Phase 2 documentation implementation: - Created HARDWARE.md: Complete hardware inventory (servers, GPUs, storage, network cards) - Created SERVICES.md: Service inventory with URLs, credentials, health checks (25+ services) - Created MONITORING.md: Health monitoring recommendations, alert setup, implementation plan - Created MAINTENANCE.md: Regular procedures, update schedules, testing checklists - Updated README.md: Added all Phase 2 documentation links - Updated CLAUDE.md: Cleaned up to quick reference only (1340→377 lines) All detailed content now in specialized documentation files with cross-references. 🤖 Generated with [Claude Code](https://claude.com/claude-code) Co-Authored-By: Claude Sonnet 4.5 <noreply@anthropic.com>
510 lines
13 KiB
Markdown
510 lines
13 KiB
Markdown
# Power Management and Optimization
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Documentation of power optimizations applied to reduce idle power consumption and heat generation.
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## Overview
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Combined estimated power draw: **~1000-1350W under load**, **500-700W idle**
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Through various optimizations, we've reduced idle power consumption by approximately **150-250W** compared to default settings.
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---
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## Power Draw Estimates
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### PVE (10.10.10.120)
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| Component | Idle | Load | TDP |
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|-----------|------|------|-----|
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| Threadripper PRO 3975WX | 150-200W | 400-500W | 280W |
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| NVIDIA TITAN RTX | 2-3W | 250W | 280W |
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| NVIDIA Quadro P2000 | 25W | 70W | 75W |
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| RAM (128 GB DDR4) | 30-40W | 30-40W | - |
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| Storage (NVMe + SSD) | 20-30W | 40-50W | - |
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| HBAs, fans, misc | 20-30W | 20-30W | - |
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| **Total** | **250-350W** | **800-940W** | - |
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### PVE2 (10.10.10.102)
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| Component | Idle | Load | TDP |
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|-----------|------|------|-----|
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| Threadripper PRO 3975WX | 150-200W | 400-500W | 280W |
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| NVIDIA RTX A6000 | 11W | 280W | 300W |
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| RAM (128 GB DDR4) | 30-40W | 30-40W | - |
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| Storage (NVMe + HDD) | 20-30W | 40-50W | - |
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| Fans, misc | 15-20W | 15-20W | - |
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| **Total** | **226-330W** | **765-890W** | - |
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### Combined
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| Metric | Idle | Load |
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|--------|------|------|
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| Servers | 476-680W | 1565-1830W |
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| Network gear | ~50W | ~50W |
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| **Total** | **~530-730W** | **~1615-1880W** |
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| **UPS Load** | 40-55% | 120-140% ⚠️ |
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**Note**: UPS capacity is 1320W. Under heavy load, servers can exceed UPS capacity, which is acceptable since high load is rare.
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---
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## Optimizations Applied
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### 1. KSMD Disabled (2024-12-17)
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**KSM** (Kernel Same-page Merging) scans memory to deduplicate identical pages across VMs.
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**Problem**:
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- KSMD was consuming 44-57% CPU continuously on PVE
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- Caused CPU temp to rise from 74°C to 83°C
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- **Negative profit**: More power spent scanning than saved from deduplication
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**Solution**: Disabled KSM permanently
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**Configuration**:
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**Systemd service**: `/etc/systemd/system/disable-ksm.service`
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```ini
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[Unit]
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Description=Disable KSM (Kernel Same-page Merging)
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After=multi-user.target
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[Service]
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Type=oneshot
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ExecStart=/bin/sh -c 'echo 0 > /sys/kernel/mm/ksm/run'
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RemainAfterExit=yes
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[Install]
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WantedBy=multi-user.target
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```
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**Enable and start**:
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```bash
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systemctl daemon-reload
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systemctl enable --now disable-ksm
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systemctl mask ksmtuned # Prevent re-enabling
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```
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**Verify**:
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```bash
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# KSM should be disabled (run=0)
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cat /sys/kernel/mm/ksm/run # Should output: 0
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# ksmd should show 0% CPU
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ps aux | grep ksmd
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```
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**Savings**: ~60-80W + significant temperature reduction (74°C → 83°C prevented)
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**⚠️ Important**: Proxmox updates sometimes re-enable KSM. If CPU is unexpectedly hot, check:
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```bash
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cat /sys/kernel/mm/ksm/run
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# If 1, disable it:
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echo 0 > /sys/kernel/mm/ksm/run
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systemctl mask ksmtuned
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```
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---
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### 2. CPU Governor Optimization (2024-12-16)
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Default CPU governor keeps cores at max frequency even when idle, wasting power.
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#### PVE: `amd-pstate-epp` Driver
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**Driver**: `amd-pstate-epp` (modern AMD P-state driver)
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**Governor**: `powersave`
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**EPP**: `balance_power`
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**Configuration**:
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**Systemd service**: `/etc/systemd/system/cpu-powersave.service`
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```ini
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[Unit]
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Description=Set CPU governor to powersave with balance_power EPP
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After=multi-user.target
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[Service]
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Type=oneshot
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ExecStart=/bin/sh -c 'for cpu in /sys/devices/system/cpu/cpu*/cpufreq/scaling_governor; do echo powersave > $cpu; done'
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ExecStart=/bin/sh -c 'for cpu in /sys/devices/system/cpu/cpu*/cpufreq/energy_performance_preference; do echo balance_power > $cpu; done'
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RemainAfterExit=yes
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[Install]
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WantedBy=multi-user.target
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```
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**Enable**:
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```bash
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systemctl daemon-reload
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systemctl enable --now cpu-powersave
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```
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**Verify**:
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```bash
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# Check governor
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cat /sys/devices/system/cpu/cpu0/cpufreq/scaling_governor
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# Output: powersave
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# Check EPP
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cat /sys/devices/system/cpu/cpu0/cpufreq/energy_performance_preference
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# Output: balance_power
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# Check current frequency (should be low when idle)
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grep MHz /proc/cpuinfo | head -5
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# Should show ~1700-2200 MHz idle, up to 4000 MHz under load
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```
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#### PVE2: `acpi-cpufreq` Driver
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**Driver**: `acpi-cpufreq` (older ACPI driver)
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**Governor**: `schedutil` (adaptive, better than powersave for this driver)
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**Configuration**:
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**Systemd service**: `/etc/systemd/system/cpu-powersave.service`
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```ini
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[Unit]
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Description=Set CPU governor to schedutil
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After=multi-user.target
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[Service]
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Type=oneshot
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ExecStart=/bin/sh -c 'for cpu in /sys/devices/system/cpu/cpu*/cpufreq/scaling_governor; do echo schedutil > $cpu; done'
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RemainAfterExit=yes
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[Install]
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WantedBy=multi-user.target
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```
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**Enable**:
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```bash
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systemctl daemon-reload
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systemctl enable --now cpu-powersave
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```
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**Verify**:
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```bash
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cat /sys/devices/system/cpu/cpu0/cpufreq/scaling_governor
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# Output: schedutil
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grep MHz /proc/cpuinfo | head -5
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# Should show ~1700-2200 MHz idle
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```
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**Savings**: ~60-120W combined (CPUs now idle at 1.7-2.2 GHz instead of 4 GHz)
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**Performance impact**: Minimal - CPU still boosts to max frequency under load
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---
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### 3. GPU Power States (2024-12-16)
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GPUs automatically enter low-power states when idle. Verified optimal.
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| GPU | Location | Idle Power | P-State | Notes |
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|-----|----------|------------|---------|-------|
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| RTX A6000 | PVE2 | 11W | P8 | Excellent idle power |
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| TITAN RTX | PVE | 2-3W | P8 | Excellent idle power |
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| Quadro P2000 | PVE | 25W | P0 | Plex keeps it active |
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**Check GPU power state**:
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```bash
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# Via nvidia-smi (if installed in VM)
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ssh lmdev1 'nvidia-smi --query-gpu=name,power.draw,pstate --format=csv'
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# Expected output:
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# name, power.draw [W], pstate
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# NVIDIA TITAN RTX, 2.50 W, P8
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# Via lspci (from Proxmox host - shows link speed, not power)
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ssh pve 'lspci | grep -i nvidia'
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```
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**P-States**:
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- **P0**: Maximum performance
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- **P8**: Minimum power (idle)
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**No action needed** - GPUs automatically manage power states.
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**Savings**: N/A (already optimal)
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---
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### 4. Syncthing Rescan Intervals (2024-12-16)
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Aggressive 60-second rescans were keeping TrueNAS VM at 86% CPU constantly.
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**Changed**:
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- Large folders: 60s → **3600s** (1 hour)
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- Affected: downloads (38GB), documents (11GB), desktop (7.2GB), movies, pictures, notes, config
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**Configuration**: Via Syncthing UI on each device
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- Settings → Folders → [Folder Name] → Advanced → Rescan Interval
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**Savings**: ~60-80W (TrueNAS CPU usage dropped from 86% to <10%)
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**Trade-off**: Changes take up to 1 hour to detect instead of 1 minute
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- Still acceptable for most use cases
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- Manual rescan available if needed: `curl -X POST "http://localhost:8384/rest/db/scan?folder=FOLDER" -H "X-API-Key: API_KEY"`
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---
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### 5. ksmtuned Disabled (2024-12-16)
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**ksmtuned** is the daemon that tunes KSM parameters. Even with KSM disabled, the tuning daemon was still running.
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**Solution**: Stopped and disabled on both servers
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```bash
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systemctl stop ksmtuned
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systemctl disable ksmtuned
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systemctl mask ksmtuned # Prevent re-enabling
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```
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**Savings**: ~2-5W
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---
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### 6. HDD Spindown on PVE2 (2024-12-16)
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**Problem**: `local-zfs2` pool (2x WD Red 6TB HDD) had only 768 KB used but drives spinning 24/7
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**Solution**: Configure 30-minute spindown timeout
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**Udev rule**: `/etc/udev/rules.d/69-hdd-spindown.rules`
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```udev
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# Spin down WD Red 6TB drives after 30 minutes idle
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ACTION=="add|change", KERNEL=="sd[a-z]", ATTRS{model}=="WDC WD60EFRX-68L*", RUN+="/sbin/hdparm -S 241 /dev/%k"
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```
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**hdparm value**: 241 = 30 minutes
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- Formula: `value * 5 seconds = timeout`
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- 241 * 5 = 1205 seconds = 20 minutes (approx 30 min with tolerances)
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**Apply rule**:
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```bash
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udevadm control --reload-rules
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udevadm trigger
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# Verify drives have spindown set
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hdparm -I /dev/sda | grep -i standby
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hdparm -I /dev/sdb | grep -i standby
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```
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**Check if drives are spun down**:
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```bash
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hdparm -C /dev/sda
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# Output: drive state is: standby (spun down)
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# or: drive state is: active/idle (spinning)
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```
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**Savings**: ~10-16W when spun down (8W per drive)
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**Trade-off**: 5-10 second delay when accessing pool after spindown
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---
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## Potential Optimizations (Not Yet Applied)
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### PCIe ASPM (Active State Power Management)
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**Benefit**: Reduce power of idle PCIe devices
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**Risk**: May cause stability issues with some devices
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**Estimated savings**: 5-15W
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**Test**:
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```bash
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# Check current ASPM state
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lspci -vv | grep -i aspm
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# Enable ASPM (test first)
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# Add to kernel cmdline: pcie_aspm=force
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# Edit /etc/default/grub:
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GRUB_CMDLINE_LINUX_DEFAULT="quiet pcie_aspm=force"
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# Update grub
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update-grub
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reboot
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```
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### NMI Watchdog Disable
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**Benefit**: Reduce CPU wakeups
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**Risk**: Harder to debug kernel hangs
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**Estimated savings**: 1-3W
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**Test**:
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```bash
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# Disable NMI watchdog
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echo 0 > /proc/sys/kernel/nmi_watchdog
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# Make permanent (add to kernel cmdline)
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# Edit /etc/default/grub:
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GRUB_CMDLINE_LINUX_DEFAULT="quiet nmi_watchdog=0"
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update-grub
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reboot
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```
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---
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## Monitoring
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### CPU Frequency
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```bash
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# Current frequency on all cores
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ssh pve 'grep MHz /proc/cpuinfo | head -10'
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# Governor
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ssh pve 'cat /sys/devices/system/cpu/cpu0/cpufreq/scaling_governor'
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# Available governors
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ssh pve 'cat /sys/devices/system/cpu/cpu0/cpufreq/scaling_available_governors'
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```
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### CPU Temperature
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```bash
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# PVE
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ssh pve 'for f in /sys/class/hwmon/hwmon*/temp*_input; do label=$(cat ${f%_input}_label 2>/dev/null); if [ "$label" = "Tctl" ]; then echo "PVE Tctl: $(($(cat $f)/1000))°C"; fi; done'
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# PVE2
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ssh pve2 'for f in /sys/class/hwmon/hwmon*/temp*_input; do label=$(cat ${f%_input}_label 2>/dev/null); if [ "$label" = "Tctl" ]; then echo "PVE2 Tctl: $(($(cat $f)/1000))°C"; fi; done'
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```
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**Healthy temps**: 70-80°C under load
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**Warning**: >85°C
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**Throttle**: 90°C (Tctl max for Threadripper PRO)
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### GPU Power Draw
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```bash
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# If nvidia-smi installed in VM
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ssh lmdev1 'nvidia-smi --query-gpu=name,power.draw,power.limit,pstate --format=csv'
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# Sample output:
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# name, power.draw [W], power.limit [W], pstate
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# NVIDIA TITAN RTX, 2.50 W, 280.00 W, P8
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```
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### Power Consumption (UPS)
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```bash
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# Check UPS load percentage
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ssh pve 'upsc cyberpower@localhost ups.load'
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# Battery runtime (seconds)
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ssh pve 'upsc cyberpower@localhost battery.runtime'
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# Full UPS status
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ssh pve 'upsc cyberpower@localhost'
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```
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See [UPS.md](UPS.md) for more UPS monitoring details.
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### ZFS ARC Memory Usage
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```bash
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# PVE
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ssh pve 'arc_summary | grep -A5 "ARC size"'
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# TrueNAS
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ssh truenas 'arc_summary | grep -A5 "ARC size"'
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```
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**ARC** (Adaptive Replacement Cache) uses RAM for ZFS caching. Adjust if needed:
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```bash
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# Limit ARC to 32 GB (example)
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# Edit /etc/modprobe.d/zfs.conf:
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options zfs zfs_arc_max=34359738368
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# Apply (reboot required)
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update-initramfs -u
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reboot
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```
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---
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## Troubleshooting
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### CPU Not Downclocking
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```bash
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# Check current governor
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cat /sys/devices/system/cpu/cpu0/cpufreq/scaling_governor
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# Should be: powersave (PVE) or schedutil (PVE2)
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# If not, systemd service may have failed
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# Check service status
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systemctl status cpu-powersave
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# Manually set governor (temporary)
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echo powersave | tee /sys/devices/system/cpu/cpu*/cpufreq/scaling_governor
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# Check frequency
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grep MHz /proc/cpuinfo | head -5
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```
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### High Idle Power After Update
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**Common causes**:
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1. **KSM re-enabled** after Proxmox update
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- Check: `cat /sys/kernel/mm/ksm/run`
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- Fix: `echo 0 > /sys/kernel/mm/ksm/run && systemctl mask ksmtuned`
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2. **CPU governor reset** to default
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- Check: `cat /sys/devices/system/cpu/cpu0/cpufreq/scaling_governor`
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- Fix: `systemctl restart cpu-powersave`
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3. **GPU stuck in high-performance mode**
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- Check: `nvidia-smi --query-gpu=pstate --format=csv`
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- Fix: Restart VM or power cycle GPU
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### HDDs Won't Spin Down
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```bash
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# Check spindown setting
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hdparm -I /dev/sda | grep -i standby
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# Set spindown manually (temporary)
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hdparm -S 241 /dev/sda
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# Check if drive is idle (ZFS may keep it active)
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zpool iostat -v 1 5 # Watch for activity
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# Check what's accessing the drive
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lsof | grep /mnt/pool
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```
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---
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## Power Optimization Summary
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| Optimization | Savings | Applied | Notes |
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|--------------|---------|---------|-------|
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| **KSMD disabled** | 60-80W | ✅ | Also reduces CPU temp significantly |
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| **CPU governor** | 60-120W | ✅ | PVE: powersave+balance_power, PVE2: schedutil |
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| **GPU power states** | 0W | ✅ | Already optimal (automatic) |
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| **Syncthing rescans** | 60-80W | ✅ | Reduced TrueNAS CPU usage |
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| **ksmtuned disabled** | 2-5W | ✅ | Minor but easy win |
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| **HDD spindown** | 10-16W | ✅ | Only when drives idle |
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| PCIe ASPM | 5-15W | ❌ | Not yet tested |
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| NMI watchdog | 1-3W | ❌ | Not yet tested |
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| **Total savings** | **~150-300W** | - | Significant reduction |
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---
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## Related Documentation
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- [UPS.md](UPS.md) - UPS capacity and power monitoring
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- [STORAGE.md](STORAGE.md) - HDD spindown configuration
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- [VMS.md](VMS.md) - VM resource allocation
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---
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**Last Updated**: 2025-12-22
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