Files
sencho/Dockerfile
T
Anso bed7269c27 ci: daily cache-bust the Alpine apk upgrade layer (#491)
The runtime stage's `apk upgrade --no-cache` layer was being reused from
the buildx gha/registry cache indefinitely, so newly-patched Alpine
packages (e.g. openssl CVE fixes) could sit behind a stale layer until
an unrelated Dockerfile change invalidated it by coincidence. This
surfaced as Trivy hard-failing on CVE-2026-28390 (libcrypto3/libssl3
DoS in CMS) on the github-app-token-migration PR, even though upstream
Alpine had already published 3.5.6-r0 with the fix.

Add an APK_CACHE_BUST build-arg that CI sets to the current UTC date
(YYYY-MM-DD). Each calendar day the arg value changes, which changes
the RUN layer's hash, which forces buildx to re-execute `apk upgrade`
and pick up whatever Alpine has published that day. All three build
invocations (PR docker-validate, release pre-publish scan, release
multi-arch push) pass the same value, so the scan and the published
artifact always share a layer and Trivy never scans stale bits.

Default value `unset` lets local developers `docker build` without
the arg; production CI always supplies the date.
2026-04-10 15:44:40 -04:00

187 lines
7.8 KiB
Docker

# Cross-compilation helper - provides xx-clang, xx-apk, etc.
# Runs on the BUILD platform; its binaries are copied into build stages below.
FROM --platform=$BUILDPLATFORM tonistiigi/xx AS xx
# Stage 1: Build Frontend
# Runs on the BUILD platform (amd64) - frontend has no native modules so the
# compiled output (JS/CSS/HTML) is entirely platform-agnostic.
FROM --platform=$BUILDPLATFORM node:22-alpine AS frontend-builder
WORKDIR /app/frontend
COPY frontend/package*.json frontend/.npmrc ./
RUN npm config set fetch-retry-maxtimeout 120000 && \
npm config set fetch-retries 5 && \
npm install
COPY frontend/ ./
# vite.config.ts reads the root package.json for the app version
COPY package.json /app/package.json
RUN npm run build
# Stage 2: Compile TypeScript
# Runs on the BUILD platform (amd64) - tsc output is platform-agnostic JS.
FROM --platform=$BUILDPLATFORM node:22-alpine AS backend-builder
WORKDIR /app/backend
RUN apk add --no-cache python3 make g++
COPY backend/package*.json backend/.npmrc ./
RUN npm config set fetch-retry-maxtimeout 120000 && \
npm config set fetch-retries 5 && \
npm install
COPY backend/ ./
# prebuild hook (generate-version.js) reads the root package.json for the app version
COPY package.json /app/package.json
RUN npm run build
# Stage 3: Production dependencies (cross-compiled - NO QEMU execution)
# Runs on the BUILD platform (amd64) but compiles native modules
# (bcrypt, better-sqlite3, node-pty) for the TARGET platform using
# tonistiigi/xx + clang as the cross-compiler.
# This avoids the Node.js v20 SIGILL crash that occurs when npm runs
# under QEMU because QEMU lacks ARMv8.1 LSE atomic instruction support.
FROM --platform=$BUILDPLATFORM node:22-alpine AS prod-deps
# Copy xx cross-compilation tools into this stage
COPY --from=xx / /
ARG TARGETARCH
ARG BUILDARCH
WORKDIR /app
# Two paths depending on whether we are cross-compiling:
#
# Native (TARGETARCH == BUILDARCH, e.g. amd64 → amd64):
# Standard g++ is used. xx-clang introduces sysroot flags that conflict with
# node-gyp's header resolution on Alpine for same-platform builds, so we
# bypass it entirely and let npm ci use the host compiler directly.
#
# Cross (TARGETARCH != BUILDARCH, e.g. amd64 → arm64):
# xx-clang targets the foreign architecture without QEMU. The target sysroot
# is populated via xx-apk:
# g++ - libstdc++ headers/libs (all three native modules use C++)
# musl-dev - musl libc headers for the target arch
# linux-headers - <pty.h> / <termios.h> required by node-pty
RUN if [ "$TARGETARCH" = "$BUILDARCH" ]; then \
apk add --no-cache python3 make g++; \
else \
apk add --no-cache clang lld python3 make g++ && \
xx-apk add --no-cache g++ musl-dev linux-headers; \
fi
COPY backend/package*.json backend/.npmrc ./
# Native: plain npm ci - g++ compiles native modules for the host arch.
# Cross: npm_config_arch tells prebuild-install/node-pre-gyp which pre-built
# binary to attempt; CC/CXX/AR route compilation through xx-clang so
# the output targets the foreign arch without any QEMU emulation.
RUN if [ "$TARGETARCH" = "$BUILDARCH" ]; then \
npm ci --omit=dev; \
else \
npm_config_arch=$TARGETARCH \
CC=xx-clang \
CXX=xx-clang++ \
AR=xx-ar \
npm ci --omit=dev; \
fi
# Stage 4: Production runtime
# Runs on the TARGET platform - no compilation happens here.
FROM node:22-alpine
# Pin Docker CLI and Compose versions.
#
# Docker CLI v29.3.1 — compiled with Go 1.25.8, buildkit 0.28.1, x/crypto 0.48.0.
# Fixes: CVE-2026-34040, CVE-2026-33997, CVE-2026-33747, CVE-2026-33748,
# CVE-2025-68121, CVE-2025-61726, CVE-2025-61729, CVE-2026-25679,
# CVE-2025-47913.
#
# Compose v5.1.1 — compiled with Go 1.25.8, x/crypto 0.46.0.
# Upgraded from v2.40.3 (Go 1.24.9 / grpc 1.74.2 / x/crypto 0.38.0) to
# resolve CVE-2025-68121, CVE-2025-61726, CVE-2025-61729, CVE-2026-25679,
# CVE-2025-47913.
#
# NOTE: CVE-2026-33186 (google.golang.org/grpc ≥1.79.3) remains unpatched —
# both Docker CLI 29.3.1 and Compose v5.1.1 ship grpc 1.78.0. No upstream
# release includes the fix yet. This will be resolved when a new Docker CLI
# or Compose release upgrades grpc.
ARG DOCKER_VERSION=29.3.1
ARG COMPOSE_VERSION=v5.1.1
# Daily cache-bust for the apk upgrade layer. CI passes the current date
# (YYYY-MM-DD) as a build-arg, so this RUN layer's hash changes at most
# once per calendar day. Without this, buildx reuses the cached layer
# indefinitely and a new Alpine package fix (e.g. an openssl CVE patched
# upstream in alpine 3.23) sits behind the stale cache until an unrelated
# change invalidates this line by coincidence. Default value lets local
# developers build without the arg; production CI always sets it.
ARG APK_CACHE_BUST=unset
# Upgrade all Alpine system packages, install runtime deps, then fetch Docker
# CLI + Compose plugin from official static binaries.
RUN echo "apk cache bust: ${APK_CACHE_BUST}" && \
apk upgrade --no-cache && \
apk add --no-cache bash su-exec curl && \
ARCH=$(uname -m) && \
curl -fsSL "https://download.docker.com/linux/static/stable/${ARCH}/docker-${DOCKER_VERSION}.tgz" \
| tar xz -C /usr/local/bin --strip-components=1 docker/docker && \
mkdir -p /usr/local/lib/docker/cli-plugins && \
curl -fsSL -o /usr/local/lib/docker/cli-plugins/docker-compose \
"https://github.com/docker/compose/releases/download/${COMPOSE_VERSION}/docker-compose-linux-${ARCH}" && \
chmod +x /usr/local/lib/docker/cli-plugins/docker-compose && \
apk del curl
WORKDIR /app
# Copy cross-compiled production node_modules from the prod-deps stage
COPY --from=prod-deps /app/node_modules ./node_modules
COPY --from=prod-deps /app/package.json ./
# Copy compiled TypeScript output (platform-agnostic JS)
COPY --from=backend-builder /app/backend/dist ./dist
# Copy built frontend
COPY --from=frontend-builder /app/frontend/dist ./public
# Set environment to production
ENV NODE_ENV=production
# Create a non-root user and ensure the data/compose directories are writable.
# The actual volume paths are mounted at runtime, so we only pre-create the
# default data dir here; the compose dir is user-supplied via COMPOSE_DIR.
RUN addgroup -S sencho && adduser -S -G sencho sencho \
&& mkdir -p /app/data \
&& chown -R sencho:sencho /app
# Copy the entrypoint script that fixes data-volume ownership at startup and
# then drops privileges to the sencho user via su-exec (the idiomatic Alpine
# equivalent of gosu). This mirrors the pattern used by official Docker images
# such as PostgreSQL, Redis, and MariaDB.
#
# NOTE: USER directive is intentionally absent here. The entrypoint starts as
# root so it can chown the mounted data volume, then exec's as sencho. Static
# security scanners (Trivy, Clair) may flag "running as root" - this is a known
# and accepted trade-off for self-hosted apps with user-supplied volume mounts.
COPY docker-entrypoint.sh /usr/local/bin/docker-entrypoint.sh
# Strip Windows CRLF line endings that can sneak in on Windows dev machines
# even with .gitattributes eol=lf, then make executable. A shell script with
# \r in tokens like "fi\r" will fail with "unexpected end of file" in Alpine.
RUN sed -i 's/\r//' /usr/local/bin/docker-entrypoint.sh \
&& chmod +x /usr/local/bin/docker-entrypoint.sh
# Expose port
EXPOSE 3000
# Health check - polls the public /api/health endpoint every 30s
HEALTHCHECK --interval=30s --timeout=5s --start-period=15s --retries=3 \
CMD node -e "const h=require('http');h.get('http://localhost:3000/api/health',r=>{process.exit(r.statusCode===200?0:1)}).on('error',()=>process.exit(1))"
# Entrypoint fixes volume ownership as root then drops to sencho via su-exec.
# CMD provides the default arguments passed through to the entrypoint.
ENTRYPOINT ["/usr/local/bin/docker-entrypoint.sh"]
CMD ["node", "dist/index.js"]