Commit Graph

10 Commits

Author SHA1 Message Date
Mikkeli Matlock b1477f7ec6 feat: static gain-curve display for the selected channel
Add editor/gain_curve.rs: a square panel beside the scrolling plot showing the
channel transfer (out vs in, -60..0 dB) for whichever channel the plot tab
selects. Plots the full wet path — out = (in + pre_gain) + gain_reduction + makeup
— using the shared Compressor::gain_computer (now pub) so it matches the DSP and
the GR meter. Unity-reference diagonal + threshold marker; mix not folded in.

Update README structure/status to reflect the editor/ widget module and the
completed Stage 6 visualisers.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-25 15:24:08 +09:00
Mikkeli Matlock 42c5f7dcd2 feat: per-channel dry/wet mix (parallel compression) replacing bypass
Replace the per-channel bypass toggle with a smoothed dry/wet `mix` (0..100%,
default 100%). The blend is applied at the compressor output:
  out = delayed_input * ((1 - mix) + mix * wet_gain)
Dry and wet share the same delayed input, so it's phase-aligned (parallel
compression, no comb filtering). mix=0 is bit-identical to the old bypass.

The detector now runs even at mix 0, so the GR meter shows the wet gain
reduction regardless of mix, while the level/plot out trace reads the mixed
output. "Bands at 0% = simple full-band comp via All" still holds.

Update README + parameter docs (bypass -> mix).

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-24 19:25:38 +09:00
Mikkeli Matlock a420d5dd39 feat: per-channel meters, ceiling lamp, and pre-gain drive
Stage 6 begins. Add lock-free Meters (atomics shared audio->GUI) with a
peak-with-decay ballistic, published once per block and gated on the editor
being open. Editor draws a per-channel level + gain-reduction meter panel and
a ceiling lamp fed by the output limiter. Compressor/Limiter expose
gain_reduction_db() for this.

Also add a smoothed per-channel pre-gain applied before each compressor (and
before the All compressor), driving the signal into compression and on into
the limiter for a compressed semi-distortion. Pairs with makeup for full
per-channel input/output gain-staging. Compressor DSP untouched; 16 tests pass.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-21 23:13:14 +09:00
Mikkeli Matlock 8c550da92e refactor: split lib.rs into params and editor modules
Move parameter structs, defaults, and build_settings into src/params.rs;
move the egui editor into src/editor.rs. lib.rs now holds only the plugin
shell, DSP wiring, and process(). No behavior change (16/16 tests pass).

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-21 14:57:18 +09:00
Mikkeli Matlock 20c5a17a61 Stage 4b: true-peak limiting via 4x polyphase oversampling
Upgrades the brickwall limiter from sample-peak to true-peak (inter-sample).

- src/dsp/oversampler.rs: 4x polyphase windowed-sinc (4 phases x 12 taps, Blackman,
  each phase normalized to unity DC). Detection-only: max_true_peak() returns the
  inter-sample max magnitude and discards the upsampled samples; the audio path is
  untouched. Built in prepare(), no realtime allocation. Cost ~ one base-rate FIR
  per channel; its small group delay is absorbed by the limiter look-ahead, so no
  added reported latency.
- src/dsp/limiter.rs: detector peak = max(sample_peak, oversampler.max_true_peak());
  targets a 0.3 dB margin under the ceiling to cover the 4x detection residual.
- 16 unit tests (2 new: detects ~3 dB fs/4 inter-sample overshoot; preserves DC
  amplitude). README/docs updated: Stage 4 complete.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-19 15:50:06 +09:00
Mikkeli Matlock f6c45123fa Stage 4a: base-rate look-ahead brickwall limiter
Adds the output limiter stage after the 'All' channel. Guarantees the output
never exceeds the ceiling: fixed 1.5 ms look-ahead, stereo-linked sliding-max
peak detection over the look-ahead window -> gain = ceiling/window_max, decoupled
smoothing (fast attack / user release), and a final clamp as the hard guarantee.

- src/dsp/limiter.rs: Limiter (sample-peak; true-peak via oversampling is 4b)
- src/lib.rs: wired as final stage; new globals output_ceiling_db (-24..0) and
  limiter_release_ms; latency now the constant three-stage total (bands+All+limiter);
  two UI sliders added to the global row
- 14 unit tests (4 new: ceiling guarantee on spikes, loud-sine limiting,
  transparency below ceiling, latency)
- README/docs updated (Stage 4 split into 4a done / 4b oversampling)

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-19 14:45:26 +09:00
Mikkeli Matlock d776e564fd Denormals: rely on NIH-plug's FTZ, drop redundant in-code flush
Investigated the planned global FTZ for the IIR filters and found NIH-plug already
handles it: process_wrapper wraps process()/reset() in a ScopedFtz guard that
enables CPU Flush-To-Zero (x86 MXCSR bit 15 / AArch64 FPCR bit 24, via inline asm,
restored on drop) on the vst3, clap, and standalone paths. SSE is baseline on
x86_64 so FTZ is always active for our build.

So adding our own guard would just duplicate the framework. Instead, removed the
now-redundant flush_denormal() from compressor.rs (the biquads and envelope/RMS
tails already relied on this FTZ) for a single consistent story, and rewrote the
README 'Denormal flushing' note to document that the framework handles it (FTZ,
not DAZ — sufficient for our feed-forward IIR).

No functional change; 10 unit tests still pass.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-18 01:34:56 +09:00
Mikkeli Matlock 1d939535be Stage 3: 3-band LR4 crossover + per-band compressors into the 'All' channel
Splits the input into low/mid/high with a Linkwitz-Riley 24 dB/oct crossover,
compresses each band, sums them, then runs the sum through a fourth 'All'
compressor. Bypassing the three bands collapses the plugin to a simple full-band
comp driven by 'All' (the crossover sums flat in magnitude).

- src/dsp/biquad.rs: generic RBJ biquad (Transposed Direct Form II), LP/HP/AP
- src/dsp/crossover.rs: 3-band LR4 filterbank; lower band all-pass-compensated at
  the higher crossover so the bands sum to flat magnitude (an all-pass, not a
  bit-exact null — that only holds for linear-phase FIR). Mirrors nih-plug's
  crossover plugin design.
- src/lib.rs: 4 Compressor instances (low/mid/high/all) + Crossover; params
  restructured to 4 nested CompressorParams (id_prefix low/mid/high/all) plus
  global crossover_low_hz/crossover_high_hz/look_ahead_ms; 4-column lo|mid|hi|all
  egui UI; latency = two series stages (bands + all), constant, reported once
- 10 unit tests (adds biquad LP/AP magnitude, crossover flat-magnitude
  reconstruction, band-split sanity)
- README: Stage 3 marked done; corrected the 'sum flat' expectation to flat
  magnitude (IIR LR sums to an all-pass, not a time-domain null)

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-17 20:04:24 +09:00
Mikkeli Matlock 0f66e9638c Add peak/RMS detection switch; sweep docs to match code
- Compressor: switchable peak / RMS detection (EnumParam<DetectionMode> in lib.rs
  -> use_rms bool in CompressorSettings; DSP stays framework-agnostic). RMS is a
  one-pole running mean of the linked squared level with a hardcoded 5 ms window,
  updated whenever active so peak<->RMS switching is seamless. New unit test
  (RMS compresses a sine less than peak); 6 tests total.
- README: reconciled Implementation Order checklists with actual progress
  (Stages 1-2 done; look-ahead/latency + basic UI pulled forward), annotated the
  project structure (implemented vs planned), and corrected the Latency and
  Denormal-flushing notes to match the code (set_latency_samples once / constant
  latency; in-code denormal flush). Overview and goals left unchanged.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-15 20:02:23 +09:00
Mikkeli Matlock 8d9eaeaffc Stage 2: full-band compressor with constant-latency look-ahead
Implements the single full-band feed-forward compressor (the engine that will be
reused per band + for the 'All' channel). Design follows Giannoulis et al. 2012:
log-domain gain computer with a quadratic soft knee feeding a smooth decoupled
peak detector for attack/release ballistics. Stereo-linked peak detection.

Look-ahead uses a fixed audio delay with a constant reported latency (set once in
initialize); the knob only moves the detector tap within that delay. This avoids
renegotiating latency from process(), which crashed FL Studio when the look-ahead
was adjusted during playback.

- src/dsp/compressor.rs: Compressor + CompressorSettings, RT-safe (no alloc in
  process; buffers sized in prepare; envelope denormals flushed in-code)
- src/lib.rs: nested CompressorParams (threshold/ratio/knee/attack/release/makeup/
  bypass) + global look-ahead; egui ParamSlider grid; latency reported once
- 5 unit tests (static curve, knee continuity, steady-state convergence, constant
  latency); Cargo.toml lib crate-type added so tests link
- README: 'All' channel architecture already documented; look-ahead spec updated

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-15 19:33:31 +09:00