9.9 KiB
Package API
@add-ideas/toolbox-helpers is a side-effect-free ESM package with generated
TypeScript declarations and no runtime dependency. Import named helpers from
the package root; internal deep paths are not public API.
Bounds
type BytesLike = ArrayBuffer | ArrayBufferView;
const DEFAULT_HELPER_LIMITS: Readonly<{
maxInputBytes: number; // 16 MiB
maxTextChars: 2_000_000;
maxItems: 100_000;
maxDepth: 128;
}>;
assertBoundedText(value: string, maximum?: number, label?: string): string;
assertBoundedBytes(value: BytesLike, maximum?: number, label?: string): Uint8Array;
assertBoundedItems(count: number, maximum?: number, label?: string): number;
assertPositiveSafeInteger(value: number, label: string): number;
asUint8Array(value: BytesLike): Uint8Array;
interface ByteRange { offset: number; length: number; end: number }
assertSafeOffset(value: number, label?: string): number;
checkedOffsetAdd(offset: number, length: number, maximum?: number, label?: string): number;
checkedByteRange(availableBytes: number, offset: number, length: number, label?: string): ByteRange;
class ByteCursor { /* bounded typed reads, seek/skip and subcursors */ }
ownedBytes(input: BytesLike, maximumBytes?: number): Uint8Array;
HelperLimitError extends RangeError and exposes numeric actual and limit
properties. Per-operation ceilings can be made narrower. They are compatibility
and denial-of-service boundaries, not a substitute for an application-wide
memory budget.
ByteCursor defaults to the shared 16 MiB input ceiling and never advances
after a failed read. It is non-owning by default; readBytes(length, true),
bytes(true) and bounded ownedBytes make explicit retained copies.
Encoding and URLs
type TextEncoding = "utf-8" | "utf-16le" | "utf-16be" | "latin1";
interface DecodeBinaryOptions {
maxOutputBytes?: number;
allowWhitespace?: boolean;
}
bytesToBase64(input: BytesLike): string;
bytesToBase64Url(input: BytesLike, padded?: boolean): string;
base64ToBytes(input: string, options?: DecodeBinaryOptions): Uint8Array;
base64UrlToBytes(input: string, options?: DecodeBinaryOptions): Uint8Array;
bytesToHex(input: BytesLike, uppercase?: boolean): string;
hexToBytes(
input: string,
options?: DecodeBinaryOptions & { allowPrefix?: boolean },
): Uint8Array;
encodeText(input: string, encoding?: TextEncoding): Uint8Array;
decodeText(input: BytesLike, encoding?: TextEncoding, fatal?: boolean): string;
encodeUrlComponent(value: string): string;
decodeUrlComponent(value: string): string;
inspectUrl(value: string, base?: string): UrlParts;
parseFormEncoded(input: string, maximumFields?: number): FormEntries;
stringifyFormEncoded(entries: Iterable<readonly [string, string]>, maximumFields?: number): string;
Base64 decoders reject non-canonical alphabets, malformed padding and non-zero unused bits. Base64URL accepts either no padding or the exact RFC 4648 padding required for that value. URL inspection is inert: it parses text but never opens or fetches the result.
Checksums and digests
type DigestAlgorithm = "SHA-1" | "SHA-256" | "SHA-384" | "SHA-512";
type ChecksumAlgorithm = "CRC-32" | "Adler-32" | "FNV-1a-32";
interface IncrementalChecksum {
readonly algorithm: ChecksumAlgorithm;
readonly bytesProcessed: number;
update(input: BytesLike): this;
digest(): number;
digestHex(): string;
reset(): this;
}
createIncrementalChecksum(algorithm: ChecksumAlgorithm, maximumBytes?: number): IncrementalChecksum;
crc32(input: BytesLike, maximumBytes?: number): number;
adler32(input: BytesLike, maximumBytes?: number): number;
fnv1a32(input: BytesLike, maximumBytes?: number): number;
formatChecksum(value: number): string;
digestBytes(
input: BytesLike,
algorithm?: DigestAlgorithm,
maximumBytes?: number,
cryptoProvider?: Pick<Crypto, "subtle">,
): Promise<Uint8Array>;
digestHex(
input: BytesLike,
algorithm?: DigestAlgorithm,
maximumBytes?: number,
cryptoProvider?: Pick<Crypto, "subtle">,
): Promise<string>;
Digests use Web Crypto. SHA-1 is available only for interoperability. Checksums and hashes do not establish authorship, and none of these functions is a password-hashing API.
Byte sources
type ByteSource = Blob | ReadableStream<BytesLike> | AsyncIterable<BytesLike>;
interface ByteSourceProgress { processedBytes: number; totalBytes?: number }
iterateByteChunks(source: ByteSource, options?: ConsumeByteSourceOptions): AsyncGenerator<Uint8Array>;
consumeByteSource(source: ByteSource, consume: (chunk: Uint8Array) => void | Promise<void>, options?: ConsumeByteSourceOptions): Promise<number>;
checksumByteSource(source: ByteSource, checksum?: ChecksumAlgorithm | IncrementalChecksum, options?: ConsumeByteSourceOptions): Promise<number>;
digestByteSource(source: ByteSource, algorithm?: DigestAlgorithm, options?: DigestByteSourceOptions): Promise<Uint8Array>;
digestByteSourceHex(source: ByteSource, algorithm?: DigestAlgorithm, options?: DigestByteSourceOptions): Promise<string>;
Every source is bounded and supports cancellation and progress. A supplied
knownTotalBytes is an exact contract rather than an unchecked progress hint.
CRC-32,
Adler-32 and FNV-1a are genuinely incremental and constant-memory. Web Crypto
does not expose incremental SHA state, so digestByteSource retains chunks up
to the caller's explicit ceiling before invoking its one-shot digest API.
Network
type IpVersion = 4 | 6;
interface ParsedIpAddress {
version: IpVersion;
bytes: Uint8Array;
value: bigint;
canonical: string;
}
interface ParsedCidr {
version: IpVersion;
prefixLength: number;
address: ParsedIpAddress;
network: ParsedIpAddress;
first: ParsedIpAddress;
last: ParsedIpAddress;
broadcast?: ParsedIpAddress;
size: bigint;
canonical: string;
}
parseIpAddress(input: string): ParsedIpAddress;
parseIpv4(input: string): ParsedIpAddress;
parseIpv6(input: string): ParsedIpAddress;
formatIpv4(input: bigint | BytesLike): string;
formatIpv6(input: bigint | BytesLike): string;
parseCidr(input: string): ParsedCidr;
cidrContains(
cidr: string | ParsedCidr,
address: string | ParsedIpAddress,
): boolean;
IPv4 leading zeroes and IPv6 zone identifiers are rejected rather than guessed.
The helpers perform no DNS, HTTP, probing or scanning. bigint fields preserve
128-bit values exactly and must be converted explicitly before JSON encoding.
Downloads
interface ObjectUrlLease {
readonly url: string;
readonly revoked: boolean;
revoke(): void;
}
sanitizeDownloadFilename(input: string, fallback?: string, maximumLength?: number): string;
createObjectUrlLease(
blob: Blob,
urlApi?: Pick<typeof URL, "createObjectURL" | "revokeObjectURL">,
): ObjectUrlLease;
createObjectUrlLeasePool<TKey = string>(urlApi?: UrlApi): ObjectUrlLeasePool<TKey>;
planBlobDownloads(input: Iterable<BlobDownload>, options?: PlanBlobDownloadsOptions): readonly PlannedBlobDownload[];
triggerBlobDownloads(input: Iterable<BlobDownload>, options?: TriggerBlobDownloadsOptions): TriggeredBlobDownloads;
triggerBlobDownload(
blob: Blob,
filename: string,
ownerDocument?: Document,
): ObjectUrlLease;
triggerBlobDownload removes its temporary anchor synchronously and schedules
object URL revocation for the next task. Long-lived previews should instead
keep a lease and call revoke() when replaced or unmounted.
Batch planning consumes at most the configured item ceiling, preserves input
order by default, sanitizes every name and adds
stable (2), (3) suffixes for case-insensitive collisions. All batch URLs
are revocable as one group. Browsers may still ask users to permit multiple
downloads.
Worker jobs
const WORKER_JOB_PROTOCOL = "add-ideas.worker-job/v1";
startWorkerJob<TPayload, TResult, TProgress, TError>(
worker: WorkerJobEndpoint,
payload: TPayload,
options?: StartWorkerJobOptions<TProgress, TError>,
): WorkerJobHandle<TResult>;
createWorkerJobMessageHandler<TPayload, TResult, TProgress, TError>(
run: (payload: TPayload, context: WorkerJobContext<TProgress>) => TResult | Promise<TResult>,
postMessage: (response: WorkerJobResponse<TResult, TProgress, TError>) => void,
options: WorkerJobHandlerOptions<TError>,
): (event: MessageEvent<WorkerJobCommand<TPayload>>) => void;
The client filters responses by protocol and job ID, forwards progress, propagates abort reasons, enforces a hard timeout by terminating disposable workers and removes all listeners when settled. Worker handlers expose the same deadline and cancellation signal for cooperative asynchronous work.
Display
formatBytes(bytes: number, options?: FormatBytesOptions): string;
Formatting is deterministic and defaults to IEC units. It supports SI units, fixed precision, signed quantities and an explicit invalid-value label.
Remaining groups
| Group | Exports |
|---|---|
| Unicode and text | inspectCodePoints, fromCodePoints, segmentGraphemes, normalizeUnicode, transformCase, convertLineEndings |
| Numbers and units | parseBigIntRadix, formatBigIntRadix, convertNumberBase, convertDataUnit, convertUnit, unitDimension |
| Time | parseTimestamp, formatTimestamp, parseDuration, formatDuration |
| Structured data | safeJsonParse, stableStringify, parseCsv, stringifyCsv |
| Random | secureRandomBytes, secureRandomInt, createSeededRandom, shuffleSeeded |
JSON dangerous object keys are rejected by default, cycles and unsupported values are rejected by deterministic JSON, and CSV dimensions and fields are bounded. Secure random functions use Web Crypto. The seeded generator is reproducible and deliberately unsuitable for any secret, nonce, key, salt or token.