App engine is included in the AppRTC archive, so the separate archive is not needed anymore. Mercurial is no longer necessary to include but it will be required during the vendoring step when the prebuilt archives are update. The download/build scripts have been simplified accordingly. The video quality test has been updated to work with the new appengine. BUG=webrtc:7602 Review-Url: https://codereview.webrtc.org/2882073003 Cr-Commit-Position: refs/heads/master@{#18162}
206 lines
6.5 KiB
Python
Executable File
206 lines
6.5 KiB
Python
Executable File
#!/usr/bin/env python
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# Copyright (c) 2017 The WebRTC project authors. All Rights Reserved.
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#
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# Use of this source code is governed by a BSD-style license
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# that can be found in the LICENSE file in the root of the source
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# tree. An additional intellectual property rights grant can be found
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# in the file PATENTS. All contributing project authors may
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# be found in the AUTHORS file in the root of the source tree.
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"""
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This script is the wrapper that starts a loopback call with stubbed video in
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and out. It then analyses the video quality of the output video against the
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reference input video.
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It expect to be given the webrtc output build directory as the first argument
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all other arguments are optional.
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It assumes you have a Android device plugged in.
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"""
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import argparse
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import logging
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import os
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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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import time
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SCRIPT_DIR = os.path.dirname(os.path.abspath(__file__))
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SRC_DIR = os.path.normpath(os.path.join(SCRIPT_DIR, os.pardir, os.pardir,
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os.pardir))
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class Error(Exception):
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pass
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class VideoQualityTestError(Error):
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pass
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def _RunCommand(argv, cwd=SRC_DIR, **kwargs):
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logging.info('Running %r', argv)
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subprocess.check_call(argv, cwd=cwd, **kwargs)
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def _RunCommandWithOutput(argv, cwd=SRC_DIR, **kwargs):
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logging.info('Running %r', argv)
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return subprocess.check_output(argv, cwd=cwd, **kwargs)
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def _RunBackgroundCommand(argv, cwd=SRC_DIR):
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logging.info('Running %r', argv)
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process = subprocess.Popen(argv, cwd=cwd)
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time.sleep(0.5)
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status = process.poll()
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if status: # is not None or 0
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raise subprocess.CalledProcessError(status, argv)
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return process
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def _ParseArgs():
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parser = argparse.ArgumentParser(description='Start loopback video analysis.')
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parser.add_argument('build_dir_android',
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help='The path to the build directory for Android.')
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parser.add_argument('--build_dir_x86',
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help='The path to the build directory for building locally.')
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parser.add_argument('--temp_dir',
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help='A temporary directory to put the output.')
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parser.add_argument('--adb-path', help='Path to adb binary.', default='adb')
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args = parser.parse_args()
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return args
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def main():
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logging.basicConfig(level=logging.INFO)
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args = _ParseArgs()
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build_dir_android = args.build_dir_android
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build_dir_x86 = args.build_dir_x86
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temp_dir = args.temp_dir
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adb_path = args.adb_path
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if not temp_dir:
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temp_dir = tempfile.mkdtemp()
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else:
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if not os.path.exists(temp_dir):
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os.makedirs(temp_dir)
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if not build_dir_x86:
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build_dir_x86 = os.path.join(temp_dir, 'LocalBuild')
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_RunCommand(['gn', 'gen', build_dir_x86])
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_RunCommand(['ninja', '-C', build_dir_x86, 'frame_analyzer'])
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tools_dir = os.path.join(SRC_DIR, 'tools_webrtc')
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toolchain_dir = os.path.join(tools_dir, 'video_quality_toolchain')
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# Download ffmpeg and zxing.
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download_tools_script = os.path.join(tools_dir, 'download_tools.py')
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_RunCommand([sys.executable, download_tools_script, toolchain_dir])
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testing_tools_dir = os.path.join(SRC_DIR, 'webrtc', 'tools', 'testing')
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# Download, extract and build AppRTC.
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setup_apprtc_script = os.path.join(testing_tools_dir, 'setup_apprtc.py')
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_RunCommand([sys.executable, setup_apprtc_script, temp_dir])
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# Select an Android device in case multiple are connected
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for line in _RunCommandWithOutput([adb_path, 'devices']).splitlines():
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if line.endswith('\tdevice'):
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android_device = line.split('\t')[0]
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break
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else:
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raise VideoQualityTestError('Cannot find any connected Android device.')
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processes = []
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try:
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# Start AppRTC Server
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dev_appserver = os.path.join(temp_dir, 'apprtc', 'temp', 'google-cloud-sdk',
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'bin', 'dev_appserver.py')
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appengine_dir = os.path.join(temp_dir, 'apprtc', 'out', 'app_engine')
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processes.append(_RunBackgroundCommand([
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'python', dev_appserver, appengine_dir,
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'--port=9999', '--admin_port=9998',
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'--skip_sdk_update_check', '--clear_datastore=yes']))
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# Start Collider
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collider_path = os.path.join(temp_dir, 'collider', 'collidermain')
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processes.append(_RunBackgroundCommand([
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collider_path, '-tls=false', '-port=8089',
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'-room-server=http://localhost:9999']))
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# Start adb reverse forwarder
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reverseforwarder_path = os.path.join(
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SRC_DIR, 'build', 'android', 'adb_reverse_forwarder.py')
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processes.append(_RunBackgroundCommand([
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reverseforwarder_path, '--device', android_device,
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'9999', '9999', '8089', '8089']))
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# Run the Espresso code.
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test_script = os.path.join(build_dir_android,
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'bin', 'run_AppRTCMobileTestStubbedVideoIO')
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_RunCommand([test_script, '--device', android_device])
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# Pull the output video.
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test_video = os.path.join(temp_dir, 'test_video.y4m')
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_RunCommand([adb_path, '-s', android_device,
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'pull', '/sdcard/output.y4m', test_video])
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test_video_yuv = os.path.join(temp_dir, 'test_video.yuv')
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ffmpeg_path = os.path.join(toolchain_dir, 'linux', 'ffmpeg')
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def ConvertVideo(input_video, output_video):
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_RunCommand([ffmpeg_path, '-y', '-i', input_video, output_video])
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ConvertVideo(test_video, test_video_yuv)
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reference_video = os.path.join(SRC_DIR,
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'resources', 'reference_video_640x360_30fps.y4m')
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reference_video_yuv = os.path.join(temp_dir,
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'reference_video_640x360_30fps.yuv')
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ConvertVideo(reference_video, reference_video_yuv)
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# Run compare script.
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compare_script = os.path.join(SRC_DIR, 'webrtc', 'tools',
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'compare_videos.py')
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zxing_path = os.path.join(toolchain_dir, 'linux', 'zxing')
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# The frame_analyzer binary should be built for local computer and not for
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# Android
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frame_analyzer = os.path.join(build_dir_x86, 'frame_analyzer')
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frame_width = 640
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frame_height = 360
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stats_file_ref = os.path.join(temp_dir, 'stats_ref.txt')
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stats_file_test = os.path.join(temp_dir, 'stats_test.txt')
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_RunCommand([
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sys.executable, compare_script, '--ref_video', reference_video_yuv,
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'--test_video', test_video_yuv, '--yuv_frame_width', str(frame_width),
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'--yuv_frame_height', str(frame_height),
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'--stats_file_ref', stats_file_ref,
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'--stats_file_test', stats_file_test,
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'--frame_analyzer', frame_analyzer,
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'--ffmpeg_path', ffmpeg_path, '--zxing_path', zxing_path])
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finally:
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for process in processes:
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if process:
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process.terminate()
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process.wait()
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shutil.rmtree(temp_dir)
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if __name__ == '__main__':
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sys.exit(main())
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