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be325dd90c
Author | SHA1 | Date |
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kostas | be325dd90c | |
kostas | d4f34c3190 |
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@ -6,7 +6,7 @@ namespace InnovEnergy.App.SchneiderDriver;
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public static class Config
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{
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public const String Version = "1.0";
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public const String BusName = "com.victronenergy.grid.Schnieder";
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public const String BusName = "com.victronenergy.grid";
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public const Byte ModbusNodeId = 1;
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public const String OwnAddress = "192.168.1.246";
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public const String PeerAddress = "192.168.1.82";
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@ -193,15 +193,18 @@ def update_state_from_dictionaries(current_warnings, current_alarms, node_number
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alarms_number_list = []
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for node_number in node_numbers:
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cnt = 0
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for alarm_value in current_alarms.values():
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for i, alarm_value in enumerate(current_alarms.values()):
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if int(list(current_alarms.keys())[i].split("/")[3]) == int(node_number):
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if alarm_value:
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cnt+=1
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alarms_number_list.append(cnt)
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warnings_number_list = []
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for node_number in node_numbers:
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cnt = 0
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for warning_value in current_warnings.values():
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for i, warning_value in enumerate(current_warnings.values()):
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if int(list(current_warnings.keys())[i].split("/")[3]) == int(node_number):
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if warning_value:
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cnt+=1
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warnings_number_list.append(cnt)
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@ -210,12 +213,16 @@ def update_state_from_dictionaries(current_warnings, current_alarms, node_number
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if any(changed_alarms.values()):
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for i, changed_alarm in enumerate(changed_alarms.values()):
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if changed_alarm and list(current_alarms.values())[i]:
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status_message["Alarms"].append(AlarmOrWarning(list(current_alarms.keys())[i],"System").to_dict())
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description = list(current_alarms.keys())[i].split("/")[-1]
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device_created = "Battery node " + list(current_alarms.keys())[i].split("/")[3]
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status_message["Alarms"].append(AlarmOrWarning(description, device_created).to_dict())
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if any(changed_warnings.values()):
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for i, changed_warning in enumerate(changed_warnings.values()):
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if changed_warning and list(current_warnings.values())[i]:
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status_message["Warnings"].append(AlarmOrWarning(list(current_warnings.keys())[i],"System").to_dict())
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description = list(current_warnings.keys())[i].split("/")[-1]
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device_created = "Battery node " + list(current_warnings.keys())[i].split("/")[3]
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status_message["Warnings"].append(AlarmOrWarning(description, device_created).to_dict())
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if any(current_alarms.values()):
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status_message["Status"]=2
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@ -242,6 +249,10 @@ def update_state_from_dictionaries(current_warnings, current_alarms, node_number
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previous_warnings = current_warnings.copy()
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previous_alarms = current_alarms.copy()
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#print("ALARMS LIST")
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#print(alarms_number_list)
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#print("WARNINGS LIST")
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#print(warnings_number_list)
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return status_message, alarms_number_list, warnings_number_list
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@ -492,8 +503,10 @@ def reset_batteries(modbus, batteries):
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alive = True # global alive flag, watchdog_task clears it, update_task sets it
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start_time = time.time()
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def create_update_task(modbus, service, batteries):
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global start_time
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# type: (Modbus, DBusService, Iterable[Battery]) -> Callable[[],bool]
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"""
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Creates an update task which runs the main update function
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@ -504,11 +517,13 @@ def create_update_task(modbus, service, batteries):
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csv_signals = signals.create_csv_signals(first(batteries).firmware_version)
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node_numbers = [battery.slave_address for battery in batteries]
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print("NODE NUMBERSSSSSSSSSSSSSSSSSSSSSSSSSSSSSSSSSSSS")
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warnings_signals, alarm_signals = signals.read_warning_and_alarm_flags()
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current_warnings = {}
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current_alarms = {}
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def update_task():
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global start_time
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# type: () -> bool
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global alive
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@ -523,11 +538,11 @@ def create_update_task(modbus, service, batteries):
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# Iterate over each node and signal to create rows in the new format
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for i, node in enumerate(node_numbers):
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for s in warnings_signals:
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signal_name = insert_id(s.name, i+1)
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signal_name = insert_id(s.name, node)
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value = s.get_value(statuses[i])
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current_warnings[signal_name] = value
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for s in alarm_signals:
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signal_name = insert_id(s.name, i+1)
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signal_name = insert_id(s.name, node)
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value = s.get_value(statuses[i])
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current_alarms[signal_name] = value
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@ -535,7 +550,11 @@ def create_update_task(modbus, service, batteries):
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publish_values_on_dbus(service, _signals, statuses)
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elapsed_time = time.time() - start_time
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if elapsed_time >= 30:
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create_csv_files(csv_signals, statuses, node_numbers, alarms_number_list, warnings_number_list)
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start_time = time.time()
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print("Elapsed time {:.2f} seconds".format(elapsed_time))
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upload_status_to_innovenergy(_socket, statuses)
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@ -548,7 +567,7 @@ def create_update_task(modbus, service, batteries):
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return update_task
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def manage_csv_files(directory_path, max_files=20):
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csv_files = [f for f in os.listdir(directory_path)]
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csv_files = [f for f in os.listdir(directory_path) if os.path.isfile(os.path.join(directory_path, f))]
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csv_files.sort(key=lambda x: os.path.getctime(os.path.join(directory_path, x)))
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# Remove oldest files if exceeds maximum
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while len(csv_files) > max_files:
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