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https://github.com/topjohnwu/Magisk.git
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d8cd2031c7
Shut down any UID matching process and resume if it turns out not to be our target. Since we will record every single process we have ever paused, this means that the same process will not be paused erroneously for another time. This is an optimization to hijack the app as soon as possible.
313 lines
7.7 KiB
C++
313 lines
7.7 KiB
C++
/* proc_monitor.cpp - Monitor am_proc_start events and unmount
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*
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* We monitor the listed APK files from /data/app until they get opened
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* via inotify to detect a new app launch.
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*
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* If it's a target we pause it ASAP, and fork a new process to join
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* its mount namespace and do all the unmounting/mocking.
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*/
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <signal.h>
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#include <pthread.h>
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#include <sys/inotify.h>
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#include <sys/types.h>
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#include <sys/wait.h>
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#include <sys/mount.h>
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#include <vector>
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#include <string>
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#include <map>
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#include <algorithm>
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#include <magisk.h>
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#include <utils.h>
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#include "magiskhide.h"
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using namespace std;
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extern char *system_block, *vendor_block, *data_block;
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static int inotify_fd = -1;
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static void term_thread(int sig = TERM_THREAD);
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static inline int read_ns(const int pid, struct stat *st) {
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char path[32];
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sprintf(path, "/proc/%d/ns/mnt", pid);
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return stat(path, st);
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}
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static inline void lazy_unmount(const char* mountpoint) {
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if (umount2(mountpoint, MNT_DETACH) != -1)
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LOGD("hide_daemon: Unmounted (%s)\n", mountpoint);
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}
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#if 0
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static inline int parse_ppid(const int pid) {
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char path[32];
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int ppid;
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sprintf(path, "/proc/%d/stat", pid);
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FILE *stat = fopen(path, "re");
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if (stat == nullptr)
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return -1;
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/* PID COMM STATE PPID ..... */
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fscanf(stat, "%*d %*s %*c %d", &ppid);
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fclose(stat);
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return ppid;
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}
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#endif
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static void hide_daemon(int pid) {
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RunFinally fin([=]() -> void {
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// Send resume signal
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kill(pid, SIGCONT);
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_exit(0);
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});
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if (switch_mnt_ns(pid))
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return;
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LOGD("hide_daemon: handling PID=[%d]\n", pid);
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manage_selinux();
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clean_magisk_props();
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vector<string> targets;
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// Unmount dummy skeletons and /sbin links
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file_readline("/proc/self/mounts", [&](string_view &s) -> bool {
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if (str_contains(s, "tmpfs /system/") || str_contains(s, "tmpfs /vendor/") ||
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str_contains(s, "tmpfs /sbin")) {
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char *path = (char *) s.data();
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// Skip first token
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strtok_r(nullptr, " ", &path);
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targets.emplace_back(strtok_r(nullptr, " ", &path));
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}
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return true;
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});
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for (auto &s : targets)
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lazy_unmount(s.data());
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targets.clear();
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// Unmount everything under /system, /vendor, and data mounts
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file_readline("/proc/self/mounts", [&](string_view &s) -> bool {
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if ((str_contains(s, " /system/") || str_contains(s, " /vendor/")) &&
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(str_contains(s, system_block) || str_contains(s, vendor_block) ||
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str_contains(s, data_block))) {
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char *path = (char *) s.data();
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// Skip first token
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strtok_r(nullptr, " ", &path);
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targets.emplace_back(strtok_r(nullptr, " ", &path));
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}
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return true;
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});
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for (auto &s : targets)
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lazy_unmount(s.data());
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}
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/********************
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* All the damn maps
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********************/
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map<string, string> hide_map; /* process -> package_name */
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static map<int, int> wd_uid_map; /* inotify wd -> uid */
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static map<int, uint64_t> pid_ns_map; /* pid -> last ns inode */
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static map<int, vector<string_view>> uid_proc_map; /* uid -> list of process */
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// All maps are protected by this lock
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pthread_mutex_t map_lock;
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static bool check_pid(int pid, int uid) {
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// We're only interested in PIDs > 1000
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if (pid <= 1000)
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return true;
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// Not our target UID
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if (uid != get_uid(pid))
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return true;
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struct stat ns;
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if (read_ns(pid, &ns))
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return true;
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// Check if we have already seen it before
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auto pos = pid_ns_map.find(pid);
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if (pos != pid_ns_map.end() && pos->second == ns.st_ino)
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return true;
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// Will rather kill all just for one
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if (kill(pid, SIGSTOP) == -1)
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return true;
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// Auto send resume signal if return
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RunFinally resume([=]() -> void {
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kill(pid, SIGCONT);
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});
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// Record this PID
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pid_ns_map[pid] = ns.st_ino;
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// Check whether process name match hide list
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const char *process = nullptr;
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for (auto &proc : uid_proc_map[uid])
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if (proc_name_match(pid, proc.data()))
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process = proc.data();
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if (!process)
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return true;
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LOGI("proc_monitor: [%s] UID=[%d] PID=[%d] ns=[%llu]\n", process, uid, pid, ns.st_ino);
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// Disable auto resume PID, and let the daemon do it
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resume.disable();
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if (fork_dont_care() == 0)
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hide_daemon(pid);
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// We found what we want, stop traversal
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return false;
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}
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static int xinotify_add_watch(int fd, const char* path, uint32_t mask) {
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int ret = inotify_add_watch(fd, path, mask);
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if (ret >= 0) {
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LOGD("proc_monitor: Monitoring %s\n", path);
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} else {
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PLOGE("proc_monitor: Monitor %s", path);
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}
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return ret;
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}
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static bool parse_packages_xml(string_view &s) {
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static const string_view APK_EXT(".apk");
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if (!str_starts(s, "<package "))
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return true;
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/* <package key1="value1" key2="value2"....> */
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char *start = (char *) s.data();
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start[s.length() - 2] = '\0'; /* Remove trailing '>' */
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start += 9; /* Skip '<package ' */
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char key[32], value[1024];
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char *pkg = nullptr;
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int wd = -1;
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char *tok;
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while ((tok = strtok_r(nullptr, " ", &start))) {
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sscanf(tok, "%[^=]=\"%[^\"]", key, value);
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string_view key_view(key);
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string_view value_view(value);
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if (key_view == "name") {
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for (auto &hide : hide_map) {
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if (hide.second == value_view) {
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pkg = hide.second.data();
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break;
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}
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}
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if (!pkg)
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return true;
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} else if (key_view == "codePath") {
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if (ends_with(value_view, APK_EXT)) {
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// Directly add to inotify list
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wd = xinotify_add_watch(inotify_fd, value, IN_OPEN);
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} else {
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DIR *dir = opendir(value);
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if (dir == nullptr)
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return true;
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struct dirent *entry;
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while ((entry = xreaddir(dir))) {
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if (ends_with(entry->d_name, APK_EXT)) {
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value[value_view.length()] = '/';
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strcpy(value + value_view.length() + 1, entry->d_name);
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wd = xinotify_add_watch(inotify_fd, value, IN_OPEN);
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break;
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}
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}
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closedir(dir);
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}
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} else if (key_view == "userId" || key_view == "sharedUserId") {
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int uid = parse_int(value);
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wd_uid_map[wd] = uid;
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for (auto &hide : hide_map) {
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if (hide.second == pkg)
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uid_proc_map[uid].emplace_back(hide.first);
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}
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}
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}
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return true;
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}
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void update_inotify_mask() {
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int new_inotify = xinotify_init1(IN_CLOEXEC);
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if (new_inotify < 0)
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term_thread();
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// Swap out and close old inotify_fd
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int tmp = inotify_fd;
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inotify_fd = new_inotify;
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if (tmp >= 0)
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close(tmp);
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LOGD("proc_monitor: Updating inotify list\n");
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{
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MutexGuard lock(map_lock);
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uid_proc_map.clear();
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wd_uid_map.clear();
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file_readline("/data/system/packages.xml", parse_packages_xml, true);
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}
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xinotify_add_watch(inotify_fd, "/data/system", IN_CLOSE_WRITE);
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}
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// Workaround for the lack of pthread_cancel
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static void term_thread(int) {
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LOGD("proc_monitor: cleaning up\n");
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hide_map.clear();
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uid_proc_map.clear();
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pid_ns_map.clear();
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wd_uid_map.clear();
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hide_enabled = false;
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pthread_mutex_destroy(&map_lock);
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close(inotify_fd);
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inotify_fd = -1;
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LOGD("proc_monitor: terminate\n");
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pthread_exit(nullptr);
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}
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void proc_monitor() {
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// Unblock user signals
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sigset_t block_set;
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sigemptyset(&block_set);
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sigaddset(&block_set, TERM_THREAD);
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pthread_sigmask(SIG_UNBLOCK, &block_set, nullptr);
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// Register the cancel signal
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struct sigaction act{};
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act.sa_handler = term_thread;
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sigaction(TERM_THREAD, &act, nullptr);
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// Read inotify events
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ssize_t len;
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int uid;
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char buf[512];
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auto event = reinterpret_cast<inotify_event *>(buf);
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while ((len = read(inotify_fd, buf, sizeof(buf))) >= 0) {
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if (len < sizeof(*event))
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continue;
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if (event->mask & IN_OPEN) {
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MutexGuard lock(map_lock);
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uid = wd_uid_map[event->wd];
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crawl_procfs([=](int pid) -> bool { return check_pid(pid, uid); });
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} else if ((event->mask & IN_CLOSE_WRITE) && strcmp(event->name, "packages.xml") == 0) {
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LOGD("proc_monitor: /data/system/packages.xml updated\n");
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update_inotify_mask();
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}
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}
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PLOGE("proc_monitor: read inotify");
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term_thread();
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}
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