miller/c/reg_test/dev
2016-05-25 09:59:16 -04:00

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#!/bin/sh
# ================================================================
# This is similar to reg_test/run except that this one is only ever run
# manually, not automatically as part of the build. It can be used to iterate on
# as-yet-unreleased features (in particular, features whose definition isn't
# finalized) without breaking the build.
# ================================================================
set -e
ourdir=`dirname $0`
srcdir=$ourdir/../..
pwd=`pwd`
try1=$pwd/../mlr # For autoconf builds, in-tree or out-of-tree
try2=$srcdir/c/mlr # For non-autoconf builds
if [ -x "$try1" ]; then
path_to_mlr=$try1
elif [ -x "$try2" ]; then
path_to_mlr=$try2
else
echo "$0: Could not find path to mlr executable." 1>&2
echo "Try 1: $try1" 1>&2
echo "Try 2: $try2" 1>&2
exit 1
fi
do_diff="true"
for arg; do
if [ "$1" = "--valgrind" ]; then
# Leak-check the test suite. Needs 'make mlrg' first.
# ../tools/clean-valg can be used to filter the output.
path_to_mlr="valgrind --leak-check=full ${path_to_mlr}g"
elif [ "$1" = "--nodiff" ]; then
do_diff="false"
fi
done
echo Using mlr executable $path_to_mlr
indir=$ourdir/input
expdir=$ourdir/expected
outdir=$pwd/output
outfile=$outdir/out-dev
expfile=$expdir/out-dev
mkdir -p $outdir
rm -f $outfile
touch $outfile
echo
num_passed=0
announce() {
echo >> $outfile
echo "================================================================" >> $outfile
echo "$@" >> $outfile
echo >> $outfile
}
mention() {
echo >> $outfile
echo ---------------------------------------------------------------- "$@" >> $outfile
}
run_mlr() {
# Use just "mlr" for info messages
echo mlr "$@"
echo mlr "$@" >> $outfile
# Use path to mlr for invoking the command
$path_to_mlr "$@" >> $outfile
echo >> $outfile
# since set -e
num_passed=`expr $num_passed + 1`
}
# ================================================================
announce GRAMMAR REORG
run_mlr -n put -v '$["x"]=3'
run_mlr -n put -v '@["x"]=3'
run_mlr -n put -v '$[$y]=$y'
run_mlr -n put -v '@[@y]=@y'
run_mlr -n put -v '@x=2; @x["y"]=3; @x["y"][$z]=4'
run_mlr -n put -v '@["x"]=2; @["x"]["y"]=3; @["x"]["y"][$z]=4'
run_mlr --from $indir/abixy put -q -v '@a=2; @b["y"]=3; @c["y"][$a]=4; emitp all'
run_mlr --from $indir/abixy put -q -v '@a=2; @b["y"]=3; @c["y"][$a]=4; emitp all'
run_mlr --from $indir/abixy put -q -v '@["a"]=2; @["b"]["y"]=3; @["c"]["y"][$a]=4; emitp all'
echo x=1|mlr put '$x=$x+1; for (k,v in $*) { $[v] = typeof(v)}'
# x=2,2=MT_INT
echo x=1|mlr put 'for (k,v in $*) { $[v] = typeof(v)}'
# x=1,1=MT_STRING
run_mlr put -v '@s = NR; $t = typeof(@s); $u= typeof(@["s"]); emitp all' $indir/abixy
run_mlr --opprint put -v '@s = NR; $t = @s; $u=@["s"]' $indir/abixy
run_mlr put -v '@t["u"] = NR; $tu = @["t"]["u"]; emitp all' $indir/abixy
run_mlr put -v '@["t"]["u"] = $y; emitp all' $indir/abixy
run_mlr --from $indir/abixy put -v '$sum = 0; for(k,v in $*) {if (k =~ "^[xy]$") {$sum += $[k]} }'
run_mlr --from $indir/abixy -n put -v '
$a = @s;
$b = @t[1];
$c = @u[1][2];
$d = @v[1][2][3];
$e = @["s"];
$f = @["t"][1];
$g = @["u"][1][2];
$h = @["v"][1][2][3];
'
run_mlr -n put -v 'emit @*'
run_mlr -n put -v 'emitp @*'
run_mlr -n put -v 'unset @*'
run_mlr --opprint --from $indir/abixy put -q -v '
for (k,v in $*) {
@logging1[NR][k] = v;
if (k == "x") {
break;
}
}
for (k,v in $*) {
if (k == "x") {
break;
}
@logging2[NR][k] = v;
}
for (k,v in $*) {
@logging3[NR][k] = v;
if (k == "x") {
continue;
}
}
for (k,v in $*) {
if (k == "x") {
continue;
}
@logging4[NR][k] = v;
}
end {
emitp @logging1, "NR", "k";
emitp @logging2, "NR", "k";
emitp @logging3, "NR", "k";
emitp @logging4, "NR", "k"
}
'
# ================================================================
cat $outfile
if [ "$do_diff" = "true" ]; then
echo
diff -I '^mlr ' -C5 $expfile $outfile
echo diff OK # since set -e
echo ALL REGRESSION TESTS PASSED
echo Tests completed: $num_passed
fi