source: doc/theses/colby_parsons_MMAth/benchmarks/waituntil/run @ efe89894

ast-experimental
Last change on this file since efe89894 was f77f648d, checked in by caparsons <caparson@…>, 14 months ago

intermediate runscript to move to benchmarking on another machine

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File size: 7.5 KB
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1#!/bin/bash -
2
3false=0; true=1
4
5# Usage: arch [ hostname ] returns hostname, cores, startcore
6#
7#   Define machine architecture based on starting socket, CPUs (cores) per socket, number of
8#   sockets, has hyperthreading.
9
10start=0
11
12arch() {
13        hostname=${1:-`hostname`}                       # return value
14        hashyper=${true}                                        # assume machine has hyperthreads
15        if [ "${hostname}" = "plg2" ] ; then
16                startsocket=${start}
17                cps=16                                                  # coresPerSocket
18                sockets=2
19                hashyper=${false}                               # has no hyperthreads
20        elif [ "${hostname}" = "nasus" ] ; then
21                startsocket=${start}
22                cps=64                                                  # coresPerSocket
23                sockets=2
24        elif [ "${hostname}" = "pyke" ] ; then
25                startsocket=${start}
26                cps=24                                                  # coresPerSocket
27                sockets=2
28        elif [ "${hostname}" = "jax" ] ; then
29                startsocket=${start}
30                cps=24                                                  # coresPerSocket
31                sockets=4
32        else
33                echo "unsupported host" ${hostname}
34                exit 1
35        fi
36        cores=$(( ${cps} * ${sockets} ))
37        startcore=$(( ${startsocket} * ${cps} ))
38}
39
40# Usage: affinity (global cps, sockets, startsocket, hashyper, cores, startcore, wrap)
41#   returns taskset argument
42#
43#   This routine assumes hyperthreading has only 2 hyperthreads per core.
44#
45#   If hyperthread scanning is used: processor units are assigned across the low-number hyperthreads
46#   of the socket's cores. When the low-number hyperthreads are filled, the high-number hyperhtreads
47#   are assigned across the socket's cores. Then the next socket is assigned.
48#
49#   If hyperthread wrapping is used: processor units are assigned in low/high-number pairs of
50#   hyperthreads across the socket's cores. Then the next socket is assigned.
51
52wrap=${false}                                                   # set to control hyperthread assignment across socket cores
53
54affinity() {
55        if [ ${wrap} -eq ${true} -a ${hashyper} -eq ${false} ] ; then
56                echo "architecture does not support hyperthreading for wrapping"
57                exit 1
58        fi
59        taskset=""                                                      # return value
60        set -- $(( ${1} - 1 ))                          # decrement $1
61        if [ ${1} -eq 0 ] ; then taskset="${startcore}-${startcore}"; return; fi
62        if [ ${1} -ge $(( ${cps} * ( ${sockets} - ${startsocket} ) * ( ${hashyper} + 1 ) )) ] ; then # error
63                echo "not enough cores $(( ${cores} * ${sockets} )) for $(( ${1} + 1 )) starting at ${startcore}"
64                exit 1
65        fi
66        if [ ${hashyper} -eq ${false} ] ; then taskset="${startcore}-$(( ${1} + ${startcore} ))"; return; fi # no hyperthreads
67        start2=$(( ${startcore} + ${cores} ))
68        if [ ${wrap} -eq ${true} ] ; then       # hyperthread wrapping
69                end1=$(( ${1} / 2 + ${startcore} ))
70                end2=$(( ${end1} + ${cores} ))
71                if [ $(( ${1} % 2 )) -eq 0 ] ; then
72                        end2=$(( ${end2} - 1 ))
73                fi
74                taskset="${startcore}-${end1},${start2}-${end2}"
75        else                                                            # hyperthread scanning
76                if [ ${1} -lt ${cps} ] ; then taskset="${startcore}-$(( ${1} + ${startcore} ))"; return; fi
77                filled=$(( ${1} / ( ${cps} * 2 ) * ${cps} ))
78                modulus=$(( ${1} % ( ${cps} * 2 ) ))    # leftover cores added to saturated sockets
79                if [ ${modulus} -gt ${cps} ] ; then
80                        taskset="${startcore}-$(( ${startcore} + ${filled} + ${cps} - 1 )),${start2}-$(( ${start2} + ${filled} + ${modulus} % ${cps} ))"
81                else
82                        taskset="${startcore}-$(( ${startcore} + ${filled} + ${modulus} )),${start2}-$(( ${start2} + ${filled} - 1 ))"
83                fi
84        fi
85}
86
87# numtimes=5
88numtimes=1
89
90# num_threads='2 4 8 16 24 32'
91# side_chan_threads='6 12 18 24 30' # must be mults of 6
92num_threads='2'
93side_chan_threads='6'
94
95chan_size='10'
96future_time='10'
97
98# toggle benchmarks
99spin=${true}
100contend=${true}
101sidechan=${true}
102future=${true}
103spin=${false}
104contend=${false}
105sidechan=${false}
106# future=${false}
107
108runCFA=${true}
109runGO=${true}
110runUCPP=${true}
111# runCFA=${false}
112runGO=${false}
113# runUCPP=${false}
114
115cfa=~/cfa-cc/driver/cfa
116
117# Helpers to minimize code duplication
118
119# repeats a command ${numtimes}
120preprint=''
121repeat_command() {
122    t=1
123    while [ ${t} -le ${numtimes} ] ; do
124        echo -n -e ${preprint}
125        "${@}"
126        t=`expr ${t} + 1`
127    done
128}
129
130# prints the leading info for a given run of a variant
131print_header() {
132    echo ${1}':'
133    echo -e "cores\tthroughput (entries)"
134}
135
136# runs the current benchmark with provided args
137# only works for standard-run benchmarks (not Akka)
138# must split into pre and post args to be able to supply val of p
139pre_args=''
140post_args=''
141single_run() {
142    affinity ${1}
143    preprint="${1}\t"
144    repeat_command taskset -c ${taskset} ./a.${hostname} ${pre_args} ${1} ${post_args}
145}
146
147# runs the current bench for all processor vals
148# works for standard benchs that dont need to set a config file (not Akka or CAF)
149run_bench() {
150    for p in ${num_threads} ; do
151        single_run ${p}
152    done
153}
154
155run_side_chan() {
156    i=1
157    for p in ${side_chan_threads} ; do
158        affinity ${p}
159        preprint="${p}\t"
160        repeat_command taskset -c ${taskset} ./a.${hostname} ${pre_args} ${i} ${post_args}
161        i=`expr ${i} + 1`
162    done
163}
164
165run_future() {
166    for p in ${num_threads} ; do
167        pre_args=$(( ${p} - 1 ))
168        affinity ${p}
169        preprint="${p}\t"
170        repeat_command taskset -c ${taskset} ./a.${hostname} ${pre_args} ${post_args}
171    done
172}
173
174arch # get hostname
175
176# set up leading info for python script
177echo $numtimes
178echo $num_threads
179echo $side_chan_threads
180
181if [ ${runCFA} -eq ${true} ]; then
182    echo -n 'CFA '
183fi
184if [ ${runGO} -eq ${true} ]; then
185    echo -n 'Go '
186fi
187echo ""
188
189# done printing header info for output
190
191# cfa flags
192cfa_flags='-quiet -O3 -nodebug -DNDEBUG'
193
194# UCPP flags
195UCPPflags="-quiet -g -Wall -Wextra -O3 -nodebug -DNDEBUG -multi"
196UCPP=~/ucpp/u++-7.0.0/bin/u++
197
198# run the benchmarks
199
200run_contend() {
201    post_args=${1}
202
203    if [ ${runCFA} -eq ${true} ] ; then
204        cd cfa # CFA RUN
205        print_header 'CFA'
206        ${cfa} ${cfa_flags} '-DNUM_CHANS='${3} ${2}.cfa -o a.${hostname} > /dev/null 2>&1
207        run_bench
208        rm a.${hostname}
209        cd - > /dev/null
210    fi # done CFA
211
212    if [ ${runGO} -eq ${true} ] ; then
213        cd go/${2}${3} # Go RUN
214        print_header 'Go'
215        go build -o a.${hostname} > /dev/null 2>&1
216        run_bench
217        rm a.${hostname}
218        cd - > /dev/null
219    fi # done Go
220}
221
222# /usr/bin/time -f "%Uu %Ss %Er %Mkb"
223if [ ${contend} -eq ${true} ] ; then
224    echo "contend2: "
225    run_contend ${chan_size} 'contend' '2'
226    echo "contend4: "
227    run_contend ${chan_size} 'contend' '4'
228    echo "contend8: "
229    run_contend ${chan_size} 'contend' '8'
230fi
231
232if [ ${spin} -eq ${true} ] ; then
233    echo "spin2: "
234    run_contend ${chan_size} 'spin' '2'
235    echo "spin4: "
236    run_contend ${chan_size} 'spin' '4'
237    echo "spin8: "
238    run_contend ${chan_size} 'spin' '8'
239fi
240
241if [ ${sidechan} -eq ${true} ] ; then
242    echo "sidechan: "
243    post_args=${chan_size}
244    if [ ${runCFA} -eq ${true} ] ; then
245        cd cfa # CFA RUN
246        print_header 'CFA'
247        ${cfa} ${cfa_flags} sidechan.cfa -o a.${hostname} > /dev/null 2>&1
248        run_side_chan
249        rm a.${hostname}
250        cd - > /dev/null
251    fi # done CFA
252
253    if [ ${runGO} -eq ${true} ] ; then
254        cd go/sidechan
255        print_header 'Go'
256        go build -o a.${hostname} > /dev/null 2>&1
257        run_side_chan
258        rm a.${hostname}
259        cd - > /dev/null
260    fi # done Go
261fi
262
263if [ ${future} -eq ${true} ] ; then
264    echo "future: "
265    post_args=${future_time}
266    if [ ${runCFA} -eq ${true} ] ; then
267        cd cfa # CFA RUN
268        print_header 'CFA'
269        ${cfa} ${cfa_flags} future.cfa -o a.${hostname} > /dev/null 2>&1
270        run_future
271        rm a.${hostname}
272        cd - > /dev/null
273    fi # done CFA
274
275    if [ ${runUCPP} -eq ${true} ] ; then
276        cd ucpp
277        print_header 'uC++'
278        ${UCPP} ${UCPPflags} future.cc -o a.${hostname} > /dev/null 2>&1
279        run_future
280        rm a.${hostname}
281        cd - > /dev/null
282    fi # done Go
283fi
284
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