das_fanctl.sh reads drive temps via smartctl (falling back to the EMM backplane sensors), interpolates a fan percentage, and re-sends _shutup on a 5s keepalive so the shelf does not revert to full speed. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
215 lines
9.0 KiB
Bash
Executable File
215 lines
9.0 KiB
Bash
Executable File
# Define global functions
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# This function applies Dell's default dynamic fan control profile
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function apply_Dell_fan_control_profile() {
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# Use ipmitool to send the raw command to set fan control to Dell default
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ipmitool -I $IDRAC_LOGIN_STRING raw 0x30 0x30 0x01 0x01 > /dev/null
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CURRENT_FAN_CONTROL_PROFILE="Dell default dynamic fan control profile"
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}
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#Get the TEMP of the TESLA P4 installed in this servers
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#Should probably set a variable so this function can check temps of any GPU using nvidia-smi
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retrieve_gpu_temperature() {
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if [ -x /usr/bin/nvidia-smi ]; then
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# Get the index of the Tesla P4 GPU using nvidia-smi
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index=$(nvidia-smi --query-gpu=name,index --format=csv | grep "Tesla P4" | cut -d ',' -f 2)
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else
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index=""
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fi
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if [ "$index" != "" ]; then
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# Get the temperature of the Tesla P4 GPU using nvidia-smi and the index obtained above
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GPU_TEMPERATURE=$(nvidia-smi --query-gpu=temperature.gpu --format=csv | head -$(( $(($index + 2)) )) | tail -1)
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else
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GPU_TEMPERATURE="0"
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fi
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}
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# Apply user-defined fan control settings
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#
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# This function applies user-defined fan control settings based on the fan speed.
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# It handles both decimal and hexadecimal fan speed inputs, converting between them as needed.
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# The function then applies the fan control and updates the current fan control profile.
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#
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# Parameters:
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# $1 (LOCAL_FAN_SPEED): The desired fan speed. Can be in decimal (0-100) or hexadecimal (0x00-0x64) format.
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#
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# Global variables used:
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# CURRENT_FAN_CONTROL_PROFILE: Updated with the current fan control profile description.
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#
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# Returns:
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# None.
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function apply_user_fan_control() {
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local LOCAL_FAN_SPEED=$1
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if [[ $LOCAL_FAN_SPEED == 0x* ]]; then
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local LOCAL_DECIMAL_FAN_SPEED
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LOCAL_DECIMAL_FAN_SPEED=$(printf '%d' "$LOCAL_FAN_SPEED")
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local LOCAL_HEXADECIMAL_FAN_SPEED=$LOCAL_FAN_SPEED
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else
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local LOCAL_DECIMAL_FAN_SPEED=$LOCAL_FAN_SPEED
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local LOCAL_HEXADECIMAL_FAN_SPEED
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LOCAL_HEXADECIMAL_FAN_SPEED=$(convert_decimal_value_to_hexadecimal "$LOCAL_FAN_SPEED")
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fi
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apply_fan_control_to_specified_value "$LOCAL_HEXADECIMAL_FAN_SPEED"
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CURRENT_FAN_CONTROL_PROFILE="User static fan control profile ($LOCAL_DECIMAL_FAN_SPEED%)"
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}
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# Apply fan control to a specified value
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#
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# This function sets the fan speed to a user-specified value using ipmitool.
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# It first checks if the input value is in hexadecimal format, and converts it
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# if necessary. Then it sends raw commands to iDRAC to set the fan control.
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#
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# Parameters:
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# $1 (VALUE): The desired fan speed value. Can be in decimal or hexadecimal format.
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# If in decimal, it will be converted to hexadecimal.
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#
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# Returns:
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# None
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#
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# Note:
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# This function uses the global variable $IDRAC_LOGIN_STRING for iDRAC login.
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function apply_fan_control_to_specified_value() {
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local VALUE=$1
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# Check if the input value is a hexadecimal number, if not, convert it to hexadecimal
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if [[ $VALUE != 0x* ]]; then
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VALUE=$(convert_decimal_value_to_hexadecimal "$VALUE")
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fi
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# Use ipmitool to send the raw command to set fan control to user-specified value
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ipmitool -I $IDRAC_LOGIN_STRING raw 0x30 0x30 0x01 0x00 > /dev/null
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ipmitool -I $IDRAC_LOGIN_STRING raw 0x30 0x30 0x02 0xff "$VALUE" > /dev/null
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}
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# Calculate the interpolated fan speed based on CPU temperature
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#
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# This function calculates the interpolated fan speed based on the current CPU temperature
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# and predefined thresholds. It uses linear interpolation to adjust the fan speed
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# within a specified range when the CPU temperature exceeds a certain threshold.
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#
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# Parameters:
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# $1 (HIGHEST_TEMPERATURE): The current highest CPU/GPU temperature (in Celsius)
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# $2 (TEMPERATURE_THRESHOLD_FOR_FAN_SPEED_INTERPOLATION): The lower temperature threshold for fan speed interpolation (in Celsius)
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# $3 (TEMPERATURE_THRESHOLD): The upper temperature threshold for fan speed interpolation (in Celsius)
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# $4 (LOCAL_DECIMAL_FAN_SPEED): The base fan speed (as a decimal percentage, 0-100)
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# $5 (LOCAL_DECIMAL_HIGH_FAN_SPEED): The maximum fan speed (as a decimal percentage, 0-100)
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#
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# Returns:
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# The calculated interpolated fan speed as a decimal percentage (0-100)
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# If the temperature is below or equal to the lower threshold, returns the base fan speed
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# If the temperature is above or equal to the upper threshold, returns the maximum fan speed
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#
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# Usage:
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# calculate_interpolated_fan_speed <highest_cpu_temp> <lower_threshold> <upper_threshold> <base_fan_speed> <max_fan_speed>
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#
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# Example:
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# calculate_interpolated_fan_speed 70 60 80 30 100
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function calculate_interpolated_fan_speed() {
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local HIGHEST_CPU_TEMPERATURE=$1
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local CPU_TEMPERATURE_THRESHOLD_FOR_FAN_SPEED_INTERPOLATION=$2
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local CPU_TEMPERATURE_THRESHOLD=$3
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local LOCAL_DECIMAL_FAN_SPEED=$4
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local LOCAL_DECIMAL_HIGH_FAN_SPEED=$5
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# If temperature is below or equal to the lower threshold, return the base fan speed
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if [ "$HIGHEST_CPU_TEMPERATURE" -le "$CPU_TEMPERATURE_THRESHOLD_FOR_FAN_SPEED_INTERPOLATION" ]; then
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echo "$LOCAL_DECIMAL_FAN_SPEED"
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return
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fi
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# If temperature is above or equal to the upper threshold, return the max fan speed
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if [ "$HIGHEST_CPU_TEMPERATURE" -ge "$CPU_TEMPERATURE_THRESHOLD" ]; then
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echo "$LOCAL_DECIMAL_HIGH_FAN_SPEED"
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return
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fi
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# F1 - lower fan speed
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# F2 - higher fan speed
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# T_CPU - highest temperature of both CPUs (if only one exists that will be CPU1 temp value)
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# T1 - lower temperature threshold
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# T2 - higher temperature threshold
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# Fan speed = F1 + ( ( F2 - F1 ) * ( T_CPU - T1 ) / ( T2 - T1 ) )
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local TEMPERATURE_INTERPOLATION_ACTIVATION_RANGE=$((CPU_TEMPERATURE_THRESHOLD - CPU_TEMPERATURE_THRESHOLD_FOR_FAN_SPEED_INTERPOLATION))
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local FAN_VALUE_TO_ADD=0
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if [ $TEMPERATURE_INTERPOLATION_ACTIVATION_RANGE -gt $FAN_VALUE_TO_ADD ]; then
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local TEMPERATURE_ABOVE_THRESHOLD_FOR_FAN_SPEED_INTERPOLATION=$((HIGHEST_CPU_TEMPERATURE - CPU_TEMPERATURE_THRESHOLD_FOR_FAN_SPEED_INTERPOLATION))
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local FAN_WINDOW=$((LOCAL_DECIMAL_HIGH_FAN_SPEED - LOCAL_DECIMAL_FAN_SPEED))
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FAN_VALUE_TO_ADD=$((FAN_WINDOW * TEMPERATURE_ABOVE_THRESHOLD_FOR_FAN_SPEED_INTERPOLATION / TEMPERATURE_INTERPOLATION_ACTIVATION_RANGE))
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fi
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local DECIMAL_CURRENT_FAN_SPEED=$((LOCAL_DECIMAL_FAN_SPEED + FAN_VALUE_TO_ADD))
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echo $DECIMAL_CURRENT_FAN_SPEED
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}
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# Convert first parameter given ($DECIMAL_NUMBER) to hexadecimal
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# Usage : convert_decimal_value_to_hexadecimal $DECIMAL_NUMBER
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# Returns : hexadecimal value of DECIMAL_NUMBER
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function convert_decimal_value_to_hexadecimal () {
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local DECIMAL_NUMBER=$1
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local HEXADECIMAL_NUMBER=$(printf '0x%02x' $DECIMAL_NUMBER)
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echo $HEXADECIMAL_NUMBER
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}
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# Retrieve temperature sensors data using ipmitool
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# Usage : retrieve_temperatures $IS_EXHAUST_TEMPERATURE_SENSOR_PRESENT $IS_CPU2_TEMPERATURE_SENSOR_PRESENT
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function retrieve_cpu_temperatures() {
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if (( $# != 2 )); then
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printf "Illegal number of parameters.\nUsage: retrieve_temperatures \$IS_EXHAUST_TEMPERATURE_SENSOR_PRESENT \$IS_CPU2_TEMPERATURE_SENSOR_PRESENT" >&2
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return 1
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fi
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local IS_EXHAUST_TEMPERATURE_SENSOR_PRESENT=$1
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local IS_CPU2_TEMPERATURE_SENSOR_PRESENT=$2
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local DATA=$(ipmitool -I $IDRAC_LOGIN_STRING sdr type temperature | grep degrees)
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# Parse CPU data
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local CPU_DATA=$(echo "$DATA" | grep "3\." | grep -Po '\d{2}')
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CPU1_TEMPERATURE=$(echo $CPU_DATA | awk "{print \$$CPU1_TEMPERATURE_INDEX;}")
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if $IS_CPU2_TEMPERATURE_SENSOR_PRESENT; then
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CPU2_TEMPERATURE=$(echo $CPU_DATA | awk "{print \$$CPU2_TEMPERATURE_INDEX;}")
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else
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CPU2_TEMPERATURE="-"
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fi
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# Parse inlet temperature data
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INLET_TEMPERATURE=$(echo "$DATA" | grep Inlet | grep -Po '\d{2}' | tail -1)
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# If exhaust temperature sensor is present, parse its temperature data
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if $IS_EXHAUST_TEMPERATURE_SENSOR_PRESENT; then
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EXHAUST_TEMPERATURE=$(echo "$DATA" | grep Exhaust | grep -Po '\d{2}' | tail -1)
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else
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EXHAUST_TEMPERATURE="-"
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fi
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}
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# Prepare traps in case of container exit
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function graceful_exit() {
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apply_Dell_fan_control_profile
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echo "/!\ WARNING /!\ Container stopped, Dell default dynamic fan control profile applied for safety."
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exit 0
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}
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# Helps debugging when people are posting their output
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function get_Dell_server_model() {
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IPMI_FRU_content=$(ipmitool -I $IDRAC_LOGIN_STRING fru 2>/dev/null) # FRU stands for "Field Replaceable Unit"
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# TODO - Add check if connection was established. There are a chance user type wrong login and pass. In my case it returns "Error: Unable to establish IPMI v2 / RMCP+ session"
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SERVER_MANUFACTURER=$(echo "$IPMI_FRU_content" | grep "Product Manufacturer" | awk -F ': ' '{print $2}')
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SERVER_MODEL=$(echo "$IPMI_FRU_content" | grep "Product Name" | awk -F ': ' '{print $2}')
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# Check if SERVER_MANUFACTURER is empty, if yes, assign value based on "Board Mfg"
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if [ -z "$SERVER_MANUFACTURER" ]; then
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SERVER_MANUFACTURER=$(echo "$IPMI_FRU_content" | tr -s ' ' | grep "Board Mfg :" | awk -F ': ' '{print $2}')
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fi
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# Check if SERVER_MODEL is empty, if yes, assign value based on "Board Product"
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if [ -z "$SERVER_MODEL" ]; then
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SERVER_MODEL=$(echo "$IPMI_FRU_content" | tr -s ' ' | grep "Board Product :" | awk -F ': ' '{print $2}')
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fi
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} |