We are now requiring fstab v2 for android-10+ trees. You can specify twrp flags using /etc/twrp.flags to label and annotate partitions. This patchset uses fs_mgr to load the super partition and build device mapper blocks off vendor and system depending on the slot in use. These are mapped to partitions in TWRP and allowed to be mounted read-only. The super partition is also mapped into a TWRP partition in order to backup the entire partition. You cannot backup individual device mapper blocks due to the device can only be read-only. Therefore you cannot write back to the device mapper. Change-Id: Icc1d895dcf96ad5ba03989c9bf759419d83673a3
441 lines
14 KiB
C++
Executable File
441 lines
14 KiB
C++
Executable File
/*
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TWRP is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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TWRP is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with TWRP. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <time.h>
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#include <unistd.h>
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#include <signal.h>
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#include "gui/twmsg.h"
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#include "cutils/properties.h"
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#include "bootloader_message_twrp/include/bootloader_message_twrp/bootloader_message.h"
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#ifdef ANDROID_RB_RESTART
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#include "cutils/android_reboot.h"
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#else
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#include <sys/reboot.h>
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#endif
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extern "C" {
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#include "gui/gui.h"
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}
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#include "set_metadata.h"
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#include "gui/gui.hpp"
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#include "gui/pages.hpp"
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#include "gui/objects.hpp"
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#include "twcommon.h"
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#include "twrp-functions.hpp"
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#include "data.hpp"
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#include "partitions.hpp"
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#ifdef __ANDROID_API_N__
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#include <android-base/strings.h>
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#else
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#include <base/strings.h>
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#endif
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#include "openrecoveryscript.hpp"
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#include "variables.h"
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#include "twrpAdbBuFifo.hpp"
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#ifdef TW_USE_NEW_MINADBD
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// #include "minadbd/minadbd.h"
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#else
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extern "C" {
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#include "minadbd21/adb.h"
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}
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#endif
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//extern int adb_server_main(int is_daemon, int server_port, int /* reply_fd */);
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TWPartitionManager PartitionManager;
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int Log_Offset;
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bool datamedia;
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static void Print_Prop(const char *key, const char *name, void *cookie) {
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printf("%s=%s\n", key, name);
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}
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int main(int argc, char **argv) {
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// Recovery needs to install world-readable files, so clear umask
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// set by init
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umask(0);
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Log_Offset = 0;
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// Set up temporary log file (/tmp/recovery.log)
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freopen(TMP_LOG_FILE, "a", stdout);
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setbuf(stdout, NULL);
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freopen(TMP_LOG_FILE, "a", stderr);
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setbuf(stderr, NULL);
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signal(SIGPIPE, SIG_IGN);
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// Handle ADB sideload
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if (argc == 3 && strcmp(argv[1], "--adbd") == 0) {
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property_set("ctl.stop", "adbd");
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#ifdef TW_USE_NEW_MINADBD
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//adb_server_main(0, DEFAULT_ADB_PORT, -1); TODO fix this for android8
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// minadbd_main();
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#else
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adb_main(argv[2]);
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#endif
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return 0;
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}
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#ifdef RECOVERY_SDCARD_ON_DATA
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datamedia = true;
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#endif
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char crash_prop_val[PROPERTY_VALUE_MAX];
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int crash_counter;
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property_get("twrp.crash_counter", crash_prop_val, "-1");
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crash_counter = atoi(crash_prop_val) + 1;
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snprintf(crash_prop_val, sizeof(crash_prop_val), "%d", crash_counter);
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property_set("twrp.crash_counter", crash_prop_val);
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property_set("ro.twrp.boot", "1");
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property_set("ro.twrp.version", TW_VERSION_STR);
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time_t StartupTime = time(NULL);
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printf("Starting TWRP %s-%s on %s (pid %d)\n", TW_VERSION_STR, TW_GIT_REVISION, ctime(&StartupTime), getpid());
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// Load default values to set DataManager constants and handle ifdefs
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DataManager::SetDefaultValues();
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printf("Starting the UI...\n");
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gui_init();
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printf("=> Linking mtab\n");
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symlink("/proc/mounts", "/etc/mtab");
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std::string fstab_filename = "/etc/twrp.fstab";
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if (!TWFunc::Path_Exists(fstab_filename)) {
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fstab_filename = "/etc/recovery.fstab";
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}
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// Begin SAR detection
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{
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TWPartitionManager SarPartitionManager;
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printf("=> Processing %s for SAR-detection\n", fstab_filename.c_str());
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if (!SarPartitionManager.Process_Fstab(fstab_filename, 1, 1)) {
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LOGERR("Failing out of recovery due to problem with fstab.\n");
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return -1;
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}
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mkdir("/s", 0755);
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#if defined(AB_OTA_UPDATER) || defined(__ANDROID_API_Q__)
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bool fallback_sar = true;
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#else
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bool fallback_sar = property_get_bool("ro.build.system_root_image", false);
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#endif
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if(SarPartitionManager.Mount_By_Path("/s", false)) {
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if (TWFunc::Path_Exists("/s/build.prop")) {
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LOGINFO("SAR-DETECT: Non-SAR System detected\n");
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property_set("ro.twrp.sar", "0");
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rmdir("/system_root");
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} else if (TWFunc::Path_Exists("/s/system/build.prop")) {
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LOGINFO("SAR-DETECT: SAR System detected\n");
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property_set("ro.twrp.sar", "1");
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} else {
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LOGINFO("SAR-DETECT: No build.prop found, falling back to %s\n", fallback_sar ? "SAR" : "Non-SAR");
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property_set("ro.twrp.sar", fallback_sar ? "1" : "0");
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}
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// We are doing this here during SAR-detection, since we are mounting the system-partition anyway
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// This way we don't need to remount it later, just for overriding properties
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#if defined(TW_INCLUDE_LIBRESETPROP) && defined(TW_OVERRIDE_SYSTEM_PROPS)
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stringstream override_props(EXPAND(TW_OVERRIDE_SYSTEM_PROPS));
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string current_prop;
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while (getline(override_props, current_prop, ';')) {
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string other_prop;
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if (current_prop.find("=") != string::npos) {
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other_prop = current_prop.substr(current_prop.find("=") + 1);
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current_prop = current_prop.substr(0, current_prop.find("="));
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} else {
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other_prop = current_prop;
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}
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other_prop = android::base::Trim(other_prop);
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current_prop = android::base::Trim(current_prop);
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string sys_val = TWFunc::System_Property_Get(other_prop, SarPartitionManager, "/s");
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if (!sys_val.empty()) {
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LOGINFO("Overriding %s with value: \"%s\" from system property %s\n", current_prop.c_str(), sys_val.c_str(), other_prop.c_str());
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int error = TWFunc::Property_Override(current_prop, sys_val);
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if (error) {
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LOGERR("Failed overriding property %s, error_code: %d\n", current_prop.c_str(), error);
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}
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} else {
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LOGINFO("Not overriding %s with empty value from system property %s\n", current_prop.c_str(), other_prop.c_str());
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}
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}
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#endif
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SarPartitionManager.UnMount_By_Path("/s", false);
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} else {
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LOGINFO("SAR-DETECT: Could not mount system partition, falling back to %s\n", fallback_sar ? "SAR":"Non-SAR");
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property_set("ro.twrp.sar", fallback_sar ? "1" : "0");
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}
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rmdir("/s");
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TWFunc::check_and_run_script("/sbin/sarsetup.sh", "boot");
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}
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// End SAR detection
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printf("=> Processing %s\n", fstab_filename.c_str());
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if (!PartitionManager.Process_Fstab(fstab_filename, 1, 0)) {
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LOGERR("Failing out of recovery due to problem with fstab.\n");
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return -1;
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}
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PartitionManager.Output_Partition_Logging();
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if (PartitionManager.Get_Super_Status())
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PartitionManager.Setup_Super_Devices();
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// Load up all the resources
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gui_loadResources();
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bool Shutdown = false;
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bool SkipDecryption = false;
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string Send_Intent = "";
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{
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TWPartition* misc = PartitionManager.Find_Partition_By_Path("/misc");
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if (misc != NULL) {
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if (misc->Current_File_System == "emmc") {
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set_misc_device(misc->Actual_Block_Device.c_str());
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} else {
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LOGERR("Only emmc /misc is supported\n");
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}
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}
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get_args(&argc, &argv);
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int index, index2, len;
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char* argptr;
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char* ptr;
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printf("Startup Commands: ");
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for (index = 1; index < argc; index++) {
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argptr = argv[index];
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printf(" '%s'", argv[index]);
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len = strlen(argv[index]);
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if (*argptr == '-') {argptr++; len--;}
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if (*argptr == '-') {argptr++; len--;}
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if (*argptr == 'u') {
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ptr = argptr;
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index2 = 0;
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while (*ptr != '=' && *ptr != '\n')
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ptr++;
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// skip the = before grabbing Zip_File
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while (*ptr == '=')
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ptr++;
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if (*ptr) {
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string ORSCommand = "install ";
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ORSCommand.append(ptr);
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// If we have a map of blocks we don't need to mount data.
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SkipDecryption = *ptr == '@';
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if (!OpenRecoveryScript::Insert_ORS_Command(ORSCommand))
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break;
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} else
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LOGERR("argument error specifying zip file\n");
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} else if (*argptr == 'w') {
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if (len == 9) {
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if (!OpenRecoveryScript::Insert_ORS_Command("wipe data\n"))
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break;
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} else if (len == 10) {
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if (!OpenRecoveryScript::Insert_ORS_Command("wipe cache\n"))
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break;
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}
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// Other 'w' items are wipe_ab and wipe_package_size which are related to bricking the device remotely. We will not bother to suppor these as having TWRP probably makes "bricking" the device in this manner useless
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} else if (*argptr == 'n') {
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DataManager::SetValue(TW_BACKUP_NAME, gui_parse_text("{@auto_generate}"));
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if (!OpenRecoveryScript::Insert_ORS_Command("backup BSDCAE\n"))
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break;
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} else if (*argptr == 'p') {
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Shutdown = true;
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} else if (*argptr == 's') {
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if (strncmp(argptr, "send_intent", strlen("send_intent")) == 0) {
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ptr = argptr + strlen("send_intent") + 1;
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Send_Intent = *ptr;
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} else if (strncmp(argptr, "security", strlen("security")) == 0) {
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LOGINFO("Security update\n");
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} else if (strncmp(argptr, "sideload", strlen("sideload")) == 0) {
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if (!OpenRecoveryScript::Insert_ORS_Command("sideload\n"))
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break;
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} else if (strncmp(argptr, "stages", strlen("stages")) == 0) {
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LOGINFO("ignoring stages command\n");
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}
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} else if (*argptr == 'r') {
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if (strncmp(argptr, "reason", strlen("reason")) == 0) {
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ptr = argptr + strlen("reason") + 1;
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gui_print("%s\n", ptr);
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}
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}
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}
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printf("\n");
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}
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if (crash_counter == 0) {
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property_list(Print_Prop, NULL);
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printf("\n");
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} else {
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printf("twrp.crash_counter=%d\n", crash_counter);
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}
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// Check for and run startup script if script exists
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TWFunc::check_and_run_script("/sbin/runatboot.sh", "boot");
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TWFunc::check_and_run_script("/sbin/postrecoveryboot.sh", "boot");
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#ifdef TW_INCLUDE_INJECTTWRP
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// Back up TWRP Ramdisk if needed:
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TWPartition* Boot = PartitionManager.Find_Partition_By_Path("/boot");
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LOGINFO("Backing up TWRP ramdisk...\n");
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if (Boot == NULL || Boot->Current_File_System != "emmc")
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TWFunc::Exec_Cmd("injecttwrp --backup /tmp/backup_recovery_ramdisk.img");
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else {
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string injectcmd = "injecttwrp --backup /tmp/backup_recovery_ramdisk.img bd=" + Boot->Actual_Block_Device;
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TWFunc::Exec_Cmd(injectcmd);
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}
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LOGINFO("Backup of TWRP ramdisk done.\n");
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#endif
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// Offer to decrypt if the device is encrypted
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if (DataManager::GetIntValue(TW_IS_ENCRYPTED) != 0) {
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if (SkipDecryption) {
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LOGINFO("Skipping decryption\n");
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} else {
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LOGINFO("Is encrypted, do decrypt page first\n");
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if (gui_startPage("decrypt", 1, 1) != 0) {
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LOGERR("Failed to start decrypt GUI page.\n");
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} else {
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// Check for and load custom theme if present
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TWFunc::check_selinux_support();
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gui_loadCustomResources();
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}
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}
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} else if (datamedia) {
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TWFunc::check_selinux_support();
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if (tw_get_default_metadata(DataManager::GetSettingsStoragePath().c_str()) != 0) {
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LOGINFO("Failed to get default contexts and file mode for storage files.\n");
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} else {
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LOGINFO("Got default contexts and file mode for storage files.\n");
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}
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}
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// Fixup the RTC clock on devices which require it
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if (crash_counter == 0)
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TWFunc::Fixup_Time_On_Boot();
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// Read the settings file
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TWFunc::Update_Log_File();
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DataManager::ReadSettingsFile();
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PageManager::LoadLanguage(DataManager::GetStrValue("tw_language"));
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GUIConsole::Translate_Now();
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// Run any outstanding OpenRecoveryScript
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std::string cacheDir = TWFunc::get_cache_dir();
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std::string orsFile = cacheDir + "/recovery/openrecoveryscript";
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if ((DataManager::GetIntValue(TW_IS_ENCRYPTED) == 0 || SkipDecryption) && (TWFunc::Path_Exists(SCRIPT_FILE_TMP) || TWFunc::Path_Exists(orsFile))) {
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OpenRecoveryScript::Run_OpenRecoveryScript();
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}
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#ifdef TW_HAS_MTP
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char mtp_crash_check[PROPERTY_VALUE_MAX];
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property_get("mtp.crash_check", mtp_crash_check, "0");
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if (DataManager::GetIntValue("tw_mtp_enabled")
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&& !strcmp(mtp_crash_check, "0") && !crash_counter
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&& (!DataManager::GetIntValue(TW_IS_ENCRYPTED) || DataManager::GetIntValue(TW_IS_DECRYPTED))) {
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property_set("mtp.crash_check", "1");
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LOGINFO("Starting MTP\n");
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if (!PartitionManager.Enable_MTP())
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PartitionManager.Disable_MTP();
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else
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gui_msg("mtp_enabled=MTP Enabled");
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property_set("mtp.crash_check", "0");
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} else if (strcmp(mtp_crash_check, "0")) {
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gui_warn("mtp_crash=MTP Crashed, not starting MTP on boot.");
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DataManager::SetValue("tw_mtp_enabled", 0);
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PartitionManager.Disable_MTP();
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} else if (crash_counter == 1) {
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LOGINFO("TWRP crashed; disabling MTP as a precaution.\n");
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PartitionManager.Disable_MTP();
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}
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#endif
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#ifndef TW_OEM_BUILD
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// Check if system has never been changed
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TWPartition* sys = PartitionManager.Find_Partition_By_Path(PartitionManager.Get_Android_Root_Path());
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TWPartition* ven = PartitionManager.Find_Partition_By_Path("/vendor");
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if (sys) {
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if (sys->Get_Super_Status()) {
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if (!PartitionManager.Prepare_All_Super_Volumes()) {
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LOGERR("Unable to prepare super volumes.\n");
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}
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} else {
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if ((DataManager::GetIntValue("tw_mount_system_ro") == 0 && sys->Check_Lifetime_Writes() == 0) || DataManager::GetIntValue("tw_mount_system_ro") == 2) {
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if (DataManager::GetIntValue("tw_never_show_system_ro_page") == 0) {
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DataManager::SetValue("tw_back", "main");
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if (gui_startPage("system_readonly", 1, 1) != 0) {
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LOGERR("Failed to start system_readonly GUI page.\n");
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}
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} else if (DataManager::GetIntValue("tw_mount_system_ro") == 0) {
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sys->Change_Mount_Read_Only(false);
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if (ven)
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ven->Change_Mount_Read_Only(false);
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}
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} else if (DataManager::GetIntValue("tw_mount_system_ro") == 1) {
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// Do nothing, user selected to leave system read only
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} else {
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sys->Change_Mount_Read_Only(false);
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if (ven)
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ven->Change_Mount_Read_Only(false);
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}
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}
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}
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#endif
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twrpAdbBuFifo *adb_bu_fifo = new twrpAdbBuFifo();
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adb_bu_fifo->threadAdbBuFifo();
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// Launch the main GUI
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gui_start();
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#ifndef TW_OEM_BUILD
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// Disable flashing of stock recovery
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TWFunc::Disable_Stock_Recovery_Replace();
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#endif
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// Reboot
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TWFunc::Update_Intent_File(Send_Intent);
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delete adb_bu_fifo;
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TWFunc::Update_Log_File();
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gui_msg(Msg("rebooting=Rebooting..."));
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string Reboot_Arg;
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DataManager::GetValue("tw_reboot_arg", Reboot_Arg);
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if (Reboot_Arg == "recovery")
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TWFunc::tw_reboot(rb_recovery);
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else if (Reboot_Arg == "poweroff")
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TWFunc::tw_reboot(rb_poweroff);
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else if (Reboot_Arg == "bootloader")
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TWFunc::tw_reboot(rb_bootloader);
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else if (Reboot_Arg == "download")
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TWFunc::tw_reboot(rb_download);
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else if (Reboot_Arg == "edl")
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TWFunc::tw_reboot(rb_edl);
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else
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TWFunc::tw_reboot(rb_system);
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return 0;
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}
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