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Property | Value |
---|---|
Rule ID | CA3007 |
Title | Review code for open redirect vulnerabilities |
Category | Security |
Fix is breaking or non-breaking | Non-breaking |
Enabled by default in .NET 9 | No |
Potentially untrusted HTTP request input reaches an HTTP response redirect.
By default, this rule analyzes the entire codebase, but this is configurable.
When working with untrusted input, be mindful of open redirect vulnerabilities. An attacker can exploit an open redirect vulnerability to use your website to give the appearance of a legitimate URL, but redirect an unsuspecting visitor to a phishing or other malicious webpage.
This rule attempts to find input from HTTP requests reaching an HTTP redirect URL.
Obs!
This rule can't track data across assemblies. For example, if one assembly reads the HTTP request input and then passes it to another assembly that responds with an HTTP redirect, this rule won't produce a warning.
Obs!
There is a configurable limit to how deep this rule will analyze data flow across method calls. See Analyzer Configuration for how to configure the limit in an EditorConfig file.
Some approaches to fixing open redirect vulnerabilities include:
If you know you've validated the input to be restricted to intended URLs, it's okay to suppress this warning.
If you just want to suppress a single violation, add preprocessor directives to your source file to disable and then re-enable the rule.
#pragma warning disable CA3007
// The code that's violating the rule is on this line.
#pragma warning restore CA3007
To disable the rule for a file, folder, or project, set its severity to none
in the configuration file.
[*.{cs,vb}]
dotnet_diagnostic.CA3007.severity = none
For more information, see How to suppress code analysis warnings.
Use the following options to configure which parts of your codebase to run this rule on.
You can configure these options for just this rule, for all rules they apply to, or for all rules in this category (Security) that they apply to. For more information, see Code quality rule configuration options.
You can exclude specific symbols, such as types and methods, from analysis by setting the excluded_symbol_names option. For example, to specify that the rule should not run on any code within types named MyType
, add the following key-value pair to an .editorconfig file in your project:
dotnet_code_quality.CAXXXX.excluded_symbol_names = MyType
Obs!
Replace the XXXX
part of CAXXXX
with the ID of the applicable rule.
Allowed symbol name formats in the option value (separated by |
):
M:
for methods, T:
for types, and N:
for namespaces..ctor
for constructors and .cctor
for static constructors.Examples:
Option Value | Summary |
---|---|
dotnet_code_quality.CAXXXX.excluded_symbol_names = MyType |
Matches all symbols named MyType . |
dotnet_code_quality.CAXXXX.excluded_symbol_names = MyType1|MyType2 |
Matches all symbols named either MyType1 or MyType2 . |
dotnet_code_quality.CAXXXX.excluded_symbol_names = M:NS.MyType.MyMethod(ParamType) |
Matches specific method MyMethod with the specified fully qualified signature. |
dotnet_code_quality.CAXXXX.excluded_symbol_names = M:NS1.MyType1.MyMethod1(ParamType)|M:NS2.MyType2.MyMethod2(ParamType) |
Matches specific methods MyMethod1 and MyMethod2 with the respective fully qualified signatures. |
You can exclude specific types and their derived types from analysis by setting the excluded_type_names_with_derived_types option. For example, to specify that the rule should not run on any methods within types named MyType
and their derived types, add the following key-value pair to an .editorconfig file in your project:
dotnet_code_quality.CAXXXX.excluded_type_names_with_derived_types = MyType
Obs!
Replace the XXXX
part of CAXXXX
with the ID of the applicable rule.
Allowed symbol name formats in the option value (separated by |
):
T:
prefix.Examples:
Option value | Summary |
---|---|
dotnet_code_quality.CAXXXX.excluded_type_names_with_derived_types = MyType |
Matches all types named MyType and all of their derived types. |
dotnet_code_quality.CAXXXX.excluded_type_names_with_derived_types = MyType1|MyType2 |
Matches all types named either MyType1 or MyType2 and all of their derived types. |
dotnet_code_quality.CAXXXX.excluded_type_names_with_derived_types = M:NS.MyType |
Matches specific type MyType with given fully qualified name and all of its derived types. |
dotnet_code_quality.CAXXXX.excluded_type_names_with_derived_types = M:NS1.MyType1|M:NS2.MyType2 |
Matches specific types MyType1 and MyType2 with the respective fully qualified names, and all of their derived types. |
using System;
public partial class WebForm : System.Web.UI.Page
{
protected void Page_Load(object sender, EventArgs e)
{
string input = Request.Form["url"];
this.Response.Redirect(input);
}
}
Imports System
Partial Public Class WebForm
Inherits System.Web.UI.Page
Protected Sub Page_Load(sender As Object, eventArgs As EventArgs)
Dim input As String = Me.Request.Form("url")
Me.Response.Redirect(input)
End Sub
End Class
using System;
public partial class WebForm : System.Web.UI.Page
{
protected void Page_Load(object sender, EventArgs e)
{
string input = Request.Form["in"];
if (String.IsNullOrWhiteSpace(input))
{
this.Response.Redirect("https://example.org/login.html");
}
}
}
Imports System
Partial Public Class WebForm
Inherits System.Web.UI.Page
Protected Sub Page_Load(sender As Object, eventArgs As EventArgs)
Dim input As String = Me.Request.Form("in")
If String.IsNullOrWhiteSpace(input) Then
Me.Response.Redirect("https://example.org/login.html")
End If
End Sub
End Class
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Hendelser
17. mars, 21 - 21. mars, 10
Bli med i meetup-serien for å bygge skalerbare AI-løsninger basert på virkelige brukstilfeller med andre utviklere og eksperter.
Registrer deg nå