mirror of
https://github.com/ilyakooo0/nixpkgs.git
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maintainers/scripts/bootstrap-files: documentation and a script to update tarballs
This script attempts to document the exact procedure used to upload bootstrap binaries used previously. I modeled it after most recent https://github.com/NixOS/nixpkgs/pull/282517 upload. There is one deviation from it to make it easier to handle mass updates for https://github.com/NixOS/nixpkgs/issues/253713: The binaries are expected to be stored in `stdenv/$target` (and not something like `stdenv-linux/i686`. The script handles both native and cross- linux targets. `darwin` will need a bit more work to fin into this scheme, but it should be easy. Example run to generate `i686-linux` update: $ maintainers/scripts/bootstrap-files/refresh-tarballs.bash --commit --targets=i686-unknown-linux-gnu
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85
maintainers/scripts/bootstrap-files/README.md
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maintainers/scripts/bootstrap-files/README.md
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# Bootstrap files
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Currently `nixpkgs` builds most of it's packages using bootstrap seed
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binaries (without the reliance on external inputs):
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- `bootstrap-tools`: an archive with the compiler toolchain and other
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helper tools enough to build the rest of the `nixpkgs`.
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- initial binaries needed to unpack `bootstrap-tools.*`. On `linux`
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it's just `busybox`, on `darwin` it's `sh`, `bzip2`, `mkdir` and
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`cpio`. These binaries can be executed directly from the store.
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These are called "bootstrap files".
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Bootstrap files should always be fetched from hydra and uploaded to
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`tarballs.nixos.org` to guarantee that all the binaries were built from
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the code committed into `nixpkgs` repository.
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The uploads to `tarballs.nixos.org` are done by `@lovesegfault` today.
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This document describes the procedure of updating bootstrap files in
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`nixpkgs`.
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## How to request the bootstrap seed update
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To get the tarballs updated let's use an example `i686-unknown-linux-gnu`
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target:
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1. Create a local update:
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```
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$ maintainers/scripts/bootstrap-files/refresh-tarballs.bash --commit --targets=i686-unknown-linux-gnu
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```
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2. Test the update locally. I'll build local `hello` derivation with
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the result:
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```
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$ nix-build -A hello --argstr system i686-linux
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```
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To validate cross-targets `binfmt` `NixOS` helper can be useful.
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For `riscv64-unknown-linux-gnu` the `/etc/nixox/configuraqtion.nix`
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entry would be `boot.binfmt.emulatedSystems = [ "riscv64-linux" ]`.
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3. Propose the commit as a PR to update bootstrap tarballs, tag people
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who can help you test the updated architecture and once reviewed tag
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`@lovesegfault` to upload the tarballs.
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## Bootstrap files job definitions
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There are two types of bootstrap files:
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- natively built `stdenvBootstrapTools.build` hydra jobs in
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[`nixpkgs:trunk`](https://hydra.nixos.org/jobset/nixpkgs/trunk#tabs-jobs)
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jobset. Incomplete list of examples is:
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* `aarch64-unknown-linux-musl.nix`
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* `i686-unknown-linux-gnu.nix`
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These are Tier 1 hydra platforms.
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- cross-built by `bootstrapTools.build` hydra jobs in
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[`nixpkgs:cross-trunk`](https://hydra.nixos.org/jobset/nixpkgs/cross-trunk#tabs-jobs)
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jobset. Incomplete list of examples is:
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* `mips64el-unknown-linux-gnuabi64.nix`
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* `mips64el-unknown-linux-gnuabin32.nix`
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* `mipsel-unknown-linux-gnu.nix`
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* `powerpc64le-unknown-linux-gnu.nix`
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* `riscv64-unknown-linux-gnu.nix`
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These are usually Tier 2 and lower targets.
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The `.build` job contains `/on-server/` subdirectory with binaries to
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be uploaded to `tarballs.nixos.org`.
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The files are uploaded to `tarballs.nixos.org` by writers to `S3` store.
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## TODOs
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- `pkgs/stdenv/darwin` file layout is slightly different from
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`pkgs/stdenv/linux`. Once `linux` seed update becomes a routine we can
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bring `darwin` in sync if it's feasible.
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- `darwin` definition of `.build` `on-server/` directory layout differs
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and should be updated.
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282
maintainers/scripts/bootstrap-files/refresh-tarballs.bash
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282
maintainers/scripts/bootstrap-files/refresh-tarballs.bash
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#!/usr/bin/env nix-shell
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#! nix-shell --pure
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#! nix-shell -i bash
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#! nix-shell -p curl cacert
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#! nix-shell -p git
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#! nix-shell -p nix
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#! nix-shell -p jq
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# How the refresher works:
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#
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# For a given list of <targets>:
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# 1. fetch latest successful '.build` job
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# 2. fetch oldest evaluation that contained that '.build', extract nixpkgs commit
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# 3. fetch all the `.build` artifacts from '$out/on-server/' directory
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# 4. calculate hashes and craft the commit message with the details on
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# how to upload the result to 'tarballs.nixos.org'
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usage() {
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cat >&2 <<EOF
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Usage:
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$0 [ --commit ] --targets=<target>[,<target>,...]
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The tool must be ran from the root directory of 'nixpkgs' repository.
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Synopsis:
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'refresh-tarballs.bash' script fetches latest bootstrapFiles built
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by hydra, registers them in 'nixpkgs' and provides commands to
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upload seed files to 'tarballs.nixos.org'.
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This is usually done in the following cases:
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1. Single target fix: current bootstrap files for a single target
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are problematic for some reason (target-specific bug). In this
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case we can refresh just that target as:
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\$ $0 --commit --targets=i686-unknown-linux-gnu
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2. Routine refresh: all bootstrap files should be refreshed to avoid
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debugging problems that only occur on very old binaries.
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\$ $0 --commit --all-targets
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To get help on uploading refreshed binaries to 'tarballs.nixos.org'
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please have a look at <maintainers/scripts/bootstrap-files/README.md>.
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EOF
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exit 1
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}
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# log helpers
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die() {
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echo "ERROR: $*" >&2
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exit 1
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}
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info() {
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echo "INFO: $*" >&2
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}
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[[ ${#@} -eq 0 ]] && usage
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# known targets
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NATIVE_TARGETS=(
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aarch64-unknown-linux-gnu
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aarch64-unknown-linux-musl
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i686-unknown-linux-gnu
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x86_64-unknown-linux-gnu
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x86_64-unknown-linux-musl
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# TODO: add darwin here once a few prerequisites are satisfied:
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# - bootstrap-files are factored out into a separate file
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# - the build artifacts are factored out into an `on-server`
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# directory. Right onw if does not match `linux` layout.
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#
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#aarch64-apple-darwin
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#x86_64-apple-darwin
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)
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is_native() {
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local t target=$1
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for t in "${NATIVE_TARGETS[@]}"; do
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[[ $t == $target ]] && return 0
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done
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return 1
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}
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CROSS_TARGETS=(
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armv5tel-unknown-linux-gnueabi
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armv6l-unknown-linux-gnueabihf
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armv6l-unknown-linux-musleabihf
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armv7l-unknown-linux-gnueabihf
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mips64el-unknown-linux-gnuabi64
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mips64el-unknown-linux-gnuabin32
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mipsel-unknown-linux-gnu
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powerpc64le-unknown-linux-gnu
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riscv64-unknown-linux-gnu
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)
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is_cross() {
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local t target=$1
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for t in "${CROSS_TARGETS[@]}"; do
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[[ $t == $target ]] && return 0
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done
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return 1
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}
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# collect passed options
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targets=()
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commit=no
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for arg in "$@"; do
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case "$arg" in
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--all-targets)
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targets+=(
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${CROSS_TARGETS[@]}
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${NATIVE_TARGETS[@]}
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)
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;;
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--targets=*)
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# Convert "--targets=a,b,c" to targets=(a b c) bash array.
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comma_targets=${arg#--targets=}
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targets+=(${comma_targets//,/ })
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;;
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--commit)
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commit=yes
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;;
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*)
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usage
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;;
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esac
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done
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for target in "${targets[@]}"; do
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# Native and cross jobsets differ a bit. We'll have to pick the
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# one based on target name:
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if is_native $target; then
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jobset=nixpkgs/trunk
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job="stdenvBootstrapTools.${target}.build"
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elif is_cross $target; then
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jobset=nixpkgs/cross-trunk
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job="bootstrapTools.${target}.build"
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else
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die "'$target' is not present in either of 'NATIVE_TARGETS' or 'CROSS_TARGETS'. Please add one."
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fi
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# 'nixpkgs' prefix where we will write new tarball hashes
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case "$target" in
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*linux*) nixpkgs_prefix="pkgs/stdenv/linux" ;;
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*darwin*) nixpkgs_prefix="pkgs/stdenv/darwin" ;;
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*) die "don't know where to put '$target'" ;;
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esac
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# We enforce s3 prefix for all targets here. This slightly differs
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# from manual uploads targets where names were chosen inconsistently.
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s3_prefix="stdenv/$target"
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# resolve 'latest' build to the build 'id', construct the link.
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latest_build_uri="https://hydra.nixos.org/job/$jobset/$job/latest"
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latest_build="$target.latest-build"
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info "Fetching latest successful build from '${latest_build_uri}'"
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curl -s -H "Content-Type: application/json" -L "$latest_build_uri" > "$latest_build"
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[[ $? -ne 0 ]] && die "Failed to fetch latest successful build"
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latest_build_id=$(jq '.id' < "$latest_build")
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[[ $? -ne 0 ]] && die "Did not find 'id' in latest build"
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build_uri="https://hydra.nixos.org/build/${latest_build_id}"
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# We pick oldest jobset evaluation and extract the 'nicpkgs' commit.
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#
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# We use oldest instead of latest to make the result more stable
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# across unrelated 'nixpkgs' updates. Ideally two subsequent runs of
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# this refresher should produce the same output (provided there are
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# no bootstrapTools updates committed between the two runs).
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oldest_eval_id=$(jq '.jobsetevals|min' < "$latest_build")
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[[ $? -ne 0 ]] && die "Did not find 'jobsetevals' in latest build"
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eval_uri="https://hydra.nixos.org/eval/${oldest_eval_id}"
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eval_meta="$target.eval-meta"
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info "Fetching oldest eval details from '${eval_uri}' (can take a minute)"
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curl -s -H "Content-Type: application/json" -L "${eval_uri}" > "$eval_meta"
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[[ $? -ne 0 ]] && die "Failed to fetch eval metadata"
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nixpkgs_revision=$(jq --raw-output ".jobsetevalinputs.nixpkgs.revision" < "$eval_meta")
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[[ $? -ne 0 ]] && die "Failed to fetch revision"
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# Extract the build paths out of the build metadata
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drvpath=$(jq --raw-output '.drvpath' < "${latest_build}")
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[[ $? -ne 0 ]] && die "Did not find 'drvpath' in latest build"
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outpath=$(jq --raw-output '.buildoutputs.out.path' < "${latest_build}")
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[[ $? -ne 0 ]] && die "Did not find 'buildoutputs' in latest build"
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build_timestamp=$(jq --raw-output '.timestamp' < "${latest_build}")
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[[ $? -ne 0 ]] && die "Did not find 'timestamp' in latest build"
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build_time=$(TZ=UTC LANG=C date --date="@${build_timestamp}" --rfc-email)
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[[ $? -ne 0 ]] && die "Failed to format timestamp"
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info "Fetching bootstrap tools to calculate hashes from '${outpath}'"
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nix-store --realize "$outpath"
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[[ $? -ne 0 ]] && die "Failed to fetch '${outpath}' from hydra"
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fnames=()
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target_file="${nixpkgs_prefix}/bootstrap-files/${target}.nix"
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info "Writing '${target_file}'"
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{
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# header
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cat <<EOF
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# Autogenerated by maintainers/scripts/bootstrap-files/refresh-tarballs.bash as:
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# $ ./refresh-tarballs.bash --targets=${target}
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#
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# Metadata:
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# - nixpkgs revision: ${nixpkgs_revision}
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# - hydra build: ${latest_build_uri}
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# - resolved hydra build: ${build_uri}
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# - instantiated derivation: ${drvpath}
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# - output directory: ${outpath}
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# - build time: ${build_time}
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{
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EOF
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for p in "${outpath}/on-server"/*; do
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fname=$(basename "$p")
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fnames+=("$fname")
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case "$fname" in
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bootstrap-tools.tar.xz) attr=bootstrapTools ;;
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busybox) attr=$fname ;;
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*) die "Don't know how to map '$fname' to attribute name. Please update me."
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esac
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executable_arg=
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executable_nix=
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if [[ -x "$p" ]]; then
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executable_arg="--executable"
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executable_nix=" executable = true;"
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fi
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sha256=$(nix-prefetch-url $executable_arg --name "$fname" "file://$p")
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[[ $? -ne 0 ]] && die "Failed to get the hash for '$p'"
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sri=$(nix-hash --to-sri "sha256:$sha256")
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[[ $? -ne 0 ]] && die "Failed to convert '$sha256' hash to an SRI form"
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# individual file entries
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cat <<EOF
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$attr = import <nix/fetchurl.nix> {
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url = "http://tarballs.nixos.org/${s3_prefix}/${nixpkgs_revision}/$fname";
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hash = "${sri}";$(printf "\n%s" "${executable_nix}")
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};
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EOF
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done
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# footer
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cat <<EOF
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}
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EOF
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} > "${target_file}"
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target_file_commit_msg=${target}.commit_message
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cat > "$target_file_commit_msg" <<EOF
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${nixpkgs_prefix}: update ${target} bootstrap-files
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sha256sum of files to be uploaded:
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$(
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echo "$ sha256sum ${outpath}/on-server/*"
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sha256sum ${outpath}/on-server/*
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)
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Suggested commands to upload files to 'tarballs.nixos.org':
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$ nix-store --realize ${outpath}
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$ aws s3 cp --recursive --acl public-read ${outpath}/on-server/ s3://nixpkgs-tarballs/${s3_prefix}/${nixpkgs_revision}
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$ aws s3 cp --recursive s3://nixpkgs-tarballs/${s3_prefix}/${nixpkgs_revision} ./
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$ sha256sum ${fnames[*]}
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$ sha256sum ${outpath}/on-server/*
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EOF
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cat "$target_file_commit_msg"
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if [[ $commit == yes ]]; then
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git commit "${target_file}" -F "$target_file_commit_msg"
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else
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info "DRY RUN: git commit ${target_file} -F $target_file_commit_msg"
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fi
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rm -- "$target_file_commit_msg"
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# delete temp files
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rm -- "$latest_build" "$eval_meta"
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done
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