.\" Man page generated from reStructuredText. . .TH "QP_CONVERT_OUTPUT_TO_EZFIO" "1" "Jun 15, 2019" "2.0" "Quantum Package" .SH NAME qp_convert_output_to_ezfio \- | Quantum Package > . .nr rst2man-indent-level 0 . .de1 rstReportMargin \\$1 \\n[an-margin] level \\n[rst2man-indent-level] level margin: \\n[rst2man-indent\\n[rst2man-indent-level]] - \\n[rst2man-indent0] \\n[rst2man-indent1] \\n[rst2man-indent2] .. .de1 INDENT .\" .rstReportMargin pre: . RS \\$1 . nr rst2man-indent\\n[rst2man-indent-level] \\n[an-margin] . nr rst2man-indent-level +1 .\" .rstReportMargin post: .. .de UNINDENT . RE .\" indent \\n[an-margin] .\" old: \\n[rst2man-indent\\n[rst2man-indent-level]] .nr rst2man-indent-level -1 .\" new: \\n[rst2man-indent\\n[rst2man-indent-level]] .in \\n[rst2man-indent\\n[rst2man-indent-level]]u .. .sp This Python script uses the \fI\%resultsFile\fP Python library to gather the geometry, AOs and MOs from output files of \fI\%GAMESS\fP or Gaussian, and puts this data in an \fI\%EZFIO\fP database. Some constraints are necessary in the output file : the run needs to be a single point HF, DFT or CAS SCF\&. .SH USAGE .INDENT 0.0 .INDENT 3.5 .sp .nf .ft C qp_convert_output_to_ezfio [\-o EZFIO_DIR] FILE .ft P .fi .UNINDENT .UNINDENT .INDENT 0.0 .TP .B \-o, \-\-output=EZFIO_DIR Renames the \fI\%EZFIO\fP directory. If this option is not present, the default name fill be \fBFILE.ezfio\fP .UNINDENT .sp \fBNOTE:\fP .INDENT 0.0 .INDENT 3.5 All the parameters of the wave functgion need to be presente in the output file : complete description of the AO basis set, full set of molecular orbitals, etc. .sp The following keywords are necessary for GAU$$IAN .INDENT 0.0 .INDENT 3.5 .sp .nf .ft C GFPRINT pop=Full .ft P .fi .UNINDENT .UNINDENT .UNINDENT .UNINDENT .SH EXAMPLE .INDENT 0.0 .INDENT 3.5 .sp .nf .ft C qp_convert_output_to_ezfio h2o.out \-o h2o .ft P .fi .UNINDENT .UNINDENT .SH AUTHOR A. Scemama, E. Giner .SH COPYRIGHT 2019, A. Scemama, E. Giner .\" Generated by docutils manpage writer. .