forked from lijiext/lammps
git-svn-id: svn://svn.icms.temple.edu/lammps-ro/trunk@3228 f3b2605a-c512-4ea7-a41b-209d697bcdaa
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@ -49,6 +49,26 @@ sub-directories:
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<TR><TD >tools</TD><TD > pre- and post-processing tools
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<TR><TD >tools</TD><TD > pre- and post-processing tools
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</TD></TR></TABLE></DIV>
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</TD></TR></TABLE></DIV>
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<P>If you download the Windows executable from the download page,
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then you just get a single file:
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</P>
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<PRE>lmp_windows.exe
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</PRE>
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<P>Skip to the <A HREF = "#2_5">Running LAMMPS</A> section, to learn how to launch it
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on a Windows box.
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</P>
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<P>Note that this executable does not include an MPI or FFT library, so
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it can only be run on a single processor and it cannot perform
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simulations with long-range Coulombics using a
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<A HREF = "kspace_style.html">PPPM</A> solver.
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</P>
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<P>The Windows executage also only includes certain packages and
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bug-fixes/upgrades listed on <A HREF = "http://lammps.sandia.gov/bug.html">this
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page</A> up to a certain date, as
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stated on the download page. If you want something with more packages
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or more current, you'll have to download the source tarball and build
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it yourself, as described in the next section.
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</P>
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<HR>
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<HR>
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<H4><A NAME = "2_2"></A>2.2 Making LAMMPS
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<H4><A NAME = "2_2"></A>2.2 Making LAMMPS
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@ -616,6 +636,18 @@ cp lmp_linux ../examples/lj
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cd ../examples/lj
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cd ../examples/lj
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mpirun -np 4 lmp_linux < in.lj.nve
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mpirun -np 4 lmp_linux < in.lj.nve
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</PRE>
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</PRE>
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<P>On a Windows machine, when you have downloaded the Windows executable
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lmp_windows.exe, you do something different:
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</P>
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<UL><LI>Get a command prompt by going to Start->Run... , then typing "cmd"
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and OK.
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<LI>Move to the directory where you have saved lmp_windows.exe
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(e.g. by typing: cd "My Documents").
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<LI>At the command prompt, type "lmp_windows < in.lj", replacing in.lj
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with the name of your LAMMPS input script.
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</UL>
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<P>The screen output from LAMMPS is described in the next section. As it
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<P>The screen output from LAMMPS is described in the next section. As it
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runs, LAMMPS also writes a log.lammps file with the same information.
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runs, LAMMPS also writes a log.lammps file with the same information.
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</P>
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</P>
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@ -44,6 +44,26 @@ potentials: embedded atom method (EAM) potential files
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src: source files
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src: source files
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tools: pre- and post-processing tools :tb(s=:)
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tools: pre- and post-processing tools :tb(s=:)
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If you download the Windows executable from the download page,
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then you just get a single file:
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lmp_windows.exe :pre
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Skip to the "Running LAMMPS"_#2_5 section, to learn how to launch it
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on a Windows box.
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Note that this executable does not include an MPI or FFT library, so
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it can only be run on a single processor and it cannot perform
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simulations with long-range Coulombics using a
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"PPPM"_kspace_style.html solver.
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The Windows executage also only includes certain packages and
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bug-fixes/upgrades listed on "this
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page"_http://lammps.sandia.gov/bug.html up to a certain date, as
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stated on the download page. If you want something with more packages
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or more current, you'll have to download the source tarball and build
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it yourself, as described in the next section.
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:line
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:line
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2.2 Making LAMMPS :h4,link(2_2)
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2.2 Making LAMMPS :h4,link(2_2)
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@ -609,6 +629,18 @@ cp lmp_linux ../examples/lj
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cd ../examples/lj
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cd ../examples/lj
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mpirun -np 4 lmp_linux < in.lj.nve :pre
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mpirun -np 4 lmp_linux < in.lj.nve :pre
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On a Windows machine, when you have downloaded the Windows executable
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lmp_windows.exe, you do something different:
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Get a command prompt by going to Start->Run... , then typing "cmd"
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and OK. :ulb,l
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Move to the directory where you have saved lmp_windows.exe
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(e.g. by typing: cd "My Documents"). :l
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At the command prompt, type "lmp_windows < in.lj", replacing in.lj
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with the name of your LAMMPS input script. :l,ule
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The screen output from LAMMPS is described in the next section. As it
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The screen output from LAMMPS is described in the next section. As it
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runs, LAMMPS also writes a log.lammps file with the same information.
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runs, LAMMPS also writes a log.lammps file with the same information.
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