460 lines
16 KiB
Python
Executable File
460 lines
16 KiB
Python
Executable File
#!/usr/bin/env python3
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import argparse
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import configparser
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import dbus
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import glob
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import os
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import psutil
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import struct
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import subprocess
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import sys
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from collections import defaultdict
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from dbus.mainloop.glib import DBusGMainLoop
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from errno import EACCES, EPERM
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from gi.repository import GLib
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from mmio import MMIO, MMIOError
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from multiprocessing import cpu_count
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from threading import Event, Thread
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DEFAULT_SYSFS_POWER_PATH = '/sys/class/power_supply/AC*/online'
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VOLTAGE_PLANES = {
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'CORE': 0,
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'GPU': 1,
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'CACHE': 2,
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'UNCORE': 3,
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'ANALOGIO': 4,
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}
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TRIP_TEMP_RANGE = [40, 97]
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power = {'source': None, 'method': 'polling'}
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platform_info_bits = {
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'maximum_non_turbo_ratio': [8, 15],
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'maximum_efficiency_ratio': [40, 47],
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'minimum_operating_ratio': [48, 55],
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'feature_ppin_cap': [23, 23],
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'feature_programmable_turbo_ratio': [28, 28],
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'feature_programmable_tdp_limit': [29, 29],
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'number_of_additional_tdp_profiles': [33, 34],
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'feature_programmable_temperature_target': [30, 30],
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'feature_low_power_mode': [32, 32]
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}
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thermal_status_bits = {
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'thermal_limit_status': [0, 0],
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'thermal_limit_log': [1, 1],
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'prochot_or_forcepr_status': [2, 2],
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'prochot_or_forcepr_log': [3, 3],
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'crit_temp_status': [4, 4],
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'crit_temp_log': [5, 5],
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'thermal_threshold1_status': [6, 6],
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'thermal_threshold1_log': [7, 7],
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'thermal_threshold2_status': [8, 8],
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'thermal_threshold2_log': [9, 9],
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'power_limit_status': [10, 10],
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'power_limit_log': [11, 11],
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'current_limit_status': [12, 12],
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'current_limit_log': [13, 13],
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'cross_domain_limit_status': [14, 14],
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'cross_domain_limit_log': [15, 15],
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'cpu_temp': [16, 22],
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'temp_resolution': [27, 30],
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'reading_valid': [31, 31],
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}
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class bcolors:
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GREEN = '\033[92m'
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RED = '\033[91m'
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RESET = '\033[0m'
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BOLD = '\033[1m'
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OK = bcolors.GREEN + bcolors.BOLD + 'OK' + bcolors.RESET
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ERR = bcolors.RED + bcolors.BOLD + 'ERR' + bcolors.RESET
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def writemsr(msr, val):
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msr_list = ['/dev/cpu/{:d}/msr'.format(x) for x in range(cpu_count())]
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if not os.path.exists(msr_list[0]):
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try:
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subprocess.check_call(('modprobe', 'msr'))
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except subprocess.CalledProcessError:
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print('[E] Unable to load the msr module.')
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sys.exit(1)
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try:
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for addr in msr_list:
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f = os.open(addr, os.O_WRONLY)
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os.lseek(f, msr, os.SEEK_SET)
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os.write(f, struct.pack('Q', val))
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os.close(f)
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except (IOError, OSError) as e:
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if e.errno == EPERM or e.errno == EACCES:
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print('[E] Unable to write to MSR. Try to disable Secure Boot.')
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sys.exit(1)
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else:
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raise e
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# returns the value between from_bit and to_bit as unsigned long
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def readmsr(msr, from_bit=0, to_bit=63, cpu=None, flatten=False):
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assert cpu is None or cpu in range(cpu_count())
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if from_bit > to_bit:
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print('[E] Wrong readmsr bit params')
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sys.exit(1)
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msr_list = ['/dev/cpu/{:d}/msr'.format(x) for x in range(cpu_count())]
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if not os.path.exists(msr_list[0]):
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try:
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subprocess.check_call(('modprobe', 'msr'))
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except subprocess.CalledProcessError:
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print('[E] Unable to load the msr module.')
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sys.exit(1)
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try:
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output = []
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for addr in msr_list:
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f = os.open(addr, os.O_RDONLY)
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os.lseek(f, msr, os.SEEK_SET)
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val = struct.unpack('Q', os.read(f, 8))[0]
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os.close(f)
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output.append(get_value_for_bits(val, from_bit, to_bit))
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if flatten:
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return output[0] if len(set(output)) == 1 else output
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return output[cpu] if cpu is not None else output
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except (IOError, OSError) as e:
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if e.errno == EPERM or e.errno == EACCES:
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print('[E] Unable to read from MSR. Try to disable Secure Boot.')
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sys.exit(1)
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else:
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raise e
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def get_value_for_bits(val, from_bit=0, to_bit=63):
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mask = sum(2**x for x in range(from_bit, to_bit + 1))
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return (val & mask) >> from_bit
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def is_on_battery(config):
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try:
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for path in glob.glob(config.get('Sysfs_Power_Path', 'GENERAL', fallback=DEFAULT_SYSFS_POWER_PATH)):
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with open(path) as f:
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return not bool(int(f.read()))
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except:
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pass
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print('[E] No valid Sysfs_Power_Path found!')
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sys.exit(1)
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def get_cpu_platform_info():
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features_msr_value = readmsr(0xce, cpu=0)
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cpu_platform_info = {}
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for key, value in platform_info_bits.items():
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cpu_platform_info[key] = int(get_value_for_bits(features_msr_value, value[0], value[1]))
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return cpu_platform_info
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def get_reset_thermal_status():
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# read thermal status
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thermal_status_msr_value = readmsr(0x19c)
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thermal_status = []
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for core in range(cpu_count()):
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thermal_status_core = {}
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for key, value in thermal_status_bits.items():
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thermal_status_core[key] = int(get_value_for_bits(thermal_status_msr_value[core], value[0], value[1]))
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thermal_status.append(thermal_status_core)
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# reset log bits
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writemsr(0x19c, 0)
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return thermal_status
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def get_time_unit():
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# 0.000977 is the time unit of my CPU
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# TODO formula might be different for other CPUs
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return 1.0 / 2**readmsr(0x606, 16, 19, cpu=0)
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def get_power_unit():
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# 0.125 is the power unit of my CPU
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# TODO formula might be different for other CPUs
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return 1.0 / 2**readmsr(0x606, 0, 3, cpu=0)
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def get_critical_temp():
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# the critical temperature for my CPU is 100 'C
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return readmsr(0x1a2, 16, 23, cpu=0)
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def calc_time_window_vars(t):
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time_unit = get_time_unit()
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for Y in range(2**5):
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for Z in range(2**2):
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if t <= (2**Y) * (1. + Z / 4.) * time_unit:
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return (Y, Z)
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raise ValueError('Unable to find a good combination!')
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def calc_undervolt_msr(plane, offset):
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"""Return the value to be written in the MSR 150h for setting the given
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offset voltage (in mV) to the given voltage plane.
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"""
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assert offset <= 0
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assert plane in VOLTAGE_PLANES
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offset = int(round(offset * 1.024))
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offset = 0xFFE00000 & ((offset & 0xFFF) << 21)
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return 0x8000001100000000 | (VOLTAGE_PLANES[plane] << 40) | offset
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def calc_undervolt_mv(msr_value):
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"""Return the offset voltage (in mV) from the given raw MSR 150h value.
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"""
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offset = (msr_value & 0xFFE00000) >> 21
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offset = offset if offset <= 0x400 else -(0x800 - offset)
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return int(round(offset / 1.024))
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def undervolt(config):
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for plane in VOLTAGE_PLANES:
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write_offset_mv = config.getfloat('UNDERVOLT', plane)
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write_value = calc_undervolt_msr(plane, write_offset_mv)
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writemsr(0x150, write_value)
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if args.debug:
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write_value &= 0xFFFFFFFF
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writemsr(0x150, 0x8000001000000000 | (VOLTAGE_PLANES[plane] << 40))
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read_value = readmsr(0x150, flatten=True)
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read_offset_mv = calc_undervolt_mv(read_value)
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match = OK if write_value == read_value else ERR
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print('[D] Undervolt plane {:s} - write {:.0f} mV ({:#x}) - read {:.0f} mV ({:#x}) - match {}'.format(
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plane, write_offset_mv, write_value, read_offset_mv, read_value, match))
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def load_config():
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config = configparser.ConfigParser()
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config.read(args.config)
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# config values sanity check
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for power_source in ('AC', 'BATTERY'):
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for option in (
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'Update_Rate_s',
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'PL1_Tdp_W',
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'PL1_Duration_s',
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'PL2_Tdp_W',
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'PL2_Duration_S',
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):
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config.set(power_source, option, str(max(0.1, config.getfloat(power_source, option))))
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trip_temp = config.getfloat(power_source, 'Trip_Temp_C')
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valid_trip_temp = min(TRIP_TEMP_RANGE[1], max(TRIP_TEMP_RANGE[0], trip_temp))
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if trip_temp != valid_trip_temp:
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config.set(power_source, 'Trip_Temp_C', str(valid_trip_temp))
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print('[!] Overriding invalid "Trip_Temp_C" value in "{:s}": {:.1f} -> {:.1f}'.format(
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power_source, trip_temp, valid_trip_temp))
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for plane in VOLTAGE_PLANES:
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value = config.getfloat('UNDERVOLT', plane)
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valid_value = min(0, value)
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if value != valid_value:
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config.set('UNDERVOLT', plane, str(valid_value))
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print('[!] Overriding invalid "UNDERVOLT" value in "{:s}" voltage plane: {:.0f} -> {:.0f}'.format(
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plane, value, valid_value))
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return config
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def calc_reg_values(platform_info, config):
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regs = defaultdict(dict)
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for power_source in ('AC', 'BATTERY'):
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if platform_info['feature_programmable_temperature_target'] != 1:
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print("[W] Setting temperature target is not supported by this CPU")
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else:
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# the critical temperature for my CPU is 100 'C
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critical_temp = get_critical_temp()
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# update the allowed temp range to keep at least 3 'C from the CPU critical temperature
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global TRIP_TEMP_RANGE
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TRIP_TEMP_RANGE[1] = min(TRIP_TEMP_RANGE[1], critical_temp - 3)
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trip_offset = int(round(critical_temp - config.getfloat(power_source, 'Trip_Temp_C')))
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regs[power_source]['MSR_TEMPERATURE_TARGET'] = trip_offset << 24
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power_unit = get_power_unit()
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PL1 = int(round(config.getfloat(power_source, 'PL1_Tdp_W') / power_unit))
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Y, Z = calc_time_window_vars(config.getfloat(power_source, 'PL1_Duration_s'))
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TW1 = Y | (Z << 5)
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PL2 = int(round(config.getfloat(power_source, 'PL2_Tdp_W') / power_unit))
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Y, Z = calc_time_window_vars(config.getfloat(power_source, 'PL2_Duration_s'))
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TW2 = Y | (Z << 5)
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regs[power_source]['MSR_PKG_POWER_LIMIT'] = PL1 | (1 << 15) | (TW1 << 17) | (PL2 << 32) | (1 << 47) | (
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TW2 << 49)
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# cTDP
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c_tdp_target_value = config.getint(power_source, 'cTDP', fallback=None)
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if c_tdp_target_value is not None:
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if platform_info['feature_programmable_tdp_limit'] != 1:
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print("[W] cTDP setting not supported by this CPU")
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elif platform_info['number_of_additional_tdp_profiles'] < c_tdp_target_value:
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print("[W] the configured cTDP profile is not supported by this CPU")
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else:
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valid_c_tdp_target_value = max(0, c_tdp_target_value)
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regs[power_source]['MSR_CONFIG_TDP_CONTROL'] = valid_c_tdp_target_value
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return regs
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def set_hwp(pref):
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# set HWP energy performance hints
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assert pref in ('performance', 'balance_performance', 'default', 'balance_power', 'power')
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CPUs = [
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'/sys/devices/system/cpu/cpu{:d}/cpufreq/energy_performance_preference'.format(x) for x in range(cpu_count())
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]
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for i, c in enumerate(CPUs):
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with open(c, 'wb') as f:
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f.write(pref.encode())
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if args.debug:
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with open(c) as f:
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read_value = f.read().strip()
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match = OK if pref == read_value else ERR
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print('[D] HWP for cpu{:d} - write "{:s}" - read "{:s}" - match {}'.format(i, pref, read_value, match))
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def power_thread(config, regs, exit_event):
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try:
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mchbar_mmio = MMIO(0xfed159a0, 8)
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except MMIOError:
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print('[E] Unable to open /dev/mem. Try to disable Secure Boot.')
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sys.exit(1)
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while not exit_event.is_set():
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#print thermal status
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if args.debug:
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thermal_status = get_reset_thermal_status()
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for index, core_thermal_status in enumerate(thermal_status):
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for key, value in core_thermal_status.items():
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print('[D] core {} thermal status: {} = {}'.format(index, key.replace("_", " "), value))
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# switch back to sysfs polling
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if power['method'] == 'polling':
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power['source'] = 'BATTERY' if is_on_battery(config) else 'AC'
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# set temperature trip point
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if 'MSR_TEMPERATURE_TARGET' in regs[power['source']]:
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write_value = regs[power['source']]['MSR_TEMPERATURE_TARGET']
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writemsr(0x1a2, write_value)
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if args.debug:
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read_value = readmsr(0x1a2, 24, 29, flatten=True)
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match = OK if write_value >> 24 == read_value else ERR
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print('[D] TEMPERATURE_TARGET - write {:#x} - read {:#x} - match {}'.format(
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write_value >> 24, read_value, match))
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# set cTDP
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if 'MSR_CONFIG_TDP_CONTROL' in regs[power['source']]:
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write_value = regs[power['source']]['MSR_CONFIG_TDP_CONTROL']
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writemsr(0x64b, write_value)
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if args.debug:
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read_value = readmsr(0x64b, 0, 1, flatten=True)
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match = OK if write_value == read_value else ERR
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print('[D] CONFIG_TDP_CONTROL - write {:#x} - read {:#x} - match {}'.format(
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write_value, read_value, match))
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# set PL1/2 on MSR
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write_value = regs[power['source']]['MSR_PKG_POWER_LIMIT']
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writemsr(0x610, write_value)
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if args.debug:
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read_value = readmsr(0x610, 0, 55, flatten=True)
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match = OK if write_value == read_value else ERR
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print('[D] MSR PACKAGE_POWER_LIMIT - write {:#x} - read {:#x} - match {}'.format(
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write_value, read_value, match))
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# set MCHBAR register to the same PL1/2 values
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mchbar_mmio.write32(0, write_value & 0xffffffff)
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mchbar_mmio.write32(4, write_value >> 32)
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if args.debug:
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read_value = mchbar_mmio.read32(0) | (mchbar_mmio.read32(4) << 32)
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match = OK if write_value == read_value else ERR
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print('[D] MCHBAR PACKAGE_POWER_LIMIT - write {:#x} - read {:#x} - match {}'.format(
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write_value, read_value, match))
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wait_t = config.getfloat(power['source'], 'Update_Rate_s')
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enable_hwp_mode = config.getboolean('AC', 'HWP_Mode', fallback=False)
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if power['source'] == 'AC' and enable_hwp_mode:
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cpu_usage = float(psutil.cpu_percent(interval=wait_t))
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# set full performance mode only when load is greater than this threshold (~ at least 1 core full speed)
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performance_mode = cpu_usage > 100. / (cpu_count() * 1.25)
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# check again if we are on AC, since in the meantime we might have switched to BATTERY
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if not is_on_battery(config):
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set_hwp('performance' if performance_mode else 'balance_performance')
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else:
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exit_event.wait(wait_t)
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def main():
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global args
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if os.geteuid() != 0:
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print('[E] No root no party. Try again with sudo.')
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sys.exit(1)
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parser = argparse.ArgumentParser()
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parser.add_argument('--debug', action='store_true', help='add some debug info and additional checks')
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parser.add_argument('--config', default='/etc/lenovo_fix.conf', help='override default config file path')
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args = parser.parse_args()
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config = load_config()
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power['source'] = 'BATTERY' if is_on_battery(config) else 'AC'
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platform_info = get_cpu_platform_info()
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if args.debug:
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for key, value in platform_info.items():
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print('[D] cpu platform info: {} = {}'.format(key.replace("_", " "), value))
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regs = calc_reg_values(platform_info, config)
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if not config.getboolean('GENERAL', 'Enabled'):
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return
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exit_event = Event()
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thread = Thread(target=power_thread, args=(config, regs, exit_event))
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thread.daemon = True
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thread.start()
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undervolt(config)
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# handle dbus events for applying undervolt on resume from sleep/hybernate
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def handle_sleep_callback(sleeping):
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if not sleeping:
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undervolt(config)
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def handle_ac_callback(*args):
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try:
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power['source'] = 'BATTERY' if args[1]['Online'] == 0 else 'AC'
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power['method'] = 'dbus'
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except:
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power['method'] = 'polling'
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DBusGMainLoop(set_as_default=True)
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bus = dbus.SystemBus()
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# add dbus receiver only if undervolt is enabled in config
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if any(config.getfloat('UNDERVOLT', plane) != 0 for plane in VOLTAGE_PLANES):
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bus.add_signal_receiver(handle_sleep_callback, 'PrepareForSleep', 'org.freedesktop.login1.Manager',
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'org.freedesktop.login1')
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bus.add_signal_receiver(
|
|
handle_ac_callback,
|
|
signal_name="PropertiesChanged",
|
|
dbus_interface="org.freedesktop.DBus.Properties",
|
|
path="/org/freedesktop/UPower/devices/line_power_AC")
|
|
|
|
try:
|
|
loop = GLib.MainLoop()
|
|
loop.run()
|
|
except (KeyboardInterrupt, SystemExit):
|
|
pass
|
|
|
|
exit_event.set()
|
|
loop.quit()
|
|
thread.join(timeout=1)
|
|
|
|
|
|
if __name__ == '__main__':
|
|
main()
|