mirror of
https://github.com/alextselegidis/easyappointments.git
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390 lines
15 KiB
Markdown
390 lines
15 KiB
Markdown
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Creating and Enabling a Plugin
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----
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There are two steps required to create and enable a new JSDoc plugin:
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1. Create a JavaScript module to contain your plugin code.
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2. Include that module in the "plugins" array of `conf.json`. You can specify
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an absolute or relative path. If you use a relative path, JSDoc searches for
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the plugin in the current working directory and the JSDoc directory, in that
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order.
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For example, if your plugin source code was saved in the "plugins/shout.js"
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file in the current working directory, you would include it by adding a
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reference to it in conf.json like so:
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...
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"plugins": [
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"plugins/shout"
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]
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...
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Authoring JSDoc 3 Plugins
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----
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The plugin system for JSDoc 3 is pretty powerful and provides plugin authors
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multiple methods, from high-level to low-level, of affecting document generation:
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- Defining event handlers
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- Defining tags
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- Defining a parse tree node processor
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### Event Handlers
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At the highest level, a plugin may register handlers for specific named-events
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that occur in the documentation generation process. JSDoc will pass the handler
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an event object containing pertinent information. Your plugin module should
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export a _handlers_ object that contains your handler, like so:
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exports.handlers = {
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newDoclet: function(e) {
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//Do something when we see a new doclet
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}
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}
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#### Event: fileBegin
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This is triggered when the parser has started on a new file. You might use this
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to do any per-file initialization your plugin needs to do.
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The event object will contain the following properties:
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- filename: the name of the file
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#### Event: beforeParse
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This is triggered before parsing has begun. You can use this method to modify
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the source code that will be parsed. For instance, you might add some virtual
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doclets so they get added to the documentation.
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The event object will contain the following properties:
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- filename: the name of the file
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- source: the contents of the file
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Below is an example that adds a virtual doclet for a function to the source so
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that it will get parsed and added to the documentation. This might be done to
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document methods that will be present for end-user use, but might not be in the
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source code being documented, like methods provided by a third-party superclass:
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exports.handlers = {
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beforeParse: function(e) {
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var extraDoc = ["",
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"/**",
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"Here's a description of this function",
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"@name superFunc",
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"@memberof ui.mywidget",
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"@function",
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"*/", ""];
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e.source += extraDoc.join("\n");
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}
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}
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#### Event: jsdocCommentFound
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This is fired whenever a jsdoc comment is found. It may or may not be associated
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with any code. You might use this to modify the contents of a comment before it
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is processed.
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The event object will contain the following properties:
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- filename: the name of the file
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- comment: the text of the comment
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- lineno: the line number the comment was found on
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#### Event: symbolFound
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This is fired when the parser comes across a symbol in the code it thinks is
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important. This usually means things that one might want to document --
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variables, functions, object literals, object property definitions,
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assignments, etc., but the symbols the parser finds can be modified by a plugin
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(see "Node Visitors" below).
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The event object will contain the following properties:
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- filename: the name of the file
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- comment: the comment associated with the symbol, if any
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- id: the unique id of the symbol
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- lineno: the line number the symbols was found on
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- range: an array containing the first and last characters of the code
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associated with the symbol
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- astnode: the node of the parse tree
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- code: information about the code. This usually contains "name", "type", and
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"node" properties and might also have "value", "paramnames", or "funcscope"
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properties depending on the symbol.
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#### Event: newDoclet
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This is the highest level event and is fired when a new doclet has been created.
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This means that a jsdoc or a symbol has been processed and the actual doclet
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that will be passed to the template has been created.
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The event object will contain the following properties:
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- doclet: the new doclet that was created
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The properties of the doclet can vary depending on the comment or symbol used to
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create it. Additionally, tag definitions (See "Tag Definitions" below) can
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modify the doclet. Some common properties you're likely to see include:
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- comment: the text of the comment (may be empty if symbol is undocumented)
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- meta: some information about the doclet, like filename, line number, etc.
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- description
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- kind
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- name
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- longname: the fully qualified name, including memberof info
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- memberof: the function/class/namespace that this is a member of
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- scope: (global|static|instance|inner)
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- undocumented: true if the symbol didn't have a jsdoc comment
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- defaultvalue: the specified default value for a property/variable
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- type: the specified type of parameter/property/function return (e.g. Boolean)
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- params: an object containing the list of parameters to a function
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- tags: an object containing the set of tags not handled by the parser (note:
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this is only available if ```allowUnknownTags``` is set to true in the conf.json
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file for JSDoc3)
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Below is an example of a newDoclet handler that shouts the descriptions:
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exports.handlers = {
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newDoclet: function(e) {
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// e.doclet will refer to the newly created doclet
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// you can read and modify properties of that doclet if you wish
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if (typeof e.doclet.description === 'string') {
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e.doclet.description = e.doclet.description.toUpperCase();
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}
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}
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};
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#### Event: fileComplete
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This is fired when the parser is done with a file. You might use this to
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perform some cleanup for your plugin.
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The event object will contain the following properties:
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- filename: the name of the file
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- source: the contents of the file
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### Tag Definitions
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Adding tags to the tag dictionary is a mid-level way to affect documentation
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generation. Before a newDoclet event is triggered, jsdoc comment blocks are
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parsed to determine the description and any jsdoc tags that may be present. When
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a tag is found, if it has been defined in the tag dictionary, it is given a
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chance to modify the doclet.
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Plugins can define tags by exporting a _defineTags_ function. That function will
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be passed a dictionary that can be used to define tags, like so:
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exports.defineTags = function(dictionary) {
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//define tags here
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}
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#### The Dictionary
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The dictionary provides the following methods:
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1. defineTag(title, opts)
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Used to define tags.
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The first parameter is the name of the tag (e.g. "param" or "overview"). the
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second is an object containing options for the tag. The options can be the
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following:
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- mustHaveValue (Boolean): whether or not the tag must have a value
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(e.g "@name TheName")
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- mustNotHaveValue (Boolean): whether or not the tag must not have a value
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- canHaveType (Boolean): Whether or not the tag can have a type
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(e.g. "@param **{String}** name the description of name")
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- canHaveName (Boolean): Whether or not the tag can have a name
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(e.g. "@param {String} **name** the description of name")
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- isNamespace (Boolean): Whether or not the tag marks a doclet as representing
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a namespace. The "@module" tag, for instance, sets this to true.
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- onTagged (Function): A callback function executed when the tag is found. The
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function is passed two parameters: the doclet and the tag. Here's an example:
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dictionary.defineTag('instance', {
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onTagged: function(doclet, tag) {
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doclet.scope = "instance";
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}
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});
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The defineTag method returns a Tag. The Tag object has a method "synonym"
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that can be used to declare synonyms to the tag. For example:
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dictionary.defineTag('exception', {
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<options for exception tag>
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})
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.synonym('throws');
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2. lookUp(title)
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Used to lookup a tag. Returns either the tag or false if it's not defined
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3. isNamespace(kind)
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Used to determine if a particular doclet type represents a namespace
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4. normalise(title)
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Used to find the canonical name of a tag. The name passed in might be that
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name or a synonym
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### Node Visitors
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At the lowest level, plugin authors can process each node in the parse tree by
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defining a node visitor that will visit each node, creating an opportunity to
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do things like modify comments and trigger parser events for any arbitrary piece
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of code.
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Plugins can define a node visitor by exporting a ```nodeVisitor``` object that
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contains a ```visitNode``` function, like so:
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exports.nodeVisitor = {
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visitNode: function(node, e, parser, currentSourceName) {
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//do all sorts of crazy things here
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}
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}
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The function is called on each node with the following parameters:
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- node: the node of the parse tree
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- e: the event. If the node is one that the parser handles, this will already
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be populated with the same things described in the _symbolFound_ event above.
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Otherwise, it will be an empty object on which to set various properties.
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- parser: the parser
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- currentSourceName: the name of the file being parsed
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#### Making things happen
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The primary reasons to implement a node visitor are to be able to document
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things that aren't normally documented (like function calls that create classes)
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or to auto generate documentation for code that isn't documented. For instance,
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a plugin might look for calls to a "_trigger" method since it knows that means
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an event is fired and then generate documentation for the event.
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To make things happen, the ```visitNode``` function should modify properties
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of the event parameter. In general the goal is to construct a comment and then
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get an event to fire. After the parser lets all of the node visitors have a
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look at the node, it looks to see if the event object has a ```comment```
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property and an ```event``` property. If it has both, the event named in the event
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property is fired. The event is usually "symbolFound" or "jsdocCommentFound",
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but theoretically, a plugin could define its own events and handle them.
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#### Example
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Below is an example of what a plugin for documenting jQuery UI widgets might do.
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jQuery UI uses a factory function call to create widget classes. The plugin
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looks for that function call and creates a symbol with documentation. It also
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looks for any "this._trigger" function calls and automatically creates
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documentation for the events that are triggered:
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exports.nodeVisitor = {
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visitNode: function(node, e, parser, currentSourceName) {
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if (node.type === Token.OBJECTLIT && node.parent && node.parent.type === Token.CALL && isInWidgetFactory(node, 1)) {
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var widgetName = node.parent.arguments.get(0).toSource();
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e.id = 'astnode' + node.hashCode(); // the id of the object literal node
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e.comment = String(node.parent.jsDoc||'');
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e.lineno = node.parent.getLineno();
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e.filename = currentSourceName;
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e.astnode = node;
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e.code = {
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name: "" + widgetName.substring(1, widgetName.length() - 1),
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type: "class",
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node: node
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};
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e.event = "symbolFound";
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e.finishers = [parser.addDocletRef];
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addCommentTag(e, "param", "{Object=} options A set of configuration options");
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}
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else if(isTriggerCall(node)) {
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var nameNode = node.arguments.get(0);
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eventName = String((nameNode.type == Token.STRING) ? nameNode.value : nameNode.toSource()),
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func = {},
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comment = "@event\n",
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eventKey = "";
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if (node.enclosingFunction) {
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func.id = 'astnode'+node.enclosingFunction.hashCode();
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func.doclet = parser.refs[func.id];
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}
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if(func.doclet) {
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func.doclet.addTag("fires", eventName);
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if (func.doclet.memberof) {
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eventKey = func.doclet.memberof + "#event:" + eventName;
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comment += "@name " + func.doclet.memberof + "#" + eventName;
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}
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}
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e.comment = comment;
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e.lineno = node.getLineno();
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e.filename = currentSourceName;
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e.event = "jsdocCommentFound";
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}
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}
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};
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function isTriggerCall(node) {
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if(node.type != Token.CALL) { return false; }
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var target = node.getTarget(),
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left = target && target.left && String(target.left.toSource()),
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right = target && target.right && String(target.right.toSource());
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return (left === "this" && right === "_trigger");
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}
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function isInWidgetFactory(node, depth) {
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var parent = node.parent,
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d = 0;
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while(parent && (!depth || d < depth)) {
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if (parent.type === Token.CALL) {
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var target = parent.getTarget(),
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left = target && target.left && String(target.left.toSource()),
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right = target && target.right && String(target.right.toSource());
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return ((left === "$" || left === "jQuery") && right === "widget");
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} else {
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parent = parent.parent;
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d++;
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}
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}
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return false;
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}
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You'll notice a "finishers" property set. The finishers property should contain
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an array of functions to be called after the event is fired and all the handlers
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have processed it. The parser provides an ```addDocletRef``` function that adds the
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doclet to the map (keyed off of the id property) of doclets it knows about.
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Lastly, the visitors are executed in the order the plugins are listed in the
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conf.json file. A plugin can stop later plugins from visiting a node by
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setting a ```stopPropagation``` property on the event object (e.stopPropagation = true).
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A plugin can stop the event from firing setting a ```preventDefault``` property.
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### Throwing Errors
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If you wish your plugin to throw an error, do it using the `handle` function in
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the `jsdoc/util/error` module:
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require('jsdoc/util/error').handle( new Error('I do not like green eggs and ham!') );
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By default, this will throw the error, halting the execution of JSDoc. However,
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if the user enabled JSDoc's `--lenient` switch, JSDoc will simply log the error
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to the console and continue.
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Packaging JSDoc 3 Plugins
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----
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The JSDoc 3 Jakefile has an ```install``` task that can be used to install a
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plugin into the JSDoc directory. So running the following will install the
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plugin:
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$>jake install[path/to/YourPluginFolder]
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**Note**: On some operating systems, including OS X, you may need to quote the
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target name and parameters:
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$>jake 'install[path/to/YourPluginFolder]'
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The task is passed a directory that should look something like the following:
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YourPluginFolder
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|- plugins
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| |- YourPlugin.js
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| \- test
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| |- fixtures
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| | \- YourFixtures.js
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| \- specs
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| \- YourTests.js
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\- templates
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\- YourTemplate
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\- publish.js
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