var m = (function app(window, undefined) { var OBJECT = "[object Object]", ARRAY = "[object Array]", STRING = "[object String]", FUNCTION = "function"; var type = {}.toString; var parser = /(?:(^|#|\.)([^#\.\[\]]+))|(\[.+?\])/g, attrParser = /\[(.+?)(?:=("|'|)(.*?)\2)?\]/; var voidElements = /^(AREA|BASE|BR|COL|COMMAND|EMBED|HR|IMG|INPUT|KEYGEN|LINK|META|PARAM|SOURCE|TRACK|WBR)$/; var noop = function() {} // caching commonly used variables var $document, $location, $requestAnimationFrame, $cancelAnimationFrame; // self invoking function needed because of the way mocks work function initialize(window){ $document = window.document; $location = window.location; $cancelAnimationFrame = window.cancelAnimationFrame || window.clearTimeout; $requestAnimationFrame = window.requestAnimationFrame || window.setTimeout; } initialize(window); /** * @typedef {String} Tag * A string that looks like -> div.classname#id[param=one][param2=two] * Which describes a DOM node */ /** * * @param {Tag} The DOM node tag * @param {Object=[]} optional key-value pairs to be mapped to DOM attrs * @param {...mNode=[]} Zero or more Mithril child nodes. Can be an array, or splat (optional) * */ function m() { var args = [].slice.call(arguments); var hasAttrs = args[1] != null && type.call(args[1]) === OBJECT && !("tag" in args[1] || "view" in args[1]) && !("subtree" in args[1]); var attrs = hasAttrs ? args[1] : {}; var classAttrName = "class" in attrs ? "class" : "className"; var cell = {tag: "div", attrs: {}}; var match, classes = []; if (type.call(args[0]) != STRING) throw new Error("selector in m(selector, attrs, children) should be a string") while (match = parser.exec(args[0])) { if (match[1] === "" && match[2]) cell.tag = match[2]; else if (match[1] === "#") cell.attrs.id = match[2]; else if (match[1] === ".") classes.push(match[2]); else if (match[3][0] === "[") { var pair = attrParser.exec(match[3]); cell.attrs[pair[1]] = pair[3] || (pair[2] ? "" :true) } } var children = hasAttrs ? args.slice(2) : args.slice(1); if (children.length === 1 && type.call(children[0]) === ARRAY) { cell.children = children[0] } else { cell.children = children } for (var attrName in attrs) { if (attrs.hasOwnProperty(attrName)) { if (attrName === classAttrName && attrs[attrName] != null && attrs[attrName] !== "") { classes.push(attrs[attrName]) cell.attrs[attrName] = "" //create key in correct iteration order } else cell.attrs[attrName] = attrs[attrName] } } if (classes.length > 0) cell.attrs[classAttrName] = classes.join(" "); return cell } function build(parentElement, parentTag, parentCache, parentIndex, data, cached, shouldReattach, index, editable, namespace, configs) { //`build` is a recursive function that manages creation/diffing/removal of DOM elements based on comparison between `data` and `cached` //the diff algorithm can be summarized as this: //1 - compare `data` and `cached` //2 - if they are different, copy `data` to `cached` and update the DOM based on what the difference is //3 - recursively apply this algorithm for every array and for the children of every virtual element //the `cached` data structure is essentially the same as the previous redraw's `data` data structure, with a few additions: //- `cached` always has a property called `nodes`, which is a list of DOM elements that correspond to the data represented by the respective virtual element //- in order to support attaching `nodes` as a property of `cached`, `cached` is *always* a non-primitive object, i.e. if the data was a string, then cached is a String instance. If data was `null` or `undefined`, cached is `new String("")` //- `cached also has a `configContext` property, which is the state storage object exposed by config(element, isInitialized, context) //- when `cached` is an Object, it represents a virtual element; when it's an Array, it represents a list of elements; when it's a String, Number or Boolean, it represents a text node //`parentElement` is a DOM element used for W3C DOM API calls //`parentTag` is only used for handling a corner case for textarea values //`parentCache` is used to remove nodes in some multi-node cases //`parentIndex` and `index` are used to figure out the offset of nodes. They're artifacts from before arrays started being flattened and are likely refactorable //`data` and `cached` are, respectively, the new and old nodes being diffed //`shouldReattach` is a flag indicating whether a parent node was recreated (if so, and if this node is reused, then this node must reattach itself to the new parent) //`editable` is a flag that indicates whether an ancestor is contenteditable //`namespace` indicates the closest HTML namespace as it cascades down from an ancestor //`configs` is a list of config functions to run after the topmost `build` call finishes running //there's logic that relies on the assumption that null and undefined data are equivalent to empty strings //- this prevents lifecycle surprises from procedural helpers that mix implicit and explicit return statements (e.g. function foo() {if (cond) return m("div")} //- it simplifies diffing code //data.toString() might throw or return null if data is the return value of Console.log in Firefox (behavior depends on version) try {if (data == null || data.toString() == null) data = "";} catch (e) {data = ""} if (data.subtree === "retain") return cached; var cachedType = type.call(cached), dataType = type.call(data); if (cached == null || cachedType !== dataType) { if (cached != null) { if (parentCache && parentCache.nodes) { var offset = index - parentIndex; var end = offset + (dataType === ARRAY ? data : cached.nodes).length; clear(parentCache.nodes.slice(offset, end), parentCache.slice(offset, end)) } else if (cached.nodes) clear(cached.nodes, cached) } cached = new data.constructor; if (cached.tag) cached = {}; //if constructor creates a virtual dom element, use a blank object as the base cached node instead of copying the virtual el (#277) cached.nodes = [] } if (dataType === ARRAY) { //recursively flatten array for (var i = 0, len = data.length; i < len; i++) { if (type.call(data[i]) === ARRAY) { data = data.concat.apply([], data); i-- //check current index again and flatten until there are no more nested arrays at that index len = data.length } } var nodes = [], intact = cached.length === data.length, subArrayCount = 0; //keys algorithm: sort elements without recreating them if keys are present //1) create a map of all existing keys, and mark all for deletion //2) add new keys to map and mark them for addition //3) if key exists in new list, change action from deletion to a move //4) for each key, handle its corresponding action as marked in previous steps var DELETION = 1, INSERTION = 2 , MOVE = 3; var existing = {}, shouldMaintainIdentities = false; for (var i = 0; i < cached.length; i++) { if (cached[i] && cached[i].attrs && cached[i].attrs.key != null) { shouldMaintainIdentities = true; existing[cached[i].attrs.key] = {action: DELETION, index: i} } } var guid = 0 for (var i = 0, len = data.length; i < len; i++) { if (data[i] && data[i].attrs && data[i].attrs.key != null) { for (var j = 0, len = data.length; j < len; j++) { if (data[j] && data[j].attrs && data[j].attrs.key == null) data[j].attrs.key = "__mithril__" + guid++ } break } } if (shouldMaintainIdentities) { var keysDiffer = false if (data.length != cached.length) keysDiffer = true else for (var i = 0, cachedCell, dataCell; cachedCell = cached[i], dataCell = data[i]; i++) { if (cachedCell.attrs && dataCell.attrs && cachedCell.attrs.key != dataCell.attrs.key) { keysDiffer = true break } } if (keysDiffer) { for (var i = 0, len = data.length; i < len; i++) { if (data[i] && data[i].attrs) { if (data[i].attrs.key != null) { var key = data[i].attrs.key; if (!existing[key]) existing[key] = {action: INSERTION, index: i}; else existing[key] = { action: MOVE, index: i, from: existing[key].index, element: cached.nodes[existing[key].index] || $document.createElement("div") } } } } var actions = [] for (var prop in existing) actions.push(existing[prop]) var changes = actions.sort(sortChanges); var newCached = new Array(cached.length) newCached.nodes = cached.nodes.slice() for (var i = 0, change; change = changes[i]; i++) { if (change.action === DELETION) { clear(cached[change.index].nodes, cached[change.index]); newCached.splice(change.index, 1) } if (change.action === INSERTION) { var dummy = $document.createElement("div"); dummy.key = data[change.index].attrs.key; parentElement.insertBefore(dummy, parentElement.childNodes[change.index] || null); newCached.splice(change.index, 0, {attrs: {key: data[change.index].attrs.key}, nodes: [dummy]}) newCached.nodes[change.index] = dummy } if (change.action === MOVE) { if (parentElement.childNodes[change.index] !== change.element && change.element !== null) { parentElement.insertBefore(change.element, parentElement.childNodes[change.index] || null) } newCached[change.index] = cached[change.from] newCached.nodes[change.index] = change.element } } cached = newCached; } } //end key algorithm for (var i = 0, cacheCount = 0, len = data.length; i < len; i++) { //diff each item in the array var item = build(parentElement, parentTag, cached, index, data[i], cached[cacheCount], shouldReattach, index + subArrayCount || subArrayCount, editable, namespace, configs); if (item === undefined) continue; if (!item.nodes.intact) intact = false; if (item.$trusted) { //fix offset of next element if item was a trusted string w/ more than one html element //the first clause in the regexp matches elements //the second clause (after the pipe) matches text nodes subArrayCount += (item.match(/<[^\/]|\>\s*[^<]/g) || [0]).length } else subArrayCount += type.call(item) === ARRAY ? item.length : 1; cached[cacheCount++] = item } if (!intact) { //diff the array itself //update the list of DOM nodes by collecting the nodes from each item for (var i = 0, len = data.length; i < len; i++) { if (cached[i] != null) nodes.push.apply(nodes, cached[i].nodes) } //remove items from the end of the array if the new array is shorter than the old one //if errors ever happen here, the issue is most likely a bug in the construction of the `cached` data structure somewhere earlier in the program for (var i = 0, node; node = cached.nodes[i]; i++) { if (node.parentNode != null && nodes.indexOf(node) < 0) clear([node], [cached[i]]) } if (data.length < cached.length) cached.length = data.length; cached.nodes = nodes } } else if (data != null && dataType === OBJECT) { var views = [], controllers = [] while (data.view) { var view = data.view.$original || data.view var controllerIndex = m.redraw.strategy() == "diff" && cached.views ? cached.views.indexOf(view) : -1 var controller = controllerIndex > -1 ? cached.controllers[controllerIndex] : new (data.controller || noop) var key = data && data.attrs && data.attrs.key data = pendingRequests == 0 || (cached && cached.controllers && cached.controllers.indexOf(controller) > -1) ? data.view(controller) : {tag: "placeholder"} if (data.subtree === "retain") return cached; if (key) { if (!data.attrs) data.attrs = {} data.attrs.key = key } if (controller.onunload) unloaders.push({controller: controller, handler: controller.onunload}) views.push(view) controllers.push(controller) } if (!data.tag && controllers.length) throw new Error("Component template must return a virtual element, not an array, string, etc.") if (!data.attrs) data.attrs = {}; if (!cached.attrs) cached.attrs = {}; var dataAttrKeys = Object.keys(data.attrs) var hasKeys = dataAttrKeys.length > ("key" in data.attrs ? 1 : 0) //if an element is different enough from the one in cache, recreate it if (data.tag != cached.tag || dataAttrKeys.sort().join() != Object.keys(cached.attrs).sort().join() || data.attrs.id != cached.attrs.id || data.attrs.key != cached.attrs.key || (m.redraw.strategy() == "all" && (!cached.configContext || cached.configContext.retain !== true)) || (m.redraw.strategy() == "diff" && cached.configContext && cached.configContext.retain === false)) { if (cached.nodes.length) clear(cached.nodes); if (cached.configContext && typeof cached.configContext.onunload === FUNCTION) cached.configContext.onunload() if (cached.controllers) { for (var i = 0, controller; controller = cached.controllers[i]; i++) { if (typeof controller.onunload === FUNCTION) controller.onunload({preventDefault: noop}) } } } if (type.call(data.tag) != STRING) return; var node, isNew = cached.nodes.length === 0; if (data.attrs.xmlns) namespace = data.attrs.xmlns; else if (data.tag === "svg") namespace = "http://www.w3.org/2000/svg"; else if (data.tag === "math") namespace = "http://www.w3.org/1998/Math/MathML"; if (isNew) { if (data.attrs.is) node = namespace === undefined ? $document.createElement(data.tag, data.attrs.is) : $document.createElementNS(namespace, data.tag, data.attrs.is); else node = namespace === undefined ? $document.createElement(data.tag) : $document.createElementNS(namespace, data.tag); cached = { tag: data.tag, //set attributes first, then create children attrs: hasKeys ? setAttributes(node, data.tag, data.attrs, {}, namespace) : data.attrs, children: data.children != null && data.children.length > 0 ? build(node, data.tag, undefined, undefined, data.children, cached.children, true, 0, data.attrs.contenteditable ? node : editable, namespace, configs) : data.children, nodes: [node] }; if (controllers.length) { cached.views = views cached.controllers = controllers for (var i = 0, controller; controller = controllers[i]; i++) { if (controller.onunload && controller.onunload.$old) controller.onunload = controller.onunload.$old if (pendingRequests && controller.onunload) { var onunload = controller.onunload controller.onunload = noop controller.onunload.$old = onunload } } } if (cached.children && !cached.children.nodes) cached.children.nodes = []; //edge case: setting value on