release workflow: Add build scripts for jobs and means to upload pkgs
This commit is contained in:

committed by
Peter Scheibel

parent
a6e8e889b2
commit
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13
bin/rebuild-index.sh
Executable file
13
bin/rebuild-index.sh
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#!/bin/bash
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# Copyright 2013-2019 Lawrence Livermore National Security, LLC and other
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# Spack Project Developers. See the top-level COPYRIGHT file for details.
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#
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# SPDX-License-Identifier: (Apache-2.0 OR MIT)
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set -x
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SPACK_BIN_DIR="${CI_PROJECT_DIR}/bin"
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export PATH="${SPACK_BIN_DIR}:${PATH}"
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spack upload-s3 index
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bin/rebuild-package.sh
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316
bin/rebuild-package.sh
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#!/bin/bash
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# Copyright 2013-2019 Lawrence Livermore National Security, LLC and other
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# Spack Project Developers. See the top-level COPYRIGHT file for details.
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#
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# SPDX-License-Identifier: (Apache-2.0 OR MIT)
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###
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### This script represents a gitlab-ci job, corresponding to a single release
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### spec. As such this script must first decide whether or not the spec it
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### has been assigned is up to date on the remote binary mirror. If it is
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### not (i.e. the source code has changed in a way that caused a change in the
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### full_hash of the spec), this script will build the package, create a
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### binary cache for it, and then push all related files to the remote binary
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### mirror. This script also communicates with a remote CDash instance to
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### share status on the package build process.
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###
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### The following environment variables are expected to be set in order for
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### the various elements in this script to function properly. Listed first
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### are two defaults we rely on from gitlab, then three we set up in the
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### variables section of gitlab ourselves, and finally four variables
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### written into the .gitlab-ci.yml file.
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###
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### CI_PROJECT_DIR
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### CI_JOB_NAME
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###
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### AWS_ACCESS_KEY_ID
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### AWS_SECRET_ACCESS_KEY
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### SPACK_SIGNING_KEY
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###
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### CDASH_BASE_URL
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### ROOT_SPEC
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### DEPENDENCIES
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### MIRROR_URL
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###
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shopt -s expand_aliases
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export FORCE_UNSAFE_CONFIGURE=1
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TEMP_DIR="${CI_PROJECT_DIR}/jobs_scratch_dir"
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JOB_LOG_DIR="${TEMP_DIR}/logs"
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SPEC_DIR="${TEMP_DIR}/specs"
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LOCAL_MIRROR="${CI_PROJECT_DIR}/local_mirror"
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BUILD_CACHE_DIR="${LOCAL_MIRROR}/build_cache"
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SPACK_BIN_DIR="${CI_PROJECT_DIR}/bin"
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CDASH_UPLOAD_URL="${CDASH_BASE_URL}/submit.php?project=Spack"
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DEP_JOB_RELATEBUILDS_URL="${CDASH_BASE_URL}/api/v1/relateBuilds.php"
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declare -a JOB_DEPS_PKG_NAMES
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export SPACK_ROOT=${CI_PROJECT_DIR}
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export PATH="${SPACK_BIN_DIR}:${PATH}"
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export GNUPGHOME="${CI_PROJECT_DIR}/opt/spack/gpg"
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mkdir -p ${JOB_LOG_DIR}
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mkdir -p ${SPEC_DIR}
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cleanup() {
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set +x
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if [ -z "$exit_code" ] ; then
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exit_code=$1
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if [ -z "$exit_code" ] ; then
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exit_code=0
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fi
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restore_io
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if [ "$( type -t finalize )" '=' 'function' ] ; then
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finalize "$JOB_LOG_DIR/cdash_log.txt"
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fi
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# We can clean these out later on, once we have a good sense for
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# how the logging infrastructure is working
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# rm -rf "$JOB_LOG_DIR"
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fi
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\exit $exit_code
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}
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alias exit='cleanup'
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begin_logging() {
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trap "cleanup 1; \\exit \$exit_code" INT TERM QUIT
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trap "cleanup 0; \\exit \$exit_code" EXIT
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rm -rf "$JOB_LOG_DIR/cdash_log.txt"
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# NOTE: Here, some redirects are set up
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exec 3>&1 # fd 3 is now a dup of stdout
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exec 4>&2 # fd 4 is now a dup of stderr
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# stdout and stderr are joined and redirected to the log
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exec &> "$JOB_LOG_DIR/cdash_log.txt"
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set -x
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}
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restore_io() {
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exec >&-
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exec 2>&-
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exec >&3
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exec 2>&4
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exec 3>&-
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exec 4>&-
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}
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finalize() {
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# If you define a finalize function:
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# - it will always be called at the very end of the script
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# - the log file will be passed in as the first argument, and
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# - the code in this function will not be logged.
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echo "The full log file is located at $1"
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# TODO: send this log data to cdash!
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}
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check_error()
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{
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local last_exit_code=$1
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local last_cmd=$2
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if [[ ${last_exit_code} -ne 0 ]]; then
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echo "${last_cmd} exited with code ${last_exit_code}"
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echo "TERMINATING JOB"
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exit 1
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else
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echo "${last_cmd} completed successfully"
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fi
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}
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extract_build_id()
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{
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LINES_TO_SEARCH=$1
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regex="buildSummary\.php\?buildid=([[:digit:]]+)"
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SINGLE_LINE_OUTPUT=$(echo ${LINES_TO_SEARCH} | tr -d '\n')
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if [[ ${SINGLE_LINE_OUTPUT} =~ ${regex} ]]; then
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echo "${BASH_REMATCH[1]}"
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else
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echo "NONE"
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fi
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}
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get_relate_builds_post_data()
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{
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cat <<EOF
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{
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"project": "${1}",
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"buildid": ${2},
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"relatedid": ${3},
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"relationship": "depends on"
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}
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EOF
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}
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gen_full_specs_for_job_and_deps() {
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read -ra PARTSARRAY <<< "${CI_JOB_NAME}"
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local pkgName="${PARTSARRAY[0]}"
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local pkgVersion="${PARTSARRAY[1]}"
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local compiler="${PARTSARRAY[2]}"
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local osarch="${PARTSARRAY[3]}"
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JOB_SPEC_NAME="${pkgName}@${pkgVersion}%${compiler} arch=${osarch}"
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JOB_PKG_NAME="${pkgName}"
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SPEC_YAML_PATH="${SPEC_DIR}/${pkgName}.yaml"
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local root_spec_name="${ROOT_SPEC}"
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local spec_names_to_save="${pkgName}"
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IFS=';' read -ra DEPS <<< "${DEPENDENCIES}"
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for i in "${DEPS[@]}"; do
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read -ra PARTSARRAY <<< "${i}"
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pkgName="${PARTSARRAY[0]}"
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spec_names_to_save="${spec_names_to_save} ${pkgName}"
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JOB_DEPS_PKG_NAMES+=("${pkgName}")
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done
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spack -d buildcache save-yaml --specs "${spec_names_to_save}" --root-spec "${root_spec_name}" --yaml-dir "${SPEC_DIR}"
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}
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begin_logging
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gen_full_specs_for_job_and_deps
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echo "Building package ${JOB_SPEC_NAME}, ${HASH}, ${MIRROR_URL}"
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# Finally, list the compilers spack knows about
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echo "Compiler Configurations:"
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spack config get compilers
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# Make the build_cache directory if it doesn't exist
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mkdir -p "${BUILD_CACHE_DIR}"
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# Get buildcache name so we can write a CDash build id file in the right place.
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# If we're unable to get the buildcache name, we may have encountered a problem
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# concretizing the spec, or some other issue that will eventually cause the job
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# to fail.
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JOB_BUILD_CACHE_ENTRY_NAME=`spack -d buildcache get-buildcache-name --spec-yaml "${SPEC_YAML_PATH}"`
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if [[ $? -ne 0 ]]; then
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echo "ERROR, unable to get buildcache entry name for job ${CI_JOB_NAME} (spec: ${JOB_SPEC_NAME})"
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exit 1
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fi
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# This should create the directory we referred to as GNUPGHOME earlier
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spack gpg list
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# Importing the secret key using gpg2 directly should allow to
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# sign and verify both
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set +x
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KEY_IMPORT_RESULT=`echo ${SPACK_SIGNING_KEY} | base64 --decode | gpg2 --import`
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check_error $? "gpg2 --import"
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set -x
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spack gpg list --trusted
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spack gpg list --signing
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# Whether we have to build the spec or download it pre-built, we expect to find
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# the cdash build id file sitting in this location afterwards.
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JOB_CDASH_ID_FILE="${BUILD_CACHE_DIR}/${JOB_BUILD_CACHE_ENTRY_NAME}.cdashid"
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# Finally, we can check the spec we have been tasked with build against
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# the built binary on the remote mirror to see if it needs to be rebuilt
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spack -d buildcache check --spec-yaml "${SPEC_YAML_PATH}" --mirror-url "${MIRROR_URL}" --rebuild-on-error
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if [[ $? -ne 0 ]]; then
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# Configure mirror
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spack mirror add local_artifact_mirror "file://${LOCAL_MIRROR}"
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JOB_CDASH_ID="NONE"
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# Install package, using the buildcache from the local mirror to
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# satisfy dependencies.
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BUILD_ID_LINE=`spack -d -k -v install --use-cache --cdash-upload-url "${CDASH_UPLOAD_URL}" --cdash-build "${JOB_SPEC_NAME}" --cdash-site "Spack AWS Gitlab Instance" --cdash-track "Experimental" -f "${SPEC_YAML_PATH}" | grep "buildSummary\\.php"`
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check_error $? "spack install"
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# By parsing the output of the "spack install" command, we can get the
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# buildid generated for us by CDash
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JOB_CDASH_ID=$(extract_build_id "${BUILD_ID_LINE}")
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# Create buildcache entry for this package, reading the spec from the yaml
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# file.
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spack -d buildcache create --spec-yaml "${SPEC_YAML_PATH}" -a -f -d "${LOCAL_MIRROR}" --no-rebuild-index
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check_error $? "spack buildcache create"
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# Write the .cdashid file to the buildcache as well
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echo "${JOB_CDASH_ID}" >> ${JOB_CDASH_ID_FILE}
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# TODO: The upload-s3 command should eventually be replaced with something
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# like: "spack buildcache put <mirror> <spec>", when that subcommand is
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# properly implemented.
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spack -d upload-s3 spec --base-dir "${LOCAL_MIRROR}" --spec-yaml "${SPEC_YAML_PATH}"
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check_error $? "spack upload-s3 spec"
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else
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echo "spec ${JOB_SPEC_NAME} is already up to date on remote mirror, downloading it"
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# Configure remote mirror so we can download buildcache entry
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spack mirror add remote_binary_mirror ${MIRROR_URL}
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# Now download it
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spack -d buildcache download --spec-yaml "${SPEC_YAML_PATH}" --path "${BUILD_CACHE_DIR}/" --require-cdashid
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check_error $? "spack buildcache download"
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fi
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# The next step is to relate this job to the jobs it depends on
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if [ -f "${JOB_CDASH_ID_FILE}" ]; then
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JOB_CDASH_BUILD_ID=$(<${JOB_CDASH_ID_FILE})
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if [ "${JOB_CDASH_BUILD_ID}" == "NONE" ]; then
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echo "ERROR: unable to read this jobs id from ${JOB_CDASH_ID_FILE}"
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exit 1
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fi
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# Now get CDash ids for dependencies and "relate" each dependency build
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# with this jobs build
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for DEP_PKG_NAME in "${JOB_DEPS_PKG_NAMES[@]}"; do
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echo "Getting cdash id for dependency --> ${DEP_PKG_NAME} <--"
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DEP_SPEC_YAML_PATH="${SPEC_DIR}/${DEP_PKG_NAME}.yaml"
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DEP_JOB_BUILDCACHE_NAME=`spack -d buildcache get-buildcache-name --spec-yaml "${DEP_SPEC_YAML_PATH}"`
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if [[ $? -eq 0 ]]; then
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DEP_JOB_ID_FILE="${BUILD_CACHE_DIR}/${DEP_JOB_BUILDCACHE_NAME}.cdashid"
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echo "DEP_JOB_ID_FILE path = ${DEP_JOB_ID_FILE}"
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if [ -f "${DEP_JOB_ID_FILE}" ]; then
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DEP_JOB_CDASH_BUILD_ID=$(<${DEP_JOB_ID_FILE})
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echo "File ${DEP_JOB_ID_FILE} contained value ${DEP_JOB_CDASH_BUILD_ID}"
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echo "Relating builds -> ${JOB_SPEC_NAME} (buildid=${JOB_CDASH_BUILD_ID}) depends on ${DEP_PKG_NAME} (buildid=${DEP_JOB_CDASH_BUILD_ID})"
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relateBuildsPostBody="$(get_relate_builds_post_data "Spack" ${JOB_CDASH_BUILD_ID} ${DEP_JOB_CDASH_BUILD_ID})"
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relateBuildsResult=`curl "${DEP_JOB_RELATEBUILDS_URL}" -H "Content-Type: application/json" -H "Accept: application/json" -d "${relateBuildsPostBody}"`
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echo "Result of curl request: ${relateBuildsResult}"
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else
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echo "ERROR: Did not find expected .cdashid file for dependency: ${DEP_JOB_ID_FILE}"
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exit 1
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fi
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else
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echo "ERROR: Unable to get buildcache entry name for ${DEP_SPEC_NAME}"
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exit 1
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fi
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done
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else
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echo "ERROR: Did not find expected .cdashid file ${JOB_CDASH_ID_FILE}"
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exit 1
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fi
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# Show the size of the buildcache and a list of what's in it, directly
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# in the gitlab log output
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(
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restore_io
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du -sh ${BUILD_CACHE_DIR}
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find ${BUILD_CACHE_DIR} -maxdepth 3 -type d -ls
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)
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echo "End of rebuild package script"
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