+
+
+ it('should auto compile', function() {
+ expect(element('div[compile]').text()).toBe('Hello Angular');
+ input('html').enter('{{name}}!');
+ expect(element('div[compile]').text()).toBe('Angular!');
+ });
+
+
+
+ *
+ *
+ * @param {string|DOMElement} element Element or HTML string to compile into a template function.
+ * @param {function(angular.Scope[, cloneAttachFn]} transclude function available to directives.
+ * @param {number} maxPriority only apply directives lower then given priority (Only effects the
+ * root element(s), not their children)
+ * @returns {function(scope[, cloneAttachFn])} a link function which is used to bind template
+ * (a DOM element/tree) to a scope. Where:
+ *
+ * * `scope` - A {@link ng.$rootScope.Scope Scope} to bind to.
+ * * `cloneAttachFn` - If `cloneAttachFn` is provided, then the link function will clone the
+ * `template` and call the `cloneAttachFn` function allowing the caller to attach the
+ * cloned elements to the DOM document at the appropriate place. The `cloneAttachFn` is
+ * called as: `cloneAttachFn(clonedElement, scope)` where:
+ *
+ * * `clonedElement` - is a clone of the original `element` passed into the compiler.
+ * * `scope` - is the current scope with which the linking function is working with.
+ *
+ * Calling the linking function returns the element of the template. It is either the original element
+ * passed in, or the clone of the element if the `cloneAttachFn` is provided.
+ *
+ * After linking the view is not updated until after a call to $digest which typically is done by
+ * Angular automatically.
+ *
+ * If you need access to the bound view, there are two ways to do it:
+ *
+ * - If you are not asking the linking function to clone the template, create the DOM element(s)
+ * before you send them to the compiler and keep this reference around.
+ *
+ * var element = $compile('
{{total}}
')(scope);
+ *
+ *
+ * - if on the other hand, you need the element to be cloned, the view reference from the original
+ * example would not point to the clone, but rather to the original template that was cloned. In
+ * this case, you can access the clone via the cloneAttachFn:
+ *
+ * var templateHTML = angular.element('
{{total}}
'),
+ * scope = ....;
+ *
+ * var clonedElement = $compile(templateHTML)(scope, function(clonedElement, scope) {
+ * //attach the clone to DOM document at the right place
+ * });
+ *
+ * //now we have reference to the cloned DOM via `clone`
+ *
+ *
+ *
+ * For information on how the compiler works, see the
+ * {@link guide/compiler Angular HTML Compiler} section of the Developer Guide.
+ */
+
+
+/**
+ * @ngdoc service
+ * @name ng.$compileProvider
+ * @function
+ *
+ * @description
+ */
+$CompileProvider.$inject = ['$provide'];
+function $CompileProvider($provide) {
+ var hasDirectives = {},
+ Suffix = 'Directive',
+ COMMENT_DIRECTIVE_REGEXP = /^\s*directive\:\s*([\d\w\-_]+)\s+(.*)$/,
+ CLASS_DIRECTIVE_REGEXP = /(([\d\w\-_]+)(?:\:([^;]+))?;?)/,
+ MULTI_ROOT_TEMPLATE_ERROR = 'Template must have exactly one root element. was: ',
+ urlSanitizationWhitelist = /^\s*(https?|ftp|mailto|file):/;
+
+
+ /**
+ * @ngdoc function
+ * @name ng.$compileProvider#directive
+ * @methodOf ng.$compileProvider
+ * @function
+ *
+ * @description
+ * Register a new directives with the compiler.
+ *
+ * @param {string} name Name of the directive in camel-case. (ie ngBind which will match as
+ * ng-bind).
+ * @param {function} directiveFactory An injectable directive factroy function. See {@link guide/directive} for more
+ * info.
+ * @returns {ng.$compileProvider} Self for chaining.
+ */
+ this.directive = function registerDirective(name, directiveFactory) {
+ if (isString(name)) {
+ assertArg(directiveFactory, 'directive');
+ if (!hasDirectives.hasOwnProperty(name)) {
+ hasDirectives[name] = [];
+ $provide.factory(name + Suffix, ['$injector', '$exceptionHandler',
+ function($injector, $exceptionHandler) {
+ var directives = [];
+ forEach(hasDirectives[name], function(directiveFactory) {
+ try {
+ var directive = $injector.invoke(directiveFactory);
+ if (isFunction(directive)) {
+ directive = { compile: valueFn(directive) };
+ } else if (!directive.compile && directive.link) {
+ directive.compile = valueFn(directive.link);
+ }
+ directive.priority = directive.priority || 0;
+ directive.name = directive.name || name;
+ directive.require = directive.require || (directive.controller && directive.name);
+ directive.restrict = directive.restrict || 'A';
+ directives.push(directive);
+ } catch (e) {
+ $exceptionHandler(e);
+ }
+ });
+ return directives;
+ }]);
+ }
+ hasDirectives[name].push(directiveFactory);
+ } else {
+ forEach(name, reverseParams(registerDirective));
+ }
+ return this;
+ };
+
+
+ /**
+ * @ngdoc function
+ * @name ng.$compileProvider#urlSanitizationWhitelist
+ * @methodOf ng.$compileProvider
+ * @function
+ *
+ * @description
+ * Retrieves or overrides the default regular expression that is used for whitelisting of safe
+ * urls during a[href] sanitization.
+ *
+ * The sanitization is a security measure aimed at prevent XSS attacks via html links.
+ *
+ * Any url about to be assigned to a[href] via data-binding is first normalized and turned into an
+ * absolute url. Afterwards the url is matched against the `urlSanitizationWhitelist` regular
+ * expression. If a match is found the original url is written into the dom. Otherwise the
+ * absolute url is prefixed with `'unsafe:'` string and only then it is written into the DOM.
+ *
+ * @param {RegExp=} regexp New regexp to whitelist urls with.
+ * @returns {RegExp|ng.$compileProvider} Current RegExp if called without value or self for
+ * chaining otherwise.
+ */
+ this.urlSanitizationWhitelist = function(regexp) {
+ if (isDefined(regexp)) {
+ urlSanitizationWhitelist = regexp;
+ return this;
+ }
+ return urlSanitizationWhitelist;
+ };
+
+
+ this.$get = [
+ '$injector', '$interpolate', '$exceptionHandler', '$http', '$templateCache', '$parse',
+ '$controller', '$rootScope', '$document',
+ function($injector, $interpolate, $exceptionHandler, $http, $templateCache, $parse,
+ $controller, $rootScope, $document) {
+
+ var Attributes = function(element, attr) {
+ this.$$element = element;
+ this.$attr = attr || {};
+ };
+
+ Attributes.prototype = {
+ $normalize: directiveNormalize,
+
+
+ /**
+ * Set a normalized attribute on the element in a way such that all directives
+ * can share the attribute. This function properly handles boolean attributes.
+ * @param {string} key Normalized key. (ie ngAttribute)
+ * @param {string|boolean} value The value to set. If `null` attribute will be deleted.
+ * @param {boolean=} writeAttr If false, does not write the value to DOM element attribute.
+ * Defaults to true.
+ * @param {string=} attrName Optional none normalized name. Defaults to key.
+ */
+ $set: function(key, value, writeAttr, attrName) {
+ var booleanKey = getBooleanAttrName(this.$$element[0], key),
+ $$observers = this.$$observers,
+ normalizedVal;
+
+ if (booleanKey) {
+ this.$$element.prop(key, value);
+ attrName = booleanKey;
+ }
+
+ this[key] = value;
+
+ // translate normalized key to actual key
+ if (attrName) {
+ this.$attr[key] = attrName;
+ } else {
+ attrName = this.$attr[key];
+ if (!attrName) {
+ this.$attr[key] = attrName = snake_case(key, '-');
+ }
+ }
+
+
+ // sanitize a[href] values
+ if (nodeName_(this.$$element[0]) === 'A' && key === 'href') {
+ urlSanitizationNode.setAttribute('href', value);
+
+ // href property always returns normalized absolute url, so we can match against that
+ normalizedVal = urlSanitizationNode.href;
+ if (!normalizedVal.match(urlSanitizationWhitelist)) {
+ this[key] = value = 'unsafe:' + normalizedVal;
+ }
+ }
+
+
+ if (writeAttr !== false) {
+ if (value === null || value === undefined) {
+ this.$$element.removeAttr(attrName);
+ } else {
+ this.$$element.attr(attrName, value);
+ }
+ }
+
+ // fire observers
+ $$observers && forEach($$observers[key], function(fn) {
+ try {
+ fn(value);
+ } catch (e) {
+ $exceptionHandler(e);
+ }
+ });
+ },
+
+
+ /**
+ * Observe an interpolated attribute.
+ * The observer will never be called, if given attribute is not interpolated.
+ *
+ * @param {string} key Normalized key. (ie ngAttribute) .
+ * @param {function(*)} fn Function that will be called whenever the attribute value changes.
+ * @returns {function(*)} the `fn` Function passed in.
+ */
+ $observe: function(key, fn) {
+ var attrs = this,
+ $$observers = (attrs.$$observers || (attrs.$$observers = {})),
+ listeners = ($$observers[key] || ($$observers[key] = []));
+
+ listeners.push(fn);
+ $rootScope.$evalAsync(function() {
+ if (!listeners.$$inter) {
+ // no one registered attribute interpolation function, so lets call it manually
+ fn(attrs[key]);
+ }
+ });
+ return fn;
+ }
+ };
+
+ var urlSanitizationNode = $document[0].createElement('a'),
+ startSymbol = $interpolate.startSymbol(),
+ endSymbol = $interpolate.endSymbol(),
+ denormalizeTemplate = (startSymbol == '{{' || endSymbol == '}}')
+ ? identity
+ : function denormalizeTemplate(template) {
+ return template.replace(/\{\{/g, startSymbol).replace(/}}/g, endSymbol);
+ };
+
+
+ return compile;
+
+ //================================
+
+ function compile($compileNodes, transcludeFn, maxPriority) {
+ if (!($compileNodes instanceof jqLite)) {
+ // jquery always rewraps, whereas we need to preserve the original selector so that we can modify it.
+ $compileNodes = jqLite($compileNodes);
+ }
+ // We can not compile top level text elements since text nodes can be merged and we will
+ // not be able to attach scope data to them, so we will wrap them in
+ forEach($compileNodes, function(node, index){
+ if (node.nodeType == 3 /* text node */ && node.nodeValue.match(/\S+/) /* non-empty */ ) {
+ $compileNodes[index] = jqLite(node).wrap('').parent()[0];
+ }
+ });
+ var compositeLinkFn = compileNodes($compileNodes, transcludeFn, $compileNodes, maxPriority);
+ return function publicLinkFn(scope, cloneConnectFn){
+ assertArg(scope, 'scope');
+ // important!!: we must call our jqLite.clone() since the jQuery one is trying to be smart
+ // and sometimes changes the structure of the DOM.
+ var $linkNode = cloneConnectFn
+ ? JQLitePrototype.clone.call($compileNodes) // IMPORTANT!!!
+ : $compileNodes;
+
+ // Attach scope only to non-text nodes.
+ for(var i = 0, ii = $linkNode.length; i
+ addDirective(directives,
+ directiveNormalize(nodeName_(node).toLowerCase()), 'E', maxPriority);
+
+ // iterate over the attributes
+ for (var attr, name, nName, value, nAttrs = node.attributes,
+ j = 0, jj = nAttrs && nAttrs.length; j < jj; j++) {
+ attr = nAttrs[j];
+ if (attr.specified) {
+ name = attr.name;
+ nName = directiveNormalize(name.toLowerCase());
+ attrsMap[nName] = name;
+ attrs[nName] = value = trim((msie && name == 'href')
+ ? decodeURIComponent(node.getAttribute(name, 2))
+ : attr.value);
+ if (getBooleanAttrName(node, nName)) {
+ attrs[nName] = true; // presence means true
+ }
+ addAttrInterpolateDirective(node, directives, value, nName);
+ addDirective(directives, nName, 'A', maxPriority);
+ }
+ }
+
+ // use class as directive
+ className = node.className;
+ if (isString(className) && className !== '') {
+ while (match = CLASS_DIRECTIVE_REGEXP.exec(className)) {
+ nName = directiveNormalize(match[2]);
+ if (addDirective(directives, nName, 'C', maxPriority)) {
+ attrs[nName] = trim(match[3]);
+ }
+ className = className.substr(match.index + match[0].length);
+ }
+ }
+ break;
+ case 3: /* Text Node */
+ addTextInterpolateDirective(directives, node.nodeValue);
+ break;
+ case 8: /* Comment */
+ try {
+ match = COMMENT_DIRECTIVE_REGEXP.exec(node.nodeValue);
+ if (match) {
+ nName = directiveNormalize(match[1]);
+ if (addDirective(directives, nName, 'M', maxPriority)) {
+ attrs[nName] = trim(match[2]);
+ }
+ }
+ } catch (e) {
+ // turns out that under some circumstances IE9 throws errors when one attempts to read comment's node value.
+ // Just ignore it and continue. (Can't seem to reproduce in test case.)
+ }
+ break;
+ }
+
+ directives.sort(byPriority);
+ return directives;
+ }
+
+
+ /**
+ * Once the directives have been collected, their compile functions are executed. This method
+ * is responsible for inlining directive templates as well as terminating the application
+ * of the directives if the terminal directive has been reached.
+ *
+ * @param {Array} directives Array of collected directives to execute their compile function.
+ * this needs to be pre-sorted by priority order.
+ * @param {Node} compileNode The raw DOM node to apply the compile functions to
+ * @param {Object} templateAttrs The shared attribute function
+ * @param {function(angular.Scope[, cloneAttachFn]} transcludeFn A linking function, where the
+ * scope argument is auto-generated to the new child of the transcluded parent scope.
+ * @param {JQLite} jqCollection If we are working on the root of the compile tree then this
+ * argument has the root jqLite array so that we can replace nodes on it.
+ * @returns linkFn
+ */
+ function applyDirectivesToNode(directives, compileNode, templateAttrs, transcludeFn, jqCollection) {
+ var terminalPriority = -Number.MAX_VALUE,
+ preLinkFns = [],
+ postLinkFns = [],
+ newScopeDirective = null,
+ newIsolateScopeDirective = null,
+ templateDirective = null,
+ $compileNode = templateAttrs.$$element = jqLite(compileNode),
+ directive,
+ directiveName,
+ $template,
+ transcludeDirective,
+ childTranscludeFn = transcludeFn,
+ controllerDirectives,
+ linkFn,
+ directiveValue;
+
+ // executes all directives on the current element
+ for(var i = 0, ii = directives.length; i < ii; i++) {
+ directive = directives[i];
+ $template = undefined;
+
+ if (terminalPriority > directive.priority) {
+ break; // prevent further processing of directives
+ }
+
+ if (directiveValue = directive.scope) {
+ assertNoDuplicate('isolated scope', newIsolateScopeDirective, directive, $compileNode);
+ if (isObject(directiveValue)) {
+ safeAddClass($compileNode, 'ng-isolate-scope');
+ newIsolateScopeDirective = directive;
+ }
+ safeAddClass($compileNode, 'ng-scope');
+ newScopeDirective = newScopeDirective || directive;
+ }
+
+ directiveName = directive.name;
+
+ if (directiveValue = directive.controller) {
+ controllerDirectives = controllerDirectives || {};
+ assertNoDuplicate("'" + directiveName + "' controller",
+ controllerDirectives[directiveName], directive, $compileNode);
+ controllerDirectives[directiveName] = directive;
+ }
+
+ if (directiveValue = directive.transclude) {
+ assertNoDuplicate('transclusion', transcludeDirective, directive, $compileNode);
+ transcludeDirective = directive;
+ terminalPriority = directive.priority;
+ if (directiveValue == 'element') {
+ $template = jqLite(compileNode);
+ $compileNode = templateAttrs.$$element =
+ jqLite(document.createComment(' ' + directiveName + ': ' + templateAttrs[directiveName] + ' '));
+ compileNode = $compileNode[0];
+ replaceWith(jqCollection, jqLite($template[0]), compileNode);
+ childTranscludeFn = compile($template, transcludeFn, terminalPriority);
+ } else {
+ $template = jqLite(JQLiteClone(compileNode)).contents();
+ $compileNode.html(''); // clear contents
+ childTranscludeFn = compile($template, transcludeFn);
+ }
+ }
+
+ if ((directiveValue = directive.template)) {
+ assertNoDuplicate('template', templateDirective, directive, $compileNode);
+ templateDirective = directive;
+ directiveValue = denormalizeTemplate(directiveValue);
+
+ if (directive.replace) {
+ $template = jqLite('
' +
+ trim(directiveValue) +
+ '
').contents();
+ compileNode = $template[0];
+
+ if ($template.length != 1 || compileNode.nodeType !== 1) {
+ throw new Error(MULTI_ROOT_TEMPLATE_ERROR + directiveValue);
+ }
+
+ replaceWith(jqCollection, $compileNode, compileNode);
+
+ var newTemplateAttrs = {$attr: {}};
+
+ // combine directives from the original node and from the template:
+ // - take the array of directives for this element
+ // - split it into two parts, those that were already applied and those that weren't
+ // - collect directives from the template, add them to the second group and sort them
+ // - append the second group with new directives to the first group
+ directives = directives.concat(
+ collectDirectives(
+ compileNode,
+ directives.splice(i + 1, directives.length - (i + 1)),
+ newTemplateAttrs
+ )
+ );
+ mergeTemplateAttributes(templateAttrs, newTemplateAttrs);
+
+ ii = directives.length;
+ } else {
+ $compileNode.html(directiveValue);
+ }
+ }
+
+ if (directive.templateUrl) {
+ assertNoDuplicate('template', templateDirective, directive, $compileNode);
+ templateDirective = directive;
+ nodeLinkFn = compileTemplateUrl(directives.splice(i, directives.length - i),
+ nodeLinkFn, $compileNode, templateAttrs, jqCollection, directive.replace,
+ childTranscludeFn);
+ ii = directives.length;
+ } else if (directive.compile) {
+ try {
+ linkFn = directive.compile($compileNode, templateAttrs, childTranscludeFn);
+ if (isFunction(linkFn)) {
+ addLinkFns(null, linkFn);
+ } else if (linkFn) {
+ addLinkFns(linkFn.pre, linkFn.post);
+ }
+ } catch (e) {
+ $exceptionHandler(e, startingTag($compileNode));
+ }
+ }
+
+ if (directive.terminal) {
+ nodeLinkFn.terminal = true;
+ terminalPriority = Math.max(terminalPriority, directive.priority);
+ }
+
+ }
+
+ nodeLinkFn.scope = newScopeDirective && newScopeDirective.scope;
+ nodeLinkFn.transclude = transcludeDirective && childTranscludeFn;
+
+ // might be normal or delayed nodeLinkFn depending on if templateUrl is present
+ return nodeLinkFn;
+
+ ////////////////////
+
+ function addLinkFns(pre, post) {
+ if (pre) {
+ pre.require = directive.require;
+ preLinkFns.push(pre);
+ }
+ if (post) {
+ post.require = directive.require;
+ postLinkFns.push(post);
+ }
+ }
+
+
+ function getControllers(require, $element) {
+ var value, retrievalMethod = 'data', optional = false;
+ if (isString(require)) {
+ while((value = require.charAt(0)) == '^' || value == '?') {
+ require = require.substr(1);
+ if (value == '^') {
+ retrievalMethod = 'inheritedData';
+ }
+ optional = optional || value == '?';
+ }
+ value = $element[retrievalMethod]('$' + require + 'Controller');
+ if (!value && !optional) {
+ throw Error("No controller: " + require);
+ }
+ return value;
+ } else if (isArray(require)) {
+ value = [];
+ forEach(require, function(require) {
+ value.push(getControllers(require, $element));
+ });
+ }
+ return value;
+ }
+
+
+ function nodeLinkFn(childLinkFn, scope, linkNode, $rootElement, boundTranscludeFn) {
+ var attrs, $element, i, ii, linkFn, controller;
+
+ if (compileNode === linkNode) {
+ attrs = templateAttrs;
+ } else {
+ attrs = shallowCopy(templateAttrs, new Attributes(jqLite(linkNode), templateAttrs.$attr));
+ }
+ $element = attrs.$$element;
+
+ if (newIsolateScopeDirective) {
+ var LOCAL_REGEXP = /^\s*([@=&])\s*(\w*)\s*$/;
+
+ var parentScope = scope.$parent || scope;
+
+ forEach(newIsolateScopeDirective.scope, function(definiton, scopeName) {
+ var match = definiton.match(LOCAL_REGEXP) || [],
+ attrName = match[2]|| scopeName,
+ mode = match[1], // @, =, or &
+ lastValue,
+ parentGet, parentSet;
+
+ scope.$$isolateBindings[scopeName] = mode + attrName;
+
+ switch (mode) {
+
+ case '@': {
+ attrs.$observe(attrName, function(value) {
+ scope[scopeName] = value;
+ });
+ attrs.$$observers[attrName].$$scope = parentScope;
+ break;
+ }
+
+ case '=': {
+ parentGet = $parse(attrs[attrName]);
+ parentSet = parentGet.assign || function() {
+ // reset the change, or we will throw this exception on every $digest
+ lastValue = scope[scopeName] = parentGet(parentScope);
+ throw Error(NON_ASSIGNABLE_MODEL_EXPRESSION + attrs[attrName] +
+ ' (directive: ' + newIsolateScopeDirective.name + ')');
+ };
+ lastValue = scope[scopeName] = parentGet(parentScope);
+ scope.$watch(function parentValueWatch() {
+ var parentValue = parentGet(parentScope);
+
+ if (parentValue !== scope[scopeName]) {
+ // we are out of sync and need to copy
+ if (parentValue !== lastValue) {
+ // parent changed and it has precedence
+ lastValue = scope[scopeName] = parentValue;
+ } else {
+ // if the parent can be assigned then do so
+ parentSet(parentScope, parentValue = lastValue = scope[scopeName]);
+ }
+ }
+ return parentValue;
+ });
+ break;
+ }
+
+ case '&': {
+ parentGet = $parse(attrs[attrName]);
+ scope[scopeName] = function(locals) {
+ return parentGet(parentScope, locals);
+ };
+ break;
+ }
+
+ default: {
+ throw Error('Invalid isolate scope definition for directive ' +
+ newIsolateScopeDirective.name + ': ' + definiton);
+ }
+ }
+ });
+ }
+
+ if (controllerDirectives) {
+ forEach(controllerDirectives, function(directive) {
+ var locals = {
+ $scope: scope,
+ $element: $element,
+ $attrs: attrs,
+ $transclude: boundTranscludeFn
+ };
+
+ controller = directive.controller;
+ if (controller == '@') {
+ controller = attrs[directive.name];
+ }
+
+ $element.data(
+ '$' + directive.name + 'Controller',
+ $controller(controller, locals));
+ });
+ }
+
+ // PRELINKING
+ for(i = 0, ii = preLinkFns.length; i < ii; i++) {
+ try {
+ linkFn = preLinkFns[i];
+ linkFn(scope, $element, attrs,
+ linkFn.require && getControllers(linkFn.require, $element));
+ } catch (e) {
+ $exceptionHandler(e, startingTag($element));
+ }
+ }
+
+ // RECURSION
+ childLinkFn && childLinkFn(scope, linkNode.childNodes, undefined, boundTranscludeFn);
+
+ // POSTLINKING
+ for(i = 0, ii = postLinkFns.length; i < ii; i++) {
+ try {
+ linkFn = postLinkFns[i];
+ linkFn(scope, $element, attrs,
+ linkFn.require && getControllers(linkFn.require, $element));
+ } catch (e) {
+ $exceptionHandler(e, startingTag($element));
+ }
+ }
+ }
+ }
+
+
+ /**
+ * looks up the directive and decorates it with exception handling and proper parameters. We
+ * call this the boundDirective.
+ *
+ * @param {string} name name of the directive to look up.
+ * @param {string} location The directive must be found in specific format.
+ * String containing any of theses characters:
+ *
+ * * `E`: element name
+ * * `A': attribute
+ * * `C`: class
+ * * `M`: comment
+ * @returns true if directive was added.
+ */
+ function addDirective(tDirectives, name, location, maxPriority) {
+ var match = false;
+ if (hasDirectives.hasOwnProperty(name)) {
+ for(var directive, directives = $injector.get(name + Suffix),
+ i = 0, ii = directives.length; i directive.priority) &&
+ directive.restrict.indexOf(location) != -1) {
+ tDirectives.push(directive);
+ match = true;
+ }
+ } catch(e) { $exceptionHandler(e); }
+ }
+ }
+ return match;
+ }
+
+
+ /**
+ * When the element is replaced with HTML template then the new attributes
+ * on the template need to be merged with the existing attributes in the DOM.
+ * The desired effect is to have both of the attributes present.
+ *
+ * @param {object} dst destination attributes (original DOM)
+ * @param {object} src source attributes (from the directive template)
+ */
+ function mergeTemplateAttributes(dst, src) {
+ var srcAttr = src.$attr,
+ dstAttr = dst.$attr,
+ $element = dst.$$element;
+
+ // reapply the old attributes to the new element
+ forEach(dst, function(value, key) {
+ if (key.charAt(0) != '$') {
+ if (src[key]) {
+ value += (key === 'style' ? ';' : ' ') + src[key];
+ }
+ dst.$set(key, value, true, srcAttr[key]);
+ }
+ });
+
+ // copy the new attributes on the old attrs object
+ forEach(src, function(value, key) {
+ if (key == 'class') {
+ safeAddClass($element, value);
+ dst['class'] = (dst['class'] ? dst['class'] + ' ' : '') + value;
+ } else if (key == 'style') {
+ $element.attr('style', $element.attr('style') + ';' + value);
+ } else if (key.charAt(0) != '$' && !dst.hasOwnProperty(key)) {
+ dst[key] = value;
+ dstAttr[key] = srcAttr[key];
+ }
+ });
+ }
+
+
+ function compileTemplateUrl(directives, beforeTemplateNodeLinkFn, $compileNode, tAttrs,
+ $rootElement, replace, childTranscludeFn) {
+ var linkQueue = [],
+ afterTemplateNodeLinkFn,
+ afterTemplateChildLinkFn,
+ beforeTemplateCompileNode = $compileNode[0],
+ origAsyncDirective = directives.shift(),
+ // The fact that we have to copy and patch the directive seems wrong!
+ derivedSyncDirective = extend({}, origAsyncDirective, {
+ controller: null, templateUrl: null, transclude: null, scope: null
+ });
+
+ $compileNode.html('');
+
+ $http.get(origAsyncDirective.templateUrl, {cache: $templateCache}).
+ success(function(content) {
+ var compileNode, tempTemplateAttrs, $template;
+
+ content = denormalizeTemplate(content);
+
+ if (replace) {
+ $template = jqLite('
' + trim(content) + '
').contents();
+ compileNode = $template[0];
+
+ if ($template.length != 1 || compileNode.nodeType !== 1) {
+ throw new Error(MULTI_ROOT_TEMPLATE_ERROR + content);
+ }
+
+ tempTemplateAttrs = {$attr: {}};
+ replaceWith($rootElement, $compileNode, compileNode);
+ collectDirectives(compileNode, directives, tempTemplateAttrs);
+ mergeTemplateAttributes(tAttrs, tempTemplateAttrs);
+ } else {
+ compileNode = beforeTemplateCompileNode;
+ $compileNode.html(content);
+ }
+
+ directives.unshift(derivedSyncDirective);
+ afterTemplateNodeLinkFn = applyDirectivesToNode(directives, compileNode, tAttrs, childTranscludeFn);
+ afterTemplateChildLinkFn = compileNodes($compileNode[0].childNodes, childTranscludeFn);
+
+
+ while(linkQueue.length) {
+ var controller = linkQueue.pop(),
+ linkRootElement = linkQueue.pop(),
+ beforeTemplateLinkNode = linkQueue.pop(),
+ scope = linkQueue.pop(),
+ linkNode = compileNode;
+
+ if (beforeTemplateLinkNode !== beforeTemplateCompileNode) {
+ // it was cloned therefore we have to clone as well.
+ linkNode = JQLiteClone(compileNode);
+ replaceWith(linkRootElement, jqLite(beforeTemplateLinkNode), linkNode);
+ }
+
+ afterTemplateNodeLinkFn(function() {
+ beforeTemplateNodeLinkFn(afterTemplateChildLinkFn, scope, linkNode, $rootElement, controller);
+ }, scope, linkNode, $rootElement, controller);
+ }
+ linkQueue = null;
+ }).
+ error(function(response, code, headers, config) {
+ throw Error('Failed to load template: ' + config.url);
+ });
+
+ return function delayedNodeLinkFn(ignoreChildLinkFn, scope, node, rootElement, controller) {
+ if (linkQueue) {
+ linkQueue.push(scope);
+ linkQueue.push(node);
+ linkQueue.push(rootElement);
+ linkQueue.push(controller);
+ } else {
+ afterTemplateNodeLinkFn(function() {
+ beforeTemplateNodeLinkFn(afterTemplateChildLinkFn, scope, node, rootElement, controller);
+ }, scope, node, rootElement, controller);
+ }
+ };
+ }
+
+
+ /**
+ * Sorting function for bound directives.
+ */
+ function byPriority(a, b) {
+ return b.priority - a.priority;
+ }
+
+
+ function assertNoDuplicate(what, previousDirective, directive, element) {
+ if (previousDirective) {
+ throw Error('Multiple directives [' + previousDirective.name + ', ' +
+ directive.name + '] asking for ' + what + ' on: ' + startingTag(element));
+ }
+ }
+
+
+ function addTextInterpolateDirective(directives, text) {
+ var interpolateFn = $interpolate(text, true);
+ if (interpolateFn) {
+ directives.push({
+ priority: 0,
+ compile: valueFn(function textInterpolateLinkFn(scope, node) {
+ var parent = node.parent(),
+ bindings = parent.data('$binding') || [];
+ bindings.push(interpolateFn);
+ safeAddClass(parent.data('$binding', bindings), 'ng-binding');
+ scope.$watch(interpolateFn, function interpolateFnWatchAction(value) {
+ node[0].nodeValue = value;
+ });
+ })
+ });
+ }
+ }
+
+
+ function addAttrInterpolateDirective(node, directives, value, name) {
+ var interpolateFn = $interpolate(value, true);
+
+ // no interpolation found -> ignore
+ if (!interpolateFn) return;
+
+
+ directives.push({
+ priority: 100,
+ compile: valueFn(function attrInterpolateLinkFn(scope, element, attr) {
+ var $$observers = (attr.$$observers || (attr.$$observers = {}));
+
+ if (name === 'class') {
+ // we need to interpolate classes again, in the case the element was replaced
+ // and therefore the two class attrs got merged - we want to interpolate the result
+ interpolateFn = $interpolate(attr[name], true);
+ }
+
+ attr[name] = undefined;
+ ($$observers[name] || ($$observers[name] = [])).$$inter = true;
+ (attr.$$observers && attr.$$observers[name].$$scope || scope).
+ $watch(interpolateFn, function interpolateFnWatchAction(value) {
+ attr.$set(name, value);
+ });
+ })
+ });
+ }
+
+
+ /**
+ * This is a special jqLite.replaceWith, which can replace items which
+ * have no parents, provided that the containing jqLite collection is provided.
+ *
+ * @param {JqLite=} $rootElement The root of the compile tree. Used so that we can replace nodes
+ * in the root of the tree.
+ * @param {JqLite} $element The jqLite element which we are going to replace. We keep the shell,
+ * but replace its DOM node reference.
+ * @param {Node} newNode The new DOM node.
+ */
+ function replaceWith($rootElement, $element, newNode) {
+ var oldNode = $element[0],
+ parent = oldNode.parentNode,
+ i, ii;
+
+ if ($rootElement) {
+ for(i = 0, ii = $rootElement.length; i < ii; i++) {
+ if ($rootElement[i] == oldNode) {
+ $rootElement[i] = newNode;
+ break;
+ }
+ }
+ }
+
+ if (parent) {
+ parent.replaceChild(newNode, oldNode);
+ }
+
+ newNode[jqLite.expando] = oldNode[jqLite.expando];
+ $element[0] = newNode;
+ }
+ }];
+}
+
+var PREFIX_REGEXP = /^(x[\:\-_]|data[\:\-_])/i;
+/**
+ * Converts all accepted directives format into proper directive name.
+ * All of these will become 'myDirective':
+ * my:DiRective
+ * my-directive
+ * x-my-directive
+ * data-my:directive
+ *
+ * Also there is special case for Moz prefix starting with upper case letter.
+ * @param name Name to normalize
+ */
+function directiveNormalize(name) {
+ return camelCase(name.replace(PREFIX_REGEXP, ''));
+}
+
+/**
+ * @ngdoc object
+ * @name ng.$compile.directive.Attributes
+ * @description
+ *
+ * A shared object between directive compile / linking functions which contains normalized DOM element
+ * attributes. The the values reflect current binding state `{{ }}`. The normalization is needed
+ * since all of these are treated as equivalent in Angular:
+ *
+ *
+ */
+
+/**
+ * @ngdoc property
+ * @name ng.$compile.directive.Attributes#$attr
+ * @propertyOf ng.$compile.directive.Attributes
+ * @returns {object} A map of DOM element attribute names to the normalized name. This is
+ * needed to do reverse lookup from normalized name back to actual name.
+ */
+
+
+/**
+ * @ngdoc function
+ * @name ng.$compile.directive.Attributes#$set
+ * @methodOf ng.$compile.directive.Attributes
+ * @function
+ *
+ * @description
+ * Set DOM element attribute value.
+ *
+ *
+ * @param {string} name Normalized element attribute name of the property to modify. The name is
+ * revers translated using the {@link ng.$compile.directive.Attributes#$attr $attr}
+ * property to the original name.
+ * @param {string} value Value to set the attribute to.
+ */
+
+
+
+/**
+ * Closure compiler type information
+ */
+
+function nodesetLinkingFn(
+ /* angular.Scope */ scope,
+ /* NodeList */ nodeList,
+ /* Element */ rootElement,
+ /* function(Function) */ boundTranscludeFn
+){}
+
+function directiveLinkingFn(
+ /* nodesetLinkingFn */ nodesetLinkingFn,
+ /* angular.Scope */ scope,
+ /* Node */ node,
+ /* Element */ rootElement,
+ /* function(Function) */ boundTranscludeFn
+){}
+
+/**
+ * @ngdoc object
+ * @name ng.$controllerProvider
+ * @description
+ * The {@link ng.$controller $controller service} is used by Angular to create new
+ * controllers.
+ *
+ * This provider allows controller registration via the
+ * {@link ng.$controllerProvider#register register} method.
+ */
+function $ControllerProvider() {
+ var controllers = {};
+
+
+ /**
+ * @ngdoc function
+ * @name ng.$controllerProvider#register
+ * @methodOf ng.$controllerProvider
+ * @param {string} name Controller name
+ * @param {Function|Array} constructor Controller constructor fn (optionally decorated with DI
+ * annotations in the array notation).
+ */
+ this.register = function(name, constructor) {
+ if (isObject(name)) {
+ extend(controllers, name)
+ } else {
+ controllers[name] = constructor;
+ }
+ };
+
+
+ this.$get = ['$injector', '$window', function($injector, $window) {
+
+ /**
+ * @ngdoc function
+ * @name ng.$controller
+ * @requires $injector
+ *
+ * @param {Function|string} constructor If called with a function then it's considered to be the
+ * controller constructor function. Otherwise it's considered to be a string which is used
+ * to retrieve the controller constructor using the following steps:
+ *
+ * * check if a controller with given name is registered via `$controllerProvider`
+ * * check if evaluating the string on the current scope returns a constructor
+ * * check `window[constructor]` on the global `window` object
+ *
+ * @param {Object} locals Injection locals for Controller.
+ * @return {Object} Instance of given controller.
+ *
+ * @description
+ * `$controller` service is responsible for instantiating controllers.
+ *
+ * It's just a simple call to {@link AUTO.$injector $injector}, but extracted into
+ * a service, so that one can override this service with {@link https://gist.github.com/1649788
+ * BC version}.
+ */
+ return function(constructor, locals) {
+ if(isString(constructor)) {
+ var name = constructor;
+ constructor = controllers.hasOwnProperty(name)
+ ? controllers[name]
+ : getter(locals.$scope, name, true) || getter($window, name, true);
+
+ assertArgFn(constructor, name, true);
+ }
+
+ return $injector.instantiate(constructor, locals);
+ };
+ }];
+}
+
+/**
+ * @ngdoc object
+ * @name ng.$document
+ * @requires $window
+ *
+ * @description
+ * A {@link angular.element jQuery (lite)}-wrapped reference to the browser's `window.document`
+ * element.
+ */
+function $DocumentProvider(){
+ this.$get = ['$window', function(window){
+ return jqLite(window.document);
+ }];
+}
+
+/**
+ * @ngdoc function
+ * @name ng.$exceptionHandler
+ * @requires $log
+ *
+ * @description
+ * Any uncaught exception in angular expressions is delegated to this service.
+ * The default implementation simply delegates to `$log.error` which logs it into
+ * the browser console.
+ *
+ * In unit tests, if `angular-mocks.js` is loaded, this service is overridden by
+ * {@link ngMock.$exceptionHandler mock $exceptionHandler} which aids in testing.
+ *
+ * @param {Error} exception Exception associated with the error.
+ * @param {string=} cause optional information about the context in which
+ * the error was thrown.
+ *
+ */
+function $ExceptionHandlerProvider() {
+ this.$get = ['$log', function($log) {
+ return function(exception, cause) {
+ $log.error.apply($log, arguments);
+ };
+ }];
+}
+
+/**
+ * @ngdoc object
+ * @name ng.$interpolateProvider
+ * @function
+ *
+ * @description
+ *
+ * Used for configuring the interpolation markup. Defaults to `{{` and `}}`.
+ */
+function $InterpolateProvider() {
+ var startSymbol = '{{';
+ var endSymbol = '}}';
+
+ /**
+ * @ngdoc method
+ * @name ng.$interpolateProvider#startSymbol
+ * @methodOf ng.$interpolateProvider
+ * @description
+ * Symbol to denote start of expression in the interpolated string. Defaults to `{{`.
+ *
+ * @param {string=} value new value to set the starting symbol to.
+ * @returns {string|self} Returns the symbol when used as getter and self if used as setter.
+ */
+ this.startSymbol = function(value){
+ if (value) {
+ startSymbol = value;
+ return this;
+ } else {
+ return startSymbol;
+ }
+ };
+
+ /**
+ * @ngdoc method
+ * @name ng.$interpolateProvider#endSymbol
+ * @methodOf ng.$interpolateProvider
+ * @description
+ * Symbol to denote the end of expression in the interpolated string. Defaults to `}}`.
+ *
+ * @param {string=} value new value to set the ending symbol to.
+ * @returns {string|self} Returns the symbol when used as getter and self if used as setter.
+ */
+ this.endSymbol = function(value){
+ if (value) {
+ endSymbol = value;
+ return this;
+ } else {
+ return endSymbol;
+ }
+ };
+
+
+ this.$get = ['$parse', function($parse) {
+ var startSymbolLength = startSymbol.length,
+ endSymbolLength = endSymbol.length;
+
+ /**
+ * @ngdoc function
+ * @name ng.$interpolate
+ * @function
+ *
+ * @requires $parse
+ *
+ * @description
+ *
+ * Compiles a string with markup into an interpolation function. This service is used by the
+ * HTML {@link ng.$compile $compile} service for data binding. See
+ * {@link ng.$interpolateProvider $interpolateProvider} for configuring the
+ * interpolation markup.
+ *
+ *
+
+ var $interpolate = ...; // injected
+ var exp = $interpolate('Hello {{name}}!');
+ expect(exp({name:'Angular'}).toEqual('Hello Angular!');
+
+ *
+ *
+ * @param {string} text The text with markup to interpolate.
+ * @param {boolean=} mustHaveExpression if set to true then the interpolation string must have
+ * embedded expression in order to return an interpolation function. Strings with no
+ * embedded expression will return null for the interpolation function.
+ * @returns {function(context)} an interpolation function which is used to compute the interpolated
+ * string. The function has these parameters:
+ *
+ * * `context`: an object against which any expressions embedded in the strings are evaluated
+ * against.
+ *
+ */
+ function $interpolate(text, mustHaveExpression) {
+ var startIndex,
+ endIndex,
+ index = 0,
+ parts = [],
+ length = text.length,
+ hasInterpolation = false,
+ fn,
+ exp,
+ concat = [];
+
+ while(index < length) {
+ if ( ((startIndex = text.indexOf(startSymbol, index)) != -1) &&
+ ((endIndex = text.indexOf(endSymbol, startIndex + startSymbolLength)) != -1) ) {
+ (index != startIndex) && parts.push(text.substring(index, startIndex));
+ parts.push(fn = $parse(exp = text.substring(startIndex + startSymbolLength, endIndex)));
+ fn.exp = exp;
+ index = endIndex + endSymbolLength;
+ hasInterpolation = true;
+ } else {
+ // we did not find anything, so we have to add the remainder to the parts array
+ (index != length) && parts.push(text.substring(index));
+ index = length;
+ }
+ }
+
+ if (!(length = parts.length)) {
+ // we added, nothing, must have been an empty string.
+ parts.push('');
+ length = 1;
+ }
+
+ if (!mustHaveExpression || hasInterpolation) {
+ concat.length = length;
+ fn = function(context) {
+ for(var i = 0, ii = length, part; i html5 url
+ } else {
+ return composeProtocolHostPort(match.protocol, match.host, match.port) +
+ pathPrefixFromBase(basePath) + match.hash.substr(hashPrefix.length);
+ }
+}
+
+
+function convertToHashbangUrl(url, basePath, hashPrefix) {
+ var match = matchUrl(url);
+
+ // already hashbang url
+ if (decodeURIComponent(match.path) == basePath && !isUndefined(match.hash) &&
+ match.hash.indexOf(hashPrefix) === 0) {
+ return url;
+ // convert html5 url -> hashbang url
+ } else {
+ var search = match.search && '?' + match.search || '',
+ hash = match.hash && '#' + match.hash || '',
+ pathPrefix = pathPrefixFromBase(basePath),
+ path = match.path.substr(pathPrefix.length);
+
+ if (match.path.indexOf(pathPrefix) !== 0) {
+ throw Error('Invalid url "' + url + '", missing path prefix "' + pathPrefix + '" !');
+ }
+
+ return composeProtocolHostPort(match.protocol, match.host, match.port) + basePath +
+ '#' + hashPrefix + path + search + hash;
+ }
+}
+
+
+/**
+ * LocationUrl represents an url
+ * This object is exposed as $location service when HTML5 mode is enabled and supported
+ *
+ * @constructor
+ * @param {string} url HTML5 url
+ * @param {string} pathPrefix
+ */
+function LocationUrl(url, pathPrefix, appBaseUrl) {
+ pathPrefix = pathPrefix || '';
+
+ /**
+ * Parse given html5 (regular) url string into properties
+ * @param {string} newAbsoluteUrl HTML5 url
+ * @private
+ */
+ this.$$parse = function(newAbsoluteUrl) {
+ var match = matchUrl(newAbsoluteUrl, this);
+
+ if (match.path.indexOf(pathPrefix) !== 0) {
+ throw Error('Invalid url "' + newAbsoluteUrl + '", missing path prefix "' + pathPrefix + '" !');
+ }
+
+ this.$$path = decodeURIComponent(match.path.substr(pathPrefix.length));
+ this.$$search = parseKeyValue(match.search);
+ this.$$hash = match.hash && decodeURIComponent(match.hash) || '';
+
+ this.$$compose();
+ };
+
+ /**
+ * Compose url and update `absUrl` property
+ * @private
+ */
+ this.$$compose = function() {
+ var search = toKeyValue(this.$$search),
+ hash = this.$$hash ? '#' + encodeUriSegment(this.$$hash) : '';
+
+ this.$$url = encodePath(this.$$path) + (search ? '?' + search : '') + hash;
+ this.$$absUrl = composeProtocolHostPort(this.$$protocol, this.$$host, this.$$port) +
+ pathPrefix + this.$$url;
+ };
+
+
+ this.$$rewriteAppUrl = function(absoluteLinkUrl) {
+ if(absoluteLinkUrl.indexOf(appBaseUrl) == 0) {
+ return absoluteLinkUrl;
+ }
+ }
+
+
+ this.$$parse(url);
+}
+
+
+/**
+ * LocationHashbangUrl represents url
+ * This object is exposed as $location service when html5 history api is disabled or not supported
+ *
+ * @constructor
+ * @param {string} url Legacy url
+ * @param {string} hashPrefix Prefix for hash part (containing path and search)
+ */
+function LocationHashbangUrl(url, hashPrefix, appBaseUrl) {
+ var basePath;
+
+ /**
+ * Parse given hashbang url into properties
+ * @param {string} url Hashbang url
+ * @private
+ */
+ this.$$parse = function(url) {
+ var match = matchUrl(url, this);
+
+
+ if (match.hash && match.hash.indexOf(hashPrefix) !== 0) {
+ throw Error('Invalid url "' + url + '", missing hash prefix "' + hashPrefix + '" !');
+ }
+
+ basePath = match.path + (match.search ? '?' + match.search : '');
+ match = HASH_MATCH.exec((match.hash || '').substr(hashPrefix.length));
+ if (match[1]) {
+ this.$$path = (match[1].charAt(0) == '/' ? '' : '/') + decodeURIComponent(match[1]);
+ } else {
+ this.$$path = '';
+ }
+
+ this.$$search = parseKeyValue(match[3]);
+ this.$$hash = match[5] && decodeURIComponent(match[5]) || '';
+
+ this.$$compose();
+ };
+
+ /**
+ * Compose hashbang url and update `absUrl` property
+ * @private
+ */
+ this.$$compose = function() {
+ var search = toKeyValue(this.$$search),
+ hash = this.$$hash ? '#' + encodeUriSegment(this.$$hash) : '';
+
+ this.$$url = encodePath(this.$$path) + (search ? '?' + search : '') + hash;
+ this.$$absUrl = composeProtocolHostPort(this.$$protocol, this.$$host, this.$$port) +
+ basePath + (this.$$url ? '#' + hashPrefix + this.$$url : '');
+ };
+
+ this.$$rewriteAppUrl = function(absoluteLinkUrl) {
+ if(absoluteLinkUrl.indexOf(appBaseUrl) == 0) {
+ return absoluteLinkUrl;
+ }
+ }
+
+
+ this.$$parse(url);
+}
+
+
+LocationUrl.prototype = {
+
+ /**
+ * Has any change been replacing ?
+ * @private
+ */
+ $$replace: false,
+
+ /**
+ * @ngdoc method
+ * @name ng.$location#absUrl
+ * @methodOf ng.$location
+ *
+ * @description
+ * This method is getter only.
+ *
+ * Return full url representation with all segments encoded according to rules specified in
+ * {@link http://www.ietf.org/rfc/rfc3986.txt RFC 3986}.
+ *
+ * @return {string} full url
+ */
+ absUrl: locationGetter('$$absUrl'),
+
+ /**
+ * @ngdoc method
+ * @name ng.$location#url
+ * @methodOf ng.$location
+ *
+ * @description
+ * This method is getter / setter.
+ *
+ * Return url (e.g. `/path?a=b#hash`) when called without any parameter.
+ *
+ * Change path, search and hash, when called with parameter and return `$location`.
+ *
+ * @param {string=} url New url without base prefix (e.g. `/path?a=b#hash`)
+ * @return {string} url
+ */
+ url: function(url, replace) {
+ if (isUndefined(url))
+ return this.$$url;
+
+ var match = PATH_MATCH.exec(url);
+ if (match[1]) this.path(decodeURIComponent(match[1]));
+ if (match[2] || match[1]) this.search(match[3] || '');
+ this.hash(match[5] || '', replace);
+
+ return this;
+ },
+
+ /**
+ * @ngdoc method
+ * @name ng.$location#protocol
+ * @methodOf ng.$location
+ *
+ * @description
+ * This method is getter only.
+ *
+ * Return protocol of current url.
+ *
+ * @return {string} protocol of current url
+ */
+ protocol: locationGetter('$$protocol'),
+
+ /**
+ * @ngdoc method
+ * @name ng.$location#host
+ * @methodOf ng.$location
+ *
+ * @description
+ * This method is getter only.
+ *
+ * Return host of current url.
+ *
+ * @return {string} host of current url.
+ */
+ host: locationGetter('$$host'),
+
+ /**
+ * @ngdoc method
+ * @name ng.$location#port
+ * @methodOf ng.$location
+ *
+ * @description
+ * This method is getter only.
+ *
+ * Return port of current url.
+ *
+ * @return {Number} port
+ */
+ port: locationGetter('$$port'),
+
+ /**
+ * @ngdoc method
+ * @name ng.$location#path
+ * @methodOf ng.$location
+ *
+ * @description
+ * This method is getter / setter.
+ *
+ * Return path of current url when called without any parameter.
+ *
+ * Change path when called with parameter and return `$location`.
+ *
+ * Note: Path should always begin with forward slash (/), this method will add the forward slash
+ * if it is missing.
+ *
+ * @param {string=} path New path
+ * @return {string} path
+ */
+ path: locationGetterSetter('$$path', function(path) {
+ return path.charAt(0) == '/' ? path : '/' + path;
+ }),
+
+ /**
+ * @ngdoc method
+ * @name ng.$location#search
+ * @methodOf ng.$location
+ *
+ * @description
+ * This method is getter / setter.
+ *
+ * Return search part (as object) of current url when called without any parameter.
+ *
+ * Change search part when called with parameter and return `$location`.
+ *
+ * @param {string|object=} search New search params - string or hash object
+ * @param {string=} paramValue If `search` is a string, then `paramValue` will override only a
+ * single search parameter. If the value is `null`, the parameter will be deleted.
+ *
+ * @return {string} search
+ */
+ search: function(search, paramValue) {
+ if (isUndefined(search))
+ return this.$$search;
+
+ if (isDefined(paramValue)) {
+ if (paramValue === null) {
+ delete this.$$search[search];
+ } else {
+ this.$$search[search] = paramValue;
+ }
+ } else {
+ this.$$search = isString(search) ? parseKeyValue(search) : search;
+ }
+
+ this.$$compose();
+ return this;
+ },
+
+ /**
+ * @ngdoc method
+ * @name ng.$location#hash
+ * @methodOf ng.$location
+ *
+ * @description
+ * This method is getter / setter.
+ *
+ * Return hash fragment when called without any parameter.
+ *
+ * Change hash fragment when called with parameter and return `$location`.
+ *
+ * @param {string=} hash New hash fragment
+ * @return {string} hash
+ */
+ hash: locationGetterSetter('$$hash', identity),
+
+ /**
+ * @ngdoc method
+ * @name ng.$location#replace
+ * @methodOf ng.$location
+ *
+ * @description
+ * If called, all changes to $location during current `$digest` will be replacing current history
+ * record, instead of adding new one.
+ */
+ replace: function() {
+ this.$$replace = true;
+ return this;
+ }
+};
+
+LocationHashbangUrl.prototype = inherit(LocationUrl.prototype);
+
+function LocationHashbangInHtml5Url(url, hashPrefix, appBaseUrl, baseExtra) {
+ LocationHashbangUrl.apply(this, arguments);
+
+
+ this.$$rewriteAppUrl = function(absoluteLinkUrl) {
+ if (absoluteLinkUrl.indexOf(appBaseUrl) == 0) {
+ return appBaseUrl + baseExtra + '#' + hashPrefix + absoluteLinkUrl.substr(appBaseUrl.length);
+ }
+ }
+}
+
+LocationHashbangInHtml5Url.prototype = inherit(LocationHashbangUrl.prototype);
+
+function locationGetter(property) {
+ return function() {
+ return this[property];
+ };
+}
+
+
+function locationGetterSetter(property, preprocess) {
+ return function(value) {
+ if (isUndefined(value))
+ return this[property];
+
+ this[property] = preprocess(value);
+ this.$$compose();
+
+ return this;
+ };
+}
+
+
+/**
+ * @ngdoc object
+ * @name ng.$location
+ *
+ * @requires $browser
+ * @requires $sniffer
+ * @requires $rootElement
+ *
+ * @description
+ * The $location service parses the URL in the browser address bar (based on the
+ * {@link https://developer.mozilla.org/en/window.location window.location}) and makes the URL
+ * available to your application. Changes to the URL in the address bar are reflected into
+ * $location service and changes to $location are reflected into the browser address bar.
+ *
+ * **The $location service:**
+ *
+ * - Exposes the current URL in the browser address bar, so you can
+ * - Watch and observe the URL.
+ * - Change the URL.
+ * - Synchronizes the URL with the browser when the user
+ * - Changes the address bar.
+ * - Clicks the back or forward button (or clicks a History link).
+ * - Clicks on a link.
+ * - Represents the URL object as a set of methods (protocol, host, port, path, search, hash).
+ *
+ * For more information see {@link guide/dev_guide.services.$location Developer Guide: Angular
+ * Services: Using $location}
+ */
+
+/**
+ * @ngdoc object
+ * @name ng.$locationProvider
+ * @description
+ * Use the `$locationProvider` to configure how the application deep linking paths are stored.
+ */
+function $LocationProvider(){
+ var hashPrefix = '',
+ html5Mode = false;
+
+ /**
+ * @ngdoc property
+ * @name ng.$locationProvider#hashPrefix
+ * @methodOf ng.$locationProvider
+ * @description
+ * @param {string=} prefix Prefix for hash part (containing path and search)
+ * @returns {*} current value if used as getter or itself (chaining) if used as setter
+ */
+ this.hashPrefix = function(prefix) {
+ if (isDefined(prefix)) {
+ hashPrefix = prefix;
+ return this;
+ } else {
+ return hashPrefix;
+ }
+ };
+
+ /**
+ * @ngdoc property
+ * @name ng.$locationProvider#html5Mode
+ * @methodOf ng.$locationProvider
+ * @description
+ * @param {string=} mode Use HTML5 strategy if available.
+ * @returns {*} current value if used as getter or itself (chaining) if used as setter
+ */
+ this.html5Mode = function(mode) {
+ if (isDefined(mode)) {
+ html5Mode = mode;
+ return this;
+ } else {
+ return html5Mode;
+ }
+ };
+
+ this.$get = ['$rootScope', '$browser', '$sniffer', '$rootElement',
+ function( $rootScope, $browser, $sniffer, $rootElement) {
+ var $location,
+ basePath,
+ pathPrefix,
+ initUrl = $browser.url(),
+ initUrlParts = matchUrl(initUrl),
+ appBaseUrl;
+
+ if (html5Mode) {
+ basePath = $browser.baseHref() || '/';
+ pathPrefix = pathPrefixFromBase(basePath);
+ appBaseUrl =
+ composeProtocolHostPort(initUrlParts.protocol, initUrlParts.host, initUrlParts.port) +
+ pathPrefix + '/';
+
+ if ($sniffer.history) {
+ $location = new LocationUrl(
+ convertToHtml5Url(initUrl, basePath, hashPrefix),
+ pathPrefix, appBaseUrl);
+ } else {
+ $location = new LocationHashbangInHtml5Url(
+ convertToHashbangUrl(initUrl, basePath, hashPrefix),
+ hashPrefix, appBaseUrl, basePath.substr(pathPrefix.length + 1));
+ }
+ } else {
+ appBaseUrl =
+ composeProtocolHostPort(initUrlParts.protocol, initUrlParts.host, initUrlParts.port) +
+ (initUrlParts.path || '') +
+ (initUrlParts.search ? ('?' + initUrlParts.search) : '') +
+ '#' + hashPrefix + '/';
+
+ $location = new LocationHashbangUrl(initUrl, hashPrefix, appBaseUrl);
+ }
+
+ $rootElement.bind('click', function(event) {
+ // TODO(vojta): rewrite link when opening in new tab/window (in legacy browser)
+ // currently we open nice url link and redirect then
+
+ if (event.ctrlKey || event.metaKey || event.which == 2) return;
+
+ var elm = jqLite(event.target);
+
+ // traverse the DOM up to find first A tag
+ while (lowercase(elm[0].nodeName) !== 'a') {
+ // ignore rewriting if no A tag (reached root element, or no parent - removed from document)
+ if (elm[0] === $rootElement[0] || !(elm = elm.parent())[0]) return;
+ }
+
+ var absHref = elm.prop('href'),
+ rewrittenUrl = $location.$$rewriteAppUrl(absHref);
+
+ if (absHref && !elm.attr('target') && rewrittenUrl) {
+ // update location manually
+ $location.$$parse(rewrittenUrl);
+ $rootScope.$apply();
+ event.preventDefault();
+ // hack to work around FF6 bug 684208 when scenario runner clicks on links
+ window.angular['ff-684208-preventDefault'] = true;
+ }
+ });
+
+
+ // rewrite hashbang url <> html5 url
+ if ($location.absUrl() != initUrl) {
+ $browser.url($location.absUrl(), true);
+ }
+
+ // update $location when $browser url changes
+ $browser.onUrlChange(function(newUrl) {
+ if ($location.absUrl() != newUrl) {
+ if ($rootScope.$broadcast('$locationChangeStart', newUrl, $location.absUrl()).defaultPrevented) {
+ $browser.url($location.absUrl());
+ return;
+ }
+ $rootScope.$evalAsync(function() {
+ var oldUrl = $location.absUrl();
+
+ $location.$$parse(newUrl);
+ afterLocationChange(oldUrl);
+ });
+ if (!$rootScope.$$phase) $rootScope.$digest();
+ }
+ });
+
+ // update browser
+ var changeCounter = 0;
+ $rootScope.$watch(function $locationWatch() {
+ var oldUrl = $browser.url();
+ var currentReplace = $location.$$replace;
+
+ if (!changeCounter || oldUrl != $location.absUrl()) {
+ changeCounter++;
+ $rootScope.$evalAsync(function() {
+ if ($rootScope.$broadcast('$locationChangeStart', $location.absUrl(), oldUrl).
+ defaultPrevented) {
+ $location.$$parse(oldUrl);
+ } else {
+ $browser.url($location.absUrl(), currentReplace);
+ afterLocationChange(oldUrl);
+ }
+ });
+ }
+ $location.$$replace = false;
+
+ return changeCounter;
+ });
+
+ return $location;
+
+ function afterLocationChange(oldUrl) {
+ $rootScope.$broadcast('$locationChangeSuccess', $location.absUrl(), oldUrl);
+ }
+}];
+}
+
+/**
+ * @ngdoc object
+ * @name ng.$log
+ * @requires $window
+ *
+ * @description
+ * Simple service for logging. Default implementation writes the message
+ * into the browser's console (if present).
+ *
+ * The main purpose of this service is to simplify debugging and troubleshooting.
+ *
+ * @example
+
+
+ function LogCtrl($scope, $log) {
+ $scope.$log = $log;
+ $scope.message = 'Hello World!';
+ }
+
+
+
+
Reload this page with open console, enter text and hit the log button...
+ Message:
+
+
+
+
+
+
+
+
+ */
+
+function $LogProvider(){
+ this.$get = ['$window', function($window){
+ return {
+ /**
+ * @ngdoc method
+ * @name ng.$log#log
+ * @methodOf ng.$log
+ *
+ * @description
+ * Write a log message
+ */
+ log: consoleLog('log'),
+
+ /**
+ * @ngdoc method
+ * @name ng.$log#warn
+ * @methodOf ng.$log
+ *
+ * @description
+ * Write a warning message
+ */
+ warn: consoleLog('warn'),
+
+ /**
+ * @ngdoc method
+ * @name ng.$log#info
+ * @methodOf ng.$log
+ *
+ * @description
+ * Write an information message
+ */
+ info: consoleLog('info'),
+
+ /**
+ * @ngdoc method
+ * @name ng.$log#error
+ * @methodOf ng.$log
+ *
+ * @description
+ * Write an error message
+ */
+ error: consoleLog('error')
+ };
+
+ function formatError(arg) {
+ if (arg instanceof Error) {
+ if (arg.stack) {
+ arg = (arg.message && arg.stack.indexOf(arg.message) === -1)
+ ? 'Error: ' + arg.message + '\n' + arg.stack
+ : arg.stack;
+ } else if (arg.sourceURL) {
+ arg = arg.message + '\n' + arg.sourceURL + ':' + arg.line;
+ }
+ }
+ return arg;
+ }
+
+ function consoleLog(type) {
+ var console = $window.console || {},
+ logFn = console[type] || console.log || noop;
+
+ if (logFn.apply) {
+ return function() {
+ var args = [];
+ forEach(arguments, function(arg) {
+ args.push(formatError(arg));
+ });
+ return logFn.apply(console, args);
+ };
+ }
+
+ // we are IE which either doesn't have window.console => this is noop and we do nothing,
+ // or we are IE where console.log doesn't have apply so we log at least first 2 args
+ return function(arg1, arg2) {
+ logFn(arg1, arg2);
+ }
+ }
+ }];
+}
+
+var OPERATORS = {
+ 'null':function(){return null;},
+ 'true':function(){return true;},
+ 'false':function(){return false;},
+ undefined:noop,
+ '+':function(self, locals, a,b){
+ a=a(self, locals); b=b(self, locals);
+ if (isDefined(a)) {
+ if (isDefined(b)) {
+ return a + b;
+ }
+ return a;
+ }
+ return isDefined(b)?b:undefined;},
+ '-':function(self, locals, a,b){a=a(self, locals); b=b(self, locals); return (isDefined(a)?a:0)-(isDefined(b)?b:0);},
+ '*':function(self, locals, a,b){return a(self, locals)*b(self, locals);},
+ '/':function(self, locals, a,b){return a(self, locals)/b(self, locals);},
+ '%':function(self, locals, a,b){return a(self, locals)%b(self, locals);},
+ '^':function(self, locals, a,b){return a(self, locals)^b(self, locals);},
+ '=':noop,
+ '==':function(self, locals, a,b){return a(self, locals)==b(self, locals);},
+ '!=':function(self, locals, a,b){return a(self, locals)!=b(self, locals);},
+ '<':function(self, locals, a,b){return a(self, locals)':function(self, locals, a,b){return a(self, locals)>b(self, locals);},
+ '<=':function(self, locals, a,b){return a(self, locals)<=b(self, locals);},
+ '>=':function(self, locals, a,b){return a(self, locals)>=b(self, locals);},
+ '&&':function(self, locals, a,b){return a(self, locals)&&b(self, locals);},
+ '||':function(self, locals, a,b){return a(self, locals)||b(self, locals);},
+ '&':function(self, locals, a,b){return a(self, locals)&b(self, locals);},
+// '|':function(self, locals, a,b){return a|b;},
+ '|':function(self, locals, a,b){return b(self, locals)(self, locals, a(self, locals));},
+ '!':function(self, locals, a){return !a(self, locals);}
+};
+var ESCAPE = {"n":"\n", "f":"\f", "r":"\r", "t":"\t", "v":"\v", "'":"'", '"':'"'};
+
+function lex(text, csp){
+ var tokens = [],
+ token,
+ index = 0,
+ json = [],
+ ch,
+ lastCh = ':'; // can start regexp
+
+ while (index < text.length) {
+ ch = text.charAt(index);
+ if (is('"\'')) {
+ readString(ch);
+ } else if (isNumber(ch) || is('.') && isNumber(peek())) {
+ readNumber();
+ } else if (isIdent(ch)) {
+ readIdent();
+ // identifiers can only be if the preceding char was a { or ,
+ if (was('{,') && json[0]=='{' &&
+ (token=tokens[tokens.length-1])) {
+ token.json = token.text.indexOf('.') == -1;
+ }
+ } else if (is('(){}[].,;:')) {
+ tokens.push({
+ index:index,
+ text:ch,
+ json:(was(':[,') && is('{[')) || is('}]:,')
+ });
+ if (is('{[')) json.unshift(ch);
+ if (is('}]')) json.shift();
+ index++;
+ } else if (isWhitespace(ch)) {
+ index++;
+ continue;
+ } else {
+ var ch2 = ch + peek(),
+ fn = OPERATORS[ch],
+ fn2 = OPERATORS[ch2];
+ if (fn2) {
+ tokens.push({index:index, text:ch2, fn:fn2});
+ index += 2;
+ } else if (fn) {
+ tokens.push({index:index, text:ch, fn:fn, json: was('[,:') && is('+-')});
+ index += 1;
+ } else {
+ throwError("Unexpected next character ", index, index+1);
+ }
+ }
+ lastCh = ch;
+ }
+ return tokens;
+
+ function is(chars) {
+ return chars.indexOf(ch) != -1;
+ }
+
+ function was(chars) {
+ return chars.indexOf(lastCh) != -1;
+ }
+
+ function peek() {
+ return index + 1 < text.length ? text.charAt(index + 1) : false;
+ }
+ function isNumber(ch) {
+ return '0' <= ch && ch <= '9';
+ }
+ function isWhitespace(ch) {
+ return ch == ' ' || ch == '\r' || ch == '\t' ||
+ ch == '\n' || ch == '\v' || ch == '\u00A0'; // IE treats non-breaking space as \u00A0
+ }
+ function isIdent(ch) {
+ return 'a' <= ch && ch <= 'z' ||
+ 'A' <= ch && ch <= 'Z' ||
+ '_' == ch || ch == '$';
+ }
+ function isExpOperator(ch) {
+ return ch == '-' || ch == '+' || isNumber(ch);
+ }
+
+ function throwError(error, start, end) {
+ end = end || index;
+ throw Error("Lexer Error: " + error + " at column" +
+ (isDefined(start)
+ ? "s " + start + "-" + index + " [" + text.substring(start, end) + "]"
+ : " " + end) +
+ " in expression [" + text + "].");
+ }
+
+ function readNumber() {
+ var number = "";
+ var start = index;
+ while (index < text.length) {
+ var ch = lowercase(text.charAt(index));
+ if (ch == '.' || isNumber(ch)) {
+ number += ch;
+ } else {
+ var peekCh = peek();
+ if (ch == 'e' && isExpOperator(peekCh)) {
+ number += ch;
+ } else if (isExpOperator(ch) &&
+ peekCh && isNumber(peekCh) &&
+ number.charAt(number.length - 1) == 'e') {
+ number += ch;
+ } else if (isExpOperator(ch) &&
+ (!peekCh || !isNumber(peekCh)) &&
+ number.charAt(number.length - 1) == 'e') {
+ throwError('Invalid exponent');
+ } else {
+ break;
+ }
+ }
+ index++;
+ }
+ number = 1 * number;
+ tokens.push({index:start, text:number, json:true,
+ fn:function() {return number;}});
+ }
+ function readIdent() {
+ var ident = "",
+ start = index,
+ lastDot, peekIndex, methodName, ch;
+
+ while (index < text.length) {
+ ch = text.charAt(index);
+ if (ch == '.' || isIdent(ch) || isNumber(ch)) {
+ if (ch == '.') lastDot = index;
+ ident += ch;
+ } else {
+ break;
+ }
+ index++;
+ }
+
+ //check if this is not a method invocation and if it is back out to last dot
+ if (lastDot) {
+ peekIndex = index;
+ while(peekIndex < text.length) {
+ ch = text.charAt(peekIndex);
+ if (ch == '(') {
+ methodName = ident.substr(lastDot - start + 1);
+ ident = ident.substr(0, lastDot - start);
+ index = peekIndex;
+ break;
+ }
+ if(isWhitespace(ch)) {
+ peekIndex++;
+ } else {
+ break;
+ }
+ }
+ }
+
+
+ var token = {
+ index:start,
+ text:ident
+ };
+
+ if (OPERATORS.hasOwnProperty(ident)) {
+ token.fn = token.json = OPERATORS[ident];
+ } else {
+ var getter = getterFn(ident, csp);
+ token.fn = extend(function(self, locals) {
+ return (getter(self, locals));
+ }, {
+ assign: function(self, value) {
+ return setter(self, ident, value);
+ }
+ });
+ }
+
+ tokens.push(token);
+
+ if (methodName) {
+ tokens.push({
+ index:lastDot,
+ text: '.',
+ json: false
+ });
+ tokens.push({
+ index: lastDot + 1,
+ text: methodName,
+ json: false
+ });
+ }
+ }
+
+ function readString(quote) {
+ var start = index;
+ index++;
+ var string = "";
+ var rawString = quote;
+ var escape = false;
+ while (index < text.length) {
+ var ch = text.charAt(index);
+ rawString += ch;
+ if (escape) {
+ if (ch == 'u') {
+ var hex = text.substring(index + 1, index + 5);
+ if (!hex.match(/[\da-f]{4}/i))
+ throwError( "Invalid unicode escape [\\u" + hex + "]");
+ index += 4;
+ string += String.fromCharCode(parseInt(hex, 16));
+ } else {
+ var rep = ESCAPE[ch];
+ if (rep) {
+ string += rep;
+ } else {
+ string += ch;
+ }
+ }
+ escape = false;
+ } else if (ch == '\\') {
+ escape = true;
+ } else if (ch == quote) {
+ index++;
+ tokens.push({
+ index:start,
+ text:rawString,
+ string:string,
+ json:true,
+ fn:function() { return string; }
+ });
+ return;
+ } else {
+ string += ch;
+ }
+ index++;
+ }
+ throwError("Unterminated quote", start);
+ }
+}
+
+/////////////////////////////////////////
+
+function parser(text, json, $filter, csp){
+ var ZERO = valueFn(0),
+ value,
+ tokens = lex(text, csp),
+ assignment = _assignment,
+ functionCall = _functionCall,
+ fieldAccess = _fieldAccess,
+ objectIndex = _objectIndex,
+ filterChain = _filterChain;
+
+ if(json){
+ // The extra level of aliasing is here, just in case the lexer misses something, so that
+ // we prevent any accidental execution in JSON.
+ assignment = logicalOR;
+ functionCall =
+ fieldAccess =
+ objectIndex =
+ filterChain =
+ function() { throwError("is not valid json", {text:text, index:0}); };
+ value = primary();
+ } else {
+ value = statements();
+ }
+ if (tokens.length !== 0) {
+ throwError("is an unexpected token", tokens[0]);
+ }
+ return value;
+
+ ///////////////////////////////////
+ function throwError(msg, token) {
+ throw Error("Syntax Error: Token '" + token.text +
+ "' " + msg + " at column " +
+ (token.index + 1) + " of the expression [" +
+ text + "] starting at [" + text.substring(token.index) + "].");
+ }
+
+ function peekToken() {
+ if (tokens.length === 0)
+ throw Error("Unexpected end of expression: " + text);
+ return tokens[0];
+ }
+
+ function peek(e1, e2, e3, e4) {
+ if (tokens.length > 0) {
+ var token = tokens[0];
+ var t = token.text;
+ if (t==e1 || t==e2 || t==e3 || t==e4 ||
+ (!e1 && !e2 && !e3 && !e4)) {
+ return token;
+ }
+ }
+ return false;
+ }
+
+ function expect(e1, e2, e3, e4){
+ var token = peek(e1, e2, e3, e4);
+ if (token) {
+ if (json && !token.json) {
+ throwError("is not valid json", token);
+ }
+ tokens.shift();
+ return token;
+ }
+ return false;
+ }
+
+ function consume(e1){
+ if (!expect(e1)) {
+ throwError("is unexpected, expecting [" + e1 + "]", peek());
+ }
+ }
+
+ function unaryFn(fn, right) {
+ return function(self, locals) {
+ return fn(self, locals, right);
+ };
+ }
+
+ function binaryFn(left, fn, right) {
+ return function(self, locals) {
+ return fn(self, locals, left, right);
+ };
+ }
+
+ function statements() {
+ var statements = [];
+ while(true) {
+ if (tokens.length > 0 && !peek('}', ')', ';', ']'))
+ statements.push(filterChain());
+ if (!expect(';')) {
+ // optimize for the common case where there is only one statement.
+ // TODO(size): maybe we should not support multiple statements?
+ return statements.length == 1
+ ? statements[0]
+ : function(self, locals){
+ var value;
+ for ( var i = 0; i < statements.length; i++) {
+ var statement = statements[i];
+ if (statement)
+ value = statement(self, locals);
+ }
+ return value;
+ };
+ }
+ }
+ }
+
+ function _filterChain() {
+ var left = expression();
+ var token;
+ while(true) {
+ if ((token = expect('|'))) {
+ left = binaryFn(left, token.fn, filter());
+ } else {
+ return left;
+ }
+ }
+ }
+
+ function filter() {
+ var token = expect();
+ var fn = $filter(token.text);
+ var argsFn = [];
+ while(true) {
+ if ((token = expect(':'))) {
+ argsFn.push(expression());
+ } else {
+ var fnInvoke = function(self, locals, input){
+ var args = [input];
+ for ( var i = 0; i < argsFn.length; i++) {
+ args.push(argsFn[i](self, locals));
+ }
+ return fn.apply(self, args);
+ };
+ return function() {
+ return fnInvoke;
+ };
+ }
+ }
+ }
+
+ function expression() {
+ return assignment();
+ }
+
+ function _assignment() {
+ var left = logicalOR();
+ var right;
+ var token;
+ if ((token = expect('='))) {
+ if (!left.assign) {
+ throwError("implies assignment but [" +
+ text.substring(0, token.index) + "] can not be assigned to", token);
+ }
+ right = logicalOR();
+ return function(scope, locals){
+ return left.assign(scope, right(scope, locals), locals);
+ };
+ } else {
+ return left;
+ }
+ }
+
+ function logicalOR() {
+ var left = logicalAND();
+ var token;
+ while(true) {
+ if ((token = expect('||'))) {
+ left = binaryFn(left, token.fn, logicalAND());
+ } else {
+ return left;
+ }
+ }
+ }
+
+ function logicalAND() {
+ var left = equality();
+ var token;
+ if ((token = expect('&&'))) {
+ left = binaryFn(left, token.fn, logicalAND());
+ }
+ return left;
+ }
+
+ function equality() {
+ var left = relational();
+ var token;
+ if ((token = expect('==','!='))) {
+ left = binaryFn(left, token.fn, equality());
+ }
+ return left;
+ }
+
+ function relational() {
+ var left = additive();
+ var token;
+ if ((token = expect('<', '>', '<=', '>='))) {
+ left = binaryFn(left, token.fn, relational());
+ }
+ return left;
+ }
+
+ function additive() {
+ var left = multiplicative();
+ var token;
+ while ((token = expect('+','-'))) {
+ left = binaryFn(left, token.fn, multiplicative());
+ }
+ return left;
+ }
+
+ function multiplicative() {
+ var left = unary();
+ var token;
+ while ((token = expect('*','/','%'))) {
+ left = binaryFn(left, token.fn, unary());
+ }
+ return left;
+ }
+
+ function unary() {
+ var token;
+ if (expect('+')) {
+ return primary();
+ } else if ((token = expect('-'))) {
+ return binaryFn(ZERO, token.fn, unary());
+ } else if ((token = expect('!'))) {
+ return unaryFn(token.fn, unary());
+ } else {
+ return primary();
+ }
+ }
+
+
+ function primary() {
+ var primary;
+ if (expect('(')) {
+ primary = filterChain();
+ consume(')');
+ } else if (expect('[')) {
+ primary = arrayDeclaration();
+ } else if (expect('{')) {
+ primary = object();
+ } else {
+ var token = expect();
+ primary = token.fn;
+ if (!primary) {
+ throwError("not a primary expression", token);
+ }
+ }
+
+ var next, context;
+ while ((next = expect('(', '[', '.'))) {
+ if (next.text === '(') {
+ primary = functionCall(primary, context);
+ context = null;
+ } else if (next.text === '[') {
+ context = primary;
+ primary = objectIndex(primary);
+ } else if (next.text === '.') {
+ context = primary;
+ primary = fieldAccess(primary);
+ } else {
+ throwError("IMPOSSIBLE");
+ }
+ }
+ return primary;
+ }
+
+ function _fieldAccess(object) {
+ var field = expect().text;
+ var getter = getterFn(field, csp);
+ return extend(
+ function(scope, locals, self) {
+ return getter(self || object(scope, locals), locals);
+ },
+ {
+ assign:function(scope, value, locals) {
+ return setter(object(scope, locals), field, value);
+ }
+ }
+ );
+ }
+
+ function _objectIndex(obj) {
+ var indexFn = expression();
+ consume(']');
+ return extend(
+ function(self, locals){
+ var o = obj(self, locals),
+ i = indexFn(self, locals),
+ v, p;
+
+ if (!o) return undefined;
+ v = o[i];
+ if (v && v.then) {
+ p = v;
+ if (!('$$v' in v)) {
+ p.$$v = undefined;
+ p.then(function(val) { p.$$v = val; });
+ }
+ v = v.$$v;
+ }
+ return v;
+ }, {
+ assign:function(self, value, locals){
+ return obj(self, locals)[indexFn(self, locals)] = value;
+ }
+ });
+ }
+
+ function _functionCall(fn, contextGetter) {
+ var argsFn = [];
+ if (peekToken().text != ')') {
+ do {
+ argsFn.push(expression());
+ } while (expect(','));
+ }
+ consume(')');
+ return function(scope, locals){
+ var args = [],
+ context = contextGetter ? contextGetter(scope, locals) : scope;
+
+ for ( var i = 0; i < argsFn.length; i++) {
+ args.push(argsFn[i](scope, locals));
+ }
+ var fnPtr = fn(scope, locals, context) || noop;
+ // IE stupidity!
+ return fnPtr.apply
+ ? fnPtr.apply(context, args)
+ : fnPtr(args[0], args[1], args[2], args[3], args[4]);
+ };
+ }
+
+ // This is used with json array declaration
+ function arrayDeclaration () {
+ var elementFns = [];
+ if (peekToken().text != ']') {
+ do {
+ elementFns.push(expression());
+ } while (expect(','));
+ }
+ consume(']');
+ return function(self, locals){
+ var array = [];
+ for ( var i = 0; i < elementFns.length; i++) {
+ array.push(elementFns[i](self, locals));
+ }
+ return array;
+ };
+ }
+
+ function object () {
+ var keyValues = [];
+ if (peekToken().text != '}') {
+ do {
+ var token = expect(),
+ key = token.string || token.text;
+ consume(":");
+ var value = expression();
+ keyValues.push({key:key, value:value});
+ } while (expect(','));
+ }
+ consume('}');
+ return function(self, locals){
+ var object = {};
+ for ( var i = 0; i < keyValues.length; i++) {
+ var keyValue = keyValues[i];
+ object[keyValue.key] = keyValue.value(self, locals);
+ }
+ return object;
+ };
+ }
+}
+
+//////////////////////////////////////////////////
+// Parser helper functions
+//////////////////////////////////////////////////
+
+function setter(obj, path, setValue) {
+ var element = path.split('.');
+ for (var i = 0; element.length > 1; i++) {
+ var key = element.shift();
+ var propertyObj = obj[key];
+ if (!propertyObj) {
+ propertyObj = {};
+ obj[key] = propertyObj;
+ }
+ obj = propertyObj;
+ }
+ obj[element.shift()] = setValue;
+ return setValue;
+}
+
+/**
+ * Return the value accesible from the object by path. Any undefined traversals are ignored
+ * @param {Object} obj starting object
+ * @param {string} path path to traverse
+ * @param {boolean=true} bindFnToScope
+ * @returns value as accesbile by path
+ */
+//TODO(misko): this function needs to be removed
+function getter(obj, path, bindFnToScope) {
+ if (!path) return obj;
+ var keys = path.split('.');
+ var key;
+ var lastInstance = obj;
+ var len = keys.length;
+
+ for (var i = 0; i < len; i++) {
+ key = keys[i];
+ if (obj) {
+ obj = (lastInstance = obj)[key];
+ }
+ }
+ if (!bindFnToScope && isFunction(obj)) {
+ return bind(lastInstance, obj);
+ }
+ return obj;
+}
+
+var getterFnCache = {};
+
+/**
+ * Implementation of the "Black Hole" variant from:
+ * - http://jsperf.com/angularjs-parse-getter/4
+ * - http://jsperf.com/path-evaluation-simplified/7
+ */
+function cspSafeGetterFn(key0, key1, key2, key3, key4) {
+ return function(scope, locals) {
+ var pathVal = (locals && locals.hasOwnProperty(key0)) ? locals : scope,
+ promise;
+
+ if (pathVal === null || pathVal === undefined) return pathVal;
+
+ pathVal = pathVal[key0];
+ if (pathVal && pathVal.then) {
+ if (!("$$v" in pathVal)) {
+ promise = pathVal;
+ promise.$$v = undefined;
+ promise.then(function(val) { promise.$$v = val; });
+ }
+ pathVal = pathVal.$$v;
+ }
+ if (!key1 || pathVal === null || pathVal === undefined) return pathVal;
+
+ pathVal = pathVal[key1];
+ if (pathVal && pathVal.then) {
+ if (!("$$v" in pathVal)) {
+ promise = pathVal;
+ promise.$$v = undefined;
+ promise.then(function(val) { promise.$$v = val; });
+ }
+ pathVal = pathVal.$$v;
+ }
+ if (!key2 || pathVal === null || pathVal === undefined) return pathVal;
+
+ pathVal = pathVal[key2];
+ if (pathVal && pathVal.then) {
+ if (!("$$v" in pathVal)) {
+ promise = pathVal;
+ promise.$$v = undefined;
+ promise.then(function(val) { promise.$$v = val; });
+ }
+ pathVal = pathVal.$$v;
+ }
+ if (!key3 || pathVal === null || pathVal === undefined) return pathVal;
+
+ pathVal = pathVal[key3];
+ if (pathVal && pathVal.then) {
+ if (!("$$v" in pathVal)) {
+ promise = pathVal;
+ promise.$$v = undefined;
+ promise.then(function(val) { promise.$$v = val; });
+ }
+ pathVal = pathVal.$$v;
+ }
+ if (!key4 || pathVal === null || pathVal === undefined) return pathVal;
+
+ pathVal = pathVal[key4];
+ if (pathVal && pathVal.then) {
+ if (!("$$v" in pathVal)) {
+ promise = pathVal;
+ promise.$$v = undefined;
+ promise.then(function(val) { promise.$$v = val; });
+ }
+ pathVal = pathVal.$$v;
+ }
+ return pathVal;
+ };
+}
+
+function getterFn(path, csp) {
+ if (getterFnCache.hasOwnProperty(path)) {
+ return getterFnCache[path];
+ }
+
+ var pathKeys = path.split('.'),
+ pathKeysLength = pathKeys.length,
+ fn;
+
+ if (csp) {
+ fn = (pathKeysLength < 6)
+ ? cspSafeGetterFn(pathKeys[0], pathKeys[1], pathKeys[2], pathKeys[3], pathKeys[4])
+ : function(scope, locals) {
+ var i = 0, val;
+ do {
+ val = cspSafeGetterFn(
+ pathKeys[i++], pathKeys[i++], pathKeys[i++], pathKeys[i++], pathKeys[i++]
+ )(scope, locals);
+
+ locals = undefined; // clear after first iteration
+ scope = val;
+ } while (i < pathKeysLength);
+ return val;
+ }
+ } else {
+ var code = 'var l, fn, p;\n';
+ forEach(pathKeys, function(key, index) {
+ code += 'if(s === null || s === undefined) return s;\n' +
+ 'l=s;\n' +
+ 's='+ (index
+ // we simply dereference 's' on any .dot notation
+ ? 's'
+ // but if we are first then we check locals first, and if so read it first
+ : '((k&&k.hasOwnProperty("' + key + '"))?k:s)') + '["' + key + '"]' + ';\n' +
+ 'if (s && s.then) {\n' +
+ ' if (!("$$v" in s)) {\n' +
+ ' p=s;\n' +
+ ' p.$$v = undefined;\n' +
+ ' p.then(function(v) {p.$$v=v;});\n' +
+ '}\n' +
+ ' s=s.$$v\n' +
+ '}\n';
+ });
+ code += 'return s;';
+ fn = Function('s', 'k', code); // s=scope, k=locals
+ fn.toString = function() { return code; };
+ }
+
+ return getterFnCache[path] = fn;
+}
+
+///////////////////////////////////
+
+/**
+ * @ngdoc function
+ * @name ng.$parse
+ * @function
+ *
+ * @description
+ *
+ * Converts Angular {@link guide/expression expression} into a function.
+ *
+ *
+ *
+ *
+ * @param {string} expression String expression to compile.
+ * @returns {function(context, locals)} a function which represents the compiled expression:
+ *
+ * * `context` – `{object}` – an object against which any expressions embedded in the strings
+ * are evaluated against (tipically a scope object).
+ * * `locals` – `{object=}` – local variables context object, useful for overriding values in
+ * `context`.
+ *
+ * The return function also has an `assign` property, if the expression is assignable, which
+ * allows one to set values to expressions.
+ *
+ */
+function $ParseProvider() {
+ var cache = {};
+ this.$get = ['$filter', '$sniffer', function($filter, $sniffer) {
+ return function(exp) {
+ switch(typeof exp) {
+ case 'string':
+ return cache.hasOwnProperty(exp)
+ ? cache[exp]
+ : cache[exp] = parser(exp, false, $filter, $sniffer.csp);
+ case 'function':
+ return exp;
+ default:
+ return noop;
+ }
+ };
+ }];
+}
+
+/**
+ * @ngdoc service
+ * @name ng.$q
+ * @requires $rootScope
+ *
+ * @description
+ * A promise/deferred implementation inspired by [Kris Kowal's Q](https://github.com/kriskowal/q).
+ *
+ * [The CommonJS Promise proposal](http://wiki.commonjs.org/wiki/Promises) describes a promise as an
+ * interface for interacting with an object that represents the result of an action that is
+ * performed asynchronously, and may or may not be finished at any given point in time.
+ *
+ * From the perspective of dealing with error handling, deferred and promise APIs are to
+ * asynchronous programming what `try`, `catch` and `throw` keywords are to synchronous programming.
+ *
+ *
+ * // for the purpose of this example let's assume that variables `$q` and `scope` are
+ * // available in the current lexical scope (they could have been injected or passed in).
+ *
+ * function asyncGreet(name) {
+ * var deferred = $q.defer();
+ *
+ * setTimeout(function() {
+ * // since this fn executes async in a future turn of the event loop, we need to wrap
+ * // our code into an $apply call so that the model changes are properly observed.
+ * scope.$apply(function() {
+ * if (okToGreet(name)) {
+ * deferred.resolve('Hello, ' + name + '!');
+ * } else {
+ * deferred.reject('Greeting ' + name + ' is not allowed.');
+ * }
+ * });
+ * }, 1000);
+ *
+ * return deferred.promise;
+ * }
+ *
+ * var promise = asyncGreet('Robin Hood');
+ * promise.then(function(greeting) {
+ * alert('Success: ' + greeting);
+ * }, function(reason) {
+ * alert('Failed: ' + reason);
+ * });
+ *
+ *
+ * At first it might not be obvious why this extra complexity is worth the trouble. The payoff
+ * comes in the way of
+ * [guarantees that promise and deferred APIs make](https://github.com/kriskowal/uncommonjs/blob/master/promises/specification.md).
+ *
+ * Additionally the promise api allows for composition that is very hard to do with the
+ * traditional callback ([CPS](http://en.wikipedia.org/wiki/Continuation-passing_style)) approach.
+ * For more on this please see the [Q documentation](https://github.com/kriskowal/q) especially the
+ * section on serial or parallel joining of promises.
+ *
+ *
+ * # The Deferred API
+ *
+ * A new instance of deferred is constructed by calling `$q.defer()`.
+ *
+ * The purpose of the deferred object is to expose the associated Promise instance as well as APIs
+ * that can be used for signaling the successful or unsuccessful completion of the task.
+ *
+ * **Methods**
+ *
+ * - `resolve(value)` – resolves the derived promise with the `value`. If the value is a rejection
+ * constructed via `$q.reject`, the promise will be rejected instead.
+ * - `reject(reason)` – rejects the derived promise with the `reason`. This is equivalent to
+ * resolving it with a rejection constructed via `$q.reject`.
+ *
+ * **Properties**
+ *
+ * - promise – `{Promise}` – promise object associated with this deferred.
+ *
+ *
+ * # The Promise API
+ *
+ * A new promise instance is created when a deferred instance is created and can be retrieved by
+ * calling `deferred.promise`.
+ *
+ * The purpose of the promise object is to allow for interested parties to get access to the result
+ * of the deferred task when it completes.
+ *
+ * **Methods**
+ *
+ * - `then(successCallback, errorCallback)` – regardless of when the promise was or will be resolved
+ * or rejected calls one of the success or error callbacks asynchronously as soon as the result
+ * is available. The callbacks are called with a single argument the result or rejection reason.
+ *
+ * This method *returns a new promise* which is resolved or rejected via the return value of the
+ * `successCallback` or `errorCallback`.
+ *
+ *
+ * # Chaining promises
+ *
+ * Because calling `then` api of a promise returns a new derived promise, it is easily possible
+ * to create a chain of promises:
+ *
+ *
+ * promiseB = promiseA.then(function(result) {
+ * return result + 1;
+ * });
+ *
+ * // promiseB will be resolved immediately after promiseA is resolved and its value will be
+ * // the result of promiseA incremented by 1
+ *
+ *
+ * It is possible to create chains of any length and since a promise can be resolved with another
+ * promise (which will defer its resolution further), it is possible to pause/defer resolution of
+ * the promises at any point in the chain. This makes it possible to implement powerful apis like
+ * $http's response interceptors.
+ *
+ *
+ * # Differences between Kris Kowal's Q and $q
+ *
+ * There are three main differences:
+ *
+ * - $q is integrated with the {@link ng.$rootScope.Scope} Scope model observation
+ * mechanism in angular, which means faster propagation of resolution or rejection into your
+ * models and avoiding unnecessary browser repaints, which would result in flickering UI.
+ * - $q promises are recognized by the templating engine in angular, which means that in templates
+ * you can treat promises attached to a scope as if they were the resulting values.
+ * - Q has many more features than $q, but that comes at a cost of bytes. $q is tiny, but contains
+ * all the important functionality needed for common async tasks.
+ *
+ * # Testing
+ *
+ *
+ * it('should simulate promise', inject(function($q, $rootScope) {
+ * var deferred = $q.defer();
+ * var promise = deferred.promise;
+ * var resolvedValue;
+ *
+ * promise.then(function(value) { resolvedValue = value; });
+ * expect(resolvedValue).toBeUndefined();
+ *
+ * // Simulate resolving of promise
+ * deferred.resolve(123);
+ * // Note that the 'then' function does not get called synchronously.
+ * // This is because we want the promise API to always be async, whether or not
+ * // it got called synchronously or asynchronously.
+ * expect(resolvedValue).toBeUndefined();
+ *
+ * // Propagate promise resolution to 'then' functions using $apply().
+ * $rootScope.$apply();
+ * expect(resolvedValue).toEqual(123);
+ * });
+ *
+ */
+function $QProvider() {
+
+ this.$get = ['$rootScope', '$exceptionHandler', function($rootScope, $exceptionHandler) {
+ return qFactory(function(callback) {
+ $rootScope.$evalAsync(callback);
+ }, $exceptionHandler);
+ }];
+}
+
+
+/**
+ * Constructs a promise manager.
+ *
+ * @param {function(function)} nextTick Function for executing functions in the next turn.
+ * @param {function(...*)} exceptionHandler Function into which unexpected exceptions are passed for
+ * debugging purposes.
+ * @returns {object} Promise manager.
+ */
+function qFactory(nextTick, exceptionHandler) {
+
+ /**
+ * @ngdoc
+ * @name ng.$q#defer
+ * @methodOf ng.$q
+ * @description
+ * Creates a `Deferred` object which represents a task which will finish in the future.
+ *
+ * @returns {Deferred} Returns a new instance of deferred.
+ */
+ var defer = function() {
+ var pending = [],
+ value, deferred;
+
+ deferred = {
+
+ resolve: function(val) {
+ if (pending) {
+ var callbacks = pending;
+ pending = undefined;
+ value = ref(val);
+
+ if (callbacks.length) {
+ nextTick(function() {
+ var callback;
+ for (var i = 0, ii = callbacks.length; i < ii; i++) {
+ callback = callbacks[i];
+ value.then(callback[0], callback[1]);
+ }
+ });
+ }
+ }
+ },
+
+
+ reject: function(reason) {
+ deferred.resolve(reject(reason));
+ },
+
+
+ promise: {
+ then: function(callback, errback) {
+ var result = defer();
+
+ var wrappedCallback = function(value) {
+ try {
+ result.resolve((callback || defaultCallback)(value));
+ } catch(e) {
+ exceptionHandler(e);
+ result.reject(e);
+ }
+ };
+
+ var wrappedErrback = function(reason) {
+ try {
+ result.resolve((errback || defaultErrback)(reason));
+ } catch(e) {
+ exceptionHandler(e);
+ result.reject(e);
+ }
+ };
+
+ if (pending) {
+ pending.push([wrappedCallback, wrappedErrback]);
+ } else {
+ value.then(wrappedCallback, wrappedErrback);
+ }
+
+ return result.promise;
+ }
+ }
+ };
+
+ return deferred;
+ };
+
+
+ var ref = function(value) {
+ if (value && value.then) return value;
+ return {
+ then: function(callback) {
+ var result = defer();
+ nextTick(function() {
+ result.resolve(callback(value));
+ });
+ return result.promise;
+ }
+ };
+ };
+
+
+ /**
+ * @ngdoc
+ * @name ng.$q#reject
+ * @methodOf ng.$q
+ * @description
+ * Creates a promise that is resolved as rejected with the specified `reason`. This api should be
+ * used to forward rejection in a chain of promises. If you are dealing with the last promise in
+ * a promise chain, you don't need to worry about it.
+ *
+ * When comparing deferreds/promises to the familiar behavior of try/catch/throw, think of
+ * `reject` as the `throw` keyword in JavaScript. This also means that if you "catch" an error via
+ * a promise error callback and you want to forward the error to the promise derived from the
+ * current promise, you have to "rethrow" the error by returning a rejection constructed via
+ * `reject`.
+ *
+ *
+ * promiseB = promiseA.then(function(result) {
+ * // success: do something and resolve promiseB
+ * // with the old or a new result
+ * return result;
+ * }, function(reason) {
+ * // error: handle the error if possible and
+ * // resolve promiseB with newPromiseOrValue,
+ * // otherwise forward the rejection to promiseB
+ * if (canHandle(reason)) {
+ * // handle the error and recover
+ * return newPromiseOrValue;
+ * }
+ * return $q.reject(reason);
+ * });
+ *
+ *
+ * @param {*} reason Constant, message, exception or an object representing the rejection reason.
+ * @returns {Promise} Returns a promise that was already resolved as rejected with the `reason`.
+ */
+ var reject = function(reason) {
+ return {
+ then: function(callback, errback) {
+ var result = defer();
+ nextTick(function() {
+ result.resolve((errback || defaultErrback)(reason));
+ });
+ return result.promise;
+ }
+ };
+ };
+
+
+ /**
+ * @ngdoc
+ * @name ng.$q#when
+ * @methodOf ng.$q
+ * @description
+ * Wraps an object that might be a value or a (3rd party) then-able promise into a $q promise.
+ * This is useful when you are dealing with an object that might or might not be a promise, or if
+ * the promise comes from a source that can't be trusted.
+ *
+ * @param {*} value Value or a promise
+ * @returns {Promise} Returns a promise of the passed value or promise
+ */
+ var when = function(value, callback, errback) {
+ var result = defer(),
+ done;
+
+ var wrappedCallback = function(value) {
+ try {
+ return (callback || defaultCallback)(value);
+ } catch (e) {
+ exceptionHandler(e);
+ return reject(e);
+ }
+ };
+
+ var wrappedErrback = function(reason) {
+ try {
+ return (errback || defaultErrback)(reason);
+ } catch (e) {
+ exceptionHandler(e);
+ return reject(e);
+ }
+ };
+
+ nextTick(function() {
+ ref(value).then(function(value) {
+ if (done) return;
+ done = true;
+ result.resolve(ref(value).then(wrappedCallback, wrappedErrback));
+ }, function(reason) {
+ if (done) return;
+ done = true;
+ result.resolve(wrappedErrback(reason));
+ });
+ });
+
+ return result.promise;
+ };
+
+
+ function defaultCallback(value) {
+ return value;
+ }
+
+
+ function defaultErrback(reason) {
+ return reject(reason);
+ }
+
+
+ /**
+ * @ngdoc
+ * @name ng.$q#all
+ * @methodOf ng.$q
+ * @description
+ * Combines multiple promises into a single promise that is resolved when all of the input
+ * promises are resolved.
+ *
+ * @param {Array.} promises An array of promises.
+ * @returns {Promise} Returns a single promise that will be resolved with an array of values,
+ * each value corresponding to the promise at the same index in the `promises` array. If any of
+ * the promises is resolved with a rejection, this resulting promise will be resolved with the
+ * same rejection.
+ */
+ function all(promises) {
+ var deferred = defer(),
+ counter = promises.length,
+ results = [];
+
+ if (counter) {
+ forEach(promises, function(promise, index) {
+ ref(promise).then(function(value) {
+ if (index in results) return;
+ results[index] = value;
+ if (!(--counter)) deferred.resolve(results);
+ }, function(reason) {
+ if (index in results) return;
+ deferred.reject(reason);
+ });
+ });
+ } else {
+ deferred.resolve(results);
+ }
+
+ return deferred.promise;
+ }
+
+ return {
+ defer: defer,
+ reject: reject,
+ when: when,
+ all: all
+ };
+}
+
+/**
+ * @ngdoc object
+ * @name ng.$routeProvider
+ * @function
+ *
+ * @description
+ *
+ * Used for configuring routes. See {@link ng.$route $route} for an example.
+ */
+function $RouteProvider(){
+ var routes = {};
+
+ /**
+ * @ngdoc method
+ * @name ng.$routeProvider#when
+ * @methodOf ng.$routeProvider
+ *
+ * @param {string} path Route path (matched against `$location.path`). If `$location.path`
+ * contains redundant trailing slash or is missing one, the route will still match and the
+ * `$location.path` will be updated to add or drop the trailing slash to exactly match the
+ * route definition.
+ *
+ * `path` can contain named groups starting with a colon (`:name`). All characters up to the
+ * next slash are matched and stored in `$routeParams` under the given `name` when the route
+ * matches.
+ *
+ * @param {Object} route Mapping information to be assigned to `$route.current` on route
+ * match.
+ *
+ * Object properties:
+ *
+ * - `controller` – `{(string|function()=}` – Controller fn that should be associated with newly
+ * created scope or the name of a {@link angular.Module#controller registered controller}
+ * if passed as a string.
+ * - `template` – `{string=}` – html template as a string that should be used by
+ * {@link ng.directive:ngView ngView} or
+ * {@link ng.directive:ngInclude ngInclude} directives.
+ * this property takes precedence over `templateUrl`.
+ * - `templateUrl` – `{string=}` – path to an html template that should be used by
+ * {@link ng.directive:ngView ngView}.
+ * - `resolve` - `{Object.=}` - An optional map of dependencies which should
+ * be injected into the controller. If any of these dependencies are promises, they will be
+ * resolved and converted to a value before the controller is instantiated and the
+ * `$routeChangeSuccess` event is fired. The map object is:
+ *
+ * - `key` – `{string}`: a name of a dependency to be injected into the controller.
+ * - `factory` - `{string|function}`: If `string` then it is an alias for a service.
+ * Otherwise if function, then it is {@link api/AUTO.$injector#invoke injected}
+ * and the return value is treated as the dependency. If the result is a promise, it is resolved
+ * before its value is injected into the controller.
+ *
+ * - `redirectTo` – {(string|function())=} – value to update
+ * {@link ng.$location $location} path with and trigger route redirection.
+ *
+ * If `redirectTo` is a function, it will be called with the following parameters:
+ *
+ * - `{Object.}` - route parameters extracted from the current
+ * `$location.path()` by applying the current route templateUrl.
+ * - `{string}` - current `$location.path()`
+ * - `{Object}` - current `$location.search()`
+ *
+ * The custom `redirectTo` function is expected to return a string which will be used
+ * to update `$location.path()` and `$location.search()`.
+ *
+ * - `[reloadOnSearch=true]` - {boolean=} - reload route when only $location.search()
+ * changes.
+ *
+ * If the option is set to `false` and url in the browser changes, then
+ * `$routeUpdate` event is broadcasted on the root scope.
+ *
+ * @returns {Object} self
+ *
+ * @description
+ * Adds a new route definition to the `$route` service.
+ */
+ this.when = function(path, route) {
+ routes[path] = extend({reloadOnSearch: true}, route);
+
+ // create redirection for trailing slashes
+ if (path) {
+ var redirectPath = (path[path.length-1] == '/')
+ ? path.substr(0, path.length-1)
+ : path +'/';
+
+ routes[redirectPath] = {redirectTo: path};
+ }
+
+ return this;
+ };
+
+ /**
+ * @ngdoc method
+ * @name ng.$routeProvider#otherwise
+ * @methodOf ng.$routeProvider
+ *
+ * @description
+ * Sets route definition that will be used on route change when no other route definition
+ * is matched.
+ *
+ * @param {Object} params Mapping information to be assigned to `$route.current`.
+ * @returns {Object} self
+ */
+ this.otherwise = function(params) {
+ this.when(null, params);
+ return this;
+ };
+
+
+ this.$get = ['$rootScope', '$location', '$routeParams', '$q', '$injector', '$http', '$templateCache',
+ function( $rootScope, $location, $routeParams, $q, $injector, $http, $templateCache) {
+
+ /**
+ * @ngdoc object
+ * @name ng.$route
+ * @requires $location
+ * @requires $routeParams
+ *
+ * @property {Object} current Reference to the current route definition.
+ * The route definition contains:
+ *
+ * - `controller`: The controller constructor as define in route definition.
+ * - `locals`: A map of locals which is used by {@link ng.$controller $controller} service for
+ * controller instantiation. The `locals` contain
+ * the resolved values of the `resolve` map. Additionally the `locals` also contain:
+ *
+ * - `$scope` - The current route scope.
+ * - `$template` - The current route template HTML.
+ *
+ * @property {Array.')
-
+
# term256 foreground color
match = re.match('38;5;(\d+)', val)
if match is not None:
@@ -159,7 +159,7 @@ def append_html_for_ansi_escape(full_val, result, span_open):
html_color = html_color_for_ansi_color_index(int(match.group(1)))
result.append('')
return True # span now open
-
+
# term8 foreground color
if val in [str(x) for x in range(30, 38)]:
close_span()
@@ -172,26 +172,26 @@ def append_html_for_ansi_escape(full_val, result, span_open):
if full_val == special_escapes['exit_attribute_mode']:
close_span()
return False
-
+
# We don't handle bold or underline yet
-
+
# Do nothing on failure
return span_open
-
+
def strip_ansi(val):
# Make a half-assed effort to strip ANSI control sequences
# We assume that all such sequences start with 0x1b and end with m,
# which catches most cases
return re.sub("\x1b[^m]*m", '', val)
-
+
def ansi_prompt_line_width(val):
# Given an ANSI prompt, return the length of its longest line, as in the number of characters it takes up
# Start by stripping off ANSI
stripped_val = strip_ansi(val)
-
+
# Now count the longest line
return max([len(x) for x in stripped_val.split('\n')])
-
+
def ansi_to_html(val):
# Split us up by ANSI escape sequences
@@ -206,13 +206,13 @@ def ansi_to_html(val):
) # End capture
""", re.VERBOSE)
separated = reg.split(val)
-
+
# We have to HTML escape the text and convert ANSI escapes into HTML
# Collect it all into this array
result = []
-
+
span_open = False
-
+
# Text is at even indexes, escape sequences at odd indexes
for i in range(len(separated)):
component = separated[i]
@@ -223,13 +223,13 @@ def ansi_to_html(val):
else:
# It's an escape sequence. Close the previous escape.
span_open = append_html_for_ansi_escape(component, result, span_open)
-
+
# Close final escape
if span_open: result.append('')
-
+
# Remove empty elements
result = [x for x in result if x]
-
+
# Clean up empty spans, the nasty way
idx = len(result) - 1
while idx >= 1:
@@ -254,7 +254,161 @@ class FishVar:
flags = []
if self.universal: flags.append('universal')
if self.exported: flags.append('exported')
- return [self.name, self.value, ', '.join(flags)]
+ return {"name": self.name, "value": self.value, "Flags": ', '.join(flags)}
+
+class FishBinding:
+ """A class that represents keyboard binding """
+
+ def __init__(self, command, binding, readable_binding, description=None):
+ self.command = command
+ self.binding = binding
+ self.readable_binding = readable_binding
+ self.description = description
+
+ def get_json_obj(self):
+ return {"command" : self.command, "binding": self.binding, "readable_binding": self.readable_binding, "description": self.description }
+
+ def get_readable_binding(command):
+ return command
+
+class BindingParser:
+ """ Class to parse codes for bind command """
+
+ #TODO: What does snext and sprevious mean ?
+ readable_keys= { "dc":"Delete", "npage": "Page Up", "ppage":"Page Down",
+ "sdc": "Shift Delete", "shome": "Shift Home",
+ "left": "Left Arrow", "right": "Right Arrow",
+ "up": "Up Arrow", "down": "Down Arrow",
+ "sleft": "Shift Left", "sright": "Shift Right"
+ }
+
+ def set_buffer(self, buffer, is_key=False):
+ """ Sets code to parse """
+
+ self.buffer = buffer
+ self.is_key = is_key
+ self.index = 0
+
+ def get_char(self):
+ """ Gets next character from buffer """
+
+ c = self.buffer[self.index]
+ self.index += 1
+ return c
+
+ def unget_char(self):
+ """ Goes back by one character for parsing """
+
+ self.index -= 1
+
+ def end(self):
+ """ Returns true if reached end of buffer """
+
+ return self.index >= len(self.buffer)
+
+ def parse_control_sequence(self):
+ """ Parses terminal specifiec control sequences """
+
+ result = ''
+ c = self.get_char()
+
+ # \e0 is used to denote start of control sequence
+ if c == 'O':
+ c = self.get_char()
+
+ # \[1\; is start of control sequence
+ if c == '1':
+ self.get_char();c = self.get_char()
+ if c == ";":
+ c = self.get_char()
+
+ # 3 is Alt
+ if c == '3':
+ result += "ALT - "
+ c = self.get_char()
+
+ # 5 is Ctrl
+ if c == '5':
+ result += "CTRL - "
+ c = self.get_char()
+
+ # 9 is Alt
+ if c == '9':
+ result += "ALT - "
+ c = self.get_char()
+
+ if c == 'A':
+ result += 'Up Arrow'
+ elif c == 'B':
+ result += 'Down Arrow'
+ elif c == 'C':
+ result += 'Right Arrow'
+ elif c == 'D':
+ result += "Left Arrow"
+ elif c == 'F':
+ result += "End"
+ elif c == 'H':
+ result += "Home"
+
+ return result
+
+ def get_readable_binding(self):
+ """ Gets a readable representation of binding """
+
+ if self.is_key:
+ try:
+ result = BindingParser.readable_keys[self.buffer]
+ except KeyError:
+ result = self.buffer.title()
+ else:
+ result = self.parse_binding()
+
+ return result
+
+ def parse_binding(self):
+ readable_command = ''
+ result = ''
+ alt = ctrl = False
+
+ while not self.end():
+ c = self.get_char()
+
+ if c == '\\':
+ c = self.get_char()
+ if c == 'e':
+ d = self.get_char()
+ if d == 'O':
+ self.unget_char()
+ result += self.parse_control_sequence()
+ elif d == '\\':
+ if self.get_char() == '[':
+ result += self.parse_control_sequence()
+ else:
+ self.unget_char()
+ self.unget_char()
+ alt = True
+ else:
+ alt = True
+ self.unget_char()
+ elif c == 'c':
+ ctrl = True
+ elif c == 'n':
+ result += 'Enter'
+ elif c == 't':
+ result += 'Tab'
+ elif c == 'b':
+ result += 'Backspace'
+ else:
+ result += c
+ else:
+ result += c
+ if ctrl:
+ readable_command += 'CTRL - '
+ if alt:
+ readable_command += 'ALT - '
+
+ return readable_command + result
+
class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
@@ -314,7 +468,9 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
for match in re.finditer(r"^fish_color_(\S+) ?(.*)", line):
color_name, color_value = [x.strip() for x in match.group(1, 2)]
color_desc = descriptions.get(color_name, '')
- result.append([color_name, color_desc, parse_color(color_value)])
+ data = { "name": color_name, "description" : color_desc }
+ data.update(parse_color(color_value))
+ result.append(data)
remaining.discard(color_name)
# Ensure that we have all the color names we know about, so that if the
@@ -363,6 +519,39 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
return [vars[key].get_json_obj() for key in sorted(vars.keys(), key=str.lower)]
+ def do_get_bindings(self):
+ """ Get key bindings """
+
+ # Running __fish_config_interactive print fish greeting and
+ # loads key bindings
+ greeting, err = run_fish_cmd(' __fish_config_interactive')
+
+ # Load the key bindings and then list them with bind
+ out, err = run_fish_cmd('__fish_config_interactive; bind')
+
+ # Remove fish greeting from output
+ out = out[len(greeting):]
+
+ # Put all the bindings into a list
+ bindings = []
+ binding_parser = BindingParser()
+
+ for line in out.split('\n'):
+ comps = line.split(' ', 2)
+ if len(comps) < 3:
+ continue
+ if comps[1] == '-k':
+ key_name, command = comps[2].split(' ', 1)
+ binding_parser.set_buffer(key_name, True)
+ fish_binding = FishBinding(command=command, binding=key_name, readable_binding=binding_parser.get_readable_binding())
+ else:
+ binding_parser.set_buffer(comps[1])
+ fish_binding = FishBinding(command=comps[2], binding=comps[1], readable_binding=binding_parser.get_readable_binding())
+
+ bindings.append(fish_binding)
+
+ return [ binding.get_json_obj() for binding in bindings ]
+
def do_get_history(self):
# Use \x1e ("record separator") to distinguish between history items. The first
# backslash is so Python passes one backslash to fish
@@ -371,7 +560,6 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
if result: result.pop() # Trim off the trailing element
return result
-
def do_get_color_for_variable(self, name):
"Return the color with the given name, or the empty string if there is none"
out, err = run_fish_cmd("echo -n $" + name)
@@ -397,12 +585,12 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
# It's really lame that we always return success here
out, err = run_fish_cmd('builtin history --save --delete -- ' + escape_fish_cmd(history_item_text))
return True
-
+
def do_set_prompt_function(self, prompt_func):
cmd = prompt_func + '\n' + 'funcsave fish_prompt'
out, err = run_fish_cmd(cmd)
return len(err) == 0
-
+
def do_get_prompt(self, command_to_run, prompt_function_text):
# Return the prompt output by the given command
prompt_demo_ansi, err = run_fish_cmd(command_to_run)
@@ -414,7 +602,7 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
# Return the current prompt
prompt_func, err = run_fish_cmd('functions fish_prompt')
return self.do_get_prompt('cd "' + initial_wd + '" ; fish_prompt', prompt_func.strip())
-
+
def do_get_sample_prompt(self, text):
# Return the prompt you get from the given text
cmd = text + "\n cd \"" + initial_wd + "\" \n fish_prompt\n"
@@ -424,7 +612,7 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
# Allow us to skip whitespace, etc.
if not line: return True
if line.isspace(): return True
-
+
# Parse a comment hash like '# name: Classic'
match = re.match(r"#\s*(\w+?): (.+)", line, re.IGNORECASE)
if match:
@@ -434,8 +622,8 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
return True
# Skip other hash comments
return line.startswith('#')
-
-
+
+
def read_one_sample_prompt(self, fd):
# Read one sample prompt from fd
function_lines = []
@@ -448,14 +636,16 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
# Maybe not we're not parsing hashes, or maybe we already were not
if not parsing_hashes:
function_lines.append(line)
- result['function'] = ''.join(function_lines).strip()
- return result
-
+ func = ''.join(function_lines).strip()
+ result.update(self.do_get_sample_prompt(func))
+ return result
+
def do_get_sample_prompts_list(self):
result = []
# Start with the "Current" meta-sample
result.append({'name': 'Current'})
-
+ result[0].update(self.do_get_current_prompt())
+
# Read all of the prompts in sample_prompts
paths = glob.iglob('sample_prompts/*.fish')
for path in paths:
@@ -467,7 +657,7 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
# Ignore unreadable files, etc
pass
return result
-
+
def font_size_for_ansi_prompt(self, prompt_demo_ansi):
width = ansi_prompt_line_width(prompt_demo_ansi)
# Pick a font size
@@ -502,6 +692,8 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
elif re.match(r"/color/(\w+)/", p):
name = re.match(r"/color/(\w+)/", p).group(1)
output = self.do_get_color_for_variable(name)
+ elif p == '/bindings/':
+ output = self.do_get_bindings()
else:
return SimpleHTTPServer.SimpleHTTPRequestHandler.do_GET(self)
@@ -578,7 +770,7 @@ class FishConfigHTTPRequestHandler(SimpleHTTPServer.SimpleHTTPRequestHandler):
def log_request(self, code='-', size='-'):
""" Disable request logging """
pass
-
+
# find fish
fish_bin_dir = os.environ.get('__fish_bin_dir')
fish_bin_path = None
@@ -599,7 +791,7 @@ if not fish_bin_dir:
else:
fish_bin_path = os.path.join(fish_bin_dir, 'fish')
-
+
if not os.access(fish_bin_path, os.X_OK):
print("fish could not be executed at path '%s'. Is fish installed correctly?" % fish_bin_path)
sys.exit(-1)