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test.sh
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#!/usr/bin/env bash
# Copyright 2017 Amazon.com, Inc. or its affiliates. All Rights Reserved.
#
# Licensed under the Apache License, Version 2.0 (the "License"). You may not
# use this file except in compliance with the License. A copy of the License
# is located at
#
# http://aws.amazon.com/apache2.0/
#
# or in the "license" file accompanying this file. This file 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.
# Confirms that BLEU scores computed by sacreBLEU are the same as Moses' mteval-v13a.pl.
# Note that this doesn't work if you lowercase the data (remove -c to mteval-v13a.pl,
# or add "-lc" to sacreBLEU) because mteval-v13a.pl does not lowercase properly: it uses
# tr/[A-Z]/[a-z], which doesn't cover uppercase letters with diacritics. Also, the
# Chinese preprocessing was applied to all zh sources, references, and system outputs
# (http://statmt.org/wmt17/tokenizeChinese.py), as was done for WMT17.
set -u
if [[ $(echo $BASH_VERSION | cut -d. -f1) -lt 4 ]]; then
echo "This script requires BASH version 4 or above (since it uses hashes)."
exit 1
fi
# Switch from JSON output to text
export SACREBLEU_FORMAT="text"
# Cleanup temporary files
trap "rm -f .tmp* data/.tmp*" EXIT INT TERM
# For Travis CI to work on Windows/Mac OS X
if [[ "$OSTYPE" == "linux-gnu"* ]]; then
PYTHON="python"
CMD="$PYTHON -m sacrebleu"
elif [[ "$OSTYPE" == "msys" ]]; then
PYTHON="python"
CMD="$PYTHON -m sacrebleu"
elif [[ "$OSTYPE" == "darwin"* ]]; then
# OS X ships python -> python2 by default, be explicit
PYTHON=python3
CMD="$PYTHON -m sacrebleu"
fi
export SACREBLEU=$(pwd)/.sacrebleu
export PYTHONPATH="${PWD}" # assuming PYTHONPATH=. as the default
export NO_COLOR=1
# Only run this test
limit_test=${1:-}
SKIP_INITIAL=${SKIP_INITIAL:-}
SKIP_CHRF=${SKIP_CHRF:-}
SKIP_TER=${SKIP_TER:-}
SKIP_MECAB=${SKIP_MECAB:-}
SKIP_MECAB_KO=${SKIP_MECAB_KO:-}
SKIP_MTEVAL13=${SKIP_MTEVAL13:-}
SKIP_MTEVAL14=${SKIP_MTEVAL14:-}
# test case counter
declare -i i=0
# TEST 1: download and process WMT17 data
[[ -d $SACREBLEU/wmt17 ]] && rm -f $SACREBLEU/wmt17/{en-*,*-en*}
${CMD} --echo src -t wmt17 -l cs-en > /dev/null
# Test concatenation of multiple test sets, --echo, -w, --origlang, --verbose
# and a pipeline with two sacrebleu processes
declare -A EXPECTED
EXPECTED["${CMD} -t wmt16,wmt17 -l en-fi --echo ref | ${CMD} -b -w 4 -t wmt16/B,wmt17/B -l en-fi"]=53.7432
EXPECTED["${CMD} -t wmt16,wmt17 -l en-fi --echo ref | ${CMD} -b -w 4 -t wmt16/B,wmt17/B -l en-fi --origlang=en"]=18.9054
EXPECTED["${CMD} -t wmt17 -l en-fi --echo ref | ${CMD} -b -t wmt17/B -l en-fi --detail"]="55.6
origlang=en domain=ALL : sentences=1502 BLEU = 21.4
origlang=fi domain=ALL : sentences=1500 BLEU = 100.0"
EXPECTED["${CMD} -t wmt18,wmt19 -l en-de --echo=src | ${CMD} -t wmt18,wmt19 -l en-de -b --detail"]="3.6
origlang=de domain=ALL : sentences=1498 BLEU = 3.6
origlang=en domain=ALL : sentences=3497 BLEU = 3.5
origlang=en domain=business : sentences=241 BLEU = 3.4
origlang=en country=EU : sentences=265 BLEU = 2.5
origlang=en country=GB : sentences=913 BLEU = 3.1
origlang=en country=OTHER : sentences=801 BLEU = 2.5
origlang=en country=US : sentences=1518 BLEU = 4.2
origlang=en domain=crime : sentences=570 BLEU = 3.6
origlang=en domain=entertainment : sentences=322 BLEU = 5.1
origlang=en domain=politics : sentences=959 BLEU = 3.0
origlang=en domain=scitech : sentences=211 BLEU = 3.1
origlang=en domain=sport : sentences=534 BLEU = 3.6
origlang=en domain=world : sentences=660 BLEU = 3.1"
[[ ! -d data ]] && mkdir data
cd data
if [[ ! -d wmt17-submitted-data ]]; then
echo "Downloading and unpacking WMT'17 system submissions (46 MB)..."
wget -q https://data.statmt.org/wmt17/translation-task/wmt17-submitted-data-v1.0.tgz
tar xzf wmt17-submitted-data-v1.0.tgz
fi
if [[ ! -d en-ja-translation-example-master ]]; then
echo "Downloading and unpacking English-Japanese test data..."
wget -q https://github.com/MorinoseiMorizo/en-ja-translation-example/archive/master.zip
unzip master.zip
rm master.zip
fi
if [[ ! -d en-ko-translation-example-master ]]; then
echo "Downloading and unpacking English-Korean test data..."
wget -q https://github.com/NoUnique/en-ko-translation-example/archive/master.zip
unzip master.zip
rm master.zip
fi
if [ -z $SKIP_INITIAL ]; then
for command in "${!EXPECTED[@]}"; do
echo Testing $command
# Convert line endings to UNIX for Windows tests
obtained=`eval $command | tr -d '\015'`
expected=${EXPECTED[$command]}
if [[ $obtained != $expected ]]; then
echo -e "\nFAILED:\n expected = $expected\n obtained = $obtained"
exit 1
fi
echo PASS
done
# Test loading via file instead of STDIN
echo "Testing loading via file instead of STDIN"
${CMD} -t wmt17 -l en-de --echo ref > .tmp.wmt17
score=$(${CMD} -t wmt17 -l en-de -i .tmp.wmt17 -b)
if [[ $score != '100.0' ]]; then
echo "File test failed."
exit 1
fi
echo PASS
# Test echoing of source, reference, and both
# Replace \r\n with \n for Windows compatibility
${CMD} -t wmt17/ms -l zh-en --echo src | tr -d '\015' > .tmp.echo
diff .tmp.echo $SACREBLEU/wmt17/ms/wmt17_ms.zh-en.src
if [[ $? -ne 0 ]]; then
echo "Source echo failed."
exit 1
fi
${CMD} -t wmt17/ms -l zh-en --echo ref:2 | tr -d '\015' > .tmp.echo
diff .tmp.echo $SACREBLEU/wmt17/ms/wmt17_ms.zh-en.ref-2 > /dev/null
if [[ $? -ne 0 ]]; then
echo "Source echo failed."
pwd
exit 1
fi
export LC_ALL=C
echo '-----------------------'
echo 'Control character tests'
echo '-----------------------'
printf "Hello! How are you \r doing today?" > .tmp_ref_buggy
echo "Hello! How are you doing today?" > .tmp_ref_okay
score1=$( echo "Hello! How are you doing today?" | ${CMD} -w 2 -b .tmp_ref_buggy )
score2=$( echo "Hello! How are you doing today?" | ${CMD} -w 2 -b .tmp_ref_okay )
if [[ $score1 != $score2 ]]; then
echo "Control character in reference test failed"
exit 1
fi
let i++
echo "Passed control character in reference test"
#####################################################################
# Tests for single-ref BLEU, multi-ref BLEU, signature and tokenizers
#####################################################################
path="wmt17-submitted-data/txt/system-outputs/newstest2017/cs-en"
ref1="${path}/newstest2017.online-A.0.cs-en"
ref2="${path}/newstest2017.online-B.0.cs-en"
sys="${path}/newstest2017.PJATK.4760.cs-en"
echo '--------------------------'
echo 'BLEU/CHRF regression tests'
echo '--------------------------'
unset EXPECTED
declare -A EXPECTED
paste $ref1 $ref2 > .tmp_refs
# Single ref, tokenizer variants, lowercase
EXPECTED["${CMD} -w 4 -b -l cs-en $ref1 -i $sys"]=36.8799
EXPECTED["${CMD} -lc -w 4 -b -l cs-en $ref1 -i $sys"]=38.1492
EXPECTED["${CMD} --tokenize 13a -w 4 -b -l cs-en $ref1 -i $sys"]=36.8799
EXPECTED["${CMD} --tokenize none -w 4 -b -l cs-en $ref1 -i $sys"]=34.0638
# multiple REF files
EXPECTED["${CMD} -w 4 -b -l cs-en $ref1 $ref2 -i $sys"]=44.6732
# multiple REF CHRF (epsilon smoothing)
EXPECTED["${CMD} -m chrf --chrf-eps-smoothing -w 4 -b -l cs-en $ref1 $ref2 -i $sys"]=67.8596
# multiple REF CHRF (effective order smoothing)
EXPECTED["${CMD} -m chrf -w 4 -b -l cs-en $ref1 $ref2 -i $sys"]=67.8603
# multiple REF CHRF++
EXPECTED["${CMD} -m chrf -cw 2 -w 4 -b -l cs-en $ref1 $ref2 -i $sys"]=66.1016
# multiple REFs with tab-delimited stream
EXPECTED["${CMD} -w 4 -b -l cs-en --num-refs 2 .tmp_refs -i $sys"]=44.6732
# Check signature correctness for multi-reference
# separate files
EXPECTED["${CMD} -l cs-en $ref1 $ref2 -i $sys | perl -pe 's/.*nrefs:([0-9]).*/\1/'"]=2
# tab delimited stream
EXPECTED["${CMD} -l cs-en --num-refs 2 .tmp_refs -i $sys | perl -pe 's/.*nrefs:([0-9]).*/\1/'"]=2
# Run the tests
for command in "${!EXPECTED[@]}"; do
echo Testing $command
obtained=`eval $command`
expected=${EXPECTED[$command]}
if [[ $obtained != $expected ]]; then
echo -e "\nFAILED:\n expected = $expected\n obtained = $obtained"
exit 1
fi
echo PASS
let i++
done
fi
#######################################################
# Pre-computed chrF scores from official implementation
# Cmd: chrF++.py -H hyp -R ref -nw 0
#######################################################
declare -A CHRF=( ["newstest2017.PJATK.4760.cs-en.sgm"]=52.5947
["newstest2017.online-A.0.cs-en.sgm"]=53.3856
["newstest2017.CU-Chimera.4886.en-cs.sgm"]=48.3370
["newstest2017.LIUM-FNMT.4852.en-cs.sgm"]=48.4708
["newstest2017.C-3MA.4959.en-de.sgm"]=51.9533
["newstest2017.FBK.4870.en-de.sgm"]=54.7152
["newstest2017.AaltoHnmtFlatcat.4798.en-fi.sgm"]=50.5981
["newstest2017.online-A.0.en-fi.sgm"]=49.5458
["newstest2017.limsi-factored-norm.5041.en-lv.sgm"]=49.3634
["newstest2017.online-A.0.en-lv.sgm"]=45.2101
["newstest2017.jhu-pbmt.4986.en-ru.sgm"]=54.9569
["newstest2017.online-B.0.en-ru.sgm"]=60.4059
["newstest2017.LIUM-NMT.4953.en-tr.sgm"]=47.5881
["newstest2017.online-G.0.en-tr.sgm"]=48.7404
["newstest2017.UU-HNMT.5134.en-zh.sgm"]=22.6844
["newstest2017.online-F.0.en-zh.sgm"]=18.7403
)
#########################################################
# Pre-computed chrF++ scores from official implementation
# Cmd: chrF++.py -H hyp -R ref
#########################################################
declare -A CHRFPP=( ["newstest2017.PJATK.4760.cs-en.sgm"]=50.2947
["newstest2017.online-A.0.cs-en.sgm"]=51.1037
["newstest2017.CU-Chimera.4886.en-cs.sgm"]=45.6732
["newstest2017.LIUM-FNMT.4852.en-cs.sgm"]=45.7210
["newstest2017.C-3MA.4959.en-de.sgm"]=49.1683
["newstest2017.FBK.4870.en-de.sgm"]=52.2330
["newstest2017.AaltoHnmtFlatcat.4798.en-fi.sgm"]=46.6295
["newstest2017.online-A.0.en-fi.sgm"]=44.9147
["newstest2017.limsi-factored-norm.5041.en-lv.sgm"]=45.7117
["newstest2017.online-A.0.en-lv.sgm"]=40.8963
["newstest2017.jhu-pbmt.4986.en-ru.sgm"]=52.0154
["newstest2017.online-B.0.en-ru.sgm"]=57.6404
["newstest2017.LIUM-NMT.4953.en-tr.sgm"]=43.8311
["newstest2017.online-G.0.en-tr.sgm"]=44.6236
["newstest2017.UU-HNMT.5134.en-zh.sgm"]=17.0181
["newstest2017.online-F.0.en-zh.sgm"]=14.1572
)
if [ -z $SKIP_CHRF ]; then
echo "------------------------------"
echo "Starting chrF and chrF++ tests"
echo "------------------------------"
# Test only for different target languages as there is no tokenization
# issue involved in chrF
for pair in cs-en en-cs en-de en-fi en-lv en-ru en-tr en-zh; do
source=$(echo $pair | cut -d- -f1)
target=$(echo $pair | cut -d- -f2)
for sgm in wmt17-submitted-data/sgm/system-outputs/newstest2017/$pair/*.sgm; do
name=$(basename $sgm)
if [[ ! -v CHRF[$name] ]]; then continue; fi
if [[ ! -z $limit_test && $limit_test != $name ]]; then continue; fi
sys=$(basename $sgm .sgm | perl -pe 's/newstest2017\.//')
txt=$(dirname $sgm | perl -pe 's/sgm/txt/')/$(basename $sgm .sgm)
# Test chrF
score=$(cat $txt | ${CMD} -w 4 -t wmt17 -l $source-$target -b --metrics chrf --chrf-eps-smoothing)
expected_score=${CHRF[$name]}
echo "import sys; sys.exit(1 if abs(${score}-${expected_score}) > 1e-6 else 0)" | $PYTHON
if [[ $? -eq 1 ]]; then
echo "FAILED chrF test $pair/$sys (wanted $expected_score got $score)"
exit 1
fi
echo "Passed $source-$target $sys chrF++.py: $expected_score sacreCHRF: $score"
let i++
# Test chrF++
score=$(cat $txt | ${CMD} -w 4 -t wmt17 -l $source-$target -b --metrics chrf --chrf-word-order 2 --chrf-eps-smoothing)
expected_score=${CHRFPP[$name]}
echo "import sys; sys.exit(1 if abs(${score}-${expected_score}) > 1e-6 else 0)" | $PYTHON
if [[ $? -eq 1 ]]; then
echo "FAILED chrF++ test $pair/$sys (wanted $expected_score got $score)"
exit 1
fi
echo "Passed $source-$target $sys chrF++.py: $expected_score sacreCHRF++: $score"
let i++
done
done
fi
################################################################
# Pre-computed results from Moses' mteval-v13a.pl for BLEU tests
################################################################
echo "------------------------------------"
echo "Starting BLEU tests (mteval-v13a.pl)"
echo "------------------------------------"
declare -A MTEVAL=( ["newstest2017.PJATK.4760.cs-en.sgm"]=23.15
["newstest2017.online-A.0.cs-en.sgm"]=25.12
["newstest2017.online-B.0.cs-en.sgm"]=27.45
["newstest2017.uedin-nmt.4955.cs-en.sgm"]=30.95
["newstest2017.C-3MA.4958.de-en.sgm"]=28.98
["newstest2017.KIT.4951.de-en.sgm"]=34.56
["newstest2017.LIUM-NMT.4733.de-en.sgm"]=30.1
["newstest2017.RWTH-nmt-ensemble.4920.de-en.sgm"]=33.12
["newstest2017.SYSTRAN.4846.de-en.sgm"]=33.17
["newstest2017.TALP-UPC.4830.de-en.sgm"]=28.09
["newstest2017.online-A.0.de-en.sgm"]=32.48
["newstest2017.online-B.0.de-en.sgm"]=32.97
["newstest2017.online-F.0.de-en.sgm"]=17.67
["newstest2017.online-G.0.de-en.sgm"]=26.04
["newstest2017.uedin-nmt.4723.de-en.sgm"]=35.12
["newstest2017.CU-Chimera.4886.en-cs.sgm"]=20.51
["newstest2017.LIUM-FNMT.4852.en-cs.sgm"]=19.95
["newstest2017.LIUM-NMT.4947.en-cs.sgm"]=20.2
["newstest2017.PJATK.4761.en-cs.sgm"]=16.18
["newstest2017.limsi-factored-norm.4957.en-cs.sgm"]=20.22
["newstest2017.online-A.0.en-cs.sgm"]=16.55
["newstest2017.online-B.0.en-cs.sgm"]=20.12
["newstest2017.tuning-task-afrl_4gb.sgm.0.en-cs.sgm"]=14.18
["newstest2017.tuning-task-afrl_8gb.sgm.0.en-cs.sgm"]=14.69
["newstest2017.tuning-task-baseline_4gb.sgm.0.en-cs.sgm"]=13.69
["newstest2017.tuning-task-baseline_8gb.sgm.0.en-cs.sgm"]=13.79
["newstest2017.tuning-task-denisov_4gb.sgm.0.en-cs.sgm"]=12.64
["newstest2017.tuning-task-ufal_4gb.sgm.0.en-cs.sgm"]=13.06
["newstest2017.tuning-task-ufal_8gb.sgm.0.en-cs.sgm"]=15.25
["newstest2017.uedin-nmt.4956.en-cs.sgm"]=22.8
["newstest2017.C-3MA.4959.en-de.sgm"]=22.67
["newstest2017.FBK.4870.en-de.sgm"]=26.33
["newstest2017.KIT.4950.en-de.sgm"]=26.08
["newstest2017.LIUM-NMT.4900.en-de.sgm"]=26.6
["newstest2017.LMU-nmt-reranked.4934.en-de.sgm"]=27.11
["newstest2017.LMU-nmt-single.4893.en-de.sgm"]=26.56
["newstest2017.PROMT-Rule-based.4735.en-de.sgm"]=16.61
["newstest2017.RWTH-nmt-ensemble.4921.en-de.sgm"]=26.02
["newstest2017.SYSTRAN.4847.en-de.sgm"]=26.71
["newstest2017.TALP-UPC.4834.en-de.sgm"]=21.24
["newstest2017.online-A.0.en-de.sgm"]=20.8
["newstest2017.online-B.0.en-de.sgm"]=26.65
["newstest2017.online-F.0.en-de.sgm"]=15.45
["newstest2017.online-G.0.en-de.sgm"]=18.16
["newstest2017.uedin-nmt.4722.en-de.sgm"]=28.3
["newstest2017.xmu.4910.en-de.sgm"]=26.69
["newstest2017.AaltoHnmtFlatcat.4798.en-fi.sgm"]=17.15
["newstest2017.AaltoHnmtMultitask.4873.en-fi.sgm"]=20.28
["newstest2017.HY-AH.4797.en-fi.sgm"]=9.33
["newstest2017.HY-HNMT.4961.en-fi.sgm"]=20.72
["newstest2017.HY-SMT.4882.en-fi.sgm"]=15.87
["newstest2017.TALP-UPC.4939.en-fi.sgm"]=11.47
["newstest2017.apertium-unconstrained.4769.en-fi.sgm"]=1.05
["newstest2017.jhu-nmt-lattice-rescore.4903.en-fi.sgm"]=15.96
["newstest2017.jhu-pbmt.4968.en-fi.sgm"]=14.46
["newstest2017.online-A.0.en-fi.sgm"]=13.72
["newstest2017.online-B.0.en-fi.sgm"]=22.04
["newstest2017.online-G.0.en-fi.sgm"]=15.51
["newstest2017.C-3MA.5069.en-lv.sgm"]=13.64
["newstest2017.HY-HNMT.5066.en-lv.sgm"]=16.76
["newstest2017.KIT.5062.en-lv.sgm"]=18.31
["newstest2017.LIUM-FNMT.5043.en-lv.sgm"]=16.19
["newstest2017.LIUM-NMT.5042.en-lv.sgm"]=17.01
["newstest2017.PJATK.4744.en-lv.sgm"]=10.15
["newstest2017.QT21-System-Combination.5063.en-lv.sgm"]=18.63
["newstest2017.jhu-pbmt.4969.en-lv.sgm"]=14.35
["newstest2017.limsi-factored-norm.5041.en-lv.sgm"]=16.63
["newstest2017.online-A.0.en-lv.sgm"]=10.84
["newstest2017.online-B.0.en-lv.sgm"]=17.91
["newstest2017.tilde-c-nmt-smt-hybrid.5049.en-lv.sgm"]=20.14
["newstest2017.tilde-nc-nmt-smt-hybrid.5047.en-lv.sgm"]=20.79
["newstest2017.tilde-nc-smt.5044.en-lv.sgm"]=21.05
["newstest2017.uedin-nmt.5016.en-lv.sgm"]=16.93
["newstest2017.usfd-consensus-kit.5078.en-lv.sgm"]=17.48
["newstest2017.usfd-consensus-qt21.5077.en-lv.sgm"]=17.99
["newstest2017.PROMT-Rule-based.4736.en-ru.sgm"]=22.3
["newstest2017.afrl-mitll-backtrans.4907.en-ru.sgm"]=25.37
["newstest2017.jhu-pbmt.4986.en-ru.sgm"]=25.32
["newstest2017.online-A.0.en-ru.sgm"]=23.83
["newstest2017.online-B.0.en-ru.sgm"]=32.05
["newstest2017.online-F.0.en-ru.sgm"]=10.08
["newstest2017.online-G.0.en-ru.sgm"]=27.11
["newstest2017.online-H.0.en-ru.sgm"]=28.41
["newstest2017.uedin-nmt.4756.en-ru.sgm"]=29.79
["newstest2017.JAIST.4858.en-tr.sgm"]=9.98
["newstest2017.LIUM-NMT.4953.en-tr.sgm"]=16.03
["newstest2017.jhu-nmt-lattice-rescore.4904.en-tr.sgm"]=10.37
["newstest2017.jhu-pbmt.4970.en-tr.sgm"]=9.81
["newstest2017.online-A.0.en-tr.sgm"]=11.62
["newstest2017.online-B.0.en-tr.sgm"]=19.93
["newstest2017.online-G.0.en-tr.sgm"]=13.93
["newstest2017.uedin-nmt.4932.en-tr.sgm"]=16.43
["newstest2017.CASICT-DCU-NMT.5157.en-zh.sgm"]=30.52
["newstest2017.Oregon-State-University-S.5174.en-zh.sgm"]=25.93
["newstest2017.SogouKnowing-nmt.5131.en-zh.sgm"]=34.87
["newstest2017.UU-HNMT.5134.en-zh.sgm"]=23.92
["newstest2017.jhu-nmt.5153.en-zh.sgm"]=31.05
["newstest2017.online-A.0.en-zh.sgm"]=29.02
["newstest2017.online-B.0.en-zh.sgm"]=32.07
["newstest2017.online-F.0.en-zh.sgm"]=18.58
["newstest2017.online-G.0.en-zh.sgm"]=21.31
["newstest2017.uedin-nmt.5111.en-zh.sgm"]=36.28
["newstest2017.xmunmt.5165.en-zh.sgm"]=35.84
["newstest2017.Hunter-MT.4925.fi-en.sgm"]=19.96
["newstest2017.TALP-UPC.4937.fi-en.sgm"]=16.13
["newstest2017.apertium-unconstrained.4793.fi-en.sgm"]=6.13
["newstest2017.online-A.0.fi-en.sgm"]=21.13
["newstest2017.online-B.0.fi-en.sgm"]=27.62
["newstest2017.online-G.0.fi-en.sgm"]=22.48
["newstest2017.C-3MA.5067.lv-en.sgm"]=14.31
["newstest2017.Hunter-MT.5092.lv-en.sgm"]=16.23
["newstest2017.PJATK.4740.lv-en.sgm"]=12.42
["newstest2017.jhu-pbmt.4980.lv-en.sgm"]=16.79
["newstest2017.online-A.0.lv-en.sgm"]=15.72
["newstest2017.online-B.0.lv-en.sgm"]=22.02
["newstest2017.tilde-c-nmt-smt-hybrid.5051.lv-en.sgm"]=20.0
["newstest2017.tilde-nc-nmt-smt-hybrid.5050.lv-en.sgm"]=21.92
["newstest2017.uedin-nmt.5017.lv-en.sgm"]=18.98
["newstest2017.NRC.4855.ru-en.sgm"]=33.88
["newstest2017.afrl-mitll-opennmt.4896.ru-en.sgm"]=33.95
["newstest2017.afrl-mitll-syscomb.4905.ru-en.sgm"]=34.71
["newstest2017.jhu-pbmt.4978.ru-en.sgm"]=31.47
["newstest2017.online-A.0.ru-en.sgm"]=31.18
["newstest2017.online-B.0.ru-en.sgm"]=36.94
["newstest2017.online-F.0.ru-en.sgm"]=15.9
["newstest2017.online-G.0.ru-en.sgm"]=34.51
["newstest2017.uedin-nmt.4890.ru-en.sgm"]=30.77
["newstest2017.JAIST.4859.tr-en.sgm"]=12.42
["newstest2017.LIUM-NMT.4888.tr-en.sgm"]=17.91
["newstest2017.PROMT-SMT.4737.tr-en.sgm"]=13.52
["newstest2017.afrl-mitll-m2w-nr1.4901.tr-en.sgm"]=17.54
["newstest2017.afrl-mitll-syscomb.4902.tr-en.sgm"]=18.05
["newstest2017.jhu-pbmt.4972.tr-en.sgm"]=12.64
["newstest2017.online-A.0.tr-en.sgm"]=22.18
["newstest2017.online-B.0.tr-en.sgm"]=25.62
["newstest2017.online-G.0.tr-en.sgm"]=16.38
["newstest2017.uedin-nmt.4931.tr-en.sgm"]=20.08
["newstest2017.CASICT-DCU-NMT.5144.zh-en.sgm"]=22.32
["newstest2017.NMT-Model-Average-Multi-Cards.5099.zh-en.sgm"]=18.98
["newstest2017.NRC.5172.zh-en.sgm"]=25.78
["newstest2017.Oregon-State-University-S.5173.zh-en.sgm"]=18.51
["newstest2017.PROMT-SMT.5125.zh-en.sgm"]=16.47
["newstest2017.ROCMT.5183.zh-en.sgm"]=20.76
["newstest2017.SogouKnowing-nmt.5171.zh-en.sgm"]=26.38
["newstest2017.UU-HNMT.5162.zh-en.sgm"]=15.94
["newstest2017.afrl-mitll-opennmt.5109.zh-en.sgm"]=21.28
["newstest2017.jhu-nmt.5151.zh-en.sgm"]=20.48
["newstest2017.online-A.0.zh-en.sgm"]=24.51
["newstest2017.online-B.0.zh-en.sgm"]=33.23
["newstest2017.online-F.0.zh-en.sgm"]=11.39
["newstest2017.online-G.0.zh-en.sgm"]=15.5
["newstest2017.uedin-nmt.5112.zh-en.sgm"]=25.7
["newstest2017.xmunmt.5160.zh-en.sgm"]=26.0
["kyoto-test"]=14.48
["flores101.devtest.en-ko"]=33.18
)
if [ -z $SKIP_MTEVAL13 ]; then
for pair in cs-en de-en en-cs en-de en-fi en-lv en-ru en-tr en-zh fi-en lv-en ru-en tr-en zh-en; do
source=$(echo $pair | cut -d- -f1)
target=$(echo $pair | cut -d- -f2)
for sgm in wmt17-submitted-data/sgm/system-outputs/newstest2017/$pair/*.sgm; do
name=$(basename $sgm)
if [[ ! -v MTEVAL[$name] ]]; then continue; fi
if [[ ! -z $limit_test && $limit_test != $name ]]; then continue; fi
sys=$(basename $sgm .sgm | perl -pe 's/newstest2017\.//')
txt=$(dirname $sgm | perl -pe 's/sgm/txt/')/$(basename $sgm .sgm)
src=wmt17-submitted-data/sgm/sources/newstest2017-$source$target-src.$source.sgm
ref=wmt17-submitted-data/sgm/references/newstest2017-$source$target-ref.$target.sgm
# mteval=$($MOSES/scripts/generic/mteval-v13a.pl -c -s $src -r $ref -t $sgm 2> /dev/null | grep "BLEU score" | cut -d' ' -f9)
# mteval=$(echo "print($bleu1 * 100)" | python)
score=$(cat $txt | ${CMD} -w 2 -t wmt17 -l $source-$target -b)
echo "import sys; sys.exit(1 if abs($score-${MTEVAL[$name]}) > 0.01 else 0)" | $PYTHON
if [[ $? -eq 1 ]]; then
echo "FAILED test $pair/$sys (wanted ${MTEVAL[$name]} got $score)"
exit 1
fi
echo "Passed $source-$target $sys mteval-v13a.pl: ${MTEVAL[$name]} sacreBLEU: $score"
let i++
done
done
fi
############################################################################
# Pre-computed results from Moses' mteval-v14.pl for BLEU tests
# mteval-v14a.pl -c -s $src -r $ref -t $sgm -b --international-tokenization
############################################################################
echo "-----------------------------------------------------------------"
echo "Starting BLEU tests (mteval-v14.pl, --international-tokenization)"
echo "-----------------------------------------------------------------"
declare -A MTEVAL14=( ["newstest2017.online-A.0.en-ru.sgm"]=23.99
["newstest2017.online-A.0.en-cs.sgm"]=16.65
["newstest2017.uedin-nmt.4890.ru-en.sgm"]=30.91
["newstest2017.xmunmt.5160.zh-en.sgm"]=26.8
["newstest2017.LIUM-NMT.4900.en-de.sgm"]=26.89
["newstest2017.tilde-nc-nmt-smt-hybrid.5047.en-lv.sgm"]=20.88
["newstest2017.TALP-UPC.4937.fi-en.sgm"]=16.18
["newstest2017.LIUM-NMT.4888.tr-en.sgm"]=17.94
["newstest2017.SogouKnowing-nmt.5131.en-zh.sgm"]=7.24
["newstest2017.online-B.0.en-tr.sgm"]=22.88
["newstest2017.apertium-unconstrained.4769.en-fi.sgm"]=1.08
["newstest2017.tilde-c-nmt-smt-hybrid.5051.lv-en.sgm"]=20.44
["newstest2017.RWTH-nmt-ensemble.4920.de-en.sgm"]=33.73
# Below two not exactly compatible with mteval due to 's (#138)
["newstest2017.PJATK.4760.cs-en.sgm"]=23.47
["newstest2017.PJATK.4761.en-cs.sgm"]=15.91
)
if [ -z $SKIP_MTEVAL14 ]; then
for pair in cs-en de-en en-cs en-de en-fi en-lv en-ru en-tr en-zh fi-en lv-en ru-en tr-en zh-en; do
source=$(echo $pair | cut -d- -f1)
target=$(echo $pair | cut -d- -f2)
for sgm in wmt17-submitted-data/sgm/system-outputs/newstest2017/$pair/*.sgm; do
name=$(basename $sgm)
if [[ ! -v MTEVAL14[$name] ]]; then continue; fi
if [[ ! -z $limit_test && $limit_test != $name ]]; then continue; fi
sys=$(basename $sgm .sgm | perl -pe 's/newstest2017\.//')
txt=$(dirname $sgm | perl -pe 's/sgm/txt/')/$(basename $sgm .sgm)
src=wmt17-submitted-data/sgm/sources/newstest2017-$source$target-src.$source.sgm
ref=wmt17-submitted-data/sgm/references/newstest2017-$source$target-ref.$target.sgm
score=$(cat $txt | ${CMD} -w 2 -t wmt17 -l $source-$target -b --tokenize intl)
echo "import sys; sys.exit(1 if abs($score-${MTEVAL14[$name]}) > 0.01 else 0)" | $PYTHON
if [[ $? -eq 1 ]]; then
echo "FAILED test $pair/$sys (wanted ${MTEVAL14[$name]} got $score)"
exit 1
fi
echo "Passed $source-$target $sys mteval-v14.pl: ${MTEVAL14[$name]} sacreBLEU: $score"
let i++
done
done
fi
#######################################################
# Pre-computed TER scores from official implementation
# Cmd: java -jar tercom.7.25.jar -r REF -h HYP | grep '^Total TER' | awk '{ printf "%.3f\n", $3 }'
#######################################################
declare -A TER=( ["newstest2017.online-A.0.cs-en.sgm"]=0.637
["newstest2017.online-B.0.cs-en.sgm"]=0.605
["newstest2017.PJATK.4760.cs-en.sgm"]=0.664
["newstest2017.uedin-nmt.4955.cs-en.sgm"]=0.584
["newstest2017.CU-Chimera.4886.en-cs.sgm"]=0.696
["newstest2017.limsi-factored-norm.4957.en-cs.sgm"]=0.696
["newstest2017.LIUM-FNMT.4852.en-cs.sgm"]=0.699
["newstest2017.LIUM-NMT.4947.en-cs.sgm"]=0.701
["newstest2017.online-A.0.en-cs.sgm"]=0.743
["newstest2017.online-B.0.en-cs.sgm"]=0.703
["newstest2017.PJATK.4761.en-cs.sgm"]=0.757
["newstest2017.uedin-nmt.4956.en-cs.sgm"]=0.667
["newstest2017.C-3MA.4959.en-de.sgm"]=0.669
["newstest2017.FBK.4870.en-de.sgm"]=0.636
["newstest2017.KIT.4950.en-de.sgm"]=0.641
["newstest2017.LIUM-NMT.4900.en-de.sgm"]=0.633
["newstest2017.LMU-nmt-reranked.4934.en-de.sgm"]=0.618
["newstest2017.LMU-nmt-single.4893.en-de.sgm"]=0.626
["newstest2017.online-A.0.en-de.sgm"]=0.690
["newstest2017.online-B.0.en-de.sgm"]=0.632
["newstest2017.online-F.0.en-de.sgm"]=0.756
["newstest2017.online-G.0.en-de.sgm"]=0.733
["newstest2017.PROMT-Rule-based.4735.en-de.sgm"]=0.752
["newstest2017.RWTH-nmt-ensemble.4921.en-de.sgm"]=0.628
["newstest2017.SYSTRAN.4847.en-de.sgm"]=0.611
["newstest2017.TALP-UPC.4834.en-de.sgm"]=0.685
["newstest2017.uedin-nmt.4722.en-de.sgm"]=0.612
["newstest2017.xmu.4910.en-de.sgm"]=0.622
["newstest2017.AaltoHnmtFlatcat.4798.en-fi.sgm"]=0.750
["newstest2017.AaltoHnmtMultitask.4873.en-fi.sgm"]=0.673
["newstest2017.apertium-unconstrained.4769.en-fi.sgm"]=1.246
["newstest2017.HY-AH.4797.en-fi.sgm"]=0.857
["newstest2017.HY-HNMT.4961.en-fi.sgm"]=0.676
["newstest2017.HY-SMT.4882.en-fi.sgm"]=0.754
["newstest2017.jhu-nmt-lattice-rescore.4903.en-fi.sgm"]=0.758
["newstest2017.jhu-pbmt.4968.en-fi.sgm"]=0.778
["newstest2017.online-A.0.en-fi.sgm"]=0.761
["newstest2017.online-B.0.en-fi.sgm"]=0.665
["newstest2017.online-G.0.en-fi.sgm"]=0.767
["newstest2017.TALP-UPC.4939.en-fi.sgm"]=0.806
["newstest2017.C-3MA.5069.en-lv.sgm"]=0.843
["newstest2017.HY-HNMT.5066.en-lv.sgm"]=0.786
["newstest2017.jhu-pbmt.4969.en-lv.sgm"]=0.815
["newstest2017.KIT.5062.en-lv.sgm"]=0.773
["newstest2017.limsi-factored-norm.5041.en-lv.sgm"]=0.780
["newstest2017.LIUM-FNMT.5043.en-lv.sgm"]=0.780
["newstest2017.LIUM-NMT.5042.en-lv.sgm"]=0.769
["newstest2017.online-A.0.en-lv.sgm"]=0.846
["newstest2017.online-B.0.en-lv.sgm"]=0.754
["newstest2017.PJATK.4744.en-lv.sgm"]=0.868
["newstest2017.tilde-c-nmt-smt-hybrid.5049.en-lv.sgm"]=0.731
["newstest2017.tilde-nc-nmt-smt-hybrid.5047.en-lv.sgm"]=0.721
["newstest2017.tilde-nc-smt.5044.en-lv.sgm"]=0.747
["newstest2017.uedin-nmt.5016.en-lv.sgm"]=0.772
["newstest2017.usfd-consensus-kit.5078.en-lv.sgm"]=0.950
["newstest2017.usfd-consensus-qt21.5077.en-lv.sgm"]=0.946
["newstest2017.afrl-mitll-backtrans.4907.en-ru.sgm"]=0.655
["newstest2017.jhu-pbmt.4986.en-ru.sgm"]=0.658
["newstest2017.online-A.0.en-ru.sgm"]=0.661
["newstest2017.online-B.0.en-ru.sgm"]=0.563
["newstest2017.online-F.0.en-ru.sgm"]=0.809
["newstest2017.online-G.0.en-ru.sgm"]=0.618
["newstest2017.PROMT-Rule-based.4736.en-ru.sgm"]=0.667
["newstest2017.uedin-nmt.4756.en-ru.sgm"]=0.614
["newstest2017.JAIST.4858.en-tr.sgm"]=0.875
["newstest2017.jhu-nmt-lattice-rescore.4904.en-tr.sgm"]=0.864
["newstest2017.jhu-pbmt.4970.en-tr.sgm"]=0.874
["newstest2017.LIUM-NMT.4953.en-tr.sgm"]=0.752
["newstest2017.online-A.0.en-tr.sgm"]=0.787
["newstest2017.online-B.0.en-tr.sgm"]=0.677
["newstest2017.uedin-nmt.4932.en-tr.sgm"]=0.747
["newstest2017.CASICT-DCU-NMT.5157.en-zh.sgm"]=0.999
["newstest2017.online-A.0.en-zh.sgm"]=2.936
["newstest2017.online-B.0.en-zh.sgm"]=1.092
["newstest2017.online-F.0.en-zh.sgm"]=1.114
["newstest2017.online-G.0.en-zh.sgm"]=1.158
["newstest2017.Oregon-State-University-S.5174.en-zh.sgm"]=5.622
["newstest2017.SogouKnowing-nmt.5131.en-zh.sgm"]=1.402
["newstest2017.uedin-nmt.5111.en-zh.sgm"]=1.334
["newstest2017.UU-HNMT.5134.en-zh.sgm"]=1.000
["newstest2017.xmunmt.5165.en-zh.sgm"]=1.366
)
if [ -z $SKIP_TER ]; then
echo "-------------------"
echo "Starting TER tests"
echo "-------------------"
for pair in cs-en en-cs en-de en-fi en-lv en-ru en-tr en-zh; do
source=$(echo $pair | cut -d- -f1)
target=$(echo $pair | cut -d- -f2)
for sgm in wmt17-submitted-data/sgm/system-outputs/newstest2017/$pair/*.sgm; do
name=$(basename $sgm)
if [[ ! -z $limit_test && $limit_test != $name ]]; then continue; fi
if [[ ! -v "TER[$name]" ]]; then continue ; fi # official Tercom fails for some outputs...
sys=$(basename $sgm .sgm | perl -pe 's/newstest2017\.//')
txt=$(dirname $sgm | perl -pe 's/sgm/txt/')/$(basename $sgm .sgm)
src=wmt17-submitted-data/sgm/sources/newstest2017-$source$target-src.$source.sgm
ref=wmt17-submitted-data/sgm/references/newstest2017-$source$target-ref.$target.sgm
score=$(cat $txt | ${CMD} -w 3 -t wmt17 -l $source-$target -b --metrics ter)
expected_score="${TER[$name]}"
echo "import sys; sys.exit(1 if abs(0.01 * ${score}-${expected_score}) > 0.01 else 0)" | $PYTHON
if [[ $? -eq 1 ]]; then
echo "FAILED test $pair/$sys (wanted $expected_score got $score)"
exit 1
fi
echo "Passed $source-$target $sys tercom: $expected_score sacreTER: $score"
let i++
done
done
fi
#############
# Mecab tests
#############
if [[ -z $SKIP_MECAB ]]; then
echo "-----------------------"
echo "Testing Mecab tokenizer"
echo "-----------------------"
pair="en-ja"
source=$(echo $pair | cut -d- -f1)
target=$(echo $pair | cut -d- -f2)
for txt in en-ja-translation-example-master/*.hyp.$target; do
name=$(basename $txt .hyp.$target)
if [[ ! -z $limit_test && $limit_test != $name ]]; then continue; fi
sys=$(basename $txt .hyp.$target)
ref=$(dirname $txt)/$(basename $txt .hyp.$target).ref.$target
score=$(cat $txt | ${CMD} -w 2 -l $source-$target -b $ref)
echo "import sys; sys.exit(1 if abs($score-${MTEVAL[$name]}) > 0.01 else 0)" | $PYTHON
if [[ $? -eq 1 ]]; then
echo "FAILED test $pair/$sys (wanted ${MTEVAL[$name]} got $score)"
exit 1
fi
echo "Passed $source-$target $sys mteval-v13a.pl: ${MTEVAL[$name]} sacreBLEU: $score"
let i++
done
fi
#############
# Mecab-ko tests
#############
if [[ -z $SKIP_MECAB_KO ]]; then
echo "-----------------------"
echo "Testing Mecab-ko tokenizer"
echo "-----------------------"
pair="en-ko"
source=$(echo $pair | cut -d- -f1)
target=$(echo $pair | cut -d- -f2)
for txt in en-ko-translation-example-master/*.hyp.$target; do
name=$(basename $txt .hyp.$target)
if [[ ! -z $limit_test && $limit_test != $name ]]; then continue; fi
sys=$(basename $txt .hyp.$target)
ref=$(dirname $txt)/$(basename $txt .hyp.$target).ref.$target
score=$(cat $txt | ${CMD} -w 2 -l $source-$target -b $ref)
echo "import sys; sys.exit(1 if abs($score-${MTEVAL[$name]}) > 0.01 else 0)" | python
if [[ $? -eq 1 ]]; then
echo "FAILED test $pair/$sys (wanted ${MTEVAL[$name]} got $score)"
exit 1
fi
echo "Passed $source-$target $sys mteval-v13a.pl: ${MTEVAL[$name]} sacreBLEU: $score"
let i++
done
fi
echo "Passed $i tests."
exit 0