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							161 lines
						
					
					
						
							5.1 KiB
						
					
					
				
			
		
		
	
	
							161 lines
						
					
					
						
							5.1 KiB
						
					
					
				#!/usr/bin/env python3
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import math
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import os
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import random
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import shutil
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import subprocess
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import time
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import unittest
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from pathlib import Path
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from parameterized import parameterized
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from tqdm import trange
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from common.params import Params
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from common.timeout import Timeout
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from selfdrive.hardware import TICI
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from selfdrive.loggerd.config import ROOT
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from selfdrive.manager.process_config import managed_processes
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from tools.lib.logreader import LogReader
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SEGMENT_LENGTH = 2
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FULL_SIZE = 2507572
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CAMERAS = [
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  ("fcamera.hevc", 20, FULL_SIZE, "roadEncodeIdx"),
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  ("dcamera.hevc", 20, FULL_SIZE, "driverEncodeIdx"),
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  ("ecamera.hevc", 20, FULL_SIZE, "wideRoadEncodeIdx"),
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  ("qcamera.ts", 20, 77066, None),
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]
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# we check frame count, so we don't have to be too strict on size
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FILE_SIZE_TOLERANCE = 0.5
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class TestEncoder(unittest.TestCase):
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  # TODO: all of loggerd should work on PC
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  @classmethod
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  def setUpClass(cls):
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    if not TICI:
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      raise unittest.SkipTest
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  def setUp(self):
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    self._clear_logs()
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    os.environ["LOGGERD_TEST"] = "1"
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    os.environ["LOGGERD_SEGMENT_LENGTH"] = str(SEGMENT_LENGTH)
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  def tearDown(self):
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    self._clear_logs()
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  def _clear_logs(self):
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    if os.path.exists(ROOT):
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      shutil.rmtree(ROOT)
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  def _get_latest_segment_path(self):
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    last_route = sorted(Path(ROOT).iterdir())[-1]
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    return os.path.join(ROOT, last_route)
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  # TODO: this should run faster than real time
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  @parameterized.expand([(True, ), (False, )])
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  def test_log_rotation(self, record_front):
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    Params().put_bool("RecordFront", record_front)
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    managed_processes['sensord'].start()
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    managed_processes['loggerd'].start()
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    time.sleep(1.0)
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    managed_processes['camerad'].start()
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    num_segments = int(os.getenv("SEGMENTS", random.randint(10, 15)))
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    # wait for loggerd to make the dir for first segment
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    route_prefix_path = None
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    with Timeout(int(SEGMENT_LENGTH*3)):
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      while route_prefix_path is None:
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        try:
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          route_prefix_path = self._get_latest_segment_path().rsplit("--", 1)[0]
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        except Exception:
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          time.sleep(0.1)
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    def check_seg(i):
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      # check each camera file size
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      counts = []
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      first_frames = []
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      for camera, fps, size, encode_idx_name in CAMERAS:
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        if not record_front and "dcamera" in camera:
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          continue
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        file_path = f"{route_prefix_path}--{i}/{camera}"
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        # check file exists
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        self.assertTrue(os.path.exists(file_path), f"segment #{i}: '{file_path}' missing")
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        # TODO: this ffprobe call is really slow
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        # check frame count
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        cmd = f"ffprobe -v error -select_streams v:0 -count_packets -show_entries stream=nb_read_packets -of csv=p=0 {file_path}"
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        if TICI:
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          cmd = "LD_LIBRARY_PATH=/usr/local/lib " + cmd
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        expected_frames = fps * SEGMENT_LENGTH
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        frame_tolerance = 0
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        probe = subprocess.check_output(cmd, shell=True, encoding='utf8')
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        frame_count = int(probe.split('\n')[0].strip())
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        counts.append(frame_count)
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        self.assertTrue(abs(expected_frames - frame_count) <= frame_tolerance,
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                        f"segment #{i}: {camera} failed frame count check: expected {expected_frames}, got {frame_count}")
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        # sanity check file size
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        file_size = os.path.getsize(file_path)
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        self.assertTrue(math.isclose(file_size, size, rel_tol=FILE_SIZE_TOLERANCE),
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                        f"{file_path} size {file_size} isn't close to target size {size}")
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        # Check encodeIdx
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        if encode_idx_name is not None:
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          rlog_path = f"{route_prefix_path}--{i}/rlog.bz2"
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          msgs = [m for m in LogReader(rlog_path) if m.which() == encode_idx_name]
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          encode_msgs = [getattr(m, encode_idx_name) for m in msgs]
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          valid = [m.valid for m in msgs]
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          segment_idxs = [m.segmentId for m in encode_msgs]
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          encode_idxs = [m.encodeId for m in encode_msgs]
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          frame_idxs = [m.frameId for m in encode_msgs]
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          # Check frame count
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          self.assertEqual(frame_count, len(segment_idxs))
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          self.assertEqual(frame_count, len(encode_idxs))
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          # Check for duplicates or skips
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          self.assertEqual(0, segment_idxs[0])
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          self.assertEqual(len(set(segment_idxs)), len(segment_idxs))
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          self.assertTrue(all(valid))
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          self.assertEqual(expected_frames * i, encode_idxs[0])
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          first_frames.append(frame_idxs[0])
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          self.assertEqual(len(set(encode_idxs)), len(encode_idxs))
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      self.assertEqual(1, len(set(first_frames)))
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      if TICI:
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        expected_frames = fps * SEGMENT_LENGTH
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        self.assertEqual(min(counts), expected_frames)
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      shutil.rmtree(f"{route_prefix_path}--{i}")
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    try:
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      for i in trange(num_segments + 1):
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        # poll for next segment
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        with Timeout(int(SEGMENT_LENGTH*10), error_msg=f"timed out waiting for segment {i}"):
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          while Path(f"{route_prefix_path}--{i}") not in Path(ROOT).iterdir():
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            time.sleep(0.1)
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    finally:
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      managed_processes['loggerd'].stop()
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      managed_processes['camerad'].stop()
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      managed_processes['sensord'].stop()
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    for i in trange(num_segments):
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      check_seg(i)
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if __name__ == "__main__":
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  unittest.main()
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