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aicpu_data_parser.py 7.1 kB

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  1. # Copyright 2020 Huawei Technologies Co., Ltd
  2. #
  3. # Licensed under the Apache License, Version 2.0 (the "License");
  4. # you may not use this file except in compliance with the License.
  5. # You may obtain a copy of the License at
  6. #
  7. # http://www.apache.org/licenses/LICENSE-2.0
  8. #
  9. # Unless required by applicable law or agreed to in writing, software
  10. # distributed under the License is distributed on an "AS IS" BASIS,
  11. # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. # See the License for the specific language governing permissions and
  13. # limitations under the License.
  14. # ============================================================================
  15. """
  16. The parser for AI CPU preprocess data.
  17. """
  18. import os
  19. from mindspore.profiler.common.util import fwrite_format, get_file_join_name
  20. from mindspore import log as logger
  21. class DataPreProcessParser:
  22. """
  23. The Parser for AI CPU preprocess data.
  24. Args:
  25. input_path(str): The profiling job path.
  26. output_filename(str): The output data path and name.
  27. """
  28. _source_file_target = 'DATA_PREPROCESS.dev.AICPU.'
  29. _dst_file_title = 'title:DATA_PREPROCESS AICPU'
  30. _dst_file_column_title = ['serial_number', 'node_type_name', 'total_time(ms)',
  31. 'dispatch_time(ms)', 'run_start', 'run_end']
  32. _ms_unit = 1000
  33. def __init__(self, input_path, output_filename):
  34. self._input_path = input_path
  35. self._output_filename = output_filename
  36. self._source_file_name = self._get_source_file()
  37. self._ms_kernel_flag = 3
  38. self._other_kernel_flag = 6
  39. self._thread_flag = 7
  40. self._ms_kernel_run_end_index = 2
  41. self._other_kernel_run_end_index = 5
  42. self._result_list = []
  43. self._min_cycle_counter = float('inf')
  44. def _get_source_file(self):
  45. """Get log file name, which was created by ada service."""
  46. file_name = get_file_join_name(self._input_path, self._source_file_target)
  47. if not file_name:
  48. data_path = os.path.join(self._input_path, "data")
  49. file_name = get_file_join_name(data_path, self._source_file_target)
  50. return file_name
  51. def _get_kernel_result(self, number, node_list, thread_list):
  52. """Get the profiling data form different aicpu kernel"""
  53. try:
  54. if len(node_list) == self._ms_kernel_flag and len(thread_list) == self._thread_flag:
  55. node_type_name = node_list[0].split(':')[-1]
  56. run_end_index = self._ms_kernel_run_end_index
  57. elif len(node_list) == self._other_kernel_flag and len(thread_list) == self._thread_flag:
  58. node_type_name = node_list[0].split(':')[-1].split('/')[-1].split('-')[0]
  59. run_end_index = self._other_kernel_run_end_index
  60. else:
  61. logger.warning("the data format can't support 'node_list':%s", str(node_list))
  62. return None
  63. run_start = node_list[1].split(':')[-1].split(' ')[0]
  64. run_end = node_list[run_end_index].split(':')[-1].split(' ')[0]
  65. total_time = float(thread_list[-1].split('=')[-1].split()[0]) / self._ms_unit
  66. dispatch_time = float(thread_list[-2].split('=')[-1].split()[0]) / self._ms_unit
  67. return [number, node_type_name, total_time, dispatch_time,
  68. run_start, run_end]
  69. except IndexError as e:
  70. logger.error(e)
  71. return None
  72. def execute(self):
  73. """Execute the parser, get result data, and write it to the output file."""
  74. if not os.path.exists(self._source_file_name):
  75. logger.info("Did not find the aicpu profiling source file")
  76. return
  77. with open(self._source_file_name, 'rb') as ai_cpu_data:
  78. ai_cpu_str = str(ai_cpu_data.read().replace(b'\n\x00', b' ___ ')
  79. .replace(b'\x00', b' ___ '))[2:-1]
  80. ai_cpu_lines = ai_cpu_str.split(" ___ ")
  81. result_list = list()
  82. ai_cpu_total_time_summary = 0
  83. # Node serial number.
  84. serial_number = 1
  85. for i in range(len(ai_cpu_lines) - 1):
  86. node_line = ai_cpu_lines[i]
  87. thread_line = ai_cpu_lines[i + 1]
  88. if "Node" in node_line and "Thread" in thread_line:
  89. # Get the node data from node_line
  90. node_list = node_line.split(',')
  91. thread_list = thread_line.split(',')
  92. result = self._get_kernel_result(serial_number, node_list, thread_list)
  93. if result is None:
  94. continue
  95. result_list.append(result)
  96. # Calculate the total time.
  97. total_time = result[2]
  98. ai_cpu_total_time_summary += total_time
  99. # Increase node serial number.
  100. serial_number += 1
  101. elif "Node" in node_line and "Thread" not in thread_line:
  102. node_type_name = node_line.split(',')[0].split(':')[-1]
  103. logger.warning("The node type:%s cannot find thread data", node_type_name)
  104. if result_list:
  105. ai_cpu_total_time = format(ai_cpu_total_time_summary, '.6f')
  106. result_list.append(["AI CPU Total Time(ms):", ai_cpu_total_time])
  107. fwrite_format(self._output_filename, " ".join(self._dst_file_column_title), is_start=True, is_print=True)
  108. fwrite_format(self._output_filename, result_list, is_print=True)
  109. # For timeline display.
  110. self._result_list = result_list
  111. def query_aicpu_data(self):
  112. """
  113. Get execution time of AI CPU operator.
  114. Returns:
  115. a dict, the metadata of AI CPU operator execution time.
  116. """
  117. stream_id = 0 # Default stream id for AI CPU.
  118. pid = 9000 # Default pid for AI CPU.
  119. factor = 1000 # Convert time unit from 1us to 1ms
  120. total_time = 0
  121. min_cycle_counter = float('inf')
  122. aicpu_info = []
  123. op_count_list = []
  124. for aicpu_item in self._result_list:
  125. if "AI CPU Total Time(ms):" in aicpu_item:
  126. total_time = aicpu_item[-1]
  127. continue
  128. op_name = aicpu_item[1]
  129. start_time = float(aicpu_item[4]) / factor
  130. min_cycle_counter = min(min_cycle_counter, start_time)
  131. end_time = float(aicpu_item[5]) / factor
  132. duration = end_time - start_time
  133. aicpu_info.append([op_name, stream_id, start_time, duration, pid])
  134. # Record the number of operator types.
  135. if op_name not in op_count_list:
  136. op_count_list.append(op_name)
  137. self._min_cycle_counter = min_cycle_counter
  138. aicpu_dict = {
  139. 'info': aicpu_info,
  140. 'total_time': float(total_time),
  141. 'op_exe_times': len(aicpu_info),
  142. 'num_of_ops': len(op_count_list),
  143. 'num_of_streams': 1
  144. }
  145. return aicpu_dict
  146. @property
  147. def min_cycle_counter(self):
  148. """Get minimum cycle counter in AI CPU."""
  149. return self._min_cycle_counter