I'm currently building a single page application using ReactJS.

I read that one of the reasons for not using localStorage is because of XSS vulnerabilities.

Since React escapes all user input, would it now be safe to use localStorage?

  • 7
    prefer Session Storage May 26 '17 at 11:16
  • 17
  • 3
    "It's recommended not to store any sensitive information in local storage." -OWASP "store them in memory without any persistence" -Auth0
    – benbotto
    Aug 5 '19 at 21:09
  • 2
    I think Auth0 might have changed their perspective on this - because I can't find the above quote in the provided link
    – DauleDK
    Jun 2 '20 at 19:37
  • 1
    To be fair, @DauleDK, I think that particular quote is missing not because Auth0 now thinks that it is safe to do so, but quite the opposite -- If you read that page, it now appears that they advise that the token never be persisted in a client-side only solution, regardless of the persistence technique used: "If you have a SPA with no corresponding backend server, your SPA should request new tokens on login and store them in memory without any persistence. To make API calls, your SPA would then use the in-memory copy of the token." Oct 21 '20 at 19:55

In most of the modern single page applications, we indeed have to store the token somewhere on the client side (most common use case - to keep the user logged in after a page refresh).

There are a total of 2 options available: Web Storage (session storage, local storage) and a client side cookie. Both options are widely used, but this doesn't mean they are very secure.

Tom Abbott summarizes well the JWT sessionStorage and localStorage security:

Web Storage (localStorage/sessionStorage) is accessible through JavaScript on the same domain. This means that any JavaScript running on your site will have access to web storage, and because of this can be vulnerable to cross-site scripting (XSS) attacks. XSS, in a nutshell, is a type of vulnerability where an attacker can inject JavaScript that will run on your page. Basic XSS attacks attempt to inject JavaScript through form inputs, where the attacker puts <script>alert('You are Hacked');</script> into a form to see if it is run by the browser and can be viewed by other users.

To prevent XSS, the common response is to escape and encode all untrusted data. React (mostly) does that for you! Here's a great discussion about how much XSS vulnerability protection is React responsible for.

But that doesn't cover all possible vulnerabilities! Another potential threat is the usage of JavaScript hosted on CDNs or outside infrastructure.

Here's Tom again:

Modern web apps include 3rd party JavaScript libraries for A/B testing, funnel/market analysis, and ads. We use package managers like Bower to import other peoples’ code into our apps.

What if only one of the scripts you use is compromised? Malicious JavaScript can be embedded on the page, and Web Storage is compromised. These types of XSS attacks can get everyone’s Web Storage that visits your site, without their knowledge. This is probably why a bunch of organizations advise not to store anything of value or trust any information in web storage. This includes session identifiers and tokens.

Therefore, my conclusion is that as a storage mechanism, Web Storage does not enforce any secure standards during transfer. Whoever reads Web Storage and uses it must do their due diligence to ensure they always send the JWT over HTTPS and never HTTP.

  • 15
    So if I'm understanding you correctly, you recommend cookies? Just to make sure. Thanks!
    – SuperLemon
    Sep 29 '17 at 11:43
  • 14
    Yes. I recommend cookies because of the additional security they provide, and the simplicity of protecting against CSRF with modern web frameworks. Web Storage (localStorage/sessionStorage) is vulnerable to XSS, has a larger attack surface area, and can impact all application users on a successful attack. Sep 29 '17 at 19:07
  • 65
    I think you have these mixed up? Modern web frameworks have strong built in defenses for XSS. But not so much for xsrf. The best defense for xsrf is to avoid using cookies completely. Local storage is sandboxed to a specific domain, which means an attackers domain can't access it. Web frameworks defend against xss by automatically encoding and sanatizing user input. See angular.io/guide/security
    – mljohns89
    Nov 7 '17 at 18:21
  • 68
    If "you recommend cookies [instead]", then, can I recommend you say that somewhere in the answer? Rather than just in the comments?
    – spechter
    May 15 '18 at 6:24
  • 14
    I'm here a bit late, just reading these topics now and I'm confused about one thing, a lot of people talk about u're protected with an http only cookie if you are comprimised with Xss, but, if you have xss the atacker does not need to steal you anything, he can simple make a post from the page to impersonate you using that cookie (even if he cant steal it). Am I missing something??? Jan 14 '19 at 9:44

I know this is an old question but according what @mikejones1477 said, modern front end libraries and frameworks escape the text giving you protection against XSS. The reason why cookies are not a secure method using credentials is that cookies doesn't prevent CSRF when localStorage does (also remember that cookies are accessible by javascript too, so XSS isn't the big problem here), this answer resume why.

The reason storing an authentication token in local storage and manually adding it to each request protects against CSRF is that key word: manual. Since the browser is not automatically sending that auth token, if I visit evil.com and it manages to send a POST http://example.com/delete-my-account, it will not be able to send my authn token, so the request is ignored.

Of course httpOnly is the holy grail but you can't access from reactjs or any js framework beside you still have CSRF vulnerability. My recommendation would be localstorage or if you want to use cookies make sure implemeting some solution to your CSRF problem like django does.

Regarding with the CDN's make sure you're not using some weird CDN, for example CDN like google or bootstrap provide, are maintained by the community and doesn't contain malicious code, if you are not sure, you're free to review.

  • 11
    Not sure why you would say you're still vulnerable to CSRF while using cookies. Using a cookie with the flags HttpOnly SameSite=strict and secure, will keep the info you set in the cookies safe. Then against XSS, you simply make sure your JavaScript isn't aware of any authentication related data, like tokens and passwords (meaning, don't store them in Web Storage) - if you import a malicious script, that script will not have access to sensitive data. Yes, you will not have access to the token through JS either, but that really shouldn't be a problem.
    – miphe
    Jul 5 '19 at 13:22
  • @miphe that's what i said. But the OP is asking for a way to access from javascript. Here i'm just explaining what is the best way to store a token accessible from js. Jul 6 '19 at 19:00
  • Storing the auth token in a cookie is secure as long as you're not reading that cookie on the server. The client can get the token from the cookie and send it in an Authorization header. The server should only use the auth token from the Authorization header and disregard the cookie.
    – xyres
    Apr 29 at 4:25

Basically it's OK to store your JWT in your localStorage.

And I think this is a good way. If we are talking about XSS, XSS using CDN, it's also a potential risk of getting your client's login/pass as well. Storing data in local storage will prevent CSRF attacks at least.

You need to be aware of both and choose what you want. Both attacks it's not all you are need to be aware of, just remember: YOUR ENTIRE APP IS ONLY AS SECURE AS THE LEAST SECURE POINT OF YOUR APP.

Once again storing is OK, be vulnerable to XSS, CSRF,... isn't

  • 4
    This is why it is secure to do the following: - Store the JWT in a cookie so that it can't be retrieved from XSS - Store a CSRF token in localStorage so it can't be retrieved from CSRF Nov 6 '17 at 17:55
  • 54
    You bring up a good point: if your site runs a malicious script, it's game over anyway. They can just bind keydown events to inputs of type password and steal your user's authentication information that way (which is much, much worse than stealing a JWT auth token). Storing JWTs in localStorage does little to increase the already immense possible damage from XSS. Apr 30 '18 at 20:53
  • 1
    Unless auth method is single use code, or passwordless or 2FA Oct 11 '20 at 22:01
  • When going for localStorage. I suggest adding Content-Security-Policy headers as an extra security layer to minimize the risk of packages trying to steal your tokens.
    – feskr
    Feb 2 at 13:25
  • Nowadays, just set Cookie SameSite as strict to prevent CSRF.
    – ospider
    May 27 at 0:01

It is not safe if you use CDN's:

Malicious JavaScript can be embedded on the page, and Web Storage is compromised. These types of XSS attacks can get everyone’s Web Storage that visits your site, without their knowledge. This is probably why a bunch of organizations advise not to store anything of value or trust any information in web storage. This includes session identifiers and tokens.

via stormpath

Any script you require from the outside could potentially be compromised and could grab any JWTS from your client's storage and send personal data back to the attacker's server.

  • 7
    If I don't plan on using cdns will it be safe then?
    – user6127082
    May 26 '17 at 6:40
  • 1
    The author of the article never made a distinction between XSS on sites served via a CDN or directly from a central server. Wouldn't your explanation here also apply generally, not just for CDNs?
    – Vlad
    Dec 29 '18 at 0:11
  • Any npm package you include is js running on your web. Oct 11 '20 at 22:03

Localstorage is designed to be accessible by javascript, so it doesn't provide any XSS protection. As mentioned in other answers, there is a bunch of possible ways to do an XSS attack, from which localstorage is not protected by default.

However, cookies have security flags which protect from XSS and CSRF attacks. HttpOnly flag prevents client side javascript from accessing the cookie, Secure flag only allows the browser to transfer the cookie through ssl, and SameSite flag ensures that the cookie is sent only to the origin. Although I just checked and SameSite is currently supported only in Opera and Chrome, so to protect from CSRF it's better to use other strategies. For example, sending an encrypted token in another cookie with some public user data.

So cookies are a more secure choice for storing authentication data.

  • cant get: how HttpOnly can protect you from CSRF ? Jun 1 '17 at 22:49
  • @AlexLyalka Didn't mean to say that HttpOnly prevents from CSRF, rather than all cookie flags together can protect from XSS and CSRF. SameSite provides some protection, preventing the cookies from being sent to a site different from origin. Although I just checked and support for that flag is very low. It's also possible to avoid CSRF with a separate encrypted token with some user identification, which is checked on server.
    – Ivan
    Jun 2 '17 at 0:07
  • 1
    Well, if someone can execute code in your web, cant he simply make a post to ur web in the name of your user? Ok, he cant get your http only cookies, but he can make calls using those cookies, so I still cant see the point Feb 14 '19 at 20:22
  • 3
    @BorjaAlverez There's a big difference. Yes, via XSS someone could make requests on behalf of logged-in user, but compromising a token is worse. For example: the token may provide access to APIs that the client application doesn't use; the token may have other information about the user (email address, profile, and grants); the token could be used in replay attacks against your application; the token could be passed as an id_token_hint to an OIDC auth server; the token provides an attacker information about the cipher that was used to sign it; etc.
    – benbotto
    Aug 5 '19 at 21:17
  • What sense has to store jwt in cookie? If then in my web app I would like to request in another server service. That service can't decrypt that cookie in order to get jwt. May 25 at 21:37

A way to look at this is to consider the level of risk or harm.

Are you building an app with no users, POC/MVP? Are you a startup who needs to get to market and test your app quickly? If yes, I would probably just implement the simplest solution and maintain focus on finding product-market-fit. Use localStorage as its often easier to implement.

Are you building a v2 of an app with many daily active users or an app that people/businesses are heavily dependent on. Would getting hacked mean little or no room for recovery? If so, I would take a long hard look at your dependencies and consider storing token information in an http-only cookie.

Using both localStorage and cookie/session storage have their own pros and cons.

As stated by first answer: If your application has an XSS vulnerability, neither will protect your user. Since most modern applications have a dozen or more different dependencies, it becomes increasingly difficult to guarantee that one of your application's dependencies is not XSS vulnerable.

If your application does have an XSS vulnerability and a hacker has been able to exploit it, the hacker will be able to perform actions on behalf of your user. The hacker can perform GET/POST requests by retrieving token from localStorage or can perform POST requests if token is stored in a http-only cookie.

The only down-side of the storing your token in local storage is the hacker will be able to read your token.


Isn't neither localStorage or httpOnly cookie acceptable? In regards to a compromised 3rd party library, the only solution I know of that will reduce / prevent sensitive information from being stolen would be enforced Subresource Integrity.

Subresource Integrity (SRI) is a security feature that enables browsers to verify that resources they fetch (for example, from a CDN) are delivered without unexpected manipulation. It works by allowing you to provide a cryptographic hash that a fetched resource must match.

As long as the compromised 3rd party library is active on your website, a keylogger can start collecting info like username, password, and whatever else you input into the site.

An httpOnly cookie will prevent access from another computer but will do nothing to prevent the hacker from manipulating the user's computer.


One thing to keep in mind is whether the JWTs are:

  • First party (ie. simply for accessing your own server commands)
  • Third party (ie. a JWT for Google, Facebook, Twitter, etc.)

If the JWT is first-party:

Then it doesn't matter that much whether you store the JWT in local storage, or a secured cookie (ie. HttpOnly, SameSite=strict, and secure) [assuming your site is already using HTTPS, which it should].

This is because, assuming an XSS attack succeeds (ie. an attacker was able to insert Javascript code through a JS dependency that is now running on all visitor browsers), it's "game over" anyway; all the commands which were meant to be secured by the "JWT token verifications", can now be executed by the attacker just by having the script they've inserted into the frontend JS call all the needed endpoints. Even though they can't read the JWT token itself (because of the cookie's http-only flag), it doesn't matter because they can just send all the needed commands, and the browser will happily send the JWT token along with those commands.

Now while the XSS-attack situation is arguably "game over" either way (whether local-storage or secured cookie), cookies are still a little better, because the attacker is only able to execute the attacks if/when the user has the website open in their browser.

This causes the following "annoyances" for the attacker:

  1. "My XSS injection worked! Okay, time to collect private data on my boss and use it as blackmail. Dang it! He only ever logs in while I'm here at work. I'll have to prepare all my code ahead of time, and have it run within the three minutes he's on there, rather than getting to poke around into his data on the platform in a more gradual/exploratory way."
  2. "My XSS injection worked! Now I can change the code to send all Bitcoin transfers to me instead! I don't have any particular target in mind, so I don't need to wait for anyone. Man though, I wish I could access the JWT token itself -- that way I could silently collect them all, then empty everyone's wallets all at once. With these cookie-protected JWTs, I may only be able to hijack a few dozen visitors before the devs find out and suspend transfers..."
  3. "My XSS injection worked! This'll give me access to even the data that only the admins can see. Hmmm, unfortunately I have to do everything through the user's browser. I'm not sure there's a realistic way for me to download those 3gb files using this; I start the download, but there are memory issues, and the user always closes the site before it's done! Also, I'm concerned that client-side retransfers of this size might get detected by someone."

If the JWT is third-party:

In this case, it really depends on what the third-party JWTs allow the holder to do.

If all they do is let someone "access basic profile information" on each user, then it's not that bad if attackers can access it; some emails may leak, but the attacker could probably get that anyway by navigating to the user's "account page" where that data is shown in the UI. (having the JWT token just lets them avoid the "annoyances" listed in the previous section)

If, instead, the third-party JWTs let you do more substantial things -- such as have full access to their cloud-storage data, send out messages on third-party platforms, read private messages on third-party platforms, etc, then having access to the JWTs is indeed substantially worse than just being able to "send authenticated commands".

This is because, when the attacker can't access the actual JWT, they have to route all commands through your 1st-party server. This has the following advantages:

  1. Limited commands: Because all the commands are going through your server, attackers can only execute the subset of commands that your server was built to handle. For example, if your server only ever reads/writes from a specific folder in a user's cloud storage, then the attacker has the same limitation.

  2. Easier detection: Because all the commands are going through your server, you may be able to notice (through logs, sudden uptick in commands, etc.) that someone has developed an XSS attack. This lets you potentially patch it more quickly. (if they had the JWTs themselves, they could silently be making calls to the 3rd-party platforms, without having to contact your servers at all)

  3. More ways to identify the attacker: Because the commands are going through your server, you know exactly when the commands are being made, and what ip-address is being used to make them. In some cases, this could help you identify who is doing the attacks. The ip-address is the most obvious way, though admittedly most attackers capable of XSS attacks would be aware enough to use a proxy.

    A more advanced identification approach might be to, say, have a special message pop up that is unique for each user (or, at least, split into buckets), of such a nature that the attacker (when he loads up the website from his own account) will see that message, and try to run a new command based on it. For example, you could link to a "fake developer blog post" talking about some "new API" you're introducing, which allows users to access even more of their private data; the sneaky part is that the URL for that "new API" is different per user viewing the blog post, such that when the API is attempted to be used (against the victim), you know exactly who did it. Of course, this relies on the idea that the attacker has a "real account" on the site alongside the victim, and could be tempted/fooled by this sort of approach (eg. it won't work if the attacker knows you're onto him), but it's an example of things you can do when you can intercept all authenticated commands.

  4. More flexible controlling: Lets say that you've just discovered that someone deployed an XSS attack on your site.

    If the attackers have the 3rd-party JWTs themselves, your options are limited: you have to globally disable/reset your OAuth/JWT configuration for all 3rd-party platforms. This causes serious disruption while you try to figure out the source of the XSS attack, as no one is able to access anything from those 3rd-party platforms. (including your own server, since the JWT tokens it may have stored are now invalid)

    If the JWT tokens are instead protected in http-only cookies, you have more options: You can simply modify your server to "filter out" any reads/writes that are potentially dangerous. In some cases added this "filtering" is a quick and easy process, allowing your site to continue in "read-only"/"limited" mode without disrupting everything; in other cases, things may be complex enough that it's not worth trusting the filter code for security. The point though is that you have more options.

    For example, maybe you don't know for sure that someone has deployed an XSS attack, but you suspect it. In this case, you may not want to invalidate the JWT tokens of every user (including those your server is using in the background) simply on the suspicion of an XSS attack (it depends on your suspicion level). Instead, you can just "make things read-only for a while" while you look into the issue more closely. If it turns out nothing is wrong, you can just flip a switch and re-enable writes, without everyone having to log back in and such.

Anyway, because of these four benefits, I've decided to always store third-party JWTs in "secured cookies" rather than local storage. While currently the third-party JWTs have very limited scopes (such that it's not so big a deal if they are stolen), it's good future-proofing to do this, in case I'd like my app to request access to more privileged functionalities in the future (eg. access to the user's cloud storage).

Note: The four benefits above (for storing third-party JWTs in secured cookies) may also partially apply for first-party JWTs, if the JWTs are used as authentication by multiple backend services, and the domains/ip-addresses of these other servers/services are public knowledge. In this case, they are "equivalent to third-party platforms", in the sense that "http-only cookies" restrict the XSS attacker from sending direct commands to those other servers, bringing part of the benefits of the four points above. (it's not exactly the same, since you do at least control those other servers, so you can activate read-only mode for them and such -- but it'll still generally be more work than making those changes in just one place)


It is safe to store your token in localStorage as long as you encrypt it. Below is a compressed code snippet showing one of many ways you can do it.

    import SimpleCrypto from 'simple-crypto-js';

    const saveToken = (token = '') => {
          const encryptInit = new SimpleCrypto('PRIVATE_KEY_STORED_IN_ENV_FILE');
          const encryptedToken = encryptInit.encrypt(token);

          localStorage.setItem('token', encryptedToken);

Then, before using your token decrypt it using PRIVATE_KEY_STORED_IN_ENV_FILE

  • @HassanAlthaf you are missing the point here, there will never be a 100% secure proof app, It’s just that, you’re reducing the attack surface and at least env file will not be published on github directly. Also, the bundled code will be obfuscated and mangled, making it hard for the attackers to find them. Dec 11 '19 at 16:38
  • 3
    Private key is not supposed to be exposed. You would compromise the entire API. Dec 12 '19 at 3:25
  • From my experience If you did things intelligently and correctly, your private key won't be exposed in your production build, if so, screenshot to support this or even a url. Dec 13 '19 at 6:43
  • 3
    @Lo-Tan when the frontend code gets compiled the process.env variable will be resolved and be put into the code. If it wouldn't be resolved, the browser wouldn't know about his env variable. So his private key is exposed this way.
    – Fabian
    Sep 24 '20 at 13:29
  • 1
    @Fabian I guess I would never imagine sending a private key to the client, and somehow didn't notice the localStorage mentioned multiple times (code and comment). Yikes! Yeah - don't do this folks.
    – Lo-Tan
    Sep 27 '20 at 8:41

Your Answer

By clicking “Post Your Answer”, you agree to our terms of service, privacy policy and cookie policy