/* @ts-self-types="./mtp_wasm.d.ts" */ export class ConnectionConfig { __destroy_into_raw() { const ptr = this.__wbg_ptr; this.__wbg_ptr = 0; ConnectionConfigFinalization.unregister(this); return ptr; } free() { const ptr = this.__destroy_into_raw(); wasm.__wbg_connectionconfig_free(ptr, 0); } /** * @returns {bigint} */ get client_id() { const ret = wasm.connectionconfig_client_id(this.__wbg_ptr); return BigInt.asUintN(64, ret); } /** * @param {string} url */ constructor(url) { const ptr0 = passStringToWasm0(url, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.connectionconfig_new(ptr0, len0); this.__wbg_ptr = ret; ConnectionConfigFinalization.register(this, this.__wbg_ptr, this); return this; } /** * @param {bigint} id */ set client_id(id) { wasm.connectionconfig_set_client_id(this.__wbg_ptr, id); } /** * @param {string[]} hashes */ set server_certificate_hashes(hashes) { const ptr0 = passArrayJsValueToWasm0(hashes, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; wasm.connectionconfig_set_server_certificate_hashes(this.__wbg_ptr, ptr0, len0); } /** * @returns {string} */ get url() { let deferred1_0; let deferred1_1; try { const ret = wasm.connectionconfig_url(this.__wbg_ptr); deferred1_0 = ret[0]; deferred1_1 = ret[1]; return getStringFromWasm0(ret[0], ret[1]); } finally { wasm.__wbindgen_free(deferred1_0, deferred1_1, 1); } } } if (Symbol.dispose) ConnectionConfig.prototype[Symbol.dispose] = ConnectionConfig.prototype.free; /** * @enum {0 | 1 | 2 | 3} */ export const ConnectionState = Object.freeze({ Disconnected: 0, "0": "Disconnected", Connecting: 1, "1": "Connecting", Connected: 2, "2": "Connected", Failed: 3, "3": "Failed", }); export class WasmChaCha20Poly1305 { __destroy_into_raw() { const ptr = this.__wbg_ptr; this.__wbg_ptr = 0; WasmChaCha20Poly1305Finalization.unregister(this); return ptr; } free() { const ptr = this.__destroy_into_raw(); wasm.__wbg_wasmchacha20poly1305_free(ptr, 0); } /** * Decrypt `nonce || ciphertext` with `aad`. * @param {Uint8Array} ciphertext * @param {Uint8Array} aad * @returns {Uint8Array} */ decrypt(ciphertext, aad) { const ptr0 = passArray8ToWasm0(ciphertext, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(aad, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.wasmchacha20poly1305_decrypt(this.__wbg_ptr, ptr0, len0, ptr1, len1); if (ret[3]) { throw takeFromExternrefTable0(ret[2]); } var v3 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v3; } /** * Encrypt `plaintext` with `aad`. * Returns `nonce || ciphertext`. * @param {Uint8Array} plaintext * @param {Uint8Array} aad * @returns {Uint8Array} */ encrypt(plaintext, aad) { const ptr0 = passArray8ToWasm0(plaintext, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(aad, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.wasmchacha20poly1305_encrypt(this.__wbg_ptr, ptr0, len0, ptr1, len1); if (ret[3]) { throw takeFromExternrefTable0(ret[2]); } var v3 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v3; } /** * Create a new cipher with a 32-byte key. * @param {Uint8Array} key */ constructor(key) { const ptr0 = passArray8ToWasm0(key, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.wasmchacha20poly1305_new(ptr0, len0); if (ret[2]) { throw takeFromExternrefTable0(ret[1]); } this.__wbg_ptr = ret[0]; WasmChaCha20Poly1305Finalization.register(this, this.__wbg_ptr, this); return this; } } if (Symbol.dispose) WasmChaCha20Poly1305.prototype[Symbol.dispose] = WasmChaCha20Poly1305.prototype.free; export class WasmClient { __destroy_into_raw() { const ptr = this.__wbg_ptr; this.__wbg_ptr = 0; WasmClientFinalization.unregister(this); return ptr; } free() { const ptr = this.__destroy_into_raw(); wasm.__wbg_wasmclient_free(ptr, 0); } /** * Authenticated login with an existing client ID. * Exchanges Identification + signatures and verifies the host response. * * - `host_public_key_bytes`: serialized PublicKeyBundle from the server * - `keyring_bytes`: serialized Keyring of this client (must match `client_id`) * - `client_id`: previously assigned client ID * * Returns the confirmed (same) client ID on success. * @param {ConnectionConfig} config * @param {Uint8Array} host_public_key_bytes * @param {Uint8Array} keyring_bytes * @param {bigint} client_id * @returns {Promise} */ auth_connect(config, host_public_key_bytes, keyring_bytes, client_id) { _assertClass(config, ConnectionConfig); const ptr0 = passArray8ToWasm0(host_public_key_bytes, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(keyring_bytes, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.wasmclient_auth_connect(this.__wbg_ptr, config.__wbg_ptr, ptr0, len0, ptr1, len1, client_id); return ret; } /** * Authenticated registration with a fresh keyring. * The server assigns a new client ID. * * - `host_public_key_bytes`: serialized PublicKeyBundle from the server * - `keyring_bytes`: serialized Keyring (must include ed25519 secret key) * * Returns the newly assigned client ID. * @param {ConnectionConfig} config * @param {Uint8Array} host_public_key_bytes * @param {Uint8Array} keyring_bytes * @returns {Promise} */ auth_register(config, host_public_key_bytes, keyring_bytes) { _assertClass(config, ConnectionConfig); const ptr0 = passArray8ToWasm0(host_public_key_bytes, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(keyring_bytes, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.wasmclient_auth_register(this.__wbg_ptr, config.__wbg_ptr, ptr0, len0, ptr1, len1); return ret; } /** * Unauthenticated connect (sends basic Identification, enables receive loop). * @param {ConnectionConfig} config * @returns {Promise} */ connect(config) { _assertClass(config, ConnectionConfig); const ret = wasm.wasmclient_connect(this.__wbg_ptr, config.__wbg_ptr); return ret; } disconnect() { wasm.wasmclient_disconnect(this.__wbg_ptr); } /** * @returns {boolean} */ static is_supported() { const ret = wasm.wasmclient_is_supported(); return ret !== 0; } /** * @param {Function} on_state_change * @param {Function} on_message * @param {Function} on_error */ constructor(on_state_change, on_message, on_error) { const ret = wasm.wasmclient_new(on_state_change, on_message, on_error); this.__wbg_ptr = ret; WasmClientFinalization.register(this, this.__wbg_ptr, this); return this; } /** * @param {Uint8Array} frame * @returns {Promise} */ send(frame) { const ptr0 = passArray8ToWasm0(frame, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.wasmclient_send(this.__wbg_ptr, ptr0, len0); return ret; } /** * @returns {number} */ get state() { const ret = wasm.wasmclient_state(this.__wbg_ptr); return ret; } } if (Symbol.dispose) WasmClient.prototype[Symbol.dispose] = WasmClient.prototype.free; export class WasmEd25519Signer { static __wrap(ptr) { const obj = Object.create(WasmEd25519Signer.prototype); obj.__wbg_ptr = ptr; WasmEd25519SignerFinalization.register(obj, obj.__wbg_ptr, obj); return obj; } __destroy_into_raw() { const ptr = this.__wbg_ptr; this.__wbg_ptr = 0; WasmEd25519SignerFinalization.unregister(this); return ptr; } free() { const ptr = this.__destroy_into_raw(); wasm.__wbg_wasmed25519signer_free(ptr, 0); } /** * Load a signer from its 32-byte secret key. * @param {Uint8Array} secret_key */ constructor(secret_key) { const ptr0 = passArray8ToWasm0(secret_key, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.wasmed25519signer_new(ptr0, len0); if (ret[2]) { throw takeFromExternrefTable0(ret[1]); } this.__wbg_ptr = ret[0]; WasmEd25519SignerFinalization.register(this, this.__wbg_ptr, this); return this; } /** * Sign `message` and return the signature bytes. * @param {Uint8Array} message * @returns {Uint8Array} */ sign(message) { const ptr0 = passArray8ToWasm0(message, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.wasmed25519signer_sign(this.__wbg_ptr, ptr0, len0); if (ret[3]) { throw takeFromExternrefTable0(ret[2]); } var v2 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v2; } /** * Verify `signature` against `message`. * @param {Uint8Array} message * @param {Uint8Array} signature */ verify(message, signature) { const ptr0 = passArray8ToWasm0(message, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(signature, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.wasmed25519signer_verify(this.__wbg_ptr, ptr0, len0, ptr1, len1); if (ret[1]) { throw takeFromExternrefTable0(ret[0]); } } } if (Symbol.dispose) WasmEd25519Signer.prototype[Symbol.dispose] = WasmEd25519Signer.prototype.free; export class WasmKeyring { static __wrap(ptr) { const obj = Object.create(WasmKeyring.prototype); obj.__wbg_ptr = ptr; WasmKeyringFinalization.register(obj, obj.__wbg_ptr, obj); return obj; } __destroy_into_raw() { const ptr = this.__wbg_ptr; this.__wbg_ptr = 0; WasmKeyringFinalization.unregister(this); return ptr; } free() { const ptr = this.__destroy_into_raw(); wasm.__wbg_wasmkeyring_free(ptr, 0); } /** * Deserialise a keyring from bytes. * @param {Uint8Array} bytes * @returns {WasmKeyring} */ static from_bytes(bytes) { const ptr0 = passArray8ToWasm0(bytes, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.wasmkeyring_from_bytes(ptr0, len0); if (ret[2]) { throw takeFromExternrefTable0(ret[1]); } return WasmKeyring.__wrap(ret[0]); } /** * Return the public half of this keyring as a bundle. * @returns {WasmPublicKeyBundle} */ public_key_bundle() { const ret = wasm.wasmkeyring_public_key_bundle(this.__wbg_ptr); return WasmPublicKeyBundle.__wrap(ret); } /** * Serialise the keyring to bytes. * @returns {Uint8Array} */ to_bytes() { const ret = wasm.wasmkeyring_to_bytes(this.__wbg_ptr); var v1 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v1; } } if (Symbol.dispose) WasmKeyring.prototype[Symbol.dispose] = WasmKeyring.prototype.free; export class WasmPublicKeyBundle { static __wrap(ptr) { const obj = Object.create(WasmPublicKeyBundle.prototype); obj.__wbg_ptr = ptr; WasmPublicKeyBundleFinalization.register(obj, obj.__wbg_ptr, obj); return obj; } __destroy_into_raw() { const ptr = this.__wbg_ptr; this.__wbg_ptr = 0; WasmPublicKeyBundleFinalization.unregister(this); return ptr; } free() { const ptr = this.__destroy_into_raw(); wasm.__wbg_wasmpublickeybundle_free(ptr, 0); } /** * @param {Uint8Array} bytes * @returns {WasmPublicKeyBundle} */ static from_bytes(bytes) { const ptr0 = passArray8ToWasm0(bytes, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.wasmpublickeybundle_from_bytes(ptr0, len0); if (ret[2]) { throw takeFromExternrefTable0(ret[1]); } return WasmPublicKeyBundle.__wrap(ret[0]); } /** * @returns {Uint8Array} */ get kem_public_key() { const ret = wasm.wasmpublickeybundle_kem_public_key(this.__wbg_ptr); var v1 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v1; } /** * @returns {Uint8Array} */ get sig_cl_public_key() { const ret = wasm.wasmpublickeybundle_sig_cl_public_key(this.__wbg_ptr); var v1 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v1; } /** * @returns {Uint8Array} */ get sig_pq_public_key() { const ret = wasm.wasmpublickeybundle_sig_pq_public_key(this.__wbg_ptr); var v1 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v1; } /** * @returns {Uint8Array} */ to_bytes() { const ret = wasm.wasmpublickeybundle_to_bytes(this.__wbg_ptr); var v1 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v1; } } if (Symbol.dispose) WasmPublicKeyBundle.prototype[Symbol.dispose] = WasmPublicKeyBundle.prototype.free; /** * Build a demo Ping frame with encrypted and signed containers * (mirrors the Rust client example but uses only reserved data types). * @param {bigint} client_id * @param {Uint8Array} keyring_bytes * @param {Uint8Array} host_bundle_bytes * @returns {Uint8Array} */ export function build_demo_message(client_id, keyring_bytes, host_bundle_bytes) { const ptr0 = passArray8ToWasm0(keyring_bytes, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(host_bundle_bytes, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.build_demo_message(client_id, ptr0, len0, ptr1, len1); if (ret[3]) { throw takeFromExternrefTable0(ret[2]); } var v3 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v3; } /** * Build a simple Ping frame with description, timestamp, and optional data. * @param {bigint} client_id * @param {string} description * @param {bigint} timestamp * @param {Uint8Array} data * @returns {Uint8Array} */ export function build_ping_frame(client_id, description, timestamp, data) { const ptr0 = passStringToWasm0(description, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(data, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.build_ping_frame(client_id, ptr0, len0, timestamp, ptr1, len1); if (ret[3]) { throw takeFromExternrefTable0(ret[2]); } var v3 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v3; } /** * Build a request frame with the given communication type name, request ID, and JSON data. * * - `comm_type`: communication type name (e.g. "get_model", "rank_models") or PascalCase * - `id`: request ID for response correlation * - `json_data`: JSON-stringified request payload * @param {string} comm_type * @param {number} id * @param {string} json_data * @returns {Uint8Array} */ export function build_request_frame(comm_type, id, json_data) { const ptr0 = passStringToWasm0(comm_type, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passStringToWasm0(json_data, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.build_request_frame(ptr0, len0, id, ptr1, len1); if (ret[3]) { throw takeFromExternrefTable0(ret[2]); } var v3 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v3; } /** * Generate a fresh Ed25519 keypair. * * Returns `{ signer: WasmEd25519Signer, secretKey: Uint8Array, publicKey: Uint8Array }`. * @returns {any} */ export function ed25519_generate() { const ret = wasm.ed25519_generate(); if (ret[2]) { throw takeFromExternrefTable0(ret[1]); } return takeFromExternrefTable0(ret[0]); } /** * Standalone Ed25519 signature verification. * @param {Uint8Array} public_key * @param {Uint8Array} message * @param {Uint8Array} signature */ export function ed25519_verify(public_key, message, signature) { const ptr0 = passArray8ToWasm0(public_key, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(message, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ptr2 = passArray8ToWasm0(signature, wasm.__wbindgen_malloc); const len2 = WASM_VECTOR_LEN; const ret = wasm.ed25519_verify(ptr0, len0, ptr1, len1, ptr2, len2); if (ret[1]) { throw takeFromExternrefTable0(ret[0]); } } /** * Parse any MTP frame into the human-readable CommunicationValue display form. * @param {Uint8Array} frame * @returns {string} */ export function format_frame(frame) { let deferred3_0; let deferred3_1; try { const ptr0 = passArray8ToWasm0(frame, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.format_frame(ptr0, len0); var ptr2 = ret[0]; var len2 = ret[1]; if (ret[3]) { ptr2 = 0; len2 = 0; throw takeFromExternrefTable0(ret[2]); } deferred3_0 = ptr2; deferred3_1 = len2; return getStringFromWasm0(ptr2, len2); } finally { wasm.__wbindgen_free(deferred3_0, deferred3_1, 1); } } /** * Build a [`Keyring`] containing only an Ed25519 keypair (no KEM, no ML-DSA). * * Takes the Ed25519 secret key and public key, each 32 bytes. * Returns the serialised keyring bytes, suitable for passing to `WasmClient.auth_register`. * @param {Uint8Array} secret_key * @param {Uint8Array} public_key * @returns {Uint8Array} */ export function keyring_from_ed25519(secret_key, public_key) { const ptr0 = passArray8ToWasm0(secret_key, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(public_key, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.keyring_from_ed25519(ptr0, len0, ptr1, len1); if (ret[3]) { throw takeFromExternrefTable0(ret[2]); } var v3 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v3; } export function main() { wasm.main(); } /** * Parse an auth response frame into a JS object. * @param {Uint8Array} response * @returns {any} */ export function parse_auth_response(response) { const ptr0 = passArray8ToWasm0(response, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.parse_auth_response(ptr0, len0); if (ret[2]) { throw takeFromExternrefTable0(ret[1]); } return takeFromExternrefTable0(ret[0]); } /** * Parse a response frame into a JSON string containing `_id`, `_type`, and data fields. * @param {Uint8Array} frame * @returns {string} */ export function parse_response_frame(frame) { let deferred3_0; let deferred3_1; try { const ptr0 = passArray8ToWasm0(frame, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.parse_response_frame(ptr0, len0); var ptr2 = ret[0]; var len2 = ret[1]; if (ret[3]) { ptr2 = 0; len2 = 0; throw takeFromExternrefTable0(ret[2]); } deferred3_0 = ptr2; deferred3_1 = len2; return getStringFromWasm0(ptr2, len2); } finally { wasm.__wbindgen_free(deferred3_0, deferred3_1, 1); } } /** * Derive a 32-byte encryption key from `ikm` with `salt` and `context`. * @param {Uint8Array} ikm * @param {Uint8Array} salt * @param {Uint8Array} context * @returns {Uint8Array} */ export function wasm_derive_encryption_key(ikm, salt, context) { const ptr0 = passArray8ToWasm0(ikm, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(salt, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ptr2 = passArray8ToWasm0(context, wasm.__wbindgen_malloc); const len2 = WASM_VECTOR_LEN; const ret = wasm.wasm_derive_encryption_key(ptr0, len0, ptr1, len1, ptr2, len2); if (ret[3]) { throw takeFromExternrefTable0(ret[2]); } var v4 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v4; } /** * HKDF-expand: derive `len` bytes from `ikm` with `salt` and `info`. * @param {Uint8Array} ikm * @param {Uint8Array} salt * @param {Uint8Array} info * @param {number} len * @returns {Uint8Array} */ export function wasm_hkdf_expand(ikm, salt, info, len) { const ptr0 = passArray8ToWasm0(ikm, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(salt, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ptr2 = passArray8ToWasm0(info, wasm.__wbindgen_malloc); const len2 = WASM_VECTOR_LEN; const ret = wasm.wasm_hkdf_expand(ptr0, len0, ptr1, len1, ptr2, len2, len); if (ret[3]) { throw takeFromExternrefTable0(ret[2]); } var v4 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v4; } /** * SHA-256 digest. * @param {Uint8Array} data * @returns {Uint8Array} */ export function wasm_sha256(data) { const ptr0 = passArray8ToWasm0(data, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.wasm_sha256(ptr0, len0); var v2 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v2; } /** * Double SHA-256 (SHA-256 applied twice). * @param {Uint8Array} data * @returns {Uint8Array} */ export function wasm_sha256_double(data) { const ptr0 = passArray8ToWasm0(data, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.wasm_sha256_double(ptr0, len0); var v2 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v2; } function __wbg_get_imports() { const import0 = { __proto__: null, __wbg___wbindgen_boolean_get_fa956cfa2d1bd751: function(arg0) { const v = arg0; const ret = typeof(v) === 'boolean' ? v : undefined; return isLikeNone(ret) ? 0xFFFFFF : ret ? 1 : 0; }, __wbg___wbindgen_debug_string_c25d447a39f5578f: function(arg0, arg1) { const ret = debugString(arg1); const ptr1 = passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc); const len1 = WASM_VECTOR_LEN; getDataViewMemory0().setInt32(arg0 + 4 * 1, len1, true); getDataViewMemory0().setInt32(arg0 + 4 * 0, ptr1, true); }, __wbg___wbindgen_is_function_1ff95bcc5517c252: function(arg0) { const ret = typeof(arg0) === 'function'; return ret; }, __wbg___wbindgen_is_null_ea9085d691f535d3: function(arg0) { const ret = arg0 === null; return ret; }, __wbg___wbindgen_is_object_a27215656b807791: function(arg0) { const val = arg0; const ret = typeof(val) === 'object' && val !== null; return ret; }, __wbg___wbindgen_is_string_ea5e6cc2e4141dfe: function(arg0) { const ret = typeof(arg0) === 'string'; return ret; }, __wbg___wbindgen_is_undefined_c05833b95a3cf397: function(arg0) { const ret = arg0 === undefined; return ret; }, __wbg___wbindgen_string_get_b0ca35b86a603356: function(arg0, arg1) { const obj = arg1; const ret = typeof(obj) === 'string' ? obj : undefined; var ptr1 = isLikeNone(ret) ? 0 : passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc); var len1 = WASM_VECTOR_LEN; getDataViewMemory0().setInt32(arg0 + 4 * 1, len1, true); getDataViewMemory0().setInt32(arg0 + 4 * 0, ptr1, true); }, __wbg___wbindgen_throw_344f42d3211c4765: function(arg0, arg1) { throw new Error(getStringFromWasm0(arg0, arg1)); }, __wbg__wbg_cb_unref_fffb441def202758: function(arg0) { arg0._wbg_cb_unref(); }, __wbg_call_8a2dd23819f8a60a: function() { return handleError(function (arg0, arg1) { const ret = arg0.call(arg1); return ret; }, arguments); }, __wbg_call_a6e5c5dce5018821: function() { return handleError(function (arg0, arg1, arg2) { const ret = arg0.call(arg1, arg2); return ret; }, arguments); }, __wbg_close_23b01d38b065688a: function(arg0, arg1) { arg0.close(arg1); }, __wbg_createUnidirectionalStream_9ff0e4127f40ed0d: function(arg0) { const ret = arg0.createUnidirectionalStream(); return ret; }, __wbg_crypto_38df2bab126b63dc: function(arg0) { const ret = arg0.crypto; return ret; }, __wbg_entries_015dc610cd81ede0: function(arg0) { const ret = Object.entries(arg0); return ret; }, __wbg_error_a6fa202b58aa1cd3: function(arg0, arg1) { let deferred0_0; let deferred0_1; try { deferred0_0 = arg0; deferred0_1 = arg1; console.error(getStringFromWasm0(arg0, arg1)); } finally { wasm.__wbindgen_free(deferred0_0, deferred0_1, 1); } }, __wbg_getRandomValues_c44a50d8cfdaebeb: function() { return handleError(function (arg0, arg1) { arg0.getRandomValues(arg1); }, arguments); }, __wbg_getRandomValues_cc7f052a444bb2ce: function() { return handleError(function (arg0, arg1) { globalThis.crypto.getRandomValues(getArrayU8FromWasm0(arg0, arg1)); }, arguments); }, __wbg_get_507a50627bffa49b: function(arg0, arg1) { const ret = arg0[arg1 >>> 0]; return ret; }, __wbg_get_78f252d074a84d0b: function() { return handleError(function (arg0, arg1) { const ret = Reflect.get(arg0, arg1); return ret; }, arguments); }, __wbg_has_8374cf06984d8bfc: function() { return handleError(function (arg0, arg1) { const ret = Reflect.has(arg0, arg1); return ret; }, arguments); }, __wbg_incomingUnidirectionalStreams_505a67efefd669d3: function(arg0) { const ret = arg0.incomingUnidirectionalStreams; return ret; }, __wbg_isArray_0677c962b281d01a: function(arg0) { const ret = Array.isArray(arg0); return ret; }, __wbg_length_1f0964f4a5e2c6d8: function(arg0) { const ret = arg0.length; return ret; }, __wbg_length_370319915dc99107: function(arg0) { const ret = arg0.length; return ret; }, __wbg_log_d267660666346fb3: function(arg0) { console.log(arg0); }, __wbg_msCrypto_bd5a034af96bcba6: function(arg0) { const ret = arg0.msCrypto; return ret; }, __wbg_new_227d7c05414eb861: function() { const ret = new Error(); return ret; }, __wbg_new_a2778e1fb014b494: function() { return handleError(function (arg0, arg1) { const ret = new WebTransport(getStringFromWasm0(arg0, arg1)); return ret; }, arguments); }, __wbg_new_cd45aabdf6073e84: function(arg0) { const ret = new Uint8Array(arg0); return ret; }, __wbg_new_da52cf8fe3429cb2: function() { const ret = new Object(); return ret; }, __wbg_new_from_slice_77cdfb7977362f3c: function(arg0, arg1) { const ret = new Uint8Array(getArrayU8FromWasm0(arg0, arg1)); return ret; }, __wbg_new_typed_1824d93f294193e5: function(arg0, arg1) { try { var state0 = {a: arg0, b: arg1}; var cb0 = (arg0, arg1) => { const a = state0.a; state0.a = 0; try { return wasm_bindgen__convert__closures_____invoke__h4bf2427f775cf424(a, state0.b, arg0, arg1); } finally { state0.a = a; } }; const ret = new Promise(cb0); return ret; } finally { state0.a = 0; } }, __wbg_new_with_length_e6785c33c8e4cce8: function(arg0) { const ret = new Uint8Array(arg0 >>> 0); return ret; }, __wbg_new_with_options_5b1cc213336d0b4c: function() { return handleError(function (arg0, arg1, arg2) { const ret = new WebTransport(getStringFromWasm0(arg0, arg1), arg2); return ret; }, arguments); }, __wbg_node_84ea875411254db1: function(arg0) { const ret = arg0.node; return ret; }, __wbg_now_86c0d4ba3fa605b8: function() { const ret = Date.now(); return ret; }, __wbg_parse_1c0d8a8656d7e016: function() { return handleError(function (arg0, arg1) { const ret = JSON.parse(getStringFromWasm0(arg0, arg1)); return ret; }, arguments); }, __wbg_process_44c7a14e11e9f69e: function(arg0) { const ret = arg0.process; return ret; }, __wbg_prototypesetcall_4770620bbe4688a0: function(arg0, arg1, arg2) { Uint8Array.prototype.set.call(getArrayU8FromWasm0(arg0, arg1), arg2); }, __wbg_queueMicrotask_0ab5b2d2393e99b9: function(arg0) { const ret = arg0.queueMicrotask; return ret; }, __wbg_queueMicrotask_6a09b7bc46549209: function(arg0) { queueMicrotask(arg0); }, __wbg_randomFillSync_6c25eac9869eb53c: function() { return handleError(function (arg0, arg1) { arg0.randomFillSync(arg1); }, arguments); }, __wbg_ready_e4dad560377c42e6: function(arg0) { const ret = arg0.ready; return ret; }, __wbg_require_b4edbdcf3e2a1ef0: function() { return handleError(function () { const ret = module.require; return ret; }, arguments); }, __wbg_resolve_2191a4dfe481c25b: function(arg0) { const ret = Promise.resolve(arg0); return ret; }, __wbg_set_8535240470bf2500: function() { return handleError(function (arg0, arg1, arg2) { const ret = Reflect.set(arg0, arg1, arg2); return ret; }, arguments); }, __wbg_set_algorithm_4884633ae550b091: function(arg0, arg1, arg2) { arg0.algorithm = getStringFromWasm0(arg1, arg2); }, __wbg_set_server_certificate_hashes_c6f10c7638672baf: function(arg0, arg1, arg2) { arg0.serverCertificateHashes = getArrayJsValueViewFromWasm0(arg1, arg2); }, __wbg_set_value_u8_array_38f1c892603c4916: function(arg0, arg1) { arg0.value = arg1; }, __wbg_stack_3b0d974bbf31e44f: function(arg0, arg1) { const ret = arg1.stack; const ptr1 = passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc); const len1 = WASM_VECTOR_LEN; getDataViewMemory0().setInt32(arg0 + 4 * 1, len1, true); getDataViewMemory0().setInt32(arg0 + 4 * 0, ptr1, true); }, __wbg_static_accessor_GLOBAL_4ef717fb391d88b7: function() { const ret = typeof global === 'undefined' ? null : global; return isLikeNone(ret) ? 0 : addToExternrefTable0(ret); }, __wbg_static_accessor_GLOBAL_THIS_8d1badc68b5a74f4: function() { const ret = typeof globalThis === 'undefined' ? null : globalThis; return isLikeNone(ret) ? 0 : addToExternrefTable0(ret); }, __wbg_static_accessor_SELF_146583524fe1469b: function() { const ret = typeof self === 'undefined' ? null : self; return isLikeNone(ret) ? 0 : addToExternrefTable0(ret); }, __wbg_static_accessor_WINDOW_f2829a2234d7819e: function() { const ret = typeof window === 'undefined' ? null : window; return isLikeNone(ret) ? 0 : addToExternrefTable0(ret); }, __wbg_stringify_b54333f60f1e4dad: function() { return handleError(function (arg0) { const ret = JSON.stringify(arg0); return ret; }, arguments); }, __wbg_subarray_3ed232c8a6baee09: function(arg0, arg1, arg2) { const ret = arg0.subarray(arg1 >>> 0, arg2 >>> 0); return ret; }, __wbg_then_16d107c451e9905d: function(arg0, arg1, arg2) { const ret = arg0.then(arg1, arg2); return ret; }, __wbg_then_6ec10ae38b3e92f7: function(arg0, arg1) { const ret = arg0.then(arg1); return ret; }, __wbg_versions_276b2795b1c6a219: function(arg0) { const ret = arg0.versions; return ret; }, __wbg_wasmed25519signer_new: function(arg0) { const ret = WasmEd25519Signer.__wrap(arg0); return ret; }, __wbindgen_cast_0000000000000001: function(arg0, arg1) { // Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Externref], shim_idx: 135, ret: Result(Unit), inner_ret: Some(Result(Unit)) }, mutable: true }) -> Externref`. const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h6588d25cdde23584); return ret; }, __wbindgen_cast_0000000000000002: function(arg0, arg1) { // Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("WebTransportSendStream")], shim_idx: 64, ret: Result(Unit), inner_ret: Some(Result(Unit)) }, mutable: true }) -> Externref`. const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h2faccefeed15993f); return ret; }, __wbindgen_cast_0000000000000003: function(arg0, arg1) { // Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("undefined")], shim_idx: 64, ret: Result(Unit), inner_ret: Some(Result(Unit)) }, mutable: true }) -> Externref`. const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h2faccefeed15993f_2); return ret; }, __wbindgen_cast_0000000000000004: function(arg0) { // Cast intrinsic for `F64 -> Externref`. const ret = arg0; return ret; }, __wbindgen_cast_0000000000000005: function(arg0, arg1) { // Cast intrinsic for `Ref(Slice(U8)) -> NamedExternref("Uint8Array")`. const ret = getArrayU8FromWasm0(arg0, arg1); return ret; }, __wbindgen_cast_0000000000000006: function(arg0, arg1) { // Cast intrinsic for `Ref(String) -> Externref`. const ret = getStringFromWasm0(arg0, arg1); return ret; }, __wbindgen_cast_0000000000000007: function(arg0) { // Cast intrinsic for `U64 -> Externref`. const ret = BigInt.asUintN(64, arg0); return ret; }, __wbindgen_init_externref_table: function() { const table = wasm.__wbindgen_externrefs; const offset = table.grow(4); table.set(0, undefined); table.set(offset + 0, undefined); table.set(offset + 1, null); table.set(offset + 2, true); table.set(offset + 3, false); }, }; return { __proto__: null, "./mtp_wasm_bg.js": import0, }; } function wasm_bindgen__convert__closures_____invoke__h6588d25cdde23584(arg0, arg1, arg2) { const ret = wasm.wasm_bindgen__convert__closures_____invoke__h6588d25cdde23584(arg0, arg1, arg2); if (ret[1]) { throw takeFromExternrefTable0(ret[0]); } } function wasm_bindgen__convert__closures_____invoke__h2faccefeed15993f(arg0, arg1, arg2) { const ret = wasm.wasm_bindgen__convert__closures_____invoke__h2faccefeed15993f(arg0, arg1, arg2); if (ret[1]) { throw takeFromExternrefTable0(ret[0]); } } function wasm_bindgen__convert__closures_____invoke__h2faccefeed15993f_2(arg0, arg1, arg2) { const ret = wasm.wasm_bindgen__convert__closures_____invoke__h2faccefeed15993f_2(arg0, arg1, arg2); if (ret[1]) { throw takeFromExternrefTable0(ret[0]); } } function wasm_bindgen__convert__closures_____invoke__h4bf2427f775cf424(arg0, arg1, arg2, arg3) { wasm.wasm_bindgen__convert__closures_____invoke__h4bf2427f775cf424(arg0, arg1, arg2, arg3); } const ConnectionConfigFinalization = (typeof FinalizationRegistry === 'undefined') ? { register: () => {}, unregister: () => {} } : new FinalizationRegistry(ptr => wasm.__wbg_connectionconfig_free(ptr, 1)); const WasmChaCha20Poly1305Finalization = (typeof FinalizationRegistry === 'undefined') ? { register: () => {}, unregister: () => {} } : new FinalizationRegistry(ptr => wasm.__wbg_wasmchacha20poly1305_free(ptr, 1)); const WasmClientFinalization = (typeof FinalizationRegistry === 'undefined') ? { register: () => {}, unregister: () => {} } : new FinalizationRegistry(ptr => wasm.__wbg_wasmclient_free(ptr, 1)); const WasmEd25519SignerFinalization = (typeof FinalizationRegistry === 'undefined') ? { register: () => {}, unregister: () => {} } : new FinalizationRegistry(ptr => wasm.__wbg_wasmed25519signer_free(ptr, 1)); const WasmKeyringFinalization = (typeof FinalizationRegistry === 'undefined') ? { register: () => {}, unregister: () => {} } : new FinalizationRegistry(ptr => wasm.__wbg_wasmkeyring_free(ptr, 1)); const WasmPublicKeyBundleFinalization = (typeof FinalizationRegistry === 'undefined') ? { register: () => {}, unregister: () => {} } : new FinalizationRegistry(ptr => wasm.__wbg_wasmpublickeybundle_free(ptr, 1)); function addToExternrefTable0(obj) { const idx = wasm.__externref_table_alloc(); wasm.__wbindgen_externrefs.set(idx, obj); return idx; } function _assertClass(instance, klass) { if (!(instance instanceof klass)) { throw new Error(`expected instance of ${klass.name}`); } } const CLOSURE_DTORS = (typeof FinalizationRegistry === 'undefined') ? { register: () => {}, unregister: () => {} } : new FinalizationRegistry(state => wasm.__wbindgen_destroy_closure(state.a, state.b)); function debugString(val) { // primitive types const type = typeof val; if (type == 'number' || type == 'boolean' || val == null) { return `${val}`; } if (type == 'string') { return `"${val}"`; } if (type == 'symbol') { const description = val.description; if (description == null) { return 'Symbol'; } else { return `Symbol(${description})`; } } if (type == 'function') { const name = val.name; if (typeof name == 'string' && name.length > 0) { return `Function(${name})`; } else { return 'Function'; } } // objects if (Array.isArray(val)) { const length = val.length; let debug = '['; if (length > 0) { debug += debugString(val[0]); } for(let i = 1; i < length; i++) { debug += ', ' + debugString(val[i]); } debug += ']'; return debug; } // Test for built-in const builtInMatches = /\[object ([^\]]+)\]/.exec(toString.call(val)); let className; if (builtInMatches && builtInMatches.length > 1) { className = builtInMatches[1]; } else { // Failed to match the standard '[object ClassName]' return toString.call(val); } if (className == 'Object') { // we're a user defined class or Object // JSON.stringify avoids problems with cycles, and is generally much // easier than looping through ownProperties of `val`. try { return 'Object(' + JSON.stringify(val) + ')'; } catch (_) { return 'Object'; } } // errors if (val instanceof Error) { return `${val.name}: ${val.message}\n${val.stack}`; } // TODO we could test for more things here, like `Set`s and `Map`s. return className; } function getArrayJsValueViewFromWasm0(ptr, len) { ptr = ptr >>> 0; const mem = getDataViewMemory0(); const result = []; for (let i = ptr; i < ptr + 4 * len; i += 4) { result.push(wasm.__wbindgen_externrefs.get(mem.getUint32(i, true))); } return result; } function getArrayU8FromWasm0(ptr, len) { ptr = ptr >>> 0; return getUint8ArrayMemory0().subarray(ptr / 1, ptr / 1 + len); } let cachedDataViewMemory0 = null; function getDataViewMemory0() { if (cachedDataViewMemory0 === null || cachedDataViewMemory0.buffer.detached === true || (cachedDataViewMemory0.buffer.detached === undefined && cachedDataViewMemory0.buffer !== wasm.memory.buffer)) { cachedDataViewMemory0 = new DataView(wasm.memory.buffer); } return cachedDataViewMemory0; } function getStringFromWasm0(ptr, len) { return decodeText(ptr >>> 0, len); } let cachedUint8ArrayMemory0 = null; function getUint8ArrayMemory0() { if (cachedUint8ArrayMemory0 === null || cachedUint8ArrayMemory0.byteLength === 0) { cachedUint8ArrayMemory0 = new Uint8Array(wasm.memory.buffer); } return cachedUint8ArrayMemory0; } function handleError(f, args) { try { return f.apply(this, args); } catch (e) { const idx = addToExternrefTable0(e); wasm.__wbindgen_exn_store(idx); } } function isLikeNone(x) { return x === undefined || x === null; } function makeMutClosure(arg0, arg1, f) { const state = { a: arg0, b: arg1, cnt: 1 }; const real = (...args) => { // First up with a closure we increment the internal reference // count. This ensures that the Rust closure environment won't // be deallocated while we're invoking it. state.cnt++; const a = state.a; state.a = 0; try { return f(a, state.b, ...args); } finally { state.a = a; real._wbg_cb_unref(); } }; real._wbg_cb_unref = () => { if (--state.cnt === 0) { wasm.__wbindgen_destroy_closure(state.a, state.b); state.a = 0; CLOSURE_DTORS.unregister(state); } }; CLOSURE_DTORS.register(real, state, state); return real; } function passArray8ToWasm0(arg, malloc) { const ptr = malloc(arg.length * 1, 1) >>> 0; getUint8ArrayMemory0().set(arg, ptr / 1); WASM_VECTOR_LEN = arg.length; return ptr; } function passArrayJsValueToWasm0(array, malloc) { const ptr = malloc(array.length * 4, 4) >>> 0; for (let i = 0; i < array.length; i++) { const add = addToExternrefTable0(array[i]); getDataViewMemory0().setUint32(ptr + 4 * i, add, true); } WASM_VECTOR_LEN = array.length; return ptr; } function passStringToWasm0(arg, malloc, realloc) { if (realloc === undefined) { const buf = cachedTextEncoder.encode(arg); const ptr = malloc(buf.length, 1) >>> 0; getUint8ArrayMemory0().subarray(ptr, ptr + buf.length).set(buf); WASM_VECTOR_LEN = buf.length; return ptr; } let len = arg.length; let ptr = malloc(len, 1) >>> 0; const mem = getUint8ArrayMemory0(); let offset = 0; for (; offset < len; offset++) { const code = arg.charCodeAt(offset); if (code > 0x7F) break; mem[ptr + offset] = code; } if (offset !== len) { if (offset !== 0) { arg = arg.slice(offset); } ptr = realloc(ptr, len, len = offset + arg.length * 3, 1) >>> 0; const view = getUint8ArrayMemory0().subarray(ptr + offset, ptr + len); const ret = cachedTextEncoder.encodeInto(arg, view); offset += ret.written; ptr = realloc(ptr, len, offset, 1) >>> 0; } WASM_VECTOR_LEN = offset; return ptr; } function takeFromExternrefTable0(idx) { const value = wasm.__wbindgen_externrefs.get(idx); wasm.__externref_table_dealloc(idx); return value; } let cachedTextDecoder = new TextDecoder('utf-8', { ignoreBOM: true, fatal: true }); cachedTextDecoder.decode(); const MAX_SAFARI_DECODE_BYTES = 2146435072; let numBytesDecoded = 0; function decodeText(ptr, len) { numBytesDecoded += len; if (numBytesDecoded >= MAX_SAFARI_DECODE_BYTES) { cachedTextDecoder = new TextDecoder('utf-8', { ignoreBOM: true, fatal: true }); cachedTextDecoder.decode(); numBytesDecoded = len; } return cachedTextDecoder.decode(getUint8ArrayMemory0().subarray(ptr, ptr + len)); } const cachedTextEncoder = new TextEncoder(); if (!('encodeInto' in cachedTextEncoder)) { cachedTextEncoder.encodeInto = function (arg, view) { const buf = cachedTextEncoder.encode(arg); view.set(buf); return { read: arg.length, written: buf.length }; }; } let WASM_VECTOR_LEN = 0; let wasmModule, wasmInstance, wasm; function __wbg_finalize_init(instance, module) { wasmInstance = instance; wasm = instance.exports; wasmModule = module; cachedDataViewMemory0 = null; cachedUint8ArrayMemory0 = null; wasm.__wbindgen_start(); return wasm; } async function __wbg_load(module, imports) { if (typeof Response === 'function' && module instanceof Response) { if (typeof WebAssembly.instantiateStreaming === 'function') { try { return await WebAssembly.instantiateStreaming(module, imports); } catch (e) { const validResponse = module.ok && expectedResponseType(module.type); if (validResponse && module.headers.get('Content-Type') !== 'application/wasm') { console.warn("`WebAssembly.instantiateStreaming` failed because your server does not serve Wasm with `application/wasm` MIME type. Falling back to `WebAssembly.instantiate` which is slower. Original error:\n", e); } else { throw e; } } } const bytes = await module.arrayBuffer(); return await WebAssembly.instantiate(bytes, imports); } else { const instance = await WebAssembly.instantiate(module, imports); if (instance instanceof WebAssembly.Instance) { return { instance, module }; } else { return instance; } } function expectedResponseType(type) { switch (type) { case 'basic': case 'cors': case 'default': return true; } return false; } } function initSync(module) { if (wasm !== undefined) return wasm; if (module !== undefined) { if (Object.getPrototypeOf(module) === Object.prototype) { ({module} = module) } else { console.warn('using deprecated parameters for `initSync()`; pass a single object instead') } } const imports = __wbg_get_imports(); if (!(module instanceof WebAssembly.Module)) { module = new WebAssembly.Module(module); } const instance = new WebAssembly.Instance(module, imports); return __wbg_finalize_init(instance, module); } async function __wbg_init(module_or_path) { if (wasm !== undefined) return wasm; if (module_or_path !== undefined) { if (Object.getPrototypeOf(module_or_path) === Object.prototype) { ({module_or_path} = module_or_path) } else { console.warn('using deprecated parameters for the initialization function; pass a single object instead') } } if (module_or_path === undefined) { module_or_path = new URL('mtp_wasm_bg.wasm', import.meta.url); } const imports = __wbg_get_imports(); if (typeof module_or_path === 'string' || (typeof Request === 'function' && module_or_path instanceof Request) || (typeof URL === 'function' && module_or_path instanceof URL)) { module_or_path = fetch(module_or_path); } const { instance, module } = await __wbg_load(await module_or_path, imports); return __wbg_finalize_init(instance, module); } export { initSync, __wbg_init as default };