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https://github.com/olehomelchenko/astrolabe.git
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Add storage-estimate core and adapter (M6 Storage Monitor groundwork)
Portable summarizer (clamped fraction, ok/warning/critical level, availability flag, humanizeBytes) with the browser StorageManager.estimate() feature-detect isolated to the infrastructure adapter. No UI consumer yet — core-first per the AI developer protocol; the Storage Monitor panel (spec §02) wires to it next.
This commit is contained in:
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import { describe, expect, test } from 'vitest';
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import {
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CRITICAL_THRESHOLD,
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WARNING_THRESHOLD,
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humanizeBytes,
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summarizeStorage,
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} from './storage-estimate';
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describe('summarizeStorage', () => {
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test('computes the fraction and passes usage/quota through', () => {
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const s = summarizeStorage({ usage: 250, quota: 1000 });
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expect(s.available).toBe(true);
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expect(s.usedBytes).toBe(250);
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expect(s.quotaBytes).toBe(1000);
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expect(s.fraction).toBeCloseTo(0.25);
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expect(s.level).toBe('ok');
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});
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test('clamps fraction to 1 when usage exceeds quota', () => {
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const s = summarizeStorage({ usage: 1500, quota: 1000 });
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expect(s.fraction).toBe(1);
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expect(s.level).toBe('critical');
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});
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test('guards divide-by-zero: quota of 0 is unusable', () => {
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const s = summarizeStorage({ usage: 10, quota: 0 });
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expect(s.available).toBe(false);
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expect(s.fraction).toBe(0);
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expect(s.usedBytes).toBe(0);
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expect(s.quotaBytes).toBe(0);
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expect(s.level).toBe('ok');
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});
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describe('level boundaries', () => {
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test('just below warning (0.79) is ok', () => {
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expect(summarizeStorage({ usage: 79, quota: 100 }).level).toBe('ok');
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});
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test('exactly at warning (0.80) is warning', () => {
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const s = summarizeStorage({ usage: 80, quota: 100 });
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expect(s.fraction).toBeCloseTo(WARNING_THRESHOLD);
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expect(s.level).toBe('warning');
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});
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test('just below critical (0.94) is warning', () => {
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expect(summarizeStorage({ usage: 94, quota: 100 }).level).toBe('warning');
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});
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test('exactly at critical (0.95) is critical', () => {
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const s = summarizeStorage({ usage: 95, quota: 100 });
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expect(s.fraction).toBeCloseTo(CRITICAL_THRESHOLD);
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expect(s.level).toBe('critical');
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});
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});
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describe('availability', () => {
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test('missing usage -> unavailable', () => {
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const s = summarizeStorage({ quota: 1000 });
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expect(s.available).toBe(false);
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expect(s.fraction).toBe(0);
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});
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test('missing quota -> unavailable', () => {
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const s = summarizeStorage({ usage: 1000 });
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expect(s.available).toBe(false);
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expect(s.fraction).toBe(0);
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});
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test('both missing (empty input) -> unavailable', () => {
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const s = summarizeStorage({});
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expect(s.available).toBe(false);
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});
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test('non-finite or negative values -> unavailable', () => {
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expect(summarizeStorage({ usage: NaN, quota: 1000 }).available).toBe(false);
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expect(summarizeStorage({ usage: Infinity, quota: 1000 }).available).toBe(false);
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expect(summarizeStorage({ usage: -1, quota: 1000 }).available).toBe(false);
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expect(summarizeStorage({ usage: 10, quota: -5 }).available).toBe(false);
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});
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test('zero usage with a real quota is available and ok', () => {
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const s = summarizeStorage({ usage: 0, quota: 1000 });
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expect(s.available).toBe(true);
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expect(s.fraction).toBe(0);
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expect(s.level).toBe('ok');
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});
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});
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});
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describe('humanizeBytes', () => {
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test('zero renders as whole bytes', () => {
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expect(humanizeBytes(0)).toBe('0 B');
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});
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test('small values stay in whole bytes', () => {
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expect(humanizeBytes(1)).toBe('1 B');
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expect(humanizeBytes(512)).toBe('512 B');
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expect(humanizeBytes(1023)).toBe('1023 B');
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});
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test('KB boundary (1024) and within KB', () => {
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expect(humanizeBytes(1024)).toBe('1.0 KB');
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expect(humanizeBytes(1536)).toBe('1.5 KB');
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});
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test('MB boundary and within MB', () => {
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expect(humanizeBytes(1024 * 1024)).toBe('1.0 MB');
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expect(humanizeBytes(5 * 1024 * 1024)).toBe('5.0 MB');
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expect(humanizeBytes(2.5 * 1024 * 1024)).toBe('2.5 MB');
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});
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test('GB boundary', () => {
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expect(humanizeBytes(1024 * 1024 * 1024)).toBe('1.0 GB');
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});
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test('caps at the largest unit (TB)', () => {
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expect(humanizeBytes(1024 ** 4)).toBe('1.0 TB');
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expect(humanizeBytes(1024 ** 5)).toBe('1024.0 TB');
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});
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test('negative and non-finite inputs degrade to 0 B', () => {
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expect(humanizeBytes(-1)).toBe('0 B');
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expect(humanizeBytes(NaN)).toBe('0 B');
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expect(humanizeBytes(Infinity)).toBe('0 B');
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});
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});
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/**
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* Storage estimate summarization (spec §02 → Storage Monitor; spec §10 → "Warn
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* before storage failure"; docs/architecture/02 §6).
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*
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* Portable core: no browser APIs, no React. The browser's Storage Manager API
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* (`navigator.storage.estimate()`) yields a raw `{ usage, quota }` pair in
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* bytes — both optional, since a browser may omit them. This module turns that
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* raw pair into presentation-ready facts: a clamped fraction, an escalating
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* level, and an availability flag. The infrastructure adapter
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* (`src/app/infrastructure/storage-estimate.ts`) feature-detects the API and
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* feeds its output through here; all the math lives in this pure function so it
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* is trivially testable.
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*
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* Thresholds: warning at >= 0.8 is the documented value (arch 02 §6 `WARN_AT`).
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* Critical at >= 0.95 is not specified by spec/arch; it is this module's default
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* for the second escalation step ("nearly full") and is the single source of
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* truth here.
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*/
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/** Raw input shape, mirroring the browser's `StorageEstimate` (bytes, both optional). */
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export interface StorageEstimateInput {
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/** Bytes currently used, or undefined when the browser omits it. */
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usage?: number;
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/** Total bytes available (quota), or undefined when the browser omits it. */
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quota?: number;
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}
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/** Escalating fullness level driving the storage monitor's warning copy/colour. */
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export type StorageLevel = 'ok' | 'warning' | 'critical';
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/** Presentation-ready summary derived from a raw estimate. */
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export interface StorageSummary {
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/** Bytes used (0 when unusable). */
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usedBytes: number;
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/** Quota in bytes (0 when unusable). */
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quotaBytes: number;
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/** usedBytes / quotaBytes, clamped to 0..1; 0 when quota is 0/undefined. */
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fraction: number;
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/** Escalating fullness level derived from `fraction`. */
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level: StorageLevel;
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/** False when usage/quota are missing or non-finite — the estimate is unusable. */
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available: boolean;
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}
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/** Fraction at which the monitor begins warning (arch 02 §6 `WARN_AT`). */
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export const WARNING_THRESHOLD = 0.8;
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/** Fraction at which the monitor escalates to critical ("nearly full"). */
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export const CRITICAL_THRESHOLD = 0.95;
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/** A non-finite or negative number is not a usable byte count. */
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function usableBytes(n: number | undefined): number | null {
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if (typeof n !== 'number' || !Number.isFinite(n) || n < 0) return null;
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return n;
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}
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/** Map a clamped fraction to its escalation level. */
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function levelFor(fraction: number): StorageLevel {
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if (fraction >= CRITICAL_THRESHOLD) return 'critical';
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if (fraction >= WARNING_THRESHOLD) return 'warning';
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return 'ok';
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}
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/**
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* Turn a raw storage estimate into a presentation-ready summary. Pure: no I/O.
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* When usage is missing/invalid, or quota is missing/invalid/zero, the estimate
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* is unusable — `available: false`, everything zeroed, level `ok` (we don't warn
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* on data we don't have). Otherwise the fraction is `usage / quota` clamped to
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* 0..1 and the level escalates at the thresholds above.
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*/
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export function summarizeStorage(input: StorageEstimateInput): StorageSummary {
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const usage = usableBytes(input.usage);
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const quota = usableBytes(input.quota);
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// Quota of 0 can't yield a meaningful fraction; treat as unusable.
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if (usage === null || quota === null || quota === 0) {
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return { usedBytes: 0, quotaBytes: 0, fraction: 0, level: 'ok', available: false };
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}
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const fraction = Math.min(1, usage / quota);
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return {
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usedBytes: usage,
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quotaBytes: quota,
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fraction,
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level: levelFor(fraction),
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available: true,
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};
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}
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const BYTE_UNITS = ['B', 'KB', 'MB', 'GB', 'TB'] as const;
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/**
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* Render a byte count as a human-readable string using binary (1024) units.
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* Bytes are shown as a whole number with the `B` unit; KB and up get one
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* decimal place (e.g. `1.5 MB`). Negative/non-finite inputs degrade to `0 B`.
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*/
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export function humanizeBytes(n: number): string {
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if (!Number.isFinite(n) || n < 0) return '0 B';
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if (n < 1024) return `${Math.round(n)} B`;
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let value = n;
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let unit = 0;
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while (value >= 1024 && unit < BYTE_UNITS.length - 1) {
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value /= 1024;
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unit += 1;
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}
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return `${value.toFixed(1)} ${BYTE_UNITS[unit]}`;
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}
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