Mock Version: 1.2.17 ENTER ['do'](['bash', '--login', '-c', '/usr/bin/rpmbuild -bs --target armv7hl --nodeps /builddir/build/SPECS/openmx.spec'], chrootPath='/var/lib/mock/epel-1-armhfp-a1cd024a261c17f00edaab5a8d73a52c71de588e/root'shell=FalseprintOutput=Falseenv={'LANG': 'en_US.UTF-8', 'TERM': 'vt100', 'SHELL': '/bin/bash', 'PROMPT_COMMAND': 'printf "\x1b]0;\x07"', 'PATH': '/usr/bin:/bin:/usr/sbin:/sbin', 'HOME': '/builddir', 'HOSTNAME': 'mock'}gid=135user='mockbuild'timeout=0logger=uid=996) Executing command: ['bash', '--login', '-c', '/usr/bin/rpmbuild -bs --target armv7hl --nodeps /builddir/build/SPECS/openmx.spec'] with env {'LANG': 'en_US.UTF-8', 'TERM': 'vt100', 'SHELL': '/bin/bash', 'PROMPT_COMMAND': 'printf "\x1b]0;\x07"', 'PATH': '/usr/bin:/bin:/usr/sbin:/sbin', 'HOME': '/builddir', 'HOSTNAME': 'mock'} and shell False Building target platforms: armv7hl Building for target armv7hl Wrote: /builddir/build/SRPMS/openmx-3.8.1-9.el7.src.rpm Child return code was: 0 ENTER ['do'](['bash', '--login', '-c', u'/usr/bin/rpmbuild -bb --target armv7hl --nodeps /builddir/build/SPECS/openmx.spec'], chrootPath='/var/lib/mock/epel-1-armhfp-a1cd024a261c17f00edaab5a8d73a52c71de588e/root'shell=Falseuid=996env={'LANG': 'en_US.UTF-8', 'TERM': 'vt100', 'SHELL': '/bin/bash', 'PROMPT_COMMAND': 'printf "\x1b]0;\x07"', 'PATH': '/usr/bin:/bin:/usr/sbin:/sbin', 'HOME': '/builddir', 'HOSTNAME': 'mock'}gid=135user='mockbuild'timeout=0private_network=Truelogger=printOutput=False) Executing command: ['bash', '--login', '-c', u'/usr/bin/rpmbuild -bb --target armv7hl --nodeps /builddir/build/SPECS/openmx.spec'] with env {'LANG': 'en_US.UTF-8', 'TERM': 'vt100', 'SHELL': '/bin/bash', 'PROMPT_COMMAND': 'printf "\x1b]0;\x07"', 'PATH': '/usr/bin:/bin:/usr/sbin:/sbin', 'HOME': '/builddir', 'HOSTNAME': 'mock'} and shell False Building target platforms: armv7hl Building for target armv7hl Executing(%prep): /bin/sh -e /var/tmp/rpm-tmp.40rBYb + umask 022 + cd /builddir/build/BUILD + cd /builddir/build/BUILD + rm -rf openmx3.8 + /usr/bin/gzip -dc /builddir/build/SOURCES/openmx3.8.tar.gz + /usr/bin/tar -xf - + STATUS=0 + '[' 0 -ne 0 ']' + cd openmx3.8 + /usr/bin/chmod -Rf a+rX,u+w,g-w,o-w . + cp -p /builddir/build/SOURCES/COPYING /builddir/build/SOURCES/LICENSE . + cd source + tar -zxf /builddir/build/SOURCES/patch3.8.1.tar.gz Patch #0 (openmx-use-system-elpa.patch): + cd .. + echo 'Patch #0 (openmx-use-system-elpa.patch):' + /usr/bin/patch -p1 -b --suffix .elpa --fuzz=0 + /usr/bin/cat /builddir/build/SOURCES/openmx-use-system-elpa.patch patching file source/get_elpa_row_col_comms.f90 patching file source/makefile patching file source/solve_evp_complex.f90 patching file source/solve_evp_real.f90 + rm -f source/elpa1.f90 source/elpa1.mod Patch #1 (openmx-format-security.patch): + echo 'Patch #1 (openmx-format-security.patch):' + /usr/bin/cat /builddir/build/SOURCES/openmx-format-security.patch + /usr/bin/patch -p1 -b --suffix .format-security --fuzz=0 patching file source/Force_test.c patching file source/Memory_Leak_test.c patching file source/Stress_test.c + find source/liberi-091216/ '(' -name '*.oo' -o -name '*.o' -o -name test_pp ')' -delete + for mpi in mpich openmpi + cp -pr source mpich + for mpi in mpich openmpi + cp -pr source openmpi + exit 0 Executing(%build): /bin/sh -e /var/tmp/rpm-tmp.5Rayb9 + umask 022 + cd /builddir/build/BUILD + cd openmx3.8 + for mpi in mpich openmpi + module load mpi/mpich-arm ++ /usr/bin/modulecmd bash load mpi/mpich-arm + eval LD_LIBRARY_PATH=/usr/lib/mpich/lib ';export' 'LD_LIBRARY_PATH;LOADEDMODULES=mpi/mpich-arm' ';export' 'LOADEDMODULES;MANPATH=/usr/share/man/mpich:/usr/share/man:/usr/local/share/man' ';export' 'MANPATH;MPI_BIN=/usr/lib/mpich/bin' ';export' 'MPI_BIN;MPI_COMPILER=mpich-arm' ';export' 'MPI_COMPILER;MPI_FORTRAN_MOD_DIR=/usr/lib/gfortran/modules/mpich-arm' ';export' 'MPI_FORTRAN_MOD_DIR;MPI_HOME=/usr/lib/mpich' ';export' 'MPI_HOME;MPI_INCLUDE=/usr/include/mpich-arm' ';export' 'MPI_INCLUDE;MPI_LIB=/usr/lib/mpich/lib' ';export' 'MPI_LIB;MPI_MAN=/usr/share/man/mpich' ';export' 'MPI_MAN;MPI_PYTHON_SITEARCH=/usr/lib/python2.7/site-packages/mpich' ';export' 'MPI_PYTHON_SITEARCH;MPI_SUFFIX=_mpich' ';export' 'MPI_SUFFIX;MPI_SYSCONFIG=/etc/mpich-arm' ';export' 'MPI_SYSCONFIG;PATH=/usr/lib/mpich/bin:/usr/bin:/bin:/usr/sbin:/sbin:/usr/local/sbin:/builddir/.local/bin:/builddir/bin' ';export' 'PATH;PKG_CONFIG_PATH=/usr/lib/mpich/lib/pkgconfig:/usr/lib/pkgconfig:/usr/share/pkgconfig' ';export' 'PKG_CONFIG_PATH;PYTHONPATH=/usr/lib/python2.7/site-packages/mpich' ';export' 'PYTHONPATH;_LMFILES_=/etc/modulefiles/mpi/mpich-arm' ';export' '_LMFILES_;' ++ LD_LIBRARY_PATH=/usr/lib/mpich/lib ++ export LD_LIBRARY_PATH ++ LOADEDMODULES=mpi/mpich-arm ++ export LOADEDMODULES ++ MANPATH=/usr/share/man/mpich:/usr/share/man:/usr/local/share/man ++ export MANPATH ++ MPI_BIN=/usr/lib/mpich/bin ++ export MPI_BIN ++ MPI_COMPILER=mpich-arm ++ export MPI_COMPILER ++ MPI_FORTRAN_MOD_DIR=/usr/lib/gfortran/modules/mpich-arm ++ export MPI_FORTRAN_MOD_DIR ++ MPI_HOME=/usr/lib/mpich ++ export MPI_HOME ++ MPI_INCLUDE=/usr/include/mpich-arm ++ export MPI_INCLUDE ++ MPI_LIB=/usr/lib/mpich/lib ++ export MPI_LIB ++ MPI_MAN=/usr/share/man/mpich ++ export MPI_MAN ++ MPI_PYTHON_SITEARCH=/usr/lib/python2.7/site-packages/mpich ++ export MPI_PYTHON_SITEARCH ++ MPI_SUFFIX=_mpich ++ export MPI_SUFFIX ++ MPI_SYSCONFIG=/etc/mpich-arm ++ export MPI_SYSCONFIG ++ PATH=/usr/lib/mpich/bin:/usr/bin:/bin:/usr/sbin:/sbin:/usr/local/sbin:/builddir/.local/bin:/builddir/bin ++ export PATH ~/build/BUILD/openmx3.8/mpich ~/build/BUILD/openmx3.8 ++ PKG_CONFIG_PATH=/usr/lib/mpich/lib/pkgconfig:/usr/lib/pkgconfig:/usr/share/pkgconfig ++ export PKG_CONFIG_PATH ++ PYTHONPATH=/usr/lib/python2.7/site-packages/mpich ++ export PYTHONPATH ++ _LMFILES_=/etc/modulefiles/mpi/mpich-arm ++ export _LMFILES_ + pushd mpich + CFLAGS='-O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source' + FCFLAGS='-O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I/usr/lib/gfortran/modules/mpich-arm -I/usr/lib/gfortran/modules/mpich' + LIBS='-lfftw3 -lopenblas -lgfortran -lelpa' + case $MPI_SUFFIX in + LIBMPI=-lmpich + '[' -r /usr/lib/mpich/lib/libmpifort.so ']' + make 'CC=mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source' 'FC=mpif90 -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I/usr/lib/gfortran/modules/mpich-arm -I/usr/lib/gfortran/modules/mpich -I/usr/lib/gfortran/modules/mpich-arm' 'LIB=-lfftw3 -lopenblas -lgfortran -lelpa -L/usr/lib/mpich/lib -lmpich' openmx DosMain jx analysis_example esp OpticalConductivityMain polB test_mpi -j4 mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -c openmx.c mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -c openmx_common.c mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -c Input_std.c mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -c Inputtools.c Inputtools.c: In function 'input_stringv': Inputtools.c:374:3: warning: suggest parentheses around assignment used as truth value [-Wparentheses] while ( c=fgets(buf,size,fp) ) { ^ Inputtools.c: In function 'input_doublev': Inputtools.c:419:3: warning: suggest parentheses around assignment used as truth value [-Wparentheses] while ( c=fgets(buf,size,fp) ) { ^ Inputtools.c: In function 'input_intv': Inputtools.c:466:3: warning: suggest parentheses around assignment used as truth value [-Wparentheses] while ( c=fgets(buf,size,fp) ) { ^ Inputtools.c: In function 'input_last': Inputtools.c:529:8: warning: ignoring return value of 'fgets', declared with attribute warn_unused_result [-Wunused-result] fgets(buf,size,fp); ^ Inputtools.c:530:8: warning: ignoring return value of 'fgets', declared with attribute warn_unused_result [-Wunused-result] fgets(buf,size,fp); ^ Input_std.c: In function 'Input_std': Input_std.c:206:3: warning: suggest parentheses around assignment used as truth value [-Wparentheses] if (fp=input_find("FermiEps || (cal_partial_charge && (FermiEpsFermiEps || (cal_partial_charge && (FermiEpsnshell_ep = nshell_ep; ^ exx.c:136:7: warning: 'nshell_op' may be used uninitialized in this function [-Wmaybe-uninitialized] nop = EXX_Index_OP(natom, nshell_op, self->atom_rc, self->atom_v, ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_index.o exx_index.c exx_index.c: In function 'EXX_Index_Cmp_OP': exx_index.c:91:25: warning: variable 'ic0_op' set but not used [-Wunused-but-set-variable] int ncd_op, ncell_op, ic0_op; ^ exx_index.c: In function 'EXX_Index_OP': exx_index.c:331:47: warning: unused variable 'z' [-Wunused-variable] double c1[3], c2[3], rc1, rc2, cc[3], x, y, z, d; ^ exx_index.c:331:44: warning: unused variable 'y' [-Wunused-variable] double c1[3], c2[3], rc1, rc2, cc[3], x, y, z, d; ^ exx_index.c:331:41: warning: unused variable 'x' [-Wunused-variable] double c1[3], c2[3], rc1, rc2, cc[3], x, y, z, d; ^ exx_index.c:331:34: warning: unused variable 'cc' [-Wunused-variable] double c1[3], c2[3], rc1, rc2, cc[3], x, y, z, d; ^ exx_index.c: In function 'EXX_Index_EQ': exx_index.c:418:18: warning: unused variable 'cc2' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:418:10: warning: unused variable 'cc1' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:414:53: warning: variable 'ic0_op' set but not used [-Wunused-but-set-variable] int neq, ncell, ncd, nshell_op, ncell_op, ncd_op, ic0_op; ^ exx_index.c: In function 'EXX_Index_EP': exx_index.c:561:36: warning: variable 'ic0_op' set but not used [-Wunused-but-set-variable] int nshell_op, ncd_op, ncell_op, ic0_op, ncd, ncell, iflag, nep; ^ exx_index.c: In function 'EXX_Index_NQ_Full': exx_index.c:690:18: warning: unused variable 'cc2' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:690:10: warning: unused variable 'cc1' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:686:52: warning: variable 'ic0_op' set but not used [-Wunused-but-set-variable] int nq, ncell, ncd, nshell_op, ncell_op, ncd_op, ic0_op; ^ exx_index.c:685:59: warning: variable 'ic0' set but not used [-Wunused-but-set-variable] int iatm1, iatm2, iatm3, iatm4, icell1, icell2, icell3, ic0; ^ exx_index.c: In function 'EXX_Index_NQ_Reduced': exx_index.c:802:18: warning: unused variable 'cc2' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:802:10: warning: unused variable 'cc1' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:798:52: warning: variable 'ic0_op' set but not used [-Wunused-but-set-variable] int nq, ncell, ncd, nshell_op, ncell_op, ncd_op, ic0_op; ^ exx_index.c:797:59: warning: variable 'ic0' set but not used [-Wunused-but-set-variable] int iatm1, iatm2, iatm3, iatm4, icell1, icell2, icell3, ic0; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_vector.o exx_vector.c mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_log.o exx_log.c mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_step1.o exx_step1.c exx_step1.c: In function 'EXX_Step1': exx_step1.c:63:14: warning: unused variable 'mpistat' [-Wunused-variable] MPI_Status mpistat; ^ exx_step1.c:55:16: warning: unused variable 'nq_sig' [-Wunused-variable] int nq_full, nq_sig; ^ exx_step1.c:55:7: warning: unused variable 'nq_full' [-Wunused-variable] int nq_full, nq_sig; ^ exx_step1.c:39:16: warning: unused variable 'z' [-Wunused-variable] double x, y, z, c1[3], c2[3], rc1, rc2, d, rc12, cx12, c12[3]; ^ exx_step1.c:39:13: warning: unused variable 'y' [-Wunused-variable] double x, y, z, c1[3], c2[3], rc1, rc2, d, rc12, cx12, c12[3]; ^ exx_step1.c:39:10: warning: unused variable 'x' [-Wunused-variable] double x, y, z, c1[3], c2[3], rc1, rc2, d, rc12, cx12, c12[3]; ^ exx_step1.c:33:10: warning: unused variable 'j' [-Wunused-variable] int i, j; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_step2.o exx_step2.c exx_step2.c: In function 'step2_core': exx_step2.c:116:27: warning: unused variable 'glY' [-Wunused-variable] double *mm_A, *mul_gc, *glY; ^ exx_step2.c:116:11: warning: unused variable 'mm_A' [-Wunused-variable] double *mm_A, *mul_gc, *glY; ^ exx_step2.c:113:22: warning: unused variable 'X' [-Wunused-variable] double I4[NRNMAX], X[NRNMAX*ERI_LMAXMAX*ERI_LMAXMAX]; ^ exx_step2.c:113:10: warning: unused variable 'I4' [-Wunused-variable] double I4[NRNMAX], X[NRNMAX*ERI_LMAXMAX*ERI_LMAXMAX]; ^ exx_step2.c:108:17: warning: unused variable 'nrn0' [-Wunused-variable] int nrn, irn, nrn0; ^ exx_step2.c:102:34: warning: unused variable 'cnt3' [-Wunused-variable] unsigned long long cnt1, cnt2, cnt3; ^ exx_step2.c:100:16: warning: variable 'thresh' set but not used [-Wunused-but-set-variable] double rmin, thresh; ^ exx_step2.c:95:17: warning: unused variable 'glf2_max' [-Wunused-variable] const double *glf2_max; ^ exx_step2.c:94:17: warning: unused variable 'glf1_max' [-Wunused-variable] const double *glf1_max; ^ exx_step2.c:93:22: warning: unused variable 'ip2' [-Wunused-variable] int np1, np2, ip1, ip2; ^ exx_step2.c:93:17: warning: unused variable 'ip1' [-Wunused-variable] int np1, np2, ip1, ip2; ^ exx_step2.c:93:12: warning: unused variable 'np2' [-Wunused-variable] int np1, np2, ip1, ip2; ^ exx_step2.c:93:7: warning: unused variable 'np1' [-Wunused-variable] int np1, np2, ip1, ip2; ^ exx_step2.c:87:22: warning: unused variable 'ngrid' [-Wunused-variable] int lmax, lmax_gl, ngrid, ngl, ndglf, nd; ^ exx_step2.c:87:7: warning: unused variable 'lmax' [-Wunused-variable] int lmax, lmax_gl, ngrid, ngl, ndglf, nd; ^ exx_step2.c:74:12: warning: variable 'natom' set but not used [-Wunused-but-set-variable] int nop, natom, nshop, nshep; ^ exx_step2.c:74:7: warning: variable 'nop' set but not used [-Wunused-but-set-variable] int nop, natom, nshop, nshep; ^ exx_step2.c:62:16: warning: unused variable 'j' [-Wunused-variable] int i, k, f, j; ^ exx_step2.c:62:10: warning: unused variable 'k' [-Wunused-variable] int i, k, f, j; ^ exx_step2.c: In function 'EXX_Step2': exx_step2.c:355:41: warning: unused variable 'nd' [-Wunused-variable] int lmax, lmax_gl, ngrid, ngl, ndglf, nd; ^ exx_step2.c:355:34: warning: unused variable 'ndglf' [-Wunused-variable] int lmax, lmax_gl, ngrid, ngl, ndglf, nd; ^ exx_step2.c:340:13: warning: unused variable 'f' [-Wunused-variable] int i, k, f, iop1, iop2, nop; ^ exx_step2.c:340:10: warning: unused variable 'k' [-Wunused-variable] int i, k, f, iop1, iop2, nop; ^ exx_step2.c: In function 'step2_core': exx_step2.c:333:13: warning: 'cnt2' may be used uninitialized in this function [-Wmaybe-uninitialized] *out_cnt2 = cnt2; ^ exx_step2.c:332:13: warning: 'cnt1' may be used uninitialized in this function [-Wmaybe-uninitialized] *out_cnt1 = cnt1; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_file_overlap.o exx_file_overlap.c exx_file_overlap.c: In function 'EXX_File_Overlap_Write': exx_file_overlap.c:28:22: warning: unused variable 'nd1' [-Wunused-variable] int myrank, nproc, nd1, iop; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_file_eri.o exx_file_eri.c exx_file_eri.c: In function 'EXX_File_ERI_Create': exx_file_eri.c:35:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz; ^ exx_file_eri.c: In function 'EXX_File_ERI_Write': exx_file_eri.c:65:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz; ^ exx_file_eri.c:62:17: warning: unused variable 'stat' [-Wunused-variable] int neri, nr, stat; ^ exx_file_eri.c: In function 'EXX_File_ERI_Read_NRecord': exx_file_eri.c:111:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz; ^ exx_file_eri.c: In function 'EXX_File_ERI_Read_Data_Head': exx_file_eri.c:139:14: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t cb, sz; ^ exx_file_eri.c: In function 'EXX_File_ERI_Read': exx_file_eri.c:200:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz, cb; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_interface_openmx.o exx_interface_openmx.c exx_interface_openmx.c: In function 'EXX_OP2EP_Cluster': exx_interface_openmx.c:643:19: warning: variable 'nep' set but not used [-Wunused-but-set-variable] int i, j, k, l, nep; ^ exx_interface_openmx.c: In function 'EXX_Fock_Cluster': exx_interface_openmx.c:765:14: warning: unused variable 'stat' [-Wunused-variable] MPI_Status stat; ^ exx_interface_openmx.c:764:20: warning: unused variable 'iproc' [-Wunused-variable] int nproc, myid, iproc; ^ exx_interface_openmx.c:758:45: warning: variable 'tnoB' set but not used [-Wunused-but-set-variable] int GA_AN, wanA, tnoA, Anum, GB_AN, wanB, tnoB, Bnum; ^ exx_interface_openmx.c:758:20: warning: variable 'tnoA' set but not used [-Wunused-but-set-variable] int GA_AN, wanA, tnoA, Anum, GB_AN, wanB, tnoB, Bnum; ^ exx_interface_openmx.c:753:25: warning: variable 'op_atom2' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:753:14: warning: variable 'op_atom1' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:746:29: warning: unused variable 'nep' [-Wunused-variable] int i, j, n, ir, nr, irn, nep; ^ exx_interface_openmx.c:746:24: warning: unused variable 'irn' [-Wunused-variable] int i, j, n, ir, nr, irn, nep; ^ exx_interface_openmx.c:746:13: warning: unused variable 'n' [-Wunused-variable] int i, j, n, ir, nr, irn, nep; ^ exx_interface_openmx.c: In function 'EXX_Fock_Band': exx_interface_openmx.c:1047:36: warning: variable 'si2' set but not used [-Wunused-but-set-variable] double kRn, kRmp, co1, si1, co2, si2; ^ exx_interface_openmx.c:1047:31: warning: variable 'co2' set but not used [-Wunused-but-set-variable] double kRn, kRmp, co1, si1, co2, si2; ^ exx_interface_openmx.c:1043:14: warning: unused variable 'stat' [-Wunused-variable] MPI_Status stat; ^ exx_interface_openmx.c:1028:25: warning: variable 'op_atom2' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:1028:14: warning: variable 'op_atom1' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:1021:29: warning: unused variable 'nep' [-Wunused-variable] int i, j, n, ir, nr, irn, nep; ^ exx_interface_openmx.c:1021:13: warning: unused variable 'n' [-Wunused-variable] int i, j, n, ir, nr, irn, nep; ^ exx_interface_openmx.c: In function 'EXX_Energy_Band': exx_interface_openmx.c:1237:14: warning: unused variable 'stat' [-Wunused-variable] MPI_Status stat; ^ exx_interface_openmx.c:1227:25: warning: variable 'op_atom2' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:1227:14: warning: variable 'op_atom1' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:1223:63: warning: variable 'icell2' set but not used [-Wunused-but-set-variable] int iatm1, iatm2, iatm3, iatm4, ib1, ib2, ib3, ib4, icell1, icell2; ^ exx_interface_openmx.c:1223:55: warning: variable 'icell1' set but not used [-Wunused-but-set-variable] int iatm1, iatm2, iatm3, iatm4, ib1, ib2, ib3, ib4, icell1, icell2; ^ exx_interface_openmx.c:1221:26: warning: variable 'Bnum' set but not used [-Wunused-but-set-variable] int GA_AN,Anum, GB_AN, Bnum; ^ exx_interface_openmx.c:1221:19: warning: unused variable 'GB_AN' [-Wunused-variable] int GA_AN,Anum, GB_AN, Bnum; ^ exx_interface_openmx.c:1221:13: warning: variable 'Anum' set but not used [-Wunused-but-set-variable] int GA_AN,Anum, GB_AN, Bnum; ^ exx_interface_openmx.c:1221:7: warning: unused variable 'GA_AN' [-Wunused-variable] int GA_AN,Anum, GB_AN, Bnum; ^ exx_interface_openmx.c:1219:29: warning: unused variable 'nep' [-Wunused-variable] int i, j, n, ir, nr, irn, nep, spin; ^ exx_interface_openmx.c:1219:13: warning: unused variable 'n' [-Wunused-variable] int i, j, n, ir, nr, irn, nep, spin; ^ exx_interface_openmx.c:1218:22: warning: unused variable 'iproc' [-Wunused-variable] int myrank, nproc, iproc; ^ In file included from exx_interface_openmx.c:10:0: exx_interface_openmx.c: At top level: openmx_common.h:1:13: warning: 'Version_OpenMX' defined but not used [-Wunused-variable] static char Version_OpenMX[30] = "3.8.1"; /* version of OpenMX */ ^ openmx_common.h:87:12: warning: 'NfundamentalNum' defined but not used [-Wunused-variable] static int NfundamentalNum=4; ^ openmx_common.h:88:12: warning: 'fundamentalNum' defined but not used [-Wunused-variable] static int fundamentalNum[4]={2,3,5,7}; ^ In file included from exx_interface_openmx.c:10:0: openmx_common.h:3951:12: warning: 'NBLK' defined but not used [-Wunused-variable] static int NBLK=128; ^ exx_interface_openmx.c: In function 'EXX_on_OpenMX_Init': exx_interface_openmx.c:256:18: warning: 'rc_cut' may be used uninitialized in this function [-Wmaybe-uninitialized] g_exx = EXX_New(natom, atom_v, atom_sp, nspec, spec_rc, spec_nb, ^ exx_interface_openmx.c:256:18: warning: 'system_type' may be used uninitialized in this function [-Wmaybe-uninitialized] mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_debug.o exx_debug.c exx_debug.c: In function 'EXX_Debug_Copy_DM': exx_debug.c:22:20: warning: unused variable 'diff' [-Wunused-variable] double dm1, dm2, diff; ^ exx_debug.c:22:15: warning: unused variable 'dm2' [-Wunused-variable] double dm1, dm2, diff; ^ exx_debug.c:22:10: warning: unused variable 'dm1' [-Wunused-variable] double dm1, dm2, diff; ^ exx_debug.c:20:17: warning: unused variable 'iatm' [-Wunused-variable] int iep, nep, iatm, nb, nb1, nb2, nbmax; ^ exx_debug.c:18:34: warning: unused variable 'iproc' [-Wunused-variable] int spin, i, j, myrank, nproc, iproc, ib; ^ exx_debug.c: In function 'EXX_Debug_Check_DM': exx_debug.c:191:12: warning: unused variable 'ia2' [-Wunused-variable] int ia1, ia2, l1, l2, l3, iep, Rn; ^ exx_debug.c:191:7: warning: unused variable 'ia1' [-Wunused-variable] int ia1, ia2, l1, l2, l3, iep, Rn; ^ exx_debug.c:189:33: warning: unused variable 'Anum' [-Wunused-variable] int i, j, spin, MA_AN, GA_AN, Anum, LB_AN, GB_AN; ^ In file included from exx_debug.c:4:0: exx_debug.c: At top level: openmx_common.h:1:13: warning: 'Version_OpenMX' defined but not used [-Wunused-variable] static char Version_OpenMX[30] = "3.8.1"; /* version of OpenMX */ ^ openmx_common.h:87:12: warning: 'NfundamentalNum' defined but not used [-Wunused-variable] static int NfundamentalNum=4; ^ openmx_common.h:88:12: warning: 'fundamentalNum' defined but not used [-Wunused-variable] static int fundamentalNum[4]={2,3,5,7}; ^ In file included from exx_debug.c:4:0: openmx_common.h:3951:12: warning: 'NBLK' defined but not used [-Wunused-variable] static int NBLK=128; ^ exx_debug.c: In function 'EXX_Initial_DM': exx_debug.c:137:14: warning: 'spin' may be used uninitialized in this function [-Wmaybe-uninitialized] exx_CDM[spin][iep][i][i].r = den; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_xc.o exx_xc.c In file included from exx_xc.c:11:0: openmx_common.h:1:13: warning: 'Version_OpenMX' defined but not used [-Wunused-variable] static char Version_OpenMX[30] = "3.8.1"; /* version of OpenMX */ ^ openmx_common.h:87:12: warning: 'NfundamentalNum' defined but not used [-Wunused-variable] static int NfundamentalNum=4; ^ openmx_common.h:88:12: warning: 'fundamentalNum' defined but not used [-Wunused-variable] static int fundamentalNum[4]={2,3,5,7}; ^ In file included from exx_xc.c:11:0: openmx_common.h:3951:12: warning: 'NBLK' defined but not used [-Wunused-variable] static int NBLK=128; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_rhox.o exx_rhox.c exx_rhox.c: In function 'EXX_Output_DM': exx_rhox.c:21:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz; ^ exx_rhox.c:16:38: warning: unused variable 'icell' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ exx_rhox.c:16:31: warning: unused variable 'iatm2' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ exx_rhox.c:16:24: warning: unused variable 'iatm1' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ exx_rhox.c:15:15: warning: unused variable 'nproc' [-Wunused-variable] int myrank, nproc; ^ exx_rhox.c:15:7: warning: unused variable 'myrank' [-Wunused-variable] int myrank, nproc; ^ exx_rhox.c: In function 'EXX_Input_DM': exx_rhox.c:92:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz; ^ exx_rhox.c:87:38: warning: unused variable 'icell' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ exx_rhox.c:87:31: warning: unused variable 'iatm2' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ exx_rhox.c:87:24: warning: unused variable 'iatm1' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ In file included from exx_rhox.c:7:0: exx_rhox.c: At top level: openmx_common.h:1:13: warning: 'Version_OpenMX' defined but not used [-Wunused-variable] static char Version_OpenMX[30] = "3.8.1"; /* version of OpenMX */ ^ openmx_common.h:87:12: warning: 'NfundamentalNum' defined but not used [-Wunused-variable] static int NfundamentalNum=4; ^ openmx_common.h:88:12: warning: 'fundamentalNum' defined but not used [-Wunused-variable] static int fundamentalNum[4]={2,3,5,7}; ^ In file included from exx_rhox.c:7:0: openmx_common.h:3951:12: warning: 'NBLK' defined but not used [-Wunused-variable] static int NBLK=128; ^ exx_rhox.c: In function 'EXX_Input_DM': exx_rhox.c:163:16: warning: ignoring return value of 'fread', declared with attribute warn_unused_result [-Wunused-result] fread(&exx_DM[spin][iep][i][j].r, sizeof(double), 1, fp); ^ exx_rhox.c:164:16: warning: ignoring return value of 'fread', declared with attribute warn_unused_result [-Wunused-result] fread(&exx_DM[spin][iep][i][j].i, sizeof(double), 1, fp); ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/eri.o liberi-091216/source/eri.c liberi-091216/source/eri.c: In function 'ERI_Overlap': liberi-091216/source/eri.c:133:5: warning: passing argument 5 of 'ERI_LL_Overlap_d' from incompatible pointer type [enabled by default] ERI_LL_Overlap_d(solver, p, dp, alp1, dalp1, alp2, dalp2, cx); ^ In file included from liberi-091216/source/eri.c:14:0: liberi-091216/source/eri.h:527:6: note: expected 'const double **' but argument is of type 'double **' void ERI_LL_Overlap_d( ^ liberi-091216/source/eri.c:133:5: warning: passing argument 7 of 'ERI_LL_Overlap_d' from incompatible pointer type [enabled by default] ERI_LL_Overlap_d(solver, p, dp, alp1, dalp1, alp2, dalp2, cx); ^ In file included from liberi-091216/source/eri.c:14:0: liberi-091216/source/eri.h:527:6: note: expected 'const double **' but argument is of type 'double **' void ERI_LL_Overlap_d( ^ liberi-091216/source/eri.c:45:26: warning: unused variable 'j' [-Wunused-variable] int ngrid, lmax, jmax, j; ^ liberi-091216/source/eri.c:45:20: warning: variable 'jmax' set but not used [-Wunused-but-set-variable] int ngrid, lmax, jmax, j; ^ liberi-091216/source/eri.c:45:7: warning: variable 'ngrid' set but not used [-Wunused-but-set-variable] int ngrid, lmax, jmax, j; ^ liberi-091216/source/eri.c: In function 'ERI_Integral': liberi-091216/source/eri.c:229:23: warning: passing argument 3 of 'ERI_Integral_GL_d' from incompatible pointer type [enabled by default] R[0], R[1], R[2], cx12, cx34, 1e-10, scr, lmax_gl); ^ In file included from liberi-091216/source/eri.c:14:0: liberi-091216/source/eri.h:571:6: note: expected 'double (*)[3][2]' but argument is of type 'double *' void ERI_Integral_GL_d( ^ liberi-091216/source/eri.c:229:23: warning: passing argument 6 of 'ERI_Integral_GL_d' from incompatible pointer type [enabled by default] R[0], R[1], R[2], cx12, cx34, 1e-10, scr, lmax_gl); ^ In file included from liberi-091216/source/eri.c:14:0: liberi-091216/source/eri.h:571:6: note: expected 'const double **' but argument is of type 'double **' void ERI_Integral_GL_d( ^ liberi-091216/source/eri.c:229:23: warning: passing argument 7 of 'ERI_Integral_GL_d' from incompatible pointer type [enabled by default] R[0], R[1], R[2], cx12, cx34, 1e-10, scr, lmax_gl); ^ In file included from liberi-091216/source/eri.c:14:0: liberi-091216/source/eri.h:571:6: note: expected 'const double **' but argument is of type 'double **' void ERI_Integral_GL_d( ^ liberi-091216/source/eri.c:191:23: warning: unused variable 'clk3' [-Wunused-variable] clock_t clk1, clk2, clk3; ^ liberi-091216/source/eri.c:191:17: warning: unused variable 'clk2' [-Wunused-variable] clock_t clk1, clk2, clk3; ^ liberi-091216/source/eri.c:191:11: warning: unused variable 'clk1' [-Wunused-variable] clock_t clk1, clk2, clk3; ^ liberi-091216/source/eri.c: In function 'orbital_T': liberi-091216/source/eri.c:268:17: warning: variable 'kmesh' set but not used [-Wunused-but-set-variable] const double *kmesh; ^ liberi-091216/source/eri.c: At top level: liberi-091216/source/eri.c:330:15: warning: 'orbital_r' defined but not used [-Wunused-function] static double orbital_r( ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/eri_ll.o liberi-091216/source/eri_ll.c liberi-091216/source/eri_ll.c: In function 'ERI_Required_Size': liberi-091216/source/eri_ll.c:210:17: warning: variable 'jmax' set but not used [-Wunused-but-set-variable] int nq, type, jmax; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Alpha': liberi-091216/source/eri_ll.c:597:26: warning: variable 'm1' set but not used [-Wunused-but-set-variable] int j, j1, j2, ir, l1, m1, l2, m2; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Alpha_d': liberi-091216/source/eri_ll.c:755:29: warning: variable 'm1' set but not used [-Wunused-but-set-variable] int i, j, ir, j1, j2, l1, m1, l2, m2; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Overlap': liberi-091216/source/eri_ll.c:1033:14: warning: unused variable 'j2m' [-Wunused-variable] const int *j2m = g_itbl_j2m; ^ liberi-091216/source/eri_ll.c:1032:14: warning: unused variable 'j2l' [-Wunused-variable] const int *j2l = g_itbl_j2l; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Overlap_d': liberi-091216/source/eri_ll.c:1178:49: warning: variable 'm' set but not used [-Wunused-but-set-variable] int i, j, j1, j2, ir, ia1, ia2, ip, ixyz, l, m; ^ liberi-091216/source/eri_ll.c:1178:46: warning: variable 'l' set but not used [-Wunused-but-set-variable] int i, j, j1, j2, ir, ia1, ia2, ip, ixyz, l, m; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL': liberi-091216/source/eri_ll.c:1672:18: warning: unused variable 'gnt_r' [-Wunused-variable] double k, gnt, gnt_r[2], sum[2], FG[2], int1[2], sum2[2]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL_PrejY': liberi-091216/source/eri_ll.c:2165:13: warning: unused variable 'z' [-Wunused-variable] double k, z; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL_Post': liberi-091216/source/eri_ll.c:2316:15: warning: unused variable 'sh' [-Wunused-variable] double gnt, sh, sum; ^ liberi-091216/source/eri_ll.c:2315:41: warning: unused variable 'l2' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2315:37: warning: unused variable 'l1' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2314:30: warning: unused variable 'lphase' [-Wunused-variable] int ngl, lmax, jmax, nmul, lphase; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL_Post2': liberi-091216/source/eri_ll.c:2413:15: warning: unused variable 'sh' [-Wunused-variable] double gnt, sh, sum; ^ liberi-091216/source/eri_ll.c:2412:41: warning: unused variable 'l2' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2412:37: warning: unused variable 'l1' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2411:30: warning: unused variable 'lphase' [-Wunused-variable] int ngl, lmax, jmax, nmul, lphase; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL_X': liberi-091216/source/eri_ll.c:2488:41: warning: unused variable 'l2' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2488:37: warning: unused variable 'l1' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2488:7: warning: unused variable 'iR' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2487:30: warning: unused variable 'lphase' [-Wunused-variable] int ngl, lmax, jmax, nmul, lphase; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Size_of_Alpha': liberi-091216/source/eri_ll.c:375:32: warning: 'ndalp' may be used uninitialized in this function [-Wmaybe-uninitialized] return sizeof(double)*(ndalp + jmax); ^ liberi-091216/source/eri_ll.c: In function 'ERI_Size_of_Overlap': liberi-091216/source/eri_ll.c:395:30: warning: 'ndp' may be used uninitialized in this function [-Wmaybe-uninitialized] return sizeof(double)*(ndp + jmax0); ^ liberi-091216/source/eri_ll.c: In function 'ERI_Size_of_GLF': liberi-091216/source/eri_ll.c:415:32: warning: 'ndglf' may be used uninitialized in this function [-Wmaybe-uninitialized] return sizeof(double)*(ndglf + jmax0); ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Alpha': liberi-091216/source/eri_ll.c:632:11: warning: 'ndalp' may be used uninitialized in this function [-Wmaybe-uninitialized] amax = &alp[ndalp]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Alpha_d': liberi-091216/source/eri_ll.c:798:14: warning: 'ndalp' may be used uninitialized in this function [-Wmaybe-uninitialized] amax = &alp[ndalp]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Overlap': liberi-091216/source/eri_ll.c:1071:11: warning: 'ndalp' may be used uninitialized in this function [-Wmaybe-uninitialized] amax1 = &a1[ndalp]; ^ liberi-091216/source/eri_ll.c:1073:11: warning: 'ndp' may be used uninitialized in this function [-Wmaybe-uninitialized] pmax = &p[ndp]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Overlap_d': liberi-091216/source/eri_ll.c:1220:15: warning: 'ndalp' may be used uninitialized in this function [-Wmaybe-uninitialized] amax1 = &a1[ndalp]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Transform_Overlap': liberi-091216/source/eri_ll.c:1492:10: warning: 'ndp' may be used uninitialized in this function [-Wmaybe-uninitialized] pmax = &P[ndp]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_GL_Interpolate': liberi-091216/source/eri_ll.c:1594:12: warning: 'ndglf' may be used uninitialized in this function [-Wmaybe-uninitialized] glfmax = &glF[ndglf]; ^ liberi-091216/source/eri_ll.c:1595:12: warning: 'ndf' may be used uninitialized in this function [-Wmaybe-uninitialized] fmax = &F[ndf]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL': liberi-091216/source/eri_ll.c:1721:11: warning: 'ndglf' may be used uninitialized in this function [-Wmaybe-uninitialized] fmax1 = &F1[ndglf]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL_d': liberi-091216/source/eri_ll.c:1938:11: warning: 'ndglf' may be used uninitialized in this function [-Wmaybe-uninitialized] fmax1 = &F1[ndglf]; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/eri_sf.o liberi-091216/source/eri_sf.c liberi-091216/source/eri_sf.c: In function 'sph_bessel_drec': liberi-091216/source/eri_sf.c:214:39: warning: variable 'ix2' set but not used [-Wunused-but-set-variable] double j0, j1, sf, tmp, si, co, ix, ix2, tsb[1024], huge; ^ liberi-091216/source/eri_sf.c: In function 'ERI_Gaunt': liberi-091216/source/eri_sf.c:529:10: warning: unused variable 'result' [-Wunused-variable] double result, cg1, cg2; ^ liberi-091216/source/eri_sf.c:528:28: warning: unused variable 'tmp3' [-Wunused-variable] double tmp0, tmp1, tmp2, tmp3; ^ liberi-091216/source/eri_sf.c:528:22: warning: unused variable 'tmp2' [-Wunused-variable] double tmp0, tmp1, tmp2, tmp3; ^ liberi-091216/source/eri_sf.c:528:16: warning: unused variable 'tmp1' [-Wunused-variable] double tmp0, tmp1, tmp2, tmp3; ^ liberi-091216/source/eri_sf.c:528:10: warning: unused variable 'tmp0' [-Wunused-variable] double tmp0, tmp1, tmp2, tmp3; ^ liberi-091216/source/eri_sf.c: At top level: liberi-091216/source/eri_sf.c:114:13: warning: 'ERI_RCSH_Coeff_Inverse' defined but not used [-Wunused-function] static void ERI_RCSH_Coeff_Inverse(int m, double c[2], double d[2]) ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/eri_interpolate.o liberi-091216/source/eri_interpolate.c liberi-091216/source/eri_interpolate.c: In function 'extrapolate': liberi-091216/source/eri_interpolate.c:297:10: warning: variable 'c' set but not used [-Wunused-but-set-variable] double c; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/eri_gtbl.o liberi-091216/source/eri_gtbl.c liberi-091216/source/eri_gtbl.c: In function 'gtbl_nmax': liberi-091216/source/eri_gtbl.c:72:36: warning: unused variable 'j2' [-Wunused-variable] int l, m, j, l1, m1, j1, l2, m2, j2, lsum, n, jmax; ^ liberi-091216/source/eri_gtbl.c:72:24: warning: unused variable 'j1' [-Wunused-variable] int l, m, j, l1, m1, j1, l2, m2, j2, lsum, n, jmax; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/sbt/eri_sbt.o liberi-091216/source/sbt/eri_sbt.c mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/sbt/log/eri_fsbt.o liberi-091216/source/sbt/log/eri_fsbt.c liberi-091216/source/sbt/log/eri_fsbt.c: In function 'ERI_FSBT_Transform_Input': liberi-091216/source/sbt/log/eri_fsbt.c:255:17: warning: unused variable 'Mmesh' [-Wunused-variable] fftw_complex *Mmesh = ptr->M; ^ liberi-091216/source/sbt/log/eri_fsbt.c: In function 'ERI_FSBT_Transform_Output': liberi-091216/source/sbt/log/eri_fsbt.c:286:10: warning: unused variable 'rho' [-Wunused-variable] double rho, kap, t, p, c, s, e; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/sbt/log/eri_logfsbt.o liberi-091216/source/sbt/log/eri_logfsbt.c NBO_Krylov.c: In function 'Krylov_Col_NAO.isra.1': NBO_Krylov.c:9075:11: warning: 'tmp_threshold' may be used uninitialized in this function [-Wmaybe-uninitialized] if (temp_M7[k+1] >= tmp_threshold){ ^ NBO_Krylov.c:8643:11: note: 'tmp_threshold' was declared here double tmp_threshold,sum; ^ NBO_Krylov.c:1139:23: warning: 'kp' may be used uninitialized in this function [-Wmaybe-uninitialized] int jc, jp, kc, kg, kp; ^ NBO_Krylov.c:1139:11: warning: 'jp' may be used uninitialized in this function [-Wmaybe-uninitialized] int jc, jp, kc, kg, kp; ^ NBO_Krylov.c:1127:13: warning: 'tmp_array' may be used uninitialized in this function [-Wmaybe-uninitialized] free(tmp_array); /* freeing of array */ ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/sbt/linear/eri_linfsbt.o liberi-091216/source/sbt/linear/eri_linfsbt.c liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'segment_cubic': liberi-091216/source/sbt/linear/eri_linfsbt.c:294:53: warning: unused variable 'c3i' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:48: warning: unused variable 'c3r' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:43: warning: unused variable 'c2i' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:38: warning: unused variable 'c2r' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:33: warning: unused variable 'c1i' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:28: warning: unused variable 'c1r' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:23: warning: unused variable 'c0i' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:18: warning: unused variable 'c0r' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:14: warning: unused variable 'dy' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:10: warning: unused variable 'dx' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'recsum_cubic_twoway_new': liberi-091216/source/sbt/linear/eri_linfsbt.c:454:40: warning: unused variable 'dn7' [-Wunused-variable] double dn1, dn2, dn3, dn4, dn5, dn6, dn7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'recsum_cubic_upward_new': liberi-091216/source/sbt/linear/eri_linfsbt.c:602:40: warning: unused variable 'dn7' [-Wunused-variable] double dn1, dn2, dn3, dn4, dn5, dn6, dn7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:600:13: warning: unused variable 'j' [-Wunused-variable] int n, i, j; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'calculate_gamma': liberi-091216/source/sbt/linear/eri_linfsbt.c:793:42: warning: unused variable 'g7' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:38: warning: unused variable 'g6' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:34: warning: unused variable 'g5' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:30: warning: unused variable 'g4' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:26: warning: unused variable 'g3' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:22: warning: unused variable 'g2' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:17: warning: unused variable 'tmp' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:10: warning: unused variable 'x' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'transform_switch': liberi-091216/source/sbt/linear/eri_linfsbt.c:941:17: warning: unused variable 'iodd' [-Wunused-variable] int n, ieven, iodd; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:941:10: warning: unused variable 'ieven' [-Wunused-variable] int n, ieven, iodd; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:941:7: warning: unused variable 'n' [-Wunused-variable] int n, ieven, iodd; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'transform_in': liberi-091216/source/sbt/linear/eri_linfsbt.c:961:7: warning: unused variable 'i' [-Wunused-variable] int i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'transform_out': liberi-091216/source/sbt/linear/eri_linfsbt.c:999:22: warning: unused variable 'twon' [-Wunused-variable] double fact, twop, twon; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:999:16: warning: unused variable 'twop' [-Wunused-variable] double fact, twop, twon; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:999:10: warning: unused variable 'fact' [-Wunused-variable] double fact, twop, twon; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: At top level: liberi-091216/source/sbt/linear/eri_linfsbt.c:83:19: warning: 'S0_asymptotic' defined but not used [-Wunused-function] ERI_INLINE double S0_asymptotic( ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -o DosMain.o -c DosMain.c DosMain.c: In function 'Dos_Histgram': DosMain.c:372:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c: In function 'Dos_Gaussian': DosMain.c:487:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c: In function 'DosDC_Gaussian': DosMain.c:667:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c:660:16: warning: unused variable 'k' [-Wunused-variable] int spin,i,j,k,ieg,iecenter; ^ DosMain.c:660:14: warning: unused variable 'j' [-Wunused-variable] int spin,i,j,k,ieg,iecenter; ^ DosMain.c: In function 'Dos_NEGF': DosMain.c:839:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c:832:18: warning: unused variable 'factor' [-Wunused-variable] double eg,x,xa,factor,wval; ^ DosMain.c:832:15: warning: unused variable 'xa' [-Wunused-variable] double eg,x,xa,factor,wval; ^ DosMain.c:832:13: warning: unused variable 'x' [-Wunused-variable] double eg,x,xa,factor,wval; ^ DosMain.c:832:10: warning: unused variable 'eg' [-Wunused-variable] double eg,x,xa,factor,wval; ^ DosMain.c:830:22: warning: unused variable 'iecenter' [-Wunused-variable] int spin,i,j,k,ieg,iecenter; ^ DosMain.c:828:7: warning: unused variable 'iewidth' [-Wunused-variable] int iewidth,ie; ^ DosMain.c:827:10: warning: unused variable 'pi2' [-Wunused-variable] double pi2; ^ DosMain.c: In function 'Dos_Tetrahedron': DosMain.c:986:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c: In function 'Spectra_Gaussian': DosMain.c:1179:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c:1175:28: warning: unused variable 'dE' [-Wunused-variable] double dossum[2],MulP[5],dE; ^ DosMain.c:1175:20: warning: unused variable 'MulP' [-Wunused-variable] double dossum[2],MulP[5],dE; ^ DosMain.c: In function 'SpectraDC_Gaussian': DosMain.c:1537:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c:1528:14: warning: unused variable 'i_Dos' [-Wunused-variable] int N_Dos, i_Dos[10]; ^ DosMain.c:1528:7: warning: unused variable 'N_Dos' [-Wunused-variable] int N_Dos, i_Dos[10]; ^ DosMain.c:1526:15: warning: unused variable 'rval' [-Wunused-variable] double eg,x,rval,xa,tmp1; ^ DosMain.c:1524:16: warning: unused variable 'k' [-Wunused-variable] int i,spin,j,k; ^ DosMain.c:1524:14: warning: unused variable 'j' [-Wunused-variable] int i,spin,j,k; ^ DosMain.c: In function 'Spectra_Tetrahedron': DosMain.c:1854:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c: In function 'Spectra_NEGF': DosMain.c:2317:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c:2313:28: warning: unused variable 'dE' [-Wunused-variable] double dossum[2],MulP[5],dE; ^ DosMain.c:2313:20: warning: unused variable 'MulP' [-Wunused-variable] double dossum[2],MulP[5],dE; ^ DosMain.c:2310:19: warning: unused variable 'iecenter' [-Wunused-variable] int iewidth,ie,iecenter; ^ DosMain.c:2310:8: warning: unused variable 'iewidth' [-Wunused-variable] int iewidth,ie,iecenter; ^ DosMain.c:2309:14: warning: unused variable 'factor' [-Wunused-variable] double pi2,factor; ^ DosMain.c:2309:10: warning: unused variable 'pi2' [-Wunused-variable] double pi2,factor; ^ DosMain.c:2306:20: warning: unused variable 'xa' [-Wunused-variable] double eg,x,rval,xa; ^ DosMain.c:2306:13: warning: unused variable 'x' [-Wunused-variable] double eg,x,rval,xa; ^ DosMain.c:2306:10: warning: unused variable 'eg' [-Wunused-variable] double eg,x,rval,xa; ^ DosMain.c: In function 'input_file_eg': DosMain.c:2699:5: warning: suggest parentheses around assignment used as truth value [-Wparentheses] if (fp=input_find("FermiEps || (cal_partial_charge && (FermiEpsFermiEps || (cal_partial_charge && (FermiEpsnshell_ep = nshell_ep; ^ exx.c:136:7: warning: 'nshell_op' may be used uninitialized in this function [-Wmaybe-uninitialized] nop = EXX_Index_OP(natom, nshell_op, self->atom_rc, self->atom_v, ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_index.o exx_index.c exx_index.c: In function 'EXX_Index_Cmp_OP': exx_index.c:91:25: warning: variable 'ic0_op' set but not used [-Wunused-but-set-variable] int ncd_op, ncell_op, ic0_op; ^ exx_index.c: In function 'EXX_Index_OP': exx_index.c:331:47: warning: unused variable 'z' [-Wunused-variable] double c1[3], c2[3], rc1, rc2, cc[3], x, y, z, d; ^ exx_index.c:331:44: warning: unused variable 'y' [-Wunused-variable] double c1[3], c2[3], rc1, rc2, cc[3], x, y, z, d; ^ exx_index.c:331:41: warning: unused variable 'x' [-Wunused-variable] double c1[3], c2[3], rc1, rc2, cc[3], x, y, z, d; ^ exx_index.c:331:34: warning: unused variable 'cc' [-Wunused-variable] double c1[3], c2[3], rc1, rc2, cc[3], x, y, z, d; ^ exx_index.c: In function 'EXX_Index_EQ': exx_index.c:418:18: warning: unused variable 'cc2' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:418:10: warning: unused variable 'cc1' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:414:53: warning: variable 'ic0_op' set but not used [-Wunused-but-set-variable] int neq, ncell, ncd, nshell_op, ncell_op, ncd_op, ic0_op; ^ exx_index.c: In function 'EXX_Index_EP': exx_index.c:561:36: warning: variable 'ic0_op' set but not used [-Wunused-but-set-variable] int nshell_op, ncd_op, ncell_op, ic0_op, ncd, ncell, iflag, nep; ^ exx_index.c: In function 'EXX_Index_NQ_Full': exx_index.c:690:18: warning: unused variable 'cc2' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:690:10: warning: unused variable 'cc1' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:686:52: warning: variable 'ic0_op' set but not used [-Wunused-but-set-variable] int nq, ncell, ncd, nshell_op, ncell_op, ncd_op, ic0_op; ^ exx_index.c:685:59: warning: variable 'ic0' set but not used [-Wunused-but-set-variable] int iatm1, iatm2, iatm3, iatm4, icell1, icell2, icell3, ic0; ^ exx_index.c: In function 'EXX_Index_NQ_Reduced': exx_index.c:802:18: warning: unused variable 'cc2' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:802:10: warning: unused variable 'cc1' [-Wunused-variable] double cc1[3], cc2[3], cc3[3]; ^ exx_index.c:798:52: warning: variable 'ic0_op' set but not used [-Wunused-but-set-variable] int nq, ncell, ncd, nshell_op, ncell_op, ncd_op, ic0_op; ^ exx_index.c:797:59: warning: variable 'ic0' set but not used [-Wunused-but-set-variable] int iatm1, iatm2, iatm3, iatm4, icell1, icell2, icell3, ic0; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_vector.o exx_vector.c mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_log.o exx_log.c mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_step1.o exx_step1.c exx_step1.c: In function 'EXX_Step1': exx_step1.c:63:14: warning: unused variable 'mpistat' [-Wunused-variable] MPI_Status mpistat; ^ exx_step1.c:55:16: warning: unused variable 'nq_sig' [-Wunused-variable] int nq_full, nq_sig; ^ exx_step1.c:55:7: warning: unused variable 'nq_full' [-Wunused-variable] int nq_full, nq_sig; ^ exx_step1.c:39:16: warning: unused variable 'z' [-Wunused-variable] double x, y, z, c1[3], c2[3], rc1, rc2, d, rc12, cx12, c12[3]; ^ exx_step1.c:39:13: warning: unused variable 'y' [-Wunused-variable] double x, y, z, c1[3], c2[3], rc1, rc2, d, rc12, cx12, c12[3]; ^ exx_step1.c:39:10: warning: unused variable 'x' [-Wunused-variable] double x, y, z, c1[3], c2[3], rc1, rc2, d, rc12, cx12, c12[3]; ^ exx_step1.c:33:10: warning: unused variable 'j' [-Wunused-variable] int i, j; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_step2.o exx_step2.c exx_step2.c: In function 'step2_core': exx_step2.c:116:27: warning: unused variable 'glY' [-Wunused-variable] double *mm_A, *mul_gc, *glY; ^ exx_step2.c:116:11: warning: unused variable 'mm_A' [-Wunused-variable] double *mm_A, *mul_gc, *glY; ^ exx_step2.c:113:22: warning: unused variable 'X' [-Wunused-variable] double I4[NRNMAX], X[NRNMAX*ERI_LMAXMAX*ERI_LMAXMAX]; ^ exx_step2.c:113:10: warning: unused variable 'I4' [-Wunused-variable] double I4[NRNMAX], X[NRNMAX*ERI_LMAXMAX*ERI_LMAXMAX]; ^ exx_step2.c:108:17: warning: unused variable 'nrn0' [-Wunused-variable] int nrn, irn, nrn0; ^ exx_step2.c:102:34: warning: unused variable 'cnt3' [-Wunused-variable] unsigned long long cnt1, cnt2, cnt3; ^ exx_step2.c:100:16: warning: variable 'thresh' set but not used [-Wunused-but-set-variable] double rmin, thresh; ^ exx_step2.c:95:17: warning: unused variable 'glf2_max' [-Wunused-variable] const double *glf2_max; ^ exx_step2.c:94:17: warning: unused variable 'glf1_max' [-Wunused-variable] const double *glf1_max; ^ exx_step2.c:93:22: warning: unused variable 'ip2' [-Wunused-variable] int np1, np2, ip1, ip2; ^ exx_step2.c:93:17: warning: unused variable 'ip1' [-Wunused-variable] int np1, np2, ip1, ip2; ^ exx_step2.c:93:12: warning: unused variable 'np2' [-Wunused-variable] int np1, np2, ip1, ip2; ^ exx_step2.c:93:7: warning: unused variable 'np1' [-Wunused-variable] int np1, np2, ip1, ip2; ^ exx_step2.c:87:22: warning: unused variable 'ngrid' [-Wunused-variable] int lmax, lmax_gl, ngrid, ngl, ndglf, nd; ^ exx_step2.c:87:7: warning: unused variable 'lmax' [-Wunused-variable] int lmax, lmax_gl, ngrid, ngl, ndglf, nd; ^ exx_step2.c:74:12: warning: variable 'natom' set but not used [-Wunused-but-set-variable] int nop, natom, nshop, nshep; ^ exx_step2.c:74:7: warning: variable 'nop' set but not used [-Wunused-but-set-variable] int nop, natom, nshop, nshep; ^ exx_step2.c:62:16: warning: unused variable 'j' [-Wunused-variable] int i, k, f, j; ^ exx_step2.c:62:10: warning: unused variable 'k' [-Wunused-variable] int i, k, f, j; ^ exx_step2.c: In function 'EXX_Step2': exx_step2.c:355:41: warning: unused variable 'nd' [-Wunused-variable] int lmax, lmax_gl, ngrid, ngl, ndglf, nd; ^ exx_step2.c:355:34: warning: unused variable 'ndglf' [-Wunused-variable] int lmax, lmax_gl, ngrid, ngl, ndglf, nd; ^ exx_step2.c:340:13: warning: unused variable 'f' [-Wunused-variable] int i, k, f, iop1, iop2, nop; ^ exx_step2.c:340:10: warning: unused variable 'k' [-Wunused-variable] int i, k, f, iop1, iop2, nop; ^ exx_step2.c: In function 'step2_core': exx_step2.c:333:13: warning: 'cnt2' may be used uninitialized in this function [-Wmaybe-uninitialized] *out_cnt2 = cnt2; ^ exx_step2.c:332:13: warning: 'cnt1' may be used uninitialized in this function [-Wmaybe-uninitialized] *out_cnt1 = cnt1; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_file_overlap.o exx_file_overlap.c exx_file_overlap.c: In function 'EXX_File_Overlap_Write': exx_file_overlap.c:28:22: warning: unused variable 'nd1' [-Wunused-variable] int myrank, nproc, nd1, iop; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_file_eri.o exx_file_eri.c exx_file_eri.c: In function 'EXX_File_ERI_Create': exx_file_eri.c:35:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz; ^ exx_file_eri.c: In function 'EXX_File_ERI_Write': exx_file_eri.c:65:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz; ^ exx_file_eri.c:62:17: warning: unused variable 'stat' [-Wunused-variable] int neri, nr, stat; ^ exx_file_eri.c: In function 'EXX_File_ERI_Read_NRecord': exx_file_eri.c:111:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz; ^ exx_file_eri.c: In function 'EXX_File_ERI_Read_Data_Head': exx_file_eri.c:139:14: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t cb, sz; ^ exx_file_eri.c: In function 'EXX_File_ERI_Read': exx_file_eri.c:200:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz, cb; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_interface_openmx.o exx_interface_openmx.c exx_interface_openmx.c: In function 'EXX_OP2EP_Cluster': exx_interface_openmx.c:643:19: warning: variable 'nep' set but not used [-Wunused-but-set-variable] int i, j, k, l, nep; ^ exx_interface_openmx.c: In function 'EXX_Fock_Cluster': exx_interface_openmx.c:765:14: warning: unused variable 'stat' [-Wunused-variable] MPI_Status stat; ^ exx_interface_openmx.c:764:20: warning: unused variable 'iproc' [-Wunused-variable] int nproc, myid, iproc; ^ exx_interface_openmx.c:758:45: warning: variable 'tnoB' set but not used [-Wunused-but-set-variable] int GA_AN, wanA, tnoA, Anum, GB_AN, wanB, tnoB, Bnum; ^ exx_interface_openmx.c:758:20: warning: variable 'tnoA' set but not used [-Wunused-but-set-variable] int GA_AN, wanA, tnoA, Anum, GB_AN, wanB, tnoB, Bnum; ^ exx_interface_openmx.c:753:25: warning: variable 'op_atom2' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:753:14: warning: variable 'op_atom1' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:746:29: warning: unused variable 'nep' [-Wunused-variable] int i, j, n, ir, nr, irn, nep; ^ exx_interface_openmx.c:746:24: warning: unused variable 'irn' [-Wunused-variable] int i, j, n, ir, nr, irn, nep; ^ exx_interface_openmx.c:746:13: warning: unused variable 'n' [-Wunused-variable] int i, j, n, ir, nr, irn, nep; ^ exx_interface_openmx.c: In function 'EXX_Fock_Band': exx_interface_openmx.c:1047:36: warning: variable 'si2' set but not used [-Wunused-but-set-variable] double kRn, kRmp, co1, si1, co2, si2; ^ exx_interface_openmx.c:1047:31: warning: variable 'co2' set but not used [-Wunused-but-set-variable] double kRn, kRmp, co1, si1, co2, si2; ^ exx_interface_openmx.c:1043:14: warning: unused variable 'stat' [-Wunused-variable] MPI_Status stat; ^ exx_interface_openmx.c:1028:25: warning: variable 'op_atom2' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:1028:14: warning: variable 'op_atom1' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:1021:29: warning: unused variable 'nep' [-Wunused-variable] int i, j, n, ir, nr, irn, nep; ^ exx_interface_openmx.c:1021:13: warning: unused variable 'n' [-Wunused-variable] int i, j, n, ir, nr, irn, nep; ^ exx_interface_openmx.c: In function 'EXX_Energy_Band': exx_interface_openmx.c:1237:14: warning: unused variable 'stat' [-Wunused-variable] MPI_Status stat; ^ exx_interface_openmx.c:1227:25: warning: variable 'op_atom2' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:1227:14: warning: variable 'op_atom1' set but not used [-Wunused-but-set-variable] const int *op_atom1, *op_atom2; ^ exx_interface_openmx.c:1223:63: warning: variable 'icell2' set but not used [-Wunused-but-set-variable] int iatm1, iatm2, iatm3, iatm4, ib1, ib2, ib3, ib4, icell1, icell2; ^ exx_interface_openmx.c:1223:55: warning: variable 'icell1' set but not used [-Wunused-but-set-variable] int iatm1, iatm2, iatm3, iatm4, ib1, ib2, ib3, ib4, icell1, icell2; ^ exx_interface_openmx.c:1221:26: warning: variable 'Bnum' set but not used [-Wunused-but-set-variable] int GA_AN,Anum, GB_AN, Bnum; ^ exx_interface_openmx.c:1221:19: warning: unused variable 'GB_AN' [-Wunused-variable] int GA_AN,Anum, GB_AN, Bnum; ^ exx_interface_openmx.c:1221:13: warning: variable 'Anum' set but not used [-Wunused-but-set-variable] int GA_AN,Anum, GB_AN, Bnum; ^ exx_interface_openmx.c:1221:7: warning: unused variable 'GA_AN' [-Wunused-variable] int GA_AN,Anum, GB_AN, Bnum; ^ exx_interface_openmx.c:1219:29: warning: unused variable 'nep' [-Wunused-variable] int i, j, n, ir, nr, irn, nep, spin; ^ exx_interface_openmx.c:1219:13: warning: unused variable 'n' [-Wunused-variable] int i, j, n, ir, nr, irn, nep, spin; ^ exx_interface_openmx.c:1218:22: warning: unused variable 'iproc' [-Wunused-variable] int myrank, nproc, iproc; ^ In file included from exx_interface_openmx.c:10:0: exx_interface_openmx.c: At top level: openmx_common.h:1:13: warning: 'Version_OpenMX' defined but not used [-Wunused-variable] static char Version_OpenMX[30] = "3.8.1"; /* version of OpenMX */ ^ openmx_common.h:87:12: warning: 'NfundamentalNum' defined but not used [-Wunused-variable] static int NfundamentalNum=4; ^ openmx_common.h:88:12: warning: 'fundamentalNum' defined but not used [-Wunused-variable] static int fundamentalNum[4]={2,3,5,7}; ^ In file included from exx_interface_openmx.c:10:0: openmx_common.h:3951:12: warning: 'NBLK' defined but not used [-Wunused-variable] static int NBLK=128; ^ exx_interface_openmx.c: In function 'EXX_on_OpenMX_Init': exx_interface_openmx.c:256:18: warning: 'rc_cut' may be used uninitialized in this function [-Wmaybe-uninitialized] g_exx = EXX_New(natom, atom_v, atom_sp, nspec, spec_rc, spec_nb, ^ exx_interface_openmx.c:256:18: warning: 'system_type' may be used uninitialized in this function [-Wmaybe-uninitialized] mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_debug.o exx_debug.c exx_debug.c: In function 'EXX_Debug_Copy_DM': exx_debug.c:22:20: warning: unused variable 'diff' [-Wunused-variable] double dm1, dm2, diff; ^ exx_debug.c:22:15: warning: unused variable 'dm2' [-Wunused-variable] double dm1, dm2, diff; ^ exx_debug.c:22:10: warning: unused variable 'dm1' [-Wunused-variable] double dm1, dm2, diff; ^ exx_debug.c:20:17: warning: unused variable 'iatm' [-Wunused-variable] int iep, nep, iatm, nb, nb1, nb2, nbmax; ^ exx_debug.c:18:34: warning: unused variable 'iproc' [-Wunused-variable] int spin, i, j, myrank, nproc, iproc, ib; ^ exx_debug.c: In function 'EXX_Debug_Check_DM': exx_debug.c:191:12: warning: unused variable 'ia2' [-Wunused-variable] int ia1, ia2, l1, l2, l3, iep, Rn; ^ exx_debug.c:191:7: warning: unused variable 'ia1' [-Wunused-variable] int ia1, ia2, l1, l2, l3, iep, Rn; ^ exx_debug.c:189:33: warning: unused variable 'Anum' [-Wunused-variable] int i, j, spin, MA_AN, GA_AN, Anum, LB_AN, GB_AN; ^ In file included from exx_debug.c:4:0: exx_debug.c: At top level: openmx_common.h:1:13: warning: 'Version_OpenMX' defined but not used [-Wunused-variable] static char Version_OpenMX[30] = "3.8.1"; /* version of OpenMX */ ^ openmx_common.h:87:12: warning: 'NfundamentalNum' defined but not used [-Wunused-variable] static int NfundamentalNum=4; ^ openmx_common.h:88:12: warning: 'fundamentalNum' defined but not used [-Wunused-variable] static int fundamentalNum[4]={2,3,5,7}; ^ In file included from exx_debug.c:4:0: openmx_common.h:3951:12: warning: 'NBLK' defined but not used [-Wunused-variable] static int NBLK=128; ^ exx_debug.c: In function 'EXX_Initial_DM': exx_debug.c:137:14: warning: 'spin' may be used uninitialized in this function [-Wmaybe-uninitialized] exx_CDM[spin][iep][i][i].r = den; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_xc.o exx_xc.c In file included from exx_xc.c:11:0: openmx_common.h:1:13: warning: 'Version_OpenMX' defined but not used [-Wunused-variable] static char Version_OpenMX[30] = "3.8.1"; /* version of OpenMX */ ^ openmx_common.h:87:12: warning: 'NfundamentalNum' defined but not used [-Wunused-variable] static int NfundamentalNum=4; ^ openmx_common.h:88:12: warning: 'fundamentalNum' defined but not used [-Wunused-variable] static int fundamentalNum[4]={2,3,5,7}; ^ In file included from exx_xc.c:11:0: openmx_common.h:3951:12: warning: 'NBLK' defined but not used [-Wunused-variable] static int NBLK=128; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o exx_rhox.o exx_rhox.c exx_rhox.c: In function 'EXX_Output_DM': exx_rhox.c:21:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz; ^ exx_rhox.c:16:38: warning: unused variable 'icell' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ exx_rhox.c:16:31: warning: unused variable 'iatm2' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ exx_rhox.c:16:24: warning: unused variable 'iatm1' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ exx_rhox.c:15:15: warning: unused variable 'nproc' [-Wunused-variable] int myrank, nproc; ^ exx_rhox.c:15:7: warning: unused variable 'myrank' [-Wunused-variable] int myrank, nproc; ^ exx_rhox.c: In function 'EXX_Input_DM': exx_rhox.c:92:10: warning: variable 'sz' set but not used [-Wunused-but-set-variable] size_t sz; ^ exx_rhox.c:87:38: warning: unused variable 'icell' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ exx_rhox.c:87:31: warning: unused variable 'iatm2' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ exx_rhox.c:87:24: warning: unused variable 'iatm1' [-Wunused-variable] int i, j, iep, spin, iatm1, iatm2, icell; ^ In file included from exx_rhox.c:7:0: exx_rhox.c: At top level: openmx_common.h:1:13: warning: 'Version_OpenMX' defined but not used [-Wunused-variable] static char Version_OpenMX[30] = "3.8.1"; /* version of OpenMX */ ^ openmx_common.h:87:12: warning: 'NfundamentalNum' defined but not used [-Wunused-variable] static int NfundamentalNum=4; ^ openmx_common.h:88:12: warning: 'fundamentalNum' defined but not used [-Wunused-variable] static int fundamentalNum[4]={2,3,5,7}; ^ In file included from exx_rhox.c:7:0: openmx_common.h:3951:12: warning: 'NBLK' defined but not used [-Wunused-variable] static int NBLK=128; ^ exx_rhox.c: In function 'EXX_Input_DM': exx_rhox.c:163:16: warning: ignoring return value of 'fread', declared with attribute warn_unused_result [-Wunused-result] fread(&exx_DM[spin][iep][i][j].r, sizeof(double), 1, fp); ^ exx_rhox.c:164:16: warning: ignoring return value of 'fread', declared with attribute warn_unused_result [-Wunused-result] fread(&exx_DM[spin][iep][i][j].i, sizeof(double), 1, fp); ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/eri.o liberi-091216/source/eri.c liberi-091216/source/eri.c: In function 'ERI_Overlap': liberi-091216/source/eri.c:133:5: warning: passing argument 5 of 'ERI_LL_Overlap_d' from incompatible pointer type [enabled by default] ERI_LL_Overlap_d(solver, p, dp, alp1, dalp1, alp2, dalp2, cx); ^ In file included from liberi-091216/source/eri.c:14:0: liberi-091216/source/eri.h:527:6: note: expected 'const double **' but argument is of type 'double **' void ERI_LL_Overlap_d( ^ liberi-091216/source/eri.c:133:5: warning: passing argument 7 of 'ERI_LL_Overlap_d' from incompatible pointer type [enabled by default] ERI_LL_Overlap_d(solver, p, dp, alp1, dalp1, alp2, dalp2, cx); ^ In file included from liberi-091216/source/eri.c:14:0: liberi-091216/source/eri.h:527:6: note: expected 'const double **' but argument is of type 'double **' void ERI_LL_Overlap_d( ^ liberi-091216/source/eri.c:45:26: warning: unused variable 'j' [-Wunused-variable] int ngrid, lmax, jmax, j; ^ liberi-091216/source/eri.c:45:20: warning: variable 'jmax' set but not used [-Wunused-but-set-variable] int ngrid, lmax, jmax, j; ^ liberi-091216/source/eri.c:45:7: warning: variable 'ngrid' set but not used [-Wunused-but-set-variable] int ngrid, lmax, jmax, j; ^ liberi-091216/source/eri.c: In function 'ERI_Integral': liberi-091216/source/eri.c:229:23: warning: passing argument 3 of 'ERI_Integral_GL_d' from incompatible pointer type [enabled by default] R[0], R[1], R[2], cx12, cx34, 1e-10, scr, lmax_gl); ^ In file included from liberi-091216/source/eri.c:14:0: liberi-091216/source/eri.h:571:6: note: expected 'double (*)[3][2]' but argument is of type 'double *' void ERI_Integral_GL_d( ^ liberi-091216/source/eri.c:229:23: warning: passing argument 6 of 'ERI_Integral_GL_d' from incompatible pointer type [enabled by default] R[0], R[1], R[2], cx12, cx34, 1e-10, scr, lmax_gl); ^ In file included from liberi-091216/source/eri.c:14:0: liberi-091216/source/eri.h:571:6: note: expected 'const double **' but argument is of type 'double **' void ERI_Integral_GL_d( ^ liberi-091216/source/eri.c:229:23: warning: passing argument 7 of 'ERI_Integral_GL_d' from incompatible pointer type [enabled by default] R[0], R[1], R[2], cx12, cx34, 1e-10, scr, lmax_gl); ^ In file included from liberi-091216/source/eri.c:14:0: liberi-091216/source/eri.h:571:6: note: expected 'const double **' but argument is of type 'double **' void ERI_Integral_GL_d( ^ liberi-091216/source/eri.c:191:23: warning: unused variable 'clk3' [-Wunused-variable] clock_t clk1, clk2, clk3; ^ liberi-091216/source/eri.c:191:17: warning: unused variable 'clk2' [-Wunused-variable] clock_t clk1, clk2, clk3; ^ liberi-091216/source/eri.c:191:11: warning: unused variable 'clk1' [-Wunused-variable] clock_t clk1, clk2, clk3; ^ liberi-091216/source/eri.c: In function 'orbital_T': liberi-091216/source/eri.c:268:17: warning: variable 'kmesh' set but not used [-Wunused-but-set-variable] const double *kmesh; ^ liberi-091216/source/eri.c: At top level: liberi-091216/source/eri.c:330:15: warning: 'orbital_r' defined but not used [-Wunused-function] static double orbital_r( ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/eri_ll.o liberi-091216/source/eri_ll.c liberi-091216/source/eri_ll.c: In function 'ERI_Required_Size': liberi-091216/source/eri_ll.c:210:17: warning: variable 'jmax' set but not used [-Wunused-but-set-variable] int nq, type, jmax; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Alpha': liberi-091216/source/eri_ll.c:597:26: warning: variable 'm1' set but not used [-Wunused-but-set-variable] int j, j1, j2, ir, l1, m1, l2, m2; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Alpha_d': liberi-091216/source/eri_ll.c:755:29: warning: variable 'm1' set but not used [-Wunused-but-set-variable] int i, j, ir, j1, j2, l1, m1, l2, m2; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Overlap': liberi-091216/source/eri_ll.c:1033:14: warning: unused variable 'j2m' [-Wunused-variable] const int *j2m = g_itbl_j2m; ^ liberi-091216/source/eri_ll.c:1032:14: warning: unused variable 'j2l' [-Wunused-variable] const int *j2l = g_itbl_j2l; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Overlap_d': liberi-091216/source/eri_ll.c:1178:49: warning: variable 'm' set but not used [-Wunused-but-set-variable] int i, j, j1, j2, ir, ia1, ia2, ip, ixyz, l, m; ^ liberi-091216/source/eri_ll.c:1178:46: warning: variable 'l' set but not used [-Wunused-but-set-variable] int i, j, j1, j2, ir, ia1, ia2, ip, ixyz, l, m; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL': liberi-091216/source/eri_ll.c:1672:18: warning: unused variable 'gnt_r' [-Wunused-variable] double k, gnt, gnt_r[2], sum[2], FG[2], int1[2], sum2[2]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL_PrejY': liberi-091216/source/eri_ll.c:2165:13: warning: unused variable 'z' [-Wunused-variable] double k, z; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL_Post': liberi-091216/source/eri_ll.c:2316:15: warning: unused variable 'sh' [-Wunused-variable] double gnt, sh, sum; ^ liberi-091216/source/eri_ll.c:2315:41: warning: unused variable 'l2' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2315:37: warning: unused variable 'l1' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2314:30: warning: unused variable 'lphase' [-Wunused-variable] int ngl, lmax, jmax, nmul, lphase; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL_Post2': liberi-091216/source/eri_ll.c:2413:15: warning: unused variable 'sh' [-Wunused-variable] double gnt, sh, sum; ^ liberi-091216/source/eri_ll.c:2412:41: warning: unused variable 'l2' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2412:37: warning: unused variable 'l1' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2411:30: warning: unused variable 'lphase' [-Wunused-variable] int ngl, lmax, jmax, nmul, lphase; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL_X': liberi-091216/source/eri_ll.c:2488:41: warning: unused variable 'l2' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2488:37: warning: unused variable 'l1' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2488:7: warning: unused variable 'iR' [-Wunused-variable] int iR, imR, i, j, j1, j2, ik, l, l1, l2; ^ liberi-091216/source/eri_ll.c:2487:30: warning: unused variable 'lphase' [-Wunused-variable] int ngl, lmax, jmax, nmul, lphase; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Size_of_Alpha': liberi-091216/source/eri_ll.c:375:32: warning: 'ndalp' may be used uninitialized in this function [-Wmaybe-uninitialized] return sizeof(double)*(ndalp + jmax); ^ liberi-091216/source/eri_ll.c: In function 'ERI_Size_of_Overlap': liberi-091216/source/eri_ll.c:395:30: warning: 'ndp' may be used uninitialized in this function [-Wmaybe-uninitialized] return sizeof(double)*(ndp + jmax0); ^ liberi-091216/source/eri_ll.c: In function 'ERI_Size_of_GLF': liberi-091216/source/eri_ll.c:415:32: warning: 'ndglf' may be used uninitialized in this function [-Wmaybe-uninitialized] return sizeof(double)*(ndglf + jmax0); ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Alpha': liberi-091216/source/eri_ll.c:632:11: warning: 'ndalp' may be used uninitialized in this function [-Wmaybe-uninitialized] amax = &alp[ndalp]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Alpha_d': liberi-091216/source/eri_ll.c:798:14: warning: 'ndalp' may be used uninitialized in this function [-Wmaybe-uninitialized] amax = &alp[ndalp]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Overlap': liberi-091216/source/eri_ll.c:1071:11: warning: 'ndalp' may be used uninitialized in this function [-Wmaybe-uninitialized] amax1 = &a1[ndalp]; ^ liberi-091216/source/eri_ll.c:1073:11: warning: 'ndp' may be used uninitialized in this function [-Wmaybe-uninitialized] pmax = &p[ndp]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_LL_Overlap_d': liberi-091216/source/eri_ll.c:1220:15: warning: 'ndalp' may be used uninitialized in this function [-Wmaybe-uninitialized] amax1 = &a1[ndalp]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Transform_Overlap': liberi-091216/source/eri_ll.c:1492:10: warning: 'ndp' may be used uninitialized in this function [-Wmaybe-uninitialized] pmax = &P[ndp]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_GL_Interpolate': liberi-091216/source/eri_ll.c:1594:12: warning: 'ndglf' may be used uninitialized in this function [-Wmaybe-uninitialized] glfmax = &glF[ndglf]; ^ liberi-091216/source/eri_ll.c:1595:12: warning: 'ndf' may be used uninitialized in this function [-Wmaybe-uninitialized] fmax = &F[ndf]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL': liberi-091216/source/eri_ll.c:1721:11: warning: 'ndglf' may be used uninitialized in this function [-Wmaybe-uninitialized] fmax1 = &F1[ndglf]; ^ liberi-091216/source/eri_ll.c: In function 'ERI_Integral_GL_d': liberi-091216/source/eri_ll.c:1938:11: warning: 'ndglf' may be used uninitialized in this function [-Wmaybe-uninitialized] fmax1 = &F1[ndglf]; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/eri_sf.o liberi-091216/source/eri_sf.c liberi-091216/source/eri_sf.c: In function 'sph_bessel_drec': liberi-091216/source/eri_sf.c:214:39: warning: variable 'ix2' set but not used [-Wunused-but-set-variable] double j0, j1, sf, tmp, si, co, ix, ix2, tsb[1024], huge; ^ liberi-091216/source/eri_sf.c: In function 'ERI_Gaunt': liberi-091216/source/eri_sf.c:529:10: warning: unused variable 'result' [-Wunused-variable] double result, cg1, cg2; ^ liberi-091216/source/eri_sf.c:528:28: warning: unused variable 'tmp3' [-Wunused-variable] double tmp0, tmp1, tmp2, tmp3; ^ liberi-091216/source/eri_sf.c:528:22: warning: unused variable 'tmp2' [-Wunused-variable] double tmp0, tmp1, tmp2, tmp3; ^ liberi-091216/source/eri_sf.c:528:16: warning: unused variable 'tmp1' [-Wunused-variable] double tmp0, tmp1, tmp2, tmp3; ^ liberi-091216/source/eri_sf.c:528:10: warning: unused variable 'tmp0' [-Wunused-variable] double tmp0, tmp1, tmp2, tmp3; ^ liberi-091216/source/eri_sf.c: At top level: liberi-091216/source/eri_sf.c:114:13: warning: 'ERI_RCSH_Coeff_Inverse' defined but not used [-Wunused-function] static void ERI_RCSH_Coeff_Inverse(int m, double c[2], double d[2]) ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/eri_interpolate.o liberi-091216/source/eri_interpolate.c liberi-091216/source/eri_interpolate.c: In function 'extrapolate': liberi-091216/source/eri_interpolate.c:297:10: warning: variable 'c' set but not used [-Wunused-but-set-variable] double c; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/eri_gtbl.o liberi-091216/source/eri_gtbl.c liberi-091216/source/eri_gtbl.c: In function 'gtbl_nmax': liberi-091216/source/eri_gtbl.c:72:36: warning: unused variable 'j2' [-Wunused-variable] int l, m, j, l1, m1, j1, l2, m2, j2, lsum, n, jmax; ^ liberi-091216/source/eri_gtbl.c:72:24: warning: unused variable 'j1' [-Wunused-variable] int l, m, j, l1, m1, j1, l2, m2, j2, lsum, n, jmax; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/sbt/eri_sbt.o liberi-091216/source/sbt/eri_sbt.c mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/sbt/log/eri_fsbt.o liberi-091216/source/sbt/log/eri_fsbt.c liberi-091216/source/sbt/log/eri_fsbt.c: In function 'ERI_FSBT_Transform_Input': liberi-091216/source/sbt/log/eri_fsbt.c:255:17: warning: unused variable 'Mmesh' [-Wunused-variable] fftw_complex *Mmesh = ptr->M; ^ liberi-091216/source/sbt/log/eri_fsbt.c: In function 'ERI_FSBT_Transform_Output': liberi-091216/source/sbt/log/eri_fsbt.c:286:10: warning: unused variable 'rho' [-Wunused-variable] double rho, kap, t, p, c, s, e; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/sbt/log/eri_logfsbt.o liberi-091216/source/sbt/log/eri_logfsbt.c mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -g -c -o liberi-091216/source/sbt/linear/eri_linfsbt.o liberi-091216/source/sbt/linear/eri_linfsbt.c NBO_Krylov.c: In function 'Krylov_Col_NAO.isra.1': NBO_Krylov.c:9075:11: warning: 'tmp_threshold' may be used uninitialized in this function [-Wmaybe-uninitialized] if (temp_M7[k+1] >= tmp_threshold){ ^ NBO_Krylov.c:8643:11: note: 'tmp_threshold' was declared here double tmp_threshold,sum; ^ NBO_Krylov.c:1139:23: warning: 'kp' may be used uninitialized in this function [-Wmaybe-uninitialized] int jc, jp, kc, kg, kp; ^ NBO_Krylov.c:1139:11: warning: 'jp' may be used uninitialized in this function [-Wmaybe-uninitialized] int jc, jp, kc, kg, kp; ^ NBO_Krylov.c:1127:13: warning: 'tmp_array' may be used uninitialized in this function [-Wmaybe-uninitialized] free(tmp_array); /* freeing of array */ ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'segment_cubic': liberi-091216/source/sbt/linear/eri_linfsbt.c:294:53: warning: unused variable 'c3i' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:48: warning: unused variable 'c3r' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:43: warning: unused variable 'c2i' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:38: warning: unused variable 'c2r' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:33: warning: unused variable 'c1i' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:28: warning: unused variable 'c1r' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:23: warning: unused variable 'c0i' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:18: warning: unused variable 'c0r' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:14: warning: unused variable 'dy' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:294:10: warning: unused variable 'dx' [-Wunused-variable] double dx, dy, c0r, c0i, c1r, c1i, c2r, c2i, c3r, c3i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'recsum_cubic_twoway_new': liberi-091216/source/sbt/linear/eri_linfsbt.c:454:40: warning: unused variable 'dn7' [-Wunused-variable] double dn1, dn2, dn3, dn4, dn5, dn6, dn7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'recsum_cubic_upward_new': liberi-091216/source/sbt/linear/eri_linfsbt.c:602:40: warning: unused variable 'dn7' [-Wunused-variable] double dn1, dn2, dn3, dn4, dn5, dn6, dn7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:600:13: warning: unused variable 'j' [-Wunused-variable] int n, i, j; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'calculate_gamma': liberi-091216/source/sbt/linear/eri_linfsbt.c:793:42: warning: unused variable 'g7' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:38: warning: unused variable 'g6' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:34: warning: unused variable 'g5' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:30: warning: unused variable 'g4' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:26: warning: unused variable 'g3' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:22: warning: unused variable 'g2' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:17: warning: unused variable 'tmp' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:793:10: warning: unused variable 'x' [-Wunused-variable] double x, dx, tmp, g2, g3, g4, g5, g6, g7; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'transform_switch': liberi-091216/source/sbt/linear/eri_linfsbt.c:941:17: warning: unused variable 'iodd' [-Wunused-variable] int n, ieven, iodd; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:941:10: warning: unused variable 'ieven' [-Wunused-variable] int n, ieven, iodd; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:941:7: warning: unused variable 'n' [-Wunused-variable] int n, ieven, iodd; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'transform_in': liberi-091216/source/sbt/linear/eri_linfsbt.c:961:7: warning: unused variable 'i' [-Wunused-variable] int i; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: In function 'transform_out': liberi-091216/source/sbt/linear/eri_linfsbt.c:999:22: warning: unused variable 'twon' [-Wunused-variable] double fact, twop, twon; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:999:16: warning: unused variable 'twop' [-Wunused-variable] double fact, twop, twon; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c:999:10: warning: unused variable 'fact' [-Wunused-variable] double fact, twop, twon; ^ liberi-091216/source/sbt/linear/eri_linfsbt.c: At top level: liberi-091216/source/sbt/linear/eri_linfsbt.c:83:19: warning: 'S0_asymptotic' defined but not used [-Wunused-function] ERI_INLINE double S0_asymptotic( ^ Total_Energy.c: In function 'Total_Energy': Total_Energy.c:3753:16: warning: 'dE8' may be used uninitialized in this function [-Wmaybe-uninitialized] dEx -= (dE6+dE8)*rij[1]/dist; ^ Total_Energy.c:3469:55: note: 'dE8' was declared here double rij[4],fdamp,fdamp6,fdamp8,t6,t62,t8,t82,dE6,dE8,dEC,**dEC0; /* interaction */ ^ Total_Energy.c:3753:16: warning: 'dE6' may be used uninitialized in this function [-Wmaybe-uninitialized] dEx -= (dE6+dE8)*rij[1]/dist; ^ Total_Energy.c:3469:51: note: 'dE6' was declared here double rij[4],fdamp,fdamp6,fdamp8,t6,t62,t8,t82,dE6,dE8,dEC,**dEC0; /* interaction */ ^ Total_Energy.c:3371:4: warning: 'n3_max' may be used uninitialized in this function [-Wmaybe-uninitialized] for (n3=-n3_max; n3<=n3_max; n3++){ ^ Total_Energy.c:3306:21: note: 'n3_max' was declared here int n1_max,n2_max,n3_max; ^ Total_Energy.c:3306:14: warning: 'n2_max' may be used uninitialized in this function [-Wmaybe-uninitialized] int n1_max,n2_max,n3_max; ^ Total_Energy.c:3369:14: warning: 'n1_max' may be used uninitialized in this function [-Wmaybe-uninitialized] for (n1=-n1_max; n1<=n1_max; n1++){ ^ Total_Energy.c:3306:7: note: 'n1_max' was declared here int n1_max,n2_max,n3_max; ^ Total_Energy.c:646:5: warning: 'spinmax' may be used uninitialized in this function [-Wmaybe-uninitialized] for (spin=0; spin<=spinmax; spin++){ ^ Total_Energy.c:485:16: note: 'spinmax' was declared here int i,j,spin,spinmax; ^ Total_Energy.c:431:5: warning: 'spinmax' may be used uninitialized in this function [-Wmaybe-uninitialized] for (spin=0; spin<=spinmax; spin++){ ^ Total_Energy.c:276:16: note: 'spinmax' was declared here int i,j,spin,spinmax; ^ mpicc -O2 -g -pipe -Wall -Wp,-D_FORTIFY_SOURCE=2 -fexceptions -fstack-protector-strong --param=ssp-buffer-size=4 -grecord-gcc-switches -march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=hard -Dnosse -fopenmp -I./liberi-091216/source -o DosMain.o -c DosMain.c DosMain.c: In function 'Dos_Histgram': DosMain.c:372:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c: In function 'Dos_Gaussian': DosMain.c:487:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c: In function 'DosDC_Gaussian': DosMain.c:667:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c:660:16: warning: unused variable 'k' [-Wunused-variable] int spin,i,j,k,ieg,iecenter; ^ DosMain.c:660:14: warning: unused variable 'j' [-Wunused-variable] int spin,i,j,k,ieg,iecenter; ^ DosMain.c: In function 'Dos_NEGF': DosMain.c:839:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c:832:18: warning: unused variable 'factor' [-Wunused-variable] double eg,x,xa,factor,wval; ^ DosMain.c:832:15: warning: unused variable 'xa' [-Wunused-variable] double eg,x,xa,factor,wval; ^ DosMain.c:832:13: warning: unused variable 'x' [-Wunused-variable] double eg,x,xa,factor,wval; ^ DosMain.c:832:10: warning: unused variable 'eg' [-Wunused-variable] double eg,x,xa,factor,wval; ^ DosMain.c:830:22: warning: unused variable 'iecenter' [-Wunused-variable] int spin,i,j,k,ieg,iecenter; ^ DosMain.c:828:7: warning: unused variable 'iewidth' [-Wunused-variable] int iewidth,ie; ^ DosMain.c:827:10: warning: unused variable 'pi2' [-Wunused-variable] double pi2; ^ DosMain.c: In function 'Dos_Tetrahedron': DosMain.c:986:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c: In function 'Spectra_Gaussian': DosMain.c:1179:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c:1175:28: warning: unused variable 'dE' [-Wunused-variable] double dossum[2],MulP[5],dE; ^ DosMain.c:1175:20: warning: unused variable 'MulP' [-Wunused-variable] double dossum[2],MulP[5],dE; ^ DosMain.c: In function 'SpectraDC_Gaussian': DosMain.c:1537:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c:1528:14: warning: unused variable 'i_Dos' [-Wunused-variable] int N_Dos, i_Dos[10]; ^ DosMain.c:1528:7: warning: unused variable 'N_Dos' [-Wunused-variable] int N_Dos, i_Dos[10]; ^ DosMain.c:1526:15: warning: unused variable 'rval' [-Wunused-variable] double eg,x,rval,xa,tmp1; ^ DosMain.c:1524:16: warning: unused variable 'k' [-Wunused-variable] int i,spin,j,k; ^ DosMain.c:1524:14: warning: unused variable 'j' [-Wunused-variable] int i,spin,j,k; ^ DosMain.c: In function 'Spectra_Tetrahedron': DosMain.c:1854:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c: In function 'Spectra_NEGF': DosMain.c:2317:8: warning: unused variable 'fp_buf' [-Wunused-variable] char fp_buf[fp_bsize]; /* setvbuf */ ^ DosMain.c:2313:28: warning: unused variable 'dE' [-Wunused-variable] double dossum[2],MulP[5],dE; ^ DosMain.c:2313:20: warning: unused variable 'MulP' [-Wunused-variable] double dossum[2],MulP[5],dE; ^ DosMain.c:2310:19: warning: unused variable 'iecenter' [-Wunused-variable] int iewidth,ie,iecenter; ^ DosMain.c:2310:8: warning: unused variable 'iewidth' [-Wunused-variable] int iewidth,ie,iecenter; ^ DosMain.c:2309:14: warning: unused variable 'factor' [-Wunused-variable] double pi2,factor; ^ DosMain.c:2309:10: warning: unused variable 'pi2' [-Wunused-variable] double pi2,factor; ^ DosMain.c:2306:20: warning: unused variable 'xa' [-Wunused-variable] double eg,x,rval,xa; ^ DosMain.c:2306:13: warning: unused variable 'x' [-Wunused-variable] double eg,x,rval,xa; ^ DosMain.c:2306:10: warning: unused variable 'eg' [-Wunused-variable] double eg,x,rval,xa; ^ DosMain.c: In function 'input_file_eg': DosMain.c:2699:5: warning: suggest parentheses around assignment used as truth value [-Wparentheses] if (fp=input_find(" Your input file was normally read. The system includes 2 species and 12 atoms. ******************************************************* PAO and VPS ******************************************************* PAOs of species H were normally found. PAOs of species C were normally found. VPSs of species H were normally found. H_CA13.vps is j-dependent. In case of scf.SpinOrbit.Coupling=off, j-dependent pseudo potentials are averaged by j-degeneracy, which corresponds to a scalar relativistic treatment. VPSs of species C were normally found. C_CA13.vps is j-dependent. In case of scf.SpinOrbit.Coupling=off, j-dependent pseudo potentials are averaged by j-degeneracy, which corresponds to a scalar relativistic treatment. ******************************************************* Fourier transform of PAO and projectors of VNL ******************************************************* Fourier transform of pseudo atomic orbitals Fourier transform of non-local projectors Fourier transform of VNA separable projectors Fourier transform of VNA potentials Fourier transform of product of PAOs ******************************************************* Allocation of atoms to proccesors at MD_iter= 1 ******************************************************* proc = 0 # of atoms= 12 estimated weight= 12.00000 ******************************************************* Analysis of neighbors and setting of grids ******************************************************* TFNAN= 132 Average FNAN= 11.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 1 ct_AN= 1 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 2 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 3 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 4 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 5 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 6 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 7 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 8 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 9 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 10 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 11 FNAN SNAN 11 0 CpyCell= 1 ct_AN= 12 FNAN SNAN 11 0 TFNAN= 132 Average FNAN= 11.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 2 ct_AN= 1 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 2 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 3 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 4 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 5 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 6 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 7 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 8 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 9 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 10 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 11 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 12 FNAN SNAN 11 0 TFNAN= 132 Average FNAN= 11.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 2 ct_AN= 1 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 2 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 3 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 4 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 5 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 6 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 7 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 8 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 9 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 10 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 11 FNAN SNAN 11 0 CpyCell= 2 ct_AN= 12 FNAN SNAN 11 0 The system is molecule. lattice vectors (bohr) A = 24.566437851526, 0.000000000000, 0.000000000000 B = 0.000000000000, 24.566437851526, 0.000000000000 C = 0.000000000000, 0.000000000000, 13.228081920052 reciprocal lattice vectors (bohr^-1) RA = 0.255762978139, 0.000000000000, 0.000000000000 RB = 0.000000000000, 0.255762978139, 0.000000000000 RC = 0.000000000000, 0.000000000000, 0.474988387973 Grid_Origin -12.173547013257 -12.173547643166 -6.503806944026 Cell_Volume = 7983.277982894211 (Bohr^3) GridVol = 0.010607033885 (Bohr^3) Grid_Origin -12.173547013257 -12.173547643166 -6.503806944026 Cell_Volume = 7983.277982894211 (Bohr^3) GridVol = 0.010607033885 (Bohr^3) Info. of cutoff energy and num. of grids lattice vectors (bohr) A = 24.566437851526, 0.000000000000, 0.000000000000 B = 0.000000000000, 24.566437851526, 0.000000000000 C = 0.000000000000, 0.000000000000, 13.228081920052 reciprocal lattice vectors (bohr^-1) RA = 0.255762978139, 0.000000000000, 0.000000000000 RB = 0.000000000000, 0.255762978139, 0.000000000000 RC = 0.000000000000, 0.000000000000, 0.474988387973 Required cutoff energy (Ryd) for 3D-grids = 200.0000 Used cutoff energy (Ryd) for 3D-grids = 205.1405, 205.1405, 203.0526 Num. of grids of a-, b-, and c-axes = 112, 112, 60 Grid_Origin -12.173547013257 -12.173547643166 -6.503806944026 Cell_Volume = 7983.277982894211 (Bohr^3) GridVol = 0.010607033885 (Bohr^3) Cell vectors (bohr) of the grid cell (gtv) gtv_a = 0.219343195103, 0.000000000000, 0.000000000000 gtv_b = 0.000000000000, 0.219343195103, 0.000000000000 gtv_c = 0.000000000000, 0.000000000000, 0.220468032001 |gtv_a| = 0.219343195103 |gtv_b| = 0.219343195103 |gtv_c| = 0.220468032001 Num. of grids overlapping with atom 1 = 49344 Num. of grids overlapping with atom 2 = 49354 Num. of grids overlapping with atom 3 = 49362 Num. of grids overlapping with atom 4 = 49344 Num. of grids overlapping with atom 5 = 49354 Num. of grids overlapping with atom 6 = 49362 Num. of grids overlapping with atom 7 = 49346 Num. of grids overlapping with atom 8 = 49352 Num. of grids overlapping with atom 9 = 49360 Num. of grids overlapping with atom 10 = 49346 Num. of grids overlapping with atom 11 = 49352 Num. of grids overlapping with atom 12 = 49360 ******************************************************* SCF calculation at MD = 1 ******************************************************* Calculation of the overlap matrix Calculation of the nonlocal matrix Calculation of the VNA projector matrix ******************* MD= 1 SCF= 1 ******************* Solving the eigenvalue problem... 1 C MulP 1.9963 1.9963 sum 3.9926 2 C MulP 1.9963 1.9963 sum 3.9925 3 C MulP 1.9963 1.9963 sum 3.9925 4 C MulP 1.9963 1.9963 sum 3.9926 5 C MulP 1.9963 1.9963 sum 3.9925 6 C MulP 1.9963 1.9963 sum 3.9925 7 H MulP 0.5037 0.5037 sum 1.0075 8 H MulP 0.5037 0.5037 sum 1.0075 9 H MulP 0.5037 0.5037 sum 1.0075 10 H MulP 0.5037 0.5037 sum 1.0075 11 H MulP 0.5037 0.5037 sum 1.0075 12 H MulP 0.5037 0.5037 sum 1.0075 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -11.807087965685 dUele = 1.000000000000 NormRD = 1.000000000000 Criterion = 0.000000001000 ******************* MD= 1 SCF= 2 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0147 2.0147 sum 4.0293 2 C MulP 2.0147 2.0147 sum 4.0293 3 C MulP 2.0147 2.0147 sum 4.0293 4 C MulP 2.0147 2.0147 sum 4.0293 5 C MulP 2.0147 2.0147 sum 4.0293 6 C MulP 2.0146 2.0146 sum 4.0293 7 H MulP 0.4853 0.4853 sum 0.9707 8 H MulP 0.4853 0.4853 sum 0.9707 9 H MulP 0.4853 0.4853 sum 0.9707 10 H MulP 0.4853 0.4853 sum 0.9707 11 H MulP 0.4853 0.4853 sum 0.9707 12 H MulP 0.4853 0.4853 sum 0.9707 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070030602526 Uele = -12.281188255886 dUele = 0.474100290201 NormRD = 1.812137268648 Criterion = 0.000000001000 ******************* MD= 1 SCF= 3 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.2420 2.2420 sum 4.4840 2 C MulP 2.2420 2.2420 sum 4.4840 3 C MulP 2.2420 2.2420 sum 4.4840 4 C MulP 2.2420 2.2420 sum 4.4840 5 C MulP 2.2420 2.2420 sum 4.4840 6 C MulP 2.2420 2.2420 sum 4.4840 7 H MulP 0.2580 0.2580 sum 0.5160 8 H MulP 0.2580 0.2580 sum 0.5160 9 H MulP 0.2580 0.2580 sum 0.5160 10 H MulP 0.2580 0.2580 sum 0.5160 11 H MulP 0.2580 0.2580 sum 0.5160 12 H MulP 0.2580 0.2580 sum 0.5160 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.121515339643 Uele = -18.453719725612 dUele = 6.172531469725 NormRD = 1.179545748085 Criterion = 0.000000001000 ******************* MD= 1 SCF= 4 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.2331 2.2331 sum 4.4662 2 C MulP 2.2331 2.2331 sum 4.4662 3 C MulP 2.2331 2.2331 sum 4.4661 4 C MulP 2.2331 2.2331 sum 4.4662 5 C MulP 2.2331 2.2331 sum 4.4662 6 C MulP 2.2331 2.2331 sum 4.4661 7 H MulP 0.2669 0.2669 sum 0.5338 8 H MulP 0.2669 0.2669 sum 0.5338 9 H MulP 0.2669 0.2669 sum 0.5339 10 H MulP 0.2669 0.2669 sum 0.5338 11 H MulP 0.2669 0.2669 sum 0.5338 12 H MulP 0.2669 0.2669 sum 0.5339 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -18.212665837341 dUele = 0.241053888271 NormRD = 0.991005702620 Criterion = 0.000000001000 ******************* MD= 1 SCF= 5 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1656 2.1656 sum 4.3311 2 C MulP 2.1656 2.1656 sum 4.3311 3 C MulP 2.1656 2.1656 sum 4.3311 4 C MulP 2.1656 2.1656 sum 4.3311 5 C MulP 2.1656 2.1656 sum 4.3311 6 C MulP 2.1656 2.1656 sum 4.3311 7 H MulP 0.3344 0.3344 sum 0.6689 8 H MulP 0.3344 0.3344 sum 0.6689 9 H MulP 0.3344 0.3344 sum 0.6689 10 H MulP 0.3344 0.3344 sum 0.6689 11 H MulP 0.3344 0.3344 sum 0.6689 12 H MulP 0.3344 0.3344 sum 0.6689 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -16.422350905368 dUele = 1.790314931973 NormRD = 0.269366427837 Criterion = 0.000000001000 ******************* MD= 1 SCF= 6 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1468 2.1468 sum 4.2936 2 C MulP 2.1468 2.1468 sum 4.2936 3 C MulP 2.1468 2.1468 sum 4.2936 4 C MulP 2.1468 2.1468 sum 4.2936 5 C MulP 2.1468 2.1468 sum 4.2936 6 C MulP 2.1468 2.1468 sum 4.2936 7 H MulP 0.3532 0.3532 sum 0.7064 8 H MulP 0.3532 0.3532 sum 0.7064 9 H MulP 0.3532 0.3532 sum 0.7064 10 H MulP 0.3532 0.3532 sum 0.7064 11 H MulP 0.3532 0.3532 sum 0.7064 12 H MulP 0.3532 0.3532 sum 0.7064 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -15.939028795326 dUele = 0.483322110041 NormRD = 0.085294615504 Criterion = 0.000000001000 ******************* MD= 1 SCF= 7 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1400 2.1400 sum 4.2801 2 C MulP 2.1400 2.1400 sum 4.2801 3 C MulP 2.1400 2.1400 sum 4.2801 4 C MulP 2.1400 2.1400 sum 4.2801 5 C MulP 2.1400 2.1400 sum 4.2801 6 C MulP 2.1400 2.1400 sum 4.2801 7 H MulP 0.3600 0.3600 sum 0.7199 8 H MulP 0.3600 0.3600 sum 0.7199 9 H MulP 0.3600 0.3600 sum 0.7199 10 H MulP 0.3600 0.3600 sum 0.7199 11 H MulP 0.3600 0.3600 sum 0.7199 12 H MulP 0.3600 0.3600 sum 0.7199 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -15.762689363080 dUele = 0.176339432247 NormRD = 0.013940119035 Criterion = 0.000000001000 ******************* MD= 1 SCF= 8 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1401 2.1401 sum 4.2801 2 C MulP 2.1400 2.1400 sum 4.2801 3 C MulP 2.1400 2.1400 sum 4.2801 4 C MulP 2.1401 2.1401 sum 4.2801 5 C MulP 2.1400 2.1400 sum 4.2801 6 C MulP 2.1400 2.1400 sum 4.2801 7 H MulP 0.3599 0.3599 sum 0.7199 8 H MulP 0.3600 0.3600 sum 0.7199 9 H MulP 0.3600 0.3600 sum 0.7199 10 H MulP 0.3599 0.3599 sum 0.7199 11 H MulP 0.3600 0.3600 sum 0.7199 12 H MulP 0.3600 0.3600 sum 0.7199 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -15.761114206024 dUele = 0.001575157056 NormRD = 0.000432494761 Criterion = 0.000000001000 ******************* MD= 1 SCF= 9 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1400 2.1400 sum 4.2801 2 C MulP 2.1400 2.1400 sum 4.2801 3 C MulP 2.1400 2.1400 sum 4.2801 4 C MulP 2.1400 2.1400 sum 4.2801 5 C MulP 2.1400 2.1400 sum 4.2801 6 C MulP 2.1400 2.1400 sum 4.2801 7 H MulP 0.3600 0.3600 sum 0.7199 8 H MulP 0.3600 0.3600 sum 0.7199 9 H MulP 0.3600 0.3600 sum 0.7199 10 H MulP 0.3600 0.3600 sum 0.7199 11 H MulP 0.3600 0.3600 sum 0.7199 12 H MulP 0.3600 0.3600 sum 0.7199 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -15.760835299661 dUele = 0.000278906364 NormRD = 0.000041636876 Criterion = 0.000000001000 ******************* MD= 1 SCF=10 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1401 2.1401 sum 4.2801 2 C MulP 2.1400 2.1400 sum 4.2801 3 C MulP 2.1400 2.1400 sum 4.2801 4 C MulP 2.1400 2.1400 sum 4.2801 5 C MulP 2.1400 2.1400 sum 4.2801 6 C MulP 2.1400 2.1400 sum 4.2801 7 H MulP 0.3599 0.3599 sum 0.7199 8 H MulP 0.3600 0.3600 sum 0.7199 9 H MulP 0.3600 0.3600 sum 0.7199 10 H MulP 0.3599 0.3599 sum 0.7199 11 H MulP 0.3600 0.3600 sum 0.7199 12 H MulP 0.3600 0.3600 sum 0.7199 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -15.760905033520 dUele = 0.000069733859 NormRD = 0.000030036148 Criterion = 0.000000001000 ******************* MD= 1 SCF=11 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1400 2.1400 sum 4.2801 2 C MulP 2.1400 2.1400 sum 4.2801 3 C MulP 2.1400 2.1400 sum 4.2801 4 C MulP 2.1400 2.1400 sum 4.2801 5 C MulP 2.1400 2.1400 sum 4.2801 6 C MulP 2.1400 2.1400 sum 4.2801 7 H MulP 0.3599 0.3599 sum 0.7199 8 H MulP 0.3600 0.3600 sum 0.7199 9 H MulP 0.3600 0.3600 sum 0.7199 10 H MulP 0.3599 0.3599 sum 0.7199 11 H MulP 0.3600 0.3600 sum 0.7199 12 H MulP 0.3600 0.3600 sum 0.7199 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -15.760907379201 dUele = 0.000002345681 NormRD = 0.000002030240 Criterion = 0.000000001000 ******************* MD= 1 SCF=12 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1400 2.1400 sum 4.2801 2 C MulP 2.1400 2.1400 sum 4.2801 3 C MulP 2.1400 2.1400 sum 4.2801 4 C MulP 2.1400 2.1400 sum 4.2801 5 C MulP 2.1400 2.1400 sum 4.2801 6 C MulP 2.1400 2.1400 sum 4.2801 7 H MulP 0.3599 0.3599 sum 0.7199 8 H MulP 0.3600 0.3600 sum 0.7199 9 H MulP 0.3600 0.3600 sum 0.7199 10 H MulP 0.3599 0.3599 sum 0.7199 11 H MulP 0.3600 0.3600 sum 0.7199 12 H MulP 0.3600 0.3600 sum 0.7199 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -15.760906658715 dUele = 0.000000720486 NormRD = 0.000001351631 Criterion = 0.000000001000 ******************* MD= 1 SCF=13 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1400 2.1400 sum 4.2801 2 C MulP 2.1400 2.1400 sum 4.2801 3 C MulP 2.1400 2.1400 sum 4.2801 4 C MulP 2.1400 2.1400 sum 4.2801 5 C MulP 2.1400 2.1400 sum 4.2801 6 C MulP 2.1400 2.1400 sum 4.2801 7 H MulP 0.3599 0.3599 sum 0.7199 8 H MulP 0.3600 0.3600 sum 0.7199 9 H MulP 0.3600 0.3600 sum 0.7199 10 H MulP 0.3599 0.3599 sum 0.7199 11 H MulP 0.3600 0.3600 sum 0.7199 12 H MulP 0.3600 0.3600 sum 0.7199 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -15.760906285769 dUele = 0.000000372945 NormRD = 0.000000006367 Criterion = 0.000000001000 ******************* MD= 1 SCF=14 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1400 2.1400 sum 4.2801 2 C MulP 2.1400 2.1400 sum 4.2801 3 C MulP 2.1400 2.1400 sum 4.2801 4 C MulP 2.1400 2.1400 sum 4.2801 5 C MulP 2.1400 2.1400 sum 4.2801 6 C MulP 2.1400 2.1400 sum 4.2801 7 H MulP 0.3599 0.3599 sum 0.7199 8 H MulP 0.3600 0.3600 sum 0.7199 9 H MulP 0.3600 0.3600 sum 0.7199 10 H MulP 0.3599 0.3599 sum 0.7199 11 H MulP 0.3600 0.3600 sum 0.7199 12 H MulP 0.3600 0.3600 sum 0.7199 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -15.760906279840 dUele = 0.000000005929 NormRD = 0.000000002436 Criterion = 0.000000001000 ******************* MD= 1 SCF=15 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.1400 2.1400 sum 4.2801 2 C MulP 2.1400 2.1400 sum 4.2801 3 C MulP 2.1400 2.1400 sum 4.2801 4 C MulP 2.1400 2.1400 sum 4.2801 5 C MulP 2.1400 2.1400 sum 4.2801 6 C MulP 2.1400 2.1400 sum 4.2801 7 H MulP 0.3599 0.3599 sum 0.7199 8 H MulP 0.3600 0.3600 sum 0.7199 9 H MulP 0.3600 0.3600 sum 0.7199 10 H MulP 0.3599 0.3599 sum 0.7199 11 H MulP 0.3600 0.3600 sum 0.7199 12 H MulP 0.3600 0.3600 sum 0.7199 Sum of MulP: up = 15.00000 down = 15.00000 total= 30.00000 ideal(neutral)= 30.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -15.760906280353 dUele = 0.000000000513 NormRD = 0.000000001759 Criterion = 0.000000001000 Force calculation Force calculation #1 Force calculation #2 Force calculation #3 Force calculation #4 Force calculation #5 Total Energy Force calculation #6 Force calculation #7 ******************************************************* Dipole moment (Debye) ******************************************************* Absolute D 0.00001883 Dx Dy Dz Total 0.00001166 0.00001478 -0.00000000 Core -0.00004803 -0.00009606 0.00000000 Electron 0.00005969 0.00011085 -0.00000000 Back ground -0.00000000 0.00000000 -0.00000000 ******************************************************* Total Energy (Hartree) at MD = 1 ******************************************************* Uele = -15.760906280353 Ukin = 24.572738781367 UH0 = -131.905756072662 UH1 = 0.377895405452 Una = -18.783571420156 Unl = -1.949464098545 Uxc0 = -6.373621509081 Uxc1 = -6.373621509081 Ucore = 102.688243958898 Uhub = 0.000000000000 Ucs = 0.000000000000 Uzs = 0.000000000000 Uzo = 0.000000000000 Uef = 0.000000000000 UvdW = 0.000000000000 Utot = -37.747156463809 Note: Utot = Ukin+UH0+UH1+Una+Unl+Uxc0+Uxc1+Ucore+Uhub+Ucs+Uzs+Uzo+Uef+UvdW Uele: band energy Ukin: kinetic energy UH0: electric part of screened Coulomb energy UH1: difference electron-electron Coulomb energy Una: neutral atom potential energy Unl: non-local potential energy Uxc0: exchange-correlation energy for alpha spin Uxc1: exchange-correlation energy for beta spin Ucore: core-core Coulomb energy Uhub: LDA+U energy Ucs: constraint energy for spin orientation Uzs: Zeeman term for spin magnetic moment Uzo: Zeeman term for orbital magnetic moment Uef: electric energy by electric field UvdW: semi-empirical vdW energy (see also PRB 72, 045121(2005) for the energy contributions) ******************************************************* Computational times (s) at MD = 1 ******************************************************* DFT in total = 111.62879 Set_OLP_Kin = 2.61436 Set_Nonlocal = 5.96506 Set_ProExpn_VNA = 6.98041 Set_Hamiltonian = 20.54039 Poisson = 17.23615 diagonalization = 0.16640 Mixing_DM = 0.02642 Force = 11.82796 Total_Energy = 30.45856 Set_Aden_Grid = 1.44355 Set_Orbitals_Grid = 1.54008 Set_Density_Grid = 12.68188 RestartFileDFT = 0.07364 Mulliken_Charge = 0.03120 FFT(2D)_Density = 0.00000 ******************************************************* MD or geometry opt. at MD = 1 ******************************************************* outputting data on grids to files... *********************************************************** *********************************************************** Computational Time (second) *********************************************************** *********************************************************** Min_ID Min_Time Max_ID Max_Time Total Computational Time = 0 184.058 0 184.058 readfile = 0 51.224 0 51.224 truncation = 0 0.000 0 0.000 MD_pac = 0 0.002 0 0.002 OutData = 0 8.986 0 8.986 DFT = 0 111.629 0 111.629 *** In DFT *** Set_OLP_Kin = 0 2.614 0 2.614 Set_Nonlocal = 0 5.965 0 5.965 Set_ProExpn_VNA = 0 6.980 0 6.980 Set_Hamiltonian = 0 20.540 0 20.540 Poisson = 0 17.236 0 17.236 Diagonalization = 0 0.166 0 0.166 Mixing_DM = 0 0.026 0 0.026 Force = 0 11.828 0 11.828 Total_Energy = 0 30.459 0 30.459 Set_Aden_Grid = 0 1.444 0 1.444 Set_Orbitals_Grid = 0 1.540 0 1.540 Set_Density_Grid = 0 12.682 0 12.682 RestartFileDFT = 0 0.074 0 0.074 Mulliken_Charge = 0 0.031 0 0.031 FFT(2D)_Density = 0 0.000 0 0.000 Others = 0 0.043 0 0.043 The calculation was normally finished. ******************************************************* ******************************************************* Welcome to OpenMX Ver. 3.8.1 Copyright (C), 2002-2009, T.Ozaki OpenMX comes with ABSOLUTELY NO WARRANTY. This is free software, and you are welcome to redistribute it under the constitution of the GNU-GPL. ******************************************************* ******************************************************* ******************************************************* read the input file and initializing ******************************************************* Automatic determination of Kerker_factor: 1.804555393029 Your input file was normally read. The system includes 1 species and 60 atoms. ******************************************************* PAO and VPS ******************************************************* PAOs of species C were normally found. VPSs of species C were normally found. C_CA13.vps is j-dependent. In case of scf.SpinOrbit.Coupling=off, j-dependent pseudo potentials are averaged by j-degeneracy, which corresponds to a scalar relativistic treatment. ******************************************************* Fourier transform of PAO and projectors of VNL ******************************************************* Fourier transform of pseudo atomic orbitals Fourier transform of non-local projectors Fourier transform of VNA separable projectors Fourier transform of VNA potentials Fourier transform of product of PAOs ******************************************************* Allocation of atoms to proccesors at MD_iter= 1 ******************************************************* proc = 0 # of atoms= 60 estimated weight= 60.00000 ******************************************************* Analysis of neighbors and setting of grids ******************************************************* TFNAN= 1884 Average FNAN= 31.40000 TSNAN= 704 Average SNAN= 11.73333 CpyCell= 1 ct_AN= 1 FNAN SNAN 33 14 CpyCell= 1 ct_AN= 2 FNAN SNAN 31 13 CpyCell= 1 ct_AN= 3 FNAN SNAN 31 10 CpyCell= 1 ct_AN= 4 FNAN SNAN 31 10 CpyCell= 1 ct_AN= 5 FNAN SNAN 31 13 CpyCell= 1 ct_AN= 6 FNAN SNAN 31 10 CpyCell= 1 ct_AN= 7 FNAN SNAN 31 13 CpyCell= 1 ct_AN= 8 FNAN SNAN 33 14 CpyCell= 1 ct_AN= 9 FNAN SNAN 31 13 CpyCell= 1 ct_AN= 10 FNAN SNAN 31 10 CpyCell= 1 ct_AN= 11 FNAN SNAN 33 13 CpyCell= 1 ct_AN= 12 FNAN SNAN 31 12 CpyCell= 1 ct_AN= 13 FNAN SNAN 31 10 CpyCell= 1 ct_AN= 14 FNAN SNAN 31 10 CpyCell= 1 ct_AN= 15 FNAN SNAN 31 13 CpyCell= 1 ct_AN= 16 FNAN SNAN 31 13 CpyCell= 1 ct_AN= 17 FNAN SNAN 33 14 CpyCell= 1 ct_AN= 18 FNAN SNAN 31 13 CpyCell= 1 ct_AN= 19 FNAN SNAN 31 10 CpyCell= 1 ct_AN= 20 FNAN SNAN 31 10 .......... ...... TFNAN= 1884 Average FNAN= 31.40000 TSNAN= 704 Average SNAN= 11.73333 CpyCell= 2 ct_AN= 1 FNAN SNAN 33 14 CpyCell= 2 ct_AN= 2 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 3 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 4 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 5 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 6 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 7 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 8 FNAN SNAN 33 14 CpyCell= 2 ct_AN= 9 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 10 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 11 FNAN SNAN 33 13 CpyCell= 2 ct_AN= 12 FNAN SNAN 31 12 CpyCell= 2 ct_AN= 13 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 14 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 15 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 16 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 17 FNAN SNAN 33 14 CpyCell= 2 ct_AN= 18 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 19 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 20 FNAN SNAN 31 10 .......... ...... TFNAN= 1884 Average FNAN= 31.40000 TSNAN= 704 Average SNAN= 11.73333 CpyCell= 2 ct_AN= 1 FNAN SNAN 33 14 CpyCell= 2 ct_AN= 2 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 3 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 4 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 5 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 6 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 7 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 8 FNAN SNAN 33 14 CpyCell= 2 ct_AN= 9 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 10 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 11 FNAN SNAN 33 13 CpyCell= 2 ct_AN= 12 FNAN SNAN 31 12 CpyCell= 2 ct_AN= 13 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 14 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 15 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 16 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 17 FNAN SNAN 33 14 CpyCell= 2 ct_AN= 18 FNAN SNAN 31 13 CpyCell= 2 ct_AN= 19 FNAN SNAN 31 10 CpyCell= 2 ct_AN= 20 FNAN SNAN 31 10 .......... ...... The system is bulk. lattice vectors (bohr) A = 22.676711862947, 0.000000000000, 0.000000000000 B = 0.000000000000, 22.676711862947, 0.000000000000 C = 0.000000000000, 0.000000000000, 22.676711862947 reciprocal lattice vectors (bohr^-1) RA = 0.277076559651, 0.000000000000, 0.000000000000 RB = 0.000000000000, 0.277076559651, 0.000000000000 RC = 0.000000000000, 0.000000000000, 0.277076559651 Grid_Origin -17.749804587507 -11.154205148449 -12.524064368027 Cell_Volume = 11661.119488115972 (Bohr^3) GridVol = 0.019674440341 (Bohr^3) Grid_Origin -17.749804587507 -11.154205148449 -12.524064368027 Cell_Volume = 11661.119488115972 (Bohr^3) GridVol = 0.019674440341 (Bohr^3) Info. of cutoff energy and num. of grids lattice vectors (bohr) A = 22.676711862947, 0.000000000000, 0.000000000000 B = 0.000000000000, 22.676711862947, 0.000000000000 C = 0.000000000000, 0.000000000000, 22.676711862947 reciprocal lattice vectors (bohr^-1) RA = 0.277076559651, 0.000000000000, 0.000000000000 RB = 0.000000000000, 0.277076559651, 0.000000000000 RC = 0.000000000000, 0.000000000000, 0.277076559651 Required cutoff energy (Ryd) for 3D-grids = 140.0000 Used cutoff energy (Ryd) for 3D-grids = 135.4248, 135.4248, 135.4248 Num. of grids of a-, b-, and c-axes = 84, 84, 84 Grid_Origin -17.749804587507 -11.154205148449 -12.524064368027 Cell_Volume = 11661.119488115972 (Bohr^3) GridVol = 0.019674440341 (Bohr^3) Cell vectors (bohr) of the grid cell (gtv) gtv_a = 0.269960855511, 0.000000000000, 0.000000000000 gtv_b = 0.000000000000, 0.269960855511, 0.000000000000 gtv_c = 0.000000000000, 0.000000000000, 0.269960855511 |gtv_a| = 0.269960855511 |gtv_b| = 0.269960855511 |gtv_c| = 0.269960855511 Num. of grids overlapping with atom 1 = 26601 Num. of grids overlapping with atom 2 = 26604 Num. of grids overlapping with atom 3 = 26612 Num. of grids overlapping with atom 4 = 26635 Num. of grids overlapping with atom 5 = 26632 Num. of grids overlapping with atom 6 = 26620 Num. of grids overlapping with atom 7 = 26627 Num. of grids overlapping with atom 8 = 26607 Num. of grids overlapping with atom 9 = 26607 Num. of grids overlapping with atom 10 = 26606 Num. of grids overlapping with atom 11 = 26635 Num. of grids overlapping with atom 12 = 26616 Num. of grids overlapping with atom 13 = 26637 Num. of grids overlapping with atom 14 = 26610 Num. of grids overlapping with atom 15 = 26611 Num. of grids overlapping with atom 16 = 26619 Num. of grids overlapping with atom 17 = 26637 Num. of grids overlapping with atom 18 = 26629 Num. of grids overlapping with atom 19 = 26608 Num. of grids overlapping with atom 20 = 26606 .......... ...... ******************************************************* SCF calculation at MD = 1 ******************************************************* Calculation of the overlap matrix Calculation of the nonlocal matrix Calculation of the VNA projector matrix ******************* MD= 1 SCF= 1 ******************* Solving the eigenvalue problem... 1 C MulP 2.0001 2.0001 sum 4.0003 2 C MulP 1.9919 1.9919 sum 3.9837 3 C MulP 2.0061 2.0061 sum 4.0122 4 C MulP 2.0061 2.0061 sum 4.0122 5 C MulP 1.9923 1.9923 sum 3.9847 6 C MulP 2.0089 2.0089 sum 4.0178 7 C MulP 1.9922 1.9922 sum 3.9844 8 C MulP 2.0009 2.0009 sum 4.0018 9 C MulP 1.9925 1.9925 sum 3.9849 10 C MulP 2.0072 2.0072 sum 4.0143 11 C MulP 2.0008 2.0008 sum 4.0017 12 C MulP 1.9933 1.9933 sum 3.9865 13 C MulP 2.0072 2.0072 sum 4.0145 14 C MulP 2.0079 2.0079 sum 4.0159 15 C MulP 1.9914 1.9914 sum 3.9828 16 C MulP 1.9937 1.9937 sum 3.9874 17 C MulP 1.9995 1.9995 sum 3.9989 18 C MulP 1.9928 1.9928 sum 3.9857 19 C MulP 2.0068 2.0068 sum 4.0137 20 C MulP 2.0062 2.0062 sum 4.0124 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -88.053364029880 dUele = 1.000000000000 NormRD = 1.000000000000 Criterion = 0.000000001000 ******************* MD= 1 SCF= 2 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0028 2.0028 sum 4.0056 2 C MulP 1.9977 1.9977 sum 3.9954 3 C MulP 2.0000 2.0000 sum 4.0000 4 C MulP 1.9997 1.9997 sum 3.9993 5 C MulP 1.9979 1.9979 sum 3.9957 6 C MulP 2.0003 2.0003 sum 4.0006 7 C MulP 1.9983 1.9983 sum 3.9965 8 C MulP 2.0032 2.0032 sum 4.0063 9 C MulP 1.9982 1.9982 sum 3.9964 10 C MulP 2.0005 2.0005 sum 4.0010 11 C MulP 2.0032 2.0032 sum 4.0065 12 C MulP 1.9983 1.9983 sum 3.9966 13 C MulP 2.0005 2.0005 sum 4.0010 14 C MulP 2.0005 2.0005 sum 4.0009 15 C MulP 1.9980 1.9980 sum 3.9961 16 C MulP 1.9975 1.9975 sum 3.9950 17 C MulP 2.0032 2.0032 sum 4.0064 18 C MulP 1.9985 1.9985 sum 3.9969 19 C MulP 2.0003 2.0003 sum 4.0006 20 C MulP 2.0008 2.0008 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.020592295209 Uele = -107.726799575835 dUele = 19.673435545956 NormRD = 3.683552051031 Criterion = 0.000000001000 ******************* MD= 1 SCF= 3 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0055 2 C MulP 1.9977 1.9977 sum 3.9953 3 C MulP 2.0001 2.0001 sum 4.0001 4 C MulP 1.9997 1.9997 sum 3.9994 5 C MulP 1.9978 1.9978 sum 3.9957 6 C MulP 2.0003 2.0003 sum 4.0006 7 C MulP 1.9982 1.9982 sum 3.9965 8 C MulP 2.0032 2.0032 sum 4.0063 9 C MulP 1.9982 1.9982 sum 3.9964 10 C MulP 2.0005 2.0005 sum 4.0010 11 C MulP 2.0032 2.0032 sum 4.0064 12 C MulP 1.9983 1.9983 sum 3.9966 13 C MulP 2.0005 2.0005 sum 4.0010 14 C MulP 2.0005 2.0005 sum 4.0010 15 C MulP 1.9980 1.9980 sum 3.9960 16 C MulP 1.9975 1.9975 sum 3.9950 17 C MulP 2.0032 2.0032 sum 4.0063 18 C MulP 1.9984 1.9984 sum 3.9969 19 C MulP 2.0003 2.0003 sum 4.0006 20 C MulP 2.0008 2.0008 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -108.342196986097 dUele = 0.615397410262 NormRD = 3.610261734685 Criterion = 0.000000001000 ******************* MD= 1 SCF= 4 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0021 2.0021 sum 4.0041 2 C MulP 1.9971 1.9971 sum 3.9941 3 C MulP 2.0008 2.0008 sum 4.0015 4 C MulP 2.0005 2.0005 sum 4.0010 5 C MulP 1.9972 1.9972 sum 3.9944 6 C MulP 2.0009 2.0009 sum 4.0019 7 C MulP 1.9980 1.9980 sum 3.9960 8 C MulP 2.0031 2.0031 sum 4.0062 9 C MulP 1.9980 1.9980 sum 3.9959 10 C MulP 2.0006 2.0006 sum 4.0012 11 C MulP 2.0028 2.0028 sum 4.0055 12 C MulP 1.9981 1.9981 sum 3.9962 13 C MulP 2.0011 2.0011 sum 4.0021 14 C MulP 2.0011 2.0011 sum 4.0023 15 C MulP 1.9976 1.9976 sum 3.9951 16 C MulP 1.9974 1.9974 sum 3.9948 17 C MulP 2.0024 2.0024 sum 4.0048 18 C MulP 1.9981 1.9981 sum 3.9962 19 C MulP 2.0011 2.0011 sum 4.0022 20 C MulP 2.0006 2.0006 sum 4.0012 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.400000000000 Uele = -120.031340833956 dUele = 11.689143847859 NormRD = 2.217938000585 Criterion = 0.000000001000 ******************* MD= 1 SCF= 5 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0021 2.0021 sum 4.0043 2 C MulP 1.9968 1.9968 sum 3.9937 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0008 2.0008 sum 4.0015 5 C MulP 1.9970 1.9970 sum 3.9939 6 C MulP 2.0011 2.0011 sum 4.0022 7 C MulP 1.9977 1.9977 sum 3.9955 8 C MulP 2.0032 2.0032 sum 4.0065 9 C MulP 1.9977 1.9977 sum 3.9953 10 C MulP 2.0007 2.0007 sum 4.0014 11 C MulP 2.0028 2.0028 sum 4.0056 12 C MulP 1.9979 1.9979 sum 3.9958 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9973 1.9973 sum 3.9946 16 C MulP 1.9973 1.9973 sum 3.9946 17 C MulP 2.0024 2.0024 sum 4.0048 18 C MulP 1.9979 1.9979 sum 3.9958 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0008 2.0008 sum 4.0017 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -127.641735312219 dUele = 7.610394478262 NormRD = 1.366717391593 Criterion = 0.000000001000 ******************* MD= 1 SCF= 6 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0019 2.0019 sum 4.0038 2 C MulP 1.9964 1.9964 sum 3.9928 3 C MulP 2.0012 2.0012 sum 4.0023 4 C MulP 2.0011 2.0011 sum 4.0021 5 C MulP 1.9964 1.9964 sum 3.9927 6 C MulP 2.0016 2.0016 sum 4.0032 7 C MulP 1.9977 1.9977 sum 3.9954 8 C MulP 2.0034 2.0034 sum 4.0067 9 C MulP 1.9978 1.9978 sum 3.9956 10 C MulP 2.0004 2.0004 sum 4.0007 11 C MulP 2.0030 2.0030 sum 4.0060 12 C MulP 1.9979 1.9979 sum 3.9958 13 C MulP 2.0012 2.0012 sum 4.0024 14 C MulP 2.0013 2.0013 sum 4.0027 15 C MulP 1.9969 1.9969 sum 3.9939 16 C MulP 1.9970 1.9970 sum 3.9940 17 C MulP 2.0022 2.0022 sum 4.0043 18 C MulP 1.9976 1.9976 sum 3.9952 19 C MulP 2.0015 2.0015 sum 4.0029 20 C MulP 1.9997 1.9997 sum 3.9994 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -142.115662017069 dUele = 14.473926704851 NormRD = 0.042899587058 Criterion = 0.000000001000 ******************* MD= 1 SCF= 7 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0054 2.0054 sum 4.0107 2 C MulP 1.9981 1.9981 sum 3.9961 3 C MulP 2.0008 2.0008 sum 4.0017 4 C MulP 2.0006 2.0006 sum 4.0011 5 C MulP 1.9982 1.9982 sum 3.9964 6 C MulP 1.9994 1.9994 sum 3.9988 7 C MulP 1.9971 1.9971 sum 3.9942 8 C MulP 2.0051 2.0051 sum 4.0102 9 C MulP 1.9963 1.9963 sum 3.9927 10 C MulP 2.0020 2.0020 sum 4.0039 11 C MulP 2.0037 2.0037 sum 4.0074 12 C MulP 1.9976 1.9976 sum 3.9952 13 C MulP 2.0021 2.0021 sum 4.0042 14 C MulP 2.0027 2.0027 sum 4.0055 15 C MulP 1.9981 1.9981 sum 3.9963 16 C MulP 1.9986 1.9986 sum 3.9972 17 C MulP 2.0053 2.0053 sum 4.0106 18 C MulP 1.9987 1.9987 sum 3.9975 19 C MulP 2.0021 2.0021 sum 4.0043 20 C MulP 2.0052 2.0052 sum 4.0105 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -143.865185146719 dUele = 1.749523129650 NormRD = 0.037412020503 Criterion = 0.000000001000 ******************* MD= 1 SCF= 8 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0010 2.0010 sum 4.0020 2 C MulP 1.9951 1.9951 sum 3.9903 3 C MulP 2.0008 2.0008 sum 4.0016 4 C MulP 1.9996 1.9996 sum 3.9992 5 C MulP 1.9958 1.9958 sum 3.9916 6 C MulP 2.0014 2.0014 sum 4.0027 7 C MulP 1.9973 1.9973 sum 3.9946 8 C MulP 2.0028 2.0028 sum 4.0057 9 C MulP 1.9980 1.9980 sum 3.9959 10 C MulP 1.9979 1.9979 sum 3.9958 11 C MulP 2.0033 2.0033 sum 4.0065 12 C MulP 1.9970 1.9970 sum 3.9940 13 C MulP 1.9991 1.9991 sum 3.9981 14 C MulP 1.9983 1.9983 sum 3.9966 15 C MulP 1.9957 1.9957 sum 3.9914 16 C MulP 1.9955 1.9955 sum 3.9910 17 C MulP 2.0013 2.0013 sum 4.0025 18 C MulP 1.9963 1.9963 sum 3.9925 19 C MulP 2.0001 2.0001 sum 4.0002 20 C MulP 1.9962 1.9962 sum 3.9924 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -143.926629064152 dUele = 0.061443917433 NormRD = 0.036835160551 Criterion = 0.000000001000 ******************* MD= 1 SCF= 9 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0021 2.0021 sum 4.0042 2 C MulP 1.9967 1.9967 sum 3.9933 3 C MulP 2.0016 2.0016 sum 4.0033 4 C MulP 2.0023 2.0023 sum 4.0047 5 C MulP 1.9963 1.9963 sum 3.9927 6 C MulP 2.0027 2.0027 sum 4.0054 7 C MulP 1.9982 1.9982 sum 3.9964 8 C MulP 2.0039 2.0039 sum 4.0078 9 C MulP 1.9981 1.9981 sum 3.9962 10 C MulP 2.0030 2.0030 sum 4.0060 11 C MulP 2.0036 2.0036 sum 4.0072 12 C MulP 1.9985 1.9985 sum 3.9971 13 C MulP 2.0030 2.0030 sum 4.0060 14 C MulP 2.0033 2.0033 sum 4.0066 15 C MulP 1.9974 1.9974 sum 3.9948 16 C MulP 1.9971 1.9971 sum 3.9943 17 C MulP 2.0026 2.0026 sum 4.0052 18 C MulP 1.9980 1.9980 sum 3.9959 19 C MulP 2.0017 2.0017 sum 4.0034 20 C MulP 2.0010 2.0010 sum 4.0020 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.247970252166 dUele = 0.321341188014 NormRD = 0.014791950532 Criterion = 0.000000001000 ******************* MD= 1 SCF=10 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0031 2.0031 sum 4.0061 2 C MulP 1.9967 1.9967 sum 3.9934 3 C MulP 2.0006 2.0006 sum 4.0011 4 C MulP 1.9997 1.9997 sum 3.9994 5 C MulP 1.9969 1.9969 sum 3.9938 6 C MulP 2.0000 2.0000 sum 4.0001 7 C MulP 1.9968 1.9968 sum 3.9937 8 C MulP 2.0036 2.0036 sum 4.0072 9 C MulP 1.9967 1.9967 sum 3.9934 10 C MulP 1.9990 1.9990 sum 3.9980 11 C MulP 2.0028 2.0028 sum 4.0056 12 C MulP 1.9971 1.9971 sum 3.9942 13 C MulP 2.0006 2.0006 sum 4.0012 14 C MulP 2.0007 2.0007 sum 4.0014 15 C MulP 1.9969 1.9969 sum 3.9937 16 C MulP 1.9975 1.9975 sum 3.9951 17 C MulP 2.0033 2.0033 sum 4.0066 18 C MulP 1.9978 1.9978 sum 3.9956 19 C MulP 2.0019 2.0019 sum 4.0039 20 C MulP 2.0017 2.0017 sum 4.0035 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.303190842145 dUele = 0.055220589979 NormRD = 0.008385294628 Criterion = 0.000000001000 ******************* MD= 1 SCF=11 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0031 2.0031 sum 4.0062 2 C MulP 1.9968 1.9968 sum 3.9936 3 C MulP 2.0015 2.0015 sum 4.0031 4 C MulP 2.0011 2.0011 sum 4.0021 5 C MulP 1.9971 1.9971 sum 3.9942 6 C MulP 2.0014 2.0014 sum 4.0029 7 C MulP 1.9978 1.9978 sum 3.9955 8 C MulP 2.0042 2.0042 sum 4.0083 9 C MulP 1.9977 1.9977 sum 3.9953 10 C MulP 2.0014 2.0014 sum 4.0027 11 C MulP 2.0038 2.0038 sum 4.0076 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0012 2.0012 sum 4.0023 14 C MulP 2.0010 2.0010 sum 4.0020 15 C MulP 1.9971 1.9971 sum 3.9942 16 C MulP 1.9969 1.9969 sum 3.9937 17 C MulP 2.0028 2.0028 sum 4.0057 18 C MulP 1.9974 1.9974 sum 3.9949 19 C MulP 2.0006 2.0006 sum 4.0012 20 C MulP 2.0002 2.0002 sum 4.0004 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.319869260765 dUele = 0.016678418620 NormRD = 0.004868412098 Criterion = 0.000000001000 ******************* MD= 1 SCF=12 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0026 2.0026 sum 4.0051 2 C MulP 1.9964 1.9964 sum 3.9928 3 C MulP 2.0008 2.0008 sum 4.0016 4 C MulP 2.0005 2.0005 sum 4.0010 5 C MulP 1.9966 1.9966 sum 3.9932 6 C MulP 2.0009 2.0009 sum 4.0018 7 C MulP 1.9974 1.9974 sum 3.9948 8 C MulP 2.0038 2.0038 sum 4.0075 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0005 2.0005 sum 4.0010 11 C MulP 2.0034 2.0034 sum 4.0068 12 C MulP 1.9977 1.9977 sum 3.9954 13 C MulP 2.0014 2.0014 sum 4.0028 14 C MulP 2.0016 2.0016 sum 4.0031 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0031 2.0031 sum 4.0061 18 C MulP 1.9977 1.9977 sum 3.9953 19 C MulP 2.0015 2.0015 sum 4.0031 20 C MulP 2.0008 2.0008 sum 4.0016 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.321730686831 dUele = 0.001861426066 NormRD = 0.001934047807 Criterion = 0.000000001000 ******************* MD= 1 SCF=13 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9965 1.9965 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9949 10 C MulP 2.0007 2.0007 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0013 2.0013 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9941 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0027 20 C MulP 2.0007 2.0007 sum 4.0014 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322066338664 dUele = 0.000335651832 NormRD = 0.000515124492 Criterion = 0.000000001000 ******************* MD= 1 SCF=14 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9974 1.9974 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0007 2.0007 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0025 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0008 2.0008 sum 4.0016 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322357008129 dUele = 0.000290669466 NormRD = 0.000325732579 Criterion = 0.000000001000 ******************* MD= 1 SCF=15 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0014 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322620306471 dUele = 0.000263298342 NormRD = 0.000141748187 Criterion = 0.000000001000 ******************* MD= 1 SCF=16 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322712598270 dUele = 0.000092291798 NormRD = 0.000062670577 Criterion = 0.000000001000 ******************* MD= 1 SCF=17 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322732332137 dUele = 0.000019733867 NormRD = 0.000007285185 Criterion = 0.000000001000 ******************* MD= 1 SCF=18 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322752341789 dUele = 0.000020009653 NormRD = 0.000008914841 Criterion = 0.000000001000 ******************* MD= 1 SCF=19 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322755047082 dUele = 0.000002705293 NormRD = 0.000004656766 Criterion = 0.000000001000 ******************* MD= 1 SCF=20 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322755269289 dUele = 0.000000222207 NormRD = 0.000000890571 Criterion = 0.000000001000 ******************* MD= 1 SCF=21 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322755207568 dUele = 0.000000061721 NormRD = 0.000000389458 Criterion = 0.000000001000 ******************* MD= 1 SCF=22 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322755142203 dUele = 0.000000065365 NormRD = 0.000000210595 Criterion = 0.000000001000 ******************* MD= 1 SCF=23 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322755096207 dUele = 0.000000045997 NormRD = 0.000000059680 Criterion = 0.000000001000 ******************* MD= 1 SCF=24 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322755077470 dUele = 0.000000018737 NormRD = 0.000000019168 Criterion = 0.000000001000 ******************* MD= 1 SCF=25 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322755065230 dUele = 0.000000012240 NormRD = 0.000000011297 Criterion = 0.000000001000 ******************* MD= 1 SCF=26 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322755062612 dUele = 0.000000002618 NormRD = 0.000000003473 Criterion = 0.000000001000 ******************* MD= 1 SCF=27 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 C MulP 2.0027 2.0027 sum 4.0053 2 C MulP 1.9966 1.9966 sum 3.9931 3 C MulP 2.0011 2.0011 sum 4.0021 4 C MulP 2.0007 2.0007 sum 4.0015 5 C MulP 1.9967 1.9967 sum 3.9934 6 C MulP 2.0012 2.0012 sum 4.0023 7 C MulP 1.9975 1.9975 sum 3.9949 8 C MulP 2.0038 2.0038 sum 4.0076 9 C MulP 1.9974 1.9974 sum 3.9948 10 C MulP 2.0006 2.0006 sum 4.0013 11 C MulP 2.0033 2.0033 sum 4.0067 12 C MulP 1.9976 1.9976 sum 3.9953 13 C MulP 2.0013 2.0013 sum 4.0026 14 C MulP 2.0014 2.0014 sum 4.0027 15 C MulP 1.9970 1.9970 sum 3.9940 16 C MulP 1.9971 1.9971 sum 3.9942 17 C MulP 2.0029 2.0029 sum 4.0058 18 C MulP 1.9976 1.9976 sum 3.9953 19 C MulP 2.0014 2.0014 sum 4.0028 20 C MulP 2.0007 2.0007 sum 4.0015 .......... ...... Sum of MulP: up = 120.00000 down = 120.00000 total= 240.00000 ideal(neutral)= 240.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.040000000000 Uele = -144.322755062204 dUele = 0.000000000408 NormRD = 0.000000001683 Criterion = 0.000000001000 Force calculation Force calculation #1 Force calculation #2 Force calculation #3 Force calculation #4 Force calculation #5 Total Energy Force calculation #6 Force calculation #7 ******************************************************* Dipole moment (Debye) ******************************************************* Absolute D 0.00717797 Dx Dy Dz Total -0.00474383 0.00093405 0.00530537 Core -3993.44915033 29.99487369 -805.64591100 Electron 3993.44440650 -29.99393964 805.65121637 Back ground 0.00000000 -0.00000000 0.00000000 ******************************************************* Total Energy (Hartree) at MD = 1 ******************************************************* Uele = -144.322755062204 Ukin = 219.148217549971 UH0 = -2843.055056298982 UH1 = 4.224145799981 Una = -152.295155346218 Unl = -22.485311765416 Uxc0 = -54.793347615047 Uxc1 = -54.793347615047 Ucore = 2560.202650328739 Uhub = 0.000000000000 Ucs = 0.000000000000 Uzs = 0.000000000000 Uzo = 0.000000000000 Uef = 0.000000000000 UvdW = 0.000000000000 Utot = -343.847204962017 Note: Utot = Ukin+UH0+UH1+Una+Unl+Uxc0+Uxc1+Ucore+Uhub+Ucs+Uzs+Uzo+Uef+UvdW Uele: band energy Ukin: kinetic energy UH0: electric part of screened Coulomb energy UH1: difference electron-electron Coulomb energy Una: neutral atom potential energy Unl: non-local potential energy Uxc0: exchange-correlation energy for alpha spin Uxc1: exchange-correlation energy for beta spin Ucore: core-core Coulomb energy Uhub: LDA+U energy Ucs: constraint energy for spin orientation Uzs: Zeeman term for spin magnetic moment Uzo: Zeeman term for orbital magnetic moment Uef: electric energy by electric field UvdW: semi-empirical vdW energy (see also PRB 72, 045121(2005) for the energy contributions) ******************************************************* Computational times (s) at MD = 1 ******************************************************* DFT in total = 1627.76474 Set_OLP_Kin = 47.95549 Set_Nonlocal = 141.76389 Set_ProExpn_VNA = 129.73008 Set_Hamiltonian = 140.95856 Poisson = 13.07840 diagonalization = 513.11985 Mixing_DM = 86.84718 Force = 68.91095 Total_Energy = 382.78929 Set_Aden_Grid = 3.44876 Set_Orbitals_Grid = 4.39341 Set_Density_Grid = 83.32106 RestartFileDFT = 0.08090 Mulliken_Charge = 0.14943 FFT(2D)_Density = 10.17514 ******************************************************* MD or geometry opt. at MD = 1 ******************************************************* outputting data on grids to files... *********************************************************** *********************************************************** Computational Time (second) *********************************************************** *********************************************************** Min_ID Min_Time Max_ID Max_Time Total Computational Time = 0 1701.874 0 1701.874 readfile = 0 27.241 0 27.241 truncation = 0 0.000 0 0.000 MD_pac = 0 0.003 0 0.003 OutData = 0 9.264 0 9.264 DFT = 0 1627.765 0 1627.765 *** In DFT *** Set_OLP_Kin = 0 47.955 0 47.955 Set_Nonlocal = 0 141.764 0 141.764 Set_ProExpn_VNA = 0 129.730 0 129.730 Set_Hamiltonian = 0 140.959 0 140.959 Poisson = 0 13.078 0 13.078 Diagonalization = 0 513.120 0 513.120 Mixing_DM = 0 86.847 0 86.847 Force = 0 68.911 0 68.911 Total_Energy = 0 382.789 0 382.789 Set_Aden_Grid = 0 3.449 0 3.449 Set_Orbitals_Grid = 0 4.393 0 4.393 Set_Density_Grid = 0 83.321 0 83.321 RestartFileDFT = 0 0.081 0 0.081 Mulliken_Charge = 0 0.149 0 0.149 FFT(2D)_Density = 0 10.175 0 10.175 Others = 0 1.042 0 1.042 The calculation was normally finished. ******************************************************* ******************************************************* Welcome to OpenMX Ver. 3.8.1 Copyright (C), 2002-2009, T.Ozaki OpenMX comes with ABSOLUTELY NO WARRANTY. This is free software, and you are welcome to redistribute it under the constitution of the GNU-GPL. ******************************************************* ******************************************************* ******************************************************* read the input file and initializing ******************************************************* p= 0 l= 0 Primitive= 2 Contracted= 1 p= 0 l= 1 Primitive= 2 Contracted= 1 p= 0 l= 2 Primitive= 0 Contracted= 0 p= 0 l= 3 Primitive= 0 Contracted= 0 p= 0 l= 4 Primitive= 0 Contracted= 0 p= 1 l= 0 Primitive= 2 Contracted= 1 p= 1 l= 1 Primitive= 2 Contracted= 1 p= 1 l= 2 Primitive= 0 Contracted= 0 p= 1 l= 3 Primitive= 0 Contracted= 0 p= 1 l= 4 Primitive= 0 Contracted= 0 automatically determied UnitCell(Ang.) from atomic positions and Rc of PAOs (margin= 10.00%) 8.745140 0.000000 0.000000 0.000000 6.985140 0.000000 0.000000 0.000000 6.985140 widened unit cell to fit energy cutoff (Ang.) A = 9.501715 0.000000 0.000000 (70) B = 0.000000 7.329894 0.000000 (54) C = 0.000000 0.000000 7.329894 (54) Your input file was normally read. The system includes 2 species and 2 atoms. ******************************************************* PAO and VPS ******************************************************* PAOs of species O were normally found. PAOs of species C were normally found. VPSs of species O were normally found. O_PBE13.vps is j-dependent. In case of scf.SpinOrbit.Coupling=off, j-dependent pseudo potentials are averaged by j-degeneracy, which corresponds to a scalar relativistic treatment. VPSs of species C were normally found. C_PBE13.vps is j-dependent. In case of scf.SpinOrbit.Coupling=off, j-dependent pseudo potentials are averaged by j-degeneracy, which corresponds to a scalar relativistic treatment. ******************************************************* Fourier transform of PAO and projectors of VNL ******************************************************* Fourier transform of pseudo atomic orbitals Fourier transform of non-local projectors Fourier transform of VNA separable projectors Fourier transform of VNA potentials Fourier transform of product of PAOs ******************************************************* Allocation of atoms to proccesors at MD_iter= 1 ******************************************************* proc = 0 # of atoms= 2 estimated weight= 2.00000 ******************************************************* Analysis of neighbors and setting of grids ******************************************************* TFNAN= 2 Average FNAN= 1.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 1 ct_AN= 1 FNAN SNAN 1 0 CpyCell= 1 ct_AN= 2 FNAN SNAN 1 0 TFNAN= 2 Average FNAN= 1.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 2 ct_AN= 1 FNAN SNAN 1 0 CpyCell= 2 ct_AN= 2 FNAN SNAN 1 0 TFNAN= 2 Average FNAN= 1.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 2 ct_AN= 1 FNAN SNAN 1 0 CpyCell= 2 ct_AN= 2 FNAN SNAN 1 0 The system is molecule. lattice vectors (bohr) A = 17.955637770240, 0.000000000000, 0.000000000000 B = 0.000000000000, 13.851491994185, 0.000000000000 C = 0.000000000000, 0.000000000000, 13.851491994185 reciprocal lattice vectors (bohr^-1) RA = 0.349928272534, 0.000000000000, 0.000000000000 RB = 0.000000000000, 0.453610723655, 0.000000000000 RC = 0.000000000000, 0.000000000000, 0.453610723655 Grid_Origin -7.337783538755 -6.797491441591 -6.797491441591 Cell_Volume = 3445.037441039801 (Bohr^3) GridVol = 0.016877510489 (Bohr^3) Grid_Origin -7.337783538755 -6.797491441591 -6.797491441591 Cell_Volume = 3445.037441039801 (Bohr^3) GridVol = 0.016877510489 (Bohr^3) Info. of cutoff energy and num. of grids lattice vectors (bohr) A = 17.955637770240, 0.000000000000, 0.000000000000 B = 0.000000000000, 13.851491994185, 0.000000000000 C = 0.000000000000, 0.000000000000, 13.851491994185 reciprocal lattice vectors (bohr^-1) RA = 0.349928272534, 0.000000000000, 0.000000000000 RB = 0.000000000000, 0.453610723655, 0.000000000000 RC = 0.000000000000, 0.000000000000, 0.453610723655 Required cutoff energy (Ryd) for 3D-grids = 150.0000 Used cutoff energy (Ryd) for 3D-grids = 150.0010, 150.0010, 150.0010 Num. of grids of a-, b-, and c-axes = 70, 54, 54 Grid_Origin -7.337783538755 -6.797491441591 -6.797491441591 Cell_Volume = 3445.037441039801 (Bohr^3) GridVol = 0.016877510489 (Bohr^3) Cell vectors (bohr) of the grid cell (gtv) gtv_a = 0.256509111003, 0.000000000000, 0.000000000000 gtv_b = 0.000000000000, 0.256509111003, 0.000000000000 gtv_c = 0.000000000000, 0.000000000000, 0.256509111003 |gtv_a| = 0.256509111003 |gtv_b| = 0.256509111003 |gtv_c| = 0.256509111003 Num. of grids overlapping with atom 1 = 53508 Num. of grids overlapping with atom 2 = 53508 ******************************************************* Orbital optimization SCF calculation at MD = 1 ******************************************************* Calculation of the overlap matrix Calculation of the nonlocal matrix Calculation of the VNA projector matrix ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF= 1 L-SCF= 1 Solving the eigenvalue problem... 1 O MulP 3.7519 3.7519 sum 7.5039 2 C MulP 1.2481 1.2481 sum 2.4961 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.010000000000 Uele = -4.628744758157 dUele = 1.000000000000 NormRD = 1.000000000000 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF= 2 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 1.0656 1.0656 sum 2.1311 2 C MulP 3.9344 3.9344 sum 7.8689 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001422209813 Uele = -5.398588554187 dUele = 0.769843796030 NormRD = 2.455872828571 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF= 3 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 1.0666 1.0666 sum 2.1331 2 C MulP 3.9334 3.9334 sum 7.8669 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.391402711831 dUele = 0.007185842356 NormRD = 2.450554261104 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF= 4 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.7618 3.7618 sum 7.5236 2 C MulP 1.2382 1.2382 sum 2.4764 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.490939750695 dUele = 0.099537038864 NormRD = 0.765622637988 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF= 5 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.1716 2.1716 sum 4.3432 2 C MulP 2.8284 2.8284 sum 5.6568 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -4.592684427396 dUele = 0.898255323299 NormRD = 1.151028685846 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF= 6 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1917 3.1917 sum 6.3834 2 C MulP 1.8083 1.8083 sum 3.6166 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -4.829014590365 dUele = 0.236330162969 NormRD = 0.534743702833 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF= 7 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1247 3.1247 sum 6.2494 2 C MulP 1.8753 1.8753 sum 3.7506 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -4.820328657643 dUele = 0.008685932722 NormRD = 0.511609255143 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF= 8 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.4597 3.4597 sum 6.9195 2 C MulP 1.5403 1.5403 sum 3.0805 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.137444944055 dUele = 0.317116286412 NormRD = 0.358991009569 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF= 9 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1568 3.1568 sum 6.3136 2 C MulP 1.8432 1.8432 sum 3.6864 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.008863340043 dUele = 0.128581604012 NormRD = 0.048594833483 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=10 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1195 3.1195 sum 6.2390 2 C MulP 1.8805 1.8805 sum 3.7610 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.001935581804 dUele = 0.006927758239 NormRD = 0.015460106900 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=11 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1269 3.1269 sum 6.2538 2 C MulP 1.8731 1.8731 sum 3.7462 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.006733134514 dUele = 0.004797552710 NormRD = 0.011196192434 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=12 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1233 3.1233 sum 6.2467 2 C MulP 1.8767 1.8767 sum 3.7533 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.006107452784 dUele = 0.000625681730 NormRD = 0.007354543280 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=13 L-SCF=13 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1174 3.1174 sum 6.2348 2 C MulP 1.8826 1.8826 sum 3.7652 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.005016651571 dUele = 0.001090801213 NormRD = 0.000804852043 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=14 L-SCF=14 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1167 3.1167 sum 6.2334 2 C MulP 1.8833 1.8833 sum 3.7666 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.004856068880 dUele = 0.000160582691 NormRD = 0.000065997238 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=15 L-SCF=15 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1166 3.1166 sum 6.2332 2 C MulP 1.8834 1.8834 sum 3.7668 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.004846545420 dUele = 0.000009523460 NormRD = 0.000001303508 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=16 L-SCF=16 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1166 3.1166 sum 6.2332 2 C MulP 1.8834 1.8834 sum 3.7668 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.004845906705 dUele = 0.000000638715 NormRD = 0.000000785962 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=17 L-SCF=17 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1166 3.1166 sum 6.2332 2 C MulP 1.8834 1.8834 sum 3.7668 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.004846228260 dUele = 0.000000321555 NormRD = 0.000000011544 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=18 L-SCF=18 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1166 3.1166 sum 6.2332 2 C MulP 1.8834 1.8834 sum 3.7668 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.004846221392 dUele = 0.000000006868 NormRD = 0.000000008925 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=19 L-SCF=19 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1166 3.1166 sum 6.2332 2 C MulP 1.8834 1.8834 sum 3.7668 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.092019498060 Uele = -5.004846224181 dUele = 0.000000002789 NormRD = 0.000000000008 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 1 G-SCF=20 L-SCF=20 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1166 3.1166 sum 6.2332 2 C MulP 1.8834 1.8834 sum 3.7668 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Norm of derivatives = 0.113116622295 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.004846224178 dUele = 0.000000000002 NormRD = 0.000000000000 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=21 L-SCF= 1 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1411 3.1411 sum 6.2821 2 C MulP 1.8589 1.8589 sum 3.7179 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.976104157435 dUele = 0.028742066743 NormRD = 0.024654666173 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=22 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.8949 2.8949 sum 5.7899 2 C MulP 2.1051 2.1051 sum 4.2101 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.895774568497 dUele = 0.080329588938 NormRD = 0.239201184232 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=23 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.8977 2.8977 sum 5.7954 2 C MulP 2.1023 2.1023 sum 4.2046 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.042909742324 Uele = -4.896477176520 dUele = 0.000702608023 NormRD = 0.236397493502 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=24 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0092 3.0092 sum 6.0184 2 C MulP 1.9908 1.9908 sum 3.9816 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.057918857519 Uele = -4.927868130049 dUele = 0.031390953529 NormRD = 0.120340114280 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=25 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0785 3.0785 sum 6.1570 2 C MulP 1.9215 1.9215 sum 3.8430 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067621038101 Uele = -4.950814482857 dUele = 0.022946352807 NormRD = 0.045583133837 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=26 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1070 3.1070 sum 6.2139 2 C MulP 1.8930 1.8930 sum 3.7861 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067621038101 Uele = -4.961200809932 dUele = 0.010386327075 NormRD = 0.014184764190 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=27 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1153 3.1153 sum 6.2306 2 C MulP 1.8847 1.8847 sum 3.7694 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067621038101 Uele = -4.964384632873 dUele = 0.003183822941 NormRD = 0.004994465752 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=28 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1144 3.1144 sum 6.2288 2 C MulP 1.8856 1.8856 sum 3.7712 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067621038101 Uele = -4.964694802772 dUele = 0.000310169899 NormRD = 0.005196439963 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=29 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1187 3.1187 sum 6.2373 2 C MulP 1.8813 1.8813 sum 3.7627 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067621038101 Uele = -4.966248073670 dUele = 0.001553270898 NormRD = 0.000422843777 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=30 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1190 3.1190 sum 6.2380 2 C MulP 1.8810 1.8810 sum 3.7620 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067621038101 Uele = -4.966396914661 dUele = 0.000148840991 NormRD = 0.000025667861 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=31 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1190 3.1190 sum 6.2381 2 C MulP 1.8810 1.8810 sum 3.7619 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067621038101 Uele = -4.966403518519 dUele = 0.000006603858 NormRD = 0.000000470509 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=32 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1190 3.1190 sum 6.2381 2 C MulP 1.8810 1.8810 sum 3.7619 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067621038101 Uele = -4.966403396937 dUele = 0.000000121582 NormRD = 0.000000051464 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=33 L-SCF=13 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1190 3.1190 sum 6.2381 2 C MulP 1.8810 1.8810 sum 3.7619 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067621038101 Uele = -4.966403407336 dUele = 0.000000010399 NormRD = 0.000000000773 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 2 G-SCF=34 L-SCF=14 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1190 3.1190 sum 6.2381 2 C MulP 1.8810 1.8810 sum 3.7619 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Norm of derivatives = 0.080573572700 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.966403407513 dUele = 0.000000000177 NormRD = 0.000000000030 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=35 L-SCF= 1 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1497 3.1497 sum 6.2993 2 C MulP 1.8503 1.8503 sum 3.7007 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.933238221687 dUele = 0.033165185827 NormRD = 0.030946448634 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=36 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.8372 2.8372 sum 5.6744 2 C MulP 2.1628 2.1628 sum 4.3256 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.836423070362 dUele = 0.096815151324 NormRD = 0.301229913902 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=37 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.8408 2.8408 sum 5.6816 2 C MulP 2.1592 2.1592 sum 4.3184 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.041953435711 Uele = -4.837260398398 dUele = 0.000837328036 NormRD = 0.297618211413 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=38 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.9831 2.9831 sum 5.9662 2 C MulP 2.0169 2.0169 sum 4.0338 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.056673460310 Uele = -4.874504688924 dUele = 0.037244290525 NormRD = 0.151678458110 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=39 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0702 3.0702 sum 6.1404 2 C MulP 1.9298 1.9298 sum 3.8596 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.066578228624 Uele = -4.902352965227 dUele = 0.027848276304 NormRD = 0.058503243919 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=40 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1062 3.1062 sum 6.2125 2 C MulP 1.8938 1.8938 sum 3.7875 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.066578228624 Uele = -4.915356282683 dUele = 0.013003317455 NormRD = 0.018854016511 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=41 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1170 3.1170 sum 6.2340 2 C MulP 1.8830 1.8830 sum 3.7660 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.066578228624 Uele = -4.919472445063 dUele = 0.004116162380 NormRD = 0.006965563842 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=42 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1150 3.1150 sum 6.2301 2 C MulP 1.8850 1.8850 sum 3.7699 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.066578228624 Uele = -4.919547762126 dUele = 0.000075317064 NormRD = 0.007970238075 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=43 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1219 3.1219 sum 6.2437 2 C MulP 1.8781 1.8781 sum 3.7563 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.066578228624 Uele = -4.922086861958 dUele = 0.002539099832 NormRD = 0.000361807999 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=44 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1221 3.1221 sum 6.2443 2 C MulP 1.8779 1.8779 sum 3.7557 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.066578228624 Uele = -4.922206755885 dUele = 0.000119893927 NormRD = 0.000039582286 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=45 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1222 3.1222 sum 6.2444 2 C MulP 1.8778 1.8778 sum 3.7556 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.066578228624 Uele = -4.922216149138 dUele = 0.000009393253 NormRD = 0.000001088932 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=46 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1222 3.1222 sum 6.2444 2 C MulP 1.8778 1.8778 sum 3.7556 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.066578228624 Uele = -4.922215951066 dUele = 0.000000198073 NormRD = 0.000000070036 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=47 L-SCF=13 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1222 3.1222 sum 6.2444 2 C MulP 1.8778 1.8778 sum 3.7556 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.066578228624 Uele = -4.922215968169 dUele = 0.000000017104 NormRD = 0.000000001136 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 3 G-SCF=48 L-SCF=14 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1222 3.1222 sum 6.2444 2 C MulP 1.8778 1.8778 sum 3.7556 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Norm of derivatives = 0.050314053234 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.922215967940 dUele = 0.000000000230 NormRD = 0.000000000041 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=49 L-SCF= 1 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1484 3.1484 sum 6.2968 2 C MulP 1.8516 1.8516 sum 3.7032 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.896980436797 dUele = 0.025235531143 NormRD = 0.026522620777 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=50 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.8870 2.8870 sum 5.7741 2 C MulP 2.1130 2.1130 sum 4.2259 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.814452772522 dUele = 0.082527664274 NormRD = 0.253736066288 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=51 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.8900 2.8900 sum 5.7799 2 C MulP 2.1100 2.1100 sum 4.2201 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.042883161542 Uele = -4.815185863092 dUele = 0.000733090569 NormRD = 0.250760156993 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=52 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0084 3.0084 sum 6.0167 2 C MulP 1.9916 1.9916 sum 3.9833 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.057922364968 Uele = -4.848059306295 dUele = 0.032873443203 NormRD = 0.127775564140 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=53 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0816 3.0816 sum 6.1633 2 C MulP 1.9184 1.9184 sum 3.8367 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067772450166 Uele = -4.872238464433 dUele = 0.024179158138 NormRD = 0.048712588420 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=54 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1119 3.1119 sum 6.2238 2 C MulP 1.8881 1.8881 sum 3.7762 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067772450166 Uele = -4.883289787034 dUele = 0.011051322601 NormRD = 0.015307730209 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=55 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1208 3.1208 sum 6.2416 2 C MulP 1.8792 1.8792 sum 3.7584 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067772450166 Uele = -4.886705191083 dUele = 0.003415404049 NormRD = 0.005426341682 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=56 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1199 3.1199 sum 6.2398 2 C MulP 1.8801 1.8801 sum 3.7602 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067772450166 Uele = -4.886865748929 dUele = 0.000160557846 NormRD = 0.005610294402 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=57 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1248 3.1248 sum 6.2495 2 C MulP 1.8752 1.8752 sum 3.7505 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067772450166 Uele = -4.888722219779 dUele = 0.001856470849 NormRD = 0.000161980860 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=58 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1249 3.1249 sum 6.2498 2 C MulP 1.8751 1.8751 sum 3.7502 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067772450166 Uele = -4.888774204124 dUele = 0.000051984345 NormRD = 0.000007232300 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=59 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1249 3.1249 sum 6.2499 2 C MulP 1.8751 1.8751 sum 3.7501 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067772450166 Uele = -4.888774880842 dUele = 0.000000676718 NormRD = 0.000000722968 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=60 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1249 3.1249 sum 6.2499 2 C MulP 1.8751 1.8751 sum 3.7501 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067772450166 Uele = -4.888774683466 dUele = 0.000000197376 NormRD = 0.000000061425 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=61 L-SCF=13 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1249 3.1249 sum 6.2499 2 C MulP 1.8751 1.8751 sum 3.7501 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.067772450166 Uele = -4.888774691044 dUele = 0.000000007578 NormRD = 0.000000000649 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 4 G-SCF=62 L-SCF=14 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1249 3.1249 sum 6.2499 2 C MulP 1.8751 1.8751 sum 3.7501 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Norm of derivatives = 0.032047053955 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.888774690946 dUele = 0.000000000098 NormRD = 0.000000000004 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=63 L-SCF= 1 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1469 3.1469 sum 6.2937 2 C MulP 1.8531 1.8531 sum 3.7063 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.869490135021 dUele = 0.019284555925 NormRD = 0.022247753326 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=64 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.9327 2.9327 sum 5.8654 2 C MulP 2.0673 2.0673 sum 4.1346 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.800414736319 dUele = 0.069075398703 NormRD = 0.209354182328 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=65 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.9350 2.9350 sum 5.8701 2 C MulP 2.0650 2.0650 sum 4.1299 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.043913073966 Uele = -4.801040378487 dUele = 0.000625642168 NormRD = 0.206956720737 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=66 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0317 3.0317 sum 6.0633 2 C MulP 1.9683 1.9683 sum 3.9367 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.059255390862 Uele = -4.829434672224 dUele = 0.028394293737 NormRD = 0.105307929771 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=67 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0921 3.0921 sum 6.1842 2 C MulP 1.9079 1.9079 sum 3.8158 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.068998646253 Uele = -4.849981227410 dUele = 0.020546555186 NormRD = 0.039572440371 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=68 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1169 3.1169 sum 6.2338 2 C MulP 1.8831 1.8831 sum 3.7662 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.068998646253 Uele = -4.859145965960 dUele = 0.009164738550 NormRD = 0.012098820268 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=69 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1241 3.1241 sum 6.2481 2 C MulP 1.8759 1.8759 sum 3.7519 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.068998646253 Uele = -4.861904451759 dUele = 0.002758485799 NormRD = 0.004110555101 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=70 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1239 3.1239 sum 6.2478 2 C MulP 1.8761 1.8761 sum 3.7522 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.068998646253 Uele = -4.862107689171 dUele = 0.000203237413 NormRD = 0.003789950815 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=71 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1271 3.1271 sum 6.2543 2 C MulP 1.8729 1.8729 sum 3.7457 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.068998646253 Uele = -4.863387842947 dUele = 0.001280153775 NormRD = 0.000118638889 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=72 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1272 3.1272 sum 6.2545 2 C MulP 1.8728 1.8728 sum 3.7455 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.068998646253 Uele = -4.863413053808 dUele = 0.000025210862 NormRD = 0.000021271834 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=73 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1273 3.1273 sum 6.2545 2 C MulP 1.8727 1.8727 sum 3.7455 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.068998646253 Uele = -4.863419765700 dUele = 0.000006711891 NormRD = 0.000000496397 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=74 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1273 3.1273 sum 6.2545 2 C MulP 1.8727 1.8727 sum 3.7455 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.068998646253 Uele = -4.863419598389 dUele = 0.000000167310 NormRD = 0.000000047330 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=75 L-SCF=13 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1273 3.1273 sum 6.2545 2 C MulP 1.8727 1.8727 sum 3.7455 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.068998646253 Uele = -4.863419602135 dUele = 0.000000003746 NormRD = 0.000000000275 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 5 G-SCF=76 L-SCF=14 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1273 3.1273 sum 6.2545 2 C MulP 1.8727 1.8727 sum 3.7455 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Norm of derivatives = 0.020751408221 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.863419601998 dUele = 0.000000000138 NormRD = 0.000000000010 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=77 L-SCF= 1 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1455 3.1455 sum 6.2909 2 C MulP 1.8545 1.8545 sum 3.7091 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.848494445854 dUele = 0.014925156144 NormRD = 0.018486391031 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=78 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.9712 2.9712 sum 5.9424 2 C MulP 2.0288 2.0288 sum 4.0576 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -4.791169295113 dUele = 0.057325150740 NormRD = 0.171392596421 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=79 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.9730 2.9730 sum 5.9461 2 C MulP 2.0270 2.0270 sum 4.0539 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.044928402878 Uele = -4.791695555968 dUele = 0.000526260855 NormRD = 0.169474466159 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=80 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0514 3.0514 sum 6.1029 2 C MulP 1.9486 1.9486 sum 3.8971 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.060535881312 Uele = -4.815908099529 dUele = 0.024212543560 NormRD = 0.086052642583 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=81 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1009 3.1009 sum 6.2019 2 C MulP 1.8991 1.8991 sum 3.7981 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070144854234 Uele = -4.833172981322 dUele = 0.017264881794 NormRD = 0.031849659067 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=82 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1210 3.1210 sum 6.2421 2 C MulP 1.8790 1.8790 sum 3.7579 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070144854234 Uele = -4.840688793587 dUele = 0.007515812264 NormRD = 0.009479351144 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=83 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1268 3.1268 sum 6.2535 2 C MulP 1.8732 1.8732 sum 3.7465 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070144854234 Uele = -4.842892725240 dUele = 0.002203931653 NormRD = 0.003093977405 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=84 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1270 3.1270 sum 6.2540 2 C MulP 1.8730 1.8730 sum 3.7460 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070144854234 Uele = -4.843103847992 dUele = 0.000211122752 NormRD = 0.002515058954 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=85 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1291 3.1291 sum 6.2581 2 C MulP 1.8709 1.8709 sum 3.7419 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070144854234 Uele = -4.843945889985 dUele = 0.000842041993 NormRD = 0.000163969950 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=86 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1292 3.1292 sum 6.2584 2 C MulP 1.8708 1.8708 sum 3.7416 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070144854234 Uele = -4.843986663485 dUele = 0.000040773500 NormRD = 0.000015734396 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=87 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1292 3.1292 sum 6.2584 2 C MulP 1.8708 1.8708 sum 3.7416 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070144854234 Uele = -4.843991606200 dUele = 0.000004942715 NormRD = 0.000000334003 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=88 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1292 3.1292 sum 6.2584 2 C MulP 1.8708 1.8708 sum 3.7416 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070144854234 Uele = -4.843991472670 dUele = 0.000000133530 NormRD = 0.000000032786 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=89 L-SCF=13 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1292 3.1292 sum 6.2584 2 C MulP 1.8708 1.8708 sum 3.7416 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070144854234 Uele = -4.843991474673 dUele = 0.000000002003 NormRD = 0.000000000415 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 1 orbitalOpt_iter= 6 G-SCF=90 L-SCF=14 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1292 3.1292 sum 6.2584 2 C MulP 1.8708 1.8708 sum 3.7416 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.070144854234 Uele = -4.843991474531 dUele = 0.000000000142 NormRD = 0.000000000006 Criterion = 0.000000001000 Force calculation Force calculation #1 Force calculation #2 Force calculation #3 Force calculation #4 Force calculation #5 Total Energy Force calculation #6 Force calculation #7 ******************************************************* Dipole moment (Debye) ******************************************************* Absolute D 1.13402503 Dx Dy Dz Total 1.13402503 0.00000000 0.00000000 Core 30.74052351 0.00000000 0.00000000 Electron -29.60649848 0.00000000 0.00000000 Back ground -0.00000000 0.00000000 0.00000000 ******************************************************* Total Energy (Hartree) at MD = 1 ******************************************************* Uele = -4.843991474531 Ukin = 14.063275510979 UH0 = -26.457650043134 UH1 = 0.098736840670 Una = -15.440896576666 Unl = 3.273791626418 Uxc0 = -2.674541995206 Uxc1 = -2.674541995206 Ucore = 7.937658735000 Uhub = 0.000000000000 Ucs = 0.000000000000 Uzs = 0.000000000000 Uzo = 0.000000000000 Uef = 0.000000000000 UvdW = 0.000000000000 Utot = -21.874167897146 Note: Utot = Ukin+UH0+UH1+Una+Unl+Uxc0+Uxc1+Ucore+Uhub+Ucs+Uzs+Uzo+Uef+UvdW Uele: band energy Ukin: kinetic energy UH0: electric part of screened Coulomb energy UH1: difference electron-electron Coulomb energy Una: neutral atom potential energy Unl: non-local potential energy Uxc0: exchange-correlation energy for alpha spin Uxc1: exchange-correlation energy for beta spin Ucore: core-core Coulomb energy Uhub: LDA+U energy Ucs: constraint energy for spin orientation Uzs: Zeeman term for spin magnetic moment Uzo: Zeeman term for orbital magnetic moment Uef: electric energy by electric field UvdW: semi-empirical vdW energy (see also PRB 72, 045121(2005) for the energy contributions) ******************************************************* Computational times (s) at MD = 1 ******************************************************* DFT in total = 160.57291 Set_OLP_Kin = 0.23583 Set_Nonlocal = 0.42886 Set_ProExpn_VNA = 0.89188 Set_Hamiltonian = 119.86330 Poisson = 23.34510 diagonalization = 0.21243 Mixing_DM = 0.01869 Force = 2.17499 Total_Energy = 2.46498 Set_Aden_Grid = 0.27094 Set_Orbitals_Grid = 1.29098 Set_Density_Grid = 9.13459 RestartFileDFT = 0.01906 Mulliken_Charge = 0.06761 FFT(2D)_Density = 0.00000 ******************************************************* MD or geometry opt. at MD = 1 ******************************************************* SD_scaling= 1.259817324989 |Maximum force| (Hartree/Bohr) = 0.172437767436 Criterion (Hartree/Bohr) = 0.000100000000 atom= 1, XYZ(ang) Fxyz(a.u.)= 0.1054 0.0000 0.0000 -0.1718 -0.0000 -0.0000 atom= 2, XYZ(ang) Fxyz(a.u.)= 1.4942 0.0000 -0.0000 0.1724 -0.0000 0.0000 ******************************************************* Analysis of neighbors and setting of grids ******************************************************* ******************************************************* Allocation of atoms to proccesors at MD_iter= 2 ******************************************************* proc = 0 # of atoms= 2 estimated weight= 2.00000 TFNAN= 2 Average FNAN= 1.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 2 ct_AN= 1 FNAN SNAN 1 0 CpyCell= 2 ct_AN= 2 FNAN SNAN 1 0 Info. of cutoff energy and num. of grids lattice vectors (bohr) A = 17.955637770240, 0.000000000000, 0.000000000000 B = 0.000000000000, 13.851491994185, 0.000000000000 C = 0.000000000000, 0.000000000000, 13.851491994185 reciprocal lattice vectors (bohr^-1) RA = 0.349928272534, 0.000000000000, 0.000000000000 RB = 0.000000000000, 0.453610723655, 0.000000000000 RC = 0.000000000000, 0.000000000000, 0.453610723655 Required cutoff energy (Ryd) for 3D-grids = 150.0000 Used cutoff energy (Ryd) for 3D-grids = 150.0010, 150.0010, 150.0010 Num. of grids of a-, b-, and c-axes = 70, 54, 54 Cell_Volume = 3445.037441039801 (Bohr^3) GridVol = 0.016877510489 (Bohr^3) Cell vectors (bohr) of the grid cell (gtv) gtv_a = 0.256509111003, 0.000000000000, 0.000000000000 gtv_b = 0.000000000000, 0.256509111003, 0.000000000000 gtv_c = 0.000000000000, 0.000000000000, 0.256509111003 |gtv_a| = 0.256509111003 |gtv_b| = 0.256509111003 |gtv_c| = 0.256509111003 Num. of grids overlapping with atom 1 = 53500 Num. of grids overlapping with atom 2 = 53500 ******************************************************* SCF calculation at MD = 2 ******************************************************* Calculation of the overlap matrix Calculation of the nonlocal matrix Calculation of the VNA projector matrix ******************* MD= 2 SCF= 1 ******************* Found restart files Solving the eigenvalue problem... 1 O MulP 3.6525 3.6525 sum 7.3049 2 C MulP 1.3475 1.3475 sum 2.6951 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -4.856810346438 dUele = 1.000000000000 NormRD = 1.000000000000 Criterion = 0.000000001000 ******************* MD= 2 SCF= 2 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 1.2978 1.2978 sum 2.5956 2 C MulP 3.7022 3.7022 sum 7.4044 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.051260142041 Uele = -5.100921065904 dUele = 0.244110719466 NormRD = 2.202839160029 Criterion = 0.000000001000 ******************* MD= 2 SCF= 3 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 1.4363 1.4363 sum 2.8727 2 C MulP 3.5637 3.5637 sum 7.1273 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.216695890224 Uele = -4.982098064276 dUele = 0.118823001627 NormRD = 1.924740261535 Criterion = 0.000000001000 ******************* MD= 2 SCF= 4 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.3962 3.3962 sum 6.7924 2 C MulP 1.6038 1.6038 sum 3.2076 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.228412643405 Uele = -5.420741486580 dUele = 0.438643422304 NormRD = 0.435928940227 Criterion = 0.000000001000 ******************* MD= 2 SCF= 5 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0559 3.0559 sum 6.1117 2 C MulP 1.9441 1.9441 sum 3.8883 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.171838634022 dUele = 0.248902852558 NormRD = 0.398035013756 Criterion = 0.000000001000 ******************* MD= 2 SCF= 6 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.2025 3.2025 sum 6.4049 2 C MulP 1.7975 1.7975 sum 3.5951 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.285908312150 dUele = 0.114069678128 NormRD = 0.223044642309 Criterion = 0.000000001000 ******************* MD= 2 SCF= 7 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0740 3.0740 sum 6.1479 2 C MulP 1.9260 1.9260 sum 3.8521 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.223271155029 dUele = 0.062637157120 NormRD = 0.213148593337 Criterion = 0.000000001000 ******************* MD= 2 SCF= 8 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1638 3.1638 sum 6.3275 2 C MulP 1.8362 1.8362 sum 3.6725 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.299667840117 dUele = 0.076396685088 NormRD = 0.072747660233 Criterion = 0.000000001000 ******************* MD= 2 SCF= 9 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1171 3.1171 sum 6.2341 2 C MulP 1.8829 1.8829 sum 3.7659 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.295300530879 dUele = 0.004367309238 NormRD = 0.026072099143 Criterion = 0.000000001000 ******************* MD= 2 SCF=10 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1368 3.1368 sum 6.2737 2 C MulP 1.8632 1.8632 sum 3.7263 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.308054936162 dUele = 0.012754405282 NormRD = 0.000689270974 Criterion = 0.000000001000 ******************* MD= 2 SCF=11 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1372 3.1372 sum 6.2745 2 C MulP 1.8628 1.8628 sum 3.7255 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.308404336605 dUele = 0.000349400443 NormRD = 0.000036198762 Criterion = 0.000000001000 ******************* MD= 2 SCF=12 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1372 3.1372 sum 6.2745 2 C MulP 1.8628 1.8628 sum 3.7255 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.308405651832 dUele = 0.000001315227 NormRD = 0.000014163922 Criterion = 0.000000001000 ******************* MD= 2 SCF=13 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1372 3.1372 sum 6.2744 2 C MulP 1.8628 1.8628 sum 3.7256 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.308400959156 dUele = 0.000004692676 NormRD = 0.000000321010 Criterion = 0.000000001000 ******************* MD= 2 SCF=14 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1372 3.1372 sum 6.2744 2 C MulP 1.8628 1.8628 sum 3.7256 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.308401063464 dUele = 0.000000104308 NormRD = 0.000000008214 Criterion = 0.000000001000 ******************* MD= 2 SCF=15 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1372 3.1372 sum 6.2744 2 C MulP 1.8628 1.8628 sum 3.7256 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.308401059034 dUele = 0.000000004430 NormRD = 0.000000001305 Criterion = 0.000000001000 ******************* MD= 2 SCF=16 ******************* Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1372 3.1372 sum 6.2744 2 C MulP 1.8628 1.8628 sum 3.7256 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.308401059728 dUele = 0.000000000694 NormRD = 0.000000000005 Criterion = 0.000000001000 Force calculation Force calculation #1 Force calculation #2 Force calculation #3 Force calculation #4 Force calculation #5 Total Energy Force calculation #6 Force calculation #7 ******************************************************* Dipole moment (Debye) ******************************************************* Absolute D 0.67610652 Dx Dy Dz Total 0.67610652 -0.00000000 0.00000000 Core 31.74584038 0.00000000 0.00000000 Electron -31.06973386 -0.00000000 0.00000000 Back ground -0.00000000 0.00000000 0.00000000 ******************************************************* Total Energy (Hartree) at MD = 2 ******************************************************* Uele = -5.308401059728 Ukin = 14.120132020529 UH0 = -27.476025323880 UH1 = 0.108418252514 Una = -15.676014746284 Unl = 3.249527838519 Uxc0 = -2.702747206989 Uxc1 = -2.702747206989 Ucore = 9.145268240731 Uhub = 0.000000000000 Ucs = 0.000000000000 Uzs = 0.000000000000 Uzo = 0.000000000000 Uef = 0.000000000000 UvdW = 0.000000000000 Utot = -21.934188131848 Note: Utot = Ukin+UH0+UH1+Una+Unl+Uxc0+Uxc1+Ucore+Uhub+Ucs+Uzs+Uzo+Uef+UvdW Uele: band energy Ukin: kinetic energy UH0: electric part of screened Coulomb energy UH1: difference electron-electron Coulomb energy Una: neutral atom potential energy Unl: non-local potential energy Uxc0: exchange-correlation energy for alpha spin Uxc1: exchange-correlation energy for beta spin Ucore: core-core Coulomb energy Uhub: LDA+U energy Ucs: constraint energy for spin orientation Uzs: Zeeman term for spin magnetic moment Uzo: Zeeman term for orbital magnetic moment Uef: electric energy by electric field UvdW: semi-empirical vdW energy (see also PRB 72, 045121(2005) for the energy contributions) ******************************************************* Computational times (s) at MD = 2 ******************************************************* DFT in total = 31.78354 Set_OLP_Kin = 0.20800 Set_Nonlocal = 0.42736 Set_ProExpn_VNA = 0.96735 Set_Hamiltonian = 18.83878 Poisson = 3.94608 diagonalization = 0.03312 Mixing_DM = 0.00387 Force = 2.18769 Total_Energy = 2.16719 Set_Aden_Grid = 0.26284 Set_Orbitals_Grid = 0.95789 Set_Density_Grid = 1.69335 RestartFileDFT = 0.04384 Mulliken_Charge = 0.01149 FFT(2D)_Density = 0.00000 ******************************************************* MD or geometry opt. at MD = 2 ******************************************************* SD_scaling= 1.259817324989 |Maximum force| (Hartree/Bohr) = 0.109531763437 Criterion (Hartree/Bohr) = 0.000100000000 atom= 1, XYZ(ang) Fxyz(a.u.)= 0.1779 0.0000 -0.0000 -0.1087 -0.0000 0.0000 atom= 2, XYZ(ang) Fxyz(a.u.)= 1.4211 -0.0000 0.0000 0.1095 0.0000 -0.0000 ******************************************************* Analysis of neighbors and setting of grids ******************************************************* ******************************************************* Allocation of atoms to proccesors at MD_iter= 3 ******************************************************* proc = 0 # of atoms= 2 estimated weight= 2.00000 TFNAN= 2 Average FNAN= 1.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 2 ct_AN= 1 FNAN SNAN 1 0 CpyCell= 2 ct_AN= 2 FNAN SNAN 1 0 Info. of cutoff energy and num. of grids lattice vectors (bohr) A = 17.955637770240, 0.000000000000, 0.000000000000 B = 0.000000000000, 13.851491994185, 0.000000000000 C = 0.000000000000, 0.000000000000, 13.851491994185 reciprocal lattice vectors (bohr^-1) RA = 0.349928272534, 0.000000000000, 0.000000000000 RB = 0.000000000000, 0.453610723655, 0.000000000000 RC = 0.000000000000, 0.000000000000, 0.453610723655 Required cutoff energy (Ryd) for 3D-grids = 150.0000 Used cutoff energy (Ryd) for 3D-grids = 150.0010, 150.0010, 150.0010 Num. of grids of a-, b-, and c-axes = 70, 54, 54 Cell_Volume = 3445.037441039801 (Bohr^3) GridVol = 0.016877510489 (Bohr^3) Cell vectors (bohr) of the grid cell (gtv) gtv_a = 0.256509111003, 0.000000000000, 0.000000000000 gtv_b = 0.000000000000, 0.256509111003, 0.000000000000 gtv_c = 0.000000000000, 0.000000000000, 0.256509111003 |gtv_a| = 0.256509111003 |gtv_b| = 0.256509111003 |gtv_c| = 0.256509111003 Num. of grids overlapping with atom 1 = 53608 Num. of grids overlapping with atom 2 = 53632 ******************************************************* Orbital optimization SCF calculation at MD = 3 ******************************************************* Calculation of the overlap matrix Calculation of the nonlocal matrix Calculation of the VNA projector matrix ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF= 1 L-SCF= 1 Solving the eigenvalue problem... 1 O MulP 3.5382 3.5382 sum 7.0765 2 C MulP 1.4618 1.4618 sum 2.9235 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.091647774328 dUele = 1.000000000000 NormRD = 1.000000000000 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF= 2 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 1.7073 1.7073 sum 3.4146 2 C MulP 3.2927 3.2927 sum 6.5854 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.076432770574 Uele = -5.221522391324 dUele = 0.129874616997 NormRD = 1.710268398873 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF= 3 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 2.0746 2.0746 sum 4.1492 2 C MulP 2.9254 2.9254 sum 5.8508 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.166331596030 Uele = -5.262682394125 dUele = 0.041160002801 NormRD = 1.257343388942 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF= 4 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.0364 3.0364 sum 6.0728 2 C MulP 1.9636 1.9636 sum 3.9272 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.177105152346 Uele = -5.635471087775 dUele = 0.372788693650 NormRD = 0.310111482932 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF= 5 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1307 3.1307 sum 6.2614 2 C MulP 1.8693 1.8693 sum 3.7386 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.710196997842 dUele = 0.074725910067 NormRD = 0.203078889950 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF= 6 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1501 3.1501 sum 6.3002 2 C MulP 1.8499 1.8499 sum 3.6998 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.731585025742 dUele = 0.021388027900 NormRD = 0.131388771986 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF= 7 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1429 3.1429 sum 6.2858 2 C MulP 1.8571 1.8571 sum 3.7142 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.730014551120 dUele = 0.001570474622 NormRD = 0.092086800456 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF= 8 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1882 3.1882 sum 6.3764 2 C MulP 1.8118 1.8118 sum 3.6236 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.782504421893 dUele = 0.052489870772 NormRD = 0.054714891146 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF= 9 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1348 3.1348 sum 6.2697 2 C MulP 1.8652 1.8652 sum 3.7303 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.737152685047 dUele = 0.045351736846 NormRD = 0.017179940858 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF=10 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1466 3.1466 sum 6.2931 2 C MulP 1.8534 1.8534 sum 3.7069 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.747846840778 dUele = 0.010694155730 NormRD = 0.000275423345 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF=11 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1464 3.1464 sum 6.2929 2 C MulP 1.8536 1.8536 sum 3.7071 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.747843238145 dUele = 0.000003602633 NormRD = 0.000033803738 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF=12 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1464 3.1464 sum 6.2929 2 C MulP 1.8536 1.8536 sum 3.7071 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.747839309141 dUele = 0.000003929004 NormRD = 0.000010903227 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF=13 L-SCF=13 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1464 3.1464 sum 6.2928 2 C MulP 1.8536 1.8536 sum 3.7072 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.747836183503 dUele = 0.000003125638 NormRD = 0.000000217970 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF=14 L-SCF=14 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1464 3.1464 sum 6.2928 2 C MulP 1.8536 1.8536 sum 3.7072 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.747836203608 dUele = 0.000000020105 NormRD = 0.000000004790 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF=15 L-SCF=15 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1464 3.1464 sum 6.2928 2 C MulP 1.8536 1.8536 sum 3.7072 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.300000000000 Uele = -5.747836200663 dUele = 0.000000002945 NormRD = 0.000000000056 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 1 G-SCF=16 L-SCF=16 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1464 3.1464 sum 6.2928 2 C MulP 1.8536 1.8536 sum 3.7072 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Norm of derivatives = 0.426627733651 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.747836200640 dUele = 0.000000000024 NormRD = 0.000000000001 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=17 L-SCF= 1 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1445 3.1445 sum 6.2891 2 C MulP 1.8555 1.8555 sum 3.7109 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.729697811770 dUele = 0.018138388870 NormRD = 0.003296085343 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=18 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1505 3.1505 sum 6.3011 2 C MulP 1.8495 1.8495 sum 3.6989 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.732270789338 dUele = 0.002572977569 NormRD = 0.006216492361 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=19 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1505 3.1505 sum 6.3011 2 C MulP 1.8495 1.8495 sum 3.6989 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.105137343430 Uele = -5.732252303309 dUele = 0.000018486029 NormRD = 0.006186858053 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=20 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1482 3.1482 sum 6.2964 2 C MulP 1.8518 1.8518 sum 3.7036 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.140151526357 Uele = -5.730319591789 dUele = 0.001932711520 NormRD = 0.003092382694 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=21 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1466 3.1466 sum 6.2933 2 C MulP 1.8534 1.8534 sum 3.7067 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.159171310352 Uele = -5.729041133800 dUele = 0.001278457989 NormRD = 0.001068965352 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=22 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1460 3.1460 sum 6.2921 2 C MulP 1.8540 1.8540 sum 3.7079 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.159171310352 Uele = -5.728570049458 dUele = 0.000471084342 NormRD = 0.000404592333 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=23 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1459 3.1459 sum 6.2918 2 C MulP 1.8541 1.8541 sum 3.7082 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.159171310352 Uele = -5.728467563597 dUele = 0.000102485861 NormRD = 0.000285493991 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=24 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1460 3.1460 sum 6.2920 2 C MulP 1.8540 1.8540 sum 3.7080 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.159171310352 Uele = -5.728638594157 dUele = 0.000171030559 NormRD = 0.000217387945 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=25 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1458 3.1458 sum 6.2917 2 C MulP 1.8542 1.8542 sum 3.7083 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.159171310352 Uele = -5.728499959427 dUele = 0.000138634730 NormRD = 0.000000295866 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=26 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1458 3.1458 sum 6.2917 2 C MulP 1.8542 1.8542 sum 3.7083 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.159171310352 Uele = -5.728499830749 dUele = 0.000000128677 NormRD = 0.000000007369 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=27 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1458 3.1458 sum 6.2917 2 C MulP 1.8542 1.8542 sum 3.7083 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.159171310352 Uele = -5.728499825574 dUele = 0.000000005175 NormRD = 0.000000000141 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 2 G-SCF=28 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1458 3.1458 sum 6.2917 2 C MulP 1.8542 1.8542 sum 3.7083 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Norm of derivatives = 0.379666058349 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.728499825699 dUele = 0.000000000125 NormRD = 0.000000000038 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=29 L-SCF= 1 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1441 3.1441 sum 6.2882 2 C MulP 1.8559 1.8559 sum 3.7118 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.709634400527 dUele = 0.018865425172 NormRD = 0.003296564376 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=30 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1495 3.1495 sum 6.2990 2 C MulP 1.8505 1.8505 sum 3.7010 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.711414254404 dUele = 0.001779853878 NormRD = 0.005567110007 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=31 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1495 3.1495 sum 6.2990 2 C MulP 1.8505 1.8505 sum 3.7010 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.105216382859 Uele = -5.711397748020 dUele = 0.000016506384 NormRD = 0.005540591319 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=32 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1474 3.1474 sum 6.2948 2 C MulP 1.8526 1.8526 sum 3.7052 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.140370899195 Uele = -5.709670591793 dUele = 0.001727156227 NormRD = 0.002772733566 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=33 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1460 3.1460 sum 6.2920 2 C MulP 1.8540 1.8540 sum 3.7080 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.160336956467 Uele = -5.708530132651 dUele = 0.001140459142 NormRD = 0.000978447388 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=34 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1454 3.1454 sum 6.2909 2 C MulP 1.8546 1.8546 sum 3.7091 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.160336956467 Uele = -5.708111374523 dUele = 0.000418758128 NormRD = 0.000410483861 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=35 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1453 3.1453 sum 6.2906 2 C MulP 1.8547 1.8547 sum 3.7094 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.160336956467 Uele = -5.708024995512 dUele = 0.000086379010 NormRD = 0.000304009264 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=36 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1455 3.1455 sum 6.2910 2 C MulP 1.8545 1.8545 sum 3.7090 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.160336956467 Uele = -5.708262492148 dUele = 0.000237496635 NormRD = 0.000305283513 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=37 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1453 3.1453 sum 6.2906 2 C MulP 1.8547 1.8547 sum 3.7094 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.160336956467 Uele = -5.708068554444 dUele = 0.000193937704 NormRD = 0.000000569929 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=38 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1453 3.1453 sum 6.2906 2 C MulP 1.8547 1.8547 sum 3.7094 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.160336956467 Uele = -5.708068204804 dUele = 0.000000349640 NormRD = 0.000000007317 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=39 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1453 3.1453 sum 6.2906 2 C MulP 1.8547 1.8547 sum 3.7094 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.160336956467 Uele = -5.708068208825 dUele = 0.000000004021 NormRD = 0.000000000564 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 3 G-SCF=40 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1453 3.1453 sum 6.2906 2 C MulP 1.8547 1.8547 sum 3.7094 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Norm of derivatives = 0.333812737219 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.708068209196 dUele = 0.000000000371 NormRD = 0.000000000011 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=41 L-SCF= 1 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1437 3.1437 sum 6.2875 2 C MulP 1.8563 1.8563 sum 3.7125 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.688391470575 dUele = 0.019676738621 NormRD = 0.003298349328 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=42 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1483 3.1483 sum 6.2966 2 C MulP 1.8517 1.8517 sum 3.7034 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.689160380930 dUele = 0.000768910355 NormRD = 0.004711838675 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=43 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1483 3.1483 sum 6.2966 2 C MulP 1.8517 1.8517 sum 3.7034 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.105500024423 Uele = -5.689146481357 dUele = 0.000013899573 NormRD = 0.004689454522 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=44 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1465 3.1465 sum 6.2930 2 C MulP 1.8535 1.8535 sum 3.7070 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.140983962652 Uele = -5.687688038134 dUele = 0.001458443223 NormRD = 0.002352628637 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=45 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1453 3.1453 sum 6.2906 2 C MulP 1.8547 1.8547 sum 3.7094 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.162994731736 Uele = -5.686728834953 dUele = 0.000959203180 NormRD = 0.000864538233 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=46 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1449 3.1449 sum 6.2897 2 C MulP 1.8551 1.8551 sum 3.7103 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.162994731736 Uele = -5.686379158593 dUele = 0.000349676360 NormRD = 0.000419280407 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=47 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1448 3.1448 sum 6.2895 2 C MulP 1.8552 1.8552 sum 3.7105 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.162994731736 Uele = -5.686315064406 dUele = 0.000064094187 NormRD = 0.000324498009 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=48 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1451 3.1451 sum 6.2901 2 C MulP 1.8549 1.8549 sum 3.7099 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.162994731736 Uele = -5.686654097125 dUele = 0.000339032719 NormRD = 0.000445891608 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=49 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1447 3.1447 sum 6.2895 2 C MulP 1.8553 1.8553 sum 3.7105 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.162994731736 Uele = -5.686372786480 dUele = 0.000281310645 NormRD = 0.000000953733 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=50 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1447 3.1447 sum 6.2895 2 C MulP 1.8553 1.8553 sum 3.7105 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.162994731736 Uele = -5.686372159947 dUele = 0.000000626533 NormRD = 0.000000033281 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=51 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1447 3.1447 sum 6.2895 2 C MulP 1.8553 1.8553 sum 3.7105 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.162994731736 Uele = -5.686372180984 dUele = 0.000000021037 NormRD = 0.000000000234 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 4 G-SCF=52 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1447 3.1447 sum 6.2895 2 C MulP 1.8553 1.8553 sum 3.7105 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Norm of derivatives = 0.289250081803 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.686372181094 dUele = 0.000000000110 NormRD = 0.000000000002 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=53 L-SCF= 1 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1435 3.1435 sum 6.2869 2 C MulP 1.8565 1.8565 sum 3.7131 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.665789856003 dUele = 0.020582325092 NormRD = 0.003310436804 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=54 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1469 3.1469 sum 6.2939 2 C MulP 1.8531 1.8531 sum 3.7061 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.665245025606 dUele = 0.000544830397 NormRD = 0.003571305269 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=55 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1469 3.1469 sum 6.2938 2 C MulP 1.8531 1.8531 sum 3.7062 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.106616827226 Uele = -5.665234617110 dUele = 0.000010408496 NormRD = 0.003554517492 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=56 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1456 3.1456 sum 6.2911 2 C MulP 1.8544 1.8544 sum 3.7089 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.143133859059 Uele = -5.664130795754 dUele = 0.001103821357 NormRD = 0.001795383380 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=57 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1446 3.1446 sum 6.2893 2 C MulP 1.8554 1.8554 sum 3.7107 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.171221105495 Uele = -5.663413552971 dUele = 0.000717242782 NormRD = 0.000727165280 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=58 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1443 3.1443 sum 6.2886 2 C MulP 1.8557 1.8557 sum 3.7114 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.171221105495 Uele = -5.663157647848 dUele = 0.000255905123 NormRD = 0.000431780480 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=59 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1442 3.1442 sum 6.2885 2 C MulP 1.8558 1.8558 sum 3.7115 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.171221105495 Uele = -5.663127369532 dUele = 0.000030278316 NormRD = 0.000343005483 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=60 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1447 3.1447 sum 6.2894 2 C MulP 1.8553 1.8553 sum 3.7106 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.171221105495 Uele = -5.663590996945 dUele = 0.000463627413 NormRD = 0.000621534197 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=61 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1442 3.1442 sum 6.2884 2 C MulP 1.8558 1.8558 sum 3.7116 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.171221105495 Uele = -5.663202798463 dUele = 0.000388198482 NormRD = 0.000001375760 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=62 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1442 3.1442 sum 6.2884 2 C MulP 1.8558 1.8558 sum 3.7116 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.171221105495 Uele = -5.663201874258 dUele = 0.000000924205 NormRD = 0.000000062765 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=63 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1442 3.1442 sum 6.2884 2 C MulP 1.8558 1.8558 sum 3.7116 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.171221105495 Uele = -5.663201913170 dUele = 0.000000038912 NormRD = 0.000000001898 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=64 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1442 3.1442 sum 6.2884 2 C MulP 1.8558 1.8558 sum 3.7116 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.171221105495 Uele = -5.663201914298 dUele = 0.000000001128 NormRD = 0.000000000003 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 5 G-SCF=65 L-SCF=13 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1442 3.1442 sum 6.2884 2 C MulP 1.8558 1.8558 sum 3.7116 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Norm of derivatives = 0.246211675795 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.663201914298 dUele = 0.000000000000 NormRD = 0.000000000000 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=66 L-SCF= 1 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1433 3.1433 sum 6.2866 2 C MulP 1.8567 1.8567 sum 3.7134 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001000000000 Uele = -5.641614119019 dUele = 0.021587795279 NormRD = 0.003354960099 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=67 L-SCF= 2 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1453 3.1453 sum 6.2905 2 C MulP 1.8547 1.8547 sum 3.7095 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.001599040932 Uele = -5.639321181796 dUele = 0.002292937223 NormRD = 0.002053457971 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=68 L-SCF= 3 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1453 3.1453 sum 6.2905 2 C MulP 1.8547 1.8547 sum 3.7095 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.114899454805 Uele = -5.639312178662 dUele = 0.000009003134 NormRD = 0.002039119052 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=69 L-SCF= 4 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1444 3.1444 sum 6.2889 2 C MulP 1.8556 1.8556 sum 3.7111 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.158203938302 Uele = -5.638670534660 dUele = 0.000641644003 NormRD = 0.001066842648 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=70 L-SCF= 5 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1439 3.1439 sum 6.2879 2 C MulP 1.8561 1.8561 sum 3.7121 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.227436357569 Uele = -5.638286648427 dUele = 0.000383886233 NormRD = 0.000588606667 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=71 L-SCF= 6 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1438 3.1438 sum 6.2875 2 C MulP 1.8562 1.8562 sum 3.7125 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.227436357569 Uele = -5.638177990156 dUele = 0.000108658271 NormRD = 0.000422217153 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=72 L-SCF= 7 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1438 3.1438 sum 6.2875 2 C MulP 1.8562 1.8562 sum 3.7125 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.227436357569 Uele = -5.638218744607 dUele = 0.000040754451 NormRD = 0.000305982351 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=73 L-SCF= 8 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1436 3.1436 sum 6.2872 2 C MulP 1.8564 1.8564 sum 3.7128 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.227436357569 Uele = -5.638172469656 dUele = 0.000046274951 NormRD = 0.000199843642 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=74 L-SCF= 9 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1438 3.1438 sum 6.2875 2 C MulP 1.8562 1.8562 sum 3.7125 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.227436357569 Uele = -5.638297244661 dUele = 0.000124775005 NormRD = 0.000002795777 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=75 L-SCF=10 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1438 3.1438 sum 6.2875 2 C MulP 1.8562 1.8562 sum 3.7125 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.227436357569 Uele = -5.638295435146 dUele = 0.000001809515 NormRD = 0.000000035346 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=76 L-SCF=11 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1438 3.1438 sum 6.2875 2 C MulP 1.8562 1.8562 sum 3.7125 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.227436357569 Uele = -5.638295457798 dUele = 0.000000022652 NormRD = 0.000000000876 Criterion = 0.000000001000 ***************** Orbital optimization ************** MD= 3 orbitalOpt_iter= 6 G-SCF=77 L-SCF=12 Poisson's equation using FFT... Hamiltonian matrix for VNA+dVH+Vxc... Solving the eigenvalue problem... 1 O MulP 3.1438 3.1438 sum 6.2875 2 C MulP 1.8562 1.8562 sum 3.7125 Sum of MulP: up = 5.00000 down = 5.00000 total= 10.00000 ideal(neutral)= 10.00000 Total Spin Moment (muB) = 0.000000000000 Mixing_weight= 0.227436357569 Uele = -5.638295458337 dUele = 0.000000000539 NormRD = 0.000000000001 Criterion = 0.000000001000 Force calculation Force calculation #1 Force calculation #2 Force calculation #3 Force calculation #4 Force calculation #5 Total Energy Force calculation #6 Force calculation #7 ******************************************************* Dipole moment (Debye) ******************************************************* Absolute D 0.35410783 Dx Dy Dz Total 0.35410783 -0.00000000 -0.00000000 Core 32.43205046 -0.00000000 -0.00000000 Electron -32.07794263 0.00000000 0.00000000 Back ground -0.00000000 0.00000000 0.00000000 ******************************************************* Total Energy (Hartree) at MD = 3 ******************************************************* Uele = -5.638295458337 Ukin = 14.346850552718 UH0 = -28.290711366743 UH1 = 0.109180652485 Una = -16.057280549794 Unl = 3.209219921414 Uxc0 = -2.743262361555 Uxc1 = -2.743262361555 Ucore = 10.215684462449 Uhub = 0.000000000000 Ucs = 0.000000000000 Uzs = 0.000000000000 Uzo = 0.000000000000 Uef = 0.000000000000 UvdW = 0.000000000000 Utot = -21.953581050579 Note: Utot = Ukin+UH0+UH1+Una+Unl+Uxc0+Uxc1+Ucore+Uhub+Ucs+Uzs+Uzo+Uef+UvdW Uele: band energy Ukin: kinetic energy UH0: electric part of screened Coulomb energy UH1: difference electron-electron Coulomb energy Una: neutral atom potential energy Unl: non-local potential energy Uxc0: exchange-correlation energy for alpha spin Uxc1: exchange-correlation energy for beta spin Ucore: core-core Coulomb energy Uhub: LDA+U energy Ucs: constraint energy for spin orientation Uzs: Zeeman term for spin magnetic moment Uzo: Zeeman term for orbital magnetic moment Uef: electric energy by electric field UvdW: semi-empirical vdW energy (see also PRB 72, 045121(2005) for the energy contributions) ******************************************************* Computational times (s) at MD = 3 ******************************************************* DFT in total = 134.53654 Set_OLP_Kin = 0.20639 Set_Nonlocal = 0.42879 Set_ProExpn_VNA = 0.88775 Set_Hamiltonian = 98.74518 Poisson = 20.02871 diagonalization = 0.13494 Mixing_DM = 0.01378 Force = 2.19377 Total_Energy = 2.14452 Set_Aden_Grid = 0.26331 Set_Orbitals_Grid = 1.29619 Set_Density_Grid = 7.98719 RestartFileDFT = 0.02020 Mulliken_Charge = 0.05220 FFT(2D)_Density = 0.00000 ******************************************************* MD or geometry opt. at MD = 3 ******************************************************* SD_scaling= 1.259817324989 |Maximum force| (Hartree/Bohr) = 0.026365123007 Criterion (Hartree/Bohr) = 0.000100000000 atom= 1, XYZ(ang) Fxyz(a.u.)= 0.1779 0.0000 -0.0000 0.0249 0.0000 -0.0000 atom= 2, XYZ(ang) Fxyz(a.u.)= 1.4211 -0.0000 0.0000 -0.0264 -0.0000 0.0000 outputting data on grids to files... *********************************************************** *********************************************************** Computational Time (second) *********************************************************** *********************************************************** Min_ID Min_Time Max_ID Max_Time Total Computational Time = 0 394.481 0 394.481 readfile = 0 58.150 0 58.150 truncation = 0 0.000 0 0.000 MD_pac = 0 0.012 0 0.012 OutData = 0 3.066 0 3.066 DFT = 0 326.893 0 326.893 *** In DFT *** Set_OLP_Kin = 0 0.650 0 0.650 Set_Nonlocal = 0 1.285 0 1.285 Set_ProExpn_VNA = 0 2.747 0 2.747 Set_Hamiltonian = 0 237.447 0 237.447 Poisson = 0 47.320 0 47.320 Diagonalization = 0 0.381 0 0.381 Mixing_DM = 0 0.036 0 0.036 Force = 0 6.556 0 6.556 Total_Energy = 0 6.777 0 6.777 Set_Aden_Grid = 0 0.797 0 0.797 Set_Orbitals_Grid = 0 3.545 0 3.545 Set_Density_Grid = 0 18.815 0 18.815 RestartFileDFT = 0 0.083 0 0.083 Mulliken_Charge = 0 0.131 0 0.131 FFT(2D)_Density = 0 0.000 0 0.000 Others = 0 0.322 0 0.322 The calculation was normally finished. ******************************************************* ******************************************************* Welcome to OpenMX Ver. 3.8.1 Copyright (C), 2002-2009, T.Ozaki OpenMX comes with ABSOLUTELY NO WARRANTY. This is free software, and you are welcome to redistribute it under the constitution of the GNU-GPL. ******************************************************* ******************************************************* ******************************************************* read the input file and initializing ******************************************************* automatically determied UnitCell(Ang.) from atomic positions and Rc of PAOs (margin= 10.00%) 11.513520 0.000000 0.000000 0.000000 9.313520 0.000000 0.000000 0.000000 9.313520 widened unit cell to fit energy cutoff (Ang.) A = 11.895558 0.000000 0.000000 (96) B = 0.000000 9.912965 0.000000 (80) C = 0.000000 0.000000 9.912965 (80) Your input file was normally read. The system includes 1 species and 2 atoms. ******************************************************* PAO and VPS ******************************************************* PAOs of species Cr were normally found. VPSs of species Cr were normally found. Cr_CA13.vps is j-dependent. ******************************************************* Fourier transform of PAO and projectors of VNL ******************************************************* Fourier transform of pseudo atomic orbitals Fourier transform of non-local projectors Fourier transform of VNA separable projectors Fourier transform of VNA potentials Fourier transform of product of PAOs ******************************************************* Allocation of atoms to proccesors at MD_iter= 1 ******************************************************* proc = 0 # of atoms= 2 estimated weight= 2.00000 ******************************************************* Analysis of neighbors and setting of grids ******************************************************* TFNAN= 2 Average FNAN= 1.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 1 ct_AN= 1 FNAN SNAN 1 0 CpyCell= 1 ct_AN= 2 FNAN SNAN 1 0 TFNAN= 2 Average FNAN= 1.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 2 ct_AN= 1 FNAN SNAN 1 0 CpyCell= 2 ct_AN= 2 FNAN SNAN 1 0 TFNAN= 2 Average FNAN= 1.00000 TSNAN= 0 Average SNAN= 0.00000 CpyCell= 2 ct_AN= 1 FNAN SNAN 1 0 CpyCell= 2 ct_AN= 2 FNAN SNAN 1 0 The system is molecule. lattice vectors (bohr) A = 22.479344696793, 0.000000000000, 0.000000000000 B = 0.000000000000, 18.732787247327, 0.000000000000 C = 0.000000000000, 0.000000000000, 18.732787247327 reciprocal lattice vectors (bohr^-1) RA = 0.279509273599, 0.000000000000, 0.000000000000 RB = 0.000000000000, 0.335411128319, 0.000000000000 RC = 0.000000000000, 0.000000000000, 0.335411128319 Grid_Origin -9.232866439522 -9.249313703368 -9.249313703368 Cell_Volume = 7888.391352601706 (Bohr^3) GridVol = 0.012839178634 (Bohr^3) Grid_Origin -9.232866439522 -9.249313703368 -9.249313703368 Cell_Volume = 7888.391352601706 (Bohr^3) GridVol = 0.012839178634 (Bohr^3) Info. of cutoff energy and num. of grids lattice vectors (bohr) A = 22.479344696793, 0.000000000000, 0.000000000000 B = 0.000000000000, 18.732787247327, 0.000000000000 C = 0.000000000000, 0.000000000000, 18.732787247327 reciprocal lattice vectors (bohr^-1) RA = 0.279509273599, 0.000000000000, 0.000000000000 RB = 0.000000000000, 0.335411128319, 0.000000000000 RC = 0.000000000000, 0.000000000000, 0.335411128319 Required cutoff energy (Ryd) for 3D-grids = 180.0000 Used cutoff energy (Ryd) for 3D-grids = 180.0010, 180.0010, 180.0010 Num. of grids of a-, b-, and c-axes = 96, 80, 80 Grid_Origin -9.232866439522 -9.249313703368 -9.249313703368 Cell_Volume = 7888.391352601706 (Bohr^3) GridVol = 0.012839178634 (Bohr^3) Cell vectors (bohr) of the grid cell (gtv) gtv_a = 0.234159840592, 0.000000000000, 0.000000000000 gtv_b = 0.000000000000, 0.234159840592, 0.000000000000 gtv_c = 0.000000000000, 0.000000000000, 0.234159840592 |gtv_a| = 0.234159840592 |gtv_b| = 0.234159840592 |gtv_c| = 0.234159840592 Num. of grids overlapping with atom 1 = 167056 Num. of grids overlapping with atom 2 = 167056 ******************************************************* SCF calculation at MD = 1 ******************************************************* Calculation of the overlap matrix Calculation of the nonlocal matrix Calculation of the VNA projector matrix ******************* MD= 1 SCF= 1 ******************* Solving the eigenvalue problem... Assertion failed in file src/mpid/ch3/src/ch3u_buffer.c at line 77: FALSE memcpy argument memory ranges overlap, dst_=0xd68de48 src_=0xd68de48 len_=160 internal ABORT - process 0 [cli_0]: aborting job: internal ABORT - process 0 =================================================================================== = BAD TERMINATION OF ONE OF YOUR APPLICATION PROCESSES = EXIT CODE: 1 = CLEANING UP REMAINING PROCESSES = YOU CAN IGNORE THE BELOW CLEANUP MESSAGES =================================================================================== 1 input_example/Benzene.dat Elapsed time(s)= 184.06 diff Utot= 0.000000000000 diff Force= 0.000000000000 2 input_example/C60.dat Elapsed time(s)= 1701.87 diff Utot= 0.000000000010 diff Force= 0.000000000002 3 input_example/CO.dat Elapsed time(s)= 394.48 diff Utot= 0.000000000000 diff Force= 0.000000000014 ~/build/BUILD/openmx3.8 real 38m58.544s user 38m35.340s sys 0m18.150s + '[' -r runtest.result ']' + cat runtest.result + popd + module unload mpi/mpich-arm ++ /usr/bin/modulecmd bash unload mpi/mpich-arm + eval MANPATH=/usr/share/man:/usr/local/share/man ';export' 'MANPATH;PATH=/usr/bin:/bin:/usr/sbin:/sbin:/usr/local/sbin:/builddir/.local/bin:/builddir/bin' ';export' 'PATH;PKG_CONFIG_PATH=/usr/lib/pkgconfig:/usr/share/pkgconfig' ';export' 'PKG_CONFIG_PATH;unset' 'LD_LIBRARY_PATH;unset' 'LOADEDMODULES;unset' 'MPI_BIN;unset' 'MPI_COMPILER;unset' 'MPI_FORTRAN_MOD_DIR;unset' 'MPI_HOME;unset' 'MPI_INCLUDE;unset' 'MPI_LIB;unset' 'MPI_MAN;unset' 'MPI_PYTHON_SITEARCH;unset' 'MPI_SUFFIX;unset' 'MPI_SYSCONFIG;unset' 'PYTHONPATH;unset' '_LMFILES_;' ++ MANPATH=/usr/share/man:/usr/local/share/man ++ export MANPATH ++ PATH=/usr/bin:/bin:/usr/sbin:/sbin:/usr/local/sbin:/builddir/.local/bin:/builddir/bin ++ export PATH ++ PKG_CONFIG_PATH=/usr/lib/pkgconfig:/usr/share/pkgconfig ++ export PKG_CONFIG_PATH ++ unset LD_LIBRARY_PATH ++ unset LOADEDMODULES ++ unset MPI_BIN ++ unset MPI_COMPILER ++ unset MPI_FORTRAN_MOD_DIR ++ unset MPI_HOME ++ unset MPI_INCLUDE ++ unset MPI_LIB ++ unset MPI_MAN ++ unset MPI_PYTHON_SITEARCH ++ unset MPI_SUFFIX ++ unset MPI_SYSCONFIG ++ unset PYTHONPATH ++ unset _LMFILES_ + for mpi in mpich openmpi + module load mpi/openmpi-arm ++ /usr/bin/modulecmd bash load mpi/openmpi-arm + eval LD_LIBRARY_PATH=/usr/lib/openmpi/lib ';export' 'LD_LIBRARY_PATH;LOADEDMODULES=mpi/openmpi-arm' ';export' 'LOADEDMODULES;MANPATH=/usr/share/man/openmpi-arm:/usr/share/man:/usr/local/share/man' ';export' 'MANPATH;MPI_BIN=/usr/lib/openmpi/bin' ';export' 'MPI_BIN;MPI_COMPILER=openmpi-arm' ';export' 'MPI_COMPILER;MPI_FORTRAN_MOD_DIR=/usr/lib/gfortran/modules/openmpi-arm' ';export' 'MPI_FORTRAN_MOD_DIR;MPI_HOME=/usr/lib/openmpi' ';export' 'MPI_HOME;MPI_INCLUDE=/usr/include/openmpi-arm' ';export' 'MPI_INCLUDE;MPI_LIB=/usr/lib/openmpi/lib' ';export' 'MPI_LIB;MPI_MAN=/usr/share/man/openmpi-arm' ';export' 'MPI_MAN;MPI_PYTHON_SITEARCH=/usr/lib/python2.7/site-packages/openmpi' ';export' 'MPI_PYTHON_SITEARCH;MPI_SUFFIX=_openmpi' ';export' 'MPI_SUFFIX;MPI_SYSCONFIG=/etc/openmpi-arm' ';export' 'MPI_SYSCONFIG;PATH=/usr/lib/openmpi/bin:/usr/bin:/bin:/usr/sbin:/sbin:/usr/local/sbin:/builddir/.local/bin:/builddir/bin' ';export' 'PATH;PYTHONPATH=/usr/lib/python2.7/site-packages/openmpi' ';export' 'PYTHONPATH;_LMFILES_=/etc/modulefiles/mpi/openmpi-arm' ';export' '_LMFILES_;' ++ LD_LIBRARY_PATH=/usr/lib/openmpi/lib ++ export LD_LIBRARY_PATH ++ LOADEDMODULES=mpi/openmpi-arm ++ export LOADEDMODULES ++ MANPATH=/usr/share/man/openmpi-arm:/usr/share/man:/usr/local/share/man ++ export MANPATH ++ MPI_BIN=/usr/lib/openmpi/bin ++ export MPI_BIN ++ MPI_COMPILER=openmpi-arm ++ export MPI_COMPILER ++ MPI_FORTRAN_MOD_DIR=/usr/lib/gfortran/modules/openmpi-arm ++ export MPI_FORTRAN_MOD_DIR ++ MPI_HOME=/usr/lib/openmpi ++ export MPI_HOME ++ MPI_INCLUDE=/usr/include/openmpi-arm ~/build/BUILD/openmx3.8/openmpi ~/build/BUILD/openmx3.8 ++ export MPI_INCLUDE ++ MPI_LIB=/usr/lib/openmpi/lib ++ export MPI_LIB ++ MPI_MAN=/usr/share/man/openmpi-arm ++ export MPI_MAN ++ MPI_PYTHON_SITEARCH=/usr/lib/python2.7/site-packages/openmpi ++ export MPI_PYTHON_SITEARCH ++ MPI_SUFFIX=_openmpi ++ export MPI_SUFFIX ++ MPI_SYSCONFIG=/etc/openmpi-arm ++ export MPI_SYSCONFIG ++ PATH=/usr/lib/openmpi/bin:/usr/bin:/bin:/usr/sbin:/sbin:/usr/local/sbin:/builddir/.local/bin:/builddir/bin ++ export PATH ++ PYTHONPATH=/usr/lib/python2.7/site-packages/openmpi ++ export PYTHONPATH ++ _LMFILES_=/etc/modulefiles/mpi/openmpi-arm ++ export _LMFILES_ + pushd openmpi + cp -pr ../work/Al-Si111_ESM.dat ../work/C2H4_NEB.dat ../work/C60.dat ../work/C60_DC.dat ../work/C60_LO.dat ../work/CG15c_DC.dat ../work/Cafcc_FS.dat ../work/Cdia.dat ../work/CoO_NC.dat ../work/Cr2_CNC.dat ../work/Crys-NiO.dat ../work/DFT-D3 ../work/DIA216_DC.dat ../work/DIA512-1.dat ../work/DIA512_DC.dat ../work/DIA64_Band.dat ../work/DIA64_DC.dat ../work/DIA8-VA.dat ../work/DIA8.dat ../work/DIA8_DC.dat ../work/Doped_NT.dat ../work/DosMain ../work/Fe2.dat ../work/FeO+U.dat ../work/FeO_NC.dat ../work/Febcc2.dat ../work/GaAs.dat ../work/Gly_NH.dat ../work/Gly_VS.dat ../work/Graphite_STM.dat ../work/H2-075.dat ../work/H2O.dat ../work/MCCN.dat ../work/Methane.dat ../work/Methane2.dat ../work/Methane_OO.dat ../work/Mn12.dat ../work/MnO_NC.dat ../work/Mnfcc-EvsLC.dat ../work/Mol_MnO_NC.dat ../work/NaCl.dat ../work/NaCl_FC.dat ../work/NdCo5_4f+U.dat ../work/NdCo5_4f.dat ../work/NdCo5_OC.dat ../work/NiO_NC.dat ../work/Nitro_Benzene.dat ../work/OpticalConductivityMain ../work/Pt13.dat ../work/Pt63.dat ../work/Si-Wannier90.dat ../work/Si8.dat ../work/Si8_NEB.dat ../work/SialicAcid.dat ../work/SrVO3-Wannier90.dat ../work/Valorphin_DC.dat ../work/analysis_example ../work/cellopt_example ../work/esp ../work/force_example ../work/geoopt_example ../work/input_example ../work/jx ../work/large2_example ../work/large_example ../work/ml_example ../work/nbo_example ../work/negf_example ../work/polB ../work/stress_example ../work/test_mpi ../work/unfolding_example ../work/wf_example ./ + mpiexec -np 1 ./openmx -runtest -nt 1 + tee work.1.log ./openmx: error while loading shared libraries: libscalapack.so.2: cannot open shared object file: No such file or directory ------------------------------------------------------- Primary job terminated normally, but 1 process returned a non-zero exit code.. Per user-direction, the job has been aborted. ------------------------------------------------------- -------------------------------------------------------------------------- mpiexec detected that one or more processes exited with non-zero status, thus causing the job to be terminated. The first process to do so was: Process name: [[19020,1],0] Exit code: 127 -------------------------------------------------------------------------- ~/build/BUILD/openmx3.8 real 0m0.281s user 0m0.070s sys 0m0.060s + '[' -r runtest.result ']' + popd + module unload mpi/openmpi-arm ++ /usr/bin/modulecmd bash unload mpi/openmpi-arm + eval MANPATH=/usr/share/man:/usr/local/share/man ';export' 'MANPATH;PATH=/usr/bin:/bin:/usr/sbin:/sbin:/usr/local/sbin:/builddir/.local/bin:/builddir/bin' ';export' 'PATH;unset' 'LD_LIBRARY_PATH;unset' 'LOADEDMODULES;unset' 'MPI_BIN;unset' 'MPI_COMPILER;unset' 'MPI_FORTRAN_MOD_DIR;unset' 'MPI_HOME;unset' 'MPI_INCLUDE;unset' 'MPI_LIB;unset' 'MPI_MAN;unset' 'MPI_PYTHON_SITEARCH;unset' 'MPI_SUFFIX;unset' 'MPI_SYSCONFIG;unset' 'PYTHONPATH;unset' '_LMFILES_;' ++ MANPATH=/usr/share/man:/usr/local/share/man ++ export MANPATH ++ PATH=/usr/bin:/bin:/usr/sbin:/sbin:/usr/local/sbin:/builddir/.local/bin:/builddir/bin ++ export PATH ++ unset LD_LIBRARY_PATH ++ unset LOADEDMODULES ++ unset MPI_BIN ++ unset MPI_COMPILER ++ unset MPI_FORTRAN_MOD_DIR ++ unset MPI_HOME ++ unset MPI_INCLUDE ++ unset MPI_LIB ++ unset MPI_MAN ++ unset MPI_PYTHON_SITEARCH ++ unset MPI_SUFFIX ++ unset MPI_SYSCONFIG ++ unset PYTHONPATH ++ unset _LMFILES_ + exit 0 Processing files: openmx-openmpi-3.8.1-9.el7.armv7hl Provides: openmx-openmpi = 3.8.1-9.el7 openmx-openmpi(armv7hl-32) = 3.8.1-9.el7 Requires(rpmlib): rpmlib(CompressedFileNames) <= 3.0.4-1 rpmlib(FileDigests) <= 4.6.0-1 rpmlib(PayloadFilesHavePrefix) <= 4.0-1 Requires: ld-linux-armhf.so.3 ld-linux-armhf.so.3(GLIBC_2.4) libc.so.6 libc.so.6(GLIBC_2.4) libc.so.6(GLIBC_2.7) libelpa.so.4 libfftw3.so.3 libgcc_s.so.1 libgcc_s.so.1(GCC_3.3.1) libgcc_s.so.1(GCC_3.5) libgfortran.so.3 libgfortran.so.3(GFORTRAN_1.0) libgfortran.so.3(GFORTRAN_1.4) libgomp.so.1 libgomp.so.1(GOMP_1.0) libgomp.so.1(OMP_1.0) libgomp.so.1(OMP_2.0) libm.so.6 libm.so.6(GLIBC_2.4) libmpi.so.12 libmpi_mpifh.so.12 libmpi_usempi.so.5 libopenblas.so.0 libpthread.so.0 libpthread.so.0(GLIBC_2.4) rtld(GNU_HASH) Processing files: openmx-mpich-3.8.1-9.el7.armv7hl Provides: openmx-mpich = 3.8.1-9.el7 openmx-mpich(armv7hl-32) = 3.8.1-9.el7 Requires(rpmlib): rpmlib(CompressedFileNames) <= 3.0.4-1 rpmlib(FileDigests) <= 4.6.0-1 rpmlib(PayloadFilesHavePrefix) <= 4.0-1 Requires: ld-linux-armhf.so.3 ld-linux-armhf.so.3(GLIBC_2.4) libc.so.6 libc.so.6(GLIBC_2.4) libc.so.6(GLIBC_2.7) libelpa.so.4 libfftw3.so.3 libgcc_s.so.1 libgcc_s.so.1(GCC_3.3.1) libgcc_s.so.1(GCC_3.5) libgfortran.so.3 libgfortran.so.3(GFORTRAN_1.0) libgfortran.so.3(GFORTRAN_1.4) libgomp.so.1 libgomp.so.1(GOMP_1.0) libgomp.so.1(OMP_1.0) libgomp.so.1(OMP_2.0) libm.so.6 libm.so.6(GLIBC_2.4) libmpich.so.10 libmpl.so.1 libopa.so.1 libopenblas.so.0 libpthread.so.0 libpthread.so.0(GLIBC_2.4) librt.so.1 rtld(GNU_HASH) Processing files: openmx-data-3.8.1-9.el7.noarch Executing(%license): /bin/sh -e /var/tmp/rpm-tmp.97cGaQ + umask 022 + cd /builddir/build/BUILD + cd openmx3.8 + LICENSEDIR=/builddir/build/BUILDROOT/openmx-3.8.1-9.el7.arm/usr/share/licenses/openmx-data-3.8.1 + export LICENSEDIR + /usr/bin/mkdir -p /builddir/build/BUILDROOT/openmx-3.8.1-9.el7.arm/usr/share/licenses/openmx-data-3.8.1 + cp -pr COPYING /builddir/build/BUILDROOT/openmx-3.8.1-9.el7.arm/usr/share/licenses/openmx-data-3.8.1 + cp -pr LICENSE /builddir/build/BUILDROOT/openmx-3.8.1-9.el7.arm/usr/share/licenses/openmx-data-3.8.1 + exit 0 Provides: openmx-data = 3.8.1-9.el7 Requires(rpmlib): rpmlib(CompressedFileNames) <= 3.0.4-1 rpmlib(FileDigests) <= 4.6.0-1 rpmlib(PayloadFilesHavePrefix) <= 4.0-1 Processing files: openmx-common-3.8.1-9.el7.noarch Executing(%license): /bin/sh -e /var/tmp/rpm-tmp.JenlOF + umask 022 + cd /builddir/build/BUILD + cd openmx3.8 + LICENSEDIR=/builddir/build/BUILDROOT/openmx-3.8.1-9.el7.arm/usr/share/licenses/openmx-common-3.8.1 + export LICENSEDIR + /usr/bin/mkdir -p /builddir/build/BUILDROOT/openmx-3.8.1-9.el7.arm/usr/share/licenses/openmx-common-3.8.1 + cp -pr COPYING /builddir/build/BUILDROOT/openmx-3.8.1-9.el7.arm/usr/share/licenses/openmx-common-3.8.1 + cp -pr LICENSE /builddir/build/BUILDROOT/openmx-3.8.1-9.el7.arm/usr/share/licenses/openmx-common-3.8.1 + exit 0 Provides: openmx-common = 3.8.1-9.el7 Requires(rpmlib): rpmlib(CompressedFileNames) <= 3.0.4-1 rpmlib(FileDigests) <= 4.6.0-1 rpmlib(PayloadFilesHavePrefix) <= 4.0-1 Processing files: openmx-debuginfo-3.8.1-9.el7.armv7hl Provides: openmx-debuginfo = 3.8.1-9.el7 openmx-debuginfo(armv7hl-32) = 3.8.1-9.el7 Requires(rpmlib): rpmlib(FileDigests) <= 4.6.0-1 rpmlib(PayloadFilesHavePrefix) <= 4.0-1 rpmlib(CompressedFileNames) <= 3.0.4-1 Checking for unpackaged file(s): /usr/lib/rpm/check-files /builddir/build/BUILDROOT/openmx-3.8.1-9.el7.arm Wrote: /builddir/build/RPMS/openmx-openmpi-3.8.1-9.el7.armv7hl.rpm Wrote: /builddir/build/RPMS/openmx-mpich-3.8.1-9.el7.armv7hl.rpm Wrote: /builddir/build/RPMS/openmx-data-3.8.1-9.el7.noarch.rpm Wrote: /builddir/build/RPMS/openmx-common-3.8.1-9.el7.noarch.rpm Wrote: /builddir/build/RPMS/openmx-debuginfo-3.8.1-9.el7.armv7hl.rpm Executing(%clean): /bin/sh -e /var/tmp/rpm-tmp.7xhIC9 + umask 022 + cd /builddir/build/BUILD + cd openmx3.8 + /usr/bin/rm -rf /builddir/build/BUILDROOT/openmx-3.8.1-9.el7.arm + exit 0 Child return code was: 0