mirror of
https://github.com/MacRimi/ProxMenux.git
synced 2025-11-18 03:26:17 +00:00
Update flask_server.py
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@@ -706,21 +706,6 @@ def get_storage_info():
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def get_smart_data(disk_name):
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"""Get SMART data for a specific disk - Enhanced with multiple device type attempts"""
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# --- Helpers internos ---
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def _normalize_disk_path(disk_name: str) -> str:
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"""Si es NVMe, usa /dev/nvmeX en lugar de /dev/nvmeXn1"""
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if disk_name.startswith('nvme') and 'n' in disk_name:
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base = disk_name.split('n', 1)[0] # nvme0n1 -> nvme0
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return f'/dev/{base}'
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return f'/dev/{disk_name}'
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def _to_int(s, default=None):
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"""Convierte a entero tolerando comas, espacios o hex"""
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try:
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return int(str(s).replace(',', '').replace('+', '').strip(), 0)
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except Exception:
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return default
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smart_data = {
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'temperature': 0,
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'health': 'unknown',
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@@ -742,18 +727,24 @@ def get_smart_data(disk_name):
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print(f"[v0] ===== Starting SMART data collection for /dev/{disk_name} =====")
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devpath = _normalize_disk_path(disk_name)
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try:
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commands_to_try = [
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['smartctl', '-a', '-j', devpath],
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['smartctl', '-a', '-j', '-d', 'ata', devpath],
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['smartctl', '-a', f'{devpath}'],
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...
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['smartctl', '-a', '-j', f'/dev/{disk_name}'], # JSON output (preferred)
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['smartctl', '-a', '-j', '-d', 'ata', f'/dev/{disk_name}'], # JSON with ATA device type
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['smartctl', '-a', '-j', '-d', 'sat', f'/dev/{disk_name}'], # JSON with SAT device type
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['smartctl', '-a', f'/dev/{disk_name}'], # Text output (fallback)
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['smartctl', '-a', '-d', 'ata', f'/dev/{disk_name}'], # Text with ATA device type
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['smartctl', '-a', '-d', 'sat', f'/dev/{disk_name}'], # Text with SAT device type
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['smartctl', '-i', '-H', '-A', f'/dev/{disk_name}'], # Info + Health + Attributes
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['smartctl', '-i', '-H', '-A', '-d', 'ata', f'/dev/{disk_name}'], # With ATA
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['smartctl', '-i', '-H', '-A', '-d', 'sat', f'/dev/{disk_name}'], # With SAT
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['smartctl', '-a', '-j', '-d', 'scsi', f'/dev/{disk_name}'], # JSON with SCSI device type
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['smartctl', '-a', '-j', '-d', 'sat,12', f'/dev/{disk_name}'], # SAT with 12-byte commands
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['smartctl', '-a', '-j', '-d', 'sat,16', f'/dev/{disk_name}'], # SAT with 16-byte commands
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['smartctl', '-a', '-d', 'sat,12', f'/dev/{disk_name}'], # Text SAT with 12-byte commands
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['smartctl', '-a', '-d', 'sat,16', f'/dev/{disk_name}'], # Text SAT with 16-byte commands
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]
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process = None # Initialize process to None
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for cmd_index, cmd in enumerate(commands_to_try):
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print(f"[v0] Attempt {cmd_index + 1}/{len(commands_to_try)}: Running command: {' '.join(cmd)}")
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@@ -813,31 +804,6 @@ def get_smart_data(disk_name):
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if 'nvme_smart_health_information_log' in data:
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print(f"[v0] Parsing NVMe SMART data...")
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nvme_data = data['nvme_smart_health_information_log']
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if 'available_spare' in nvme_data:
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smart_data['available_spare'] = nvme_data['available_spare']
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print(f"[v0] NVMe Available Spare: {smart_data['available_spare']}%")
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if 'available_spare_threshold' in nvme_data:
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smart_data['available_spare_threshold'] = nvme_data['available_spare_threshold']
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print(f"[v0] NVMe Spare Threshold: {smart_data['available_spare_threshold']}%")
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if 'critical_warning' in nvme_data:
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cw = nvme_data['critical_warning']
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if cw != 0:
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print(f"[v0] NVMe Critical Warning: {cw}")
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smart_data['health'] = 'critical'
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if 'percentage_used' in nvme_data:
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smart_data['percentage_used'] = nvme_data['percentage_used']
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print(f"[v0] NVMe Percentage Used: {smart_data['percentage_used']}%")
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if 'data_units_written' in nvme_data:
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du = _to_int(nvme_data['data_units_written'], 0)
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total_gb = (du * 512000) / (1024 ** 3) # 1 data unit = 512000 bytes
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smart_data['total_lbas_written'] = round(total_gb, 2)
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print(f"[v0] NVMe Total Data Written: {smart_data['total_lbas_written']} GB")
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if 'temperature' in nvme_data:
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smart_data['temperature'] = nvme_data['temperature']
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print(f"[v0] NVMe Temperature: {smart_data['temperature']}°C")
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@@ -862,9 +828,9 @@ def get_smart_data(disk_name):
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if 'ata_smart_attributes' in data and 'table' in data['ata_smart_attributes']:
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print(f"[v0] Parsing ATA SMART attributes...")
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for attr in data['ata_smart_attributes']['table']:
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attr_id = _to_int(attr.get('id'))
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attr_id = attr.get('id')
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raw_value = attr.get('raw', {}).get('value', 0)
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normalized_value = _to_int(attr.get('value', 100))
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normalized_value = attr.get('value', 0) # Normalized value (0-100)
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if attr_id == 9: # Power_On_Hours
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smart_data['power_on_hours'] = raw_value
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@@ -889,26 +855,25 @@ def get_smart_data(disk_name):
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elif attr_id == 199: # UDMA_CRC_Error_Count
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smart_data['crc_errors'] = raw_value
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print(f"[v0] CRC Errors (ID 199): {smart_data['crc_errors']}")
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elif attr_id == 233: # Media_Wearout_Indicator
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elif attr_id == '233': # Media_Wearout_Indicator (Intel/Samsung SSD)
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# Valor normalizado: 100 = nuevo, 0 = gastado
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# Invertimos para mostrar desgaste: 0% = nuevo, 100% = gastado
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smart_data['media_wearout_indicator'] = 100 - normalized_value
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print(f"[v0] Media Wearout Indicator (ID 233): {smart_data['media_wearout_indicator']}% used")
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elif attr_id == 177: # Wear_Leveling_Count
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elif attr_id == '177': # Wear_Leveling_Count
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# Valor normalizado: 100 = nuevo, 0 = gastado
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smart_data['wear_leveling_count'] = 100 - normalized_value
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print(f"[v0] Wear Leveling Count (ID 177): {smart_data['wear_leveling_count']}% used")
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elif attr_id in (202, 231): # SSD_Life_Left
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elif attr_id == '202': # Percentage_Lifetime_Remain (algunos fabricantes)
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# Valor normalizado: 100 = nuevo, 0 = gastado
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smart_data['ssd_life_left'] = normalized_value
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print(f"[v0] SSD Life Left (ID {attr_id}): {smart_data['ssd_life_left']}%")
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elif attr_id == 241: # Total_LBAs_Written
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raw_int = _to_int(raw_value)
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if raw_int is not None:
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total_gb = (raw_int * 512) / (1024 ** 3)
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smart_data['total_lbas_written'] = round(total_gb, 2)
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print(f"[v0] Total LBAs Written (ID 241): {smart_data['total_lbas_written']} GB")
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print(f"[v0] SSD Life Left (ID 202): {smart_data['ssd_life_left']}%")
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elif attr_id == '231': # SSD_Life_Left (algunos fabricantes)
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smart_data['ssd_life_left'] = normalized_value
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print(f"[v0] SSD Life Left (ID 231): {smart_data['ssd_life_left']}%")
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elif attr_id == '241': # Total_LBAs_Written
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# Convertir a GB (raw_value es en sectores de 512 bytes)
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# Corrected the conversion for Total_LBAs_Written (ID 241)
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try:
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raw_int = int(raw_value.replace(',', ''))
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total_gb = (raw_int * 512) / (1024 * 1024 * 1024)
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@@ -1034,21 +999,24 @@ def get_smart_data(disk_name):
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elif attr_id == '199': # CRC Errors
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smart_data['crc_errors'] = int(raw_value)
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print(f"[v0] CRC Errors: {smart_data['crc_errors']}")
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elif attr_id == 233: # Media_Wearout_Indicator (Intel/Samsung SSD)
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normalized_value = _to_int(parts[3], 100)
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elif attr_id == '233': # Media_Wearout_Indicator (Intel/Samsung SSD)
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normalized_value = int(parts[3]) if len(parts) > 3 else 100
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smart_data['media_wearout_indicator'] = 100 - normalized_value
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print(f"[v0] Media Wearout Indicator (ID 233): {smart_data['media_wearout_indicator']}% used")
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elif attr_id == 177: # Wear_Leveling_Count
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normalized_value = _to_int(parts[3], 100)
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elif attr_id == '177': # Wear_Leveling_Count
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# Valor normalizado: 100 = nuevo, 0 = gastado
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normalized_value = int(parts[3]) if len(parts) > 3 else 100
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smart_data['wear_leveling_count'] = 100 - normalized_value
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print(f"[v0] Wear Leveling Count (ID 177): {smart_data['wear_leveling_count']}% used")
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elif attr_id in (202, 231): # SSD_Life_Left (algunos fabricantes)
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normalized_value = _to_int(parts[3], 100)
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elif attr_id == '202': # Percentage_Lifetime_Remain (algunos fabricantes)
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# Valor normalizado: 100 = nuevo, 0 = gastado
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normalized_value = int(parts[3]) if len(parts) > 3 else 100
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smart_data['ssd_life_left'] = normalized_value
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print(f"[v0] SSD Life Left (ID {attr_id}): {smart_data['ssd_life_left']}%")
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print(f"[v0] SSD Life Left (ID 202): {smart_data['ssd_life_left']}%")
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elif attr_id == '231': # SSD_Life_Left (algunos fabricantes)
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normalized_value = int(parts[3]) if len(parts) > 3 else 100
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smart_data['ssd_life_left'] = normalized_value
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print(f"[v0] SSD Life Left (ID 231): {smart_data['ssd_life_left']}%")
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elif attr_id == '241': # Total_LBAs_Written
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# Convertir a GB (raw_value es en sectores de 512 bytes)
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try:
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