0dd173f113
- new read-only export hel_entry(name): the entry's canonical stored form, or "" - Mark correct now also stores the name (keeps the entry); unmark keeps the stored name and just drops the hash (wraps add/rm for an ephemeral entry so the right hash is removed) - Store button shows "Stored ✓" (disabled, ocean outline) when the name is already in the catalog, "Store" otherwise - when a typed name already exists, the field adopts the full stored spec on blur (real mode/seq/date/parent) instead of a default-extended parse
389 lines
13 KiB
JavaScript
389 lines
13 KiB
JavaScript
/* @ts-self-types="./helwasm.d.ts" */
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/**
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* Run a single hel command line and return its combined output.
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* @param {string} cmd
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* @returns {string}
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*/
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export function hel_command(cmd) {
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let deferred2_0;
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let deferred2_1;
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try {
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const ptr0 = passStringToWasm0(cmd, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);
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const len0 = WASM_VECTOR_LEN;
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const ret = wasm.hel_command(ptr0, len0);
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deferred2_0 = ret[0];
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deferred2_1 = ret[1];
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return getStringFromWasm0(ret[0], ret[1]);
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} finally {
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wasm.__wbindgen_free(deferred2_0, deferred2_1, 1);
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}
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}
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/**
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* Look up an entry by its exact name and return its canonical stored form
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* (`name [len]mode seq date comment ^parent`), or "" if it is not in the catalog.
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* Read-only. The UI uses this to detect "already stored" and to use the real stored
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* spec (its mode/seq/date/parent) instead of the bare name the user typed.
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* @param {string} name
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* @returns {string}
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*/
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export function hel_entry(name) {
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let deferred2_0;
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let deferred2_1;
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try {
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const ptr0 = passStringToWasm0(name, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);
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const len0 = WASM_VECTOR_LEN;
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const ret = wasm.hel_entry(ptr0, len0);
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deferred2_0 = ret[0];
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deferred2_1 = ret[1];
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return getStringFromWasm0(ret[0], ret[1]);
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} finally {
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wasm.__wbindgen_free(deferred2_0, deferred2_1, 1);
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}
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}
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/**
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* Call once at page load: routes Rust panics to the browser console with a
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* readable message + stack instead of an opaque "unreachable" trap.
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*/
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export function hel_init() {
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wasm.hel_init();
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}
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/**
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* Run a whole multi-line script (every `add …` line, `set …`, etc.) against the
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* shared state in one call. Used to bulk-import a pasted catalog (e.g. the text
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* of the Notion page) and to load the persisted catalog from localStorage.
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* @param {string} script
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* @returns {string}
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*/
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export function hel_load_script(script) {
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let deferred2_0;
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let deferred2_1;
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try {
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const ptr0 = passStringToWasm0(script, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);
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const len0 = WASM_VECTOR_LEN;
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const ret = wasm.hel_load_script(ptr0, len0);
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deferred2_0 = ret[0];
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deferred2_1 = ret[1];
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return getStringFromWasm0(ret[0], ret[1]);
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} finally {
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wasm.__wbindgen_free(deferred2_0, deferred2_1, 1);
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}
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}
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/**
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* Parse a password spec (e.g. `exa91` or `exa91 20R 99 2020-01-01`) and return
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* the canonical normalized form hel actually uses (name + mode + seq + date +
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* comment), without touching state. Returns the input unchanged if it does not
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* parse. Used by the UI to rewrite the name field on blur.
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* @param {string} spec
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* @returns {string}
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*/
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export function hel_parse(spec) {
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let deferred2_0;
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let deferred2_1;
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try {
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const ptr0 = passStringToWasm0(spec, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);
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const len0 = WASM_VECTOR_LEN;
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const ret = wasm.hel_parse(ptr0, len0);
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deferred2_0 = ret[0];
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deferred2_1 = ret[1];
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return getStringFromWasm0(ret[0], ret[1]);
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} finally {
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wasm.__wbindgen_free(deferred2_0, deferred2_1, 1);
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}
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}
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/**
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* Parse a spec and return just the entry name hel resolves it to. Handles a
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* leading prefix (e.g. `*P0 test1 …` → `test1`), which a naive first-token
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* split would get wrong. Falls back to the first whitespace token.
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* @param {string} spec
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* @returns {string}
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*/
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export function hel_parse_name(spec) {
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let deferred2_0;
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let deferred2_1;
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try {
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const ptr0 = passStringToWasm0(spec, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);
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const len0 = WASM_VECTOR_LEN;
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const ret = wasm.hel_parse_name(ptr0, len0);
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deferred2_0 = ret[0];
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deferred2_1 = ret[1];
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return getStringFromWasm0(ret[0], ret[1]);
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} finally {
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wasm.__wbindgen_free(deferred2_0, deferred2_1, 1);
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}
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}
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function __wbg_get_imports() {
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const import0 = {
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__proto__: null,
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__wbg___wbindgen_throw_1506f2235d1bdba0: function(arg0, arg1) {
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throw new Error(getStringFromWasm0(arg0, arg1));
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},
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__wbg_error_a6fa202b58aa1cd3: function(arg0, arg1) {
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let deferred0_0;
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let deferred0_1;
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try {
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deferred0_0 = arg0;
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deferred0_1 = arg1;
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console.error(getStringFromWasm0(arg0, arg1));
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} finally {
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wasm.__wbindgen_free(deferred0_0, deferred0_1, 1);
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}
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},
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__wbg_getTime_00b3f7db575e4ef5: function(arg0) {
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const ret = arg0.getTime();
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return ret;
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},
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__wbg_getTimezoneOffset_08e2892156231088: function(arg0) {
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const ret = arg0.getTimezoneOffset();
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return ret;
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},
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__wbg_hel_get_password_271a2beac04c29db: function(arg0, arg1, arg2) {
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const ret = hel_get_password(getStringFromWasm0(arg1, arg2));
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const ptr1 = passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);
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const len1 = WASM_VECTOR_LEN;
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getDataViewMemory0().setInt32(arg0 + 4 * 1, len1, true);
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getDataViewMemory0().setInt32(arg0 + 4 * 0, ptr1, true);
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},
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__wbg_hel_rnd_range_d01857a65a482c6d: function(arg0, arg1) {
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const ret = hel_rnd_range(arg0 >>> 0, arg1 >>> 0);
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return ret;
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},
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__wbg_hel_storage_get_9915f302e24bdacb: function(arg0, arg1, arg2) {
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const ret = hel_storage_get(getStringFromWasm0(arg1, arg2));
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var ptr1 = isLikeNone(ret) ? 0 : passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);
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var len1 = WASM_VECTOR_LEN;
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getDataViewMemory0().setInt32(arg0 + 4 * 1, len1, true);
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getDataViewMemory0().setInt32(arg0 + 4 * 0, ptr1, true);
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},
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__wbg_hel_storage_set_78052521669832fa: function(arg0, arg1, arg2, arg3) {
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hel_storage_set(getStringFromWasm0(arg0, arg1), getStringFromWasm0(arg2, arg3));
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},
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__wbg_new_0_445c13a750296eb6: function() {
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const ret = new Date();
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return ret;
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},
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__wbg_new_227d7c05414eb861: function() {
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const ret = new Error();
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return ret;
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},
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__wbg_new_6d75fd236f920a62: function(arg0) {
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const ret = new Date(arg0);
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return ret;
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},
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__wbg_stack_3b0d974bbf31e44f: function(arg0, arg1) {
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const ret = arg1.stack;
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const ptr1 = passStringToWasm0(ret, wasm.__wbindgen_malloc, wasm.__wbindgen_realloc);
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const len1 = WASM_VECTOR_LEN;
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getDataViewMemory0().setInt32(arg0 + 4 * 1, len1, true);
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getDataViewMemory0().setInt32(arg0 + 4 * 0, ptr1, true);
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},
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__wbindgen_cast_0000000000000001: function(arg0) {
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// Cast intrinsic for `F64 -> Externref`.
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const ret = arg0;
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return ret;
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},
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__wbindgen_init_externref_table: function() {
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const table = wasm.__wbindgen_externrefs;
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const offset = table.grow(4);
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table.set(0, undefined);
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table.set(offset + 0, undefined);
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table.set(offset + 1, null);
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table.set(offset + 2, true);
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table.set(offset + 3, false);
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},
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};
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return {
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__proto__: null,
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"./helwasm_bg.js": import0,
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};
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}
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let cachedDataViewMemory0 = null;
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function getDataViewMemory0() {
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if (cachedDataViewMemory0 === null || cachedDataViewMemory0.buffer.detached === true || (cachedDataViewMemory0.buffer.detached === undefined && cachedDataViewMemory0.buffer !== wasm.memory.buffer)) {
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cachedDataViewMemory0 = new DataView(wasm.memory.buffer);
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}
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return cachedDataViewMemory0;
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}
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function getStringFromWasm0(ptr, len) {
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return decodeText(ptr >>> 0, len);
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}
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let cachedUint8ArrayMemory0 = null;
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function getUint8ArrayMemory0() {
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if (cachedUint8ArrayMemory0 === null || cachedUint8ArrayMemory0.byteLength === 0) {
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cachedUint8ArrayMemory0 = new Uint8Array(wasm.memory.buffer);
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}
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return cachedUint8ArrayMemory0;
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}
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function isLikeNone(x) {
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return x === undefined || x === null;
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}
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function passStringToWasm0(arg, malloc, realloc) {
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if (realloc === undefined) {
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const buf = cachedTextEncoder.encode(arg);
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const ptr = malloc(buf.length, 1) >>> 0;
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getUint8ArrayMemory0().subarray(ptr, ptr + buf.length).set(buf);
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WASM_VECTOR_LEN = buf.length;
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return ptr;
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}
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let len = arg.length;
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let ptr = malloc(len, 1) >>> 0;
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const mem = getUint8ArrayMemory0();
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let offset = 0;
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for (; offset < len; offset++) {
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const code = arg.charCodeAt(offset);
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if (code > 0x7F) break;
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mem[ptr + offset] = code;
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}
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if (offset !== len) {
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if (offset !== 0) {
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arg = arg.slice(offset);
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}
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ptr = realloc(ptr, len, len = offset + arg.length * 3, 1) >>> 0;
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const view = getUint8ArrayMemory0().subarray(ptr + offset, ptr + len);
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const ret = cachedTextEncoder.encodeInto(arg, view);
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offset += ret.written;
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ptr = realloc(ptr, len, offset, 1) >>> 0;
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}
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WASM_VECTOR_LEN = offset;
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return ptr;
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}
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let cachedTextDecoder = new TextDecoder('utf-8', { ignoreBOM: true, fatal: true });
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cachedTextDecoder.decode();
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const MAX_SAFARI_DECODE_BYTES = 2146435072;
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let numBytesDecoded = 0;
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function decodeText(ptr, len) {
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numBytesDecoded += len;
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if (numBytesDecoded >= MAX_SAFARI_DECODE_BYTES) {
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cachedTextDecoder = new TextDecoder('utf-8', { ignoreBOM: true, fatal: true });
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cachedTextDecoder.decode();
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numBytesDecoded = len;
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}
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return cachedTextDecoder.decode(getUint8ArrayMemory0().subarray(ptr, ptr + len));
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}
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const cachedTextEncoder = new TextEncoder();
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if (!('encodeInto' in cachedTextEncoder)) {
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cachedTextEncoder.encodeInto = function (arg, view) {
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const buf = cachedTextEncoder.encode(arg);
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view.set(buf);
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return {
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read: arg.length,
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written: buf.length
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};
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};
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}
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let WASM_VECTOR_LEN = 0;
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let wasmModule, wasmInstance, wasm;
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function __wbg_finalize_init(instance, module) {
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wasmInstance = instance;
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wasm = instance.exports;
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wasmModule = module;
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cachedDataViewMemory0 = null;
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cachedUint8ArrayMemory0 = null;
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wasm.__wbindgen_start();
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return wasm;
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}
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async function __wbg_load(module, imports) {
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if (typeof Response === 'function' && module instanceof Response) {
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if (typeof WebAssembly.instantiateStreaming === 'function') {
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try {
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return await WebAssembly.instantiateStreaming(module, imports);
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} catch (e) {
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const validResponse = module.ok && expectedResponseType(module.type);
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if (validResponse && module.headers.get('Content-Type') !== 'application/wasm') {
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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);
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} else { throw e; }
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}
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}
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const bytes = await module.arrayBuffer();
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return await WebAssembly.instantiate(bytes, imports);
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} else {
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const instance = await WebAssembly.instantiate(module, imports);
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if (instance instanceof WebAssembly.Instance) {
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return { instance, module };
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} else {
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return instance;
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}
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}
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function expectedResponseType(type) {
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switch (type) {
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case 'basic': case 'cors': case 'default': return true;
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}
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return false;
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}
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}
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function initSync(module) {
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if (wasm !== undefined) return wasm;
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if (module !== undefined) {
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if (Object.getPrototypeOf(module) === Object.prototype) {
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({module} = module)
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} else {
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console.warn('using deprecated parameters for `initSync()`; pass a single object instead')
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}
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}
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const imports = __wbg_get_imports();
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if (!(module instanceof WebAssembly.Module)) {
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module = new WebAssembly.Module(module);
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}
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const instance = new WebAssembly.Instance(module, imports);
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return __wbg_finalize_init(instance, module);
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}
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async function __wbg_init(module_or_path) {
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if (wasm !== undefined) return wasm;
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if (module_or_path !== undefined) {
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if (Object.getPrototypeOf(module_or_path) === Object.prototype) {
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({module_or_path} = module_or_path)
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} else {
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console.warn('using deprecated parameters for the initialization function; pass a single object instead')
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}
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}
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if (module_or_path === undefined) {
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module_or_path = new URL('helwasm_bg.wasm', import.meta.url);
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}
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const imports = __wbg_get_imports();
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if (typeof module_or_path === 'string' || (typeof Request === 'function' && module_or_path instanceof Request) || (typeof URL === 'function' && module_or_path instanceof URL)) {
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module_or_path = fetch(module_or_path);
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}
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const { instance, module } = await __wbg_load(await module_or_path, imports);
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return __wbg_finalize_init(instance, module);
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}
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export { initSync, __wbg_init as default };
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