mirror of
https://gitlab.com/fabinfra/fabaccess/bffh.git
synced 2024-12-04 20:04:56 +01:00
180 lines
6.4 KiB
Python
180 lines
6.4 KiB
Python
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#!/usr/bin/env python3
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import sys
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import argparse
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def on_free(args, actor_name):
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"""
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Function called when the state of the connected machine changes to Free
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again
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"""
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if args.verbose > 2:
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print("on_free called!")
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if actor_name == "DoorControl1":
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# Do whatever you want to do in case `DoorControl1` is returned back to free.
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# Keep in mind that process actors should return quickly to not miss
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# updates, so if you need to do things that take a while fork a new
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# process e.g. with the `subprocess` Module
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print("I'm locking door 1!")
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pass
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elif actor_name == "DoorControl2":
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print("I'm locking door 2!")
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pass # Close a different door
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else:
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if not args.quiet:
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print("process called with unknown id %s for state `Free`" % actor_name)
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# It's a good idea to exit with an error code in case something
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# unexpected happens.
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# The process module logs everything printed to stdout by actors into
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# the server log, but marks them as `Error` in case the actor process
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# exits with a code != 0, making debugging somewhat easier.
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exit(-1)
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def on_use(args, actor_name, user_id):
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"""
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Function called when an user takes control of the connected machine
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user_id contains the UID of the user now using the machine
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"""
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if args.verbose > 2:
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print("on_use called!")
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if actor_name == "DoorControl1":
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print("I'm opening door 1 for 10 seconds!")
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pass # Open door one
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elif actor_name == "DoorControl2":
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print("I'm opening door 2 for 10 seconds!")
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pass # Open a different door
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else:
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if not args.quiet:
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print("process called with unknown id %s for state `InUse`" % actor_name)
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# It's a good idea to exit with an error code in case something
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# unexpected happens.
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# The process module logs everything printed to stdout by actors into
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# the server log, but marks them as `Error` in case the actor process
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# exits with a code != 0, making debugging somewhat easier.
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exit(-1)
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def on_tocheck(args, actor_name, user_id):
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"""
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Function called when an user returns control and the connected machine is
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configured to go to state `ToCheck` instead of `Free` in that case.
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user_id contains the UID of the manager expected to check the machine.
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The user that used the machine beforehand has to be taken from the last
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user field using the API (via e.g. the mobile app)
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"""
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if args.verbose > 2:
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print("on_tocheck called!")
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if not args.quiet:
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print("process called with unexpected combo id %s and state 'ToCheck'" % actor_name)
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exit(-1)
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def on_blocked(args, actor_name, user_id):
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"""
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Function called when an manager marks the connected machine as `Blocked`
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user_id contains the UID of the manager that blocked the machine
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"""
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if args.verbose > 2:
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print("on_blocked called!")
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if not args.quiet:
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print("process called with unexpected combo id %s and state 'Blocked'" % actor_name)
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exit(-1)
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def on_disabled(args, actor_name):
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"""
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Function called when the connected machine is marked `Disabled`
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"""
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if not args.quiet:
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print("process called with unexpected combo id %s and state 'Disabled'" % actor_name)
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exit(-1)
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def on_reserve(args, actor_name, user_id):
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"""
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Function called when the connected machine has been reserved by somebody.
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user_id contains the UID of the reserving user.
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"""
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if not args.quiet:
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print("process called with unexpected combo id %s and state 'Reserved'" % actor_name)
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exit(-1)
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def main(args):
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"""
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Python example actor
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This is an example how to use the `process` actor type to run a Python script.
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"""
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if args.verbose is not None:
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if args.verbose == 1:
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print("verbose output enabled")
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elif args.verbose == 2:
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print("loud output enabled!")
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elif args.verbose == 3:
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print("LOUD output enabled!!!")
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elif args.verbose > 4:
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print("Okay stop you're being ridiculous.")
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sys.exit(-2)
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else:
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args.verbose = 0
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# You could also check the actor name here and call different functions
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# depending on that variable instead of passing it to the state change
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# methods.
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new_state = args.state
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if new_state == "free":
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on_free(args, args.name)
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elif new_state == "inuse":
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on_use(args, args.name, args.userid)
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elif new_state == "tocheck":
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on_tocheck(args, args.name, args.userid)
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elif new_state == "blocked":
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on_blocked(args, args.name, args.userid)
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elif new_state == "disabled":
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on_disabled(args, args.name)
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elif new_state == "reserved":
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on_reserve(args, args.name, args.userid)
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else:
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print("Process actor called with unknown state %s" % new_state)
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if __name__ == "__main__":
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parser = argparse.ArgumentParser()
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# Parameters are passed to the Process actor as follows:
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# 1. the contents of params.args, split by whitespace as separate args
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# 2. the configured id of the actor (e.g. "DoorControl1")
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# 3. the new state as one of [free|inuse|tocheck|blocked|disabled|reserved]
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parser.add_argument("-q", "--quiet", help="be less verbose", action="store_true")
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parser.add_argument("-v", "--verbose", help="be more verbose", action="count")
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parser.add_argument("name",
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help="name of this actor as configured in bffh.dhall"
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)
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# We parse the new state using subparsers so that we only require a userid
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# in case it's a state that sets one.
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subparsers = parser.add_subparsers(required=True, dest="state")
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parser_free = subparsers.add_parser("free")
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parser_inuse = subparsers.add_parser("inuse")
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parser_inuse.add_argument("userid", help="The user that is now using the machine")
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parser_tocheck = subparsers.add_parser("tocheck")
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parser_tocheck.add_argument("userid", help="The user that should go check the machine")
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parser_blocked = subparsers.add_parser("blocked")
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parser_blocked.add_argument("userid", help="The user that marked the machine as blocked")
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parser_disabled = subparsers.add_parser("disabled")
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parser_reserved = subparsers.add_parser("reserved")
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parser_reserved.add_argument("userid", help="The user that reserved the machine")
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args = parser.parse_args()
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main(args)
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