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functions-common
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functions-common
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#!/bin/bash
#
# functions-common - Common functions used by DevStack components
#
# The canonical copy of this file is maintained in the DevStack repo.
# All modifications should be made there and then sync'ed to other repos
# as required.
#
# This file is sorted alphabetically within the function groups.
#
# - Config Functions
# - Control Functions
# - Distro Functions
# - Git Functions
# - OpenStack Functions
# - Package Functions
# - Process Functions
# - Service Functions
# - System Functions
#
# The following variables are assumed to be defined by certain functions:
#
# - ``ENABLED_SERVICES``
# - ``ERROR_ON_CLONE``
# - ``FILES``
# - ``OFFLINE``
# - ``RECLONE``
# - ``REQUIREMENTS_DIR``
# - ``STACK_USER``
# - ``TRACK_DEPENDS``
# - ``http_proxy``, ``https_proxy``, ``no_proxy``
#
# Save trace setting
_XTRACE_FUNCTIONS_COMMON=$(set +o | grep xtrace)
set +o xtrace
# ensure we don't re-source this in the same environment
[[ -z "$_DEVSTACK_FUNCTIONS_COMMON" ]] || return 0
declare -r _DEVSTACK_FUNCTIONS_COMMON=1
# Global Config Variables
declare -A GITREPO
declare -A GITBRANCH
declare -A GITDIR
TRACK_DEPENDS=${TRACK_DEPENDS:-False}
# Save these variables to .stackenv
STACK_ENV_VARS="BASE_SQL_CONN DATA_DIR DEST ENABLED_SERVICES HOST_IP \
KEYSTONE_AUTH_PROTOCOL KEYSTONE_AUTH_URI KEYSTONE_SERVICE_URI \
LOGFILE OS_CACERT SERVICE_HOST SERVICE_PROTOCOL STACK_USER TLS_IP \
HOST_IPV6 SERVICE_IP_VERSION"
# Saves significant environment variables to .stackenv for later use
# Refers to a lot of globals, only TOP_DIR and STACK_ENV_VARS are required to
# function, the rest are simply saved and do not cause problems if they are undefined.
# save_stackenv [tag]
function save_stackenv {
local tag=${1:-""}
# Save some values we generated for later use
time_stamp=$(date "+$TIMESTAMP_FORMAT")
echo "# $time_stamp $tag" >$TOP_DIR/.stackenv
for i in $STACK_ENV_VARS; do
echo $i=${!i} >>$TOP_DIR/.stackenv
done
}
# Update/create user clouds.yaml file.
# clouds.yaml will have
# - A `devstack` entry for the `demo` user for the `demo` project.
# - A `devstack-admin` entry for the `admin` user for the `admin` project.
# write_clouds_yaml
function write_clouds_yaml {
# The location is a variable to allow for easier refactoring later to make it
# overridable. There is currently no usecase where doing so makes sense, so
# it's not currently configurable.
CLOUDS_YAML=/etc/openstack/clouds.yaml
sudo mkdir -p $(dirname $CLOUDS_YAML)
sudo chown -R $STACK_USER /etc/openstack
CA_CERT_ARG=''
if [ -f "$SSL_BUNDLE_FILE" ]; then
CA_CERT_ARG="--os-cacert $SSL_BUNDLE_FILE"
fi
# demo -> devstack
$PYTHON $TOP_DIR/tools/update_clouds_yaml.py \
--file $CLOUDS_YAML \
--os-cloud devstack \
--os-region-name $REGION_NAME \
--os-identity-api-version 3 \
$CA_CERT_ARG \
--os-auth-url $KEYSTONE_AUTH_URI \
--os-username demo \
--os-password $ADMIN_PASSWORD \
--os-project-name demo
# alt_demo -> devstack-alt
$PYTHON $TOP_DIR/tools/update_clouds_yaml.py \
--file $CLOUDS_YAML \
--os-cloud devstack-alt \
--os-region-name $REGION_NAME \
--os-identity-api-version 3 \
$CA_CERT_ARG \
--os-auth-url $KEYSTONE_AUTH_URI \
--os-username alt_demo \
--os-password $ADMIN_PASSWORD \
--os-project-name alt_demo
# admin -> devstack-admin
$PYTHON $TOP_DIR/tools/update_clouds_yaml.py \
--file $CLOUDS_YAML \
--os-cloud devstack-admin \
--os-region-name $REGION_NAME \
--os-identity-api-version 3 \
$CA_CERT_ARG \
--os-auth-url $KEYSTONE_AUTH_URI \
--os-username admin \
--os-password $ADMIN_PASSWORD \
--os-project-name admin
# CLean up any old clouds.yaml files we had laying around
rm -f $(eval echo ~"$STACK_USER")/.config/openstack/clouds.yaml
}
# trueorfalse <True|False> <VAR>
#
# Normalize config-value provided in variable VAR to either "True" or
# "False". If VAR is unset (i.e. $VAR evaluates as empty), the value
# of the second argument will be used as the default value.
#
# Accepts as False: 0 no No NO false False FALSE
# Accepts as True: 1 yes Yes YES true True TRUE
#
# usage:
# VAL=$(trueorfalse False VAL)
function trueorfalse {
local xtrace
xtrace=$(set +o | grep xtrace)
set +o xtrace
local default=$1
if [ -z $2 ]; then
die $LINENO "variable to normalize required"
fi
local testval=${!2:-}
case "$testval" in
"1" | [yY]es | "YES" | [tT]rue | "TRUE" ) echo "True" ;;
"0" | [nN]o | "NO" | [fF]alse | "FALSE" ) echo "False" ;;
* ) echo "$default" ;;
esac
$xtrace
}
function isset {
[[ -v "$1" ]]
}
# Control Functions
# =================
# Prints backtrace info
# filename:lineno:function
# backtrace level
function backtrace {
local level=$1
local deep
deep=$((${#BASH_SOURCE[@]} - 1))
echo "[Call Trace]"
while [ $level -le $deep ]; do
echo "${BASH_SOURCE[$deep]}:${BASH_LINENO[$deep-1]}:${FUNCNAME[$deep-1]}"
deep=$((deep - 1))
done
}
# Prints line number and "message" then exits
# die $LINENO "message"
function die {
local exitcode=$?
set +o xtrace
local line=$1; shift
if [ $exitcode == 0 ]; then
exitcode=1
fi
backtrace 2
err $line "$*"
# Give buffers a second to flush
sleep 1
exit $exitcode
}
# Checks an environment variable is not set or has length 0 OR if the
# exit code is non-zero and prints "message" and exits
# NOTE: env-var is the variable name without a '$'
# die_if_not_set $LINENO env-var "message"
function die_if_not_set {
local exitcode=$?
local xtrace
xtrace=$(set +o | grep xtrace)
set +o xtrace
local line=$1; shift
local evar=$1; shift
if ! is_set $evar || [ $exitcode != 0 ]; then
die $line "$*"
fi
$xtrace
}
function deprecated {
local text=$1
DEPRECATED_TEXT+="\n$text"
echo "WARNING: $text" >&2
}
# Prints line number and "message" in error format
# err $LINENO "message"
function err {
local exitcode=$?
local xtrace
xtrace=$(set +o | grep xtrace)
set +o xtrace
local msg="[ERROR] ${BASH_SOURCE[2]}:$1 $2"
echo $msg 1>&2;
if [[ -n ${LOGDIR} ]]; then
echo $msg >> "${LOGDIR}/error.log"
fi
$xtrace
return $exitcode
}
# Checks an environment variable is not set or has length 0 OR if the
# exit code is non-zero and prints "message"
# NOTE: env-var is the variable name without a '$'
# err_if_not_set $LINENO env-var "message"
function err_if_not_set {
local exitcode=$?
local xtrace
xtrace=$(set +o | grep xtrace)
set +o xtrace
local line=$1; shift
local evar=$1; shift
if ! is_set $evar || [ $exitcode != 0 ]; then
err $line "$*"
fi
$xtrace
return $exitcode
}
# Exit after outputting a message about the distribution not being supported.
# exit_distro_not_supported [optional-string-telling-what-is-missing]
function exit_distro_not_supported {
if [[ -z "$DISTRO" ]]; then
GetDistro
fi
if [ $# -gt 0 ]; then
die $LINENO "Support for $DISTRO is incomplete: no support for $@"
else
die $LINENO "Support for $DISTRO is incomplete."
fi
}
# Test if the named environment variable is set and not zero length
# is_set env-var
function is_set {
local var=\$"$1"
eval "[ -n \"$var\" ]" # For ex.: sh -c "[ -n \"$var\" ]" would be better, but several exercises depends on this
}
# Prints line number and "message" in warning format
# warn $LINENO "message"
function warn {
local exitcode=$?
local xtrace
xtrace=$(set +o | grep xtrace)
set +o xtrace
local msg="[WARNING] ${BASH_SOURCE[2]}:$1 $2"
echo $msg
$xtrace
return $exitcode
}
# Distro Functions
# ================
# Determine OS Vendor, Release and Update
#
# NOTE : For portability, you almost certainly do not want to use
# these variables directly! The "is_*" functions defined below this
# bundle up compatible platforms under larger umbrellas that we have
# determinted are compatible enough (e.g. is_ubuntu covers Ubuntu &
# Debian, is_fedora covers RPM-based distros). Higher-level functions
# such as "install_package" further abstract things in better ways.
#
# ``os_VENDOR`` - vendor name: ``Ubuntu``, ``Fedora``, etc
# ``os_RELEASE`` - major release: ``14.04`` (Ubuntu), ``20`` (Fedora)
# ``os_PACKAGE`` - package type: ``deb`` or ``rpm``
# ``os_CODENAME`` - vendor's codename for release: ``trusty``
declare os_VENDOR os_RELEASE os_PACKAGE os_CODENAME
# Make a *best effort* attempt to install lsb_release packages for the
# user if not available. Note can't use generic install_package*
# because they depend on this!
function _ensure_lsb_release {
if [[ -x $(command -v lsb_release 2>/dev/null) ]]; then
return
fi
if [[ -x $(command -v apt-get 2>/dev/null) ]]; then
sudo apt-get install -y lsb-release
elif [[ -x $(command -v zypper 2>/dev/null) ]]; then
# XXX: old code paths seem to have assumed SUSE platforms also
# had "yum". Keep this ordered above yum so we don't try to
# install the rh package. suse calls it just "lsb"
sudo zypper -n install lsb
elif [[ -x $(command -v dnf 2>/dev/null) ]]; then
sudo dnf install -y redhat-lsb-core
elif [[ -x $(command -v yum 2>/dev/null) ]]; then
# all rh patforms (fedora, centos, rhel) have this pkg
sudo yum install -y redhat-lsb-core
else
die $LINENO "Unable to find or auto-install lsb_release"
fi
}
# GetOSVersion
# Set the following variables:
# - os_RELEASE
# - os_CODENAME
# - os_VENDOR
# - os_PACKAGE
function GetOSVersion {
# We only support distros that provide a sane lsb_release
_ensure_lsb_release
os_RELEASE=$(lsb_release -r -s)
os_CODENAME=$(lsb_release -c -s)
os_VENDOR=$(lsb_release -i -s)
if [[ $os_VENDOR =~ (Debian|Ubuntu|LinuxMint) ]]; then
os_PACKAGE="deb"
else
os_PACKAGE="rpm"
fi
typeset -xr os_VENDOR
typeset -xr os_RELEASE
typeset -xr os_PACKAGE
typeset -xr os_CODENAME
}
# Translate the OS version values into common nomenclature
# Sets global ``DISTRO`` from the ``os_*`` values
declare DISTRO
function GetDistro {
GetOSVersion
if [[ "$os_VENDOR" =~ (Ubuntu) || "$os_VENDOR" =~ (Debian) || \
"$os_VENDOR" =~ (LinuxMint) ]]; then
# 'Everyone' refers to Ubuntu / Debian / Mint releases by
# the code name adjective
DISTRO=$os_CODENAME
elif [[ "$os_VENDOR" =~ (Fedora) ]]; then
# For Fedora, just use 'f' and the release
DISTRO="f$os_RELEASE"
elif [[ "$os_VENDOR" =~ (openSUSE) ]]; then
DISTRO="opensuse-$os_RELEASE"
elif [[ "$os_VENDOR" =~ (SUSE LINUX) ]]; then
# just use major release
DISTRO="sle${os_RELEASE%.*}"
elif [[ "$os_VENDOR" =~ (Red.*Hat) || \
"$os_VENDOR" =~ (CentOS) || \
"$os_VENDOR" =~ (Scientific) || \
"$os_VENDOR" =~ (OracleServer) || \
"$os_VENDOR" =~ (Virtuozzo) ]]; then
# Drop the . release as we assume it's compatible
# XXX re-evaluate when we get RHEL10
DISTRO="rhel${os_RELEASE::1}"
elif [[ "$os_VENDOR" =~ (XenServer) ]]; then
DISTRO="xs${os_RELEASE%.*}"
elif [[ "$os_VENDOR" =~ (kvmibm) ]]; then
DISTRO="${os_VENDOR}${os_RELEASE::1}"
else
# We can't make a good choice here. Setting a sensible DISTRO
# is part of the problem, but not the major issue -- we really
# only use DISTRO in the code as a fine-filter.
#
# The bigger problem is categorising the system into one of
# our two big categories as Ubuntu/Debian-ish or
# Fedora/CentOS-ish.
#
# The setting of os_PACKAGE above is only set to "deb" based
# on a hard-coded list of vendor names ... thus we will
# default to thinking unknown distros are RPM based
# (ie. is_ubuntu does not match). But the platform will then
# also not match in is_fedora, because that also has a list of
# names.
#
# So, if you are reading this, getting your distro supported
# is really about making sure it matches correctly in these
# functions. Then you can choose a sensible way to construct
# DISTRO based on your distros release approach.
die $LINENO "Unable to determine DISTRO, can not continue."
fi
typeset -xr DISTRO
}
# Utility function for checking machine architecture
# is_arch arch-type
function is_arch {
[[ "$(uname -m)" == "$1" ]]
}
# Determine if current distribution is an Oracle distribution
# is_oraclelinux
function is_oraclelinux {
if [[ -z "$os_VENDOR" ]]; then
GetOSVersion
fi
[ "$os_VENDOR" = "OracleServer" ]
}
# Determine if current distribution is a Fedora-based distribution
# (Fedora, RHEL, CentOS, etc).
# is_fedora
function is_fedora {
if [[ -z "$os_VENDOR" ]]; then
GetOSVersion
fi
[ "$os_VENDOR" = "Fedora" ] || [ "$os_VENDOR" = "Red Hat" ] || \
[ "$os_VENDOR" = "RedHatEnterpriseServer" ] || \
[ "$os_VENDOR" = "CentOS" ] || [ "$os_VENDOR" = "OracleServer" ] || \
[ "$os_VENDOR" = "Virtuozzo" ] || [ "$os_VENDOR" = "kvmibm" ]
}
# Determine if current distribution is a SUSE-based distribution
# (openSUSE, SLE).
# is_suse
function is_suse {
if [[ -z "$os_VENDOR" ]]; then
GetOSVersion
fi
[[ "$os_VENDOR" =~ (openSUSE) || "$os_VENDOR" == "SUSE LINUX" ]]
}
# Determine if current distribution is an Ubuntu-based distribution
# It will also detect non-Ubuntu but Debian-based distros
# is_ubuntu
function is_ubuntu {
if [[ -z "$os_PACKAGE" ]]; then
GetOSVersion
fi
[ "$os_PACKAGE" = "deb" ]
}
# Git Functions
# =============
# Returns openstack release name for a given branch name
# ``get_release_name_from_branch branch-name``
function get_release_name_from_branch {
local branch=$1
if [[ $branch =~ "stable/" || $branch =~ "proposed/" ]]; then
echo ${branch#*/}
else
echo "master"
fi
}
# git clone only if directory doesn't exist already. Since ``DEST`` might not
# be owned by the installation user, we create the directory and change the
# ownership to the proper user.
# Set global ``RECLONE=yes`` to simulate a clone when dest-dir exists
# Set global ``ERROR_ON_CLONE=True`` to abort execution with an error if the git repo
# does not exist (default is False, meaning the repo will be cloned).
# Uses globals ``ERROR_ON_CLONE``, ``OFFLINE``, ``RECLONE``
# git_clone remote dest-dir branch
function git_clone {
local git_remote=$1
local git_dest=$2
local git_ref=$3
local orig_dir
orig_dir=$(pwd)
local git_clone_flags=""
RECLONE=$(trueorfalse False RECLONE)
if [[ "${GIT_DEPTH}" -gt 0 ]]; then
git_clone_flags="$git_clone_flags --depth $GIT_DEPTH"
fi
if [[ "$OFFLINE" = "True" ]]; then
echo "Running in offline mode, clones already exist"
# print out the results so we know what change was used in the logs
cd $git_dest
git show --oneline | head -1
cd $orig_dir
return
fi
if echo $git_ref | egrep -q "^refs"; then
# If our branch name is a gerrit style refs/changes/...
if [[ ! -d $git_dest ]]; then
if [[ "$ERROR_ON_CLONE" = "True" ]]; then
echo "The $git_dest project was not found; if this is a gate job, add"
echo "the project to the \$PROJECTS variable in the job definition."
die $LINENO "Cloning not allowed in this configuration"
fi
git_timed clone $git_clone_flags $git_remote $git_dest
fi
cd $git_dest
git_timed fetch $git_remote $git_ref && git checkout FETCH_HEAD
else
# do a full clone only if the directory doesn't exist
if [[ ! -d $git_dest ]]; then
if [[ "$ERROR_ON_CLONE" = "True" ]]; then
echo "The $git_dest project was not found; if this is a gate job, add"
echo "the project to the \$PROJECTS variable in the job definition."
die $LINENO "Cloning not allowed in this configuration"
fi
# '--branch' can also take tags
git_timed clone $git_clone_flags $git_remote $git_dest --branch $git_ref
elif [[ "$RECLONE" = "True" ]]; then
# if it does exist then simulate what clone does if asked to RECLONE
cd $git_dest
# set the url to pull from and fetch
git remote set-url origin $git_remote
git_timed fetch origin
# remove the existing ignored files (like pyc) as they cause breakage
# (due to the py files having older timestamps than our pyc, so python
# thinks the pyc files are correct using them)
find $git_dest -name '*.pyc' -delete
# handle git_ref accordingly to type (tag, branch)
if [[ -n "`git show-ref refs/tags/$git_ref`" ]]; then
git_update_tag $git_ref
elif [[ -n "`git show-ref refs/heads/$git_ref`" ]]; then
git_update_branch $git_ref
elif [[ -n "`git show-ref refs/remotes/origin/$git_ref`" ]]; then
git_update_remote_branch $git_ref
else
die $LINENO "$git_ref is neither branch nor tag"
fi
fi
fi
# print out the results so we know what change was used in the logs
cd $git_dest
git show --oneline | head -1
cd $orig_dir
}
# A variation on git clone that lets us specify a project by it's
# actual name, like oslo.config. This is exceptionally useful in the
# library installation case
function git_clone_by_name {
local name=$1
local repo=${GITREPO[$name]}
local dir=${GITDIR[$name]}
local branch=${GITBRANCH[$name]}
git_clone $repo $dir $branch
}
# git can sometimes get itself infinitely stuck with transient network
# errors or other issues with the remote end. This wraps git in a
# timeout/retry loop and is intended to watch over non-local git
# processes that might hang. GIT_TIMEOUT, if set, is passed directly
# to timeout(1); otherwise the default value of 0 maintains the status
# quo of waiting forever.
# usage: git_timed <git-command>
function git_timed {
local count=0
local timeout=0
if [[ -n "${GIT_TIMEOUT}" ]]; then
timeout=${GIT_TIMEOUT}
fi
time_start "git_timed"
until timeout -s SIGINT ${timeout} git "$@"; do
# 124 is timeout(1)'s special return code when it reached the
# timeout; otherwise assume fatal failure
if [[ $? -ne 124 ]]; then
die $LINENO "git call failed: [git $@]"
fi
count=$(($count + 1))
warn $LINENO "timeout ${count} for git call: [git $@]"
if [ $count -eq 3 ]; then
die $LINENO "Maximum of 3 git retries reached"
fi
sleep 5
done
time_stop "git_timed"
}
# git update using reference as a branch.
# git_update_branch ref
function git_update_branch {
local git_branch=$1
git checkout -f origin/$git_branch
# a local branch might not exist
git branch -D $git_branch || true
git checkout -b $git_branch
}
# git update using reference as a branch.
# git_update_remote_branch ref
function git_update_remote_branch {
local git_branch=$1
git checkout -b $git_branch -t origin/$git_branch
}
# git update using reference as a tag. Be careful editing source at that repo
# as working copy will be in a detached mode
# git_update_tag ref
function git_update_tag {
local git_tag=$1
git tag -d $git_tag
# fetching given tag only
git_timed fetch origin tag $git_tag
git checkout -f $git_tag
}
# OpenStack Functions
# ===================
# Get the default value for HOST_IP
# get_default_host_ip fixed_range floating_range host_ip_iface host_ip
function get_default_host_ip {
local fixed_range=$1
local floating_range=$2
local host_ip_iface=$3
local host_ip=$4
local af=$5
# Search for an IP unless an explicit is set by ``HOST_IP`` environment variable
if [ -z "$host_ip" -o "$host_ip" == "dhcp" ]; then
host_ip=""
# Find the interface used for the default route
host_ip_iface=${host_ip_iface:-$(ip -f $af route | awk '/default/ {print $5}' | head -1)}
local host_ips
host_ips=$(LC_ALL=C ip -f $af addr show ${host_ip_iface} | sed /temporary/d |awk /$af'/ {split($2,parts,"/"); print parts[1]}')
local ip
for ip in $host_ips; do
# Attempt to filter out IP addresses that are part of the fixed and
# floating range. Note that this method only works if the ``netaddr``
# python library is installed. If it is not installed, an error
# will be printed and the first IP from the interface will be used.
# If that is not correct set ``HOST_IP`` in ``localrc`` to the correct
# address.
if [[ "$af" == "inet6" ]]; then
host_ip=$ip
break;
fi
if ! (address_in_net $ip $fixed_range || address_in_net $ip $floating_range); then
host_ip=$ip
break;
fi
done
fi
echo $host_ip
}
# Generates hex string from ``size`` byte of pseudo random data
# generate_hex_string size
function generate_hex_string {
local size=$1
hexdump -n "$size" -v -e '/1 "%02x"' /dev/urandom
}
# Grab a numbered field from python prettytable output
# Fields are numbered starting with 1
# Reverse syntax is supported: -1 is the last field, -2 is second to last, etc.
# get_field field-number
function get_field {
local data field
while read data; do
if [ "$1" -lt 0 ]; then
field="(\$(NF$1))"
else
field="\$$(($1 + 1))"
fi
echo "$data" | awk -F'[ \t]*\\|[ \t]*' "{print $field}"
done
}
# install default policy
# copy over a default policy.json and policy.d for projects
function install_default_policy {
local project=$1
local project_uc
project_uc=$(echo $1|tr a-z A-Z)
local conf_dir="${project_uc}_CONF_DIR"
# eval conf dir to get the variable
conf_dir="${!conf_dir}"
local project_dir="${project_uc}_DIR"
# eval project dir to get the variable
project_dir="${!project_dir}"
local sample_conf_dir="${project_dir}/etc/${project}"
local sample_policy_dir="${project_dir}/etc/${project}/policy.d"
# first copy any policy.json
cp -p $sample_conf_dir/policy.json $conf_dir
# then optionally copy over policy.d
if [[ -d $sample_policy_dir ]]; then
cp -r $sample_policy_dir $conf_dir/policy.d
fi
}
# Add a policy to a policy.json file
# Do nothing if the policy already exists
# ``policy_add policy_file policy_name policy_permissions``
function policy_add {
local policy_file=$1
local policy_name=$2
local policy_perm=$3
if grep -q ${policy_name} ${policy_file}; then
echo "Policy ${policy_name} already exists in ${policy_file}"
return
fi
# Add a terminating comma to policy lines without one
# Remove the closing '}' and all lines following to the end-of-file
local tmpfile
tmpfile=$(mktemp)
uniq ${policy_file} | sed -e '
s/]$/],/
/^[}]/,$d
' > ${tmpfile}
# Append policy and closing brace
echo " \"${policy_name}\": ${policy_perm}" >>${tmpfile}
echo "}" >>${tmpfile}
mv ${tmpfile} ${policy_file}
}
# Gets or creates a domain
# Usage: get_or_create_domain <name> <description>
function get_or_create_domain {
local domain_id
# Gets domain id
domain_id=$(
# Gets domain id
openstack domain show $1 \
-f value -c id 2>/dev/null ||
# Creates new domain
openstack domain create $1 \
--description "$2" \
-f value -c id
)
echo $domain_id
}
# Gets or creates group
# Usage: get_or_create_group <groupname> <domain> [<description>]
function get_or_create_group {
local desc="${3:-}"
local group_id
# Gets group id
group_id=$(
# Creates new group with --or-show
openstack group create $1 \
--domain $2 --description "$desc" --or-show \
-f value -c id
)
echo $group_id
}
# Gets or creates user
# Usage: get_or_create_user <username> <password> <domain> [<email>]
function get_or_create_user {
local user_id
if [[ ! -z "$4" ]]; then
local email="--email=$4"
else
local email=""
fi
# Gets user id
user_id=$(
# Creates new user with --or-show
openstack user create \
$1 \
--password "$2" \
--domain=$3 \
$email \
--or-show \
-f value -c id
)
echo $user_id
}
# Gets or creates project
# Usage: get_or_create_project <name> <domain>
function get_or_create_project {
local project_id
project_id=$(
# Creates new project with --or-show
openstack project create $1 \
--domain=$2 \
--or-show -f value -c id
)
echo $project_id
}
# Gets or creates role
# Usage: get_or_create_role <name>
function get_or_create_role {
local role_id
role_id=$(
# Creates role with --or-show
openstack role create $1 \
--or-show -f value -c id
)
echo $role_id
}
# Returns the domain parts of a function call if present
# Usage: _get_domain_args [<user_domain> <project_domain>]
function _get_domain_args {
local domain
domain=""
if [[ -n "$1" ]]; then
domain="$domain --user-domain $1"
fi
if [[ -n "$2" ]]; then
domain="$domain --project-domain $2"
fi
echo $domain
}
# Gets or adds user role to project
# Usage: get_or_add_user_project_role <role> <user> <project> [<user_domain> <project_domain>]
function get_or_add_user_project_role {
local user_role_id
domain_args=$(_get_domain_args $4 $5)
# Gets user role id
user_role_id=$(openstack role assignment list \
--user $2 \
--project $3 \
$domain_args \
| grep " $1 " | get_field 1)
if [[ -z "$user_role_id" ]]; then
# Adds role to user and get it
openstack role add $1 \
--user $2 \
--project $3 \
$domain_args
user_role_id=$(openstack role assignment list \
--user $2 \
--project $3 \
$domain_args \
| grep " $1 " | get_field 1)
fi
echo $user_role_id
}
# Gets or adds user role to domain
# Usage: get_or_add_user_domain_role <role> <user> <domain>
function get_or_add_user_domain_role {
local user_role_id
# Gets user role id
user_role_id=$(openstack role assignment list \
--user $2 \
--domain $3 \
| grep " $1 " | get_field 1)
if [[ -z "$user_role_id" ]]; then
# Adds role to user and get it
openstack role add $1 \
--user $2 \
--domain $3
user_role_id=$(openstack role assignment list \
--user $2 \
--domain $3 \
| grep " $1 " | get_field 1)
fi
echo $user_role_id
}
# Gets or adds user role to domain
# Usage: get_or_add_user_domain_role <role> <user> <domain>
function get_or_add_user_domain_role {
local user_role_id
# Gets user role id
user_role_id=$(openstack role assignment list \
--user $2 \
--os-url=$KEYSTONE_SERVICE_URI_V3 \
--os-identity-api-version=3 \
--domain $3 \
| grep " $1 " | get_field 1)
if [[ -z "$user_role_id" ]]; then
# Adds role to user and get it
openstack role add $1 \
--user $2 \
--domain $3 \
--os-url=$KEYSTONE_SERVICE_URI_V3 \
--os-identity-api-version=3
user_role_id=$(openstack role assignment list \
--user $2 \
--os-url=$KEYSTONE_SERVICE_URI_V3 \
--os-identity-api-version=3 \
--domain $3 \
| grep " $1 " | get_field 1)
fi
echo $user_role_id
}
# Gets or adds group role to project
# Usage: get_or_add_group_project_role <role> <group> <project>
function get_or_add_group_project_role {
local group_role_id
# Gets group role id
group_role_id=$(openstack role assignment list \
--group $2 \
--project $3 \
-f value)
if [[ -z "$group_role_id" ]]; then
# Adds role to group and get it
openstack role add $1 \
--group $2 \
--project $3
group_role_id=$(openstack role assignment list \
--group $2 \
--project $3 \
-f value)
fi
echo $group_role_id
}
# Gets or creates service
# Usage: get_or_create_service <name> <type> <description>
function get_or_create_service {
local service_id
# Gets service id
service_id=$(
# Gets service id
openstack service show $2 -f value -c id 2>/dev/null ||
# Creates new service if not exists
openstack service create \
$2 \
--name $1 \
--description="$3" \
-f value -c id
)
echo $service_id
}
# Create an endpoint with a specific interface
# Usage: _get_or_create_endpoint_with_interface <service> <interface> <url> <region>
function _get_or_create_endpoint_with_interface {
local endpoint_id
endpoint_id=$(openstack endpoint list \
--service $1 \
--interface $2 \
--region $4 \
-c ID -f value)
if [[ -z "$endpoint_id" ]]; then
# Creates new endpoint
endpoint_id=$(openstack endpoint create \
$1 $2 $3 --region $4 -f value -c id)
fi
echo $endpoint_id
}
# Gets or creates endpoint
# Usage: get_or_create_endpoint <service> <region> <publicurl> <adminurl> <internalurl>
function get_or_create_endpoint {
# NOTE(jamielennnox): when converting to v3 endpoint creation we go from
# creating one endpoint with multiple urls to multiple endpoints each with
# a different interface. To maintain the existing function interface we
# create 3 endpoints and return the id of the public one. In reality