hijri-datepicker-component
Version:
Forked and enhanced version of datepicker-hijri with additional features. The 'Hijri Datepicker' is a user interface component designed to facilitate the selection and display of Hijri (Islamic) dates in applications. It offers a visual calendar interface
1,224 lines • 59 kB
JavaScript
var __extends = (this && this.__extends) || (function () {
var extendStatics = function (d, b) {
extendStatics = Object.setPrototypeOf ||
({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) ||
function (d, b) { for (var p in b) if (b.hasOwnProperty(p)) d[p] = b[p]; };
return extendStatics(d, b);
};
return function (d, b) {
extendStatics(d, b);
function __() { this.constructor = d; }
d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __());
};
})();
var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) {
function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); }
return new (P || (P = Promise))(function (resolve, reject) {
function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } }
function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } }
function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); }
step((generator = generator.apply(thisArg, _arguments || [])).next());
});
};
var __generator = (this && this.__generator) || function (thisArg, body) {
var _ = { label: 0, sent: function() { if (t[0] & 1) throw t[1]; return t[1]; }, trys: [], ops: [] }, f, y, t, g;
return g = { next: verb(0), "throw": verb(1), "return": verb(2) }, typeof Symbol === "function" && (g[Symbol.iterator] = function() { return this; }), g;
function verb(n) { return function (v) { return step([n, v]); }; }
function step(op) {
if (f) throw new TypeError("Generator is already executing.");
while (_) try {
if (f = 1, y && (t = op[0] & 2 ? y["return"] : op[0] ? y["throw"] || ((t = y["return"]) && t.call(y), 0) : y.next) && !(t = t.call(y, op[1])).done) return t;
if (y = 0, t) op = [op[0] & 2, t.value];
switch (op[0]) {
case 0: case 1: t = op; break;
case 4: _.label++; return { value: op[1], done: false };
case 5: _.label++; y = op[1]; op = [0]; continue;
case 7: op = _.ops.pop(); _.trys.pop(); continue;
default:
if (!(t = _.trys, t = t.length > 0 && t[t.length - 1]) && (op[0] === 6 || op[0] === 2)) { _ = 0; continue; }
if (op[0] === 3 && (!t || (op[1] > t[0] && op[1] < t[3]))) { _.label = op[1]; break; }
if (op[0] === 6 && _.label < t[1]) { _.label = t[1]; t = op; break; }
if (t && _.label < t[2]) { _.label = t[2]; _.ops.push(op); break; }
if (t[2]) _.ops.pop();
_.trys.pop(); continue;
}
op = body.call(thisArg, _);
} catch (e) { op = [6, e]; y = 0; } finally { f = t = 0; }
if (op[0] & 5) throw op[1]; return { value: op[0] ? op[1] : void 0, done: true };
}
};
var __spreadArrays = (this && this.__spreadArrays) || function () {
for (var s = 0, i = 0, il = arguments.length; i < il; i++) s += arguments[i].length;
for (var r = Array(s), k = 0, i = 0; i < il; i++)
for (var a = arguments[i], j = 0, jl = a.length; j < jl; j++, k++)
r[k] = a[j];
return r;
};
var NAMESPACE = 'datepicker-hijri';
var queueCongestion = 0;
var queuePending = false;
var scopeId;
var hostTagName;
var isSvgMode = false;
var win = window;
var doc = document;
var plt = {
$flags$: 0,
$resourcesUrl$: '',
jmp: function (h) { return h(); },
raf: function (h) { return requestAnimationFrame(h); },
ael: function (el, eventName, listener, opts) { return el.addEventListener(eventName, listener, opts); },
rel: function (el, eventName, listener, opts) { return el.removeEventListener(eventName, listener, opts); },
};
var supportsShadowDom = /*@__PURE__*/ (function () { return !!doc.documentElement.attachShadow; })();
var supportsListenerOptions = /*@__PURE__*/ (function () {
var supportsListenerOptions = false;
try {
doc.addEventListener('e', null, Object.defineProperty({}, 'passive', {
get: function () { supportsListenerOptions = true; }
}));
}
catch (e) { }
return supportsListenerOptions;
})();
var supportsConstructibleStylesheets = /*@__PURE__*/ (function () {
try {
new CSSStyleSheet();
return true;
}
catch (e) { }
return false;
})();
var hostRefs = new WeakMap();
var getHostRef = function (ref) { return hostRefs.get(ref); };
var registerInstance = function (lazyInstance, hostRef) { return hostRefs.set(hostRef.$lazyInstance$ = lazyInstance, hostRef); };
var registerHost = function (elm) {
var hostRef = {
$flags$: 0,
$hostElement$: elm,
$instanceValues$: new Map()
};
{
hostRef.$onReadyPromise$ = new Promise(function (r) { return hostRef.$onReadyResolve$ = r; });
elm['s-p'] = [];
elm['s-rc'] = [];
}
return hostRefs.set(elm, hostRef);
};
var isMemberInElement = function (elm, memberName) { return memberName in elm; };
var consoleError = function (e) { return console.error(e); };
var moduleCache = /*@__PURE__*/ new Map();
var loadModule = function (cmpMeta, hostRef, hmrVersionId) {
// loadModuleImport
var exportName = cmpMeta.$tagName$.replace(/-/g, '_');
var bundleId = (cmpMeta.$lazyBundleIds$);
var module = moduleCache.get(bundleId);
if (module) {
return module[exportName];
}
return import(
/* webpackInclude: /\.entry\.js$/ */
/* webpackExclude: /\.system\.entry\.js$/ */
/* webpackMode: "lazy" */
"./" + bundleId + ".entry.js" + '').then(function (importedModule) {
{
moduleCache.set(bundleId, importedModule);
}
return importedModule[exportName];
}, consoleError);
};
var styles = new Map();
var queueDomReads = [];
var queueDomWrites = [];
var queueDomWritesLow = [];
var queueTask = function (queue, write) { return function (cb) {
queue.push(cb);
if (!queuePending) {
queuePending = true;
if (write && plt.$flags$ & 4 /* queueSync */) {
nextTick(flush);
}
else {
plt.raf(flush);
}
}
}; };
var consume = function (queue) {
for (var i = 0; i < queue.length; i++) {
try {
queue[i](performance.now());
}
catch (e) {
consoleError(e);
}
}
queue.length = 0;
};
var consumeTimeout = function (queue, timeout) {
var i = 0;
var ts = 0;
while (i < queue.length && (ts = performance.now()) < timeout) {
try {
queue[i++](ts);
}
catch (e) {
consoleError(e);
}
}
if (i === queue.length) {
queue.length = 0;
}
else if (i !== 0) {
queue.splice(0, i);
}
};
var flush = function () {
queueCongestion++;
// always force a bunch of medium callbacks to run, but still have
// a throttle on how many can run in a certain time
// DOM READS!!!
consume(queueDomReads);
var timeout = (plt.$flags$ & 6 /* queueMask */) === 2 /* appLoaded */
? performance.now() + (10 * Math.ceil(queueCongestion * (1.0 / 22.0)))
: Infinity;
// DOM WRITES!!!
consumeTimeout(queueDomWrites, timeout);
consumeTimeout(queueDomWritesLow, timeout);
if (queueDomWrites.length > 0) {
queueDomWritesLow.push.apply(queueDomWritesLow, queueDomWrites);
queueDomWrites.length = 0;
}
if (queuePending = ((queueDomReads.length + queueDomWrites.length + queueDomWritesLow.length) > 0)) {
// still more to do yet, but we've run out of time
// let's let this thing cool off and try again in the next tick
plt.raf(flush);
}
else {
queueCongestion = 0;
}
};
var nextTick = /*@__PURE__*/ function (cb) { return Promise.resolve().then(cb); };
var writeTask = /*@__PURE__*/ queueTask(queueDomWrites, true);
/**
* Default style mode id
*/
/**
* Reusable empty obj/array
* Don't add values to these!!
*/
var EMPTY_OBJ = {};
var isDef = function (v) { return v != null; };
var isComplexType = function (o) {
// https://jsperf.com/typeof-fn-object/5
o = typeof o;
return o === 'object' || o === 'function';
};
var getDynamicImportFunction = function (namespace) {
return "__sc_import_" + namespace.replace(/\s|-/g, '_');
};
var createTime = function (fnName, tagName) {
if (tagName === void 0) { tagName = ''; }
{
return function () { return; };
}
};
var uniqueTime = function (key, measureText) {
{
return function () { return; };
}
};
var patchEsm = function () {
// @ts-ignore
if (!(win.CSS && win.CSS.supports && win.CSS.supports('color', 'var(--c)'))) {
// @ts-ignore
return import('./css-shim-978387b1-1e75855f.js').then(function () {
plt.$cssShim$ = win.__stencil_cssshim;
if (plt.$cssShim$) {
return plt.$cssShim$.initShim();
}
});
}
return Promise.resolve();
};
var patchBrowser = function () { return __awaiter(void 0, void 0, void 0, function () {
var importMeta, regex, scriptElm, opts, resourcesUrl;
return __generator(this, function (_a) {
switch (_a.label) {
case 0:
{
plt.$cssShim$ = win.__stencil_cssshim;
}
importMeta = "";
regex = new RegExp("/" + NAMESPACE + "(\\.esm)?\\.js($|\\?|#)");
scriptElm = Array.from(doc.querySelectorAll('script')).find(function (s) { return (regex.test(s.src) ||
s.getAttribute('data-stencil-namespace') === NAMESPACE); });
opts = scriptElm['data-opts'];
if (!(importMeta !== '')) return [3 /*break*/, 1];
return [2 /*return*/, Object.assign(Object.assign({}, opts), { resourcesUrl: new URL('.', importMeta).href })];
case 1:
resourcesUrl = new URL('.', new URL(scriptElm.getAttribute('data-resources-url') || scriptElm.src, win.location.href));
patchDynamicImport(resourcesUrl.href);
if (!!window.customElements) return [3 /*break*/, 3];
// @ts-ignore
return [4 /*yield*/, import('./dom-96781eef-a2fb04dd.js')];
case 2:
// @ts-ignore
_a.sent();
_a.label = 3;
case 3: return [2 /*return*/, Object.assign(Object.assign({}, opts), { resourcesUrl: resourcesUrl.href })];
}
});
}); };
var patchDynamicImport = function (base) {
var importFunctionName = getDynamicImportFunction(NAMESPACE);
try {
// There is a caching issue in V8, that breaks using import() in Function
// By generating a random string, we can workaround it
// Check https://bugs.chromium.org/p/v8/issues/detail?id=9558 for more info
win[importFunctionName] = new Function('w', "return import(w);//" + Math.random());
}
catch (e) {
var moduleMap_1 = new Map();
win[importFunctionName] = function (src) {
var url = new URL(src, base).href;
var mod = moduleMap_1.get(url);
if (!mod) {
var script_1 = doc.createElement('script');
script_1.type = 'module';
script_1.src = URL.createObjectURL(new Blob(["import * as m from '" + url + "'; window." + importFunctionName + ".m = m;"], { type: 'application/javascript' }));
mod = new Promise(function (resolve) {
script_1.onload = function () {
resolve(win[importFunctionName].m);
script_1.remove();
};
});
moduleMap_1.set(url, mod);
doc.head.appendChild(script_1);
}
return mod;
};
}
};
var parsePropertyValue = function (propValue, propType) {
// ensure this value is of the correct prop type
if (propValue != null && !isComplexType(propValue)) {
if (propType & 4 /* Boolean */) {
// per the HTML spec, any string value means it is a boolean true value
// but we'll cheat here and say that the string "false" is the boolean false
return (propValue === 'false' ? false : propValue === '' || !!propValue);
}
if (propType & 1 /* String */) {
// could have been passed as a number or boolean
// but we still want it as a string
return String(propValue);
}
// redundant return here for better minification
return propValue;
}
// not sure exactly what type we want
// so no need to change to a different type
return propValue;
};
var HYDRATED_CLASS = 'hydrated';
var rootAppliedStyles = new WeakMap();
var registerStyle = function (scopeId, cssText, allowCS) {
var style = styles.get(scopeId);
if (supportsConstructibleStylesheets && allowCS) {
style = (style || new CSSStyleSheet());
style.replace(cssText);
}
else {
style = cssText;
}
styles.set(scopeId, style);
};
var addStyle = function (styleContainerNode, cmpMeta, mode, hostElm) {
var scopeId = getScopeId(cmpMeta.$tagName$);
var style = styles.get(scopeId);
// if an element is NOT connected then getRootNode() will return the wrong root node
// so the fallback is to always use the document for the root node in those cases
styleContainerNode = (styleContainerNode.nodeType === 11 /* DocumentFragment */ ? styleContainerNode : doc);
if (style) {
if (typeof style === 'string') {
styleContainerNode = styleContainerNode.head || styleContainerNode;
var appliedStyles = rootAppliedStyles.get(styleContainerNode);
var styleElm = void 0;
if (!appliedStyles) {
rootAppliedStyles.set(styleContainerNode, appliedStyles = new Set());
}
if (!appliedStyles.has(scopeId)) {
{
if (plt.$cssShim$) {
styleElm = plt.$cssShim$.createHostStyle(hostElm, scopeId, style, !!(cmpMeta.$flags$ & 10 /* needsScopedEncapsulation */));
var newScopeId = styleElm['s-sc'];
if (newScopeId) {
scopeId = newScopeId;
// we don't want to add this styleID to the appliedStyles Set
// since the cssVarShim might need to apply several different
// stylesheets for the same component
appliedStyles = null;
}
}
else {
styleElm = doc.createElement('style');
styleElm.innerHTML = style;
}
styleContainerNode.insertBefore(styleElm, styleContainerNode.querySelector('link'));
}
if (appliedStyles) {
appliedStyles.add(scopeId);
}
}
}
else if (!styleContainerNode.adoptedStyleSheets.includes(style)) {
styleContainerNode.adoptedStyleSheets = __spreadArrays(styleContainerNode.adoptedStyleSheets, [
style
]);
}
}
return scopeId;
};
var attachStyles = function (elm, cmpMeta, mode) {
var endAttachStyles = createTime('attachStyles', cmpMeta.$tagName$);
var scopeId = addStyle((supportsShadowDom && elm.shadowRoot)
? elm.shadowRoot
: elm.getRootNode(), cmpMeta, mode, elm);
if (cmpMeta.$flags$ & 10 /* needsScopedEncapsulation */) {
// only required when we're NOT using native shadow dom (slot)
// or this browser doesn't support native shadow dom
// and this host element was NOT created with SSR
// let's pick out the inner content for slot projection
// create a node to represent where the original
// content was first placed, which is useful later on
// DOM WRITE!!
elm['s-sc'] = scopeId;
elm.classList.add(scopeId + '-h');
}
endAttachStyles();
};
var getScopeId = function (tagName, mode) { return 'sc-' + (tagName); };
/**
* Production h() function based on Preact by
* Jason Miller (@developit)
* Licensed under the MIT License
* https://github.com/developit/preact/blob/master/LICENSE
*
* Modified for Stencil's compiler and vdom
*/
// const stack: any[] = [];
// export function h(nodeName: string | d.FunctionalComponent, vnodeData: d.PropsType, child?: d.ChildType): d.VNode;
// export function h(nodeName: string | d.FunctionalComponent, vnodeData: d.PropsType, ...children: d.ChildType[]): d.VNode;
var h = function (nodeName, vnodeData) {
var children = [];
for (var _i = 2; _i < arguments.length; _i++) {
children[_i - 2] = arguments[_i];
}
var child = null;
var key = null;
var simple = false;
var lastSimple = false;
var vNodeChildren = [];
var walk = function (c) {
for (var i = 0; i < c.length; i++) {
child = c[i];
if (Array.isArray(child)) {
walk(child);
}
else if (child != null && typeof child !== 'boolean') {
if (simple = typeof nodeName !== 'function' && !isComplexType(child)) {
child = String(child);
}
if (simple && lastSimple) {
// If the previous child was simple (string), we merge both
vNodeChildren[vNodeChildren.length - 1].$text$ += child;
}
else {
// Append a new vNode, if it's text, we create a text vNode
vNodeChildren.push(simple ? newVNode(null, child) : child);
}
lastSimple = simple;
}
}
};
walk(children);
if (vnodeData) {
// normalize class / classname attributes
if (vnodeData.key) {
key = vnodeData.key;
}
{
var classData_1 = vnodeData.className || vnodeData.class;
if (classData_1) {
vnodeData.class = typeof classData_1 !== 'object'
? classData_1
: Object.keys(classData_1)
.filter(function (k) { return classData_1[k]; })
.join(' ');
}
}
}
var vnode = newVNode(nodeName, null);
vnode.$attrs$ = vnodeData;
if (vNodeChildren.length > 0) {
vnode.$children$ = vNodeChildren;
}
{
vnode.$key$ = key;
}
return vnode;
};
var newVNode = function (tag, text) {
var vnode = {
$flags$: 0,
$tag$: tag,
$text$: text,
$elm$: null,
$children$: null
};
{
vnode.$attrs$ = null;
}
{
vnode.$key$ = null;
}
return vnode;
};
var Host = {};
var isHost = function (node) {
return node && node.$tag$ === Host;
};
/**
* Production setAccessor() function based on Preact by
* Jason Miller (@developit)
* Licensed under the MIT License
* https://github.com/developit/preact/blob/master/LICENSE
*
* Modified for Stencil's compiler and vdom
*/
var setAccessor = function (elm, memberName, oldValue, newValue, isSvg, flags) {
if (oldValue === newValue) {
return;
}
var isProp = isMemberInElement(elm, memberName);
var ln = memberName.toLowerCase();
if (memberName === 'class') {
var classList = elm.classList;
var oldClasses_1 = parseClassList(oldValue);
var newClasses_1 = parseClassList(newValue);
classList.remove.apply(classList, oldClasses_1.filter(function (c) { return c && !newClasses_1.includes(c); }));
classList.add.apply(classList, newClasses_1.filter(function (c) { return c && !oldClasses_1.includes(c); }));
}
else if (memberName === 'style') {
// update style attribute, css properties and values
{
for (var prop in oldValue) {
if (!newValue || newValue[prop] == null) {
if (prop.includes('-')) {
elm.style.removeProperty(prop);
}
else {
elm.style[prop] = '';
}
}
}
}
for (var prop in newValue) {
if (!oldValue || newValue[prop] !== oldValue[prop]) {
if (prop.includes('-')) {
elm.style.setProperty(prop, newValue[prop]);
}
else {
elm.style[prop] = newValue[prop];
}
}
}
}
else if (memberName === 'key')
;
else if (!isProp && memberName[0] === 'o' && memberName[1] === 'n') {
// Event Handlers
// so if the member name starts with "on" and the 3rd characters is
// a capital letter, and it's not already a member on the element,
// then we're assuming it's an event listener
if (memberName[2] === '-') {
// on- prefixed events
// allows to be explicit about the dom event to listen without any magic
// under the hood:
// <my-cmp on-click> // listens for "click"
// <my-cmp on-Click> // listens for "Click"
// <my-cmp on-ionChange> // listens for "ionChange"
// <my-cmp on-EVENTS> // listens for "EVENTS"
memberName = memberName.slice(3);
}
else if (isMemberInElement(win, ln)) {
// standard event
// the JSX attribute could have been "onMouseOver" and the
// member name "onmouseover" is on the window's prototype
// so let's add the listener "mouseover", which is all lowercased
memberName = ln.slice(2);
}
else {
// custom event
// the JSX attribute could have been "onMyCustomEvent"
// so let's trim off the "on" prefix and lowercase the first character
// and add the listener "myCustomEvent"
// except for the first character, we keep the event name case
memberName = ln[2] + memberName.slice(3);
}
if (oldValue) {
plt.rel(elm, memberName, oldValue, false);
}
if (newValue) {
plt.ael(elm, memberName, newValue, false);
}
}
else {
// Set property if it exists and it's not a SVG
var isComplex = isComplexType(newValue);
if ((isProp || (isComplex && newValue !== null)) && !isSvg) {
try {
if (!elm.tagName.includes('-')) {
var n = newValue == null ? '' : newValue;
// Workaround for Safari, moving the <input> caret when re-assigning the same valued
if (memberName === 'list') {
isProp = false;
// tslint:disable-next-line: triple-equals
}
else if (oldValue == null || elm[memberName] != n) {
elm[memberName] = n;
}
}
else {
elm[memberName] = newValue;
}
}
catch (e) { }
}
if (newValue == null || newValue === false) {
{
elm.removeAttribute(memberName);
}
}
else if ((!isProp || (flags & 4 /* isHost */) || isSvg) && !isComplex) {
newValue = newValue === true ? '' : newValue;
{
elm.setAttribute(memberName, newValue);
}
}
}
};
var parseClassListRegex = /\s/;
var parseClassList = function (value) { return (!value) ? [] : value.split(parseClassListRegex); };
var updateElement = function (oldVnode, newVnode, isSvgMode, memberName) {
// if the element passed in is a shadow root, which is a document fragment
// then we want to be adding attrs/props to the shadow root's "host" element
// if it's not a shadow root, then we add attrs/props to the same element
var elm = (newVnode.$elm$.nodeType === 11 /* DocumentFragment */ && newVnode.$elm$.host) ? newVnode.$elm$.host : newVnode.$elm$;
var oldVnodeAttrs = (oldVnode && oldVnode.$attrs$) || EMPTY_OBJ;
var newVnodeAttrs = newVnode.$attrs$ || EMPTY_OBJ;
{
// remove attributes no longer present on the vnode by setting them to undefined
for (memberName in oldVnodeAttrs) {
if (!(memberName in newVnodeAttrs)) {
setAccessor(elm, memberName, oldVnodeAttrs[memberName], undefined, isSvgMode, newVnode.$flags$);
}
}
}
// add new & update changed attributes
for (memberName in newVnodeAttrs) {
setAccessor(elm, memberName, oldVnodeAttrs[memberName], newVnodeAttrs[memberName], isSvgMode, newVnode.$flags$);
}
};
var createElm = function (oldParentVNode, newParentVNode, childIndex, parentElm) {
// tslint:disable-next-line: prefer-const
var newVNode = newParentVNode.$children$[childIndex];
var i = 0;
var elm;
var childNode;
if (newVNode.$text$ !== null) {
// create text node
elm = newVNode.$elm$ = doc.createTextNode(newVNode.$text$);
}
else {
// create element
elm = newVNode.$elm$ = (doc.createElement(newVNode.$tag$));
// add css classes, attrs, props, listeners, etc.
{
updateElement(null, newVNode, isSvgMode);
}
if (isDef(scopeId) && elm['s-si'] !== scopeId) {
// if there is a scopeId and this is the initial render
// then let's add the scopeId as a css class
elm.classList.add((elm['s-si'] = scopeId));
}
if (newVNode.$children$) {
for (i = 0; i < newVNode.$children$.length; ++i) {
// create the node
childNode = createElm(oldParentVNode, newVNode, i);
// return node could have been null
if (childNode) {
// append our new node
elm.appendChild(childNode);
}
}
}
}
return elm;
};
var addVnodes = function (parentElm, before, parentVNode, vnodes, startIdx, endIdx) {
var containerElm = (parentElm);
var childNode;
if (containerElm.shadowRoot && containerElm.tagName === hostTagName) {
containerElm = containerElm.shadowRoot;
}
for (; startIdx <= endIdx; ++startIdx) {
if (vnodes[startIdx]) {
childNode = createElm(null, parentVNode, startIdx);
if (childNode) {
vnodes[startIdx].$elm$ = childNode;
containerElm.insertBefore(childNode, before);
}
}
}
};
var removeVnodes = function (vnodes, startIdx, endIdx, vnode, elm) {
for (; startIdx <= endIdx; ++startIdx) {
if (vnode = vnodes[startIdx]) {
elm = vnode.$elm$;
// remove the vnode's element from the dom
elm.remove();
}
}
};
var updateChildren = function (parentElm, oldCh, newVNode, newCh) {
var oldStartIdx = 0;
var newStartIdx = 0;
var idxInOld = 0;
var i = 0;
var oldEndIdx = oldCh.length - 1;
var oldStartVnode = oldCh[0];
var oldEndVnode = oldCh[oldEndIdx];
var newEndIdx = newCh.length - 1;
var newStartVnode = newCh[0];
var newEndVnode = newCh[newEndIdx];
var node;
var elmToMove;
while (oldStartIdx <= oldEndIdx && newStartIdx <= newEndIdx) {
if (oldStartVnode == null) {
// Vnode might have been moved left
oldStartVnode = oldCh[++oldStartIdx];
}
else if (oldEndVnode == null) {
oldEndVnode = oldCh[--oldEndIdx];
}
else if (newStartVnode == null) {
newStartVnode = newCh[++newStartIdx];
}
else if (newEndVnode == null) {
newEndVnode = newCh[--newEndIdx];
}
else if (isSameVnode(oldStartVnode, newStartVnode)) {
patch(oldStartVnode, newStartVnode);
oldStartVnode = oldCh[++oldStartIdx];
newStartVnode = newCh[++newStartIdx];
}
else if (isSameVnode(oldEndVnode, newEndVnode)) {
patch(oldEndVnode, newEndVnode);
oldEndVnode = oldCh[--oldEndIdx];
newEndVnode = newCh[--newEndIdx];
}
else if (isSameVnode(oldStartVnode, newEndVnode)) {
patch(oldStartVnode, newEndVnode);
parentElm.insertBefore(oldStartVnode.$elm$, oldEndVnode.$elm$.nextSibling);
oldStartVnode = oldCh[++oldStartIdx];
newEndVnode = newCh[--newEndIdx];
}
else if (isSameVnode(oldEndVnode, newStartVnode)) {
patch(oldEndVnode, newStartVnode);
parentElm.insertBefore(oldEndVnode.$elm$, oldStartVnode.$elm$);
oldEndVnode = oldCh[--oldEndIdx];
newStartVnode = newCh[++newStartIdx];
}
else {
// createKeyToOldIdx
idxInOld = -1;
{
for (i = oldStartIdx; i <= oldEndIdx; ++i) {
if (oldCh[i] && oldCh[i].$key$ !== null && oldCh[i].$key$ === newStartVnode.$key$) {
idxInOld = i;
break;
}
}
}
if (idxInOld >= 0) {
elmToMove = oldCh[idxInOld];
if (elmToMove.$tag$ !== newStartVnode.$tag$) {
node = createElm(oldCh && oldCh[newStartIdx], newVNode, idxInOld);
}
else {
patch(elmToMove, newStartVnode);
oldCh[idxInOld] = undefined;
node = elmToMove.$elm$;
}
newStartVnode = newCh[++newStartIdx];
}
else {
// new element
node = createElm(oldCh && oldCh[newStartIdx], newVNode, newStartIdx);
newStartVnode = newCh[++newStartIdx];
}
if (node) {
{
oldStartVnode.$elm$.parentNode.insertBefore(node, oldStartVnode.$elm$);
}
}
}
}
if (oldStartIdx > oldEndIdx) {
addVnodes(parentElm, (newCh[newEndIdx + 1] == null ? null : newCh[newEndIdx + 1].$elm$), newVNode, newCh, newStartIdx, newEndIdx);
}
else if (newStartIdx > newEndIdx) {
removeVnodes(oldCh, oldStartIdx, oldEndIdx);
}
};
var isSameVnode = function (vnode1, vnode2) {
// compare if two vnode to see if they're "technically" the same
// need to have the same element tag, and same key to be the same
if (vnode1.$tag$ === vnode2.$tag$) {
{
return vnode1.$key$ === vnode2.$key$;
}
}
return false;
};
var patch = function (oldVNode, newVNode) {
var elm = newVNode.$elm$ = oldVNode.$elm$;
var oldChildren = oldVNode.$children$;
var newChildren = newVNode.$children$;
if (newVNode.$text$ === null) {
// element node
{
{
// either this is the first render of an element OR it's an update
// AND we already know it's possible it could have changed
// this updates the element's css classes, attrs, props, listeners, etc.
updateElement(oldVNode, newVNode, isSvgMode);
}
}
if (oldChildren !== null && newChildren !== null) {
// looks like there's child vnodes for both the old and new vnodes
updateChildren(elm, oldChildren, newVNode, newChildren);
}
else if (newChildren !== null) {
// no old child vnodes, but there are new child vnodes to add
if (oldVNode.$text$ !== null) {
// the old vnode was text, so be sure to clear it out
elm.textContent = '';
}
// add the new vnode children
addVnodes(elm, null, newVNode, newChildren, 0, newChildren.length - 1);
}
else if (oldChildren !== null) {
// no new child vnodes, but there are old child vnodes to remove
removeVnodes(oldChildren, 0, oldChildren.length - 1);
}
}
else if (oldVNode.$text$ !== newVNode.$text$) {
// update the text content for the text only vnode
// and also only if the text is different than before
elm.data = newVNode.$text$;
}
};
var renderVdom = function (hostElm, hostRef, cmpMeta, renderFnResults) {
hostTagName = hostElm.tagName;
var oldVNode = hostRef.$vnode$ || newVNode(null, null);
var rootVnode = isHost(renderFnResults)
? renderFnResults
: h(null, null, renderFnResults);
if (cmpMeta.$attrsToReflect$) {
rootVnode.$attrs$ = rootVnode.$attrs$ || {};
cmpMeta.$attrsToReflect$.forEach(function (_a) {
var propName = _a[0], attribute = _a[1];
return rootVnode.$attrs$[attribute] = hostElm[propName];
});
}
rootVnode.$tag$ = null;
rootVnode.$flags$ |= 4 /* isHost */;
hostRef.$vnode$ = rootVnode;
rootVnode.$elm$ = oldVNode.$elm$ = (hostElm.shadowRoot || hostElm);
{
scopeId = hostElm['s-sc'];
}
// synchronous patch
patch(oldVNode, rootVnode);
};
var attachToAncestor = function (hostRef, ancestorComponent) {
if (ancestorComponent && !hostRef.$onRenderResolve$) {
ancestorComponent['s-p'].push(new Promise(function (r) { return hostRef.$onRenderResolve$ = r; }));
}
};
var scheduleUpdate = function (elm, hostRef, cmpMeta, isInitialLoad) {
{
hostRef.$flags$ |= 16 /* isQueuedForUpdate */;
}
if (hostRef.$flags$ & 4 /* isWaitingForChildren */) {
hostRef.$flags$ |= 512 /* needsRerender */;
return;
}
var endSchedule = createTime('scheduleUpdate', cmpMeta.$tagName$);
var ancestorComponent = hostRef.$ancestorComponent$;
var instance = hostRef.$lazyInstance$;
var update = function () { return updateComponent(elm, hostRef, cmpMeta, instance, isInitialLoad); };
attachToAncestor(hostRef, ancestorComponent);
var promise;
if (isInitialLoad) {
{
hostRef.$flags$ |= 256 /* isListenReady */;
if (hostRef.$queuedListeners$) {
hostRef.$queuedListeners$.forEach(function (_a) {
var methodName = _a[0], event = _a[1];
return safeCall(instance, methodName, event);
});
hostRef.$queuedListeners$ = null;
}
}
{
promise = safeCall(instance, 'componentWillLoad');
}
}
endSchedule();
// there is no ancestorc omponent or the ancestor component
// has already fired off its lifecycle update then
// fire off the initial update
return then(promise, function () { return writeTask(update); });
};
var updateComponent = function (elm, hostRef, cmpMeta, instance, isInitialLoad) {
// updateComponent
var endUpdate = createTime('update', cmpMeta.$tagName$);
var rc = elm['s-rc'];
if (isInitialLoad) {
// DOM WRITE!
attachStyles(elm, cmpMeta, hostRef.$modeName$);
}
var endRender = createTime('render', cmpMeta.$tagName$);
{
{
try {
// looks like we've got child nodes to render into this host element
// or we need to update the css class/attrs on the host element
// DOM WRITE!
renderVdom(elm, hostRef, cmpMeta, instance.render());
}
catch (e) {
consoleError(e);
}
}
}
if (plt.$cssShim$) {
plt.$cssShim$.updateHost(elm);
}
{
hostRef.$flags$ &= ~16 /* isQueuedForUpdate */;
}
{
hostRef.$flags$ |= 2 /* hasRendered */;
}
if (rc) {
// ok, so turns out there are some child host elements
// waiting on this parent element to load
// let's fire off all update callbacks waiting
rc.forEach(function (cb) { return cb(); });
elm['s-rc'] = undefined;
}
endRender();
endUpdate();
{
var childrenPromises = elm['s-p'];
var postUpdate = function () { return postUpdateComponent(elm, hostRef, cmpMeta); };
if (childrenPromises.length === 0) {
postUpdate();
}
else {
Promise.all(childrenPromises).then(postUpdate);
hostRef.$flags$ |= 4 /* isWaitingForChildren */;
childrenPromises.length = 0;
}
}
};
var postUpdateComponent = function (elm, hostRef, cmpMeta) {
var endPostUpdate = createTime('postUpdate', cmpMeta.$tagName$);
var instance = hostRef.$lazyInstance$;
var ancestorComponent = hostRef.$ancestorComponent$;
if (!(hostRef.$flags$ & 64 /* hasLoadedComponent */)) {
hostRef.$flags$ |= 64 /* hasLoadedComponent */;
{
// DOM WRITE!
// add the css class that this element has officially hydrated
elm.classList.add(HYDRATED_CLASS);
}
{
safeCall(instance, 'componentDidLoad');
}
endPostUpdate();
{
hostRef.$onReadyResolve$(elm);
if (!ancestorComponent) {
appDidLoad();
}
}
}
else {
endPostUpdate();
}
// load events fire from bottom to top
// the deepest elements load first then bubbles up
{
if (hostRef.$onRenderResolve$) {
hostRef.$onRenderResolve$();
hostRef.$onRenderResolve$ = undefined;
}
if (hostRef.$flags$ & 512 /* needsRerender */) {
nextTick(function () { return scheduleUpdate(elm, hostRef, cmpMeta, false); });
}
hostRef.$flags$ &= ~(4 /* isWaitingForChildren */ | 512 /* needsRerender */);
}
// ( •_•)
// ( •_•)>⌐■-■
// (⌐■_■)
};
var forceUpdate = function (elm, cmpMeta) {
{
var hostRef = getHostRef(elm);
if ((hostRef.$flags$ & (2 /* hasRendered */ | 16 /* isQueuedForUpdate */)) === 2 /* hasRendered */) {
scheduleUpdate(elm, hostRef, cmpMeta, false);
}
}
};
var appDidLoad = function (who) {
// on appload
// we have finish the first big initial render
{
doc.documentElement.classList.add(HYDRATED_CLASS);
}
{
plt.$flags$ |= 2 /* appLoaded */;
}
};
var safeCall = function (instance, method, arg) {
if (instance && instance[method]) {
try {
return instance[method](arg);
}
catch (e) {
consoleError(e);
}
}
return undefined;
};
var then = function (promise, thenFn) {
return promise && promise.then ? promise.then(thenFn) : thenFn();
};
var getValue = function (ref, propName) { return getHostRef(ref).$instanceValues$.get(propName); };
var setValue = function (ref, propName, newVal, cmpMeta) {
// check our new property value against our internal value
var hostRef = getHostRef(ref);
var elm = hostRef.$hostElement$;
var oldVal = hostRef.$instanceValues$.get(propName);
var flags = hostRef.$flags$;
var instance = hostRef.$lazyInstance$;
newVal = parsePropertyValue(newVal, cmpMeta.$members$[propName][0]);
if (newVal !== oldVal && (!(flags & 8 /* isConstructingInstance */) || oldVal === undefined)) {
// gadzooks! the property's value has changed!!
// set our new value!
hostRef.$instanceValues$.set(propName, newVal);
if (instance) {
// get an array of method names of watch functions to call
if (cmpMeta.$watchers$ && flags & 128 /* isWatchReady */) {
var watchMethods = cmpMeta.$watchers$[propName];
if (watchMethods) {
// this instance is watching for when this property changed
watchMethods.forEach(function (watchMethodName) {
try {
// fire off each of the watch methods that are watching this property
instance[watchMethodName](newVal, oldVal, propName);
}
catch (e) {
consoleError(e);
}
});
}
}
if ((flags & (2 /* hasRendered */ | 16 /* isQueuedForUpdate */)) === 2 /* hasRendered */) {
// looks like this value actually changed, so we've got work to do!
// but only if we've already rendered, otherwise just chill out
// queue that we need to do an update, but don't worry about queuing
// up millions cuz this function ensures it only runs once
scheduleUpdate(elm, hostRef, cmpMeta, false);
}
}
}
};
var proxyComponent = function (Cstr, cmpMeta, flags) {
if (cmpMeta.$members$) {
if (Cstr.watchers) {
cmpMeta.$watchers$ = Cstr.watchers;
}
// It's better to have a const than two Object.entries()
var members = Object.entries(cmpMeta.$members$);
var prototype_1 = Cstr.prototype;
members.forEach(function (_a) {
var memberName = _a[0], memberFlags = _a[1][0];
if (((memberFlags & 31 /* Prop */) ||
((flags & 2 /* proxyState */) &&
(memberFlags & 32 /* State */)))) {
// proxyComponent - prop
Object.defineProperty(prototype_1, memberName, {
get: function () {
// proxyComponent, get value
return getValue(this, memberName);
},
set: function (newValue) {
// proxyComponent, set value
setValue(this, memberName, newValue, cmpMeta);
},
configurable: true,
enumerable: true
});
}
});
if ((flags & 1 /* isElementConstructor */)) {
var attrNameToPropName_1 = new Map();
prototype_1.attributeChangedCallback = function (attrName, _oldValue, newValue) {
var _this = this;
plt.jmp(function () {
var propName = attrNameToPropName_1.get(attrName);
_this[propName] = newValue === null && typeof _this[propName] === 'boolean'
? false
: newValue;
});
};
// create an array of attributes to observe
// and also create a map of html attribute name to js property name
Cstr.observedAttributes = members
.filter(function (_a) {
var _ = _a[0], m = _a[1];
return m[0] & 15;
} /* HasAttribute */) // filter to only keep props that should match attributes
.map(function (_a) {
var propName = _a[0], m = _a[1];
var attrName = m[1] || propName;
attrNameToPropName_1.set(attrName, propName);
if (m[0] & 512 /* ReflectAttr */) {
cmpMeta.$attrsToReflect$.push([propName, attrName]);
}
return attrName;
});
}
}
return Cstr;
};
var addEventListeners = function (elm, hostRef, listeners) {
hostRef.$queuedListeners$ = hostRef.$queuedListeners$ || [];
var removeFns = listeners.map(function (_a) {
var flags = _a[0], name = _a[1], method = _a[2];
var target = (getHostListenerTarget(elm, flags));
var handler = hostListenerProxy(hostRef, method);
var opts = hostListenerOpts(flags);
plt.ael(target, name, handler, opts);
return function () { return plt.rel(target, name, handler, opts); };
});
return function () { return removeFns.forEach(function (fn) { return fn(); }); };
};
var hostListenerProxy = function (hostRef, methodName) {
return function (ev) {
{
if (hostRef.$flags$ & 256 /* isListenReady */) {
// instance is ready, let's call it's member method for this event
hostRef.$lazyInstance$[methodName](ev);
}
else {
hostRef.$queuedListeners$.push([methodName, ev]);
}
}
};
};
var getHostListenerTarget = function (elm, flags) {
if (flags & 8 /* TargetWindow */)
return win;
return elm;
};
var hostListenerOpts = function (flags) { return supportsListenerOptions ?
{
'passive': (flags & 1 /* Passive */) !== 0,
'capture': (flags & 2 /* Capture */) !== 0,
}
: (flags & 2 /* Capture */) !== 0; };
var initializeComponent = function (elm, hostRef, cmpMeta, hmrVersionId, Cstr) { return __awaiter(void 0, void 0, void 0, function () {
var endLoad, endNewInstance, scopeId_1, endRegisterStyles, style_1, ancestorComponent, schedule;
return __generator(this, function (_a) {
switch (_a.label) {
case 0:
if (!((hostRef.$flags$ & 32 /* hasInitializedComponent */) === 0)) return [3 /*break*/, 5];
// we haven't initialized this element yet
hostRef.$flags$ |= 32 /* hasInitializedComponent */;
// lazy loaded components
// request the component's implementation to be
// wired up with the host element
Cstr = loadModule(cmpMeta);
if (!Cstr.then) return [3 /*break*/, 2];
endLoad = uniqueTime();
return [4 /*yield*/, Cstr];
case 1:
Cstr = _a.sent();
endLoad();
_a.label = 2;
case 2:
if (!Cstr.isProxied) {
// we'eve never proxied this Constructor before
// let's add the getters/setters to its prototype before
// the first time we create an instance of the implementation
{
cmpMeta.$watchers$ = Cstr.watchers;
}
proxyComponent(Cstr, cmpMeta, 2 /* proxyState */);
Cstr.isProxied = true;
}
endNewInstance = createTime('createInstance', cmpMeta.$tagName$);
// ok, time to construct the instance
// but let's keep track of when we start and stop
// so that the getters/setters don't incorrectly step on data
{
hostRef.$flags$ |= 8 /* isConstructingInstance */;
}
// construct the lazy-loaded component implementation
// passing the hostRef is very important during
// construction in order to directly wire together the
// host element and the lazy-loaded instance
try {
new Cstr(hostRef);
}
catch (e) {
consoleError(e);
}
{
hostRef.$flags$ &= ~8 /* isConstructingInstance */;
}
{
hostRef.$flags$ |= 128 /* isWatchReady */;
}
endNewInstance();
scopeId_1 = getScopeId(cmpMeta.$tagName$);
if (!(!styles.has(scopeId_1) && Cstr.style)) return [3 /*break*/, 5];
endRegisterStyles = createTime('registerStyles', cmpMeta.$tagName$);
style_1 = Cstr.style;
if (!(cmpMeta.$flags$ & 8) /* needsShadowDomShim */) return [3 /*break*/, 4]; /* needsShadowDomShim */
return [4 /*yield*/, import('./shadow-css-4889ae62-23996f3f.js').then(function (m) { return m.scopeCss(style_1, scopeId_1, false); })];
case 3:
style_1 = _a.sent();
_a.label = 4;
case 4:
registerStyle(scopeId_1, style_1, !!(cmpMeta.$flags$ & 1 /* shadowDomEncapsulation */));
endRegisterStyles();
_a.label = 5;
case 5:
ancestorComponent