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# Arch System
Sauvegarde de la configuration système de mon poste Arch Linux.
Ce dépôt contient uniquement la partie système. Les dotfiles utilisateur sont stockés dans un dépôt séparé.
## Contenu
### Paquets
* `pkglist/pacman.txt`
* `pkglist/aur.txt`
Liste des paquets officiels et AUR installés.
### Services systemd
* `systemd/enabled-system.txt`
* `systemd/enabled-user.txt`
Inventaire des services activés.
### Configuration système
* `rootfs/etc/pacman.conf`
* `rootfs/etc/makepkg.conf`
* `rootfs/etc/mkinitcpio.conf`
* `rootfs/etc/fstab`
* `rootfs/etc/nftables.conf`
* `rootfs/etc/tlp.conf`
### Snapper
* `rootfs/etc/snapper/configs/root`
Configuration des snapshots Btrfs.
### Limine
* `rootfs/boot/limine.conf`
Configuration du chargeur de démarrage.
### Systemd
* `rootfs/etc/systemd/system/battery-threshold.service`
Service personnalisé limitant la charge de la batterie à 80 %.
### Documentation
* `docs/lsblk.txt`
* `docs/findmnt.txt`
* `docs/btrfs-subvolumes.txt`
### TLP
* `rootfs/etc/tlp.conf`
Gestion de lénergie :
- profil batterie ASUS : `quiet`
- seuil de charge par défaut : 60 %
- réglages CPU via `amd-pstate-epp`
Documentation de la structure des disques, montages et sous-volumes Btrfs.
## Sauvegarde
Mettre à jour le dépôt :
```bash
./scripts/backup.sh
```
## Réinstallation
### 1. Installation de base
Installer Arch Linux.
### 2. Restaurer le dépôt
```bash
git clone <repo>
cd arch-system
```
### 3. Restaurer les fichiers système
Copie manuelle ou via un futur script de déploiement.
### 4. Réinstaller les paquets
```bash
sudo pacman -S --needed - < pkglist/pacman.txt
```
Puis les paquets AUR.
### 5. Réactiver les services
Utiliser :
```bash
systemd/enabled-system.txt
```
comme référence.
## Notes
### Secure Boot
Le système utilise sbctl.
Les clés Secure Boot ne sont pas stockées dans ce dépôt.
### Btrfs
Le système utilise Btrfs avec Snapper pour la gestion des snapshots.
### Boot
Le système utilise Limine comme chargeur de démarrage.

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NAME SIZE FSTYPE PARTUUID UUID MOUNTPOINTS
sda 14,9G iso9660 2023-11-01-06-55-57-00
├─sda1 792M iso9660 fd38acc6-01 2023-11-01-06-55-57-00
└─sda2 15M vfat fd38acc6-02 6BD4-6502
zram0 4G swap 8e9d5e09-3af3-489e-a1d4-0b5da69cddc7 [SWAP]
nvme0n1 476,9G
├─nvme0n1p1 1G vfat 6a729979-0103-4dbd-a639-bb64b6185580 74CA-B4A5 /boot
└─nvme0n1p2 475,9G btrfs 85b1221d-8402-4e4a-a8f3-94377eded84a fd788a35-b3ee-48a4-9d7c-4f9bcdc46614 /home
/var/log
/var/cache/pacman/pkg
/.snapshots
/

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Disque /dev/nvme0n1 : 476,94 GiB, 512110190592 octets, 1000215216 secteurs
Modèle de disque : SAMSUNG MZVL8512HELU-00BTW
Unités : secteur de 1 × 512 = 512 octets
Taille de secteur (logique / physique) : 512 octets / 512 octets
taille d'E/S (minimale / optimale) : 512 octets / 512 octets
Type d'étiquette de disque : gpt
Identifiant de disque : FD5401A9-A5FA-49B7-BFE4-4E4CA8DE5310
Périphérique Début Fin Secteurs Taille Type
/dev/nvme0n1p1 2048 2099199 2097152 1G Système EFI
/dev/nvme0n1p2 2099200 1000212479 998113280 475,9G Racine Linux (x86-64)
Disque /dev/sda : 14,91 GiB, 16005464064 octets, 31260672 secteurs
Modèle de disque : Card Reader
Unités : secteur de 1 × 512 = 512 octets
Taille de secteur (logique / physique) : 512 octets / 512 octets
taille d'E/S (minimale / optimale) : 512 octets / 512 octets
Type d'étiquette de disque : dos
Identifiant de disque : 0xfd38acc6
Périphérique Amorçage Début Fin Secteurs Taille Id Type
/dev/sda1 * 64 1622015 1621952 792M 0 Vide
/dev/sda2 1622016 1652735 30720 15M ef EFI (FAT-12/16/32)
Disque /dev/zram0 : 4 GiB, 4294967296 octets, 1048576 secteurs
Unités : secteur de 1 × 4096 = 4096 octets
Taille de secteur (logique / physique) : 4096 octets / 4096 octets
taille d'E/S (minimale / optimale) : 4096 octets / 4096 octets

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# Composants principaux
## Boot
- limine
- sbctl
## Snapshot
- snapper
## Réseau
- NetworkManager
- nftables
## Virtualisation
- libvirt
- qemu
## Conteneurs
- docker
## Partage réseau
- samba
## Bureau
- MangoWM

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Modèle : Multiple Card Reader (scsi)
Disque /dev/sda : 16,0GB
Taille des secteurs (logiques/physiques) : 512B/512B
Table de partitions : msdos
Drapeaux de disque :
Numéro Début Fin Taille Type Système de fichiers Drapeaux
2 830MB 846MB 15,7MB primary fat16 esp
Modèle : SAMSUNG MZVL8512HELU-00BTW (nvme)
Disque /dev/nvme0n1 : 512GB
Taille des secteurs (logiques/physiques) : 512B/512B
Table de partitions : gpt
Drapeaux de disque :
Numéro Début Fin Taille Système de fichiers Nom Drapeaux
1 1049kB 1075MB 1074MB fat32 démarrage, esp
2 1075MB 512GB 511GB btrfs
Modèle : Inconnu (unknown)
Disque /dev/zram0 : 4295MB
Taille des secteurs (logiques/physiques) : 4096B/4096B
Table de partitions : loop
Drapeaux de disque :
Numéro Début Fin Taille Système de fichiers Drapeaux
1 0,00B 4295MB 4295MB linux-swap(v1)

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# Réinstallation
1. Installer Arch
2. Installer git
3. Cloner arch-system
4. Restaurer les fichiers rootfs
5. Installer les paquets
6. Installer les dotfiles
7. Vérifier Limine
8. Vérifier Snapper
9. Vérifier Secure Boot
10. Vérifier nftables

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# ----------------------------------------------------------------------------
# /etc/tlp.conf - TLP user configuration (version 1.10.0)
# See full explanation: https://linrunner.de/tlp/settings
#
# Copyright (c) 2026 Thomas Koch <linrunner at gmx.net> and others.
# SPDX-License-Identifier: GPL-2.0-or-later
#
# Settings are read in the following order:
#
# 1. Intrinsic defaults
# 2. /etc/tlp.d/*.conf - Drop-in customization snippets
# 3. /etc/tlp.conf - User configuration (this file)
#
# TLP profiles: a part of TLP's parameters is divided into two or three
# groups:
# - performance: parameters ending in _AC are used when AC power is
# connected or when the command 'tlp performance' is run.
# - balanced: parameters ending in _BAT are used when operating
# on battery power or when the command 'tlp balanced' is run.
# - power-saver: parameters ending in _SAV are used when the command
# 'tlp power-saver' is run. If there is no _SAV parameter available
# for a feature, the _BAT parameter will be used instead.
# - Any remaining parameters not divided apply to all TLP profiles.
#
# Please note:
# - If parameters are specified more than once, the last occurrence takes
# precedence. This also means that any parameters defined here will take
# precedence over any drop-ins.
# - You can however, append values to a parameter already defined as default
# or in a previously read file: use PARAMETER+="add values".
# - Important: in its native state, all of the parameters in this file are
# commented out with a leading '#', so the defaults (if any) apply.
# Remove the leading '#' if you want to enable a feature without a default
# or if you want to set a value other than the default.
# - Parameters must always be specified for all TLP profiles, i.e. in the
# AC, BAT and SAV category (where applicable). If you omit one of them,
# the missing profile will receive its value from another profile, since
# a change will only occur if different values are defined.
# - To completely disable a feature, use PARAMETER="".
# Legend for defaults:
# - Default *: effective value when the parameter is missing or the line has
# a leading '#'.
# - Default <none>: feature disabled, use kernel or hardware defaults.
#
# ----------------------------------------------------------------------------
# tlp - Parameters for power saving
# Set to 0 to disable, 1 to enable TLP.
# Default: 1
# TLP_ENABLE=1
# Set to 1 to disable (almost) all defaults of TLP.
# This means that TLP only applies settings that have been explicitly activated
# i.e. parameters without leading '#'.
# Notes:
# - Helpful if one wants to use only selected features of TLP
# - After activation, use tlp-stat -c to display your effective configuration
# - TLP's operation relies on the defaults of TLP_ENABLE, TLP_WARN_LEVEL,
# TLP_AUTO_SWITCH, and TLP_PROFILE_AC/BAT, which are *not* disabled
#
#TLP_DISABLE_DEFAULTS=1
# Control how warnings about invalid settings are issued:
# 0=disabled
# 1=background tasks (boot, resume, change of power source) report to syslog
# 2=shell commands report to the terminal (stderr)
# 3=combination of 1 and 2
# Default: 3
#TLP_WARN_LEVEL=3
# Colorize error, warning, notice and success messages. Colors are specified
# with ANSI codes:
# 1=bold black, 90=grey, 91=red, 92=green, 93=yellow, 94=blue, 95=magenta,
# 96=cyan, 97=white.
# Other colors are possible, refer to:
# https://en.wikipedia.org/wiki/ANSI_escape_code#3-bit_and_4-bit
# Colors must be specified in the order
# "<error> <warning> <notice> <success>".
# By default, errors are shown in red, warnings in yellow, notices in bold
# and success in green.
# Default: "91 93 1 92"
#TLP_MSG_COLORS="91 93 1 92"
# Control automatic switching of the TLP profile when connecting or removing
# the charger, when booting the system or when executing 'tlp start':
# 0=disabled - never switch, use TLP_PROFILE_DEFAULT if configured
# 1=auto - always switch, select TLP_PROFILE_AC on AC and TLP_PROFILE_BAT
# on battery power.
# 2=smart - like auto, but skips the switch if you have manually changed the
# profile away from the previous power source's default profile
# (as defined by TLP_PROFILE_AC/BAT).
# Note: the same applies if the charger was connected/removed during suspend.
# Default: 2
#TLP_AUTO_SWITCH=2
# TLP profiles to use when automatic switching is enabled
# (TLP_AUTO_SWITCH=1 or 2):
# PRF=performance, BAL=balanced, SAV=power-saver.
# Default: PRF (AC power), BAL (battery power)
TLP_PROFILE_AC=PRF
TLP_PROFILE_BAT=BAL
# TLP profile to use when automatic switching is disabled
# (TLP_AUTO_SWITCH=0) or no power supply is detected:
# PRF=performance, BAL=balanced, SAV=power-saver.
# Note: legacy values AC and BAT continue to work. They are mapped to
# PRF and BAL, respectively.
# Default: <none>
#TLP_PROFILE_DEFAULT=BAL
# Power supply classes to ignore when determining TLP profile:
# AC, USB, BAT.
# Separate multiple classes with spaces.
# Note: try on laptops where operation mode AC/BAT is incorrectly detected.
# Default: <none>
#TLP_PS_IGNORE="BAT"
# Seconds laptop mode has to wait after the disk goes idle before doing a
# sync. Non-zero value enables, zero disables laptop mode.
# Default: 0 (AC), 2 (BAT)
#DISK_IDLE_SECS_ON_AC=0
#DISK_IDLE_SECS_ON_BAT=2
# Dirty page values (timeouts in secs).
# Default: 15 (AC), 60 (BAT)
#MAX_LOST_WORK_SECS_ON_AC=15
#MAX_LOST_WORK_SECS_ON_BAT=60
# Select a CPU scaling driver operation mode.
# Intel CPU with intel_pstate driver:
# active, passive.
# AMD Zen 2 or newer CPU with amd-pstate driver as of kernel 6.3/6.4(*):
# active, passive, guided(*).
# Default: <none>
#CPU_DRIVER_OPMODE_ON_AC=active
#CPU_DRIVER_OPMODE_ON_BAT=active
#CPU_DRIVER_OPMODE_ON_SAV=active
# Select a CPU frequency scaling governor.
# Intel CPU with intel_pstate driver or
# AMD CPU with amd-pstate driver in active mode ('amd-pstate-epp'):
# performance, powersave(*).
# Intel CPU with intel_pstate driver in passive mode ('intel_cpufreq') or
# AMD CPU with amd-pstate driver in passive or guided mode ('amd-pstate') or
# Intel, AMD and other CPU brands with acpi-cpufreq driver:
# conservative, ondemand(*), userspace, powersave, performance, schedutil(*)
# Use tlp-stat -p to show the active driver and available governors.
# Important:
# Governors marked (*) above are power efficient for *almost all* workloads
# and therefore kernel and most distributions have chosen them as defaults.
# You should have done your research about advantages/disadvantages *before*
# changing the governor.
# Default: <none>
#CPU_SCALING_GOVERNOR_ON_AC=performance
#CPU_SCALING_GOVERNOR_ON_BAT=powersave
#CPU_SCALING_GOVERNOR_ON_SAV=powersave
# Set the min/max frequency available for the scaling governor.
# Possible values depend on your CPU. For available frequencies see
# the output of tlp-stat -p.
# Notes:
# - Min/max frequencies must always be specified for both AC *and* BAT
# - Not recommended for use with the intel_pstate driver, use
# CPU_MIN/MAX_PERF_ON_AC/BAT below instead
# Default: <none>
#CPU_SCALING_MIN_FREQ_ON_AC=0
#CPU_SCALING_MAX_FREQ_ON_AC=0
#CPU_SCALING_MIN_FREQ_ON_BAT=0
#CPU_SCALING_MAX_FREQ_ON_BAT=0
#CPU_SCALING_MIN_FREQ_ON_SAV=0
#CPU_SCALING_MAX_FREQ_ON_SAV=0
# Set CPU energy/performance policies EPP and EPB:
# performance, balance_performance, default, balance_power, power.
# Values are given in order of increasing power saving.
# Requires:
# * Intel CPU
# EPP: Intel Core i 6th gen. or newer CPU with intel_pstate driver
# EPB: Intel Core i 2nd gen. or newer CPU with intel_pstate driver
# EPP and EPB are mutually exclusive: when EPP is available, Intel CPUs
# will not honor EPB. Only the matching feature will be applied by TLP.
# * AMD Zen 2 or newer CPU
# EPP: amd-pstate driver in active mode ('amd-pstate-epp') as of kernel 6.3
# Default: balance_performance (AC), balance_power (BAT), power (SAV)
CPU_ENERGY_PERF_POLICY_ON_AC=balance_performance
CPU_ENERGY_PERF_POLICY_ON_BAT=balance_power
CPU_ENERGY_PERF_POLICY_ON_SAV=power
# Set Intel CPU P-state performance: 0..100 (%).
# Limit the max/min P-state to control the power dissipation of the CPU.
# Values are stated as a percentage of the available performance.
# Requires Intel Core i 2nd gen. or newer CPU with intel_pstate driver.
# Default: <none>
#CPU_MIN_PERF_ON_AC=0
#CPU_MAX_PERF_ON_AC=100
#CPU_MIN_PERF_ON_BAT=0
#CPU_MAX_PERF_ON_BAT=80
#CPU_MIN_PERF_ON_SAV=0
#CPU_MAX_PERF_ON_SAV=60
# Set the CPU "turbo boost" (Intel) or "core performance boost" (AMD) feature:
# 0=disable, 1=allow.
# Allows to raise the maximum frequency/P-state of some cores if the
# CPU chip is not fully utilized and below it's intended thermal budget.
# Note: a value of 1 does *not* activate boosting, it just allows it.
# Default: <none>
CPU_BOOST_ON_AC=1
CPU_BOOST_ON_BAT=0
CPU_BOOST_ON_SAV=0
# Set CPU dynamic boost feature:
# 0=disable, 1=enable.
# Improve performance by increasing minimum P-state limit dynamically
# whenever a task previously waiting on I/O is selected to run.
# Requires Intel Core i 6th gen. or newer CPU with intel_pstate driver
# in active mode.
# Note: AMD CPUs currently have no tunable for this.
# Default: <none>
#CPU_HWP_DYN_BOOST_ON_AC=1
#CPU_HWP_DYN_BOOST_ON_BAT=1
#CPU_HWP_DYN_BOOST_ON_SAV=0
# Kernel NMI Watchdog:
# 0=disable (default, saves power), 1=enable (for kernel debugging only).
# Default: 0
#NMI_WATCHDOG=0
# Select platform profile:
# performance, balanced, low-power.
# Controls system operating characteristics around power/performance levels,
# thermal and fan speed. Values are given in order of increasing power saving.
# Note: check the output of tlp-stat -p to determine availability on your
# hardware and additional profiles such as: balanced-performance, quiet, cool.
# Default: performance (AC), balanced (BAT), low-power (SAV)
#PLATFORM_PROFILE_ON_AC=performance
PLATFORM_PROFILE_ON_BAT=quiet
#PLATFORM_PROFILE_ON_SAV=low-power
# System suspend mode:
# s2idle: Idle standby - a pure software, light-weight, system sleep state,
# deep: Suspend to RAM - the whole system is put into a low-power state,
# except for memory, usually resulting in higher savings than s2idle.
# CAUTION: changing suspend mode may lead to system instability and even
# data loss. As for the availability of different modes on your system,
# check the output of tlp-stat -s. If unsure, stick with the system default
# by not enabling this.
# Default: <none>
#MEM_SLEEP_ON_AC=s2idle
#MEM_SLEEP_ON_BAT=deep
# Define disk devices on which the following DISK/AHCI_RUNTIME parameters act.
# Separate multiple devices with spaces.
# Devices can be specified by disk ID also (lookup with: tlp diskid).
# Default: "nvme0n1 sda"
#DISK_DEVICES="nvme0n1 sda"
# Disk advanced power management level: 1..254, 255 (max saving, min, off).
# Levels 1..127 may spin down the disk; 255 allowable on most drives.
# Separate values for multiple disks with spaces. Use the special value 'keep'
# to keep the hardware default for the particular disk.
# Default: 254 (AC), 128 (BAT)
#DISK_APM_LEVEL_ON_AC="254 254"
#DISK_APM_LEVEL_ON_BAT="128 128"
# Exclude disk classes from advanced power management (APM):
# sata, ata, usb, ieee1394.
# Separate multiple classes with spaces.
# CAUTION: USB and IEEE1394 disks may fail to mount or data may get corrupted
# with APM enabled. Be careful and make sure you have backups of all affected
# media before removing 'usb' or 'ieee1394' from the denylist!
# Default: "usb ieee1394"
#DISK_APM_CLASS_DENYLIST="usb ieee1394"
# Hard disk spin down timeout:
# 0: spin down disabled
# 1..240: timeouts from 5s to 20min (in units of 5s)
# 241..251: timeouts from 30min to 5.5 hours (in units of 30min)
# See 'man hdparm' for details.
# Separate values for multiple disks with spaces. Use the special value 'keep'
# to keep the hardware default for the particular disk.
# Default: <none>
#DISK_SPINDOWN_TIMEOUT_ON_AC="0 0"
#DISK_SPINDOWN_TIMEOUT_ON_BAT="0 0"
# Select I/O scheduler for the disk devices.
# Multi queue (blk-mq) schedulers:
# mq-deadline(*), none, kyber, bfq
# Single queue schedulers:
# deadline(*), cfq, bfq, noop
# (*) recommended.
# Separate values for multiple disks with spaces. Use the special value 'keep'
# to keep the kernel default scheduler for the particular disk.
# Notes:
# - Multi queue (blk-mq) may need kernel boot option 'scsi_mod.use_blk_mq=1'
# and 'modprobe mq-deadline-iosched|kyber|bfq' on kernels < 5.0
# - Single queue schedulers are legacy now and were removed together with
# the old block layer in kernel 5.0
# Default: keep
#DISK_IOSCHED="mq-deadline mq-deadline"
# AHCI link power management (ALPM) for SATA disks:
# min_power, med_power_with_dipm(*), medium_power, max_performance.
# (*) recommended.
# Multiple values separated with spaces are tried sequentially until success.
# Default: med_power_with_dipm (AC & BAT)
#SATA_LINKPWR_ON_AC="med_power_with_dipm"
#SATA_LINKPWR_ON_BAT="med_power_with_dipm"
# Exclude SATA links from AHCI link power management (ALPM).
# SATA links are specified by their host. Refer to the output of
# tlp-stat -d to determine the host; the format is "hostX".
# Separate multiple hosts with spaces.
# Default: <none>
#SATA_LINKPWR_DENYLIST="host1"
# Runtime Power Management for NVMe, SATA, ATA and USB disks
# as well as SATA ports:
# on=disable, auto=enable.
# Note: SATA controllers are PCIe bus devices and handled by RUNTIME_PM
# further down.
# Default: on (AC), auto (BAT)
#AHCI_RUNTIME_PM_ON_AC=on
#AHCI_RUNTIME_PM_ON_BAT=auto
# Seconds of inactivity before disk is suspended.
# Note: effective only when AHCI_RUNTIME_PM_ON_AC/BAT is activated.
# Default: 15
#AHCI_RUNTIME_PM_TIMEOUT=15
# Power off optical drive in UltraBay/MediaBay: 0=disable, 1=enable.
# Drive can be powered on again by releasing (and reinserting) the eject lever
# or by pressing the disc eject button on newer models.
# Note: an UltraBay/MediaBay hard disk is never powered off.
# Default: 0
#BAY_POWEROFF_ON_AC=0
#BAY_POWEROFF_ON_BAT=0
# Optical drive device to power off
# Default: sr0
#BAY_DEVICE="sr0"
# Intel GPU power management.
# Select power profile for the Intel Xe GPU: base, power_saving.
# Note: requires xe driver.
# Default: base (AC), power_saving (BAT), power_saving (SAV)
# INTEL_GPU_POWER_PROFILE_ON_AC=base
# INTEL_GPU_POWER_PROFILE_ON_BAT=base
# INTEL_GPU_POWER_PROFILE_ON_SAV=power_saving
# Set the min/max/turbo frequency for the Intel GPU.
# Parameters actually used depend on the driver:
# - i915 driver supports min, max and turbo(boost) frequency.
# - xe driver supports min and max frequency only.
# Default: <none>
#INTEL_GPU_MIN_FREQ_ON_AC=0
#INTEL_GPU_MIN_FREQ_ON_BAT=0
#INTEL_GPU_MIN_FREQ_ON_SAV=0
#INTEL_GPU_MAX_FREQ_ON_AC=0
#INTEL_GPU_MAX_FREQ_ON_BAT=0
#INTEL_GPU_MAX_FREQ_ON_SAV=0
#INTEL_GPU_BOOST_FREQ_ON_AC=0
#INTEL_GPU_BOOST_FREQ_ON_BAT=0
#INTEL_GPU_BOOST_FREQ_ON_SAV=0
# AMD GPU power management.
# Performance level (DPM): high, auto, low; auto is recommended.
# Note: requires amdgpu or radeon driver.
# Default: auto (AC), auto (BAT), low (SAV)
#RADEON_DPM_PERF_LEVEL_ON_AC=auto
#RADEON_DPM_PERF_LEVEL_ON_BAT=auto
#RADEON_DPM_PERF_LEVEL_ON_SAV=low
# Display panel adaptive backlight modulation (ABM) level: 0(off), 1..4.
# Values 1..4 control the maximum brightness reduction allowed by the ABM
# algorithm, where 1 represents the least and 4 the most power saving.
# Notes:
# - Requires AMD Vega or newer GPU with amdgpu driver as of kernel 6.9
# - Savings are made at the expense of color balance
# Default: 0 (AC), 1 (BAT), 3 (SAV)
#AMDGPU_ABM_LEVEL_ON_AC=0
#AMDGPU_ABM_LEVEL_ON_BAT=1
#AMDGPU_ABM_LEVEL_ON_SAV=3
# Wi-Fi power saving mode: on=enable, off=disable.
# Default: off (AC), on (BAT)
WIFI_PWR_ON_AC=off
WIFI_PWR_ON_BAT=on
# Disable Wake-on-LAN: Y/N.
# Default: Y
#WOL_DISABLE=Y
# Enable audio power saving for Intel HDA, AC97 devices (timeout in secs).
# A value of 0 disables, >= 1 enables power saving.
# Note: 1 is recommended for Linux desktop environments with PulseAudio,
# systems without PulseAudio may require 10.
# Default: 1
#SOUND_POWER_SAVE_ON_AC=1
#SOUND_POWER_SAVE_ON_BAT=1
# Disable controller too (HDA only): Y/N.
# Note: effective only when SOUND_POWER_SAVE_ON_AC/BAT is activated.
# Default: Y
#SOUND_POWER_SAVE_CONTROLLER=Y
# PCIe Active State Power Management (ASPM):
# default(*), performance, powersave, powersupersave.
# (*) keeps BIOS ASPM defaults (recommended)
# Default: default
#PCIE_ASPM_ON_AC=default
#PCIE_ASPM_ON_BAT=default
#PCIE_ASPM_ON_SAV=default
# Autosuspend PCIe devices (Runtime Power Management):
# on=disable, auto=enable.
# Default: on (AC), auto (BAT)
#RUNTIME_PM_ON_AC=on
#RUNTIME_PM_ON_BAT=auto
# Exclude listed PCIe device adresses from autosuspend.
# Note: this preserves the kernel driver default, to force a certain state
# use RUNTIME_PM_ENABLE/DISABLE instead.
# Separate multiple addresses with spaces.
# Use lspci to get the adresses (1st column).
# Default: <none>
#RUNTIME_PM_DENYLIST="11:22.3 44:55.6"
# Exclude PCIe devices assigned to the listed drivers from autosuspend.
# Note: this preserves the kernel driver default, to force a certain state
# use RUNTIME_PM_ENABLE/DISABLE instead.
# Separate multiple drivers with spaces, use "" to disable completely.
# Default: "amdgpu mei_me nouveau nvidia xhci_hcd"
#RUNTIME_PM_DRIVER_DENYLIST="amdgpu mei_me nouveau nvidia xhci_hcd"
# Permanently enable/disable autosuspend for listed PCIe device addresses
# (independent of the power source). This has priority over all preceding
# autosuspend settings. Separate multiple addresses with spaces.
# Use lspci to get the adresses (1st column).
# Default: <none>
#RUNTIME_PM_ENABLE="11:22.3"
#RUNTIME_PM_DISABLE="44:55.6"
# Autosuspend USB devices:
# 0=disable, 1=enable.
# Default: 1
#USB_AUTOSUSPEND=1
# Exclude listed devices from USB autosuspend (separate with spaces).
# Use lsusb to get the ids.
# Note: input devices (usbhid) and libsane-supported scanners are excluded
# automatically.
# Default: <none>
#USB_DENYLIST="1111:2222 3333:4444"
# Exclude audio devices from USB autosuspend:
# 0=do not exclude, 1=exclude.
# Default: 1
#USB_EXCLUDE_AUDIO=1
# Exclude bluetooth devices from USB autosuspend:
# 0=do not exclude, 1=exclude.
# Default: 0
#USB_EXCLUDE_BTUSB=0
# Exclude phone devices from USB autosuspend:
# 0=do not exclude, 1=exclude (enable charging).
# Default: 0
#USB_EXCLUDE_PHONE=0
# Exclude printers from USB autosuspend:
# 0=do not exclude, 1=exclude.
# Default: 1
#USB_EXCLUDE_PRINTER=1
# Exclude WWAN devices from USB autosuspend:
# 0=do not exclude, 1=exclude.
# Default: 0
#USB_EXCLUDE_WWAN=0
# Allow USB autosuspend for listed devices even if already denylisted or
# excluded above (separate with spaces). Use lsusb to get the ids.
# Default: 0
#USB_ALLOWLIST="1111:2222 3333:4444"
# Radio devices to disable on startup: bluetooth, nfc, wifi, wwan.
# Separate multiple devices with spaces.
# Default: <none>
#DEVICES_TO_DISABLE_ON_STARTUP="bluetooth nfc wifi wwan"
# Radio devices to enable on startup: bluetooth, nfc, wifi, wwan.
# Separate multiple devices with spaces.
# Default: <none>
#DEVICES_TO_ENABLE_ON_STARTUP="wifi"
# Radio devices to enable when switching to the performance profile:
# bluetooth, nfc, wifi, wwan.
# Default: <none>
#DEVICES_TO_ENABLE_ON_AC="bluetooth nfc wifi wwan"
# Radio devices to disable when switching to the balanced or power-saver
# profile:
# bluetooth, nfc, wifi, wwan.
# Default: <none>
#DEVICES_TO_DISABLE_ON_BAT="bluetooth nfc wifi wwan"
# Radio devices to disable when not in use (not connected) and switching
# to the balanced or power-saver profile:
# bluetooth, nfc, wifi, wwan.
# Default: <none>
#DEVICES_TO_DISABLE_ON_BAT_NOT_IN_USE="bluetooth nfc wifi wwan"
# Battery Care -- Charge thresholds
# Charging will start once the charger is connected and the battery level
# is below the start threshold. Charging stops when the battery level
# reaches or exceeds the stop threshold.
# Required hardware: Lenovo ThinkPads and other laptop brands are driven
# via specific plugins:
# - Use the tlp-stat -b command to see if a plugin for your hardware is
# active and to look up vendor-specific threshold values. Some
# laptops support only 1 (on)/0 (off) instead of a percentage level.
# - If your hardware supports a start *and* a stop threshold, you must
# specify both, otherwise TLP will refuse to apply the single threshold.
# - If your hardware supports only a stop threshold, set the start
# value to 0.
# - The names of the batteries shown by tlp-stat -b don't have to match
# the _BAT0 or _BAT1 parameter qualifiers. Please refer to [2]
# to see which qualifier applies to which battery.
# For further explanation and all vendor specific details refer to
# [1] https://linrunner.de/tlp/settings/battery.html
# [2] https://linrunner.de/tlp/settings/bc-vendors.html
# BAT0: Main battery
# Default: <none>
# Charging starts once the battery level is below this threshold.
#START_CHARGE_THRESH_BAT0=75
# Charging stops when the battery level reaches or exceeds this threshold.
#STOP_CHARGE_THRESH_BAT0=80
# BAT1: Secondary battery (primary on some laptops)
# Default: <none>
# Charging starts once the battery level is below this threshold.
START_CHARGE_THRESH_BAT1=0
# Charging stops when the battery level reaches or exceeds this threshold.
STOP_CHARGE_THRESH_BAT1=60
# Restore charge thresholds when AC is unplugged: 0=disable, 1=enable.
# Default: 1
#RESTORE_THRESHOLDS_ON_BAT=0
# ----------------------------------------------------------------------------
# tlp-rdw - Radio Device Wizard
# Note: requires installation of the optional package tlp-rdw.
# Possible devices: bluetooth, wifi, wwan.
# Separate multiple radio devices with spaces.
# Default: <none> (for all parameters below)
# Radio devices to disable on connect.
#DEVICES_TO_DISABLE_ON_LAN_CONNECT="wifi wwan"
#DEVICES_TO_DISABLE_ON_WIFI_CONNECT="wwan"
#DEVICES_TO_DISABLE_ON_WWAN_CONNECT="wifi"
# Radio devices to enable on disconnect.
#DEVICES_TO_ENABLE_ON_LAN_DISCONNECT="wifi wwan"
#DEVICES_TO_ENABLE_ON_WIFI_DISCONNECT=""
#DEVICES_TO_ENABLE_ON_WWAN_DISCONNECT=""
# Radio devices to enable/disable when docked.
# Note: not all docks can be recognized, especially USB-C docks. If a LAN
# cable is connected to the dock, use DEVICES_TO_DISABLE_ON_LAN_CONNECT
# and DEVICES_TO_ENABLE_ON_LAN_DISCONNECT instead.
#DEVICES_TO_ENABLE_ON_DOCK=""
#DEVICES_TO_DISABLE_ON_DOCK=""
# Radio devices to enable/disable when undocked.
#DEVICES_TO_ENABLE_ON_UNDOCK="wifi"
#DEVICES_TO_DISABLE_ON_UNDOCK=""