Files
dyolink/backend/src/common/fdi.ts
Amin Mousavi 58ef87ba17 feat(voice): adapt voice entry to the stacked-jobs prosthesis model
Authored by the /orchestrate builder agent, committed unrepaired so the
fixes that follow are reviewable against it.

Backend: replaces the flat prosthesisDefaultType/prosthesisOverrides wire
shape with a prosthesis: ProsthesisAssignment[] list whose targets can be a
tooth or a jaw; adds resolveAssignmentTarget / classifyTypeCode /
resolveProsthesisAssignment for leaf-vs-category classification, region
validity with mixed-region deferral, and assignmentIndex on unresolved
items; adds PROSTHESIS_CATEGORY and PROSTHESIS_SUBCATEGORY to
CatalogEntityKind with a migration and seeded fa/en/nl translations; and
rewrites the extraction prompt to render the catalog as a tree.

Frontend: merged "teeth and prosthesis" row, stack preview through the
existing applyLeafToJobs, three chip-fold paths, rewritten applyVoiceResult
and voiceForEditor, and the two carried-forward recording fixes — the
container fallback that refused Safari and the render gate that never
checked isMediaRecorderSupported().

Adds Vitest for the frontend's pure helpers, and updates CLAUDE.md.

Gate was green: backend 16 suites / 209 tests, nest build, prisma validate;
frontend 37 Vitest tests, tsc --noEmit, next build.

KNOWN DEFECTS, fixed in the commits that follow:
- VoiceReviewSheet.tsx:169 — a picked tooth chip is dropped on Apply
- VoiceReviewSheet.tsx:213 / TreatmentWorkspace.tsx:2215 — decision 41's
  type-row lock is missing, so unticking it saves prosthesis lab rows on a
  non-prosthesis detail

Reviewed on the correctness lens only; regression-risk never ran. The
migration was validated but never applied.

Spec: docs/specs/voice-treatment-entry/spec.md
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-09-11 15:49:35 +03:30

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/**
* FDI tooth geometry — permanent dentition only.
*
* Mirrors `frontend/src/components/treatment/fdiToothMeta.ts` and the adjacency rules in
* `toothSelectionGroups.ts`. Adjacency is defined by position in the arch order, so the
* midline pairs (1121, 4131) are neighbours, exactly as the chart treats them.
*/
import { toLatinDigits } from './digits';
export type Arch = 'upper' | 'lower';
/** Which side of the *patient*, not of the screen. Quadrant 1 is the patient's upper right. */
export type PatientSide = 'patient_right' | 'patient_left';
/**
* Upper arch in chart order: patient's RIGHT (18) → midline → patient's LEFT (28) — the drawn
* layout, which mirrors the patient's own sides. Never read a position off this array by
* index; use `toFdi()`, which owns the side convention.
*/
export const FDI_UPPER_ARCH_ORDER = [
'18',
'17',
'16',
'15',
'14',
'13',
'12',
'11',
'21',
'22',
'23',
'24',
'25',
'26',
'27',
'28',
] as const;
/** Lower arch, same chart ordering: patient's RIGHT (48) → midline → patient's LEFT (38). */
export const FDI_LOWER_ARCH_ORDER = [
'48',
'47',
'46',
'45',
'44',
'43',
'42',
'41',
'31',
'32',
'33',
'34',
'35',
'36',
'37',
'38',
] as const;
export const FDI_TOOTH_IDS: ReadonlySet<string> = new Set<string>([
...FDI_UPPER_ARCH_ORDER,
...FDI_LOWER_ARCH_ORDER,
]);
/**
* Not FDI codes — jaw-level prosthesis targets on `LabCaseToothProsthesis.tooth`. Mirrors
* `frontend/src/components/treatment/prosthesisTree.ts`'s `ARCH_TOOTH_UPPER`/`ARCH_TOOTH_LOWER`
* so the voice contract speaks the same sentinel the manual chart already writes.
*/
export const ARCH_TOOTH_UPPER = 'UA';
export const ARCH_TOOTH_LOWER = 'LA';
export function isFdiTooth(value: unknown): value is string {
return typeof value === 'string' && FDI_TOOTH_IDS.has(value);
}
/**
* Clean up a tooth code the model echoed back. It is reading Persian speech, so it can hand
* back "۲۶" or "2 6" from digit-by-digit dictation; neither matches literally, and the
* near-miss does not fail loudly — the tooth just turns into "not understood".
*/
export function normalizeFdiCode(value: unknown): string {
if (typeof value !== 'string') return '';
return toLatinDigits(value).replace(/\s+/g, '');
}
function archOrder(tooth: string): readonly string[] | null {
if ((FDI_UPPER_ARCH_ORDER as readonly string[]).includes(tooth))
return FDI_UPPER_ARCH_ORDER;
if ((FDI_LOWER_ARCH_ORDER as readonly string[]).includes(tooth))
return FDI_LOWER_ARCH_ORDER;
return null;
}
export function sameArch(a: string, b: string): boolean {
const archA = archOrder(a);
const archB = archOrder(b);
return Boolean(archA && archB && archA === archB);
}
export function areArchNeighbors(a: string, b: string): boolean {
const arch = archOrder(a);
if (!arch || !sameArch(a, b)) return false;
return Math.abs(arch.indexOf(a) - arch.indexOf(b)) === 1;
}
/** Inclusive span between two teeth of the same arch, in arch order. Null if not comparable. */
export function teethBetweenInclusive(a: string, b: string): string[] | null {
const arch = archOrder(a);
if (!arch || !sameArch(a, b)) return null;
const i = arch.indexOf(a);
const j = arch.indexOf(b);
if (i < 0 || j < 0) return null;
const [from, to] = i <= j ? [i, j] : [j, i];
return [...arch.slice(from, to + 1)];
}
/**
* Arch + patient side + position (1 = central incisor … 8 = third molar) → FDI code.
*
* The single place the patient-right convention lives. Getting it backwards mirrors every
* quadrant into a valid-looking code for the wrong tooth, which no schema check can catch.
*/
export function toFdi(
arch: Arch,
side: PatientSide,
position: number,
): string | null {
if (!Number.isInteger(position) || position < 1 || position > 8) return null;
let quadrant: number;
if (arch === 'upper') {
quadrant = side === 'patient_right' ? 1 : 2;
} else {
quadrant = side === 'patient_left' ? 3 : 4;
}
const code = `${quadrant}${position}`;
return FDI_TOOTH_IDS.has(code) ? code : null;
}
/**
* Along the arch, not lexically — a bridge reads 16-15-14, and 11 sits beside 21 across the
* midline. Teeth from another arch sort to the end, stably.
*/
export function sortInArchOrder(teeth: readonly string[]): string[] {
if (teeth.length === 0) return [];
const arch = teeth.map((t) => archOrder(t)).find((a) => a !== null) ?? null;
if (!arch) return [...teeth];
const indexOf = (tooth: string) => {
const i = arch.indexOf(tooth);
return i === -1 ? Number.MAX_SAFE_INTEGER : i;
};
return [...teeth].sort((a, b) => indexOf(a) - indexOf(b));
}