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https://codeberg.org/forgejo/forgejo.git
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84ceaa98bd
Do a refactoring to the CSRF related code, remove most unnecessary functions. Parse the generated token's issue time, regenerate the token every a few minutes.
246 lines
7.2 KiB
Go
246 lines
7.2 KiB
Go
// Copyright 2013 Martini Authors
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// Copyright 2014 The Macaron Authors
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// Copyright 2021 The Gitea Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License"): you may
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// not use this file except in compliance with the License. You may obtain
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// a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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// WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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// License for the specific language governing permissions and limitations
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// under the License.
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// a middleware that generates and validates CSRF tokens.
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package context
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import (
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"encoding/base32"
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"fmt"
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"net/http"
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"strconv"
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"time"
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"code.gitea.io/gitea/modules/log"
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"code.gitea.io/gitea/modules/setting"
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"code.gitea.io/gitea/modules/util"
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"code.gitea.io/gitea/modules/web/middleware"
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)
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// CSRFProtector represents a CSRF protector and is used to get the current token and validate the token.
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type CSRFProtector interface {
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// GetHeaderName returns HTTP header to search for token.
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GetHeaderName() string
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// GetFormName returns form value to search for token.
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GetFormName() string
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// GetToken returns the token.
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GetToken() string
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// Validate validates the token in http context.
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Validate(ctx *Context)
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}
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type csrfProtector struct {
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// Header name value for setting and getting csrf token.
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Header string
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// Form name value for setting and getting csrf token.
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Form string
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// Cookie name value for setting and getting csrf token.
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Cookie string
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// Cookie domain
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CookieDomain string
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// Cookie path
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CookiePath string
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// Cookie HttpOnly flag value used for the csrf token.
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CookieHTTPOnly bool
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// Token generated to pass via header, cookie, or hidden form value.
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Token string
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// This value must be unique per user.
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ID string
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// Secret used along with the unique id above to generate the Token.
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Secret string
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}
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// GetHeaderName returns the name of the HTTP header for csrf token.
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func (c *csrfProtector) GetHeaderName() string {
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return c.Header
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}
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// GetFormName returns the name of the form value for csrf token.
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func (c *csrfProtector) GetFormName() string {
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return c.Form
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}
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// GetToken returns the current token. This is typically used
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// to populate a hidden form in an HTML template.
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func (c *csrfProtector) GetToken() string {
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return c.Token
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}
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// CsrfOptions maintains options to manage behavior of Generate.
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type CsrfOptions struct {
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// The global secret value used to generate Tokens.
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Secret string
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// HTTP header used to set and get token.
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Header string
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// Form value used to set and get token.
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Form string
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// Cookie value used to set and get token.
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Cookie string
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// Cookie domain.
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CookieDomain string
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// Cookie path.
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CookiePath string
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CookieHTTPOnly bool
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// SameSite set the cookie SameSite type
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SameSite http.SameSite
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// Key used for getting the unique ID per user.
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SessionKey string
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// oldSessionKey saves old value corresponding to SessionKey.
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oldSessionKey string
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// If true, send token via X-Csrf-Token header.
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SetHeader bool
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// If true, send token via _csrf cookie.
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SetCookie bool
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// Set the Secure flag to true on the cookie.
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Secure bool
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// Disallow Origin appear in request header.
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Origin bool
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// Cookie lifetime. Default is 0
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CookieLifeTime int
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}
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func prepareDefaultCsrfOptions(opt CsrfOptions) CsrfOptions {
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if opt.Secret == "" {
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randBytes, err := util.CryptoRandomBytes(8)
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if err != nil {
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// this panic can be handled by the recover() in http handlers
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panic(fmt.Errorf("failed to generate random bytes: %w", err))
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}
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opt.Secret = base32.StdEncoding.EncodeToString(randBytes)
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}
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if opt.Header == "" {
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opt.Header = "X-Csrf-Token"
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}
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if opt.Form == "" {
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opt.Form = "_csrf"
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}
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if opt.Cookie == "" {
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opt.Cookie = "_csrf"
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}
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if opt.CookiePath == "" {
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opt.CookiePath = "/"
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}
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if opt.SessionKey == "" {
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opt.SessionKey = "uid"
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}
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opt.oldSessionKey = "_old_" + opt.SessionKey
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return opt
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}
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// PrepareCSRFProtector returns a CSRFProtector to be used for every request.
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// Additionally, depending on options set, generated tokens will be sent via Header and/or Cookie.
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func PrepareCSRFProtector(opt CsrfOptions, ctx *Context) CSRFProtector {
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opt = prepareDefaultCsrfOptions(opt)
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x := &csrfProtector{
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Secret: opt.Secret,
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Header: opt.Header,
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Form: opt.Form,
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Cookie: opt.Cookie,
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CookieDomain: opt.CookieDomain,
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CookiePath: opt.CookiePath,
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CookieHTTPOnly: opt.CookieHTTPOnly,
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}
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if opt.Origin && len(ctx.Req.Header.Get("Origin")) > 0 {
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return x
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}
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x.ID = "0"
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uidAny := ctx.Session.Get(opt.SessionKey)
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if uidAny != nil {
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switch uidVal := uidAny.(type) {
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case string:
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x.ID = uidVal
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case int64:
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x.ID = strconv.FormatInt(uidVal, 10)
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default:
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log.Error("invalid uid type in session: %T", uidAny)
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}
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}
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oldUID := ctx.Session.Get(opt.oldSessionKey)
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uidChanged := oldUID == nil || oldUID.(string) != x.ID
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cookieToken := ctx.GetCookie(opt.Cookie)
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needsNew := true
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if uidChanged {
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_ = ctx.Session.Set(opt.oldSessionKey, x.ID)
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} else if cookieToken != "" {
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// If cookie token presents, re-use existing unexpired token, else generate a new one.
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if issueTime, ok := ParseCsrfToken(cookieToken); ok {
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dur := time.Since(issueTime) // issueTime is not a monotonic-clock, the server time may change a lot to an early time.
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if dur >= -CsrfTokenRegenerationInterval && dur <= CsrfTokenRegenerationInterval {
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x.Token = cookieToken
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needsNew = false
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}
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}
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}
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if needsNew {
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// FIXME: actionId.
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x.Token = GenerateCsrfToken(x.Secret, x.ID, "POST", time.Now())
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if opt.SetCookie {
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var expires interface{}
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if opt.CookieLifeTime == 0 {
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expires = time.Now().Add(CsrfTokenTimeout)
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}
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middleware.SetCookie(ctx.Resp, opt.Cookie, x.Token,
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opt.CookieLifeTime,
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opt.CookiePath,
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opt.CookieDomain,
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opt.Secure,
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opt.CookieHTTPOnly,
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expires,
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middleware.SameSite(opt.SameSite),
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)
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}
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}
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if opt.SetHeader {
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ctx.Resp.Header().Add(opt.Header, x.Token)
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}
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return x
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}
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func (c *csrfProtector) validateToken(ctx *Context, token string) {
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if !ValidCsrfToken(token, c.Secret, c.ID, "POST", time.Now()) {
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middleware.DeleteCSRFCookie(ctx.Resp)
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if middleware.IsAPIPath(ctx.Req) {
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// currently, there should be no access to the APIPath with CSRF token. because templates shouldn't use the `/api/` endpoints.
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http.Error(ctx.Resp, "Invalid CSRF token.", http.StatusBadRequest)
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} else {
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ctx.Flash.Error(ctx.Tr("error.invalid_csrf"))
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ctx.Redirect(setting.AppSubURL + "/")
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}
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}
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}
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// Validate should be used as a per route middleware. It attempts to get a token from an "X-Csrf-Token"
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// HTTP header and then a "_csrf" form value. If one of these is found, the token will be validated.
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// If this validation fails, custom Error is sent in the reply.
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// If neither a header nor form value is found, http.StatusBadRequest is sent.
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func (c *csrfProtector) Validate(ctx *Context) {
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if token := ctx.Req.Header.Get(c.GetHeaderName()); token != "" {
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c.validateToken(ctx, token)
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return
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}
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if token := ctx.Req.FormValue(c.GetFormName()); token != "" {
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c.validateToken(ctx, token)
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return
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}
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c.validateToken(ctx, "") // no csrf token, use an empty token to respond error
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}
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