275 lines
8.5 KiB
Bash
Executable file
275 lines
8.5 KiB
Bash
Executable file
#!/usr/bin/env bash
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set -e
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export MSYS_NO_PATHCONV=1
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script=`cd $(dirname $0) && pwd`/`basename $0`
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image=""
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dev=0
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while [[ $# -gt 0 ]]
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do
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case "$1" in
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--dev)
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dev=1
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;;
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*)
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if [ -n "$image" ]
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then
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echo "expected single argument for the image name"
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exit 1
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fi
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image="$1"
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;;
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esac
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shift
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done
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script_dir="`dirname $script`"
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docker_dir="${script_dir}/host-$(uname -m)"
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ci_dir="`dirname $script_dir`"
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src_dir="`dirname $ci_dir`"
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root_dir="`dirname $src_dir`"
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objdir=$root_dir/obj
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dist=$objdir/build/dist
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source "$ci_dir/shared.sh"
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CACHE_DOMAIN="${CACHE_DOMAIN:-ci-caches.rust-lang.org}"
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if [ -f "$docker_dir/$image/Dockerfile" ]; then
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if [ "$CI" != "" ]; then
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hash_key=/tmp/.docker-hash-key.txt
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rm -f "${hash_key}"
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echo $image >> $hash_key
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cat "$docker_dir/$image/Dockerfile" >> $hash_key
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# Look for all source files involves in the COPY command
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copied_files=/tmp/.docker-copied-files.txt
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rm -f "$copied_files"
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for i in $(sed -n -e '/^COPY --from=/! s/^COPY \(.*\) .*$/\1/p' \
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"$docker_dir/$image/Dockerfile"); do
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# List the file names
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find "$script_dir/$i" -type f >> $copied_files
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done
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# Sort the file names and cat the content into the hash key
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sort $copied_files | xargs cat >> $hash_key
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# Include the architecture in the hash key, since our Linux CI does not
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# only run in x86_64 machines.
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uname -m >> $hash_key
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docker --version >> $hash_key
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cksum=$(sha512sum $hash_key | \
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awk '{print $1}')
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url="https://$CACHE_DOMAIN/docker/$cksum"
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echo "Attempting to download $url"
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rm -f /tmp/rustci_docker_cache
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set +e
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retry curl --max-time 600 -y 30 -Y 10 --connect-timeout 30 -f -L -C - \
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-o /tmp/rustci_docker_cache "$url"
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echo "Loading images into docker"
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# docker load sometimes hangs in the CI, so time out after 10 minutes with TERM,
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# KILL after 12 minutes
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loaded_images=$(/usr/bin/timeout -k 720 600 docker load -i /tmp/rustci_docker_cache \
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| sed 's/.* sha/sha/')
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set -e
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echo "Downloaded containers:\n$loaded_images"
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fi
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dockerfile="$docker_dir/$image/Dockerfile"
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if [ -x /usr/bin/cygpath ]; then
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context="`cygpath -w $script_dir`"
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dockerfile="`cygpath -w $dockerfile`"
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else
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context="$script_dir"
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fi
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retry docker \
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build \
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--rm \
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-t rust-ci \
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-f "$dockerfile" \
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"$context"
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if [ "$CI" != "" ]; then
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s3url="s3://$SCCACHE_BUCKET/docker/$cksum"
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upload="aws s3 cp - $s3url"
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digest=$(docker inspect rust-ci --format '{{.Id}}')
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echo "Built container $digest"
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if ! grep -q "$digest" <(echo "$loaded_images"); then
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echo "Uploading finished image to $url"
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set +e
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docker history -q rust-ci | \
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grep -v missing | \
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xargs docker save | \
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gzip | \
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$upload
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set -e
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else
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echo "Looks like docker image is the same as before, not uploading"
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fi
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# Record the container image for reuse, e.g. by rustup.rs builds
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info="$dist/image-$image.txt"
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mkdir -p "$dist"
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echo "$url" >"$info"
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echo "$digest" >>"$info"
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fi
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elif [ -f "$docker_dir/disabled/$image/Dockerfile" ]; then
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if isCI; then
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echo Cannot run disabled images on CI!
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exit 1
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fi
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# Transform changes the context of disabled Dockerfiles to match the enabled ones
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tar --transform 's#disabled/#./#' -C $script_dir -c . | docker \
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build \
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--rm \
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-t rust-ci \
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-f "host-$(uname -m)/$image/Dockerfile" \
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-
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else
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echo Invalid image: $image
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# Check whether the image exists for other architectures
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for arch_dir in "${script_dir}"/host-*; do
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# Avoid checking non-directories and the current host architecture directory
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if ! [[ -d "${arch_dir}" ]]; then
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continue
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fi
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if [[ "${arch_dir}" = "${docker_dir}" ]]; then
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continue
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fi
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arch_name="$(basename "${arch_dir}" | sed 's/^host-//')"
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if [[ -f "${arch_dir}/${image}/Dockerfile" ]]; then
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echo "Note: the image exists for the ${arch_name} host architecture"
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elif [[ -f "${arch_dir}/disabled/${image}/Dockerfile" ]]; then
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echo "Note: the disabled image exists for the ${arch_name} host architecture"
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else
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continue
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fi
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echo "Note: the current host architecture is $(uname -m)"
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done
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exit 1
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fi
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mkdir -p $HOME/.cargo
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mkdir -p $objdir/tmp
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mkdir -p $objdir/cores
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mkdir -p /tmp/toolstate
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args=
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if [ "$SCCACHE_BUCKET" != "" ]; then
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args="$args --env SCCACHE_BUCKET"
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args="$args --env SCCACHE_REGION"
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args="$args --env AWS_ACCESS_KEY_ID"
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args="$args --env AWS_SECRET_ACCESS_KEY"
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args="$args --env AWS_REGION"
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else
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mkdir -p $HOME/.cache/sccache
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args="$args --env SCCACHE_DIR=/sccache --volume $HOME/.cache/sccache:/sccache"
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fi
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# Run containers as privileged as it should give them access to some more
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# syscalls such as ptrace and whatnot. In the upgrade to LLVM 5.0 it was
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# discovered that the leak sanitizer apparently needs these syscalls nowadays so
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# we'll need `--privileged` for at least the `x86_64-gnu` builder, so this just
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# goes ahead and sets it for all builders.
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args="$args --privileged"
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# Things get a little weird if this script is already running in a docker
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# container. If we're already in a docker container then we assume it's set up
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# to do docker-in-docker where we have access to a working `docker` command.
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#
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# If this is the case (we check via the presence of `/.dockerenv`)
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# then we can't actually use the `--volume` argument. Typically we use
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# `--volume` to efficiently share the build and source directory between this
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# script and the container we're about to spawn. If we're inside docker already
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# though the `--volume` argument maps the *host's* folder to the container we're
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# about to spawn, when in fact we want the folder in this container itself. To
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# work around this we use a recipe cribbed from
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# https://circleci.com/docs/2.0/building-docker-images/#mounting-folders to
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# create a temporary container with a volume. We then copy the entire source
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# directory into this container, and then use that copy in the container we're
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# about to spawn. Finally after the build finishes we re-extract the object
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# directory.
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#
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# Note that none of this is necessary if we're *not* in a docker-in-docker
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# scenario. If this script is run on a bare metal host then we share a bunch of
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# data directories to share as much data as possible. Note that we also use
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# `LOCAL_USER_ID` (recognized in `src/ci/run.sh`) to ensure that files are all
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# read/written as the same user as the bare-metal user.
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if [ -f /.dockerenv ]; then
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docker create -v /checkout --name checkout alpine:3.4 /bin/true
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docker cp . checkout:/checkout
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args="$args --volumes-from checkout"
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else
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args="$args --volume $root_dir:/checkout:ro"
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args="$args --volume $objdir:/checkout/obj"
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args="$args --volume $HOME/.cargo:/cargo"
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args="$args --volume $HOME/rustsrc:$HOME/rustsrc"
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args="$args --volume /tmp/toolstate:/tmp/toolstate"
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id=$(id -u)
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if [[ "$id" != 0 && "$(docker -v)" =~ ^podman ]]; then
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# Rootless podman creates a separate user namespace, where an inner
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# LOCAL_USER_ID will map to a different subuid range on the host.
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# The "keep-id" mode maps the current UID directly into the container.
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args="$args --env NO_CHANGE_USER=1 --userns=keep-id"
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else
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args="$args --env LOCAL_USER_ID=$id"
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fi
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fi
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if [ "$dev" = "1" ]
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then
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# Interactive + TTY
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args="$args -it"
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command="/bin/bash"
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else
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command="/checkout/src/ci/run.sh"
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fi
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if [ "$CI" != "" ]; then
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# Get some needed information for $BASE_COMMIT
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#
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# This command gets the last merge commit which we'll use as base to list
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# deleted files since then.
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BASE_COMMIT="$(git log --author=bors@rust-lang.org -n 2 --pretty=format:%H | tail -n 1)"
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else
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BASE_COMMIT=""
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fi
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docker \
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run \
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--workdir /checkout/obj \
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--env SRC=/checkout \
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$args \
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--env CARGO_HOME=/cargo \
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--env DEPLOY \
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--env DEPLOY_ALT \
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--env CI \
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--env TF_BUILD \
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--env BUILD_SOURCEBRANCHNAME \
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--env GITHUB_ACTIONS \
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--env GITHUB_REF \
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--env TOOLSTATE_REPO_ACCESS_TOKEN \
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--env TOOLSTATE_REPO \
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--env TOOLSTATE_PUBLISH \
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--env RUST_CI_OVERRIDE_RELEASE_CHANNEL \
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--env CI_JOB_NAME="${CI_JOB_NAME-$IMAGE}" \
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--env BASE_COMMIT="$BASE_COMMIT" \
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--init \
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--rm \
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rust-ci \
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$command
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if [ -f /.dockerenv ]; then
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rm -rf $objdir
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docker cp checkout:/checkout/obj $objdir
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fi
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