1527 lines
48 KiB
Bash
1527 lines
48 KiB
Bash
#!/usr/bin/env bash
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#
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# This bash script installs a modification to the Proxmox Virtual Environment (PVE) web user interface (UI) to display sensors information.
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#
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################### Configuration #############
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# Display configuration for HDD, NVME, CPU
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# Set to 0 to disable line breaks
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# Note: use these settings only if the displayed layout is broken
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CPU_ITEMS_PER_ROW=0
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NVME_ITEMS_PER_ROW=0
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HDD_ITEMS_PER_ROW=0
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# Known CPU sensor names. They can be full or partial but should ensure unambiguous identification.
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# Should new ones be added, also update logic in configure() function.
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KNOWN_CPU_SENSORS=("coretemp-isa-" "k10temp-pci-")
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# Overwrite default backup location
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BACKUP_DIR=""
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##################### DO NOT EDIT BELOW #######################
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# Only to be used to debug on other systems. Save the "sensor -j" output into a json file.
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# Information will be loaded for script configuration and presented in Proxmox.
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# DEV NOTE: lm-sensors version >3.6.0 breakes properly formatted JSON output using 'sensors -j'. This implements a workaround using uses a python3 for formatting
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DEBUG_REMOTE=true
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DEBUG_JSON_FILE="/tmp/sensordata.json"
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DEBUG_UPS_FILE="/tmp/upsc.txt"
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# This script's working directory
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SCRIPT_CWD="$(dirname "$(readlink -f "$0")")"
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# Debug location
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JSON_EXPORT_DIRECTORY="$SCRIPT_CWD"
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JSON_EXPORT_FILENAME="sensorsdata.json"
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# File paths
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PVE_MANAGER_LIB_JS_FILE="/usr/share/pve-manager/js/pvemanagerlib.js"
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NODES_PM_FILE="/usr/share/perl5/PVE/API2/Nodes.pm"
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# Helper functions
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function msg {
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echo -e "\e[0m$1\e[0m"
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}
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#echo message in bold
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function msgb {
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echo -e "\e[1m$1\e[0m"
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}
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function info {
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echo -e "\e[0;32m[info] $1\e[0m"
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}
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function warn {
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echo -e "\e[0;93m[warning] $1\e[0m"
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}
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function err {
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echo -e "\e[0;31m[error] $1\e[0m"
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exit 1
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}
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function ask {
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read -p $'\n\e[0;32m'"$1:"$'\e[0m'" " response
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echo $response
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}
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# End of helper functions
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# Function to display usage information
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function usage {
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msgb "\nUsage:\n$0 [install | uninstall | save-sensors-data]\n"
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exit 1
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}
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# System checks
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function check_root_privileges() {
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[[ $EUID -eq 0 ]] || err "This script must be run as root. Please run it with 'sudo $0'."
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}
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# Define a function to install packages
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function install_packages {
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# Check if the 'sensors' command is available on the system
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if (! command -v sensors &>/dev/null); then
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# If the 'sensors' command is not available, prompt the user to install lm-sensors
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local choiceInstallLmSensors=$(ask "lm-sensors is not installed. Would you like to install it? (y/n)")
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case "$choiceInstallLmSensors" in
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[yY])
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# If the user chooses to install lm-sensors, update the package list and install the package
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apt-get update
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apt-get install lm-sensors
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;;
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[nN])
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# If the user chooses not to install lm-sensors, exit the script with a zero status code
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msg "Decided to not install lm-sensors. The mod cannot run without it. Exiting..."
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exit 0
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;;
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*)
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# If the user enters an invalid input, print an error message and exit the script with a non-zero status code
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err "Invalid input. Exiting..."
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;;
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esac
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fi
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}
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function configure {
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SENSORS_DETECTED=false
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local sensorsOutput
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if [ $DEBUG_REMOTE = true ]; then
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warn "Remote debugging is used. Sensor readings from dump file $DEBUG_JSON_FILE will be used."
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sensorsOutput=$(cat $DEBUG_JSON_FILE)
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else
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sensorsOutput=$(sensors -j 2>/dev/null | python3 -m json.tool)
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fi
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if [ $? -ne 0 ]; then
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err "Sensor output error.\n\nCommand output:\n${sensorsOutput}\n\nExiting...\n"
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fi
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# Check if CPU is part of known list for autoconfiguration
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msg "\nDetecting support for CPU temperature sensors..."
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supportedCPU=false
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for item in "${KNOWN_CPU_SENSORS[@]}"; do
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if (echo "$sensorsOutput" | grep -q "$item"); then
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echo $item
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supportedCPU=true
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fi
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done
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# Prompt user for which CPU temperature to use
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if [ $supportedCPU = true ]; then
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while true; do
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local choiceTempDisplayType=$(ask "Do you wish to display temperatures for all cores [C] or just an average temperature per CPU [a] (note: AMD only supports average)? (C/a)")
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case "$choiceTempDisplayType" in
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# Set temperature search criteria
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[cC] | "")
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CPU_TEMP_TARGET="Core"
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info "Temperatures will be displayed for all cores."
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;;
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[aA])
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CPU_TEMP_TARGET="Package"
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info "An average temperature will be displayed per CPU."
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;;
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*)
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# If the user enters an invalid input, print an warning message and retry as>
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warn "Invalid input."
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continue
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;;
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esac
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break
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done
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SENSORS_DETECTED=true
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else
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warn "No CPU temperature sensors found."
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fi
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# Look for ram temps
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msg "\nDetecting support for RAM temperature sensors..."
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if (echo "$sensorsOutput" | grep -q '"SODIMM":'); then
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msg "Detected RAM temperature sensors:\n$(echo "$sensorsOutput" | grep -o '"SODIMM[^"]*"' | sed 's/"//g')"
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ENABLE_RAM_TEMP=true
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SENSORS_DETECTED=true
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else
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warn "No RAM temperature sensors found."
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ENABLE_RAM_TEMP=false
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fi
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# Check if HDD/SSD data is installed
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msg "\nDetecting support for HDD/SDD temperature sensors..."
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if (lsmod | grep -wq "drivetemp"); then
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# Check if SDD/HDD data is available
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if (echo "$sensorsOutput" | grep -q "drivetemp-scsi-"); then
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msg "Detected sensors:\n$(echo "$sensorsOutput" | grep -o '"drivetemp-scsi[^"]*"' | sed 's/"//g')"
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ENABLE_HDD_TEMP=true
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SENSORS_DETECTED=true
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else
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warn "Kernel module \"drivetemp\" is not installed. HDD/SDD temperatures will not be available."
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ENABLE_HDD_TEMP=false
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fi
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else
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warn "No HDD/SSD temperature sensors found."
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ENABLE_HDD_TEMP=false
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fi
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# Check if NVMe data is available
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msg "\nDetecting support for NVMe temperature sensors..."
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if (echo "$sensorsOutput" | grep -q "nvme-"); then
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msg "Detected sensors:\n$(echo "$sensorsOutput" | grep -o '"nvme[^"]*"' | sed 's/"//g')"
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ENABLE_NVME_TEMP=true
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SENSORS_DETECTED=true
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else
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warn "No NVMe temperature sensors found."
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ENABLE_NVME_TEMP=false
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fi
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# Look for fan speeds
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msg "\nDetecting support for fan speed readings..."
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if (echo "$sensorsOutput" | grep -q "fan[0-9]*_input"); then
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msg "Detected fan speed sensors:\n$(echo $sensorsOutput | grep -Po '"[^"]*":\s*\{\s*"fan[0-9]*_input[^}]*' | sed -E 's/"([^"]*)":.*/\1/')"
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ENABLE_FAN_SPEED=true
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SENSORS_DETECTED=true
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# Prompt user for display zero speed fans
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local choiceDisplayZeroSpeedFans=$(ask "Do you wish to display fans reporting a speed of zero? If no, only active fans will be displayed. (Y/n)")
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case "$choiceDisplayZeroSpeedFans" in
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# Set temperature search criteria
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[yY]|"")
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DISPLAY_ZERO_SPEED_FANS=true
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;;
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[nN] )
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DISPLAY_ZERO_SPEED_FANS=false
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;;
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*)
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# If the user enters an invalid input, print an error message and exit the script with a non-zero status code
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err "Invalid input. Exiting..."
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;;
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esac
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else
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warn "No fan speed sensors found."
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ENABLE_FAN_SPEED=false
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fi
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if [ $SENSORS_DETECTED = true ]; then
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local choiceTempUnit=$(ask "Do you wish to display temperatures in degrees Celsius [C] or Fahrenheit [f]? (C/f)")
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case "$choiceTempUnit" in
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[cC] | "")
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TEMP_UNIT="C"
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info "Temperatures will be presented in degrees Celsius."
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;;
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[fF])
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TEMP_UNIT="F"
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info "Temperatures will be presented in degrees Fahrenheit."
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;;
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*)
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warn "Invalid unit selected. Temperatures will be displayed in degrees Celsius."
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TEMP_UNIT="C"
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;;
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esac
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fi
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# Prompt user for enabling UPS
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local choiseEnableUPS=$(ask "Do you wish to enable information from an attached UPS (requires configured UPS server and installed UPS client from Network UPS Tools already configured beforehand). (Y/n)")
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case "$choiseEnableUPS" in
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[yY] | "")
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# Test the connection using upsc command
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if [ $DEBUG_REMOTE = true ]; then
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upsOutput=$(cat $DEBUG_UPS_FILE)
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echo "Remote debugging is used. UPS readings from dump file $DEBUG_UPS_FILE will be used."
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upsConnection="DEBUG_UPS"
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else
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# Prompt user for UPS connection details
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upsConnection=$(ask "Enter connection details for the UPS (e.g., upsname[@hostname[:port]])")
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if (! command -v upsc &>/dev/null); then
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err "The 'upsc' command is not available. Please install the 'nut-client' package and ensure it is configured correctly. Exiting..."
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fi
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upsOutput=$(upsc "$upsConnection" 2>&1)
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fi
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# Check for device.model in the output to confirm successful connection
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if (echo "$upsOutput" | grep -q "device.model:"); then
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# Extract the model name
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modelName=$(echo "$upsOutput" | grep "device.model:" | cut -d':' -f2- | xargs)
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ENABLE_UPS=true
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echo "Successfully connected to UPS model: $modelName at $upsConnection."
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info "UPS information will be displayed..."
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else
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warn "Failed to connect to UPS at '$upsConnection'. No valid UPS model found."
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warn "Error: $upsOutput"
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ENABLE_UPS=false
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fi
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;;
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[nN])
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ENABLE_UPS=false
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info "UPS information will NOT be displayed..."
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;;
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*)
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warn "Invalid selection. UPS information will not be displayed."
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ENABLE_UPS=false
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;;
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esac
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echo ""
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# DMI Type:
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# 1 ... System Information
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# 2 ... Base Board Information (for self-made PC)
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for i in 1 2; do
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echo "type ${i})"
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dmidecode -t ${i} | awk -F': ' '/Manufacturer|Product Name|Serial Number/ {print $1": "$2}'
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done
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local choiceEnableSystemInfo=$(ask "Do you wish to enable system information? (1/2/n)")
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case "$choiceEnableSystemInfo" in
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[1] | "")
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ENABLE_SYSTEM_INFO=true
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SYSTEM_INFO_TYPE=1
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info "System information will be displayed..."
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;;
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[2])
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ENABLE_SYSTEM_INFO=true
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SYSTEM_INFO_TYPE=2
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info "Motherboard information will be displayed..."
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;;
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[nN])
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ENABLE_SYSTEM_INFO=false
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info "System information will NOT be displayed..."
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;;
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*)
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warn "Invalid selection. System information will be displayed."
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ENABLE_SYSTEM_INFO=true
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;;
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esac
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echo # add a new line
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}
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# Function to install the modification
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function install_mod {
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check_root_privileges
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if [[ -n $(cat $NODES_PM_FILE | grep -e "$res->{sensorsOutput}") ]] && [[ -n $(cat $NODES_PM_FILE | grep -e "$res->{systemInfo}") ]]; then
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err "Mod is already installed. Uninstall existing before installing."
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fi
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msg "\nPreparing mod installation..."
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configure
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perform_backup
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if [ $SENSORS_DETECTED = true ]; then
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local sensorsCmd
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if [ $DEBUG_REMOTE = true ]; then
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sensorsCmd="cat \"$DEBUG_JSON_FILE\""
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else
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# WTF: sensors -f used for Fahrenheit breaks the fan speeds :|
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#local sensorsCmd=$([[ "$TEMP_UNIT" = "F" ]] && echo "sensors -j -f" || echo "sensors -j")
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sensorsCmd="sensors -j 2>/dev/null | python3 -m json.tool"
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fi
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# Insert sensor data collection and JSON sanitization before the disk info line
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sed -i '/my \$dinfo = df('\''\/'\'', 1);/i\
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\
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# Collect sensor data from lm-sensors\
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$res->{sensorsOutput} = `'"$sensorsCmd"'`;\
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\
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# Sanitize JSON output to handle common lm-sensors parsing issues\
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# Replace ERROR lines with placeholder values\
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$res->{sensorsOutput} =~ s/ERROR:.+\\s(\\w+):\\s(.+)/\\"$1\\": 0.000,/g;\
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$res->{sensorsOutput} =~ s/ERROR:.+\\s(\\w+)!/\\"$1\\": 0.000,/g;\
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\
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# Remove trailing commas before closing braces\
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$res->{sensorsOutput} =~ s/,\\s*(\})/$1/g;\
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\
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# Replace NaN values with null for valid JSON\
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$res->{sensorsOutput} =~ s/\\bNaN\\b/null/g;\
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\
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# Fix duplicate SODIMM keys by appending temperature sensor number\
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# This prevents JSON key overwrites when multiple SODIMM sensors exist\
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# Example: "SODIMM":{"temp3_input":34.0} becomes "SODIMM3":{"temp3_input":34.0}\
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$res->{sensorsOutput} =~ s/\\"SODIMM\\":\\{\\"temp(\\d+)_input\\"/\\"SODIMM$1\\":\\{\\"temp$1_input\\"/g;\
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' "$NODES_PM_FILE"
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msg "Sensors' output added to \"$NODES_PM_FILE\"."
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fi
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if [ $ENABLE_UPS = true ]; then
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local upsCmd
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if [ $DEBUG_REMOTE = true ]; then
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upsCmd="cat \"$DEBUG_UPS_FILE\""
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else
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upsCmd="upsc \"$upsConnection\" 2>/dev/null"
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fi
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# Insert UPS data collection before the disk info line
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sed -i "/my \$dinfo = df('\/', 1);/i\\
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\\
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# Collect UPS status information\\
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\$res->{upsc} = \\\`$upsCmd\\\`;\\
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" "$NODES_PM_FILE"
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msg "UPS output added to \"$NODES_PM_FILE\"."
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fi
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if [ $ENABLE_SYSTEM_INFO = true ]; then
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local systemInfoCmd=$(dmidecode -t ${SYSTEM_INFO_TYPE} | awk -F': ' '/Manufacturer|Product Name|Serial Number/ {print $1": "$2}' | awk '{$1=$1};1' | sed 's/$/ |/' | paste -sd " " - | sed 's/ |$//')
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sed -i "/my \$dinfo = df('\/', 1);/i\\\t\t\$res->{systemInfo} = \"$(echo "$systemInfoCmd")\";\n" "$NODES_PM_FILE"
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msg "System information output added to \"$NODES_PM_FILE\"."
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fi
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# Add new item to the items array in PVE.node.StatusView
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if [[ -z $(cat "$PVE_MANAGER_LIB_JS_FILE" | grep -e "itemId: 'thermal[[:alnum:]]*'") ]]; then
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local tempHelperCtorParams=$([[ "$TEMP_UNIT" = "F" ]] && echo '{srcUnit: PVE.mod.TempHelper.CELSIUS, dstUnit: PVE.mod.TempHelper.FAHRENHEIT}' || echo '{srcUnit: PVE.mod.TempHelper.CELSIUS, dstUnit: PVE.mod.TempHelper.CELSIUS}')
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# Expand space in StatusView
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expand_statusview_space
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# Insert temp helper
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generate_and_insert_temp_helper
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# Generate and insert widgets using the helper function
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generate_and_insert_widget "$ENABLE_SYSTEM_INFO" "generate_system_info" "system_info"
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generate_and_insert_widget "$ENABLE_CPU" "generate_cpu_widget" "cpu"
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#
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# NOTE: The following items will be added in reverse order
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#
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generate_and_insert_widget "$ENABLE_UPS" "generate_ups_widget" "ups"
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generate_and_insert_widget "$ENABLE_HDD_TEMP" "generate_hdd_widget" "hdd"
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generate_and_insert_widget "$ENABLE_NVME_TEMP" "generate_nvme_widget" "nvme"
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# Add drive header boxes if either nvme or drive temp is enabled
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generate_drive_header
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generate_and_insert_widget "$ENABLE_FAN_SPEED" "generate_fan_widget" "fan"
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generate_and_insert_widget "$ENABLE_RAM_TEMP" "generate_ram_widget" "ram"
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# Add an empty line to separate modified items as a visual group
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add_visual_separator
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# Move the node summary box into its own container and deactivate the original box instance
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setup_node_summary_container
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msg "Sensor display items added to the summary panel in \"$PVE_MANAGER_LIB_JS_FILE\"."
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restart_proxy
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msg "Installation completed."
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info "Clear the browser cache to ensure all changes are visualized."
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else
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warn "Sensor display items already added to the summary panel in \"$PVE_MANAGER_LIB_JS_FILE\"."
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fi
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}
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#region widget generation functions
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# Helper function to insert widget after thermal items
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insert_widget_after_thermal() {
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local widget_file="$1"
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sed -i "/^Ext.define('PVE.node.StatusView',/ {
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:a
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/items:/!{N;ba;}
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:b
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/'thermal.*},/!{N;bb;}
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r $widget_file
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}" "$PVE_MANAGER_LIB_JS_FILE"
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}
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# Helper function to generate widget and insert it
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generate_and_insert_widget() {
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local enable_flag="$1"
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local generator_func="$2"
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local widget_name="$3"
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if [ "$enable_flag" = true ]; then
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local temp_js_file="/tmp/${widget_name}_widget.js"
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"$generator_func" "$temp_js_file"
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insert_widget_after_thermal "$temp_js_file"
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rm "$temp_js_file"
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fi
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}
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# Function to generate drive header
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generate_drive_header() {
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if [ "$ENABLE_NVME_TEMP" = true ] || [ "$ENABLE_HDD_TEMP" = true ]; then
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local temp_js_file="/tmp/drive_header.js"
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#region drive header heredoc
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cat > "$1" <<'EOF'
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{
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xtype: 'box',
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colspan: 2,
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html: gettext('Drive(s)'),
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},
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EOF
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#endregion drive header heredoc
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if [[ $? -ne 0 ]]; then
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echo "Error: Failed to generate drive header code" >&2
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exit 1
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fi
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insert_widget_after_thermal "$temp_js_file"
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rm "$temp_js_file"
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fi
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}
|
|
|
|
# Function to expand space and modify StatusView properties
|
|
expand_statusview_space() {
|
|
# Apply multiple modifications to the StatusView definition
|
|
sed -i "/Ext.define('PVE\.node\.StatusView'/,/\},/ {
|
|
s/\(bodyPadding:\) '[^']*'/\1 '20 15 20 15'/
|
|
s/height: [0-9]\+/minHeight: 360,\n\tflex: 1,\n\tcollapsible: true,\n\ttitleCollapse: true/
|
|
s/\(tableAttrs:.*$\)/trAttrs: \{ valign: 'top' \},\n\t\1/
|
|
}" "$PVE_MANAGER_LIB_JS_FILE"
|
|
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to expand StatusView space" >&2
|
|
exit 1
|
|
fi
|
|
|
|
msg "Expanded space in \"$PVE_MANAGER_LIB_JS_FILE\"."
|
|
}
|
|
|
|
# Function to move node summary into its own container
|
|
setup_node_summary_container() {
|
|
# Move the node summary box into its own container
|
|
local temp_js_file="/tmp/summary_container.js"
|
|
#region summary container heredoc
|
|
cat > "$temp_js_file" <<'EOF'
|
|
{
|
|
xtype: 'container',
|
|
itemId: 'summarycontainer',
|
|
layout: 'column',
|
|
minWidth: 700,
|
|
defaults: {
|
|
minHeight: 350,
|
|
padding: 5,
|
|
columnWidth: 1,
|
|
},
|
|
items: [
|
|
nodeStatus,
|
|
]
|
|
},
|
|
EOF
|
|
#endregion summary container heredoc
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to generate summary container code" >&2
|
|
exit 1
|
|
fi
|
|
|
|
# Insert the new container after finding the nodeStatus and items pattern
|
|
sed -i "/^\s*nodeStatus: nodeStatus,/ {
|
|
:a
|
|
/items: \[/ !{N;ba;}
|
|
r $temp_js_file
|
|
}" "$PVE_MANAGER_LIB_JS_FILE"
|
|
|
|
rm "$temp_js_file"
|
|
|
|
# Deactivate the original box instance
|
|
sed -i "/^\s*nodeStatus: nodeStatus,/ {
|
|
:a
|
|
/itemId: 'itemcontainer',/ !{N;ba;}
|
|
n;
|
|
:b
|
|
/nodeStatus,/ !{N;bb;}
|
|
s/nodeStatus/\/\/nodeStatus/
|
|
}" "$PVE_MANAGER_LIB_JS_FILE"
|
|
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to deactivate original nodeStatus instance" >&2
|
|
exit 1
|
|
fi
|
|
}
|
|
|
|
# Call the function
|
|
setup_node_summary_container
|
|
|
|
# Function to add visual spacing separator after the last widget
|
|
add_visual_separator() {
|
|
# Check for the presence of items in the reverse order of display
|
|
local lastItemId=""
|
|
|
|
if [ "$ENABLE_UPS" = true ]; then
|
|
lastItemId="upsc"
|
|
elif [ "$ENABLE_HDD_TEMP" = true ]; then
|
|
lastItemId="thermalHdd"
|
|
elif [ "$ENABLE_NVME_TEMP" = true ]; then
|
|
lastItemId="thermalNvme"
|
|
elif [ "$ENABLE_FAN_SPEED" = true ]; then
|
|
lastItemId="speedFan"
|
|
else
|
|
lastItemId="thermalCpu"
|
|
fi
|
|
|
|
if [ -n "$lastItemId" ]; then
|
|
local temp_js_file="/tmp/visual_separator.js"
|
|
|
|
#region visual spacing heredoc
|
|
cat > "$temp_js_file" <<'EOF'
|
|
{
|
|
xtype: 'box',
|
|
colspan: 2,
|
|
padding: '0 0 20 0',
|
|
},
|
|
EOF
|
|
#endregion visual spacing heredoc
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to generate visual separator code" >&2
|
|
exit 1
|
|
fi
|
|
|
|
# Insert after the specific lastItemId (different pattern than thermal)
|
|
sed -i "/^Ext.define('PVE.node.StatusView',/ {
|
|
:a;
|
|
/^.*{.*'$lastItemId'.*},/!{N;ba;}
|
|
r $temp_js_file
|
|
}" "$PVE_MANAGER_LIB_JS_FILE"
|
|
|
|
rm "$temp_js_file"
|
|
fi
|
|
}
|
|
|
|
# Function to generate system info widget
|
|
generate_system_info() {
|
|
#region system info heredoc
|
|
cat > "$1" <<'EOF'
|
|
{
|
|
itemId: 'sysinfo',
|
|
colspan: 2,
|
|
printBar: false,
|
|
title: gettext('System Information'),
|
|
textField: 'systemInfo',
|
|
renderer: function(value){
|
|
return value;
|
|
}
|
|
},
|
|
EOF
|
|
#endregion system info heredoc
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to generate system info code" >&2
|
|
exit 1
|
|
fi
|
|
}
|
|
|
|
# Function to generate and insert temperature conversion helper class
|
|
generate_and_insert_temp_helper() {
|
|
local temp_js_file="/tmp/temp_helper.js"
|
|
|
|
#region temp helper heredoc
|
|
cat > "$temp_js_file" <<'EOF'
|
|
Ext.define('PVE.mod.TempHelper', {
|
|
//singleton: true,
|
|
|
|
requires: ['Ext.util.Format'],
|
|
|
|
statics: {
|
|
CELSIUS: 0,
|
|
FAHRENHEIT: 1
|
|
},
|
|
|
|
srcUnit: null,
|
|
dstUnit: null,
|
|
|
|
isValidUnit: function (unit) {
|
|
return (
|
|
Ext.isNumber(unit) && (unit === this.self.CELSIUS || unit === this.self.FAHRENHEIT)
|
|
);
|
|
},
|
|
|
|
constructor: function (config) {
|
|
this.srcUnit = config && this.isValidUnit(config.srcUnit) ? config.srcUnit : this.self.CELSIUS;
|
|
this.dstUnit = config && this.isValidUnit(config.dstUnit) ? config.dstUnit : this.self.CELSIUS;
|
|
},
|
|
|
|
toFahrenheit: function (tempCelsius) {
|
|
return Ext.isNumber(tempCelsius)
|
|
? tempCelsius * 9 / 5 + 32
|
|
: NaN;
|
|
},
|
|
|
|
toCelsius: function (tempFahrenheit) {
|
|
return Ext.isNumber(tempFahrenheit)
|
|
? (tempFahrenheit - 32) * 5 / 9
|
|
: NaN;
|
|
},
|
|
|
|
getTemp: function (value) {
|
|
if (this.srcUnit !== this.dstUnit) {
|
|
switch (this.srcUnit) {
|
|
case this.self.CELSIUS:
|
|
switch (this.dstUnit) {
|
|
case this.self.FAHRENHEIT:
|
|
return this.toFahrenheit(value);
|
|
|
|
default:
|
|
Ext.raise({
|
|
msg:
|
|
'Unsupported destination temperature unit: ' + this.dstUnit,
|
|
});
|
|
}
|
|
case this.self.FAHRENHEIT:
|
|
switch (this.dstUnit) {
|
|
case this.self.CELSIUS:
|
|
return this.toCelsius(value);
|
|
|
|
default:
|
|
Ext.raise({
|
|
msg:
|
|
'Unsupported destination temperature unit: ' + this.dstUnit,
|
|
});
|
|
}
|
|
default:
|
|
Ext.raise({
|
|
msg: 'Unsupported source temperature unit: ' + this.srcUnit,
|
|
});
|
|
}
|
|
} else {
|
|
return value;
|
|
}
|
|
},
|
|
|
|
getUnit: function(plainText) {
|
|
switch (this.dstUnit) {
|
|
case this.self.CELSIUS:
|
|
return plainText !== true ? '\°C' : '\\\'C';
|
|
|
|
case this.self.FAHRENHEIT:
|
|
return plainText !== true ? '\°F' : '\\\'F';
|
|
|
|
default:
|
|
Ext.raise({
|
|
msg: 'Unsupported destination temperature unit: ' + this.srcUnit,
|
|
});
|
|
}
|
|
},
|
|
});
|
|
EOF
|
|
#endregion temp helper heredoc
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to generate temp helper code" >&2
|
|
exit 1
|
|
fi
|
|
|
|
sed -i "/^Ext.define('PVE.node.StatusView'/r $temp_js_file" "$PVE_MANAGER_LIB_JS_FILE"
|
|
rm "$temp_js_file"
|
|
}
|
|
|
|
# Function to generate CPU widget
|
|
generate_cpu_widget() {
|
|
#region cpu widget heredoc
|
|
cat > "$1" <<'EOF'
|
|
{
|
|
itemId: 'thermalCpu',
|
|
colspan: 2,
|
|
printBar: false,
|
|
title: gettext('CPU Thermal State'),
|
|
iconCls: 'fa fa-fw fa-thermometer-half',
|
|
textField: 'sensorsOutput',
|
|
renderer: function(value){
|
|
// sensors configuration
|
|
const cpuTempHelper = Ext.create('PVE.mod.TempHelper', $tempHelperCtorParams);
|
|
// display configuration
|
|
const itemsPerRow = $CPU_ITEMS_PER_ROW;
|
|
// ---
|
|
let objValue;
|
|
try {
|
|
objValue = JSON.parse(value) || {};
|
|
} catch(e) {
|
|
objValue = {};
|
|
}
|
|
const cpuKeysI = Object.keys(objValue).filter(item => String(item).startsWith('coretemp-isa-')).sort();
|
|
const cpuKeysA = Object.keys(objValue).filter(item => String(item).startsWith('k10temp-pci-')).sort();
|
|
const bINTEL = cpuKeysI.length > 0 ? true : false;
|
|
const INTELPackagePrefix = '$CPU_TEMP_TARGET' == 'Core' ? 'Core ' : 'Package id';
|
|
const INTELPackageCaption = '$CPU_TEMP_TARGET' == 'Core' ? 'Core' : 'Package';
|
|
let AMDPackagePrefix = 'Tccd';
|
|
let AMDPackageCaption = 'Chiplet';
|
|
if (cpuKeysA.length > 0) {
|
|
let bTccd = false;
|
|
let bTctl = false;
|
|
let bTdie = false;
|
|
cpuKeysA.forEach((cpuKey, cpuIndex) => {
|
|
let items = objValue[cpuKey];
|
|
bTccd = Object.keys(items).findIndex(item => { return String(item).startsWith('Tccd'); }) >= 0;
|
|
bTctl = Object.keys(items).findIndex(item => { return String(item).startsWith('Tctl'); }) >= 0;
|
|
bTdie = Object.keys(items).findIndex(item => { return String(item).startsWith('Tdie'); }) >= 0;
|
|
});
|
|
if (bTccd && bTctl && '$CPU_TEMP_TARGET' == 'Core') {
|
|
AMDPackagePrefix = 'Tccd';
|
|
AMDPackageCaption = 'Chiplet';
|
|
} else if (bTdie) {
|
|
AMDPackagePrefix = 'Tdie';
|
|
AMDPackageCaption = 'Temp';
|
|
} else if (bTctl) {
|
|
AMDPackagePrefix = 'Tctl';
|
|
AMDPackageCaption = 'Temp';
|
|
} else {
|
|
AMDPackagePrefix = 'temp';
|
|
AMDPackageCaption = 'Temp';
|
|
}
|
|
}
|
|
const cpuKeys = bINTEL ? cpuKeysI : cpuKeysA;
|
|
const cpuItemPrefix = bINTEL ? INTELPackagePrefix : AMDPackagePrefix;
|
|
const cpuTempCaption = bINTEL ? INTELPackageCaption : AMDPackageCaption;
|
|
const formatTemp = bINTEL ? '0' : '0.0';
|
|
const cpuCount = cpuKeys.length;
|
|
let temps = [];
|
|
cpuKeys.forEach((cpuKey, cpuIndex) => {
|
|
let cpuTemps = [];
|
|
const items = objValue[cpuKey];
|
|
const itemKeys = Object.keys(items).filter(item => { return String(item).includes(cpuItemPrefix); });
|
|
itemKeys.forEach((coreKey) => {
|
|
try {
|
|
let tempVal = NaN, tempMax = NaN, tempCrit = NaN;
|
|
Object.keys(items[coreKey]).forEach((secondLevelKey) => {
|
|
if (secondLevelKey.endsWith('_input')) {
|
|
tempVal = cpuTempHelper.getTemp(parseFloat(items[coreKey][secondLevelKey]));
|
|
} else if (secondLevelKey.endsWith('_max')) {
|
|
tempMax = cpuTempHelper.getTemp(parseFloat(items[coreKey][secondLevelKey]));
|
|
} else if (secondLevelKey.endsWith('_crit')) {
|
|
tempCrit = cpuTempHelper.getTemp(parseFloat(items[coreKey][secondLevelKey]));
|
|
}
|
|
});
|
|
if (!isNaN(tempVal)) {
|
|
let tempStyle = '';
|
|
if (!isNaN(tempMax) && tempVal >= tempMax) {
|
|
tempStyle = 'color: #FFC300; font-weight: bold;';
|
|
}
|
|
if (!isNaN(tempCrit) && tempVal >= tempCrit) {
|
|
tempStyle = 'color: red; font-weight: bold;';
|
|
}
|
|
let tempStr = '';
|
|
let tempIndex = coreKey.match(/(?:P\s+Core|E\s+Core|Core)\s*(\d+)/);
|
|
if (tempIndex !== null && tempIndex.length > 1) {
|
|
tempIndex = tempIndex[1];
|
|
let coreType = coreKey.startsWith('P Core') ? 'P Core' :
|
|
coreKey.startsWith('E Core') ? 'E Core' :
|
|
cpuTempCaption;
|
|
tempStr = `${coreType} ${tempIndex}: <span style="${tempStyle}">${Ext.util.Format.number(tempVal, formatTemp)}${cpuTempHelper.getUnit()}</span>`;
|
|
} else {
|
|
// fallback for CPUs which do not have a core index
|
|
let coreType = coreKey.startsWith('P Core') ? 'P Core' :
|
|
coreKey.startsWith('E Core') ? 'E Core' :
|
|
cpuTempCaption;
|
|
tempStr = `${coreType}: <span style="${tempStyle}">${Ext.util.Format.number(tempVal, formatTemp)}${cpuTempHelper.getUnit()}</span>`;
|
|
}
|
|
cpuTemps.push(tempStr);
|
|
}
|
|
} catch (e) { /*_*/ }
|
|
});
|
|
if(cpuTemps.length > 0) {
|
|
temps.push(cpuTemps);
|
|
}
|
|
});
|
|
let result = '';
|
|
temps.forEach((cpuTemps, cpuIndex) => {
|
|
const strCoreTemps = cpuTemps.map((strTemp, index, arr) => { return strTemp + (index + 1 < arr.length ? (itemsPerRow > 0 && (index + 1) % itemsPerRow === 0 ? '<br>' : ' | ') : ''); })
|
|
if(strCoreTemps.length > 0) {
|
|
result += (cpuCount > 1 ? `CPU ${cpuIndex+1}: ` : '') + strCoreTemps.join('') + (cpuIndex < cpuCount ? '<br>' : '');
|
|
}
|
|
});
|
|
return '<div style="text-align: left; margin-left: 28px;">' + (result.length > 0 ? result : 'N/A') + '</div>';
|
|
}
|
|
},
|
|
EOF
|
|
#endregion cpu widget heredoc
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to generate cpu widget code" >&2
|
|
exit 1
|
|
fi
|
|
}
|
|
|
|
# Function to generate UPS widget
|
|
generate_nvme_widget() {
|
|
#region nvme widget heredoc
|
|
cat > "$1" <<'EOF'
|
|
{
|
|
itemId: 'thermalNvme',
|
|
colspan: 2,
|
|
printBar: false,
|
|
title: gettext('NVMe Thermal State'),
|
|
iconCls: 'fa fa-fw fa-thermometer-half',
|
|
textField: 'sensorsOutput',
|
|
renderer: function(value) {
|
|
// sensors configuration
|
|
const addressPrefix = "nvme-pci-";
|
|
const sensorName = "Composite";
|
|
const tempHelper = Ext.create('PVE.mod.TempHelper', $tempHelperCtorParams);
|
|
// display configuration
|
|
const itemsPerRow = ${NVME_ITEMS_PER_ROW};
|
|
// ---
|
|
let objValue;
|
|
try {
|
|
objValue = JSON.parse(value) || {};
|
|
} catch(e) {
|
|
objValue = {};
|
|
}
|
|
const nvmeKeys = Object.keys(objValue).filter(item => String(item).startsWith(addressPrefix)).sort();
|
|
let temps = [];
|
|
nvmeKeys.forEach((nvmeKey, index) => {
|
|
try {
|
|
let tempVal = NaN, tempMax = NaN, tempCrit = NaN;
|
|
Object.keys(objValue[nvmeKey][sensorName]).forEach((secondLevelKey) => {
|
|
if (secondLevelKey.endsWith('_input')) {
|
|
tempVal = tempHelper.getTemp(parseFloat(objValue[nvmeKey][sensorName][secondLevelKey]));
|
|
} else if (secondLevelKey.endsWith('_max')) {
|
|
tempMax = tempHelper.getTemp(parseFloat(objValue[nvmeKey][sensorName][secondLevelKey]));
|
|
} else if (secondLevelKey.endsWith('_crit')) {
|
|
tempCrit = tempHelper.getTemp(parseFloat(objValue[nvmeKey][sensorName][secondLevelKey]));
|
|
}
|
|
});
|
|
if (!isNaN(tempVal)) {
|
|
let tempStyle = '';
|
|
if (!isNaN(tempMax) && tempVal >= tempMax) {
|
|
tempStyle = 'color: #FFC300; font-weight: bold;';
|
|
}
|
|
if (!isNaN(tempCrit) && tempVal >= tempCrit) {
|
|
tempStyle = 'color: red; font-weight: bold;';
|
|
}
|
|
const tempStr = `Drive ${index + 1}: <span style="${tempStyle}">${Ext.util.Format.number(tempVal, '0.0')}${tempHelper.getUnit()}</span>`;
|
|
temps.push(tempStr);
|
|
}
|
|
} catch(e) { /*_*/ }
|
|
});
|
|
const result = temps.map((strTemp, index, arr) => { return strTemp + (index + 1 < arr.length ? ((index + 1) % itemsPerRow === 0 ? '<br>' : ' | ') : ''); });
|
|
return '<div style="text-align: left; margin-left: 28px;">' + (result.length > 0 ? result.join('') : 'N/A') + '</div>';
|
|
}
|
|
},
|
|
EOF
|
|
#endregion nvme widget heredoc
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to generate nvme widget code" >&2
|
|
exit 1
|
|
fi
|
|
}
|
|
|
|
# Function to generate UPS widget
|
|
generate_fan_widget() {
|
|
#region fan widget heredoc
|
|
cat > "$1" <<'EOF'
|
|
{
|
|
xtype: 'box',
|
|
colspan: 2,
|
|
html: gettext('Cooling'),
|
|
},
|
|
{
|
|
itemId: 'speedFan',
|
|
colspan: 2,
|
|
printBar: false,
|
|
title: gettext('Fan Speed(s)'),
|
|
iconCls: 'fa fa-fw fa-snowflake-o',
|
|
textField: 'sensorsOutput',
|
|
renderer: function(value) {
|
|
// ---
|
|
let objValue;
|
|
try {
|
|
objValue = JSON.parse(value) || {};
|
|
} catch(e) {
|
|
objValue = {};
|
|
}
|
|
|
|
// Recursive function to find fan keys and values
|
|
function findFanKeys(obj, fanKeys, parentKey = null) {
|
|
Object.keys(obj).forEach(key => {
|
|
const value = obj[key];
|
|
if (typeof value === 'object' && value !== null) {
|
|
// If the value is an object, recursively call the function
|
|
findFanKeys(value, fanKeys, key);
|
|
} else if (/^fan[0-9]+(_input)?$/.test(key)) {
|
|
if ($DISPLAY_ZERO_SPEED_FANS != true && value === 0) {
|
|
// Skip this fan if DISPLAY_ZERO_SPEED_FANS is false and value is 0
|
|
return;
|
|
}
|
|
// If the key matches the pattern, add the parent key and value to the fanKeys array
|
|
fanKeys.push({ key: parentKey, value: value });
|
|
}
|
|
});
|
|
}
|
|
|
|
let speeds = [];
|
|
// Loop through the parent keys
|
|
Object.keys(objValue).forEach(parentKey => {
|
|
const parentObj = objValue[parentKey];
|
|
// Array to store fan keys and values
|
|
const fanKeys = [];
|
|
// Call the recursive function to find fan keys and values
|
|
findFanKeys(parentObj, fanKeys);
|
|
// Sort the fan keys
|
|
fanKeys.sort();
|
|
// Process each fan key and value
|
|
fanKeys.forEach(({ key: fanKey, value: fanSpeed }) => {
|
|
try {
|
|
const fan = fanKey.charAt(0).toUpperCase() + fanKey.slice(1); // Capitalize the first letter of fanKey
|
|
speeds.push(`${fan}: ${fanSpeed} RPM`);
|
|
} catch(e) {
|
|
console.error(`Error retrieving fan speed for ${fanKey} in ${parentKey}:`, e); // Debug: Log specific error
|
|
}
|
|
});
|
|
});
|
|
return '<div style="text-align: left; margin-left: 28px;">' + (speeds.length > 0 ? speeds.join(' | ') : 'N/A') + '</div>';
|
|
}
|
|
},
|
|
EOF
|
|
#endregion fan widget heredoc
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to generate fan widget code" >&2
|
|
exit 1
|
|
fi
|
|
}
|
|
|
|
# Function to generate UPS widget
|
|
generate_hdd_widget() {
|
|
#region hdd widget heredoc
|
|
cat > "$1" <<'EOF'
|
|
{
|
|
itemId: 'thermalHdd',
|
|
colspan: 2,
|
|
printBar: false,
|
|
title: gettext('HDD/SSD Thermal State'),
|
|
iconCls: 'fa fa-fw fa-thermometer-half',
|
|
textField: 'sensorsOutput',
|
|
renderer: function(value) {
|
|
// sensors configuration
|
|
const addressPrefix = "drivetemp-scsi-";
|
|
const sensorName = "temp1";
|
|
const tempHelper = Ext.create('PVE.mod.TempHelper', $tempHelperCtorParams);
|
|
// display configuration
|
|
const itemsPerRow = ${HDD_ITEMS_PER_ROW};
|
|
// ---
|
|
let objValue;
|
|
try {
|
|
objValue = JSON.parse(value) || {};
|
|
} catch(e) {
|
|
objValue = {};
|
|
}
|
|
const drvKeys = Object.keys(objValue).filter(item => String(item).startsWith(addressPrefix)).sort();
|
|
let temps = [];
|
|
drvKeys.forEach((drvKey, index) => {
|
|
try {
|
|
let tempVal = NaN, tempMax = NaN, tempCrit = NaN;
|
|
Object.keys(objValue[drvKey][sensorName]).forEach((secondLevelKey) => {
|
|
if (secondLevelKey.endsWith('_input')) {
|
|
tempVal = tempHelper.getTemp(parseFloat(objValue[drvKey][sensorName][secondLevelKey]));
|
|
} else if (secondLevelKey.endsWith('_max')) {
|
|
tempMax = tempHelper.getTemp(parseFloat(objValue[drvKey][sensorName][secondLevelKey]));
|
|
} else if (secondLevelKey.endsWith('_crit')) {
|
|
tempCrit = tempHelper.getTemp(parseFloat(objValue[drvKey][sensorName][secondLevelKey]));
|
|
}
|
|
});
|
|
if (!isNaN(tempVal)) {
|
|
let tempStyle = '';
|
|
if (!isNaN(tempMax) && tempVal >= tempMax) {
|
|
tempStyle = 'color: #FFC300; font-weight: bold;';
|
|
}
|
|
if (!isNaN(tempCrit) && tempVal >= tempCrit) {
|
|
tempStyle = 'color: red; font-weight: bold;';
|
|
}
|
|
const tempStr = `Drive ${index + 1}: <span style="${tempStyle}">${Ext.util.Format.number(tempVal, '0.0')}${tempHelper.getUnit()}</span>`;
|
|
temps.push(tempStr);
|
|
}
|
|
} catch(e) { /*_*/ }
|
|
});
|
|
const result = temps.map((strTemp, index, arr) => { return strTemp + (index + 1 < arr.length ? ((index + 1) % itemsPerRow === 0 ? '<br>' : ' | ') : ''); });
|
|
return '<div style="text-align: left; margin-left: 28px;">' + (result.length > 0 ? result.join('') : 'N/A') + '</div>';
|
|
}
|
|
},
|
|
EOF
|
|
#endregion hdd widget heredoc
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to generate hhd widget code" >&2
|
|
exit 1
|
|
fi
|
|
}
|
|
|
|
# Function to generate RAM widget
|
|
generate_ram_widget() {
|
|
#region ram widget heredoc
|
|
cat > "$1" <<'EOF'
|
|
{
|
|
xtype: 'box',
|
|
colspan: 2,
|
|
html: gettext('RAM'),
|
|
},
|
|
{
|
|
itemId: 'thermalRam',
|
|
colspan: 2,
|
|
printBar: false,
|
|
title: gettext('Thermal State'),
|
|
iconCls: 'fa fa-fw fa-thermometer-half',
|
|
textField: 'sensorsOutput',
|
|
renderer: function(value) {
|
|
const cpuTempHelper = Ext.create('PVE.mod.TempHelper', {srcUnit: PVE.mod.TempHelper.CELSIUS, dstUnit: PVE.mod.TempHelper.CELSIUS});
|
|
// Make SODIMM unique keys
|
|
value = value.split('\n'); // Split by newlines
|
|
for (let i = 0; i < value.length; i++) {
|
|
// Check if the current line contains 'SODIMM'
|
|
if (value[i].includes('SODIMM') && i + 1 < value.length) {
|
|
// Extract the number '3' following 'temp' from the next line (e.g., "temp3_input": 25.000)
|
|
let nextLine = value[i + 1];
|
|
let match = nextLine.match(/"temp(\d+)_input": (\d+\.\d+)/);
|
|
|
|
if (match) {
|
|
let number = match[1]; // Extracted number
|
|
// Replace the current line with SODIMM by the extracted number
|
|
value[i] = value[i].replace('SODIMM', `SODIMM${number}`);
|
|
}
|
|
}
|
|
}
|
|
value = value.join('\n'); // Reverse line split
|
|
|
|
let objValue;
|
|
try {
|
|
objValue = JSON.parse(value) || {};
|
|
} catch(e) {
|
|
objValue = {};
|
|
}
|
|
|
|
// Recursive function to find ram keys and values
|
|
function findRamKeys(obj, ramKeys, parentKey = null) {
|
|
Object.keys(obj).forEach(key => {
|
|
const value = obj[key];
|
|
if (typeof value === 'object' && value !== null) {
|
|
// If the value is an object, recursively call the function
|
|
findRamKeys(value, ramKeys, key);
|
|
} else if (/^temp\d+_input$/.test(key) && parentKey && parentKey.startsWith("SODIMM")) {
|
|
if (value !== 0) {
|
|
ramKeys.push({ key: parentKey, value: value});
|
|
}
|
|
}
|
|
});
|
|
}
|
|
|
|
let ramTemps = [];
|
|
// Loop through the parent keys
|
|
Object.keys(objValue).forEach(parentKey => {
|
|
const parentObj = objValue[parentKey];
|
|
// Array to store ram keys and values
|
|
const ramKeys = [];
|
|
// Call the recursive function to find ram keys and values
|
|
findRamKeys(parentObj, ramKeys);
|
|
// Sort the ramKeys keys
|
|
ramKeys.sort();
|
|
// Process each ram key and value
|
|
ramKeys.forEach(({ key: ramKey, value: ramTemp }) => {
|
|
try {
|
|
ram = ramKey.replace('SODIMM', 'SODIMM ');
|
|
ramTemps.push(`${ram}: ${ramTemp}${cpuTempHelper.getUnit()}`);
|
|
} catch(e) {
|
|
console.error(`Error retrieving Ram Temp for ${ramTemps} in ${parentKey}:`, e); // Debug: Log specific error
|
|
}
|
|
});
|
|
});
|
|
return '<div style="text-align: left; margin-left: 28px;">' + (ramTemps.length > 0 ? ramTemps.join(' | ') : 'N/A') + '</div>';
|
|
}
|
|
},
|
|
EOF
|
|
#endregion ram widget heredoc
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to generate ram widget code" >&2
|
|
exit 1
|
|
fi
|
|
}
|
|
|
|
# Function to generate UPS widget
|
|
generate_ups_widget() {
|
|
#region UPS widget heredoc
|
|
cat > "$1" <<'EOF'
|
|
{
|
|
xtype: 'box',
|
|
colspan: 2,
|
|
html: gettext('UPS'),
|
|
},
|
|
{
|
|
itemId: 'upsc',
|
|
colspan: 2,
|
|
printBar: false,
|
|
title: gettext('Device'),
|
|
iconCls: 'fa fa-fw fa-battery-three-quarters',
|
|
textField: 'upsc',
|
|
renderer: function(value) {
|
|
let objValue = {};
|
|
try {
|
|
// Parse the UPS data
|
|
if (typeof value === 'string') {
|
|
const lines = value.split('\n');
|
|
lines.forEach(line => {
|
|
const colonIndex = line.indexOf(':');
|
|
if (colonIndex > 0) {
|
|
const key = line.substring(0, colonIndex).trim();
|
|
const val = line.substring(colonIndex + 1).trim();
|
|
objValue[key] = val;
|
|
}
|
|
});
|
|
} else if (typeof value === 'object') {
|
|
objValue = value || {};
|
|
}
|
|
} catch(e) {
|
|
objValue = {};
|
|
}
|
|
|
|
// If objValue is null or empty, return N/A
|
|
if (!objValue || Object.keys(objValue).length === 0) {
|
|
return '<div style="text-align: right;"><span style="color: white;">N/A</span></div>';
|
|
}
|
|
|
|
// Helper function to get status color
|
|
function getStatusColor(status) {
|
|
if (!status) return '#999';
|
|
const statusUpper = status.toUpperCase();
|
|
if (statusUpper.includes('OL')) return 'white'; // White for online
|
|
if (statusUpper.includes('OB')) return '#d9534f'; // Red for on battery
|
|
if (statusUpper.includes('LB')) return '#d9534f'; // Red for low battery
|
|
return '#f0ad4e'; // Orange for other states
|
|
}
|
|
|
|
// Helper function to get load/charge color
|
|
function getPercentageColor(value, isLoad = false) {
|
|
if (!value || isNaN(value)) return '#999';
|
|
const num = parseFloat(value);
|
|
if (isLoad) {
|
|
if (num >= 80) return '#d9534f'; // Red for high load
|
|
if (num >= 60) return '#f0ad4e'; // Orange for medium load
|
|
return 'white'; // White for low load
|
|
} else {
|
|
// For battery charge
|
|
if (num <= 20) return '#d9534f'; // Red for low charge
|
|
if (num <= 50) return '#f0ad4e'; // Orange for medium charge
|
|
return 'white'; // White for good charge
|
|
}
|
|
}
|
|
|
|
// Helper function to format runtime
|
|
function formatRuntime(seconds) {
|
|
if (!seconds || isNaN(seconds)) return 'N/A';
|
|
const mins = Math.floor(seconds / 60);
|
|
const secs = seconds % 60;
|
|
return `${mins}m ${secs}s`;
|
|
}
|
|
|
|
// Extract key UPS information
|
|
const batteryCharge = objValue['battery.charge'];
|
|
const batteryRuntime = objValue['battery.runtime'];
|
|
const inputVoltage = objValue['input.voltage'];
|
|
const upsLoad = objValue['ups.load'];
|
|
const upsStatus = objValue['ups.status'];
|
|
const upsModel = objValue['ups.model'] || objValue['device.model'];
|
|
const testResult = objValue['ups.test.result'];
|
|
const batteryChargeLow = objValue['battery.charge.low'];
|
|
const batteryRuntimeLow = objValue['battery.runtime.low'];
|
|
const upsRealPowerNominal = objValue['ups.realpower.nominal'];
|
|
const batteryMfrDate = objValue['battery.mfr.date'];
|
|
|
|
// Build the status display
|
|
let displayItems = [];
|
|
|
|
// First line: Model info
|
|
let modelLine = '';
|
|
if (upsModel) {
|
|
modelLine = `<span style="color: white;">${upsModel}</span>`;
|
|
} else {
|
|
modelLine = `<span style="color: white;">N/A</span>`;
|
|
}
|
|
displayItems.push(modelLine);
|
|
|
|
// Main status line with all metrics
|
|
let statusLine = '';
|
|
|
|
// Status
|
|
if (upsStatus) {
|
|
const statusUpper = upsStatus.toUpperCase();
|
|
let statusText = 'Unknown';
|
|
let statusColor = '#f0ad4e';
|
|
|
|
if (statusUpper.includes('OL')) {
|
|
statusText = 'Online';
|
|
statusColor = 'white'; // White for good status
|
|
} else if (statusUpper.includes('OB')) {
|
|
statusText = 'On Battery';
|
|
statusColor = '#d9534f'; // Red for on battery
|
|
} else if (statusUpper.includes('LB')) {
|
|
statusText = 'Low Battery';
|
|
statusColor = '#d9534f'; // Red for low battery
|
|
} else {
|
|
statusText = upsStatus;
|
|
statusColor = '#f0ad4e'; // Orange for unknown status
|
|
}
|
|
|
|
statusLine += `Status: <span style="color: ${statusColor};">${statusText}</span>`;
|
|
} else {
|
|
statusLine += `Status: <span style="color: white;">N/A</span>`;
|
|
}
|
|
|
|
// Battery charge
|
|
if (statusLine) statusLine += ' | ';
|
|
if (batteryCharge) {
|
|
const chargeColor = getPercentageColor(batteryCharge, false);
|
|
statusLine += `Battery: <span style="color: ${chargeColor};">${batteryCharge}%</span>`;
|
|
} else {
|
|
statusLine += `Battery: <span style="color: white;">N/A</span>`;
|
|
}
|
|
|
|
// Load percentage
|
|
if (statusLine) statusLine += ' | ';
|
|
if (upsLoad) {
|
|
const loadColor = getPercentageColor(upsLoad, true);
|
|
statusLine += `Load: <span style="color: ${loadColor};">${upsLoad}%</span>`;
|
|
} else {
|
|
statusLine += `Load: <span style="color: white;">N/A</span>`;
|
|
}
|
|
|
|
// Runtime
|
|
if (statusLine) statusLine += ' | ';
|
|
if (batteryRuntime) {
|
|
const runtime = parseInt(batteryRuntime);
|
|
const runtimeLowThreshold = batteryRuntimeLow ? parseInt(batteryRuntimeLow) : 600;
|
|
let runtimeColor = 'white';
|
|
if (runtime <= runtimeLowThreshold / 2) runtimeColor = '#d9534f'; // Red if less than half of low threshold
|
|
else if (runtime <= runtimeLowThreshold) runtimeColor = '#f0ad4e'; // Orange if at low threshold
|
|
|
|
statusLine += `Runtime: <span style="color: ${runtimeColor};">${formatRuntime(runtime)}</span>`;
|
|
} else {
|
|
statusLine += `Runtime: <span style="color: white;">N/A</span>`;
|
|
}
|
|
|
|
// Input voltage
|
|
if (statusLine) statusLine += ' | ';
|
|
if (inputVoltage) {
|
|
statusLine += `Input: <span style="color: white;">${parseFloat(inputVoltage).toFixed(0)}V</span>`;
|
|
} else {
|
|
statusLine += `Input: <span style="color: white;">N/A</span>`;
|
|
}
|
|
|
|
// Calculate actual watt usage
|
|
if (statusLine) statusLine += ' | ';
|
|
let actualWattage = null;
|
|
if (upsLoad && upsRealPowerNominal) {
|
|
const load = parseFloat(upsLoad);
|
|
const nominal = parseFloat(upsRealPowerNominal);
|
|
if (!isNaN(load) && !isNaN(nominal)) {
|
|
actualWattage = Math.round((load / 100) * nominal);
|
|
}
|
|
}
|
|
|
|
// Real power (calculated watt usage)
|
|
if (actualWattage !== null) {
|
|
statusLine += `Output: <span style="color: white;">${actualWattage}W</span>`;
|
|
} else {
|
|
statusLine += `Output: <span style="color: white;">N/A</span>`;
|
|
}
|
|
|
|
displayItems.push(statusLine);
|
|
|
|
// Combined battery and test line
|
|
let batteryTestLine = '';
|
|
if (batteryMfrDate) {
|
|
batteryTestLine += `<span style="color: white;">Battery MFD: ${batteryMfrDate}</span>`;
|
|
} else {
|
|
batteryTestLine += `<span style="color: white;">Battery MFD: N/A</span>`;
|
|
}
|
|
|
|
if (testResult && !testResult.toLowerCase().includes('no test')) {
|
|
const testColor = testResult.toLowerCase().includes('passed') ? 'white' : '#d9534f';
|
|
batteryTestLine += ` | <span style="color: ${testColor};">Test: ${testResult}</span>`;
|
|
} else {
|
|
batteryTestLine += ` | <span style="color: white;">Test: N/A</span>`;
|
|
}
|
|
|
|
displayItems.push(batteryTestLine);
|
|
|
|
// Format the final output
|
|
return '<div style="text-align: right;">' + displayItems.join('<br>') + '</div>';
|
|
}
|
|
},
|
|
EOF
|
|
#endregion UPS widget heredoc
|
|
if [[ $? -ne 0 ]]; then
|
|
echo "Error: Failed to generate UPS widget code" >&2
|
|
exit 1
|
|
fi
|
|
}
|
|
|
|
#endregion widget generation functions
|
|
|
|
# Function to uninstall the modification
|
|
function uninstall_mod {
|
|
check_root_privileges
|
|
|
|
if [[ -z $(grep -e "$res->{sensorsOutput}" "$NODES_PM_FILE") ]] && [[ -z $(grep -e "$res->{systemInfo}" "$NODES_PM_FILE") ]]; then
|
|
err "Mod is not installed."
|
|
fi
|
|
|
|
set_backup_directory
|
|
msg "\nRestoring modified files..."
|
|
|
|
# Find the latest Nodes.pm file using the find command
|
|
local latest_nodes_pm=$(find "$BACKUP_DIR" -name "Nodes.pm.*" -type f -printf '%T+ %p\n' 2>/dev/null | sort -r | head -n 1 | awk '{print $2}')
|
|
|
|
if [ -n "$latest_nodes_pm" ]; then
|
|
# Remove the latest Nodes.pm file
|
|
cp "$latest_nodes_pm" "$NODES_PM_FILE"
|
|
msg "Restoring latest Nodes.pm from backup: $latest_nodes_pm to \"$NODES_PM_FILE\"."
|
|
else
|
|
warn "No Nodes.pm backup files found."
|
|
fi
|
|
|
|
# Find the latest pvemanagerlib.js file using the find command
|
|
local latest_pvemanagerlibjs=$(find "$BACKUP_DIR" -name "pvemanagerlib.js.*" -type f -printf '%T+ %p\n' 2>/dev/null | sort -r | head -n 1 | awk '{print $2}')
|
|
|
|
if [ -n "$latest_pvemanagerlibjs" ]; then
|
|
# Remove the latest pvemanagerlib.js file
|
|
cp "$latest_pvemanagerlibjs" "$PVE_MANAGER_LIB_JS_FILE"
|
|
msg "Restoring latest pvemanagerlib.js from backup: $latest_pvemanagerlibjs to \"$PVE_MANAGER_LIB_JS_FILE\"."
|
|
else
|
|
warn "No pvemanagerlib.js backup files found."
|
|
fi
|
|
|
|
if [ -n "$latest_nodes_pm" ] || [ -n "$latest_pvemanagerlibjs" ]; then
|
|
# At least one of the variables is not empty, restart the proxy
|
|
restart_proxy
|
|
fi
|
|
}
|
|
|
|
function restart_proxy {
|
|
# Restart pveproxy
|
|
msg "\nRestarting PVE proxy..."
|
|
systemctl restart pveproxy
|
|
}
|
|
|
|
function save_sensors_data {
|
|
# Check if JSON_EXPORT_DIRECTORY exists and is writable
|
|
if [[ ! -d "$JSON_EXPORT_DIRECTORY" || ! -w "$JSON_EXPORT_DIRECTORY" ]]; then
|
|
err "Directory $JSON_EXPORT_DIRECTORY does not exist or is not writable. No file could be saved."
|
|
return
|
|
fi
|
|
|
|
# Check if command exists
|
|
if (command -v sensors &>/dev/null); then
|
|
# Save sensors output
|
|
local filepath="${JSON_EXPORT_DIRECTORY}/${DEBUG_SAVE_FILENAME}"
|
|
msg "Sensors data will be saved in $filepath"
|
|
|
|
# Prompt user for confirmation
|
|
local choiceContinue=$(ask "Do you wish to continue? (y/n)")
|
|
case "$choiceContinue" in
|
|
[yY])
|
|
sensors -j 2>/dev/null | python3 -m json.tool >"$filepath"
|
|
msgb "Sensors data saved in $filepath."
|
|
;;
|
|
*)
|
|
warn "Operation cancelled by user."
|
|
;;
|
|
esac
|
|
else
|
|
err "Sensors is not installed. No file could be saved."
|
|
fi
|
|
}
|
|
|
|
function set_backup_directory {
|
|
# Check if the BACKUP_DIR variable is set, if not, use the default backup
|
|
if [[ -z "$BACKUP_DIR" ]]; then
|
|
# If not set, use the default backup directory, which is based on the home directory and PVE-MODS
|
|
BACKUP_DIR="$HOME/PVE-MODS"
|
|
msg "Using default backup directory: $BACKUP_DIR"
|
|
else
|
|
# If set, ensure it is a valid directory
|
|
if [[ ! -d "$BACKUP_DIR" ]]; then
|
|
err "The specified backup directory does not exist: $BACKUP_DIR"
|
|
fi
|
|
msg "Using custom backup directory: $BACKUP_DIR"
|
|
fi
|
|
}
|
|
|
|
function create_backup_directory {
|
|
set_backup_directory
|
|
|
|
# Create the backup directory if it does not exist
|
|
if [[ ! -d "$BACKUP_DIR" ]]; then
|
|
mkdir -p "$BACKUP_DIR" 2>/dev/null || {
|
|
err "Failed to create backup directory: $BACKUP_DIR. Please check permissions."
|
|
}
|
|
msg "Created backup directory: $BACKUP_DIR"
|
|
else
|
|
msg "Backup directory already exists: $BACKUP_DIR"
|
|
fi
|
|
}
|
|
|
|
function create_file_backup() {
|
|
local source_file="$1"
|
|
local timestamp="$2"
|
|
local filename
|
|
|
|
filename=$(basename "$source_file")
|
|
local backup_file="$BACKUP_DIR/${filename}.$timestamp"
|
|
|
|
[[ -f "$source_file" ]] || err "Source file does not exist: $source_file"
|
|
[[ -r "$source_file" ]] || err "Cannot read source file: $source_file"
|
|
|
|
cp "$source_file" "$backup_file" || err "Failed to create backup: $backup_file"
|
|
|
|
# Verify backup integrity
|
|
if ! cmp -s "$source_file" "$backup_file"; then
|
|
err "Backup verification failed for: $backup_file"
|
|
fi
|
|
|
|
msg "Created backup: $backup_file"
|
|
}
|
|
|
|
function perform_backup {
|
|
local timestamp
|
|
timestamp=$(date +%Y%m%d_%H%M%S)
|
|
|
|
create_backup_directory
|
|
create_file_backup "$NODES_PM_FILE" "$timestamp"
|
|
create_file_backup "$PVE_MANAGER_LIB_JS_FILE" "$timestamp"
|
|
}
|
|
|
|
# Process the arguments using a while loop and a case statement
|
|
executed=0
|
|
while [[ $# -gt 0 ]]; do
|
|
case "$1" in
|
|
install)
|
|
executed=$(($executed + 1))
|
|
msgb "\nInstalling the Proxmox VE sensors display mod..."
|
|
install_packages
|
|
install_mod
|
|
echo # add a new line
|
|
;;
|
|
uninstall)
|
|
executed=$(($executed + 1))
|
|
msgb "\nUninstalling the Proxmox VE sensors display mod..."
|
|
uninstall_mod
|
|
echo # add a new line
|
|
;;
|
|
save-sensors-data)
|
|
executed=$(($executed + 1))
|
|
msgb "\nSaving current sensor readings in a file for debugging..."
|
|
save_sensors_data
|
|
echo # add a new line
|
|
;;
|
|
esac
|
|
shift
|
|
done
|
|
|
|
# If no arguments were provided or all arguments have been processed, print the usage message
|
|
if [[ $executed -eq 0 ]]; then
|
|
usage
|
|
fi |