mirror of
https://github.com/safing/portmaster
synced 2025-04-03 18:49:11 +00:00
738 lines
25 KiB
Text
738 lines
25 KiB
Text
VERSION --arg-scope-and-set --global-cache 0.8
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ARG --global go_version = 1.24
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ARG --global node_version = 18
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ARG --global rust_version = 1.79
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ARG --global golangci_lint_version = 1.64.6
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ARG --global go_builder_image = "golang:${go_version}-alpine"
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ARG --global node_builder_image = "node:${node_version}"
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ARG --global rust_builder_image = "rust:${rust_version}-bookworm"
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ARG --global work_image = "alpine"
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ARG --global outputDir = "./dist"
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# Architectures:
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# The list of rust targets we support. They will be automatically converted
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# to GOOS, GOARCH and GOARM when building go binaries. See the +RUST_TO_GO_ARCH_STRING
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# helper method at the bottom of the file.
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#
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# Linux:
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# x86_64-unknown-linux-gnu
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# aarch64-unknown-linux-gnu
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# armv7-unknown-linux-gnueabihf
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# arm-unknown-linux-gnueabi
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#
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# Windows:
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# x86_64-pc-windows-gnu
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# aarch64-pc-windows-gnu
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#
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# Mac:
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# x86_64-apple-darwin
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# aarch64-apple-darwin
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# Import the earthly rust lib since it already provides some useful
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# build-targets and methods to initialize the rust toolchain.
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IMPORT github.com/earthly/lib/rust:3.0.2 AS rust
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build:
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# Build all Golang binaries:
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# ./dist/linux_amd64/portmaster-core
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# ./dist/linux_amd64/portmaster-start
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# ./dist/linux_arm64/portmaster-core
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# ./dist/linux_arm64/portmaster-start
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# ./dist/windows_amd64/portmaster-core.exe
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# ./dist/windows_amd64/portmaster-start.exe
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# ./dist/windows_arm64/portmaster-core.exe
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# ./dist/windows_arm64/portmaster-start.exe
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BUILD +go-build --GOOS="linux" --GOARCH="amd64"
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BUILD +go-build --GOOS="linux" --GOARCH="arm64"
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BUILD +go-build --GOOS="windows" --GOARCH="amd64"
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BUILD +go-build --GOOS="windows" --GOARCH="arm64"
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# Build the Angular UI:
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# ./dist/all/portmaster-ui.zip
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BUILD +angular-release
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# Build Tauri app binaries:
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# ./dist/linux_amd64/portmaster-app
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# ./dist/linux_amd64/Portmaster-0.1.0-1.x86_64.rpm
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# ./dist/linux_amd64/Portmaster_0.1.0_amd64.deb
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BUILD +tauri-build --target="x86_64-unknown-linux-gnu"
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# TODO:
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# BUILD +tauri-build --target="x86_64-pc-windows-gnu"
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# Bild Tauri bundle for Windows:
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# ./dist/windows_amd64/portmaster-app_vX-X-X.zip
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BUILD +tauri-build-windows-bundle
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# Build UI assets:
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# ./dist/all/assets.zip
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BUILD +assets
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build-spn:
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BUILD +go-build --CMDS="hub" --GOOS="linux" --GOARCH="amd64"
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BUILD +go-build --CMDS="hub" --GOOS="linux" --GOARCH="arm64"
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# TODO: Add other platforms
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go-ci:
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BUILD +go-build --GOOS="linux" --GOARCH="amd64"
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BUILD +go-build --GOOS="linux" --GOARCH="arm64"
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BUILD +go-build --GOOS="windows" --GOARCH="amd64"
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BUILD +go-build --GOOS="windows" --GOARCH="arm64"
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BUILD +go-test
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angular-ci:
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BUILD +angular-release
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tauri-ci:
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BUILD +tauri-build --target="x86_64-unknown-linux-gnu"
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BUILD +tauri-build-windows-bundle
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kext-ci:
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BUILD +kext-build
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release:
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LOCALLY
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IF ! git diff --quiet
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RUN echo -e "\033[1;31m Refusing to release a dirty git repository. Please commit your local changes first! \033[0m" ; exit 1
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END
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BUILD +build
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go-deps:
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FROM ${go_builder_image}
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WORKDIR /go-workdir
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# We need the git cli to extract version information for go-builds
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RUN apk add git
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# These cache dirs will be used in later test and build targets
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# to persist cached go packages.
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#
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# NOTE: cache only gets persisted on successful builds. A test
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# failure will prevent the go cache from being persisted.
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ENV GOCACHE = "/.go-cache"
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ENV GOMODCACHE = "/.go-mod-cache"
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# Copying only go.mod and go.sum means that the cache for this
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# target will only be busted when go.mod/go.sum change. This
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# means that we can cache the results of 'go mod download'.
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COPY go.mod .
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COPY go.sum .
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RUN go mod download
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# Explicitly cache here.
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SAVE IMAGE --cache-hint
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go-base:
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FROM +go-deps
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# Copy the full repo, as Go embeds whether the state is clean.
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COPY . .
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LET version = "$(git tag --points-at || true)"
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IF [ -z "${version}" ]
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LET dev_version = "$(git describe --tags --first-parent --abbrev=0 || true)"
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IF [ -n "${dev_version}" ]
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SET version = "${dev_version}_dev_build"
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END
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END
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IF [ -z "${version}" ]
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SET version = "dev_build"
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END
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ENV VERSION="${version}"
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RUN echo "Version: $VERSION"
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LET source = $( ( git remote -v | cut -f2 | cut -d" " -f1 | head -n 1 ) || echo "unknown" )
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ENV SOURCE="${source}"
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RUN echo "Source: $SOURCE"
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LET build_time = $(date -u "+%Y-%m-%dT%H:%M:%SZ" || echo "unknown")
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ENV BUILD_TIME = "${build_time}"
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RUN echo "Build Time: $BUILD_TIME"
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# Explicitly cache here.
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SAVE IMAGE --cache-hint
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# updates all go dependencies and runs go mod tidy, saving go.mod and go.sum locally.
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go-update-deps:
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FROM +go-base
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RUN go get -u ./..
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RUN go mod tidy
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SAVE ARTIFACT --keep-ts go.mod AS LOCAL go.mod
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SAVE ARTIFACT --keep-ts --if-exists go.sum AS LOCAL go.sum
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# mod-tidy runs 'go mod tidy', saving go.mod and go.sum locally.
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mod-tidy:
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FROM +go-base
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RUN go mod tidy
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SAVE ARTIFACT --keep-ts go.mod AS LOCAL go.mod
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SAVE ARTIFACT --keep-ts --if-exists go.sum AS LOCAL go.sum
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# go-build runs 'go build ./cmds/...', saving artifacts locally.
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# If --CMDS is not set, it defaults to building portmaster-start, portmaster-core and hub
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go-build:
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FROM +go-base
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# Arguments for cross-compilation.
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ARG GOOS=linux
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ARG GOARCH=amd64
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ARG GOARM
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ARG CMDS=portmaster-start portmaster-core
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CACHE --sharing shared "$GOCACHE"
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CACHE --sharing shared "$GOMODCACHE"
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RUN mkdir /tmp/build
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# Fall back to build all binaries when none is specified.
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IF [ "${CMDS}" = "" ]
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LET CMDS=$(ls -1 "./cmds/")
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END
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# Build all go binaries from the specified in CMDS
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FOR bin IN $CMDS
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# Add special build options.
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IF [ "${GOOS}" = "windows" ] && [ "${bin}" = "portmaster-start" ]
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# Windows, portmaster-start
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ENV CGO_ENABLED = "1"
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ENV EXTRA_LD_FLAGS = "-H windowsgui"
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ELSE
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# Defaults
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ENV CGO_ENABLED = "0"
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ENV EXTRA_LD_FLAGS = ""
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END
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RUN --no-cache go build -ldflags="${EXTRA_LD_FLAGS} -X github.com/safing/portmaster/base/info.version=${VERSION} -X github.com/safing/portmaster/base/info.buildSource=${SOURCE} -X github.com/safing/portmaster/base/info.buildTime=${BUILD_TIME}" -o "/tmp/build/" ./cmds/${bin}
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END
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DO +GO_ARCH_STRING --goos="${GOOS}" --goarch="${GOARCH}" --goarm="${GOARM}"
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FOR bin IN $(ls -1 "/tmp/build/")
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SAVE ARTIFACT --keep-ts "/tmp/build/${bin}" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/${bin}"
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END
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SAVE ARTIFACT --keep-ts "/tmp/build/" ./output
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spn-image:
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# Use minimal image as base.
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FROM alpine
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# Copy the static executable.
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COPY (+go-build/output/portmaster-start --GOARCH=amd64 --GOOS=linux --CMDS=portmaster-start) /init/portmaster-start
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# Copy the init script
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COPY spn/tools/container-init.sh /init.sh
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# Run the hub.
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ENTRYPOINT ["/init.sh"]
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# Get version.
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LET version = "$(/init/portmaster-start version --short | tr ' ' -)"
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RUN echo "Version: ${version}"
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# Save dev image
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SAVE IMAGE "spn:latest"
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SAVE IMAGE "spn:${version}"
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SAVE IMAGE "ghcr.io/safing/spn:latest"
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SAVE IMAGE "ghcr.io/safing/spn:${version}"
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# Test one or more go packages.
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# Test are always run as -short, as "long" tests require a full desktop system.
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# Run `earthly +go-test` to test all packages
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# Run `earthly +go-test --PKG="service/firewall"` to only test a specific package.
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# Run `earthly +go-test --TESTFLAGS="-args arg1"` to add custom flags to go test (-args in this case)
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go-test:
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FROM +go-base
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ARG GOOS=linux
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ARG GOARCH=amd64
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ARG GOARM
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ARG TESTFLAGS
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ARG PKG="..."
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CACHE --sharing shared "$GOCACHE"
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CACHE --sharing shared "$GOMODCACHE"
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FOR pkg IN $(go list -e "./${PKG}")
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RUN --no-cache go test -cover -short ${pkg} ${TESTFLAGS}
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END
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go-test-all:
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FROM ${work_image}
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ARG --required architectures
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FOR arch IN ${architectures}
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DO +RUST_TO_GO_ARCH_STRING --rustTarget="${arch}"
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BUILD +go-test --GOARCH="${GOARCH}" --GOOS="${GOOS}" --GOARM="${GOARM}"
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END
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go-lint:
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FROM +go-base
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RUN go install github.com/golangci/golangci-lint/cmd/golangci-lint@v${golangci_lint_version}
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RUN golangci-lint run -c ./.golangci.yml --timeout 15m --show-stats
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# Builds portmaster-start, portmaster-core, hub and notifier for all supported platforms
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go-release:
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FROM ${work_image}
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ARG --required architectures
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FOR arch IN ${architectures}
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DO +RUST_TO_GO_ARCH_STRING --rustTarget="${arch}"
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IF [ -z GOARCH ]
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RUN echo "Failed to extract GOARCH for ${arch}"; exit 1
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END
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IF [ -z GOOS ]
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RUN echo "Failed to extract GOOS for ${arch}"; exit 1
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END
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BUILD +go-build --GOARCH="${GOARCH}" --GOOS="${GOOS}" --GOARM="${GOARM}"
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END
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# Builds all binaries from the cmds/ folder for linux/windows AMD64
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# Most utility binaries are never needed on other platforms.
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go-build-utils:
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BUILD +go-build --CMDS="" --GOARCH=amd64 --GOOS=linux
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BUILD +go-build --CMDS="" --GOARCH=amd64 --GOOS=windows
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# Prepares the angular project by installing dependencies
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angular-deps:
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FROM ${node_builder_image}
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WORKDIR /app/ui
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RUN apt update && apt install zip
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COPY desktop/angular/package.json .
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COPY desktop/angular/package-lock.json .
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RUN npm install
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# Copies the UI folder into the working container
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# and builds the shared libraries in the specified configuration (production or development)
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angular-base:
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FROM +angular-deps
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ARG configuration="production"
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COPY desktop/angular/ .
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# Remove symlink and copy assets directly.
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RUN rm ./assets
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COPY assets/data ./assets
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IF [ "${configuration}" = "production" ]
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RUN --no-cache npm run build-libs
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ELSE
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RUN --no-cache npm run build-libs:dev
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END
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# Explicitly cache here.
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SAVE IMAGE --cache-hint
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# Build an angualr project, zip it and save artifacts locally
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angular-project:
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ARG --required project
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ARG --required dist
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ARG configuration="production"
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ARG baseHref="/"
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FROM +angular-base --configuration="${configuration}"
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IF [ "${configuration}" = "production" ]
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ENV NODE_ENV="production"
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END
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RUN --no-cache ./node_modules/.bin/ng build --configuration ${configuration} --base-href ${baseHref} "${project}"
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RUN --no-cache cwd=$(pwd) && cd "${dist}" && zip -r "${cwd}/${project}.zip" ./
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SAVE ARTIFACT --keep-ts "${dist}" "./output/${project}"
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# Save portmaster UI as local artifact.
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IF [ "${project}" = "portmaster" ]
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SAVE ARTIFACT --keep-ts "./${project}.zip" AS LOCAL ${outputDir}/all/${project}-ui.zip
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END
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# Build the angular projects (portmaster-UI and tauri-builtin) in dev mode
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angular-dev:
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BUILD +angular-project --project=portmaster --dist=./dist --configuration=development --baseHref=/ui/modules/portmaster/
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BUILD +angular-project --project=tauri-builtin --dist=./dist/tauri-builtin --configuration=development --baseHref=/
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# Build the angular projects (portmaster-UI and tauri-builtin) in production mode
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angular-release:
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BUILD +angular-project --project=portmaster --dist=./dist --configuration=production --baseHref=/ui/modules/portmaster/
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BUILD +angular-project --project=tauri-builtin --dist=./dist/tauri-builtin --configuration=production --baseHref=/
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assets:
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FROM ${work_image}
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RUN apk add zip
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WORKDIR /app/assets
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COPY --keep-ts ./assets/data .
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RUN zip -r -9 -db assets.zip *
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SAVE ARTIFACT --keep-ts "assets.zip" AS LOCAL "${outputDir}/all/assets.zip"
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# A base target for rust to prepare the build container
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rust-base:
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FROM ${rust_builder_image}
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RUN apt-get update -qq
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# Tools and libraries required for cross-compilation
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RUN apt-get install --no-install-recommends -qq \
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autoconf \
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autotools-dev \
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libtool-bin \
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clang \
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cmake \
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bsdmainutils \
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gcc-multilib \
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linux-libc-dev \
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linux-libc-dev-amd64-cross \
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build-essential \
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curl \
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wget \
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file \
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libsoup-3.0-dev \
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libwebkit2gtk-4.1-dev \
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gcc-mingw-w64-x86-64 \
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zip
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# Install library dependencies for all supported architectures
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# required for succesfully linking.
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RUN apt-get install --no-install-recommends -qq \
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libsoup-3.0-0 \
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libwebkit2gtk-4.1-0 \
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libssl3 \
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libayatana-appindicator3-1 \
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librsvg2-bin \
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libgtk-3-0 \
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libjavascriptcoregtk-4.1-0 \
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libssl-dev \
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libayatana-appindicator3-dev \
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librsvg2-dev \
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libgtk-3-dev \
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libjavascriptcoregtk-4.1-dev
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# Add some required rustup components
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RUN rustup component add clippy
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RUN rustup component add rustfmt
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DO rust+INIT --keep_fingerprints=true
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# For now we need tauri-cli 2.0.0 for bulding
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DO rust+CARGO --args="install tauri-cli --version 2.1.0 --locked"
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# Explicitly cache here.
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SAVE IMAGE --cache-hint
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tauri-src:
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FROM +rust-base
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WORKDIR /app/tauri
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# --keep-ts is necessary to ensure that the timestamps of the source files
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# are preserved such that Rust's incremental compilation works correctly.
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COPY --keep-ts ./desktop/tauri/ .
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COPY assets/data ./../../assets/data
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COPY packaging/linux ./../../packaging/linux
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COPY (+angular-project/output/tauri-builtin --project=tauri-builtin --dist=./dist/tauri-builtin --configuration=production --baseHref="/") ./../angular/dist/tauri-builtin
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WORKDIR /app/tauri/src-tauri
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# Explicitly cache here.
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SAVE IMAGE --cache-hint
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tauri-build:
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FROM +tauri-src
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ARG --required target
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ARG output=".*/release/(([^\./]+|([^\./]+\.(dll|exe)))|bundle/(deb|rpm)/.*\.(deb|rpm))"
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ARG bundle="none"
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# if we want tauri to create the installer bundles we also need to provide all external binaries
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# we need to do some magic here because tauri expects the binaries to include the rust target tripple.
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# We already know that triple because it's a required argument. From that triple, we use +RUST_TO_GO_ARCH_STRING
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# function from below to parse the triple and guess wich GOOS and GOARCH we need.
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RUN mkdir /tmp/gobuild
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RUN mkdir ./binaries
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DO +RUST_TO_GO_ARCH_STRING --rustTarget="${target}"
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RUN echo "GOOS=${GOOS} GOARCH=${GOARCH} GOARM=${GOARM} GO_ARCH_STRING=${GO_ARCH_STRING}"
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# Our tauri app has externalBins configured so tauri will try to embed them when it finished compiling
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# the app. Make sure we copy portmaster-start and portmaster-core in all architectures supported.
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# See documentation for externalBins for more information on how tauri searches for the binaries.
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COPY (+go-build/output --CMDS="portmaster-start portmaster-core" --GOOS="${GOOS}" --GOARCH="${GOARCH}" --GOARM="${GOARM}") /tmp/gobuild
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# Place them in the correct folder with the rust target tripple attached.
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FOR bin IN $(ls /tmp/gobuild)
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# ${bin$.*} does not work in SET commands unfortunately so we use a shell
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# snippet here:
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RUN set -e ; \
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dest="./binaries/${bin}-${target}" ; \
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if [ -z "${bin##*.exe}" ]; then \
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dest="./binaries/${bin%.*}-${target}.exe" ; \
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fi ; \
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cp "/tmp/gobuild/${bin}" "${dest}" ;
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END
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|
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# Just for debugging ...
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# RUN ls -R ./binaries
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|
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# The following is exected to work but doesn't. for whatever reason cargo-sweep errors out on the windows-toolchain.
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#
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# DO rust+CARGO --args="tauri build --bundles none --ci --target=${target}" --output="release/[^/\.]+"
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#
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|
# For, now, we just directly mount the rust target cache and call cargo ourself.
|
|
|
|
DO rust+SET_CACHE_MOUNTS_ENV
|
|
RUN rustup target add "${target}"
|
|
RUN --mount=$EARTHLY_RUST_TARGET_CACHE cargo tauri build --ci --target="${target}"
|
|
DO rust+COPY_OUTPUT --output="${output}"
|
|
|
|
# BUG(cross-compilation):
|
|
#
|
|
# The above command seems to correctly compile for all architectures we want to support but fails during
|
|
# linking since the target libaries are not available for the requested platforms. Maybe we need to download
|
|
# the, manually ...
|
|
#
|
|
# The earthly rust lib also has support for using cross-rs for cross-compilation but that fails due to the
|
|
# fact that cross-rs base docker images used for building are heavily outdated (latest = ubunut:16.0, main = ubuntu:20.04)
|
|
# which does not ship recent enough glib versions (our glib dependency needs glib>2.70 but ubunut:20.04 only ships 2.64)
|
|
#
|
|
# The following would use the CROSS function from the earthly lib, this
|
|
# DO rust+CROSS --target="${target}"
|
|
|
|
RUN echo output: $(ls -R "target/${target}/release")
|
|
|
|
# Binaries
|
|
SAVE ARTIFACT --if-exists --keep-ts "target/${target}/release/app" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/portmaster-app"
|
|
SAVE ARTIFACT --if-exists --keep-ts "target/${target}/release/app.exe" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/portmaster-app.exe"
|
|
SAVE ARTIFACT --if-exists --keep-ts "target/${target}/release/WebView2Loader.dll" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/WebView2Loader.dll"
|
|
|
|
# Installers
|
|
SAVE ARTIFACT --if-exists --keep-ts "target/${target}/release/bundle/deb/*.deb" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/"
|
|
SAVE ARTIFACT --if-exists --keep-ts "target/${target}/release/bundle/rpm/*.rpm" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/"
|
|
|
|
tauri-build-windows-bundle:
|
|
FROM +tauri-src
|
|
|
|
ARG target="x86_64-pc-windows-gnu"
|
|
ARG output=".*/release/(([^\./]+|([^\./]+\.(dll|exe))))"
|
|
ARG bundle="none"
|
|
|
|
ARG GOOS=windows
|
|
ARG GOARCH=amd64
|
|
ARG GOARM
|
|
|
|
# The binaries will not be used but we still need to create them. Tauri will check for them.
|
|
RUN mkdir /tmp/gobuild
|
|
RUN mkdir ./binaries
|
|
|
|
DO +RUST_TO_GO_ARCH_STRING --rustTarget="${target}"
|
|
RUN echo "GOOS=${GOOS} GOARCH=${GOARCH} GOARM=${GOARM} GO_ARCH_STRING=${GO_ARCH_STRING}"
|
|
|
|
# Our tauri app has externalBins configured so tauri will look for them when it finished compiling
|
|
# the app. Make sure we copy portmaster-start and portmaster-core in all architectures supported.
|
|
# See documentation for externalBins for more information on how tauri searches for the binaries.
|
|
COPY (+go-build/output --GOOS="${GOOS}" --CMDS="portmaster-start portmaster-core" --GOARCH="${GOARCH}" --GOARM="${GOARM}") /tmp/gobuild
|
|
|
|
# Place them in the correct folder with the rust target tripple attached.
|
|
FOR bin IN $(ls /tmp/gobuild)
|
|
# ${bin$.*} does not work in SET commands unfortunately so we use a shell
|
|
# snippet here:
|
|
RUN set -e ; \
|
|
dest="./binaries/${bin}-${target}" ; \
|
|
if [ -z "${bin##*.exe}" ]; then \
|
|
dest="./binaries/${bin%.*}-${target}.exe" ; \
|
|
fi ; \
|
|
cp "/tmp/gobuild/${bin}" "${dest}" ;
|
|
END
|
|
|
|
# Just for debugging ...
|
|
# RUN ls -R ./binaries
|
|
|
|
DO rust+SET_CACHE_MOUNTS_ENV
|
|
RUN rustup target add "${target}"
|
|
RUN --mount=$EARTHLY_RUST_TARGET_CACHE cargo tauri build --no-bundle --ci --target="${target}"
|
|
DO rust+COPY_OUTPUT --output="${output}"
|
|
|
|
# Get version from git.
|
|
COPY .git .
|
|
LET version = "$(git tag --points-at || true)"
|
|
IF [ -z "${version}" ]
|
|
LET dev_version = "$(git describe --tags --first-parent --abbrev=0 || true)"
|
|
IF [ -n "${dev_version}" ]
|
|
SET version = "${dev_version}"
|
|
END
|
|
END
|
|
IF [ -z "${version}" ]
|
|
SET version = "v0.0.0"
|
|
END
|
|
ENV VERSION="${version}"
|
|
RUN echo "Version: $VERSION"
|
|
ENV VERSION_SUFFIX="$(echo $VERSION | tr '.' '-')"
|
|
RUN echo "Version Suffix: $VERSION_SUFFIX"
|
|
|
|
RUN echo output: $(ls -R "target/${target}/release")
|
|
RUN mv "target/${target}/release/app.exe" "target/${target}/release/portmaster-app_${VERSION_SUFFIX}.exe"
|
|
RUN zip "target/${target}/release/portmaster-app_${VERSION_SUFFIX}.zip" "target/${target}/release/portmaster-app_${VERSION_SUFFIX}.exe" -j portmaster-app${VERSION_SUFFIX}.exe "target/${target}/release/WebView2Loader.dll" -j WebView2Loader.dll
|
|
SAVE ARTIFACT --if-exists "target/${target}/release/portmaster-app_${VERSION_SUFFIX}.zip" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/"
|
|
|
|
tauri-prep-windows:
|
|
FROM +angular-base --configuration=production
|
|
ARG target="x86_64-pc-windows-msvc"
|
|
|
|
# if we want tauri to create the installer bundles we also need to provide all external binaries
|
|
# we need to do some magic here because tauri expects the binaries to include the rust target tripple.
|
|
# We already know that triple because it's a required argument. From that triple, we use +RUST_TO_GO_ARCH_STRING
|
|
# function from below to parse the triple and guess wich GOOS and GOARCH we need.
|
|
RUN mkdir /tmp/gobuild
|
|
RUN mkdir ./binaries
|
|
|
|
DO +RUST_TO_GO_ARCH_STRING --rustTarget="${target}"
|
|
RUN echo "GOOS=${GOOS} GOARCH=${GOARCH} GOARM=${GOARM} GO_ARCH_STRING=${GO_ARCH_STRING}"
|
|
|
|
# Our tauri app has externalBins configured so tauri will try to embed them when it finished compiling
|
|
# the app. Make sure we copy portmaster-start and portmaster-core in all architectures supported.
|
|
# See documentation for externalBins for more information on how tauri searches for the binaries.
|
|
|
|
COPY (+go-build/output --GOOS="${GOOS}" --CMDS="portmaster-start portmaster-core" --GOARCH="${GOARCH}" --GOARM="${GOARM}") /tmp/gobuild
|
|
|
|
# Place them in the correct folder with the rust target tripple attached.
|
|
FOR bin IN $(ls /tmp/gobuild)
|
|
# ${bin$.*} does not work in SET commands unfortunately so we use a shell
|
|
# snippet here:
|
|
RUN set -e ; \
|
|
dest="./binaries/${bin}-${target}" ; \
|
|
if [ -z "${bin##*.exe}" ]; then \
|
|
dest="./binaries/${bin%.*}-${target}.exe" ; \
|
|
fi ; \
|
|
cp "/tmp/gobuild/${bin}" "${dest}" ;
|
|
END
|
|
|
|
# Copy source
|
|
COPY --keep-ts ./desktop/tauri/src-tauri src-tauri
|
|
COPY --keep-ts ./assets assets
|
|
|
|
# Build UI
|
|
ENV NODE_ENV="production"
|
|
RUN --no-cache ./node_modules/.bin/ng build --configuration production --base-href / "tauri-builtin"
|
|
|
|
# Just for debugging ...
|
|
# RUN ls -R ./binaries
|
|
# RUN ls -R ./dist
|
|
|
|
SAVE ARTIFACT "./dist/tauri-builtin" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/desktop/angular/dist/"
|
|
SAVE ARTIFACT "./src-tauri" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/desktop/tauri/src-tauri"
|
|
SAVE ARTIFACT "./binaries" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/desktop/tauri/src-tauri/"
|
|
SAVE ARTIFACT "./assets" AS LOCAL "${outputDir}/${GO_ARCH_STRING}/assets"
|
|
|
|
tauri-release:
|
|
FROM ${work_image}
|
|
ARG --required architectures
|
|
|
|
FOR arch IN ${architectures}
|
|
BUILD +tauri-build --target="${arch}"
|
|
END
|
|
|
|
kext-build:
|
|
FROM ${rust_builder_image}
|
|
|
|
# Install architecture target
|
|
DO rust+INIT --keep_fingerprints=true
|
|
|
|
# Build kext
|
|
WORKDIR /app/kext
|
|
# --keep-ts is necessary to ensure that the timestamps of the source files
|
|
# are preserved such that Rust's incremental compilation works correctly.
|
|
COPY --keep-ts ./windows_kext/ .
|
|
|
|
# Add target architecture
|
|
RUN rustup target add x86_64-pc-windows-msvc
|
|
|
|
# Build using special earthly lib
|
|
WORKDIR /app/kext/release
|
|
DO rust+CARGO --args="run"
|
|
|
|
SAVE ARTIFACT --keep-ts "portmaster-kext-release-bundle.zip" AS LOCAL "${outputDir}/windows_amd64/portmaster-kext-release-bundle.zip"
|
|
|
|
|
|
# Takes GOOS, GOARCH and optionally GOARM and creates a string representation for file-names.
|
|
# in the form of ${GOOS}_{GOARCH} if GOARM is empty, otherwise ${GOOS}_${GOARCH}v${GOARM}.
|
|
# Thats the same format as expected and served by our update server.
|
|
#
|
|
# The result is available as GO_ARCH_STRING environment variable in the build context.
|
|
GO_ARCH_STRING:
|
|
FUNCTION
|
|
ARG --required goos
|
|
ARG --required goarch
|
|
ARG goarm
|
|
|
|
LET result = "${goos}_${goarch}"
|
|
IF [ "${goarm}" != "" ]
|
|
SET result = "${goos}_${goarch}v${goarm}"
|
|
END
|
|
|
|
ENV GO_ARCH_STRING="${result}"
|
|
|
|
# Takes a rust target (--rustTarget) and extracts architecture and OS and arm version
|
|
# and finally calls GO_ARCH_STRING.
|
|
#
|
|
# The result is available as GO_ARCH_STRING environment variable in the build context.
|
|
# It also exports GOOS, GOARCH and GOARM environment variables.
|
|
RUST_TO_GO_ARCH_STRING:
|
|
FUNCTION
|
|
ARG --required rustTarget
|
|
|
|
LET goos=""
|
|
IF [ -z "${rustTarget##*linux*}" ]
|
|
SET goos="linux"
|
|
ELSE IF [ -z "${rustTarget##*windows*}" ]
|
|
SET goos="windows"
|
|
ELSE IF [ -z "${rustTarget##*darwin*}" ]
|
|
SET goos="darwin"
|
|
ELSE
|
|
RUN echo "GOOS not detected"; \
|
|
exit 1;
|
|
END
|
|
|
|
LET goarch=""
|
|
LET goarm=""
|
|
IF [ -z "${rustTarget##*x86_64*}" ]
|
|
SET goarch="amd64"
|
|
ELSE IF [ -z "${rustTarget##*arm*}" ]
|
|
SET goarch="arm"
|
|
SET goarm="6"
|
|
|
|
IF [ -z "${rustTarget##*v7*}" ]
|
|
SET goarm="7"
|
|
END
|
|
ELSE IF [ -z "${rustTarget##*aarch64*}" ]
|
|
SET goarch="arm64"
|
|
ELSE
|
|
RUN echo "GOARCH not detected"; \
|
|
exit 1;
|
|
END
|
|
|
|
ENV GOOS="${goos}"
|
|
ENV GOARCH="${goarch}"
|
|
ENV GOARM="${goarm}"
|
|
|
|
DO +GO_ARCH_STRING --goos="${goos}" --goarch="${goarch}" --goarm="${goarm}"
|
|
|
|
# Takes an architecture or GOOS string and sets the BINEXT env var.
|
|
BIN_EXT:
|
|
FUNCTION
|
|
ARG --required arch
|
|
|
|
LET binext=""
|
|
IF [ -z "${arch##*windows*}" ]
|
|
SET binext=".exe"
|
|
END
|
|
ENV BINEXT="${goos}"
|