Switch tar verification to a manifest comparison. (#4458)

This removes the install marker-relative path checks, and replaces it
with bidirectional verification: previously, files in the tar file had
to be in install data, but there was no check that files in install data
were all in the tar.
This commit is contained in:
Jon Ross-Perkins
2024-10-30 22:49:19 +00:00
committed by GitHub
parent d944347e7b
commit 85f6bf32b5
3 changed files with 46 additions and 62 deletions
+7 -7
View File
@@ -4,6 +4,7 @@
load("@rules_cc//cc:defs.bzl", "cc_binary", "cc_library", "cc_test")
load("//bazel/cc_toolchains:defs.bzl", "cc_env")
load("//bazel/manifest:defs.bzl", "manifest")
load("install_filegroups.bzl", "install_filegroup", "install_symlink", "install_target", "make_install_filegroups")
load("pkg_helpers.bzl", "pkg_naming_variables", "pkg_tar_and_test")
load("run_tool.bzl", "run_tool")
@@ -145,6 +146,11 @@ make_install_filegroups(
prefix = "prefix_root",
)
manifest(
name = "install_data_manifest.txt",
srcs = [":install_data"],
)
pkg_naming_variables(
name = "packaging_variables",
)
@@ -157,18 +163,12 @@ pkg_naming_variables(
# `carbon_toolchain_tar_gz_rule`.
pkg_tar_and_test(
srcs = [":pkg_data"],
install_data_manifest = ":install_data_manifest.txt",
name_base = "carbon_toolchain",
package_dir = "carbon_toolchain-$(version)",
package_file_name_base = "carbon_toolchain-$(version)",
package_variables = ":packaging_variables",
stamp = -1, # Allow `--stamp` builds to produce file timestamps.
test_data = [
":install_data",
],
# TODO: This is used to make sure that tar files are in install_data (one
# direction). Replace with a check that the files in install_data and tar
# match (bidirectional).
test_install_marker = "prefix_root/lib/carbon/carbon_install.txt",
)
# Support `bazel run` on specific binaries.
+8 -10
View File
@@ -25,7 +25,7 @@ pkg_naming_variables = rule(
attrs = VERSION_ATTRS,
)
def pkg_tar_and_test(name_base, package_file_name_base, test_data, test_install_marker, **kwargs):
def pkg_tar_and_test(name_base, package_file_name_base, install_data_manifest, **kwargs):
"""Create a `pkg_tar` and a test for both `.tar` and `.tar.gz` extensions.
Args:
@@ -35,10 +35,8 @@ def pkg_tar_and_test(name_base, package_file_name_base, test_data, test_install_
package_file_name_base:
The base of the `package_file_name` attribute to `pkg_tar`. The file
extensions will be appended after a `.`.
test_data:
The test data to verify the tar file against.
test_install_marker:
The install marker within the test data to locate the installation.
install_data_manifest:
The install data manifest file to compare with.
**kwargs:
Passed to `pkg_tar` for all the rest of its attributes.
"""
@@ -58,11 +56,11 @@ def pkg_tar_and_test(name_base, package_file_name_base, test_data, test_install_
name = name_base + "_" + target_ext + "_test",
size = "small",
srcs = ["toolchain_tar_test.py"],
data = [":" + tar_target, test_install_marker] + test_data,
args = [
"$(location :{})".format(tar_target),
"$(location {})".format(test_install_marker),
],
data = [":" + tar_target, install_data_manifest],
env = {
"INSTALL_DATA_MANIFEST": "$(location {})".format(install_data_manifest),
"TAR_FILE": "$(location :{})".format(tar_target),
},
main = "toolchain_tar_test.py",
# The compressed tar is slow, exclude building and testing that.
tags = ["manual"] if file_ext == "tar.gz" else [],
+31 -45
View File
@@ -8,57 +8,43 @@ Exceptions. See /LICENSE for license information.
SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
"""
import argparse
import sys
from pathlib import Path
import os
import re
import tarfile
import unittest
def main() -> None:
parser = argparse.ArgumentParser(description=__doc__)
parser.add_argument(
"tar_file",
type=Path,
help="The tar file to test.",
)
parser.add_argument(
"install_marker",
type=Path,
help="The path of the install marker in a prefix root to test against.",
)
args = parser.parse_args()
class ToolchainTarTest(unittest.TestCase):
def test_tar(self) -> None:
install_data_manifest = Path(os.environ["INSTALL_DATA_MANIFEST"])
tar_file = Path(os.environ["TAR_FILE"])
# Locate the prefix root from the install marker.
if not args.install_marker.exists():
sys.exit("ERROR: No install marker: " + args.install_marker)
prefix_root_path = args.install_marker.parents[2]
# First check that every file and directory in the tar file exists in our
# prefix root, and build a set of those paths.
installed_paths = set()
with tarfile.open(args.tar_file) as tar:
for tarinfo in tar:
relative_path = Path(*Path(tarinfo.name).parts[1:])
installed_paths.add(relative_path)
if not prefix_root_path.joinpath(relative_path).exists():
sys.exit(
"ERROR: File `{0}` is not in prefix root: `{1}`".format(
tarinfo.name, prefix_root_path
)
)
# If we found an empty tar file, it's always an error.
if len(installed_paths) == 0:
sys.exit("ERROR: Tar file `{0}` was empty.".format(args.tar_file))
# Now check that every file and directory in the prefix root is in that set.
for prefix_path in prefix_root_path.glob("**/*"):
relative_path = prefix_path.relative_to(prefix_root_path)
if relative_path not in installed_paths:
sys.exit(
"ERROR: File `{0}` is not in tar file.".format(relative_path)
# Gather install data files.
with open(install_data_manifest) as manifest:
# Remove everything up to and including `prefix_root`.
install_files = set(
[
re.sub("^.*/prefix_root/", "", entry.strip())
for entry in manifest.readlines()
]
)
self.assertTrue(install_files, f"`{install_data_manifest}` is empty.")
# Gather tar files.
with tarfile.open(tar_file) as tar:
# Remove the first path component.
tar_files = set(
[
str(Path(*Path(tarinfo.name).parts[1:]))
for tarinfo in tar
if not tarinfo.isdir()
]
)
self.assertTrue(tar_files, f"`{tar_file}` is empty.")
self.assertSetEqual(install_files, tar_files)
if __name__ == "__main__":
main()
unittest.main()