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.travis.yml
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.travis.yml
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# Travis configuration
#
# Note: building Fortran code is not supported (yet): see https://docs.travis-ci.com/user/language-specific/
# this is using C as a base and installs gfortran in the test environment
language: c
dist: bionic
os: linux
arch:
- ppc64le # IBM Power
# - amd64 # travis default
# - arm64 # ARM
compiler: gcc
# deprecated
#sudo: required
env:
global:
- FC=gfortran
- MPIFC=mpif90
- CC=gcc
- OMP_NUM_THREADS=2
- WORKDIR=`pwd`
matrix:
# for test cases, we use
# TESTID - identification number for test
# TESTDIR - test directory id
# TESTFLAGS - flags used for configuration
# TESTCOV - determines whether or not (0/1) code coverage flags are used
# CUDA - flag for compilation with CUDA
# CUDA_VERSION - specifies CUDA toolkit version
# code coverage: vectorization & mpi, using code coverage flags
- TESTID=0 TESTDIR=1 TESTCOV=1 TESTFLAGS="--without-mpi" CUDA=false
# code coverage: vectorization & mpi, using code coverage flags
- TESTID=1 TESTDIR=1 TESTCOV=1 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# default test with make tests
- TESTID=2 TESTDIR=0 TESTCOV=0 TESTFLAGS="" CUDA=false
# compilation w/ CUDA
- TESTID=3 TESTDIR=1 TESTCOV=0 TESTFLAGS="--with-cuda=cuda5 --without-mpi" CUDA=true CUDA_VERSION=6.5-14
# compilation w/ CUDA and MPI
- TESTID=4 TESTDIR=1 TESTCOV=0 TESTFLAGS="--with-cuda=cuda5 --with-mpi" CUDA=true CUDA_VERSION=6.5-14
# debug flags (tested on github actions)
#- TESTID=5 TESTDIR=1 TESTCOV=0 TESTFLAGS="--enable-debug" CUDA=false
# debug & double precision (tested on github actions)
#- TESTID=6 TESTDIR=1 TESTCOV=0 TESTFLAGS="--enable-double-precision --enable-debug" CUDA=false
# vectorization
- TESTID=7 TESTDIR=1 TESTCOV=0 TESTFLAGS="--enable-vectorization --without-mpi" CUDA=false
# example w/ PML
- TESTID=8 TESTDIR=2 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ MPI and Stacey
- TESTID=9 TESTDIR=3 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ kernel calculation
- TESTID=10 TESTDIR=4 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ poroelastic/acoustic media
- TESTID=11 TESTDIR=5 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ noise
- TESTID=12 TESTDIR=6 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ axisymmetric & attenuation (tested on github actions)
#- TESTID=13 TESTDIR=7 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ PML and MPI
- TESTID=14 TESTDIR=8 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ MPI and SEP format (tested on github actions)
#- TESTID=15 TESTDIR=9 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ initialfield Rayleigh wave (disabled, takes too long)
#- TESTID=16 TESTDIR=10 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ initialfield Rayleigh wave and manual crack (disabled, takes too long)
#- TESTID=17 TESTDIR=11 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ SH waves and checkerboard model
- TESTID=18 TESTDIR=12 TESTCOV=0 TESTFLAGS="--without-mpi" CUDA=false
# check amplitudes pressure
- TESTID=19 TESTDIR=13 TESTCOV=0 TESTFLAGS="--without-mpi" CUDA=false
# check amplitudes elastic
- TESTID=20 TESTDIR=14 TESTCOV=0 TESTFLAGS="--without-mpi" CUDA=false
# check amplitudes viscoelastic
- TESTID=21 TESTDIR=15 TESTCOV=0 TESTFLAGS="--without-mpi" CUDA=false
# fluid solid
- TESTID=22 TESTDIR=16 TESTCOV=0 TESTFLAGS="--with-mpi" CUDA=false
# poroelastic
- TESTID=23 TESTDIR=17 TESTCOV=0 TESTFLAGS="--with-mpi" CUDA=false
# example w/ noise kernel
- TESTID=24 TESTDIR=6 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ LDDRK
- TESTID=25 TESTDIR=18 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# example w/ NO_BACKWARD_RECONSTRUCTION
- TESTID=26 TESTDIR=4 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# moving sources (tested on github actions)
#- TESTID=27 TESTDIR=19 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# anisotropic/isotropic model (tested on github actions)
#- TESTID=28 TESTDIR=20 TESTCOV=0 TESTFLAGS="--enable-vectorization --with-mpi" CUDA=false
# infinite_homogeneous_moment_tensor_vertical_dip_slip example
- TESTID=29 TESTDIR=21 TESTCOV=0 TESTFLAGS="" CUDA=false
# additional ARM tests
jobs:
include:
- arch: arm64
env: TESTID=2 TESTDIR=0 TESTCOV=0 TESTFLAGS="" CUDA=false
- arch: arm64
env: TESTID=5 TESTDIR=1 TESTCOV=0 TESTFLAGS="--enable-debug" CUDA=false
before_install:
# informations on git
- |
git --version
git rev-parse --verify HEAD
git branch -a
# infos on commits
- |
echo "request: Branch($TRAVIS_BRANCH) Pull Request($TRAVIS_PULL_REQUEST) Tag($TRAVIS_TAG)"
echo "commit : Commit($TRAVIS_COMMIT) Range($TRAVIS_COMMIT_RANGE)"
# checks file changes
- |
echo "check file changes"
if [ "${TRAVIS_PULL_REQUEST}" = "false" ]; then
# Push
echo "Push request:"
#COMMIT_RANGE="$(echo ${TRAVIS_COMMIT_RANGE} | cut -d '.' -f 1,4 --output-delimiter '..')"
#DIFF="$(git diff --name-only ${COMMIT_RANGE} --)"
DIFF=$(git diff --name-only ${TRAVIS_COMMIT_RANGE})
else
# PR build
echo "Pull request:"
DIFF=$(git diff --name-only ${TRAVIS_BRANCH}..HEAD --)
fi
echo "$DIFF"
# Escape newlines (replace \n with %0A)
#NEWDIFF=($( echo "$DIFF" | sed ':a;N;$!ba;s/\n/%0A/g' ))
#echo "$NEWDIFF"
#DIFF=$NEWDIFF
RUN_CHECKS=0
# Loop by lines
while read path; do
# Set $directory to substring before /
directory="$( echo $path | cut -d'/' -f1 -s )"
echo "file: $path - directory: $directory"
if [ -z "$directory" ]; then
# root directory
RUN_CHECKS=1
elif [ "$directory" == src ]; then
# src/ directory
RUN_CHECKS=1
elif [ "$directory" == setup ]; then
# setup/ directory
RUN_CHECKS=1
elif [ "$directory" == EXAMPLES ]; then
# EXAMPLES/ directory
RUN_CHECKS=1
elif [ "$directory" == tests ]; then
# tests/ directory
RUN_CHECKS=1
elif [ "$directory" == .travis ]; then
# .travis/ directory
RUN_CHECKS=1
fi
done <<< "$DIFF"
echo
echo "run checks: ${RUN_CHECKS}"
echo
export RUN_CHECKS=${RUN_CHECKS}
#abort: if [[ ${RUN_CHECKS} -eq 0 ]]; then echo "nothing to check, exiting..."; exit 1; fi
# recommended for MPI projects to unset CC: see https://docs.travis-ci.com/user/languages/c
#- test -n $CC && unset CC
# updates repository
# (fails currently...)
#- |
# travis_retry sudo apt-key adv --keyserver keyserver.ubuntu.com --recv-keys 6B05F25D762E3157
# travis_retry sudo apt-key adv --keyserver keyserver.ubuntu.com --recv-keys 78BD65473CB3BD13
# travis_retry sudo apt-key adv --keyserver keyserver.ubuntu.com --recv-keys 762E3157
# apt explicit update
#- |
# echo "update apt-get"
# travis_retry sudo apt-get update
# echo
addons:
# apt update
apt:
update: true
install:
# installs compilers
- bash .travis/run_install.sh
script:
# builds configurations
- bash .travis/run_build.sh
# runs test examples
- bash .travis/run_tests.sh
after_success:
###########################################################
# code coverage
###########################################################
- |
if [ "$TESTCOV" == "1" ]; then
gcov --version
echo `pwd`
ls -al obj/
#echo
#env
#echo
fi
# produces coverage reports (done manually because of different naming for source & object files)
- |
if [ "$TESTCOV" == "1" ]; then
find obj/ -iname '*.o' | sort | awk '{print "gcov -o obj/ "$1;}'
# executes gcov-commands
find obj/ -iname '*.o' | sort | awk '{print "gcov -o obj/ "$1;}' | sh
fi
# code coverage:
# see script : https://github.com/codecov/codecov-bash/blob/master/codecov
# see example: https://github.com/codecov/example-fortran/blob/master/.travis.yml
- if [ "$TESTCOV" == "1" ]; then bash <(curl -s https://codecov.io/bash) -X gcov; fi