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88 lines
3.7 KiB
TypeScript
88 lines
3.7 KiB
TypeScript
/* tslint:disable */
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/* eslint-disable */
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/* auto-generated by NAPI-RS */
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export declare namespace passwords {
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/** Fetch the stored password from the keychain. */
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export function getPassword(service: string, account: string): Promise<string>
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/** Fetch the stored password from the keychain that was stored with Keytar. */
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export function getPasswordKeytar(service: string, account: string): Promise<string>
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/** Save the password to the keychain. Adds an entry if none exists otherwise updates the existing entry. */
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export function setPassword(service: string, account: string, password: string): Promise<void>
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/** Delete the stored password from the keychain. */
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export function deletePassword(service: string, account: string): Promise<void>
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export function isAvailable(): Promise<boolean>
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}
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export declare namespace biometrics {
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export function prompt(hwnd: Buffer, message: string): Promise<boolean>
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export function available(): Promise<boolean>
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export function setBiometricSecret(service: string, account: string, secret: string, keyMaterial: KeyMaterial | undefined | null, ivB64: string): Promise<string>
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export function getBiometricSecret(service: string, account: string, keyMaterial?: KeyMaterial | undefined | null): Promise<string>
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/**
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* Derives key material from biometric data. Returns a string encoded with a
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* base64 encoded key and the base64 encoded challenge used to create it
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* separated by a `|` character.
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*
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* If the iv is provided, it will be used as the challenge. Otherwise a random challenge will be generated.
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*
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* `format!("<key_base64>|<iv_base64>")`
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*/
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export function deriveKeyMaterial(iv?: string | undefined | null): Promise<OsDerivedKey>
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export interface KeyMaterial {
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osKeyPartB64: string
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clientKeyPartB64?: string
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}
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export interface OsDerivedKey {
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keyB64: string
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ivB64: string
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}
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}
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export declare namespace clipboards {
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export function read(): Promise<string>
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export function write(text: string, password: boolean): Promise<void>
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}
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export declare namespace processisolations {
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export function disableCoredumps(): Promise<void>
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export function isCoreDumpingDisabled(): Promise<boolean>
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export function disableMemoryAccess(): Promise<void>
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}
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export declare namespace powermonitors {
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export function onLock(callback: (err: Error | null, ) => any): Promise<void>
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export function isLockMonitorAvailable(): Promise<boolean>
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}
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export declare namespace windows_registry {
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export function createKey(key: string, subkey: string, value: string): Promise<void>
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export function deleteKey(key: string, subkey: string): Promise<void>
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}
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export declare namespace ipc {
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export interface IpcMessage {
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clientId: number
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kind: IpcMessageType
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message?: string
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}
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export const enum IpcMessageType {
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Connected = 0,
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Disconnected = 1,
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Message = 2
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}
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export class IpcServer {
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/**
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* Create and start the IPC server without blocking.
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*
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* @param name The endpoint name to listen on. This name uniquely identifies the IPC connection and must be the same for both the server and client.
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* @param callback This function will be called whenever a message is received from a client.
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*/
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static listen(name: string, callback: (error: null | Error, message: IpcMessage) => void): Promise<IpcServer>
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/** Stop the IPC server. */
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stop(): void
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/**
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* Send a message over the IPC server to all the connected clients
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*
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* @return The number of clients that the message was sent to. Note that the number of messages
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* actually received may be less, as some clients could disconnect before receiving the message.
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*/
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send(message: string): number
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}
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}
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