mirror of
https://github.com/OPM/opm-simulators.git
synced 2024-12-25 00:40:02 -06:00
061b5c2395
Enable new test udq_actionx/ACTIONX_M1
234 lines
9.5 KiB
Bash
Executable File
234 lines
9.5 KiB
Bash
Executable File
#!/bin/bash
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OPM_TESTS_ROOT=$1
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TMPDIR=`mktemp -d`
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mkdir $TMPDIR/orig
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mkdir $TMPDIR/new
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# Copy results from a test run to refence dir
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# $1 = source directory to copy data from
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# $2 = destination directory to copy data to
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# $3 = base file name for files to copy
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# $4...$@ = file types to copy
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copyToReferenceDir () {
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SRC_DIR=$1
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DST_DIR=$2
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STEM=$3
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FILETYPES=${@:4}
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mkdir -p $DST_DIR
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DIFF=1
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for filetype in $FILETYPES
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do
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# Don't flag as changed if both reference and result dir lack a file type
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# In particular to handle the optional RFT's
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if [ ! -f $WORKSPACE/$SRC_DIR$STEM.$filetype ] && [ ! -f $DST_DIR/$STEM.$filetype ]
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then
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continue
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fi
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diff -q "$WORKSPACE/$SRC_DIR$STEM.$filetype" "$DST_DIR/$STEM.$filetype"
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if test $? -ne 0
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then
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cp $WORKSPACE/$SRC_DIR$STEM.$filetype $TMPDIR/new
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$configuration/install/bin/convertECL $TMPDIR/new/$STEM.$filetype
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cp $DST_DIR/$STEM.$filetype $TMPDIR/orig
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$configuration/install/bin/convertECL $TMPDIR/orig/$STEM.$filetype
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diff -u $TMPDIR/orig/$STEM.F$filetype $TMPDIR/new/$STEM.F$filetype >> $WORKSPACE/data_diff
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cp "$WORKSPACE/$SRC_DIR$STEM.$filetype" $DST_DIR
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DIFF=0
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fi
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done
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return $DIFF
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}
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declare -A tests
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# The tests are listed in a dictionary mapping name of the test to the commands
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# used to run the test:
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#
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# tests[cmake_testname]="binary dirname SIMULATION_CASE
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#
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# The key in the dictionary must agree with the name given to the test when
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# registering it with cmake in compareEclFiles.cmake. The SIMULATION_CASE should
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# be the basename of the .DATA file used for the simulation.
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tests[spe1]="flow spe1 SPE1CASE1"
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tests[spe12]="flow spe1 SPE1CASE2"
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tests[spe1_2p]="flow spe1 SPE1CASE2_2P"
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tests[spe1_oilgas]="flow spe1 SPE1CASE2_OILGAS"
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tests[spe1_nowells]="flow spe1 SPE1CASE2_NOWELLS"
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tests[spe1_thermal]="flow spe1 SPE1CASE2_THERMAL"
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tests[spe1_thermal_onephase]="flow_onephase_energy spe1 SPE1CASE1_THERMAL_ONEPHASE"
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tests[spe1_thermal_watvisc]="flow spe1 SPE1CASE2_THERMAL_WATVISC"
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tests[spe1_rockcomp]="flow spe1 SPE1CASE2_ROCK2DTR"
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tests[spe1_brine]="flow spe1_brine SPE1CASE1_BRINE"
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tests[spe1_water]="flow_onephase spe1 SPE1CASE1_WATER"
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tests[spe1_spider]="flow radial_grid SPIDER_CAKESLICE"
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tests[spe1_import]="flow spe1 SPE1CASE1_IMPORT"
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tests[ctaquifer_2d_oilwater]="flow aquifer-oilwater 2D_OW_CTAQUIFER"
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tests[fetkovich_2d]="flow aquifer-fetkovich 2D_FETKOVICHAQUIFER"
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tests[numerical_aquifer_3d_1aqu]="flow aquifer-num 3D_1AQU_3CELLS"
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tests[numerical_aquifer_3d_2aqu]="flow aquifer-num 3D_2AQU_NUM"
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tests[msw_2d_h]="flow msw_2d_h 2D_H__"
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tests[msw_3d_hfa]="flow msw_3d_hfa 3D_MSW"
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tests[polymer_oilwater]="flow polymer_oilwater 2D_OILWATER_POLYMER"
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tests[polymer_simple2D]="flow polymer_simple2D 2D_THREEPHASE_POLY_HETER"
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tests[spe3]="flow spe3 SPE3CASE1"
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tests[spe5]="flow spe5 SPE5CASE1"
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tests[spe5_co2eor]="flow spe5_co2eor SPE5CASE1_DYN"
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tests[spe9group]="flow spe9group SPE9_CP_GROUP"
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tests[spe9]="flow spe9 SPE9_CP_SHORT"
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tests[wecon_wtest]="flow wecon_wtest 3D_WECON"
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tests[spe1_metric_vfp1]="flow vfpprod_spe1 SPE1CASE1_METRIC_VFP1"
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tests[base_model_1]="flow model1 BASE_MODEL_1"
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tests[msw_model_1]="flow model1 MSW_MODEL_1"
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tests[faults_model_1]="flow model1 FAULTS_MODEL_1"
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tests[base_model2]="flow model2 0_BASE_MODEL2"
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tests[0a1_grpctl_stw_model2]="flow model2 0A1_GRCTRL_LRAT_ORAT_BASE_MODEL2_STW"
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tests[0a1_grpctl_msw_model2]="flow model2 0A1_GRCTRL_LRAT_ORAT_BASE_MODEL2_MSW"
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tests[0a2_grpctl_stw_model2]="flow model2 0A2_GRCTRL_LRAT_ORAT_GGR_BASE_MODEL2_STW"
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tests[0a2_grpctl_msw_model2]="flow model2 0A2_GRCTRL_LRAT_ORAT_GGR_BASE_MODEL2_MSW"
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tests[0a3_grpctl_stw_model2]="flow model2 0A3_GRCTRL_LRAT_LRAT_BASE_MODEL2_STW"
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tests[0a3_grpctl_msw_model2]="flow model2 0A3_GRCTRL_LRAT_LRAT_BASE_MODEL2_MSW"
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tests[0a4_grpctl_stw_model2]="flow model2 0A4_GRCTRL_LRAT_LRAT_GGR_BASE_MODEL2_STW"
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tests[0a4_grpctl_msw_model2]="flow model2 0A4_GRCTRL_LRAT_LRAT_GGR_BASE_MODEL2_MSW"
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tests[multregt_model2]="flow model2 1_MULTREGT_MODEL2"
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tests[multxyz_model2]="flow model2 2_MULTXYZ_MODEL2"
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tests[multflt_model2]="flow model2 3_MULTFLT_MODEL2"
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tests[multpvv_model2]="flow model2 4_MINPVV_MODEL2"
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tests[swatinit_model2]="flow model2 5_SWATINIT_MODEL2"
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tests[endscale_model2]="flow model2 6_ENDSCALE_MODEL2"
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tests[hysteresis_model2]="flow model2 7_HYSTERESIS_MODEL2"
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tests[multiply_tranxyz_model2]="flow model2 8_MULTIPLY_TRANXYZ_MODEL2"
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tests[editnnc_model2]="flow model2 9_EDITNNC_MODEL2"
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tests[9_1a_grpctl_stw_model2]="flow model2 9_1A_DEPL_MAX_RATE_MIN_BHP_STW"
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tests[9_1a_grpctl_msw_model2]="flow model2 9_1A_DEPL_MAX_RATE_MIN_BHP_MSW"
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tests[9_1b_grpctl_stw_model2]="flow model2 9_1B_DEPL_MAX_RATE_MIN_THP_STW"
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tests[9_1b_grpctl_msw_model2]="flow model2 9_1B_DEPL_MAX_RATE_MIN_THP_MSW"
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tests[9_2a_grpctl_stw_model2]="flow model2 9_2A_DEPL_GCONPROD_1L_STW"
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tests[9_2a_grpctl_msw_model2]="flow model2 9_2A_DEPL_GCONPROD_1L_MSW"
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tests[9_2b_grpctl_stw_model2]="flow model2 9_2B_DEPL_GCONPROD_2L_STW"
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tests[9_2b_grpctl_msw_model2]="flow model2 9_2B_DEPL_GCONPROD_2L_MSW"
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tests[9_3a_grpctl_stw_model2]="flow model2 9_3A_GINJ_REIN-G_STW"
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tests[9_3a_grpctl_msw_model2]="flow model2 9_3A_GINJ_REIN-G_MSW"
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tests[9_3b_grpctl_stw_model2]="flow model2 9_3B_GINJ_GAS_EXPORT_STW"
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tests[9_3b_grpctl_msw_model2]="flow model2 9_3B_GINJ_GAS_EXPORT_MSW"
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tests[9_3c_grpctl_stw_model2]="flow model2 9_3C_GINJ_GAS_GCONSUMP_STW"
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tests[9_3c_grpctl_msw_model2]="flow model2 9_3C_GINJ_GAS_GCONSUMP_MSW"
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tests[9_3d_grpctl_stw_model2]="flow model2 9_3D_GINJ_GAS_MAX_EXPORT_STW"
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tests[9_3d_grpctl_msw_model2]="flow model2 9_3D_GINJ_GAS_MAX_EXPORT_MSW"
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tests[9_3e_grpctl_stw_model2]="flow model2 9_3E_GAS_MIN_EXPORT_STW"
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tests[9_3e_grpctl_msw_model2]="flow model2 9_3E_GAS_MIN_EXPORT_MSW"
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tests[9_4a_grpctl_stw_model2]="flow model2 9_4A_WINJ_MAXWRATES_MAXBHP_GCONPROD_1L_STW"
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tests[9_4a_grpctl_msw_model2]="flow model2 9_4A_WINJ_MAXWRATES_MAXBHP_GCONPROD_1L_MSW"
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tests[9_4b_grpctl_stw_model2]="flow model2 9_4B_WINJ_VREP-W_STW"
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tests[9_4b_grpctl_msw_model2]="flow model2 9_4B_WINJ_VREP-W_MSW"
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tests[9_4c_grpctl_stw_model2]="flow model2 9_4C_WINJ_GINJ_VREP-W_REIN-G_STW"
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tests[9_4c_grpctl_msw_model2]="flow model2 9_4C_WINJ_GINJ_VREP-W_REIN-G_MSW"
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tests[9_4d_grpctl_stw_model2]="flow model2 9_4D_WINJ_GINJ_GAS_EXPORT_STW"
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tests[9_4d_grpctl_msw_model2]="flow model2 9_4D_WINJ_GINJ_GAS_EXPORT_MSW"
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tests[model4_group]="flow model4 MOD4_GRP"
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tests[model4_udq_group]="flow model4 MOD4_UDQ_ACTIONX"
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tests[polymer_injectivity]="flow polymer_injectivity 2D_POLYMER_INJECTIVITY"
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tests[nnc]="flow editnnc NNC_AND_EDITNNC"
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tests[udq_wconprod]="flow udq_actionx UDQ_WCONPROD"
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tests[udq_actionx]="flow udq_actionx UDQ_ACTIONX"
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tests[actionx_m1]="flow udq_actionx ACTIONX_M1"
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tests[udq_uadd]="flow udq_actionx UDQ_M1"
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tests[udq_undefined]="flow udq_actionx UDQ_M2"
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tests[udq_in_actionx]="flow udq_actionx UDQ_M3"
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tests[udq_pyaction]="flow udq_actionx PYACTION_WCONPROD"
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tests[spe1_foam]="flow spe1_foam SPE1FOAM"
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tests[wsegsicd]="flow wsegsicd TEST_WSEGSICD"
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tests[wsegaicd]="flow wsegaicd BASE_MSW_WSEGAICD"
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tests[bc_lab]="flow bc_lab BC_LAB"
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tests[pinch_multz_all]="flow pinch PINCH_MULTZ_ALL"
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tests[pinch_multz_all_barrier]="flow pinch PINCH_MULTZ_ALL_BARRIER"
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tests[model6_msw]="flow model6 1_MSW_MODEL6"
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tests[norne_reperf]="flow norne NORNE_ATW2013_B1H_RE-PERF"
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tests[compl_smry]="flow compl_smry COMPL_SMRY"
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tests[3d_tran_operator]="flow parallel_fieldprops 3D_TRAN_OPERATOR"
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tests[co2store]="flow co2store CO2STORE"
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tests[co2store_diffusive]="flow co2store CO2STORE_DIFFUSIVE"
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tests[co2store_drsdtcon]="flow co2store CO2STORE_DRSDTCON"
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changed_tests=""
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# Read failed tests
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FAILED_TESTS=`cat $WORKSPACE/$configuration/build-opm-simulators/Testing/Temporary/LastTestsFailed*.log`
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test -z "$FAILED_TESTS" && exit 5
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for failed_test in $FAILED_TESTS
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do
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failed=`echo $failed_test | sed -e 's/.*:compareECLFiles_//g'`
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for test_name in ${!tests[*]}
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do
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binary=`echo ${tests[$test_name]} | awk -F ' ' '{print $1}'`
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dirname=`echo ${tests[$test_name]} | awk -F ' ' '{print $2}'`
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casename=`echo ${tests[$test_name]} | awk -F ' ' '{print $3}'`
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if grep -q "$failed" <<< "$binary+$casename"
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then
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copyToReferenceDir \
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$configuration/build-opm-simulators/tests/results/$binary+$test_name/ \
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$OPM_TESTS_ROOT/$dirname/opm-simulation-reference/$binary \
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$casename \
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EGRID INIT RFT SMSPEC UNRST UNSMRY
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test $? -eq 0 && changed_tests="$changed_tests $test_name"
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fi
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done
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done
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# special tests
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copyToReferenceDir \
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$configuration/build-opm-simulators/tests/results/init/flow+norne/ \
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$OPM_TESTS_ROOT/norne/opm-simulation-reference/flow \
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NORNE_ATW2013 \
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EGRID INIT
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test $? -eq 0 && changed_tests="$changed_tests norne_init"
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changed_tests=`echo $changed_tests | xargs`
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echo -e "Automatic Reference Data Update for PR ${REASON:-(Unknown)}\n" > /tmp/cmsg
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if [ -z "$REASON" ]
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then
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echo -e "Reason: fill in this\n" >> /tmp/cmsg
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else
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echo -e "Reason: $REASON\n" >> /tmp/cmsg
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fi
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for dep in opm-common opm-grid opm-material opm-models
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do
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pushd $WORKSPACE/deps/$dep > /dev/null
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name=`printf "%-14s" $dep`
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rev=`git rev-parse HEAD`
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echo -e "$name = $rev" >> /tmp/cmsg
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popd > /dev/null
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done
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echo -e "opm-simulators = `git rev-parse HEAD`" >> /tmp/cmsg
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echo -e "\n### Changed Tests ###\n" >> /tmp/cmsg
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for t in ${changed_tests}
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do
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echo " * ${t}" >> /tmp/cmsg
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done
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cd $OPM_TESTS_ROOT
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if [ -n "$BRANCH_NAME" ]
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then
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git checkout -b $BRANCH_NAME origin/master
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fi
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# Add potential new files
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untracked=`git status | sed '1,/Untracked files/d' | tail -n +3 | head -n -2`
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if [ -n "$untracked" ]
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then
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git add $untracked
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fi
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if [ -z "$REASON" ]
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then
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git commit -a -t /tmp/cmsg
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else
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git commit -a -F /tmp/cmsg
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fi
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rm -rf $TMPDIR
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