This tutorial will show you how to create an interactive map of the world you can use to display travel photos. In the process, you'll be introduced to Raphael.js. It is a small JavaScript library that makes it easy to work with vector graphics. Instead of using HTML5 Canvas for interactive animations, it uses SVG (for modern browsers) and VML (for IE8 and earlier). This means that Raphael.js looks great on modern browsers and mobile devices, but degrades gracefully and is functional on legacy browsers. Because it is written in JavaScript, it's very easy to integrate with other elements in the DOM. This makes it a great choice for all sorts of interactive animations and a useful tool to add to your skill set.

Note: this is a guest post by Chris Youderian.

The Final Result

Before we get started, click on the image below to view the demo:

interactive world map

You can also download the full source code for the demo to reference as you work through the tutorial.

Tutorial Outline

This tutorial consists of 4 steps:

  1. Create a Raphael paper and place it on the webpage
  2. Fill the paper with a rectangle for the ocean and a path of the world
  3. Add locations to represent cities around the world
  4. Add event listeners to these location markers to make the map interactive

1. Create a Raphael paper and place it on the webpage

First, download the raphael-min.js file from the Raphael.js website. Place it in a folder next to a blank worldmap.js file that you have created for the JavaScript code. Add a blank HTML file to the folder and reference both the raphael-min.js and the worldmap.js files in the <head> of the document. In the body of the HTML file, add a div with id="map". Later, we will use JavaScript to select this div and replace it with the map.

Built using Raphael.js Library
Now, we can begin writing JavaScript. The JavaScript should execute after the page has loaded, so add the following event listener to the window object:

if (window.addEventListener){ // W3C standard
 window.addEventListener('load', function(){worldmap()}, false);
 }
else if (window.attachEvent){ // Microsoft
 window.attachEvent('onload', function(){worldmap()});
}

This is equivalent to $(window).load() in jQuery (isn't jQuery succinct ). After the window has loaded, the event listener will call the function worldmap(). This is where the meat of the code will reside.

Create the worldmap() function and tell Raphael to create a paper in the "map" div. The width of the paper is inherited from the div so that the map can be used in responsive designs. The height of the map is always 62 percent of the width, to be consistent with the world's mapped dimensions.

function worldmap(){
 image_array=[];
 var div = document.getElementById('map');
 var width=div.offsetWidth;
 var scale=width/887;
 var height=width*.62;
 var paper = Raphael(div, width, height); //create the Raphael paper in the map div

scale will be used later to shrink or expand elements in the paper relative to the width of the map. This makes it so that when the size of the map paper changes, the land will scale accordingly.

2. Fill the paper with a rectangle for the ocean and a path of the world

At this point, we have created a paper, but it is still blank. To fill it in, create a rectangle to represent the ocean. To do this in Raphael, call the method rect from the paper object. The rectangle will have the same width and height as the paper. To make the background blue, give the background element some attributes using the attr method.

var background=paper.rect(0, 0, width, height); //create the background
background.attr({fill: 'skyblue', 'stroke-width': 0});

Any HTML 6-digit hex code or HTML color name can be used for the fill. Setting the stroke-width equal to zero prevents the rectangle from having a border. You can read the full list of possible attributes in the Raphael documentation.

Ocean

Now, it's time to add some land to the map. Download this Mercator projection of the world in svg format. This file is the cleaned and minimized version of this open source Wikipedia file. Raphael uses the same path format that is used by SVG. So, open the mercator.svg file in a text editor and extract the path that is between d=" and ":

SVG example

Paste this into the JavaScript file as a string:

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Then, add the path to the paper object and give it some attributes so that it has a color and border color.

var map=paper.path(map_path).attr({fill: 'gray', stroke: 'white'}).scale(scale, scale, 0, 0);

3. Add locations to represent cities around the world

At this point, we've created a beautiful map, but it is a little drab. Adding location markers will give the map some color. First, create a set for all the location markers:

var location_set=paper.set();

A set makes it possible to group similar elements. This makes it easy to apply attributes and event handlers to all elements of the same type at once.

Next, we need data for each location. We'll store this information in the variable locations:

var locations={
 0: {
  name: 'Paris',
  lat: 48.866666670,
  lng: 2.333333333,
  color: 'violet',
  url: 'http://www.flickr.com/photos/wlappe/2903363114/sizes/l/in/photostream/',
  img: 'paris'
 }
}

Each location should contain the name of the location, its geographic coordinates, and its color. For each location, save a 150px square image to the img subdirectory. Then add the image's name as the img property and add the url for the full image as the url property. Make sure that latitude and longitude are in decimal form. Locations in the Western and Southern hemispheres should be negative.

The images you have saved

We will iterate over every location and create a corresponding location marker on the map.

for (var location in locations){
 var loc=locations[location];
 var xy=get_xy(loc.lat, loc.lng);
 var loc_obj=paper.circle(xy.x, xy.y, 10).attr({fill: loc.color, stroke: 'white', 'stroke-width': 2}).scale(scale, scale, 0, 0);
 loc_obj.name=loc.name;
 loc_obj.url=loc.url;
 loc_obj.img=loc.img;
 loc_obj.x=xy.x;
 loc_obj.y=xy.y;
 location_set.push(loc_obj);
}

For each location marker, the latitude and longitude needs to be transformed into x and y coordinates using the function get_xy():

function get_xy(lat, lng){var mapWidth=2058;var mapHeight=1746;var factor=.404;var x_adj=-391;var y_adj=37;var x = (mapWidth*(180+lng)/360)%mapWidth+(mapWidth/2);var latRad = lat*Math.PI/180;var mercN = Math.log(Math.tan((Math.PI/4)+(latRad/2)));var y = (mapHeight/2)-(mapWidth*mercN/(2*Math.PI));return { x: x*factor+x_adj, y: y*factor+y_adj}}

The creation and calibration of this function is outside of the scope of this tutorial, but is described here. The function is also in readable form (with comments) in the source. The process is somewhat complicated because a 3-dimensional world can be projected onto a 2-dimensional space a number of different ways.

Given the x, y coordinates, it's straightforward to add a circle to the Raphael paper. We'll give the circle a radius of 10. Similar to the rectangle and path, the locations are assigned colors using the attr method. The name, x/y coordinates, and photo data for each location is attached to the Raphael element so that it can be easily referenced later. Each location is pushed into the location_set so that all locations can be manipulated as a group.

4. Add event listeners to the location markers to make the map interactive

The map is colorful now, but is still static. The real power of Raphael.js is its ability to make elements interactive. In this example, we'll make hovering over a location highlight its border, display its name elsewhere on the webpage, and show a thumbnail image of the city. Clicking on the city will redirect the user to Flickr to see the full image. To make this possible, add:

<h1 id="location_name">Hover over a city to see its name</h1>

above the map div in the index.html file. Next, select this element by id with JavaScript:

var name = document.getElementById('location_name');

this will make it possible to dynamically manipulate the h1 text.

Making the map interactive

To make the locations interactive, we simply add event listeners that call a corresponding function when an element in the location_set is hovered or clicked.

location_set.hover(over, out);
location_set.click(click);

When an element is hovered, the function over() is called. Using this to access the Raphael location element, it is easy to change the location's attributes. Upon hover, the stroke-width of the element increases by 50% to 3. A thumbnail of the city's photo is displayed. And, the h1 element on the page is changed to the name of the location.

function over(){
  this.attr({'stroke-width': 3});
  image_array[this.id]=paper.image('img/'+this.img+'.jpg', this.x+8, this.y-160, 150, 150).scale(scale, scale, 0, 0);
  name.innerHTML=this.name;
 }

when the mouse leaves a location, the thumbnail disappears and the stroke width and h1 element revert to their original state.

function out(){
  this.attr({'stroke-width': 2});
  name.innerHTML='Hover over a city to see its name';
  image_array[this.id].remove();
}

Clicking on a location calls the function click(). In this example, clicking redirects the user to the Flickr page corresponding to the city's photo (as defined earlier). However, it would be straightforward to change this function to add more interactive elements to your page.

function click(){
  window.location.href = this.url;
}
Flickr

Hopefully, this tutorial gives you a taste of what is possible with Raphael.js and inspires you to start creating your own interactive animations.

Guest Post Author

Chris Youderian is the founder of Simplemaps.com which sells advanced interactive maps that are very easy to customize and install. He enjoys programming in JavaScript and improving his maps. This summer he hopes to play a lot of basketball and catch some beautiful trout.