mirror of
https://github.com/topjohnwu/Magisk.git
synced 2024-11-28 04:25:27 +00:00
425 lines
12 KiB
C++
425 lines
12 KiB
C++
#include <sys/types.h>
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#include <sys/stat.h>
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#include <sys/inotify.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <dirent.h>
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#include <set>
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#include <magisk.hpp>
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#include <utils.hpp>
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#include <db.hpp>
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#include "deny.hpp"
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using namespace std;
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// For the following data structures:
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// If package name == ISOLATED_MAGIC, or app ID == -1, it means isolated service
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// Package name -> list of process names
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static unique_ptr<map<string, set<string, StringCmp>, StringCmp>> pkg_to_procs_;
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#define pkg_to_procs (*pkg_to_procs_)
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// app ID -> list of pkg names (string_view points to a pkg_to_procs key)
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static unique_ptr<map<int, set<string_view>>> app_id_to_pkgs_;
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#define app_id_to_pkgs (*app_id_to_pkgs_)
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// Locks the data structures above
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static pthread_mutex_t data_lock = PTHREAD_MUTEX_INITIALIZER;
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atomic<bool> denylist_enforced = false;
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#define do_kill (zygisk_enabled && denylist_enforced)
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static unsigned long long pkg_xml_ino = 0;
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static void rescan_apps() {
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{
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struct stat st{};
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stat("/data/system/packages.xml", &st);
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if (pkg_xml_ino == st.st_ino) {
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// Packages has not changed, do not rescan
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return;
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}
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pkg_xml_ino = st.st_ino;
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}
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LOGD("denylist: rescanning apps\n");
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app_id_to_pkgs.clear();
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cached_manager_app_id = -1;
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auto data_dir = xopen_dir(APP_DATA_DIR);
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if (!data_dir)
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return;
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dirent *entry;
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while ((entry = xreaddir(data_dir.get()))) {
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// For each user
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int dfd = xopenat(dirfd(data_dir.get()), entry->d_name, O_RDONLY);
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if (auto dir = xopen_dir(dfd)) {
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while ((entry = xreaddir(dir.get()))) {
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// For each package
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struct stat st{};
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xfstatat(dfd, entry->d_name, &st, 0);
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int app_id = to_app_id(st.st_uid);
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if (app_id_to_pkgs.contains(app_id)) {
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// This app ID has been handled
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continue;
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}
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if (auto it = pkg_to_procs.find(entry->d_name); it != pkg_to_procs.end()) {
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app_id_to_pkgs[app_id].insert(it->first);
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}
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}
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} else {
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close(dfd);
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}
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}
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}
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static void update_pkg_uid(const string &pkg, bool remove) {
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auto data_dir = xopen_dir(APP_DATA_DIR);
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if (!data_dir)
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return;
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dirent *entry;
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struct stat st{};
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char buf[PATH_MAX] = {0};
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// For each user
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while ((entry = xreaddir(data_dir.get()))) {
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snprintf(buf, sizeof(buf), "%s/%s", entry->d_name, pkg.data());
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if (fstatat(dirfd(data_dir.get()), buf, &st, 0) == 0) {
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int app_id = to_app_id(st.st_uid);
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if (remove) {
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if (auto it = app_id_to_pkgs.find(app_id); it != app_id_to_pkgs.end()) {
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it->second.erase(pkg);
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if (it->second.empty()) {
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app_id_to_pkgs.erase(it);
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}
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}
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} else {
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app_id_to_pkgs[app_id].insert(pkg);
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}
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break;
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}
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}
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}
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// Leave /proc fd opened as we're going to read from it repeatedly
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static DIR *procfp;
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template<class F>
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static void crawl_procfs(const F &fn) {
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rewinddir(procfp);
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dirent *dp;
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int pid;
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while ((dp = readdir(procfp))) {
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pid = parse_int(dp->d_name);
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if (pid > 0 && !fn(pid))
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break;
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}
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}
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template <bool str_op(string_view, string_view)>
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static bool proc_name_match(int pid, const char *name) {
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char buf[4019];
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sprintf(buf, "/proc/%d/cmdline", pid);
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if (auto fp = open_file(buf, "re")) {
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fgets(buf, sizeof(buf), fp.get());
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if (str_op(buf, name)) {
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LOGD("denylist: kill PID=[%d] (%s)\n", pid, buf);
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return true;
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}
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}
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return false;
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}
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static inline bool str_eql(string_view a, string_view b) { return a == b; }
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template<bool str_op(string_view, string_view) = &str_eql>
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static void kill_process(const char *name, bool multi = false) {
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crawl_procfs([=](int pid) -> bool {
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if (proc_name_match<str_op>(pid, name)) {
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kill(pid, SIGKILL);
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return multi;
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}
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return true;
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});
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}
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static bool validate(const char *pkg, const char *proc) {
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bool pkg_valid = false;
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bool proc_valid = true;
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if (str_eql(pkg, ISOLATED_MAGIC)) {
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pkg_valid = true;
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for (char c; (c = *proc); ++proc) {
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if (isalnum(c) || c == '_' || c == '.')
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continue;
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if (c == ':')
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break;
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proc_valid = false;
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break;
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}
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} else {
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for (char c; (c = *pkg); ++pkg) {
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if (isalnum(c) || c == '_')
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continue;
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if (c == '.') {
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pkg_valid = true;
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continue;
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}
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pkg_valid = false;
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break;
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}
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for (char c; (c = *proc); ++proc) {
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if (isalnum(c) || c == '_' || c == ':' || c == '.')
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continue;
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proc_valid = false;
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break;
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}
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}
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return pkg_valid && proc_valid;
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}
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static auto add_hide_set(const char *pkg, const char *proc) {
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auto p = pkg_to_procs[pkg].emplace(proc);
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if (!p.second)
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return p;
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LOGI("denylist add: [%s/%s]\n", pkg, proc);
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if (!do_kill)
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return p;
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if (str_eql(pkg, ISOLATED_MAGIC)) {
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// Kill all matching isolated processes
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kill_process<&str_starts>(proc, true);
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} else {
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kill_process(proc);
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}
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return p;
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}
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static void clear_data() {
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pkg_to_procs_.reset(nullptr);
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app_id_to_pkgs_.reset(nullptr);
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}
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static bool ensure_data() {
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if (pkg_to_procs_)
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return true;
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LOGI("denylist: initializing internal data structures\n");
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default_new(pkg_to_procs_);
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char *err = db_exec("SELECT * FROM denylist", [](db_row &row) -> bool {
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add_hide_set(row["package_name"].data(), row["process"].data());
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return true;
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});
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db_err_cmd(err, goto error)
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default_new(app_id_to_pkgs_);
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rescan_apps();
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return true;
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error:
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clear_data();
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return false;
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}
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static DenyResponse add_list(const char *pkg, const char *proc) {
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if (proc[0] == '\0')
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proc = pkg;
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if (!validate(pkg, proc))
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return DenyResponse::INVALID_PKG;
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{
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mutex_guard lock(data_lock);
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if (!ensure_data())
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return DenyResponse::ERROR;
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auto p = add_hide_set(pkg, proc);
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if (!p.second)
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return DenyResponse::ITEM_EXIST;
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update_pkg_uid(*p.first, false);
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}
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// Add to database
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char sql[4096];
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snprintf(sql, sizeof(sql),
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"INSERT INTO denylist (package_name, process) VALUES('%s', '%s')", pkg, proc);
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char *err = db_exec(sql);
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db_err_cmd(err, return DenyResponse::ERROR)
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return DenyResponse::OK;
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}
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DenyResponse add_list(int client) {
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string pkg = read_string(client);
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string proc = read_string(client);
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return add_list(pkg.data(), proc.data());
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}
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static DenyResponse rm_list(const char *pkg, const char *proc) {
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{
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mutex_guard lock(data_lock);
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if (!ensure_data())
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return DenyResponse::ERROR;
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bool remove = false;
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auto it = pkg_to_procs.find(pkg);
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if (it != pkg_to_procs.end()) {
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if (proc[0] == '\0') {
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update_pkg_uid(it->first, true);
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pkg_to_procs.erase(it);
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remove = true;
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LOGI("denylist rm: [%s]\n", pkg);
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} else if (it->second.erase(proc) != 0) {
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remove = true;
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LOGI("denylist rm: [%s/%s]\n", pkg, proc);
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if (it->second.empty()) {
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update_pkg_uid(it->first, true);
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pkg_to_procs.erase(it);
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}
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}
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}
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if (!remove)
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return DenyResponse::ITEM_NOT_EXIST;
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}
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char sql[4096];
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if (proc[0] == '\0')
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snprintf(sql, sizeof(sql), "DELETE FROM denylist WHERE package_name='%s'", pkg);
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else
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snprintf(sql, sizeof(sql),
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"DELETE FROM denylist WHERE package_name='%s' AND process='%s'", pkg, proc);
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char *err = db_exec(sql);
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db_err_cmd(err, return DenyResponse::ERROR)
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return DenyResponse::OK;
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}
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DenyResponse rm_list(int client) {
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string pkg = read_string(client);
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string proc = read_string(client);
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return rm_list(pkg.data(), proc.data());
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}
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void ls_list(int client) {
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{
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mutex_guard lock(data_lock);
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if (!ensure_data()) {
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write_int(client, static_cast<int>(DenyResponse::ERROR));
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return;
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}
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write_int(client,static_cast<int>(DenyResponse::OK));
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for (const auto &[pkg, procs] : pkg_to_procs) {
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for (const auto &proc : procs) {
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write_int(client, pkg.size() + proc.size() + 1);
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xwrite(client, pkg.data(), pkg.size());
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xwrite(client, "|", 1);
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xwrite(client, proc.data(), proc.size());
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}
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}
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}
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write_int(client, 0);
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close(client);
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}
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static bool str_ends_safe(string_view s, string_view ss) {
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// Never kill webview zygote
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if (s == "webview_zygote")
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return false;
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return str_ends(s, ss);
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}
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static void update_deny_config() {
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char sql[64];
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sprintf(sql, "REPLACE INTO settings (key,value) VALUES('%s',%d)",
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DB_SETTING_KEYS[DENYLIST_CONFIG], denylist_enforced.load());
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char *err = db_exec(sql);
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db_err(err);
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}
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DenyResponse enable_deny() {
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if (denylist_enforced) {
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return DenyResponse::OK;
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} else {
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mutex_guard lock(data_lock);
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if (access("/proc/self/ns/mnt", F_OK) != 0) {
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LOGW("The kernel does not support mount namespace\n");
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return DenyResponse::NO_NS;
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}
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if (procfp == nullptr && (procfp = opendir("/proc")) == nullptr)
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return DenyResponse::ERROR;
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LOGI("* Enable DenyList\n");
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denylist_enforced = true;
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if (!ensure_data()) {
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denylist_enforced = false;
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return DenyResponse::ERROR;
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}
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// On Android Q+, also kill blastula pool and all app zygotes
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if (SDK_INT >= 29 && zygisk_enabled) {
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kill_process("usap32", true);
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kill_process("usap64", true);
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kill_process<&str_ends_safe>("_zygote", true);
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}
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}
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update_deny_config();
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return DenyResponse::OK;
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}
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DenyResponse disable_deny() {
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if (denylist_enforced) {
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denylist_enforced = false;
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LOGI("* Disable DenyList\n");
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}
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update_deny_config();
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return DenyResponse::OK;
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}
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void initialize_denylist() {
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if (!denylist_enforced) {
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db_settings dbs;
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get_db_settings(dbs, DENYLIST_CONFIG);
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if (dbs[DENYLIST_CONFIG])
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enable_deny();
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}
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}
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bool is_deny_target(int uid, string_view process) {
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mutex_guard lock(data_lock);
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if (!ensure_data())
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return false;
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rescan_apps();
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int app_id = to_app_id(uid);
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if (app_id >= 90000) {
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if (auto it = pkg_to_procs.find(ISOLATED_MAGIC); it != pkg_to_procs.end()) {
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for (const auto &s : it->second) {
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if (str_starts(process, s))
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return true;
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}
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}
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return false;
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} else {
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auto it = app_id_to_pkgs.find(app_id);
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if (it == app_id_to_pkgs.end())
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return false;
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for (const auto &pkg : it->second) {
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if (pkg_to_procs.find(pkg)->second.count(process))
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return true;
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}
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}
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return false;
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}
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