mirror of https://github.com/amol-/dukpy.git
318 lines
11 KiB
ReStructuredText
318 lines
11 KiB
ReStructuredText
dukpy
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=====
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.. image:: https://github.com/amol-/dukpy/actions/workflows/run-tests.yml/badge.svg
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:target: https://github.com/amol-/dukpy/actions/workflows/run-tests.yml
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.. image:: https://coveralls.io/repos/amol-/dukpy/badge.png?branch=master
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:target: https://coveralls.io/r/amol-/dukpy?branch=master
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.. image:: https://img.shields.io/pypi/v/dukpy.svg
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:target: https://pypi.org/p/dukpy
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DukPy is a simple javascript interpreter for Python built on top of
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duktape engine **without any external dependency**.
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It comes with a bunch of common transpilers built-in for convenience:
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- *CoffeeScript*
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- *BabelJS*
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- *TypeScript*
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- *JSX*
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- *LESS*
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CoffeeScript Compiler
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---------------------
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Using the coffeescript compiler is as easy as running:
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.. code:: python
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>>> import dukpy
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>>> dukpy.coffee_compile('''
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... fill = (container, liquid = "coffee") ->
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... "Filling the #{container} with #{liquid}..."
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... ''')
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'(function() {\n var fill;\n\n fill = function*(container, liquid) {\n if (liquid == null) {\n liquid = "coffee";\n }\n return "Filling the " + container + " with " + liquid + "...";\n };\n\n}).call(this);\n'
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TypeScript Transpiler
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---------------------
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The TypeScript compiler can be used through the
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``dukpy.typescript_compile`` function:
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.. code:: python
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>>> import dukpy
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>>> dukpy.typescript_compile('''
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... class Greeter {
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... constructor(public greeting: string) { }
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... greet() {
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... return "<h1>" + this.greeting + "</h1>";
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... }
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... };
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...
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... var greeter = new Greeter("Hello, world!");
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... ''')
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'var Greeter = (function () {\n function Greeter(greeting) {\n this.greeting = greeting;\n }\n Greeter.prototype.greet = function () {\n return "<h1>" + this.greeting + "</h1>";\n };\n return Greeter;\n})();\n;\nvar greeter = new Greeter("Hello, world!");\n'
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Currently the compiler has built-in options and doesn't accept additional ones,
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The DukPY based TypeScript compiler also provides a WebAssets (
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http://webassets.readthedocs.org/en/latest/ ) filter to automatically
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compile TypeScript code in your assets pipeline. You register this filter as
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``typescript`` within WebAssets using:
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.. code:: python
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from webassets.filter import register_filter
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from dukpy.webassets import TypeScript
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register_filter(TypeScript)
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Which makes the filter available with the ``typescript`` name.
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**NOTE:** When using the TypeScript compiler for code that needs to run
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in the browser, make sure to add
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https://cdnjs.cloudflare.com/ajax/libs/systemjs/0.19.24/system.js
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dependency. As ``import`` statements are resolved using SystemJS.
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EcmaScript6 BabelJS Transpiler
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------------------------------
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To compile ES6 code to ES5 for everyday usage you can use
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``dukpy.babel_compile``:
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.. code:: python
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>>> import dukpy
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>>> dukpy.babel_compile('''
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... class Point {
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... constructor(x, y) {
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... this.x = x;
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... this.y = y;
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... }
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... toString() {
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... return '(' + this.x + ', ' + this.y + ')';
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... }
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... }
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... ''')
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'"use strict";\n\nvar _prototypeProperties = function (child, staticProps, instanceProps) { if (staticProps) Object.defineProperties(child, staticProps); if (instanceProps) Object.defineProperties(child.prototype, instanceProps); };\n\nvar _classCallCheck = function (instance, Constructor) { if (!(instance instanceof Constructor)) { throw new TypeError("Cannot call a class as a function"); } };\n\nvar Point = (function () {\n function Point(x, y) {\n _classCallCheck(this, Point);\n\n this.x = x;\n this.y = y;\n }\n\n _prototypeProperties(Point, null, {\n toString: {\n value: function toString() {\n return "(" + this.x + ", " + this.y + ")";\n },\n writable: true,\n configurable: true\n }\n });\n\n return Point;\n})();\n'
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You can pass `options`__ to the BabelJS compiler just as keywords on
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the call to ``babel_compile()``.
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__ http://babeljs.io/docs/usage/options/
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The DukPY based BabelJS compiler also provides a WebAssets (
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http://webassets.readthedocs.org/en/latest/ ) filter to automatically
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compile ES6 code in your assets pipeline. You register this filter as
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``babeljs`` within WebAssets using:
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.. code:: python
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from webassets.filter import register_filter
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from dukpy.webassets import BabelJS
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register_filter(BabelJS)
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Which makes the filter available with the ``babeljs`` name.
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Only supported filter option is currently `BABEL_MODULES_LOADER` with value
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``systemjs`` or ``umd`` to specify that compiled code should use SystemJS
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or UMD instead of CommonJS for modules.
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**NOTE:** When using the BabelJS compiler for code that needs to run
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in the browser, make sure to add
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https://cdnjs.cloudflare.com/ajax/libs/babel-polyfill/6.26.0/polyfill.min.js
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dependency.
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JSX to React Transpiling
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------------------------
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DukPy provides a built-in compiler from JSX to React, this is available as
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``dukpy.jsx_compile``:
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.. code:: python
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>>> import dukpy
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>>> dukpy.jsx_compile('var react_hello = <h1>Hello, world!</h1>;')
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u'"use strict";\n\nvar react_hello = React.createElement(\n "h1",\n null,\n "Hello, world!"\n);'
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The DukPY based JSX compiler also provides a WebAssets (
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http://webassets.readthedocs.org/en/latest/ ) filter to automatically
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compile JSX+ES6 code in your assets pipeline. You register this filter as
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``babeljsx`` within WebAssets using:
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.. code:: python
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from webassets.filter import register_filter
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from dukpy.webassets import BabelJSX
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register_filter(BabelJSX)
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Which makes the filter available with the ``babeljsx`` name.
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This filter supports the same options as the babel one.
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Less Transpiling
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----------------
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DukPy provides a built-in distribution of the less compiler available
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through `dukpy.less_compile`:
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.. code:: python
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>>> import dukpy
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>>> dukpy.less_compile('.class { width: (1 + 1) }')
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'.class {\n width: 2;\n}\n'
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The DukPY based LESS compiler also provides a WebAssets (
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http://webassets.readthedocs.org/en/latest/ ) filter to automatically
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compile LESS code in your assets pipeline. You register this filter as
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``lessc`` within WebAssets using:
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.. code:: python
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from webassets.filter import register_filter
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from dukpy.webassets import CompileLess
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register_filter(CompileLess)
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Which makes the filter available with the ``lessc`` name.
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Using the JavaScript Interpreter
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--------------------------------
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Using dukpy is as simple as calling the ``dukpy.evaljs`` function with
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the javascript code:
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.. code:: python
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>>> import dukpy
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>>> dukpy.evaljs("var o = {'value': 5}; o['value'] += 3; o")
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{'value': 8}
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The ``evaljs`` function executes the javascript and returns the
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resulting value as far as it is possible to encode it in JSON.
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If execution fails a ``dukpy.JSRuntimeError`` exception is raised
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with the failure reason.
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Passing Arguments
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~~~~~~~~~~~~~~~~~
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Any argument passed to ``evaljs`` is available in JavaScript inside
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the ``dukpy`` object in javascript. It must be possible to encode
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the arguments using JSON for them to be available in Javascript:
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.. code:: python
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>>> import dukpy
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>>>
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>>> def sum3(value):
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... return dukpy.evaljs("dukpy['value'] + 3", value=value)
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...
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>>> sum3(7)
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10
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Running Multiple Scripts
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~~~~~~~~~~~~~~~~~~~~~~~~
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The ``evaljs`` function supports providing multiple source codes to
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be executed in the same context.
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Multiple script can be passed in a list or tuple:
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.. code:: python
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>>> import dukpy
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>>> dukpy.evaljs(["var o = {'value': 5}",
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... "o['value'] += 3",
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... "o"])
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{'value': 8}
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This is useful when your code requires dependencies to work,
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as you can load the dependency and then your code.
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This is actually how the coffeescript compiler is implemented
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by DukPy itself:
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.. code:: python
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def coffee_compile(source):
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with open(COFFEE_COMPILER, 'r') as coffeescript_js:
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return evaljs((coffeescript_js.read(), 'CoffeeScript.compile(dukpy.coffeecode)'),
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coffeecode=source)
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Using a persistent JavaScript Interpreter
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-----------------------------------------
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The ``evaljs`` function creates a new interpreter on each call,
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this is usually convenient and avoid errors due to dirt global variables
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or unexpected execution status.
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In some cases you might want to run code that has a slow bootstrap, so
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it's convenient to reuse the same interpreter between two different calls
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so that the bootstrap cost has already been paid during the first execution.
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This can be achieved by using the ``dukpy.JSInterpreter`` object.
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Creating a ``dukpy.JSInterpreter`` permits to evaluate code inside that interpreter
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and multiple ``eval`` calls will share the same interpreter and global status:
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.. code:: python
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>>> import dukpy
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>>> interpreter = dukpy.JSInterpreter()
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>>> interpreter.evaljs("var o = {'value': 5}; o")
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{u'value': 5}
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>>> interpreter.evaljs("o.value += 1; o")
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{u'value': 6}
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Loading modules with require
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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When using the ``dukpy.JSInterpreter`` object it is possible to use
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the ``require('modulename')`` instruction to load a module inside javascript.
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Modules are looked up in all directories registered with
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``dukpy.JSInterpreter.loader.register_path``:
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.. code:: python
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>>> import dukpy
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>>> jsi = dukpy.JSInterpreter()
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>>> jsi.loader.register_path('./js_modules')
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>>> jsi.evaljs("isEmpty = require('fbjs/lib/isEmpty'); isEmpty([1])")
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False
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Installing packages from npmjs.org
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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When using the persistent javascript interpreter it is also possible to install packages
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from *npmjs.org* through the ``dukpy.install_jspackage`` function:
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.. code:: python
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>>> import dukpy
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>>> jsi = dukpy.JSInterpreter()
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>>> dukpy.install_jspackage('promise', None, './js_modules')
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Packages going to be installed: promise->7.1.1, asap->2.0.3
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Fetching https://registry.npmjs.org/promise/-/promise-7.1.1.tgz..........................
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Fetching https://registry.npmjs.org/asap/-/asap-2.0.3.tgz............
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Installing promise in ./js_modules Done!
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The same functionality is also provided by the ``dukpy-install`` shell command::
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$ dukpy-install -d ./js_modules promise
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Packages going to be installed: promise->7.1.1, asap->2.0.3
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Fetching https://registry.npmjs.org/promise/-/promise-7.1.1.tgz..........................
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Fetching https://registry.npmjs.org/asap/-/asap-2.0.3.tgz............
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Installing promise in ./js_modules Done!
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Please note that currently `install_jspackage` is not able to resolve conflicting
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dependencies.
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