This adds the "modelsim" simulator option to run_testbenches.py to allow for regression testing of the native ModelSim simulation target. Original-commit: 39d6007ca7e3b27e8230db6690faa7469ca62cb2
387 lines
16 KiB
Python
Executable File
387 lines
16 KiB
Python
Executable File
#!/usr/bin/python3
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#
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# Copyright 2018 Ettus Research, a National Instruments Company
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#
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# SPDX-License-Identifier: LGPL-3.0-or-later
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#
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import argparse
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import os
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import sys
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import subprocess
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import logging
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import re
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import io
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import time
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import datetime
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from queue import Queue
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from threading import Thread
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#-------------------------------------------------------
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# Utilities
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#-------------------------------------------------------
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SCRIPT_DIR = os.path.dirname(os.path.realpath(__file__))
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BASE_DIR = os.path.split(os.path.split(SCRIPT_DIR)[0])[0]
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_LOG = logging.getLogger(os.path.basename(__file__))
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_LOG.setLevel(logging.INFO)
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_STDOUT = logging.StreamHandler()
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_LOG.addHandler(_STDOUT)
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_FORMATTER = logging.Formatter('[%(name)s] - %(levelname)s - %(message)s')
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_STDOUT.setFormatter(_FORMATTER)
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RETCODE_SUCCESS = 0
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RETCODE_PARSE_ERR = -1
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RETCODE_EXEC_ERR = -2
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RETCODE_COMPILE_ERR = -3
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RETCODE_UNKNOWN_ERR = -4
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def retcode_to_str(code):
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""" Convert internal status code to string
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"""
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code = int(code)
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if code > RETCODE_SUCCESS:
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return 'AppError({code})'.format(code=code)
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else:
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return {RETCODE_SUCCESS:'OK',
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RETCODE_PARSE_ERR:'ParseError',
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RETCODE_EXEC_ERR:'ExecError',
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RETCODE_COMPILE_ERR:'CompileError',
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RETCODE_UNKNOWN_ERR:'UnknownError'
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}[code]
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def log_with_header(what, minlen = 0, ch = '#'):
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""" Print with a header around the text
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"""
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padlen = max(int((minlen - len(what))/2), 1)
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toprint = (' '*padlen) + what + (' '*padlen)
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_LOG.info(ch * len(toprint))
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_LOG.info(toprint)
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_LOG.info(ch * len(toprint))
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#-------------------------------------------------------
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# Simulation Functions
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#-------------------------------------------------------
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def read_excludes_file(excludes_fname):
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if excludes_fname:
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return [ l.strip() for l in open(excludes_fname) if (l.strip() and '#' not in l)]
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else:
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return []
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def find_sims_on_fs(basedir, excludes):
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""" Find all testbenches in the specific basedir
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Testbenches are defined as directories with a
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Makefile that includes viv_sim_preamble.mak
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"""
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sims = {}
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for root, _, files in os.walk(basedir):
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name = os.path.relpath(root, basedir)
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if 'Makefile' in files:
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with open(os.path.join(root, 'Makefile'), 'r') as mfile:
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for l in mfile.readlines():
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if re.match('.*include.*viv_sim_preamble.mak.*', l) is not None:
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if name not in excludes:
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sims.update({name: root})
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break
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return sims
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def gather_target_sims(basedir, targets, excludes):
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""" Parse the specified targets and gather simulations to run
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Remove duplicates and sort alphabetically
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"""
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fs_sims = find_sims_on_fs(basedir, excludes)
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if not isinstance(targets, list):
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targets = [targets]
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sim_names = set()
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for target in targets:
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for name in sorted(fs_sims):
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if re.match(target, name) is not None:
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sim_names.add(name)
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target_sims = []
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for name in sorted(sim_names):
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target_sims.append((name, fs_sims[name]))
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return target_sims
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def parse_output(simout):
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# Gather results (basic metrics)
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results = {'retcode':RETCODE_SUCCESS, 'stdout':simout, 'passed':False}
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# Look for the following in the log:
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# - A start timestamp (indicates that Vivado started)
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# - The testbench infrastructure start header (indicates that the TB started)
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# - A stop timestamp (indicates that the TB stopped)
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tb_started = False
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compile_started = False
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results['start_time'] = '<unknown>'
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results['wall_time'] = '<unknown>'
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for line in simout.split(b'\n'):
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tsm = re.match(rb'TESTBENCH STARTED: (.+)', line)
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if tsm is not None:
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tb_started = True
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csm = re.match(rb'source .*viv_sim_project.tcl', line)
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if csm is not None:
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compile_started = True
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vsm = re.match(rb'# Start of session at: (.+)', line)
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if vsm is not None:
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results['start_time'] = str(vsm.group(1), 'ascii')
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tfm = re.match(rb'launch_simulation:.*; elapsed = (.+) \..*', line)
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if tfm is not None:
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results['wall_time'] = str(tfm.group(1), 'ascii')
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# Parse testbench results
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# We have two possible formats to parse because we have two simulation
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# test executors.
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tb_match_fmt0 = ([
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b'.*TESTBENCH FINISHED: (.+)\n',
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b'(?:# )? - Time elapsed: (.+) ns.*\n',
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b'(?:# )? - Tests Expected: (.+)\n',
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b'(?:# )? - Tests Run: (.+)\n',
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b'(?:# )? - Tests Passed: (.+)\n',
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b'(?:# )?Result: (PASSED|FAILED).*',
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])
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m_fmt0 = re.match(b''.join(tb_match_fmt0), simout, re.DOTALL)
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tb_match_fmt1 = ([
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b'.*TESTBENCH FINISHED: (.*)\n',
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b'(?:# )? - Time elapsed: (.+) ns.*\n',
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b'(?:# )? - Tests Run: (.+)\n',
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b'(?:# )? - Tests Passed: (.+)\n',
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b'(?:# )? - Tests Failed: (.+)\n',
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b'(?:# )?Result: (PASSED|FAILED).*',
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])
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m_fmt1 = re.match(b''.join(tb_match_fmt1), simout, re.DOTALL)
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# Remove escape characters (colors) from Vivado output
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ansi_escape = re.compile(r'(?:\x1B[\(@-_]|[\x80-\x9F])[0-?]*[ -/]*[@-~]')
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plain_simout = ansi_escape.sub('', simout.decode("utf-8"))
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# Check for $error() and $fatal() output, which may be missed by the
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# testbench or may occur in a subsequent instance, after a pass.
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tb_match_error = ([
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'\n',
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'(Error|Fatal): .*\n',
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'Time: .+\n',
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])
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m_error = re.search(''.join(tb_match_error), plain_simout)
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# Figure out the returncode
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retcode = RETCODE_UNKNOWN_ERR
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if m_fmt0 is not None or m_fmt1 is not None:
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retcode = RETCODE_SUCCESS
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if m_fmt0 is not None:
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results['passed'] = (m_fmt0.group(6) == b'PASSED' and m_error is None)
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results['module'] = m_fmt0.group(1)
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results['sim_time_ns'] = int(m_fmt0.group(2))
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results['tc_expected'] = int(m_fmt0.group(3))
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results['tc_run'] = int(m_fmt0.group(4))
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results['tc_passed'] = int(m_fmt0.group(5))
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else:
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results['passed'] = (m_fmt1.group(6) == b'PASSED' and m_error is None)
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results['module'] = m_fmt1.group(1)
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results['sim_time_ns'] = int(m_fmt1.group(2))
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results['tc_expected'] = int(m_fmt1.group(3))
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results['tc_run'] = int(m_fmt1.group(3))
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results['tc_passed'] = int(m_fmt1.group(4))
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elif tb_started:
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retcode = RETCODE_PARSE_ERR
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elif compile_started:
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retcode = RETCODE_COMPILE_ERR
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else:
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retcode = RETCODE_EXEC_ERR
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results['retcode'] = retcode
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return results
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def run_sim(path, simulator, basedir, setupenv):
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""" Run the simulation at the specified path
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The simulator can be specified as the target
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A environment script can be run optionally
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"""
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try:
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# Optionally run an environment setup script
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if setupenv is None:
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setupenv = ''
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# Check if environment was setup
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if 'VIVADO_PATH' not in os.environ:
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return {'retcode': RETCODE_EXEC_ERR, 'passed':False, 'stdout':bytes('Simulation environment was not initialized\n', 'utf-8')}
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else:
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setupenv = '. ' + os.path.realpath(setupenv) + ';'
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# Run the simulation
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return parse_output(
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subprocess.check_output(
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'cd {workingdir}; /bin/bash -c "{setupenv} make {simulator} 2>&1"'.format(
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workingdir=os.path.join(basedir, path), setupenv=setupenv, simulator=simulator), shell=True))
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except subprocess.CalledProcessError as e:
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return {'retcode': int(abs(e.returncode)), 'passed':False, 'stdout':e.output}
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except Exception as e:
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_LOG.error('Target ' + path + ' failed to run:\n' + str(e))
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return {'retcode': RETCODE_EXEC_ERR, 'passed':False, 'stdout':bytes(str(e), 'utf-8')}
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except:
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_LOG.error('Target ' + path + ' failed to run')
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return {'retcode': RETCODE_UNKNOWN_ERR, 'passed':False, 'stdout':bytes('Unknown Exception', 'utf-8')}
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def run_sim_queue(run_queue, out_queue, simulator, basedir, setupenv):
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""" Thread worker for a simulation runner
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Pull a job from the run queue, run the sim, then place
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output in out_queue
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"""
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while not run_queue.empty():
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(name, path) = run_queue.get()
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try:
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_LOG.info('Starting: %s', name)
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result = run_sim(path, simulator, basedir, setupenv)
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out_queue.put((name, result))
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_LOG.info('FINISHED: %s (%s, %s)', name, retcode_to_str(result['retcode']), 'PASS' if result['passed'] else 'FAIL!')
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except KeyboardInterrupt:
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_LOG.warning('Target ' + name + ' received SIGINT. Aborting...')
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out_queue.put((name, {'retcode': RETCODE_EXEC_ERR, 'passed':False, 'stdout':bytes('Aborted by user', 'utf-8')}))
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except Exception as e:
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_LOG.error('Target ' + name + ' failed to run:\n' + str(e))
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out_queue.put((name, {'retcode': RETCODE_UNKNOWN_ERR, 'passed':False, 'stdout':bytes(str(e), 'utf-8')}))
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finally:
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run_queue.task_done()
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#-------------------------------------------------------
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# Script Actions
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#-------------------------------------------------------
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def do_list(args):
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""" List all simulations that can be run
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"""
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excludes = read_excludes_file(args.excludes)
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for (name, path) in gather_target_sims(args.basedir, args.target, excludes):
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print(name)
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return 0
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def do_run(args):
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""" Build a simulation queue based on the specified
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args and process it
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"""
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run_queue = Queue(maxsize=0)
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out_queue = Queue(maxsize=0)
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_LOG.info('Queueing the following targets to simulate:')
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excludes = read_excludes_file(args.excludes)
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name_maxlen = 0
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for (name, path) in gather_target_sims(args.basedir, args.target, excludes):
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run_queue.put((name, path))
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name_maxlen = max(name_maxlen, len(name))
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_LOG.info('* ' + name)
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# Spawn tasks to run builds
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num_sims = run_queue.qsize()
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num_jobs = min(num_sims, int(args.jobs))
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_LOG.info('Started ' + str(num_jobs) + ' job(s) to process queue...')
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results = {}
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for i in range(num_jobs):
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worker = Thread(target=run_sim_queue, args=(run_queue, out_queue, args.simulator, args.basedir, args.setupenv))
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worker.setDaemon(False)
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worker.start()
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# Wait for build queue to become empty
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start = datetime.datetime.now()
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try:
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while out_queue.qsize() < num_sims:
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tdiff = str(datetime.datetime.now() - start).split('.', 2)[0]
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print("\r>>> [%s] (%d/%d simulations completed) <<<" % (tdiff, out_queue.qsize(), num_sims), end='\r', flush=True)
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time.sleep(1.0)
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sys.stdout.write("\n")
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except (KeyboardInterrupt):
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_LOG.warning('Received SIGINT. Aborting... (waiting for pending jobs to finish)')
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# Flush run queue
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while not run_queue.empty():
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(name, path) = run_queue.get()
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raise SystemExit(1)
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results = {}
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result_all = 0
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while not out_queue.empty():
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(name, result) = out_queue.get()
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results[name] = result
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log_with_header(name)
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sys.stdout.buffer.write(result['stdout'])
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if not result['passed']:
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result_all += 1
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sys.stdout.write('\n\n\n')
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sys.stdout.flush()
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time.sleep(1.0)
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hdr_len = name_maxlen + 62 # 62 is the report line length
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log_with_header('RESULTS', hdr_len)
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for name in sorted(results):
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r = results[name]
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if 'module' in r:
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_LOG.info('* %s : %s (Expected=%02d, Run=%02d, Passed=%02d, Elapsed=%s)',
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name.ljust(name_maxlen), ('Passed' if r['passed'] else 'FAILED'), r['tc_expected'], r['tc_run'], r['tc_passed'], r['wall_time'])
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else:
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_LOG.info('* %s : %s (Status = %s)', name.ljust(name_maxlen), ('Passed' if r['passed'] else 'FAILED'),
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retcode_to_str(r['retcode']))
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_LOG.info('='*hdr_len)
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_LOG.info('SUMMARY: %d out of %d tests passed. Time elapsed was %s'%(num_sims - result_all, num_sims, str(datetime.datetime.now() - start).split('.', 2)[0]))
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_LOG.info('#'*hdr_len)
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return result_all
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def do_cleanup(args):
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""" Run make cleanall for all simulations
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"""
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setupenv = args.setupenv
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if setupenv is None:
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setupenv = ''
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# Check if environment was setup
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if 'VIVADO_PATH' not in os.environ:
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raise RuntimeError('Simulation environment was not initialized')
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else:
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setupenv = '. ' + os.path.realpath(setupenv) + ';'
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excludes = read_excludes_file(args.excludes)
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for (name, path) in gather_target_sims(args.basedir, args.target, excludes):
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_LOG.info('Cleaning up %s', name)
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os.chdir(os.path.join(args.basedir, path))
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subprocess.Popen('{setupenv} make cleanall'.format(setupenv=setupenv), shell=True).wait()
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return 0
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def do_report(args):
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""" List all simulations that can be run
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"""
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keys = ['module', 'status', 'retcode', 'start_time', 'wall_time',
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'sim_time_ns', 'tc_expected', 'tc_run', 'tc_passed']
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with open(args.report, 'w') as repfile:
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repfile.write((','.join([x.upper() for x in keys])) + '\n')
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excludes = read_excludes_file(args.excludes)
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for (name, path) in gather_target_sims(args.basedir, args.target, excludes):
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results = {'module': str(name), 'status':'NOT_RUN', 'retcode':'<unknown>',
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'start_time':'<unknown>', 'wall_time':'<unknown>', 'sim_time_ns':0,
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'tc_expected':0, 'tc_run':0, 'tc_passed':0}
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logpath = os.path.join(path, args.simulator + '.log')
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if os.path.isfile(logpath):
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with open(logpath, 'rb') as logfile:
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r = parse_output(logfile.read())
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if r['retcode'] != RETCODE_SUCCESS:
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results['retcode'] = retcode_to_str(r['retcode'])
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results['status'] = 'ERROR'
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results['start_time'] = r['start_time']
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else:
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results = r
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results['module'] = name
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results['status'] = 'PASSED' if r['passed'] else 'FAILED'
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results['retcode'] = retcode_to_str(r['retcode'])
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repfile.write((','.join([str(results[x]) for x in keys])) + '\n')
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_LOG.info('Testbench report written to ' + args.report)
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return 0
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# Parse command line options
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def get_options():
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parser = argparse.ArgumentParser(description='Batch testbench execution script')
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parser.add_argument('-d', '--basedir', default=BASE_DIR, help='Base directory for the usrp3 codebase')
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parser.add_argument('-s', '--simulator', choices=['xsim', 'vsim', 'modelsim'], default='xsim', help='Simulator name')
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parser.add_argument('-e', '--setupenv', default=None, help='Optional environment setup script to run for each TB')
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parser.add_argument('-r', '--report', default='testbench_report.csv', help='Name of the output report file')
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parser.add_argument('-x', '--excludes', default=None, help='Name of the excludes file. It contains all targets to exlude.')
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parser.add_argument('-j', '--jobs', default=1, help='Number of parallel simulation jobs to run')
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parser.add_argument('action', choices=['run', 'cleanup', 'list', 'report'], default='list', help='What to do?')
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parser.add_argument('target', nargs='*', default='.*', help='Space separated simulation target regexes')
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return parser.parse_args()
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def main():
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args = get_options()
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actions = {'list': do_list, 'run': do_run, 'cleanup': do_cleanup, 'report': do_report}
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return actions[args.action](args)
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if __name__ == '__main__':
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exit(main())
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