Source code for our paper "Solving Discrete Logarithms in Smooth-Order Groups with CUDA" from SHARCS 2012. The cuda-11.5 branch will compile on CUDA 11.5 and now runs with two A100 GPUs, though is perhaps not tuned optimally.

Steven Engler f619c464d8 Small bugfix. 8 gadi atpakaļ
.gitignore 3a50b8f3a9 Added a '.gitignore' file. 8 gadi atpakaļ
COPYING e2973619c9 Commit cudadl-0.8 to git 14 gadi atpakaļ
Makefile 0ec3f2b5b8 Improved support for local Makefiles. 8 gadi atpakaļ
README 9fca8d29fd cudadl-0.9 14 gadi atpakaļ
atomic_iostream.h 3a802c8e75 Improved the logging for dlrho. 8 gadi atpakaļ
controller.cc ecd76f9dec Improved scheduling. 8 gadi atpakaļ
controller.h ecd76f9dec Improved scheduling. 8 gadi atpakaļ
controller_main.cc ecd76f9dec Improved scheduling. 8 gadi atpakaļ
cudadl.h 1da839f0d8 Can save distinguished points to files. 8 gadi atpakaļ
desired_resources.cc ecd76f9dec Improved scheduling. 8 gadi atpakaļ
desired_resources.h ecd76f9dec Improved scheduling. 8 gadi atpakaļ
dlrho.cc ecd76f9dec Improved scheduling. 8 gadi atpakaļ
dpnode.cc 411725a245 Added warning when dpnode buffers don't empty. 8 gadi atpakaļ
dpnode.h 5b62cbb2c4 Split off the three main()s in preparation for MPI wrapper 14 gadi atpakaļ
dpnode_main.cc 5b62cbb2c4 Split off the three main()s in preparation for MPI wrapper 14 gadi atpakaļ
dpstream.cu 1da839f0d8 Can save distinguished points to files. 8 gadi atpakaļ
evutils.cc d8d46482b9 Hardcoded rules for hostname modifications. 8 gadi atpakaļ
evutils.h 411725a245 Added warning when dpnode buffers don't empty. 8 gadi atpakaļ
gen_N.cc 9fca8d29fd cudadl-0.9 14 gadi atpakaļ
gen_all_N.sh 47faf09287 Improved the timing experiment script. 8 gadi atpakaļ
gencios_reg_20 771b13c42c Use macros to include the inline assembly instead of inline functions 14 gadi atpakaļ
logparse.pl 9fa203afbe Add a program to parse the logfile for some interesting statistics 14 gadi atpakaļ
mpi.cc 904cf8667e MPI version redirects some output to files. 8 gadi atpakaļ
parrhoasm.cu 5f32eec394 Can set n{threads/blocks} using a macro. 8 gadi atpakaļ
run_timing_experiment.sh 47faf09287 Improved the timing experiment script. 8 gadi atpakaļ
subproblem.h e5decaf5df Communicate the dpfreq to the workers correctly 14 gadi atpakaļ
summarize_data_multiprocess.py ce3141f7e1 Added scripts for collecting timing data. 8 gadi atpakaļ
worker.cc f619c464d8 Small bugfix. 8 gadi atpakaļ
worker.h 0e11651c7d The worker's 'cuda_dev_id' argument selects a GPU. 8 gadi atpakaļ
worker_main.cc 0e11651c7d The worker's 'cuda_dev_id' argument selects a GPU. 8 gadi atpakaļ

README

cudadl-0.9
21 Mar 2012
Ryan Henry and Ian Goldberg
{rhenry,iang}@cs.uwaterloo.ca
http://crysp.uwaterloo.ca/software/

This package contains the source code to our CUDA implementation of
van Oorschot and Wiener's parallel version of the Pollard rho discrete
log algorithm. It is intended for use on 1536-bit moduli that are
RSA numbers with smooth totient; that is, the modulus N=pq, where p and q
are 768-bit primes, and the prime factors of p-1 and q-1 are all
distinct and less then B, for a parameter B. [The value 1536 is
hardcoded as "WORDS = 24" (24*32*2 = 1536) in the Makefile; it is easy
to change this value and recompile if desired.] Note that this means
the totient of N = \phi(N) = (p-1)(q-1) has all prime factors less than
B; that is, \phi(n) is "B-smooth".

Usage:

1. Build the software. You'll need:

NTL
GMP
NVIDIA CUDA Toolkit 3.1
2 M2050 (or other compute capability level 2.0) CUDA cards
[If you have more or just 1, you'll need to modify dlrho.cc,
unfortunately.]

Hopefully just typing "make" should work. It will build gen_N and
dlrho.

2. Create the modulus N as, for example, a 1536-bit RSA number whose
totient is 2^50-smooth:

./gen_N 1536 50 > N

3. Generate a DL problem mod N and solve it:

./dlrho < N

This software is described in "Solving Discrete Logarithms in
Smooth-Order Groups with CUDA", CACR technical report 2012-02,
http://www.cacr.math.uwaterloo.ca/techreports/2012/cacr2012-02.pdf

This program is covered under version 3 of the GNU General Public
Licence; see the file COPYING for more information.

Changelog:

0.9 (21 Mar 2012)
Extend the code to handle smoothness levels (B) larger than 2^60. Now
we can handle up to 2^92. We have successfully run a test with
B = 2^80.

0.8 (23 Jan 2012)
Initial public release