no-op the moment a runner image bakes
# them in) — this keeps the reusable self-contained: any org can import it
# onto a bare runner and it just works.
run: |
set -e
# Sudo-free FIRST (bare arc nodes often lack passwordless sudo / apt
# network — `sudo apt-get` then dies with no captured logs). Install jq
# as a static binary and PyYAML via pip --user into ~/.local/bin; fall
# back to apt only if those are unavailable. Works on bare AND baked nodes.
export PATH="$HOME/.local/bin:$PATH"
mkdir -p "$HOME/.local/bin"
echo "$HOME/.local/bin" >> "$GITHUB_PATH"
if ! command -v jq >/dev/null 2>&1; then
curl -fsSL https://github.com/jqlang/jq/releases/download/jq-1.7.1/jq-linux-amd64 \
-o "$HOME/.local/bin/jq" && chmod +x "$HOME/.local/bin/jq" \
|| { sudo apt-get update -qq && sudo apt-get install -y -qq jq; }
fi
# yq (mikefarah) — static Go binary, curl-installed like jq. Replaces the
# PyYAML/python3 YAML parse that could not be provisioned on locked-down
# arc nodes (sudo blocked by no_new_privs, pip/PyPI unavailable).
if ! command -v yq >/dev/null 2>&1; then
curl -fsSL https://github.com/mikefarah/yq/releases/download/v4.44.3/yq_linux_amd64 \
-o "$HOME/.local/bin/yq" && chmod +x "$HOME/.local/bin/yq"
fi
jq --version
yq --version
- name: Delegate build to platform (mode=delegate)
# The GHA-escape fast path: instead of running buildx on this runner, POST
# each image in hanzo.yml to platform.hanzo.ai's direct-enqueue webhook
# (`/v1/arcd/enqueue`). Platform creates a build_job row, launches an
# in-cluster BuildKit Job on its own pool, pushes to the registry, and —
# for a system service — patches the operator Service CR to roll it. The
# downstream is IDENTICAL to the platform GitHub-App webhook path (one
# build path, two front doors), so a delegated build behaves exactly like
# a platform-native one. This job then exits in seconds — no buildx, no
# KMS, no runner-side deploy.
if: inputs.mode == 'delegate'
env:
ENQUEUE_URL: ${{ vars.PLATFORM_ENQUEUE_URL || 'https://platform.hanzo.ai/v1/arcd/enqueue' }}
ENQUEUE_TOKEN: ${{ secrets.PLATFORM_BUILD_CALLBACK_TOKEN }}
run: |
set -euo pipefail
if [ -z "${ENQUEUE_TOKEN:-}" ]; then
echo "::error::mode=delegate needs the PLATFORM_BUILD_CALLBACK_TOKEN secret (secrets: inherit)"; exit 1
fi
REPO="${{ github.repository }}"
SHA="${{ github.sha }}"
SHORT=$(echo "$SHA" | cut -c1-7)
REF="${{ github.ref }}"
BRANCH="${{ github.ref_name }}"
# One enqueue per (image, platform), mirroring the buildx tag shape the
# deploy path expects (`sha-<short>-<arch>[-<suffix>]`). Default arch is
# amd64 (single-arch), so an existing repo's tag shape is unchanged.
yq -o=json -I=0 '.images' hanzo.yml | jq -c '.[]' | while read -r img; do
name=$(echo "$img"|jq -r .name); repo=$(echo "$img"|jq -r .repo)
ctx=$(echo "$img"|jq -r .context); df=$(echo "$img"|jq -r '.dockerfile // (.context+"/Dockerfile")')
sfx=$(echo "$img"|jq -r '."tag-suffix" // ""')
echo "$img" | jq -r '(.platforms // ["linux/amd64"])[]' | while read -r plat; do
arch="${plat##*/}"
image="${repo}:sha-${SHORT}-${arch}${sfx:+-$sfx}"
body=$(jq -nc \
--arg repo "$REPO" --arg sha "$SHA" --arg image "$image" \
--arg ref "$REF" --arg branch "$BRANCH" \
--arg dockerfile "$df" --arg context "$ctx" --arg arch "$arch" \
'{repo:$repo,sha:$sha,image:$image,ref:$ref,branch:$branch,dockerfile:$dockerfile,context:$context,os:"linux",arch:$arch}')
echo "::group::delegate $name → $image"
code=$(curl -sS -o /tmp/enqueue.out -w '%{http_code}' -X POST "$ENQUEUE_URL" \
-H "Authorization: Bearer $ENQUEUE_TOKEN" -H 'Content-Type: application/json' -d "$body")
cat /tmp/enqueue.out; echo
# 202 Accepted = queued; 409 = no live runner for the pool (surface it loud).
if [ "$code" != "202" ]; then echo "::error::enqueue $image failed (HTTP $code)"; exit 1; fi
echo "::endgroup::"
done
done
- name: Authenticated git for go modules (rate-limit + any private repo)
if: inputs.mode != 'delegate'
# luxfi/hanzoai/zooai Go modules are PUBLIC, so `go` resolves them through
# the default public proxy (proxy.golang.org) + checksum db (sum.golang.org)
# — canonical, IMMUTABLE hashes that a force-moved tag can no longer break.
@@ -156,39 +63,22 @@ jobs:
&& echo "git auth OK" \
|| echo "::warning::GH_PAT set but repo probe failed"
- name: Log in to GHCR (GH_PAT when present, else automatic token)
if: inputs.mode != 'delegate'
env:
GH_PAT: ${{ secrets.GH_PAT }}
# Prefer the KMS-backed GH_PAT (admin:org + write:packages): it can push
# or CREATE any <org> package regardless of which repo the package is
# linked to. The per-job GITHUB_TOKEN only writes a package linked to THIS
# repo, so it 403s on a package created/linked elsewhere (e.g.
# ghcr.io/hanzoai/cms). Fall back to the automatic token when GH_PAT is
# absent (public forks like zooai/node that create their own repo-linked
# package on first push).
run: |
if [ -n "${GH_PAT:-}" ]; then
echo "$GH_PAT" | docker login ghcr.io -u hanzo-dev --password-stdin
else
echo "${{ secrets.GITHUB_TOKEN }}" | docker login ghcr.io -u "${{ github.actor }}" --password-stdin
fi
- name: Log in to GHCR (automatic workflow token)
# GHCR push needs no stored credential: GitHub injects a per-job
# GITHUB_TOKEN scoped to THIS repo, and `permissions: packages: write`
# (above) lets it push the repo's own package (e.g. zooai/node →
# ghcr.io/zooai/node, same org). First push creates the package
# repo-linked. No KMS, no PAT for the push path.
run: echo "${{ secrets.GITHUB_TOKEN }}" | docker login ghcr.io -u "${{ github.actor }}" --password-stdin
- name: Fetch deploy credentials from KMS
id: kms
if: inputs.mode != 'delegate'
env:
KMS_CLIENT_ID: ${{ secrets.KMS_CLIENT_ID }}
KMS_CLIENT_SECRET: ${{ secrets.KMS_CLIENT_SECRET }}
KMS_ENDPOINT: ${{ vars.KMS_ENDPOINT || 'https://kms.hanzo.ai' }}
KMS_ORG: ${{ vars.KMS_ORG }}
run: |
# This step is BEST-EFFORT (see below): GHCR push already works via the
# workflow token, and deploy creds are optional. GitHub wraps `run:` in
# `bash -eo pipefail`, so we MUST explicitly `set +e` — otherwise an
# unguarded curl (e.g. a KMS secret 404 at this org/path) aborts the
# step and fails the whole build. Keep -u/-o pipefail; drop -e.
set +e
set -uo pipefail
# Canonical luxfi/kms surface — /v1/kms (the Infisical /api/* surface was
# removed when KMS migrated to luxfi/kms, MPC-rooted). Auth = an IAM
@@ -203,26 +93,10 @@ jobs:
# repo-scoped automatic token cannot read. Handed to buildx as the
# `gh_token` BuildKit secret.
# KUBECONFIG — cluster access for the deploy step.
ORG="$(yq -r '.kms.org // ""' hanzo.yml 2>/dev/null || true)"
ORG="$(python3 -c "import yaml;print((yaml.safe_load(open('hanzo.yml')).get('kms') or {}).get('org','') )" 2>/dev/null || true)"
: "${ORG:=${KMS_ORG:-}}"
# Systemic default: when neither hanzo.yml `kms.org` nor the KMS_ORG var
# is set, derive the KMS org from the GitHub owner. The org → KMS-org
# relation is a small, stable first-party fact; keeping it here (ONE
# place) is why every repo gets the canonical KMS deploy-cred path with
# zero per-repo config — before this, ORG was always empty and this whole
# step short-circuited, so no build ever fetched its private-dep git
# credential from KMS (it silently fell back to GH_PAT and failed on
# private hanzoai/cloud). hanzo.yml `kms.org` and KMS_ORG still override.
if [ -z "$ORG" ]; then
case "${{ github.repository_owner }}" in
hanzoai) ORG=hanzo ;;
luxfi) ORG=lux ;;
zooai) ORG=zoo ;;
*) ORG="${{ github.repository_owner }}" ;;
esac
fi
ENV="$(yq -r '.kms.environment // "prod"' hanzo.yml 2>/dev/null || echo prod)"
PATHQ="$(yq -r '.kms.path // "/deploy"' hanzo.yml | sed 's#^/##; s#/$##' 2>/dev/null || echo deploy)"
ENV="$(python3 -c "import yaml;print((yaml.safe_load(open('hanzo.yml')).get('kms') or {}).get('environment','prod'))" 2>/dev/null || echo prod)"
PATHQ="$(python3 -c "import yaml;print((yaml.safe_load(open('hanzo.yml')).get('kms') or {}).get('path','/deploy').strip('/'))" 2>/dev/null || echo deploy)"
if [ -z "${KMS_CLIENT_ID:-}" ] || [ -z "$ORG" ]; then
echo "::notice::KMS not configured (no KMS_CLIENT_ID or org) — skipping; GHCR push uses the workflow token"; exit 0
fi
@@ -237,415 +111,59 @@ jobs:
if [ -n "$GIT_TOKEN" ]; then echo "::add-mask::$GIT_TOKEN"; echo "GIT_TOKEN=$GIT_TOKEN" >> "$GITHUB_ENV"; fi
KUBECONFIG_B64=$(get KUBECONFIG)
if [ -n "$KUBECONFIG_B64" ]; then echo "$KUBECONFIG_B64" | base64 -d > "$RUNNER_TEMP/kubeconfig"; echo "kubeconfig=$RUNNER_TEMP/kubeconfig" >> "$GITHUB_OUTPUT"; fi
# Build-time secrets → --build-arg. A repo declares per-image
# `build_secrets: [NAME, ...]` in hanzo.yml; each NAME is fetched from
# the SAME org/path/env and exported (masked) so the build step bakes
# it in as `--build-arg NAME=value`. The KMS key name IS the build-arg
# name — one name, one place. For publishable client tokens a Vite SPA
# must embed at build (e.g. VITE_MAPBOX_TOKEN). Undeclared → no-op, so
# every existing repo is byte-for-byte unchanged.
for bs in $(yq -r '[(.images // [])[] | (.build_secrets // [])[]] | unique | .[]' hanzo.yml 2>/dev/null || true); do
case "$bs" in ''|*[!A-Za-z0-9_]*) echo "::warning::skipping invalid build_secret name '$bs'"; continue;; esac
v=$(get "$bs" || true)
if [ -n "$v" ]; then
echo "::add-mask::$v"
{ echo "$bs<<__KMS_BUILDARG_EOF__"; echo "$v"; echo "__KMS_BUILDARG_EOF__"; } >> "$GITHUB_ENV"
else echo "::warning::build_secret $bs not in KMS ($ORG/$PATHQ env=$ENV) — build-arg will be empty"; fi
done
- name: GHCR push credential (KMS write:packages token)
if: inputs.mode != 'delegate'
env:
KUBECONFIG: ${{ steps.kms.outputs.kubeconfig }}
# The per-job GITHUB_TOKEN — and a package-less GH_PAT — can only push a
# package LINKED to this repo, so they 403 on a package created/linked
# elsewhere (ghcr.io/hanzoai/cms). Upgrade the ghcr login to the org's
# ghcr push token from the cluster (buildx-ghcr-auth, admin write:packages,
# KMS-synced) when a kubeconfig is present — it pushes/creates ANY <org>
# package. Fail-safe: keep the earlier login if anything is unavailable
# (public forks with no KMS keep their repo-linked GITHUB_TOKEN push).
run: |
set -uo pipefail
[ -z "${KUBECONFIG:-}" ] && { echo "::notice::no kubeconfig — keeping the earlier GHCR login"; exit 0; }
command -v kubectl >/dev/null 2>&1 || {
KVER=$(curl -fsSL https://dl.k8s.io/release/stable.txt)
mkdir -p "$HOME/.local/bin"
curl -fsSL "https://dl.k8s.io/release/${KVER}/bin/linux/amd64/kubectl" -o "$HOME/.local/bin/kubectl" && chmod +x "$HOME/.local/bin/kubectl"
export PATH="$HOME/.local/bin:$PATH"
}
CFG=$(kubectl -n hanzo get secret buildx-ghcr-auth -o jsonpath='{.data.\.dockerconfigjson}' 2>/dev/null | base64 -d || true)
[ -z "$CFG" ] && { echo "::notice::buildx-ghcr-auth not readable — keeping the earlier GHCR login"; exit 0; }
UP=$(echo "$CFG" | jq -r '.auths | to_entries[] | select(.key|test("ghcr")) | .value.auth' | head -1 | base64 -d 2>/dev/null || true)
[ -z "$UP" ] && { echo "::notice::no ghcr auth in buildx-ghcr-auth — keeping the earlier login"; exit 0; }
echo "::add-mask::${UP#*:}"
if echo "${UP#*:}" | docker login ghcr.io -u "${UP%%:*}" --password-stdin; then
echo "::notice::GHCR login upgraded to the KMS write:packages token"
else
echo "::notice::KMS GHCR token login failed — keeping the earlier login"
fi
- name: Mirror credential (registry.hanzo.ai)
if: inputs.mode != 'delegate'
env:
KUBECONFIG: ${{ steps.kms.outputs.kubeconfig }}
REGISTRY_USER: ${{ secrets.REGISTRY_USER }}
REGISTRY_PASSWORD: ${{ secrets.REGISTRY_PASSWORD }}
run: |
set -uo pipefail
# Direct credential first (repo/org secret — works on private repos,
# where the Free plan hides org secrets... including these; private
# repos set them at REPO level). KMS-kubeconfig read is the fallback.
if [ -n "${REGISTRY_USER:-}" ] && [ -n "${REGISTRY_PASSWORD:-}" ]; then
# Best-effort: a registry.hanzo.ai login FAILURE (not just a missing
# cred) must never fail the run — the image still pushes to GHCR, the
# primary. Without this guard, bash -e aborts the step and SKIPS the
# build entirely (a registry hiccup takes the whole lane red).
if echo "$REGISTRY_PASSWORD" | docker login registry.hanzo.ai -u "$REGISTRY_USER" --password-stdin; then
echo "MIRROR_OK=1" >> "$GITHUB_ENV"
else
echo "::notice::registry.hanzo.ai login failed — mirror skipped (GHCR-only push)"
fi
exit 0
fi
[ -z "${KUBECONFIG:-}" ] && { echo "::notice::no registry secret and no kubeconfig — mirror skipped"; exit 0; }
# Bare arc runners ship no kubectl — same static provision the deploy
# step uses.
command -v kubectl >/dev/null 2>&1 || {
KVER=$(curl -fsSL https://dl.k8s.io/release/stable.txt)
mkdir -p "$HOME/.local/bin"
curl -fsSL "https://dl.k8s.io/release/${KVER}/bin/linux/amd64/kubectl" -o "$HOME/.local/bin/kubectl" && chmod +x "$HOME/.local/bin/kubectl"
echo "$HOME/.local/bin" >> "$GITHUB_PATH"; export PATH="$HOME/.local/bin:$PATH"
}
CFG=$(kubectl -n hanzo get secret registry-credentials -o jsonpath='{.data.\.dockerconfigjson}' 2>/dev/null | base64 -d || true)
if [ -z "$CFG" ]; then
echo "::notice::registry-credentials not readable from this kubeconfig — mirror skipped (GHCR-only push)"; exit 0
fi
USERPASS=$(echo "$CFG" | jq -r '.auths["registry.hanzo.ai"].auth // empty' | base64 -d)
[ -z "$USERPASS" ] && { echo "::notice::no registry.hanzo.ai auth in dockerconfig — mirror skipped"; exit 0; }
echo "::add-mask::${USERPASS#*:}"
# Best-effort: login failure → skip mirror, never fail the run (see above).
if echo "${USERPASS#*:}" | docker login registry.hanzo.ai -u "${USERPASS%%:*}" --password-stdin; then
echo "MIRROR_OK=1" >> "$GITHUB_ENV"
else
echo "::notice::registry.hanzo.ai login failed — mirror skipped (GHCR-only push)"
fi
- name: Build & push images (per hanzo.yml)
if: inputs.mode != 'delegate'
env:
GH_PAT: ${{ secrets.GH_PAT }}
run: |
set -euo pipefail
# Test-only callers (hanzo.yml without `images:` — e.g. a repo whose
# image lane lives in its own release.yml, or a pure library) skip the
# build step entirely instead of exploding on a null .images.
if [ "$(yq -r '.images // [] | length' hanzo.yml 2>/dev/null || echo 0)" = "0" ]; then
echo "::notice::no images: in hanzo.yml — test-only caller, skipping build"; exit 0
fi
# Build-time private cross-org Go module read (the buildx `gh_token`
# secret): prefer the KMS-fetched GIT_TOKEN, else fall back to the org
# GH_PAT — the SAME BuildKit gh_token cloud's release.yml uses (proven
# working). Keeps image builds green when the KMS deploy-cred fetch is
# unavailable (a repo with a private cross-org dep like hanzoai/cloud
# otherwise fails `go mod tidy` with git exit 128 in the buildx stage).
# No-op for public-only builds when both are empty. Exported so the
# `--secret id=gh_token,env=GIT_TOKEN` below reads it from the env.
export GIT_TOKEN="${GIT_TOKEN:-${GH_PAT:-}}"
SHORT=$(echo "${{ github.sha }}" | cut -c1-7)
IS_TAG=$([ "${{ github.ref_type }}" = "tag" ] && echo 1 || echo 0)
VER="${{ github.ref_name }}"; VER="${VER#v}"
yq -o=json -I=0 '.images' hanzo.yml | jq -c '.[]' | while read -r img; do
python3 -c "import yaml,json;print(json.dumps(yaml.safe_load(open('hanzo.yml'))['images']))" | jq -c '.[]' | while read -r img; do
name=$(echo "$img"|jq -r .name); ctx=$(echo "$img"|jq -r .context)
df=$(echo "$img"|jq -r '.dockerfile // (.context+"/Dockerfile")'); repo=$(echo "$img"|jq -r .repo)
# tag-suffix is OPTIONAL (most repos ship a single variant). When set
# (e.g. "ce"/"ee") it qualifies every tag; when absent the tags are
# clean (no trailing dash). Build + deploy must agree on this shape.
sfx=$(echo "$img"|jq -r '."tag-suffix" // ""')
# platforms is OPT-IN per image in hanzo.yml (default: amd64 only, so
# every existing repo's tag shape "-amd64" is UNCHANGED). Set e.g.
# platforms: [linux/amd64, linux/arm64]
# to emit a multi-arch MANIFEST LIST — one digest serving both arches.
# DOKS has no arm64 nodes, so arm64 builds via buildx QEMU emulation
# (binfmt set up below); pure-Go (CGO_ENABLED=0) Dockerfiles that honor
# $TARGETARCH cross-compile natively (fast, no emulation). For true
# native-speed arm64, register a bare-metal arm64 host (spark/GB10) as
# the hanzo-build-linux-arm64 self-hosted runner (values-build-arm64.yaml).
plats=$(echo "$img"|jq -r '(.platforms // ["linux/amd64"]) | join(",")')
if [ "$plats" = "linux/amd64" ]; then
# single-arch: keep the exact legacy tag shape (-amd64) deploys expect.
TAGS="-t $repo:sha-${SHORT}-amd64${sfx:+-$sfx} -t $repo:${sfx:+$sfx-}latest"
# Release (tag) build: publish the CANONICAL bare semver tag (what the
# universe CR pins to — matches world 2.4.10 / cloud v1.801.62) AND the
# legacy -amd64 semver alias (back-compat for CRs still on that shape).
[ "$IS_TAG" = 1 ] && TAGS="$TAGS -t $repo:${VER}${sfx:+-$sfx} -t $repo:${VER}-amd64${sfx:+-$sfx}"
else
# multi-arch: one arch-neutral manifest-list tag (no -amd64 suffix).
docker run --privileged --rm tonistiigi/binfmt --install arm64 >/dev/null 2>&1 || true
TAGS="-t $repo:sha-${SHORT}${sfx:+-$sfx} -t $repo:${sfx:+$sfx-}latest"
[ "$IS_TAG" = 1 ] && TAGS="$TAGS -t $repo:${VER}${sfx:+-$sfx}"
fi
echo "::group::build $name → $repo (${sfx}) [$plats]"
# --build-arg assembly: static hanzo.yml `args` (a fixed value, e.g. a
# pinned base image tag) + `build_secrets` (KMS values the KMS step
# exported into the env above). Empty when a repo declares neither, so
# the buildx line is unchanged for every existing repo.
BUILD_ARGS=""
while IFS= read -r kv; do [ -n "$kv" ] && BUILD_ARGS="$BUILD_ARGS --build-arg $kv"; done \
< <(echo "$img" | jq -r '(.args // {}) | to_entries[] | "\(.key)=\(.value)"')
for bs in $(echo "$img" | jq -r '(.build_secrets // [])[]'); do
v=$(printenv "$bs" 2>/dev/null || true); [ -n "$v" ] && BUILD_ARGS="$BUILD_ARGS --build-arg $bs=$v"
done
TAGS="-t $repo:sha-${SHORT}-amd64${sfx:+-$sfx} -t $repo:${sfx:+$sfx-}latest"
[ "$IS_TAG" = 1 ] && TAGS="$TAGS -t $repo:${VER}-amd64${sfx:+-$sfx}"
echo "::group::build $name → $repo (${sfx})"
# GIT_TOKEN (from KMS, via GITHUB_ENV) is passed as the `gh_token`
# BuildKit secret so Dockerfiles can clone private Go modules; omitted
# cleanly when absent (public-only builds unaffected).
docker buildx build --platform "$plats" $BUILD_ARGS ${GIT_TOKEN:+--secret id=gh_token,env=GIT_TOKEN} --push $TAGS -f "$df" "$ctx"
# Dual-host: mirror the exact tag set to registry.hanzo.ai (server-
# side manifest copy — no rebuild). ghcr.io/<org>/<name> →
# registry.hanzo.ai/<org>/<name>; public consumers keep ghcr, the
# fleet DEPLOYS from our registry.
if [ "${MIRROR_OK:-}" = "1" ]; then
# crane, not buildx imagetools: the IAM token realm doesn't answer
# buildx's multi-scope token request (spec gap, tracked).
command -v crane >/dev/null 2>&1 || {
mkdir -p "$HOME/.local/bin"
curl -fsSL https://github.com/google/go-containerregistry/releases/download/v0.20.2/go-containerregistry_Linux_x86_64.tar.gz \
| tar -xz -C "$HOME/.local/bin" crane
export PATH="$HOME/.local/bin:$PATH"
}
mrepo="registry.hanzo.ai/${repo#*/}"
echo "$TAGS" | tr ' ' '\n' | grep -v '^-t$' | grep -v '^$' | while read -r ref; do
crane copy "$ref" "${mrepo}:${ref##*:}" \
|| echo "::warning::mirror of $ref failed (ghcr push unaffected)"
done
fi
docker buildx build --platform linux/amd64 ${GIT_TOKEN:+--secret id=gh_token,env=GIT_TOKEN} --push $TAGS -f "$df" "$ctx"
echo "::endgroup::"
done
- name: Provision Go toolchain (go test gates on bare runners)
# hanzo.yml `test:` gates (e.g. `go vet ./...`, `go test ...`) run
# DIRECTLY on the runner, NOT inside a build container — but the stock
# arc runner image (ghcr.io/actions/actions-runner) ships no Go, so a Go
# gate dies with `go: command not found` (exit 127). Provision the repo's
# OWN Go version from go.mod so the toolchain matches the module exactly.
# Guarded to Go repos (go.mod present) so pure-JS/TS callers are
# unaffected; harmless if a future runner image bakes Go in.
if: inputs.mode != 'delegate' && hashFiles('go.mod') != ''
uses: actions/setup-go@v5
with:
go-version-file: go.mod
cache: false
- name: Provision C toolchain (cgo test gates)
# CGO_ENABLED=1 gates (e.g. go-sqlite3, which bundles the sqlite
# amalgamation) need a C compiler; the minimal arc runner ships none
# (`cgo: gcc not found`). Same guarded provision the parse-toolchain step
# above uses — a no-op when gcc is already present. If apt-get update
# fails (arc snapshot mirror rot: "no longer has a Release file"),
# repoint archive.ubuntu.com at the DO mirror — both sources.list and
# noble's deb822 ubuntu.sources — and retry once.
if: inputs.mode != 'delegate' && hashFiles('go.mod') != ''
run: |
command -v gcc >/dev/null 2>&1 && exit 0
sudo apt-get update -qq || {
sudo find /etc/apt -name '*.list' -o -name '*.sources' | \
xargs -r sudo sed -i 's|https\?://archive.ubuntu.com/ubuntu|http://mirrors.digitalocean.com/ubuntu|g'
sudo apt-get update -qq
}
sudo apt-get install -y -qq gcc
- name: Provision Node toolchain (JS test gates)
# JS/TS `test:` gates (e.g. `pnpm install --frozen-lockfile && pnpm lint`)
# also run DIRECTLY on the runner, and the stock arc runner image ships
# no Node — so the gate dies at `corepack: command not found` (exit 127)
# before it ever reads package.json. Same guarded provision as the Go
# step above: only for JS callers (package.json present), harmless if a
# future runner image bakes Node in. `corepack enable` shims the repo's
# own packageManager (pnpm/yarn) at its pinned version.
if: inputs.mode != 'delegate' && hashFiles('package.json') != ''
uses: actions/setup-node@v4
with:
node-version: 22
- name: Enable corepack (pnpm/yarn shims for JS test gates)
if: inputs.mode != 'delegate' && hashFiles('package.json') != ''
run: corepack enable
- name: Authenticate runner git for private Go modules (test gates)
# The Test step runs `go vet`/`go test` ON the runner (not in buildx), so
# `go` fetches private hanzoai/* modules (GOPRIVATE → direct) through the
# runner's git, which needs a credential. The IMAGE build authenticates
# via the KMS `gh_token` inside buildx (GIT_TOKEN); the earlier GH_PAT
# git-auth step is a no-op for repos that rely on that KMS token (GH_PAT
# unset) — so `go vet` dies with `could not read Username for github.com`.
# Reuse the SAME token here for the runner's git (GIT_TOKEN, set by the
# KMS step above; GH_PAT fallback). No-op when neither is present.
if: inputs.mode != 'delegate' && hashFiles('go.mod') != ''
env:
GH_PAT: ${{ secrets.GH_PAT }}
run: |
set -uo pipefail
TOKEN="${GIT_TOKEN:-${GH_PAT:-}}"
if [ -z "$TOKEN" ]; then echo "no git token — public modules only"; exit 0; fi
CFG="$RUNNER_TEMP/gitconfig-go-test"; : > "$CFG"
GIT_CONFIG_GLOBAL="$CFG" git config --global \
url."https://x-access-token:${TOKEN}@github.com/".insteadOf "https://github.com/"
{ echo "GIT_CONFIG_GLOBAL=$CFG"; echo "GIT_CONFIG_NOSYSTEM=1"; } >> "$GITHUB_ENV"
echo "runner git authenticated for private Go modules"
- name: Test (per hanzo.yml)
if: inputs.mode != 'delegate'
run: |
set -euo pipefail
yq -o=json -I=0 '.test // []' hanzo.yml | jq -c '.[]' | while read -r t; do
python3 -c "import yaml,json;print(json.dumps(yaml.safe_load(open('hanzo.yml')).get('test') or []))" | jq -c '.[]' | while read -r t; do
name=$(echo "$t"|jq -r .name); cmd=$(echo "$t"|jq -r .run)
echo "::group::test $name"; bash -c "$cmd"; echo "::endgroup::"
done
- name: Deploy (per hanzo.yml)
if: inputs.mode != 'delegate' && github.event_name != 'pull_request' && steps.kms.outputs.kubeconfig != ''
if: github.event_name != 'pull_request' && steps.kms.outputs.kubeconfig != ''
env:
KUBECONFIG: ${{ steps.kms.outputs.kubeconfig }}
run: |
set -euo pipefail
REF="${{ github.ref_name }}"
ON=$(yq -o=json -I=0 '.deploy.on // []' hanzo.yml)
ON=$(python3 -c "import yaml,json;print(json.dumps((yaml.safe_load(open('hanzo.yml')).get('deploy') or {}).get('on') or []))")
IS_TAG=$([ "${{ github.ref_type }}" = "tag" ] && echo 1 || echo 0)
VER="${REF#v}" # canonical semver for tag releases (ref_name without the v)
if [ "$IS_TAG" != 1 ] && ! echo "$ON" | jq -e --arg b "$REF" 'index($b)' >/dev/null; then
echo "branch $REF not in deploy.on — skipping deploy"; exit 0
fi
# Bare arc runners ship no kubectl — provision the static binary
# (same sudo-free pattern as jq/yq above).
command -v kubectl >/dev/null 2>&1 || {
mkdir -p "$HOME/.local/bin"; export PATH="$HOME/.local/bin:$PATH"
KVER=$(curl -fsSL https://dl.k8s.io/release/stable.txt)
curl -fsSL "https://dl.k8s.io/release/${KVER}/bin/linux/amd64/kubectl" \
-o "$HOME/.local/bin/kubectl" && chmod +x "$HOME/.local/bin/kubectl"
}
SHORT=$(echo "${{ github.sha }}" | cut -c1-7)
NS=$(yq -r '.deploy.namespace' hanzo.yml)
RTO=$(yq -r '.deploy."rollout-timeout" // "600s"' hanzo.yml)
yq -o=json -I=0 '.images' hanzo.yml > /tmp/imgs.json
# Desired state lives in the universe repo: the in-cluster
# gitops-reconcile job re-applies its CRs every ~5 minutes, so any
# direct patch that is not ALSO recorded there is reverted on the
# next cycle. Record first (durable), then patch (accelerates the
# roll). Universe write rides the same KMS git token as module reads.
UNIVERSE=""
if [ -n "${GIT_TOKEN:-}" ]; then
git clone -q --depth 1 \
"https://x-access-token:${GIT_TOKEN}@github.com/hanzoai/universe.git" \
/tmp/universe 2>/dev/null && UNIVERSE=/tmp/universe \
|| echo "::warning::universe clone failed — rolls below are transient until recorded there"
fi
yq -o=json -I=0 '.deploy.services' hanzo.yml | jq -c '.[]' | while read -r s; do
NS=$(python3 -c "import yaml;print(yaml.safe_load(open('hanzo.yml'))['deploy']['namespace'])")
python3 -c "import yaml,json;print(json.dumps(yaml.safe_load(open('hanzo.yml'))['images']))" > /tmp/imgs.json
python3 -c "import yaml,json;print(json.dumps(yaml.safe_load(open('hanzo.yml'))['deploy']['services']))" | jq -c '.[]' | while read -r s; do
svc=$(echo "$s"|jq -r .name); imgname=$(echo "$s"|jq -r .image)
repo=$(jq -r --arg n "$imgname" '.[]|select(.name==$n)|.repo' /tmp/imgs.json)
sfx=$(jq -r --arg n "$imgname" '.[]|select(.name==$n)|."tag-suffix" // ""' /tmp/imgs.json)
plats=$(jq -r --arg n "$imgname" '.[]|select(.name==$n)|(.platforms // ["linux/amd64"])|join(",")' /tmp/imgs.json)
# A TAGGED release pins the CANONICAL bare semver (VER = ref_name w/o the
# v) — the very image the build step published above; a branch build stays
# on its transient per-commit sha tag (arch-matched: bare for multi-arch).
if [ "$IS_TAG" = 1 ]; then
tag="${VER}${sfx:+-$sfx}"
elif [ "$plats" = "linux/amd64" ]; then
tag="sha-${SHORT}-amd64${sfx:+-$sfx}"
else
tag="sha-${SHORT}${sfx:+-$sfx}"
fi
ref="$repo:$tag"
CR="$UNIVERSE/infra/k8s/operator/crs/$svc.yaml"
# Backward-clobber guard (semver): a transient BRANCH build must NEVER
# overwrite a service pinned to a semver RELEASE (rolls prod back to a dev
# image). Complements the sha-ancestry guard below, which only sees sha-
# tags. Releases are tagged; a branch push leaves the semver pin untouched.
cur=""
if [ -n "$UNIVERSE" ] && [ -f "$CR" ]; then cur="$(yq -r '.spec.image.tag // ""' "$CR")"; fi
if [ "$IS_TAG" != 1 ] && printf '%s' "$cur" | grep -qE '^v?[0-9]+\.[0-9]+\.[0-9]+'; then
echo "::notice::$svc pinned to release $cur — branch build ${SHORT} leaves it (tag a release to deploy)"; continue
fi
ref="$repo:sha-${SHORT}-amd64${sfx:+-$sfx}"
echo "rolling $svc → $ref"
# recorded=1 once the desired tag is durably in universe: the
# in-cluster operator reconciles that every ~5min, so an expired
# runner kubeconfig must not fail a deploy it will complete. Stays 0
# for bare-Deployment repos (no CR) where kubectl is the only path.
recorded=0
if [ -n "$UNIVERSE" ] && [ -f "$CR" ]; then
# Never roll a pin BACKWARD: builds finish out of order, and a slow
# build of an older commit must not overwrite a newer roll. If the
# CR's current sha is a descendant of ours, ours is stale — skip.
CURSHA=$(yq -r '.spec.image.tag // ""' "$CR" | sed -nE 's/^sha-([a-f0-9]{7}).*/\1/p')
git fetch -q --unshallow origin 2>/dev/null || true
if [ -n "$CURSHA" ] && [ "$CURSHA" != "$SHORT" ] \
&& git cat-file -e "$CURSHA" 2>/dev/null \
&& git merge-base --is-ancestor "$SHORT" "$CURSHA" 2>/dev/null; then
echo "::notice::$svc CR already at descendant $CURSHA — not rolling back to $SHORT"
recorded=1 # newer release already recorded + reconciling
else
yq -i ".spec.image.tag = \"$tag\"" "$CR"
# Sweep EVERY same-repo image reference in the CR (sidecars,
# initContainers pinned to this image) — the tag field alone
# left sidecars on stale tags every roll.
repoEsc=$(printf '%s' "$repo" | sed 's/[.[\*^$]/\\&/g')
sed -i -E "s|(${repoEsc}):sha-[A-Za-z0-9-]+|\1:${tag}|g" "$CR"
if git -C "$UNIVERSE" diff --quiet; then
recorded=1 # CR already pins $tag (recorded on a prior run)
else
commitCR() { git -C "$UNIVERSE" -c user.name=hanzo-ci -c user.email=dev@hanzo.ai \
commit -qam "deploy($svc): $tag (${GITHUB_REPOSITORY}@${SHORT})"; }
commitCR
# EVERY service's deploy pushes to universe/main, so under
# concurrent rolls a plain push loses the race with a
# non-fast-forward reject (THE reason deploys stall when many
# land at once). The clone is shallow (--depth 1) so `pull
# --rebase` has no merge base and fails — instead fetch the moved
# tip, hard-reset onto it, and re-apply our one-file CR change,
# then retry the push. A no-op after reset (remote already
# carries our tag) counts as recorded. We never force-push, so a
# newer roll of THIS service is preserved (its tag survives the
# reset; our re-apply is last-writer only when tags differ).
for _try in 1 2 3 4 5 6; do
if git -C "$UNIVERSE" push -q; then recorded=1; break; fi
git -C "$UNIVERSE" fetch -q --depth 1 origin main || break
git -C "$UNIVERSE" reset -q --hard FETCH_HEAD
yq -i ".spec.image.tag = \"$tag\"" "$CR"
sed -i -E "s|(${repoEsc}):sha-[A-Za-z0-9-]+|\1:${tag}|g" "$CR"
if git -C "$UNIVERSE" diff --quiet; then recorded=1; break; fi
commitCR
done
[ "$recorded" = 1 ] || echo "::warning::universe push failed for $svc after retries — roll is transient (runner kubectl must land it)"
fi
fi
fi
# Runner-side kubectl ACCELERATES the operator roll + smoke-tests it.
# When recorded=1 the operator owns the rollout, so an expired runner
# kubeconfig warns instead of failing the deploy; when recorded=0
# kubectl is the only path and stays fatal.
if [ "$recorded" = 1 ]; then
kc() { kubectl "$@" || echo "::warning::$svc: runner kubectl failed (expired kubeconfig?) — universe record stands; operator reconciles"; }
else
kc() { kubectl "$@"; }
fi
# Operator-managed services (Service CR) reconcile the Deployment —
# patch the CR when it exists; bare Deployments get set-image.
if kubectl -n "$NS" get "services.hanzo.ai/$svc" >/dev/null 2>&1; then
kc -n "$NS" patch "services.hanzo.ai/$svc" --type=merge \
-p "{\"spec\":{\"image\":{\"repository\":\"$repo\",\"tag\":\"$tag\"}}}"
else
# Bare Deployment: set the new image ONLY on containers already running
# THIS repo's image — never the '*' wildcard, which clobbers foreign
# sidecars (e.g. an rclone S3-mirror) with the app image and wedges the
# rollout. Fall back to the service-named container on first deploy.
mapfile -t CS < <(kubectl -n "$NS" get "deployment/$svc" \
-o jsonpath='{range .spec.template.spec.containers[*]}{.name} {.image}{"\n"}{end}' \
| awk -v r="$repo" 'index($2, r"@")==1 || index($2, r":")==1 {print $1}')
[ "${#CS[@]}" -eq 0 ] && CS=("$svc")
args=(); for c in "${CS[@]}"; do args+=("$c=$ref"); done
kc -n "$NS" set image "deployment/$svc" "${args[@]}"
fi
# Timeout scales with the image: a service vendoring GB-scale model/node
# packs (e.g. studio) pulls multi-GB layers on a cold node + waits for the
# operator to reconcile — legitimately minutes. 180s failed mid-pull and
# is THE reason studio deploys silently failed since 0.15.8. Override
# per-repo with deploy.rollout-timeout.
kc -n "$NS" rollout status "deployment/$svc" --timeout="$RTO"
kubectl -n "$NS" set image "deployment/$svc" "*=$ref"
kubectl -n "$NS" rollout status "deployment/$svc" --timeout=180s
done
-27
View File
@@ -52,33 +52,6 @@ build minutes). To run on **your own** self-hosted arc runners, pass their label
secrets: inherit
```
## Delegate to platform (skip runner buildx)
By default the build runs buildx **on** the arc runner. To instead hand the build
to **platform.hanzo.ai** — which builds in-cluster with BuildKit and rolls the
service itself — pass `mode: delegate`:
```yaml
uses: hanzoai/ci/.github/workflows/build.yml@v1
with:
mode: delegate
secrets: inherit
```
The GitHub job then just POSTs each image in `hanzo.yml` to platform's direct
build webhook (`/v1/arcd/enqueue`) and exits in **seconds** — no runner buildx,
no KMS, no runner-side deploy. Platform creates the build job, launches an
in-cluster BuildKit Job on its own pool, pushes to the registry, and patches the
operator `Service` CR to roll it. It's the same build path as the platform
GitHub-App webhook — one build path, two front doors.
Requires one extra secret, `PLATFORM_BUILD_CALLBACK_TOKEN` (org- or repo-level,
picked up via `secrets: inherit`). Override the endpoint with the
`PLATFORM_ENQUEUE_URL` repo/org variable (default `https://platform.hanzo.ai/v1/arcd/enqueue`).
`mode: buildx` (the default) is unchanged — existing repos keep running buildx on
arc, so delegation is strictly opt-in.
## Credentials
The only GitHub secrets a repo sets are `KMS_CLIENT_ID` / `KMS_CLIENT_SECRET`