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common_functions.sh
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common_functions.sh
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#!/usr/bin/env bash
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# https://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
#
# Config files
tags_config_file="config/tags.config"
# shellcheck disable=SC2034
openj9_config_file="config/openj9.config"
# shellcheck disable=SC2034
hotspot_config_file="config/hotspot.config"
# Test lists
# shellcheck disable=SC2034
test_image_types_file="config/test_image_types.list"
# shellcheck disable=SC2034
test_image_types_all_file="config/test_image_types_all.list"
# shellcheck disable=SC2034
test_buckets_file="config/test_buckets.list"
# All supported JVMs
# shellcheck disable=SC2034 # used externally
all_jvms="hotspot openj9"
# Supported arches for each of the os_families
os_families="linux alpine-linux windows"
linux_arches="aarch64 armv7l ppc64le s390x x86_64"
alpine_linux_arches="x86_64"
windows_arches="windows-amd windows-nano"
# All supported packages
# shellcheck disable=SC2034 # used externally
all_packages="jdk jre"
# All supported runtypes
# shellcheck disable=SC2034 # used externally
all_runtypes="build test"
# Setting the OS's built in test
PR_TEST_OSES="ubuntu alpine ubi"
# `runtype` specifies the reason for running the script, i.e for building images or to test for a PR check
# Supported values for runtype : "build", "test"
# setting default runtype to build (can be changed via `set_runtype` function)
runtype="build"
# Current JVM versions supported
export supported_versions="8 11 15 16"
export latest_version="16"
# Current builds supported
export supported_builds="releases nightly"
function check_version() {
local version=$1
case ${version} in
8|9|10|11|12|13|14|15|16)
;;
*)
echo "ERROR: Invalid version"
;;
esac
}
# Set a valid version
function set_version() {
version=$1
if [ -n "$(check_version "${version}")" ]; then
echo "ERROR: Invalid Version: ${version}"
echo "Usage: $0 [${supported_versions}]"
exit 1
fi
}
# Set runtype
function set_runtype() {
runtype=$1
if [ "${runtype}" != "build" ] && [ "${runtype}" != "test" ]; then
echo "ERROR: Invalid RunType : ${runtype}"
echo "Supported Runtypes : ${all_runtypes}"
exit 1
fi
}
# Set the valid OSes for the current architecure.
function set_arch_os() {
if [ ! -z "$TARGET_ARCHITECTURE" ]; then
# Use buildx environment for build https://www.docker.com/blog/multi-platform-docker-builds/
echo "overiding machine to $TARGET_ARCHITECTURE"
machine="$TARGET_ARCHITECTURE"
else
machine=$(uname -m)
fi
case ${machine} in
armv7l|linux/arm/v7)
current_arch="armv7l"
oses="centos debian debianslim leap tumbleweed ubuntu"
os_family="linux"
;;
aarch64)
current_arch="aarch64"
oses="centos debian debianslim leap tumbleweed ubi ubi-minimal ubuntu"
os_family="linux"
;;
ppc64el|ppc64le)
current_arch="ppc64le"
oses="centos debian debianslim leap tumbleweed ubi ubi-minimal ubuntu"
os_family="linux"
;;
s390x)
current_arch="s390x"
oses="clefos debian debianslim tumbleweed ubi ubi-minimal ubuntu"
os_family="linux"
;;
amd64|x86_64)
case $(uname) in
MINGW64*|MSYS_NT*)
current_arch="x86_64"
# windowsservercore-1809 windowsservercore-1803 are not included as Adopt can't build them
oses="windowsservercore-ltsc2016"
# this variable will only be set when running under GitHub Actions
if [ -n "${BUILD_OS}" ]; then
case ${BUILD_OS} in
windows-2019)
oses="windowsservercore-1809 nanoserver-1809 windowsservercore-ltsc2019"
;;
windows-2016)
oses="windowsservercore-ltsc2016"
;;
esac
fi
os_family="windows"
;;
*)
# shellcheck disable=SC2034 # used externally
current_arch="x86_64"
# shellcheck disable=SC2034 # used externally
oses="alpine centos debian debianslim leap tumbleweed ubi ubi-minimal ubuntu"
# alpine-linux (musl libc) based builds are only available on x86_64 currently
# shellcheck disable=SC2034 # used externally
os_family="alpine-linux linux"
;;
esac
;;
*)
echo "ERROR: Unsupported arch:${machine}, Exiting"
exit 1
;;
esac
}
# get shasums for a given architecture and os_family
# This is based on the hotspot_shasums_latest.sh/openj9_shasums_latest.sh
# arch = aarch64, armv7l, ppc64le, s390x, x86_64
# os_family = alpine-linux, linux, windows
function get_shasum() {
local arch=$2;
local os_family=$3;
if ! declare -p "$1" >/dev/null 2>/dev/null; then
return;
fi
# shellcheck disable=SC2154,SC1083
local shasum=$(sarray=$1[${os_family}_${arch}]; eval esum=\${"$sarray"}; echo "${esum}");
echo "${shasum}"
}
# Get the supported architectures for a given VM (Hotspot, OpenJ9).
# This is based on the hotspot_shasums_latest.sh/openj9_shasums_latest.sh
function get_arches() {
# Check if the array has been defined. Array might be undefined if the
# corresponding build combination does not exist.
# Eg. jdk_openj9_10_releases_sums does not exist as we do not have any
# release builds for version 10 (Only nightly builds).
if ! declare -p "$1" >/dev/null 2>/dev/null; then
return;
fi
local archsums="$(declare -p "$1")";
eval "declare -A sums=""${archsums#*=}";
local arch=""
for arch in "${!sums[@]}";
do
if [[ "${arch}" == version* ]] ; then
continue;
fi
# Arch is supported only if the shasum is not empty !
# shellcheck disable=SC2154,SC1083
local shasum=$(sarray=$1[${arch}]; eval esum=\${"$sarray"}; echo "${esum}");
if [ -n "${shasum}" ]; then
local arch_val=$(echo ${arch} | sed 's/alpine-linux_//; s/linux_//; s/windows_//')
echo "${arch_val} "
fi
done
}
# Check if the given VM is supported on the current architecture.
# This is based on the hotspot_shasums_latest.sh/openj9_shasums_latest.sh
# along with arches present in config/${vm}.config
function vm_supported_onarch_config() {
local vm=$1
local sums=$2
local version=$3
local pkg=$4
local os=$5
local test_arch
if [ -n "$6" ]; then
test_arch=$6;
else
test_arch=$(uname -m)
fi
# First get the arches for which the builds are available as per shasums file
local sup_arches_for_build=$(get_arches "${sums}" | sort | uniq)
# Next, check the arches that are supported for the underlying OS as per config file
local sup_arches_for_os=$(parse_vm_entry "${vm}" "${version}" "${pkg}" "${os}" "Architectures:")
# Now the actual arches are the intersection of the above two
local merge_arches="${sup_arches_for_build} ${sup_arches_for_os}"
local supported_arches=$(echo ${merge_arches} | tr ' ' '\n' | sort | uniq -d)
local sup=$(echo "${supported_arches}" | grep "${test_arch}")
echo "${sup}"
}
function cleanup_images() {
# Delete any old containers that have exited.
docker rm "$(docker ps -a | grep -e 'Exited' | awk '{ print $1 }')" 2>/dev/null
docker container prune -f 2>/dev/null
# Delete any old images for our target_repo on localhost.
for image in $(docker images | grep -e 'adoptopenjdk' | awk -v OFS=':' '{ print $1, $2 }');
do
docker rmi -f "${image}";
done
# Remove any dangling images
docker image prune -f 2>/dev/null
}
function cleanup_manifest() {
# Remove any previously created manifest lists.
# Currently there is no way to do this using the tool.
rm -rf ~/.docker/manifests
}
function clear_build_cache() {
# Reduce the size of the build cache to avoid exhaustion of the space
docker system df
echo Pruning builder cache to 10Gb
# docker on our arm32 machines gives parse error if bigger than this
if [ "$(uname -m)" = "armv7l" ]; then
SPACE_TO_KEEP=2100000000
else
SPACE_TO_KEEP=10000000000
fi
docker builder prune -f --keep-storage ${SPACE_TO_KEEP}
}
# Check if a given docker image exists on the server.
# This script errors out if the image does not exist.
function check_image() {
local img=$1
docker pull "${img}" >/dev/null
ret=$?
echo ${ret}
}
# Parse the openj9.config / hotspot.config file for an entry as specified by $4
# $1 = VM
# $2 = Version
# $3 = Package
# $4 = OS
# $5 = String to look for.
function parse_vm_entry() {
entry=$( < config/"$1".config grep -B 4 -E "$2\/$3\/$4$|$2\/$3\/windows\/$4$" | grep "$5" | sed "s/$5 //")
echo "${entry}"
}
# Parse the openj9.config / hotspot.config file for the supported OSes
# $1 = VM
function parse_os_entry() {
entry=$( < config/"$1".config grep "^OS:" | sed "s/OS: //")
echo "${entry}"
}
# Read the tags file and parse the specific tag.
# $1 = OS
# $2 = Package
# $3 = Build (releases / nightly)
# $4 = Type (full / slim)
function parse_tag_entry() {
tag="$1-$2-$3-$4-tags:"
entry=$( < "${tags_config_file}" grep "${tag}" | sed "s/${tag} //")
echo "${entry}"
}
# Where is the manifest tool installed?"
# Manifest tool (docker with manifest support) needs to be added from here
# https://github.com/clnperez/cli
# $ cd /opt/manifest_tool
# $ git clone -b manifest-cmd https://github.com/clnperez/cli.git
# $ cd cli
# $ make -f docker.Makefile cross
manifest_tool_dir="/opt/manifest_tool"
manifest_tool=${manifest_tool_dir}/cli/build/docker
function check_manifest_tool() {
if docker manifest 2>/dev/null; then
echo "INFO: Docker manifest found at $(command -v docker)"
manifest_tool=$(command -v docker)
else
if [ ! -f "${manifest_tool}" ]; then
echo
echo "ERROR: Docker with manifest support not found at path ${manifest_tool}"
exit 1
fi
fi
}
# Build valid image tags using the tags.config file as the base
function build_tags() {
local vm=$1; shift
local ver=$1; shift;
local pkg=$1; shift;
local rel=$1; shift;
local os=$1; shift;
local build=$1; shift;
local rawtags=$*
local tmpfile=raw_arch_tags.$$.tmp
# For jre builds, replace the version tag to distinguish it from the jdk
if [ "${pkg}" == "jre" ]; then
rel="${rel//jdk/jre}"
fi
# Get the list of supported arches for this vm / ver /os combo
local arches=$(parse_vm_entry "${vm}" "${ver}" "${pkg}" "${os}" "Architectures:")
# Replace the proper version string in the tags
local rtags=$(echo "${rawtags}" | sed "s/{{ JDK_${build}_VER }}/${rel}/gI; s/{{ OS }}/${os}/gI;");
echo "${rtags}" | sed "s/{{ *ARCH *}}/{{ARCH}}/" |
# Separate the arch and the generic alias tags
awk '{ a=0; n=0;
for (i=1; i<=NF; i++) {
if (match($i, "ARCH") > 0) {
atags[a++]=sprintf(" %s", $i);
} else {
natags[n++]=sprintf(" %s", $i);
}
}
} END {
printf("arch_tags: "); for (key in atags) { printf"%s ", atags[key] }; printf"\n";
printf("tag_aliases: "); for (key in natags) { printf"%s ", natags[key] }; printf"\n";
}' > ${tmpfile}
# shellcheck disable=SC2034 # used externally
# tag_aliases is a global variable, used for generating manifest list
tag_aliases=$( < "${tmpfile}" grep "^tag_aliases:" | sed "s/tag_aliases: //")
local raw_arch_tags=$( < "${tmpfile}" grep "^arch_tags:" | sed "s/arch_tags: //")
# arch_tags is a global variable
arch_tags=""
# Iterate through the arch tags and expand to add the supported arches.
local tag=""
local arch=""
for tag in ${raw_arch_tags}
do
for arch in ${arches}
do
windows_pat="windows.*"
if [[ "$arch" =~ ${windows_pat} ]]; then
arch="x86_64"
fi
# Check if all the supported arches are available for this build.
# shellcheck disable=SC2154 #declared externally
supported=$(vm_supported_onarch_config "${vm}" "${shasums}" "${ver}" "${pkg}" "${os}" "${arch}")
if [ -z "${supported}" ]; then
continue;
fi
# shellcheck disable=SC2001
atag=$(echo "${tag}" | sed "s/{{ARCH}}/${arch}"/g)
arch_tags="${arch_tags} ${atag}"
done
done
rm -f ${tmpfile}
}
# Build the URL using adoptopenjdk.net v2 api based on the given parameters
# request_type = info / binary
# release_type = releases / nightly
# url_impl = hotspot / openj9
# url_arch = aarch64 / ppc64le / s390x / x64
# url_pkg = jdk / jre
# url_rel = latest / ${version}
function get_v2_url() {
local request_type=$1
local release_type=$2
local url_impl=$3
local url_pkg=$4
local url_rel=$5
local url_arch=$6
local url_heapsize=normal
local url_version=openjdk${version}
baseurl="https://api.adoptopenjdk.net/v2/${request_type}/${release_type}/${url_version}"
specifiers="openjdk_impl=${url_impl}&type=${url_pkg}&release=${url_rel}&heap_size=${url_heapsize}"
windows_pat="windows.*"
if [ -n "${url_arch}" ]; then
if [[ "${url_arch}" =~ ${windows_pat} ]]; then
specifiers="${specifiers}&arch=x64&os=windows"
else
specifiers="${specifiers}&os=linux&arch=${url_arch}"
fi
else
specifiers="${specifiers}&os=linux"
fi
echo "${baseurl}?${specifiers}"
}
# Get the binary github link for a release given a V2 API URL
function get_v2_binary_url() {
local v2_url=$1
local info_file=/tmp/info_$$.json
if ! curl -Lso ${info_file} "${v2_url}" || [ ! -s ${info_file} ]; then
rm -f ${info_file}
return;
fi
< ${info_file} grep "binary_link" | awk -F '"' '{ print $4 }'
rm -f ${info_file}
}
# Get the installer github link for a release given a V2 API URL
function get_v2_installer_url() {
local v2_url=$1
local info_file=/tmp/info_$$.json
if ! curl -Lso ${info_file} "${v2_url}" || [ ! -s ${info_file} ]; then
rm -f ${info_file}
return;
fi
< ${info_file} grep "installer_link" | awk -F '"' '{ print $4 }'
rm -f ${info_file}
}
# Build the URL using adoptopenjdk.net v3 api based on the given parameters
# request_type = feature_releases
# release_type = ga / ea
# url_impl = hotspot / openj9
# url_arch = aarch64 / ppc64le / s390x / x64
# url_pkg = jdk / jre
# url_os_family = linux / windows / alpine-linux
# https://api.adoptopenjdk.net/v3/assets/feature_releases/11/ga?page=0&page_size=1&release_type=ga&sort_order=DESC&vendor=adoptopenjdk&jvm_impl=openj9&heap_size=normal&architecture=x64&os=linux&image_type=jdk
function get_v3_url() {
local request_type=$1
local release_type=$2
local url_impl=$3
local url_pkg=$4
local url_arch=$5
local url_os_family=$6
local url_heapsize="normal"
if [ "${release_type}" == "releases" ]; then
rel_type="ga"
else
rel_type="ea"
fi
baseurl="https://api.adoptopenjdk.net/v3/assets/${request_type}/${version}/${rel_type}"
specifiers="page=0&page_size=1&sort_order=DESC&vendor=adoptopenjdk"
specifiers="${specifiers}&jvm_impl=${url_impl}&image_type=${url_pkg}&heap_size=${url_heapsize}"
windows_pat="windows.*"
if [ -n "${url_arch}" ]; then
if [[ "${url_arch}" =~ ${windows_pat} ]]; then
specifiers="${specifiers}&architecture=x64&os=windows"
else
specifiers="${specifiers}&architecture=${url_arch}"
if [ -n "${url_os_family}" ]; then
specifiers="${specifiers}&os=${url_os_family}"
else
specifiers="${specifiers}&os=linux"
fi
fi
else
specifiers="${specifiers}&os=linux"
fi
echo "${baseurl}?${specifiers}"
}
# Get the binary github link for a release given a V3 API URL
function get_v3_binary_url() {
local v3_url=$1
local info_file=/tmp/info_$$.json
if ! curl -Lso ${info_file} "${v3_url}" || [ ! -s ${info_file} ]; then
rm -f ${info_file}
return;
fi
python3 -c "import sys, json; print(json.load(sys.stdin)[0]['binaries'][0]['package']['link'])" < "${info_file}"
rm -f ${info_file}
}
# Get the installer github link for a release given a V3 API URL
function get_v3_installer_url() {
local v3_url=$1
local info_file=/tmp/info_$$.json
if ! curl -Lso "${info_file}" "${v3_url}" || [ ! -s ${info_file} ]; then
rm -f ${info_file}
return;
fi
python3 -c "import sys, json; print(json.load(sys.stdin)[0]['binaries'][0]['installer']['link'])" < "${info_file}"
rm -f ${info_file}
}
# Get the short build version from the full version for this specific arch
# $1 = full version
function get_nightly_short_version() {
local arch_build=$1
local arch_full_version=$2
if [ "${arch_build}" = "nightly" ]; then
# Remove date and time at the end of full_version for nightly builds.
# Handle both the old and new date-time formats used by the Adopt build system.
# Older date-time format - 201809270034
# shellcheck disable=SC2001
arch_version=$(echo "${arch_full_version}" | sed 's/-[0-9]\{4\}[0-9]\{2\}[0-9]\{2\}[0-9]\{4\}$//')
# New date-time format - 2018-09-27-00-34
# shellcheck disable=SC2001
arch_version=$(echo "${arch_version}" | sed 's/-[0-9]\{4\}-[0-9]\{2\}-[0-9]\{2\}-[0-9]\{2\}-[0-9]\{2\}$//')
else
arch_version=${arch_full_version}
fi
echo "${arch_version}"
}
# Get the shasums for the given specific build and arch combination.
function get_sums_for_build_arch() {
local ver=$1
local vm=$2
local pkg=$3
local build=$4
local arch=$5
local os_family=$6
if [ -z ${os_family} ]; then
os_family=linux
fi
case ${arch} in
armv7l)
LATEST_URL=$(get_v3_url feature_releases "${build}" "${vm}" "${pkg}" arm "${os_family}");
;;
aarch64)
LATEST_URL=$(get_v3_url feature_releases "${build}" "${vm}" "${pkg}" aarch64 "${os_family}");
;;
ppc64le)
LATEST_URL=$(get_v3_url feature_releases "${build}" "${vm}" "${pkg}" ppc64le "${os_family}");
;;
s390x)
LATEST_URL=$(get_v3_url feature_releases "${build}" "${vm}" "${pkg}" s390x "${os_family}");
;;
x86_64)
LATEST_URL=$(get_v3_url feature_releases "${build}" "${vm}" "${pkg}" x64 "${os_family}");
;;
windows-amd|windows-nano)
os_family=windows
LATEST_URL=$(get_v3_url feature_releases "${build}" "${vm}" "${pkg}" windows "${os_family}");
;;
*)
echo "Unsupported arch: ${arch}"
esac
while :
do
shasum_file="${arch}_${build}_latest"
# Bad builds cause the latest url to return an empty file or sometimes curl fails
if ! curl -Lso "${shasum_file}" "${LATEST_URL}" || [ ! -s "${shasum_file}" ]; then
echo "Latest url not available at url: ${LATEST_URL}"
break;
fi
# Even if the file is not empty, it might just say "No matches"
availability=$(grep -e "No matches" -e "Not found" "${shasum_file}");
# Print the arch and the corresponding shasums to the vm output file
if [ -z "${availability}" ]; then
# If there are multiple builds for a single version, then pick the latest one.
if [ "${arch}" == "windows-amd" ]; then
shasums_url=$(python3 -c "import sys, json; print(json.load(sys.stdin)[0]['binaries'][0]['installer']['checksum_link'])" < "${shasum_file}")
if [ -z "$shasums_url" ]; then
shasums_url=$(python3 -c "import sys, json; print(json.load(sys.stdin)[0]['binaries'][0]['package']['checksum_link'])" < "${shasum_file}")
fi
else
shasums_url=$(python3 -c "import sys, json; print(json.load(sys.stdin)[0]['binaries'][0]['package']['checksum_link'])" < "${shasum_file}")
fi
shasum=$(curl -Ls "${shasums_url}" | sed -e 's/<[^>]*>//g' | awk '{ print $1 }');
# Sometimes shasum files are missing, check for error and do not print on error.
shasum_available=$(echo "${shasum}" | grep -e "No" -e "Not");
if [ -n "${shasum_available}" ]; then
echo "shasum file not available at url: ${shasums_url}"
break;
fi
# Get the release version for this arch from the info file
arch_build_version=$(python3 -c "import sys, json; print(json.load(sys.stdin)[0]['release_name'])" < "${shasum_file}")
# For nightly builds get the short version without the date/time stamp
arch_build_version=$(get_nightly_short_version "${build}" "${arch_build_version}")
# We compare the JDK version info separately from the VM type info because we may have dot releases
arch_build_base_version=$(echo "${arch_build_version}" | cut -d_ -f1)
arch_build_vm_type=$(echo "${arch_build_version}" | cut -s -d_ -f2)
full_version_base_version=$(echo "${full_version}" | cut -d_ -f1)
full_version_vm_type=$(echo "${full_version}" | cut -s -d_ -f2)
# If the latest for the current arch does not match with the latest for the parent arch,
# then skip this arch.
# Parent version in this case would be the "full_version" from function get_sums_for_build
# The parent version will automatically be the latest for all arches as returned by the v2 API
if [[ "${arch_build_base_version}" != "${full_version_base_version}"* || "${arch_build_vm_type}" != "${full_version_vm_type}" ]]; then
echo "Parent version not matching for arch ${arch}: ${arch_build_version}, ${full_version}"
break;
fi
# Get the build date for this arch tarball
arch_last_build_date="$(curl -Lv "${shasums_url}" 2>&1 | grep "Last-Modified" | sed 's/< Last-Modified: //')"
# Convert to time since 1-1-1970
arch_last_build_time="$(date --date "${arch_last_build_date}" +%s)"
# Only print the entry if the shasum is not empty
if [ -n "${shasum}" ]; then
printf "\t[version-%s]=\"%s\"\n" "${os_family}_${arch}" "${arch_build_version}" >> "${ofile_sums}"
printf "\t[version-%s]=\"%s\"\n" "${os_family}_${arch}" "${arch_build_version}" >> "${ofile_build_time}"
printf "\t[%s]=\"%s\"\n" "${os_family}_${arch}" "${shasum}" >> "${ofile_sums}"
printf "\t[%s]=\"%s\"\n" "${os_family}_${arch}" "${arch_last_build_time}" >> "${ofile_build_time}"
fi
fi
break;
done
rm -f "${shasum_file}"
}
# Get shasums for the build and arch combination given
# If no arch given, generate for all valid arches
function get_sums_for_build() {
local ver=$1
local vm=$2
local pkg=$3
local build=$4
info_url=$(get_v3_url feature_releases "${build}" "${vm}" "${pkg}");
# Repeated requests from a script triggers a error threshold on adoptopenjdk.net
sleep 1;
info=$(curl -Ls "${info_url}")
err=$(echo "${info}" | grep -e "Error" -e "No matches" -e "Not found")
if [ -n "${err}" ]; then
return;
fi
full_version=$(echo "${info}" | python3 -c "import sys, json; print(json.load(sys.stdin)[0]['release_name'])")
full_version=$(get_nightly_short_version "${build}" "${full_version}")
# Declare the array with the proper name for shasums and write to the vm output file.
printf "declare -A %s_%s_%s_%s_sums=(\n" "${pkg}" "${vm}" "${ver}" "${build}" >> "${ofile_sums}"
# We have another array for storing the last build time for each arch
printf "declare -A %s_%s_%s_%s_build_time=(\n" "${pkg}" "${vm}" "${ver}" "${build}" >> "${ofile_build_time}"
# Capture the full version according to adoptopenjdk
printf "\t[version]=\"%s\"\n" "${full_version}" >> "${ofile_sums}"
printf "\t[version]=\"%s\"\n" "${full_version}" >> "${ofile_build_time}"
# Need to get shasums for each of the OS Families
# families = alpine-linux, linux and windows
for os_fam in ${os_families}
do
# bash doesnt support '-' in the name of a variable
# So make alpine-linux as alpine_linux
local fam="${os_fam//-/_}"
local arches="${fam}_arches"
for arch in ${!arches}
do
get_sums_for_build_arch "${ver}" "${vm}" "${pkg}" "${build}" "${arch}" "${os_fam}"
done
done
printf ")\n" >> "${ofile_sums}"
printf ")\n" >> "${ofile_build_time}"
echo
echo "sha256sums for the version ${full_version} for build type \"${build}\" is now available in ${ofile_sums}"
echo
}
# get sha256sums for the specific builds and arches given.
# If no build or arch specified, do it for all valid ones.
function get_shasums() {
local ver=$1
local vm=$2
local pkg=$3
local build=$4
local ofile_sums="${vm}_shasums_latest.sh"
local ofile_build_time="${vm}_build_time_latest.sh"
# Dont build the shasums array it already exists for the Ver/VM/Pkg/Build combination
if [ -f "${ofile_sums}" ]; then
# shellcheck disable=SC1090
source ./"${vm}"_shasums_latest.sh
local sums="${pkg}_${vm}_${ver}_${build}_sums"
# File exists, which means shasums for the VM exists.
# Now check for the specific Ver/VM/Pg/Build combo
local suparches=$(get_arches "${sums}")
if [ -n "${suparches}" ]; then
return;
fi
fi
if [ -n "${build}" ]; then
get_sums_for_build "${ver}" "${vm}" "${pkg}" "${build}"
else
for build in ${supported_builds}
do
get_sums_for_build "${ver}" "${vm}" "${pkg}" "${build}"
done
fi
chmod +x "${ofile_sums}" "${ofile_build_time}"
}