mirror of
https://github.com/topjohnwu/Magisk.git
synced 2024-11-25 11:05:34 +00:00
6663fd3526
Custom ROM bring-ups of legacy Sony devices contain the following: /init (symlink to /bin/init_sony) /init.real (the "real" Android init) /bin/init_sony (this was /sbin/init_sony on Android <11) Kernel loads the ramdisk and starts /init -> /bin/init_sony /bin/init_sony does low-level device setup (see: https://github.com/LineageOS/android_device_sony_common/blob/lineage-18.1/init/init_main.cpp) /bin/init_sony unlinks /init and renames /init.real to /init /bin/init_sony starts /init Since init_sony needs to run first magiskinit needs to replace init.real instead, so add workarounds based on detection of init.real to boot patcher and uninstaller Thanks @115ek and @bleckdeth Fixes #3636 Co-authored-by: topjohnwu <topjohnwu@gmail.com>
289 lines
8.6 KiB
C++
289 lines
8.6 KiB
C++
#include <utils.hpp>
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#include "cpio.hpp"
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#include "magiskboot.hpp"
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#include "compress.hpp"
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using namespace std;
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static const char *UNSUPPORT_LIST[] =
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{ "sbin/launch_daemonsu.sh", "sbin/su", "init.xposed.rc",
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"boot/sbin/launch_daemonsu.sh" };
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static const char *MAGISK_LIST[] =
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{ ".backup/.magisk", "init.magisk.rc",
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"overlay/init.magisk.rc" };
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class magisk_cpio : public cpio {
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public:
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void patch();
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int test();
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char *sha1();
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void restore();
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void backup(const char *orig);
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};
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bool check_env(const char *name) {
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const char *val = getenv(name);
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return val != nullptr && val == "true"sv;
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}
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void magisk_cpio::patch() {
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bool keepverity = check_env("KEEPVERITY");
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bool keepforceencrypt = check_env("KEEPFORCEENCRYPT");
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fprintf(stderr, "Patch with flag KEEPVERITY=[%s] KEEPFORCEENCRYPT=[%s]\n",
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keepverity ? "true" : "false", keepforceencrypt ? "true" : "false");
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for (auto it = entries.begin(); it != entries.end();) {
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auto cur = it++;
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bool fstab = (!keepverity || !keepforceencrypt) &&
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S_ISREG(cur->second->mode) &&
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!str_starts(cur->first, ".backup") &&
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!str_contains(cur->first, "twrp") &&
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!str_contains(cur->first, "recovery") &&
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str_contains(cur->first, "fstab");
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if (!keepverity) {
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if (fstab) {
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fprintf(stderr, "Found fstab file [%s]\n", cur->first.data());
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cur->second->filesize = patch_verity(cur->second->data, cur->second->filesize);
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} else if (cur->first == "verity_key") {
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rm(cur);
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continue;
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}
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}
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if (!keepforceencrypt) {
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if (fstab) {
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cur->second->filesize = patch_encryption(cur->second->data, cur->second->filesize);
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}
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}
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}
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}
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#define MAGISK_PATCHED (1 << 0)
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#define UNSUPPORTED_CPIO (1 << 1)
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#define SONY_INIT (1 << 2)
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int magisk_cpio::test() {
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int ret = 0;
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for (auto file : UNSUPPORT_LIST) {
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if (exists(file)) {
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return UNSUPPORTED_CPIO;
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}
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}
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for (auto file : MAGISK_LIST) {
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if (exists(file)) {
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ret |= MAGISK_PATCHED;
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break;
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}
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}
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if (exists("init.real"))
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ret |= SONY_INIT;
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return ret;
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}
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#define for_each_line(line, buf, size) \
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for (line = (char *) buf; line < (char *) buf + size && line[0]; line = strchr(line + 1, '\n') + 1)
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char *magisk_cpio::sha1() {
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char sha1[41];
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char *line;
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for (auto &e : entries) {
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if (e.first == "init.magisk.rc" || e.first == "overlay/init.magisk.rc") {
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for_each_line(line, e.second->data, e.second->filesize) {
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if (strncmp(line, "#STOCKSHA1=", 11) == 0) {
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strncpy(sha1, line + 12, 40);
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sha1[40] = '\0';
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return strdup(sha1);
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}
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}
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} else if (e.first == ".backup/.magisk") {
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for_each_line(line, e.second->data, e.second->filesize) {
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if (str_starts(line, "SHA1=")) {
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strncpy(sha1, line + 5, 40);
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sha1[40] = '\0';
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return strdup(sha1);
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}
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}
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} else if (e.first == ".backup/.sha1") {
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return (char *) e.second->data;
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}
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}
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return nullptr;
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}
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#define for_each_str(str, buf, size) \
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for (str = (char *) buf; str < (char *) buf + size; str = str += strlen(str) + 1)
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void magisk_cpio::restore() {
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if (auto it = entries.find(".backup/.rmlist"); it != entries.end()) {
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char *file;
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for_each_str(file, it->second->data, it->second->filesize) {
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rm(file);
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}
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rm(it);
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}
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for (auto it = entries.begin(); it != entries.end();) {
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auto cur = it++;
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if (str_starts(cur->first, ".backup")) {
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if (cur->first.length() == 7 || &cur->first[8] == ".magisk"sv) {
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rm(cur);
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} else {
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mv(cur, &cur->first[8]);
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}
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} else if (str_starts(cur->first, "magisk") ||
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cur->first == "overlay/init.magisk.rc" ||
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cur->first == "sbin/magic_mask.sh" ||
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cur->first == "init.magisk.rc") {
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// Some known stuff we can remove
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rm(cur);
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}
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}
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}
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void magisk_cpio::backup(const char *orig) {
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if (access(orig, R_OK))
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return;
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entry_map backups;
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string rm_list;
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backups.emplace(".backup", new cpio_entry(S_IFDIR));
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magisk_cpio o;
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o.load_cpio(orig);
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// Remove existing backups in original ramdisk
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o.rm(".backup", true);
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rm(".backup", true);
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auto lhs = o.entries.begin();
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auto rhs = entries.begin();
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while (lhs != o.entries.end() || rhs != entries.end()) {
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int res;
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bool do_backup = false;
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if (lhs != o.entries.end() && rhs != entries.end()) {
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res = lhs->first.compare(rhs->first);
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} else if (lhs == o.entries.end()) {
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res = 1;
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} else {
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res = -1;
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}
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if (res < 0) {
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// Something is missing in new ramdisk, do_backup!
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do_backup = true;
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fprintf(stderr, "Backup missing entry: ");
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} else if (res == 0) {
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if (lhs->second->filesize != rhs->second->filesize ||
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memcmp(lhs->second->data, rhs->second->data, lhs->second->filesize) != 0) {
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// Not the same!
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do_backup = true;
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fprintf(stderr, "Backup mismatch entry: ");
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}
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} else {
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// Something new in ramdisk
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rm_list += rhs->first;
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rm_list += (char) '\0';
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fprintf(stderr, "Record new entry: [%s] -> [.backup/.rmlist]\n", rhs->first.data());
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}
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if (do_backup) {
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string name = ".backup/" + lhs->first;
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fprintf(stderr, "[%s] -> [%s]\n", lhs->first.data(), name.data());
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auto e = lhs->second.release();
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backups.emplace(name, e);
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}
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// Increment positions
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if (res < 0) {
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++lhs;
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} else if (res == 0) {
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++lhs; ++rhs;
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} else {
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++rhs;
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}
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}
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if (!rm_list.empty()) {
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auto rm_list_file = new cpio_entry(S_IFREG);
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rm_list_file->filesize = rm_list.length();
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rm_list_file->data = xmalloc(rm_list.length());
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memcpy(rm_list_file->data, rm_list.data(), rm_list.length());
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backups.emplace(".backup/.rmlist", rm_list_file);
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}
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if (backups.size() > 1)
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entries.merge(backups);
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}
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int cpio_commands(int argc, char *argv[]) {
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char *incpio = argv[0];
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++argv;
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--argc;
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magisk_cpio cpio;
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if (access(incpio, R_OK) == 0)
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cpio.load_cpio(incpio);
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int cmdc;
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char *cmdv[6];
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for (int i = 0; i < argc; ++i) {
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// Reset
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cmdc = 0;
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memset(cmdv, 0, sizeof(cmdv));
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// Split the commands
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char *tok = strtok(argv[i], " ");
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while (tok && cmdc < std::size(cmdv)) {
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if (cmdc == 0 && tok[0] == '#')
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break;
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cmdv[cmdc++] = tok;
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tok = strtok(nullptr, " ");
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}
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if (cmdc == 0)
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continue;
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if (cmdv[0] == "test"sv) {
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exit(cpio.test());
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} else if (cmdv[0] == "restore"sv) {
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cpio.restore();
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} else if (cmdv[0] == "sha1"sv) {
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char *sha1 = cpio.sha1();
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if (sha1) printf("%s\n", sha1);
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return 0;
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} else if (cmdv[0] == "patch"sv) {
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cpio.patch();
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} else if (cmdc == 2 && cmdv[0] == "exists"sv) {
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exit(!cpio.exists(cmdv[1]));
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} else if (cmdc == 2 && cmdv[0] == "backup"sv) {
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cpio.backup(cmdv[1]);
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} else if (cmdc >= 2 && cmdv[0] == "rm"sv) {
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bool r = cmdc > 2 && cmdv[1] == "-r"sv;
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cpio.rm(cmdv[1 + r], r);
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} else if (cmdc == 3 && cmdv[0] == "mv"sv) {
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cpio.mv(cmdv[1], cmdv[2]);
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} else if (cmdv[0] == "extract"sv) {
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if (cmdc == 3) {
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return !cpio.extract(cmdv[1], cmdv[2]);
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} else {
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cpio.extract();
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return 0;
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}
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} else if (cmdc == 3 && cmdv[0] == "mkdir"sv) {
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cpio.mkdir(strtoul(cmdv[1], nullptr, 8), cmdv[2]);
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} else if (cmdc == 3 && cmdv[0] == "ln"sv) {
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cpio.ln(cmdv[1], cmdv[2]);
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} else if (cmdc == 4 && cmdv[0] == "add"sv) {
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cpio.add(strtoul(cmdv[1], nullptr, 8), cmdv[2], cmdv[3]);
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} else {
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return 1;
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}
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}
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cpio.dump(incpio);
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return 0;
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}
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