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Gitea: OAuth token introspection returns metadata of tokens issued to other clients (RFC 7662 section 4 violation)

Moderate severity GitHub Reviewed Published Jul 13, 2026 in go-gitea/gitea • Updated Jul 21, 2026

Package

gomod code.gitea.io/gitea (Go)

Affected versions

< 1.27.0

Patched versions

1.27.0

Description

Live reproduction against Gitea 1.26.1

Setup: Gitea 1.26.1 docker stack with two users (admin and victim) and two OAuth applications owned by different users:

Client A: id=5dda747d-7fdd-4694-85ff-ce4f893ce51e   owner=admin
Client B: id=588f778f-4a41-4914-ae01-85d776c369db   owner=victim

admin runs an OAuth flow against Client A and obtains an access token. victim (acting through Client B's credentials) calls the introspection endpoint with Client A's access token in the body:

$ curl -s -u "$B_ID:$B_SEC" -X POST http://localhost:3001/login/oauth/introspect \
       --data-urlencode "token=$CLIENT_A_ACCESS_TOKEN"
{
    "active": true,
    "username": "admin",
    "iss": "http://localhost:3001",
    "sub": "1",
    "aud": [
        "5dda747d-7fdd-4694-85ff-ce4f893ce51e"
    ]
}

Note the aud claim: the server explicitly states the token's audience is Client A, yet returns the full metadata to Client B. Per RFC 7662 section 4 ("The authorization server SHOULD also limit the information it discloses about each token to the resources that are authorized to receive it") the introspection result must not be disclosed to clients other than the token's audience.

Full reproduction script attached as poc.sh. Full session log attached as live_run.log.

Root cause

routers/web/auth/oauth2_provider.go:130-175 IntrospectOAuth:

func IntrospectOAuth(ctx *context.Context) {
    clientIDValid := false
    authHeader := ctx.Req.Header.Get("Authorization")
    if parsed, ok := httpauth.ParseAuthorizationHeader(authHeader); ok && parsed.BasicAuth != nil {
        clientID, clientSecret := parsed.BasicAuth.Username, parsed.BasicAuth.Password
        app, err := auth.GetOAuth2ApplicationByClientID(ctx, clientID)
        if err != nil && !auth.IsErrOauthClientIDInvalid(err) {
            log.Error("Error retrieving client_id: %v", err)
            ctx.HTTPError(http.StatusInternalServerError)
            return
        }
        clientIDValid = err == nil && app.ValidateClientSecret([]byte(clientSecret))
    }
    if !clientIDValid {
        ctx.Resp.Header().Set("WWW-Authenticate", `Basic realm="Gitea OAuth2"`)
        ctx.PlainText(http.StatusUnauthorized, "no valid authorization")
        return
    }

    var response struct {
        Active   bool   `json:"active"`
        Scope    string `json:"scope,omitempty"`
        Username string `json:"username,omitempty"`
        jwt.RegisteredClaims
    }

    form := web.GetForm(ctx).(*forms.IntrospectTokenForm)
    token, err := oauth2_provider.ParseToken(form.Token, oauth2_provider.DefaultSigningKey)
    if err == nil {
        grant, err := auth.GetOAuth2GrantByID(ctx, token.GrantID)
        if err == nil && grant != nil {
            app, err := auth.GetOAuth2ApplicationByID(ctx, grant.ApplicationID)  // shadows the introspecting client's `app`
            if err == nil && app != nil {
                response.Active = true
                response.Scope = grant.Scope
                response.RegisteredClaims = oauth2_provider.NewJwtRegisteredClaimsFromUser(app.ClientID, grant.UserID, nil)
            }
            if user, err := user_model.GetUserByID(ctx, grant.UserID); err == nil {
                response.Username = user.Name
            }
        }
    }

    ctx.JSON(http.StatusOK, response)
}

The handler:

  1. Authenticates the introspecting client via HTTP Basic (app.ValidateClientSecret). The local variable app at this point references the introspecting client.
  2. Loads the grant for form.Token via auth.GetOAuth2GrantByID(ctx, token.GrantID).
  3. Reassigns app to auth.GetOAuth2ApplicationByID(ctx, grant.ApplicationID) (line 162). After this point, app is the token's issuing client, not the introspecting client.
  4. Populates response from the reassigned app and the grant.

There is no comparison between the introspecting client's id and grant.ApplicationID. The endpoint will return metadata for any token whose JWT signature validates, regardless of which client is asking.

Patch parity with PR #37704

The same file contains two recently-hardened handlers in commit 7e54514316 ("fix(oauth): bind token exchanges to the original client request", PR #37704, 2026-05-15) that added exactly this missing check:

handleRefreshToken (routers/web/auth/oauth2_provider.go:561-568):

if grant.ApplicationID != app.ID {
    handleAccessTokenError(ctx, oauth2_provider.AccessTokenError{
        ErrorCode:        oauth2_provider.AccessTokenErrorCodeInvalidGrant,
        ErrorDescription: "refresh token belongs to a different client",
    })
    return
}

handleAuthorizationCode (routers/web/auth/oauth2_provider.go:640-647):

if authorizationCode.RedirectURI != "" && form.RedirectURI != authorizationCode.RedirectURI {
    handleAccessTokenError(ctx, oauth2_provider.AccessTokenError{ ... })
    return
}
// later in the same function:
if authorizationCode.Grant.ApplicationID != app.ID {
    handleAccessTokenError(ctx, ...)
    return
}

IntrospectOAuth shares the same problem space (it consumes a token bound to a grant whose application may differ from the requesting client) but did not receive the parallel patch.

Impact

Any authenticated OAuth client can call /login/oauth/introspect with another client's access or refresh token in the body and learn:

  • active (true or false). A token-validity oracle that survives across application boundaries without consuming or "using" the token.
  • scope. The scope of the token.
  • username. The user the token belongs to.
  • iss, sub, aud. Standard JWT registered claims. aud reveals the issuing client_id, making it obvious to the introspecting client that the token does not belong to them. The server returns the data anyway.

Practical scenarios:

  1. Stolen-token validation oracle. An attacker who exfiltrates an access token from logs, traffic capture, browser memory, or a leaked dump can verify the token is still active before using it for higher-noise actions like API calls. The probe does not consume the grant counter, so it does not appear in audit trails of "actual token use".
  2. Cross-tenant metadata enumeration. Any user can register their own OAuth application on a Gitea instance (web UI: /user/settings/applications). The attacker uses their own valid credentials to introspect tokens belonging to other tenants' clients. They learn which user/scope each token corresponds to without ever using it.
  3. Token-confusion reconnaissance. Before chaining a separate vulnerability (e.g., a future token-replay or session-fixation bug), the attacker can use introspection to map the token universe.

Suggested remediation

A one-line fix matching the PR #37704 pattern:

 grant, err := auth.GetOAuth2GrantByID(ctx, token.GrantID)
 if err == nil && grant != nil {
+    if grant.ApplicationID != app.ID {
+        // do not reveal token metadata for tokens not issued to this client
+        ctx.JSON(http.StatusOK, response)  // response is zero-valued, active=false
+        return
+    }
     app, err := auth.GetOAuth2ApplicationByID(ctx, grant.ApplicationID)

Or, equivalently, replace the inner app reassignment with a check that uses the introspecting client's app.ClientID directly for the response claims.

Affected versions

Confirmed at Gitea v1.26.1 (latest release, 2026-04-24, docker image gitea/gitea:1.26.1). The vulnerable code path has been in place since the introspection endpoint was introduced; the recent PR #37704 / #37706 OAuth hardening landed in master May 15-16 2026 but did not touch this endpoint.

Attachments

References

@bircni bircni published to go-gitea/gitea Jul 13, 2026
Published to the GitHub Advisory Database Jul 21, 2026
Reviewed Jul 21, 2026
Last updated Jul 21, 2026

Severity

Moderate

CVSS overall score

This score calculates overall vulnerability severity from 0 to 10 and is based on the Common Vulnerability Scoring System (CVSS).
/ 10

CVSS v3 base metrics

Attack vector
Network
Attack complexity
Low
Privileges required
Low
User interaction
None
Scope
Unchanged
Confidentiality
Low
Integrity
None
Availability
None

CVSS v3 base metrics

Attack vector: More severe the more the remote (logically and physically) an attacker can be in order to exploit the vulnerability.
Attack complexity: More severe for the least complex attacks.
Privileges required: More severe if no privileges are required.
User interaction: More severe when no user interaction is required.
Scope: More severe when a scope change occurs, e.g. one vulnerable component impacts resources in components beyond its security scope.
Confidentiality: More severe when loss of data confidentiality is highest, measuring the level of data access available to an unauthorized user.
Integrity: More severe when loss of data integrity is the highest, measuring the consequence of data modification possible by an unauthorized user.
Availability: More severe when the loss of impacted component availability is highest.
CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:L/I:N/A:N

EPSS score

Weaknesses

Exposure of Sensitive Information to an Unauthorized Actor

The product exposes sensitive information to an actor that is not explicitly authorized to have access to that information. Learn more on MITRE.

Incorrect Authorization

The product performs an authorization check when an actor attempts to access a resource or perform an action, but it does not correctly perform the check. Learn more on MITRE.

CVE ID

CVE-2026-58425

GHSA ID

GHSA-vxv2-8j6r-pcpg

Source code

Credits

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