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169 lines
4.5 KiB
Bash
169 lines
4.5 KiB
Bash
# Common definitions for manipulating JSON in test scripts.
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# Copyright 2014 Serval Project Inc.
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#
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# This program is free software; you can redistribute it and/or
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# modify it under the terms of the GNU General Public License
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# as published by the Free Software Foundation; either version 2
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# of the License, or (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program; if not, write to the Free Software
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# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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# Utility function:
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# - ensure that a given version or later of the jq(1) utility is available
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# - for use in setup (fixture) functions
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setup_jq() {
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JQ=$(type -P jq) || error "jq(1) command is not present"
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local minversion="${1?}"
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local ver="$("$JQ" --version 2>&1)"
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case "$ver" in
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jq-*)
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local oIFS="$IFS"
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IFS='-'
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set -- $ver
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IFS="$oIFS"
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jqversion="$2"
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;;
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jq\ version\ *)
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set -- $ver
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jqversion="$3"
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;;
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*)
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error "cannot parse output of jq --version: $ver"
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;;
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esac
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tfw_cmp_version "$jqversion" "$minversion"
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case $? in
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0|2)
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export JQ
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return 0
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;;
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esac
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error "jq(1) version $jqversion is not adequate (need $minversion or higher)"
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}
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# Guard function:
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JQ=
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jq() {
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[ -x "$JQ" ] || error "missing call to setup_jq or setup_jsonin the fixture"
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"$JQ" "$@"
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}
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# Setup function:
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# - any test wishing to use the JSON utilities in this file must call this in
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# its setup()
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setup_json() {
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setup_jq 1.3
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}
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assertJq() {
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local json="$1"
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local jqscript="$2"
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assert --message="$jqscript" --dump-on-fail="$json" [ "$(jq "$jqscript" "$json")" = true ]
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}
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assertJqCmp() {
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local opts=()
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while [ $# -gt 0 ]; do
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case "$1" in
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--) shift; break;;
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--*) opts+=("$1"); shift;;
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*) break;;
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esac
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done
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[ $# -eq 3 ] || error "invalid arguments"
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local json="$1"
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local jqscript="$2"
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local file="$3"
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jq --raw-output "$jqscript" "$json" >"$TFWTMP/jqcmp.tmp"
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assert --dump-on-fail="$TFWTMP/jqcmp.tmp" --dump-on-fail="$file" "${opts[@]}" cmp "$TFWTMP/jqcmp.tmp" "$file"
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}
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assertJqIs() {
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local opts=()
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while [ $# -gt 0 ]; do
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case "$1" in
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--) shift; break;;
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--*) opts+=("$1"); shift;;
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*) break;;
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esac
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done
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[ $# -eq 3 ] || error "invalid arguments"
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local json="$1"
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local jqscript="$2"
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local text="$3"
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local jqout="$(jq --raw-output "$jqscript" "$json")"
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assert "${opts[@]}" [ "$jqout" = "$text" ]
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}
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assertJqGrep() {
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local opts=()
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while [ $# -gt 0 ]; do
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case "$1" in
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--) shift; break;;
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--*) opts+=("$1"); shift;;
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*) break;;
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esac
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done
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[ $# -eq 3 ] || error "invalid arguments"
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local json="$1"
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local jqscript="$2"
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local pattern="$3"
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jq "$jqscript" "$json" >"$TFWTMP/jqgrep.tmp"
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assertGrep "${opts[@]}" "$TFWTMP/jqgrep.tmp" "$pattern"
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}
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transform_list_json() {
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# The following jq(1) incantation transforms a JSON array in from the
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# following form (which is optimised for transmission size):
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# {
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# "header":[ "label1", "label2", "label3", ... ],
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# "rows":[
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# [ row1value1, row1value2, row1value3, ... ],
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# [ row2value1, row2value2, row2value3, ... ],
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# ...
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# [ rowNvalue1, rowNvalue2, rowNvalue3, ... ]
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# ]
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# }
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#
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# into an array of JSON objects:
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# [
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# {
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# "label1": row1value1,
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# "label2": row1value2,
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# "label3": row1value3,
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# ...
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# },
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# {
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# "label1": row2value1,
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# "label2": row2value2,
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# "label3": row2value3,
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# ...
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# },
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# ...
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# {
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# "label1": rowNvalue1,
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# "label2": rowNvalue2,
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# "label3": rowNvalue3,
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# ...
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# }
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# ]
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# which is much easier to test with jq(1) expressions.
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jq '
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[
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.header as $header |
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.rows as $rows |
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$rows | keys | .[] as $index |
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[ $rows[$index] as $d | $d | keys | .[] as $i | {key:$header[$i], value:$d[$i]} ] |
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from_entries |
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.["__index"] = $index
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]
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' "$1" >"$2"
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}
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