I have a Google map with a semi transparent panel covering a portion of the area. I would like to adjust the center point of the map to take into account the portion of the map that is partially obscured. See the image below. Ideally, where the crosshairs and pin are placed would be the center point of the map.

I hope that makes sense.

The reason is simple: When you zoom it needs to center the map over the crosshair rather than at 50% 50%. Also, I will be plotting markers on the map and moving through them in sequence. When the map centers on them, they also need to be at the offset position.

Mockup of the map I am building

  • You are going to have to clarify your question. What does "take into account the portion of the map that is partially obscured" mean? And what does "rather than at 50% 50%" mean? Want to help, but can't figure out what you are trying to achieve. May 18, 2012 at 18:25
  • Hi, Can you please give the url of working example because i need some help for creating a moving ploy line along with route line
    – SP Singh
    Apr 6, 2013 at 12:34

10 Answers 10


This is not particularly difficult once you find the relevant previous answer.

You need to convert the centre of the map to its world co-ordinates, find where the map needs to be centered to put the apparent centre where you want it, and re-centre the map using the real centre.

The API will always centre the map on the centre of the viewport, so you need to be careful if you use map.getCenter() as it will return the real centre, not the apparent centre. I suppose it would be possible to overload the API so that its getCenter() and setCenter() methods are replaced, but I haven't done that.

Code below. Example online. In the example, clicking the button shifts the centre of the map (there's a road junction there) down 100px and left 200px.

function offsetCenter(latlng, offsetx, offsety) {

    // latlng is the apparent centre-point
    // offsetx is the distance you want that point to move to the right, in pixels
    // offsety is the distance you want that point to move upwards, in pixels
    // offset can be negative
    // offsetx and offsety are both optional

    var scale = Math.pow(2, map.getZoom());

    var worldCoordinateCenter = map.getProjection().fromLatLngToPoint(latlng);
    var pixelOffset = new google.maps.Point((offsetx/scale) || 0,(offsety/scale) ||0);

    var worldCoordinateNewCenter = new google.maps.Point(
        worldCoordinateCenter.x - pixelOffset.x,
        worldCoordinateCenter.y + pixelOffset.y

    var newCenter = map.getProjection().fromPointToLatLng(worldCoordinateNewCenter);


  • Is it possible to get this code to fire when the page loads so that the map shows as offset when first viewed? Jun 1, 2012 at 11:26
  • @DarrenCook: Of course. Just use this instead of map.setCenter(). All this code does is recalculate what the map is told do do, and then it does its own map.setCenter(). Jun 1, 2012 at 11:33
  • Thanks Andrew, so in my code I took addMarkerFromAdress(latLng, title) and replaced with function offsetCenter(latlng,offsetx,offsety) and it all still works - but how do I get the value for offsety (243px) into the function? Jun 1, 2012 at 11:55
  • 30
    Better use map.panBy(250, 0); Oct 29, 2013 at 17:03
  • 2
    I found that the nw var is never used by this script and at least in my use case could be removed without any issue. I didn't try this by itself though since i have a bunch of other methods already setting the bounds and all that.
    – hellatan
    Dec 1, 2013 at 4:55

Also take a look at the panBy(x:number, y:number) function on the maps object.

The documentation mentions this about the function:

Changes the center of the map by the given distance in pixels. If the distance is less than both the width and height of the map, the transition will be smoothly animated. Note that the map coordinate system increases from west to east (for x values) and north to south (for y values).

Just use it like this:

mapsObject.panBy(200, 100)
  • 9
    Anybody know of a way to disable animation for this method always?
    – Ash
    Dec 10, 2013 at 13:22
  • This must be the answer. It worked perfectly and so easy. Thanks. Oct 10, 2016 at 6:56

Here's an example of solving the problem using panBy() method of the maps API: http://jsfiddle.net/upsidown/2wej9smf/


Just found another simplest solution. In case you're using fitBounds method, you can pass optional second argument to its. This argument is padding, that will be considered while fitting bounds.

// pass single side:
map.fitBounds(bounds, { left: 1000 })

// OR use Number:
map.fitBounds(bounds, 20)

Further reading: official docs.

  • 1
    this is perfect!
    – monchisan
    May 12, 2020 at 11:14
  • Easiest solution
    – twan
    Nov 10, 2022 at 10:41

Here's a simpler method that might be more useful in responsive design since you can use percentages instead of pixels. No world coordinates, no LatLngs to Points!

var center;  // a latLng
var offsetX = 0.25; // move center one quarter map width left
var offsetY = 0.25; // move center one quarter map height down

var span = map.getBounds().toSpan(); // a latLng - # of deg map spans

var newCenter = { 
    lat: center.lat() + span.lat()*offsetY,
    lng: center.lng() + span.lng()*offsetX

map.panTo(newCenter);  // or map.setCenter(newCenter);
  • Tried this on InfoBox and it works! (although the pixelOffset still needs to be fixed)
    – rainy
    Dec 18, 2015 at 7:22
  • 1
    Great answer for both the simplicity of the solution AND taking responsive design into consideration Mar 2, 2016 at 7:19
  • 1
    I get an Uncaught TypeError: Cannot read property 'toSpan' of undefined Jul 18, 2016 at 1:02
  • can we get the newCenter lat long ?
    – Mr. Tomar
    Aug 3, 2016 at 11:29
  • 1
    This would not work if there is a need to change the zoom in the same operation. Also, it would not work accurately if the destination (new) center is located geographically far from the current center. Even at the same zoom level, 0.25 of the width of the screen represents a different distance at the equator than in Norway, for example, due to the Mercator projection used. Projecting the final coordinates is more robust.
    – pscl
    May 6, 2017 at 13:45

Andrew's is the answer. However, in my case, map.getBounds() kept returning undefined. I fixed it waiting for the bounds_changed event and then call the function to offset the center. Like so:

var center_moved = false;
google.maps.event.addListener(map, 'bounds_changed', function() {
    offsetCenter(map.getCenter(), 250, -200);
    center_moved = true; 
  • 1
    This answer in combination with (placed after) Andrew's answer was the solution for me. Thank you Nahuel! Jul 18, 2016 at 1:20

Old question, I know. But how about a more CSS-centric way?


What I did was:

  • Wrap the map and overlay in a container with overflow: hidden

  • Overlaid the overlay with position: absolute

  • Extended the map's apparent width by the overlay width (plus any padding and offset) by setting a negative margin-left.

  • Then in order to comply with https://www.google.com/permissions/geoguidelines/attr-guide.html positioned the widgets and attribution divs.

This way the centre of the map lies in line with the centre of the desired area. The js is just standard map js.

Repositioning the icons for street-view is an exercise for the reader :)

If you want the overlay on the left, just change line 24 margin-left to margin-right and line 32 right to left.

  • I really like this approach. Keeps the Angular/javascript nice and clean. Mar 29, 2017 at 1:33
  • Thanks :) This will, of course, need updating whenever google change their styles. I put comments before the CSS which moves the attributions and controls etc.. which should give an idea of how I did it if it does need modifying. Additional CSS will need creating to sort out street view.
    – Mardoxx
    Mar 29, 2017 at 9:10

After extensive searching I could not find a way to do this that also included zoom. Thankfully a clever chap has figured it out. There is also a fiddle here

'use strict';

const TILE_SIZE = {
  height: 256,
  width: 256
}; // google World tile size, as of v3.22
const ZOOM_MAX = 21; // max google maps zoom level, as of v3.22
const BUFFER = 15; // edge buffer for fitting markers within viewport bounds

const mapOptions = {
  zoom: 14,
  center: {
    lat: 34.075328,
    lng: -118.330432
  options: {
    mapTypeControl: false
const markers = [];
const mapDimensions = {};
const mapOffset = {
  x: 0,
  y: 0
const mapEl = document.getElementById('gmap');
const overlayEl = document.getElementById('overlay');
const gmap = new google.maps.Map(mapEl, mapOptions);

const updateMapDimensions = () => {
  mapDimensions.height = mapEl.offsetHeight;
  mapDimensions.width = mapEl.offsetWidth;

const getBoundsZoomLevel = (bounds, dimensions) => {
  const latRadian = lat => {
    let sin = Math.sin(lat * Math.PI / 180);
    let radX2 = Math.log((1 + sin) / (1 - sin)) / 2;
    return Math.max(Math.min(radX2, Math.PI), -Math.PI) / 2;
  const zoom = (mapPx, worldPx, fraction) => {
    return Math.floor(Math.log(mapPx / worldPx / fraction) / Math.LN2);
  const ne = bounds.getNorthEast();
  const sw = bounds.getSouthWest();
  const latFraction = (latRadian(ne.lat()) - latRadian(sw.lat())) / Math.PI;
  const lngDiff = ne.lng() - sw.lng();
  const lngFraction = ((lngDiff < 0) ? (lngDiff + 360) : lngDiff) / 360;
  const latZoom = zoom(dimensions.height, TILE_SIZE.height, latFraction);
  const lngZoom = zoom(dimensions.width, TILE_SIZE.width, lngFraction);
  return Math.min(latZoom, lngZoom, ZOOM_MAX);

const getBounds = locations => {
  let northeastLat;
  let northeastLong;
  let southwestLat;
  let southwestLong;
  locations.forEach(function(location) {
    if (!northeastLat) {
      northeastLat = southwestLat = location.lat;
      southwestLong = northeastLong = location.lng;
    if (location.lat > northeastLat) northeastLat = location.lat;
    else if (location.lat < southwestLat) southwestLat = location.lat;
    if (location.lng < northeastLong) northeastLong = location.lng;
    else if (location.lng > southwestLong) southwestLong = location.lng;
  const northeast = new google.maps.LatLng(northeastLat, northeastLong);
  const southwest = new google.maps.LatLng(southwestLat, southwestLong);
  const bounds = new google.maps.LatLngBounds();
  return bounds;

const zoomWithOffset = shouldZoom => {
  const currentzoom = gmap.getZoom();
  const newzoom = shouldZoom ? currentzoom + 1 : currentzoom - 1;
  const offset = {
    x: shouldZoom ? -mapOffset.x / 4 : mapOffset.x / 2,
    y: shouldZoom ? -mapOffset.y / 4 : mapOffset.y / 2
  const newCenter = offsetLatLng(gmap.getCenter(), offset.x, offset.y);
  if (shouldZoom) {
  } else {

const setMapBounds = locations => {
  const bounds = getBounds(locations);
  const dimensions = {
    width: mapDimensions.width - mapOffset.x - BUFFER * 2,
    height: mapDimensions.height - mapOffset.y - BUFFER * 2
  const zoomLevel = getBoundsZoomLevel(bounds, dimensions);

const offsetLatLng = (latlng, offsetX, offsetY) => {
  offsetX = offsetX || 0;
  offsetY = offsetY || 0;
  const scale = Math.pow(2, gmap.getZoom());
  const point = gmap.getProjection().fromLatLngToPoint(latlng);
  const pixelOffset = new google.maps.Point((offsetX / scale), (offsetY / scale));
  const newPoint = new google.maps.Point(
    point.x - pixelOffset.x,
    point.y + pixelOffset.y
  return gmap.getProjection().fromPointToLatLng(newPoint);

const setOffsetCenter = latlng => {
  const newCenterLatLng = offsetLatLng(latlng, mapOffset.x / 2, mapOffset.y / 2);

const locations = [{
  name: 'Wilshire Country Club',
  lat: 34.077796,
  lng: -118.331151
}, {
  name: '301 N Rossmore Ave',
  lat: 34.077146,
  lng: -118.327805
}, {
  name: '5920 Beverly Blvd',
  lat: 34.070281,
  lng: -118.331831

locations.forEach(function(location) {
  let marker = new google.maps.Marker({
    position: new google.maps.LatLng(location.lat, location.lng),
    title: location.name

mapOffset.x = overlayEl.offsetWidth;

document.zoom = bool => zoomWithOffset(bool);
document.setBounds = () => setMapBounds(locations);
section {
  height: 180px;
  margin-bottom: 15px;
  font-family: sans-serif;
  color: grey;
figure {
  position: relative;
  margin: 0;
  width: 100%;
  height: 100%;
figcaption {
  position: absolute;
  left: 15px;
  top: 15px;
  width: 120px;
  padding: 15px;
  background: white;
  box-shadow: 0 2px 5px rgba(0, 0, 0, .3);
gmap {
  display: block;
  height: 100%;
<script type="text/javascript" src="https://maps.googleapis.com/maps/api/js"></script>

    <gmap id="gmap"></gmap>
    <figcaption id="overlay">
      <h4>Tile Overlay</h4>
      <p>To be avoided by the map!</p>
<button onclick="zoom(true)">zoom in</button>
<button onclick="zoom(false)">zoom out</button>
<button onclick="setBounds()">set bounds</button>


Another approach when it comes to offsetting a route or a group of markers can be found here:


It still uses the fromLatLngToPoint() method described in @Andrew Leach answer.

  • 1
    This is more sophisticated than the accepted answer IMO.
    – Ian Lunn
    Feb 19, 2016 at 14:24

Below is an example of SIMPLE use for:

  • for DESKTOP version when the left side is OVERLAY with a width of 500
  • for the MOBILE version when the bottom of the page is OVERLAY with a height of 250

The solution will also work smoothly when the screen size changes live.

Requires that query be defined in css with @media screen and (min-width: 1025px) and @media screen and (max-width: 1024px)


function initMap() {
    map = new google.maps.Map(document.getElementById("map"), {
        zoom: 13

    bounds = new google.maps.LatLngBounds();
    // add markers to bounds

    // Initial bounds

    // Trigger resize browser and set new bounds
    google.maps.event.addDomListener(window, 'resize', function() {

function defineBounds() {
    if (window.matchMedia("(min-width:1025px)").matches) {
        map.fitBounds(bounds, {
            top: 100,
            right: 100,
            left: 600, // 500 + 100
            bottom: 100
    } else {
        map.fitBounds(bounds, {
            top: 80,
            right: 80,
            left: 80,
            bottom: 330 // 250 + 80

The solution can be customized for OVERLAY located on each side of the screen

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