/* @ts-self-types="./hyperkitty_wasm.d.ts" */ /** * Route a message from agent `from_idx` (0-15) to the next agent via QRA. * Returns {next_agent, glyph_current, glyph_next, wire_byte, worm_id} * @param {number} from_idx * @param {number} prev_glyph_idx * @returns {string} */ export function agent_route(from_idx, prev_glyph_idx) { let deferred1_0; let deferred1_1; try { const ret = wasm.agent_route(from_idx, prev_glyph_idx); deferred1_0 = ret[0]; deferred1_1 = ret[1]; return getStringFromWasm0(ret[0], ret[1]); } finally { wasm.__wbindgen_free(deferred1_0, deferred1_1, 1); } } /** * Return glyph name for an index (0-5). * @param {number} index * @returns {string} */ export function glyph_name_for(index) { let deferred1_0; let deferred1_1; try { const ret = wasm.glyph_name_for(index); deferred1_0 = ret[0]; deferred1_1 = ret[1]; return getStringFromWasm0(ret[0], ret[1]); } finally { wasm.__wbindgen_free(deferred1_0, deferred1_1, 1); } } /** * Wire byte encoding for a glyph index. * @param {number} index * @returns {number} */ export function glyph_wire_byte(index) { const ret = wasm.glyph_wire_byte(index); return ret; } /** * Norm squared of the QLG point for a glyph (should always be 1). * @param {number} index * @returns {number} */ export function qlg_norm_sq(index) { const ret = wasm.qlg_norm_sq(index); return ret; } /** * Get the QLG sphere point [x, y, z] for a glyph index. * @param {number} index * @returns {Int32Array} */ export function qlg_point_for_glyph(index) { const ret = wasm.qlg_point_for_glyph(index); var v1 = getArrayI32FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 4, 4); return v1; } /** * Evolve a 3-glyph witness one step. Input/output as flat [curr0,prev0, curr1,prev1, curr2,prev2]. * Returns [next0, next1, next2] (3 bytes) or empty on bad input. * @param {number} w0 * @param {number} w1 * @param {number} w2 * @returns {Uint8Array} */ export function qra_evolve_witness(w0, w1, w2) { const ret = wasm.qra_evolve_witness(w0, w1, w2); var v1 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v1; } /** * Q[current][previous] — deterministic next glyph index. * Returns 255 for invalid input. * @param {number} current * @param {number} previous * @returns {number} */ export function qra_next(current, previous) { const ret = wasm.qra_next(current, previous); return ret; } /** * Full 6x6 Q tensor as flat 36-byte array (row-major). * @returns {Uint8Array} */ export function qra_tensor() { const ret = wasm.qra_tensor(); var v1 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v1; } /** * Returns true if canonical witness [Pi,Gamma,Delta] exhausts in exactly 2 steps. * @returns {boolean} */ export function qra_validate_exhaustion() { const ret = wasm.qra_validate_exhaustion(); return ret !== 0; } /** * Get reconciliation JSON for all 6 glyphs. * @returns {string} */ export function reconcile_all_json() { let deferred1_0; let deferred1_1; try { const ret = wasm.reconcile_all_json(); deferred1_0 = ret[0]; deferred1_1 = ret[1]; return getStringFromWasm0(ret[0], ret[1]); } finally { wasm.__wbindgen_free(deferred1_0, deferred1_1, 1); } } /** * Reconcile a glyph through all three layers. * Returns JSON string: {glyph, qlg_norm_sq, sla_balanced, sla_omega, qra_target, valid} * @param {number} index * @returns {string} */ export function reconcile_glyph(index) { let deferred1_0; let deferred1_1; try { const ret = wasm.reconcile_glyph(index); deferred1_0 = ret[0]; deferred1_1 = ret[1]; return getStringFromWasm0(ret[0], ret[1]); } finally { wasm.__wbindgen_free(deferred1_0, deferred1_1, 1); } } /** * Accumulate multiple 24-byte ledgers. Returns 4-byte wire frame. * @param {Uint8Array} ledgers_flat * @returns {Uint8Array} */ export function sla_accumulate(ledgers_flat) { const ptr0 = passArray8ToWasm0(ledgers_flat, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.sla_accumulate(ptr0, len0); var v2 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v2; } /** * Compose two 24-byte encoded ledgers. Returns 24-byte result or empty on omega mismatch. * @param {Uint8Array} a * @param {Uint8Array} b * @returns {Uint8Array} */ export function sla_compose(a, b) { const ptr0 = passArray8ToWasm0(a, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(b, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.sla_compose(ptr0, len0, ptr1, len1); var v3 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v3; } /** * Evolve a 24-byte ledger by a 24-byte increment. Returns result or empty on violation. * @param {Uint8Array} base * @param {Uint8Array} increment * @returns {Uint8Array} */ export function sla_evolve(base, increment) { const ptr0 = passArray8ToWasm0(base, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ptr1 = passArray8ToWasm0(increment, wasm.__wbindgen_malloc); const len1 = WASM_VECTOR_LEN; const ret = wasm.sla_evolve(ptr0, len0, ptr1, len1); var v3 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v3; } /** * Hash a symbol string to u64, returned as hex string. * @param {string} s * @returns {string} */ export function sla_hash_symbol(s) { let deferred2_0; let deferred2_1; try { const ptr0 = passStringToWasm0(s, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.sla_hash_symbol(ptr0, len0); deferred2_0 = ret[0]; deferred2_1 = ret[1]; return getStringFromWasm0(ret[0], ret[1]); } finally { wasm.__wbindgen_free(deferred2_0, deferred2_1, 1); } } /** * Is a 24-byte encoded ledger balanced? * @param {Uint8Array} encoded * @returns {boolean} */ export function sla_is_balanced(encoded) { const ptr0 = passArray8ToWasm0(encoded, wasm.__wbindgen_malloc); const len0 = WASM_VECTOR_LEN; const ret = wasm.sla_is_balanced(ptr0, len0); return ret !== 0; } /** * Get the canonical SLA ledger for a glyph index. Returns 24-byte encoding. * @param {number} index * @returns {Uint8Array} */ export function sla_ledger_for_glyph(index) { const ret = wasm.sla_ledger_for_glyph(index); var v1 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v1; } /** * Create a balanced ledger. Returns 24-byte encoding [s:8][delta:8][omega:8]. * @param {number} s * @param {number} delta * @param {number} omega * @returns {Uint8Array} */ export function sla_ledger_new(s, delta, omega) { const ret = wasm.sla_ledger_new(s, delta, omega); var v1 = getArrayU8FromWasm0(ret[0], ret[1]).slice(); wasm.__wbindgen_free(ret[0], ret[1] * 1, 1); return v1; } /** * Validate the full tripartite isomorphism K_QLG = ω_SLA = target_QRA for all 6 glyphs. * @returns {boolean} */ export function validate_isomorphism() { const ret = wasm.validate_isomorphism(); return ret !== 0; } function __wbg_get_imports() { const import0 = { __proto__: null, __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, "./hyperkitty_wasm_bg.js": import0, }; } function getArrayI32FromWasm0(ptr, len) { ptr = ptr >>> 0; return getInt32ArrayMemory0().subarray(ptr / 4, ptr / 4 + len); } function getArrayU8FromWasm0(ptr, len) { ptr = ptr >>> 0; return getUint8ArrayMemory0().subarray(ptr / 1, ptr / 1 + len); } let cachedInt32ArrayMemory0 = null; function getInt32ArrayMemory0() { if (cachedInt32ArrayMemory0 === null || cachedInt32ArrayMemory0.byteLength === 0) { cachedInt32ArrayMemory0 = new Int32Array(wasm.memory.buffer); } return cachedInt32ArrayMemory0; } 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 passArray8ToWasm0(arg, malloc) { const ptr = malloc(arg.length * 1, 1) >>> 0; getUint8ArrayMemory0().set(arg, ptr / 1); WASM_VECTOR_LEN = arg.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; } 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; cachedInt32ArrayMemory0 = 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('hyperkitty_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 };