Continue
RFC 9110The server received the request headers and the client should proceed to send the request body.
Switching Protocols
RFC 9110The server is switching protocols as requested by the client in the Upgrade header, for example to WebSocket.
Processing
RFC 2518The server has received and is processing the request, but no response is available yet. Used by WebDAV.
Early Hints
RFC 8297Returns some response headers before the final response so the client can start preloading resources.
OK
RFC 9110The request succeeded. The meaning of success depends on the HTTP method used.
Created
RFC 9110The request succeeded and a new resource was created, usually in response to POST or PUT.
Accepted
RFC 9110The request was accepted for processing, but the processing has not completed and may still fail.
Non-Authoritative Information
RFC 9110The returned metadata is from a local or third-party copy rather than the origin server.
No Content
RFC 9110The request succeeded but there is no content to send in the response body.
Reset Content
RFC 9110The request succeeded and the client should reset the document view that sent the request.
Partial Content
RFC 9110The server is delivering only part of the resource in response to a Range header, used for resumable downloads.
Multi-Status
RFC 4918Conveys information about multiple resources where several status codes apply. Used by WebDAV.
Already Reported
RFC 5842The members of a WebDAV binding have already been enumerated and are not being included again.
IM Used
RFC 3229The server fulfilled a GET request and the response represents the result of instance manipulations applied.
Multiple Choices
RFC 9110The request has more than one possible response and the client should choose one of them.
Moved Permanently
RFC 9110The resource has permanently moved to a new URL given in the Location header. Search engines update their links.
Found
RFC 9110The resource is temporarily at a different URL. The client should keep using the original URL for future requests.
See Other
RFC 9110The response is at another URL that should be retrieved with a GET request. Common after a form POST.
Not Modified
RFC 9110The cached copy is still valid, so the server sends no body. Used with conditional requests to save bandwidth.
Temporary Redirect
RFC 9110The resource is temporarily at another URL and the client must reuse the same HTTP method and body.
Permanent Redirect
RFC 9110The resource has permanently moved and the client must reuse the same HTTP method and body.
Bad Request
RFC 9110The server cannot process the request because of a client error such as malformed syntax or invalid framing.
Unauthorized
RFC 9110Authentication is required and has failed or not been provided. The response includes a WWW-Authenticate header.
Payment Required
RFC 9110Reserved for future use. Occasionally used by APIs to signal that a paid plan or quota is required.
Forbidden
RFC 9110The server understood the request but refuses to authorize it. Authenticating will not help.
Not Found
RFC 9110The server cannot find the requested resource. The URL may be wrong or the resource may have been removed.
Method Not Allowed
RFC 9110The request method is known but not supported by the target resource, for example POST to a read-only endpoint.
Not Acceptable
RFC 9110The resource cannot produce a response matching the Accept headers sent by the client.
Proxy Authentication Required
RFC 9110The client must first authenticate with a proxy before the request can proceed.
Request Timeout
RFC 9110The server timed out waiting for the request. The client may repeat the request later.
Conflict
RFC 9110The request conflicts with the current state of the resource, such as an edit that clashes with another change.
Gone
RFC 9110The resource is permanently gone with no forwarding address. More specific and final than 404.
Length Required
RFC 9110The server refuses the request because it lacks a defined Content-Length header.
Precondition Failed
RFC 9110A precondition in the request headers, such as If-Match, evaluated to false on the server.
Content Too Large
RFC 9110The request body is larger than the server is willing or able to process. Formerly Payload Too Large.
URI Too Long
RFC 9110The requested URI is longer than the server is willing to interpret, often from too many query parameters.
Unsupported Media Type
RFC 9110The request body is in a format the resource does not support, such as an unexpected Content-Type.
Range Not Satisfiable
RFC 9110The Range header requests a portion the server cannot supply, for example beyond the end of the file.
Expectation Failed
RFC 9110The expectation in the Expect request header could not be met by the server.
I'm a Teapot
RFC 2324An April Fools joke code from 1998 that returns when a teapot is asked to brew coffee. Sometimes used as an easter egg.
Misdirected Request
RFC 9110The request was sent to a server that cannot produce a response for the combination of scheme and authority.
Unprocessable Content
RFC 9110The request is well formed but has semantic errors that prevent processing, common in API validation failures.
Locked
RFC 4918The resource being accessed is locked. Used by WebDAV.
Failed Dependency
RFC 4918The request failed because it depended on another request that failed. Used by WebDAV.
Too Early
RFC 8470The server is unwilling to risk processing a request that might be replayed.
Upgrade Required
RFC 9110The client should switch to a different protocol given in the Upgrade header, such as a newer TLS version.
Precondition Required
RFC 6585The origin server requires the request to be conditional to prevent lost-update conflicts.
Too Many Requests
RFC 6585The client has sent too many requests in a given time. Rate limiting responses often include a Retry-After header.
Request Header Fields Too Large
RFC 6585The server refuses the request because the header fields are too large, individually or in total.
Unavailable For Legal Reasons
RFC 7725The resource is unavailable because of a legal demand, such as a government censorship order.
Internal Server Error
RFC 9110A generic error meaning the server hit an unexpected condition and cannot give a more specific message.
Not Implemented
RFC 9110The server does not support the functionality required to fulfil the request, such as an unknown method.
Bad Gateway
RFC 9110A server acting as a gateway or proxy received an invalid response from an upstream server.
Service Unavailable
RFC 9110The server is temporarily unable to handle the request, usually from overload or maintenance. Retry later.
Gateway Timeout
RFC 9110A gateway or proxy did not get a timely response from the upstream server it needed to complete the request.
HTTP Version Not Supported
RFC 9110The server does not support the HTTP protocol version used in the request.
Variant Also Negotiates
RFC 2295A content negotiation configuration error caused the chosen variant to itself engage in negotiation.
Insufficient Storage
RFC 4918The server cannot store the representation needed to complete the request. Used by WebDAV.
Loop Detected
RFC 5842The server detected an infinite loop while processing the request. Used by WebDAV.
Not Extended
RFC 2774Further extensions to the request are required for the server to fulfil it.
Network Authentication Required
RFC 6585The client must authenticate to gain network access, typically shown by a captive portal on public Wi-Fi.
What are HTTP status codes?
HTTP status codes are three-digit numbers a server returns with every response to tell the client what happened to its request. A code of 200 means the request succeeded, 404 means the page was not found, and 500 means the server hit an error. This reference lists every standard status code defined by the Internet Engineering Task Force, grouped by class, with a plain-English explanation of what each one means and a link to the specification that defines it. You can search by number, by name, or by a word from the description.
Status codes fall into five classes identified by their first digit. The 1xx class is informational and signals that the request was received and processing continues. The 2xx class means success, so the request was received, understood, and accepted. The 3xx class is redirection, telling the client the resource lives somewhere else or has not changed. The 4xx class is a client error, meaning the request was malformed or not allowed. The 5xx class is a server error, where the request was valid but the server failed to fulfil it. Knowing the class alone tells you whether to fix your request or look at the server.
Developers reach for a status code reference constantly. Front-end engineers debug why an API call returns 401 instead of 200, back-end developers decide whether to send 400 or 422 for a validation failure, and SEO specialists check that a moved page returns 301 rather than 302 so search engines transfer its ranking. This tool runs entirely in your browser, so searches are instant and nothing is sent to a server. It works offline once loaded and is free with no account required, making it a fast tab to keep open while building or debugging any web service.
How to use the HTTP Status Codes reference?
Search by code or name
Type a number like 404, a phrase like "not found", or a keyword like "redirect" into the search box to filter the list instantly.
Filter by class
Narrow the list to one category (1xx, 2xx, 3xx, 4xx, or 5xx) to browse only informational, success, redirect, client-error, or server-error codes.
Read the meaning
Each row shows the reason phrase, a clear description of when the code is used, and the RFC that defines it.
Copy the code or phrase
Copy a status code and its reason phrase with one click to paste into documentation, tests, or API responses.
Key Features
Complete IANA registry
Covers every standard code from 100 to 511, including WebDAV and rate-limiting codes, grouped by their class.
Instant search
Match by number, reason phrase, or description, so 404, "not found", and "missing page" all find the right entry.
Class filters
Jump straight to 1xx, 2xx, 3xx, 4xx, or 5xx codes to focus on redirects, client errors, or server errors.
Spec citations
Every code names the RFC that defines it, so you can confirm behaviour against the primary source.
Frequently Asked Questions
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