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4 Commits

Author SHA1 Message Date
Harmen Stoppels
eb77658b8f manual changes 2024-04-03 09:57:43 +02:00
Harmen Stoppels
430b41efc6 fix ordering 2024-04-02 19:10:01 +02:00
Harmen Stoppels
b628c989cb undo: py-geopmdpy 2024-04-02 17:40:37 +02:00
Harmen Stoppels
8f898a9cdc python ecosystem: sdist -> universal wheels 2024-04-02 17:38:42 +02:00
6280 changed files with 61076 additions and 79630 deletions

View File

@@ -1,5 +1,4 @@
{
"name": "Ubuntu 20.04",
"image": "ghcr.io/spack/ubuntu20.04-runner-amd64-gcc-11.4:2023.08.01",
"postCreateCommand": "./.devcontainer/postCreateCommand.sh"
}

View File

@@ -1,5 +0,0 @@
{
"name": "Ubuntu 22.04",
"image": "ghcr.io/spack/ubuntu-22.04:v2024-05-07",
"postCreateCommand": "./.devcontainer/postCreateCommand.sh"
}

View File

@@ -5,10 +5,13 @@ updates:
directory: "/"
schedule:
interval: "daily"
# Requirements to run style checks and build documentation
# Requirements to build documentation
- package-ecosystem: "pip"
directories:
- "/.github/workflows/requirements/style/*"
- "/lib/spack/docs"
directory: "/lib/spack/docs"
schedule:
interval: "daily"
# Requirements to run style checks
- package-ecosystem: "pip"
directory: "/.github/workflows/style"
schedule:
interval: "daily"

View File

@@ -17,58 +17,35 @@ concurrency:
jobs:
# Run audits on all the packages in the built-in repository
package-audits:
runs-on: ${{ matrix.system.os }}
runs-on: ${{ matrix.operating_system }}
strategy:
matrix:
system:
- { os: windows-latest, shell: 'powershell Invoke-Expression -Command "./share/spack/qa/windows_test_setup.ps1"; {0}' }
- { os: ubuntu-latest, shell: bash }
- { os: macos-latest, shell: bash }
defaults:
run:
shell: ${{ matrix.system.shell }}
operating_system: ["ubuntu-latest", "macos-latest"]
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: ${{inputs.python_version}}
- name: Install Python packages
run: |
pip install --upgrade pip setuptools pytest coverage[toml]
- name: Setup for Windows run
if: runner.os == 'Windows'
run: |
python -m pip install --upgrade pywin32
- name: Package audits (with coverage)
env:
COVERAGE_FILE: coverage/.coverage-audits-${{ matrix.system.os }}
if: ${{ inputs.with_coverage == 'true' && runner.os != 'Windows' }}
if: ${{ inputs.with_coverage == 'true' }}
run: |
. share/spack/setup-env.sh
coverage run $(which spack) audit packages
coverage run $(which spack) audit configs
coverage run $(which spack) -d audit externals
coverage run $(which spack) audit externals
coverage combine
coverage xml
- name: Package audits (without coverage)
if: ${{ inputs.with_coverage == 'false' && runner.os != 'Windows' }}
if: ${{ inputs.with_coverage == 'false' }}
run: |
. share/spack/setup-env.sh
spack -d audit packages
spack -d audit configs
spack -d audit externals
- name: Package audits (without coverage)
if: ${{ runner.os == 'Windows' }}
run: |
. share/spack/setup-env.sh
spack -d audit packages
./share/spack/qa/validate_last_exit.ps1
spack -d audit configs
./share/spack/qa/validate_last_exit.ps1
spack -d audit externals
./share/spack/qa/validate_last_exit.ps1
- uses: actions/upload-artifact@50769540e7f4bd5e21e526ee35c689e35e0d6874
if: ${{ inputs.with_coverage == 'true' && runner.os != 'Windows' }}
$(which spack) audit packages
$(which spack) audit externals
- uses: codecov/codecov-action@c16abc29c95fcf9174b58eb7e1abf4c866893bc8
if: ${{ inputs.with_coverage == 'true' }}
with:
name: coverage-audits-${{ matrix.system.os }}
path: coverage
include-hidden-files: true
flags: unittests,audits
token: ${{ secrets.CODECOV_TOKEN }}
verbose: true

View File

@@ -1,8 +1,7 @@
#!/bin/bash
set -e
set -ex
source share/spack/setup-env.sh
$PYTHON bin/spack bootstrap disable github-actions-v0.4
$PYTHON bin/spack bootstrap disable spack-install
$PYTHON bin/spack $SPACK_FLAGS solve zlib
$PYTHON bin/spack -d solve zlib
tree $BOOTSTRAP/store
exit 0

View File

@@ -13,22 +13,118 @@ concurrency:
cancel-in-progress: true
jobs:
distros-clingo-sources:
fedora-clingo-sources:
runs-on: ubuntu-latest
container: ${{ matrix.image }}
strategy:
matrix:
image: ["fedora:latest", "opensuse/leap:latest"]
container: "fedora:latest"
steps:
- name: Setup Fedora
if: ${{ matrix.image == 'fedora:latest' }}
- name: Install dependencies
run: |
dnf install -y \
bzip2 curl file gcc-c++ gcc gcc-gfortran git gzip \
bzip2 curl file gcc-c++ gcc gcc-gfortran git gnupg2 gzip \
make patch unzip which xz python3 python3-devel tree \
cmake bison bison-devel libstdc++-static
- name: Setup OpenSUSE
if: ${{ matrix.image == 'opensuse/leap:latest' }}
- name: Checkout
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- name: Setup non-root user
run: |
# See [1] below
git config --global --add safe.directory /__w/spack/spack
useradd spack-test && mkdir -p ~spack-test
chown -R spack-test . ~spack-test
- name: Setup repo
shell: runuser -u spack-test -- bash {0}
run: |
git --version
. .github/workflows/setup_git.sh
- name: Bootstrap clingo
shell: runuser -u spack-test -- bash {0}
run: |
source share/spack/setup-env.sh
spack bootstrap disable github-actions-v0.5
spack bootstrap disable github-actions-v0.4
spack external find cmake bison
spack -d solve zlib
tree ~/.spack/bootstrap/store/
ubuntu-clingo-sources:
runs-on: ubuntu-latest
container: "ubuntu:latest"
steps:
- name: Install dependencies
env:
DEBIAN_FRONTEND: noninteractive
run: |
apt-get update -y && apt-get upgrade -y
apt-get install -y \
bzip2 curl file g++ gcc gfortran git gnupg2 gzip \
make patch unzip xz-utils python3 python3-dev tree \
cmake bison
- name: Checkout
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- name: Setup non-root user
run: |
# See [1] below
git config --global --add safe.directory /__w/spack/spack
useradd spack-test && mkdir -p ~spack-test
chown -R spack-test . ~spack-test
- name: Setup repo
shell: runuser -u spack-test -- bash {0}
run: |
git --version
. .github/workflows/setup_git.sh
- name: Bootstrap clingo
shell: runuser -u spack-test -- bash {0}
run: |
source share/spack/setup-env.sh
spack bootstrap disable github-actions-v0.5
spack bootstrap disable github-actions-v0.4
spack external find cmake bison
spack -d solve zlib
tree ~/.spack/bootstrap/store/
ubuntu-clingo-binaries-and-patchelf:
runs-on: ubuntu-latest
container: "ubuntu:latest"
steps:
- name: Install dependencies
env:
DEBIAN_FRONTEND: noninteractive
run: |
apt-get update -y && apt-get upgrade -y
apt-get install -y \
bzip2 curl file g++ gcc gfortran git gnupg2 gzip \
make patch unzip xz-utils python3 python3-dev tree
- name: Checkout
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- name: Setup non-root user
run: |
# See [1] below
git config --global --add safe.directory /__w/spack/spack
useradd spack-test && mkdir -p ~spack-test
chown -R spack-test . ~spack-test
- name: Setup repo
shell: runuser -u spack-test -- bash {0}
run: |
git --version
. .github/workflows/setup_git.sh
- name: Bootstrap clingo
shell: runuser -u spack-test -- bash {0}
run: |
source share/spack/setup-env.sh
spack -d solve zlib
tree ~/.spack/bootstrap/store/
opensuse-clingo-sources:
runs-on: ubuntu-latest
container: "opensuse/leap:latest"
steps:
- name: Install dependencies
run: |
# Harden CI by applying the workaround described here: https://www.suse.com/support/kb/doc/?id=000019505
zypper update -y || zypper update -y
@@ -37,9 +133,15 @@ jobs:
make patch unzip which xz python3 python3-devel tree \
cmake bison
- name: Checkout
uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- name: Setup repo
run: |
# See [1] below
git config --global --add safe.directory /__w/spack/spack
git --version
. .github/workflows/setup_git.sh
- name: Bootstrap clingo
run: |
source share/spack/setup-env.sh
@@ -49,56 +151,194 @@ jobs:
spack -d solve zlib
tree ~/.spack/bootstrap/store/
clingo-sources:
runs-on: ${{ matrix.runner }}
strategy:
matrix:
runner: ['macos-13', 'macos-14', "ubuntu-latest", "windows-latest"]
macos-clingo-sources:
runs-on: macos-latest
steps:
- name: Setup macOS
if: ${{ matrix.runner != 'ubuntu-latest' && matrix.runner != 'windows-latest' }}
- name: Install dependencies
run: |
brew install cmake bison tree
brew install cmake bison@2.7 tree
- name: Checkout
uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
with:
fetch-depth: 0
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: "3.12"
- name: Bootstrap clingo
env:
SETUP_SCRIPT_EXT: ${{ matrix.runner == 'windows-latest' && 'ps1' || 'sh' }}
SETUP_SCRIPT_SOURCE: ${{ matrix.runner == 'windows-latest' && './' || 'source ' }}
USER_SCOPE_PARENT_DIR: ${{ matrix.runner == 'windows-latest' && '$env:userprofile' || '$HOME' }}
VALIDATE_LAST_EXIT: ${{ matrix.runner == 'windows-latest' && './share/spack/qa/validate_last_exit.ps1' || '' }}
run: |
${{ env.SETUP_SCRIPT_SOURCE }}share/spack/setup-env.${{ env.SETUP_SCRIPT_EXT }}
source share/spack/setup-env.sh
export PATH=/usr/local/opt/bison@2.7/bin:$PATH
spack bootstrap disable github-actions-v0.5
spack bootstrap disable github-actions-v0.4
spack external find --not-buildable cmake bison
spack -d solve zlib
${{ env.VALIDATE_LAST_EXIT }}
tree ${{ env.USER_SCOPE_PARENT_DIR }}/.spack/bootstrap/store/
tree ~/.spack/bootstrap/store/
gnupg-sources:
runs-on: ${{ matrix.runner }}
macos-clingo-binaries:
runs-on: ${{ matrix.macos-version }}
strategy:
matrix:
runner: [ 'macos-13', 'macos-14', "ubuntu-latest" ]
macos-version: ['macos-11', 'macos-12']
steps:
- name: Setup macOS
if: ${{ matrix.runner != 'ubuntu-latest' }}
- name: Install dependencies
run: |
brew install tree gawk
sudo rm -rf $(command -v gpg gpg2)
- name: Setup Ubuntu
if: ${{ matrix.runner == 'ubuntu-latest' }}
run: sudo rm -rf $(command -v gpg gpg2 patchelf)
brew install tree
- name: Checkout
uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
- name: Bootstrap clingo
run: |
set -ex
for ver in '3.7' '3.8' '3.9' '3.10' '3.11' ; do
not_found=1
ver_dir="$(find $RUNNER_TOOL_CACHE/Python -wholename "*/${ver}.*/*/bin" | grep . || true)"
echo "Testing $ver_dir"
if [[ -d "$ver_dir" ]] ; then
if $ver_dir/python --version ; then
export PYTHON="$ver_dir/python"
not_found=0
old_path="$PATH"
export PATH="$ver_dir:$PATH"
./bin/spack-tmpconfig -b ./.github/workflows/bootstrap-test.sh
export PATH="$old_path"
fi
fi
# NOTE: test all pythons that exist, not all do on 12
done
ubuntu-clingo-binaries:
runs-on: ubuntu-20.04
steps:
- name: Checkout
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- name: Setup repo
run: |
git --version
. .github/workflows/setup_git.sh
- name: Bootstrap clingo
run: |
set -ex
for ver in '3.7' '3.8' '3.9' '3.10' '3.11' ; do
not_found=1
ver_dir="$(find $RUNNER_TOOL_CACHE/Python -wholename "*/${ver}.*/*/bin" | grep . || true)"
echo "Testing $ver_dir"
if [[ -d "$ver_dir" ]] ; then
if $ver_dir/python --version ; then
export PYTHON="$ver_dir/python"
not_found=0
old_path="$PATH"
export PATH="$ver_dir:$PATH"
./bin/spack-tmpconfig -b ./.github/workflows/bootstrap-test.sh
export PATH="$old_path"
fi
fi
if (($not_found)) ; then
echo Required python version $ver not found in runner!
exit 1
fi
done
ubuntu-gnupg-binaries:
runs-on: ubuntu-latest
container: "ubuntu:latest"
steps:
- name: Install dependencies
env:
DEBIAN_FRONTEND: noninteractive
run: |
apt-get update -y && apt-get upgrade -y
apt-get install -y \
bzip2 curl file g++ gcc patchelf gfortran git gzip \
make patch unzip xz-utils python3 python3-dev tree
- name: Checkout
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- name: Setup non-root user
run: |
# See [1] below
git config --global --add safe.directory /__w/spack/spack
useradd spack-test && mkdir -p ~spack-test
chown -R spack-test . ~spack-test
- name: Setup repo
shell: runuser -u spack-test -- bash {0}
run: |
git --version
. .github/workflows/setup_git.sh
- name: Bootstrap GnuPG
shell: runuser -u spack-test -- bash {0}
run: |
source share/spack/setup-env.sh
spack bootstrap disable github-actions-v0.4
spack bootstrap disable spack-install
spack -d gpg list
tree ~/.spack/bootstrap/store/
ubuntu-gnupg-sources:
runs-on: ubuntu-latest
container: "ubuntu:latest"
steps:
- name: Install dependencies
env:
DEBIAN_FRONTEND: noninteractive
run: |
apt-get update -y && apt-get upgrade -y
apt-get install -y \
bzip2 curl file g++ gcc patchelf gfortran git gzip \
make patch unzip xz-utils python3 python3-dev tree \
gawk
- name: Checkout
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- name: Setup non-root user
run: |
# See [1] below
git config --global --add safe.directory /__w/spack/spack
useradd spack-test && mkdir -p ~spack-test
chown -R spack-test . ~spack-test
- name: Setup repo
shell: runuser -u spack-test -- bash {0}
run: |
git --version
. .github/workflows/setup_git.sh
- name: Bootstrap GnuPG
shell: runuser -u spack-test -- bash {0}
run: |
source share/spack/setup-env.sh
spack solve zlib
spack bootstrap disable github-actions-v0.5
spack bootstrap disable github-actions-v0.4
spack -d gpg list
tree ~/.spack/bootstrap/store/
macos-gnupg-binaries:
runs-on: macos-latest
steps:
- name: Install dependencies
run: |
brew install tree
# Remove GnuPG since we want to bootstrap it
sudo rm -rf /usr/local/bin/gpg
- name: Checkout
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
- name: Bootstrap GnuPG
run: |
source share/spack/setup-env.sh
spack bootstrap disable github-actions-v0.4
spack bootstrap disable spack-install
spack -d gpg list
tree ~/.spack/bootstrap/store/
macos-gnupg-sources:
runs-on: macos-latest
steps:
- name: Install dependencies
run: |
brew install gawk tree
# Remove GnuPG since we want to bootstrap it
sudo rm -rf /usr/local/bin/gpg
- name: Checkout
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
- name: Bootstrap GnuPG
run: |
source share/spack/setup-env.sh
@@ -108,94 +348,10 @@ jobs:
spack -d gpg list
tree ~/.spack/bootstrap/store/
from-binaries:
runs-on: ${{ matrix.runner }}
strategy:
matrix:
runner: ['macos-13', 'macos-14', "ubuntu-latest", "windows-latest"]
steps:
- name: Setup macOS
if: ${{ matrix.runner != 'ubuntu-latest' && matrix.runner != 'windows-latest'}}
run: |
brew install tree
# Remove GnuPG since we want to bootstrap it
sudo rm -rf /usr/local/bin/gpg
- name: Setup Ubuntu
if: ${{ matrix.runner == 'ubuntu-latest' }}
run: |
sudo rm -rf $(which gpg) $(which gpg2) $(which patchelf)
- name: Setup Windows
if: ${{ matrix.runner == 'windows-latest' }}
run: |
Remove-Item -Path (Get-Command gpg).Path
Remove-Item -Path (Get-Command file).Path
- name: Checkout
uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
with:
fetch-depth: 0
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
with:
python-version: |
3.8
3.9
3.10
3.11
3.12
- name: Set bootstrap sources
env:
SETUP_SCRIPT_EXT: ${{ matrix.runner == 'windows-latest' && 'ps1' || 'sh' }}
SETUP_SCRIPT_SOURCE: ${{ matrix.runner == 'windows-latest' && './' || 'source ' }}
run: |
${{ env.SETUP_SCRIPT_SOURCE }}share/spack/setup-env.${{ env.SETUP_SCRIPT_EXT }}
spack bootstrap disable github-actions-v0.4
- name: Disable from source bootstrap
if: ${{ matrix.runner != 'windows-latest' }}
run: |
source share/spack/setup-env.sh
spack bootstrap disable spack-install
- name: Bootstrap clingo
# No binary clingo on Windows yet
if: ${{ matrix.runner != 'windows-latest' }}
run: |
set -e
for ver in '3.8' '3.9' '3.10' '3.11' '3.12' ; do
not_found=1
ver_dir="$(find $RUNNER_TOOL_CACHE/Python -wholename "*/${ver}.*/*/bin" | grep . || true)"
if [[ -d "$ver_dir" ]] ; then
echo "Testing $ver_dir"
if $ver_dir/python --version ; then
export PYTHON="$ver_dir/python"
not_found=0
old_path="$PATH"
export PATH="$ver_dir:$PATH"
./bin/spack-tmpconfig -b ./.github/workflows/bin/bootstrap-test.sh
export PATH="$old_path"
fi
fi
if (($not_found)) ; then
echo Required python version $ver not found in runner!
exit 1
fi
done
- name: Bootstrap GnuPG
env:
SETUP_SCRIPT_EXT: ${{ matrix.runner == 'windows-latest' && 'ps1' || 'sh' }}
SETUP_SCRIPT_SOURCE: ${{ matrix.runner == 'windows-latest' && './' || 'source ' }}
USER_SCOPE_PARENT_DIR: ${{ matrix.runner == 'windows-latest' && '$env:userprofile' || '$HOME' }}
VALIDATE_LAST_EXIT: ${{ matrix.runner == 'windows-latest' && './share/spack/qa/validate_last_exit.ps1' || '' }}
run: |
${{ env.SETUP_SCRIPT_SOURCE }}share/spack/setup-env.${{ env.SETUP_SCRIPT_EXT }}
spack -d gpg list
${{ env.VALIDATE_LAST_EXIT }}
tree ${{ env.USER_SCOPE_PARENT_DIR }}/.spack/bootstrap/store/
- name: Bootstrap File
env:
SETUP_SCRIPT_EXT: ${{ matrix.runner == 'windows-latest' && 'ps1' || 'sh' }}
SETUP_SCRIPT_SOURCE: ${{ matrix.runner == 'windows-latest' && './' || 'source ' }}
USER_SCOPE_PARENT_DIR: ${{ matrix.runner == 'windows-latest' && '$env:userprofile' || '$HOME' }}
VALIDATE_LAST_EXIT: ${{ matrix.runner == 'windows-latest' && './share/spack/qa/validate_last_exit.ps1' || '' }}
run: |
${{ env.SETUP_SCRIPT_SOURCE }}share/spack/setup-env.${{ env.SETUP_SCRIPT_EXT }}
spack -d python share/spack/qa/bootstrap-file.py
${{ env.VALIDATE_LAST_EXIT }}
tree ${{ env.USER_SCOPE_PARENT_DIR }}/.spack/bootstrap/store/
# [1] Distros that have patched git to resolve CVE-2022-24765 (e.g. Ubuntu patching v2.25.1)
# introduce breaking behaviorso we have to set `safe.directory` in gitconfig ourselves.
# See:
# - https://github.blog/2022-04-12-git-security-vulnerability-announced/
# - https://github.com/actions/checkout/issues/760
# - http://changelogs.ubuntu.com/changelogs/pool/main/g/git/git_2.25.1-1ubuntu3.3/changelog

View File

@@ -40,22 +40,22 @@ jobs:
# 1: Platforms to build for
# 2: Base image (e.g. ubuntu:22.04)
dockerfile: [[amazon-linux, 'linux/amd64,linux/arm64', 'amazonlinux:2'],
[centos-stream9, 'linux/amd64,linux/arm64,linux/ppc64le', 'centos:stream9'],
[centos7, 'linux/amd64,linux/arm64,linux/ppc64le', 'centos:7'],
[centos-stream, 'linux/amd64,linux/arm64,linux/ppc64le', 'centos:stream'],
[leap15, 'linux/amd64,linux/arm64,linux/ppc64le', 'opensuse/leap:15'],
[ubuntu-focal, 'linux/amd64,linux/arm64,linux/ppc64le', 'ubuntu:20.04'],
[ubuntu-jammy, 'linux/amd64,linux/arm64,linux/ppc64le', 'ubuntu:22.04'],
[ubuntu-noble, 'linux/amd64,linux/arm64,linux/ppc64le', 'ubuntu:24.04'],
[almalinux8, 'linux/amd64,linux/arm64,linux/ppc64le', 'almalinux:8'],
[almalinux9, 'linux/amd64,linux/arm64,linux/ppc64le', 'almalinux:9'],
[rockylinux8, 'linux/amd64,linux/arm64', 'rockylinux:8'],
[rockylinux9, 'linux/amd64,linux/arm64', 'rockylinux:9'],
[fedora39, 'linux/amd64,linux/arm64,linux/ppc64le', 'fedora:39'],
[fedora40, 'linux/amd64,linux/arm64,linux/ppc64le', 'fedora:40']]
[fedora37, 'linux/amd64,linux/arm64,linux/ppc64le', 'fedora:37'],
[fedora38, 'linux/amd64,linux/arm64,linux/ppc64le', 'fedora:38']]
name: Build ${{ matrix.dockerfile[0] }}
if: github.repository == 'spack/spack'
steps:
- name: Checkout
uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
- uses: docker/metadata-action@8e5442c4ef9f78752691e2d8f8d19755c6f78e81
id: docker_meta
@@ -76,7 +76,7 @@ jobs:
env:
SPACK_YAML_OS: "${{ matrix.dockerfile[2] }}"
run: |
.github/workflows/bin/generate_spack_yaml_containerize.sh
.github/workflows/generate_spack_yaml_containerize.sh
. share/spack/setup-env.sh
mkdir -p dockerfiles/${{ matrix.dockerfile[0] }}
spack containerize --last-stage=bootstrap | tee dockerfiles/${{ matrix.dockerfile[0] }}/Dockerfile
@@ -87,19 +87,19 @@ jobs:
fi
- name: Upload Dockerfile
uses: actions/upload-artifact@50769540e7f4bd5e21e526ee35c689e35e0d6874
uses: actions/upload-artifact@a8a3f3ad30e3422c9c7b888a15615d19a852ae32
with:
name: dockerfiles_${{ matrix.dockerfile[0] }}
name: dockerfiles
path: dockerfiles
- name: Set up QEMU
uses: docker/setup-qemu-action@49b3bc8e6bdd4a60e6116a5414239cba5943d3cf
uses: docker/setup-qemu-action@68827325e0b33c7199eb31dd4e31fbe9023e06e3
- name: Set up Docker Buildx
uses: docker/setup-buildx-action@988b5a0280414f521da01fcc63a27aeeb4b104db
uses: docker/setup-buildx-action@2b51285047da1547ffb1b2203d8be4c0af6b1f20
- name: Log in to GitHub Container Registry
uses: docker/login-action@9780b0c442fbb1117ed29e0efdff1e18412f7567
uses: docker/login-action@e92390c5fb421da1463c202d546fed0ec5c39f20
with:
registry: ghcr.io
username: ${{ github.actor }}
@@ -107,27 +107,16 @@ jobs:
- name: Log in to DockerHub
if: github.event_name != 'pull_request'
uses: docker/login-action@9780b0c442fbb1117ed29e0efdff1e18412f7567
uses: docker/login-action@e92390c5fb421da1463c202d546fed0ec5c39f20
with:
username: ${{ secrets.DOCKERHUB_USERNAME }}
password: ${{ secrets.DOCKERHUB_TOKEN }}
- name: Build & Deploy ${{ matrix.dockerfile[0] }}
uses: docker/build-push-action@5cd11c3a4ced054e52742c5fd54dca954e0edd85
uses: docker/build-push-action@2cdde995de11925a030ce8070c3d77a52ffcf1c0
with:
context: dockerfiles/${{ matrix.dockerfile[0] }}
platforms: ${{ matrix.dockerfile[1] }}
push: ${{ github.event_name != 'pull_request' }}
tags: ${{ steps.docker_meta.outputs.tags }}
labels: ${{ steps.docker_meta.outputs.labels }}
merge-dockerfiles:
runs-on: ubuntu-latest
needs: deploy-images
steps:
- name: Merge Artifacts
uses: actions/upload-artifact/merge@50769540e7f4bd5e21e526ee35c689e35e0d6874
with:
name: dockerfiles
pattern: dockerfiles_*
delete-merged: true

View File

@@ -36,7 +36,7 @@ jobs:
core: ${{ steps.filter.outputs.core }}
packages: ${{ steps.filter.outputs.packages }}
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
if: ${{ github.event_name == 'push' }}
with:
fetch-depth: 0
@@ -53,13 +53,6 @@ jobs:
- 'var/spack/repos/builtin/packages/clingo/**'
- 'var/spack/repos/builtin/packages/python/**'
- 'var/spack/repos/builtin/packages/re2c/**'
- 'var/spack/repos/builtin/packages/gnupg/**'
- 'var/spack/repos/builtin/packages/libassuan/**'
- 'var/spack/repos/builtin/packages/libgcrypt/**'
- 'var/spack/repos/builtin/packages/libgpg-error/**'
- 'var/spack/repos/builtin/packages/libksba/**'
- 'var/spack/repos/builtin/packages/npth/**'
- 'var/spack/repos/builtin/packages/pinentry/**'
- 'lib/spack/**'
- 'share/spack/**'
- '.github/workflows/bootstrap.yml'
@@ -84,30 +77,13 @@ jobs:
needs: [ prechecks, changes ]
uses: ./.github/workflows/unit_tests.yaml
secrets: inherit
upload-coverage:
needs: [ unit-tests, prechecks ]
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
with:
fetch-depth: 0
- name: Download coverage files
uses: actions/download-artifact@fa0a91b85d4f404e444e00e005971372dc801d16
with:
pattern: coverage-*
path: coverage
merge-multiple: true
- run: pip install --upgrade coverage
- run: ls -la coverage
- run: coverage combine -a coverage/.coverage*
- run: coverage xml
- name: "Upload coverage"
uses: codecov/codecov-action@e28ff129e5465c2c0dcc6f003fc735cb6ae0c673
with:
token: ${{ secrets.CODECOV_TOKEN }}
verbose: true
windows:
if: ${{ github.repository == 'spack/spack' && needs.changes.outputs.core == 'true' }}
needs: [ prechecks ]
uses: ./.github/workflows/windows_python.yml
secrets: inherit
all:
needs: [ upload-coverage, bootstrap ]
needs: [ windows, unit-tests, bootstrap ]
runs-on: ubuntu-latest
steps:
- name: Success

8
.github/workflows/install_spack.sh vendored Executable file
View File

@@ -0,0 +1,8 @@
#!/usr/bin/env sh
. share/spack/setup-env.sh
echo -e "config:\n build_jobs: 2" > etc/spack/config.yaml
spack config add "packages:all:target:[x86_64]"
spack compiler find
spack compiler info apple-clang
spack debug report
spack solve zlib

View File

@@ -14,10 +14,10 @@ jobs:
build-paraview-deps:
runs-on: windows-latest
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: 3.9
- name: Install Python packages

View File

@@ -1,7 +0,0 @@
black==24.8.0
clingo==5.7.1
flake8==7.1.1
isort==5.13.2
mypy==1.8.0
types-six==1.16.21.20240513
vermin==1.6.0

View File

@@ -0,0 +1,7 @@
black==24.3.0
clingo==5.7.1
flake8==7.0.0
isort==5.13.2
mypy==1.8.0
types-six==1.16.21.9
vermin==1.6.0

View File

@@ -16,34 +16,45 @@ jobs:
matrix:
os: [ubuntu-latest]
python-version: ['3.7', '3.8', '3.9', '3.10', '3.11', '3.12']
concretizer: ['clingo']
on_develop:
- ${{ github.ref == 'refs/heads/develop' }}
include:
- python-version: '3.11'
os: ubuntu-latest
concretizer: original
on_develop: ${{ github.ref == 'refs/heads/develop' }}
- python-version: '3.6'
os: ubuntu-20.04
concretizer: clingo
on_develop: ${{ github.ref == 'refs/heads/develop' }}
exclude:
- python-version: '3.7'
os: ubuntu-latest
concretizer: 'clingo'
on_develop: false
- python-version: '3.8'
os: ubuntu-latest
concretizer: 'clingo'
on_develop: false
- python-version: '3.9'
os: ubuntu-latest
concretizer: 'clingo'
on_develop: false
- python-version: '3.10'
os: ubuntu-latest
concretizer: 'clingo'
on_develop: false
- python-version: '3.11'
os: ubuntu-latest
concretizer: 'clingo'
on_develop: false
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: ${{ matrix.python-version }}
- name: Install System packages
@@ -61,7 +72,7 @@ jobs:
run: |
# Need this for the git tests to succeed.
git --version
. .github/workflows/bin/setup_git.sh
. .github/workflows/setup_git.sh
- name: Bootstrap clingo
if: ${{ matrix.concretizer == 'clingo' }}
env:
@@ -74,25 +85,25 @@ jobs:
- name: Run unit tests
env:
SPACK_PYTHON: python
SPACK_TEST_SOLVER: ${{ matrix.concretizer }}
SPACK_TEST_PARALLEL: 2
COVERAGE: true
COVERAGE_FILE: coverage/.coverage-${{ matrix.os }}-python${{ matrix.python-version }}
UNIT_TEST_COVERAGE: ${{ matrix.python-version == '3.11' }}
run: |
share/spack/qa/run-unit-tests
- uses: actions/upload-artifact@50769540e7f4bd5e21e526ee35c689e35e0d6874
- uses: codecov/codecov-action@c16abc29c95fcf9174b58eb7e1abf4c866893bc8
with:
name: coverage-${{ matrix.os }}-python${{ matrix.python-version }}
path: coverage
include-hidden-files: true
flags: unittests,linux,${{ matrix.concretizer }}
token: ${{ secrets.CODECOV_TOKEN }}
verbose: true
# Test shell integration
shell:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: '3.11'
- name: Install System packages
@@ -107,17 +118,17 @@ jobs:
run: |
# Need this for the git tests to succeed.
git --version
. .github/workflows/bin/setup_git.sh
. .github/workflows/setup_git.sh
- name: Run shell tests
env:
COVERAGE: true
run: |
share/spack/qa/run-shell-tests
- uses: actions/upload-artifact@50769540e7f4bd5e21e526ee35c689e35e0d6874
- uses: codecov/codecov-action@c16abc29c95fcf9174b58eb7e1abf4c866893bc8
with:
name: coverage-shell
path: coverage
include-hidden-files: true
flags: shelltests,linux
token: ${{ secrets.CODECOV_TOKEN }}
verbose: true
# Test RHEL8 UBI with platform Python. This job is run
# only on PRs modifying core Spack
@@ -130,13 +141,13 @@ jobs:
dnf install -y \
bzip2 curl file gcc-c++ gcc gcc-gfortran git gnupg2 gzip \
make patch tcl unzip which xz
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
- name: Setup repo and non-root user
run: |
git --version
git config --global --add safe.directory /__w/spack/spack
git fetch --unshallow
. .github/workflows/bin/setup_git.sh
. .github/workflows/setup_git.sh
useradd spack-test
chown -R spack-test .
- name: Run unit tests
@@ -149,10 +160,10 @@ jobs:
clingo-cffi:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: '3.11'
- name: Install System packages
@@ -167,30 +178,30 @@ jobs:
run: |
# Need this for the git tests to succeed.
git --version
. .github/workflows/bin/setup_git.sh
. .github/workflows/setup_git.sh
- name: Run unit tests (full suite with coverage)
env:
COVERAGE: true
COVERAGE_FILE: coverage/.coverage-clingo-cffi
SPACK_TEST_SOLVER: clingo
run: |
share/spack/qa/run-unit-tests
- uses: actions/upload-artifact@50769540e7f4bd5e21e526ee35c689e35e0d6874
- uses: codecov/codecov-action@c16abc29c95fcf9174b58eb7e1abf4c866893bc8
with:
name: coverage-clingo-cffi
path: coverage
include-hidden-files: true
flags: unittests,linux,clingo
token: ${{ secrets.CODECOV_TOKEN }}
verbose: true
# Run unit tests on MacOS
macos:
runs-on: ${{ matrix.os }}
strategy:
matrix:
os: [macos-13, macos-14]
os: [macos-latest, macos-14]
python-version: ["3.11"]
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: ${{ matrix.python-version }}
- name: Install Python packages
@@ -202,49 +213,18 @@ jobs:
brew install dash fish gcc gnupg2 kcov
- name: Run unit tests
env:
SPACK_TEST_SOLVER: clingo
SPACK_TEST_PARALLEL: 4
COVERAGE_FILE: coverage/.coverage-${{ matrix.os }}-python${{ matrix.python-version }}
run: |
git --version
. .github/workflows/bin/setup_git.sh
. .github/workflows/setup_git.sh
. share/spack/setup-env.sh
$(which spack) bootstrap disable spack-install
$(which spack) solve zlib
common_args=(--dist loadfile --tx '4*popen//python=./bin/spack-tmpconfig python -u ./bin/spack python' -x)
$(which spack) unit-test --verbose --cov --cov-config=pyproject.toml --cov-report=xml:coverage.xml "${common_args[@]}"
- uses: actions/upload-artifact@50769540e7f4bd5e21e526ee35c689e35e0d6874
- uses: codecov/codecov-action@c16abc29c95fcf9174b58eb7e1abf4c866893bc8
with:
name: coverage-${{ matrix.os }}-python${{ matrix.python-version }}
path: coverage
include-hidden-files: true
# Run unit tests on Windows
windows:
defaults:
run:
shell:
powershell Invoke-Expression -Command "./share/spack/qa/windows_test_setup.ps1"; {0}
runs-on: windows-latest
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
with:
fetch-depth: 0
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
with:
python-version: 3.9
- name: Install Python packages
run: |
python -m pip install --upgrade pip pywin32 setuptools pytest-cov clingo
- name: Create local develop
run: |
./.github/workflows/bin/setup_git.ps1
- name: Unit Test
env:
COVERAGE_FILE: coverage/.coverage-windows
run: |
spack unit-test -x --verbose --cov --cov-config=pyproject.toml
./share/spack/qa/validate_last_exit.ps1
- uses: actions/upload-artifact@50769540e7f4bd5e21e526ee35c689e35e0d6874
with:
name: coverage-windows
path: coverage
include-hidden-files: true
flags: unittests,macos
token: ${{ secrets.CODECOV_TOKEN }}
verbose: true

View File

@@ -18,15 +18,15 @@ jobs:
validate:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: '3.11'
cache: 'pip'
- name: Install Python Packages
run: |
pip install --upgrade pip setuptools
pip install -r .github/workflows/requirements/style/requirements.txt
pip install -r .github/workflows/style/requirements.txt
- name: vermin (Spack's Core)
run: vermin --backport importlib --backport argparse --violations --backport typing -t=3.6- -vvv lib/spack/spack/ lib/spack/llnl/ bin/
- name: vermin (Repositories)
@@ -35,22 +35,22 @@ jobs:
style:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- uses: actions/setup-python@f677139bbe7f9c59b41e40162b753c062f5d49a3
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: '3.11'
cache: 'pip'
- name: Install Python packages
run: |
pip install --upgrade pip setuptools
pip install -r .github/workflows/requirements/style/requirements.txt
pip install -r .github/workflows/style/requirements.txt
- name: Setup git configuration
run: |
# Need this for the git tests to succeed.
git --version
. .github/workflows/bin/setup_git.sh
. .github/workflows/setup_git.sh
- name: Run style tests
run: |
share/spack/qa/run-style-tests
@@ -70,13 +70,13 @@ jobs:
dnf install -y \
bzip2 curl file gcc-c++ gcc gcc-gfortran git gnupg2 gzip \
make patch tcl unzip which xz
- uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
- name: Setup repo and non-root user
run: |
git --version
git config --global --add safe.directory /__w/spack/spack
git fetch --unshallow
. .github/workflows/bin/setup_git.sh
. .github/workflows/setup_git.sh
useradd spack-test
chown -R spack-test .
- name: Bootstrap Spack development environment
@@ -87,62 +87,3 @@ jobs:
spack -d bootstrap now --dev
spack style -t black
spack unit-test -V
import-check:
runs-on: ubuntu-latest
steps:
- uses: julia-actions/setup-julia@v2
with:
version: '1.10'
- uses: julia-actions/cache@v2
# PR: use the base of the PR as the old commit
- name: Checkout PR base commit
if: github.event_name == 'pull_request'
uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
with:
ref: ${{ github.event.pull_request.base.sha }}
path: old
# not a PR: use the previous commit as the old commit
- name: Checkout previous commit
if: github.event_name != 'pull_request'
uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
with:
fetch-depth: 2
path: old
- name: Checkout previous commit
if: github.event_name != 'pull_request'
run: git -C old reset --hard HEAD^
- name: Checkout new commit
uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
with:
path: new
- name: Install circular import checker
uses: actions/checkout@692973e3d937129bcbf40652eb9f2f61becf3332
with:
repository: haampie/circular-import-fighter
ref: 555519c6fd5564fd2eb844e7b87e84f4d12602e2
path: circular-import-fighter
- name: Install dependencies
working-directory: circular-import-fighter
run: make -j dependencies
- name: Import cycles before
working-directory: circular-import-fighter
run: make SPACK_ROOT=../old && cp solution solution.old
- name: Import cycles after
working-directory: circular-import-fighter
run: make clean-graph && make SPACK_ROOT=../new && cp solution solution.new
- name: Compare import cycles
working-directory: circular-import-fighter
run: |
edges_before="$(grep -oP 'edges to delete: \K\d+' solution.old)"
edges_after="$(grep -oP 'edges to delete: \K\d+' solution.new)"
if [ "$edges_after" -gt "$edges_before" ]; then
printf '\033[1;31mImport check failed: %s imports need to be deleted, ' "$edges_after"
printf 'previously this was %s\033[0m\n' "$edges_before"
printf 'Compare \033[1;97m"Import cycles before"\033[0m and '
printf '\033[1;97m"Import cycles after"\033[0m to see problematic imports.\n'
exit 1
else
printf '\033[1;32mImport check passed: %s <= %s\033[0m\n' "$edges_after" "$edges_before"
fi

83
.github/workflows/windows_python.yml vendored Normal file
View File

@@ -0,0 +1,83 @@
name: windows
on:
workflow_call:
concurrency:
group: windows-${{github.ref}}-${{github.event.pull_request.number || github.run_number}}
cancel-in-progress: true
defaults:
run:
shell:
powershell Invoke-Expression -Command "./share/spack/qa/windows_test_setup.ps1"; {0}
jobs:
unit-tests:
runs-on: windows-latest
steps:
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: 3.9
- name: Install Python packages
run: |
python -m pip install --upgrade pip pywin32 setuptools pytest-cov clingo
- name: Create local develop
run: |
./.github/workflows/setup_git.ps1
- name: Unit Test
run: |
spack unit-test -x --verbose --cov --cov-config=pyproject.toml --ignore=lib/spack/spack/test/cmd
./share/spack/qa/validate_last_exit.ps1
coverage combine -a
coverage xml
- uses: codecov/codecov-action@c16abc29c95fcf9174b58eb7e1abf4c866893bc8
with:
flags: unittests,windows
token: ${{ secrets.CODECOV_TOKEN }}
verbose: true
unit-tests-cmd:
runs-on: windows-latest
steps:
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: 3.9
- name: Install Python packages
run: |
python -m pip install --upgrade pip pywin32 setuptools coverage pytest-cov clingo
- name: Create local develop
run: |
./.github/workflows/setup_git.ps1
- name: Command Unit Test
run: |
spack unit-test -x --verbose --cov --cov-config=pyproject.toml lib/spack/spack/test/cmd
./share/spack/qa/validate_last_exit.ps1
coverage combine -a
coverage xml
- uses: codecov/codecov-action@c16abc29c95fcf9174b58eb7e1abf4c866893bc8
with:
flags: unittests,windows
token: ${{ secrets.CODECOV_TOKEN }}
verbose: true
build-abseil:
runs-on: windows-latest
steps:
- uses: actions/checkout@9bb56186c3b09b4f86b1c65136769dd318469633
with:
fetch-depth: 0
- uses: actions/setup-python@82c7e631bb3cdc910f68e0081d67478d79c6982d
with:
python-version: 3.9
- name: Install Python packages
run: |
python -m pip install --upgrade pip pywin32 setuptools coverage
- name: Build Test
run: |
spack compiler find
spack -d external find cmake ninja
spack -d install abseil-cpp

View File

@@ -1,369 +1,3 @@
# v0.22.0 (2024-05-12)
`v0.22.0` is a major feature release.
## Features in this release
1. **Compiler dependencies**
We are in the process of making compilers proper dependencies in Spack, and a number
of changes in `v0.22` support that effort. You may notice nodes in your dependency
graphs for compiler runtime libraries like `gcc-runtime` or `libgfortran`, and you
may notice that Spack graphs now include `libc`. We've also begun moving compiler
configuration from `compilers.yaml` to `packages.yaml` to make it consistent with
other externals. We are trying to do this with the least disruption possible, so
your existing `compilers.yaml` files should still work. We expect to be done with
this transition by the `v0.23` release in November.
* #41104: Packages compiled with `%gcc` on Linux, macOS and FreeBSD now depend on a
new package `gcc-runtime`, which contains a copy of the shared compiler runtime
libraries. This enables gcc runtime libraries to be installed and relocated when
using a build cache. When building minimal Spack-generated container images it is
no longer necessary to install libgfortran, libgomp etc. using the system package
manager.
* #42062: Packages compiled with `%oneapi` now depend on a new package
`intel-oneapi-runtime`. This is similar to `gcc-runtime`, and the runtimes can
provide virtuals and compilers can inject dependencies on virtuals into compiled
packages. This allows us to model library soname compatibility and allows
compilers like `%oneapi` to provide virtuals like `sycl` (which can also be
provided by standalone libraries). Note that until we have an agreement in place
with intel, Intel packages are marked `redistribute(source=False, binary=False)`
and must be downloaded outside of Spack.
* #43272: changes to the optimization criteria of the solver improve the hit-rate of
buildcaches by a fair amount. The solver more relaxed compatibility rules and will
not try to strictly match compilers or targets of reused specs. Users can still
enforce the previous strict behavior with `require:` sections in `packages.yaml`.
Note that to enforce correct linking, Spack will *not* reuse old `%gcc` and
`%oneapi` specs that do not have the runtime libraries as a dependency.
* #43539: Spack will reuse specs built with compilers that are *not* explicitly
configured in `compilers.yaml`. Because we can now keep runtime libraries in build
cache, we do not require you to also have a local configured compiler to *use* the
runtime libraries. This improves reuse in buildcaches and avoids conflicts with OS
updates that happen underneath Spack.
* #43190: binary compatibility on `linux` is now based on the `libc` version,
instead of on the `os` tag. Spack builds now detect the host `libc` (`glibc` or
`musl`) and add it as an implicit external node in the dependency graph. Binaries
with a `libc` with the same name and a version less than or equal to that of the
detected `libc` can be reused. This is only on `linux`, not `macos` or `Windows`.
* #43464: each package that can provide a compiler is now detectable using `spack
external find`. External packages defining compiler paths are effectively used as
compilers, and `spack external find -t compiler` can be used as a substitute for
`spack compiler find`. More details on this transition are in
[the docs](https://spack.readthedocs.io/en/latest/getting_started.html#manual-compiler-configuration)
2. **Improved `spack find` UI for Environments**
If you're working in an enviroment, you likely care about:
* What are the roots
* Which ones are installed / not installed
* What's been added that still needs to be concretized
We've tweaked `spack find` in environments to show this information much more
clearly. Installation status is shown next to each root, so you can see what is
installed. Roots are also shown in bold in the list of installed packages. There is
also a new option for `spack find -r` / `--only-roots` that will only show env
roots, if you don't want to look at all the installed specs.
More details in #42334.
3. **Improved command-line string quoting**
We are making some breaking changes to how Spack parses specs on the CLI in order to
respect shell quoting instead of trying to fight it. If you (sadly) had to write
something like this on the command line:
```
spack install zlib cflags=\"-O2 -g\"
```
That will now result in an error, but you can now write what you probably expected
to work in the first place:
```
spack install zlib cflags="-O2 -g"
```
Quoted can also now include special characters, so you can supply flags like:
```
spack intall zlib ldflags='-Wl,-rpath=$ORIGIN/_libs'
```
To reduce ambiguity in parsing, we now require that you *not* put spaces around `=`
and `==` when for flags or variants. This would not have broken before but will now
result in an error:
```
spack install zlib cflags = "-O2 -g"
```
More details and discussion in #30634.
4. **Revert default `spack install` behavior to `--reuse`**
We changed the default concretizer behavior from `--reuse` to `--reuse-deps` in
#30990 (in `v0.20`), which meant that *every* `spack install` invocation would
attempt to build a new version of the requested package / any environment roots.
While this is a common ask for *upgrading* and for *developer* workflows, we don't
think it should be the default for a package manager.
We are going to try to stick to this policy:
1. Prioritize reuse and build as little as possible by default.
2. Only upgrade or install duplicates if they are explicitly asked for, or if there
is a known security issue that necessitates an upgrade.
With the install command you now have three options:
* `--reuse` (default): reuse as many existing installations as possible.
* `--reuse-deps` / `--fresh-roots`: upgrade (freshen) roots but reuse dependencies if possible.
* `--fresh`: install fresh versions of requested packages (roots) and their dependencies.
We've also introduced `--fresh-roots` as an alias for `--reuse-deps` to make it more clear
that it may give you fresh versions. More details in #41302 and #43988.
5. **More control over reused specs**
You can now control which packages to reuse and how. There is a new
`concretizer:reuse` config option, which accepts the following properties:
- `roots`: `true` to reuse roots, `false` to reuse just dependencies
- `exclude`: list of constraints used to select which specs *not* to reuse
- `include`: list of constraints used to select which specs *to* reuse
- `from`: list of sources for reused specs (some combination of `local`,
`buildcache`, or `external`)
For example, to reuse only specs compiled with GCC, you could write:
```yaml
concretizer:
reuse:
roots: true
include:
- "%gcc"
```
Or, if `openmpi` must be used from externals, and it must be the only external used:
```yaml
concretizer:
reuse:
roots: true
from:
- type: local
exclude: ["openmpi"]
- type: buildcache
exclude: ["openmpi"]
- type: external
include: ["openmpi"]
```
6. **New `redistribute()` directive**
Some packages can't be redistributed in source or binary form. We need an explicit
way to say that in a package.
Now there is a `redistribute()` directive so that package authors can write:
```python
class MyPackage(Package):
redistribute(source=False, binary=False)
```
Like other directives, this works with `when=`:
```python
class MyPackage(Package):
# 12.0 and higher are proprietary
redistribute(source=False, binary=False, when="@12.0:")
# can't redistribute when we depend on some proprietary dependency
redistribute(source=False, binary=False, when="^proprietary-dependency")
```
More in #20185.
7. **New `conflict:` and `prefer:` syntax for package preferences**
Previously, you could express conflicts and preferences in `packages.yaml` through
some contortions with `require:`:
```yaml
packages:
zlib-ng:
require:
- one_of: ["%clang", "@:"] # conflict on %clang
- any_of: ["+shared", "@:"] # strong preference for +shared
```
You can now use `require:` and `prefer:` for a much more readable configuration:
```yaml
packages:
zlib-ng:
conflict:
- "%clang"
prefer:
- "+shared"
```
See [the documentation](https://spack.readthedocs.io/en/latest/packages_yaml.html#conflicts-and-strong-preferences)
and #41832 for more details.
8. **`include_concrete` in environments**
You may want to build on the *concrete* contents of another environment without
changing that environment. You can now include the concrete specs from another
environment's `spack.lock` with `include_concrete`:
```yaml
spack:
specs: []
concretizer:
unify: true
include_concrete:
- /path/to/environment1
- /path/to/environment2
```
Now, when *this* environment is concretized, it will bring in the already concrete
specs from `environment1` and `environment2`, and build on top of them without
changing them. This is useful if you have phased deployments, where old deployments
should not be modified but you want to use as many of them as possible. More details
in #33768.
9. **`python-venv` isolation**
Spack has unique requirements for Python because it:
1. installs every package in its own independent directory, and
2. allows users to register *external* python installations.
External installations may contain their own installed packages that can interfere
with Spack installations, and some distributions (Debian and Ubuntu) even change the
`sysconfig` in ways that alter the installation layout of installed Python packages
(e.g., with the addition of a `/local` prefix on Debian or Ubuntu). To isolate Spack
from these and other issues, we now insert a small `python-venv` package in between
`python` and packages that need to install Python code. This isolates Spack's build
environment, isolates Spack from any issues with an external python, and resolves a
large number of issues we've had with Python installations.
See #40773 for further details.
## New commands, options, and directives
* Allow packages to be pushed to build cache after install from source (#42423)
* `spack develop`: stage build artifacts in same root as non-dev builds #41373
* Don't delete `spack develop` build artifacts after install (#43424)
* `spack find`: add options for local/upstream only (#42999)
* `spack logs`: print log files for packages (either partially built or installed) (#42202)
* `patch`: support reversing patches (#43040)
* `develop`: Add -b/--build-directory option to set build_directory package attribute (#39606)
* `spack list`: add `--namesapce` / `--repo` option (#41948)
* directives: add `checked_by` field to `license()`, add some license checks
* `spack gc`: add options for environments and build dependencies (#41731)
* Add `--create` to `spack env activate` (#40896)
## Performance improvements
* environment.py: fix excessive re-reads (#43746)
* ruamel yaml: fix quadratic complexity bug (#43745)
* Refactor to improve `spec format` speed (#43712)
* Do not acquire a write lock on the env post install if no views (#43505)
* asp.py: fewer calls to `spec.copy()` (#43715)
* spec.py: early return in `__str__`
* avoid `jinja2` import at startup unless needed (#43237)
## Other new features of note
* `archspec`: update to `v0.2.4`: support for Windows, bugfixes for `neoverse-v1` and
`neoverse-v2` detection.
* `spack config get`/`blame`: with no args, show entire config
* `spack env create <env>`: dir if dir-like (#44024)
* ASP-based solver: update os compatibility for macOS (#43862)
* Add handling of custom ssl certs in urllib ops (#42953)
* Add ability to rename environments (#43296)
* Add config option and compiler support to reuse across OS's (#42693)
* Support for prereleases (#43140)
* Only reuse externals when configured (#41707)
* Environments: Add support for including views (#42250)
## Binary caches
* Build cache: make signed/unsigned a mirror property (#41507)
* tools stack
## Removals, deprecations, and syntax changes
* remove `dpcpp` compiler and package (#43418)
* spack load: remove --only argument (#42120)
## Notable Bugfixes
* repo.py: drop deleted packages from provider cache (#43779)
* Allow `+` in module file names (#41999)
* `cmd/python`: use runpy to allow multiprocessing in scripts (#41789)
* Show extension commands with spack -h (#41726)
* Support environment variable expansion inside module projections (#42917)
* Alert user to failed concretizations (#42655)
* shell: fix zsh color formatting for PS1 in environments (#39497)
* spack mirror create --all: include patches (#41579)
## Spack community stats
* 7,994 total packages; 525 since `v0.21.0`
* 178 new Python packages, 5 new R packages
* 358 people contributed to this release
* 344 committers to packages
* 45 committers to core
# v0.21.2 (2024-03-01)
## Bugfixes
- Containerize: accommodate nested or pre-existing spack-env paths (#41558)
- Fix setup-env script, when going back and forth between instances (#40924)
- Fix using fully-qualified namespaces from root specs (#41957)
- Fix a bug when a required provider is requested for multiple virtuals (#42088)
- OCI buildcaches:
- only push in parallel when forking (#42143)
- use pickleable errors (#42160)
- Fix using sticky variants in externals (#42253)
- Fix a rare issue with conditional requirements and multi-valued variants (#42566)
## Package updates
- rust: add v1.75, rework a few variants (#41161,#41903)
- py-transformers: add v4.35.2 (#41266)
- mgard: fix OpenMP on AppleClang (#42933)
# v0.21.1 (2024-01-11)
## New features
- Add support for reading buildcaches created by Spack v0.22 (#41773)
## Bugfixes
- spack graph: fix coloring with environments (#41240)
- spack info: sort variants in --variants-by-name (#41389)
- Spec.format: error on old style format strings (#41934)
- ASP-based solver:
- fix infinite recursion when computing concretization errors (#41061)
- don't error for type mismatch on preferences (#41138)
- don't emit spurious debug output (#41218)
- Improve the error message for deprecated preferences (#41075)
- Fix MSVC preview version breaking clingo build on Windows (#41185)
- Fix multi-word aliases (#41126)
- Add a warning for unconfigured compiler (#41213)
- environment: fix an issue with deconcretization/reconcretization of specs (#41294)
- buildcache: don't error if a patch is missing, when installing from binaries (#41986)
- Multiple improvements to unit-tests (#41215,#41369,#41495,#41359,#41361,#41345,#41342,#41308,#41226)
## Package updates
- root: add a webgui patch to address security issue (#41404)
- BerkeleyGW: update source urls (#38218)
# v0.21.0 (2023-11-11)
`v0.21.0` is a major feature release.

View File

@@ -32,7 +32,7 @@
Spack is a multi-platform package manager that builds and installs
multiple versions and configurations of software. It works on Linux,
macOS, Windows, and many supercomputers. Spack is non-destructive: installing a
macOS, and many supercomputers. Spack is non-destructive: installing a
new version of a package does not break existing installations, so many
configurations of the same package can coexist.
@@ -88,7 +88,7 @@ Resources:
[bridged](https://github.com/matrix-org/matrix-appservice-slack#matrix-appservice-slack) to Slack.
* [**Github Discussions**](https://github.com/spack/spack/discussions):
for Q&A and discussions. Note the pinned discussions for announcements.
* **X**: [@spackpm](https://twitter.com/spackpm). Be sure to
* **Twitter**: [@spackpm](https://twitter.com/spackpm). Be sure to
`@mention` us!
* **Mailing list**: [groups.google.com/d/forum/spack](https://groups.google.com/d/forum/spack):
only for announcements. Please use other venues for discussions.

View File

@@ -22,4 +22,4 @@
#
# This is compatible across platforms.
#
exec spack python "$@"
exec /usr/bin/env spack python "$@"

View File

@@ -188,27 +188,25 @@ if NOT "%_sp_args%"=="%_sp_args:--help=%" (
goto :end_switch
:case_load
if NOT defined _sp_args (
exit /B 0
)
:: If args contain --bat, or -h/--help: just execute.
if NOT "%_sp_args%"=="%_sp_args:--help=%" (
goto :default_case
) else if NOT "%_sp_args%"=="%_sp_args:-h=%" (
goto :default_case
) else if NOT "%_sp_args%"=="%_sp_args:--bat=%" (
goto :default_case
) else if NOT "%_sp_args%"=="%_sp_args:--list=%" (
goto :default_case
:: If args contain --sh, --csh, or -h/--help: just execute.
if defined _sp_args (
if NOT "%_sp_args%"=="%_sp_args:--help=%" (
goto :default_case
) else if NOT "%_sp_args%"=="%_sp_args:-h=%" (
goto :default_case
) else if NOT "%_sp_args%"=="%_sp_args:--bat=%" (
goto :default_case
)
)
for /f "tokens=* USEBACKQ" %%I in (
`python "%spack%" %_sp_flags% %_sp_subcommand% --bat %_sp_args%`
) do %%I
`python "%spack%" %_sp_flags% %_sp_subcommand% --bat %_sp_args%`) do %%I
goto :end_switch
:case_unload
goto :case_load
:default_case
python "%spack%" %_sp_flags% %_sp_subcommand% %_sp_args%
goto :end_switch

View File

@@ -144,5 +144,3 @@ switch($SpackSubCommand)
"unload" {Invoke-SpackLoad}
default {python "$Env:SPACK_ROOT/bin/spack" $SpackCMD_params $SpackSubCommand $SpackSubCommandArgs}
}
exit $LASTEXITCODE

View File

@@ -15,7 +15,7 @@ concretizer:
# as possible, rather than building. If `false`, we'll always give you a fresh
# concretization. If `dependencies`, we'll only reuse dependencies but
# give you a fresh concretization for your root specs.
reuse: true
reuse: dependencies
# Options that tune which targets are considered for concretization. The
# concretization process is very sensitive to the number targets, and the time
# needed to reach a solution increases noticeably with the number of targets

View File

@@ -115,6 +115,12 @@ config:
suppress_gpg_warnings: false
# If set to true, Spack will attempt to build any compiler on the spec
# that is not already available. If set to False, Spack will only use
# compilers already configured in compilers.yaml
install_missing_compilers: false
# If set to true, Spack will always check checksums after downloading
# archives. If false, Spack skips the checksum step.
checksum: true
@@ -164,6 +170,23 @@ config:
# If set to true, Spack will use ccache to cache C compiles.
ccache: false
# The concretization algorithm to use in Spack. Options are:
#
# 'clingo': Uses a logic solver under the hood to solve DAGs with full
# backtracking and optimization for user preferences. Spack will
# try to bootstrap the logic solver, if not already available.
#
# 'original': Spack's original greedy, fixed-point concretizer. This
# algorithm can make decisions too early and will not backtrack
# sufficiently for many specs. This will soon be deprecated in
# favor of clingo.
#
# See `concretizer.yaml` for more settings you can fine-tune when
# using clingo.
concretizer: clingo
# How long to wait to lock the Spack installation database. This lock is used
# when Spack needs to manage its own package metadata and all operations are
# expected to complete within the default time limit. The timeout should

View File

@@ -0,0 +1,16 @@
# -------------------------------------------------------------------------
# This is the default configuration for Spack's module file generation.
#
# Settings here are versioned with Spack and are intended to provide
# sensible defaults out of the box. Spack maintainers should edit this
# file to keep it current.
#
# Users can override these settings by editing the following files.
#
# Per-spack-instance settings (overrides defaults):
# $SPACK_ROOT/etc/spack/modules.yaml
#
# Per-user settings (overrides default and site settings):
# ~/.spack/modules.yaml
# -------------------------------------------------------------------------
modules: {}

View File

@@ -19,6 +19,7 @@ packages:
- apple-clang
- clang
- gcc
- intel
providers:
elf: [libelf]
fuse: [macfuse]

View File

@@ -15,19 +15,15 @@
# -------------------------------------------------------------------------
packages:
all:
compiler: [gcc, clang, oneapi, xl, nag, fj, aocc]
compiler: [gcc, intel, pgi, clang, xl, nag, fj, aocc]
providers:
awk: [gawk]
armci: [armcimpi]
blas: [openblas, amdblis]
c: [gcc]
cxx: [gcc]
D: [ldc]
daal: [intel-oneapi-daal]
elf: [elfutils]
fftw-api: [fftw, amdfftw]
flame: [libflame, amdlibflame]
fortran: [gcc]
fortran-rt: [gcc-runtime, intel-oneapi-runtime]
fuse: [libfuse]
gl: [glx, osmesa]
@@ -39,11 +35,11 @@ packages:
java: [openjdk, jdk, ibm-java]
jpeg: [libjpeg-turbo, libjpeg]
lapack: [openblas, amdlibflame]
libc: [glibc, musl]
libgfortran: [ gcc-runtime ]
libglx: [mesa+glx]
libglx: [mesa+glx, mesa18+glx]
libifcore: [ intel-oneapi-runtime ]
libllvm: [llvm]
libosmesa: [mesa+osmesa, mesa18+osmesa]
lua-lang: [lua, lua-luajit-openresty, lua-luajit]
luajit: [lua-luajit-openresty, lua-luajit]
mariadb-client: [mariadb-c-client, mariadb]
@@ -64,7 +60,6 @@ packages:
tbb: [intel-tbb]
unwind: [libunwind]
uuid: [util-linux-uuid, libuuid]
wasi-sdk: [wasi-sdk-prebuilt]
xxd: [xxd-standalone, vim]
yacc: [bison, byacc]
ziglang: [zig]
@@ -72,13 +67,3 @@ packages:
permissions:
read: world
write: user
cray-mpich:
buildable: false
cray-mvapich2:
buildable: false
fujitsu-mpi:
buildable: false
hpcx-mpi:
buildable: false
spectrum-mpi:
buildable: false

View File

@@ -1,5 +1,6 @@
config:
locks: false
concretizer: clingo
build_stage::
- '$spack/.staging'
stage_name: '{name}-{version}-{hash:7}'

View File

@@ -1,12 +0,0 @@
{% extends "!layout.html" %}
{%- block extrahead %}
<!-- Google tag (gtag.js) -->
<script async src="https://www.googletagmanager.com/gtag/js?id=G-S0PQ7WV75K"></script>
<script>
window.dataLayer = window.dataLayer || [];
function gtag(){dataLayer.push(arguments);}
gtag('js', new Date());
gtag('config', 'G-S0PQ7WV75K');
</script>
{% endblock %}

View File

@@ -865,7 +865,7 @@ There are several different ways to use Spack packages once you have
installed them. As you've seen, spack packages are installed into long
paths with hashes, and you need a way to get them into your path. The
easiest way is to use :ref:`spack load <cmd-spack-load>`, which is
described in this section.
described in the next section.
Some more advanced ways to use Spack packages include:
@@ -959,86 +959,7 @@ use ``spack find --loaded``.
You can also use ``spack load --list`` to get the same output, but it
does not have the full set of query options that ``spack find`` offers.
We'll learn more about Spack's spec syntax in :ref:`a later section <sec-specs>`.
.. _extensions:
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Python packages and virtual environments
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Spack can install a large number of Python packages. Their names are
typically prefixed with ``py-``. Installing and using them is no
different from any other package:
.. code-block:: console
$ spack install py-numpy
$ spack load py-numpy
$ python3
>>> import numpy
The ``spack load`` command sets the ``PATH`` variable so that the right Python
executable is used, and makes sure that ``numpy`` and its dependencies can be
located in the ``PYTHONPATH``.
Spack is different from other Python package managers in that it installs
every package into its *own* prefix. This is in contrast to ``pip``, which
installs all packages into the same prefix, be it in a virtual environment
or not.
For many users, **virtual environments** are more convenient than repeated
``spack load`` commands, particularly when working with multiple Python
packages. Fortunately Spack supports environments itself, which together
with a view are no different from Python virtual environments.
The recommended way of working with Python extensions such as ``py-numpy``
is through :ref:`Environments <environments>`. The following example creates
a Spack environment with ``numpy`` in the current working directory. It also
puts a filesystem view in ``./view``, which is a more traditional combined
prefix for all packages in the environment.
.. code-block:: console
$ spack env create --with-view view --dir .
$ spack -e . add py-numpy
$ spack -e . concretize
$ spack -e . install
Now you can activate the environment and start using the packages:
.. code-block:: console
$ spack env activate .
$ python3
>>> import numpy
The environment view is also a virtual environment, which is useful if you are
sharing the environment with others who are unfamiliar with Spack. They can
either use the Python executable directly:
.. code-block:: console
$ ./view/bin/python3
>>> import numpy
or use the activation script:
.. code-block:: console
$ source ./view/bin/activate
$ python3
>>> import numpy
In general, there should not be much difference between ``spack env activate``
and using the virtual environment. The main advantage of ``spack env activate``
is that it knows about more packages than just Python packages, and it may set
additional runtime variables that are not covered by the virtual environment
activation script.
See :ref:`environments` for a more in-depth description of Spack
environments and customizations to views.
We'll learn more about Spack's spec syntax in the next section.
.. _sec-specs:
@@ -1175,17 +1096,6 @@ unspecified version, but packages can depend on other packages with
could depend on ``mpich@1.2:`` if it can only build with version
``1.2`` or higher of ``mpich``.
.. note:: Windows Spec Syntax Caveats
Windows has a few idiosyncrasies when it comes to the Spack spec syntax and the use of certain shells
Spack's spec dependency syntax uses the carat (``^``) character, however this is an escape string in CMD
so it must be escaped with an additional carat (i.e. ``^^``).
CMD also will attempt to interpret strings with ``=`` characters in them. Any spec including this symbol
must double quote the string.
Note: All of these issues are unique to CMD, they can be avoided by using Powershell.
For more context on these caveats see the related issues: `carat <https://github.com/spack/spack/issues/42833>`_ and `equals <https://github.com/spack/spack/issues/43348>`_
Below are more details about the specifiers that you can add to specs.
.. _version-specifier:
@@ -1444,12 +1354,22 @@ the reserved keywords ``platform``, ``os`` and ``target``:
$ spack install libelf os=ubuntu18.04
$ spack install libelf target=broadwell
or together by using the reserved keyword ``arch``:
.. code-block:: console
$ spack install libelf arch=cray-CNL10-haswell
Normally users don't have to bother specifying the architecture if they
are installing software for their current host, as in that case the
values will be detected automatically. If you need fine-grained control
over which packages use which targets (or over *all* packages' default
target), see :ref:`package-preferences`.
.. admonition:: Cray machines
The situation is a little bit different for Cray machines and a detailed
explanation on how the architecture can be set on them can be found at :ref:`cray-support`
.. _support-for-microarchitectures:
@@ -1785,6 +1705,165 @@ check only local packages (as opposed to those used transparently from
``upstream`` spack instances) and the ``-j,--json`` option to output
machine-readable json data for any errors.
.. _extensions:
---------------------------
Extensions & Python support
---------------------------
Spack's installation model assumes that each package will live in its
own install prefix. However, certain packages are typically installed
*within* the directory hierarchy of other packages. For example,
`Python <https://www.python.org>`_ packages are typically installed in the
``$prefix/lib/python-2.7/site-packages`` directory.
In Spack, installation prefixes are immutable, so this type of installation
is not directly supported. However, it is possible to create views that
allow you to merge install prefixes of multiple packages into a single new prefix.
Views are a convenient way to get a more traditional filesystem structure.
Using *extensions*, you can ensure that Python packages always share the
same prefix in the view as Python itself. Suppose you have
Python installed like so:
.. code-block:: console
$ spack find python
==> 1 installed packages.
-- linux-debian7-x86_64 / gcc@4.4.7 --------------------------------
python@2.7.8
.. _cmd-spack-extensions:
^^^^^^^^^^^^^^^^^^^^
``spack extensions``
^^^^^^^^^^^^^^^^^^^^
You can find extensions for your Python installation like this:
.. code-block:: console
$ spack extensions python
==> python@2.7.8%gcc@4.4.7 arch=linux-debian7-x86_64-703c7a96
==> 36 extensions:
geos py-ipython py-pexpect py-pyside py-sip
py-basemap py-libxml2 py-pil py-pytz py-six
py-biopython py-mako py-pmw py-rpy2 py-sympy
py-cython py-matplotlib py-pychecker py-scientificpython py-virtualenv
py-dateutil py-mpi4py py-pygments py-scikit-learn
py-epydoc py-mx py-pylint py-scipy
py-gnuplot py-nose py-pyparsing py-setuptools
py-h5py py-numpy py-pyqt py-shiboken
==> 12 installed:
-- linux-debian7-x86_64 / gcc@4.4.7 --------------------------------
py-dateutil@2.4.0 py-nose@1.3.4 py-pyside@1.2.2
py-dateutil@2.4.0 py-numpy@1.9.1 py-pytz@2014.10
py-ipython@2.3.1 py-pygments@2.0.1 py-setuptools@11.3.1
py-matplotlib@1.4.2 py-pyparsing@2.0.3 py-six@1.9.0
The extensions are a subset of what's returned by ``spack list``, and
they are packages like any other. They are installed into their own
prefixes, and you can see this with ``spack find --paths``:
.. code-block:: console
$ spack find --paths py-numpy
==> 1 installed packages.
-- linux-debian7-x86_64 / gcc@4.4.7 --------------------------------
py-numpy@1.9.1 ~/spack/opt/linux-debian7-x86_64/gcc@4.4.7/py-numpy@1.9.1-66733244
However, even though this package is installed, you cannot use it
directly when you run ``python``:
.. code-block:: console
$ spack load python
$ python
Python 2.7.8 (default, Feb 17 2015, 01:35:25)
[GCC 4.4.7 20120313 (Red Hat 4.4.7-11)] on linux2
Type "help", "copyright", "credits" or "license" for more information.
>>> import numpy
Traceback (most recent call last):
File "<stdin>", line 1, in <module>
ImportError: No module named numpy
>>>
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Using Extensions in Environments
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
The recommended way of working with extensions such as ``py-numpy``
above is through :ref:`Environments <environments>`. For example,
the following creates an environment in the current working directory
with a filesystem view in the ``./view`` directory:
.. code-block:: console
$ spack env create --with-view view --dir .
$ spack -e . add py-numpy
$ spack -e . concretize
$ spack -e . install
We recommend environments for two reasons. Firstly, environments
can be activated (requires :ref:`shell-support`):
.. code-block:: console
$ spack env activate .
which sets all the right environment variables such as ``PATH`` and
``PYTHONPATH``. This ensures that
.. code-block:: console
$ python
>>> import numpy
works. Secondly, even without shell support, the view ensures
that Python can locate its extensions:
.. code-block:: console
$ ./view/bin/python
>>> import numpy
See :ref:`environments` for a more in-depth description of Spack
environments and customizations to views.
^^^^^^^^^^^^^^^^^^^^
Using ``spack load``
^^^^^^^^^^^^^^^^^^^^
A more traditional way of using Spack and extensions is ``spack load``
(requires :ref:`shell-support`). This will add the extension to ``PYTHONPATH``
in your current shell, and Python itself will be available in the ``PATH``:
.. code-block:: console
$ spack load py-numpy
$ python
>>> import numpy
The loaded packages can be checked using ``spack find --loaded``
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Loading Extensions via Modules
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Apart from ``spack env activate`` and ``spack load``, you can load numpy
through your environment modules (using ``environment-modules`` or
``lmod``). This will also add the extension to the ``PYTHONPATH`` in
your current shell.
.. code-block:: console
$ module load <name of numpy module>
If you do not know the name of the specific numpy module you wish to
load, you can use the ``spack module tcl|lmod loads`` command to get
the name of the module from the Spack spec.
-----------------------
Filesystem requirements
-----------------------

View File

@@ -220,40 +220,6 @@ section of the configuration:
.. _binary_caches_oci:
---------------------------------
Automatic push to a build cache
---------------------------------
Sometimes it is convenient to push packages to a build cache as soon as they are installed. Spack can do this by setting autopush flag when adding a mirror:
.. code-block:: console
$ spack mirror add --autopush <name> <url or path>
Or the autopush flag can be set for an existing mirror:
.. code-block:: console
$ spack mirror set --autopush <name> # enable automatic push for an existing mirror
$ spack mirror set --no-autopush <name> # disable automatic push for an existing mirror
Then after installing a package it is automatically pushed to all mirrors with ``autopush: true``. The command
.. code-block:: console
$ spack install <package>
will have the same effect as
.. code-block:: console
$ spack install <package>
$ spack buildcache push <cache> <package> # for all caches with autopush: true
.. note::
Packages are automatically pushed to a build cache only if they are built from source.
-----------------------------------------
OCI / Docker V2 registries as build cache
-----------------------------------------

View File

@@ -21,86 +21,23 @@ is the following:
Reuse already installed packages
--------------------------------
The ``reuse`` attribute controls how aggressively Spack reuses binary packages during concretization. The
attribute can either be a single value, or an object for more complex configurations.
In the former case ("single value") it allows Spack to:
1. Reuse installed packages and buildcaches for all the specs to be concretized, when ``true``
2. Reuse installed packages and buildcaches only for the dependencies of the root specs, when ``dependencies``
3. Disregard reusing installed packages and buildcaches, when ``false``
In case a finer control over which specs are reused is needed, then the value of this attribute can be
an object, with the following keys:
1. ``roots``: if ``true`` root specs are reused, if ``false`` only dependencies of root specs are reused
2. ``from``: list of sources from which reused specs are taken
Each source in ``from`` is itself an object:
.. list-table:: Attributes for a source or reusable specs
:header-rows: 1
* - Attribute name
- Description
* - type (mandatory, string)
- Can be ``local``, ``buildcache``, or ``external``
* - include (optional, list of specs)
- If present, reusable specs must match at least one of the constraint in the list
* - exclude (optional, list of specs)
- If present, reusable specs must not match any of the constraint in the list.
For instance, the following configuration:
.. code-block:: yaml
concretizer:
reuse:
roots: true
from:
- type: local
include:
- "%gcc"
- "%clang"
tells the concretizer to reuse all specs compiled with either ``gcc`` or ``clang``, that are installed
in the local store. Any spec from remote buildcaches is disregarded.
To reduce the boilerplate in configuration files, default values for the ``include`` and
``exclude`` options can be pushed up one level:
.. code-block:: yaml
concretizer:
reuse:
roots: true
include:
- "%gcc"
from:
- type: local
- type: buildcache
- type: local
include:
- "foo %oneapi"
In the example above we reuse all specs compiled with ``gcc`` from the local store
and remote buildcaches, and we also reuse ``foo %oneapi``. Note that the last source of
specs override the default ``include`` attribute.
For one-off concretizations, the are command line arguments for each of the simple "single value"
configurations. This means a user can:
The ``reuse`` attribute controls whether Spack will prefer to use installed packages (``true``), or
whether it will do a "fresh" installation and prefer the latest settings from
``package.py`` files and ``packages.yaml`` (``false``).
You can use:
.. code-block:: console
% spack install --reuse <spec>
to enable reuse for a single installation, or:
to enable reuse for a single installation, and you can use:
.. code-block:: console
spack install --fresh <spec>
to do a fresh install if ``reuse`` is enabled by default.
``reuse: dependencies`` is the default.
.. seealso::

View File

@@ -147,15 +147,6 @@ example, the ``bash`` shell is used to run the ``autogen.sh`` script.
def autoreconf(self, spec, prefix):
which("bash")("autogen.sh")
If the ``package.py`` has build instructions in a separate
:ref:`builder class <multiple_build_systems>`, the signature for a phase changes slightly:
.. code-block:: python
class AutotoolsBuilder(AutotoolsBuilder):
def autoreconf(self, pkg, spec, prefix):
which("bash")("autogen.sh")
"""""""""""""""""""""""""""""""""""""""
patching configure or Makefile.in files
"""""""""""""""""""""""""""""""""""""""

View File

@@ -25,7 +25,7 @@ use Spack to build packages with the tools.
The Spack Python class ``IntelOneapiPackage`` is a base class that is
used by ``IntelOneapiCompilers``, ``IntelOneapiMkl``,
``IntelOneapiTbb`` and other classes to implement the oneAPI
packages. Search for ``oneAPI`` at `packages.spack.io <https://packages.spack.io>`_ for the full
packages. Search for ``oneAPI`` at `<packages.spack.io>`_ for the full
list of available oneAPI packages, or use::
spack list -d oneAPI

View File

@@ -718,45 +718,23 @@ command-line tool, or C/C++/Fortran program with optional Python
modules? The former should be prepended with ``py-``, while the
latter should not.
""""""""""""""""""""""""""""""
``extends`` vs. ``depends_on``
""""""""""""""""""""""""""""""
""""""""""""""""""""""
extends vs. depends_on
""""""""""""""""""""""
This is very similar to the naming dilemma above, with a slight twist.
As mentioned in the :ref:`Packaging Guide <packaging_extensions>`,
``extends`` and ``depends_on`` are very similar, but ``extends`` ensures
that the extension and extendee share the same prefix in views.
This allows the user to import a Python module without
having to add that module to ``PYTHONPATH``.
Additionally, ``extends("python")`` adds a dependency on the package
``python-venv``. This improves isolation from the system, whether
it's during the build or at runtime: user and system site packages
cannot accidentally be used by any package that ``extends("python")``.
As a rule of thumb: if a package does not install any Python modules
of its own, and merely puts a Python script in the ``bin`` directory,
then there is no need for ``extends``. If the package installs modules
in the ``site-packages`` directory, it requires ``extends``.
"""""""""""""""""""""""""""""""""""""
Executing ``python`` during the build
"""""""""""""""""""""""""""""""""""""
Whenever you need to execute a Python command or pass the path of the
Python interpreter to the build system, it is best to use the global
variable ``python`` directly. For example:
.. code-block:: python
@run_before("install")
def recythonize(self):
python("setup.py", "clean") # use the `python` global
As mentioned in the previous section, ``extends("python")`` adds an
automatic dependency on ``python-venv``, which is a virtual environment
that guarantees build isolation. The ``python`` global always refers to
the correct Python interpreter, whether the package uses ``extends("python")``
or ``depends_on("python")``.
When deciding between ``extends`` and ``depends_on``, the best rule of
thumb is to check the installation prefix. If Python libraries are
installed to ``<prefix>/lib/pythonX.Y/site-packages``, then you
should use ``extends``. If Python libraries are installed elsewhere
or the only files that get installed reside in ``<prefix>/bin``, then
don't use ``extends``.
^^^^^^^^^^^^^^^^^^^^^
Alternatives to Spack

View File

@@ -5,14 +5,13 @@
.. chain:
=============================================
Chaining Spack Installations (upstreams.yaml)
=============================================
============================
Chaining Spack Installations
============================
You can point your Spack installation to another installation to use any
packages that are installed there. To register the other Spack instance,
you can add it as an entry to ``upstreams.yaml`` at any of the
:ref:`configuration-scopes`:
you can add it as an entry to ``upstreams.yaml``:
.. code-block:: yaml
@@ -23,8 +22,7 @@ you can add it as an entry to ``upstreams.yaml`` at any of the
install_tree: /path/to/another/spack/opt/spack
``install_tree`` must point to the ``opt/spack`` directory inside of the
Spack base directory, or the location of the ``install_tree`` defined
in :ref:`config.yaml <config-yaml>`.
Spack base directory.
Once the upstream Spack instance has been added, ``spack find`` will
automatically check the upstream instance when querying installed packages,

View File

@@ -206,7 +206,6 @@ def setup(sphinx):
("py:class", "six.moves.urllib.parse.ParseResult"),
("py:class", "TextIO"),
("py:class", "hashlib._Hash"),
("py:class", "concurrent.futures._base.Executor"),
# Spack classes that are private and we don't want to expose
("py:class", "spack.provider_index._IndexBase"),
("py:class", "spack.repo._PrependFileLoader"),
@@ -218,7 +217,6 @@ def setup(sphinx):
("py:class", "spack.spec.SpecfileReaderBase"),
("py:class", "spack.install_test.Pb"),
("py:class", "spack.filesystem_view.SimpleFilesystemView"),
("py:class", "spack.traverse.EdgeAndDepth"),
]
# The reST default role (used for this markup: `text`) to use for all documents.

View File

@@ -150,7 +150,7 @@ this can expose you to attacks. Use at your own risk.
--------------------
Path to custom certificats for SSL verification. The value can be a
filesytem path, or an environment variable that expands to an absolute file path.
filesytem path, or an environment variable that expands to a file path.
The default value is set to the environment variable ``SSL_CERT_FILE``
to use the same syntax used by many other applications that automatically
detect custom certificates.
@@ -160,9 +160,6 @@ in the subprocess calling ``curl``.
If ``url_fetch_method:urllib`` then files and directories are supported i.e.
``config:ssl_certs:$SSL_CERT_FILE`` or ``config:ssl_certs:$SSL_CERT_DIR``
will work.
In all cases the expanded path must be absolute for Spack to use the certificates.
Certificates relative to an environment can be created by prepending the path variable
with the Spack configuration variable``$env``.
--------------------
``checksum``

View File

@@ -194,18 +194,21 @@ The OS that are currently supported are summarized in the table below:
* - Operating System
- Base Image
- Spack Image
* - Ubuntu 18.04
- ``ubuntu:18.04``
- ``spack/ubuntu-bionic``
* - Ubuntu 20.04
- ``ubuntu:20.04``
- ``spack/ubuntu-focal``
* - Ubuntu 22.04
- ``ubuntu:22.04``
- ``spack/ubuntu-jammy``
* - Ubuntu 24.04
- ``ubuntu:24.04``
- ``spack/ubuntu-noble``
* - CentOS Stream9
- ``quay.io/centos/centos:stream9``
- ``spack/centos-stream9``
* - CentOS 7
- ``centos:7``
- ``spack/centos7``
* - CentOS Stream
- ``quay.io/centos/centos:stream``
- ``spack/centos-stream``
* - openSUSE Leap
- ``opensuse/leap``
- ``spack/leap15``
@@ -224,12 +227,12 @@ The OS that are currently supported are summarized in the table below:
* - Rocky Linux 9
- ``rockylinux:9``
- ``spack/rockylinux9``
* - Fedora Linux 39
- ``fedora:39``
- ``spack/fedora39``
* - Fedora Linux 40
- ``fedora:40``
- ``spack/fedora40``
* - Fedora Linux 37
- ``fedora:37``
- ``spack/fedora37``
* - Fedora Linux 38
- ``fedora:38``
- ``spack/fedora38``

View File

@@ -181,6 +181,10 @@ Spec-related modules
:mod:`spack.parser`
Contains :class:`~spack.parser.SpecParser` and functions related to parsing specs.
:mod:`spack.concretize`
Contains :class:`~spack.concretize.Concretizer` implementation,
which allows site administrators to change Spack's :ref:`concretization-policies`.
:mod:`spack.version`
Implements a simple :class:`~spack.version.Version` class with simple
comparison semantics. Also implements :class:`~spack.version.VersionRange`
@@ -548,11 +552,11 @@ With either interpreter you can run a single command:
.. code-block:: console
$ spack python -c 'from spack.spec import Spec; Spec("python").concretized()'
...
$ spack python -c 'import distro; distro.linux_distribution()'
('Ubuntu', '18.04', 'Bionic Beaver')
$ spack python -i ipython -c 'from spack.spec import Spec; Spec("python").concretized()'
Out[1]: ...
$ spack python -i ipython -c 'import distro; distro.linux_distribution()'
Out[1]: ('Ubuntu', '18.04', 'Bionic Beaver')
or a file:
@@ -1067,9 +1071,9 @@ Announcing a release
We announce releases in all of the major Spack communication channels.
Publishing the release takes care of GitHub. The remaining channels are
X, Slack, and the mailing list. Here are the steps:
Twitter, Slack, and the mailing list. Here are the steps:
#. Announce the release on X.
#. Announce the release on Twitter.
* Compose the tweet on the ``@spackpm`` account per the
``spack-twitter`` slack channel.

View File

@@ -142,8 +142,12 @@ user's prompt to begin with the environment name in brackets.
$ spack env activate -p myenv
[myenv] $ ...
The ``activate`` command can also be used to create a new environment if it does not already
exist.
The ``activate`` command can also be used to create a new environment, if it is
not already defined, by adding the ``--create`` flag. Managed and anonymous
environments, anonymous environments are explained in the next section,
can both be created using the same flags that `spack env create` accepts.
If an environment already exists then spack will simply activate it and ignore the
create specific flags.
.. code-block:: console
@@ -172,36 +176,21 @@ environment will remove the view from the user environment.
Anonymous Environments
^^^^^^^^^^^^^^^^^^^^^^
Apart from managed environments, Spack also supports anonymous environments.
Anonymous environments can be placed in any directory of choice.
.. note::
When uninstalling packages, Spack asks the user to confirm the removal of packages
that are still used in a managed environment. This is not the case for anonymous
environments.
To create an anonymous environment, use one of the following commands:
Any directory can be treated as an environment if it contains a file
``spack.yaml``. To load an anonymous environment, use:
.. code-block:: console
$ spack env create --dir my_env
$ spack env create ./my_env
$ spack env activate -d /path/to/directory
As a shorthand, you can also create an anonymous environment upon activation if it does not
already exist:
Anonymous specs can be created in place using the command:
.. code-block:: console
$ spack env activate --create ./my_env
For convenience, Spack can also place an anonymous environment in a temporary directory for you:
.. code-block:: console
$ spack env activate --temp
$ spack env create -d .
In this case Spack simply creates a ``spack.yaml`` file in the requested
directory.
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Environment Sensitive Commands
@@ -460,125 +449,6 @@ Sourcing that file in Bash will make the environment available to the
user; and can be included in ``.bashrc`` files, etc. The ``loads``
file may also be copied out of the environment, renamed, etc.
.. _environment_include_concrete:
------------------------------
Included Concrete Environments
------------------------------
Spack environments can create an environment based off of information in already
established environments. You can think of it as a combination of existing
environments. It will gather information from the existing environment's
``spack.lock`` and use that during the creation of this included concrete
environment. When an included concrete environment is created it will generate
a ``spack.lock`` file for the newly created environment.
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Creating included environments
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
To create a combined concrete environment, you must have at least one existing
concrete environment. You will use the command ``spack env create`` with the
argument ``--include-concrete`` followed by the name or path of the environment
you'd like to include. Here is an example of how to create a combined environment
from the command line.
.. code-block:: console
$ spack env create myenv
$ spack -e myenv add python
$ spack -e myenv concretize
$ spack env create --include-concrete myenv included_env
You can also include an environment directly in the ``spack.yaml`` file. It
involves adding the ``include_concrete`` heading in the yaml followed by the
absolute path to the independent environments.
.. code-block:: yaml
spack:
specs: []
concretizer:
unify: true
include_concrete:
- /absolute/path/to/environment1
- /absolute/path/to/environment2
Once the ``spack.yaml`` has been updated you must concretize the environment to
get the concrete specs from the included environments.
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Updating an included environment
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
If changes were made to the base environment and you want that reflected in the
included environment you will need to reconcretize both the base environment and the
included environment for the change to be implemented. For example:
.. code-block:: console
$ spack env create myenv
$ spack -e myenv add python
$ spack -e myenv concretize
$ spack env create --include-concrete myenv included_env
$ spack -e myenv find
==> In environment myenv
==> Root specs
python
==> 0 installed packages
$ spack -e included_env find
==> In environment included_env
==> No root specs
==> Included specs
python
==> 0 installed packages
Here we see that ``included_env`` has access to the python package through
the ``myenv`` environment. But if we were to add another spec to ``myenv``,
``included_env`` will not be able to access the new information.
.. code-block:: console
$ spack -e myenv add perl
$ spack -e myenv concretize
$ spack -e myenv find
==> In environment myenv
==> Root specs
perl python
==> 0 installed packages
$ spack -e included_env find
==> In environment included_env
==> No root specs
==> Included specs
python
==> 0 installed packages
It isn't until you run the ``spack concretize`` command that the combined
environment will get the updated information from the reconcretized base environmennt.
.. code-block:: console
$ spack -e included_env concretize
$ spack -e included_env find
==> In environment included_env
==> No root specs
==> Included specs
perl python
==> 0 installed packages
.. _environment-configuration:
------------------------
@@ -863,7 +733,7 @@ named list ``compilers`` is ``['%gcc', '%clang', '%intel']`` on
spack:
definitions:
- compilers: ['%gcc', '%clang']
- when: arch.satisfies('target=x86_64:')
- when: arch.satisfies('x86_64:')
compilers: ['%intel']
.. note::
@@ -930,85 +800,32 @@ For example, the following environment has three root packages:
This allows for a much-needed reduction in redundancy between packages
and constraints.
----------------
Filesystem Views
----------------
-----------------
Environment Views
-----------------
Spack Environments can have an associated filesystem view, which is a directory
with a more traditional structure ``<view>/bin``, ``<view>/lib``, ``<view>/include``
in which all files of the installed packages are linked.
By default a view is created for each environment, thanks to the ``view: true``
option in the ``spack.yaml`` manifest file:
.. code-block:: yaml
spack:
specs: [perl, python]
view: true
The view is created in a hidden directory ``.spack-env/view`` relative to the environment.
If you've used ``spack env activate``, you may have already interacted with this view. Spack
prepends its ``<view>/bin`` dir to ``PATH`` when the environment is activated, so that
you can directly run executables from all installed packages in the environment.
Views are highly customizable: you can control where they are put, modify their structure,
include and exclude specs, change how files are linked, and you can even generate multiple
views for a single environment.
Spack Environments can define filesystem views, which provide a direct access point
for software similar to the directory hierarchy that might exist under ``/usr/local``.
Filesystem views are updated every time the environment is written out to the lock
file ``spack.lock``, so the concrete environment and the view are always compatible.
The files of the view's installed packages are brought into the view by symbolic or
hard links, referencing the original Spack installation, or by copy.
.. _configuring_environment_views:
^^^^^^^^^^^^^^^^^^^^^^^^^^
Minimal view configuration
^^^^^^^^^^^^^^^^^^^^^^^^^^
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Configuration in ``spack.yaml``
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
The minimal configuration
.. code-block:: yaml
spack:
# ...
view: true
lets Spack generate a single view with default settings under the
``.spack-env/view`` directory of the environment.
Another short way to configure a view is to specify just where to put it:
.. code-block:: yaml
spack:
# ...
view: /path/to/view
Views can also be disabled by setting ``view: false``.
^^^^^^^^^^^^^^^^^^^^^^^^^^^
Advanced view configuration
^^^^^^^^^^^^^^^^^^^^^^^^^^^
One or more **view descriptors** can be defined under ``view``, keyed by a name.
The example from the previous section with ``view: /path/to/view`` is equivalent
to defining a view descriptor named ``default`` with a ``root`` attribute:
.. code-block:: yaml
spack:
# ...
view:
default: # name of the view
root: /path/to/view # view descriptor attribute
The ``default`` view descriptor name is special: when you ``spack env activate`` your
environment, this view will be used to update (among other things) your ``PATH``
variable.
View descriptors must contain the root of the view, and optionally projections,
``select`` and ``exclude`` lists and link information via ``link`` and
The Spack Environment manifest file has a top-level keyword
``view``. Each entry under that heading is a **view descriptor**, headed
by a name. Any number of views may be defined under the ``view`` heading.
The view descriptor contains the root of the view, and
optionally the projections for the view, ``select`` and
``exclude`` lists for the view and link information via ``link`` and
``link_type``.
As a more advanced example, in the following manifest
For example, in the following manifest
file snippet we define a view named ``mpis``, rooted at
``/path/to/view`` in which all projections use the package name,
version, and compiler name to determine the path for a given
@@ -1053,10 +870,59 @@ of ``hardlink`` or ``copy``.
when the environment is not activated, and linked libraries will be located
*outside* of the view thanks to rpaths.
There are two shorthands for environments with a single view. If the
environment at ``/path/to/env`` has a single view, with a root at
``/path/to/env/.spack-env/view``, with default selection and exclusion
and the default projection, we can put ``view: True`` in the
environment manifest. Similarly, if the environment has a view with a
different root, but default selection, exclusion, and projections, the
manifest can say ``view: /path/to/view``. These views are
automatically named ``default``, so that
.. code-block:: yaml
spack:
# ...
view: True
is equivalent to
.. code-block:: yaml
spack:
# ...
view:
default:
root: .spack-env/view
and
.. code-block:: yaml
spack:
# ...
view: /path/to/view
is equivalent to
.. code-block:: yaml
spack:
# ...
view:
default:
root: /path/to/view
By default, Spack environments are configured with ``view: True`` in
the manifest. Environments can be configured without views using
``view: False``. For backwards compatibility reasons, environments
with no ``view`` key are treated the same as ``view: True``.
From the command line, the ``spack env create`` command takes an
argument ``--with-view [PATH]`` that sets the path for a single, default
view. If no path is specified, the default path is used (``view:
true``). The argument ``--without-view`` can be used to create an
True``). The argument ``--without-view`` can be used to create an
environment without any view configured.
The ``spack env view`` command can be used to change the manage views
@@ -1122,18 +988,11 @@ the projection under ``all`` before reaching those entries.
Activating environment views
^^^^^^^^^^^^^^^^^^^^^^^^^^^^
The ``spack env activate <env>`` has two effects:
1. It activates the environment so that further Spack commands such
as ``spack install`` will run in the context of the environment.
2. It activates the view so that environment variables such as
``PATH`` are updated to include the view.
Without further arguments, the ``default`` view of the environment is
activated. If a view with a different name has to be activated,
``spack env activate --with-view <name> <env>`` can be
used instead. You can also activate the environment without modifying
further environment variables using ``--without-view``.
The ``spack env activate`` command will put the default view for the
environment into the user's path, in addition to activating the
environment for Spack commands. The arguments ``-v,--with-view`` and
``-V,--without-view`` can be used to tune this behavior. The default
behavior is to activate with the environment view if there is one.
The environment variables affected by the ``spack env activate``
command and the paths that are used to update them are determined by
@@ -1156,8 +1015,8 @@ relevant variable if the path exists. For this reason, it is not
recommended to use non-default projections with the default view of an
environment.
The ``spack env deactivate`` command will remove the active view of
the Spack environment from the user's environment variables.
The ``spack env deactivate`` command will remove the default view of
the environment from the user's path.
.. _env-generate-depfile:
@@ -1174,7 +1033,7 @@ other targets to depend on the environment installation.
A typical workflow is as follows:
.. code-block:: console
.. code:: console
spack env create -d .
spack -e . add perl
@@ -1267,7 +1126,7 @@ its dependencies. This can be useful when certain flags should only apply to
dependencies. Below we show a use case where a spec is installed with verbose
output (``spack install --verbose``) while its dependencies are installed silently:
.. code-block:: console
.. code:: console
$ spack env depfile -o Makefile
@@ -1289,7 +1148,7 @@ This can be accomplished through the generated ``[<prefix>/]SPACK_PACKAGE_IDS``
variable. Assuming we have an active and concrete environment, we generate the
associated ``Makefile`` with a prefix ``example``:
.. code-block:: console
.. code:: console
$ spack env depfile -o env.mk --make-prefix example
@@ -1316,7 +1175,7 @@ index once every package is pushed. Note how this target uses the generated
example/push/%: example/install/%
@mkdir -p $(dir $@)
$(info About to push $(SPEC) to a buildcache)
$(SPACK) -e . buildcache push --only=package $(BUILDCACHE_DIR) /$(HASH)
$(SPACK) -e . buildcache push --allow-root --only=package $(BUILDCACHE_DIR) /$(HASH)
@touch $@
push: $(addprefix example/push/,$(example/SPACK_PACKAGE_IDS))

View File

@@ -478,13 +478,6 @@ prefix, you can add them to the ``extra_attributes`` field. Similarly,
all other fields from the compilers config can be added to the
``extra_attributes`` field for an external representing a compiler.
Note that the format for the ``paths`` field in the
``extra_attributes`` section is different than in the ``compilers``
config. For compilers configured as external packages, the section is
named ``compilers`` and the dictionary maps language names (``c``,
``cxx``, ``fortran``) to paths, rather than using the names ``cc``,
``fc``, and ``f77``.
.. code-block:: yaml
packages:
@@ -500,10 +493,11 @@ named ``compilers`` and the dictionary maps language names (``c``,
- spec: llvm+clang@15.0.0 arch=linux-rhel8-skylake
prefix: /usr
extra_attributes:
compilers:
c: /usr/bin/clang-with-suffix
paths:
cc: /usr/bin/clang-with-suffix
cxx: /usr/bin/clang++-with-extra-info
fortran: /usr/bin/gfortran
fc: /usr/bin/gfortran
f77: /usr/bin/gfortran
extra_rpaths:
- /usr/lib/llvm/
@@ -1364,6 +1358,187 @@ This will write the private key to the file `dinosaur.priv`.
or for help on an issue or the Spack slack.
.. _cray-support:
-------------
Spack on Cray
-------------
Spack differs slightly when used on a Cray system. The architecture spec
can differentiate between the front-end and back-end processor and operating system.
For example, on Edison at NERSC, the back-end target processor
is "Ivy Bridge", so you can specify to use the back-end this way:
.. code-block:: console
$ spack install zlib target=ivybridge
You can also use the operating system to build against the back-end:
.. code-block:: console
$ spack install zlib os=CNL10
Notice that the name includes both the operating system name and the major
version number concatenated together.
Alternatively, if you want to build something for the front-end,
you can specify the front-end target processor. The processor for a login node
on Edison is "Sandy bridge" so we specify on the command line like so:
.. code-block:: console
$ spack install zlib target=sandybridge
And the front-end operating system is:
.. code-block:: console
$ spack install zlib os=SuSE11
^^^^^^^^^^^^^^^^^^^^^^^
Cray compiler detection
^^^^^^^^^^^^^^^^^^^^^^^
Spack can detect compilers using two methods. For the front-end, we treat
everything the same. The difference lies in back-end compiler detection.
Back-end compiler detection is made via the Tcl module avail command.
Once it detects the compiler it writes the appropriate PrgEnv and compiler
module name to compilers.yaml and sets the paths to each compiler with Cray\'s
compiler wrapper names (i.e. cc, CC, ftn). During build time, Spack will load
the correct PrgEnv and compiler module and will call appropriate wrapper.
The compilers.yaml config file will also differ. There is a
modules section that is filled with the compiler's Programming Environment
and module name. On other systems, this field is empty []:
.. code-block:: yaml
- compiler:
modules:
- PrgEnv-intel
- intel/15.0.109
As mentioned earlier, the compiler paths will look different on a Cray system.
Since most compilers are invoked using cc, CC and ftn, the paths for each
compiler are replaced with their respective Cray compiler wrapper names:
.. code-block:: yaml
paths:
cc: cc
cxx: CC
f77: ftn
fc: ftn
As opposed to an explicit path to the compiler executable. This allows Spack
to call the Cray compiler wrappers during build time.
For more on compiler configuration, check out :ref:`compiler-config`.
Spack sets the default Cray link type to dynamic, to better match other
other platforms. Individual packages can enable static linking (which is the
default outside of Spack on cray systems) using the ``-static`` flag.
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Setting defaults and using Cray modules
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
If you want to use default compilers for each PrgEnv and also be able
to load cray external modules, you will need to set up a ``packages.yaml``.
Here's an example of an external configuration for cray modules:
.. code-block:: yaml
packages:
mpich:
externals:
- spec: "mpich@7.3.1%gcc@5.2.0 arch=cray_xc-haswell-CNL10"
modules:
- cray-mpich
- spec: "mpich@7.3.1%intel@16.0.0.109 arch=cray_xc-haswell-CNL10"
modules:
- cray-mpich
all:
providers:
mpi: [mpich]
This tells Spack that for whatever package that depends on mpi, load the
cray-mpich module into the environment. You can then be able to use whatever
environment variables, libraries, etc, that are brought into the environment
via module load.
.. note::
For Cray-provided packages, it is best to use ``modules:`` instead of ``prefix:``
in ``packages.yaml``, because the Cray Programming Environment heavily relies on
modules (e.g., loading the ``cray-mpich`` module adds MPI libraries to the
compiler wrapper link line).
You can set the default compiler that Spack can use for each compiler type.
If you want to use the Cray defaults, then set them under ``all:`` in packages.yaml.
In the compiler field, set the compiler specs in your order of preference.
Whenever you build with that compiler type, Spack will concretize to that version.
Here is an example of a full packages.yaml used at NERSC
.. code-block:: yaml
packages:
mpich:
externals:
- spec: "mpich@7.3.1%gcc@5.2.0 arch=cray_xc-CNL10-ivybridge"
modules:
- cray-mpich
- spec: "mpich@7.3.1%intel@16.0.0.109 arch=cray_xc-SuSE11-ivybridge"
modules:
- cray-mpich
buildable: False
netcdf:
externals:
- spec: "netcdf@4.3.3.1%gcc@5.2.0 arch=cray_xc-CNL10-ivybridge"
modules:
- cray-netcdf
- spec: "netcdf@4.3.3.1%intel@16.0.0.109 arch=cray_xc-CNL10-ivybridge"
modules:
- cray-netcdf
buildable: False
hdf5:
externals:
- spec: "hdf5@1.8.14%gcc@5.2.0 arch=cray_xc-CNL10-ivybridge"
modules:
- cray-hdf5
- spec: "hdf5@1.8.14%intel@16.0.0.109 arch=cray_xc-CNL10-ivybridge"
modules:
- cray-hdf5
buildable: False
all:
compiler: [gcc@5.2.0, intel@16.0.0.109]
providers:
mpi: [mpich]
Here we tell spack that whenever we want to build with gcc use version 5.2.0 or
if we want to build with intel compilers, use version 16.0.0.109. We add a spec
for each compiler type for each cray modules. This ensures that for each
compiler on our system we can use that external module.
For more on external packages check out the section :ref:`sec-external-packages`.
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Using Linux containers on Cray machines
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Spack uses environment variables particular to the Cray programming
environment to determine which systems are Cray platforms. These
environment variables may be propagated into containers that are not
using the Cray programming environment.
To ensure that Spack does not autodetect the Cray programming
environment, unset the environment variable ``MODULEPATH``. This
will cause Spack to treat a linux container on a Cray system as a base
linux distro.
.. _windows_support:
----------------
@@ -1397,8 +1572,6 @@ Microsoft Visual Studio
"""""""""""""""""""""""
Microsoft Visual Studio provides the only Windows C/C++ compiler that is currently supported by Spack.
Spack additionally requires that the Windows SDK (including WGL) to be installed as part of your
visual studio installation as it is required to build many packages from source.
We require several specific components to be included in the Visual Studio installation.
One is the C/C++ toolset, which can be selected as "Desktop development with C++" or "C++ build tools,"
@@ -1406,7 +1579,6 @@ depending on installation type (Professional, Build Tools, etc.) The other requ
"C++ CMake tools for Windows," which can be selected from among the optional packages.
This provides CMake and Ninja for use during Spack configuration.
If you already have Visual Studio installed, you can make sure these components are installed by
rerunning the installer. Next to your installation, select "Modify" and look at the
"Installation details" pane on the right.
@@ -1475,14 +1647,16 @@ in a Windows CMD prompt.
Step 3: Run and configure Spack
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
On Windows, Spack supports both primary native shells, Powershell and the traditional command prompt.
To use Spack, pick your favorite shell, and run ``bin\spack_cmd.bat`` or ``share/spack/setup-env.ps1``
(you may need to Run as Administrator) from the top-level spack
directory. This will provide a Spack enabled shell. If you receive a warning message that Python is not in your ``PATH``
To use Spack, run ``bin\spack_cmd.bat`` (you may need to Run as Administrator) from the top-level spack
directory. This will provide a Windows command prompt with an environment properly set up with Spack
and its prerequisites. If you receive a warning message that Python is not in your ``PATH``
(which may happen if you installed Python from the website and not the Windows Store) add the location
of the Python executable to your ``PATH`` now. You can permanently add Python to your ``PATH`` variable
by using the ``Edit the system environment variables`` utility in Windows Control Panel.
.. note::
Alternatively, Powershell can be used in place of CMD
To configure Spack, first run the following command inside the Spack console:
.. code-block:: console
@@ -1547,7 +1721,7 @@ and not tabs, so ensure that this is the case when editing one directly.
.. note:: Cygwin
The use of Cygwin is not officially supported by Spack and is not tested.
However Spack will not prevent this, so use if choosing to use Spack
However Spack will not throw an error, so use if choosing to use Spack
with Cygwin, know that no functionality is garunteed.
^^^^^^^^^^^^^^^^^
@@ -1561,12 +1735,21 @@ Spack console via:
spack install cpuinfo
If in the previous step, you did not have CMake or Ninja installed, running the command above should install both packages
If in the previous step, you did not have CMake or Ninja installed, running the command above should bootstrap both packages
.. note:: Spec Syntax Caveats
Windows has a few idiosyncrasies when it comes to the Spack spec syntax and the use of certain shells
See the Spack spec syntax doc for more information
"""""""""""""""""""""""""""
Windows Compatible Packages
"""""""""""""""""""""""""""
Not all spack packages currently have Windows support. Some are inherently incompatible with the
platform, and others simply have yet to be ported. To view the current set of packages with Windows
support, the list command should be used via `spack list -t windows`. If there's a package you'd like
to install on Windows but is not in that list, feel free to reach out to request the port or contribute
the port yourself.
.. note::
This is by no means a comprehensive list, some packages may have ports that were not tagged
while others may just work out of the box on Windows and have not been tagged as such.
^^^^^^^^^^^^^^
For developers
@@ -1577,3 +1760,5 @@ Python, Git, and Spack, instead of requiring the user to do so manually.
Instructions for creating the installer are at
https://github.com/spack/spack/blob/develop/lib/spack/spack/cmd/installer/README.md
Alternatively a pre-built copy of the Windows installer is available as an artifact of Spack's Windows CI
available at each run of the CI on develop or any PR.

View File

@@ -1263,11 +1263,6 @@ Git fetching supports the following parameters to ``version``:
option ``--depth 1`` will be used if the version of git and the specified
transport protocol support it, and ``--single-branch`` will be used if the
version of git supports it.
* ``git_sparse_paths``: Use ``sparse-checkout`` to only clone these relative paths.
This feature requires ``git`` to be version ``2.25.0`` or later but is useful for
large repositories that have separate portions that can be built independently.
If paths provided are directories then all the subdirectories and associated files
will also be cloned.
Only one of ``tag``, ``branch``, or ``commit`` can be used at a time.
@@ -1366,41 +1361,6 @@ Submodules
For more information about git submodules see the manpage of git: ``man
git-submodule``.
Sparse-Checkout
You can supply ``git_sparse_paths`` at the package or version level to utilize git's
sparse-checkout feature. This will only clone the paths that are specified in the
``git_sparse_paths`` attribute for the package along with the files in the top level directory.
This feature allows you to only clone what you need from a large repository.
Note that this is a newer feature in git and requries git ``2.25.0`` or greater.
If ``git_sparse_paths`` is supplied and the git version is too old
then a warning will be issued and that package will use the standard cloning operations instead.
``git_sparse_paths`` should be supplied as a list of paths, a callable function for versions,
or a more complex package attribute using the ``@property`` decorator. The return value should be
a list for a callable implementation of ``git_sparse_paths``.
.. code-block:: python
def sparse_path_function(package)
"""a callable function that can be used in side a version"""
# paths can be directories or functions, all subdirectories and files are included
paths = ["doe", "rae", "me/file.cpp"]
if package.spec.version > Version("1.2.0"):
paths.extend(["fae"])
return paths
class MyPackage(package):
# can also be a package attribute that will be used if not specified in versions
git_sparse_paths = ["doe", "rae"]
# use the package attribute
version("1.0.0")
version("1.1.0")
# use the function
version("1.1.5", git_sparse_paths=sparse_path_func)
version("1.2.0", git_sparse_paths=sparse_path_func)
version("1.2.5", git_sparse_paths=sparse_path_func)
version("1.1.5", git_sparse_paths=sparse_path_func)
.. _github-fetch:
^^^^^^
@@ -2384,27 +2344,6 @@ you set ``parallel`` to ``False`` at the package level, then each call
to ``make()`` will be sequential by default, but packagers can call
``make(parallel=True)`` to override it.
Note that the ``--jobs`` option works out of the box for all standard
build systems. If you are using a non-standard build system instead, you
can use the variable ``make_jobs`` to extract the number of jobs specified
by the ``--jobs`` option:
.. code-block:: python
:emphasize-lines: 7, 11
:linenos:
class Xios(Package):
...
def install(self, spec, prefix):
...
options = [
...
'--jobs', str(make_jobs),
]
...
make_xios = Executable("./make_xios")
make_xios(*options)
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
Install-level build parallelism
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
@@ -5234,6 +5173,12 @@ installed executable. The check is implemented as follows:
reframe = Executable(self.prefix.bin.reframe)
reframe("-l")
.. warning::
The API for adding tests is not yet considered stable and may change
in future releases.
""""""""""""""""""""""""""""""""
Checking build-time test results
""""""""""""""""""""""""""""""""
@@ -5271,42 +5216,38 @@ be left in the build stage directory as illustrated below:
Stand-alone tests
^^^^^^^^^^^^^^^^^
While build-time tests are integrated with the installation process, stand-alone
While build-time tests are integrated with the build process, stand-alone
tests are expected to run days, weeks, even months after the software is
installed. The goal is to provide a mechanism for gaining confidence that
packages work as installed **and** *continue* to work as the underlying
software evolves. Packages can add and inherit stand-alone tests. The
``spack test`` command is used for stand-alone testing.
`spack test`` command is used to manage stand-alone testing.
.. admonition:: Stand-alone test methods should complete within a few minutes.
.. note::
Execution speed is important since these tests are intended to quickly
assess whether installed specs work on the system. Spack cannot spare
resources for more extensive testing of packages included in CI stacks.
assess whether installed specs work on the system. Consequently, they
should run relatively quickly -- as in on the order of at most a few
minutes -- while ideally executing all, or at least key aspects of the
installed software.
Consequently, stand-alone tests should run relatively quickly -- as in
on the order of at most a few minutes -- while testing at least key aspects
of the installed software. Save more extensive testing for other tools.
.. note::
Failing stand-alone tests indicate problems with the installation and,
therefore, there is no reason to proceed with more resource-intensive
tests until those have been investigated.
Passing stand-alone tests indicate that more thorough testing, such
as running extensive unit or regression tests, or tests that run at
scale can proceed without wasting resources on a problematic installation.
Tests are defined in the package using methods with names beginning ``test_``.
This allows Spack to support multiple independent checks, or parts. Files
needed for testing, such as source, data, and expected outputs, may be saved
from the build and or stored with the package in the repository. Regardless
of origin, these files are automatically copied to the spec's test stage
directory prior to execution of the test method(s). Spack also provides helper
functions to facilitate common processing.
.. tip::
**The status of stand-alone tests can be used to guide follow-up testing efforts.**
Passing stand-alone tests justify performing more thorough testing, such
as running extensive unit or regression tests or tests that run at scale,
when available. These tests are outside of the scope of Spack packaging.
Failing stand-alone tests indicate problems with the installation and,
therefore, no reason to proceed with more resource-intensive tests until
the failures have been investigated.
directory prior to execution of the test method(s). Spack also provides some
helper functions to facilitate processing.
.. _configure-test-stage:
@@ -5314,26 +5255,30 @@ functions to facilitate common processing.
Configuring the test stage directory
""""""""""""""""""""""""""""""""""""
Stand-alone tests utilize a test stage directory to build, run, and track
tests in the same way Spack uses a build stage directory to install software.
The default test stage root directory, ``$HOME/.spack/test``, is defined in
:ref:`config.yaml <config-yaml>`. This location is customizable by adding or
changing the ``test_stage`` path such that:
Stand-alone tests utilize a test stage directory for building, running,
and tracking results in the same way Spack uses a build stage directory.
The default test stage root directory, ``~/.spack/test``, is defined in
:ref:`etc/spack/defaults/config.yaml <config-yaml>`. This location is
customizable by adding or changing the ``test_stage`` path in the high-level
``config`` of the appropriate ``config.yaml`` file such that:
.. code-block:: yaml
config:
test_stage: /path/to/test/stage
Packages can use the ``self.test_suite.stage`` property to access the path.
Packages can use the ``self.test_suite.stage`` property to access this setting.
Other package properties that provide access to spec-specific subdirectories
and files are described in :ref:`accessing staged files <accessing-files>`.
.. admonition:: Each spec being tested has its own test stage directory.
.. note::
The ``config:test_stage`` option is the path to the root of a
**test suite**'s stage directories.
The test stage path is the root directory for the **entire suite**.
In other words, it is the root directory for **all specs** being
tested by the ``spack test run`` command. Each spec gets its own
stage subdirectory. Use ``self.test_suite.test_dir_for_spec(self.spec)``
to access the spec-specific test stage directory.
Other package properties that provide paths to spec-specific subdirectories
and files are described in :ref:`accessing-files`.
.. _adding-standalone-tests:
@@ -5346,144 +5291,61 @@ Test recipes are defined in the package using methods with names beginning
Each method has access to the information Spack tracks on the package, such
as options, compilers, and dependencies, supporting the customization of tests
to the build. Standard python ``assert`` statements and other error reporting
mechanisms can be used. These exceptions are automatically caught and reported
mechanisms are available. Such exceptions are automatically caught and reported
as test failures.
Each test method is an *implicit test part* named by the method. Its purpose
is the method's docstring. Providing a meaningful purpose for the test gives
context that can aid debugging. Spack outputs both the name and purpose at the
start of test execution so it's also important that the docstring/purpose be
brief.
.. tip::
We recommend naming test methods so it is clear *what* is being tested.
For example, if a test method is building and or running an executable
called ``example``, then call the method ``test_example``. This, together
with a similarly meaningful test purpose, will aid test comprehension,
debugging, and maintainability.
Stand-alone tests run in an environment that provides access to information
on the installed software, such as build options, dependencies, and compilers.
Build options and dependencies are accessed using the same spec checks used
by build recipes. Examples of checking :ref:`variant settings <variants>` and
:ref:`spec constraints <testing-specs>` can be found at the provided links.
.. admonition:: Spack automatically sets up the test stage directory and environment.
Spack automatically creates the test stage directory and copies
relevant files *prior to* running tests. It can also ensure build
dependencies are available **if** necessary.
The path to the test stage is configurable (see :ref:`configure-test-stage`).
Files that Spack knows to copy are those saved from the build (see
:ref:`cache_extra_test_sources`) and those added to the package repository
(see :ref:`cache_custom_files`).
Spack will use the value of the ``test_requires_compiler`` property to
determine whether it needs to also set up build dependencies (see
:ref:`test-build-tests`).
The ``MyPackage`` package below provides two basic test examples:
``test_example`` and ``test_example2``. The first runs the installed
``example`` and ensures its output contains an expected string. The second
runs ``example2`` without checking output so is only concerned with confirming
the executable runs successfully. If the installed spec is not expected to have
``example2``, then the check at the top of the method will raise a special
``SkipTest`` exception, which is captured to facilitate reporting skipped test
parts to tools like CDash.
Each test method is an implicit test part named by the method and whose
purpose is the method's docstring. Providing a purpose gives context for
aiding debugging. A test method may contain embedded test parts. Spack
outputs the test name and purpose prior to running each test method and
any embedded test parts. For example, ``MyPackage`` below provides two basic
examples of installation tests: ``test_always_fails`` and ``test_example``.
As the name indicates, the first always fails. The second simply runs the
installed example.
.. code-block:: python
class MyPackage(Package):
...
def test_always_fails(self):
"""use assert to always fail"""
assert False
def test_example(self):
"""ensure installed example works"""
expected = "Done."
"""run installed example"""
example = which(self.prefix.bin.example)
# Capture stdout and stderr from running the Executable
# and check that the expected output was produced.
out = example(output=str.split, error=str.split)
assert expected in out, f"Expected '{expected}' in the output"
def test_example2(self):
"""run installed example2"""
if self.spec.satisfies("@:1.0"):
# Raise SkipTest to ensure flagging the test as skipped for
# test reporting purposes.
raise SkipTest("Test is only available for v1.1 on")
example2 = which(self.prefix.bin.example2)
example2()
example()
Output showing the identification of each test part after running the tests
is illustrated below.
.. code-block:: console
$ spack test run --alias mypackage mypackage@2.0
$ spack test run --alias mypackage mypackage@1.0
==> Spack test mypackage
...
$ spack test results -l mypackage
==> Results for test suite 'mypackage':
...
==> [2024-03-10-16:03:56.625439] test: test_example: ensure installed example works
==> [2023-03-10-16:03:56.625204] test: test_always_fails: use assert to always fail
...
PASSED: MyPackage::test_example
==> [2024-03-10-16:03:56.625439] test: test_example2: run installed example2
FAILED
==> [2023-03-10-16:03:56.625439] test: test_example: run installed example
...
PASSED: MyPackage::test_example2
PASSED
.. admonition:: Do NOT implement tests that must run in the installation prefix.
Use of the package spec's installation prefix for building and running
tests is **strongly discouraged**. Doing so causes permission errors for
shared spack instances *and* facilities that install the software in
read-only file systems or directories.
.. note::
Instead, start these test methods by explicitly copying the needed files
from the installation prefix to the test stage directory. Note the test
stage directory is the current directory when the test is executed with
the ``spack test run`` command.
If ``MyPackage`` were a recipe for a library, the tests should build
an example or test program that is then executed.
.. admonition:: Test methods for library packages should build test executables.
A test method can include test parts using the ``test_part`` context manager.
Each part is treated as an independent check to allow subsequent test parts
to execute even after a test part fails.
Stand-alone tests for library packages *should* build test executables
that utilize the *installed* library. Doing so ensures the tests follow
a similar build process that users of the library would follow.
For more information on how to do this, see :ref:`test-build-tests`.
.. tip::
If you want to see more examples from packages with stand-alone tests, run
``spack pkg grep "def\stest" | sed "s/\/package.py.*//g" | sort -u``
from the command line to get a list of the packages.
.. _adding-standalone-test-parts:
"""""""""""""""""""""""""""""
Adding stand-alone test parts
"""""""""""""""""""""""""""""
Sometimes dependencies between steps of a test lend themselves to being
broken into parts. Tracking the pass/fail status of each part may aid
debugging. Spack provides a ``test_part`` context manager for use within
test methods.
Each test part is independently run, tracked, and reported. Test parts are
executed in the order they appear. If one fails, subsequent test parts are
still performed even if they would also fail. This allows tools like CDash
to track and report the status of test parts across runs. The pass/fail status
of the enclosing test is derived from the statuses of the embedded test parts.
.. admonition:: Test method and test part names **must** be unique.
Test results reporting requires that test methods and embedded test parts
within a package have unique names.
.. _test-part:
The signature for ``test_part`` is:
@@ -5505,68 +5367,40 @@ where each argument has the following meaning:
* ``work_dir`` is the path to the directory in which the test will run.
The default of ``None``, or ``"."``, corresponds to the the spec's test
stage (i.e., ``self.test_suite.test_dir_for_spec(self.spec)``).
stage (i.e., ``self.test_suite.test_dir_for_spec(self.spec)``.
.. admonition:: Start test part names with the name of the enclosing test.
.. admonition:: Tests should **not** run under the installation directory.
We **highly recommend** starting the names of test parts with the name
of the enclosing test. Doing so helps with the comprehension, readability
and debugging of test results.
Use of the package spec's installation directory for building and running
tests is **strongly** discouraged. Doing so causes permission errors for
shared spack instances *and* facilities that install the software in
read-only file systems or directories.
Suppose ``MyPackage`` installs multiple executables that need to run in a
specific order since the outputs from one are inputs of others. Further suppose
we want to add an integration test that runs the executables in order. We can
accomplish this goal by implementing a stand-alone test method consisting of
test parts for each executable as follows:
Suppose ``MyPackage`` actually installs two examples we want to use for tests.
These checks can be implemented as separate checks or, as illustrated below,
embedded test parts.
.. code-block:: python
class MyPackage(Package):
...
def test_series(self):
"""run setup, perform, and report"""
def test_example(self):
"""run installed examples"""
for example in ["ex1", "ex2"]:
with test_part(
self,
f"test_example_{example}",
purpose=f"run installed {example}",
):
exe = which(join_path(self.prefix.bin, example))
exe()
with test_part(self, "test_series_setup", purpose="setup operation"):
exe = which(self.prefix.bin.setup))
exe()
with test_part(self, "test_series_run", purpose="perform operation"):
exe = which(self.prefix.bin.run))
exe()
with test_part(self, "test_series_report", purpose="generate report"):
exe = which(self.prefix.bin.report))
exe()
The result is ``test_series`` runs the following executable in order: ``setup``,
``run``, and ``report``. In this case no options are passed to any of the
executables and no outputs from running them are checked. Consequently, the
implementation could be simplified with a for-loop as follows:
.. code-block:: python
class MyPackage(Package):
...
def test_series(self):
"""execute series setup, run, and report"""
for exe, reason in [
("setup", "setup operation"),
("run", "perform operation"),
("report", "generate report")
]:
with test_part(self, f"test_series_{exe}", purpose=reason):
exe = which(self.prefix.bin.join(exe))
exe()
In both cases, since we're using a context manager, each test part in
``test_series`` will execute regardless of the status of the other test
parts.
Now let's look at the output from running the stand-alone tests where
the second test part, ``test_series_run``, fails.
In this case, there will be an implicit test part for ``test_example``
and separate sub-parts for ``ex1`` and ``ex2``. The second sub-part
will be executed regardless of whether the first passes. The test
log for a run where the first executable fails and the second passes
is illustrated below.
.. code-block:: console
@@ -5576,68 +5410,50 @@ the second test part, ``test_series_run``, fails.
$ spack test results -l mypackage
==> Results for test suite 'mypackage':
...
==> [2024-03-10-16:03:56.625204] test: test_series: execute series setup, run, and report
==> [2024-03-10-16:03:56.625439] test: test_series_setup: setup operation
==> [2023-03-10-16:03:56.625204] test: test_example: run installed examples
==> [2023-03-10-16:03:56.625439] test: test_example_ex1: run installed ex1
...
PASSED: MyPackage::test_series_setup
==> [2024-03-10-16:03:56.625555] test: test_series_run: perform operation
FAILED
==> [2023-03-10-16:03:56.625555] test: test_example_ex2: run installed ex2
...
FAILED: MyPackage::test_series_run
==> [2024-03-10-16:03:57.003456] test: test_series_report: generate report
...
FAILED: MyPackage::test_series_report
FAILED: MyPackage::test_series
PASSED
...
Since test parts depended on the success of previous parts, we see that the
failure of one results in the failure of subsequent checks and the overall
result of the test method, ``test_series``, is failure.
.. warning::
.. tip::
Test results reporting requires that each test method and embedded
test part for a package have a unique name.
If you want to see more examples from packages using ``test_part``, run
``spack pkg grep "test_part(" | sed "s/\/package.py.*//g" | sort -u``
from the command line to get a list of the packages.
Stand-alone tests run in an environment that provides access to information
Spack has on how the software was built, such as build options, dependencies,
and compilers. Build options and dependencies are accessed with the normal
spec checks. Examples of checking :ref:`variant settings <variants>` and
:ref:`spec constraints <testing-specs>` can be found at the provided links.
Accessing compilers in stand-alone tests that are used by the build requires
setting a package property as described :ref:`below <test-compilation>`.
.. _test-build-tests:
"""""""""""""""""""""""""""""""""""""
Building and running test executables
"""""""""""""""""""""""""""""""""""""
.. _test-compilation:
.. admonition:: Re-use build-time sources and (small) input data sets when possible.
"""""""""""""""""""""""""
Enabling test compilation
"""""""""""""""""""""""""
We **highly recommend** re-using build-time test sources and pared down
input files for testing installed software. These files are easier
to keep synchronized with software capabilities when they reside
within the software's repository. More information on saving files from
the installation process can be found at :ref:`cache_extra_test_sources`.
If you want to build and run binaries in tests, then you'll need to tell
Spack to load the package's compiler configuration. This is accomplished
by setting the package's ``test_requires_compiler`` property to ``True``.
If that is not possible, you can add test-related files to the package
repository (see :ref:`cache_custom_files`). It will be important to
remember to maintain them so they work across listed or supported versions
of the package.
Setting the property to ``True`` ensures access to the compiler through
canonical environment variables (e.g., ``CC``, ``CXX``, ``FC``, ``F77``).
It also gives access to build dependencies like ``cmake`` through their
``spec objects`` (e.g., ``self.spec["cmake"].prefix.bin.cmake``).
Packages that build libraries are good examples of cases where you'll want
to build test executables from the installed software before running them.
Doing so requires you to let Spack know it needs to load the package's
compiler configuration. This is accomplished by setting the package's
``test_requires_compiler`` property to ``True``.
.. note::
.. admonition:: ``test_requires_compiler = True`` is required to build test executables.
The ``test_requires_compiler`` property should be added at the top of
the package near other attributes, such as the ``homepage`` and ``url``.
Setting the property to ``True`` ensures access to the compiler through
canonical environment variables (e.g., ``CC``, ``CXX``, ``FC``, ``F77``).
It also gives access to build dependencies like ``cmake`` through their
``spec objects`` (e.g., ``self.spec["cmake"].prefix.bin.cmake`` for the
path or ``self.spec["cmake"].command`` for the ``Executable`` instance).
Be sure to add the property at the top of the package class under other
properties like the ``homepage``.
The example below, which ignores how ``cxx-example.cpp`` is acquired,
illustrates the basic process of compiling a test executable using the
installed library before running it.
Below illustrates using this feature to compile an example.
.. code-block:: python
@@ -5661,22 +5477,28 @@ installed library before running it.
cxx_example = which(exe)
cxx_example()
Typically the files used to build and or run test executables are either
cached from the installation (see :ref:`cache_extra_test_sources`) or added
to the package repository (see :ref:`cache_custom_files`). There is nothing
preventing the use of both.
.. _cache_extra_test_sources:
""""""""""""""""""""""""""""""""""""
Saving build- and install-time files
""""""""""""""""""""""""""""""""""""
"""""""""""""""""""""""
Saving build-time files
"""""""""""""""""""""""
You can use the ``cache_extra_test_sources`` helper routine to copy
directories and or files from the source build stage directory to the
package's installation directory. Spack will automatically copy these
files for you when it sets up the test stage directory and before it
begins running the tests.
.. note::
We highly recommend re-using build-time test sources and pared down
input files for testing installed software. These files are easier
to keep synchronized with software capabilities since they reside
within the software's repository.
If that is not possible, you can add test-related files to the package
repository (see :ref:`adding custom files <cache_custom_files>`). It
will be important to maintain them so they work across listed or supported
versions of the package.
You can use the ``cache_extra_test_sources`` helper to copy directories
and or files from the source build stage directory to the package's
installation directory.
The signature for ``cache_extra_test_sources`` is:
@@ -5691,69 +5513,46 @@ where each argument has the following meaning:
* ``srcs`` is a string *or* a list of strings corresponding to the
paths of subdirectories and or files needed for stand-alone testing.
.. warning::
The paths must be relative to the staged source directory. Contents of
subdirectories and files are copied to a special test cache subdirectory
of the installation prefix. They are automatically copied to the appropriate
relative paths under the test stage directory prior to executing stand-alone
tests.
Paths provided in the ``srcs`` argument **must be relative** to the
staged source directory. They will be copied to the equivalent relative
location under the test stage directory prior to test execution.
Contents of subdirectories and files are copied to a special test cache
subdirectory of the installation prefix. They are automatically copied to
the appropriate relative paths under the test stage directory prior to
executing stand-alone tests.
.. tip::
*Perform test-related conversions once when copying files.*
If one or more of the copied files needs to be modified to reference
the installed software, it is recommended that those changes be made
to the cached files **once** in the post-``install`` copy method
**after** the call to ``cache_extra_test_sources``. This will reduce
the amount of unnecessary work in the test method **and** avoid problems
running stand-alone tests in shared instances and facility deployments.
The ``filter_file`` function can be quite useful for such changes
(see :ref:`file-filtering`).
Below is a basic example of a test that relies on files from the installation.
This package method re-uses the contents of the ``examples`` subdirectory,
which is assumed to have all of the files implemented to allow ``make`` to
compile and link ``foo.c`` and ``bar.c`` against the package's installed
library.
For example, a package method for copying everything in the ``tests``
subdirectory plus the ``foo.c`` and ``bar.c`` files from ``examples``
and using ``foo.c`` in a test method is illustrated below.
.. code-block:: python
class MyLibPackage(MakefilePackage):
class MyLibPackage(Package):
...
@run_after("install")
def copy_test_files(self):
cache_extra_test_sources(self, "examples")
srcs = ["tests",
join_path("examples", "foo.c"),
join_path("examples", "bar.c")]
cache_extra_test_sources(self, srcs)
def test_example(self):
"""build and run the examples"""
examples_dir = self.test_suite.current_test_cache_dir.examples
with working_dir(examples_dir):
make = which("make")
make()
def test_foo(self):
exe = "foo"
src_dir = self.test_suite.current_test_cache_dir.examples
with working_dir(src_dir):
cc = which(os.environ["CC"])
cc(
f"-L{self.prefix.lib}",
f"-I{self.prefix.include}",
f"{exe}.c",
"-o", exe
)
foo = which(exe)
foo()
for program in ["foo", "bar"]:
with test_part(
self,
f"test_example_{program}",
purpose=f"ensure {program} runs"
):
exe = Executable(program)
exe()
In this case, ``copy_test_files`` copies the associated files from the
build stage to the package's test cache directory under the installation
prefix. Running ``spack test run`` for the package results in Spack copying
the directory and its contents to the the test stage directory. The
``working_dir`` context manager ensures the commands within it are executed
from the ``examples_dir``. The test builds the software using ``make`` before
running each executable, ``foo`` and ``bar``, as independent test parts.
In this case, the method copies the associated files from the build
stage, **after** the software is installed, to the package's test
cache directory. Then ``test_foo`` builds ``foo`` using ``foo.c``
before running the program.
.. note::
@@ -5762,18 +5561,43 @@ running each executable, ``foo`` and ``bar``, as independent test parts.
The key to copying files for stand-alone testing at build time is use
of the ``run_after`` directive, which ensures the associated files are
copied **after** the provided build stage (``install``) when the installation
prefix **and** files are available.
copied **after** the provided build stage where the files **and**
installation prefix are available.
The test method uses the path contained in the package's
``self.test_suite.current_test_cache_dir`` property for the root directory
of the copied files. In this case, that's the ``examples`` subdirectory.
These paths are **automatically copied** from cache to the test stage
directory prior to the execution of any stand-alone tests. Tests access
the files using the ``self.test_suite.current_test_cache_dir`` property.
In our example above, test methods can use the following paths to reference
the copy of each entry listed in ``srcs``, respectively:
.. tip::
* ``self.test_suite.current_test_cache_dir.tests``
* ``join_path(self.test_suite.current_test_cache_dir.examples, "foo.c")``
* ``join_path(self.test_suite.current_test_cache_dir.examples, "bar.c")``
.. admonition:: Library packages should build stand-alone tests
Library developers will want to build the associated tests
against their **installed** libraries before running them.
.. note::
While source and input files are generally recommended, binaries
**may** also be cached by the build process. Only you, as the package
writer or maintainer, know whether these files would be appropriate
for testing the installed software weeks to months later.
.. note::
If one or more of the copied files needs to be modified to reference
the installed software, it is recommended that those changes be made
to the cached files **once** in the ``copy_test_sources`` method and
***after** the call to ``cache_extra_test_sources()``. This will
reduce the amount of unnecessary work in the test method **and** avoid
problems testing in shared instances and facility deployments.
The ``filter_file`` function can be quite useful for such changes.
See :ref:`file manipulation <file-manipulation>`.
If you want to see more examples from packages that cache build files, run
``spack pkg grep cache_extra_test_sources | sed "s/\/package.py.*//g" | sort -u``
from the command line to get a list of the packages.
.. _cache_custom_files:
@@ -5781,9 +5605,8 @@ running each executable, ``foo`` and ``bar``, as independent test parts.
Adding custom files
"""""""""""""""""""
Sometimes it is helpful or necessary to include custom files for building and
or checking the results of tests as part of the package. Examples of the types
of files that might be useful are:
In some cases it can be useful to have files that can be used to build or
check the results of tests. Examples include:
- test source files
- test input files
@@ -5791,15 +5614,17 @@ of files that might be useful are:
- expected test outputs
While obtaining such files from the software repository is preferred (see
:ref:`cache_extra_test_sources`), there are circumstances where doing so is not
feasible such as when the software is not being actively maintained. When test
files cannot be obtained from the repository or there is a need to supplement
files that can, Spack supports the inclusion of additional files under the
``test`` subdirectory of the package in the Spack repository.
:ref:`adding build-time files <cache_extra_test_sources>`), there are
circumstances where that is not feasible (e.g., the software is not being
actively maintained). When test files can't be obtained from the repository
or as a supplement to files that can, Spack supports the inclusion of
additional files under the ``test`` subdirectory of the package in the
Spack repository.
The following example assumes a ``custom-example.c`` is saved in ``MyLibary``
package's ``test`` subdirectory. It also assumes the program simply needs to
be compiled and linked against the installed ``MyLibrary`` software.
Spack **automatically copies** the contents of that directory to the
test staging directory prior to running stand-alone tests. Test methods
access those files using the ``self.test_suite.current_test_data_dir``
property as shown below.
.. code-block:: python
@@ -5809,29 +5634,17 @@ be compiled and linked against the installed ``MyLibrary`` software.
test_requires_compiler = True
...
def test_custom_example(self):
def test_example(self):
"""build and run custom-example"""
src_dir = self.test_suite.current_test_data_dir
data_dir = self.test_suite.current_test_data_dir
exe = "custom-example"
src = datadir.join(f"{exe}.cpp")
...
# TODO: Build custom-example using src and exe
...
custom_example = which(exe)
custom_example()
with working_dir(src_dir):
cc = which(os.environ["CC"])
cc(
f"-L{self.prefix.lib}",
f"-I{self.prefix.include}",
f"{exe}.cpp",
"-o", exe
)
custom_example = Executable(exe)
custom_example()
In this case, ``spack test run`` for the package results in Spack copying
the contents of the ``test`` subdirectory to the test stage directory path
in ``self.test_suite.current_test_data_dir`` before calling
``test_custom_example``. Use of the ``working_dir`` context manager
ensures the commands to build and run the program are performed from
within the appropriate subdirectory of the test stage.
.. _expected_test_output_from_file:
@@ -5840,8 +5653,9 @@ Reading expected output from a file
"""""""""""""""""""""""""""""""""""
The helper function ``get_escaped_text_output`` is available for packages
to retrieve properly formatted text from a file potentially containing
special characters.
to retrieve and properly format the text from a file that contains the
expected output from running an executable that may contain special
characters.
The signature for ``get_escaped_text_output`` is:
@@ -5851,13 +5665,10 @@ The signature for ``get_escaped_text_output`` is:
where ``filename`` is the path to the file containing the expected output.
The path provided to ``filename`` for one of the copied custom files
(:ref:`custom file <cache_custom_files>`) is in the path rooted at
``self.test_suite.current_test_data_dir``.
The example below shows how to reference both the custom database
(``packages.db``) and expected output (``dump.out``) files Spack copies
to the test stage:
The ``filename`` for a :ref:`custom file <cache_custom_files>` can be
accessed by tests using the ``self.test_suite.current_test_data_dir``
property. The example below illustrates how to read a file that was
added to the package's ``test`` subdirectory.
.. code-block:: python
@@ -5879,9 +5690,8 @@ to the test stage:
for exp in expected:
assert re.search(exp, out), f"Expected '{exp}' in output"
If the files were instead cached from installing the software, the paths to the
two files would be found under the ``self.test_suite.current_test_cache_dir``
directory as shown below:
If the file was instead copied from the ``tests`` subdirectory of the staged
source code, the path would be obtained as shown below.
.. code-block:: python
@@ -5889,24 +5699,17 @@ directory as shown below:
"""check example table dump"""
test_cache_dir = self.test_suite.current_test_cache_dir
db_filename = test_cache_dir.join("packages.db")
..
expected = get_escaped_text_output(test_cache_dir.join("dump.out"))
...
Alternatively, if both files had been installed by the software into the
``share/tests`` subdirectory of the installation prefix, the paths to the
two files would be referenced as follows:
Alternatively, if the file was copied to the ``share/tests`` subdirectory
as part of the installation process, the test could access the path as
follows:
.. code-block:: python
def test_example(self):
"""check example table dump"""
db_filename = self.prefix.share.tests.join("packages.db")
..
expected = get_escaped_text_output(
self.prefix.share.tests.join("dump.out")
)
...
db_filename = join_path(self.prefix.share.tests, "packages.db")
.. _check_outputs:
@@ -5914,9 +5717,9 @@ two files would be referenced as follows:
Comparing expected to actual outputs
""""""""""""""""""""""""""""""""""""
The ``check_outputs`` helper routine is available for packages to ensure
multiple expected outputs from running an executable are contained within
the actual outputs.
The helper function ``check_outputs`` is available for packages to ensure
the expected outputs from running an executable are contained within the
actual outputs.
The signature for ``check_outputs`` is:
@@ -5942,17 +5745,11 @@ Invoking the method is the equivalent of:
if errors:
raise RuntimeError("\n ".join(errors))
.. tip::
If you want to see more examples from packages that use this helper, run
``spack pkg grep check_outputs | sed "s/\/package.py.*//g" | sort -u``
from the command line to get a list of the packages.
.. _accessing-files:
"""""""""""""""""""""""""""""""""""""""""
Finding package- and test-related files
Accessing package- and test-related files
"""""""""""""""""""""""""""""""""""""""""
You may need to access files from one or more locations when writing
@@ -5961,7 +5758,8 @@ include test source files or includes them but has no way to build the
executables using the installed headers and libraries. In these cases
you may need to reference the files relative to one or more root directory.
The table below lists relevant path properties and provides additional
examples of their use. See :ref:`expected_test_output_from_file` for
examples of their use.
:ref:`Reading expected output <expected_test_output_from_file>` provides
examples of accessing files saved from the software repository, package
repository, and installation.
@@ -5990,6 +5788,7 @@ repository, and installation.
- ``self.test_suite.current_test_data_dir``
- ``join_path(self.test_suite.current_test_data_dir, "hello.f90")``
.. _inheriting-tests:
""""""""""""""""""""""""""""
@@ -6032,7 +5831,7 @@ maintainers provide additional stand-alone tests customized to the package.
.. warning::
Any package that implements a test method with the same name as an
inherited method will override the inherited method. If that is not the
inherited method overrides the inherited method. If that is not the
goal and you are not explicitly calling and adding functionality to
the inherited method for the test, then make sure that all test methods
and embedded test parts have unique test names.
@@ -6197,8 +5996,6 @@ running:
This is already part of the boilerplate for packages created with
``spack create``.
.. _file-filtering:
^^^^^^^^^^^^^^^^^^^
Filtering functions
^^^^^^^^^^^^^^^^^^^
@@ -6638,12 +6435,9 @@ the ``paths`` attribute:
echo "Target: x86_64-pc-linux-gnu"
echo "Thread model: posix"
echo "InstalledDir: /usr/bin"
platforms: ["linux", "darwin"]
results:
- spec: 'llvm@3.9.1 +clang~lld~lldb'
If the ``platforms`` attribute is present, tests are run only if the current host
matches one of the listed platforms.
Each test is performed by first creating a temporary directory structure as
specified in the corresponding ``layout`` and by then running
package detection and checking that the outcome matches the expected
@@ -6677,10 +6471,6 @@ package detection and checking that the outcome matches the expected
- A spec that is expected from detection
- Any valid spec
- Yes
* - ``results:[0]:extra_attributes``
- Extra attributes expected on the associated Spec
- Nested dictionary with string as keys, and regular expressions as leaf values
- No
"""""""""""""""""""""""""""""""
Reuse tests from other packages

View File

@@ -253,6 +253,17 @@ can easily happen if it is not updated frequently, this behavior ensures that
spack has a way to know for certain about the status of any concrete spec on
the remote mirror, but can slow down pipeline generation significantly.
The ``--optimize`` argument is experimental and runs the generated pipeline
document through a series of optimization passes designed to reduce the size
of the generated file.
The ``--dependencies`` is also experimental and disables what in Gitlab is
referred to as DAG scheduling, internally using the ``dependencies`` keyword
rather than ``needs`` to list dependency jobs. The drawback of using this option
is that before any job can begin, all jobs in previous stages must first
complete. The benefit is that Gitlab allows more dependencies to be listed
when using ``dependencies`` instead of ``needs``.
The optional ``--output-file`` argument should be an absolute path (including
file name) to the generated pipeline, and if not given, the default is
``./.gitlab-ci.yml``.
@@ -663,7 +674,11 @@ build the package.
When including a bootstrapping phase as in the example above, the result is that
the bootstrapped compiler packages will be pushed to the binary mirror (and the
local artifacts mirror) before the actual release specs are built.
local artifacts mirror) before the actual release specs are built. In this case,
the jobs corresponding to subsequent release specs are configured to
``install_missing_compilers``, so that if spack is asked to install a package
with a compiler it doesn't know about, it can be quickly installed from the
binary mirror first.
Since bootstrapping compilers is optional, those items can be left out of the
environment/stack file, and in that case no bootstrapping will be done (only the

View File

@@ -476,3 +476,9 @@ implemented using Python's built-in `sys.path
:py:mod:`spack.repo` module implements a custom `Python importer
<https://docs.python.org/2/library/imp.html>`_.
.. warning::
The mechanism for extending packages is not yet extensively tested,
and extending packages across repositories imposes inter-repo
dependencies, which may be hard to manage. Use this feature at your
own risk, but let us know if you have a use case for it.

View File

@@ -1,13 +1,13 @@
sphinx==7.4.7
sphinx==7.2.6
sphinxcontrib-programoutput==0.17
sphinx_design==0.6.1
sphinx_design==0.5.0
sphinx-rtd-theme==2.0.0
python-levenshtein==0.25.1
python-levenshtein==0.25.0
docutils==0.20.1
pygments==2.18.0
urllib3==2.2.3
pytest==8.3.3
pygments==2.17.2
urllib3==2.2.1
pytest==8.1.1
isort==5.13.2
black==24.8.0
flake8==7.1.1
mypy==1.11.1
black==24.3.0
flake8==7.0.0
mypy==1.9.0

347
lib/spack/env/cc vendored
View File

@@ -47,8 +47,7 @@ SPACK_F77_RPATH_ARG
SPACK_FC_RPATH_ARG
SPACK_LINKER_ARG
SPACK_SHORT_SPEC
SPACK_SYSTEM_DIRS
SPACK_MANAGED_DIRS"
SPACK_SYSTEM_DIRS"
# Optional parameters that aren't required to be set
@@ -174,44 +173,20 @@ preextend() {
unset IFS
}
execute() {
# dump the full command if the caller supplies SPACK_TEST_COMMAND=dump-args
if [ -n "${SPACK_TEST_COMMAND=}" ]; then
case "$SPACK_TEST_COMMAND" in
dump-args)
IFS="$lsep"
for arg in $full_command_list; do
echo "$arg"
done
unset IFS
exit
;;
dump-env-*)
var=${SPACK_TEST_COMMAND#dump-env-}
eval "printf '%s\n' \"\$0: \$var: \$$var\""
;;
*)
die "Unknown test command: '$SPACK_TEST_COMMAND'"
;;
esac
fi
#
# Write the input and output commands to debug logs if it's asked for.
#
if [ "$SPACK_DEBUG" = TRUE ]; then
input_log="$SPACK_DEBUG_LOG_DIR/spack-cc-$SPACK_DEBUG_LOG_ID.in.log"
output_log="$SPACK_DEBUG_LOG_DIR/spack-cc-$SPACK_DEBUG_LOG_ID.out.log"
echo "[$mode] $command $input_command" >> "$input_log"
IFS="$lsep"
echo "[$mode] "$full_command_list >> "$output_log"
unset IFS
fi
# Execute the full command, preserving spaces with IFS set
# to the alarm bell separator.
IFS="$lsep"; exec $full_command_list
exit
# system_dir PATH
# test whether a path is a system directory
system_dir() {
IFS=':' # SPACK_SYSTEM_DIRS is colon-separated
path="$1"
for sd in $SPACK_SYSTEM_DIRS; do
if [ "${path}" = "${sd}" ] || [ "${path}" = "${sd}/" ]; then
# success if path starts with a system prefix
unset IFS
return 0
fi
done
unset IFS
return 1 # fail if path starts no system prefix
}
# Fail with a clear message if the input contains any bell characters.
@@ -226,18 +201,6 @@ for param in $params; do
fi
done
# eval this because SPACK_MANAGED_DIRS and SPACK_SYSTEM_DIRS are inputs we don't wanna loop over.
# moving the eval inside the function would eval it every call.
eval "\
path_order() {
case \"\$1\" in
$SPACK_MANAGED_DIRS) return 0 ;;
$SPACK_SYSTEM_DIRS) return 2 ;;
/*) return 1 ;;
esac
}
"
# Check if optional parameters are defined
# If we aren't asking for debug flags, don't add them
if [ -z "${SPACK_ADD_DEBUG_FLAGS:-}" ]; then
@@ -271,17 +234,12 @@ fi
# ld link
# ccld compile & link
# Note. SPACK_ALWAYS_XFLAGS are applied for all compiler invocations,
# including version checks (SPACK_XFLAGS variants are not applied
# for version checks).
command="${0##*/}"
comp="CC"
vcheck_flags=""
case "$command" in
cpp)
mode=cpp
debug_flags="-g"
vcheck_flags="${SPACK_ALWAYS_CPPFLAGS}"
;;
cc|c89|c99|gcc|clang|armclang|icc|icx|pgcc|nvc|xlc|xlc_r|fcc|amdclang|cl.exe|craycc)
command="$SPACK_CC"
@@ -289,15 +247,13 @@ case "$command" in
comp="CC"
lang_flags=C
debug_flags="-g"
vcheck_flags="${SPACK_ALWAYS_CFLAGS}"
;;
c++|CC|g++|clang++|armclang++|icpc|icpx|pgc++|nvc++|xlc++|xlc++_r|FCC|amdclang++|crayCC)
c++|CC|g++|clang++|armclang++|icpc|icpx|dpcpp|pgc++|nvc++|xlc++|xlc++_r|FCC|amdclang++|crayCC)
command="$SPACK_CXX"
language="C++"
comp="CXX"
lang_flags=CXX
debug_flags="-g"
vcheck_flags="${SPACK_ALWAYS_CXXFLAGS}"
;;
ftn|f90|fc|f95|gfortran|flang|armflang|ifort|ifx|pgfortran|nvfortran|xlf90|xlf90_r|nagfor|frt|amdflang|crayftn)
command="$SPACK_FC"
@@ -305,7 +261,6 @@ case "$command" in
comp="FC"
lang_flags=F
debug_flags="-g"
vcheck_flags="${SPACK_ALWAYS_FFLAGS}"
;;
f77|xlf|xlf_r|pgf77)
command="$SPACK_F77"
@@ -313,7 +268,6 @@ case "$command" in
comp="F77"
lang_flags=F
debug_flags="-g"
vcheck_flags="${SPACK_ALWAYS_FFLAGS}"
;;
ld|ld.gold|ld.lld)
mode=ld
@@ -414,11 +368,7 @@ unset IFS
export PATH="$new_dirs"
if [ "$mode" = vcheck ]; then
full_command_list="$command"
args="$@"
extend full_command_list vcheck_flags
extend full_command_list args
execute
exec "${command}" "$@"
fi
# Darwin's linker has a -r argument that merges object files together.
@@ -470,12 +420,11 @@ input_command="$*"
parse_Wl() {
while [ $# -ne 0 ]; do
if [ "$wl_expect_rpath" = yes ]; then
path_order "$1"
case $? in
0) append return_spack_store_rpath_dirs_list "$1" ;;
1) append return_rpath_dirs_list "$1" ;;
2) append return_system_rpath_dirs_list "$1" ;;
esac
if system_dir "$1"; then
append return_system_rpath_dirs_list "$1"
else
append return_rpath_dirs_list "$1"
fi
wl_expect_rpath=no
else
case "$1" in
@@ -483,25 +432,21 @@ parse_Wl() {
arg="${1#-rpath=}"
if [ -z "$arg" ]; then
shift; continue
elif system_dir "$arg"; then
append return_system_rpath_dirs_list "$arg"
else
append return_rpath_dirs_list "$arg"
fi
path_order "$arg"
case $? in
0) append return_spack_store_rpath_dirs_list "$arg" ;;
1) append return_rpath_dirs_list "$arg" ;;
2) append return_system_rpath_dirs_list "$arg" ;;
esac
;;
--rpath=*)
arg="${1#--rpath=}"
if [ -z "$arg" ]; then
shift; continue
elif system_dir "$arg"; then
append return_system_rpath_dirs_list "$arg"
else
append return_rpath_dirs_list "$arg"
fi
path_order "$arg"
case $? in
0) append return_spack_store_rpath_dirs_list "$arg" ;;
1) append return_rpath_dirs_list "$arg" ;;
2) append return_system_rpath_dirs_list "$arg" ;;
esac
;;
-rpath|--rpath)
wl_expect_rpath=yes
@@ -528,20 +473,12 @@ categorize_arguments() {
return_other_args_list=""
return_isystem_was_used=""
return_isystem_spack_store_include_dirs_list=""
return_isystem_system_include_dirs_list=""
return_isystem_include_dirs_list=""
return_spack_store_include_dirs_list=""
return_system_include_dirs_list=""
return_include_dirs_list=""
return_spack_store_lib_dirs_list=""
return_system_lib_dirs_list=""
return_lib_dirs_list=""
return_spack_store_rpath_dirs_list=""
return_system_rpath_dirs_list=""
return_rpath_dirs_list=""
@@ -589,7 +526,7 @@ categorize_arguments() {
continue
fi
replaced="$after$stripped"
replaced="$after$stripped"
# it matched, remove it
shift
@@ -609,32 +546,29 @@ categorize_arguments() {
arg="${1#-isystem}"
return_isystem_was_used=true
if [ -z "$arg" ]; then shift; arg="$1"; fi
path_order "$arg"
case $? in
0) append return_isystem_spack_store_include_dirs_list "$arg" ;;
1) append return_isystem_include_dirs_list "$arg" ;;
2) append return_isystem_system_include_dirs_list "$arg" ;;
esac
if system_dir "$arg"; then
append return_isystem_system_include_dirs_list "$arg"
else
append return_isystem_include_dirs_list "$arg"
fi
;;
-I*)
arg="${1#-I}"
if [ -z "$arg" ]; then shift; arg="$1"; fi
path_order "$arg"
case $? in
0) append return_spack_store_include_dirs_list "$arg" ;;
1) append return_include_dirs_list "$arg" ;;
2) append return_system_include_dirs_list "$arg" ;;
esac
if system_dir "$arg"; then
append return_system_include_dirs_list "$arg"
else
append return_include_dirs_list "$arg"
fi
;;
-L*)
arg="${1#-L}"
if [ -z "$arg" ]; then shift; arg="$1"; fi
path_order "$arg"
case $? in
0) append return_spack_store_lib_dirs_list "$arg" ;;
1) append return_lib_dirs_list "$arg" ;;
2) append return_system_lib_dirs_list "$arg" ;;
esac
if system_dir "$arg"; then
append return_system_lib_dirs_list "$arg"
else
append return_lib_dirs_list "$arg"
fi
;;
-l*)
# -loopopt=0 is generated erroneously in autoconf <= 2.69,
@@ -667,32 +601,29 @@ categorize_arguments() {
break
elif [ "$xlinker_expect_rpath" = yes ]; then
# Register the path of -Xlinker -rpath <other args> -Xlinker <path>
path_order "$1"
case $? in
0) append return_spack_store_rpath_dirs_list "$1" ;;
1) append return_rpath_dirs_list "$1" ;;
2) append return_system_rpath_dirs_list "$1" ;;
esac
if system_dir "$1"; then
append return_system_rpath_dirs_list "$1"
else
append return_rpath_dirs_list "$1"
fi
xlinker_expect_rpath=no
else
case "$1" in
-rpath=*)
arg="${1#-rpath=}"
path_order "$arg"
case $? in
0) append return_spack_store_rpath_dirs_list "$arg" ;;
1) append return_rpath_dirs_list "$arg" ;;
2) append return_system_rpath_dirs_list "$arg" ;;
esac
if system_dir "$arg"; then
append return_system_rpath_dirs_list "$arg"
else
append return_rpath_dirs_list "$arg"
fi
;;
--rpath=*)
arg="${1#--rpath=}"
path_order "$arg"
case $? in
0) append return_spack_store_rpath_dirs_list "$arg" ;;
1) append return_rpath_dirs_list "$arg" ;;
2) append return_system_rpath_dirs_list "$arg" ;;
esac
if system_dir "$arg"; then
append return_system_rpath_dirs_list "$arg"
else
append return_rpath_dirs_list "$arg"
fi
;;
-rpath|--rpath)
xlinker_expect_rpath=yes
@@ -730,25 +661,16 @@ categorize_arguments() {
}
categorize_arguments "$@"
spack_store_include_dirs_list="$return_spack_store_include_dirs_list"
system_include_dirs_list="$return_system_include_dirs_list"
include_dirs_list="$return_include_dirs_list"
spack_store_lib_dirs_list="$return_spack_store_lib_dirs_list"
system_lib_dirs_list="$return_system_lib_dirs_list"
lib_dirs_list="$return_lib_dirs_list"
spack_store_rpath_dirs_list="$return_spack_store_rpath_dirs_list"
system_rpath_dirs_list="$return_system_rpath_dirs_list"
rpath_dirs_list="$return_rpath_dirs_list"
isystem_spack_store_include_dirs_list="$return_isystem_spack_store_include_dirs_list"
isystem_system_include_dirs_list="$return_isystem_system_include_dirs_list"
isystem_include_dirs_list="$return_isystem_include_dirs_list"
isystem_was_used="$return_isystem_was_used"
other_args_list="$return_other_args_list"
include_dirs_list="$return_include_dirs_list"
lib_dirs_list="$return_lib_dirs_list"
rpath_dirs_list="$return_rpath_dirs_list"
system_include_dirs_list="$return_system_include_dirs_list"
system_lib_dirs_list="$return_system_lib_dirs_list"
system_rpath_dirs_list="$return_system_rpath_dirs_list"
isystem_was_used="$return_isystem_was_used"
isystem_system_include_dirs_list="$return_isystem_system_include_dirs_list"
isystem_include_dirs_list="$return_isystem_include_dirs_list"
other_args_list="$return_other_args_list"
#
# Add flags from Spack's cppflags, cflags, cxxflags, fcflags, fflags, and
@@ -775,7 +697,6 @@ case "$mode" in
cc|ccld)
case $lang_flags in
F)
extend spack_flags_list SPACK_ALWAYS_FFLAGS
extend spack_flags_list SPACK_FFLAGS
;;
esac
@@ -785,7 +706,6 @@ esac
# C preprocessor flags come before any C/CXX flags
case "$mode" in
cpp|as|cc|ccld)
extend spack_flags_list SPACK_ALWAYS_CPPFLAGS
extend spack_flags_list SPACK_CPPFLAGS
;;
esac
@@ -796,11 +716,9 @@ case "$mode" in
cc|ccld)
case $lang_flags in
C)
extend spack_flags_list SPACK_ALWAYS_CFLAGS
extend spack_flags_list SPACK_CFLAGS
;;
CXX)
extend spack_flags_list SPACK_ALWAYS_CXXFLAGS
extend spack_flags_list SPACK_CXXFLAGS
;;
esac
@@ -812,7 +730,7 @@ esac
# Linker flags
case "$mode" in
ccld)
ld|ccld)
extend spack_flags_list SPACK_LDFLAGS
;;
esac
@@ -820,25 +738,16 @@ esac
IFS="$lsep"
categorize_arguments $spack_flags_list
unset IFS
spack_flags_isystem_spack_store_include_dirs_list="$return_isystem_spack_store_include_dirs_list"
spack_flags_isystem_system_include_dirs_list="$return_isystem_system_include_dirs_list"
spack_flags_isystem_include_dirs_list="$return_isystem_include_dirs_list"
spack_flags_spack_store_include_dirs_list="$return_spack_store_include_dirs_list"
spack_flags_system_include_dirs_list="$return_system_include_dirs_list"
spack_flags_include_dirs_list="$return_include_dirs_list"
spack_flags_spack_store_lib_dirs_list="$return_spack_store_lib_dirs_list"
spack_flags_system_lib_dirs_list="$return_system_lib_dirs_list"
spack_flags_lib_dirs_list="$return_lib_dirs_list"
spack_flags_spack_store_rpath_dirs_list="$return_spack_store_rpath_dirs_list"
spack_flags_system_rpath_dirs_list="$return_system_rpath_dirs_list"
spack_flags_rpath_dirs_list="$return_rpath_dirs_list"
spack_flags_isystem_was_used="$return_isystem_was_used"
spack_flags_other_args_list="$return_other_args_list"
spack_flags_include_dirs_list="$return_include_dirs_list"
spack_flags_lib_dirs_list="$return_lib_dirs_list"
spack_flags_rpath_dirs_list="$return_rpath_dirs_list"
spack_flags_system_include_dirs_list="$return_system_include_dirs_list"
spack_flags_system_lib_dirs_list="$return_system_lib_dirs_list"
spack_flags_system_rpath_dirs_list="$return_system_rpath_dirs_list"
spack_flags_isystem_was_used="$return_isystem_was_used"
spack_flags_isystem_system_include_dirs_list="$return_isystem_system_include_dirs_list"
spack_flags_isystem_include_dirs_list="$return_isystem_include_dirs_list"
spack_flags_other_args_list="$return_other_args_list"
# On macOS insert headerpad_max_install_names linker flag
@@ -858,13 +767,11 @@ if [ "$mode" = ccld ] || [ "$mode" = ld ]; then
# Append RPATH directories. Note that in the case of the
# top-level package these directories may not exist yet. For dependencies
# it is assumed that paths have already been confirmed.
extend spack_store_rpath_dirs_list SPACK_STORE_RPATH_DIRS
extend rpath_dirs_list SPACK_RPATH_DIRS
fi
fi
if [ "$mode" = ccld ] || [ "$mode" = ld ]; then
extend spack_store_lib_dirs_list SPACK_STORE_LINK_DIRS
extend lib_dirs_list SPACK_LINK_DIRS
fi
@@ -891,50 +798,38 @@ case "$mode" in
;;
esac
case "$mode" in
cpp|cc|as|ccld)
if [ "$spack_flags_isystem_was_used" = "true" ] || [ "$isystem_was_used" = "true" ]; then
extend isystem_spack_store_include_dirs_list SPACK_STORE_INCLUDE_DIRS
extend isystem_include_dirs_list SPACK_INCLUDE_DIRS
else
extend spack_store_include_dirs_list SPACK_STORE_INCLUDE_DIRS
extend include_dirs_list SPACK_INCLUDE_DIRS
fi
;;
esac
#
# Finally, reassemble the command line.
#
args_list="$flags_list"
# Include search paths partitioned by (in store, non-sytem, system)
# Insert include directories just prior to any system include directories
# NOTE: adding ${lsep} to the prefix here turns every added element into two
extend args_list spack_flags_spack_store_include_dirs_list -I
extend args_list spack_store_include_dirs_list -I
extend args_list spack_flags_include_dirs_list -I
extend args_list include_dirs_list -I
extend args_list spack_flags_isystem_spack_store_include_dirs_list "-isystem${lsep}"
extend args_list isystem_spack_store_include_dirs_list "-isystem${lsep}"
extend args_list spack_flags_include_dirs_list "-I"
extend args_list include_dirs_list "-I"
extend args_list spack_flags_isystem_include_dirs_list "-isystem${lsep}"
extend args_list isystem_include_dirs_list "-isystem${lsep}"
case "$mode" in
cpp|cc|as|ccld)
if [ "$spack_flags_isystem_was_used" = "true" ]; then
extend args_list SPACK_INCLUDE_DIRS "-isystem${lsep}"
elif [ "$isystem_was_used" = "true" ]; then
extend args_list SPACK_INCLUDE_DIRS "-isystem${lsep}"
else
extend args_list SPACK_INCLUDE_DIRS "-I"
fi
;;
esac
extend args_list spack_flags_system_include_dirs_list -I
extend args_list system_include_dirs_list -I
extend args_list spack_flags_isystem_system_include_dirs_list "-isystem${lsep}"
extend args_list isystem_system_include_dirs_list "-isystem${lsep}"
# Library search paths partitioned by (in store, non-sytem, system)
extend args_list spack_flags_spack_store_lib_dirs_list "-L"
extend args_list spack_store_lib_dirs_list "-L"
# Library search paths
extend args_list spack_flags_lib_dirs_list "-L"
extend args_list lib_dirs_list "-L"
extend args_list spack_flags_system_lib_dirs_list "-L"
extend args_list system_lib_dirs_list "-L"
@@ -944,12 +839,8 @@ case "$mode" in
if [ -n "$dtags_to_add" ] ; then
append args_list "$linker_arg$dtags_to_add"
fi
extend args_list spack_flags_spack_store_rpath_dirs_list "$rpath"
extend args_list spack_store_rpath_dirs_list "$rpath"
extend args_list spack_flags_rpath_dirs_list "$rpath"
extend args_list rpath_dirs_list "$rpath"
extend args_list spack_flags_system_rpath_dirs_list "$rpath"
extend args_list system_rpath_dirs_list "$rpath"
;;
@@ -957,12 +848,8 @@ case "$mode" in
if [ -n "$dtags_to_add" ] ; then
append args_list "$dtags_to_add"
fi
extend args_list spack_flags_spack_store_rpath_dirs_list "-rpath${lsep}"
extend args_list spack_store_rpath_dirs_list "-rpath${lsep}"
extend args_list spack_flags_rpath_dirs_list "-rpath${lsep}"
extend args_list rpath_dirs_list "-rpath${lsep}"
extend args_list spack_flags_system_rpath_dirs_list "-rpath${lsep}"
extend args_list system_rpath_dirs_list "-rpath${lsep}"
;;
@@ -990,4 +877,40 @@ if [ -n "$SPACK_CCACHE_BINARY" ]; then
esac
fi
execute
# dump the full command if the caller supplies SPACK_TEST_COMMAND=dump-args
if [ -n "${SPACK_TEST_COMMAND=}" ]; then
case "$SPACK_TEST_COMMAND" in
dump-args)
IFS="$lsep"
for arg in $full_command_list; do
echo "$arg"
done
unset IFS
exit
;;
dump-env-*)
var=${SPACK_TEST_COMMAND#dump-env-}
eval "printf '%s\n' \"\$0: \$var: \$$var\""
;;
*)
die "Unknown test command: '$SPACK_TEST_COMMAND'"
;;
esac
fi
#
# Write the input and output commands to debug logs if it's asked for.
#
if [ "$SPACK_DEBUG" = TRUE ]; then
input_log="$SPACK_DEBUG_LOG_DIR/spack-cc-$SPACK_DEBUG_LOG_ID.in.log"
output_log="$SPACK_DEBUG_LOG_DIR/spack-cc-$SPACK_DEBUG_LOG_ID.out.log"
echo "[$mode] $command $input_command" >> "$input_log"
IFS="$lsep"
echo "[$mode] "$full_command_list >> "$output_log"
unset IFS
fi
# Execute the full command, preserving spaces with IFS set
# to the alarm bell separator.
IFS="$lsep"; exec $full_command_list

View File

@@ -18,7 +18,7 @@
* Homepage: https://pypi.python.org/pypi/archspec
* Usage: Labeling, comparison and detection of microarchitectures
* Version: 0.2.5-dev (commit cbb1fd5eb397a70d466e5160b393b87b0dbcc78f)
* Version: 0.2.3 (commit 7b8fe60b69e2861e7dac104bc1c183decfcd3daf)
astunparse
----------------

View File

@@ -1265,29 +1265,27 @@ def _distro_release_info(self) -> Dict[str, str]:
match = _DISTRO_RELEASE_BASENAME_PATTERN.match(basename)
else:
try:
with os.scandir(self.etc_dir) as it:
etc_files = [
p.path for p in it
if p.is_file() and p.name not in _DISTRO_RELEASE_IGNORE_BASENAMES
]
basenames = [
basename
for basename in os.listdir(self.etc_dir)
if basename not in _DISTRO_RELEASE_IGNORE_BASENAMES
and os.path.isfile(os.path.join(self.etc_dir, basename))
]
# We sort for repeatability in cases where there are multiple
# distro specific files; e.g. CentOS, Oracle, Enterprise all
# containing `redhat-release` on top of their own.
etc_files.sort()
basenames.sort()
except OSError:
# This may occur when /etc is not readable but we can't be
# sure about the *-release files. Check common entries of
# /etc for information. If they turn out to not be there the
# error is handled in `_parse_distro_release_file()`.
etc_files = [
os.path.join(self.etc_dir, basename)
for basename in _DISTRO_RELEASE_BASENAMES
]
for filepath in etc_files:
match = _DISTRO_RELEASE_BASENAME_PATTERN.match(os.path.basename(filepath))
basenames = _DISTRO_RELEASE_BASENAMES
for basename in basenames:
match = _DISTRO_RELEASE_BASENAME_PATTERN.match(basename)
if match is None:
continue
filepath = os.path.join(self.etc_dir, basename)
distro_info = self._parse_distro_release_file(filepath)
# The name is always present if the pattern matches.
if "name" not in distro_info:

View File

@@ -231,6 +231,96 @@ def is_host_name(instance):
return True
try:
# The built-in `idna` codec only implements RFC 3890, so we go elsewhere.
import idna
except ImportError:
pass
else:
@_checks_drafts(draft7="idn-hostname", raises=idna.IDNAError)
def is_idn_host_name(instance):
if not isinstance(instance, str_types):
return True
idna.encode(instance)
return True
try:
import rfc3987
except ImportError:
try:
from rfc3986_validator import validate_rfc3986
except ImportError:
pass
else:
@_checks_drafts(name="uri")
def is_uri(instance):
if not isinstance(instance, str_types):
return True
return validate_rfc3986(instance, rule="URI")
@_checks_drafts(
draft6="uri-reference",
draft7="uri-reference",
raises=ValueError,
)
def is_uri_reference(instance):
if not isinstance(instance, str_types):
return True
return validate_rfc3986(instance, rule="URI_reference")
else:
@_checks_drafts(draft7="iri", raises=ValueError)
def is_iri(instance):
if not isinstance(instance, str_types):
return True
return rfc3987.parse(instance, rule="IRI")
@_checks_drafts(draft7="iri-reference", raises=ValueError)
def is_iri_reference(instance):
if not isinstance(instance, str_types):
return True
return rfc3987.parse(instance, rule="IRI_reference")
@_checks_drafts(name="uri", raises=ValueError)
def is_uri(instance):
if not isinstance(instance, str_types):
return True
return rfc3987.parse(instance, rule="URI")
@_checks_drafts(
draft6="uri-reference",
draft7="uri-reference",
raises=ValueError,
)
def is_uri_reference(instance):
if not isinstance(instance, str_types):
return True
return rfc3987.parse(instance, rule="URI_reference")
try:
from strict_rfc3339 import validate_rfc3339
except ImportError:
try:
from rfc3339_validator import validate_rfc3339
except ImportError:
validate_rfc3339 = None
if validate_rfc3339:
@_checks_drafts(name="date-time")
def is_datetime(instance):
if not isinstance(instance, str_types):
return True
return validate_rfc3339(instance)
@_checks_drafts(draft7="time")
def is_time(instance):
if not isinstance(instance, str_types):
return True
return is_datetime("1970-01-01T" + instance)
@_checks_drafts(name="regex", raises=re.error)
def is_regex(instance):
if not isinstance(instance, str_types):
@@ -250,3 +340,86 @@ def is_draft3_time(instance):
if not isinstance(instance, str_types):
return True
return datetime.datetime.strptime(instance, "%H:%M:%S")
try:
import webcolors
except ImportError:
pass
else:
def is_css_color_code(instance):
return webcolors.normalize_hex(instance)
@_checks_drafts(draft3="color", raises=(ValueError, TypeError))
def is_css21_color(instance):
if (
not isinstance(instance, str_types) or
instance.lower() in webcolors.css21_names_to_hex
):
return True
return is_css_color_code(instance)
def is_css3_color(instance):
if instance.lower() in webcolors.css3_names_to_hex:
return True
return is_css_color_code(instance)
try:
import jsonpointer
except ImportError:
pass
else:
@_checks_drafts(
draft6="json-pointer",
draft7="json-pointer",
raises=jsonpointer.JsonPointerException,
)
def is_json_pointer(instance):
if not isinstance(instance, str_types):
return True
return jsonpointer.JsonPointer(instance)
# TODO: I don't want to maintain this, so it
# needs to go either into jsonpointer (pending
# https://github.com/stefankoegl/python-json-pointer/issues/34) or
# into a new external library.
@_checks_drafts(
draft7="relative-json-pointer",
raises=jsonpointer.JsonPointerException,
)
def is_relative_json_pointer(instance):
# Definition taken from:
# https://tools.ietf.org/html/draft-handrews-relative-json-pointer-01#section-3
if not isinstance(instance, str_types):
return True
non_negative_integer, rest = [], ""
for i, character in enumerate(instance):
if character.isdigit():
non_negative_integer.append(character)
continue
if not non_negative_integer:
return False
rest = instance[i:]
break
return (rest == "#") or jsonpointer.JsonPointer(rest)
try:
import uritemplate.exceptions
except ImportError:
pass
else:
@_checks_drafts(
draft6="uri-template",
draft7="uri-template",
raises=uritemplate.exceptions.InvalidTemplate,
)
def is_uri_template(
instance,
template_validator=uritemplate.Validator().force_balanced_braces(),
):
template = uritemplate.URITemplate(instance)
return template_validator.validate(template)

View File

@@ -497,7 +497,7 @@ def copy_attributes(self, t, memo=None):
Tag.attrib, merge_attrib]:
if hasattr(self, a):
if memo is not None:
setattr(t, a, copy.deepcopy(getattr(self, a), memo))
setattr(t, a, copy.deepcopy(getattr(self, a, memo)))
else:
setattr(t, a, getattr(self, a))
# fmt: on

View File

@@ -1,3 +1,3 @@
"""Init file to avoid namespace packages"""
__version__ = "0.2.4"
__version__ = "0.2.3"

View File

@@ -5,10 +5,9 @@
"""The "cpu" package permits to query and compare different
CPU microarchitectures.
"""
from .detect import brand_string, host
from .detect import host
from .microarchitecture import (
TARGETS,
InvalidCompilerVersion,
Microarchitecture,
UnsupportedMicroarchitecture,
generic_microarchitecture,
@@ -16,12 +15,10 @@
)
__all__ = [
"brand_string",
"host",
"TARGETS",
"InvalidCompilerVersion",
"Microarchitecture",
"UnsupportedMicroarchitecture",
"TARGETS",
"generic_microarchitecture",
"host",
"version_components",
]

View File

@@ -47,11 +47,7 @@ def decorator(factory):
def partial_uarch(
name: str = "",
vendor: str = "",
features: Optional[Set[str]] = None,
generation: int = 0,
cpu_part: str = "",
name: str = "", vendor: str = "", features: Optional[Set[str]] = None, generation: int = 0
) -> Microarchitecture:
"""Construct a partial microarchitecture, from information gathered during system scan."""
return Microarchitecture(
@@ -61,7 +57,6 @@ def partial_uarch(
features=features or set(),
compilers={},
generation=generation,
cpu_part=cpu_part,
)
@@ -95,7 +90,6 @@ def proc_cpuinfo() -> Microarchitecture:
return partial_uarch(
vendor=_canonicalize_aarch64_vendor(data),
features=_feature_set(data, key="Features"),
cpu_part=data.get("CPU part", ""),
)
if architecture in (PPC64LE, PPC64):
@@ -161,31 +155,6 @@ def _is_bit_set(self, register: int, bit: int) -> bool:
mask = 1 << bit
return register & mask > 0
def brand_string(self) -> Optional[str]:
"""Returns the brand string, if available."""
if self.highest_extension_support < 0x80000004:
return None
r1 = self.cpuid.registers_for(eax=0x80000002, ecx=0)
r2 = self.cpuid.registers_for(eax=0x80000003, ecx=0)
r3 = self.cpuid.registers_for(eax=0x80000004, ecx=0)
result = struct.pack(
"IIIIIIIIIIII",
r1.eax,
r1.ebx,
r1.ecx,
r1.edx,
r2.eax,
r2.ebx,
r2.ecx,
r2.edx,
r3.eax,
r3.ebx,
r3.ecx,
r3.edx,
).decode("utf-8")
return result.strip("\x00")
@detection(operating_system="Windows")
def cpuid_info():
@@ -205,8 +174,8 @@ def _check_output(args, env):
WINDOWS_MAPPING = {
"AMD64": X86_64,
"ARM64": AARCH64,
"AMD64": "x86_64",
"ARM64": "aarch64",
}
@@ -351,10 +320,6 @@ def sorting_fn(item):
generic_candidates = [c for c in candidates if c.vendor == "generic"]
best_generic = max(generic_candidates, key=sorting_fn)
# Relevant for AArch64. Filter on "cpu_part" if we have any match
if info.cpu_part != "" and any(c for c in candidates if info.cpu_part == c.cpu_part):
candidates = [c for c in candidates if info.cpu_part == c.cpu_part]
# Filter the candidates to be descendant of the best generic candidate.
# This is to avoid that the lack of a niche feature that can be disabled
# from e.g. BIOS prevents detection of a reasonably performant architecture
@@ -444,16 +409,3 @@ def compatibility_check_for_riscv64(info, target):
return (target == arch_root or arch_root in target.ancestors) and (
target.name == info.name or target.vendor == "generic"
)
def brand_string() -> Optional[str]:
"""Returns the brand string of the host, if detected, or None."""
if platform.system() == "Darwin":
return _check_output(
["sysctl", "-n", "machdep.cpu.brand_string"], env=_ensure_bin_usrbin_in_path()
).strip()
if host().family == X86_64:
return CpuidInfoCollector().brand_string()
return None

View File

@@ -2,7 +2,9 @@
# Archspec Project Developers. See the top-level COPYRIGHT file for details.
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
"""Types and functions to manage information on CPU microarchitectures."""
"""Types and functions to manage information
on CPU microarchitectures.
"""
import functools
import platform
import re
@@ -63,24 +65,21 @@ class Microarchitecture:
passed in as argument above.
* versions: versions that support this micro-architecture.
generation (int): generation of the micro-architecture, if relevant.
cpu_part (str): cpu part of the architecture, if relevant.
generation (int): generation of the micro-architecture, if
relevant.
"""
# pylint: disable=too-many-arguments,too-many-instance-attributes
# pylint: disable=too-many-arguments
#: Aliases for micro-architecture's features
feature_aliases = FEATURE_ALIASES
def __init__(self, name, parents, vendor, features, compilers, generation=0, cpu_part=""):
def __init__(self, name, parents, vendor, features, compilers, generation=0):
self.name = name
self.parents = parents
self.vendor = vendor
self.features = features
self.compilers = compilers
# Only relevant for PowerPC
self.generation = generation
# Only relevant for AArch64
self.cpu_part = cpu_part
# Cache the ancestor computation
self._ancestors = None
@@ -112,7 +111,6 @@ def __eq__(self, other):
and self.parents == other.parents # avoid ancestors here
and self.compilers == other.compilers
and self.generation == other.generation
and self.cpu_part == other.cpu_part
)
@coerce_target_names
@@ -145,8 +143,7 @@ def __repr__(self):
cls_name = self.__class__.__name__
fmt = (
cls_name + "({0.name!r}, {0.parents!r}, {0.vendor!r}, "
"{0.features!r}, {0.compilers!r}, generation={0.generation!r}, "
"cpu_part={0.cpu_part!r})"
"{0.features!r}, {0.compilers!r}, {0.generation!r})"
)
return fmt.format(self)
@@ -193,7 +190,6 @@ def to_dict(self):
"generation": self.generation,
"parents": [str(x) for x in self.parents],
"compilers": self.compilers,
"cpupart": self.cpu_part,
}
@staticmethod
@@ -206,15 +202,12 @@ def from_dict(data) -> "Microarchitecture":
features=set(data["features"]),
compilers=data.get("compilers", {}),
generation=data.get("generation", 0),
cpu_part=data.get("cpupart", ""),
)
def optimization_flags(self, compiler, version):
"""Returns a string containing the optimization flags that needs
to be used to produce code optimized for this micro-architecture.
The version is expected to be a string of dot separated digits.
If there is no information on the compiler passed as argument the
function returns an empty string. If it is known that the compiler
version we want to use does not support this architecture the function
@@ -223,11 +216,6 @@ def optimization_flags(self, compiler, version):
Args:
compiler (str): name of the compiler to be used
version (str): version of the compiler to be used
Raises:
UnsupportedMicroarchitecture: if the requested compiler does not support
this micro-architecture.
ValueError: if the version doesn't match the expected format
"""
# If we don't have information on compiler at all return an empty string
if compiler not in self.family.compilers:
@@ -244,14 +232,6 @@ def optimization_flags(self, compiler, version):
msg = msg.format(compiler, best_target, best_target.family)
raise UnsupportedMicroarchitecture(msg)
# Check that the version matches the expected format
if not re.match(r"^(?:\d+\.)*\d+$", version):
msg = (
"invalid format for the compiler version argument. "
"Only dot separated digits are allowed."
)
raise InvalidCompilerVersion(msg)
# If we have information on this compiler we need to check the
# version being used
compiler_info = self.compilers[compiler]
@@ -312,7 +292,7 @@ def generic_microarchitecture(name):
Args:
name (str): name of the micro-architecture
"""
return Microarchitecture(name, parents=[], vendor="generic", features=set(), compilers={})
return Microarchitecture(name, parents=[], vendor="generic", features=[], compilers={})
def version_components(version):
@@ -365,11 +345,8 @@ def fill_target_from_dict(name, data, targets):
features = set(values["features"])
compilers = values.get("compilers", {})
generation = values.get("generation", 0)
cpu_part = values.get("cpupart", "")
targets[name] = Microarchitecture(
name, parents, vendor, features, compilers, generation=generation, cpu_part=cpu_part
)
targets[name] = Microarchitecture(name, parents, vendor, features, compilers, generation)
known_targets = {}
data = archspec.cpu.schema.TARGETS_JSON["microarchitectures"]
@@ -390,15 +367,7 @@ def fill_target_from_dict(name, data, targets):
TARGETS = LazyDictionary(_known_microarchitectures)
class ArchspecError(Exception):
"""Base class for errors within archspec"""
class UnsupportedMicroarchitecture(ArchspecError, ValueError):
class UnsupportedMicroarchitecture(ValueError):
"""Raised if a compiler version does not support optimization for a given
micro-architecture.
"""
class InvalidCompilerVersion(ArchspecError, ValueError):
"""Raised when an invalid format is used for compiler versions in archspec."""

View File

@@ -2225,14 +2225,10 @@
],
"nvhpc": [
{
"versions": "21.11:23.8",
"versions": "21.11:",
"name": "zen3",
"flags": "-tp {name}",
"warnings": "zen4 is not fully supported by nvhpc versions < 23.9, falling back to zen3"
},
{
"versions": "23.9:",
"flags": "-tp {name}"
"warnings": "zen4 is not fully supported by nvhpc yet, falling back to zen3"
}
]
}
@@ -2715,8 +2711,7 @@
"flags": "-mcpu=thunderx2t99"
}
]
},
"cpupart": "0x0af"
}
},
"a64fx": {
"from": ["armv8.2a"],
@@ -2784,8 +2779,7 @@
"flags": "-march=armv8.2-a+crc+crypto+fp16+sve"
}
]
},
"cpupart": "0x001"
}
},
"cortex_a72": {
"from": ["aarch64"],
@@ -2822,8 +2816,7 @@
"flags" : "-mcpu=cortex-a72"
}
]
},
"cpupart": "0xd08"
}
},
"neoverse_n1": {
"from": ["cortex_a72", "armv8.2a"],
@@ -2844,7 +2837,8 @@
"asimdrdm",
"lrcpc",
"dcpop",
"asimddp"
"asimddp",
"ssbs"
],
"compilers" : {
"gcc": [
@@ -2908,8 +2902,7 @@
"flags": "-tp {name}"
}
]
},
"cpupart": "0xd0c"
}
},
"neoverse_v1": {
"from": ["neoverse_n1", "armv8.4a"],
@@ -2933,6 +2926,8 @@
"lrcpc",
"dcpop",
"sha3",
"sm3",
"sm4",
"asimddp",
"sha512",
"sve",
@@ -2941,6 +2936,9 @@
"uscat",
"ilrcpc",
"flagm",
"ssbs",
"paca",
"pacg",
"dcpodp",
"svei8mm",
"svebf16",
@@ -3008,7 +3006,7 @@
},
{
"versions": "11:",
"flags" : "-march=armv8.4-a+sve+fp16+bf16+crypto+i8mm+rng"
"flags" : "-march=armv8.4-a+sve+ssbs+fp16+bf16+crypto+i8mm+rng"
},
{
"versions": "12:",
@@ -3032,8 +3030,7 @@
"flags": "-tp {name}"
}
]
},
"cpupart": "0xd40"
}
},
"neoverse_v2": {
"from": ["neoverse_n1", "armv9.0a"],
@@ -3057,22 +3054,35 @@
"lrcpc",
"dcpop",
"sha3",
"sm3",
"sm4",
"asimddp",
"sha512",
"sve",
"asimdfhm",
"dit",
"uscat",
"ilrcpc",
"flagm",
"ssbs",
"sb",
"paca",
"pacg",
"dcpodp",
"sve2",
"sveaes",
"svepmull",
"svebitperm",
"svesha3",
"svesm4",
"flagm2",
"frint",
"svei8mm",
"svebf16",
"i8mm",
"bf16"
"bf16",
"dgh",
"bti"
],
"compilers" : {
"gcc": [
@@ -3097,19 +3107,15 @@
"flags" : "-march=armv8.5-a+sve -mtune=cortex-a76"
},
{
"versions": "10.0:11.3.99",
"versions": "10.0:11.99",
"flags" : "-march=armv8.5-a+sve+sve2+i8mm+bf16 -mtune=cortex-a77"
},
{
"versions": "11.4:11.99",
"flags" : "-mcpu=neoverse-v2"
},
{
"versions": "12.0:12.2.99",
"versions": "12.0:12.99",
"flags" : "-march=armv9-a+i8mm+bf16 -mtune=cortex-a710"
},
{
"versions": "12.3:",
"versions": "13.0:",
"flags" : "-mcpu=neoverse-v2"
}
],
@@ -3144,112 +3150,7 @@
"flags": "-tp {name}"
}
]
},
"cpupart": "0xd4f"
},
"neoverse_n2": {
"from": ["neoverse_n1", "armv9.0a"],
"vendor": "ARM",
"features": [
"fp",
"asimd",
"evtstrm",
"aes",
"pmull",
"sha1",
"sha2",
"crc32",
"atomics",
"fphp",
"asimdhp",
"cpuid",
"asimdrdm",
"jscvt",
"fcma",
"lrcpc",
"dcpop",
"sha3",
"asimddp",
"sha512",
"sve",
"asimdfhm",
"uscat",
"ilrcpc",
"flagm",
"sb",
"dcpodp",
"sve2",
"flagm2",
"frint",
"svei8mm",
"svebf16",
"i8mm",
"bf16"
],
"compilers" : {
"gcc": [
{
"versions": "4.8:5.99",
"flags": "-march=armv8-a"
},
{
"versions": "6:6.99",
"flags" : "-march=armv8.1-a"
},
{
"versions": "7.0:7.99",
"flags" : "-march=armv8.2-a -mtune=cortex-a72"
},
{
"versions": "8.0:8.99",
"flags" : "-march=armv8.4-a+sve -mtune=cortex-a72"
},
{
"versions": "9.0:9.99",
"flags" : "-march=armv8.5-a+sve -mtune=cortex-a76"
},
{
"versions": "10.0:10.99",
"flags" : "-march=armv8.5-a+sve+sve2+i8mm+bf16 -mtune=cortex-a77"
},
{
"versions": "11.0:",
"flags" : "-mcpu=neoverse-n2"
}
],
"clang" : [
{
"versions": "9.0:10.99",
"flags" : "-march=armv8.5-a+sve"
},
{
"versions": "11.0:13.99",
"flags" : "-march=armv8.5-a+sve+sve2+i8mm+bf16"
},
{
"versions": "14.0:15.99",
"flags" : "-march=armv9-a+i8mm+bf16"
},
{
"versions": "16.0:",
"flags" : "-mcpu=neoverse-n2"
}
],
"arm" : [
{
"versions": "23.04.0:",
"flags" : "-mcpu=neoverse-n2"
}
],
"nvhpc" : [
{
"versions": "23.3:",
"name": "neoverse-n1",
"flags": "-tp {name}"
}
]
},
"cpupart": "0xd49"
}
},
"m1": {
"from": ["armv8.4a"],
@@ -3315,8 +3216,7 @@
"flags" : "-mcpu=apple-m1"
}
]
},
"cpupart": "0x022"
}
},
"m2": {
"from": ["m1", "armv8.5a"],
@@ -3394,8 +3294,7 @@
"flags" : "-mcpu=apple-m2"
}
]
},
"cpupart": "0x032"
}
},
"arm": {
"from": [],

View File

@@ -52,9 +52,6 @@
}
}
}
},
"cpupart": {
"type": "string"
}
},
"required": [
@@ -110,4 +107,4 @@
"additionalProperties": false
}
}
}
}

View File

@@ -1,45 +0,0 @@
diff --git a/lib/spack/external/_vendoring/distro/distro.py b/lib/spack/external/_vendoring/distro/distro.py
index 89e1868047..50c3b18d4d 100644
--- a/lib/spack/external/_vendoring/distro/distro.py
+++ b/lib/spack/external/_vendoring/distro/distro.py
@@ -1265,27 +1265,29 @@ def _distro_release_info(self) -> Dict[str, str]:
match = _DISTRO_RELEASE_BASENAME_PATTERN.match(basename)
else:
try:
- basenames = [
- basename
- for basename in os.listdir(self.etc_dir)
- if basename not in _DISTRO_RELEASE_IGNORE_BASENAMES
- and os.path.isfile(os.path.join(self.etc_dir, basename))
- ]
+ with os.scandir(self.etc_dir) as it:
+ etc_files = [
+ p.path for p in it
+ if p.is_file() and p.name not in _DISTRO_RELEASE_IGNORE_BASENAMES
+ ]
# We sort for repeatability in cases where there are multiple
# distro specific files; e.g. CentOS, Oracle, Enterprise all
# containing `redhat-release` on top of their own.
- basenames.sort()
+ etc_files.sort()
except OSError:
# This may occur when /etc is not readable but we can't be
# sure about the *-release files. Check common entries of
# /etc for information. If they turn out to not be there the
# error is handled in `_parse_distro_release_file()`.
- basenames = _DISTRO_RELEASE_BASENAMES
- for basename in basenames:
- match = _DISTRO_RELEASE_BASENAME_PATTERN.match(basename)
+ etc_files = [
+ os.path.join(self.etc_dir, basename)
+ for basename in _DISTRO_RELEASE_BASENAMES
+ ]
+
+ for filepath in etc_files:
+ match = _DISTRO_RELEASE_BASENAME_PATTERN.match(os.path.basename(filepath))
if match is None:
continue
- filepath = os.path.join(self.etc_dir, basename)
distro_info = self._parse_distro_release_file(filepath)
# The name is always present if the pattern matches.
if "name" not in distro_info:

View File

@@ -13,191 +13,3 @@ index 6b630cdfbb..1791fe7fbf 100644
-__version__ = metadata.version("jsonschema")
+
+__version__ = "3.2.0"
diff --git a/lib/spack/external/_vendoring/jsonschema/_format.py b/lib/spack/external/_vendoring/jsonschema/_format.py
index 281a7cfcff..29061e3661 100644
--- a/lib/spack/external/_vendoring/jsonschema/_format.py
+++ b/lib/spack/external/_vendoring/jsonschema/_format.py
@@ -231,96 +231,6 @@ def is_host_name(instance):
return True
-try:
- # The built-in `idna` codec only implements RFC 3890, so we go elsewhere.
- import idna
-except ImportError:
- pass
-else:
- @_checks_drafts(draft7="idn-hostname", raises=idna.IDNAError)
- def is_idn_host_name(instance):
- if not isinstance(instance, str_types):
- return True
- idna.encode(instance)
- return True
-
-
-try:
- import rfc3987
-except ImportError:
- try:
- from rfc3986_validator import validate_rfc3986
- except ImportError:
- pass
- else:
- @_checks_drafts(name="uri")
- def is_uri(instance):
- if not isinstance(instance, str_types):
- return True
- return validate_rfc3986(instance, rule="URI")
-
- @_checks_drafts(
- draft6="uri-reference",
- draft7="uri-reference",
- raises=ValueError,
- )
- def is_uri_reference(instance):
- if not isinstance(instance, str_types):
- return True
- return validate_rfc3986(instance, rule="URI_reference")
-
-else:
- @_checks_drafts(draft7="iri", raises=ValueError)
- def is_iri(instance):
- if not isinstance(instance, str_types):
- return True
- return rfc3987.parse(instance, rule="IRI")
-
- @_checks_drafts(draft7="iri-reference", raises=ValueError)
- def is_iri_reference(instance):
- if not isinstance(instance, str_types):
- return True
- return rfc3987.parse(instance, rule="IRI_reference")
-
- @_checks_drafts(name="uri", raises=ValueError)
- def is_uri(instance):
- if not isinstance(instance, str_types):
- return True
- return rfc3987.parse(instance, rule="URI")
-
- @_checks_drafts(
- draft6="uri-reference",
- draft7="uri-reference",
- raises=ValueError,
- )
- def is_uri_reference(instance):
- if not isinstance(instance, str_types):
- return True
- return rfc3987.parse(instance, rule="URI_reference")
-
-
-try:
- from strict_rfc3339 import validate_rfc3339
-except ImportError:
- try:
- from rfc3339_validator import validate_rfc3339
- except ImportError:
- validate_rfc3339 = None
-
-if validate_rfc3339:
- @_checks_drafts(name="date-time")
- def is_datetime(instance):
- if not isinstance(instance, str_types):
- return True
- return validate_rfc3339(instance)
-
- @_checks_drafts(draft7="time")
- def is_time(instance):
- if not isinstance(instance, str_types):
- return True
- return is_datetime("1970-01-01T" + instance)
-
-
@_checks_drafts(name="regex", raises=re.error)
def is_regex(instance):
if not isinstance(instance, str_types):
@@ -340,86 +250,3 @@ def is_draft3_time(instance):
if not isinstance(instance, str_types):
return True
return datetime.datetime.strptime(instance, "%H:%M:%S")
-
-
-try:
- import webcolors
-except ImportError:
- pass
-else:
- def is_css_color_code(instance):
- return webcolors.normalize_hex(instance)
-
- @_checks_drafts(draft3="color", raises=(ValueError, TypeError))
- def is_css21_color(instance):
- if (
- not isinstance(instance, str_types) or
- instance.lower() in webcolors.css21_names_to_hex
- ):
- return True
- return is_css_color_code(instance)
-
- def is_css3_color(instance):
- if instance.lower() in webcolors.css3_names_to_hex:
- return True
- return is_css_color_code(instance)
-
-
-try:
- import jsonpointer
-except ImportError:
- pass
-else:
- @_checks_drafts(
- draft6="json-pointer",
- draft7="json-pointer",
- raises=jsonpointer.JsonPointerException,
- )
- def is_json_pointer(instance):
- if not isinstance(instance, str_types):
- return True
- return jsonpointer.JsonPointer(instance)
-
- # TODO: I don't want to maintain this, so it
- # needs to go either into jsonpointer (pending
- # https://github.com/stefankoegl/python-json-pointer/issues/34) or
- # into a new external library.
- @_checks_drafts(
- draft7="relative-json-pointer",
- raises=jsonpointer.JsonPointerException,
- )
- def is_relative_json_pointer(instance):
- # Definition taken from:
- # https://tools.ietf.org/html/draft-handrews-relative-json-pointer-01#section-3
- if not isinstance(instance, str_types):
- return True
- non_negative_integer, rest = [], ""
- for i, character in enumerate(instance):
- if character.isdigit():
- non_negative_integer.append(character)
- continue
-
- if not non_negative_integer:
- return False
-
- rest = instance[i:]
- break
- return (rest == "#") or jsonpointer.JsonPointer(rest)
-
-
-try:
- import uritemplate.exceptions
-except ImportError:
- pass
-else:
- @_checks_drafts(
- draft6="uri-template",
- draft7="uri-template",
- raises=uritemplate.exceptions.InvalidTemplate,
- )
- def is_uri_template(
- instance,
- template_validator=uritemplate.Validator().force_balanced_braces(),
- ):
- template = uritemplate.URITemplate(instance)
- return template_validator.validate(template)

View File

@@ -1,13 +0,0 @@
diff --git a/lib/spack/external/_vendoring/ruamel/yaml/comments.py b/lib/spack/external/_vendoring/ruamel/yaml/comments.py
index 1badeda585..892c868af3 100644
--- a/lib/spack/external/_vendoring/ruamel/yaml/comments.py
+++ b/lib/spack/external/_vendoring/ruamel/yaml/comments.py
@@ -497,7 +497,7 @@ def copy_attributes(self, t, memo=None):
Tag.attrib, merge_attrib]:
if hasattr(self, a):
if memo is not None:
- setattr(t, a, copy.deepcopy(getattr(self, a, memo)))
+ setattr(t, a, copy.deepcopy(getattr(self, a), memo))
else:
setattr(t, a, getattr(self, a))
# fmt: on

View File

@@ -98,10 +98,3 @@ def path_filter_caller(*args, **kwargs):
if _func:
return holder_func(_func)
return holder_func
def sanitize_win_longpath(path: str) -> str:
"""Strip Windows extended path prefix from strings
Returns sanitized string.
no-op if extended path prefix is not present"""
return path.lstrip("\\\\?\\")

View File

@@ -27,6 +27,8 @@
from llnl.util.lang import dedupe, memoized
from llnl.util.symlink import islink, readlink, resolve_link_target_relative_to_the_link, symlink
from spack.util.executable import Executable, which
from ..path import path_to_os_path, system_path_filter
if sys.platform != "win32":
@@ -51,6 +53,7 @@
"find_all_headers",
"find_libraries",
"find_system_libraries",
"fix_darwin_install_name",
"force_remove",
"force_symlink",
"getuid",
@@ -184,58 +187,26 @@ def polite_filename(filename: str) -> str:
return _polite_antipattern().sub("_", filename)
def getuid() -> Union[str, int]:
"""Returns os getuid on non Windows
On Windows returns 0 for admin users, login string otherwise
This is in line with behavior from get_owner_uid which
always returns the login string on Windows
"""
def getuid():
if sys.platform == "win32":
import ctypes
# If not admin, use the string name of the login as a unique ID
if ctypes.windll.shell32.IsUserAnAdmin() == 0:
return os.getlogin()
return 1
return 0
else:
return os.getuid()
def _win_rename(src, dst):
# os.replace will still fail if on Windows (but not POSIX) if the dst
# is a symlink to a directory (all other cases have parity Windows <-> Posix)
if os.path.islink(dst) and os.path.isdir(os.path.realpath(dst)):
if os.path.samefile(src, dst):
# src and dst are the same
# do nothing and exit early
return
# If dst exists and is a symlink to a directory
# we need to remove dst and then perform rename/replace
# this is safe to do as there's no chance src == dst now
os.remove(dst)
os.replace(src, dst)
@system_path_filter
def msdos_escape_parens(path):
"""MS-DOS interprets parens as grouping parameters even in a quoted string"""
if sys.platform == "win32":
return path.replace("(", "^(").replace(")", "^)")
else:
return path
@system_path_filter
def rename(src, dst):
# On Windows, os.rename will fail if the destination file already exists
# os.replace is the same as os.rename on POSIX and is MoveFileExW w/
# the MOVEFILE_REPLACE_EXISTING flag on Windows
# Windows invocation is abstracted behind additonal logic handling
# remaining cases of divergent behavior accross platforms
if sys.platform == "win32":
_win_rename(src, dst)
else:
os.replace(src, dst)
# Windows path existence checks will sometimes fail on junctions/links/symlinks
# so check for that case
if os.path.exists(dst) or islink(dst):
os.remove(dst)
os.rename(src, dst)
@system_path_filter
@@ -245,6 +216,42 @@ def path_contains_subdirectory(path, root):
return norm_path.startswith(norm_root)
@memoized
def file_command(*args):
"""Creates entry point to `file` system command with provided arguments"""
file_cmd = which("file", required=True)
for arg in args:
file_cmd.add_default_arg(arg)
return file_cmd
@memoized
def _get_mime_type():
"""Generate method to call `file` system command to aquire mime type
for a specified path
"""
if sys.platform == "win32":
# -h option (no-dereference) does not exist in Windows
return file_command("-b", "--mime-type")
else:
return file_command("-b", "-h", "--mime-type")
def mime_type(filename):
"""Returns the mime type and subtype of a file.
Args:
filename: file to be analyzed
Returns:
Tuple containing the MIME type and subtype
"""
output = _get_mime_type()(filename, output=str, error=str).strip()
tty.debug("==> " + output)
type, _, subtype = output.partition("/")
return type, subtype
#: This generates the library filenames that may appear on any OS.
library_extensions = ["a", "la", "so", "tbd", "dylib"]
@@ -529,13 +536,7 @@ def exploding_archive_handler(tarball_container, stage):
@system_path_filter(arg_slice=slice(1))
def get_owner_uid(path, err_msg=None) -> Union[str, int]:
"""Returns owner UID of path destination
On non Windows this is the value of st_uid
On Windows this is the login string associated with the
owning user.
"""
def get_owner_uid(path, err_msg=None):
if not os.path.exists(path):
mkdirp(path, mode=stat.S_IRWXU)
@@ -727,6 +728,7 @@ def copy_tree(
src: str,
dest: str,
symlinks: bool = True,
allow_broken_symlinks: bool = sys.platform != "win32",
ignore: Optional[Callable[[str], bool]] = None,
_permissions: bool = False,
):
@@ -749,6 +751,8 @@ def copy_tree(
src (str): the directory to copy
dest (str): the destination directory
symlinks (bool): whether or not to preserve symlinks
allow_broken_symlinks (bool): whether or not to allow broken (dangling) symlinks,
On Windows, setting this to True will raise an exception. Defaults to true on unix.
ignore (typing.Callable): function indicating which files to ignore
_permissions (bool): for internal use only
@@ -756,6 +760,8 @@ def copy_tree(
IOError: if *src* does not match any files or directories
ValueError: if *src* is a parent directory of *dest*
"""
if allow_broken_symlinks and sys.platform == "win32":
raise llnl.util.symlink.SymlinkError("Cannot allow broken symlinks on Windows!")
if _permissions:
tty.debug("Installing {0} to {1}".format(src, dest))
else:
@@ -799,7 +805,7 @@ def copy_tree(
if islink(s):
link_target = resolve_link_target_relative_to_the_link(s)
if symlinks:
target = readlink(s)
target = os.readlink(s)
if os.path.isabs(target):
def escaped_path(path):
@@ -828,14 +834,16 @@ def escaped_path(path):
copy_mode(s, d)
for target, d, s in links:
symlink(target, d)
symlink(target, d, allow_broken_symlinks=allow_broken_symlinks)
if _permissions:
set_install_permissions(d)
copy_mode(s, d)
@system_path_filter
def install_tree(src, dest, symlinks=True, ignore=None):
def install_tree(
src, dest, symlinks=True, ignore=None, allow_broken_symlinks=sys.platform != "win32"
):
"""Recursively install an entire directory tree rooted at *src*.
Same as :py:func:`copy_tree` with the addition of setting proper
@@ -846,12 +854,21 @@ def install_tree(src, dest, symlinks=True, ignore=None):
dest (str): the destination directory
symlinks (bool): whether or not to preserve symlinks
ignore (typing.Callable): function indicating which files to ignore
allow_broken_symlinks (bool): whether or not to allow broken (dangling) symlinks,
On Windows, setting this to True will raise an exception.
Raises:
IOError: if *src* does not match any files or directories
ValueError: if *src* is a parent directory of *dest*
"""
copy_tree(src, dest, symlinks=symlinks, ignore=ignore, _permissions=True)
copy_tree(
src,
dest,
symlinks=symlinks,
allow_broken_symlinks=allow_broken_symlinks,
ignore=ignore,
_permissions=True,
)
@system_path_filter
@@ -1200,12 +1217,10 @@ def windows_sfn(path: os.PathLike):
import ctypes
k32 = ctypes.WinDLL("kernel32", use_last_error=True)
# Method with null values returns size of short path name
sz = k32.GetShortPathNameW(path, None, 0)
# stub Windows types TCHAR[LENGTH]
TCHAR_arr = ctypes.c_wchar * sz
TCHAR_arr = ctypes.c_wchar * len(path)
ret_str = TCHAR_arr()
k32.GetShortPathNameW(path, ctypes.byref(ret_str), sz)
k32.GetShortPathNameW(path, ret_str, len(path))
return ret_str.value
@@ -1585,12 +1600,6 @@ def remove_linked_tree(path):
shutil.rmtree(os.path.realpath(path), **kwargs)
os.unlink(path)
else:
if sys.platform == "win32":
# Adding this prefix allows shutil to remove long paths on windows
# https://learn.microsoft.com/en-us/windows/win32/fileio/maximum-file-path-limitation?tabs=registry
long_path_pfx = "\\\\?\\"
if not path.startswith(long_path_pfx):
path = long_path_pfx + path
shutil.rmtree(path, **kwargs)
@@ -1640,6 +1649,41 @@ def safe_remove(*files_or_dirs):
raise
@system_path_filter
def fix_darwin_install_name(path):
"""Fix install name of dynamic libraries on Darwin to have full path.
There are two parts of this task:
1. Use ``install_name('-id', ...)`` to change install name of a single lib
2. Use ``install_name('-change', ...)`` to change the cross linking between
libs. The function assumes that all libraries are in one folder and
currently won't follow subfolders.
Parameters:
path (str): directory in which .dylib files are located
"""
libs = glob.glob(join_path(path, "*.dylib"))
for lib in libs:
# fix install name first:
install_name_tool = Executable("install_name_tool")
install_name_tool("-id", lib, lib)
otool = Executable("otool")
long_deps = otool("-L", lib, output=str).split("\n")
deps = [dep.partition(" ")[0][1::] for dep in long_deps[2:-1]]
# fix all dependencies:
for dep in deps:
for loc in libs:
# We really want to check for either
# dep == os.path.basename(loc) or
# dep == join_path(builddir, os.path.basename(loc)),
# but we don't know builddir (nor how symbolic links look
# in builddir). We thus only compare the basenames.
if os.path.basename(dep) == os.path.basename(loc):
install_name_tool("-change", dep, loc, lib)
break
def find_first(root: str, files: Union[Iterable[str], str], bfs_depth: int = 2) -> Optional[str]:
"""Find the first file matching a pattern.
@@ -2366,10 +2410,9 @@ def add_library_dependent(self, *dest):
"""
for pth in dest:
if os.path.isfile(pth):
new_pth = pathlib.Path(pth).parent
self._additional_library_dependents.add(pathlib.Path(pth).parent)
else:
new_pth = pathlib.Path(pth)
self._additional_library_dependents.add(new_pth)
self._additional_library_dependents.add(pathlib.Path(pth))
@property
def rpaths(self):
@@ -2447,14 +2490,8 @@ def establish_link(self):
# for each binary install dir in self.pkg (i.e. pkg.prefix.bin, pkg.prefix.lib)
# install a symlink to each dependent library
# do not rpath for system libraries included in the dag
# we should not be modifying libraries managed by the Windows system
# as this will negatively impact linker behavior and can result in permission
# errors if those system libs are not modifiable by Spack
if "windows-system" not in getattr(self.pkg, "tags", []):
for library, lib_dir in itertools.product(self.rpaths, self.library_dependents):
self._link(library, lib_dir)
for library, lib_dir in itertools.product(self.rpaths, self.library_dependents):
self._link(library, lib_dir)
@system_path_filter

View File

@@ -6,6 +6,7 @@
import collections.abc
import contextlib
import functools
import inspect
import itertools
import os
import re
@@ -15,7 +16,7 @@
from typing import Any, Callable, Iterable, List, Tuple
# Ignore emacs backups when listing modules
ignore_modules = r"^\.#|~$"
ignore_modules = [r"^\.#", "~$"]
def index_by(objects, *funcs):
@@ -83,6 +84,20 @@ def index_by(objects, *funcs):
return result
def caller_locals():
"""This will return the locals of the *parent* of the caller.
This allows a function to insert variables into its caller's
scope. Yes, this is some black magic, and yes it's useful
for implementing things like depends_on and provides.
"""
# Passing zero here skips line context for speed.
stack = inspect.stack(0)
try:
return stack[2][0].f_locals
finally:
del stack
def attr_setdefault(obj, name, value):
"""Like dict.setdefault, but for objects."""
if not hasattr(obj, name):
@@ -90,6 +105,15 @@ def attr_setdefault(obj, name, value):
return getattr(obj, name)
def has_method(cls, name):
for base in inspect.getmro(cls):
if base is object:
continue
if name in base.__dict__:
return True
return False
def union_dicts(*dicts):
"""Use update() to combine all dicts into one.
@@ -154,22 +178,19 @@ def list_modules(directory, **kwargs):
order."""
list_directories = kwargs.setdefault("directories", True)
ignore = re.compile(ignore_modules)
for name in os.listdir(directory):
if name == "__init__.py":
continue
with os.scandir(directory) as it:
for entry in it:
if entry.name == "__init__.py" or entry.name == "__pycache__":
continue
path = os.path.join(directory, name)
if list_directories and os.path.isdir(path):
init_py = os.path.join(path, "__init__.py")
if os.path.isfile(init_py):
yield name
if (
list_directories
and entry.is_dir()
and os.path.isfile(os.path.join(entry.path, "__init__.py"))
):
yield entry.name
elif entry.name.endswith(".py") and entry.is_file() and not ignore.search(entry.name):
yield entry.name[:-3] # strip .py
elif name.endswith(".py"):
if not any(re.search(pattern, name) for pattern in ignore_modules):
yield re.sub(".py$", "", name)
def decorator_with_or_without_args(decorator):
@@ -216,8 +237,8 @@ def setter(name, value):
value.__name__ = name
setattr(cls, name, value)
if not hasattr(cls, "_cmp_key"):
raise TypeError(f"'{cls.__name__}' doesn't define _cmp_key().")
if not has_method(cls, "_cmp_key"):
raise TypeError("'%s' doesn't define _cmp_key()." % cls.__name__)
setter("__eq__", lambda s, o: (s is o) or (o is not None and s._cmp_key() == o._cmp_key()))
setter("__lt__", lambda s, o: o is not None and s._cmp_key() < o._cmp_key())
@@ -367,8 +388,8 @@ def cd_fun():
TypeError: If the class does not have a ``_cmp_iter`` method
"""
if not hasattr(cls, "_cmp_iter"):
raise TypeError(f"'{cls.__name__}' doesn't define _cmp_iter().")
if not has_method(cls, "_cmp_iter"):
raise TypeError("'%s' doesn't define _cmp_iter()." % cls.__name__)
# comparison operators are implemented in terms of lazy_eq and lazy_lt
def eq(self, other):
@@ -843,19 +864,20 @@ def uniq(sequence):
return uniq_list
def elide_list(line_list: List[str], max_num: int = 10) -> List[str]:
def elide_list(line_list, max_num=10):
"""Takes a long list and limits it to a smaller number of elements,
replacing intervening elements with '...'. For example::
elide_list(["1", "2", "3", "4", "5", "6"], 4)
elide_list([1,2,3,4,5,6], 4)
gives::
["1", "2", "3", "...", "6"]
[1, 2, 3, '...', 6]
"""
if len(line_list) > max_num:
return [*line_list[: max_num - 1], "...", line_list[-1]]
return line_list
return line_list[: max_num - 1] + ["..."] + line_list[-1:]
else:
return line_list
@contextlib.contextmanager

View File

@@ -8,75 +8,100 @@
import subprocess
import sys
import tempfile
from typing import Union
from llnl.util import lang, tty
from ..path import sanitize_win_longpath, system_path_filter
from ..path import system_path_filter
if sys.platform == "win32":
from win32file import CreateHardLink
is_windows = sys.platform == "win32"
def _windows_symlink(
src: str, dst: str, target_is_directory: bool = False, *, dir_fd: Union[int, None] = None
):
"""On Windows with System Administrator privileges this will be a normal symbolic link via
os.symlink. On Windows without privledges the link will be a junction for a directory and a
hardlink for a file. On Windows the various link types are:
Symbolic Link: A link to a file or directory on the same or different volume (drive letter) or
even to a remote file or directory (using UNC in its path). Need System Administrator
privileges to make these.
def symlink(source_path: str, link_path: str, allow_broken_symlinks: bool = not is_windows):
"""
Create a link.
Hard Link: A link to a file on the same volume (drive letter) only. Every file (file's data)
has at least 1 hard link (file's name). But when this method creates a new hard link there will
be 2. Deleting all hard links effectively deletes the file. Don't need System Administrator
privileges.
On non-Windows and Windows with System Administrator
privleges this will be a normal symbolic link via
os.symlink.
Junction: A link to a directory on the same or different volume (drive letter) but not to a
remote directory. Don't need System Administrator privileges."""
source_path = os.path.normpath(src)
On Windows without privledges the link will be a
junction for a directory and a hardlink for a file.
On Windows the various link types are:
Symbolic Link: A link to a file or directory on the
same or different volume (drive letter) or even to
a remote file or directory (using UNC in its path).
Need System Administrator privileges to make these.
Hard Link: A link to a file on the same volume (drive
letter) only. Every file (file's data) has at least 1
hard link (file's name). But when this method creates
a new hard link there will be 2. Deleting all hard
links effectively deletes the file. Don't need System
Administrator privileges.
Junction: A link to a directory on the same or different
volume (drive letter) but not to a remote directory. Don't
need System Administrator privileges.
Parameters:
source_path (str): The real file or directory that the link points to.
Must be absolute OR relative to the link.
link_path (str): The path where the link will exist.
allow_broken_symlinks (bool): On Linux or Mac, don't raise an exception if the source_path
doesn't exist. This will still raise an exception on Windows.
"""
source_path = os.path.normpath(source_path)
win_source_path = source_path
link_path = os.path.normpath(dst)
link_path = os.path.normpath(link_path)
# Perform basic checks to make sure symlinking will succeed
if os.path.lexists(link_path):
raise AlreadyExistsError(f"Link path ({link_path}) already exists. Cannot create link.")
# Never allow broken links on Windows.
if sys.platform == "win32" and allow_broken_symlinks:
raise ValueError("allow_broken_symlinks parameter cannot be True on Windows.")
if not os.path.exists(source_path):
if os.path.isabs(source_path):
# An absolute source path that does not exist will result in a broken link.
raise SymlinkError(
f"Source path ({source_path}) is absolute but does not exist. Resulting "
f"link would be broken so not making link."
if not allow_broken_symlinks:
# Perform basic checks to make sure symlinking will succeed
if os.path.lexists(link_path):
raise AlreadyExistsError(
f"Link path ({link_path}) already exists. Cannot create link."
)
else:
# os.symlink can create a link when the given source path is relative to
# the link path. Emulate this behavior and check to see if the source exists
# relative to the link path ahead of link creation to prevent broken
# links from being made.
link_parent_dir = os.path.dirname(link_path)
relative_path = os.path.join(link_parent_dir, source_path)
if os.path.exists(relative_path):
# In order to work on windows, the source path needs to be modified to be
# relative because hardlink/junction dont resolve relative paths the same
# way as os.symlink. This is ignored on other operating systems.
win_source_path = relative_path
else:
if not os.path.exists(source_path):
if os.path.isabs(source_path) and not allow_broken_symlinks:
# An absolute source path that does not exist will result in a broken link.
raise SymlinkError(
f"The source path ({source_path}) is not relative to the link path "
f"({link_path}). Resulting link would be broken so not making link."
f"Source path ({source_path}) is absolute but does not exist. Resulting "
f"link would be broken so not making link."
)
else:
# os.symlink can create a link when the given source path is relative to
# the link path. Emulate this behavior and check to see if the source exists
# relative to the link path ahead of link creation to prevent broken
# links from being made.
link_parent_dir = os.path.dirname(link_path)
relative_path = os.path.join(link_parent_dir, source_path)
if os.path.exists(relative_path):
# In order to work on windows, the source path needs to be modified to be
# relative because hardlink/junction dont resolve relative paths the same
# way as os.symlink. This is ignored on other operating systems.
win_source_path = relative_path
elif not allow_broken_symlinks:
raise SymlinkError(
f"The source path ({source_path}) is not relative to the link path "
f"({link_path}). Resulting link would be broken so not making link."
)
# Create the symlink
if not _windows_can_symlink():
if sys.platform == "win32" and not _windows_can_symlink():
_windows_create_link(win_source_path, link_path)
else:
os.symlink(source_path, link_path, target_is_directory=os.path.isdir(source_path))
def _windows_islink(path: str) -> bool:
def islink(path: str) -> bool:
"""Override os.islink to give correct answer for spack logic.
For Non-Windows: a link can be determined with the os.path.islink method.
@@ -222,9 +247,9 @@ def _windows_create_junction(source: str, link: str):
out, err = proc.communicate()
tty.debug(out.decode())
if proc.returncode != 0:
err_str = err.decode()
tty.error(err_str)
raise SymlinkError("Make junction command returned a non-zero return code.", err_str)
err = err.decode()
tty.error(err)
raise SymlinkError("Make junction command returned a non-zero return code.", err)
def _windows_create_hard_link(path: str, link: str):
@@ -244,14 +269,14 @@ def _windows_create_hard_link(path: str, link: str):
CreateHardLink(link, path)
def _windows_readlink(path: str, *, dir_fd=None):
def readlink(path: str):
"""Spack utility to override of os.readlink method to work cross platform"""
if _windows_is_hardlink(path):
return _windows_read_hard_link(path)
elif _windows_is_junction(path):
return _windows_read_junction(path)
else:
return sanitize_win_longpath(os.readlink(path, dir_fd=dir_fd))
return os.readlink(path)
def _windows_read_hard_link(link: str) -> str:
@@ -313,16 +338,6 @@ def resolve_link_target_relative_to_the_link(link):
return os.path.join(link_dir, target)
if sys.platform == "win32":
symlink = _windows_symlink
readlink = _windows_readlink
islink = _windows_islink
else:
symlink = os.symlink
readlink = os.readlink
islink = os.path.islink
class SymlinkError(RuntimeError):
"""Exception class for errors raised while creating symlinks,
junctions and hard links

View File

@@ -12,7 +12,7 @@
import traceback
from datetime import datetime
from sys import platform as _platform
from typing import Any, NoReturn
from typing import NoReturn
if _platform != "win32":
import fcntl
@@ -158,22 +158,21 @@ def get_timestamp(force=False):
return ""
def msg(message: Any, *args: Any, newline: bool = True) -> None:
def msg(message, *args, **kwargs):
if not msg_enabled():
return
if isinstance(message, Exception):
message = f"{message.__class__.__name__}: {message}"
else:
message = str(message)
message = "%s: %s" % (message.__class__.__name__, str(message))
newline = kwargs.get("newline", True)
st_text = ""
if _stacktrace:
st_text = process_stacktrace(2)
nl = "\n" if newline else ""
cwrite(f"@*b{{{st_text}==>}} {get_timestamp()}{cescape(_output_filter(message))}{nl}")
if newline:
cprint("@*b{%s==>} %s%s" % (st_text, get_timestamp(), cescape(_output_filter(message))))
else:
cwrite("@*b{%s==>} %s%s" % (st_text, get_timestamp(), cescape(_output_filter(message))))
for arg in args:
print(indent + _output_filter(str(arg)))

View File

@@ -237,6 +237,7 @@ def transpose():
def colified(
elts: List[Any],
cols: int = 0,
output: Optional[IO] = None,
indent: int = 0,
padding: int = 2,
tty: Optional[bool] = None,

View File

@@ -59,11 +59,9 @@
To output an @, use '@@'. To output a } inside braces, use '}}'.
"""
import os
import re
import sys
from contextlib import contextmanager
from typing import Optional
class ColorParseError(Exception):
@@ -97,34 +95,14 @@ def __init__(self, message):
} # white
# Regex to be used for color formatting
COLOR_RE = re.compile(r"@(?:(@)|(\.)|([*_])?([a-zA-Z])?(?:{((?:[^}]|}})*)})?)")
color_re = r"@(?:@|\.|([*_])?([a-zA-Z])?(?:{((?:[^}]|}})*)})?)"
# Mapping from color arguments to values for tty.set_color
color_when_values = {"always": True, "auto": None, "never": False}
def _color_when_value(when):
"""Raise a ValueError for an invalid color setting.
Valid values are 'always', 'never', and 'auto', or equivalently,
True, False, and None.
"""
if when in color_when_values:
return color_when_values[when]
elif when not in color_when_values.values():
raise ValueError("Invalid color setting: %s" % when)
return when
def _color_from_environ() -> Optional[bool]:
try:
return _color_when_value(os.environ.get("SPACK_COLOR", "auto"))
except ValueError:
return None
#: When `None` colorize when stdout is tty, when `True` or `False` always or never colorize resp.
_force_color = _color_from_environ()
# Force color; None: Only color if stdout is a tty
# True: Always colorize output, False: Never colorize output
_force_color = None
def try_enable_terminal_color_on_windows():
@@ -185,6 +163,19 @@ def _err_check(result, func, args):
debug("Unable to support color on Windows terminal")
def _color_when_value(when):
"""Raise a ValueError for an invalid color setting.
Valid values are 'always', 'never', and 'auto', or equivalently,
True, False, and None.
"""
if when in color_when_values:
return color_when_values[when]
elif when not in color_when_values.values():
raise ValueError("Invalid color setting: %s" % when)
return when
def get_color_when():
"""Return whether commands should print color or not."""
if _force_color is not None:
@@ -212,64 +203,77 @@ def color_when(value):
set_color_when(old_value)
def _escape(s: str, color: bool, enclose: bool, zsh: bool) -> str:
"""Returns a TTY escape sequence for a color"""
if color:
if zsh:
result = rf"\e[0;{s}m"
class match_to_ansi:
def __init__(self, color=True, enclose=False, zsh=False):
self.color = _color_when_value(color)
self.enclose = enclose
self.zsh = zsh
def escape(self, s):
"""Returns a TTY escape sequence for a color"""
if self.color:
if self.zsh:
result = rf"\e[0;{s}m"
else:
result = f"\033[{s}m"
if self.enclose:
result = rf"\[{result}\]"
return result
else:
result = f"\033[{s}m"
return ""
if enclose:
result = rf"\[{result}\]"
def __call__(self, match):
"""Convert a match object generated by ``color_re`` into an ansi
color code. This can be used as a handler in ``re.sub``.
"""
style, color, text = match.groups()
m = match.group(0)
return result
else:
return ""
if m == "@@":
return "@"
elif m == "@.":
return self.escape(0)
elif m == "@":
raise ColorParseError("Incomplete color format: '%s' in %s" % (m, match.string))
string = styles[style]
if color:
if color not in colors:
raise ColorParseError(
"Invalid color specifier: '%s' in '%s'" % (color, match.string)
)
string += ";" + str(colors[color])
colored_text = ""
if text:
colored_text = text + self.escape(0)
return self.escape(string) + colored_text
def colorize(
string: str, color: Optional[bool] = None, enclose: bool = False, zsh: bool = False
) -> str:
def colorize(string, **kwargs):
"""Replace all color expressions in a string with ANSI control codes.
Args:
string: The string to replace
string (str): The string to replace
Returns:
The filtered string
str: The filtered string
Keyword Arguments:
color: If False, output will be plain text without control codes, for output to
non-console devices (default: automatically choose color or not)
enclose: If True, enclose ansi color sequences with
color (bool): If False, output will be plain text without control
codes, for output to non-console devices.
enclose (bool): If True, enclose ansi color sequences with
square brackets to prevent misestimation of terminal width.
zsh: If True, use zsh ansi codes instead of bash ones (for variables like PS1)
zsh (bool): If True, use zsh ansi codes instead of bash ones (for variables like PS1)
"""
color = color if color is not None else get_color_when()
def match_to_ansi(match):
"""Convert a match object generated by ``COLOR_RE`` into an ansi
color code. This can be used as a handler in ``re.sub``.
"""
escaped_at, dot, style, color_code, text = match.groups()
if escaped_at:
return "@"
elif dot:
return _escape(0, color, enclose, zsh)
elif not (style or color_code):
raise ColorParseError(
f"Incomplete color format: '{match.group(0)}' in '{match.string}'"
)
ansi_code = _escape(f"{styles[style]};{colors.get(color_code, '')}", color, enclose, zsh)
if text:
return f"{ansi_code}{text}{_escape(0, color, enclose, zsh)}"
else:
return ansi_code
return COLOR_RE.sub(match_to_ansi, string).replace("}}", "}")
color = _color_when_value(kwargs.get("color", get_color_when()))
zsh = kwargs.get("zsh", False)
string = re.sub(color_re, match_to_ansi(color, kwargs.get("enclose")), string, zsh)
string = string.replace("}}", "}")
return string
def clen(string):
@@ -301,7 +305,7 @@ def cprint(string, stream=None, color=None):
cwrite(string + "\n", stream, color)
def cescape(string: str) -> str:
def cescape(string):
"""Escapes special characters needed for color codes.
Replaces the following symbols with their equivalent literal forms:
@@ -317,7 +321,10 @@ def cescape(string: str) -> str:
Returns:
(str): the string with color codes escaped
"""
return string.replace("@", "@@").replace("}", "}}")
string = str(string)
string = string.replace("@", "@@")
string = string.replace("}", "}}")
return string
class ColorStream:

View File

@@ -10,7 +10,6 @@
import errno
import io
import multiprocessing
import multiprocessing.connection
import os
import re
import select
@@ -34,23 +33,8 @@
pass
esc, bell, lbracket, bslash, newline = r"\x1b", r"\x07", r"\[", r"\\", r"\n"
# Ansi Control Sequence Introducers (CSI) are a well-defined format
# Standard ECMA-48: Control Functions for Character-Imaging I/O Devices, section 5.4
# https://www.ecma-international.org/wp-content/uploads/ECMA-48_5th_edition_june_1991.pdf
csi_pre = f"{esc}{lbracket}"
csi_param, csi_inter, csi_post = r"[0-?]", r"[ -/]", r"[@-~]"
ansi_csi = f"{csi_pre}{csi_param}*{csi_inter}*{csi_post}"
# General ansi escape sequences have well-defined prefixes,
# but content and suffixes are less reliable.
# Conservatively assume they end with either "<ESC>\" or "<BELL>",
# with no intervening "<ESC>"/"<BELL>" keys or newlines
esc_pre = f"{esc}[@-_]"
esc_content = f"[^{esc}{bell}{newline}]"
esc_post = f"(?:{esc}{bslash}|{bell})"
ansi_esc = f"{esc_pre}{esc_content}*{esc_post}"
# Use this to strip escape sequences
_escape = re.compile(f"{ansi_csi}|{ansi_esc}")
_escape = re.compile(r"\x1b[^m]*m|\x1b\[?1034h|\x1b\][0-9]+;[^\x07]*\x07")
# control characters for enabling/disabling echo
#

View File

@@ -3,15 +3,8 @@
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
import os
import re
from typing import Optional
import spack.paths
import spack.util.git
#: PEP440 canonical <major>.<minor>.<micro>.<devN> string
__version__ = "0.23.0.dev0"
__version__ = "0.22.0.dev0"
spack_version = __version__
@@ -26,47 +19,4 @@ def __try_int(v):
spack_version_info = tuple([__try_int(v) for v in __version__.split(".")])
def get_spack_commit() -> Optional[str]:
"""Get the Spack git commit sha.
Returns:
(str or None) the commit sha if available, otherwise None
"""
git_path = os.path.join(spack.paths.prefix, ".git")
if not os.path.exists(git_path):
return None
git = spack.util.git.git()
if not git:
return None
rev = git(
"-C",
spack.paths.prefix,
"rev-parse",
"HEAD",
output=str,
error=os.devnull,
fail_on_error=False,
)
if git.returncode != 0:
return None
match = re.match(r"[a-f\d]{7,}$", rev)
return match.group(0) if match else None
def get_version() -> str:
"""Get a descriptive version of this instance of Spack.
Outputs '<PEP440 version> (<git commit sha>)'.
The commit sha is only added when available.
"""
commit = get_spack_commit()
if commit:
return f"{spack_version} ({commit})"
return spack_version
__all__ = ["spack_version_info", "spack_version", "get_version", "get_spack_commit"]
__all__ = ["spack_version_info", "spack_version"]

131
lib/spack/spack/abi.py Normal file
View File

@@ -0,0 +1,131 @@
# Copyright 2013-2024 Lawrence Livermore National Security, LLC and other
# Spack Project Developers. See the top-level COPYRIGHT file for details.
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
import os
from llnl.util.lang import memoized
import spack.spec
import spack.version
from spack.compilers.clang import Clang
from spack.util.executable import Executable, ProcessError
class ABI:
"""This class provides methods to test ABI compatibility between specs.
The current implementation is rather rough and could be improved."""
def architecture_compatible(
self, target: spack.spec.Spec, constraint: spack.spec.Spec
) -> bool:
"""Return true if architecture of target spec is ABI compatible
to the architecture of constraint spec. If either the target
or constraint specs have no architecture, target is also defined
as architecture ABI compatible to constraint."""
return (
not target.architecture
or not constraint.architecture
or target.architecture.intersects(constraint.architecture)
)
@memoized
def _gcc_get_libstdcxx_version(self, version):
"""Returns gcc ABI compatibility info by getting the library version of
a compiler's libstdc++ or libgcc_s"""
from spack.build_environment import dso_suffix
spec = spack.spec.CompilerSpec("gcc", version)
compilers = spack.compilers.compilers_for_spec(spec)
if not compilers:
return None
compiler = compilers[0]
rungcc = None
libname = None
output = None
if compiler.cxx:
rungcc = Executable(compiler.cxx)
libname = "libstdc++." + dso_suffix
elif compiler.cc:
rungcc = Executable(compiler.cc)
libname = "libgcc_s." + dso_suffix
else:
return None
try:
# Some gcc's are actually clang and don't respond properly to
# --print-file-name (they just print the filename, not the
# full path). Ignore these and expect them to be handled as clang.
if Clang.default_version(rungcc.exe[0]) != "unknown":
return None
output = rungcc("--print-file-name=%s" % libname, output=str)
except ProcessError:
return None
if not output:
return None
libpath = os.path.realpath(output.strip())
if not libpath:
return None
return os.path.basename(libpath)
@memoized
def _gcc_compiler_compare(self, pversion, cversion):
"""Returns true iff the gcc version pversion and cversion
are ABI compatible."""
plib = self._gcc_get_libstdcxx_version(pversion)
clib = self._gcc_get_libstdcxx_version(cversion)
if not plib or not clib:
return False
return plib == clib
def _intel_compiler_compare(
self, pversion: spack.version.ClosedOpenRange, cversion: spack.version.ClosedOpenRange
) -> bool:
"""Returns true iff the intel version pversion and cversion
are ABI compatible"""
# Test major and minor versions. Ignore build version.
pv = pversion.lo
cv = cversion.lo
return pv.up_to(2) == cv.up_to(2)
def compiler_compatible(
self, parent: spack.spec.Spec, child: spack.spec.Spec, loose: bool = False
) -> bool:
"""Return true if compilers for parent and child are ABI compatible."""
if not parent.compiler or not child.compiler:
return True
if parent.compiler.name != child.compiler.name:
# Different compiler families are assumed ABI incompatible
return False
if loose:
return True
# TODO: Can we move the specialized ABI matching stuff
# TODO: into compiler classes?
for pversion in parent.compiler.versions:
for cversion in child.compiler.versions:
# For a few compilers use specialized comparisons.
# Otherwise match on version match.
if pversion.intersects(cversion):
return True
elif parent.compiler.name == "gcc" and self._gcc_compiler_compare(
pversion, cversion
):
return True
elif parent.compiler.name == "intel" and self._intel_compiler_compare(
pversion, cversion
):
return True
return False
def compatible(
self, target: spack.spec.Spec, constraint: spack.spec.Spec, loose: bool = False
) -> bool:
"""Returns true if target spec is ABI compatible to constraint spec"""
return self.architecture_compatible(target, constraint) and self.compiler_compatible(
target, constraint, loose=loose
)

View File

@@ -39,21 +39,18 @@ def _search_duplicate_compilers(error_cls):
import collections
import collections.abc
import glob
import inspect
import io
import itertools
import os
import pathlib
import pickle
import re
import warnings
from typing import Iterable, List, Set, Tuple
from urllib.request import urlopen
import llnl.util.lang
import spack.builder
import spack.config
import spack.fetch_strategy
import spack.patch
import spack.repo
import spack.spec
@@ -76,9 +73,7 @@ def __init__(self, summary, details):
self.details = tuple(details)
def __str__(self):
if self.details:
return f"{self.summary}\n" + "\n".join(f" {detail}" for detail in self.details)
return self.summary
return self.summary + "\n" + "\n".join([" " + detail for detail in self.details])
def __eq__(self, other):
if self.summary != other.summary or self.details != other.details:
@@ -215,11 +210,6 @@ def _search_duplicate_compilers(error_cls):
group="configs", tag="CFG-PACKAGES", description="Sanity checks on packages.yaml", kwargs=()
)
#: Sanity checks on packages.yaml
config_repos = AuditClass(
group="configs", tag="CFG-REPOS", description="Sanity checks on repositories", kwargs=()
)
@config_packages
def _search_duplicate_specs_in_externals(error_cls):
@@ -262,6 +252,40 @@ def _search_duplicate_specs_in_externals(error_cls):
return errors
@config_packages
def _deprecated_preferences(error_cls):
"""Search package preferences deprecated in v0.21 (and slated for removal in v0.22)"""
# TODO (v0.22): remove this audit as the attributes will not be allowed in config
errors = []
packages_yaml = spack.config.CONFIG.get_config("packages")
def make_error(attribute_name, config_data, summary):
s = io.StringIO()
s.write("Occurring in the following file:\n")
dict_view = syaml.syaml_dict((k, v) for k, v in config_data.items() if k == attribute_name)
syaml.dump_config(dict_view, stream=s, blame=True)
return error_cls(summary=summary, details=[s.getvalue()])
if "all" in packages_yaml and "version" in packages_yaml["all"]:
summary = "Using the deprecated 'version' attribute under 'packages:all'"
errors.append(make_error("version", packages_yaml["all"], summary))
for package_name in packages_yaml:
if package_name == "all":
continue
package_conf = packages_yaml[package_name]
for attribute in ("compiler", "providers", "target"):
if attribute not in package_conf:
continue
summary = (
f"Using the deprecated '{attribute}' attribute " f"under 'packages:{package_name}'"
)
errors.append(make_error(attribute, package_conf, summary))
return errors
@config_packages
def _avoid_mismatched_variants(error_cls):
"""Warns if variant preferences have mismatched types or names."""
@@ -282,7 +306,7 @@ def _avoid_mismatched_variants(error_cls):
pkg_cls = spack.repo.PATH.get_pkg_class(pkg_name)
for variant in current_spec.variants.values():
# Variant does not exist at all
if variant.name not in pkg_cls.variant_names():
if variant.name not in pkg_cls.variants:
summary = (
f"Setting a preference for the '{pkg_name}' package to the "
f"non-existing variant '{variant.name}'"
@@ -291,8 +315,9 @@ def _avoid_mismatched_variants(error_cls):
continue
# Variant cannot accept this value
s = spack.spec.Spec(pkg_name)
try:
spack.variant.prevalidate_variant_value(pkg_cls, variant, strict=True)
s.update_variant_validate(variant.name, variant.value)
except Exception:
summary = (
f"Setting the variant '{variant.name}' of the '{pkg_name}' package "
@@ -326,43 +351,6 @@ def _wrongly_named_spec(error_cls):
return errors
@config_packages
def _ensure_all_virtual_packages_have_default_providers(error_cls):
"""All virtual packages must have a default provider explicitly set."""
configuration = spack.config.create()
defaults = configuration.get("packages", scope="defaults")
default_providers = defaults["all"]["providers"]
virtuals = spack.repo.PATH.provider_index.providers
default_providers_filename = configuration.scopes["defaults"].get_section_filename("packages")
return [
error_cls(f"'{virtual}' must have a default provider in {default_providers_filename}", [])
for virtual in virtuals
if virtual not in default_providers
]
@config_repos
def _ensure_no_folders_without_package_py(error_cls):
"""Check that we don't leave any folder without a package.py in repos"""
errors = []
for repository in spack.repo.PATH.repos:
missing = []
for entry in os.scandir(repository.packages_path):
if not entry.is_dir():
continue
package_py = pathlib.Path(entry.path) / spack.repo.package_file_name
if not package_py.exists():
missing.append(entry.path)
if missing:
summary = (
f"The '{repository.namespace}' repository misses a package.py file"
f" in the following folders"
)
errors.append(error_cls(summary=summary, details=[f"{x}" for x in missing]))
return errors
def _make_config_error(config_data, summary, error_cls):
s = io.StringIO()
s.write("Occurring in the following file:\n")
@@ -433,10 +421,6 @@ def _check_patch_urls(pkgs, error_cls):
r"^https?://(?:patch-diff\.)?github(?:usercontent)?\.com/"
r".+/.+/(?:commit|pull)/[a-fA-F0-9]+\.(?:patch|diff)"
)
github_pull_commits_re = (
r"^https?://(?:patch-diff\.)?github(?:usercontent)?\.com/"
r".+/.+/pull/\d+/commits/[a-fA-F0-9]+\.(?:patch|diff)"
)
# Only .diff URLs have stable/full hashes:
# https://forum.gitlab.com/t/patches-with-full-index/29313
gitlab_patch_url_re = (
@@ -452,24 +436,14 @@ def _check_patch_urls(pkgs, error_cls):
if not isinstance(patch, spack.patch.UrlPatch):
continue
if re.match(github_pull_commits_re, patch.url):
url = re.sub(r"/pull/\d+/commits/", r"/commit/", patch.url)
url = re.sub(r"^(.*)(?<!full_index=1)$", r"\1?full_index=1", url)
errors.append(
error_cls(
f"patch URL in package {pkg_cls.name} "
+ "must not be a pull request commit; "
+ f"instead use {url}",
[patch.url],
)
)
elif re.match(github_patch_url_re, patch.url):
if re.match(github_patch_url_re, patch.url):
full_index_arg = "?full_index=1"
if not patch.url.endswith(full_index_arg):
errors.append(
error_cls(
f"patch URL in package {pkg_cls.name} "
+ f"must end with {full_index_arg}",
"patch URL in package {0} must end with {1}".format(
pkg_cls.name, full_index_arg
),
[patch.url],
)
)
@@ -477,7 +451,9 @@ def _check_patch_urls(pkgs, error_cls):
if not patch.url.endswith(".diff"):
errors.append(
error_cls(
f"patch URL in package {pkg_cls.name} must end with .diff",
"patch URL in package {0} must end with .diff".format(
pkg_cls.name
),
[patch.url],
)
)
@@ -494,7 +470,7 @@ def _search_for_reserved_attributes_names_in_packages(pkgs, error_cls):
name_definitions = collections.defaultdict(list)
pkg_cls = spack.repo.PATH.get_pkg_class(pkg_name)
for cls_item in pkg_cls.__mro__:
for cls_item in inspect.getmro(pkg_cls):
for name in RESERVED_NAMES:
current_value = cls_item.__dict__.get(name)
if current_value is None:
@@ -523,7 +499,7 @@ def _ensure_all_package_names_are_lowercase(pkgs, error_cls):
badname_regex, errors = re.compile(r"[_A-Z]"), []
for pkg_name in pkgs:
if badname_regex.search(pkg_name):
error_msg = f"Package name '{pkg_name}' should be lowercase and must not contain '_'"
error_msg = "Package name '{}' is either lowercase or conatine '_'".format(pkg_name)
errors.append(error_cls(error_msg, []))
return errors
@@ -662,15 +638,9 @@ def _ensure_env_methods_are_ported_to_builders(pkgs, error_cls):
errors = []
for pkg_name in pkgs:
pkg_cls = spack.repo.PATH.get_pkg_class(pkg_name)
# values are either Value objects (for conditional values) or the values themselves
build_system_names = set(
v.value if isinstance(v, spack.variant.Value) else v
for _, variant in pkg_cls.variant_definitions("build_system")
for v in variant.values
)
builder_cls_names = [spack.builder.BUILDER_CLS[x].__name__ for x in build_system_names]
buildsystem_variant, _ = pkg_cls.variants["build_system"]
buildsystem_names = [getattr(x, "value", x) for x in buildsystem_variant.values]
builder_cls_names = [spack.builder.BUILDER_CLS[x].__name__ for x in buildsystem_names]
module = pkg_cls.module
has_builders_in_package_py = any(
getattr(module, name, False) for name in builder_cls_names
@@ -689,88 +659,6 @@ def _ensure_env_methods_are_ported_to_builders(pkgs, error_cls):
return errors
class DeprecatedMagicGlobals(ast.NodeVisitor):
def __init__(self, magic_globals: Iterable[str]):
super().__init__()
self.magic_globals: Set[str] = set(magic_globals)
# State to track whether we're in a class function
self.depth: int = 0
self.in_function: bool = False
self.path = (ast.Module, ast.ClassDef, ast.FunctionDef)
# Defined locals in the current function (heuristically at least)
self.locals: Set[str] = set()
# List of (name, lineno) tuples for references to magic globals
self.references_to_globals: List[Tuple[str, int]] = []
def descend_in_function_def(self, node: ast.AST) -> None:
if not isinstance(node, self.path[self.depth]):
return
self.depth += 1
if self.depth == len(self.path):
self.in_function = True
super().generic_visit(node)
if self.depth == len(self.path):
self.in_function = False
self.locals.clear()
self.depth -= 1
def generic_visit(self, node: ast.AST) -> None:
# Recurse into function definitions
if self.depth < len(self.path):
return self.descend_in_function_def(node)
elif not self.in_function:
return
elif isinstance(node, ast.Global):
for name in node.names:
if name in self.magic_globals:
self.references_to_globals.append((name, node.lineno))
elif isinstance(node, ast.Assign):
# visit the rhs before lhs
super().visit(node.value)
for target in node.targets:
super().visit(target)
elif isinstance(node, ast.Name) and node.id in self.magic_globals:
if isinstance(node.ctx, ast.Load) and node.id not in self.locals:
self.references_to_globals.append((node.id, node.lineno))
elif isinstance(node.ctx, ast.Store):
self.locals.add(node.id)
else:
super().generic_visit(node)
@package_properties
def _uses_deprecated_globals(pkgs, error_cls):
"""Ensure that packages do not use deprecated globals"""
errors = []
for pkg_name in pkgs:
# some packages scheduled to be removed in v0.23 are not worth fixing.
pkg_cls = spack.repo.PATH.get_pkg_class(pkg_name)
if all(v.get("deprecated", False) for v in pkg_cls.versions.values()):
continue
file = spack.repo.PATH.filename_for_package_name(pkg_name)
tree = ast.parse(open(file).read())
visitor = DeprecatedMagicGlobals(("std_cmake_args",))
visitor.visit(tree)
if visitor.references_to_globals:
errors.append(
error_cls(
f"Package '{pkg_name}' uses deprecated globals",
[
f"{file}:{line} references '{name}'"
for name, line in visitor.references_to_globals
],
)
)
return errors
@package_https_directives
def _linting_package_file(pkgs, error_cls):
"""Check for correctness of links"""
@@ -891,7 +779,7 @@ def check_virtual_with_variants(spec, msg):
return
error = error_cls(
f"{pkg_name}: {msg}",
[f"remove variants from '{spec}' in depends_on directive in {filename}"],
f"remove variants from '{spec}' in depends_on directive in {filename}",
)
errors.append(error)
@@ -937,22 +825,20 @@ def check_virtual_with_variants(spec, msg):
# check variants
dependency_variants = dep.spec.variants
for name, variant in dependency_variants.items():
for name, value in dependency_variants.items():
try:
spack.variant.prevalidate_variant_value(
dependency_pkg_cls, variant, dep.spec, strict=True
)
v, _ = dependency_pkg_cls.variants[name]
v.validate_or_raise(value, pkg_cls=dependency_pkg_cls)
except Exception as e:
summary = (
f"{pkg_name}: wrong variant used for dependency in 'depends_on()'"
)
error_msg = str(e)
if isinstance(e, KeyError):
error_msg = (
f"variant {str(e).strip()} does not exist in package {dep_name}"
f" in package '{dep_name}'"
)
error_msg += f" in package '{dep_name}'"
errors.append(
error_cls(summary=summary, details=[error_msg, f"in {filename}"])
@@ -964,38 +850,39 @@ def check_virtual_with_variants(spec, msg):
@package_directives
def _ensure_variant_defaults_are_parsable(pkgs, error_cls):
"""Ensures that variant defaults are present and parsable from cli"""
def check_variant(pkg_cls, variant, vname):
# bool is a subclass of int in python. Permitting a default that is an instance
# of 'int' means both foo=false and foo=0 are accepted. Other falsish values are
# not allowed, since they can't be parsed from CLI ('foo=')
default_is_parsable = isinstance(variant.default, int) or variant.default
if not default_is_parsable:
msg = f"Variant '{vname}' of package '{pkg_cls.name}' has an unparsable default value"
return [error_cls(msg, [])]
try:
vspec = variant.make_default()
except spack.variant.MultipleValuesInExclusiveVariantError:
msg = f"Can't create default value for variant '{vname}' in package '{pkg_cls.name}'"
return [error_cls(msg, [])]
try:
variant.validate_or_raise(vspec, pkg_cls.name)
except spack.variant.InvalidVariantValueError:
msg = "Default value of variant '{vname}' in package '{pkg.name}' is invalid"
question = "Is it among the allowed values?"
return [error_cls(msg, [question])]
return []
errors = []
for pkg_name in pkgs:
pkg_cls = spack.repo.PATH.get_pkg_class(pkg_name)
for vname in pkg_cls.variant_names():
for _, variant_def in pkg_cls.variant_definitions(vname):
errors.extend(check_variant(pkg_cls, variant_def, vname))
for variant_name, entry in pkg_cls.variants.items():
variant, _ = entry
default_is_parsable = (
# Permitting a default that is an instance on 'int' permits
# to have foo=false or foo=0. Other falsish values are
# not allowed, since they can't be parsed from cli ('foo=')
isinstance(variant.default, int)
or variant.default
)
if not default_is_parsable:
error_msg = "Variant '{}' of package '{}' has a bad default value"
errors.append(error_cls(error_msg.format(variant_name, pkg_name), []))
continue
try:
vspec = variant.make_default()
except spack.variant.MultipleValuesInExclusiveVariantError:
error_msg = "Cannot create a default value for the variant '{}' in package '{}'"
errors.append(error_cls(error_msg.format(variant_name, pkg_name), []))
continue
try:
variant.validate_or_raise(vspec, pkg_cls=pkg_cls)
except spack.variant.InvalidVariantValueError:
error_msg = (
"The default value of the variant '{}' in package '{}' failed validation"
)
question = "Is it among the allowed values?"
errors.append(error_cls(error_msg.format(variant_name, pkg_name), [question]))
return errors
@@ -1005,11 +892,11 @@ def _ensure_variants_have_descriptions(pkgs, error_cls):
errors = []
for pkg_name in pkgs:
pkg_cls = spack.repo.PATH.get_pkg_class(pkg_name)
for name in pkg_cls.variant_names():
for when, variant in pkg_cls.variant_definitions(name):
if not variant.description:
msg = f"Variant '{name}' in package '{pkg_name}' is missing a description"
errors.append(error_cls(msg, []))
for variant_name, entry in pkg_cls.variants.items():
variant, _ = entry
if not variant.description:
error_msg = "Variant '{}' in package '{}' is missing a description"
errors.append(error_cls(error_msg.format(variant_name, pkg_name), []))
return errors
@@ -1066,26 +953,29 @@ def _version_constraints_are_satisfiable_by_some_version_in_repo(pkgs, error_cls
def _analyze_variants_in_directive(pkg, constraint, directive, error_cls):
variant_exceptions = (
spack.variant.InconsistentValidationError,
spack.variant.MultipleValuesInExclusiveVariantError,
spack.variant.InvalidVariantValueError,
KeyError,
)
errors = []
variant_names = pkg.variant_names()
summary = f"{pkg.name}: wrong variant in '{directive}' directive"
filename = spack.repo.PATH.filename_for_package_name(pkg.name)
for name, v in constraint.variants.items():
if name not in variant_names:
msg = f"variant {name} does not exist in {pkg.name}"
errors.append(error_cls(summary=summary, details=[msg, f"in {filename}"]))
continue
try:
spack.variant.prevalidate_variant_value(pkg, v, constraint, strict=True)
except (
spack.variant.InconsistentValidationError,
spack.variant.MultipleValuesInExclusiveVariantError,
spack.variant.InvalidVariantValueError,
) as e:
msg = str(e).strip()
errors.append(error_cls(summary=summary, details=[msg, f"in {filename}"]))
variant, _ = pkg.variants[name]
variant.validate_or_raise(v, pkg_cls=pkg)
except variant_exceptions as e:
summary = pkg.name + ': wrong variant in "{0}" directive'
summary = summary.format(directive)
filename = spack.repo.PATH.filename_for_package_name(pkg.name)
error_msg = str(e).strip()
if isinstance(e, KeyError):
error_msg = "the variant {0} does not exist".format(error_msg)
err = error_cls(summary=summary, details=[error_msg, "in " + filename])
errors.append(err)
return errors
@@ -1123,10 +1013,9 @@ def _extracts_errors(triggers, summary):
for dname in dnames
)
for when, variants_by_name in pkg_cls.variants.items():
for vname, variant in variants_by_name.items():
summary = f"{pkg_name}: wrong 'when=' condition for the '{vname}' variant"
errors.extend(_extracts_errors([when], summary))
for vname, (variant, triggers) in pkg_cls.variants.items():
summary = f"{pkg_name}: wrong 'when=' condition for the '{vname}' variant"
errors.extend(_extracts_errors(triggers, summary))
for when, providers, details in _error_items(pkg_cls.provided):
errors.extend(
@@ -1157,7 +1046,7 @@ def _extracts_errors(triggers, summary):
group="externals",
tag="PKG-EXTERNALS",
description="Sanity checks for external software detection",
kwargs=("pkgs", "debug_log"),
kwargs=("pkgs",),
)
@@ -1180,7 +1069,7 @@ def packages_with_detection_tests():
@external_detection
def _test_detection_by_executable(pkgs, debug_log, error_cls):
def _test_detection_by_executable(pkgs, error_cls):
"""Test drive external detection for packages"""
import spack.detection
@@ -1206,7 +1095,6 @@ def _test_detection_by_executable(pkgs, debug_log, error_cls):
for idx, test_runner in enumerate(
spack.detection.detection_tests(pkg_name, spack.repo.PATH)
):
debug_log(f"[{__file__}]: running test {idx} for package {pkg_name}")
specs = test_runner.execute()
expected_specs = test_runner.expected_specs
@@ -1223,75 +1111,4 @@ def _test_detection_by_executable(pkgs, debug_log, error_cls):
details = [msg.format(s, idx) for s in sorted(not_expected)]
errors.append(error_cls(summary=summary, details=details))
matched_detection = []
for candidate in expected_specs:
try:
idx = specs.index(candidate)
matched_detection.append((candidate, specs[idx]))
except (AttributeError, ValueError):
pass
def _compare_extra_attribute(_expected, _detected, *, _spec):
result = []
# Check items are of the same type
if not isinstance(_detected, type(_expected)):
_summary = f'{pkg_name}: error when trying to detect "{_expected}"'
_details = [f"{_detected} was detected instead"]
return [error_cls(summary=_summary, details=_details)]
# If they are string expected is a regex
if isinstance(_expected, str):
try:
_regex = re.compile(_expected)
except re.error:
_summary = f'{pkg_name}: illegal regex in "{_spec}" extra attributes'
_details = [f"{_expected} is not a valid regex"]
return [error_cls(summary=_summary, details=_details)]
if not _regex.match(_detected):
_summary = (
f'{pkg_name}: error when trying to match "{_expected}" '
f"in extra attributes"
)
_details = [f"{_detected} does not match the regex"]
return [error_cls(summary=_summary, details=_details)]
if isinstance(_expected, dict):
_not_detected = set(_expected.keys()) - set(_detected.keys())
if _not_detected:
_summary = f"{pkg_name}: cannot detect some attributes for spec {_spec}"
_details = [
f'"{_expected}" was expected',
f'"{_detected}" was detected',
] + [f'attribute "{s}" was not detected' for s in sorted(_not_detected)]
result.append(error_cls(summary=_summary, details=_details))
_common = set(_expected.keys()) & set(_detected.keys())
for _key in _common:
result.extend(
_compare_extra_attribute(_expected[_key], _detected[_key], _spec=_spec)
)
return result
for expected, detected in matched_detection:
# We might not want to test all attributes, so avoid not_expected
not_detected = set(expected.extra_attributes) - set(detected.extra_attributes)
if not_detected:
summary = f"{pkg_name}: cannot detect some attributes for spec {expected}"
details = [
f'"{s}" was not detected [test_id={idx}]' for s in sorted(not_detected)
]
errors.append(error_cls(summary=summary, details=details))
common = set(expected.extra_attributes) & set(detected.extra_attributes)
for key in common:
errors.extend(
_compare_extra_attribute(
expected.extra_attributes[key],
detected.extra_attributes[key],
_spec=expected,
)
)
return errors

File diff suppressed because it is too large Load Diff

View File

@@ -5,14 +5,7 @@
"""Function and classes needed to bootstrap Spack itself."""
from .config import ensure_bootstrap_configuration, is_bootstrapping, store_path
from .core import (
all_core_root_specs,
ensure_clingo_importable_or_raise,
ensure_core_dependencies,
ensure_file_in_path_or_raise,
ensure_gpg_in_path_or_raise,
ensure_patchelf_in_path_or_raise,
)
from .core import all_core_root_specs, ensure_core_dependencies, ensure_patchelf_in_path_or_raise
from .environment import BootstrapEnvironment, ensure_environment_dependencies
from .status import status_message
@@ -20,9 +13,6 @@
"is_bootstrapping",
"ensure_bootstrap_configuration",
"ensure_core_dependencies",
"ensure_file_in_path_or_raise",
"ensure_gpg_in_path_or_raise",
"ensure_clingo_importable_or_raise",
"ensure_patchelf_in_path_or_raise",
"all_core_root_specs",
"ensure_environment_dependencies",

View File

@@ -4,7 +4,6 @@
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
"""Common basic functions used through the spack.bootstrap package"""
import fnmatch
import importlib
import os.path
import re
import sys
@@ -29,7 +28,7 @@
def _python_import(module: str) -> bool:
try:
importlib.import_module(module)
__import__(module)
except ImportError:
return False
return True
@@ -55,14 +54,10 @@ def _try_import_from_store(
installed_specs = spack.store.STORE.db.query(query_spec, installed=True)
for candidate_spec in installed_specs:
# previously bootstrapped specs may not have a python-venv dependency.
if candidate_spec.dependencies("python-venv"):
python, *_ = candidate_spec.dependencies("python-venv")
else:
python, *_ = candidate_spec.dependencies("python")
pkg = candidate_spec["python"].package
module_paths = [
os.path.join(candidate_spec.prefix, python.package.purelib),
os.path.join(candidate_spec.prefix, python.package.platlib),
os.path.join(candidate_spec.prefix, pkg.purelib),
os.path.join(candidate_spec.prefix, pkg.platlib),
]
path_before = list(sys.path)
@@ -214,18 +209,15 @@ def _root_spec(spec_str: str) -> str:
Args:
spec_str: spec to be bootstrapped. Must be without compiler and target.
"""
# Add a compiler and platform requirement to the root spec.
# Add a compiler requirement to the root spec.
platform = str(spack.platforms.host())
if platform == "darwin":
spec_str += " %apple-clang"
elif platform == "windows":
spec_str += " %msvc"
elif platform == "linux":
spec_str += " %gcc"
elif platform == "freebsd":
spec_str += " %clang"
spec_str += f" platform={platform}"
target = archspec.cpu.host().family
spec_str += f" target={target}"

View File

@@ -1,154 +0,0 @@
# Copyright 2013-2024 Lawrence Livermore National Security, LLC and other
# Spack Project Developers. See the top-level COPYRIGHT file for details.
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
"""Bootstrap concrete specs for clingo
Spack uses clingo to concretize specs. When clingo itself needs to be bootstrapped from sources,
we need to rely on another mechanism to get a concrete spec that fits the current host.
This module contains the logic to get a concrete spec for clingo, starting from a prototype
JSON file for a similar platform.
"""
import pathlib
import sys
from typing import Dict, Optional, Tuple
import archspec.cpu
import spack.compiler
import spack.compilers
import spack.platforms
import spack.spec
import spack.traverse
from .config import spec_for_current_python
class ClingoBootstrapConcretizer:
def __init__(self, configuration):
self.host_platform = spack.platforms.host()
self.host_os = self.host_platform.operating_system("frontend")
self.host_target = archspec.cpu.host().family
self.host_architecture = spack.spec.ArchSpec.frontend_arch()
self.host_architecture.target = str(self.host_target)
self.host_compiler = self._valid_compiler_or_raise()
self.host_python = self.python_external_spec()
if str(self.host_platform) == "linux":
self.host_libc = self.libc_external_spec()
self.external_cmake, self.external_bison = self._externals_from_yaml(configuration)
def _valid_compiler_or_raise(self) -> "spack.compiler.Compiler":
if str(self.host_platform) == "linux":
compiler_name = "gcc"
elif str(self.host_platform) == "darwin":
compiler_name = "apple-clang"
elif str(self.host_platform) == "windows":
compiler_name = "msvc"
elif str(self.host_platform) == "freebsd":
compiler_name = "clang"
else:
raise RuntimeError(f"Cannot bootstrap clingo from sources on {self.host_platform}")
candidates = spack.compilers.compilers_for_spec(
compiler_name, arch_spec=self.host_architecture
)
if not candidates:
raise RuntimeError(
f"Cannot find any version of {compiler_name} to bootstrap clingo from sources"
)
candidates.sort(key=lambda x: x.spec.version, reverse=True)
return candidates[0]
def _externals_from_yaml(
self, configuration: "spack.config.Configuration"
) -> Tuple[Optional["spack.spec.Spec"], Optional["spack.spec.Spec"]]:
packages_yaml = configuration.get("packages")
requirements = {"cmake": "@3.20:", "bison": "@2.5:"}
selected: Dict[str, Optional["spack.spec.Spec"]] = {"cmake": None, "bison": None}
for pkg_name in ["cmake", "bison"]:
if pkg_name not in packages_yaml:
continue
candidates = packages_yaml[pkg_name].get("externals", [])
for candidate in candidates:
s = spack.spec.Spec(candidate["spec"], external_path=candidate["prefix"])
if not s.satisfies(requirements[pkg_name]):
continue
if not s.intersects(f"%{self.host_compiler.spec}"):
continue
if not s.intersects(f"arch={self.host_architecture}"):
continue
selected[pkg_name] = self._external_spec(s)
break
return selected["cmake"], selected["bison"]
def prototype_path(self) -> pathlib.Path:
"""Path to a prototype concrete specfile for clingo"""
parent_dir = pathlib.Path(__file__).parent
result = parent_dir / "prototypes" / f"clingo-{self.host_platform}-{self.host_target}.json"
if str(self.host_platform) == "linux":
# Using aarch64 as a fallback, since it has gnuconfig (x86_64 doesn't have it)
if not result.exists():
result = parent_dir / "prototypes" / f"clingo-{self.host_platform}-aarch64.json"
elif str(self.host_platform) == "freebsd":
result = parent_dir / "prototypes" / f"clingo-{self.host_platform}-amd64.json"
elif not result.exists():
raise RuntimeError(f"Cannot bootstrap clingo from sources on {self.host_platform}")
return result
def concretize(self) -> "spack.spec.Spec":
# Read the prototype and mark it NOT concrete
s = spack.spec.Spec.from_specfile(str(self.prototype_path()))
s._mark_concrete(False)
# Tweak it to conform to the host architecture
for node in s.traverse():
node.architecture.os = str(self.host_os)
node.compiler = self.host_compiler.spec
node.architecture = self.host_architecture
if node.name == "gcc-runtime":
node.versions = self.host_compiler.spec.versions
for edge in spack.traverse.traverse_edges([s], cover="edges"):
if edge.spec.name == "python":
edge.spec = self.host_python
if edge.spec.name == "bison" and self.external_bison:
edge.spec = self.external_bison
if edge.spec.name == "cmake" and self.external_cmake:
edge.spec = self.external_cmake
if "libc" in edge.virtuals:
edge.spec = self.host_libc
s._finalize_concretization()
# Work around the fact that the installer calls Spec.dependents() and
# we modified edges inconsistently
return s.copy()
def python_external_spec(self) -> "spack.spec.Spec":
"""Python external spec corresponding to the current running interpreter"""
result = spack.spec.Spec(spec_for_current_python(), external_path=sys.exec_prefix)
return self._external_spec(result)
def libc_external_spec(self) -> "spack.spec.Spec":
result = self.host_compiler.default_libc
return self._external_spec(result)
def _external_spec(self, initial_spec) -> "spack.spec.Spec":
initial_spec.namespace = "builtin"
initial_spec.compiler = self.host_compiler.spec
initial_spec.architecture = self.host_architecture
for flag_type in spack.spec.FlagMap.valid_compiler_flags():
initial_spec.compiler_flags[flag_type] = []
return spack.spec.parse_with_version_concrete(initial_spec)

View File

@@ -14,7 +14,6 @@
import spack.compilers
import spack.config
import spack.environment
import spack.modules
import spack.paths
import spack.platforms
import spack.repo
@@ -130,10 +129,10 @@ def _bootstrap_config_scopes() -> Sequence["spack.config.ConfigScope"]:
configuration_paths = (spack.config.CONFIGURATION_DEFAULTS_PATH, ("bootstrap", _config_path()))
for name, path in configuration_paths:
platform = spack.platforms.host().name
platform_scope = spack.config.DirectoryConfigScope(
f"{name}/{platform}", os.path.join(path, platform)
platform_scope = spack.config.ConfigScope(
"/".join([name, platform]), os.path.join(path, platform)
)
generic_scope = spack.config.DirectoryConfigScope(name, path)
generic_scope = spack.config.ConfigScope(name, path)
config_scopes.extend([generic_scope, platform_scope])
msg = "[BOOTSTRAP CONFIG SCOPE] name={0}, path={1}"
tty.debug(msg.format(generic_scope.name, generic_scope.path))
@@ -144,7 +143,11 @@ def _bootstrap_config_scopes() -> Sequence["spack.config.ConfigScope"]:
def _add_compilers_if_missing() -> None:
arch = spack.spec.ArchSpec.frontend_arch()
if not spack.compilers.compilers_for_arch(arch):
spack.compilers.find_compilers()
new_compilers = spack.compilers.find_new_compilers(
mixed_toolchain=sys.platform == "darwin"
)
if new_compilers:
spack.compilers.add_compilers_to_config(new_compilers)
@contextlib.contextmanager
@@ -153,7 +156,7 @@ def _ensure_bootstrap_configuration() -> Generator:
bootstrap_store_path = store_path()
user_configuration = _read_and_sanitize_configuration()
with spack.environment.no_active_environment():
with spack.platforms.use_platform(
with spack.platforms.prevent_cray_detection(), spack.platforms.use_platform(
spack.platforms.real_host()
), spack.repo.use_repositories(spack.paths.packages_path):
# Default configuration scopes excluding command line

View File

@@ -37,19 +37,23 @@
import spack.binary_distribution
import spack.config
import spack.detection
import spack.environment
import spack.modules
import spack.paths
import spack.platforms
import spack.platforms.linux
import spack.repo
import spack.spec
import spack.store
import spack.user_environment
import spack.util.environment
import spack.util.executable
import spack.util.path
import spack.util.spack_yaml
import spack.util.url
import spack.version
from spack.installer import PackageInstaller
from ._common import _executables_in_store, _python_import, _root_spec, _try_import_from_store
from .clingo import ClingoBootstrapConcretizer
from .config import spack_python_interpreter, spec_for_current_python
#: Name of the file containing metadata about the bootstrapping source
@@ -169,14 +173,35 @@ def _read_metadata(self, package_name: str) -> Any:
return data
def _install_by_hash(
self, pkg_hash: str, pkg_sha256: str, bincache_platform: spack.platforms.Platform
self,
pkg_hash: str,
pkg_sha256: str,
index: List[spack.spec.Spec],
bincache_platform: spack.platforms.Platform,
) -> None:
index_spec = next(x for x in index if x.dag_hash() == pkg_hash)
# Reconstruct the compiler that we need to use for bootstrapping
compiler_entry = {
"modules": [],
"operating_system": str(index_spec.os),
"paths": {
"cc": "/dev/null",
"cxx": "/dev/null",
"f77": "/dev/null",
"fc": "/dev/null",
},
"spec": str(index_spec.compiler),
"target": str(index_spec.target.family),
}
with spack.platforms.use_platform(bincache_platform):
query = spack.binary_distribution.BinaryCacheQuery(all_architectures=True)
for match in spack.store.find([f"/{pkg_hash}"], multiple=False, query_fn=query):
spack.binary_distribution.install_root_node(
match, unsigned=True, force=True, sha256=pkg_sha256
)
with spack.config.override("compilers", [{"compiler": compiler_entry}]):
spec_str = "/" + pkg_hash
query = spack.binary_distribution.BinaryCacheQuery(all_architectures=True)
matches = spack.store.find([spec_str], multiple=False, query_fn=query)
for match in matches:
spack.binary_distribution.install_root_node(
match, unsigned=True, force=True, sha256=pkg_sha256
)
def _install_and_test(
self,
@@ -207,7 +232,7 @@ def _install_and_test(
continue
for _, pkg_hash, pkg_sha256 in item["binaries"]:
self._install_by_hash(pkg_hash, pkg_sha256, bincache_platform)
self._install_by_hash(pkg_hash, pkg_sha256, index, bincache_platform)
info: ConfigDictionary = {}
if test_fn(query_spec=abstract_spec, query_info=info):
@@ -264,13 +289,19 @@ def try_import(self, module: str, abstract_spec_str: str) -> bool:
# Try to build and install from sources
with spack_python_interpreter():
# Add hint to use frontend operating system on Cray
concrete_spec = spack.spec.Spec(abstract_spec_str + " ^" + spec_for_current_python())
# This is needed to help the old concretizer taking the `setuptools` dependency
# only when bootstrapping from sources on Python 3.12
if spec_for_current_python() == "python@3.12":
concrete_spec.constrain("+force_setuptools")
if module == "clingo":
bootstrapper = ClingoBootstrapConcretizer(configuration=spack.config.CONFIG)
concrete_spec = bootstrapper.concretize()
else:
concrete_spec = spack.spec.Spec(
abstract_spec_str + " ^" + spec_for_current_python()
# TODO: remove when the old concretizer is deprecated # pylint: disable=fixme
concrete_spec._old_concretize( # pylint: disable=protected-access
deprecation_warning=False
)
else:
concrete_spec.concretize()
msg = "[BOOTSTRAP MODULE {0}] Try installing '{1}' from sources"
@@ -278,7 +309,7 @@ def try_import(self, module: str, abstract_spec_str: str) -> bool:
# Install the spec that should make the module importable
with spack.config.override(self.mirror_scope):
PackageInstaller([concrete_spec.package], fail_fast=True).install()
concrete_spec.package.do_install(fail_fast=True)
if _try_import_from_store(module, query_spec=concrete_spec, query_info=info):
self.last_search = info
@@ -297,11 +328,18 @@ def try_search_path(self, executables: Tuple[str], abstract_spec_str: str) -> bo
# might reduce compilation time by a fair amount
_add_externals_if_missing()
concrete_spec = spack.spec.Spec(abstract_spec_str).concretized()
concrete_spec = spack.spec.Spec(abstract_spec_str)
if concrete_spec.name == "patchelf":
concrete_spec._old_concretize( # pylint: disable=protected-access
deprecation_warning=False
)
else:
concrete_spec.concretize()
msg = "[BOOTSTRAP] Try installing '{0}' from sources"
tty.debug(msg.format(abstract_spec_str))
with spack.config.override(self.mirror_scope):
PackageInstaller([concrete_spec.package], fail_fast=True).install()
concrete_spec.package.do_install()
if _executables_in_store(executables, concrete_spec, query_info=info):
self.last_search = info
return True
@@ -467,8 +505,7 @@ def ensure_clingo_importable_or_raise() -> None:
def gnupg_root_spec() -> str:
"""Return the root spec used to bootstrap GnuPG"""
root_spec_name = "win-gpg" if IS_WINDOWS else "gnupg"
return _root_spec(f"{root_spec_name}@2.3:")
return _root_spec("gnupg@2.3:")
def ensure_gpg_in_path_or_raise() -> None:
@@ -478,19 +515,6 @@ def ensure_gpg_in_path_or_raise() -> None:
)
def file_root_spec() -> str:
"""Return the root spec used to bootstrap file"""
root_spec_name = "win-file" if IS_WINDOWS else "file"
return _root_spec(root_spec_name)
def ensure_file_in_path_or_raise() -> None:
"""Ensure file is in the PATH or raise"""
return ensure_executables_in_path_or_raise(
executables=["file"], abstract_spec=file_root_spec()
)
def patchelf_root_spec() -> str:
"""Return the root spec used to bootstrap patchelf"""
# 0.13.1 is the last version not to require C++17.
@@ -535,54 +559,18 @@ def ensure_patchelf_in_path_or_raise() -> spack.util.executable.Executable:
)
def ensure_winsdk_external_or_raise() -> None:
"""Ensure the Windows SDK + WGL are available on system
If both of these package are found, the Spack user or bootstrap
configuration (depending on where Spack is running)
will be updated to include all versions and variants detected.
If either the WDK or WSDK are not found, this method will raise
a RuntimeError.
**NOTE:** This modifies the Spack config in the current scope,
either user or environment depending on the calling context.
This is different from all other current bootstrap dependency
checks.
"""
if set(["win-sdk", "wgl"]).issubset(spack.config.get("packages").keys()):
return
externals = spack.detection.by_path(["win-sdk", "wgl"])
if not set(["win-sdk", "wgl"]) == externals.keys():
missing_packages_lst = []
if "wgl" not in externals:
missing_packages_lst.append("wgl")
if "win-sdk" not in externals:
missing_packages_lst.append("win-sdk")
missing_packages = " & ".join(missing_packages_lst)
raise RuntimeError(
f"Unable to find the {missing_packages}, please install these packages \
via the Visual Studio installer \
before proceeding with Spack or provide the path to a non standard install with \
'spack external find --path'"
)
# wgl/sdk are not required for bootstrapping Spack, but
# are required for building anything non trivial
# add to user config so they can be used by subsequent Spack ops
spack.detection.update_configuration(externals, buildable=False)
def ensure_core_dependencies() -> None:
"""Ensure the presence of all the core dependencies."""
if sys.platform.lower() == "linux":
ensure_patchelf_in_path_or_raise()
elif sys.platform == "win32":
ensure_file_in_path_or_raise()
ensure_gpg_in_path_or_raise()
if not IS_WINDOWS:
ensure_gpg_in_path_or_raise()
ensure_clingo_importable_or_raise()
def all_core_root_specs() -> List[str]:
"""Return a list of all the core root specs that may be used to bootstrap Spack"""
return [clingo_root_spec(), gnupg_root_spec(), patchelf_root_spec(), file_root_spec()]
return [clingo_root_spec(), gnupg_root_spec(), patchelf_root_spec()]
def bootstrapping_sources(scope: Optional[str] = None):

View File

@@ -3,20 +3,22 @@
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
"""Bootstrap non-core Spack dependencies from an environment."""
import glob
import hashlib
import os
import pathlib
import sys
from typing import Iterable, List
import warnings
from typing import List
import archspec.cpu
from llnl.util import tty
import spack.environment
import spack.spec
import spack.tengine
import spack.util.path
import spack.util.cpus
import spack.util.executable
from ._common import _root_spec
from .config import root_path, spec_for_current_python, store_path
@@ -26,16 +28,6 @@
class BootstrapEnvironment(spack.environment.Environment):
"""Environment to install dependencies of Spack for a given interpreter and architecture"""
def __init__(self) -> None:
if not self.spack_yaml().exists():
self._write_spack_yaml_file()
super().__init__(self.environment_root())
# Remove python package roots created before python-venv was introduced
for s in self.concrete_roots():
if "python" in s.package.extendees and not s.dependencies("python-venv"):
self.deconcretize(s)
@classmethod
def spack_dev_requirements(cls) -> List[str]:
"""Spack development requirements"""
@@ -67,19 +59,31 @@ def view_root(cls) -> pathlib.Path:
return cls.environment_root().joinpath("view")
@classmethod
def bin_dir(cls) -> pathlib.Path:
"""Paths to be added to PATH"""
return cls.view_root().joinpath("bin")
def pythonpaths(cls) -> List[str]:
"""Paths to be added to sys.path or PYTHONPATH"""
python_dir_part = f"python{'.'.join(str(x) for x in sys.version_info[:2])}"
glob_expr = str(cls.view_root().joinpath("**", python_dir_part, "**"))
result = glob.glob(glob_expr)
if not result:
msg = f"Cannot find any Python path in {cls.view_root()}"
warnings.warn(msg)
return result
def python_dirs(self) -> Iterable[pathlib.Path]:
python = next(s for s in self.all_specs_generator() if s.name == "python-venv").package
return {self.view_root().joinpath(p) for p in (python.platlib, python.purelib)}
@classmethod
def bin_dirs(cls) -> List[pathlib.Path]:
"""Paths to be added to PATH"""
return [cls.view_root().joinpath("bin")]
@classmethod
def spack_yaml(cls) -> pathlib.Path:
"""Environment spack.yaml file"""
return cls.environment_root().joinpath("spack.yaml")
def __init__(self) -> None:
if not self.spack_yaml().exists():
self._write_spack_yaml_file()
super().__init__(self.environment_root())
def update_installations(self) -> None:
"""Update the installations of this environment."""
log_enabled = tty.is_debug() or tty.is_verbose()
@@ -96,13 +100,21 @@ def update_installations(self) -> None:
self.install_all()
self.write(regenerate=True)
def load(self) -> None:
"""Update PATH and sys.path."""
# Make executables available (shouldn't need PYTHONPATH)
os.environ["PATH"] = f"{self.bin_dir()}{os.pathsep}{os.environ.get('PATH', '')}"
# Spack itself imports pytest
sys.path.extend(str(p) for p in self.python_dirs())
def update_syspath_and_environ(self) -> None:
"""Update ``sys.path`` and the PATH, PYTHONPATH environment variables to point to
the environment view.
"""
# Do minimal modifications to sys.path and environment variables. In particular, pay
# attention to have the smallest PYTHONPATH / sys.path possible, since that may impact
# the performance of the current interpreter
sys.path.extend(self.pythonpaths())
os.environ["PATH"] = os.pathsep.join(
[str(x) for x in self.bin_dirs()] + os.environ.get("PATH", "").split(os.pathsep)
)
os.environ["PYTHONPATH"] = os.pathsep.join(
os.environ.get("PYTHONPATH", "").split(os.pathsep)
+ [str(x) for x in self.pythonpaths()]
)
def _write_spack_yaml_file(self) -> None:
tty.msg(
@@ -152,4 +164,4 @@ def ensure_environment_dependencies() -> None:
_add_externals_if_missing()
with BootstrapEnvironment() as env:
env.update_installations()
env.load()
env.update_syspath_and_environ()

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View File

@@ -88,7 +88,7 @@ def _core_requirements() -> List[RequiredResponseType]:
def _buildcache_requirements() -> List[RequiredResponseType]:
_buildcache_exes = {
"file": _missing("file", "required to analyze files for buildcaches", system_only=False),
"file": _missing("file", "required to analyze files for buildcaches"),
("gpg2", "gpg"): _missing("gpg2", "required to sign/verify buildcaches", False),
}
if platform.system().lower() == "darwin":
@@ -124,7 +124,7 @@ def _development_requirements() -> List[RequiredResponseType]:
# Ensure we trigger environment modifications if we have an environment
if BootstrapEnvironment.spack_yaml().exists():
with BootstrapEnvironment() as env:
env.load()
env.update_syspath_and_environ()
return [
_required_executable(

View File

@@ -43,7 +43,7 @@
from collections import defaultdict
from enum import Flag, auto
from itertools import chain
from typing import Dict, List, Set, Tuple
from typing import List, Tuple
import llnl.util.tty as tty
from llnl.string import plural
@@ -53,31 +53,32 @@
from llnl.util.tty.color import cescape, colorize
from llnl.util.tty.log import MultiProcessFd
import spack.build_systems._checks
import spack.build_systems.cmake
import spack.build_systems.meson
import spack.build_systems.python
import spack.builder
import spack.compilers
import spack.config
import spack.deptypes as dt
import spack.error
import spack.multimethod
import spack.main
import spack.package_base
import spack.paths
import spack.platforms
import spack.repo
import spack.schema.environment
import spack.spec
import spack.stage
import spack.store
import spack.subprocess_context
import spack.util.executable
import spack.user_environment
import spack.util.path
import spack.util.pattern
from spack import traverse
from spack.context import Context
from spack.error import InstallError, NoHeadersError, NoLibrariesError
from spack.error import NoHeadersError, NoLibrariesError
from spack.install_test import spack_install_test_log
from spack.installer import InstallError
from spack.util.cpus import determine_number_of_jobs
from spack.util.environment import (
SYSTEM_DIR_CASE_ENTRY,
SYSTEM_DIRS,
EnvironmentModifications,
env_flag,
filter_system_paths,
@@ -87,7 +88,7 @@
)
from spack.util.executable import Executable
from spack.util.log_parse import make_log_context, parse_log_events
from spack.util.module_cmd import load_module, path_from_modules
from spack.util.module_cmd import load_module, module, path_from_modules
#
# This can be set by the user to globally disable parallel builds.
@@ -100,13 +101,9 @@
# Spack's compiler wrappers.
#
SPACK_ENV_PATH = "SPACK_ENV_PATH"
SPACK_MANAGED_DIRS = "SPACK_MANAGED_DIRS"
SPACK_INCLUDE_DIRS = "SPACK_INCLUDE_DIRS"
SPACK_LINK_DIRS = "SPACK_LINK_DIRS"
SPACK_RPATH_DIRS = "SPACK_RPATH_DIRS"
SPACK_STORE_INCLUDE_DIRS = "SPACK_STORE_INCLUDE_DIRS"
SPACK_STORE_LINK_DIRS = "SPACK_STORE_LINK_DIRS"
SPACK_STORE_RPATH_DIRS = "SPACK_STORE_RPATH_DIRS"
SPACK_RPATH_DEPS = "SPACK_RPATH_DEPS"
SPACK_LINK_DEPS = "SPACK_LINK_DEPS"
SPACK_PREFIX = "SPACK_PREFIX"
@@ -186,6 +183,14 @@ def __call__(self, *args, **kwargs):
return super().__call__(*args, **kwargs)
def _on_cray():
host_platform = spack.platforms.host()
host_os = host_platform.operating_system("default_os")
on_cray = str(host_platform) == "cray"
using_cnl = re.match(r"cnl\d+", str(host_os))
return on_cray, using_cnl
def clean_environment():
# Stuff in here sanitizes the build environment to eliminate
# anything the user has set that may interfere. We apply it immediately
@@ -229,6 +234,17 @@ def clean_environment():
if varname.endswith("_ROOT") and varname != "SPACK_ROOT":
env.unset(varname)
# On Cray "cluster" systems, unset CRAY_LD_LIBRARY_PATH to avoid
# interference with Spack dependencies.
# CNL requires these variables to be set (or at least some of them,
# depending on the CNL version).
on_cray, using_cnl = _on_cray()
if on_cray and not using_cnl:
env.unset("CRAY_LD_LIBRARY_PATH")
for varname in os.environ.keys():
if "PKGCONF" in varname:
env.unset(varname)
# Unset the following variables because they can affect installation of
# Autotools and CMake packages.
build_system_vars = [
@@ -358,7 +374,11 @@ def set_compiler_environment_variables(pkg, env):
_add_werror_handling(keep_werror, env)
# Set the target parameters that the compiler will add
isa_arg = spec.architecture.target.optimization_flags(compiler)
# Don't set on cray platform because the targeting module handles this
if spec.satisfies("platform=cray"):
isa_arg = ""
else:
isa_arg = spec.architecture.target.optimization_flags(compiler)
env.set("SPACK_TARGET_ARGS", isa_arg)
# Trap spack-tracked compiler flags as appropriate.
@@ -396,7 +416,7 @@ def set_compiler_environment_variables(pkg, env):
env.set("SPACK_COMPILER_SPEC", str(spec.compiler))
env.set("SPACK_SYSTEM_DIRS", SYSTEM_DIR_CASE_ENTRY)
env.set("SPACK_SYSTEM_DIRS", ":".join(SYSTEM_DIRS))
compiler.setup_custom_environment(pkg, env)
@@ -450,14 +470,14 @@ def set_wrapper_variables(pkg, env):
env.set(SPACK_DEBUG, "TRUE")
env.set(SPACK_SHORT_SPEC, pkg.spec.short_spec)
env.set(SPACK_DEBUG_LOG_ID, pkg.spec.format("{name}-{hash:7}"))
env.set(SPACK_DEBUG_LOG_DIR, spack.paths.spack_working_dir)
env.set(SPACK_DEBUG_LOG_DIR, spack.main.spack_working_dir)
# Find ccache binary and hand it to build environment
if spack.config.get("config:ccache"):
# Enable ccache in the compiler wrapper
env.set(SPACK_CCACHE_BINARY, spack.util.executable.which_string("ccache", required=True))
else:
# Avoid cache pollution if a build system forces `ccache <compiler wrapper invocation>`.
env.set("CCACHE_DISABLE", "1")
ccache = Executable("ccache")
if not ccache:
raise RuntimeError("No ccache binary found in PATH")
env.set(SPACK_CCACHE_BINARY, ccache)
# Gather information about various types of dependencies
link_deps = set(pkg.spec.traverse(root=False, deptype=("link")))
@@ -524,26 +544,9 @@ def update_compiler_args_for_dep(dep):
include_dirs = list(dedupe(filter_system_paths(include_dirs)))
rpath_dirs = list(dedupe(filter_system_paths(rpath_dirs)))
# Spack managed directories include the stage, store and upstream stores. We extend this with
# their real paths to make it more robust (e.g. /tmp vs /private/tmp on macOS).
spack_managed_dirs: Set[str] = {
spack.stage.get_stage_root(),
spack.store.STORE.db.root,
*(db.root for db in spack.store.STORE.db.upstream_dbs),
}
spack_managed_dirs.update([os.path.realpath(p) for p in spack_managed_dirs])
env.set(SPACK_MANAGED_DIRS, "|".join(f'"{p}/"*' for p in sorted(spack_managed_dirs)))
is_spack_managed = lambda p: any(p.startswith(store) for store in spack_managed_dirs)
link_dirs_spack, link_dirs_system = stable_partition(link_dirs, is_spack_managed)
include_dirs_spack, include_dirs_system = stable_partition(include_dirs, is_spack_managed)
rpath_dirs_spack, rpath_dirs_system = stable_partition(rpath_dirs, is_spack_managed)
env.set(SPACK_LINK_DIRS, ":".join(link_dirs_system))
env.set(SPACK_INCLUDE_DIRS, ":".join(include_dirs_system))
env.set(SPACK_RPATH_DIRS, ":".join(rpath_dirs_system))
env.set(SPACK_STORE_LINK_DIRS, ":".join(link_dirs_spack))
env.set(SPACK_STORE_INCLUDE_DIRS, ":".join(include_dirs_spack))
env.set(SPACK_STORE_RPATH_DIRS, ":".join(rpath_dirs_spack))
env.set(SPACK_LINK_DIRS, ":".join(link_dirs))
env.set(SPACK_INCLUDE_DIRS, ":".join(include_dirs))
env.set(SPACK_RPATH_DIRS, ":".join(rpath_dirs))
def set_package_py_globals(pkg, context: Context = Context.BUILD):
@@ -557,7 +560,7 @@ def set_package_py_globals(pkg, context: Context = Context.BUILD):
module.std_meson_args = spack.build_systems.meson.MesonBuilder.std_args(pkg)
module.std_pip_args = spack.build_systems.python.PythonPipBuilder.std_args(pkg)
jobs = spack.config.determine_number_of_jobs(parallel=pkg.parallel)
jobs = determine_number_of_jobs(parallel=pkg.parallel)
module.make_jobs = jobs
# TODO: make these build deps that can be installed if not found.
@@ -580,22 +583,10 @@ def set_package_py_globals(pkg, context: Context = Context.BUILD):
# Put spack compiler paths in module scope. (Some packages use it
# in setup_run_environment etc, so don't put it context == build)
link_dir = spack.paths.build_env_path
pkg_compiler = None
try:
pkg_compiler = pkg.compiler
except spack.compilers.NoCompilerForSpecError as e:
tty.debug(f"cannot set 'spack_cc': {str(e)}")
if pkg_compiler is not None:
module.spack_cc = os.path.join(link_dir, pkg_compiler.link_paths["cc"])
module.spack_cxx = os.path.join(link_dir, pkg_compiler.link_paths["cxx"])
module.spack_f77 = os.path.join(link_dir, pkg_compiler.link_paths["f77"])
module.spack_fc = os.path.join(link_dir, pkg_compiler.link_paths["fc"])
else:
module.spack_cc = None
module.spack_cxx = None
module.spack_f77 = None
module.spack_fc = None
module.spack_cc = os.path.join(link_dir, pkg.compiler.link_paths["cc"])
module.spack_cxx = os.path.join(link_dir, pkg.compiler.link_paths["cxx"])
module.spack_f77 = os.path.join(link_dir, pkg.compiler.link_paths["f77"])
module.spack_fc = os.path.join(link_dir, pkg.compiler.link_paths["fc"])
# Useful directories within the prefix are encapsulated in
# a Prefix object.
@@ -703,28 +694,12 @@ def _static_to_shared_library(arch, compiler, static_lib, shared_lib=None, **kwa
return compiler(*compiler_args, output=compiler_output)
def _get_rpath_deps_from_spec(
spec: spack.spec.Spec, transitive_rpaths: bool
) -> List[spack.spec.Spec]:
if not transitive_rpaths:
return spec.dependencies(deptype=dt.LINK)
by_name: Dict[str, spack.spec.Spec] = {}
for dep in spec.traverse(root=False, deptype=dt.LINK):
lookup = by_name.get(dep.name)
if lookup is None:
by_name[dep.name] = dep
elif lookup.version < dep.version:
by_name[dep.name] = dep
return list(by_name.values())
def get_rpath_deps(pkg: spack.package_base.PackageBase) -> List[spack.spec.Spec]:
"""Return immediate or transitive dependencies (depending on the package) that need to be
rpath'ed. If a package occurs multiple times, the newest version is kept."""
return _get_rpath_deps_from_spec(pkg.spec, pkg.transitive_rpaths)
def get_rpath_deps(pkg):
"""Return immediate or transitive RPATHs depending on the package."""
if pkg.transitive_rpaths:
return [d for d in pkg.spec.traverse(root=False, deptype=("link"))]
else:
return pkg.spec.dependencies(deptype="link")
def get_rpaths(pkg):
@@ -736,9 +711,7 @@ def get_rpaths(pkg):
# Second module is our compiler mod name. We use that to get rpaths from
# module show output.
if pkg.compiler.modules and len(pkg.compiler.modules) > 1:
mod_rpath = path_from_modules([pkg.compiler.modules[1]])
if mod_rpath:
rpaths.append(mod_rpath)
rpaths.append(path_from_modules([pkg.compiler.modules[1]]))
return list(dedupe(filter_system_paths(rpaths)))
@@ -808,6 +781,14 @@ def setup_package(pkg, dirty, context: Context = Context.BUILD):
for mod in pkg.compiler.modules:
load_module(mod)
# kludge to handle cray mpich and libsci being automatically loaded by
# PrgEnv modules on cray platform. Module unload does no damage when
# unnecessary
on_cray, _ = _on_cray()
if on_cray and not dirty:
for mod in ["cray-mpich", "cray-libsci"]:
module("unload", mod)
if target and target.module_name:
load_module(target.module_name)
@@ -1134,7 +1115,7 @@ def _setup_pkg_and_run(
return_value = function(pkg, kwargs)
write_pipe.send(return_value)
except spack.error.StopPhase as e:
except StopPhase as e:
# Do not create a full ChildError from this, it's not an error
# it's a control statement.
write_pipe.send(e)
@@ -1295,7 +1276,7 @@ def exitcode_msg(p):
p.join()
# If returns a StopPhase, raise it
if isinstance(child_result, spack.error.StopPhase):
if isinstance(child_result, StopPhase):
# do not print
raise child_result
@@ -1471,7 +1452,7 @@ def long_message(self):
out.write(" {0}\n".format(self.log_name))
# Also output the test log path IF it exists
if self.context != "test" and have_log:
if self.context != "test":
test_log = join_path(os.path.dirname(self.log_name), spack_install_test_log)
if os.path.isfile(test_log):
out.write("\nSee test log for details:\n")
@@ -1504,6 +1485,17 @@ def _make_child_error(msg, module, name, traceback, log, log_type, context):
return ChildError(msg, module, name, traceback, log, log_type, context)
class StopPhase(spack.error.SpackError):
"""Pickle-able exception to control stopped builds."""
def __reduce__(self):
return _make_stop_phase, (self.message, self.long_message)
def _make_stop_phase(msg, long_msg):
return StopPhase(msg, long_msg)
def write_log_summary(out, log_type, log, last=None):
errors, warnings = parse_log_events(log)
nerr = len(errors)
@@ -1537,21 +1529,21 @@ class ModuleChangePropagator:
_PROTECTED_NAMES = ("package", "current_module", "modules_in_mro", "_set_attributes")
def __init__(self, package: spack.package_base.PackageBase) -> None:
def __init__(self, package):
self._set_self_attributes("package", package)
self._set_self_attributes("current_module", package.module)
#: Modules for the classes in the MRO up to PackageBase
modules_in_mro = []
for cls in package.__class__.__mro__:
module = getattr(cls, "module", None)
for cls in inspect.getmro(type(package)):
module = cls.module
if module is None or module is spack.package_base:
break
if module is self.current_module:
if module == self.current_module:
continue
if module == spack.package_base:
break
modules_in_mro.append(module)
self._set_self_attributes("modules_in_mro", modules_in_mro)
self._set_self_attributes("_set_attributes", {})

View File

@@ -8,7 +8,7 @@
import llnl.util.lang
import spack.builder
import spack.error
import spack.installer
import spack.relocate
import spack.spec
import spack.store
@@ -34,7 +34,7 @@ def check_paths(path_list, filetype, predicate):
if not predicate(abs_path):
msg = "Install failed for {0}. No such {1} in prefix: {2}"
msg = msg.format(pkg.name, filetype, path)
raise spack.error.InstallError(msg)
raise spack.installer.InstallError(msg)
check_paths(pkg.sanity_check_is_file, "file", os.path.isfile)
check_paths(pkg.sanity_check_is_dir, "directory", os.path.isdir)
@@ -42,7 +42,7 @@ def check_paths(path_list, filetype, predicate):
ignore_file = llnl.util.lang.match_predicate(spack.store.STORE.layout.hidden_file_regexes)
if all(map(ignore_file, os.listdir(pkg.prefix))):
msg = "Install failed for {0}. Nothing was installed!"
raise spack.error.InstallError(msg.format(pkg.name))
raise spack.installer.InstallError(msg.format(pkg.name))
def apply_macos_rpath_fixups(builder: spack.builder.Builder):

View File

@@ -2,6 +2,7 @@
# Spack Project Developers. See the top-level COPYRIGHT file for details.
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
import inspect
import os
import os.path
import stat
@@ -13,7 +14,6 @@
import spack.build_environment
import spack.builder
import spack.error
import spack.package_base
from spack.directives import build_system, conflicts, depends_on
from spack.multimethod import when
@@ -249,7 +249,7 @@ def runs_ok(script_abs_path):
# An external gnuconfig may not not have a prefix.
if gnuconfig_dir is None:
raise spack.error.InstallError(
raise spack.build_environment.InstallError(
"Spack could not find substitutes for GNU config files because no "
"prefix is available for the `gnuconfig` package. Make sure you set a "
"prefix path instead of modules for external `gnuconfig`."
@@ -269,7 +269,7 @@ def runs_ok(script_abs_path):
msg += (
" or the `gnuconfig` package prefix is misconfigured as" " an external package"
)
raise spack.error.InstallError(msg)
raise spack.build_environment.InstallError(msg)
# Filter working substitutes
candidates = [f for f in candidates if runs_ok(f)]
@@ -294,7 +294,9 @@ def runs_ok(script_abs_path):
and set the prefix to the directory containing the `config.guess` and
`config.sub` files.
"""
raise spack.error.InstallError(msg.format(", ".join(to_be_found), self.name))
raise spack.build_environment.InstallError(
msg.format(", ".join(to_be_found), self.name)
)
# Copy the good files over the bad ones
for abs_path in to_be_patched:
@@ -432,6 +434,11 @@ def _do_patch_libtool(self):
r"crtendS\.o",
]:
x.filter(regex=(rehead + o), repl="")
elif self.pkg.compiler.name == "dpcpp":
# Hack to filter out spurious predep_objects when building with Intel dpcpp
# (see https://github.com/spack/spack/issues/32863):
x.filter(regex=r"^(predep_objects=.*)/tmp/conftest-[0-9A-Fa-f]+\.o", repl=r"\1")
x.filter(regex=r"^(predep_objects=.*)/tmp/a-[0-9A-Fa-f]+\.o", repl=r"\1")
elif self.pkg.compiler.name == "nag":
for tag in ["fc", "f77"]:
marker = markers[tag]
@@ -547,12 +554,13 @@ def autoreconf(self, pkg, spec, prefix):
tty.warn("* a custom AUTORECONF phase in the package *")
tty.warn("*********************************************************")
with fs.working_dir(self.configure_directory):
m = inspect.getmodule(self.pkg)
# This line is what is needed most of the time
# --install, --verbose, --force
autoreconf_args = ["-ivf"]
autoreconf_args += self.autoreconf_search_path_args
autoreconf_args += self.autoreconf_extra_args
self.pkg.module.autoreconf(*autoreconf_args)
m.autoreconf(*autoreconf_args)
@property
def autoreconf_search_path_args(self):
@@ -576,9 +584,7 @@ def set_configure_or_die(self):
raise RuntimeError(msg.format(self.configure_directory))
# Monkey-patch the configure script in the corresponding module
globals_for_pkg = spack.build_environment.ModuleChangePropagator(self.pkg)
globals_for_pkg.configure = Executable(self.configure_abs_path)
globals_for_pkg.propagate_changes_to_mro()
inspect.getmodule(self.pkg).configure = Executable(self.configure_abs_path)
def configure_args(self):
"""Return the list of all the arguments that must be passed to configure,
@@ -595,7 +601,7 @@ def configure(self, pkg, spec, prefix):
options += self.configure_args()
with fs.working_dir(self.build_directory, create=True):
pkg.module.configure(*options)
inspect.getmodule(self.pkg).configure(*options)
def build(self, pkg, spec, prefix):
"""Run "make" on the build targets specified by the builder."""
@@ -603,12 +609,12 @@ def build(self, pkg, spec, prefix):
params = ["V=1"]
params += self.build_targets
with fs.working_dir(self.build_directory):
pkg.module.make(*params)
inspect.getmodule(self.pkg).make(*params)
def install(self, pkg, spec, prefix):
"""Run "make" on the install targets specified by the builder."""
with fs.working_dir(self.build_directory):
pkg.module.make(*self.install_targets)
inspect.getmodule(self.pkg).make(*self.install_targets)
spack.builder.run_after("build")(execute_build_time_tests)
@@ -687,8 +693,9 @@ def _activate_or_not(
variant = variant or name
# Defensively look that the name passed as argument is among variants
if not self.pkg.has_variant(variant):
# Defensively look that the name passed as argument is among
# variants
if variant not in self.pkg.variants:
msg = '"{0}" is not a variant of "{1}"'
raise KeyError(msg.format(variant, self.pkg.name))
@@ -697,19 +704,27 @@ def _activate_or_not(
# Create a list of pairs. Each pair includes a configuration
# option and whether or not that option is activated
vdef = self.pkg.get_variant(variant)
if set(vdef.values) == set((True, False)):
variant_desc, _ = self.pkg.variants[variant]
if set(variant_desc.values) == set((True, False)):
# BoolValuedVariant carry information about a single option.
# Nonetheless, for uniformity of treatment we'll package them
# in an iterable of one element.
options = [(name, f"+{variant}" in spec)]
condition = "+{name}".format(name=variant)
options = [(name, condition in spec)]
else:
condition = "{variant}={value}"
# "feature_values" is used to track values which correspond to
# features which can be enabled or disabled as understood by the
# package's build system. It excludes values which have special
# meanings and do not correspond to features (e.g. "none")
feature_values = getattr(vdef.values, "feature_values", None) or vdef.values
options = [(value, f"{variant}={value}" in spec) for value in feature_values]
feature_values = (
getattr(variant_desc.values, "feature_values", None) or variant_desc.values
)
options = [
(value, condition.format(variant=variant, value=value) in spec)
for value in feature_values
]
# For each allowed value in the list of values
for option_value, activated in options:

View File

@@ -4,7 +4,6 @@
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
import collections.abc
import os
import re
from typing import Tuple
import llnl.util.filesystem as fs
@@ -16,12 +15,6 @@
from .cmake import CMakeBuilder, CMakePackage
def spec_uses_toolchain(spec):
gcc_toolchain_regex = re.compile(".*gcc-toolchain.*")
using_toolchain = list(filter(gcc_toolchain_regex.match, spec.compiler_flags["cxxflags"]))
return using_toolchain
def cmake_cache_path(name, value, comment="", force=False):
"""Generate a string for a cmake cache variable"""
force_str = " FORCE" if force else ""
@@ -89,7 +82,7 @@ def define_cmake_cache_from_variant(self, cmake_var, variant=None, comment=""):
if variant is None:
variant = cmake_var.lower()
if not self.pkg.has_variant(variant):
if variant not in self.pkg.variants:
raise KeyError('"{0}" is not a variant of "{1}"'.format(variant, self.pkg.name))
if variant not in self.pkg.spec.variants:
@@ -162,9 +155,7 @@ def initconfig_compiler_entries(self):
ld_flags = " ".join(flags["ldflags"])
ld_format_string = "CMAKE_{0}_LINKER_FLAGS"
# CMake has separate linker arguments for types of builds.
# 'ldflags' should not be used with CMAKE_STATIC_LINKER_FLAGS which
# is used by the archiver, so don't include "STATIC" in this loop:
for ld_type in ["EXE", "MODULE", "SHARED"]:
for ld_type in ["EXE", "MODULE", "SHARED", "STATIC"]:
ld_string = ld_format_string.format(ld_type)
entries.append(cmake_cache_string(ld_string, ld_flags))
@@ -222,7 +213,7 @@ def initconfig_mpi_entries(self):
else:
# starting with cmake 3.10, FindMPI expects MPIEXEC_EXECUTABLE
# vs the older versions which expect MPIEXEC
if spec["cmake"].satisfies("@3.10:"):
if self.pkg.spec["cmake"].satisfies("@3.10:"):
entries.append(cmake_cache_path("MPIEXEC_EXECUTABLE", mpiexec))
else:
entries.append(cmake_cache_path("MPIEXEC", mpiexec))
@@ -257,17 +248,12 @@ def initconfig_hardware_entries(self):
# Include the deprecated CUDA_TOOLKIT_ROOT_DIR for supporting BLT packages
entries.append(cmake_cache_path("CUDA_TOOLKIT_ROOT_DIR", cudatoolkitdir))
# CUDA_FLAGS
cuda_flags = []
if not spec.satisfies("cuda_arch=none"):
cuda_archs = ";".join(spec.variants["cuda_arch"].value)
entries.append(cmake_cache_string("CMAKE_CUDA_ARCHITECTURES", cuda_archs))
if spec_uses_toolchain(spec):
cuda_flags.append("-Xcompiler {}".format(spec_uses_toolchain(spec)[0]))
entries.append(cmake_cache_string("CMAKE_CUDA_FLAGS", " ".join(cuda_flags)))
archs = spec.variants["cuda_arch"].value
if archs[0] != "none":
arch_str = ";".join(archs)
entries.append(
cmake_cache_string("CMAKE_CUDA_ARCHITECTURES", "{0}".format(arch_str))
)
if "+rocm" in spec:
entries.append("#------------------{0}".format("-" * 30))
@@ -276,6 +262,9 @@ def initconfig_hardware_entries(self):
# Explicitly setting HIP_ROOT_DIR may be a patch that is no longer necessary
entries.append(cmake_cache_path("HIP_ROOT_DIR", "{0}".format(spec["hip"].prefix)))
entries.append(
cmake_cache_path("HIP_CXX_COMPILER", "{0}".format(self.spec["hip"].hipcc))
)
llvm_bin = spec["llvm-amdgpu"].prefix.bin
llvm_prefix = spec["llvm-amdgpu"].prefix
# Some ROCm systems seem to point to /<path>/rocm-<ver>/ and
@@ -288,9 +277,11 @@ def initconfig_hardware_entries(self):
archs = self.spec.variants["amdgpu_target"].value
if archs[0] != "none":
arch_str = ";".join(archs)
entries.append(cmake_cache_string("CMAKE_HIP_ARCHITECTURES", arch_str))
entries.append(cmake_cache_string("AMDGPU_TARGETS", arch_str))
entries.append(cmake_cache_string("GPU_TARGETS", arch_str))
entries.append(
cmake_cache_string("CMAKE_HIP_ARCHITECTURES", "{0}".format(arch_str))
)
entries.append(cmake_cache_string("AMDGPU_TARGETS", "{0}".format(arch_str)))
entries.append(cmake_cache_string("GPU_TARGETS", "{0}".format(arch_str)))
return entries

View File

@@ -3,6 +3,8 @@
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
import inspect
import llnl.util.filesystem as fs
import spack.builder
@@ -14,7 +16,7 @@
class CargoPackage(spack.package_base.PackageBase):
"""Specialized class for packages built using cargo."""
"""Specialized class for packages built using a Makefiles."""
#: This attribute is used in UI queries that need to know the build
#: system base class
@@ -70,7 +72,9 @@ def check_args(self):
def build(self, pkg, spec, prefix):
"""Runs ``cargo install`` in the source directory"""
with fs.working_dir(self.build_directory):
pkg.module.cargo("install", "--root", "out", "--path", ".", *self.build_args)
inspect.getmodule(pkg).cargo(
"install", "--root", "out", "--path", ".", *self.build_args
)
def install(self, pkg, spec, prefix):
"""Copy build files into package prefix."""
@@ -82,4 +86,4 @@ def install(self, pkg, spec, prefix):
def check(self):
"""Run "cargo test"."""
with fs.working_dir(self.build_directory):
self.pkg.module.cargo("test", *self.check_args)
inspect.getmodule(self.pkg).cargo("test", *self.check_args)

View File

@@ -3,6 +3,7 @@
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
import collections.abc
import inspect
import os
import pathlib
import platform
@@ -15,7 +16,6 @@
import spack.build_environment
import spack.builder
import spack.deptypes as dt
import spack.error
import spack.package_base
from spack.directives import build_system, conflicts, depends_on, variant
from spack.multimethod import when
@@ -39,11 +39,16 @@ def _maybe_set_python_hints(pkg: spack.package_base.PackageBase, args: List[str]
"""Set the PYTHON_EXECUTABLE, Python_EXECUTABLE, and Python3_EXECUTABLE CMake variables
if the package has Python as build or link dep and ``find_python_hints`` is set to True. See
``find_python_hints`` for context."""
if not getattr(pkg, "find_python_hints", False) or not pkg.spec.dependencies(
"python", dt.BUILD | dt.LINK
):
if not getattr(pkg, "find_python_hints", False):
return
python_executable = pkg.spec["python"].command.path
pythons = pkg.spec.dependencies("python", dt.BUILD | dt.LINK)
if len(pythons) != 1:
return
try:
python_executable = pythons[0].package.command.path
except RuntimeError:
return
args.extend(
[
CMakeBuilder.define("PYTHON_EXECUTABLE", python_executable),
@@ -108,11 +113,6 @@ def _conditional_cmake_defaults(pkg: spack.package_base.PackageBase, args: List[
if _supports_compilation_databases(pkg):
args.append(CMakeBuilder.define("CMAKE_EXPORT_COMPILE_COMMANDS", True))
# Enable MACOSX_RPATH by default when cmake_minimum_required < 3
# https://cmake.org/cmake/help/latest/policy/CMP0042.html
if pkg.spec.satisfies("platform=darwin") and cmake.satisfies("@3:"):
args.append(CMakeBuilder.define("CMAKE_POLICY_DEFAULT_CMP0042", "NEW"))
def generator(*names: str, default: Optional[str] = None):
"""The build system generator to use.
@@ -146,7 +146,6 @@ def _values(x):
default=default,
values=_values,
description="the build system generator to use",
when="build_system=cmake",
)
for x in not_used:
conflicts(f"generator={x}")
@@ -346,7 +345,7 @@ def std_args(pkg, generator=None):
msg = "Invalid CMake generator: '{0}'\n".format(generator)
msg += "CMakePackage currently supports the following "
msg += "primary generators: '{0}'".format("', '".join(valid_primary_generators))
raise spack.error.InstallError(msg)
raise spack.package_base.InstallError(msg)
try:
build_type = pkg.spec.variants["build_type"].value
@@ -506,7 +505,7 @@ def define_from_variant(self, cmake_var, variant=None):
if variant is None:
variant = cmake_var.lower()
if not self.pkg.has_variant(variant):
if variant not in self.pkg.variants:
raise KeyError('"{0}" is not a variant of "{1}"'.format(variant, self.pkg.name))
if variant not in self.pkg.spec.variants:
@@ -545,24 +544,24 @@ def cmake(self, pkg, spec, prefix):
options += self.cmake_args()
options.append(os.path.abspath(self.root_cmakelists_dir))
with fs.working_dir(self.build_directory, create=True):
pkg.module.cmake(*options)
inspect.getmodule(self.pkg).cmake(*options)
def build(self, pkg, spec, prefix):
"""Make the build targets"""
with fs.working_dir(self.build_directory):
if self.generator == "Unix Makefiles":
pkg.module.make(*self.build_targets)
inspect.getmodule(self.pkg).make(*self.build_targets)
elif self.generator == "Ninja":
self.build_targets.append("-v")
pkg.module.ninja(*self.build_targets)
inspect.getmodule(self.pkg).ninja(*self.build_targets)
def install(self, pkg, spec, prefix):
"""Make the install targets"""
with fs.working_dir(self.build_directory):
if self.generator == "Unix Makefiles":
pkg.module.make(*self.install_targets)
inspect.getmodule(self.pkg).make(*self.install_targets)
elif self.generator == "Ninja":
pkg.module.ninja(*self.install_targets)
inspect.getmodule(self.pkg).ninja(*self.install_targets)
spack.builder.run_after("build")(execute_build_time_tests)

View File

@@ -1,145 +0,0 @@
# Copyright 2013-2023 Lawrence Livermore National Security, LLC and other
# Spack Project Developers. See the top-level COPYRIGHT file for details.
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
import itertools
import os
import pathlib
import re
import sys
from typing import Dict, List, Sequence, Tuple, Union
import llnl.util.tty as tty
from llnl.util.lang import classproperty
import spack.compiler
import spack.package_base
import spack.util.executable
# Local "type" for type hints
Path = Union[str, pathlib.Path]
class CompilerPackage(spack.package_base.PackageBase):
"""A Package mixin for all common logic for packages that implement compilers"""
# TODO: how do these play nicely with other tags
tags: Sequence[str] = ["compiler"]
#: Optional suffix regexes for searching for this type of compiler.
#: Suffixes are used by some frameworks, e.g. macports uses an '-mp-X.Y'
#: version suffix for gcc.
compiler_suffixes: List[str] = [r"-.*"]
#: Optional prefix regexes for searching for this compiler
compiler_prefixes: List[str] = []
#: Compiler argument(s) that produces version information
#: If multiple arguments, the earlier arguments must produce errors when invalid
compiler_version_argument: Union[str, Tuple[str]] = "-dumpversion"
#: Regex used to extract version from compiler's output
compiler_version_regex: str = "(.*)"
#: Static definition of languages supported by this class
compiler_languages: Sequence[str] = ["c", "cxx", "fortran"]
def __init__(self, spec: "spack.spec.Spec"):
super().__init__(spec)
msg = f"Supported languages for {spec} are not a subset of possible supported languages"
msg += f" supports: {self.supported_languages}, valid values: {self.compiler_languages}"
assert set(self.supported_languages) <= set(self.compiler_languages), msg
@property
def supported_languages(self) -> Sequence[str]:
"""Dynamic definition of languages supported by this package"""
return self.compiler_languages
@classproperty
def compiler_names(cls) -> Sequence[str]:
"""Construct list of compiler names from per-language names"""
names = []
for language in cls.compiler_languages:
names.extend(getattr(cls, f"{language}_names"))
return names
@classproperty
def executables(cls) -> Sequence[str]:
"""Construct executables for external detection from names, prefixes, and suffixes."""
regexp_fmt = r"^({0}){1}({2})$"
prefixes = [""] + cls.compiler_prefixes
suffixes = [""] + cls.compiler_suffixes
if sys.platform == "win32":
ext = r"\.(?:exe|bat)"
suffixes += [suf + ext for suf in suffixes]
return [
regexp_fmt.format(prefix, re.escape(name), suffix)
for prefix, name, suffix in itertools.product(prefixes, cls.compiler_names, suffixes)
]
@classmethod
def determine_version(cls, exe: Path):
version_argument = cls.compiler_version_argument
if isinstance(version_argument, str):
version_argument = (version_argument,)
for va in version_argument:
try:
output = spack.compiler.get_compiler_version_output(exe, va)
match = re.search(cls.compiler_version_regex, output)
if match:
return ".".join(match.groups())
except spack.util.executable.ProcessError:
pass
except Exception as e:
tty.debug(
f"[{__file__}] Cannot detect a valid version for the executable "
f"{str(exe)}, for package '{cls.name}': {e}"
)
@classmethod
def compiler_bindir(cls, prefix: Path) -> Path:
"""Overridable method for the location of the compiler bindir within the preifx"""
return os.path.join(prefix, "bin")
@classmethod
def determine_compiler_paths(cls, exes: Sequence[Path]) -> Dict[str, Path]:
"""Compute the paths to compiler executables associated with this package
This is a helper method for ``determine_variants`` to compute the ``extra_attributes``
to include with each spec object."""
# There are often at least two copies (not symlinks) of each compiler executable in the
# same directory: one with a canonical name, e.g. "gfortran", and another one with the
# target prefix, e.g. "x86_64-pc-linux-gnu-gfortran". There also might be a copy of "gcc"
# with the version suffix, e.g. "x86_64-pc-linux-gnu-gcc-6.3.0". To ensure the consistency
# of values in the "paths" dictionary (i.e. we prefer all of them to reference copies
# with canonical names if possible), we iterate over the executables in the reversed sorted
# order:
# First pass over languages identifies exes that are perfect matches for canonical names
# Second pass checks for names with prefix/suffix
# Second pass is sorted by language name length because longer named languages
# e.g. cxx can often contain the names of shorter named languages
# e.g. c (e.g. clang/clang++)
paths = {}
exes = sorted(exes, reverse=True)
languages = {
lang: getattr(cls, f"{lang}_names")
for lang in sorted(cls.compiler_languages, key=len, reverse=True)
}
for exe in exes:
for lang, names in languages.items():
if os.path.basename(exe) in names:
paths[lang] = exe
break
else:
for lang, names in languages.items():
if any(name in os.path.basename(exe) for name in names):
paths[lang] = exe
break
return paths
@classmethod
def determine_variants(cls, exes: Sequence[Path], version_str: str) -> Tuple:
# path determination is separated so it can be reused in subclasses
return "", {"compilers": cls.determine_compiler_paths(exes=exes)}

View File

@@ -3,9 +3,6 @@
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
import re
from typing import Iterable, List
import spack.variant
from spack.directives import conflicts, depends_on, variant
from spack.multimethod import when
@@ -47,7 +44,6 @@ class CudaPackage(PackageBase):
"87",
"89",
"90",
"90a",
)
# FIXME: keep cuda and cuda_arch separate to make usage easier until
@@ -74,27 +70,6 @@ def cuda_flags(arch_list):
for s in arch_list
]
@staticmethod
def compute_capabilities(arch_list: Iterable[str]) -> List[str]:
"""Adds a decimal place to each CUDA arch.
>>> compute_capabilities(['90', '90a'])
['9.0', '9.0a']
Args:
arch_list: A list of integer strings, optionally followed by a suffix.
Returns:
A list of float strings, optionally followed by a suffix
"""
pattern = re.compile(r"(\d+)")
capabilities = []
for arch in arch_list:
_, number, letter = re.split(pattern, arch)
number = "{0:.1f}".format(float(number) / 10.0)
capabilities.append(number + letter)
return capabilities
depends_on("cuda", when="+cuda")
# CUDA version vs Architecture
@@ -135,8 +110,9 @@ def compute_capabilities(arch_list: Iterable[str]) -> List[str]:
# From the NVIDIA install guide we know of conflicts for particular
# platforms (linux, darwin), architectures (x86, powerpc) and compilers
# (gcc, clang). We don't restrict %gcc and %clang conflicts to
# platform=linux, since they may apply to platform=darwin. We currently
# do not provide conflicts for platform=darwin with %apple-clang.
# platform=linux, since they should also apply to platform=cray, and may
# apply to platform=darwin. We currently do not provide conflicts for
# platform=darwin with %apple-clang.
# Linux x86_64 compiler conflicts from here:
# https://gist.github.com/ax3l/9489132
@@ -149,8 +125,6 @@ def compute_capabilities(arch_list: Iterable[str]) -> List[str]:
# minimum supported versions
conflicts("%gcc@:4", when="+cuda ^cuda@11.0:")
conflicts("%gcc@:5", when="+cuda ^cuda@11.4:")
conflicts("%gcc@:7.2", when="+cuda ^cuda@12.4:")
conflicts("%clang@:6", when="+cuda ^cuda@12.2:")
# maximum supported version
# NOTE:
@@ -163,15 +137,11 @@ def compute_capabilities(arch_list: Iterable[str]) -> List[str]:
conflicts("%gcc@11.2:", when="+cuda ^cuda@:11.5")
conflicts("%gcc@12:", when="+cuda ^cuda@:11.8")
conflicts("%gcc@13:", when="+cuda ^cuda@:12.3")
conflicts("%gcc@14:", when="+cuda ^cuda@:12.6")
conflicts("%clang@12:", when="+cuda ^cuda@:11.4.0")
conflicts("%clang@13:", when="+cuda ^cuda@:11.5")
conflicts("%clang@14:", when="+cuda ^cuda@:11.7")
conflicts("%clang@15:", when="+cuda ^cuda@:12.0")
conflicts("%clang@16:", when="+cuda ^cuda@:12.1")
conflicts("%clang@17:", when="+cuda ^cuda@:12.3")
conflicts("%clang@18:", when="+cuda ^cuda@:12.5")
conflicts("%clang@19:", when="+cuda ^cuda@:12.6")
conflicts("%clang@16:", when="+cuda ^cuda@:12.3")
# https://gist.github.com/ax3l/9489132#gistcomment-3860114
conflicts("%gcc@10", when="+cuda ^cuda@:11.4.0")
@@ -239,16 +209,12 @@ def compute_capabilities(arch_list: Iterable[str]) -> List[str]:
conflicts("%intel@19.0:", when="+cuda ^cuda@:10.0")
conflicts("%intel@19.1:", when="+cuda ^cuda@:10.1")
conflicts("%intel@19.2:", when="+cuda ^cuda@:11.1.0")
conflicts("%intel@2021:", when="+cuda ^cuda@:11.4.0")
# XL is mostly relevant for ppc64le Linux
conflicts("%xl@:12,14:", when="+cuda ^cuda@:9.1")
conflicts("%xl@:12,14:15,17:", when="+cuda ^cuda@9.2")
conflicts("%xl@:12,17:", when="+cuda ^cuda@:11.1.0")
# PowerPC.
conflicts("target=ppc64le", when="+cuda ^cuda@12.5:")
# Darwin.
# TODO: add missing conflicts for %apple-clang cuda@:10
conflicts("platform=darwin", when="+cuda ^cuda@11.0.2:")
conflicts("platform=darwin", when="+cuda ^cuda@11.0.2: ")

View File

@@ -3,6 +3,8 @@
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
import inspect
import llnl.util.filesystem as fs
import spack.builder
@@ -70,7 +72,7 @@ def build_directory(self):
def build_args(self):
"""Arguments for ``go build``."""
# Pass ldflags -s = --strip-all and -w = --no-warnings by default
return ["-modcacherw", "-ldflags", "-s -w", "-o", f"{self.pkg.name}"]
return ["-ldflags", "-s -w", "-o", f"{self.pkg.name}"]
@property
def check_args(self):
@@ -80,7 +82,7 @@ def check_args(self):
def build(self, pkg, spec, prefix):
"""Runs ``go build`` in the source directory"""
with fs.working_dir(self.build_directory):
pkg.module.go("build", *self.build_args)
inspect.getmodule(pkg).go("build", *self.build_args)
def install(self, pkg, spec, prefix):
"""Install built binaries into prefix bin."""
@@ -93,4 +95,4 @@ def install(self, pkg, spec, prefix):
def check(self):
"""Run ``go test .`` in the source directory"""
with fs.working_dir(self.build_directory):
self.pkg.module.go("test", *self.check_args)
inspect.getmodule(self.pkg).go("test", *self.check_args)

View File

@@ -22,10 +22,9 @@
install,
)
import spack.builder
import spack.error
from spack.build_environment import dso_suffix
from spack.error import InstallError
from spack.package_base import InstallError
from spack.util.environment import EnvironmentModifications
from spack.util.executable import Executable
from spack.util.prefix import Prefix
@@ -847,7 +846,6 @@ def scalapack_libs(self):
"^mpich@2:" in spec_root
or "^cray-mpich" in spec_root
or "^mvapich2" in spec_root
or "^mvapich" in spec_root
or "^intel-mpi" in spec_root
or "^intel-oneapi-mpi" in spec_root
or "^intel-parallel-studio" in spec_root
@@ -938,15 +936,32 @@ def mpi_setup_dependent_build_environment(self, env, dependent_spec, compilers_o
"I_MPI_ROOT": self.normalize_path("mpi"),
}
compiler_wrapper_commands = self.mpi_compiler_wrappers
wrapper_vars.update(
{
"MPICC": compiler_wrapper_commands["MPICC"],
"MPICXX": compiler_wrapper_commands["MPICXX"],
"MPIF77": compiler_wrapper_commands["MPIF77"],
"MPIF90": compiler_wrapper_commands["MPIF90"],
}
)
# CAUTION - SIMILAR code in:
# var/spack/repos/builtin/packages/mpich/package.py
# var/spack/repos/builtin/packages/openmpi/package.py
# var/spack/repos/builtin/packages/mvapich2/package.py
#
# On Cray, the regular compiler wrappers *are* the MPI wrappers.
if "platform=cray" in self.spec:
# TODO: Confirm
wrapper_vars.update(
{
"MPICC": compilers_of_client["CC"],
"MPICXX": compilers_of_client["CXX"],
"MPIF77": compilers_of_client["F77"],
"MPIF90": compilers_of_client["F90"],
}
)
else:
compiler_wrapper_commands = self.mpi_compiler_wrappers
wrapper_vars.update(
{
"MPICC": compiler_wrapper_commands["MPICC"],
"MPICXX": compiler_wrapper_commands["MPICXX"],
"MPIF77": compiler_wrapper_commands["MPIF77"],
"MPIF90": compiler_wrapper_commands["MPIF90"],
}
)
# Ensure that the directory containing the compiler wrappers is in the
# PATH. Spack packages add `prefix.bin` to their dependents' paths,

View File

@@ -2,6 +2,7 @@
# Spack Project Developers. See the top-level COPYRIGHT file for details.
#
# SPDX-License-Identifier: (Apache-2.0 OR MIT)
import inspect
from typing import List
import llnl.util.filesystem as fs
@@ -20,7 +21,7 @@
class MakefilePackage(spack.package_base.PackageBase):
"""Specialized class for packages built using Makefiles."""
"""Specialized class for packages built using a Makefiles."""
#: This attribute is used in UI queries that need to know the build
#: system base class
@@ -102,12 +103,12 @@ def edit(self, pkg, spec, prefix):
def build(self, pkg, spec, prefix):
"""Run "make" on the build targets specified by the builder."""
with fs.working_dir(self.build_directory):
pkg.module.make(*self.build_targets)
inspect.getmodule(self.pkg).make(*self.build_targets)
def install(self, pkg, spec, prefix):
"""Run "make" on the install targets specified by the builder."""
with fs.working_dir(self.build_directory):
pkg.module.make(*self.install_targets)
inspect.getmodule(self.pkg).make(*self.install_targets)
spack.builder.run_after("build")(execute_build_time_tests)

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