2005-06-01 23:08:45 +02:00
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# Copyright (c) 2005 The Regents of The University of Michigan
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# All rights reserved.
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#
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# Redistribution and use in source and binary forms, with or without
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# modification, are permitted provided that the following conditions are
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# met: redistributions of source code must retain the above copyright
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# notice, this list of conditions and the following disclaimer;
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# redistributions in binary form must reproduce the above copyright
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# notice, this list of conditions and the following disclaimer in the
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# documentation and/or other materials provided with the distribution;
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# neither the name of the copyright holders nor the names of its
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# contributors may be used to endorse or promote products derived from
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# this software without specific prior written permission.
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#
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# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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# "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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# LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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# A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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# OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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# SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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# LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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# DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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# THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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# (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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# OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#
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# Authors: Ron Dreslinski
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from m5 import *
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Added config files for splash2 benchmarks. Parameters:
ROOTDIR = root directory of the splash2 code
NP = number of proccessors
BENCHMARK = name of the splash2 benchmark (Cholesky, FFT, LUContig, LUNoncontig, Radix, Barnes, FMM, OceanContig, OceanNoncontig, Raytrace, WaterNSquared, or WaterSpatial)
SYSTEM = Type of system to simulate detailed or simple
Note: They use MOESI protocol and do_events is enabled (Multiple L1's and a shared L2)
--HG--
extra : convert_revision : c39aa73825ea8108b6c32abd4a4fa4c23391ab09
2005-03-12 00:07:07 +01:00
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import Splash2
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if 'SYSTEM' not in env:
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panic("The SYSTEM environment variable must be set!\ne.g -ESYSTEM=Detailed\n")
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if env['SYSTEM'] == 'Simple':
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from SimpleConfig import *
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2005-06-05 05:08:26 +02:00
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BaseCPU.workload = Parent.workload
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Added config files for splash2 benchmarks. Parameters:
ROOTDIR = root directory of the splash2 code
NP = number of proccessors
BENCHMARK = name of the splash2 benchmark (Cholesky, FFT, LUContig, LUNoncontig, Radix, Barnes, FMM, OceanContig, OceanNoncontig, Raytrace, WaterNSquared, or WaterSpatial)
SYSTEM = Type of system to simulate detailed or simple
Note: They use MOESI protocol and do_events is enabled (Multiple L1's and a shared L2)
--HG--
extra : convert_revision : c39aa73825ea8108b6c32abd4a4fa4c23391ab09
2005-03-12 00:07:07 +01:00
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SimpleStandAlone.cpu = [ CPU() for i in xrange(int(env['NP'])) ]
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2005-06-05 05:08:26 +02:00
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root = SimpleStandAlone()
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Added config files for splash2 benchmarks. Parameters:
ROOTDIR = root directory of the splash2 code
NP = number of proccessors
BENCHMARK = name of the splash2 benchmark (Cholesky, FFT, LUContig, LUNoncontig, Radix, Barnes, FMM, OceanContig, OceanNoncontig, Raytrace, WaterNSquared, or WaterSpatial)
SYSTEM = Type of system to simulate detailed or simple
Note: They use MOESI protocol and do_events is enabled (Multiple L1's and a shared L2)
--HG--
extra : convert_revision : c39aa73825ea8108b6c32abd4a4fa4c23391ab09
2005-03-12 00:07:07 +01:00
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elif env['SYSTEM'] == 'Detailed':
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from DetailedConfig import *
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2005-06-05 05:08:26 +02:00
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BaseCPU.workload = Parent.workload
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Added config files for splash2 benchmarks. Parameters:
ROOTDIR = root directory of the splash2 code
NP = number of proccessors
BENCHMARK = name of the splash2 benchmark (Cholesky, FFT, LUContig, LUNoncontig, Radix, Barnes, FMM, OceanContig, OceanNoncontig, Raytrace, WaterNSquared, or WaterSpatial)
SYSTEM = Type of system to simulate detailed or simple
Note: They use MOESI protocol and do_events is enabled (Multiple L1's and a shared L2)
--HG--
extra : convert_revision : c39aa73825ea8108b6c32abd4a4fa4c23391ab09
2005-03-12 00:07:07 +01:00
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DetailedStandAlone.cpu = [ DetailedCPU() for i in xrange(int(env['NP'])) ]
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2005-06-05 05:08:26 +02:00
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root = DetailedStandAlone()
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Added config files for splash2 benchmarks. Parameters:
ROOTDIR = root directory of the splash2 code
NP = number of proccessors
BENCHMARK = name of the splash2 benchmark (Cholesky, FFT, LUContig, LUNoncontig, Radix, Barnes, FMM, OceanContig, OceanNoncontig, Raytrace, WaterNSquared, or WaterSpatial)
SYSTEM = Type of system to simulate detailed or simple
Note: They use MOESI protocol and do_events is enabled (Multiple L1's and a shared L2)
--HG--
extra : convert_revision : c39aa73825ea8108b6c32abd4a4fa4c23391ab09
2005-03-12 00:07:07 +01:00
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else:
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panic("The SYSTEM environment variable was set to something improper.\n Use Simple or Detailed\n")
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if 'BENCHMARK' not in env:
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panic("The BENCHMARK environment variable must be set!\ne.g. -EBENCHMARK=Cholesky\n")
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if env['BENCHMARK'] == 'Cholesky':
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root.workload = Splash2.Cholesky()
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elif env['BENCHMARK'] == 'FFT':
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root.workload = Splash2.FFT()
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elif env['BENCHMARK'] == 'LUContig':
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root.workload = Splash2.LU_contig()
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elif env['BENCHMARK'] == 'LUNoncontig':
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root.workload = Splash2.LU_noncontig()
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elif env['BENCHMARK'] == 'Radix':
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root.workload = Splash2.Radix()
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elif env['BENCHMARK'] == 'Barnes':
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root.workload = Splash2.Barnes()
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elif env['BENCHMARK'] == 'FMM':
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root.workload = Splash2.FMM()
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elif env['BENCHMARK'] == 'OceanContig':
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root.workload = Splash2.Ocean_contig()
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elif env['BENCHMARK'] == 'OceanNoncontig':
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root.workload = Splash2.Ocean_noncontig()
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elif env['BENCHMARK'] == 'Raytrace':
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root.workload = Splash2.Raytrace()
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elif env['BENCHMARK'] == 'WaterNSquared':
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root.workload = Splash2.Water_nsquared()
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elif env['BENCHMARK'] == 'WaterSpatial':
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root.workload = Splash2.Water_spatial()
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else:
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panic("The BENCHMARK environment variable was set to something" \
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+" improper.\nUse Cholesky, FFT, LUContig, LUNoncontig, Radix" \
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+", Barnes, FMM, OceanContig,\nOceanNoncontig, Raytrace," \
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+" WaterNSquared, or WaterSpatial\n")
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