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This change updates the toolchain bootstrapping script to download the CDH components (hadoop, hbase, hive, llama, llama-minikdc and sentry) from the toolchain S3 bucket to the toolchain directory if the environment variable $DOWNLOAD_CDH_COMPONENTS is true. By default, it is false which means the CDH components in the thirdparty directory will be used instead. To build the ASF tree(https://git-wip-us.apache.org/repos/asf?p=incubator-impala.git), set $DOWNLOAD_CDH_COMPONENTS to true. Currently, the CDH components in S3 are snapshots from the thirdparty directory at 688d0efcd38731e8e27a8236dbdca21c8fd571a1. Once the integration jenkins job (impala-cdh5-trunk-core-integration) is modified to upload the latest stable builds to the S3 buckets, we can remove the thirdparty directory and always use the CDH components in the toolchain directory. Note that bootstrap_toolchain.py will not overwrite existing directories in the toolchain directory. To force a refresh of cpmponents in the toolchain directory, a user should delete the cached copy in the toolchain directory and execute bootstrap_toolchain.py again. This behavior allows users to develop locally without network connection once the toolchain has been bootstrapped. Change-Id: I16fa79db0005554cc0a116e74775647ba99f8dda Reviewed-on: http://gerrit.cloudera.org:8080/3333 Reviewed-by: Michael Ho <kwho@cloudera.com> Tested-by: Internal Jenkins
351 lines
15 KiB
Python
Executable File
351 lines
15 KiB
Python
Executable File
#!/usr/bin/env impala-python
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# Copyright (c) 2015, Cloudera, inc.
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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#
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# The purpose of this script is to download prebuilt binaries and jar files to satisfy the
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# third-party dependencies for Impala. The script checks for the presence of IMPALA_HOME
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# and IMPALA_TOOLCHAIN. IMPALA_HOME indicates that the environment is correctly setup and
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# that we can deduce the version settings of the dependencies from the environment.
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# IMPALA_TOOLCHAIN indicates the location where the prebuilt artifacts should be extracted
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# to. If DOWNLOAD_CDH_COMPONENTS is set to true, this script will also download and extract
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# the CDH components (i.e. Hadoop, Hive, HBase, Llama, Llama-minikdc and Sentry) into
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# CDH_COMPONENTS_HOME.
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#
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# The script is called as follows without any additional parameters:
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#
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# python bootstrap_toolchain.py
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import os
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import re
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import sh
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import shutil
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import subprocess
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import sys
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import tempfile
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HOST = "https://native-toolchain.s3.amazonaws.com/build"
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OS_MAPPING = {
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"centos6" : "ec2-package-centos-6",
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"centos5" : "ec2-package-centos-5",
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"centos7" : "ec2-package-centos-7",
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"debian6" : "ec2-package-debian-6",
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"debian7" : "ec2-package-debian-7",
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"debian8" : "ec2-package-debian-8",
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"suselinux11": "ec2-package-sles-11",
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"suselinux12": "ec2-package-sles-12",
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"ubuntu12.04" : "ec2-package-ubuntu-12-04",
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"ubuntu14.04" : "ec2-package-ubuntu-14-04",
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"ubuntu15.04" : "ec2-package-ubuntu-14-04",
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"ubuntu15.10" : "ec2-package-ubuntu-14-04",
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}
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def try_get_platform_release_label():
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"""Gets the right package label from the OS version. Return None if not found."""
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try:
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return get_platform_release_label()
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except:
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return None
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def get_platform_release_label(release=None):
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"""Gets the right package label from the OS version. Raise exception if not found.
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'release' can be provided to override the underlying OS version.
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"""
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if not release:
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release = "".join(map(lambda x: x.lower(), sh.lsb_release("-irs").split()))
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for k, v in OS_MAPPING.iteritems():
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if re.search(k, release):
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return v
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raise Exception("Could not find package label for OS version: {0}.".format(release))
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def wget_and_unpack_package(download_path, file_name, destination, wget_no_clobber):
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print "URL {0}".format(download_path)
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print "Downloading {0} to {1}".format(file_name, destination)
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# --no-clobber avoids downloading the file if a file with the name already exists
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sh.wget(download_path, directory_prefix=destination, no_clobber=wget_no_clobber)
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print "Extracting {0}".format(file_name)
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sh.tar(z=True, x=True, f=os.path.join(destination, file_name), directory=destination)
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sh.rm(os.path.join(destination, file_name))
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def download_package(destination, product, version, compiler, platform_release=None):
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remove_existing_package(destination, product, version)
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label = get_platform_release_label(release=platform_release)
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file_name = "{0}-{1}-{2}-{3}.tar.gz".format(product, version, compiler, label)
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url_path="/{0}/{1}-{2}/{0}-{1}-{2}-{3}.tar.gz".format(product, version, compiler, label)
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download_path = HOST + url_path
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wget_and_unpack_package(download_path, file_name, destination, True)
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def bootstrap(toolchain_root, packages):
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"""Downloads and unpacks each package in the list `packages` into `toolchain_root` if it
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doesn't exist already.
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"""
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if not try_get_platform_release_label():
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check_custom_toolchain(toolchain_root, packages)
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return
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# Detect the compiler
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compiler = "gcc-{0}".format(os.environ["IMPALA_GCC_VERSION"])
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for p in packages:
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pkg_name, pkg_version = unpack_name_and_version(p)
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if check_for_existing_package(toolchain_root, pkg_name, pkg_version, compiler):
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continue
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if pkg_name != "kudu" or os.environ["KUDU_IS_SUPPORTED"] == "true":
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download_package(toolchain_root, pkg_name, pkg_version, compiler)
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else:
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build_kudu_stub(toolchain_root, pkg_version, compiler)
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write_version_file(toolchain_root, pkg_name, pkg_version, compiler,
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get_platform_release_label())
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def check_output(cmd_args):
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"""Run the command and return the output. Raise an exception if the command returns
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a non-zero return code. Similar to subprocess.check_output() which is only provided
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in python 2.7.
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"""
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process = subprocess.Popen(cmd_args, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
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stdout, _ = process.communicate()
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if process.wait() != 0:
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raise Exception("Command with args '%s' failed with exit code %s:\n%s"
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% (cmd_args, process.returncode, stdout))
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return stdout
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def package_directory(toolchain_root, pkg_name, pkg_version):
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dir_name = "{0}-{1}".format(pkg_name, pkg_version)
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return os.path.join(toolchain_root, dir_name)
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def version_file_path(toolchain_root, pkg_name, pkg_version):
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return os.path.join(package_directory(toolchain_root, pkg_name, pkg_version),
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"toolchain_package_version.txt")
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def check_custom_toolchain(toolchain_root, packages):
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missing = []
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for p in packages:
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pkg_name, pkg_version = unpack_name_and_version(p)
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pkg_dir = package_directory(toolchain_root, pkg_name, pkg_version)
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if not os.path.isdir(pkg_dir):
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missing.append((p, pkg_dir))
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if missing:
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print("The following packages are not in their expected locations.")
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for p, pkg_dir in missing:
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print(" %s (expected directory %s to exist)" % (p, pkg_dir))
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print("Pre-built toolchain archives not available for your platform.")
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print("Clone and build native toolchain from source using this repository:")
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print(" https://github.com/cloudera/native-toolchain")
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raise Exception("Toolchain bootstrap failed: required packages were missing")
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def check_for_existing_package(toolchain_root, pkg_name, pkg_version, compiler):
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"""Return true if toolchain_root already contains the package with the correct
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version and compiler.
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"""
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version_file = version_file_path(toolchain_root, pkg_name, pkg_version)
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if not os.path.exists(version_file):
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return False
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label = get_platform_release_label()
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pkg_version_string = "{0}-{1}-{2}-{3}".format(pkg_name, pkg_version, compiler, label)
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with open(version_file) as f:
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return f.read().strip() == pkg_version_string
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def write_version_file(toolchain_root, pkg_name, pkg_version, compiler, label):
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with open(version_file_path(toolchain_root, pkg_name, pkg_version), 'w') as f:
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f.write("{0}-{1}-{2}-{3}".format(pkg_name, pkg_version, compiler, label))
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def remove_existing_package(toolchain_root, pkg_name, pkg_version):
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dir_path = package_directory(toolchain_root, pkg_name, pkg_version)
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if os.path.exists(dir_path):
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print "Removing existing package directory {0}".format(dir_path)
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shutil.rmtree(dir_path)
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def unpack_name_and_version(package):
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"""A package definition is either a string where the version is fetched from the
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environment or a tuple where the package name and the package version are fully
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specified.
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"""
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if isinstance(package, basestring):
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env_var = "IMPALA_{0}_VERSION".format(package).replace("-", "_").upper()
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try:
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return package, os.environ[env_var]
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except KeyError:
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raise Exception("Could not find version for {0} in environment var {1}".format(
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package, env_var))
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return package[0], package[1]
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def build_kudu_stub(toolchain_root, kudu_version, compiler):
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# When Kudu isn't supported, the CentOS 7 package will be downloaded and the client
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# lib will be replaced with a stubbed client.
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download_package(toolchain_root, "kudu", kudu_version, compiler,
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platform_release="centos7")
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# Find the client lib files in the extracted dir. There may be several files with
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# various extensions. Also there will be a debug version.
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kudu_dir = package_directory(toolchain_root, "kudu", kudu_version)
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client_lib_paths = []
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for path, _, files in os.walk(kudu_dir):
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for file in files:
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if not file.startswith("libkudu_client.so"):
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continue
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file_path = os.path.join(path, file)
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if os.path.islink(file_path):
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continue
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client_lib_paths.append(file_path)
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if not client_lib_paths:
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raise Exception("Unable to find Kudu client lib under '%s'" % kudu_dir)
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# The client stub will be create by inspecting a real client and extracting the
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# symbols. The choice of which client file to use shouldn't matter.
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client_lib_path = client_lib_paths[0]
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# Use a newer version of binutils because on older systems the default binutils may
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# not be able to read the newer binary.
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binutils_dir = package_directory(
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toolchain_root, "binutils", os.environ["IMPALA_BINUTILS_VERSION"])
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nm_path = os.path.join(binutils_dir, "bin", "nm")
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objdump_path = os.path.join(binutils_dir, "bin", "objdump")
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# Extract the symbols and write the stubbed client source. There is a special method
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# kudu::client::GetShortVersionString() that is overridden so that the stub can be
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# identified by the caller.
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get_short_version_sig = "kudu::client::GetShortVersionString()"
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nm_out = check_output([nm_path, "--defined-only", "-D", client_lib_path])
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stub_build_dir = tempfile.mkdtemp()
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stub_client_src_file = open(os.path.join(stub_build_dir, "kudu_client.cc"), "w")
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try:
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stub_client_src_file.write("""
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#include <string>
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static const std::string kFakeKuduVersion = "__IMPALA_KUDU_STUB__";
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static void KuduNotSupported() {
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*((char*)0) = 0;
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}
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namespace kudu { namespace client {
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std::string GetShortVersionString() { return kFakeKuduVersion; }
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}}
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""")
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found_start_version_symbol = False
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cpp_filt_path = os.path.join(binutils_dir, "bin", "c++filt")
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for line in nm_out.splitlines():
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addr, sym_type, mangled_name = line.split(" ")
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# Skip special functions an anything that isn't a strong symbol. Any symbols that
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# get passed this check must be related to Kudu. If a symbol unrelated to Kudu
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# (ex: a boost symbol) gets defined in the stub, there's a chance the symbol could
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# get used and crash Impala.
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if mangled_name in ["_init", "_fini"] or sym_type not in "Tt":
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continue
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demangled_name = check_output([cpp_filt_path, mangled_name]).strip()
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assert "kudu" in demangled_name, \
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"Symbol doesn't appear to be related to Kudu: " + demangled_name
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if demangled_name == get_short_version_sig:
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found_start_version_symbol = True
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continue
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stub_client_src_file.write("""
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extern "C" void %s() {
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KuduNotSupported();
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}
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""" % mangled_name)
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if not found_start_version_symbol:
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raise Exception("Expected to find symbol a corresponding to"
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" %s but it was not found." % get_short_version_sig)
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stub_client_src_file.flush()
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# The soname is needed to avoid problem in packaging builds. Without the soname,
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# the library dependency as listed in the impalad binary will be a full path instead
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# of a short name. Debian in particular has problems with packaging when that happens.
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objdump_out = check_output([objdump_path, "-p", client_lib_path])
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for line in objdump_out.splitlines():
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if "SONAME" not in line:
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continue
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# The line that needs to be parsed should be something like:
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# " SONAME libkudu_client.so.0"
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so_name = line.split()[1]
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break
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else:
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raise Exception("Unable to extract soname from %s" % client_lib_path)
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# Compile the library.
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stub_client_lib_path = os.path.join(stub_build_dir, "libkudu_client.so")
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subprocess.check_call(["g++", stub_client_src_file.name, "-shared", "-fPIC",
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"-Wl,-soname,%s" % so_name, "-o", stub_client_lib_path])
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# Replace the real libs with the stub.
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for client_lib_path in client_lib_paths:
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shutil.copyfile(stub_client_lib_path, client_lib_path)
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finally:
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shutil.rmtree(stub_build_dir)
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def download_cdh_components(toolchain_root, cdh_components):
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"""Downloads and unpacks the CDH components into $CDH_COMPONENTS_HOME if not found."""
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cdh_components_home = os.getenv("CDH_COMPONENTS_HOME")
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if not cdh_components_home:
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print("Impala environment not set up correctly, make sure "
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"$CDH_COMPONENTS_HOME is present.")
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return
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# Create the directory where CDH components live if necessary.
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if not os.path.exists(cdh_components_home):
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os.makedirs(cdh_components_home)
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# The URL prefix of where CDH components live in S3.
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download_path_prefix = HOST + "/cdh_components/"
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for component in cdh_components:
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pkg_name, pkg_version = unpack_name_and_version(component)
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pkg_directory = package_directory(cdh_components_home, pkg_name, pkg_version)
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if os.path.isdir(pkg_directory):
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continue
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# Download the package if it doesn't exist
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file_name = "{0}-{1}.tar.gz".format(pkg_name, pkg_version)
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download_path = download_path_prefix + file_name
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wget_and_unpack_package(download_path, file_name, cdh_components_home, False)
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if __name__ == "__main__":
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"""Validates the presence of $IMPALA_HOME and $IMPALA_TOOLCHAIN in the environment.-
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By checking $IMPALA_HOME is present, we assume that IMPALA_{LIB}_VERSION will be present
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as well. Will create the directory specified by $IMPALA_TOOLCHAIN if it doesn't exist
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yet. Each of the packages specified in `packages` is downloaded and extracted into
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$IMPALA_TOOLCHAIN. If $DOWNLOAD_CDH_COMPONENTS is true, this function will also download
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the CDH components (i.e. hadoop, hbase, hive, llama, llama-minikidc and sentry) into the
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directory specified by $CDH_COMPONENTS_HOME.
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"""
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if not os.getenv("IMPALA_HOME"):
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print("Impala environment not set up correctly, make sure "
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"impala-config.sh is sourced.")
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sys.exit(1)
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# Create the destination directory if necessary
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toolchain_root = os.getenv("IMPALA_TOOLCHAIN")
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if not toolchain_root:
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print("Impala environment not set up correctly, make sure "
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"$IMPALA_TOOLCHAIN is present.")
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sys.exit(1)
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if not os.path.exists(toolchain_root):
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os.makedirs(toolchain_root)
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packages = ["avro", "binutils", "boost", "breakpad", "bzip2", "gcc", "gflags", "glog",
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"gperftools", "gtest", "kudu", "llvm", ("llvm", "3.8.0-asserts-p1"), "lz4",
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"openldap", "rapidjson", "re2", "snappy", "thrift", "zlib"]
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bootstrap(toolchain_root, packages)
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# Download the CDH components if necessary.
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if os.getenv("DOWNLOAD_CDH_COMPONENTS", "false") == "true":
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cdh_components = ["hadoop", "hbase", "hive", "llama", "llama-minikdc", "sentry"]
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download_cdh_components(toolchain_root, cdh_components)
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