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revision 1.3 by cnh, Fri Apr 24 03:55:30 1998 UTC revision 1.9 by cnh, Wed Jul 8 15:24:05 1998 UTC
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1  $Header$  $Header$
2    
3    
4  MITgcmUV Getting Started  MITgcmUV Getting Started
5  ========================  ========================
6    
7  o Introduction  o Introduction
8    
9  o References    This note is a guide to using the MIT General Circulation Model Ultra Verstaile
10      implementation, MITgmcUV. MITgcmUV is a Fortran code that implements the
11      algorithm described in Marshall et. al. 1997, Hill, Adcroft, ...
12       The MITgcmUV implementation is designed to work efficiently on all classes
13      of computer platforms. It can be used in both a single processor mode
14      and a parallel processor mode. Parallel processing can be either multi-threaded
15      shared memory such as that found on CRAY T90 machines or it can be multi-process
16      distributed memory. A set of "execution enviroment" support routines are
17      used to allow the same numerical code to run on top of a single-process, multi-threaded
18      or distributed multi-process configuration.
19    
20    o Installing
21      To setup the model on a particular computer the code tree must be created
22      and appropriate compile and run scripts set up. For some platforms
23      the necessary scripts are included in the release - in this case follow
24      the steps below:
25    
26      1. Extract MITgcmUV from the downloadable archive
27         tar -xvf checkpoint12.tar
28    
29      2. Create platform specific make file
30         For example on a Digital UNIX machine the script "genmake.dec" can
31         be used as shown below
32    
33         cd bin
34         ../tools/genmake
35         cp Makefile.alpha Makefile
36    
37      3. Now create header file dependency entries
38         make depend
39    
40      4. Compile code
41         make
42    
43      5. Copy input files
44         cp ../verification/exp2/[a-z]* ../verification/exp2/*bin .
45      
46      6. Run baseline test case
47         setenv PARALLEL 1
48         dmpirun -np 2 ../exe/mitgcmuv
49    
50         This runs a 4 degree global ocean climatological simulation.
51         By default this code is set to use two porcessors splitting
52         the model domain along the equator. Textual output is written
53         to files STDOUT.* and STDERR.* with one file for each process.
54         Model fileds are written to files suffixed .data and .meta
55         These files are written on a per process basis. The .meta
56         file indicates the location and shape of the subdomain in
57         each .data file.
58    
59    o Running
60    
61      - Input and output files
62    
63        Required files
64        ==============
65        The model is configured to look for two files with fixed names.
66        These files are called
67         "eedata" and "data".
68        The file eedata contains "execution environment" data. At present
69        this consists of a specification of the number of threads to
70        use in X and Y under multithreaded execution.
71    
72      - Serial execution
73    
74      - Parallel execution. Threads
75        nSx, nSy
76        setenv PARALLEL n
77        nTx=2, nTy=2
78    
79      - Parallel execution. MPI
80        mPx, nPy
81        dmpirun
82    
83      - Parallel execution. Hybrid
84    
85    o References
86      Web sites - HP
87      for doc     Digital
88                  SGI
89                  Sun
90                  Linux threads
91                  CRAY multitasking
92                  PPT notes

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