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Electric guitar interface setup: Difference between revisions

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Update electric guitar interface setup: add new amp sims, fix config structure
Add practical example section: high-output pickups + low-headroom interfaces (Schecter Omen-6 + Scarlett Solo), pickup height and Gain tuning, passive DI-box
 
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This guide covers setting up an '''electric guitar''' with NixOS to achieve professional, low-latency audio processing. It targets live playing with round-trip latency (RTL) under 6 ms using the modern PipeWire and WirePlumber stack.
This guide covers setting up an '''electric guitar''' with NixOS to achieve professional, low-latency audio processing. It targets live playing with round-trip latency (RTL) under 6 ms using the modern PipeWire and WirePlumber stack.


{{Warning|Always start with monitoring volume at minimum when testing new signal chains. A sudden, loud feedback loop can be generated during loopback testing. Increase volume gradually only after the plugin is open and stable.}}
{{Warning
  |icon=⚠
  |color=var(--border-color-warning)
  |background=var(--background-color-warning-subtle)
  |Always start testing new signal chains with the monitoring volume at minimum. A sudden, loud feedback loop can be generated during loopback testing. Increase the volume gradually only after the plugin is open and stable.
}}


The digital signal chain for a guitar consists of:
The digital signal chain for a guitar consists of:
# '''Instrument-level signal''' from Hi-Z pickups.
# '''Instrument-level signal''' from Hi-Z pickups.
# '''Analog-to-Digital conversion''' via an external audio interface.
# '''Analog-to-digital conversion''' via an external audio interface.
# '''Real-time processing''' on NixOS using a low-latency kernel and specialized software.
# '''Real-time processing''' on NixOS using a low-latency kernel and specialized software.


{{Note|Software-reported latency values are often inaccurate. Physical measurement via a loopback test is mandatory for verification.}}
{{Note
  |icon=ℹ
  |color=var(--border-color-info)
  |background=var(--background-color-info-subtle)
  |Software-reported latency values are often inaccurate. Physical measurement via a loopback test is mandatory for verification.
}}


== Installation ==
== Quick Start ==


Add the following snippets to your <code>/etc/nixos/configuration.nix</code> or your flake. This configuration is optimized for high-performance CPUs (e.g., AMD Ryzen 7 9700X) running NixOS 26.05 "Yarara" or newer.
If you want to get sound from your guitar within 15 minutes, follow these minimal steps. Ensure you have a compatible USB audio interface (see [[#Hardware|Hardware]] section).


=== Sound server ===
# Connect your interface directly to the motherboard (rear USB port).
# Add the following minimal configuration to your <code>/etc/nixos/configuration.nix</code>:
<syntaxhighlight lang="nix">
  services.pipewire = {
    enable = true;
    alsa.enable = true;
    alsa.support32Bit = true;
    pulse.enable = true;
    jack.enable = true;
    wireplumber.enable = true;
    extraConfig.pipewire."92-low-latency" = {
      "context.properties" = {
        "default.clock.rate" = 48000;
        "default.clock.quantum" = 128;
        "default.clock.min-quantum" = 32;
        "default.clock.max-quantum" = 512;
      };
    };
  };
  security.rtkit.enable = true;
  environment.systemPackages = with pkgs; [ carla neural-amp-modeler-lv2 lsp-plugins pavucontrol ];
</syntaxhighlight>
# Rebuild and switch:
<syntaxhighlight lang="bash">
sudo nixos-rebuild switch
systemctl --user restart pipewire wireplumber
</syntaxhighlight>
# Open <code>pavucontrol</code>, go to the '''Configuration''' tab, and set your interface profile to '''Pro Audio'''.
# Launch <code>carla</code>, add the <code>Neural Amp Modeler</code> plugin, and connect your interface's input to the plugin and the plugin's output to the interface.
 
== Hardware ==
 
Standard PC line-ins are unsuitable for guitar due to impedance mismatch. You need a dedicated interface with a Hi-Z (Instrument) input.
 
=== Why special cards are needed ===
 
Linux supports USB Audio Class 2.0 (UAC2) compliant devices natively. However, '''Thunderbolt audio interfaces generally do not work on Linux''' due to proprietary, closed protocols. Even high-end interfaces from Focusrite (Clarett Thunderbolt), RME, and Universal Audio will not function properly. Always choose USB interfaces, unless you are willing to use an experimental, reverse-engineered driver that currently only supports basic control routing without PCM audio streaming.
 
=== The clipping problem ===
 
{{Warning
  |icon=⚠
  |color=var(--border-color-warning)
  |background=var(--background-color-warning-subtle)
  |'''Input headroom and clipping:''' Many budget and mid-range interfaces have limited headroom on their Hi-Z inputs. Modern high-output passive or active pickups can cause digital clipping at the ADC stage ''before'' the signal reaches 0 dB in your DAW, even with the gain knob at minimum.
}}
 
The input headroom capacity is measured in '''dBu'''. A higher value means the interface can handle louder input transients without clipping.
 
{| class="wikitable" style="text-align: center; width: 500px;"
|-
! Device !! Headroom (dBu) !! Status
|-
| '''PreSonus Studio HD2 / 24c''' || 21 dBu || ✅ Excellent
|-
| '''MOTU M2 / M4''' || 16 dBu || ✅ Good
|-
| '''Focusrite Scarlett 2i2 3rd Gen''' || 12.5 dBu || ⚠️ Average
|-
| '''Audient iD14 MkII''' || 9 dBu || ❌ Clips easily
|-
| '''Steinberg UR44''' || 8.5 dBu || ❌ Clips easily
|}
 
=== Practical example: high-output pickups and low-headroom interfaces ===
 
This section demonstrates how to set up a guitar with high-output pickups when using an interface with limited input headroom. The principles apply to any similar setup.
 
'''Example setup:'''
* '''Guitar:''' Schecter Omen-6 with Schecter Diamond Plus ceramic humbuckers and 9–42 strings.
* '''Interface:''' Focusrite Scarlett Solo (3rd Gen) — 12.5 dBu headroom on the Hi-Z input.
 
==== Step 1: Physical guitar setup ====
 
High-output ceramic humbuckers combined with light strings produce a very sharp attack that can easily clip low-headroom inputs. To reduce the signal at the source:
 
# '''Lower the bridge pickup''' using a screwdriver. Turn the height screws clockwise to move the pickup further from the strings. This reduces the magnetic field strength and the output voltage.
# '''Set the guitar volume knob to 7–8''' instead of 10. This preserves tone while reducing peak transients.
 
{{Tip|Test the difference: play a hard downstroke on the 6th string with the volume at 10, then at 7. Notice how the waveform peaks are reduced without losing sustain.}}
 
==== Step 2: Interface configuration ====
 
# '''Enable INST mode:''' Press the INST button on the Scarlett Solo. The indicator should light up. Without this, the input operates in mic mode (low impedance), causing muffled tone and instant clipping.
# '''Set Gain to minimum (0):''' Turn the gain knob fully counter-clockwise.
 
==== Step 3: Testing for clipping ====
 
Open your DAW or a visualizer plugin (e.g., LSP Analyzer) and play the hardest downstroke you can on the open 6th string.
 
* '''If the waveform shows flat tops''' (hard clipping) even at 0% gain, your interface cannot handle the signal level.
* '''If the peaks stay around −12 dBFS or lower,''' you have sufficient headroom.
 
{{Warning|If clipping persists at minimum gain, do '''not''' try to "fix" it by turning down the guitar volume further — this changes your tone. Instead, use a passive DI-box.}}
 
==== Step 4: Using a passive DI-box ====
 
If your interface clips even at 0% gain, insert a '''passive DI-box''' (e.g., Palmer PAN 01, ART DTI, AMT Reincarnator RD2) between the guitar and the interface:
 
# Connect guitar → DI-box input (TS cable).
# Connect DI-box XLR output → interface mic input (XLR cable).
# Make sure Phantom Power (+48V) is '''off''' — a passive DI-box does not require it.
# Disable the INST button on the interface, since the signal now arrives at the mic input.
 
This converts the instrument-level signal to mic-level, matching the interface's input stage and preserving the full dynamic range of your playing.
 
{{Note|Passive DI-boxes are preferred over active ones for this use case because they provide natural attenuation without adding noise or requiring external power.}}
 
==== Choosing an interface by headroom ====
 
When selecting an interface, check the '''Maximum Input Level (dBu)''' of its instrument input:
 
* '''≥ 15 dBu''' — sufficient headroom for most humbuckers; a DI-box is not needed.
* '''10–14 dBu''' — works with most guitars, but a DI-box may be required with hot pickups.
* '''< 10 dBu''' — high risk of clipping with humbuckers; a DI-box is almost mandatory.
 
The Focusrite Scarlett 2i2 and Solo (3rd Gen) have a value of '''12.5 dBu''', which is average. With high-output pickups, clipping is easy to hit. This is why the Schecter Omen-6 + Scarlett Solo combination is a classic example where either careful Gain and pickup-height adjustment or a passive DI-box is required.
 
=== Recommendations ===
 
For NixOS, plug-and-play compatibility is critical. Choose interfaces with high dBu ratings to preserve the natural attack of your guitar.
 
{| class="wikitable" style="text-align: left;"
|-
! Device !! Notes
|-
| '''Focusrite Scarlett 4th Gen (Solo/2i2/4i4)''' || Plug-and-play. Requires disabling MSD Mode (hold 48V button while powering on). <code>alsa-scarlett-gui</code> v1.0 beta 9 works natively.
|-
| '''Focusrite Scarlett 4th Gen (16i16/18i16/18i20)''' || Requires kernel ≥ 6.12, <code>fcp-support</code>, and a firmware update via <code>alsa-scarlett-gui</code>.
|-
| '''MOTU M2 / M4''' || Native ALSA kernel support (requires kernel ≥ 6.1). Direct hardware mixer control via <code>alsamixer</code>. Exceptionally stable USB-C latency.
|-
| '''Audient iD4 / iD14 (All Generations)''' || Fully functional on NixOS. Note: iD14 MkII has limited Hi-Z headroom (9 dBu).
|}


Configure PipeWire with global low-latency defaults and disable node suspension to prevent audio pops on USB interfaces. Note that legacy <code>pulse.min.req</code> parameters are deprecated in PipeWire 0.3.80+ and handled globally by <code>default.clock.*</code>.
=== DI-box ===
 
If you already own a budget interface with low dBu and experience clipping, '''use a passive DI-box''' (e.g., Palmer PAN 01, ART DTI). A passive DI-box naturally attenuates the signal by ~20–23 dB, converting it to a balanced microphone level. Connect the DI-box between your guitar and the interface's XLR input.
 
== System configuration ==
 
Add the following snippets to your <code>/etc/nixos/configuration.nix</code>. This configuration is optimized for high-performance CPUs.
 
=== PipeWire ===
 
Configure PipeWire with global low-latency defaults and disable node suspension to prevent audio pops on USB interfaces. Note that WirePlumber 0.5+ (standard in NixOS 26.05) supports SPA-JSON syntax, which is preferred over deprecated Lua scripts.


<syntaxhighlight lang="nix">
<syntaxhighlight lang="nix">
Line 31: Line 184:
       "context.properties" = {
       "context.properties" = {
         "default.clock.rate" = 48000;      # Fixed rate avoids resampling latency
         "default.clock.rate" = 48000;      # Fixed rate avoids resampling latency
         "default.clock.quantum" = 128;      # ~5ms latency at 48kHz
         "default.clock.quantum" = 128;      # ~5 ms latency at 48 kHz
         "default.clock.min-quantum" = 32;  # Allows top-tier interfaces to achieve ~1.5ms
         "default.clock.min-quantum" = 32;  # Allows top-tier interfaces to achieve ~1.5 ms
         "default.clock.max-quantum" = 512;
         "default.clock.max-quantum" = 512;
       };
       };
Line 47: Line 200:
           update-props = {
           update-props = {
             "session.suspend-timeout-seconds" = 0;
             "session.suspend-timeout-seconds" = 0;
            # Optional: Tweak by trial-and-error if crackling occurs on specific USB interfaces.
            # Do not apply globally without testing, as it may break built-in audio.
            # "api.alsa.period-size" = 2;
            # "api.alsa.headroom" = 8192;
           };
           };
         };
         };
Line 57: Line 206:
   };
   };
</syntaxhighlight>
</syntaxhighlight>
=== Kernel and performance ===
Modern mainline kernels include merged PREEMPT_RT patches. Dynamic preemption (<code>preempt=full</code>) provides best-effort low latency without the overhead of a dedicated RT kernel. CPU frequency scaling must be locked to prevent sleep-state latency spikes.
<syntaxhighlight lang="nix">
  boot.kernelPackages = pkgs.linuxPackages_latest;
  boot.kernelParams = [
    "preempt=full"             
    "usbcore.autosuspend=-1"    # Prevent USB audio interface sleep
  ];
  services.power-profiles-daemon.enable = false;
  powerManagement.cpuFreqGovernor = "performance";
  programs.gamemode.enable = true; # Can elevate priorities for real-time audio applications
</syntaxhighlight>
{{Note|Always verify your bootloader configuration after changing kernel parameters to ensure they are applied correctly.}}


=== Real-time scheduling ===
=== Real-time scheduling ===
Line 72: Line 239:
    
    
   users.users.yourname.extraGroups = [ "audio" ]; # Replace 'yourname' with your username
   users.users.yourname.extraGroups = [ "audio" ]; # Replace 'yourname' with your username
</syntaxhighlight>
=== Kernel and performance ===
Modern mainline kernels include merged PREEMPT_RT patches. Dynamic preemption (<code>preempt=full</code>) provides best-effort low latency without the overhead of a dedicated RT kernel. CPU frequency scaling must be locked to prevent sleep-state latency spikes.
<syntaxhighlight lang="nix">
  boot.kernelPackages = pkgs.linuxPackages_latest;
  boot.kernelParams = [
    "threadirqs"
    "preempt=full"             
    "amd_pstate=active"        # Zen 4/5: active mode provides best EPP and responsiveness
    "usbcore.autosuspend=-1"    # Prevent USB audio interface sleep
  ];
  services.power-profiles-daemon.enable = false;
  powerManagement.cpuFreqGovernor = "performance";
  programs.gamemode.enable = true; # Can elevate priorities for real-time audio applications
</syntaxhighlight>
</syntaxhighlight>


Line 111: Line 260:
</syntaxhighlight>
</syntaxhighlight>


=== System packages ===
== Software installation ==


<syntaxhighlight lang="nix">
<syntaxhighlight lang="nix">
   nixpkgs.config.allowUnfree = true; # Required for REAPER, Bitwig Studio, etc.
   nixpkgs.config.allowUnfree = true; # Required for REAPER, Bitwig Studio
   environment.systemPackages = with pkgs; [
   environment.systemPackages = with pkgs; [
     # --- Utilities & routing ---
     # --- Utilities & routing ---
     qpwgraph            # Visual patchbay for PipeWire (v1.0.3+)
     qpwgraph            # Visual patchbay for PipeWire (v1.0.4+)
     pwvucontrol        # Modern native PipeWire volume control
     pwvucontrol        # Modern native PipeWire volume control (v0.5.3+)
     pavucontrol        # Fallback for Pro Audio profile selection
     pavucontrol        # Fallback for Pro Audio profile selection
     pw-top              # Real-time CPU usage per audio node
     pw-top              # Real-time CPU usage per audio node
Line 135: Line 284:


     # --- Plugins (LV2/CLAP) ---
     # --- Plugins (LV2/CLAP) ---
     neural-amp-modeler-lv2  # NAM: AI captures of real tube amps
     neural-amp-modeler-lv2  # NAM: AI captures of real tube amps (v0.2.3, supports A2)
     proteus              # Neural network modeling (LSTM) by GuitarML
     proteus              # Neural network modeling (LSTM) by GuitarML
     lsp-plugins          # Professional EQ, compression, IR loader (now available in CLAP)
     lsp-plugins          # Professional EQ, compression, IR loader (now available in CLAP)
Line 144: Line 293:
     chow-centaur          # Klon Centaur emulation
     chow-centaur          # Klon Centaur emulation
     chow-phaser          # Phaser emulation
     chow-phaser          # Phaser emulation
    ratatouille-lv2      # Dual neural modeler (loads .nam, .json, .aidax)


     # --- Practice & learning ---
     # --- Practice & learning ---
Line 151: Line 301:
     # --- Windows VST compatibility ---
     # --- Windows VST compatibility ---
     yabridge
     yabridge
     (yabridgectl.override { wine = wineWow64Packages.stable; }) # Explicit Wine path
     (yabridgectl.override { wine = wineWow64Packages.stable; }) # Explicit 64-bit Wine path
     wineWow64Packages.stable  # Use wineWow64Packages, as wineWowPackages is deprecated
     wineWow64Packages.stable  # Note: wineWowPackages is deprecated
   ];
   ];
</syntaxhighlight>
</syntaxhighlight>


=== Digital audio workstations ===


== Configuration ==
{| class="wikitable" style="text-align: left;"
 
=== Applying changes ===
 
<syntaxhighlight lang="bash">
sudo nixos-rebuild switch
 
# Apply PipeWire configuration changes (required after rebuild):
systemctl --user restart pipewire wireplumber
</syntaxhighlight>
 
=== Pro audio profile ===
 
To achieve minimal latency, you must bypass standard software mixing:
# Open <code>pavucontrol</code>.
# Go to the '''Configuration''' tab.
# Set your interface profile to '''Pro Audio'''.
 
If the "Pro Audio" profile is missing (or listed as "Digital Stereo" / "Multichannel" depending on the interface), ensure <code>pipewire-alsa</code> is installed and restart PipeWire. This profile disables software mixing and enables hardware-exclusive mode, which is critical for achieving the lowest latency.
 
=== Dynamic buffer control ===
 
You can change latency dynamically without rebuilding the system. Note that this setting is temporary and will be lost after restarting PipeWire.
 
<syntaxhighlight lang="bash">
# Force quantum to 64 samples (pw-metadata syntax):
pw-metadata -n settings 0 clock.force-quantum 64
 
# Verify current settings:
pw-metadata -n settings
</syntaxhighlight>
 
Use <code>pw-top</code> in a separate terminal to monitor which applications are consuming the most DSP processing time. Look for the <code>ERR</code> column — values greater than zero indicate Xruns.
 
== Hardware and connection ==
 
Standard PC line-ins are unsuitable for guitar. Use a dedicated interface with a Hi-Z (Instrument) input.
 
{{Warning|'''Input headroom and clipping:''' Budget interfaces (e.g., Focusrite Scarlett, MOTU M2/M4, Audient iD series) have limited headroom on their Hi-Z inputs. Modern high-output passive or active pickups can cause digital clipping at the ADC stage ''before'' the signal reaches 0 dB in your DAW, even with the gain knob at minimum. '''Solution:''' Use a passive DI-box (e.g., Palmer PAN 01, ART DTI), an inline attenuator (pad), or physically lower your guitar's pickups to reduce the output signal.}}
 
=== Verified compatible devices ===
 
{| class="wikitable"
! Device !! Notes
|-
|-
| '''Focusrite Scarlett 4th Gen (Solo/2i2/4i4)''' || Plug-and-play. Requires disabling MSD Mode (hold 48V button while powering on). <code>alsa-scarlett-gui</code> works natively without extra packages.
|-
| '''Focusrite Scarlett 4th Gen (16i16/18i16/18i20)''' || Requires kernel ≥6.14, <code>fcp-support</code>, and a firmware update via <code>alsa-scarlett-gui</code>.
|-
| '''MOTU M2 / M4''' || Native ALSA kernel support (requires kernel ≥6.1+). Direct hardware mixer control via <code>alsamixer</code>. Exceptionally stable USB-C latency.
|-
| '''Universal Audio Volt 276''' || Reliable USB-C class-compliant interface.
|-
| '''Arturia MiniFuse 1''' || Stable performance under PipeWire.
|-
| '''Audient iD4 / iD14 (All Generations)''' || Fully functional on NixOS. No special drivers needed.
|}
=== Hardware rules ===
# Connect the interface '''directly to the motherboard''' (rear panel USB 3.0/3.2). Avoid USB hubs — they add latency and can cause Xruns.
# Use a high-quality, shielded USB cable. Audio dropouts are frequently caused by cheap cables acting as antennas for electrical interference.
# '''Disable Bluetooth''' during live playing: <code>rfkill block bluetooth</code>. The BT audio stack can generate interrupt storms causing Xruns.
# '''Limit GPU FPS''': High frame rates in 3D applications or GUI-heavy plugins can generate PCIe interrupt storms causing DPC latency spikes. Cap your FPS or enable VSync in your compositor.
=== Verification ===
<syntaxhighlight lang="bash">
lsusb                    # Confirm hardware connection
arecord -l              # Verify ALSA sees the capture input
aplay -l                # Verify ALSA sees the playback output
</syntaxhighlight>
== Software guide ==
This section explains the available software for guitar processing on NixOS, organized by purpose.
=== Digital audio workstations ===
{| class="wikitable"
! Software !! Purpose !! Notes
! Software !! Purpose !! Notes
|-
|-
| '''Ardour''' || Professional recording, mixing, editing || For absolute minimum RTL (<5ms), use the '''ALSA backend''' (bypasses PipeWire). Warning: ALSA locks the device exclusively — no other app can produce sound.
| '''Ardour''' || Professional recording, mixing, editing || For absolute minimum RTL (< 5 ms), use the '''ALSA backend''' (bypasses PipeWire). Warning: ALSA locks the device exclusively — no other app can produce sound.
|-
|-
| '''REAPER''' || Commercial DAW, lightweight, scriptable || Uses PipeWire-JACK natively. Excellent Linux support. Unlimited trial.
| '''REAPER''' || Commercial DAW, lightweight, scriptable || Uses PipeWire-JACK natively. Excellent Linux support. Can be declaratively configured via [https://github.com/9Prestidigitator/reaper-flake Reaper HM Flake].
|-
|-
| '''Bitwig Studio''' || Modern commercial DAW || Native Linux support. Superior CLAP format integration. ''Note: Direct ALSA backend on NixOS may require manual USB latency compensation; PipeWire-JACK is often more stable out-of-the-box.''
| '''Bitwig Studio''' || Modern commercial DAW || Native Linux support. Superior CLAP format integration. PipeWire-JACK is often more stable out-of-the-box than Direct ALSA.
|}
|}


=== Amp simulators and neural modelers ===
=== Amp simulators and neural modelers ===


{| class="wikitable"
{| class="wikitable" style="text-align: left;"
|-
! Software !! Purpose !! Notes
! Software !! Purpose !! Notes
|-
|-
| '''Neural Amp Modeler (NAM)''' || LV2 plugin. Loads <code>.nam</code> files || AI captures of real tube amps. Now supports '''Architecture 2 (A2)''' (June 2026), offering higher accuracy with lower CPU usage. Models: [https://tone3000.com TONE3000] (formerly ToneHunt).
| '''Neural Amp Modeler (NAM)''' || LV2 plugin. Loads <code>.nam</code> files || AI captures of real tube amps. Architecture 2 (A2) released in June 2026 offers higher accuracy with 30–40% less CPU. Models: [https://tone3000.com TONE3000].
|-
|-
| '''Proteus''' || LV2 plugin. Neural network modeling (LSTM) || By GuitarML. Faster preset switching than NAM.
| '''Proteus''' || LV2 plugin. Neural network modeling (LSTM) || By GuitarML. Faster preset switching than NAM.
|-
|-
| '''Kapitonov Plugins Pack (KPP)''' || Profile-based traditional amp modeling || Excellent for classic rock/metal. Lower CPU than neural nets. Available in LV2 and VST3.
| '''Kapitonov Plugins Pack (KPP)''' || Profile-based traditional amp modeling || Excellent for classic rock/metal. Available in LV2 and VST3.
|-
|-
| '''Guitarix''' || All-in-one virtual amp + pedals || Standalone or LV2. Now includes native modules for loading <code>.nam</code> and RTNeural (<code>.json</code>/<code>.aidax</code>) models.
| '''Guitarix''' || All-in-one virtual amp + pedals || Standalone or LV2. Includes native modules for loading <code>.nam</code> and RTNeural models.
|}
|}


{{Note|'''CRITICAL for KPP:''' The input level at the beginning of the Kapitonov Plugins Pack chain must be strictly around '''-20 dB''', otherwise the plugins will distort incorrectly. Use a meter plugin (e.g., LSP Meter) to verify.}}
{{Note
  |icon=ℹ
  |color=var(--border-color-info)
  |background=var(--background-color-info-subtle)
  |'''CRITICAL for KPP:''' The input level at the beginning of the Kapitonov Plugins Pack chain must be strictly around '''-20 dB''', otherwise the plugins will distort incorrectly. Use a meter plugin (e.g., LSP Meter) to verify.
}}


{{Warning|Neural amps (NAM, Proteus, KPP) only model preamp/poweramp. You must load a Cabinet IR (via LSP IR Loader or similar) to get a usable guitar tone. Without an IR, the sound will be thin and unpleasant.}}
{{Warning
  |icon=⚠
  |color=var(--border-color-warning)
  |background=var(--background-color-warning-subtle)
  |Neural amps (NAM, Proteus, KPP) only model preamp/poweramp. You must load a Cabinet IR (via LSP IR Loader or similar) to get a usable guitar tone. Without an IR, the sound will be thin and unpleasant.
}}


=== Effects plugins ===
=== Modular hosts ===


{| class="wikitable"
{| class="wikitable" style="text-align: left;"
! Plugin Pack !! Key Features
|-
|-
| '''LSP Plugins''' || Professional EQ, compression, gating. Includes LSP Latency Meter and LSP Impulse Response Loader. Now available in CLAP format.
|-
| '''Dragonfly Reverb''' || High-quality algorithmic reverb (Hall, Room, Plate).
|-
| '''Chow Plugins''' || High-fidelity emulations of classic pedals using RNN/WDF.
|-
| '''Calf Studio Gear''' || Vintage-style effects with "warm" analog character.
|-
| '''GxPlugins.lv2''' || Guitarix project pedals (distortion, overdrive, fuzz) as standalone LV2.
|}
=== Modular hosts ===
{| class="wikitable"
! Software !! Purpose
! Software !! Purpose
|-
|-
| '''Carla''' || Modular plugin host. Chain plugins visually: Input → Tuner → NAM → IR Loader → Reverb → Output. Hosts Windows VSTs via yabridge.
| '''Carla''' || Modular plugin host. Chain plugins visually: Input → Tuner → NAM → IR Loader → Reverb → Output. Hosts Windows VSTs via yabridge.
|-
|-
| '''qpwgraph''' || Visual patchbay for PipeWire/JACK (v1.0.3+). Manually connect hardware inputs to software hosts (PipeWire does not auto-connect).
| '''qpwgraph''' || Visual patchbay for PipeWire/JACK. Manually connect hardware inputs to software hosts (PipeWire does not auto-connect).
|}
|}


=== Windows VST compatibility ===
== Configuration and first launch ==


{| class="wikitable"
=== Pro audio profile ===
! Tool !! Purpose
|-
| '''yabridge + yabridgectl''' || Bridge for running Windows VST2/VST3/'''CLAP''' plugins on Linux via Wine. Essential for commercial plugins (Neural DSP, STL Tones, Amplitube). Note: yabridge 5.0+ supports CLAP, and <code>yabridgectl sync</code> registers them in <code>~/.clap/yabridge</code>.
|-
| '''PipeASIO''' || [https://github.com/M0n7y5/pipeasio Experimental] ASIO-to-PipeWire driver (v1.2.3+). Bypasses JACK entirely, connecting ASIO directly to PipeWire via <code>libpipewire-0.3</code>. Highly recommended for Windows DAWs (FL Studio, Ableton) or games in Proton, as it bypasses the missing <code>libjack.so.0</code> in the Steam Runtime container.
|}


<syntaxhighlight lang="bash">
To achieve minimal latency, you must bypass standard software mixing:
# After installing Windows plugins via Wine:
# Open <code>pavucontrol</code>.
yabridgectl sync  # Required to register plugins with Linux hosts
# Go to the '''Configuration''' tab.
</syntaxhighlight>
# Set your interface profile to '''Pro Audio'''.
 
== Tips and tricks ==
 
=== Rocksmith 2014 ===
 
Rocksmith 2014 runs on NixOS via Proton and PipeWire. There are two distinct approaches depending on your preferred audio routing. '''Do not mix them''', as they are mutually exclusive.
 
==== Approach A: Declarative via nixos-rocksmith (WineASIO + JACK) ====
This method uses the [https://codeberg.org/nizo/linux-rocksmith nixos-rocksmith] flake, which patches Steam to preload <code>libjack.so</code> and use <code>RS_ASIO</code> with WineASIO.
 
# Add the module to your flake and enable it:
<syntaxhighlight lang="nix">
programs.steam = {
  enable = true;
  rocksmithPatch.enable = true;
};
</syntaxhighlight>
# '''Steam Launch Options''':
<pre>LD_PRELOAD=/usr/lib32/libjack.so PIPEWIRE_LATENCY=128/48000 %command%</pre>
 
==== Approach B: PipeASIO (Direct ASIO to PipeWire) ====
This method bypasses JACK and WineASIO entirely. It is the preferred experimental method for Steam Runtime, as it does not require <code>libjack.so</code>.
 
# Build and install [https://github.com/M0n7y5/pipeasio PipeASIO] under <code>$HOME/.local</code> (Proton cannot see system-wide <code>/usr/lib/wine</code>).
# Register the driver in the game's Wine prefix:
<syntaxhighlight lang="bash">
env WINEPREFIX="$HOME/.steam/steam/steamapps/compatdata/221680/pfx" pipeasio-register
</syntaxhighlight>
# '''Steam Launch Options''' (point Proton to the local Wine libs):
<pre>WINEDLLPATH=$HOME/.local/lib/wine PROTON_USE_WOW64=1 gamemoderun %command%</pre>
 
{{Note|1=<code>PROTON_USE_WOW64=1</code> is required for 32-bit applications (like Rocksmith 2014) when using newer WoW64 architectures in Proton Experimental or Wine 9.0+. It may not be needed for older stable Proton versions.}}


{{Note|Rocksmith strictly requires a sample rate of 48000 Hz. Do not force 96000 Hz while playing.}}
If the "Pro Audio" profile is missing, ensure <code>pipewire-alsa</code> is installed and restart PipeWire. This profile disables software mixing and enables hardware-exclusive mode, critical for the lowest latency.


=== Measuring latency ===
=== Latency verification ===


Always perform a physical loopback test.
Always perform a physical loopback test to measure the real Round-trip Latency (RTL).


{{Warning|Before starting, turn output volume on your audio interface all the way down. A sudden, loud feedback loop can be generated if the connection is unstable. Increase volume gradually only after the plugin is open.}}
# Connect a cable from your interface '''Output''' back into the '''Input'''.
 
# Connect a cable from your interface '''Output''' back into the '''Input''' (use a TS/TRS patch cable).
# Launch LSP Latency Meter:
# Launch LSP Latency Meter:
<syntaxhighlight lang="bash">
<syntaxhighlight lang="bash">
Line 357: Line 386:


'''Target values''':
'''Target values''':
* < 5 ms: Professional / Imperceptible
* < 5 ms: Excellent
* 5–10 ms: Acceptable for practice
* 5–10 ms: Acceptable for practice
* > 12 ms: Noticeable "lag", difficult to play in time
* > 12 ms: Noticeable "lag", difficult to play in time


=== Quick start checklist ===
=== Typical processing chain ===


Before playing, verify:
For a standard metal/rock tone, route your signal in <code>carla</code> or your DAW as follows:
'''Hardware Input''' → '''Noise Gate''' (e.g., LSP Gate) → '''NAM''' (Load A2-Full model) → '''LSP IR Loader''' (Load Cabinet Impulse Response) → '''Dragonfly Reverb''' → '''Hardware Output'''.
 
== Windows VST via Wine ==
 
=== Yabridge ===
 
Yabridge (v5.1.1+) bridges Windows VST2/VST3/'''CLAP''' plugins to Linux via Wine. It is essential for commercial plugins (Neural DSP, STL Tones, Amplitube).


<syntaxhighlight lang="bash">
<syntaxhighlight lang="bash">
# 1. CPU governor is performance
# After installing Windows plugins via Wine:
cpupower frequency-info | grep "current policy"  # Should show "performance"
yabridgectl sync  # Required to register plugins with Linux hosts
</syntaxhighlight>
 
=== JUCE 8 black screen fix ===
 
{{Note
  |icon=ℹ
  |color=var(--border-color-info)
  |background=var(--background-color-info-subtle)
  |A widespread issue in 2026 affects JUCE 8-based plugins (e.g., Serum 2, Nexus 5) running via Wine/yabridge: the plugin GUI is a black window. This is because stock Wine lacks the Direct2D/DirectComposition render path required by JUCE 8.
}}
 
To fix this, you must use patched Wine builds. The [https://github.com/giang17/wine/tree/d2d1-dcomp-11.0 giang17/wine-d2d1-dcomp] project provides prebuilt binaries and a guide for Arch/CachyOS.
 
=== PipeASIO for Proton/Steam ===
 
For Windows DAWs (FL Studio, Ableton) or games (Rocksmith) running via Proton, [https://github.com/M0n7y5/pipeasio PipeASIO] (v1.7.0, Sept 2026) connects ASIO directly to PipeWire, bypassing the missing <code>libjack.so.0</code> in the Steam Runtime container.


# 2. PipeWire buffer is set
{{Note
pw-metadata -n settings # Should show clock.force-quantum 64 or 128
  |icon=ℹ
  |color=var(--border-color-info)
  |background=var(--background-color-info-subtle)
  |If using FL Studio via Wine/Proton, you must turn '''off''' "Mix in buffer switch" in Audio settings to prevent constant xruns.
}}


# 3. No Xruns reported (run pw-top in batch mode for clean output)
== Rocksmith 2014 ==
pw-top -b -n 1 | grep ERR  # Should show 0 or empty


# 4. Pro Audio profile active
Rocksmith 2014 runs on NixOS via Proton. The recommended method uses the [https://codeberg.org/nizo/linux-rocksmith nixos-rocksmith] flake, which patches Steam to preload <code>libjack.so</code> and use <code>RS_ASIO</code> with WineASIO. For visual patching, <code>crosspipe</code> is recommended as a modern alternative to <code>helvum</code>.
pavucontrol  # Configuration tab → your interface → Pro Audio


# 5. Plugin paths are set (for GUI apps)
<syntaxhighlight lang="nix">
echo $LV2_PATH  # Should include /run/current-system/sw/lib/lv2
programs.steam = {
  enable = true;
  rocksmithPatch.enable = true;
};
</syntaxhighlight>
</syntaxhighlight>
'''Steam Launch Options''':
<pre>LD_PRELOAD=/run/current-system/sw/lib/libjack.so PIPEWIRE_LATENCY=128/48000 %command%</pre>
{{Note
  |icon=ℹ
  |color=var(--border-color-info)
  |background=var(--background-color-info-subtle)
  |Rocksmith strictly requires a sample rate of 48000 Hz.
}}


== Troubleshooting ==
== Troubleshooting ==


{| class="wikitable"
{| class="wikitable" style="text-align: left;"
|-
! Symptom !! Cause & Solution
! Symptom !! Cause & Solution
|-
|-
| '''Xruns (audio glitches)''' || Ensure <code>powerManagement.cpuFreqGovernor = "performance"</code> is active. Check <code>pw-top</code> for high-CPU nodes. Close browsers/heavy apps during playing. Disable Wi-Fi: <code>sudo modprobe -r &lt;your_wifi_driver&gt;</code> or <code>rfkill block wifi</code> to prevent interrupt storms. As a last resort, add <code>processor.max_cstate=1</code> to <code>boot.kernelParams</code> (disables CPU sleep — results in extreme power draw and heat, use with caution).
| '''Xruns (audio glitches)''' || Ensure <code>powerManagement.cpuFreqGovernor = "performance"</code> is active. Check <code>pw-top</code> for high-CPU nodes. Disable Wi-Fi: find driver name via <code>lspci -k</code> or <code>lshw -class network</code>, then run <code>rfkill block wifi</code> to prevent interrupt storms.  
|-
| '''Extreme latency stutters''' || As a last resort, add <code>processor.max_cstate=1</code> to <code>boot.kernelParams</code>. '''Warning:''' This disables CPU sleep states, resulting in extreme power draw and heat. Use with caution.
|-
|-
| '''Input clipping / digital distortion''' || High-output pickups are overloading the interface's Hi-Z preamp. Use a passive DI-box, an inline pad, or lower your guitar's volume/pickup height.
| '''Input clipping / digital distortion''' || High-output pickups are overloading the interface's Hi-Z preamp (low dBu). Use a passive DI-box, an inline pad, or lower your guitar's pickup height.
|-
|-
| '''No sound''' || Check <code>qpwgraph</code> — PipeWire does not auto-connect hardware. Verify Pro Audio profile in <code>pavucontrol</code>. Run <code>sudo lsof /dev/snd/*</code> to find conflicting processes.
| '''No sound''' || Check <code>qpwgraph</code> — PipeWire does not auto-connect hardware. Verify Pro Audio profile in <code>pavucontrol</code>. Run <code>sudo lsof /dev/snd/*</code> to find conflicting processes.
Line 397: Line 467:
| '''Audio pops a few seconds after playback stops''' || WirePlumber suspends the ALSA node after 5 seconds of inactivity. Ensure <code>session.suspend-timeout-seconds = 0</code> is set in <code>wireplumber.extraConfig</code>.
| '''Audio pops a few seconds after playback stops''' || WirePlumber suspends the ALSA node after 5 seconds of inactivity. Ensure <code>session.suspend-timeout-seconds = 0</code> is set in <code>wireplumber.extraConfig</code>.
|-
|-
| '''USB crackling / dropouts''' || Increase <code>api.alsa.period-size</code> and <code>api.alsa.headroom</code> in the WirePlumber <code>extraConfig</code> (see Installation section).
| '''JUCE 8 VST shows black screen''' || Stock Wine lacks Direct2D support. Install <code>wine-d2d1-dcomp</code> patches by giang17 and route the specific plugin to this patched Wine version using yabridge's dispatcher trick.
|-
| '''GPU causing audio glitches''' || Disable GPU power management. Limit FPS in games/DAW to reduce PCIe interrupt storms (DPC latency). Prefer X11 session if you experience visual glitches with older JUCE-based plugins under Wayland.
|-
| '''Bluetooth causing Xruns''' || Disable Bluetooth stack: <code>rfkill block bluetooth</code> during live sessions.
|-
|-
| '''PipeWire config not applying''' || Restart user services after rebuild: <code>systemctl --user restart pipewire wireplumber</code>. Check for WirePlumber overrides: <code>wpctl status</code>.
| '''PipeWire config not applying''' || Restart user services after rebuild: <code>systemctl --user restart pipewire wireplumber</code>. Check for WirePlumber overrides: <code>wpctl status</code>.
Line 411: Line 477:
* [[Audio production]] — General audio configuration and plugin paths
* [[Audio production]] — General audio configuration and plugin paths
* [https://github.com/musnix/musnix musnix] — Deep NixOS audio optimizations module
* [https://github.com/musnix/musnix musnix] — Deep NixOS audio optimizations module
* [https://linuxmusicians.com/ LinuxMusicians Forum] — Community support
* [https://tone3000.com TONE3000] — Largest library of NAM A2 models and IRs
* [https://tone3000.com TONE3000] — Largest library of NAM models and IRs (formerly ToneHunt)
* [https://github.com/M0n7y5/pipeasio PipeASIO] — ASIO to PipeWire bridge for Wine/Proton
* [https://github.com/M0n7y5/pipeasio PipeASIO] — ASIO to PipeWire bridge for Wine/Proton
* [https://codeberg.org/nizo/linux-rocksmith linux-rocksmith] — Comprehensive guide to Rocksmith on Linux
* [https://github.com/OpenSauce/rustortion Rustortion] — Modern Rust-based amp sim (experimental, build from source)
* [https://github.com/OpenSauce/rustortion Rustortion] — Modern Rust-based amp sim (experimental, build from source)
* [https://github.com/AidaDSP/AIDA-X AIDA-X] — RTNeural-based amp model player (experimental)
* [https://github.com/AidaDSP/AIDA-X AIDA-X] — RTNeural-based amp model player (experimental)
* [https://github.com/brummer10/Ratatouille.lv2 Ratatouille.lv2] — Dual neural modeler (experimental)
* [https://github.com/brummer10/neural-amp-modeler-ui neural-amp-modeler-ui] — GUI wrapper for NAM (experimental)


[[Category:Guides]]
[[Category:Guides]]
[[Category:Hardware]]
[[Category:Hardware]]
[[Category:Sound]]
[[Category:Sound]]

Latest revision as of 07:24, 20 September 2026

This guide covers setting up an electric guitar with NixOS to achieve professional, low-latency audio processing. It targets live playing with round-trip latency (RTL) under 6 ms using the modern PipeWire and WirePlumber stack.

⚠︎
Warning: Always start testing new signal chains with the monitoring volume at minimum. A sudden, loud feedback loop can be generated during loopback testing. Increase the volume gradually only after the plugin is open and stable.

The digital signal chain for a guitar consists of:

  1. Instrument-level signal from Hi-Z pickups.
  2. Analog-to-digital conversion via an external audio interface.
  3. Real-time processing on NixOS using a low-latency kernel and specialized software.
Note: Software-reported latency values are often inaccurate. Physical measurement via a loopback test is mandatory for verification.

Quick Start

If you want to get sound from your guitar within 15 minutes, follow these minimal steps. Ensure you have a compatible USB audio interface (see Hardware section).

  1. Connect your interface directly to the motherboard (rear USB port).
  2. Add the following minimal configuration to your /etc/nixos/configuration.nix:
  services.pipewire = {
    enable = true;
    alsa.enable = true;
    alsa.support32Bit = true;
    pulse.enable = true;
    jack.enable = true;
    wireplumber.enable = true;
    extraConfig.pipewire."92-low-latency" = {
      "context.properties" = {
        "default.clock.rate" = 48000;
        "default.clock.quantum" = 128;
        "default.clock.min-quantum" = 32;
        "default.clock.max-quantum" = 512;
      };
    };
  };
  security.rtkit.enable = true;
  environment.systemPackages = with pkgs; [ carla neural-amp-modeler-lv2 lsp-plugins pavucontrol ];
  1. Rebuild and switch:
sudo nixos-rebuild switch
systemctl --user restart pipewire wireplumber
  1. Open pavucontrol, go to the Configuration tab, and set your interface profile to Pro Audio.
  2. Launch carla, add the Neural Amp Modeler plugin, and connect your interface's input to the plugin and the plugin's output to the interface.

Hardware

Standard PC line-ins are unsuitable for guitar due to impedance mismatch. You need a dedicated interface with a Hi-Z (Instrument) input.

Why special cards are needed

Linux supports USB Audio Class 2.0 (UAC2) compliant devices natively. However, Thunderbolt audio interfaces generally do not work on Linux due to proprietary, closed protocols. Even high-end interfaces from Focusrite (Clarett Thunderbolt), RME, and Universal Audio will not function properly. Always choose USB interfaces, unless you are willing to use an experimental, reverse-engineered driver that currently only supports basic control routing without PCM audio streaming.

The clipping problem

⚠︎
Warning: Input headroom and clipping: Many budget and mid-range interfaces have limited headroom on their Hi-Z inputs. Modern high-output passive or active pickups can cause digital clipping at the ADC stage before the signal reaches 0 dB in your DAW, even with the gain knob at minimum.

The input headroom capacity is measured in dBu. A higher value means the interface can handle louder input transients without clipping.

Device Headroom (dBu) Status
PreSonus Studio HD2 / 24c 21 dBu ✅ Excellent
MOTU M2 / M4 16 dBu ✅ Good
Focusrite Scarlett 2i2 3rd Gen 12.5 dBu ⚠️ Average
Audient iD14 MkII 9 dBu ❌ Clips easily
Steinberg UR44 8.5 dBu ❌ Clips easily

Practical example: high-output pickups and low-headroom interfaces

This section demonstrates how to set up a guitar with high-output pickups when using an interface with limited input headroom. The principles apply to any similar setup.

Example setup:

  • Guitar: Schecter Omen-6 with Schecter Diamond Plus ceramic humbuckers and 9–42 strings.
  • Interface: Focusrite Scarlett Solo (3rd Gen) — 12.5 dBu headroom on the Hi-Z input.

Step 1: Physical guitar setup

High-output ceramic humbuckers combined with light strings produce a very sharp attack that can easily clip low-headroom inputs. To reduce the signal at the source:

  1. Lower the bridge pickup using a screwdriver. Turn the height screws clockwise to move the pickup further from the strings. This reduces the magnetic field strength and the output voltage.
  2. Set the guitar volume knob to 7–8 instead of 10. This preserves tone while reducing peak transients.
🟆︎
Tip: Test the difference: play a hard downstroke on the 6th string with the volume at 10, then at 7. Notice how the waveform peaks are reduced without losing sustain.

Step 2: Interface configuration

  1. Enable INST mode: Press the INST button on the Scarlett Solo. The indicator should light up. Without this, the input operates in mic mode (low impedance), causing muffled tone and instant clipping.
  2. Set Gain to minimum (0): Turn the gain knob fully counter-clockwise.

Step 3: Testing for clipping

Open your DAW or a visualizer plugin (e.g., LSP Analyzer) and play the hardest downstroke you can on the open 6th string.

  • If the waveform shows flat tops (hard clipping) even at 0% gain, your interface cannot handle the signal level.
  • If the peaks stay around −12 dBFS or lower, you have sufficient headroom.
⚠︎
Warning: If clipping persists at minimum gain, do not try to "fix" it by turning down the guitar volume further — this changes your tone. Instead, use a passive DI-box.

Step 4: Using a passive DI-box

If your interface clips even at 0% gain, insert a passive DI-box (e.g., Palmer PAN 01, ART DTI, AMT Reincarnator RD2) between the guitar and the interface:

  1. Connect guitar → DI-box input (TS cable).
  2. Connect DI-box XLR output → interface mic input (XLR cable).
  3. Make sure Phantom Power (+48V) is off — a passive DI-box does not require it.
  4. Disable the INST button on the interface, since the signal now arrives at the mic input.

This converts the instrument-level signal to mic-level, matching the interface's input stage and preserving the full dynamic range of your playing.

Note: Passive DI-boxes are preferred over active ones for this use case because they provide natural attenuation without adding noise or requiring external power.

Choosing an interface by headroom

When selecting an interface, check the Maximum Input Level (dBu) of its instrument input:

  • ≥ 15 dBu — sufficient headroom for most humbuckers; a DI-box is not needed.
  • 10–14 dBu — works with most guitars, but a DI-box may be required with hot pickups.
  • < 10 dBu — high risk of clipping with humbuckers; a DI-box is almost mandatory.

The Focusrite Scarlett 2i2 and Solo (3rd Gen) have a value of 12.5 dBu, which is average. With high-output pickups, clipping is easy to hit. This is why the Schecter Omen-6 + Scarlett Solo combination is a classic example where either careful Gain and pickup-height adjustment or a passive DI-box is required.

Recommendations

For NixOS, plug-and-play compatibility is critical. Choose interfaces with high dBu ratings to preserve the natural attack of your guitar.

Device Notes
Focusrite Scarlett 4th Gen (Solo/2i2/4i4) Plug-and-play. Requires disabling MSD Mode (hold 48V button while powering on). alsa-scarlett-gui v1.0 beta 9 works natively.
Focusrite Scarlett 4th Gen (16i16/18i16/18i20) Requires kernel ≥ 6.12, fcp-support, and a firmware update via alsa-scarlett-gui.
MOTU M2 / M4 Native ALSA kernel support (requires kernel ≥ 6.1). Direct hardware mixer control via alsamixer. Exceptionally stable USB-C latency.
Audient iD4 / iD14 (All Generations) Fully functional on NixOS. Note: iD14 MkII has limited Hi-Z headroom (9 dBu).

DI-box

If you already own a budget interface with low dBu and experience clipping, use a passive DI-box (e.g., Palmer PAN 01, ART DTI). A passive DI-box naturally attenuates the signal by ~20–23 dB, converting it to a balanced microphone level. Connect the DI-box between your guitar and the interface's XLR input.

System configuration

Add the following snippets to your /etc/nixos/configuration.nix. This configuration is optimized for high-performance CPUs.

PipeWire

Configure PipeWire with global low-latency defaults and disable node suspension to prevent audio pops on USB interfaces. Note that WirePlumber 0.5+ (standard in NixOS 26.05) supports SPA-JSON syntax, which is preferred over deprecated Lua scripts.

  services.pipewire = {
    enable = true;
    alsa.enable = true;
    alsa.support32Bit = true; # Required for yabridge/wine VST bridging
    pulse.enable = true;
    jack.enable = true;
    wireplumber.enable = true;
    
    # Global low-latency defaults
    extraConfig.pipewire."92-low-latency" = {
      "context.properties" = {
        "default.clock.rate" = 48000;       # Fixed rate avoids resampling latency
        "default.clock.quantum" = 128;      # ~5 ms latency at 48 kHz
        "default.clock.min-quantum" = 32;   # Allows top-tier interfaces to achieve ~1.5 ms
        "default.clock.max-quantum" = 512;
      };
    };

    # Disable node suspension and fix crackling on problematic USB interfaces
    wireplumber.extraConfig."99-disable-suspend" = {
      "monitor.alsa.rules" = [{
        matches = [
          { "node.name" = "~alsa_input.*"; }
          { "node.name" = "~alsa_output.*"; }
        ];
        actions = {
          update-props = {
            "session.suspend-timeout-seconds" = 0;
          };
        };
      }];
    };
  };

Kernel and performance

Modern mainline kernels include merged PREEMPT_RT patches. Dynamic preemption (preempt=full) provides best-effort low latency without the overhead of a dedicated RT kernel. CPU frequency scaling must be locked to prevent sleep-state latency spikes.

  boot.kernelPackages = pkgs.linuxPackages_latest;
  boot.kernelParams = [ 
    "preempt=full"              
    "usbcore.autosuspend=-1"    # Prevent USB audio interface sleep
  ];

  services.power-profiles-daemon.enable = false;
  powerManagement.cpuFreqGovernor = "performance";
  programs.gamemode.enable = true; # Can elevate priorities for real-time audio applications
Note: Always verify your bootloader configuration after changing kernel parameters to ensure they are applied correctly.

Real-time scheduling

RTKit handles real-time privileges via D-Bus/Polkit. Critical PAM limits must be set to allow unlimited memlock and high real-time priority for audio buffers.

  security.rtkit.enable = true;
  
  security.pam.loginLimits = [
    { domain = "@audio"; item = "memlock"; type = "-"; value = "unlimited"; }
    { domain = "@audio"; item = "rtprio"; type = "-"; value = "99"; }
    { domain = "@audio"; item = "nice"; type = "-"; value = "-19"; }
  ];
  
  users.users.yourname.extraGroups = [ "audio" ]; # Replace 'yourname' with your username

Plugin search paths

Crucial for NixOS DAWs to find plugins reliably in Wayland/X11 sessions.

  environment.variables = let
    makePluginPath = format:
      (pkgs.lib.makeSearchPath format [
        "$HOME/.nix-profile/lib"
        "/run/current-system/sw/lib"
        "/etc/profiles/per-user/$USER/lib"
      ]) + ":$HOME/.${format}";
  in {
    LV2_PATH = makePluginPath "lv2";
    VST3_PATH = makePluginPath "vst3";
    CLAP_PATH = makePluginPath "clap";
  };

Software installation

  nixpkgs.config.allowUnfree = true; # Required for REAPER, Bitwig Studio
  environment.systemPackages = with pkgs; [
    # --- Utilities & routing ---
    qpwgraph            # Visual patchbay for PipeWire (v1.0.4+)
    pwvucontrol         # Modern native PipeWire volume control (v0.5.3+)
    pavucontrol         # Fallback for Pro Audio profile selection
    pw-top              # Real-time CPU usage per audio node
    easyeffects         # System-wide real-time EQ and effects
    
    # --- DAWs ---
    ardour
    reaper
    bitwig-studio       # Native Linux commercial DAW, excellent CLAP support

    # --- Plugin hosts ---
    carla               # Modular plugin host, supports Windows VST via yabridge

    # --- Standalone guitar processors ---
    guitarix            # Includes native NAM and RTNeural module support

    # --- Plugins (LV2/CLAP) ---
    neural-amp-modeler-lv2  # NAM: AI captures of real tube amps (v0.2.3, supports A2)
    proteus               # Neural network modeling (LSTM) by GuitarML
    lsp-plugins           # Professional EQ, compression, IR loader (now available in CLAP)
    calf                  # Vintage-style effects
    dragonfly-reverb      # High-quality algorithmic reverb
    gxplugins-lv2         # Guitarix project pedals as standalone LV2
    kapitonov-plugins-pack # Profile-based traditional amp modeling (VST3/LV2)
    chow-centaur          # Klon Centaur emulation
    chow-phaser           # Phaser emulation
    ratatouille-lv2       # Dual neural modeler (loads .nam, .json, .aidax)

    # --- Practice & learning ---
    tuxguitar
    hydrogen

    # --- Windows VST compatibility ---
    yabridge
    (yabridgectl.override { wine = wineWow64Packages.stable; }) # Explicit 64-bit Wine path
    wineWow64Packages.stable  # Note: wineWowPackages is deprecated
  ];

Digital audio workstations

Software Purpose Notes
Ardour Professional recording, mixing, editing For absolute minimum RTL (< 5 ms), use the ALSA backend (bypasses PipeWire). Warning: ALSA locks the device exclusively — no other app can produce sound.
REAPER Commercial DAW, lightweight, scriptable Uses PipeWire-JACK natively. Excellent Linux support. Can be declaratively configured via Reaper HM Flake.
Bitwig Studio Modern commercial DAW Native Linux support. Superior CLAP format integration. PipeWire-JACK is often more stable out-of-the-box than Direct ALSA.

Amp simulators and neural modelers

Software Purpose Notes
Neural Amp Modeler (NAM) LV2 plugin. Loads .nam files AI captures of real tube amps. Architecture 2 (A2) released in June 2026 offers higher accuracy with 30–40% less CPU. Models: TONE3000.
Proteus LV2 plugin. Neural network modeling (LSTM) By GuitarML. Faster preset switching than NAM.
Kapitonov Plugins Pack (KPP) Profile-based traditional amp modeling Excellent for classic rock/metal. Available in LV2 and VST3.
Guitarix All-in-one virtual amp + pedals Standalone or LV2. Includes native modules for loading .nam and RTNeural models.
Note: CRITICAL for KPP: The input level at the beginning of the Kapitonov Plugins Pack chain must be strictly around -20 dB, otherwise the plugins will distort incorrectly. Use a meter plugin (e.g., LSP Meter) to verify.
⚠︎
Warning: Neural amps (NAM, Proteus, KPP) only model preamp/poweramp. You must load a Cabinet IR (via LSP IR Loader or similar) to get a usable guitar tone. Without an IR, the sound will be thin and unpleasant.

Modular hosts

Software Purpose
Carla Modular plugin host. Chain plugins visually: Input → Tuner → NAM → IR Loader → Reverb → Output. Hosts Windows VSTs via yabridge.
qpwgraph Visual patchbay for PipeWire/JACK. Manually connect hardware inputs to software hosts (PipeWire does not auto-connect).

Configuration and first launch

Pro audio profile

To achieve minimal latency, you must bypass standard software mixing:

  1. Open pavucontrol.
  2. Go to the Configuration tab.
  3. Set your interface profile to Pro Audio.

If the "Pro Audio" profile is missing, ensure pipewire-alsa is installed and restart PipeWire. This profile disables software mixing and enables hardware-exclusive mode, critical for the lowest latency.

Latency verification

Always perform a physical loopback test to measure the real Round-trip Latency (RTL).

  1. Connect a cable from your interface Output back into the Input.
  2. Launch LSP Latency Meter:
# Option A: Via Carla (recommended for beginners)
carla  # Add plugin "LSP Latency Meter Stereo", connect wires

# Option B: Via jalv (terminal)
jalv http://lsp-plug.in/plugins/lv2/latency_meter_stereo
  1. Play a sharp transient (string scratch) and read the Round-trip Latency (RTL) value.

Target values:

  • < 5 ms: Excellent
  • 5–10 ms: Acceptable for practice
  • > 12 ms: Noticeable "lag", difficult to play in time

Typical processing chain

For a standard metal/rock tone, route your signal in carla or your DAW as follows: Hardware Input → Noise Gate (e.g., LSP Gate) → NAM (Load A2-Full model) → LSP IR Loader (Load Cabinet Impulse Response) → Dragonfly Reverb → Hardware Output.

Windows VST via Wine

Yabridge

Yabridge (v5.1.1+) bridges Windows VST2/VST3/CLAP plugins to Linux via Wine. It is essential for commercial plugins (Neural DSP, STL Tones, Amplitube).

# After installing Windows plugins via Wine:
yabridgectl sync  # Required to register plugins with Linux hosts

JUCE 8 black screen fix

Note: A widespread issue in 2026 affects JUCE 8-based plugins (e.g., Serum 2, Nexus 5) running via Wine/yabridge: the plugin GUI is a black window. This is because stock Wine lacks the Direct2D/DirectComposition render path required by JUCE 8.

To fix this, you must use patched Wine builds. The giang17/wine-d2d1-dcomp project provides prebuilt binaries and a guide for Arch/CachyOS.

PipeASIO for Proton/Steam

For Windows DAWs (FL Studio, Ableton) or games (Rocksmith) running via Proton, PipeASIO (v1.7.0, Sept 2026) connects ASIO directly to PipeWire, bypassing the missing libjack.so.0 in the Steam Runtime container.

Note: If using FL Studio via Wine/Proton, you must turn off "Mix in buffer switch" in Audio settings to prevent constant xruns.

Rocksmith 2014

Rocksmith 2014 runs on NixOS via Proton. The recommended method uses the nixos-rocksmith flake, which patches Steam to preload libjack.so and use RS_ASIO with WineASIO. For visual patching, crosspipe is recommended as a modern alternative to helvum.

programs.steam = {
  enable = true;
  rocksmithPatch.enable = true;
};

Steam Launch Options:

LD_PRELOAD=/run/current-system/sw/lib/libjack.so PIPEWIRE_LATENCY=128/48000 %command%
Note: Rocksmith strictly requires a sample rate of 48000 Hz.

Troubleshooting

Symptom Cause & Solution
Xruns (audio glitches) Ensure powerManagement.cpuFreqGovernor = "performance" is active. Check pw-top for high-CPU nodes. Disable Wi-Fi: find driver name via lspci -k or lshw -class network, then run rfkill block wifi to prevent interrupt storms.
Extreme latency stutters As a last resort, add processor.max_cstate=1 to boot.kernelParams. Warning: This disables CPU sleep states, resulting in extreme power draw and heat. Use with caution.
Input clipping / digital distortion High-output pickups are overloading the interface's Hi-Z preamp (low dBu). Use a passive DI-box, an inline pad, or lower your guitar's pickup height.
No sound Check qpwgraph — PipeWire does not auto-connect hardware. Verify Pro Audio profile in pavucontrol. Run sudo lsof /dev/snd/* to find conflicting processes.
DAW cannot find plugins Ensure environment.variables block is applied. Log out/in after rebuild. Verify paths: echo $LV2_PATH.
Audio pops a few seconds after playback stops WirePlumber suspends the ALSA node after 5 seconds of inactivity. Ensure session.suspend-timeout-seconds = 0 is set in wireplumber.extraConfig.
JUCE 8 VST shows black screen Stock Wine lacks Direct2D support. Install wine-d2d1-dcomp patches by giang17 and route the specific plugin to this patched Wine version using yabridge's dispatcher trick.
PipeWire config not applying Restart user services after rebuild: systemctl --user restart pipewire wireplumber. Check for WirePlumber overrides: wpctl status.

See also

  • PipeWire — Official NixOS PipeWire documentation
  • Audio production — General audio configuration and plugin paths
  • musnix — Deep NixOS audio optimizations module
  • TONE3000 — Largest library of NAM A2 models and IRs
  • PipeASIO — ASIO to PipeWire bridge for Wine/Proton
  • Rustortion — Modern Rust-based amp sim (experimental, build from source)
  • AIDA-X — RTNeural-based amp model player (experimental)
  • neural-amp-modeler-ui — GUI wrapper for NAM (experimental)