f959882616
Change-Id: Ic32394548bb997af96756f260b453e830d8b9e9b Reviewed-by: Alexandru Croitor <alexandru.croitor@qt.io>
231 lines
7.6 KiB
Python
Executable File
231 lines
7.6 KiB
Python
Executable File
#!/usr/bin/env python3
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#############################################################################
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##
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## Copyright (C) 2019 The Qt Company Ltd.
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## Contact: https://www.qt.io/licensing/
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##
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## This file is part of the plugins of the Qt Toolkit.
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##
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## $QT_BEGIN_LICENSE:GPL-EXCEPT$
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## Commercial License Usage
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## Licensees holding valid commercial Qt licenses may use this file in
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## accordance with the commercial license agreement provided with the
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## Software or, alternatively, in accordance with the terms contained in
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## a written agreement between you and The Qt Company. For licensing terms
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## and conditions see https://www.qt.io/terms-conditions. For further
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## information use the contact form at https://www.qt.io/contact-us.
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##
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## GNU General Public License Usage
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## Alternatively, this file may be used under the terms of the GNU
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## General Public License version 3 as published by the Free Software
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## Foundation with exceptions as appearing in the file LICENSE.GPL3-EXCEPT
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## included in the packaging of this file. Please review the following
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## information to ensure the GNU General Public License requirements will
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## be met: https://www.gnu.org/licenses/gpl-3.0.html.
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##
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## $QT_END_LICENSE$
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##
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#############################################################################
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from __future__ import annotations
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"""
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This utility script shows statistics about
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converted .pro -> CMakeLists.txt files.
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To execute: python3 pro_conversion_rate.py <src dir>
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where <src dir> can be any qt source directory. For better statistics,
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specify a module root source dir (like ./qtbase or ./qtsvg).
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"""
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from argparse import ArgumentParser
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import os
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import typing
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from timeit import default_timer
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def _parse_commandline():
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parser = ArgumentParser(description="Find pro files for which there are no CMakeLists.txt.")
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parser.add_argument(
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"source_directory", metavar="<src dir>", type=str, help="The source directory"
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)
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return parser.parse_args()
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class Blacklist:
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""" Class to check if a certain dir_name / dir_path is blacklisted """
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def __init__(self, names: typing.List[str], path_parts: typing.List[str]):
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self.names = names
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self.path_parts = path_parts
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# The lookup algorithm
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self.lookup = self.is_blacklisted_part
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self.tree = None
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try:
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# If package is available, use Aho-Corasick algorithm,
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from ahocorapy.keywordtree import KeywordTree # type: ignore
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self.tree = KeywordTree(case_insensitive=True)
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for p in self.path_parts:
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self.tree.add(p)
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self.tree.finalize()
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self.lookup = self.is_blacklisted_part_aho
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except ImportError:
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pass
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def is_blacklisted(self, dir_name: str, dir_path: str) -> bool:
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# First check if exact dir name is blacklisted.
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if dir_name in self.names:
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return True
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# Check if a path part is blacklisted (e.g. util/cmake)
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return self.lookup(dir_path)
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def is_blacklisted_part(self, dir_path: str) -> bool:
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if any(part in dir_path for part in self.path_parts):
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return True
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return False
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def is_blacklisted_part_aho(self, dir_path: str) -> bool:
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return self.tree.search(dir_path) is not None
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def recursive_scan(path: str, extension: str, result_paths: typing.List[str], blacklist: Blacklist):
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""" Find files ending with a certain extension, filtering out blacklisted entries """
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try:
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for entry in os.scandir(path):
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if entry.is_file() and entry.path.endswith(extension):
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result_paths.append(entry.path)
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elif entry.is_dir():
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if blacklist.is_blacklisted(entry.name, entry.path):
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continue
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recursive_scan(entry.path, extension, result_paths, blacklist)
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except Exception as e:
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print(e)
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def check_for_cmake_project(pro_path: str) -> bool:
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pro_dir_name = os.path.dirname(pro_path)
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cmake_project_path = os.path.join(pro_dir_name, "CMakeLists.txt")
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return os.path.exists(cmake_project_path)
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def compute_stats(
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src_path: str,
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pros_with_missing_project: typing.List[str],
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total_pros: int,
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existing_pros: int,
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missing_pros: int,
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) -> dict:
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stats = {}
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stats["total projects"] = {"label": "Total pro files found", "value": total_pros}
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stats["existing projects"] = {
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"label": "Existing CMakeLists.txt files found",
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"value": existing_pros,
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}
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stats["missing projects"] = {
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"label": "Missing CMakeLists.txt files found",
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"value": missing_pros,
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}
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stats["missing examples"] = {"label": "Missing examples", "value": 0}
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stats["missing tests"] = {"label": "Missing tests", "value": 0}
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stats["missing src"] = {"label": "Missing src/**/**", "value": 0}
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stats["missing plugins"] = {"label": "Missing plugins", "value": 0}
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for p in pros_with_missing_project:
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rel_path = os.path.relpath(p, src_path)
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if rel_path.startswith("examples"):
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stats["missing examples"]["value"] += 1
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elif rel_path.startswith("tests"):
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stats["missing tests"]["value"] += 1
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elif rel_path.startswith(os.path.join("src", "plugins")):
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stats["missing plugins"]["value"] += 1
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elif rel_path.startswith("src"):
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stats["missing src"]["value"] += 1
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for stat in stats:
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if stats[stat]["value"] > 0:
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stats[stat]["percentage"] = round(stats[stat]["value"] * 100 / total_pros, 2)
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return stats
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def print_stats(
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src_path: str,
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pros_with_missing_project: typing.List[str],
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stats: dict,
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scan_time: float,
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script_time: float,
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):
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if stats["total projects"]["value"] == 0:
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print("No .pro files found. Did you specify a correct source path?")
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return
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if stats["total projects"]["value"] == stats["existing projects"]["value"]:
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print("All projects were converted.")
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else:
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print("Missing CMakeLists.txt files for the following projects: \n")
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for p in pros_with_missing_project:
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rel_path = os.path.relpath(p, src_path)
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print(rel_path)
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print("\nStatistics: \n")
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for stat in stats:
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if stats[stat]["value"] > 0:
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print(
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f"{stats[stat]['label']:<40}: {stats[stat]['value']} ({stats[stat]['percentage']}%)"
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)
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print(f"\n{'Scan time':<40}: {scan_time:.10f} seconds")
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print(f"{'Total script time':<40}: {script_time:.10f} seconds")
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def main():
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args = _parse_commandline()
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src_path = os.path.abspath(args.source_directory)
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pro_paths = []
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extension = ".pro"
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blacklist_names = ["config.tests", "doc", "3rdparty", "angle"]
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blacklist_path_parts = [os.path.join("util", "cmake")]
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script_start_time = default_timer()
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blacklist = Blacklist(blacklist_names, blacklist_path_parts)
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scan_time_start = default_timer()
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recursive_scan(src_path, extension, pro_paths, blacklist)
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scan_time_end = default_timer()
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scan_time = scan_time_end - scan_time_start
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total_pros = len(pro_paths)
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pros_with_missing_project = []
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for pro_path in pro_paths:
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if not check_for_cmake_project(pro_path):
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pros_with_missing_project.append(pro_path)
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missing_pros = len(pros_with_missing_project)
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existing_pros = total_pros - missing_pros
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stats = compute_stats(
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src_path, pros_with_missing_project, total_pros, existing_pros, missing_pros
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)
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script_end_time = default_timer()
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script_time = script_end_time - script_start_time
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print_stats(src_path, pros_with_missing_project, stats, scan_time, script_time)
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if __name__ == "__main__":
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main()
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