If the kernel does not use SELinux security then the ramdisk contents will not have contexts set on the files, however we may still have everything we need in recovery if the kernel supports EXT4 security labels, so we try to check /cache/recovery if it exists first. Change-Id: I96a4ae16418e07b0a2e83cd56e19893898d0b394
320 lines
9.4 KiB
C++
320 lines
9.4 KiB
C++
/*
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ccdd
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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.h>
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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 "cutils/properties.h"
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extern "C" {
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#include "minadbd/adb.h"
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#include "bootloader.h"
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}
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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 "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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#include "openrecoveryscript.hpp"
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#include "variables.h"
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#include "twrpDU.hpp"
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#ifdef HAVE_SELINUX
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#include "selinux/label.h"
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struct selabel_handle *selinux_handle;
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#endif
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TWPartitionManager PartitionManager;
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int Log_Offset;
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twrpDU du;
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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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// Handle ADB sideload
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if (argc == 3 && strcmp(argv[1], "--adbd") == 0) {
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adb_main(argv[2]);
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return 0;
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}
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time_t StartupTime = time(NULL);
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printf("Starting TWRP %s on %s", TW_VERSION_STR, ctime(&StartupTime));
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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...");
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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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if (TWFunc::Path_Exists("/etc/twrp.fstab")) {
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if (TWFunc::Path_Exists("/etc/recovery.fstab")) {
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printf("Renaming regular /etc/recovery.fstab -> /etc/recovery.fstab.bak\n");
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rename("/etc/recovery.fstab", "/etc/recovery.fstab.bak");
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}
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printf("Moving /etc/twrp.fstab -> /etc/recovery.fstab\n");
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rename("/etc/twrp.fstab", "/etc/recovery.fstab");
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}
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printf("=> Processing recovery.fstab\n");
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if (!PartitionManager.Process_Fstab("/etc/recovery.fstab", 1)) {
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LOGERR("Failing out of recovery due to problem with recovery.fstab.\n");
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return -1;
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}
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PartitionManager.Output_Partition_Logging();
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// Load up all the resources
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gui_loadResources();
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#ifdef HAVE_SELINUX
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if (TWFunc::Path_Exists("/prebuilt_file_contexts")) {
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if (TWFunc::Path_Exists("/file_contexts")) {
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printf("Renaming regular /file_contexts -> /file_contexts.bak\n");
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rename("/file_contexts", "/file_contexts.bak");
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}
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printf("Moving /prebuilt_file_contexts -> /file_contexts\n");
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rename("/prebuilt_file_contexts", "/file_contexts");
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}
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struct selinux_opt selinux_options[] = {
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{ SELABEL_OPT_PATH, "/file_contexts" }
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};
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selinux_handle = selabel_open(SELABEL_CTX_FILE, selinux_options, 1);
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if (!selinux_handle)
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printf("No file contexts for SELinux\n");
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else
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printf("SELinux contexts loaded from /file_contexts\n");
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{ // Check to ensure SELinux can be supported by the kernel
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char *contexts = NULL;
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if (PartitionManager.Mount_By_Path("/cache", true) && TWFunc::Path_Exists("/cache/recovery")) {
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lgetfilecon("/cache/recovery", &contexts);
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if (!contexts) {
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lsetfilecon("/cache/recovery", "test");
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lgetfilecon("/cache/recovery", &contexts);
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}
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} else {
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LOGINFO("Could not check /cache/recovery SELinux contexts, using /sbin/teamwin instead which may be inaccurate.\n");
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lgetfilecon("/sbin/teamwin", &contexts);
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}
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if (!contexts) {
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gui_print("Kernel does not have support for reading SELinux contexts.\n");
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} else {
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free(contexts);
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gui_print("Full SELinux support is present.\n");
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}
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}
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#else
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gui_print("No SELinux support (no libselinux).\n");
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#endif
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PartitionManager.Mount_By_Path("/cache", true);
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string Zip_File, Reboot_Value;
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bool Cache_Wipe = false, Factory_Reset = false, Perform_Backup = false;
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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_device_type('e');
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set_device_name(misc->Actual_Block_Device.c_str());
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} else if (misc->Current_File_System == "mtd") {
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set_device_type('m');
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set_device_name(misc->MTD_Name.c_str());
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} else {
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LOGERR("Unknown file system for /misc\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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Zip_File = ptr;
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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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Factory_Reset = true;
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else if (len == 10)
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Cache_Wipe = true;
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} else if (*argptr == 'n') {
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Perform_Backup = true;
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} else if (*argptr == 's') {
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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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if (*ptr) {
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Reboot_Value = *ptr;
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}
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}
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}
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}
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char twrp_booted[PROPERTY_VALUE_MAX];
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property_get("ro.twrp.boot", twrp_booted, "0");
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if (strcmp(twrp_booted, "0") == 0) {
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property_list(Print_Prop, NULL);
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printf("\n");
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property_set("ro.twrp.boot", "1");
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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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bool Keep_Going = true;
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if (Perform_Backup) {
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DataManager::SetValue(TW_BACKUP_NAME, "(Auto Generate)");
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if (!OpenRecoveryScript::Insert_ORS_Command("backup BSDCAE\n"))
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Keep_Going = false;
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}
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if (Keep_Going && !Zip_File.empty()) {
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string ORSCommand = "install " + Zip_File;
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if (!OpenRecoveryScript::Insert_ORS_Command(ORSCommand))
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Keep_Going = false;
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}
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if (Keep_Going) {
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if (Factory_Reset) {
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if (!OpenRecoveryScript::Insert_ORS_Command("wipe data\n"))
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Keep_Going = false;
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} else if (Cache_Wipe) {
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if (!OpenRecoveryScript::Insert_ORS_Command("wipe cache\n"))
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Keep_Going = false;
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}
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}
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TWFunc::Update_Log_File();
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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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LOGINFO("Is encrypted, do decrypt page first\n");
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if (gui_startPage("decrypt") != 0) {
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LOGERR("Failed to start decrypt GUI page.\n");
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}
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}
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// Read the settings file
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DataManager::ReadSettingsFile();
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// Run any outstanding OpenRecoveryScript
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if (DataManager::GetIntValue(TW_IS_ENCRYPTED) == 0 && (TWFunc::Path_Exists(SCRIPT_FILE_TMP) || TWFunc::Path_Exists(SCRIPT_FILE_CACHE))) {
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OpenRecoveryScript::Run_OpenRecoveryScript();
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}
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// Launch the main GUI
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gui_start();
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// Check for su to see if the device is rooted or not
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if (PartitionManager.Mount_By_Path("/system", false)) {
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// Disable flashing of stock recovery
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if (TWFunc::Path_Exists("/system/recovery-from-boot.p")) {
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rename("/system/recovery-from-boot.p", "/system/recovery-from-boot.bak");
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gui_print("Renamed stock recovery file in /system to prevent\nthe stock ROM from replacing TWRP.\n");
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}
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if (TWFunc::Path_Exists("/supersu/su") && !TWFunc::Path_Exists("/system/bin/su") && !TWFunc::Path_Exists("/system/xbin/su") && !TWFunc::Path_Exists("/system/bin/.ext/.su")) {
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// Device doesn't have su installed
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DataManager::SetValue("tw_busy", 1);
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if (gui_startPage("installsu") != 0) {
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LOGERR("Failed to start SuperSU install page.\n");
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}
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} else if (TWFunc::Check_su_Perms() > 0) {
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// su perms are set incorrectly
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LOGINFO("Root permissions appear to be lost... fixing. (This will always happen on 4.3+ ROMs with SELinux.\n");
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TWFunc::Fix_su_Perms();
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}
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sync();
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PartitionManager.UnMount_By_Path("/system", false);
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}
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// Reboot
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TWFunc::Update_Intent_File(Reboot_Value);
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TWFunc::Update_Log_File();
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gui_print("Rebooting...\n");
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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
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TWFunc::tw_reboot(rb_system);
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#ifdef ANDROID_RB_RESTART
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android_reboot(ANDROID_RB_RESTART, 0, 0);
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#else
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reboot(RB_AUTOBOOT);
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#endif
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return 0;
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}
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