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Author SHA1 Message Date
meifeng
a09aa352a9
Merge 37d1d87c3c into 2a0d75bac2 2023-12-27 01:35:36 +01:00
2a0d75bac2 Aurora files 2023-12-21 23:20:17 +00:00
7 changed files with 323 additions and 0 deletions

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#!/bin/bash
## qsub -q EarlyAppAccess -A Aurora_Deployment -I -l select=1 -l walltime=60:00
#PBS -q EarlyAppAccess
#PBS -l select=1
#PBS -l walltime=01:00:00
##PBS -A Aurora_Deployment
#PBS -A LatticeQCD_aesp
HDIR=/home/paboyle/
#module use /soft/testing/modulefiles/
#module load intel-UMD23.05.25593.11/23.05.25593.11
#module load tools/pti-gpu
#export LD_LIBRARY_PATH=$HDIR/tools/lib64:$LD_LIBRARY_PATH
#export PATH=$HDIR/tools/bin:$PATH
export TZ='/usr/share/zoneinfo/US/Central'
export OMP_PROC_BIND=spread
export OMP_NUM_THREADS=3
unset OMP_PLACES
cd $PBS_O_WORKDIR
source ../sourceme.sh
echo Jobid: $PBS_JOBID
echo Running on host `hostname`
echo Running on nodes `cat $PBS_NODEFILE`
echo NODES
cat $PBS_NODEFILE
NNODES=`wc -l < $PBS_NODEFILE`
NRANKS=12 # Number of MPI ranks per node
NDEPTH=4 # Number of hardware threads per rank, spacing between MPI ranks on a node
NTHREADS=$OMP_NUM_THREADS # Number of OMP threads per rank, given to OMP_NUM_THREADS
NTOTRANKS=$(( NNODES * NRANKS ))
echo "NUM_NODES=${NNODES} TOTAL_RANKS=${NTOTRANKS} RANKS_PER_NODE=${NRANKS} THREADS_PER_RANK=${OMP_NUM_THREADS}"
echo "OMP_PROC_BIND=$OMP_PROC_BIND OMP_PLACES=$OMP_PLACES"
#CMD="mpiexec -np ${NTOTRANKS} -ppn ${NRANKS} -d ${NDEPTH} --cpu-bind=depth -envall \
# ./gpu_tile_compact.sh \
# ./Benchmark_dwf_fp32 --mpi 1.1.2.6 --grid 16.32.64.192 --comms-overlap \
# --shm-mpi 0 --shm 2048 --device-mem 32000 --accelerator-threads 32"
CMD="mpiexec -np ${NTOTRANKS} -ppn ${NRANKS} -d ${NDEPTH} --cpu-bind=depth -envall \
./gpu_tile_compact.sh \
./Benchmark_comms_host_device --mpi 1.1.2.6 --grid 32.24.32.192 \
--shm-mpi 1 --shm 2048 --device-mem 32000 --accelerator-threads 32"
$CMD

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#!/bin/bash
## qsub -q EarlyAppAccess -A Aurora_Deployment -I -l select=1 -l walltime=60:00
#PBS -q EarlyAppAccess
#PBS -l select=2
#PBS -l walltime=01:00:00
#PBS -A LatticeQCD_aesp_CNDA
HDIR=/home/paboyle/
#module use /soft/testing/modulefiles/
#module load intel-UMD23.05.25593.11/23.05.25593.11
#module load tools/pti-gpu
#export LD_LIBRARY_PATH=$HDIR/tools/lib64:$LD_LIBRARY_PATH
#export PATH=$HDIR/tools/bin:$PATH
export TZ='/usr/share/zoneinfo/US/Central'
export OMP_PROC_BIND=spread
export OMP_NUM_THREADS=3
unset OMP_PLACES
cd $PBS_O_WORKDIR
source ../sourceme.sh
echo Jobid: $PBS_JOBID
echo Running on host `hostname`
echo Running on nodes `cat $PBS_NODEFILE`
echo NODES
cat $PBS_NODEFILE
NNODES=`wc -l < $PBS_NODEFILE`
NRANKS=12 # Number of MPI ranks per node
NDEPTH=4 # Number of hardware threads per rank, spacing between MPI ranks on a node
NTHREADS=$OMP_NUM_THREADS # Number of OMP threads per rank, given to OMP_NUM_THREADS
NTOTRANKS=$(( NNODES * NRANKS ))
echo "NUM_NODES=${NNODES} TOTAL_RANKS=${NTOTRANKS} RANKS_PER_NODE=${NRANKS} THREADS_PER_RANK=${OMP_NUM_THREADS}"
echo "OMP_PROC_BIND=$OMP_PROC_BIND OMP_PLACES=$OMP_PLACES"
CMD="mpiexec -np 2 -ppn 1 -d ${NDEPTH} -envall \
./gpu_tile_compact.sh \
./Benchmark_comms_host_device --mpi 1.1.1.2 --grid 32.24.32.192 \
--shm-mpi 1 --shm 2048 --device-mem 32000 --accelerator-threads 32"
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=0
#$CMD | tee 1-to-1.comms.hmem0
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=1
#$CMD | tee 1-to-1.comms.hmem1
CMD="mpiexec -np 4 -ppn 2 -d ${NDEPTH} --cpu-bind=depth -envall \
./gpu_tile_compact.sh \
./Benchmark_comms_host_device --mpi 2.2.1.1 --grid 32.24.32.96 \
--shm-mpi 1 --shm 2048 --device-mem 32000 --accelerator-threads 32"
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=1
#$CMD | tee 2-to-2.comms.hmem1
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=0
#$CMD | tee 2-to-2.comms.hmem0
CMD="mpiexec -np 6 -ppn 3 -d ${NDEPTH} --cpu-bind=depth -envall \
./gpu_tile_compact.sh \
./Benchmark_comms_host_device --mpi 3.2.1.1 --grid 32.24.32.96 \
--shm-mpi 1 --shm 2048 --device-mem 32000 --accelerator-threads 32"
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=1
#$CMD | tee 3-to-3.comms.hmem1
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=0
#$CMD | tee 3-to-3.comms.hmem0
CMD="mpiexec -np 8 -ppn 4 -d ${NDEPTH} --cpu-bind=depth -envall \
./gpu_tile_compact4.sh \
./Benchmark_comms_host_device --mpi 2.2.2.1 --grid 32.24.32.96 \
--shm-mpi 1 --shm 2048 --device-mem 32000 --accelerator-threads 32"
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=1
$CMD | tee 4-to-4.comms.hmem1.nic-affinity
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=0
$CMD | tee 4-to-4.comms.hmem0.nic-affinity
CMD="mpiexec -np 12 -ppn 6 -d ${NDEPTH} --cpu-bind=depth -envall \
./gpu_tile_compact.sh \
./Benchmark_comms_host_device --mpi 3.2.2.1 --grid 32.24.32.96 \
--shm-mpi 1 --shm 2048 --device-mem 32000 --accelerator-threads 32"
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=1
#$CMD | tee 6-to-6.comms.hmem1
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=0
#$CMD | tee 6-to-6.comms.hmem0
CMD="mpiexec -np ${NTOTRANKS} -ppn ${NRANKS} -d ${NDEPTH} --cpu-bind=depth -envall \
./gpu_tile_compact.sh \
./Benchmark_comms_host_device --mpi 3.2.2.2 --grid 32.24.32.192 \
--shm-mpi 1 --shm 2048 --device-mem 32000 --accelerator-threads 32"
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=1
#$CMD | tee 12-to-12.comms.hmem1
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=0
#$CMD | tee 12-to-12.comms.hmem0

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#!/bin/bash
display_help() {
echo " Will map gpu tile to rank in compact and then round-robin fashion"
echo " Usage (only work for one node of ATS/PVC):"
echo " mpiexec --np N gpu_tile_compact.sh ./a.out"
echo
echo " Example 3 GPU of 2 Tiles with 7 Ranks:"
echo " 0 Rank 0.0"
echo " 1 Rank 0.1"
echo " 2 Rank 1.0"
echo " 3 Rank 1.1"
echo " 4 Rank 2.0"
echo " 5 Rank 2.1"
echo " 6 Rank 0.0"
echo
echo " Hacked together by apl@anl.gov, please contact if bug found"
exit 1
}
#This give the exact GPU count i915 knows about and I use udev to only enumerate the devices with physical presence.
#works? num_gpu=$(/usr/bin/udevadm info /sys/module/i915/drivers/pci\:i915/* |& grep -v Unknown | grep -c "P: /devices")
num_gpu=6
num_tile=2
if [ "$#" -eq 0 ] || [ "$1" == "--help" ] || [ "$1" == "-h" ] || [ "$num_gpu" = 0 ]; then
display_help
fi
gpu_id=$(( (PALS_LOCAL_RANKID / num_tile ) % num_gpu ))
tile_id=$((PALS_LOCAL_RANKID % num_tile))
export NUMA_MAP=(0 0 0 1 1 1 0 0 0 1 1 1 )
export NIC_MAP=(0 1 2 4 5 6 0 1 2 4 5 6 )
export GPU_MAP=(0 1 2 3 4 5 0 1 2 3 4 5 )
export TILE_MAP=(0 0 0 0 0 0 1 1 1 1 1 1 )
export NUMA=${NUMA_MAP[$PALS_LOCAL_RANKID]}
export NIC=${NIC_MAP[$PALS_LOCAL_RANKID]}
export gpu_id=${GPU_MAP[$PALS_LOCAL_RANKID]}
export tile_id=${TILE_MAP[$PALS_LOCAL_RANKID]}
export GRID_MPICH_NIC_BIND=$NIC
unset EnableWalkerPartition
export EnableImplicitScaling=0
export ZE_ENABLE_PCI_ID_DEVICE_ORDER=1
export ZE_AFFINITY_MASK=$gpu_id.$tile_id
#export ONEAPI_DEVICE_SELECTOR=level_zero:$gpu_id.$tile_id
export ONEAPI_DEVICE_FILTER=gpu,level_zero
export SYCL_PI_LEVEL_ZERO_DEVICE_SCOPE_EVENTS=0
export SYCL_PI_LEVEL_ZERO_USE_IMMEDIATE_COMMANDLISTS=1
export SYCL_PI_LEVEL_ZERO_USE_COPY_ENGINE=0:2
export SYCL_PI_LEVEL_ZERO_USE_COPY_ENGINE_FOR_D2D_COPY=1
#export SYCL_PI_LEVEL_ZERO_USM_RESIDENT=1
echo "rank $PALS_RANKID ; local rank $PALS_LOCAL_RANKID ; ZE_AFFINITY_MASK=$ZE_AFFINITY_MASK ; NIC $GRID_MPICH_NIC_BIND"
if [ $PALS_LOCAL_RANKID = 0 ]
then
numactl -m $NUMA -N $NUMA "$@"
else
numactl -m $NUMA -N $NUMA "$@"
fi

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#!/bin/bash
display_help() {
echo " Will map gpu tile to rank in compact and then round-robin fashion"
echo " Usage (only work for one node of ATS/PVC):"
echo " mpiexec --np N gpu_tile_compact.sh ./a.out"
echo
echo " Example 3 GPU of 2 Tiles with 7 Ranks:"
echo " 0 Rank 0.0"
echo " 1 Rank 0.1"
echo " 2 Rank 1.0"
echo " 3 Rank 1.1"
echo " 4 Rank 2.0"
echo " 5 Rank 2.1"
echo " 6 Rank 0.0"
echo
echo " Hacked together by apl@anl.gov, please contact if bug found"
exit 1
}
#This give the exact GPU count i915 knows about and I use udev to only enumerate the devices with physical presence.
#works? num_gpu=$(/usr/bin/udevadm info /sys/module/i915/drivers/pci\:i915/* |& grep -v Unknown | grep -c "P: /devices")
num_gpu=6
num_tile=2
if [ "$#" -eq 0 ] || [ "$1" == "--help" ] || [ "$1" == "-h" ] || [ "$num_gpu" = 0 ]; then
display_help
fi
gpu_id=$(( (PALS_LOCAL_RANKID / num_tile ) % num_gpu ))
tile_id=$((PALS_LOCAL_RANKID % num_tile))
export NUMA_MAP=(0 0 1 1 0 0 1 1 )
export NIC_MAP=(0 1 4 5 0 1 4 5 )
export GPU_MAP=(0 1 3 4 0 1 3 4 )
export TILE_MAP=(0 0 0 0 1 1 1 1 )
export NUMA=${NUMA_MAP[$PALS_LOCAL_RANKID]}
export NIC=${NIC_MAP[$PALS_LOCAL_RANKID]}
export gpu_id=${GPU_MAP[$PALS_LOCAL_RANKID]}
export tile_id=${TILE_MAP[$PALS_LOCAL_RANKID]}
export GRID_MPICH_NIC_BIND=$NIC
unset EnableWalkerPartition
export EnableImplicitScaling=0
export ZE_ENABLE_PCI_ID_DEVICE_ORDER=1
export ZE_AFFINITY_MASK=$gpu_id.$tile_id
#export ONEAPI_DEVICE_SELECTOR=level_zero:$gpu_id.$tile_id
export ONEAPI_DEVICE_FILTER=gpu,level_zero
export SYCL_PI_LEVEL_ZERO_DEVICE_SCOPE_EVENTS=0
export SYCL_PI_LEVEL_ZERO_USE_IMMEDIATE_COMMANDLISTS=1
export SYCL_PI_LEVEL_ZERO_USE_COPY_ENGINE=0:2
export SYCL_PI_LEVEL_ZERO_USE_COPY_ENGINE_FOR_D2D_COPY=1
#export SYCL_PI_LEVEL_ZERO_USM_RESIDENT=1
echo "rank $PALS_RANKID ; local rank $PALS_LOCAL_RANKID ; ZE_AFFINITY_MASK=$ZE_AFFINITY_MASK ; NIC $GRID_MPICH_NIC_BIND"
numactl -m $NUMA -N $NUMA "$@"

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TOOLS=$HOME/tools
../../configure \
--enable-simd=GPU \
--enable-gen-simd-width=64 \
--enable-comms=mpi-auto \
--enable-accelerator-cshift \
--disable-gparity \
--disable-fermion-reps \
--enable-shm=nvlink \
--enable-accelerator=sycl \
--enable-unified=no \
MPICXX=mpicxx \
CXX=icpx \
LDFLAGS="-fiopenmp -fsycl -fsycl-device-code-split=per_kernel -fsycl-device-lib=all -lze_loader -L$TOOLS/lib64/" \
CXXFLAGS="-fiopenmp -fsycl-unnamed-lambda -fsycl -I$INSTALL/include -Wno-tautological-compare -I$HOME/ -I$TOOLS/include"

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export HTTP_PROXY=http://proxy.alcf.anl.gov:3128
export HTTPS_PROXY=http://proxy.alcf.anl.gov:3128
export http_proxy=http://proxy.alcf.anl.gov:3128
export https_proxy=http://proxy.alcf.anl.gov:3128
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=1
git config --global http.proxy http://proxy.alcf.anl.gov:3128
module use /soft/modulefiles
module load intel_compute_runtime/release/agama-devel-682.22

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#export ONEAPI_DEVICE_SELECTOR=level_zero:0.0
module use /soft/modulefiles
module load intel_compute_runtime/release/agama-devel-682.22
export HTTP_PROXY=http://proxy.alcf.anl.gov:3128
export HTTPS_PROXY=http://proxy.alcf.anl.gov:3128
export http_proxy=http://proxy.alcf.anl.gov:3128
export https_proxy=http://proxy.alcf.anl.gov:3128
export MPIR_CVAR_CH4_OFI_ENABLE_HMEM=1
git config --global http.proxy http://proxy.alcf.anl.gov:3128