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R1 (2026-08-03) closes F5 — no frame-indexed wavetables yet — deferring W1 with "yet" preserved as scope rather than rejection, and confirming W3 out. Near-term scope narrows to W0 alone. Cascades the consequences: F1's threshold amended (static does not mean one-cycle, so detection classifies nothing now), F2 simplified, F3 and F7 firmed, F8 narrowed to a binary. F6/band-limiting left open and explicitly not pre-ruled. PLAN.md item 4 updated to match.
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751 lines
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Markdown
# Single-cycle material and the wavetable direction — product notes
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Framing and design directions behind Daniel's observation of 2026-08-03, after testing
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ReaSampler 9000 in REAPER on a literal single-cycle 60 Hz sine capture:
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> *"if I have a literal single-cycle capture at 60hz, sine wave, if I turn on loop I cant
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> move the loop points, they loop start snaps to the middle and can't move, and the end
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> point is stuck at the last zero crossing. the x-fade moves freely and works as expected,
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> but because the loop is stuck to half of the cycle, it doubles to tonic frequency and adds
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> harmonics from the shape distortion. supporting smoothness at this micro scale would turn
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> this into a wavetable synth, which is desirable."*
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**The immediate defect — `nearestZeroCrossing`'s unbounded fan-out — is owned by a
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snap-radius track already in flight and is NOT this doc's subject.** It is described here
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only where the reasoning needs it, because the defect and the direction share a diagnosis
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and the fix for one does not deliver the other.
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Status: **framed by product-designer 2026-08-03; ONE ruling has since landed against it —
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R1, recorded in full at §7.1.** Daniel, 2026-08-03:
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> *"I don't want actual frame-indexed wave tables yet, that is out of scope. just static
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> captures right now."*
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R1 **closes F5** (W1, the wavetable-position knob, does not ship now) and **confirms W3 out
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from Daniel** rather than only from this doc's argument. **Seven forks remain open** (§7).
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**R1 does NOT rule F6 / band-limiting.** The question that decides F6 — *is the material ever
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anything but sine?* — is still outstanding, Daniel knows it is outstanding, and it is
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deliberately not pre-ruled anywhere below. Nothing in R1 touches aliasing: a *static*
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single-cycle capture of anything but a sine, played across the keyboard, is exactly the case
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§1.8 describes.
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**The near-term scope is therefore W0, and only W0.** Read §2 as one body of work plus two
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deferrals, not as four equal candidates.
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**No `PLAN.md` phase exists for this work and none is proposed until F8 is ruled** —
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`PLAN.md`'s "Flagged for awareness" item 4 is the only pointer to this doc, deliberately, so
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the plan's standing claim about unanswered questions is not weakened by a direction whose
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shape is decided but whose dispatch is not.
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Everything below is a product-designer call with its reasoning stated. Contradict it in
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review with an argument, not a preference.
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---
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## 0. TL;DR
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**The reframe: the instrument is already a wavetable oscillator in every respect but
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one — the loop grid.** A one-period loop read at `readPos_ += ratio_` *is* the wavetable
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read. Nothing about the voice path needs a new concept. What is missing is that three
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mechanisms are each calibrated for macro material and each degenerates at one-period
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lengths: the zero-crossing snap picks the wrong grid, the pre-seam crossfade collapses to
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the identity map, and the loop's integer bound becomes a tuning quantizer. So the near work
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is a **recalibration plus a period grid**, not a synthesis engine.
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**The honest second half: there IS one genuinely new commitment hiding behind the words
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"wavetable synth," and it is not the loop — it is band-limiting.** A 30 Hz single cycle of
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anything but a pure sine, played at C5, resamples by ~17× and folds every partial above
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~1.4 kHz. Daniel's test case is a sine, which is exactly the one waveform that hides this.
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Real wavetable synths solve it with a mip pyramid of per-octave lowpassed tables. That is a
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real build with a real migration cost, and it is separable from everything else here.
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**After R1 it is also the only one of the four shapes whose scope is still undecided.**
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**The four shapes, and where each now stands:**
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| | What | Cost | Standing |
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|---|---|---|---|
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| **W0** | Recalibrate the loop grid for micro material — period snap, whole-file default, tune-from-loop, Preserve inert | No format change, no bank field, no hot-path change, migration-clean | **THE NEAR-TERM SCOPE** |
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| **W1** | Loop start becomes a **wavetable position** — scrub the loop through a multi-cycle capture in whole periods | One parameter that re-expresses one that exists; reuses `period_detect` unchanged | **DEFERRED — R1, 2026-08-03** |
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| **W2** | **Band-limited playback** — mip pyramid + a better interpolator | Real DSP build; changes the sound of existing captures unless made conditional | **OPEN — F6, undecided** |
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| **W3** | A first-class multi-frame **wavetable kind** — N×2048 tables, morph parameter, `.wav` wavetable import | Breaks "one loaded capture, one parameter set" | **OUT — confirmed by R1** |
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**R1 is a scope ruling, not a rejection of the idea.** *"Yet"* is Daniel's word and it is
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load-bearing: W1's §2 section is preserved in full, argument intact, so a future reader can
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pick it back up rather than re-derive it. What would revive it is named there.
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**W0 stands entirely on its own merits and always did.** It is defect-class work — Daniel
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cannot currently set a correct loop on his own routine material — and none of its five parts
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depends on a wavetable ambition. R1 does not shrink W0; it removes what sat on top of it.
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**And the operational headline: this direction lands in the exact files Ω-W1-T5
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`overlay-mapping` owns right now**, and Phase Ω's own acceptance criteria name the
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zero-crossing snap as a thing that "must come out the other side identical" (`PLAN.md`,
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Phase-Ω acceptance criteria; Ω-W1-T5's outline entry says *"Zero-crossing snap
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behaviour-identical"*). Both the in-flight snap-radius track and anything from this doc
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contend with that. §6.7 states what needs reconciling.
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---
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## 1. What "this micro scale" actually is
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Frame arithmetic at 48 kHz, because every boundary below is a frame count:
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| Source | Frames per cycle |
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|---|---|
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| 30 Hz (Daniel's routine working material) | 1600 |
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| 60 Hz (the reported test) | 800 |
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| 220 Hz | 218.2 |
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| 440 Hz | 109.1 |
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| 2000 Hz (`kPeriodDetectMaxHz`) | 24 |
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**Sub-50 Hz is treated throughout this doc as first-class, not as an edge case.** Nothing
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proposed here narrows a range to dodge it, and §1.3 argues that Daniel's 30 Hz habit is not
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a tolerance the design must absorb — it is the *correct* practice for this material, for a
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reason that falls out of the arithmetic.
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The rest of this section walks each mechanism that stops making sense as the sample
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shrinks toward one cycle. Each is read out of the code, not assumed.
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### 1.1 The zero-crossing snap picks the wrong grid — and a radius does not fix that
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`nearestZeroCrossing` (`src/core/instrument/ui/waveform_view.cpp:181-210`) fans out from the
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target frame across the entire buffer with no radius bound. On an 800-frame single-cycle
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sine there are two crossings, so a mark parked in the last quarter by `defaultLoopBounds`
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teleports to the one at the half-cycle. That is Daniel's octave-doubling exactly, and the
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radius track in flight closes it.
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**But the deeper point survives the radius fix.** The snap's premise is that a zero crossing
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is where a splice is *safe* — a heuristic borrowed from destructive editing of complex
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material, where a discontinuity click is the enemy and crossings are dense relative to a
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drag's precision. On quasi-periodic material that premise is only half right:
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- Two zero crossings one **half**-period apart are both continuous by the snap's own test.
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- Exactly one of them makes a loop that is a whole number of periods.
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**Continuity is necessary; it is not sufficient. The sufficient condition is that the loop
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span is a whole number of periods.** So the right grid for this material is not the
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crossing — it is the period. A radius bound stops the teleport; it does not stop a one-pixel
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drag at 30 Hz (where one column ≈ 1.5 frames) from landing a span that is 0.997 periods
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long, which is the same buzz at lower amplitude.
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### 1.2 The pre-seam crossfade degenerates to the identity map at one-period lengths
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This is the most load-bearing result in the doc, and it is structural rather than a tuning
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problem.
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The fade is pre-seam and one-tap: the incoming tap is the same read head one loop length
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earlier, `pos - length` (`src/core/instrument/engine/loop/loop_span.h:26-28, 79-87`).
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- **When `length` is exactly one period `P` of a `P`-periodic source, the tap value equals
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the head value at every position.** The blend `v + xw·(in − v)` is then the identity map
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for every weight. **The crossfade does literally nothing.**
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- **When `length` is *not* exactly `P` — Daniel's actual failure — the tap is the same
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material at a different phase.** The fade then replaces a discontinuity with a
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*phase-smear over the fade window*: a wobble instead of a click. Longer fades make it
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smoother, not more correct.
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**So the crossfade can never be the smoothness mechanism at micro scale, in either
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direction. Period exactness is the only mechanism available.** Any proposal that tries to
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buy micro-scale smoothness by widening the fade is wrong by construction and should be
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refused on this paragraph.
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Two corollaries worth recording:
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- `maxCrossfade(start, length) = min(start, length)` (`loop_span.h:19-21`) means a loop
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starting at frame 0 — the natural single-cycle loop — has **zero** available crossfade. The
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documented reason (there is no material ahead of it) is correct and needs no change; it
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merely happens to also be harmless, because the fade was inert there anyway.
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- **`loop_span` therefore needs no change for this direction.** It is already right; it just
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needs to be *understood* as inert at micro scale. Whether the UI should say so — grey the
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XFADE mark when the loop is one period — is fork **F7**.
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Daniel's report that *"the x-fade moves freely and works as expected"* is consistent with
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this: what he was moving was a handle whose audible effect was the identity map.
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### 1.3 The integer loop bound is a tuning quantizer, and its error is `≈ 1731/L` cents
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`Voice::advanceFrame` wraps by subtracting an integer loop length from a fractional read
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position — `readPos_ -= loopLen` (`src/core/instrument/engine/voice.h:456-459`) — which
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preserves phase, so there is **no drift**. But the sounding period is exactly `L / ratio`
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output frames, so the pitch is `sr · ratio / L` and is quantized by `L` being an integer.
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A one-frame miss costs `1200·log₂((L+1)/L) ≈ 1731/L` cents:
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| Source | `L` @48k | Worst-case tuning error from integer `L` |
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|---|---|---|
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| 30 Hz | 1600 | **1.1 ¢** |
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| 60 Hz | 800 | 2.2 ¢ |
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| 220 Hz | 218 | 7.9 ¢ |
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| 440 Hz | 109 | 15.8 ¢ |
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| 1 kHz | 48 | 36 ¢ |
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**This is why capturing low is the right practice rather than a quirk to accommodate.** The
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quantizer is one frame regardless of frequency, so tuning resolution is bought purely by
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making the cycle long. At Daniel's 30 Hz the residual is ~1 cent — solo inaudible, and
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against a unison partner at A4 it is a ~0.28 Hz beat, a ~3.6 s period. Real but marginal. At
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1 kHz it is a third of a semitone and unusable. **The design should state this as guidance
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and should not spend a bank-format change to work around it** (fork **F4**).
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Two distinct problems live in this neighbourhood and must not be conflated:
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- **(a) Seam discontinuity** — `L` is not a whole multiple of `P`, so the waveform steps at
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the wrap. This is what Daniel heard as *"harmonics from the shape distortion."* Fixed by a
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period-aligned loop grid (§2).
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- **(b) Detune** — `L` is a fine loop but `sr/L` is not the frequency of the MIDI root note
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the capture is mapped to. A 30 Hz capture mapped to B0 (30.868 Hz) is 49 cents flat before
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anyone touches a knob. Fixed by correcting *tuning*, not the loop (fork **F3**).
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For a true single-cycle capture, (a) solves itself the moment the loop is the whole file,
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because the file is one period by construction of how the user made it — one cycle of time
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selection, rendered with the exact-bounds guarantee. Daniel's (a) was not a bad capture; it
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was the snap forcing `L` to half the file.
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### 1.4 `defaultLoopBounds` parks the loop in the wrong place for this material
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`defaultLoopBounds` puts the handles in the last quarter (`loop_span.h:89-96`) — the right
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answer for a sustaining instrument sample and meaningless for a single cycle, where the last
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quarter is a quarter of a waveform. Combined with §1.1 this is the mechanical cause of
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*"loop start snaps to the middle."* At micro scale the correct default is the whole file.
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Fork **F1** decides whether the default is allowed to be material-aware at all.
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**A distinction R1 forces, and it is easy to get wrong: *static* does not mean *one
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cycle*.** R1 says the captures are static — the waveform does not evolve — and that is what
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kills W1, because a position knob scrubbing across identical cycles is a knob that does
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nothing. It does **not** say every capture is exactly one period long. A static grab that
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happens to run three or four cycles is still in scope, and on it:
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- the loop **length** must still be a whole number of periods, or §1.3(a)'s seam
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discontinuity returns exactly as Daniel heard it;
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- the loop **position** is immaterial, because every cycle is the same cycle.
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So the period grid keeps its job on multi-cycle material even with W1 deferred, and
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`period_detect` keeps an in-scope consumer there (it also, separately and unaffected by any
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of this, keeps its Preserve/PSOLA consumer — see §4). This is what amends F1's threshold in
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§3: "detection failed" and "this is table-like material" stopped being the same test the
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moment W1 left, because the static multi-cycle capture is now the case that would fall
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through it.
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### 1.5 `period_detect` structurally cannot see a single cycle — the period must be DECLARED
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`detectPeriod` shortens its search band when the span is short:
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`if (spanCount < 2 * lagHi) lagHi = spanCount / 2;`
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(`src/core/instrument/engine/period_detect.cpp:135`). This is not a tuning constant to
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loosen. YIN correlates a window against a lagged copy of itself, so finding period `P`
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requires the analysed span to contain at least `2P`. **A one-cycle file contains exactly one
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period; the detector cannot find it, by construction of autocorrelation. No threshold
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change, no band widening, and no probe-count change fixes this.**
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The consequence for the design is clean and structural rather than a choice:
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- **At the single-cycle limit the period is DECLARED, not detected — and the declaration is
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the file length itself** (or the loop span the user set).
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- **Detection is for the multi-cycle case**, which is exactly where a wavetable *scrub* (W1)
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lives. The probe geometry wants roughly four periods before it is meaningful.
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So the two halves of this direction use two different sources of truth for the same
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quantity, and that split is forced rather than designed. Any future "simplify these into
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one" is a regression; §6.6 names the specific circularity to avoid.
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**The detection band is `kPeriodDetectMinHz = 15.0` to `kPeriodDetectMaxHz = 2000.0`
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(`period_detect.h:39-40`).** 30 Hz sits comfortably inside it. **No narrowing of that band is
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proposed anywhere in this doc.**
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### 1.6 Pixel addressability is not the binding limit at 30–60 Hz — but it cannot express intent
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The overlay maps the whole frame count across its column span. At 800–1600 frames against
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an ~1100-column overlay there are *more columns than frames*, so every frame is reachable by
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a one-pixel drag and `resolveDragFrame`'s frameToX→walk→xToFrame round trip
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(`waveform_view.cpp:166-179`) is exact. Addressability only becomes the limit above roughly
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1.4 kHz, where a cycle is shorter than a column — one more argument for capturing low.
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What no amount of pixel precision buys is **intent**: a drag cannot express "make this
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exactly three periods." That is the argument for a snap grid (fork **F2**) rather than for
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finer dragging or a numeric entry field.
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### 1.7 Preserve/SOLA has nothing to preserve at one period
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The Preserve engine advances the read at the source rate while the shifter transposes. Its
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window is ~50 ms (`period_detect.h:34-38` derives the 15 Hz floor from "~1.25 windows … at
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the product's 50 ms window") — that is 30 to 75 cycles of a 30–60 Hz source. An
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infinitely-sustaining one-period loop has **no duration to preserve**; Varispeed is not
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merely acceptable there, it is definitionally the correct engine, because a Varispeed read
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of a one-period loop *is* a wavetable oscillator.
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Fork **F7** decides whether the surface says so (grey/refuse Preserve when the loop is one
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period) or leaves the user to discover it. Auto-switching engines is rejected outright below
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— it would change the sound of a saved instance.
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### 1.8 Aliasing — the real boundary, and the one Daniel's sine hides
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`Voice::advanceFrame` reads with **linear interpolation** between the two bracketing source
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frames at `readPos_`, advancing by `ratio_` (`voice.h:622-627, 705`). Two independent
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deficiencies, both invisible on a sine:
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- **No band-limiting.** A 30 Hz single cycle of a saw or a captured complex wave carries
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partials up to Nyquist. Played at C5 (523.25 Hz) the ratio is ~17.4, so everything in the
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source above ~1.4 kHz folds back into the audible band. Sine has no partials above the
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fundamental, which is why the reported test sounded like a clean octave error rather than
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a mess.
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- **Linear interpolation is a poor reconstruction filter** even at unity — a sinc² sag in the
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top octave plus imaging. Acceptable for a sample played near its root; conspicuous for a
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table played several octaves up, which is the wavetable use case by definition.
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**The standard answer, and it is what makes a wavetable synth a wavetable synth: a mip
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pyramid.** Per-octave successively lowpassed copies of the table, precomputed at load, with
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the read level chosen per voice from the ratio. Its properties fit this codebase unusually
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well:
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- Precompute is **cold and off the audio thread** — exactly where `period_detect` already
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sits, by link graph (`period_detect.h:5-7`).
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- Level selection is **per note-on**, not per sample: no dispatch on the hot path, satisfying
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structural heuristic 3 and the `process()` guardrail.
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- Memory is bounded at ~2× the table.
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Raising the read to cubic Hermite is a separate, straight-line 4-tap change with no
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indirection — also guardrail-safe, but it changes the sound of *every* capture.
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**Both collide head-on with the plan-wide migration bar** ("a project saved before a change
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reopens sounding identical"). They must therefore be **conditional and declared**, not
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default. Fork **F6**.
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---
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## 2. What "wavetable" means *here* — four candidate shapes
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The brief's own framing is the right one: this is a question of what *changes*, not what
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gets built new. Single-cycle captures already flow through capture → bank → instrument
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today. Four shapes, in ascending commitment. **R1 settled two of them — W1 deferred, W3
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confirmed out — so what follows is one body of work (W0), one open question (W2), and two
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sections kept for the record.**
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### W0 — Recalibrate the loop grid. No new concept.
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Everything in §1 that is a miscalibration rather than a missing feature:
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- **A period-aware snap grid** — when a period is known (declared at the single-cycle limit,
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detected above it), loop-mark drags snap to `loopStart + k·P` rather than to the nearest
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crossing. This makes the octave error *unreachable by a drag* instead of merely unlikely.
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- **A micro-appropriate loop default** — the whole file rather than the last quarter.
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- **Tune from the loop** — the sounding frequency of the loop is `sr/L`; the instrument can
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say what that is and offer to correct it, using the `pitchOffsetSemitones` parameter that
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already exists (params payload v16, `map/play_seconds.h:92-93`).
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- **Preserve made honest at one period** (§1.7).
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- **The XFADE mark made honest at one period** (§1.2).
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**Cost: no format change, no bank field, no new parameter id, no hot-path change, and it is
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migration-clean** — a snap grid applies during a drag, so no saved instance's stored loop
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points move and no saved instance's sound changes. This is defect-class work that makes
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Daniel's material usable at all, and it is the recommended first move.
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### W1 — The loop start becomes a wavetable POSITION — DEFERRED by R1 (2026-08-03)
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**Daniel, 2026-08-03: *"I don't want actual frame-indexed wave tables yet, that is out of
|
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scope. just static captures right now."* A loop start expressed as `k·P` IS a frame index
|
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into a table, so this is W1 by name.** The deferral is sound on this doc's own §8 test
|
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rather than only on the ruling: W1 is worth doing *if the captures are ever multi-cycle and
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evolving*, and static material makes every frame of the table the same frame. A scrub across
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identical cycles is inaudible. **The knob would have been dead weight, exactly as §8
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predicted.**
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**"Yet" is the operative word — this is a scope ruling, not a verdict on the idea.** The
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argument below is kept whole, and unchanged, because nothing in it was refuted; only its
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premise went away. **What would revive it: capture material that both runs to several cycles
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AND evolves across them** — a filter sweep, a bowed attack, a slowly-detuning pair. That is a
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change in Daniel's practice, not a change in the code, and it is the only trigger. If it
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arrives, re-open F5 and read from here; do not re-derive.
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|
||
The rest of this section is the preserved case.
|
||
|
||
The cheap, high-leverage feature, and the one that earns the word "wavetable."
|
||
|
||
Given a multi-cycle capture with a detected period `P`, express the loop start as `k·P`
|
||
from the capture start and give `k` a knob. **That is a wavetable position control** —
|
||
which cycle of the recorded evolution you are oscillating on. A four-second capture of a
|
||
filter sweep, a bowed string's evolution, or a slowly-detuning oscillator pair *is already a
|
||
wavetable*; the only thing missing is a way to scrub the one-period window through it.
|
||
|
||
Why this is the right second move rather than W3:
|
||
|
||
- **It adds one parameter that re-expresses a parameter that already exists.** Loop start is
|
||
already stored, already drawn, already draggable, already in the reload tier.
|
||
- **It reuses `period_detect` unchanged**, at the place it already runs
|
||
(`map/sample_map.cpp:337-342`).
|
||
- **It needs no new data model, no table format, no import path, no second capture.**
|
||
- **The precedent is the original one.** The PPG/Waldorf wavetable-position knob meant
|
||
literally "which cycle of the stored table," which is exactly this. Serum, Massive and
|
||
Vital inherited the control; we would be inheriting the control without inheriting the
|
||
format.
|
||
|
||
The optional second half — **interpolating between adjacent period-frames** for a true morph
|
||
rather than a step — costs a second read tap on the per-sample path and must be checked
|
||
against the `process()` guardrail before it is promised. Fork **F5** splits scrub from morph.
|
||
|
||
### W2 — Band-limited playback — UNAFFECTED by R1, still open
|
||
|
||
**R1 does not touch this and must not be read as touching it.** Band-limiting is a property
|
||
of playing *any* short table across the keyboard; whether the table's frames evolve is
|
||
irrelevant to whether its partials fold. A static single-cycle capture of a saw, played at
|
||
C5, aliases exactly as §1.8 describes. **F6 remains open and unruled.**
|
||
|
||
§1.8. Orthogonal to W0 and W1, and the only one of the four that is a genuine DSP build. It
|
||
is also **independently valuable outside this direction**: it improves every ordinary sample
|
||
played more than an octave above its root, which is a much larger population than
|
||
single-cycle captures. That argues for judging it on its own merits rather than as
|
||
wavetable-support. Fork **F6**.
|
||
|
||
### W3 — A first-class wavetable KIND — OUT (recommended out; CONFIRMED by R1)
|
||
|
||
A bank entry that is N frames of a fixed size, a morph parameter across frames, and import
|
||
of third-party wavetable `.wav` files. **This is "actual frame-indexed wave tables" in the
|
||
most literal sense, and R1 names it out of scope directly** — so it is now out by Daniel's
|
||
ruling and not merely by this doc's recommendation. The recommendation stood on its own and
|
||
is kept because the structural reason is the durable one:
|
||
|
||
- **It breaks a settled invariant.** *"The instrument holds ONE loaded capture and ONE set of
|
||
playback parameters"* (`src/core/instrument/CLAUDE.md`) is the whole result of the zone
|
||
retirement (item 16). A frame stack is a keymap of captures by another name.
|
||
- **It makes the instrument a data-format consumer**, which is a different product. Today the
|
||
instrument reads the bank; a wavetable-file importer reads someone else's convention. (The
|
||
de-facto convention is a power-of-two frame — 2048 samples in Serum's format —
|
||
`[unverified against vendor documentation in this pass]`.)
|
||
- **W1 gets most of its musical value from material that already exists**, without any of it.
|
||
|
||
If W3 ever comes back, it should come back as its own product question with its own doc, not
|
||
as an extension of this one.
|
||
|
||
---
|
||
|
||
## 3. Does a single-cycle capture become a recognized KIND?
|
||
|
||
Three ways the system could know, and the D-B ownership rule decides between them.
|
||
|
||
**(a) Derive it; never store it.** A capture is "micro" when the audio says so. The precedent
|
||
is explicit and close: `period_detect`'s own header states that a period is *"DERIVED from
|
||
the audio, so it is cache and not state: nothing persists it, and it takes no rung of the
|
||
payload ladder."* The identical logic applies to single-cycle-ness.
|
||
|
||
**(b) A bank intrinsic on `Sample`.** D-B says bank intrinsics are *facts about the captured
|
||
file*, and "this file is one cycle" is such a fact — the same class as root note and loop
|
||
points. **But it is a cheaply and deterministically derivable fact**, so storing it buys
|
||
nothing except a field that can be wrong, plus an additive `Sample` extension and a migration
|
||
story. **Reject.**
|
||
|
||
**(c) A user-set instrument-side mode.** Honest, zero heuristic risk, and per D-B it is
|
||
per-instance `ComponentState` rather than a bank field. Costs one control on a deck whose
|
||
82 px headroom (`instrument-control-surface.md` §1.6) is already spoken for.
|
||
|
||
**Recommendation: (a), with (c) as an override, and with a hard constraint attached — a
|
||
derived classification may change DEFAULTS and the SNAP GRID, and may never change the
|
||
SOUND.** A heuristic that picks a better starting loop is safe because the user can drag it;
|
||
a heuristic that changes playback is a surprise waiting to be filed as a bug.
|
||
|
||
**A threshold derived from the codebase rather than from taste.** A capture is a micro
|
||
candidate when *both*:
|
||
|
||
1. `detectPeriod` returned none (there is not enough material to correlate), **and**
|
||
2. the frame count lies inside the band a single cycle could occupy at all —
|
||
`sr/kPeriodDetectMaxHz … sr/kPeriodDetectMinHz`, i.e. **24 … 3200 frames at 48 kHz**.
|
||
|
||
Neither number is invented; both fall out of constants the detector already owns. Condition 2
|
||
alone would misclassify a short drum one-shot; a 100 ms one-shot is 4800 frames and falls
|
||
outside it, which is the discrimination the band buys. A further tightening — requiring the
|
||
first and last frames to nearly match — is available if false positives show up in practice
|
||
and is deliberately not proposed pre-emptively.
|
||
|
||
**R1 amends condition 1, and this is a genuine correction rather than a restatement.**
|
||
Condition 1 used *detection failure* as the classifier because in the original framing
|
||
detection **succeeding** meant W1 territory, and W1 supplied its own default (one period at
|
||
the loop's start). With W1 deferred there is nothing downstream to catch that case, so a
|
||
static multi-cycle capture (§1.4) — detection succeeds, file is short, cycles are
|
||
interchangeable — falls straight through the threshold to the unimproved last-quarter
|
||
default. That is precisely the defect W0 exists to remove. The threshold should now read:
|
||
|
||
- **the frame count lies inside the band** `sr/kPeriodDetectMaxHz … sr/kPeriodDetectMinHz`,
|
||
i.e. 24 … 3200 frames at 48 kHz — this alone now carries the classification; **and**
|
||
- **a period is known**: **detected** where `detectPeriod` returns one, **declared as the
|
||
file length** where it does not (§1.5).
|
||
|
||
**Detection moves from being the classifier to being the period *source*, which is what it
|
||
was always better suited to be.** The false positive the band admits is unchanged (a very
|
||
short non-periodic one-shot), and so is the tightening available against it. **F1's lean is
|
||
unmoved — still (a), derived-only, governing defaults and the snap grid and never the
|
||
sound** — only the test inside (a) changes. F1(c), no classification at all, is untouched by
|
||
R1 and remains the serious conservative alternative.
|
||
|
||
**The named alternative, and it deserves a real hearing: no classification at all.** Make the
|
||
period grid always available, let "the period is the whole file" be simply what the user gets
|
||
when the loop spans the whole file, and accept a bad initial loop default on micro material.
|
||
That removes every heuristic from the system at the cost of one worse default. It is the most
|
||
conservative option on the table and it is fork **F1(c)**.
|
||
|
||
---
|
||
|
||
## 4. The pitch path — does this ride the Preserve/PSOLA work, or fight it?
|
||
|
||
**It rides it, with one structural exception that is forced rather than chosen.**
|
||
|
||
**What rides, unchanged:**
|
||
|
||
- `period_detect` produces a **fractional** period, refined below one frame by the full-rate
|
||
difference function. That is precisely the quantity a period grid snaps to.
|
||
- It already runs **once per load, off the audio thread by link graph**, at exactly the right
|
||
place — the loader, `map/sample_map.cpp:337-342`, handing down `SampleData::sourcePeriodFrames`.
|
||
- `periodAnalysisSpan` already **prefers the loop region** when the loop is long enough, on
|
||
the stated reasoning that the loop is what a Gate voice asymptotically plays. That
|
||
reasoning is even more true when the loop *is* the wavetable frame.
|
||
- The existing PSOLA consumer is untouched: `setSourcePeriod` feeds the Preserve splice's
|
||
jump (`voice.cpp:251-252`), and nothing in this direction changes it. If F7 makes Preserve
|
||
inert at one period, the detector's answer is simply unused on that path — no code changes.
|
||
|
||
**The one exception (§1.5):** the single-cycle case is permanently outside detection's reach,
|
||
so at the single-cycle limit the period is **declared** from the file/loop length, while on a
|
||
capture running to several cycles it is **detected**. Two sources, one grid. **R1 does not
|
||
collapse them into one** — deferring W1 removes the *scrub*, not the multi-cycle capture
|
||
(§1.4), so both arms of the split still have in-scope work to do.
|
||
|
||
**A genuine tension worth naming before someone "fixes" it into a bug.** `periodAnalysisSpan`
|
||
uses `[loopStart, loopEnd)` only when that span is at least one full probe block
|
||
(`2 · longestLagFrames`, 6400 frames at 48 kHz). **Any one-period loop on micro material is
|
||
far below that** — which under W0 is the *default* case, not an exotic one — so the detector
|
||
will always fall back to analysing the whole source. **That is correct**: you want the period
|
||
of the source material, not the period of a one-period loop, which would be circular. But the
|
||
detector's answer and the loop's length are then measuring deliberately different things, and
|
||
the code will look like it has an inconsistency it does not have. It should be commented at
|
||
the seam, per the comment conventions' "warnings against a plausible-but-wrong change."
|
||
|
||
**R1 does not defer this.** The paragraph originally attached the circularity to W1; it in
|
||
fact attaches to any one-period loop, so it arrives with W0 rather than after it.
|
||
|
||
---
|
||
|
||
## 5. Prior art borrowed, and what each contributes
|
||
|
||
- **PPG Wave / Waldorf Microwave** — the wavetable-position knob as "which cycle of the stored
|
||
table." W1 is this control, transplanted onto captured material rather than authored tables.
|
||
**Recorded for whoever picks W1 back up; deferred by R1, and note that the PPG precedent
|
||
presumes a table whose frames differ, which static capture material does not supply.**
|
||
- **Serum / Massive / Vital** — mip-mapped, per-octave band-limited tables. This is the whole
|
||
of W2, and their universal adoption of it is the evidence that §1.8 is not a theoretical
|
||
concern. **Still live: F6 is open.**
|
||
- **Kontakt / EXS-class samplers' loop-finding tools** — snap a loop to a *detected period* and
|
||
offer a "find loop" pass, rather than snapping only to zero crossings. This is the
|
||
established precedent for F2's period grid; we would not be inventing it. **This is now the
|
||
load-bearing precedent, since W0 is the near-term scope.**
|
||
- **Serum's import-a-sample-as-a-wavetable flow** — it asks the user to declare or confirm the
|
||
cycle length rather than detecting it from a single cycle. That is independent confirmation
|
||
of §1.5's declare-vs-detect split, arrived at from the same constraint.
|
||
- **Ableton Simpler's classic/one-shot split** — precedent for a mode that changes defaults and
|
||
affordances per material class without changing the underlying data, which is §3's
|
||
"defaults and snap only, never the sound."
|
||
|
||
---
|
||
|
||
## 6. Collisions with existing invariants — the check, item by item
|
||
|
||
### 6.1 Capture and placement are separate acts — UNTOUCHED
|
||
|
||
Nothing in W0/W1/W2 places a timeline item. A single-cycle capture is made by the existing
|
||
capture verb over a one-cycle time selection; the instrument only reads it. The load-bearing
|
||
principle is not stressed by this direction in any of its shapes.
|
||
|
||
### 6.2 Precision invariants — UNTOUCHED, and one of them helps
|
||
|
||
Exact bounds already deliver the precise frame count a one-cycle time selection asks for,
|
||
which is what makes §1.3's "the file is one period by construction" true. The lossless
|
||
mono-collapse rule (Ψ.6) is quietly useful here: a dual-mono single cycle lands as a
|
||
1-channel file, which is what a table should be.
|
||
|
||
### 6.3 The instrument never writes the bank — UNTOUCHED
|
||
|
||
W0, W1 and W2 write nothing to the bank. W3 would have wanted to, which is one more reason it
|
||
is out.
|
||
|
||
### 6.4 One capture, one parameter set — HELD by W0/W1/W2, BROKEN by W3
|
||
|
||
Stated in §2 and the sole structural reason W3 is recommended out.
|
||
|
||
### 6.5 The migration bar — HELD by W0/W1, AT RISK from W2
|
||
|
||
- **W0 is migration-clean.** A snap grid only acts during a drag; stored loop points do not
|
||
move and no saved instance changes sound. A changed *default* only affects a capture that
|
||
has no stored loop.
|
||
- **W1 is migration-clean** if the position parameter defaults to the position the stored loop
|
||
start already denotes. *(Deferred by R1; kept for the record.)*
|
||
- **W2 is not.** Both halves change the rendered audio of existing captures. Fork **F6**
|
||
exists to decide whether that cost is paid unconditionally or made conditional and declared.
|
||
|
||
**After R1 the whole near-term scope is migration-clean**, and the only migration risk left
|
||
in this doc sits behind an open fork rather than inside the work.
|
||
|
||
### 6.6 The hot path — HELD, and the guardrails are satisfiable by construction
|
||
|
||
- The period grid, the classification and the tune-from-loop computation are **load-time and
|
||
UI-thread only**.
|
||
- W1's scrub is a **reload-tier or note-on-latched** parameter, not a per-sample one; if it is
|
||
wanted live, it belongs in the existing three-tier commit classification
|
||
(`deckParamCommit` / `liveCommitFor`) rather than in a new mechanism. *(Deferred by R1.)*
|
||
- W2's mip level selection is **per note-on**. The interpolator change is a straight-line
|
||
4-tap with no dispatch.
|
||
- **W1's optional morph (F5c) was the one item that would have touched `process()`** — a
|
||
second read tap per frame, to be measured against the guardrail before it was promised.
|
||
**R1 closes F5 at (a), so that item is off the table for now.**
|
||
|
||
**Consequence of R1 worth stating plainly: the entire near-term scope is load-time and
|
||
UI-thread only. Nothing in W0 goes near `process()`.** The guardrail question that would have
|
||
needed a measurement before anything could be promised no longer gates this direction.
|
||
|
||
### 6.7 Phase Ω and the in-flight snap-radius track — the real sequencing constraint
|
||
|
||
This is the item most likely to cost someone a merge.
|
||
|
||
- **Ω-W1-T5 `overlay-mapping` currently owns `src/core/instrument/ui/waveform_view.{h,cpp}`,
|
||
`editor_input_waveform.cpp` and `editor_controls.cpp`'s `waveMarksFor`/`grabbableMarks`** —
|
||
which is the complete file set any period-grid work touches.
|
||
- **Phase Ω's own acceptance criteria name the zero-crossing snap as a thing that must come
|
||
out the other side identical**, and Ω-W1-T5's outline entry repeats it
|
||
(*"Zero-crossing snap behaviour-identical"*). **A snap-radius track changes exactly that
|
||
behaviour.** Whether that criterion has already been amended for the in-flight track is not
|
||
something this doc can assert — it needs reconciling by whoever owns Ω's criteria, and the
|
||
purpose of this bullet is to make sure someone does.
|
||
- **Recommended sequencing: nothing from this doc dispatches until Ω-W1-T5 and the
|
||
snap-radius track have both landed.** The period grid should be written against the
|
||
post-Ω single coordinate mapping, not against today's four-discrepancy one, and it should
|
||
build on whatever radius rule the in-flight track settles rather than replacing it.
|
||
|
||
### 6.8 The frozen VST3 parameter table and the one-way doors
|
||
|
||
Any new parameter (W1's position, W2's mode) **appends** to the FOREVER-FROZEN id table from
|
||
Γ-W4-T1; ids are never renumbered. `param_id.h`'s "signal-flow order" comment already carries
|
||
one annotated exception from Ω-W1-T4, so a second annotation is cheap precedent. But
|
||
`parameter-automation.md` §8's one-way-door sweep binds: **a new parameter's taper and range
|
||
freeze the moment it ships**, so a position knob's scale must be right first time. W0 adds no
|
||
parameter at all, which is one more reason to take it first.
|
||
|
||
**R1 removes the near-term exposure here entirely.** With W1 deferred, the only prospective
|
||
new parameter left in this doc is W2's mode, which sits behind an open fork — so **nothing in
|
||
the near-term scope opens a one-way door.** A position knob's taper, the item that most
|
||
needed to be right first time, is a decision this direction no longer has to make under time
|
||
pressure.
|
||
|
||
### 6.9 The editor's space budget
|
||
|
||
W1's position control and W2's mode toggle both want deck real estate against
|
||
`instrument-control-surface.md` §1.6's 82 px headroom, and `reasampler_editor.h` is already
|
||
tight against the ~600-line ceiling with Phase Ω spending its margin. This was a real
|
||
constraint on how many of these shapes could ship together, not a footnote.
|
||
|
||
**R1 relieves it for now.** W0's five parts add no control to the deck — a snap grid, a
|
||
default, and two greyed affordances are all changes to existing surfaces — and F3's
|
||
"Tune to loop" is the one item that might want a hit target, which is a far smaller ask than
|
||
a knob. **The 82 px is uncontended by the near-term scope.** It comes back the moment F6 is
|
||
ruled toward a mode toggle, so the headroom should not be spent elsewhere on the assumption
|
||
that this direction has released it permanently.
|
||
|
||
---
|
||
|
||
## 7. Forks — EIGHT total: ONE settled (F5), SEVEN open
|
||
|
||
Each carries a product-designer lean and the cost of taking it. **Every one is Daniel's to
|
||
rule.** None is pre-ruled here and none should be treated as settled by the lean. Rulings
|
||
recorded against this doc are logged in §7.1; the lean column below states, per fork, whether
|
||
R1 moved it.
|
||
|
||
| Fork | Question | Options | Standing / lean |
|
||
|---|---|---|---|
|
||
| **F1** | Is there a "micro" classification at all, and where does it come from? | (a) derived-only, governing **defaults and snap grid only, never the sound**; (b) derived + a user override toggle; (c) **no classification** — the period grid is always available and a bad default on micro material is accepted | **OPEN. Lean unmoved: (a)**, with (c) as the serious conservative alternative. **But R1 amends the test inside (a)** — the frame-count band now classifies and detection supplies the period, because "detection failed" stopped meaning "table-like material" when W1 left. See §3 |
|
||
| **F2** | What grid does a loop-mark drag snap to? | (a) zero-crossing always (today); (b) **period** when a period is known, zero-crossing otherwise; (c) both, modifier-selected — note `param_taper`'s modifier law explicitly excludes spline points, so a waveform-mark modifier is available but needs its own ruling | **OPEN. Lean unmoved: (b)** — it makes the octave error unreachable rather than unlikely. **Simplified by R1:** on a true one-cycle file the period grid admits exactly ONE loop (start 0, whole file), so "grid" there means "a single admissible loop"; the grid only has multiple positions on a multi-cycle capture, which R1 leaves in scope (§1.4) |
|
||
| **F3** | Does the instrument correct tuning from the loop length? | (a) never — the user dials Pitch (today); (b) a **one-shot "Tune to loop"** that writes `pitchOffsetSemitones`; (c) automatic and continuous, derived and unstored | **OPEN. Lean (b) FIRMS.** (c)'s only real motivation was keeping tuning correct while a scrub moved the loop; R1 removes the scrub, so with a static loop length a one-shot write is unambiguous and (c) is now pure hidden-pitch-modifier with nothing bought |
|
||
| **F4** | Fractional loop bounds? | (a) **no** — integer forever; buy resolution by capturing low, and document that; (b) yes — fractional loop end, which changes a **bank intrinsic** on `Sample` and takes a payload rung | **OPEN. Lean unmoved: (a)**, hard. ~1 ¢ at Daniel's own working range does not justify a bank-format change. R1 does not touch this: the quantizer is one frame regardless of what the material does |
|
||
| **F5** | Does W1 ship, and does it morph? | (a) not now; (b) scrub only — whole periods, no interpolation; (c) scrub + interpolate between adjacent period-frames | **SETTLED (a), Daniel 2026-08-03 (R1).** This inverts the lean, which was (b) — the lean assumed multi-cycle *evolving* material, and §8's own test said so. "Yet": revisit if the material changes, per §2's W1 section |
|
||
| **F6** | Band-limiting (W2) — in scope, and conditional? | (a) out for now; (b) **mip pyramid + better interpolator, gated behind a mode** so the migration bar holds; (c) unconditional, accept the break with a version note | **OPEN — explicitly NOT ruled by R1, and now the largest open question here.** Lean unchanged: **(b)** if it ships. This is the fork that decides whether "wavetable synth" is rhetoric or a commitment |
|
||
| **F7** | Preserve, and the XFADE mark, at one-period loops | (a) leave both live and let the user discover they do nothing; (b) **refuse/grey both** when the loop is one period; (c) auto-switch the engine to Varispeed | **OPEN. Lean (b) FIRMS and simplifies.** R1 makes the one-period loop the *typical* shape rather than one of several, so the affordance is wrong more of the time; and with a static loop the condition is evaluated once rather than tracked across a moving one. (c) still changes the sound of a saved instance and should still be rejected |
|
||
| **F8** | Does this become a Phase, and when? | (a) a phase sized **W0-only**, dispatched after Ω-W1-T5 and the snap-radius track land; ~~(b) one phase covering W0+W1~~ — **eliminated by R1**; (c) not now | **OPEN, but narrowed to a binary (a) vs (c).** Lean unmoved: **(a)** — W0 is defect-class and unblocks Daniel's material. R1 makes (a) cleaner than it was: a W0-only phase is now the whole of the direction's near-term scope rather than the first slice of it |
|
||
|
||
**What is NOT a fork, and should not be re-opened as one:**
|
||
|
||
- The pre-seam crossfade cannot deliver micro-scale smoothness (§1.2). Structural — and
|
||
**untouched by R1**, which changes nothing about the loop's arithmetic.
|
||
- `period_detect` cannot see a single cycle (§1.5). Structural — and **untouched by R1**. The
|
||
declare-vs-detect split survives intact; deferring W1 removes the scrub, not the
|
||
multi-cycle capture that detection serves (§1.4).
|
||
- W3 breaks "one capture, one parameter set" (§2), **and is now out by Daniel's ruling as
|
||
well as by that argument.** If it returns, it returns as its own product question.
|
||
- Sub-50 Hz is first-class. Nothing here narrows a range to avoid it, and R1 does not change
|
||
that: capturing low remains the correct practice for the reason in §1.3, not a tolerance
|
||
the design absorbs.
|
||
- **W1's deferral is a scope ruling, not a structural result** — the one item in this list
|
||
that IS revisitable, on the single named trigger in §2 (material that is both multi-cycle
|
||
and evolving).
|
||
|
||
### 7.1 Rulings recorded
|
||
|
||
**R1 — Daniel, 2026-08-03.** Verbatim:
|
||
|
||
> *"I don't want actual frame-indexed wave tables yet, that is out of scope. just static
|
||
> captures right now."*
|
||
|
||
**What it settles:**
|
||
|
||
- **F5 → (a), not now.** A loop start expressed as `k·P` is a frame index into a table; on
|
||
static material every frame of that table is the same frame, so the knob scrubs between
|
||
identical cycles. This is §8's own kill test, met.
|
||
- **W3 confirmed out**, now by ruling and not only by this doc's argument.
|
||
- **W1 deferred, with "yet" recorded as Daniel's word.** Scope, not rejection. §2 keeps the
|
||
case whole and names the single trigger that revives it.
|
||
- **F8's option (b) eliminated** — there is no W0+W1 phase to size.
|
||
|
||
**What it explicitly does NOT settle:**
|
||
|
||
- **F6 / band-limiting.** The deciding question — *is the material ever anything but sine?* —
|
||
is outstanding, and Daniel knows it is. Aliasing is orthogonal to whether a table's frames
|
||
evolve; a static single-cycle saw played at C5 folds exactly as §1.8 says. **Do not read
|
||
R1 as answering it.**
|
||
- **F1, F2, F3, F4, F7, F8** — all still Daniel's. R1 shifts what some of them are choosing
|
||
between (the table above says which) without choosing.
|
||
- **The Phase Ω conflict in §6.7.** Still open, still with Daniel and whoever owns Ω's
|
||
acceptance criteria, and not this doc's to resolve.
|
||
|
||
---
|
||
|
||
## 8. What would have to be true for this to be worth doing
|
||
|
||
Stated plainly so the direction can be killed cheaply if it is not:
|
||
|
||
- **W0 is worth doing regardless of the wavetable ambition — and R1 leaves that argument
|
||
exactly as it was.** Daniel cannot currently set a correct loop on his own routine material,
|
||
and the radius fix alone leaves a one-pixel drag able to produce a 0.997-period loop. That
|
||
is defect-class. **It is now also the whole of the near-term scope.**
|
||
- **W1 is worth doing if Daniel's captures are ever multi-cycle and evolving. ANSWERED
|
||
2026-08-03: they are not — *"just static captures right now."*** The position knob has
|
||
nothing to scrub, and the test written here before the answer arrived is the reason F5
|
||
closes cleanly rather than by preference. The condition is unchanged and still live as a
|
||
trigger: if the practice changes, this bullet is what re-opens F5.
|
||
- **W2 is worth doing if the material is ever anything but sine. STILL UNANSWERED — this is
|
||
the outstanding question.** A sine played up four octaves is fine; a captured saw is not. If
|
||
Daniel's practice is harmonically rich single-cycle captures played across the keyboard, W2
|
||
stops being optional and becomes the actual answer to "turn this into a wavetable synth."
|
||
**R1 does not bear on it either way**, because staticness and harmonic content are
|
||
independent properties of the same capture.
|
||
|
||
---
|
||
|
||
## 9. Registration
|
||
|
||
This doc is **not** listed in root `CLAUDE.md`'s "Product design docs" file list —
|
||
product-designer may not edit `CLAUDE.md`. **Flagged for staff-engineer or doc-keeper: add
|
||
`single-cycle-and-wavetable.md` to that list.**
|
||
|
||
`docs/PLAN.md` carries one pointer to this doc, as item 4 under "Flagged for awareness — not
|
||
blocking, but decision-grade." **No phase, no wave and no track is proposed there**, and R1
|
||
does not change that — `PLAN.md` is the *active on-deck specification list*, and putting a
|
||
phase in it while F8 is unruled would both put an unbriefable phase in that list and falsify
|
||
the plan's standing claim that Λ is the only phase carrying unanswered [Daniel]-class
|
||
questions.
|
||
|
||
**What R1 does change is that the proposable phase is now well-defined: W0-only, F8(a).**
|
||
Five forks still sit inside W0's own content (F1, F2, F3, F4, F7), F8 governs whether and
|
||
when it dispatches, and F6 belongs to W2 rather than to any of this — so the *shape* is
|
||
settled while the *specification* is not. When F8 is ruled, this doc becomes the backing
|
||
product doc for that phase in the ordinary way — the Γ / Ε / Ρ / Λ pattern, not the doc-less
|
||
Ψ / Ω one.
|