// Knockout JavaScript library v2.0.0 // (c) Steven Sanderson - http://knockoutjs.com/ // License: MIT (http://www.opensource.org/licenses/mit-license.php) (function(window,undefined){ var ko = window["ko"] = {}; // Google Closure Compiler helpers (used only to make the minified file smaller) ko.exportSymbol = function(publicPath, object) { var tokens = publicPath.split("."); var target = window; for (var i = 0; i < tokens.length - 1; i++) target = target[tokens[i]]; target[tokens[tokens.length - 1]] = object; }; ko.exportProperty = function(owner, publicName, object) { owner[publicName] = object; }; ko.utils = new (function () { var stringTrimRegex = /^(\s|\u00A0)+|(\s|\u00A0)+$/g; // Represent the known event types in a compact way, then at runtime transform it into a hash with event name as key (for fast lookup) var knownEvents = {}, knownEventTypesByEventName = {}; var keyEventTypeName = /Firefox\/2/i.test(navigator.userAgent) ? 'KeyboardEvent' : 'UIEvents'; knownEvents[keyEventTypeName] = ['keyup', 'keydown', 'keypress']; knownEvents['MouseEvents'] = ['click', 'dblclick', 'mousedown', 'mouseup', 'mousemove', 'mouseover', 'mouseout', 'mouseenter', 'mouseleave']; for (var eventType in knownEvents) { var knownEventsForType = knownEvents[eventType]; if (knownEventsForType.length) { for (var i = 0, j = knownEventsForType.length; i < j; i++) knownEventTypesByEventName[knownEventsForType[i]] = eventType; } } // Detect IE versions for bug workarounds (uses IE conditionals, not UA string, for robustness) var ieVersion = (function() { var version = 3, div = document.createElement('div'), iElems = div.getElementsByTagName('i'); // Keep constructing conditional HTML blocks until we hit one that resolves to an empty fragment while ( div.innerHTML = '', iElems[0] ); return version > 4 ? version : undefined; }()); var isIe6 = ieVersion === 6, isIe7 = ieVersion === 7; function isClickOnCheckableElement(element, eventType) { if ((element.tagName != "INPUT") || !element.type) return false; if (eventType.toLowerCase() != "click") return false; var inputType = element.type.toLowerCase(); return (inputType == "checkbox") || (inputType == "radio"); } return { fieldsIncludedWithJsonPost: ['authenticity_token', /^__RequestVerificationToken(_.*)?$/], arrayForEach: function (array, action) { for (var i = 0, j = array.length; i < j; i++) action(array[i]); }, arrayIndexOf: function (array, item) { if (typeof Array.prototype.indexOf == "function") return Array.prototype.indexOf.call(array, item); for (var i = 0, j = array.length; i < j; i++) if (array[i] === item) return i; return -1; }, arrayFirst: function (array, predicate, predicateOwner) { for (var i = 0, j = array.length; i < j; i++) if (predicate.call(predicateOwner, array[i])) return array[i]; return null; }, arrayRemoveItem: function (array, itemToRemove) { var index = ko.utils.arrayIndexOf(array, itemToRemove); if (index >= 0) array.splice(index, 1); }, arrayGetDistinctValues: function (array) { array = array || []; var result = []; for (var i = 0, j = array.length; i < j; i++) { if (ko.utils.arrayIndexOf(result, array[i]) < 0) result.push(array[i]); } return result; }, arrayMap: function (array, mapping) { array = array || []; var result = []; for (var i = 0, j = array.length; i < j; i++) result.push(mapping(array[i])); return result; }, arrayFilter: function (array, predicate) { array = array || []; var result = []; for (var i = 0, j = array.length; i < j; i++) if (predicate(array[i])) result.push(array[i]); return result; }, arrayPushAll: function (array, valuesToPush) { for (var i = 0, j = valuesToPush.length; i < j; i++) array.push(valuesToPush[i]); return array; }, extend: function (target, source) { for(var prop in source) { if(source.hasOwnProperty(prop)) { target[prop] = source[prop]; } } return target; }, emptyDomNode: function (domNode) { while (domNode.firstChild) { ko.removeNode(domNode.firstChild); } }, setDomNodeChildren: function (domNode, childNodes) { ko.utils.emptyDomNode(domNode); if (childNodes) { ko.utils.arrayForEach(childNodes, function (childNode) { domNode.appendChild(childNode); }); } }, replaceDomNodes: function (nodeToReplaceOrNodeArray, newNodesArray) { var nodesToReplaceArray = nodeToReplaceOrNodeArray.nodeType ? [nodeToReplaceOrNodeArray] : nodeToReplaceOrNodeArray; if (nodesToReplaceArray.length > 0) { var insertionPoint = nodesToReplaceArray[0]; var parent = insertionPoint.parentNode; for (var i = 0, j = newNodesArray.length; i < j; i++) parent.insertBefore(newNodesArray[i], insertionPoint); for (var i = 0, j = nodesToReplaceArray.length; i < j; i++) { ko.removeNode(nodesToReplaceArray[i]); } } }, setOptionNodeSelectionState: function (optionNode, isSelected) { // IE6 sometimes throws "unknown error" if you try to write to .selected directly, whereas Firefox struggles with setAttribute. Pick one based on browser. if (navigator.userAgent.indexOf("MSIE 6") >= 0) optionNode.setAttribute("selected", isSelected); else optionNode.selected = isSelected; }, stringTrim: function (string) { return (string || "").replace(stringTrimRegex, ""); }, stringTokenize: function (string, delimiter) { var result = []; var tokens = (string || "").split(delimiter); for (var i = 0, j = tokens.length; i < j; i++) { var trimmed = ko.utils.stringTrim(tokens[i]); if (trimmed !== "") result.push(trimmed); } return result; }, stringStartsWith: function (string, startsWith) { string = string || ""; if (startsWith.length > string.length) return false; return string.substring(0, startsWith.length) === startsWith; }, evalWithinScope: function (expression /*, scope1, scope2, scope3... */) { // Build the source for a function that evaluates "expression" // For each scope variable, add an extra level of "with" nesting // Example result: with(sc[1]) { with(sc[0]) { return (expression) } } var scopes = Array.prototype.slice.call(arguments, 1); var functionBody = "return (" + expression + ")"; for (var i = 0; i < scopes.length; i++) { if (scopes[i] && typeof scopes[i] == "object") functionBody = "with(sc[" + i + "]) { " + functionBody + " } "; } return (new Function("sc", functionBody))(scopes); }, domNodeIsContainedBy: function (node, containedByNode) { if (containedByNode.compareDocumentPosition) return (containedByNode.compareDocumentPosition(node) & 16) == 16; while (node != null) { if (node == containedByNode) return true; node = node.parentNode; } return false; }, domNodeIsAttachedToDocument: function (node) { return ko.utils.domNodeIsContainedBy(node, document); }, registerEventHandler: function (element, eventType, handler) { if (typeof jQuery != "undefined") { if (isClickOnCheckableElement(element, eventType)) { // For click events on checkboxes, jQuery interferes with the event handling in an awkward way: // it toggles the element checked state *after* the click event handlers run, whereas native // click events toggle the checked state *before* the event handler. // Fix this by intecepting the handler and applying the correct checkedness before it runs. var originalHandler = handler; handler = function(event, eventData) { var jQuerySuppliedCheckedState = this.checked; if (eventData) this.checked = eventData.checkedStateBeforeEvent !== true; originalHandler.call(this, event); this.checked = jQuerySuppliedCheckedState; // Restore the state jQuery applied }; } jQuery(element)['bind'](eventType, handler); } else if (typeof element.addEventListener == "function") element.addEventListener(eventType, handler, false); else if (typeof element.attachEvent != "undefined") element.attachEvent("on" + eventType, function (event) { handler.call(element, event); }); else throw new Error("Browser doesn't support addEventListener or attachEvent"); }, triggerEvent: function (element, eventType) { if (!(element && element.nodeType)) throw new Error("element must be a DOM node when calling triggerEvent"); if (typeof jQuery != "undefined") { var eventData = []; if (isClickOnCheckableElement(element, eventType)) { // Work around the jQuery "click events on checkboxes" issue described above by storing the original checked state before triggering the handler eventData.push({ checkedStateBeforeEvent: element.checked }); } jQuery(element)['trigger'](eventType, eventData); } else if (typeof document.createEvent == "function") { if (typeof element.dispatchEvent == "function") { var eventCategory = knownEventTypesByEventName[eventType] || "HTMLEvents"; var event = document.createEvent(eventCategory); event.initEvent(eventType, true, true, window, 0, 0, 0, 0, 0, false, false, false, false, 0, element); element.dispatchEvent(event); } else throw new Error("The supplied element doesn't support dispatchEvent"); } else if (typeof element.fireEvent != "undefined") { // Unlike other browsers, IE doesn't change the checked state of checkboxes/radiobuttons when you trigger their "click" event // so to make it consistent, we'll do it manually here if (eventType == "click") { if ((element.tagName == "INPUT") && ((element.type.toLowerCase() == "checkbox") || (element.type.toLowerCase() == "radio"))) element.checked = element.checked !== true; } element.fireEvent("on" + eventType); } else throw new Error("Browser doesn't support triggering events"); }, unwrapObservable: function (value) { return ko.isObservable(value) ? value() : value; }, domNodeHasCssClass: function (node, className) { var currentClassNames = (node.className || "").split(/\s+/); return ko.utils.arrayIndexOf(currentClassNames, className) >= 0; }, toggleDomNodeCssClass: function (node, className, shouldHaveClass) { var hasClass = ko.utils.domNodeHasCssClass(node, className); if (shouldHaveClass && !hasClass) { node.className = (node.className || "") + " " + className; } else if (hasClass && !shouldHaveClass) { var currentClassNames = (node.className || "").split(/\s+/); var newClassName = ""; for (var i = 0; i < currentClassNames.length; i++) if (currentClassNames[i] != className) newClassName += currentClassNames[i] + " "; node.className = ko.utils.stringTrim(newClassName); } }, outerHTML: function(node) { // For Chrome on non-text nodes // (Although IE supports outerHTML, the way it formats HTML is inconsistent - sometimes closing tags are omitted, sometimes not. That caused https://github.com/SteveSanderson/knockout/issues/212.) if (ieVersion === undefined) { var nativeOuterHtml = node.outerHTML; if (typeof nativeOuterHtml == "string") return nativeOuterHtml; } // Other browsers var dummyContainer = window.document.createElement("div"); dummyContainer.appendChild(node.cloneNode(true)); return dummyContainer.innerHTML; }, setTextContent: function(element, textContent) { var value = ko.utils.unwrapObservable(textContent); if ((value === null) || (value === undefined)) value = ""; 'innerText' in element ? element.innerText = value : element.textContent = value; if (ieVersion >= 9) { // Believe it or not, this actually fixes an IE9 rendering bug. Insane. https://github.com/SteveSanderson/knockout/issues/209 element.innerHTML = element.innerHTML; } }, range: function (min, max) { min = ko.utils.unwrapObservable(min); max = ko.utils.unwrapObservable(max); var result = []; for (var i = min; i <= max; i++) result.push(i); return result; }, makeArray: function(arrayLikeObject) { var result = []; for (var i = 0, j = arrayLikeObject.length; i < j; i++) { result.push(arrayLikeObject[i]); }; return result; }, isIe6 : isIe6, isIe7 : isIe7, getFormFields: function(form, fieldName) { var fields = ko.utils.makeArray(form.getElementsByTagName("INPUT")).concat(ko.utils.makeArray(form.getElementsByTagName("TEXTAREA"))); var isMatchingField = (typeof fieldName == 'string') ? function(field) { return field.name === fieldName } : function(field) { return fieldName.test(field.name) }; // Treat fieldName as regex or object containing predicate var matches = []; for (var i = fields.length - 1; i >= 0; i--) { if (isMatchingField(fields[i])) matches.push(fields[i]); }; return matches; }, parseJson: function (jsonString) { if (typeof jsonString == "string") { jsonString = ko.utils.stringTrim(jsonString); if (jsonString) { if (window.JSON && window.JSON.parse) // Use native parsing where available return window.JSON.parse(jsonString); return (new Function("return " + jsonString))(); // Fallback on less safe parsing for older browsers } } return null; }, stringifyJson: function (data) { if ((typeof JSON == "undefined") || (typeof JSON.stringify == "undefined")) throw new Error("Cannot find JSON.stringify(). Some browsers (e.g., IE < 8) don't support it natively, but you can overcome this by adding a script reference to json2.js, downloadable from http://www.json.org/json2.js"); return JSON.stringify(ko.utils.unwrapObservable(data)); }, postJson: function (urlOrForm, data, options) { options = options || {}; var params = options['params'] || {}; var includeFields = options['includeFields'] || this.fieldsIncludedWithJsonPost; var url = urlOrForm; // If we were given a form, use its 'action' URL and pick out any requested field values if((typeof urlOrForm == 'object') && (urlOrForm.tagName == "FORM")) { var originalForm = urlOrForm; url = originalForm.action; for (var i = includeFields.length - 1; i >= 0; i--) { var fields = ko.utils.getFormFields(originalForm, includeFields[i]); for (var j = fields.length - 1; j >= 0; j--) params[fields[j].name] = fields[j].value; } } data = ko.utils.unwrapObservable(data); var form = document.createElement("FORM"); form.style.display = "none"; form.action = url; form.method = "post"; for (var key in data) { var input = document.createElement("INPUT"); input.name = key; input.value = ko.utils.stringifyJson(ko.utils.unwrapObservable(data[key])); form.appendChild(input); } for (var key in params) { var input = document.createElement("INPUT"); input.name = key; input.value = params[key]; form.appendChild(input); } document.body.appendChild(form); options['submitter'] ? options['submitter'](form) : form.submit(); setTimeout(function () { form.parentNode.removeChild(form); }, 0); } } })(); ko.exportSymbol('ko.utils', ko.utils); ko.utils.arrayForEach([ ['arrayForEach', ko.utils.arrayForEach], ['arrayFirst', ko.utils.arrayFirst], ['arrayFilter', ko.utils.arrayFilter], ['arrayGetDistinctValues', ko.utils.arrayGetDistinctValues], ['arrayIndexOf', ko.utils.arrayIndexOf], ['arrayMap', ko.utils.arrayMap], ['arrayPushAll', ko.utils.arrayPushAll], ['arrayRemoveItem', ko.utils.arrayRemoveItem], ['extend', ko.utils.extend], ['fieldsIncludedWithJsonPost', ko.utils.fieldsIncludedWithJsonPost], ['getFormFields', ko.utils.getFormFields], ['postJson', ko.utils.postJson], ['parseJson', ko.utils.parseJson], ['registerEventHandler', ko.utils.registerEventHandler], ['stringifyJson', ko.utils.stringifyJson], ['range', ko.utils.range], ['toggleDomNodeCssClass', ko.utils.toggleDomNodeCssClass], ['triggerEvent', ko.utils.triggerEvent], ['unwrapObservable', ko.utils.unwrapObservable] ], function(item) { ko.exportSymbol('ko.utils.' + item[0], item[1]); }); if (!Function.prototype['bind']) { // Function.prototype.bind is a standard part of ECMAScript 5th Edition (December 2009, http://www.ecma-international.org/publications/files/ECMA-ST/ECMA-262.pdf) // In case the browser doesn't implement it natively, provide a JavaScript implementation. This implementation is based on the one in prototype.js Function.prototype['bind'] = function (object) { var originalFunction = this, args = Array.prototype.slice.call(arguments), object = args.shift(); return function () { return originalFunction.apply(object, args.concat(Array.prototype.slice.call(arguments))); }; }; } ko.utils.domData = new (function () { var uniqueId = 0; var dataStoreKeyExpandoPropertyName = "__ko__" + (new Date).getTime(); var dataStore = {}; return { get: function (node, key) { var allDataForNode = ko.utils.domData.getAll(node, false); return allDataForNode === undefined ? undefined : allDataForNode[key]; }, set: function (node, key, value) { if (value === undefined) { // Make sure we don't actually create a new domData key if we are actually deleting a value if (ko.utils.domData.getAll(node, false) === undefined) return; } var allDataForNode = ko.utils.domData.getAll(node, true); allDataForNode[key] = value; }, getAll: function (node, createIfNotFound) { var dataStoreKey = node[dataStoreKeyExpandoPropertyName]; var hasExistingDataStore = dataStoreKey && (dataStoreKey !== "null"); if (!hasExistingDataStore) { if (!createIfNotFound) return undefined; dataStoreKey = node[dataStoreKeyExpandoPropertyName] = "ko" + uniqueId++; dataStore[dataStoreKey] = {}; } return dataStore[dataStoreKey]; }, clear: function (node) { var dataStoreKey = node[dataStoreKeyExpandoPropertyName]; if (dataStoreKey) { delete dataStore[dataStoreKey]; node[dataStoreKeyExpandoPropertyName] = null; } } } })(); ko.exportSymbol('ko.utils.domData', ko.utils.domData); ko.exportSymbol('ko.utils.domData.clear', ko.utils.domData.clear); // Exporting only so specs can clear up after themselves fully ko.utils.domNodeDisposal = new (function () { var domDataKey = "__ko_domNodeDisposal__" + (new Date).getTime(); function getDisposeCallbacksCollection(node, createIfNotFound) { var allDisposeCallbacks = ko.utils.domData.get(node, domDataKey); if ((allDisposeCallbacks === undefined) && createIfNotFound) { allDisposeCallbacks = []; ko.utils.domData.set(node, domDataKey, allDisposeCallbacks); } return allDisposeCallbacks; } function destroyCallbacksCollection(node) { ko.utils.domData.set(node, domDataKey, undefined); } function cleanSingleNode(node) { // Run all the dispose callbacks var callbacks = getDisposeCallbacksCollection(node, false); if (callbacks) { callbacks = callbacks.slice(0); // Clone, as the array may be modified during iteration (typically, callbacks will remove themselves) for (var i = 0; i < callbacks.length; i++) callbacks[i](node); } // Also erase the DOM data ko.utils.domData.clear(node); // Special support for jQuery here because it's so commonly used. // Many jQuery plugins (including jquery.tmpl) store data using jQuery's equivalent of domData // so notify it to tear down any resources associated with the node & descendants here. if ((typeof jQuery == "function") && (typeof jQuery['cleanData'] == "function")) jQuery['cleanData']([node]); } return { addDisposeCallback : function(node, callback) { if (typeof callback != "function") throw new Error("Callback must be a function"); getDisposeCallbacksCollection(node, true).push(callback); }, removeDisposeCallback : function(node, callback) { var callbacksCollection = getDisposeCallbacksCollection(node, false); if (callbacksCollection) { ko.utils.arrayRemoveItem(callbacksCollection, callback); if (callbacksCollection.length == 0) destroyCallbacksCollection(node); } }, cleanNode : function(node) { if ((node.nodeType != 1) && (node.nodeType != 9)) return; cleanSingleNode(node); // Clone the descendants list in case it changes during iteration var descendants = []; ko.utils.arrayPushAll(descendants, node.getElementsByTagName("*")); for (var i = 0, j = descendants.length; i < j; i++) cleanSingleNode(descendants[i]); }, removeNode : function(node) { ko.cleanNode(node); if (node.parentNode) node.parentNode.removeChild(node); } } })(); ko.cleanNode = ko.utils.domNodeDisposal.cleanNode; // Shorthand name for convenience ko.removeNode = ko.utils.domNodeDisposal.removeNode; // Shorthand name for convenience ko.exportSymbol('ko.cleanNode', ko.cleanNode); ko.exportSymbol('ko.removeNode', ko.removeNode); ko.exportSymbol('ko.utils.domNodeDisposal', ko.utils.domNodeDisposal); ko.exportSymbol('ko.utils.domNodeDisposal.addDisposeCallback', ko.utils.domNodeDisposal.addDisposeCallback); ko.exportSymbol('ko.utils.domNodeDisposal.removeDisposeCallback', ko.utils.domNodeDisposal.removeDisposeCallback);(function () { var leadingCommentRegex = /^(\s*)/; function simpleHtmlParse(html) { // Based on jQuery's "clean" function, but only accounting for table-related elements. // If you have referenced jQuery, this won't be used anyway - KO will use jQuery's "clean" function directly // Note that there's still an issue in IE < 9 whereby it will discard comment nodes that are the first child of // a descendant node. For example: "
abc
" will get parsed as "
abc
" // This won't affect anyone who has referenced jQuery, and there's always the workaround of inserting a dummy node // (possibly a text node) in front of the comment. So, KO does not attempt to workaround this IE issue automatically at present. // Trim whitespace, otherwise indexOf won't work as expected var tags = ko.utils.stringTrim(html).toLowerCase(), div = document.createElement("div"); // Finds the first match from the left column, and returns the corresponding "wrap" data from the right column var wrap = tags.match(/^<(thead|tbody|tfoot)/) && [1, "", "
"] || !tags.indexOf("", ""] || (!tags.indexOf("", ""] || /* anything else */ [0, "", ""]; // Go to html and back, then peel off extra wrappers // Note that we always prefix with some dummy text, because otherwise, IE<9 will strip out leading comment nodes in descendants. Total madness. var markup = "ignored
" + wrap[1] + html + wrap[2] + "
"; if (typeof window['innerShiv'] == "function") { div.appendChild(window['innerShiv'](markup)); } else { div.innerHTML = markup; } // Move to the right depth while (wrap[0]--) div = div.lastChild; return ko.utils.makeArray(div.lastChild.childNodes); } function jQueryHtmlParse(html) { var elems = jQuery['clean']([html]); // As of jQuery 1.7.1, jQuery parses the HTML by appending it to some dummy parent nodes held in an in-memory document fragment. // Unfortunately, it never clears the dummy parent nodes from the document fragment, so it leaks memory over time. // Fix this by finding the top-most dummy parent element, and detaching it from its owner fragment. if (elems && elems[0]) { // Find the top-most parent element that's a direct child of a document fragment var elem = elems[0]; while (elem.parentNode && elem.parentNode.nodeType !== 11 /* i.e., DocumentFragment */) elem = elem.parentNode; // ... then detach it if (elem.parentNode) elem.parentNode.removeChild(elem); } return elems; } ko.utils.parseHtmlFragment = function(html) { return typeof jQuery != 'undefined' ? jQueryHtmlParse(html) // As below, benefit from jQuery's optimisations where possible : simpleHtmlParse(html); // ... otherwise, this simple logic will do in most common cases. }; ko.utils.setHtml = function(node, html) { ko.utils.emptyDomNode(node); if ((html !== null) && (html !== undefined)) { if (typeof html != 'string') html = html.toString(); // jQuery contains a lot of sophisticated code to parse arbitrary HTML fragments, // for example elements which are not normally allowed to exist on their own. // If you've referenced jQuery we'll use that rather than duplicating its code. if (typeof jQuery != 'undefined') { jQuery(node)['html'](html); } else { // ... otherwise, use KO's own parsing logic. var parsedNodes = ko.utils.parseHtmlFragment(html); for (var i = 0; i < parsedNodes.length; i++) node.appendChild(parsedNodes[i]); } } }; })(); ko.exportSymbol('ko.utils.parseHtmlFragment', ko.utils.parseHtmlFragment); ko.exportSymbol('ko.utils.setHtml', ko.utils.setHtml); ko.memoization = (function () { var memos = {}; function randomMax8HexChars() { return (((1 + Math.random()) * 0x100000000) | 0).toString(16).substring(1); } function generateRandomId() { return randomMax8HexChars() + randomMax8HexChars(); } function findMemoNodes(rootNode, appendToArray) { if (!rootNode) return; if (rootNode.nodeType == 8) { var memoId = ko.memoization.parseMemoText(rootNode.nodeValue); if (memoId != null) appendToArray.push({ domNode: rootNode, memoId: memoId }); } else if (rootNode.nodeType == 1) { for (var i = 0, childNodes = rootNode.childNodes, j = childNodes.length; i < j; i++) findMemoNodes(childNodes[i], appendToArray); } } return { memoize: function (callback) { if (typeof callback != "function") throw new Error("You can only pass a function to ko.memoization.memoize()"); var memoId = generateRandomId(); memos[memoId] = callback; return ""; }, unmemoize: function (memoId, callbackParams) { var callback = memos[memoId]; if (callback === undefined) throw new Error("Couldn't find any memo with ID " + memoId + ". Perhaps it's already been unmemoized."); try { callback.apply(null, callbackParams || []); return true; } finally { delete memos[memoId]; } }, unmemoizeDomNodeAndDescendants: function (domNode, extraCallbackParamsArray) { var memos = []; findMemoNodes(domNode, memos); for (var i = 0, j = memos.length; i < j; i++) { var node = memos[i].domNode; var combinedParams = [node]; if (extraCallbackParamsArray) ko.utils.arrayPushAll(combinedParams, extraCallbackParamsArray); ko.memoization.unmemoize(memos[i].memoId, combinedParams); node.nodeValue = ""; // Neuter this node so we don't try to unmemoize it again if (node.parentNode) node.parentNode.removeChild(node); // If possible, erase it totally (not always possible - someone else might just hold a reference to it then call unmemoizeDomNodeAndDescendants again) } }, parseMemoText: function (memoText) { var match = memoText.match(/^\[ko_memo\:(.*?)\]$/); return match ? match[1] : null; } }; })(); ko.exportSymbol('ko.memoization', ko.memoization); ko.exportSymbol('ko.memoization.memoize', ko.memoization.memoize); ko.exportSymbol('ko.memoization.unmemoize', ko.memoization.unmemoize); ko.exportSymbol('ko.memoization.parseMemoText', ko.memoization.parseMemoText); ko.exportSymbol('ko.memoization.unmemoizeDomNodeAndDescendants', ko.memoization.unmemoizeDomNodeAndDescendants); ko.extenders = { 'throttle': function(target, timeout) { // Throttling means two things: // (1) For dependent observables, we throttle *evaluations* so that, no matter how fast its dependencies // notify updates, the target doesn't re-evaluate (and hence doesn't notify) faster than a certain rate target['throttleEvaluation'] = timeout; // (2) For writable targets (observables, or writable dependent observables), we throttle *writes* // so the target cannot change value synchronously or faster than a certain rate var writeTimeoutInstance = null; return ko.dependentObservable({ 'read': target, 'write': function(value) { clearTimeout(writeTimeoutInstance); writeTimeoutInstance = setTimeout(function() { target(value); }, timeout); } }); }, 'notify': function(target, notifyWhen) { target["equalityComparer"] = notifyWhen == "always" ? function() { return false } // Treat all values as not equal : ko.observable["fn"]["equalityComparer"]; return target; } }; function applyExtenders(requestedExtenders) { var target = this; if (requestedExtenders) { for (var key in requestedExtenders) { var extenderHandler = ko.extenders[key]; if (typeof extenderHandler == 'function') { target = extenderHandler(target, requestedExtenders[key]); } } } return target; } ko.exportSymbol('ko.extenders', ko.extenders); ko.subscription = function (callback, disposeCallback) { this.callback = callback; this.disposeCallback = disposeCallback; ko.exportProperty(this, 'dispose', this.dispose); }; ko.subscription.prototype.dispose = function () { this.isDisposed = true; this.disposeCallback(); }; ko.subscribable = function () { this._subscriptions = {}; ko.utils.extend(this, ko.subscribable['fn']); ko.exportProperty(this, 'subscribe', this.subscribe); ko.exportProperty(this, 'extend', this.extend); ko.exportProperty(this, 'getSubscriptionsCount', this.getSubscriptionsCount); } var defaultEvent = "change"; ko.subscribable['fn'] = { subscribe: function (callback, callbackTarget, event) { event = event || defaultEvent; var boundCallback = callbackTarget ? callback.bind(callbackTarget) : callback; var subscription = new ko.subscription(boundCallback, function () { ko.utils.arrayRemoveItem(this._subscriptions[event], subscription); }.bind(this)); if (!this._subscriptions[event]) this._subscriptions[event] = []; this._subscriptions[event].push(subscription); return subscription; }, "notifySubscribers": function (valueToNotify, event) { event = event || defaultEvent; if (this._subscriptions[event]) { ko.utils.arrayForEach(this._subscriptions[event].slice(0), function (subscription) { // In case a subscription was disposed during the arrayForEach cycle, check // for isDisposed on each subscription before invoking its callback if (subscription && (subscription.isDisposed !== true)) subscription.callback(valueToNotify); }); } }, getSubscriptionsCount: function () { var total = 0; for (var eventName in this._subscriptions) { if (this._subscriptions.hasOwnProperty(eventName)) total += this._subscriptions[eventName].length; } return total; }, extend: applyExtenders }; ko.isSubscribable = function (instance) { return typeof instance.subscribe == "function" && typeof instance["notifySubscribers"] == "function"; }; ko.exportSymbol('ko.subscribable', ko.subscribable); ko.exportSymbol('ko.isSubscribable', ko.isSubscribable); ko.dependencyDetection = (function () { var _frames = []; return { begin: function (callback) { _frames.push({ callback: callback, distinctDependencies:[] }); }, end: function () { _frames.pop(); }, registerDependency: function (subscribable) { if (!ko.isSubscribable(subscribable)) throw "Only subscribable things can act as dependencies"; if (_frames.length > 0) { var topFrame = _frames[_frames.length - 1]; if (ko.utils.arrayIndexOf(topFrame.distinctDependencies, subscribable) >= 0) return; topFrame.distinctDependencies.push(subscribable); topFrame.callback(subscribable); } } }; })();var primitiveTypes = { 'undefined':true, 'boolean':true, 'number':true, 'string':true }; ko.observable = function (initialValue) { var _latestValue = initialValue; function observable() { if (arguments.length > 0) { // Write // Ignore writes if the value hasn't changed if ((!observable['equalityComparer']) || !observable['equalityComparer'](_latestValue, arguments[0])) { observable.valueWillMutate(); _latestValue = arguments[0]; observable.valueHasMutated(); } return this; // Permits chained assignments } else { // Read ko.dependencyDetection.registerDependency(observable); // The caller only needs to be notified of changes if they did a "read" operation return _latestValue; } } ko.subscribable.call(observable); observable.valueHasMutated = function () { observable["notifySubscribers"](_latestValue); } observable.valueWillMutate = function () { observable["notifySubscribers"](_latestValue, "beforeChange"); } ko.utils.extend(observable, ko.observable['fn']); ko.exportProperty(observable, "valueHasMutated", observable.valueHasMutated); ko.exportProperty(observable, "valueWillMutate", observable.valueWillMutate); return observable; } ko.observable['fn'] = { __ko_proto__: ko.observable, "equalityComparer": function valuesArePrimitiveAndEqual(a, b) { var oldValueIsPrimitive = (a === null) || (typeof(a) in primitiveTypes); return oldValueIsPrimitive ? (a === b) : false; } }; ko.isObservable = function (instance) { if ((instance === null) || (instance === undefined) || (instance.__ko_proto__ === undefined)) return false; if (instance.__ko_proto__ === ko.observable) return true; return ko.isObservable(instance.__ko_proto__); // Walk the prototype chain } ko.isWriteableObservable = function (instance) { // Observable if ((typeof instance == "function") && instance.__ko_proto__ === ko.observable) return true; // Writeable dependent observable if ((typeof instance == "function") && (instance.__ko_proto__ === ko.dependentObservable) && (instance.hasWriteFunction)) return true; // Anything else return false; } ko.exportSymbol('ko.observable', ko.observable); ko.exportSymbol('ko.isObservable', ko.isObservable); ko.exportSymbol('ko.isWriteableObservable', ko.isWriteableObservable); ko.observableArray = function (initialValues) { if (arguments.length == 0) { // Zero-parameter constructor initializes to empty array initialValues = []; } if ((initialValues !== null) && (initialValues !== undefined) && !('length' in initialValues)) throw new Error("The argument passed when initializing an observable array must be an array, or null, or undefined."); var result = new ko.observable(initialValues); ko.utils.extend(result, ko.observableArray['fn']); ko.exportProperty(result, "remove", result.remove); ko.exportProperty(result, "removeAll", result.removeAll); ko.exportProperty(result, "destroy", result.destroy); ko.exportProperty(result, "destroyAll", result.destroyAll); ko.exportProperty(result, "indexOf", result.indexOf); ko.exportProperty(result, "replace", result.replace); return result; } ko.observableArray['fn'] = { remove: function (valueOrPredicate) { var underlyingArray = this(); var removedValues = []; var predicate = typeof valueOrPredicate == "function" ? valueOrPredicate : function (value) { return value === valueOrPredicate; }; for (var i = 0; i < underlyingArray.length; i++) { var value = underlyingArray[i]; if (predicate(value)) { if (removedValues.length === 0) { this.valueWillMutate(); } removedValues.push(value); underlyingArray.splice(i, 1); i--; } } if (removedValues.length) { this.valueHasMutated(); } return removedValues; }, removeAll: function (arrayOfValues) { // If you passed zero args, we remove everything if (arrayOfValues === undefined) { var underlyingArray = this(); var allValues = underlyingArray.slice(0); this.valueWillMutate(); underlyingArray.splice(0, underlyingArray.length); this.valueHasMutated(); return allValues; } // If you passed an arg, we interpret it as an array of entries to remove if (!arrayOfValues) return []; return this.remove(function (value) { return ko.utils.arrayIndexOf(arrayOfValues, value) >= 0; }); }, destroy: function (valueOrPredicate) { var underlyingArray = this(); var predicate = typeof valueOrPredicate == "function" ? valueOrPredicate : function (value) { return value === valueOrPredicate; }; this.valueWillMutate(); for (var i = underlyingArray.length - 1; i >= 0; i--) { var value = underlyingArray[i]; if (predicate(value)) underlyingArray[i]["_destroy"] = true; } this.valueHasMutated(); }, destroyAll: function (arrayOfValues) { // If you passed zero args, we destroy everything if (arrayOfValues === undefined) return this.destroy(function() { return true }); // If you passed an arg, we interpret it as an array of entries to destroy if (!arrayOfValues) return []; return this.destroy(function (value) { return ko.utils.arrayIndexOf(arrayOfValues, value) >= 0; }); }, indexOf: function (item) { var underlyingArray = this(); return ko.utils.arrayIndexOf(underlyingArray, item); }, replace: function(oldItem, newItem) { var index = this.indexOf(oldItem); if (index >= 0) { this.valueWillMutate(); this()[index] = newItem; this.valueHasMutated(); } } } // Populate ko.observableArray.fn with read/write functions from native arrays ko.utils.arrayForEach(["pop", "push", "reverse", "shift", "sort", "splice", "unshift"], function (methodName) { ko.observableArray['fn'][methodName] = function () { var underlyingArray = this(); this.valueWillMutate(); var methodCallResult = underlyingArray[methodName].apply(underlyingArray, arguments); this.valueHasMutated(); return methodCallResult; }; }); // Populate ko.observableArray.fn with read-only functions from native arrays ko.utils.arrayForEach(["slice"], function (methodName) { ko.observableArray['fn'][methodName] = function () { var underlyingArray = this(); return underlyingArray[methodName].apply(underlyingArray, arguments); }; }); ko.exportSymbol('ko.observableArray', ko.observableArray); function prepareOptions(evaluatorFunctionOrOptions, evaluatorFunctionTarget, options) { if (evaluatorFunctionOrOptions && typeof evaluatorFunctionOrOptions == "object") { // Single-parameter syntax - everything is on this "options" param options = evaluatorFunctionOrOptions; } else { // Multi-parameter syntax - construct the options according to the params passed options = options || {}; options["read"] = evaluatorFunctionOrOptions || options["read"]; } // By here, "options" is always non-null if (typeof options["read"] != "function") throw "Pass a function that returns the value of the dependentObservable"; return options; } ko.dependentObservable = function (evaluatorFunctionOrOptions, evaluatorFunctionTarget, options) { var _latestValue, _hasBeenEvaluated = false, options = prepareOptions(evaluatorFunctionOrOptions, evaluatorFunctionTarget, options); // Build "disposeWhenNodeIsRemoved" and "disposeWhenNodeIsRemovedCallback" option values // (Note: "disposeWhenNodeIsRemoved" option both proactively disposes as soon as the node is removed using ko.removeNode(), // plus adds a "disposeWhen" callback that, on each evaluation, disposes if the node was removed by some other means.) var disposeWhenNodeIsRemoved = (typeof options["disposeWhenNodeIsRemoved"] == "object") ? options["disposeWhenNodeIsRemoved"] : null; var disposeWhenNodeIsRemovedCallback = null; if (disposeWhenNodeIsRemoved) { disposeWhenNodeIsRemovedCallback = function() { dependentObservable.dispose() }; ko.utils.domNodeDisposal.addDisposeCallback(disposeWhenNodeIsRemoved, disposeWhenNodeIsRemovedCallback); var existingDisposeWhenFunction = options["disposeWhen"]; options["disposeWhen"] = function () { return (!ko.utils.domNodeIsAttachedToDocument(disposeWhenNodeIsRemoved)) || ((typeof existingDisposeWhenFunction == "function") && existingDisposeWhenFunction()); } } var _subscriptionsToDependencies = []; function disposeAllSubscriptionsToDependencies() { ko.utils.arrayForEach(_subscriptionsToDependencies, function (subscription) { subscription.dispose(); }); _subscriptionsToDependencies = []; } var evaluationTimeoutInstance = null; function evaluatePossiblyAsync() { var throttleEvaluationTimeout = dependentObservable['throttleEvaluation']; if (throttleEvaluationTimeout && throttleEvaluationTimeout >= 0) { clearTimeout(evaluationTimeoutInstance); evaluationTimeoutInstance = setTimeout(evaluateImmediate, throttleEvaluationTimeout); } else evaluateImmediate(); } function evaluateImmediate() { // Don't dispose on first evaluation, because the "disposeWhen" callback might // e.g., dispose when the associated DOM element isn't in the doc, and it's not // going to be in the doc until *after* the first evaluation if ((_hasBeenEvaluated) && typeof options["disposeWhen"] == "function") { if (options["disposeWhen"]()) { dependentObservable.dispose(); return; } } try { disposeAllSubscriptionsToDependencies(); ko.dependencyDetection.begin(function(subscribable) { _subscriptionsToDependencies.push(subscribable.subscribe(evaluatePossiblyAsync)); }); var valueForThis = options["owner"] || evaluatorFunctionTarget; // If undefined, it will default to "window" by convention. This might change in the future. var newValue = options["read"].call(valueForThis); dependentObservable["notifySubscribers"](_latestValue, "beforeChange"); _latestValue = newValue; } finally { ko.dependencyDetection.end(); } dependentObservable["notifySubscribers"](_latestValue); _hasBeenEvaluated = true; } function dependentObservable() { if (arguments.length > 0) { if (typeof options["write"] === "function") { // Writing a value var valueForThis = options["owner"] || evaluatorFunctionTarget; // If undefined, it will default to "window" by convention. This might change in the future. options["write"].apply(valueForThis, arguments); } else { throw "Cannot write a value to a dependentObservable unless you specify a 'write' option. If you wish to read the current value, don't pass any parameters."; } } else { // Reading the value if (!_hasBeenEvaluated) evaluateImmediate(); ko.dependencyDetection.registerDependency(dependentObservable); return _latestValue; } } dependentObservable.getDependenciesCount = function () { return _subscriptionsToDependencies.length; } dependentObservable.hasWriteFunction = typeof options["write"] === "function"; dependentObservable.dispose = function () { if (disposeWhenNodeIsRemoved) ko.utils.domNodeDisposal.removeDisposeCallback(disposeWhenNodeIsRemoved, disposeWhenNodeIsRemovedCallback); disposeAllSubscriptionsToDependencies(); }; ko.subscribable.call(dependentObservable); ko.utils.extend(dependentObservable, ko.dependentObservable['fn']); if (options['deferEvaluation'] !== true) evaluateImmediate(); ko.exportProperty(dependentObservable, 'dispose', dependentObservable.dispose); ko.exportProperty(dependentObservable, 'getDependenciesCount', dependentObservable.getDependenciesCount); return dependentObservable; }; ko.dependentObservable['fn'] = { __ko_proto__: ko.dependentObservable }; ko.dependentObservable.__ko_proto__ = ko.observable; ko.exportSymbol('ko.dependentObservable', ko.dependentObservable); ko.exportSymbol('ko.computed', ko.dependentObservable); // Make "ko.computed" an alias for "ko.dependentObservable" (function() { var maxNestedObservableDepth = 10; // Escape the (unlikely) pathalogical case where an observable's current value is itself (or similar reference cycle) ko.toJS = function(rootObject) { if (arguments.length == 0) throw new Error("When calling ko.toJS, pass the object you want to convert."); // We just unwrap everything at every level in the object graph return mapJsObjectGraph(rootObject, function(valueToMap) { // Loop because an observable's value might in turn be another observable wrapper for (var i = 0; ko.isObservable(valueToMap) && (i < maxNestedObservableDepth); i++) valueToMap = valueToMap(); return valueToMap; }); }; ko.toJSON = function(rootObject) { var plainJavaScriptObject = ko.toJS(rootObject); return ko.utils.stringifyJson(plainJavaScriptObject); }; function mapJsObjectGraph(rootObject, mapInputCallback, visitedObjects) { visitedObjects = visitedObjects || new objectLookup(); rootObject = mapInputCallback(rootObject); var canHaveProperties = (typeof rootObject == "object") && (rootObject !== null) && (rootObject !== undefined) && (!(rootObject instanceof Date)); if (!canHaveProperties) return rootObject; var outputProperties = rootObject instanceof Array ? [] : {}; visitedObjects.save(rootObject, outputProperties); visitPropertiesOrArrayEntries(rootObject, function(indexer) { var propertyValue = mapInputCallback(rootObject[indexer]); switch (typeof propertyValue) { case "boolean": case "number": case "string": case "function": outputProperties[indexer] = propertyValue; break; case "object": case "undefined": var previouslyMappedValue = visitedObjects.get(propertyValue); outputProperties[indexer] = (previouslyMappedValue !== undefined) ? previouslyMappedValue : mapJsObjectGraph(propertyValue, mapInputCallback, visitedObjects); break; } }); return outputProperties; } function visitPropertiesOrArrayEntries(rootObject, visitorCallback) { if (rootObject instanceof Array) { for (var i = 0; i < rootObject.length; i++) visitorCallback(i); } else { for (var propertyName in rootObject) visitorCallback(propertyName); } }; function objectLookup() { var keys = []; var values = []; this.save = function(key, value) { var existingIndex = ko.utils.arrayIndexOf(keys, key); if (existingIndex >= 0) values[existingIndex] = value; else { keys.push(key); values.push(value); } }; this.get = function(key) { var existingIndex = ko.utils.arrayIndexOf(keys, key); return (existingIndex >= 0) ? values[existingIndex] : undefined; }; }; })(); ko.exportSymbol('ko.toJS', ko.toJS); ko.exportSymbol('ko.toJSON', ko.toJSON);(function () { var hasDomDataExpandoProperty = '__ko__hasDomDataOptionValue__'; // Normally, SELECT elements and their OPTIONs can only take value of type 'string' (because the values // are stored on DOM attributes). ko.selectExtensions provides a way for SELECTs/OPTIONs to have values // that are arbitrary objects. This is very convenient when implementing things like cascading dropdowns. ko.selectExtensions = { readValue : function(element) { if (element.tagName == 'OPTION') { if (element[hasDomDataExpandoProperty] === true) return ko.utils.domData.get(element, ko.bindingHandlers.options.optionValueDomDataKey); return element.getAttribute("value"); } else if (element.tagName == 'SELECT') return element.selectedIndex >= 0 ? ko.selectExtensions.readValue(element.options[element.selectedIndex]) : undefined; else return element.value; }, writeValue: function(element, value) { if (element.tagName == 'OPTION') { switch(typeof value) { case "string": ko.utils.domData.set(element, ko.bindingHandlers.options.optionValueDomDataKey, undefined); if (hasDomDataExpandoProperty in element) { // IE <= 8 throws errors if you delete non-existent properties from a DOM node delete element[hasDomDataExpandoProperty]; } element.value = value; break; default: // Store arbitrary object using DomData ko.utils.domData.set(element, ko.bindingHandlers.options.optionValueDomDataKey, value); element[hasDomDataExpandoProperty] = true; // Special treatment of numbers is just for backward compatibility. KO 1.2.1 wrote numerical values to element.value. element.value = typeof value === "number" ? value : ""; break; } } else if (element.tagName == 'SELECT') { for (var i = element.options.length - 1; i >= 0; i--) { if (ko.selectExtensions.readValue(element.options[i]) == value) { element.selectedIndex = i; break; } } } else { if ((value === null) || (value === undefined)) value = ""; element.value = value; } } }; })(); ko.exportSymbol('ko.selectExtensions', ko.selectExtensions); ko.exportSymbol('ko.selectExtensions.readValue', ko.selectExtensions.readValue); ko.exportSymbol('ko.selectExtensions.writeValue', ko.selectExtensions.writeValue); ko.jsonExpressionRewriting = (function () { var restoreCapturedTokensRegex = /\@ko_token_(\d+)\@/g; var javaScriptAssignmentTarget = /^[\_$a-z][\_$a-z0-9]*(\[.*?\])*(\.[\_$a-z][\_$a-z0-9]*(\[.*?\])*)*$/i; var javaScriptReservedWords = ["true", "false"]; function restoreTokens(string, tokens) { var prevValue = null; while (string != prevValue) { // Keep restoring tokens until it no longer makes a difference (they may be nested) prevValue = string; string = string.replace(restoreCapturedTokensRegex, function (match, tokenIndex) { return tokens[tokenIndex]; }); } return string; } function isWriteableValue(expression) { if (ko.utils.arrayIndexOf(javaScriptReservedWords, ko.utils.stringTrim(expression).toLowerCase()) >= 0) return false; return expression.match(javaScriptAssignmentTarget) !== null; } function ensureQuoted(key) { var trimmedKey = ko.utils.stringTrim(key); switch (trimmedKey.length && trimmedKey.charAt(0)) { case "'": case '"': return key; default: return "'" + trimmedKey + "'"; } } return { bindingRewriteValidators: [], parseObjectLiteral: function(objectLiteralString) { // A full tokeniser+lexer would add too much weight to this library, so here's a simple parser // that is sufficient just to split an object literal string into a set of top-level key-value pairs var str = ko.utils.stringTrim(objectLiteralString); if (str.length < 3) return []; if (str.charAt(0) === "{")// Ignore any braces surrounding the whole object literal str = str.substring(1, str.length - 1); // Pull out any string literals and regex literals var tokens = []; var tokenStart = null, tokenEndChar; for (var position = 0; position < str.length; position++) { var c = str.charAt(position); if (tokenStart === null) { switch (c) { case '"': case "'": case "/": tokenStart = position; tokenEndChar = c; break; } } else if ((c == tokenEndChar) && (str.charAt(position - 1) !== "\\")) { var token = str.substring(tokenStart, position + 1); tokens.push(token); var replacement = "@ko_token_" + (tokens.length - 1) + "@"; str = str.substring(0, tokenStart) + replacement + str.substring(position + 1); position -= (token.length - replacement.length); tokenStart = null; } } // Next pull out balanced paren, brace, and bracket blocks tokenStart = null; tokenEndChar = null; var tokenDepth = 0, tokenStartChar = null; for (var position = 0; position < str.length; position++) { var c = str.charAt(position); if (tokenStart === null) { switch (c) { case "{": tokenStart = position; tokenStartChar = c; tokenEndChar = "}"; break; case "(": tokenStart = position; tokenStartChar = c; tokenEndChar = ")"; break; case "[": tokenStart = position; tokenStartChar = c; tokenEndChar = "]"; break; } } if (c === tokenStartChar) tokenDepth++; else if (c === tokenEndChar) { tokenDepth--; if (tokenDepth === 0) { var token = str.substring(tokenStart, position + 1); tokens.push(token); var replacement = "@ko_token_" + (tokens.length - 1) + "@"; str = str.substring(0, tokenStart) + replacement + str.substring(position + 1); position -= (token.length - replacement.length); tokenStart = null; } } } // Now we can safely split on commas to get the key/value pairs var result = []; var keyValuePairs = str.split(","); for (var i = 0, j = keyValuePairs.length; i < j; i++) { var pair = keyValuePairs[i]; var colonPos = pair.indexOf(":"); if ((colonPos > 0) && (colonPos < pair.length - 1)) { var key = pair.substring(0, colonPos); var value = pair.substring(colonPos + 1); result.push({ 'key': restoreTokens(key, tokens), 'value': restoreTokens(value, tokens) }); } else { result.push({ 'unknown': restoreTokens(pair, tokens) }); } } return result; }, insertPropertyAccessorsIntoJson: function (objectLiteralStringOrKeyValueArray) { var keyValueArray = typeof objectLiteralStringOrKeyValueArray === "string" ? ko.jsonExpressionRewriting.parseObjectLiteral(objectLiteralStringOrKeyValueArray) : objectLiteralStringOrKeyValueArray; var resultStrings = [], propertyAccessorResultStrings = []; var keyValueEntry; for (var i = 0; keyValueEntry = keyValueArray[i]; i++) { if (resultStrings.length > 0) resultStrings.push(","); if (keyValueEntry['key']) { var quotedKey = ensureQuoted(keyValueEntry['key']), val = keyValueEntry['value']; resultStrings.push(quotedKey); resultStrings.push(":"); resultStrings.push(val); if (isWriteableValue(ko.utils.stringTrim(val))) { if (propertyAccessorResultStrings.length > 0) propertyAccessorResultStrings.push(", "); propertyAccessorResultStrings.push(quotedKey + " : function(__ko_value) { " + val + " = __ko_value; }"); } } else if (keyValueEntry['unknown']) { resultStrings.push(keyValueEntry['unknown']); } } var combinedResult = resultStrings.join(""); if (propertyAccessorResultStrings.length > 0) { var allPropertyAccessors = propertyAccessorResultStrings.join(""); combinedResult = combinedResult + ", '_ko_property_writers' : { " + allPropertyAccessors + " } "; } return combinedResult; }, keyValueArrayContainsKey: function(keyValueArray, key) { for (var i = 0; i < keyValueArray.length; i++) if (ko.utils.stringTrim(keyValueArray[i]['key']) == key) return true; return false; } }; })(); ko.exportSymbol('ko.jsonExpressionRewriting', ko.jsonExpressionRewriting); ko.exportSymbol('ko.jsonExpressionRewriting.bindingRewriteValidators', ko.jsonExpressionRewriting.bindingRewriteValidators); ko.exportSymbol('ko.jsonExpressionRewriting.parseObjectLiteral', ko.jsonExpressionRewriting.parseObjectLiteral); ko.exportSymbol('ko.jsonExpressionRewriting.insertPropertyAccessorsIntoJson', ko.jsonExpressionRewriting.insertPropertyAccessorsIntoJson); (function() { // "Virtual elements" is an abstraction on top of the usual DOM API which understands the notion that comment nodes // may be used to represent hierarchy (in addition to the DOM's natural hierarchy). // If you call the DOM-manipulating functions on ko.virtualElements, you will be able to read and write the state // of that virtual hierarchy // // The point of all this is to support containerless templates (e.g., blah) // without having to scatter special cases all over the binding and templating code. // IE 9 cannot reliably read the "nodeValue" property of a comment node (see https://github.com/SteveSanderson/knockout/issues/186) // but it does give them a nonstandard alternative property called "text" that it can read reliably. Other browsers don't have that property. // So, use node.text where available, and node.nodeValue elsewhere var commentNodesHaveTextProperty = document.createComment("test").text === ""; var startCommentRegex = commentNodesHaveTextProperty ? /^$/ : /^\s*ko\s+(.*\:.*)\s*$/; var endCommentRegex = commentNodesHaveTextProperty ? /^$/ : /^\s*\/ko\s*$/; var htmlTagsWithOptionallyClosingChildren = { 'ul': true, 'ol': true }; function isStartComment(node) { return (node.nodeType == 8) && (commentNodesHaveTextProperty ? node.text : node.nodeValue).match(startCommentRegex); } function isEndComment(node) { return (node.nodeType == 8) && (commentNodesHaveTextProperty ? node.text : node.nodeValue).match(endCommentRegex); } function getVirtualChildren(startComment, allowUnbalanced) { var currentNode = startComment; var depth = 1; var children = []; while (currentNode = currentNode.nextSibling) { if (isEndComment(currentNode)) { depth--; if (depth === 0) return children; } children.push(currentNode); if (isStartComment(currentNode)) depth++; } if (!allowUnbalanced) throw new Error("Cannot find closing comment tag to match: " + startComment.nodeValue); return null; } function getMatchingEndComment(startComment, allowUnbalanced) { var allVirtualChildren = getVirtualChildren(startComment, allowUnbalanced); if (allVirtualChildren) { if (allVirtualChildren.length > 0) return allVirtualChildren[allVirtualChildren.length - 1].nextSibling; return startComment.nextSibling; } else return null; // Must have no matching end comment, and allowUnbalanced is true } function nodeArrayToText(nodeArray, cleanNodes) { var texts = []; for (var i = 0, j = nodeArray.length; i < j; i++) { if (cleanNodes) ko.utils.domNodeDisposal.cleanNode(nodeArray[i]); texts.push(ko.utils.outerHTML(nodeArray[i])); } return String.prototype.concat.apply("", texts); } function getUnbalancedChildTags(node) { // e.g., from
OK
Another, returns: Another // from
OK
, returns: var childNode = node.firstChild, captureRemaining = null; if (childNode) { do { if (captureRemaining) // We already hit an unbalanced node and are now just scooping up all subsequent nodes captureRemaining.push(childNode); else if (isStartComment(childNode)) { var matchingEndComment = getMatchingEndComment(childNode, /* allowUnbalanced: */ true); if (matchingEndComment) // It's a balanced tag, so skip immediately to the end of this virtual set childNode = matchingEndComment; else captureRemaining = [childNode]; // It's unbalanced, so start capturing from this point } else if (isEndComment(childNode)) { captureRemaining = [childNode]; // It's unbalanced (if it wasn't, we'd have skipped over it already), so start capturing } } while (childNode = childNode.nextSibling); } return captureRemaining; } ko.virtualElements = { allowedBindings: {}, childNodes: function(node) { return isStartComment(node) ? getVirtualChildren(node) : node.childNodes; }, emptyNode: function(node) { if (!isStartComment(node)) ko.utils.emptyDomNode(node); else { var virtualChildren = ko.virtualElements.childNodes(node); for (var i = 0, j = virtualChildren.length; i < j; i++) ko.removeNode(virtualChildren[i]); } }, setDomNodeChildren: function(node, childNodes) { if (!isStartComment(node)) ko.utils.setDomNodeChildren(node, childNodes); else { ko.virtualElements.emptyNode(node); var endCommentNode = node.nextSibling; // Must be the next sibling, as we just emptied the children for (var i = 0, j = childNodes.length; i < j; i++) endCommentNode.parentNode.insertBefore(childNodes[i], endCommentNode); } }, prepend: function(containerNode, nodeToPrepend) { if (!isStartComment(containerNode)) { if (containerNode.firstChild) containerNode.insertBefore(nodeToPrepend, containerNode.firstChild); else containerNode.appendChild(nodeToPrepend); } else { // Start comments must always have a parent and at least one following sibling (the end comment) containerNode.parentNode.insertBefore(nodeToPrepend, containerNode.nextSibling); } }, insertAfter: function(containerNode, nodeToInsert, insertAfterNode) { if (!isStartComment(containerNode)) { // Insert after insertion point if (insertAfterNode.nextSibling) containerNode.insertBefore(nodeToInsert, insertAfterNode.nextSibling); else containerNode.appendChild(nodeToInsert); } else { // Children of start comments must always have a parent and at least one following sibling (the end comment) containerNode.parentNode.insertBefore(nodeToInsert, insertAfterNode.nextSibling); } }, nextSibling: function(node) { if (!isStartComment(node)) { if (node.nextSibling && isEndComment(node.nextSibling)) return undefined; return node.nextSibling; } else { return getMatchingEndComment(node).nextSibling; } }, virtualNodeBindingValue: function(node) { var regexMatch = isStartComment(node); return regexMatch ? regexMatch[1] : null; }, extractAnonymousTemplateIfVirtualElement: function(node) { if (ko.virtualElements.virtualNodeBindingValue(node)) { // Empty out the virtual children, and associate "node" with an anonymous template matching its previous virtual children var virtualChildren = ko.virtualElements.childNodes(node); var anonymousTemplateText = nodeArrayToText(virtualChildren, true); ko.virtualElements.emptyNode(node); new ko.templateSources.anonymousTemplate(node).text(anonymousTemplateText); } }, normaliseVirtualElementDomStructure: function(elementVerified) { // Workaround for https://github.com/SteveSanderson/knockout/issues/155 // (IE <= 8 or IE 9 quirks mode parses your HTML weirdly, treating closing tags as if they don't exist, thereby moving comment nodes // that are direct descendants of