created CalendarParser class
This commit is contained in:
parent
f239b4fb23
commit
e4c42de74c
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@ -13,6 +13,18 @@ import humanfriendly
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from pathlib import Path
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from pathlib import Path
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import argparse
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import argparse
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import textwrap
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import textwrap
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import logging
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def setup_logger(loglevel):
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"""Setup basic logging."""
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loglevel = getattr(logging, loglevel.upper(), None)
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if not isinstance(loglevel, int):
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raise ValueError('Invalid log level: %s' % loglevel)
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logging.basicConfig(filename='app.log', filemode='w', format='%(name)s - %(levelname)s - %(message)s')
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logger = logging.getLogger()
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logger.setLevel(loglevel)
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def parse_args():
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def parse_args():
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"""Parse command line arguments."""
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"""Parse command line arguments."""
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@ -39,6 +51,9 @@ def parse_toml(content):
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print(e)
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print(e)
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sys.exit(1) # Exit with error code
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sys.exit(1) # Exit with error code
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def calculate_event_hash(event):
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return hashlib.md5(json.dumps(event, sort_keys=True, cls=DateTimeEncoder).encode()).hexdigest()
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class DateTimeEncoder(json.JSONEncoder):
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class DateTimeEncoder(json.JSONEncoder):
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def default(self, o):
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def default(self, o):
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if isinstance(o, (dt.datetime, dt.timedelta)):
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if isinstance(o, (dt.datetime, dt.timedelta)):
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@ -50,29 +65,11 @@ class FileChangeHandler(FileSystemEventHandler):
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`FileChangeHandler` is a custom event handler for the
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`FileChangeHandler` is a custom event handler for the
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`watchdog.observers.Observer` class that handles file system events such as
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`watchdog.observers.Observer` class that handles file system events such as
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file modifications, deletions and creations.
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file modifications, deletions and creations.
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It inherits from `watchdog.events.FileSystemEventHandler` providing methods
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to handle these events: `on_modified`, `on_deleted`, and `on_created`. Each
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method is overridden for specific functionality when a file system event
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occurs.
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The class also includes a method `calculate_event_hash` that generates an
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MD5 hash for each event dictionary based on its contents. This is used to
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track changes in the events and determine if they have been modified or
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deleted.
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For example, when a file is modified:
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- It reads the content of the file, parses it into an event dictionary
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using `calendar_parser`.
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- Calculates the hash for the event and checks if there's already an
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existing event with the same UID in `event_list`.
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- If there is one, it compares the new hash with the old hash. If they
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differ, it prints that the event has been modified or deleted. Otherwise,
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it prints that the event hasn't been modified.
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For file deletion and creation, similar operations are performed but
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without comparison of hashes.
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"""
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"""
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def __init__(self, event_list):
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self.calendar_parser = CalendarParser() # Create an instance of CalendarParser
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self.event_list = event_list
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def on_modified(self, event):
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def on_modified(self, event):
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print(f"File modified: {event.src_path}")
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print(f"File modified: {event.src_path}")
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if not event.is_directory:
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if not event.is_directory:
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@ -84,7 +81,7 @@ class FileChangeHandler(FileSystemEventHandler):
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return
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return
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try:
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try:
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event_dict = calendar_parser(cal_str)
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event_dict = self.calendar_parser.parse_calendar(cal_str) # Use the instance to call parse_calendar method
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except Exception as i:
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except Exception as i:
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print("Failed to parse calendar event at: {}.\n Error:\n{}".format(event.src_path,i))
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print("Failed to parse calendar event at: {}.\n Error:\n{}".format(event.src_path,i))
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return
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return
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@ -110,7 +107,7 @@ class FileChangeHandler(FileSystemEventHandler):
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return
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return
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try:
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try:
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event_dict = calendar_parser(cal_str)
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event_dict = self.calendar_parser.parse_calendar(cal_str) # Use the instance to call parse_calendar method
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except Exception as i:
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except Exception as i:
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print("Failed to parse calendar event at: {}.\n Error:\n{}".format(event.src_path,i))
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print("Failed to parse calendar event at: {}.\n Error:\n{}".format(event.src_path,i))
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return
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return
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@ -119,175 +116,111 @@ class FileChangeHandler(FileSystemEventHandler):
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def handle_modified(self, old_event, event_dict, remove=False):
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def handle_modified(self, old_event, event_dict, remove=False):
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if not remove:
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if not remove:
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for i, old_event in enumerate(event_list):
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for i, old_event in enumerate(self.event_list):
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if old_event["uid"] == event_dict["uid"]:
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if old_event["uid"] == event_dict["uid"]:
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old_hash = old_event["hash"]
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old_hash = old_event["hash"]
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new_hash = self.calculate_event_hash(event_dict)
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new_hash = calculate_event_hash(event_dict)
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if new_hash != old_hash:
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if new_hash != old_hash:
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print("Event with UID {} has been modified or deleted".format(old_event["uid"]))
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print("Event with UID {} has been modified or deleted".format(old_event["uid"]))
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event_list[i] = event_dict
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self.event_list[i] = event_dict
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else:
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else:
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print("Event with UID {} hasn't been modified".format(old_event["uid"]))
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print("Event with UID {} hasn't been modified".format(old_event["uid"]))
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break
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break
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else:
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else:
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event_list.append(event_dict)
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self.event_list.append(event_dict)
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else: # If remove is True, remove the event from the list
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else: # If remove is True, remove the event from the list
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for i, old_event in enumerate(event_list):
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for i, old_event in enumerate(self.event_list):
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if old_event["uid"] == event_dict["uid"]:
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if old_event["uid"] == event_dict["uid"]:
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print("Event with UID {} has been deleted".format(old_event["uid"]))
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print("Event with UID {} has been deleted".format(old_event["uid"]))
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del event_list[i]
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del self.event_list[i]
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break
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break
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def calculate_event_hash(self, event):
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return hashlib.md5(json.dumps(event, sort_keys=True, cls=DateTimeEncoder).encode()).hexdigest()
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def generate_recurring_event_dates(dtstart, rrule):
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class RecurringEventGenerator:
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"""
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def __init__(self, dtstart, rrule):
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Generate recurring event dates based on a start date and an RRULE.
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self.dtstart = dtstart
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self.rrule = rrule
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This function takes in a start date (`dtstart`) and an RRULE (`rrule`),
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self.recur_info = {
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which is used to generate future dates according to the rules specified by
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the RRULE.
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If no count rule is present, it generates a date array from `dtstart` to
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the current datetime, then adds an arbitrary number of dates into the
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future (here it's 10). This is done because generating a date array using
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the rrulestr function without a count rule will return a very large number
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of elements.
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The function returns a dictionary containing information about the
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recurring event:
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- `recur_dates`: A list of future dates generated by the RRULE.
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- `infinite_recur`: Boolean indicating whether the recurrence is infinite.
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- `recur_freq`: The frequency of the recurrence (e.g., 'DAILY').
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- `recur_interval`: The interval between each occurrence of the event.
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- `n_recur_dates_left`: The number of future dates left.
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Parameters:
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dtstart (datetime): The start date of the recurring event.
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rrule (rrule): The RRULE object specifying the recurrence rules.
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Returns:
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dict: A dictionary containing information about the recurring event
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dates, frequency, interval and count.
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"""
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recur_info = {
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"recur_dates": [dtstart],
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"recur_dates": [dtstart],
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"infinite_recur": False,
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"infinite_recur": False,
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"recur_freq": None,
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"recur_freq": None,
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"recur_interval": None,
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"recur_interval": None,
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"n_recur_dates_left": None
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"n_recur_dates_left": None
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}
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if rrule is None:
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return recur_info
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rule_str = "RRULE:{}".format(rrule.to_ical().decode('utf-8'))
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start_date = dtstart
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infinite_recur = False
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freq = rrule.get('FREQ')[0]
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count = rrule.get("COUNT")
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interval = rrule.get('INTERVAL')[0]
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current_date = dt.datetime.now().replace(tzinfo=pytz.UTC)
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if count is None:# or until is not None:
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delta = None
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if freq == "DAILY":
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delta = relativedelta(days=interval)
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elif freq == "MONTHLY":
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delta = relativedelta(months=interval)
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elif freq == "YEARLY":
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delta = relativedelta(years=interval)
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count = 0
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origin_date = start_date
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while origin_date < current_date:
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count += interval
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origin_date += delta*interval
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rule_str += ";COUNT={}".format(count+10)
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infinite_recur = True
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ruleset = rrulestr(rule_str, dtstart=start_date)
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recur_dates = [None]
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n_recur = None
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dates = list(ruleset) # Generate future dates according to the rules
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recur_dates = [i for i in dates if i >= current_date]
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n_recur = "inf" if infinite_recur is True else len(recur_dates)
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recur_info["recur_dates"] = recur_dates
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recur_info["infinite_recur"] = infinite_recur
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recur_info["recur_freq"] = freq
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recur_info["recur_interval"] = interval
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recur_info["n_recur_dates_left"] = n_recur
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return recur_info
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def calendar_parser(cal_str):
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# Parse the calendar
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cal = Calendar.from_ical(cal_str)
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# Iterate over each event in the calendar
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for event in cal.walk('vevent'):
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event_info = {
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"uid": None,
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"dtstart": "",
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"exdate": [],
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"summary": None,
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"description": None,
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"location": None,
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"rrule": None
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}
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}
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# Catch errors for missing components
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for info in event_info:
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def generate(self):
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try:
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if self.rrule is None:
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event_info[info] = event[info]
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return self.recur_info
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except Exception:
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pass
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rule_str = "RRULE:{}".format(self.rrule.to_ical().decode('utf-8'))
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start_date = self.dtstart
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uid = str(event_info["uid"])
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infinite_recur = False
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dtstart = event_info["dtstart"].dt
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freq = self.rrule.get('FREQ')[0]
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exdates = event_info["exdate"]
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count = self.rrule.get("COUNT")
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if exdates is not []:
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interval = self.rrule.get('INTERVAL')[0]
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if isinstance(exdates, list):
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current_date = dt.datetime.now().replace(tzinfo=pytz.UTC)
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exdates = [i.dts.dt.replace(tzinfo=pytz.UTC) for i in exdates]
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else:
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if count is None:
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exdates = [exdates.dts[0].dt.replace(tzinfo=pytz.UTC)]
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delta = None
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summary = event["summary"]
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description = event_info["description"]
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if freq == "DAILY":
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location = event_info["location"]
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delta = relativedelta(days=interval)
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rrule = event_info["rrule"]
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elif freq == "MONTHLY":
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delta = relativedelta(months=interval)
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# Ensure dates are always as datetime
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elif freq == "YEARLY":
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if isinstance(dtstart, dt.datetime):
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delta = relativedelta(years=interval)
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dtstart = dtstart.replace(tzinfo=pytz.UTC)
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else:
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count = 0
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dtstart = dt.datetime.combine(dtstart, dt.time.min).replace(tzinfo=pytz.UTC)
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origin_date = start_date
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while origin_date < current_date:
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# Get recurring events if they exist
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count += interval
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recur_info = generate_recurring_event_dates(dtstart, rrule)
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origin_date += delta*interval
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event_dates = recur_info["recur_dates"]
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rule_str += ";COUNT={}".format(count+10)
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infinite_recur = True
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ruleset = rrulestr(rule_str, dtstart=start_date)
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recur_dates = [None]
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n_recur = None
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dates = list(ruleset) # Generate future dates according to the rules
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recur_dates = [i for i in dates if i >= current_date]
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n_recur = "inf" if infinite_recur is True else len(recur_dates)
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self.recur_info["recur_dates"] = recur_dates
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self.recur_info["infinite_recur"] = infinite_recur
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self.recur_info["recur_freq"] = freq
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self.recur_info["recur_interval"] = interval
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self.recur_info["n_recur_dates_left"] = n_recur
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return self.recur_info
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# Remove exdates
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class CalendarParser:
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event_dates = [i for i in event_dates if i not in exdates]
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def parse_calendar(self, cal_str):
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# Parse the calendar
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valarms = []
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cal = self.parse_icalendar(cal_str)
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for subcomponent in event.walk("valarm"):
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valarm = Event.from_ical(subcomponent.to_ical())
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# Iterate over each event in the calendar
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timedelta = valarm["trigger"].dt
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for event in cal.walk('vevent'):
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valarms.append(timedelta)
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event_dict = self.process_event(event)
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dtstart = self.dtstart_to_datetime(event_dict["dtstart"].dt)
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generator = RecurringEventGenerator(dtstart, event_dict["rrule"])
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recur_info = generator.generate()
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event_dates = self.remove_exdates(event_dict["exdate"], recur_info["recur_dates"])
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event_dict = {
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valarms = self.process_valarm(event)
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"uid": uid,
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event_dict = {
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"uid": str(event_dict["uid"]),
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"dtstart": dtstart,
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"dtstart": dtstart,
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"summary": summary,
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"summary": event_dict["summary"],
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"description": description,
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"description": event_dict["description"],
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"location": location,
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"location": event_dict["location"],
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"event_dates": event_dates,
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"event_dates": event_dates,
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"recur_info": "Recur freq: {}, Recur interval: {}, N dates left: {}".format(
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"recur_info": "Recur freq: {}, Recur interval: {}, N dates left: {}".format(
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recur_info["recur_freq"],
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recur_info["recur_freq"],
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),
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),
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"valarms": valarms,
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"valarms": valarms,
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"alert_history": []
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"alert_history": []
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}
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}
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new_hash = calculate_event_hash(event_dict) # Calculate the hash of the event dictionary
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event_dict["hash"] = new_hash # Store the hash in the event dictionary
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return event_dict
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def parse_icalendar(self, cal_str):
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return Calendar.from_ical(cal_str)
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def process_event(self, event):
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# Catch errors for missing components
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event_info = {
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"uid": None,
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"dtstart": "",
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"exdate": [],
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"summary": None,
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"description": None,
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"location": None,
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"rrule": None
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}
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for info in event_info:
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try:
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event_info[info] = event[info]
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except Exception:
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pass
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return event_info
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def dtstart_to_datetime(self, dtstart):
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# Ensure dates are always as datetime
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if isinstance(dtstart, dt.datetime):
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return dtstart.replace(tzinfo=pytz.UTC)
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else:
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return dt.datetime.combine(dtstart, dt.time.min).replace(tzinfo=pytz.UTC)
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handler = FileChangeHandler() # Create an instance of the FileChangeHandler class
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def remove_exdates(self, exdates, recur_dates):
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new_hash = handler.calculate_event_hash(event_dict) # Calculate the hash of the event dictionary
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if exdates != []:
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event_dict["hash"] = new_hash # Store the hash in the event dictionary
|
if isinstance(exdates, list):
|
||||||
return event_dict
|
exdates = [i.dts[0].dt.replace(tzinfo=pytz.UTC) for i in exdates]
|
||||||
|
else:
|
||||||
|
exdates = [exdates.dts[0].dt.replace(tzinfo=pytz.UTC)]
|
||||||
|
return [i for i in recur_dates if i not in exdates]
|
||||||
|
else:
|
||||||
|
return recur_dates
|
||||||
|
|
||||||
|
def process_valarm(self, event):
|
||||||
|
valarms = []
|
||||||
|
for subcomponent in event.walk("valarm"):
|
||||||
|
valarm = Event.from_ical(subcomponent.to_ical())
|
||||||
|
timedelta = valarm["trigger"].dt
|
||||||
|
valarms.append(timedelta)
|
||||||
|
return valarms
|
||||||
|
|
||||||
def get_next_alert(event, current_time):
|
def get_next_alert(event, current_time):
|
||||||
|
"""
|
||||||
|
This function returns the next alert that should be processed based on the current time.
|
||||||
|
"""
|
||||||
event_dates = event["event_dates"]
|
event_dates = event["event_dates"]
|
||||||
valarm_deltas = event["valarms"]
|
valarm_deltas = event["valarms"]
|
||||||
if event_dates == [] or current_time > event_dates[-1]:
|
if event_dates == [] or event_dates is None or current_time > event_dates[-1]:
|
||||||
return None, None
|
return None, None
|
||||||
next_event = [i for i in event_dates if i >= current_time][0]
|
next_event = [i for i in event_dates if i >= current_time][0]
|
||||||
next_alert_list = [next_event + i for i in valarm_deltas]
|
next_alert_list = [next_event + i for i in valarm_deltas]
|
||||||
|
@ -314,6 +296,9 @@ def get_next_alert(event, current_time):
|
||||||
return next_alert - dt.timedelta(seconds=5), next_event
|
return next_alert - dt.timedelta(seconds=5), next_event
|
||||||
|
|
||||||
def process_alert(current_time, next_alert, next_event, event, config):
|
def process_alert(current_time, next_alert, next_event, event, config):
|
||||||
|
"""
|
||||||
|
This function processes a given alert and passes it to a messaging client.
|
||||||
|
"""
|
||||||
if current_time >= next_alert and next_alert < next_alert + dt.timedelta(seconds=15):
|
if current_time >= next_alert and next_alert < next_alert + dt.timedelta(seconds=15):
|
||||||
if len(event["alert_history"]) == 0:
|
if len(event["alert_history"]) == 0:
|
||||||
print("First alert for '{}' detected".format(event["summary"]))
|
print("First alert for '{}' detected".format(event["summary"]))
|
||||||
|
@ -330,24 +315,35 @@ def process_alert(current_time, next_alert, next_event, event, config):
|
||||||
f.write(str(event)) # write expects a str not dict
|
f.write(str(event)) # write expects a str not dict
|
||||||
return
|
return
|
||||||
|
|
||||||
def create_event_list(files):
|
def main():
|
||||||
|
# Parse args and config
|
||||||
|
args = parse_args()
|
||||||
|
content = read_file(args.config)
|
||||||
|
config = parse_toml(content)
|
||||||
|
|
||||||
|
# Get calendar dir
|
||||||
|
cal_dir = Path(config["app"]["calendar_dir"])
|
||||||
|
if not cal_dir.is_dir():
|
||||||
|
print(f"The provided path to .ics files does not exist: '{cal_dir}'")
|
||||||
|
sys.exit(1) # Exit with error code
|
||||||
|
|
||||||
|
#Parse calendar events
|
||||||
|
calendar_parser = CalendarParser()
|
||||||
|
files = list(cal_dir.glob('*.ics'))
|
||||||
event_list = [] # List to hold dictionaries for each event
|
event_list = [] # List to hold dictionaries for each event
|
||||||
for file in files:
|
for file in files:
|
||||||
with open(file, 'r') as f:
|
with open(file, 'r') as f:
|
||||||
cal_str = f.read()
|
cal_str = f.read()
|
||||||
event_dict = calendar_parser(cal_str)
|
event_dict = calendar_parser.parse_calendar(cal_str)
|
||||||
event_list.append(event_dict)
|
event_list.append(event_dict)
|
||||||
return event_list
|
|
||||||
|
|
||||||
def start_observer(cal_dir):
|
#Start file handler to detect changes to calendar dir
|
||||||
observer = Observer()
|
observer = Observer()
|
||||||
handler = FileChangeHandler()
|
handler = FileChangeHandler(event_list) # Pass event_list here
|
||||||
observer.schedule(handler, cal_dir, recursive=True)
|
observer.schedule(handler, cal_dir, recursive=True)
|
||||||
observer.start()
|
observer.start()
|
||||||
return observer
|
|
||||||
|
|
||||||
def main_loop(event_list, config, cal_dir):
|
#Start main loop
|
||||||
observer = start_observer(cal_dir)
|
|
||||||
try:
|
try:
|
||||||
while True:
|
while True:
|
||||||
with open("status", 'w') as f:
|
with open("status", 'w') as f:
|
||||||
|
@ -380,21 +376,5 @@ def main_loop(event_list, config, cal_dir):
|
||||||
observer.stop()
|
observer.stop()
|
||||||
observer.join()
|
observer.join()
|
||||||
|
|
||||||
# Main script execution starts here
|
|
||||||
def main():
|
|
||||||
args = parse_args()
|
|
||||||
print(args)
|
|
||||||
content = read_file(args.config)
|
|
||||||
config = parse_toml(content)
|
|
||||||
|
|
||||||
cal_dir = Path(config["app"]["calendar_dir"])
|
|
||||||
if not cal_dir.is_dir():
|
|
||||||
print(f"The provided path to .ics files does not exist: '{cal_dir}'")
|
|
||||||
sys.exit(1) # Exit with error code
|
|
||||||
|
|
||||||
files = list(cal_dir.glob('*.ics'))
|
|
||||||
event_list = create_event_list(files)
|
|
||||||
main_loop(event_list, config, cal_dir)
|
|
||||||
|
|
||||||
if __name__ == "__main__":
|
if __name__ == "__main__":
|
||||||
main()
|
main()
|
||||||
|
|
Loading…
Reference in New Issue