mirror of
https://github.com/coder/code-server.git
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afb8662d4d
This way workflows will still work even if there have been enough runs to push the version branch run off the first page.
125 lines
3.4 KiB
Bash
Executable File
125 lines
3.4 KiB
Bash
Executable File
#!/usr/bin/env bash
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set -euo pipefail
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pushd() {
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builtin pushd "$@" > /dev/null
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}
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popd() {
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builtin popd > /dev/null
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}
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pkg_json_version() {
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jq -r .version package.json
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}
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vscode_version() {
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jq -r .version lib/vscode/package.json
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}
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os() {
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local os
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os=$(uname | tr '[:upper:]' '[:lower:]')
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if [[ $os == "linux" ]]; then
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# Alpine's ldd doesn't have a version flag but if you use an invalid flag
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# (like --version) it outputs the version to stderr and exits with 1.
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local ldd_output
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ldd_output=$(ldd --version 2>&1 || true)
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if echo "$ldd_output" | grep -iq musl; then
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os="alpine"
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fi
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elif [[ $os == "darwin" ]]; then
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os="macos"
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fi
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echo "$os"
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}
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arch() {
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cpu="$(uname -m)"
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case "$cpu" in
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aarch64)
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echo arm64
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;;
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x86_64 | amd64)
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echo amd64
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;;
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*)
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echo "$cpu"
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;;
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esac
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}
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# Grabs the most recent ci.yaml github workflow run that was triggered from the
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# pull request of the release branch for this version (regardless of whether
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# that run succeeded or failed). The release branch name must be in semver
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# format with a v prepended.
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# This will contain the artifacts we want.
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# https://developer.github.com/v3/actions/workflow-runs/#list-workflow-runs
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get_artifacts_url() {
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local artifacts_url
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local version_branch="v$VERSION"
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local workflow_runs_url="repos/:owner/:repo/actions/workflows/ci.yaml/runs?event=pull_request&branch=$version_branch"
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artifacts_url=$(gh api "$workflow_runs_url" | jq -r ".workflow_runs[] | select(.head_branch == \"$version_branch\") | .artifacts_url" | head -n 1)
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if [[ -z "$artifacts_url" ]]; then
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echo >&2 "ERROR: artifacts_url came back empty"
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echo >&2 "We looked for a successful run triggered by a pull_request with for code-server version: $VERSION and a branch named $version_branch"
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echo >&2 "URL used for gh API call: $workflow_runs_url"
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exit 1
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fi
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echo "$artifacts_url"
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}
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# Grabs the artifact's download url.
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# https://developer.github.com/v3/actions/artifacts/#list-workflow-run-artifacts
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get_artifact_url() {
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local artifact_name="$1"
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gh api "$(get_artifacts_url)" | jq -r ".artifacts[] | select(.name == \"$artifact_name\") | .archive_download_url" | head -n 1
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}
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# Uses the above two functions to download a artifact into a directory.
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download_artifact() {
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local artifact_name="$1"
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local dst="$2"
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local tmp_file
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tmp_file="$(mktemp)"
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gh api "$(get_artifact_url "$artifact_name")" > "$tmp_file"
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unzip -q -o "$tmp_file" -d "$dst"
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rm "$tmp_file"
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}
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rsync() {
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command rsync -a --del "$@"
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}
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VERSION="$(pkg_json_version)"
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export VERSION
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ARCH="$(arch)"
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export ARCH
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OS=$(os)
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export OS
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# RELEASE_PATH is the destination directory for the release from the root.
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# Defaults to release
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RELEASE_PATH="${RELEASE_PATH-release}"
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# VS Code bundles some modules into an asar which is an archive format that
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# works like tar. It then seems to get unpacked into node_modules.asar.
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#
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# I don't know why they do this but all the dependencies they bundle already
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# exist in node_modules so just symlink it. We have to do this since not only VS
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# Code itself but also extensions will look specifically in this directory for
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# files (like the ripgrep binary or the oniguruma wasm).
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symlink_asar() {
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rm -rf node_modules.asar
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if [ "${WINDIR-}" ]; then
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# mklink takes the link name first.
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mklink /J node_modules.asar node_modules
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else
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# ln takes the link name second.
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ln -s node_modules node_modules.asar
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fi
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}
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