mirror of
https://github.com/topjohnwu/Magisk.git
synced 2024-12-18 05:58:30 +00:00
447 lines
12 KiB
C++
447 lines
12 KiB
C++
#include <csignal>
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#include <libgen.h>
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#include <sys/un.h>
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#include <sys/mount.h>
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#include <magisk.hpp>
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#include <utils.hpp>
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#include <daemon.hpp>
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#include <selinux.hpp>
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#include <db.hpp>
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#include <resetprop.hpp>
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#include <flags.h>
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#include "core.hpp"
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using namespace std;
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int SDK_INT = -1;
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string MAGISKTMP;
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bool RECOVERY_MODE = false;
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int DAEMON_STATE = STATE_NONE;
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static struct stat self_st;
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static map<int, poll_callback> *poll_map;
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static vector<pollfd> *poll_fds;
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static int poll_ctrl;
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enum {
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POLL_CTRL_NEW,
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POLL_CTRL_RM,
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};
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void register_poll(const pollfd *pfd, poll_callback callback) {
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if (gettid() == getpid()) {
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// On main thread, directly modify
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poll_map->try_emplace(pfd->fd, callback);
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poll_fds->emplace_back(*pfd);
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} else {
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// Send it to poll_ctrl
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write_int(poll_ctrl, POLL_CTRL_NEW);
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xwrite(poll_ctrl, pfd, sizeof(*pfd));
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xwrite(poll_ctrl, &callback, sizeof(callback));
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}
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}
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void unregister_poll(int fd, bool auto_close) {
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if (fd < 0)
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return;
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if (gettid() == getpid()) {
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// On main thread, directly modify
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poll_map->erase(fd);
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for (auto &poll_fd : *poll_fds) {
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if (poll_fd.fd == fd) {
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if (auto_close) {
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close(poll_fd.fd);
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}
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// Cannot modify while iterating, invalidate it instead
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// It will be removed in the next poll loop
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poll_fd.fd = -1;
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break;
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}
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}
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} else {
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// Send it to poll_ctrl
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write_int(poll_ctrl, POLL_CTRL_RM);
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write_int(poll_ctrl, fd);
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write_int(poll_ctrl, auto_close);
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}
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}
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void clear_poll() {
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if (poll_fds) {
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for (auto &poll_fd : *poll_fds) {
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close(poll_fd.fd);
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}
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}
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delete poll_fds;
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delete poll_map;
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poll_fds = nullptr;
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poll_map = nullptr;
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}
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static void poll_ctrl_handler(pollfd *pfd) {
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int code = read_int(pfd->fd);
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switch (code) {
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case POLL_CTRL_NEW: {
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pollfd new_fd;
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poll_callback cb;
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xxread(pfd->fd, &new_fd, sizeof(new_fd));
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xxread(pfd->fd, &cb, sizeof(cb));
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register_poll(&new_fd, cb);
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break;
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}
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case POLL_CTRL_RM: {
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int fd = read_int(pfd->fd);
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bool auto_close = read_int(pfd->fd);
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unregister_poll(fd, auto_close);
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break;
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}
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}
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}
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[[noreturn]] static void poll_loop() {
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// Register poll_ctrl
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int pipefd[2];
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xpipe2(pipefd, O_CLOEXEC);
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poll_ctrl = pipefd[1];
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pollfd poll_ctrl_pfd = { pipefd[0], POLLIN, 0 };
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register_poll(&poll_ctrl_pfd, poll_ctrl_handler);
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for (;;) {
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if (poll(poll_fds->data(), poll_fds->size(), -1) <= 0)
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continue;
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// MUST iterate with index because any poll_callback could add new elements to poll_fds
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for (int i = 0; i < poll_fds->size();) {
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auto &pfd = (*poll_fds)[i];
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if (pfd.revents) {
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if (pfd.revents & POLLERR || pfd.revents & POLLNVAL) {
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poll_map->erase(pfd.fd);
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poll_fds->erase(poll_fds->begin() + i);
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continue;
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}
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if (auto it = poll_map->find(pfd.fd); it != poll_map->end()) {
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it->second(&pfd);
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}
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}
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++i;
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}
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}
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}
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static void handle_request_async(int client, int code, const sock_cred &cred) {
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switch (code) {
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case MainRequest::DENYLIST:
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denylist_handler(client, &cred);
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break;
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case MainRequest::SUPERUSER:
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su_daemon_handler(client, &cred);
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break;
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case MainRequest::POST_FS_DATA:
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post_fs_data(client);
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break;
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case MainRequest::LATE_START:
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late_start(client);
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break;
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case MainRequest::BOOT_COMPLETE:
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boot_complete(client);
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break;
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case MainRequest::SQLITE_CMD:
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exec_sql(client);
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break;
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case MainRequest::REMOVE_MODULES:
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remove_modules();
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write_int(client, 0);
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close(client);
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reboot();
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break;
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case MainRequest::ZYGISK:
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case MainRequest::ZYGISK_PASSTHROUGH:
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zygisk_handler(client, &cred);
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break;
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default:
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__builtin_unreachable();
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}
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}
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static void handle_request_sync(int client, int code) {
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switch (code) {
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case MainRequest::CHECK_VERSION:
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write_string(client, MAGISK_VERSION ":MAGISK");
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break;
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case MainRequest::CHECK_VERSION_CODE:
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write_int(client, MAGISK_VER_CODE);
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break;
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case MainRequest::GET_PATH:
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write_string(client, MAGISKTMP.data());
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break;
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case MainRequest::START_DAEMON:
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setup_logfile(true);
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break;
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case MainRequest::STOP_DAEMON:
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denylist_handler(-1, nullptr);
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write_int(client, 0);
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// Terminate the daemon!
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exit(0);
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default:
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__builtin_unreachable();
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}
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}
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static bool is_client(pid_t pid) {
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// Verify caller is the same as server
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char path[32];
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sprintf(path, "/proc/%d/exe", pid);
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struct stat st{};
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return !(stat(path, &st) || st.st_dev != self_st.st_dev || st.st_ino != self_st.st_ino);
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}
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static void handle_request(pollfd *pfd) {
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int client = xaccept4(pfd->fd, nullptr, nullptr, SOCK_CLOEXEC);
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// Verify client credentials
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sock_cred cred;
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bool is_root;
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bool is_zygote;
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int code;
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if (!get_client_cred(client, &cred)) {
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// Client died
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goto done;
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}
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is_root = cred.uid == UID_ROOT;
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is_zygote = cred.context == "u:r:zygote:s0";
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if (!is_root && !is_zygote && !is_client(cred.pid)) {
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// Unsupported client state
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write_int(client, MainResponse::ACCESS_DENIED);
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goto done;
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}
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code = read_int(client);
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if (code < 0 || code >= MainRequest::END || code == MainRequest::_SYNC_BARRIER_) {
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// Unknown request code
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goto done;
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}
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// Check client permissions
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switch (code) {
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case MainRequest::POST_FS_DATA:
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case MainRequest::LATE_START:
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case MainRequest::BOOT_COMPLETE:
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case MainRequest::SQLITE_CMD:
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case MainRequest::GET_PATH:
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case MainRequest::DENYLIST:
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case MainRequest::STOP_DAEMON:
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if (!is_root) {
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write_int(client, MainResponse::ROOT_REQUIRED);
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goto done;
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}
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break;
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case MainRequest::REMOVE_MODULES:
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if (!is_root && cred.uid != UID_SHELL) {
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write_int(client, MainResponse::ACCESS_DENIED);
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goto done;
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}
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break;
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case MainRequest::ZYGISK:
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if (!is_zygote) {
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// Invalid client context
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write_int(client, MainResponse::ACCESS_DENIED);
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goto done;
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}
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break;
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default:
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break;
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}
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write_int(client, MainResponse::OK);
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if (code < MainRequest::_SYNC_BARRIER_) {
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handle_request_sync(client, code);
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goto done;
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}
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// Handle async requests in another thread
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exec_task([=] { handle_request_async(client, code, cred); });
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return;
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done:
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close(client);
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}
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static void switch_cgroup(const char *cgroup, int pid) {
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char buf[32];
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snprintf(buf, sizeof(buf), "%s/cgroup.procs", cgroup);
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if (access(buf, F_OK) != 0)
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return;
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int fd = xopen(buf, O_WRONLY | O_APPEND | O_CLOEXEC);
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if (fd == -1)
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return;
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snprintf(buf, sizeof(buf), "%d\n", pid);
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if (xwrite(fd, buf, strlen(buf)) == -1) {
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close(fd);
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return;
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}
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close(fd);
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}
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static void daemon_entry() {
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magisk_logging();
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// Block all signals
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sigset_t block_set;
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sigfillset(&block_set);
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pthread_sigmask(SIG_SETMASK, &block_set, nullptr);
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// Change process name
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set_nice_name("magiskd");
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int fd = xopen("/dev/null", O_WRONLY);
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xdup2(fd, STDOUT_FILENO);
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xdup2(fd, STDERR_FILENO);
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if (fd > STDERR_FILENO)
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close(fd);
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fd = xopen("/dev/zero", O_RDONLY);
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xdup2(fd, STDIN_FILENO);
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if (fd > STDERR_FILENO)
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close(fd);
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setsid();
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setcon("u:r:" SEPOL_PROC_DOMAIN ":s0");
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start_log_daemon();
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LOGI(NAME_WITH_VER(Magisk) " daemon started\n");
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// Escape from cgroup
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int pid = getpid();
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switch_cgroup("/acct", pid);
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switch_cgroup("/dev/cg2_bpf", pid);
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switch_cgroup("/sys/fs/cgroup", pid);
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if (getprop("ro.config.per_app_memcg") != "false") {
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switch_cgroup("/dev/memcg/apps", pid);
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}
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// Get self stat
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char buf[64];
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xreadlink("/proc/self/exe", buf, sizeof(buf));
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MAGISKTMP = dirname(buf);
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xstat("/proc/self/exe", &self_st);
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// Get API level
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parse_prop_file("/system/build.prop", [](auto key, auto val) -> bool {
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if (key == "ro.build.version.sdk") {
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SDK_INT = parse_int(val);
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return false;
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}
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return true;
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});
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if (SDK_INT < 0) {
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// In case some devices do not store this info in build.prop, fallback to getprop
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auto sdk = getprop("ro.build.version.sdk");
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if (!sdk.empty()) {
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SDK_INT = parse_int(sdk);
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}
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}
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LOGI("* Device API level: %d\n", SDK_INT);
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restore_tmpcon();
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// SAR cleanups
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auto mount_list = MAGISKTMP + "/" ROOTMNT;
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if (access(mount_list.data(), F_OK) == 0) {
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file_readline(true, mount_list.data(), [](string_view line) -> bool {
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umount2(line.data(), MNT_DETACH);
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return true;
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});
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}
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unlink("/dev/.se");
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unlink(mount_list.data());
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// Load config status
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auto config = MAGISKTMP + "/" INTLROOT "/config";
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parse_prop_file(config.data(), [](auto key, auto val) -> bool {
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if (key == "RECOVERYMODE" && val == "true")
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RECOVERY_MODE = true;
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return true;
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});
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// Use isolated devpts if kernel support
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if (access("/dev/pts/ptmx", F_OK) == 0) {
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auto pts = MAGISKTMP + "/" SHELLPTS;
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if (access(pts.data(), F_OK)) {
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xmkdirs(pts.data(), 0755);
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xmount("devpts", pts.data(), "devpts",
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MS_NOSUID | MS_NOEXEC, "newinstance");
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auto ptmx = pts + "/ptmx";
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if (access(ptmx.data(), F_OK)) {
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xumount(pts.data());
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rmdir(pts.data());
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}
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}
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}
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sockaddr_un sun{};
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socklen_t len = setup_sockaddr(&sun, MAIN_SOCKET);
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fd = xsocket(AF_LOCAL, SOCK_STREAM | SOCK_CLOEXEC, 0);
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if (xbind(fd, (sockaddr *) &sun, len))
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exit(1);
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xlisten(fd, 10);
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default_new(poll_map);
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default_new(poll_fds);
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// Register handler for main socket
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pollfd main_socket_pfd = { fd, POLLIN, 0 };
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register_poll(&main_socket_pfd, handle_request);
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// Loop forever to listen for requests
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poll_loop();
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}
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int connect_daemon(int req, bool create) {
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sockaddr_un sun{};
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socklen_t len = setup_sockaddr(&sun, MAIN_SOCKET);
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int fd = xsocket(AF_UNIX, SOCK_STREAM | SOCK_CLOEXEC, 0);
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if (connect(fd, (sockaddr *) &sun, len)) {
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if (!create || getuid() != UID_ROOT) {
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LOGE("No daemon is currently running!\n");
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close(fd);
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return -1;
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}
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if (fork_dont_care() == 0) {
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close(fd);
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daemon_entry();
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}
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while (connect(fd, (struct sockaddr *) &sun, len))
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usleep(10000);
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}
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write_int(fd, req);
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int res = read_int(fd);
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if (res < MainResponse::ERROR || res >= MainResponse::END)
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res = MainResponse::ERROR;
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switch (res) {
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case MainResponse::OK:
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break;
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case MainResponse::ERROR:
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LOGE("Daemon error\n");
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exit(-1);
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case MainResponse::ROOT_REQUIRED:
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LOGE("Root is required for this operation\n");
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exit(-1);
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case MainResponse::ACCESS_DENIED:
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LOGE("Access denied\n");
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exit(-1);
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default:
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__builtin_unreachable();
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}
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return fd;
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}
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