TCE-IP

From HPCRL Wiki
(Difference between revisions)
Jump to: navigation, search
(PyOinpceSJKxUwzp)
 
(877 intermediate revisions by 4 users not shown)
Line 1: Line 1:
http://aden7767.freewhost.com/ and mussel recipe
+
=== Introduction ===
http://abro1985.gofreeserve.com/ download american pie beta house
+
The IP-TCE library is a set of C functions designed to provide
http://alod9889.mycyberway.com/ middleton high school wisconsin
+
high-performance array index permutation (index sorting), an important
http://vlaz0045.freehostia.com/ watch futurama episodes for
+
group of kernels used in many scientific applications and compilation
http://robi3581.sitebooth.com/ prison tycoon 3 walkthrough
+
techniques. The generation of the library code combines analytical and
http://altgr48.110mb.com/ medicine ball 6
+
empirical approaches. The details of how to generate the efficient 2-D IP
http://alod1899.my3gb.com/ watch the office
+
(Matrix Transposition) code can be found in [1]. For high-dimensional arrays,
http://aden7767.freewhost.com/mussel-sauce-recipe.html belgian mussels recipe
+
with challenges such as high indexing costs and short dimensions, we employ
http://abro1985.gofreeserve.com/live-messenger-90-beta-download.html studio beta download
+
optimizations such as restricting code versions, using one-level tiling and
http://alod9889.mycyberway.com/high-school-racine-wisconsin.html wisconsin art schools
+
generating indexing code to achieve high performance without code size
http://vlaz0045.freehostia.com/watch-futurama-episodes-online-free.html watch futurama episode online
+
explosion.
http://robi3581.sitebooth.com/clock-tower-3-walkthrough.html escapedahouse 3 walkthrough
+
 
http://altgr48.110mb.com/medicine-ball-video.html medicine ball routine
+
The source code we provide does index permutation on 2-D,4-D and 6-D
http://alod1899.my3gb.com/watch-the-office-booze-cruise.html watch the office uk free
+
64-bit floating point arrays on IA-32 machines. Except for the 2-D functions that
http://aden7767.freewhost.com/carrabbas-mussel-recipe.html recipes for mussels in
+
have more complicated optimizations than the others, the library employs SSE2
http://abro1985.gofreeserve.com/beta-house-free-download.html fusion beta download
+
instructions when the fastest varying dimensions of source and destination
http://alod9889.mycyberway.com/oregon-wisconsin-school-district.html wisconsin online high school
+
arrays are multiples of vector sizes in elements, otherwise a scalar version
http://vlaz0045.freehostia.com/watch-futurama-the-movie-online.html can i watch futurama online
+
is chosen. The user should be able to modify our code to get IP code working for
http://robi3581.sitebooth.com/amped-3-walkthrough.html sift heads 3 walkthrough chapter 2  
+
other dimension numbers.
http://altgr48.110mb.com/medicine-ball-30.html history of the medicine ball
+
 
http://alod1899.my3gb.com/office-the-job-watch.html watch the office 3
+
The IP-TCE library implements two variants of index permutation. One variant
http://aden7767.freewhost.com/italian-mussel-recipe.html steam mussels recipe
+
implements B = factor * Permute(A, permutation) and the other one is the
http://abro1985.gofreeserve.com/burning-crusade-beta-download.html workstation 6.5 beta download
+
accumulative version B = B + factor * Permute(A, permutation). Doing so makes
http://alod9889.mycyberway.com/kimberly-school-district-wisconsin.html franklin school district wisconsin
+
our code compatible with the index permutation routines in nwchem/tce. We have
http://vlaz0045.freehostia.com/watch-futurama-anthology-of-interest.html watch futurama roswell that ends
+
been able to plug our code into nwchem/tce and obtained overall performance
http://robi3581.sitebooth.com/thing-thing-arena-3-walkthrough.html gateway 3 walkthrough
+
improvements ranging from 74% to 253% with different methods and inputs.
http://altgr48.110mb.com/medicine-ball-chops.html vintage medicine ball
+
 
http://alod1899.my3gb.com/watch-the-office-convict.html watch the office dundies
+
=== Compilation ===
http://aden7767.freewhost.com/roasted-mussels-recipe.html how to debeard mussels
+
The library code can be compiled by either the Intel C compiler or the GNU C
http://abro1985.gofreeserve.com/vertex-beta-download.html how to download ps3 home beta
+
compiler. We used icc 10.1 and gcc 4.1.2 when testing the code. If other
http://alod9889.mycyberway.com/central-high-school-la-crosse-wisconsin.html greenfield middle school wisconsin
+
compilers such as pgcc is used, the user is responsible for finding the
http://vlaz0045.freehostia.com/watch-futurama-onine.html watch futurama movie the beast with a
+
alignment directives used by the compiler and changing the library code
http://robi3581.sitebooth.com/granny-3-walkthrough.html shift 3 walkthrough
+
correspondingly.
http://altgr48.110mb.com/san-francisco-medicine-ball.html using the medicine ball
+
 
 +
=== Library Usage ===
 +
The interface of the IP-TCE library is compatible with the index permutation
 +
routines in nwchem/tce and is mainly for Fortran used. For example,
 +
the prototype of the 4-D non-accumulative permutation routine is:
 +
 
 +
                  tce_sort_4_(double* unsorted,double* sorted,
 +
                              int* a_in, int* b_in, int* c_in, int* d_in,
 +
                              int* i_in, int* j_in, int* k_in, int* l_in,
 +
                              double* factor_in)
 +
 
 +
Where all the arguments are pointers and function names are in the lowercase
 +
and end with "_". If needed,  the user can write a wrapper or directly modify
 +
the function (which is actually a wrapper to the SIMD and scalar IP functions)
 +
to obtain a desired interface.
 +
 
 +
=== Contact Info ===
 +
Please contact Qingda Lu(luq@cse.ohio-state.edu) for questions.
 +
 
 +
=== Reference ===
 +
[1] Qingda Lu, Sriram Krishnamoorthy, P. Sadayappan: Combining analytical and
 +
empirical approaches in tuning matrix transposition. 15th International
 +
Conference on Parallel Architecture and Compilation Techniques(PACT 2006):233-242

Latest revision as of 23:34, 20 February 2009

Contents

Introduction

The IP-TCE library is a set of C functions designed to provide high-performance array index permutation (index sorting), an important group of kernels used in many scientific applications and compilation techniques. The generation of the library code combines analytical and empirical approaches. The details of how to generate the efficient 2-D IP (Matrix Transposition) code can be found in [1]. For high-dimensional arrays, with challenges such as high indexing costs and short dimensions, we employ optimizations such as restricting code versions, using one-level tiling and generating indexing code to achieve high performance without code size explosion.

The source code we provide does index permutation on 2-D,4-D and 6-D 64-bit floating point arrays on IA-32 machines. Except for the 2-D functions that have more complicated optimizations than the others, the library employs SSE2 instructions when the fastest varying dimensions of source and destination arrays are multiples of vector sizes in elements, otherwise a scalar version is chosen. The user should be able to modify our code to get IP code working for other dimension numbers.

The IP-TCE library implements two variants of index permutation. One variant implements B = factor * Permute(A, permutation) and the other one is the accumulative version B = B + factor * Permute(A, permutation). Doing so makes our code compatible with the index permutation routines in nwchem/tce. We have been able to plug our code into nwchem/tce and obtained overall performance improvements ranging from 74% to 253% with different methods and inputs.

Compilation

The library code can be compiled by either the Intel C compiler or the GNU C compiler. We used icc 10.1 and gcc 4.1.2 when testing the code. If other compilers such as pgcc is used, the user is responsible for finding the alignment directives used by the compiler and changing the library code correspondingly.

Library Usage

The interface of the IP-TCE library is compatible with the index permutation routines in nwchem/tce and is mainly for Fortran used. For example, the prototype of the 4-D non-accumulative permutation routine is:

                  tce_sort_4_(double* unsorted,double* sorted,
                              int* a_in, int* b_in, int* c_in, int* d_in,
                              int* i_in, int* j_in, int* k_in, int* l_in,
                              double* factor_in)

Where all the arguments are pointers and function names are in the lowercase and end with "_". If needed, the user can write a wrapper or directly modify the function (which is actually a wrapper to the SIMD and scalar IP functions) to obtain a desired interface.

Contact Info

Please contact Qingda Lu(luq@cse.ohio-state.edu) for questions.

Reference

[1] Qingda Lu, Sriram Krishnamoorthy, P. Sadayappan: Combining analytical and empirical approaches in tuning matrix transposition. 15th International Conference on Parallel Architecture and Compilation Techniques(PACT 2006):233-242