Update import when source files don't have Name column
This commit is contained in:
+237
-217
@@ -197,57 +197,129 @@ class TimeAttendanceImportService:
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# Already a number
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distance_float = float(distance_value)
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# Validate reasonable range (0 to 100 miles)
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if distance_float < 0:
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# Validate the distance is reasonable (0 to 1000 miles)
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if 0 <= distance_float <= 1000:
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return distance_float
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else:
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if self.logger:
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self.logger.logger.warning(f"Negative distance value {distance_float} converted to positive")
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distance_float = abs(distance_float)
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if distance_float > 100:
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if self.logger:
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self.logger.logger.warning(f"Distance value {distance_float} exceeds 100 miles, may be invalid")
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return round(distance_float, 4) # Round to 4 decimal places
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self.logger.logger.warning(f"Distance value {distance_float} is out of reasonable range")
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return None
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except (ValueError, TypeError) as e:
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if self.logger:
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self.logger.logger.debug(f"Could not parse distance value '{distance_value}': {e}")
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self.logger.logger.warning(f"Could not parse distance value '{distance_value}': {e}")
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return None
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def _process_recorded_address(self, row):
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def _process_recorded_address(self, row) -> Optional[str]:
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"""
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Process recorded address field, handling Excel HYPERLINK formulas
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Process Recorded Address field from Excel - handles HYPERLINK formulas
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Args:
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row: DataFrame row containing the 'Recorded Address' column
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Returns:
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Parsed address string or None
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Cleaned address text, or None if not present/invalid
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"""
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recorded_address_value = row.get('Recorded Address')
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# Check if Recorded Address column exists
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if 'Recorded Address' not in row.index:
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return None
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address_value = row.get('Recorded Address')
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# Check if value exists and is not NaN
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if pd.notna(recorded_address_value):
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# Convert to string
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address_str = str(recorded_address_value).strip()
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if pd.isna(address_value):
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return None
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# Skip if empty or the string "nan"
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if not address_str or address_str.lower() == 'nan':
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return None
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# Parse HYPERLINK formula if present, or return raw value
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parsed_address = self._parse_excel_hyperlink(address_value)
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# Parse the value (handles both formulas and plain text)
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parsed_address = self._parse_excel_hyperlink(address_str)
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# Clean and return
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if parsed_address:
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return str(parsed_address).strip()
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else:
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return None
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if parsed_address and parsed_address.strip():
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if self.logger:
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self.logger.logger.debug(f"Processed Recorded Address: '{address_str[:60]}...' -> '{parsed_address}'")
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return parsed_address.strip()
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else:
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if self.logger:
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self.logger.logger.warning(f"Empty result after parsing Recorded Address: '{address_str[:60]}...'")
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return None
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def _generate_record_hash(self, record_data: Dict[str, Any]) -> str:
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"""
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Generate unique hash for a time attendance record
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return None
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Args:
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record_data: Dictionary containing record data
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Returns:
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SHA-256 hash string
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"""
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hash_string = (
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f"{record_data['employee_id']}-"
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f"{record_data['attendance_date']}-"
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f"{record_data['attendance_time']}-"
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f"{record_data['location_name']}-"
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f"{record_data['action_description']}"
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)
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return hashlib.sha256(hash_string.encode()).hexdigest()
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def _get_existing_record_hashes(self) -> set:
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"""
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Get hashes of all existing time attendance records
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Returns:
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Set of hash strings
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"""
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try:
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from models.time_attendance import TimeAttendance
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records = TimeAttendance.query.all()
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hashes = set()
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for record in records:
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record_data = {
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'employee_id': record.employee_id,
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'attendance_date': record.attendance_date,
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'attendance_time': record.attendance_time,
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'location_name': record.location_name,
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'action_description': record.action_description
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}
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hashes.add(self._generate_record_hash(record_data))
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return hashes
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except Exception as e:
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if self.logger:
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self.logger.logger.error(f"Failed to get existing record hashes: {e}")
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return set()
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def _get_existing_record_hashes_with_data(self) -> Dict[str, Dict]:
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"""
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Get hashes with corresponding record data for duplicate comparison
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Returns:
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Dictionary mapping hash to record data
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"""
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try:
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from models.time_attendance import TimeAttendance
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records = TimeAttendance.query.all()
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hash_map = {}
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for record in records:
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record_data = {
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'employee_id': record.employee_id,
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'employee_name': record.employee_name,
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'attendance_date': record.attendance_date,
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'attendance_time': record.attendance_time,
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'location_name': record.location_name,
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'action_description': record.action_description
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}
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record_hash = self._generate_record_hash(record_data)
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hash_map[record_hash] = record_data
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return hash_map
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except Exception as e:
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if self.logger:
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self.logger.logger.error(f"Failed to get existing record hashes with data: {e}")
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return {}
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def analyze_for_duplicates(self, file_path: str) -> Dict[str, Any]:
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"""
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@@ -351,7 +423,8 @@ class TimeAttendanceImportService:
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new_records_count += 1
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except Exception as e:
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analysis_result['errors'].append(f"Row {index + 2}: {str(e)}")
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if self.logger:
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self.logger.logger.warning(f"Error analyzing row {index + 2}: {e}")
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continue
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analysis_result['success'] = True
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@@ -407,34 +480,27 @@ class TimeAttendanceImportService:
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df = df.dropna(how='all')
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analysis_result['total_rows'] = len(df)
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# Process each row and collect invalid ones
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# Analyze each row
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invalid_list = []
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valid_count = 0
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for index, row in df.iterrows():
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row_errors = []
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row_data = {
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'employee_id': None,
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'employee_name': None,
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'attendance_date': None,
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'attendance_time': None,
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'location_name': None,
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'action_description': None
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'row_number': index + 2,
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'employee_id': self._clean_employee_id(row['ID']) if pd.notna(row['ID']) else None,
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}
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# Validate ID (required)
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# Check ID
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if pd.isna(row['ID']):
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row_errors.append('Missing ID')
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row_errors.append("Missing ID")
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else:
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# Clean the employee ID (handles float issues)
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row_data['employee_id'] = self._clean_employee_id(row['ID'])
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# Get Name (optional - lookup if not provided)
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if 'Name' in df.columns and pd.notna(row.get('Name')):
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row_data['employee_name'] = str(row['Name']).strip()
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elif row_data['employee_id']:
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# Lookup employee name from employee table using cleaned ID
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row_data['employee_name'] = self._get_employee_name(row_data['employee_id'])
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# Get employee name
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if 'Name' in df.columns and pd.notna(row.get('Name')):
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row_data['employee_name'] = str(row['Name']).strip()
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else:
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row_data['employee_name'] = self._get_employee_name(row_data['employee_id'])
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# Check and parse Date
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if pd.isna(row['Date']):
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@@ -718,36 +784,64 @@ class TimeAttendanceImportService:
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return import_results
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def _parse_time_field(self, time_value) -> time:
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"""Parse time field with multiple format support"""
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"""
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Parse various time formats from Excel
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Handles:
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- datetime.time objects
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- datetime.datetime objects
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- String formats (HH:MM, HH:MM:SS, HH:MM AM/PM)
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Args:
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time_value: Time value from Excel
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Returns:
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time object
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"""
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if pd.isna(time_value):
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raise ValueError("Time value is empty")
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# If already a time object
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if isinstance(time_value, time):
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return time_value
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time_str = str(time_value).strip()
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# If datetime object, extract time
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if isinstance(time_value, datetime):
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return time_value.time()
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time_formats = [
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'%H:%M:%S',
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'%H:%M',
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'%I:%M:%S %p',
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'%I:%M %p',
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]
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# If string, parse it
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if isinstance(time_value, str):
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time_str = time_value.strip()
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for fmt in time_formats:
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# Try parsing with pandas
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try:
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return datetime.strptime(time_str, fmt).time()
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except ValueError:
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continue
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dt = pd.to_datetime(time_str)
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return dt.time()
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except:
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# Try manual parsing for common formats
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try:
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# Format: HH:MM or HH:MM:SS
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parts = time_str.split(':')
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if len(parts) >= 2:
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hour = int(parts[0])
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minute = int(parts[1])
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second = int(parts[2]) if len(parts) > 2 else 0
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return time(hour, minute, second)
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except:
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pass
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try:
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return pd.to_datetime(time_value).time()
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except:
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pass
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raise ValueError(f"Unable to parse time value: {time_value}")
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raise ValueError(f"Could not parse time value: {time_value}")
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def _get_employee_name(self, employee_id: str) -> str:
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"""
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Get employee name from database, formatted as 'lastname, firstname'
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Args:
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employee_id: Employee ID to lookup
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Returns:
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Employee name in 'lastname, firstname' format
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"""
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try:
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from models.employee import Employee
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@@ -766,7 +860,8 @@ class TimeAttendanceImportService:
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# Now lookup the employee
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employee = Employee.get_by_employee_id(int(cleaned_id))
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if employee:
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return employee.full_name
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# Format name as "lastname, firstname"
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return f"{employee.lastName}, {employee.firstName}"
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else:
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if self.logger:
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self.logger.logger.warning(f"Employee ID {cleaned_id} not found in employee table")
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@@ -782,6 +877,15 @@ class TimeAttendanceImportService:
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return f"Employee {employee_id}"
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def _clean_employee_id(self, employee_id) -> str:
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"""
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Clean employee ID to handle various formats
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Args:
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employee_id: Raw employee ID value
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Returns:
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Cleaned employee ID string
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"""
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try:
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# Convert to string first
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id_str = str(employee_id).strip()
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@@ -799,123 +903,31 @@ class TimeAttendanceImportService:
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self.logger.logger.warning(f"Could not clean employee ID '{employee_id}': {e}")
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return str(employee_id).strip()
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def _generate_record_hash(self, record_data: Dict) -> str:
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"""Generate unique hash for a record to detect duplicates"""
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hash_string = (
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f"{record_data['employee_id']}_"
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f"{record_data['attendance_date']}_"
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f"{record_data['attendance_time']}_"
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f"{record_data['location_name']}_"
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f"{record_data['action_description']}"
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)
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return hashlib.md5(hash_string.encode()).hexdigest()
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def _get_existing_record_hashes(self) -> set:
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"""Get hashes of existing records (hash only)"""
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try:
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from models.time_attendance import TimeAttendance
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existing_records = TimeAttendance.query.all()
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hashes = set()
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for record in existing_records:
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record_data = {
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'employee_id': record.employee_id,
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'attendance_date': record.attendance_date,
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'attendance_time': record.attendance_time,
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'location_name': record.location_name,
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'action_description': record.action_description
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}
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hashes.add(self._generate_record_hash(record_data))
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return hashes
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except Exception as e:
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if self.logger:
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self.logger.logger.warning(f"Failed to get existing record hashes: {e}")
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return set()
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def _get_existing_record_hashes_with_data(self) -> Dict[str, Dict]:
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"""Get hashes with full existing record data for comparison"""
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try:
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from models.time_attendance import TimeAttendance
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existing_records = TimeAttendance.query.all()
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hash_map = {}
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for record in existing_records:
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record_data = {
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'employee_id': record.employee_id,
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'attendance_date': record.attendance_date,
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'attendance_time': record.attendance_time,
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'location_name': record.location_name,
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'action_description': record.action_description
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}
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record_hash = self._generate_record_hash(record_data)
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hash_map[record_hash] = {
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'id': record.id,
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'employee_id': record.employee_id,
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'employee_name': record.employee_name,
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'platform': record.platform,
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'attendance_date': record.attendance_date,
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'attendance_time': record.attendance_time,
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'location_name': record.location_name,
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'action_description': record.action_description,
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'event_description': record.event_description,
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'recorded_address': record.recorded_address,
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'distance': getattr(record, 'distance', None),
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'import_batch_id': record.import_batch_id,
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'import_date': record.import_date,
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'import_source': record.import_source
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}
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return hash_map
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except Exception as e:
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if self.logger:
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self.logger.logger.warning(f"Failed to get existing records with data: {e}")
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return {}
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def validate_excel_file(self, file_path: str) -> Dict[str, Any]:
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"""Enhanced Excel file validation with detailed analysis"""
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"""
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Validate Excel file structure and content before import
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Args:
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file_path: Path to the Excel file
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Returns:
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Dictionary containing validation results
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"""
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validation_results = {
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'valid': False,
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'total_rows': 0,
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'valid_rows': 0,
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'invalid_rows': 0,
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'columns': [],
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'sample_data': [],
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'errors': [],
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'warnings': [],
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'file_info': {}
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'total_rows': 0,
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'valid_rows': 0,
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'invalid_rows': 0
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}
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try:
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import os
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file_stats = os.stat(file_path)
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validation_results['file_info'] = {
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'size': file_stats.st_size,
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'size_mb': round(file_stats.st_size / (1024 * 1024), 2)
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}
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excel_file = pd.ExcelFile(file_path)
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sheet_name = excel_file.sheet_names[0]
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df = pd.read_excel(file_path, sheet_name=sheet_name)
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original_row_count = len(df)
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df = df.dropna(how='all')
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# Try to read the Excel file
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df = pd.read_excel(file_path)
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validation_results['total_rows'] = len(df)
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validation_results['columns'] = df.columns.tolist()
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if original_row_count > len(df):
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validation_results['warnings'].append(
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f"Removed {original_row_count - len(df)} completely empty rows"
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)
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sample_rows = df.head(5).to_dict('records')
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validation_results['sample_data'] = sample_rows
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# Define ONLY truly required columns (ID, Name, Date, Time, Location Name, Action Description)
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# Check required columns
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required_columns = ['ID', 'Date', 'Time', 'Location Name', 'Action Description']
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missing_columns = [col for col in required_columns if col not in df.columns]
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@@ -924,50 +936,59 @@ class TimeAttendanceImportService:
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f"Missing required columns: {', '.join(missing_columns)}"
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)
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# Count valid rows by checking if ALL required fields have values
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valid_row_count = 0
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invalid_row_details = []
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# Check optional columns
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optional_columns = ['Name', 'Platform', 'Event Description', 'Recorded Address', 'Distance']
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present_optional = [col for col in optional_columns if col in df.columns]
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for index, row in df.iterrows():
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is_valid = True
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missing_fields = []
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# Check each required column
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for col in required_columns:
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if col in df.columns:
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if pd.isna(row[col]):
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is_valid = False
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missing_fields.append(col)
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else:
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# Column doesn't exist in file
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is_valid = False
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missing_fields.append(f"{col} (column not found)")
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if is_valid:
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valid_row_count += 1
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else:
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# Track invalid row for detailed reporting
|
||||
invalid_row_details.append({
|
||||
'row': index + 2, # +2 for header and 0-based index
|
||||
'missing': missing_fields
|
||||
})
|
||||
|
||||
validation_results['valid_rows'] = valid_row_count
|
||||
validation_results['invalid_rows'] = len(df) - valid_row_count
|
||||
|
||||
if validation_results['invalid_rows'] > 0:
|
||||
# Provide detailed warning about invalid rows
|
||||
if present_optional:
|
||||
validation_results['warnings'].append(
|
||||
f"{validation_results['invalid_rows']} rows have missing required data"
|
||||
f"Optional columns found: {', '.join(present_optional)}"
|
||||
)
|
||||
|
||||
# Add details about first few invalid rows for debugging
|
||||
if invalid_row_details:
|
||||
sample_invalid = invalid_row_details[:3] # Show first 3 invalid rows
|
||||
details_msg = "Examples: "
|
||||
for detail in sample_invalid:
|
||||
details_msg += f"Row {detail['row']} (missing: {', '.join(detail['missing'])}); "
|
||||
validation_results['warnings'].append(details_msg.rstrip('; '))
|
||||
# Validate data in rows
|
||||
if not missing_columns:
|
||||
valid_row_count = 0
|
||||
invalid_row_details = []
|
||||
|
||||
for index, row in df.iterrows():
|
||||
is_valid = True
|
||||
missing_fields = []
|
||||
|
||||
for col in required_columns:
|
||||
if col in df.columns:
|
||||
if pd.isna(row[col]):
|
||||
is_valid = False
|
||||
missing_fields.append(col)
|
||||
else:
|
||||
# Column doesn't exist in file
|
||||
is_valid = False
|
||||
missing_fields.append(f"{col} (column not found)")
|
||||
|
||||
if is_valid:
|
||||
valid_row_count += 1
|
||||
else:
|
||||
# Track invalid row for detailed reporting
|
||||
invalid_row_details.append({
|
||||
'row': index + 2, # +2 for header and 0-based index
|
||||
'missing': missing_fields
|
||||
})
|
||||
|
||||
validation_results['valid_rows'] = valid_row_count
|
||||
validation_results['invalid_rows'] = len(df) - valid_row_count
|
||||
|
||||
if validation_results['invalid_rows'] > 0:
|
||||
# Provide detailed warning about invalid rows
|
||||
validation_results['warnings'].append(
|
||||
f"{validation_results['invalid_rows']} rows have missing required data"
|
||||
)
|
||||
|
||||
# Add details about first few invalid rows for debugging
|
||||
if invalid_row_details:
|
||||
sample_invalid = invalid_row_details[:3] # Show first 3 invalid rows
|
||||
details_msg = "Examples: "
|
||||
for detail in sample_invalid:
|
||||
details_msg += f"Row {detail['row']} (missing: {', '.join(detail['missing'])}); "
|
||||
validation_results['warnings'].append(details_msg.rstrip('; '))
|
||||
|
||||
if 'Date' in df.columns:
|
||||
invalid_dates = 0
|
||||
@@ -1131,4 +1152,3 @@ class TimeAttendanceImportService:
|
||||
self.logger.logger.error(f"Failed to delete batch {batch_id}: {e}")
|
||||
|
||||
return result
|
||||
|
||||
Reference in New Issue
Block a user