bscpkgs/overlay.nix

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self: /* Future last stage */
super: /* Previous stage */
let
inherit (self.lib) callPackageWith;
inherit (self.lib) callPackagesWith;
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callPackage = callPackageWith (self // self.bsc // self.garlic);
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# --------------------------------------------------------- #
# BSC Packages
# --------------------------------------------------------- #
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bsc = {
# Default MPI implementation to use. Will be overwritten by the
# experiments.
mpi = self.bsc.impi;
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perf = callPackage ./bsc/perf/default.nix {
kernel = self.linuxPackages_4_9.kernel;
systemtap = self.linuxPackages_4_9.systemtap;
};
# ParaStation MPI
pscom = callPackage ./bsc/parastation/pscom.nix { };
psmpi = callPackage ./bsc/parastation/psmpi.nix { };
osumb = callPackage ./bsc/osu/default.nix { };
mpich = callPackage ./bsc/mpich/default.nix { };
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mpichDebug = self.bsc.mpich.override { enableDebug = true; };
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# Updated version of libpsm2: TODO push upstream.
#libpsm2 = callPackage ./bsc/libpsm2/default.nix { };
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# Default Intel MPI version is 2019 (the last one)
impi = self.bsc.intelMpi;
intelMpi = self.bsc.intelMpi2019;
intelMpi2019 = callPackage ./bsc/intel-mpi/default.nix {
# Intel MPI provides a debug version of the MPI library, but
# by default we use the release variant for performance
enableDebug = false;
};
# By default we use Intel compiler 2020 update 1
iccUnwrapped = self.bsc.icc2020Unwrapped;
icc2020Unwrapped = callPackage ./bsc/intel-compiler/icc2020.nix {
intel-mpi = self.bsc.intelMpi;
};
# A wrapper script that puts all the flags and environment vars properly and
# calls the intel compiler binary
icc = callPackage ./bsc/intel-compiler/default.nix {
iccUnwrapped = self.bsc.iccUnwrapped;
intelLicense = self.bsc.intelLicense;
};
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# We need to set the cc.cc.CC and cc.cc.CXX attributes, in order to
# determine the name of the compiler
# FIXME: Use a proper and automatic way to compute the compiler name
gcc = self.gcc.overrideAttrs (old1: {
cc = old1.cc.overrideAttrs (old2: {
passthru = old2.passthru // {
CC = "gcc";
CXX = "g++";
};
});
});
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intelLicense = callPackage ./bsc/intel-compiler/license.nix { };
pmix2 = callPackage ./bsc/pmix/pmix2.nix { };
slurm17 = callPackage ./bsc/slurm/default.nix {
pmix = self.bsc.pmix2;
};
slurm17-libpmi2 = callPackage ./bsc/slurm/pmi2.nix {
pmix = self.bsc.pmix2;
};
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# Use a slurm compatible with MN4
slurm = self.bsc.slurm17;
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openmpi-mn4 = callPackage ./bsc/openmpi/default.nix {
pmix = self.bsc.pmix2;
pmi2 = self.bsc.slurm17-libpmi2;
enableCxx = true;
};
openmpi = self.bsc.openmpi-mn4;
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fftw = callPackage ./bsc/fftw/default.nix { };
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extrae = callPackage ./bsc/extrae/default.nix { };
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tampi = self.bsc.tampiRelease;
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tampiRelease = callPackage ./bsc/tampi/default.nix { };
tampiGit = callPackage ./bsc/tampi/git.nix { };
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mcxxGit = callPackage ./bsc/mcxx/default.nix {
bison = self.bison_3_5;
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};
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mcxxRarias = callPackage ./bsc/mcxx/rarias.nix {
bison = self.bison_3_5;
};
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mcxx = self.bsc.mcxxGit;
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# Use nanos6 git by default
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nanos6 = self.bsc.nanos6Git;
nanos6Latest = callPackage ./bsc/nanos6/default.nix { };
nanos6Git = callPackage ./bsc/nanos6/git.nix { };
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jemalloc = self.jemalloc.overrideAttrs (old:
{
# Custom nanos6 configure options
configureFlags = old.configureFlags ++ [
"--with-jemalloc-prefix=nanos6_je_"
"--enable-stats"
];
});
nanos6Jemalloc = callPackage ./bsc/nanos6/git.nix {
enableJemalloc = true;
};
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babeltrace = callPackage ./bsc/babeltrace/default.nix { };
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babeltrace2 = callPackage ./bsc/babeltrace2/default.nix { };
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vtk = callPackage ./bsc/vtk/default.nix {
inherit (self.xorg) libX11 xorgproto libXt;
};
dummy = callPackage ./bsc/dummy/default.nix { };
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rdma-core = callPackage ./bsc/rdma-core/default.nix { };
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clangOmpss2Unwrapped = callPackage ./bsc/llvm-ompss2/clang.nix {
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stdenv = self.llvmPackages_10.stdenv;
enableDebug = false;
};
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clangOmpss2 = callPackage bsc/llvm-ompss2/default.nix {
clangOmpss2Unwrapped = self.bsc.clangOmpss2Unwrapped;
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};
stdenvOmpss2 = self.clangStdenv.override {
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cc = self.bsc.clangOmpss2;
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};
cpic = callPackage ./bsc/apps/cpic/default.nix {
stdenv = self.bsc.stdenvOmpss2;
mpi = self.bsc.mpi;
tampi = self.bsc.tampi;
};
mpptest = callPackage ./bsc/mpptest/default.nix { };
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busybox = self.busybox.override {
enableStatic = true;
};
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groff = callPackage ./bsc/groff/default.nix { };
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nixtools = callPackage ./bsc/nixtools/default.nix { };
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garlicTools = callPackage ./garlic/tools.nix {};
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garlic = {
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# TODO: move into garlic/default.nix
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# Configuration for the machines
machines = callPackage ./garlic/machines.nix {};
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report = callPackage ./garlic/report.nix {
fig = self.bsc.garlic.fig;
};
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# Use the configuration for the following target machine
targetMachine = self.garlic.machines.mn4;
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# Load some helper functions to generate app variants
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stdexp = callPackage ./garlic/stdexp.nix {
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inherit (self.garlic) targetMachine stages;
};
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# Apps for Garlic
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apps = {
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nbody = callPackage ./garlic/apps/nbody/default.nix {
cc = self.bsc.icc;
mpi = self.bsc.mpi;
tampi = self.bsc.tampi;
mcxx = self.bsc.mcxx;
gitBranch = "garlic/seq";
};
saiph = callPackage ./garlic/apps/saiph/default.nix {
cc = self.bsc.clangOmpss2;
};
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creams = callPackage ./garlic/apps/creams/default.nix {
gnuDef = self.gfortran10 ; # Default GNU compiler version
intelDef = self.bsc.icc ; # Default Intel compiler version
gitBranch = "garlic/mpi+send+seq";
cc = self.bsc.icc; # self.bsc.icc OR self.gfortran10;
mpi = self.bsc.mpi; # self.bsc.mpi OR self.bsc.openmpi-mn4;
};
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creamsInput = callPackage ./garlic/apps/creams/input.nix {
gitBranch = "garlic/mpi+send+seq";
};
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hpcg = callPackage ./garlic/apps/hpcg/default.nix {
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cc = self.bsc.icc;
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mcxx = self.bsc.mcxx;
nanos6 = self.bsc.nanos6;
gitBranch = "garlic/oss";
# cc = self.bsc.icc;
# gitBranch = "garlic/seq";
# cc = self.bsc.icc;
# mpi = self.bsc.mpi;
# gitBranch = "garlic/mpi";
# cc = self.bsc.icc;
# gitBranch = "garlic/omp";
# cc = self.bsc.icc;
# mpi = self.bsc.mpi;
# gitBranch = "garlic/mpi+omp";
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};
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heat = callPackage ./garlic/apps/heat/default.nix { };
# heat = callPackage ./garlic/apps/heat/default.nix {
# # FIXME: The heat program must be able to compile with gcc9 and newer
# stdenv = self.gcc7Stdenv;
# #mpi = intel-mpi;
# #tampi = tampi;
#
# # FIXME: Nanos6 fails to load if we are not using a compatible stdc++
# # version, so we use the same provided by gcc7
# mcxx = self.bsc.mcxx.override {
# nanos6 = self.bsc.nanos6.override {
# stdenv = self.gcc7Stdenv;
# };
# };
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# };
#
# lulesh = callPackage ./garlic/apps/lulesh {
# mpi = intel-mpi;
# };
#
# hpccg = callPackage ./garlic/apps/hpccg { };
#
# fwi = callPackage ./garlic/apps/fwi { };
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};
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# Execution stages
stages = {
sbatch = callPackage ./garlic/stages/sbatch.nix { };
srun = callPackage ./garlic/stages/srun.nix { };
control = callPackage ./garlic/stages/control.nix { };
exec = callPackage ./garlic/stages/exec.nix { };
extrae = callPackage ./garlic/stages/extrae.nix { };
valgrind = callPackage ./garlic/stages/valgrind.nix { };
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perf = callPackage ./garlic/stages/perf.nix { };
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isolate = callPackage ./garlic/stages/isolate { };
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runexp = callPackage ./garlic/stages/runexp { };
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trebuchet = callPackage ./garlic/stages/trebuchet.nix { };
strace = callPackage ./garlic/stages/strace.nix { };
unit = callPackage ./garlic/stages/unit.nix { };
experiment = callPackage ./garlic/stages/experiment.nix { };
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};
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# Tests (move to bsc ?)
mpptest = callPackage ./garlic/mpptest { };
ppong = callPackage ./garlic/ppong {
mpi = self.bsc.mpi;
};
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hist = callPackage ./garlic/pp/hist { };
tool = callPackage ./garlic/sh/default.nix {
sshHost = "mn1";
};
# Post processing tools
pp = with self.bsc.garlicTools; rec {
store = callPackage ./garlic/pp/store.nix { };
resultFromTrebuchet = trebuchetStage: (store {
experimentStage = getExperimentStage trebuchetStage;
inherit trebuchetStage;
});
timetable = callPackage ./garlic/pp/timetable.nix { };
rPlot = callPackage ./garlic/pp/rplot.nix { };
timetableFromTrebuchet = tre: timetable (resultFromTrebuchet tre);
mergeDatasets = callPackage ./garlic/pp/merge.nix { };
# Takes a list of experiments and returns a file that contains
# all timetable results from the experiments.
merge = exps: mergeDatasets (map timetableFromTrebuchet exps);
};
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# Experiments
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exp = {
nbody = rec {
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tampi = callPackage ./garlic/exp/nbody/tampi.nix { };
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# Experiment variants
medium = tampi.override { particles = 24 * 4096; };
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baseline = medium;
freeCpu = baseline.override { freeCpu = true; };
jemalloc = baseline.override { enableJemalloc = true; };
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};
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saiph = {
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numcomm = callPackage ./garlic/exp/saiph/numcomm.nix { };
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};
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creams = {
ss = {
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pure = callPackage ./garlic/exp/creams/ss+pure.nix { };
hybrid = callPackage ./garlic/exp/creams/ss+hybrid.nix { };
};
};
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hpcg = {
serial = callPackage ./garlic/exp/hpcg/serial.nix { };
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mpi = callPackage ./garlic/exp/hpcg/mpi.nix { };
omp = callPackage ./garlic/exp/hpcg/omp.nix { };
mpi_omp = callPackage ./garlic/exp/hpcg/mpi+omp.nix { };
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input = callPackage ./garlic/exp/hpcg/gen.nix {
inherit (self.bsc.garlic.pp) resultFromTrebuchet;
};
oss = callPackage ./garlic/exp/hpcg/oss.nix {
genInput = self.bsc.garlic.exp.hpcg.input;
};
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};
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heat = {
test = callPackage ./garlic/exp/heat/test.nix { };
};
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};
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# Datasets used in the figures
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ds = with self.bsc.garlic; with pp; {
nbody = with exp.nbody; {
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baseline = merge [ baseline ];
jemalloc = merge [ baseline jemalloc ];
freeCpu = merge [ baseline freeCpu ];
};
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hpcg = with exp.hpcg; {
oss = merge [ oss ];
};
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saiph = with exp.saiph; {
numcomm = merge [ numcomm ];
};
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heat = with exp.heat; {
test = merge [ test ];
};
};
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# Figures generated from the experiments
fig = with self.bsc.garlic; {
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nbody = {
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baseline = pp.rPlot {
script = ./garlic/fig/nbody/baseline.R;
dataset = ds.nbody.baseline;
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};
jemalloc = pp.rPlot {
script = ./garlic/fig/nbody/jemalloc.R;
dataset = ds.nbody.jemalloc;
};
freeCpu = pp.rPlot {
script = ./garlic/fig/nbody/freeCpu.R;
dataset = ds.nbody.freeCpu;
};
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};
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hpcg = {
oss = with ds.hpcg; pp.rPlot {
script = ./garlic/fig/hpcg/oss.R;
dataset = oss;
};
};
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heat = {
test = with ds.heat; pp.rPlot {
script = ./garlic/fig/heat/test.R;
dataset = test;
};
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};
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};
};
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};
in
{
bsc = bsc;
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# Aliases
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garlic = bsc.garlic;
inherit (bsc.garlic) exp fig apps ds;
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}