fdc585a288
* It can build the image of the task graph Related-Blueprint: fuel-library-modularization Change-Id: Ie613ab6f9b35ff7cfef631feb7590a95eef87dd3
310 lines
10 KiB
Python
Executable File
310 lines
10 KiB
Python
Executable File
#!/usr/bin/env python
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# Copyright 2015 Mirantis, Inc.
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#
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# Licensed under the Apache License, Version 2.0 (the "License"); you may
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# not use this file except in compliance with the License. You may obtain
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# a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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# WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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# License for the specific language governing permissions and limitations
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# under the License.
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import fnmatch
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import os
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import sys
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import argparse
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import networkx
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import yaml
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class IO(object):
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@classmethod
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def debug(cls, msg):
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if not cls.args.debug:
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return
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if not msg.endswith("\n"):
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msg += "\n"
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sys.stdout.write(msg)
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@classmethod
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def output(cls, line, fill=None):
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line = str(line)
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if fill:
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line = line[0:fill].ljust(fill)
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else:
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if not line.endswith("\n"):
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line += "\n"
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sys.stdout.write(line)
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@classmethod
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def task_files(cls, directory, file_pattern='*tasks.yaml'):
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if os.path.isfile(directory):
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if fnmatch.fnmatch(directory, file_pattern):
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yield directory
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for root, dirs, files in os.walk(directory):
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for file_name in files:
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if fnmatch.fnmatch(file_name, file_pattern):
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task_path = os.path.join(root, file_name)
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if not os.path.isfile(task_path):
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continue
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yield task_path
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@classmethod
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def options(cls):
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parser = argparse.ArgumentParser()
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parser.add_argument("--workbook", "-w",
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action="store_true",
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default=False,
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help='Output the raw workbook')
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parser.add_argument("--clear_workbook", "-c",
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action="store_true",
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default=False,
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help='Output the clear workbook')
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parser.add_argument("--dot", "-D",
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action="store_true",
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default=False,
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help='Output the graph in dot format')
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parser.add_argument("--png", "-p",
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action="store_true",
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default=True,
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help='Write the graph in png format (default)')
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parser.add_argument("--png_file", "-f",
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type=str,
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default='task_graph.png',
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help='Write graph image to this file')
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parser.add_argument("--open", "-o",
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action="store_true",
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default=False,
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help='Open the image after creation')
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parser.add_argument("--debug", "-d",
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action="store_true",
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default=False,
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help='Print debug messages')
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parser.add_argument("--group", "-g",
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help="Group to build the graph for",
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default=None)
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parser.add_argument("--stage", "-s",
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help="Stage to build the graph for",
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default='deployment')
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parser.add_argument("--topology", "-t",
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action="store_true",
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help="Show the tasks topology"
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"(possible execution order)",
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default=False)
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parser.add_argument('places',
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metavar='PLACE',
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type=str,
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nargs='+',
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help='The list of files of directories where'
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'tasks can be found',
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default=[])
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cls.args = parser.parse_args()
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return cls.args
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@classmethod
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def view_image(cls, img_file):
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if not os.path.isfile(img_file):
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return
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if sys.platform.startswith('linux'):
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os.system('xdg-open "%s"' % img_file)
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elif sys.platform.startswith('darwin'):
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os.system('open "%s"' % img_file)
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@classmethod
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def main(cls):
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cls.options()
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task_graph = TaskGraph()
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for place in cls.args.places:
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for task_file in cls.task_files(place):
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task_graph.load_yaml_file(task_file)
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task_graph.process_data(stage=cls.args.stage, group=cls.args.group)
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task_graph.build_graph()
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if cls.args.topology:
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task_graph.show_topology()
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return
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if cls.args.workbook:
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IO.output(yaml.dump(task_graph.workbook))
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return
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if cls.args.clear_workbook:
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IO.output(yaml.dump(task_graph.data))
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return
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if cls.args.png:
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task_graph.create_image(cls.args.png_file)
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if cls.args.open:
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cls.view_image(cls.args.png_file)
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class TaskGraph(object):
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def __init__(self):
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self.data = {}
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self.workbook = []
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self.graph = networkx.DiGraph()
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self._max_task_id_length = None
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self._max_task_stage_length = None
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self.options = {
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'debug': False,
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'prog': 'dot',
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'default_node': {
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},
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'default_edge': {
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},
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'global_graph': {
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'overlap': 'false',
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'splines': 'curved',
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'pack': 'true',
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'sep': '1,1',
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'esep': '0.8,0.8',
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},
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'global_node': {
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'style': 'filled',
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'shape': 'ellipse',
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'fillcolor': 'yellow',
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},
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'global_edge': {
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'style': 'solid',
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'arrowhead': 'vee',
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},
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'non_task_types': [
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'role',
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'stage',
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]
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}
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def clear(self):
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self.graph.clear()
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self.data = {}
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self.workbook = []
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def node_options(self, id):
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return self.options['default_node']
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def edge_options(self, id_from, id_to):
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return self.options['default_edge']
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def add_graph_node(self, id, options=None):
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if not options:
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options = self.node_options(id)
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if id not in self.data:
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return
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self.graph.add_node(id, options)
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def add_graph_edge(self, id_from, id_to, options=None):
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if not options:
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options = self.edge_options(id_from, id_to)
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if id_from not in self.data:
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return
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if id_to not in self.data:
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return
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self.graph.add_edge(id_from, id_to, options)
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def process_data(self, stage=None, group=None):
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for node in self.workbook:
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if not type(node) is dict:
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continue
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if not node.get('type', None) and node.get('id', None):
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continue
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if node.get('type', None) in self.options['non_task_types']:
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continue
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if not 'stage' in node:
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node['stage'] = 'deployment'
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if not 'requires' in node:
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node['requires'] = []
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if not 'required_for' in node:
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node['required_for'] = []
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if not 'groups' in node:
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node['groups'] = []
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if stage and not node['stage'] == stage:
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continue
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if group and not group in node['groups']:
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continue
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self.data[node['id']] = node
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def build_graph(self):
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for id in self.data.keys():
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self.add_graph_node(id)
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for link in self.data[id]['requires']:
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self.add_graph_edge(link, id)
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for link in self.data[id]['required_for']:
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self.add_graph_edge(id, link)
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@property
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def max_task_id_length(self):
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if self._max_task_id_length:
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return self._max_task_id_length
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self._max_task_id_length = len(max(self.data.keys(), key=len))
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return self._max_task_id_length
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@property
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def max_task_stage_length(self):
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if self._max_task_stage_length:
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return self._max_task_stage_length
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self._max_task_stage_length = max(map(lambda n: len(n['stage']),
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self.data.values()))
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return self._max_task_stage_length
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def make_dot_graph(self):
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return networkx.to_agraph(self.graph)
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def show_topology(self):
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number = 1
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for node in networkx.topological_sort(self.graph):
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groups = self.data.get(node, {}).get('groups', [])
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groups = ', '.join(groups)
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stage = self.data.get(node, {}).get('stage', '')
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IO.output(number, 5)
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IO.output(node, self.max_task_id_length + 1)
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IO.output(stage, self.max_task_stage_length + 1)
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IO.output(groups)
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number += 1
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def create_image(self, img_file):
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graph = self.make_dot_graph()
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for attr_name in self.options['global_graph']:
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graph.graph_attr[attr_name] = \
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self.options['global_graph'][attr_name]
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for attr_name in self.options['global_node']:
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graph.node_attr[attr_name] = \
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self.options['global_node'][attr_name]
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for attr_name in self.options['global_edge']:
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graph.edge_attr[attr_name] = \
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self.options['global_edge'][attr_name]
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graph.layout(prog=self.options['prog'])
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graph.draw(img_file)
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def load_data(self, workbook):
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if type(workbook) == list:
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self.workbook += workbook
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def load_yaml(self, yaml_data):
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workbook = yaml.load(yaml_data)
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if type(workbook) == list:
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self.workbook += workbook
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def load_yaml_file(self, yaml_file):
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if os.path.isfile(yaml_file):
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IO.debug("Reading file: '%s'" % yaml_file)
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yaml_file_stream = open(yaml_file, 'r')
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self.load_yaml(yaml_file_stream)
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yaml_file_stream.close()
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def write_dot(self, dot_file):
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graph = self.make_dot_graph()
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graph.write(dot_file)
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if __name__ == '__main__':
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IO.main()
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