# ================================================================= # # Dockerfile for local build (nativ, without Cross-Compilation) # # ================================================================= # ----------------------------------------------------------------- # Stage 0: Fetch static FFmpeg binaries # ----------------------------------------------------------------- # We use a static build to ensure it works in the scratch image without libraries FROM mwader/static-ffmpeg:7.1 AS ffmpeg-static # Workspace skeleton shared by the backend and frontend dependency builds. FROM rust:1.95 AS workspace-skeleton WORKDIR /src COPY Cargo.toml Cargo.lock ./ COPY shared ./shared/ COPY frontend/Cargo.toml frontend/Trunk.toml ./frontend/ COPY backend/app/Cargo.toml backend/app/build.rs ./backend/app/ COPY backend/auth/Cargo.toml ./backend/auth/ COPY backend/btree/Cargo.toml ./backend/btree/ COPY backend/config-loader/Cargo.toml ./backend/config-loader/ COPY backend/core/Cargo.toml ./backend/core/ COPY backend/curation/Cargo.toml ./backend/curation/ COPY backend/dvr/Cargo.toml ./backend/dvr/ COPY backend/hls/Cargo.toml ./backend/hls/ COPY backend/iptv/Cargo.toml ./backend/iptv/ COPY backend/library/Cargo.toml ./backend/library/ COPY backend/media-server/Cargo.toml ./backend/media-server/ COPY backend/metadata/Cargo.toml ./backend/metadata/ COPY backend/messaging/Cargo.toml ./backend/messaging/ COPY backend/mpegts/Cargo.toml ./backend/mpegts/ COPY backend/parser/Cargo.toml ./backend/parser/ COPY backend/processing/Cargo.toml ./backend/processing/ COPY backend/repository/Cargo.toml ./backend/repository/ COPY backend/session/Cargo.toml ./backend/session/ RUN mkdir -p frontend/src backend/app/src/tools && \ printf 'fn main() {}\n' > frontend/src/main.rs && \ printf 'fn main() {}\n' > backend/app/src/main.rs && \ printf 'fn main() {}\n' > backend/app/src/tools/flags_builder.rs && \ for crate in auth btree config-loader core curation dvr hls iptv library media-server metadata messaging mpegts parser processing repository session; do \ mkdir -p "backend/${crate}/src"; \ printf '\n' > "backend/${crate}/src/lib.rs"; \ done # ----------------------------------------------------------------- # Stage 1: Build the Rust binary for production # ----------------------------------------------------------------- FROM workspace-skeleton AS rust-build # Get target architecture from build argument ARG RUST_TARGET=x86_64-unknown-linux-musl # Install build dependencies for Debian (trixie) RUN apt-get update && DEBIAN_FRONTEND=noninteractive apt-get install -y --no-install-recommends \ pkg-config musl-tools && \ apt-get clean && \ rm -rf /var/lib/apt/lists/* # Set Rust compiler flags for static linking against musl ENV RUSTFLAGS='-C target-feature=+crt-static' # Build dependencies (this layer is cached until a manifest or shared code changes) RUN rustup target add ${RUST_TARGET} RUN cargo build -p tuliprox --target ${RUST_TARGET} --release # Copy the backend source only after its dependency layer is complete. COPY backend ./backend/ RUN find backend -type f -name '*.rs' -exec touch {} + && \ cargo build -p tuliprox --target ${RUST_TARGET} --release # ----------------------------------------------------------------- # Stage 2: Build the rust frontend # ----------------------------------------------------------------- FROM workspace-skeleton AS trunk-build # Install dependencies for Trunk and WebAssembly RUN apt-get update && DEBIAN_FRONTEND=noninteractive apt-get install -y --no-install-recommends \ pkg-config libssl-dev curl binaryen && \ apt-get clean && \ rm -rf /var/lib/apt/lists/* # Add wasm target & install trunk RUN rustup target add wasm32-unknown-unknown RUN cargo install --locked trunk wasm-bindgen-cli # Pre-build dependencies WORKDIR /src/frontend RUN cargo build --target wasm32-unknown-unknown --release # Now copy the rest of the source code and build the project WORKDIR /src COPY frontend ./frontend/ WORKDIR /src/frontend # Run Trunk build RUN find src -type f -name '*.rs' -exec touch {} + && trunk build --release # ----------------------------------------------------------------- # Stage 3: Build video resources with ffmpeg (from linuxserver used for build time only) # ----------------------------------------------------------------- FROM linuxserver/ffmpeg:latest AS resource-build WORKDIR /src COPY resources ./resources # Combine ffmpeg commands into a single layer to reduce image size # Convert every .jpg file in resources into a matching .ts file. RUN set -eu; \ find ./resources -maxdepth 1 -type f -name '*.jpg' | sort | while IFS= read -r image; do \ output="${image%.jpg}.ts"; \ resource_name="$(basename "${image%.jpg}")"; \ ffmpeg -y -nostdin -loop 1 -framerate 30 -i "${image}" \ -f lavfi -i anullsrc=channel_layout=stereo:sample_rate=48000 \ -t 10 -shortest \ -c:v libx264 -pix_fmt yuv420p -preset veryfast -crf 23 \ -x264-params "keyint=30:min-keyint=30:scenecut=0:bframes=0:open_gop=0" \ -c:a aac -b:a 128k -ac 2 -ar 48000 \ -mpegts_flags +resend_headers \ -muxdelay 0 -muxpreload 0 \ -f mpegts "${output}" || exit 1; \ if [ "${resource_name}" = "panel_api_provisioning" ]; then \ rm -f ./resources/panel_api_provisioning_hls_*.ts ./resources/panel_api_provisioning_hls.m3u8; \ ffmpeg -y -nostdin -loop 1 -framerate 30 -i "${image}" \ -f lavfi -i anullsrc=channel_layout=stereo:sample_rate=48000 \ -t 12 -shortest \ -c:v libx264 -pix_fmt yuv420p -preset veryfast -crf 23 \ -g 60 -keyint_min 60 \ -force_key_frames "expr:gte(t,n_forced*2)" \ -x264-params "scenecut=0:bframes=0:open_gop=0" \ -c:a aac -b:a 128k -ac 2 -ar 48000 \ -mpegts_flags +resend_headers \ -muxdelay 0 -muxpreload 0 \ -f hls \ -hls_time 2 \ -hls_list_size 0 \ -hls_segment_type mpegts \ -hls_segment_filename "./resources/panel_api_provisioning_hls_%03d.ts" \ ./resources/panel_api_provisioning_hls.m3u8 || exit 1; \ rm -f ./resources/panel_api_provisioning_hls.m3u8; \ fi; \ done # ----------------------------------------------------------------- # Stage 4: Prepare timezone data # ----------------------------------------------------------------- FROM alpine:latest AS tz-prep ARG TZ=UTC ENV TZ=${TZ} RUN apk add --no-cache tzdata \ && mkdir -p /output/etc \ && mkdir -p /output/usr/share \ && cp -r /usr/share/zoneinfo /output/usr/share/zoneinfo \ && ln -sf /usr/share/zoneinfo/${TZ} /output/etc/localtime # ================================================================= # # Part 2: Final Image Stages # # ================================================================= # ----------------------------------------------------------------- # Final Image #1: Debugging Environment (Alpine-based) # ----------------------------------------------------------------- FROM rust:alpine AS debug # Make the build-time argument available as a run-time environment variable ARG RUST_TARGET=x86_64-unknown-linux-musl ARG TZ=UTC # Make the build-time argument available as a run-time environment variable ENV RUST_TARGET=${RUST_TARGET} ENV TZ=${TZ} # Install build dependencies, debugger and ffmpeg for Alpine. # 'build-base' contains gcc, make, etc. # 'gdb' is required for the debugger (lldb is often more complicated in Alpine repos) # 'ffmpeg' is required for the probe feature RUN apk add --no-cache bash build-base perl lldb gdb ffmpeg # Update Rust toolchain and add the necessary target RUN rustup update && rustup target add $RUST_TARGET # Create the app layout to simulate the production environment WORKDIR /app COPY --from=trunk-build /src/frontend/dist ./web COPY --from=resource-build /src/resources ./resources # Create a separate directory for the source code WORKDIR /usr/src/tuliprox COPY . . # Copy the entrypoint script and set it as the entry point for the container COPY ./docker/debug/debug-entrypoint.sh /usr/local/bin/entrypoint.sh # Ensure the script is executable RUN chmod +x /usr/local/bin/entrypoint.sh ENTRYPOINT ["/usr/local/bin/entrypoint.sh"] # The CMD is passed as an argument to the Entrypoint script. # This keeps the container running indefinitely for interactive debugging. CMD ["tail", "-f", "/dev/null"] # ----------------------------------------------------------------- # Final Image #2: Production image based on scratch # ----------------------------------------------------------------- FROM scratch AS scratch-final ARG RUST_TARGET=x86_64-unknown-linux-musl # Copy timezone data and localtime from tz-prep COPY --from=tz-prep /output/usr/share/zoneinfo /usr/share/zoneinfo COPY --from=tz-prep /output/etc/localtime /etc/localtime # Copy SSL certificates from a builder stage that has them COPY --from=rust-build /etc/ssl/certs/ca-certificates.crt /etc/ssl/certs/ # Copy static ffmpeg/ffprobe binaries COPY --from=ffmpeg-static /ffmpeg /usr/local/bin/ COPY --from=ffmpeg-static /ffprobe /usr/local/bin/ # App WORKDIR /app COPY --from=rust-build /src/target/${RUST_TARGET}/release/tuliprox ./tuliprox COPY --from=trunk-build /src/frontend/dist ./web COPY --from=resource-build /src/resources ./resources ENTRYPOINT ["/app/tuliprox"] CMD ["-s", "-p", "/app/config"] # ----------------------------------------------------------------- # Final Image #3: Production image based on Alpine # ----------------------------------------------------------------- FROM alpine:latest AS alpine-final ARG RUST_TARGET=x86_64-unknown-linux-musl ARG TZ=UTC ENV TZ=${TZ} # Install dependencies including ffmpeg RUN apk add --no-cache bash curl ca-certificates tini ffmpeg # Copy timezone data and localtime from tz-prep COPY --from=tz-prep /output/usr/share/zoneinfo /usr/share/zoneinfo COPY --from=tz-prep /output/etc/localtime /etc/localtime # Copy SSL certificates `ca-certificates` from Alpine-based Stage (tz-prep ist Alpine) COPY --from=tz-prep /etc/ssl/certs/ca-certificates.crt /etc/ssl/certs/ # Default timezone fallback RUN ln -sf /usr/share/zoneinfo/${TZ} /etc/localtime WORKDIR /app COPY --from=rust-build /src/target/${RUST_TARGET}/release/tuliprox ./tuliprox COPY --from=trunk-build /src/frontend/dist ./web COPY --from=resource-build /src/resources ./resources ENTRYPOINT ["/sbin/tini", "--", "/app/tuliprox"] CMD ["-s", "-p", "/app/config"]