In order to maintain compatibility with older trees, we now have minadbd.old and minui.old. I had to use a TARGET_GLOBAL_CFLAG to handle ifdef issues in minui/minui.d because healthd includes minui/minui.h and there was no other alternative to make minui.h compatible with older trees without having to modify healthd rules which is outside of TWRP. Note that the new minui does not currently have support for qcom overlay graphics. Support for this graphics mode will likely be added in a later patch set. If you are building in a 6.0 tree and have a device that needs qcom overlay graphics, be warned, as off mode charging may not work properly. A dead battery in this case could potentially brick your device if it is unable to charge as healthd handles charging duties. Update rules for building toolbox and add rules for making toybox Use permissive.sh in init.rc which will follow symlinks so we do not have to worry about what binary is supplying the setenforce functionality (toolbox, toybox, or busybox). Fix a few warnings in the main recovery binary source code. Fix a few includes that were missing that prevented compiling in 6.0 Change-Id: Ia67aa2107d260883da5e365475a19bea538e8b97
302 lines
8.6 KiB
C++
302 lines
8.6 KiB
C++
/*
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Copyright 2012 bigbiff/Dees_Troy TeamWin
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This file is part of TWRP/TeamWin Recovery Project.
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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 <ctype.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <limits.h>
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#include <sys/stat.h>
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#include <sys/wait.h>
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#include <unistd.h>
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#include <string.h>
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#include <stdio.h>
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#include "twcommon.h"
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#include "mincrypt/rsa.h"
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#include "mincrypt/sha.h"
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#include "mtdutils/mounts.h"
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#include "mtdutils/mtdutils.h"
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#include "minzip/SysUtil.h"
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#include "minzip/Zip.h"
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#include "verifier.h"
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#include "variables.h"
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#include "data.hpp"
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#include "partitions.hpp"
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#include "twrpDigest.hpp"
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#include "twrp-functions.hpp"
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extern "C" {
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#include "gui/gui.h"
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#include "legacy_property_service.h"
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}
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static const char* properties_path = "/dev/__properties__";
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static const char* properties_path_renamed = "/dev/__properties_kk__";
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static bool legacy_props_env_initd = false;
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static bool legacy_props_path_modified = false;
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static int switch_to_legacy_properties()
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{
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if (!legacy_props_env_initd) {
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if (legacy_properties_init() != 0)
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return -1;
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char tmp[32];
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int propfd, propsz;
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legacy_get_property_workspace(&propfd, &propsz);
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sprintf(tmp, "%d,%d", dup(propfd), propsz);
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setenv("ANDROID_PROPERTY_WORKSPACE", tmp, 1);
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legacy_props_env_initd = true;
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}
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if (TWFunc::Path_Exists(properties_path)) {
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// hide real properties so that the updater uses the envvar to find the legacy format properties
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if (rename(properties_path, properties_path_renamed) != 0) {
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LOGERR("Renaming %s failed: %s\n", properties_path, strerror(errno));
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return -1;
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} else {
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legacy_props_path_modified = true;
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}
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}
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return 0;
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}
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static int switch_to_new_properties()
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{
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if (TWFunc::Path_Exists(properties_path_renamed)) {
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if (rename(properties_path_renamed, properties_path) != 0) {
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LOGERR("Renaming %s failed: %s\n", properties_path_renamed, strerror(errno));
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return -1;
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} else {
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legacy_props_path_modified = false;
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}
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}
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return 0;
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}
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static int Run_Update_Binary(const char *path, ZipArchive *Zip, int* wipe_cache) {
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const ZipEntry* binary_location = mzFindZipEntry(Zip, ASSUMED_UPDATE_BINARY_NAME);
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string Temp_Binary = "/tmp/updater";
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int binary_fd, ret_val, pipe_fd[2], status, zip_verify;
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char buffer[1024];
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const char** args = (const char**)malloc(sizeof(char*) * 5);
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FILE* child_data;
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if (binary_location == NULL) {
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mzCloseZipArchive(Zip);
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return INSTALL_CORRUPT;
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}
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// Delete any existing updater
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if (TWFunc::Path_Exists(Temp_Binary) && unlink(Temp_Binary.c_str()) != 0) {
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LOGINFO("Unable to unlink '%s'\n", Temp_Binary.c_str());
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}
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binary_fd = creat(Temp_Binary.c_str(), 0755);
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if (binary_fd < 0) {
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mzCloseZipArchive(Zip);
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LOGERR("Could not create file for updater extract in '%s'\n", Temp_Binary.c_str());
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return INSTALL_ERROR;
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}
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ret_val = mzExtractZipEntryToFile(Zip, binary_location, binary_fd);
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close(binary_fd);
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if (!ret_val) {
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mzCloseZipArchive(Zip);
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LOGERR("Could not extract '%s'\n", ASSUMED_UPDATE_BINARY_NAME);
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return INSTALL_ERROR;
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}
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// If exists, extract file_contexts from the zip file
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const ZipEntry* selinx_contexts = mzFindZipEntry(Zip, "file_contexts");
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if (selinx_contexts == NULL) {
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mzCloseZipArchive(Zip);
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LOGINFO("Zip does not contain SELinux file_contexts file in its root.\n");
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} else {
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string output_filename = "/file_contexts";
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LOGINFO("Zip contains SELinux file_contexts file in its root. Extracting to %s\n", output_filename.c_str());
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// Delete any file_contexts
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if (TWFunc::Path_Exists(output_filename) && unlink(output_filename.c_str()) != 0) {
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LOGINFO("Unable to unlink '%s'\n", output_filename.c_str());
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}
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int file_contexts_fd = creat(output_filename.c_str(), 0644);
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if (file_contexts_fd < 0) {
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mzCloseZipArchive(Zip);
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LOGERR("Could not extract file_contexts to '%s'\n", output_filename.c_str());
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return INSTALL_ERROR;
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}
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ret_val = mzExtractZipEntryToFile(Zip, selinx_contexts, file_contexts_fd);
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close(file_contexts_fd);
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if (!ret_val) {
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mzCloseZipArchive(Zip);
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LOGERR("Could not extract '%s'\n", ASSUMED_UPDATE_BINARY_NAME);
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return INSTALL_ERROR;
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}
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}
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mzCloseZipArchive(Zip);
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#ifndef TW_NO_LEGACY_PROPS
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/* Set legacy properties */
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if (switch_to_legacy_properties() != 0) {
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LOGERR("Legacy property environment did not initialize successfully. Properties may not be detected.\n");
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} else {
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LOGINFO("Legacy property environment initialized.\n");
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}
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#endif
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pipe(pipe_fd);
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args[0] = Temp_Binary.c_str();
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args[1] = EXPAND(RECOVERY_API_VERSION);
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char* temp = (char*)malloc(10);
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sprintf(temp, "%d", pipe_fd[1]);
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args[2] = temp;
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args[3] = (char*)path;
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args[4] = NULL;
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pid_t pid = fork();
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if (pid == 0) {
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close(pipe_fd[0]);
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execve(Temp_Binary.c_str(), (char* const*)args, environ);
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printf("E:Can't execute '%s'\n", Temp_Binary.c_str());
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_exit(-1);
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}
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close(pipe_fd[1]);
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*wipe_cache = 0;
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DataManager::GetValue(TW_SIGNED_ZIP_VERIFY_VAR, zip_verify);
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child_data = fdopen(pipe_fd[0], "r");
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while (fgets(buffer, sizeof(buffer), child_data) != NULL) {
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char* command = strtok(buffer, " \n");
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if (command == NULL) {
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continue;
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} else if (strcmp(command, "progress") == 0) {
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char* fraction_char = strtok(NULL, " \n");
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char* seconds_char = strtok(NULL, " \n");
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float fraction_float = strtof(fraction_char, NULL);
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int seconds_float = strtol(seconds_char, NULL, 10);
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if (zip_verify)
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DataManager::ShowProgress(fraction_float * (1 - VERIFICATION_PROGRESS_FRACTION), seconds_float);
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else
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DataManager::ShowProgress(fraction_float, seconds_float);
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} else if (strcmp(command, "set_progress") == 0) {
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char* fraction_char = strtok(NULL, " \n");
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float fraction_float = strtof(fraction_char, NULL);
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DataManager::SetProgress(fraction_float);
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} else if (strcmp(command, "ui_print") == 0) {
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char* display_value = strtok(NULL, "\n");
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if (display_value) {
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gui_print("%s", display_value);
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} else {
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gui_print("\n");
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}
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} else if (strcmp(command, "wipe_cache") == 0) {
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*wipe_cache = 1;
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} else if (strcmp(command, "clear_display") == 0) {
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// Do nothing, not supported by TWRP
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} else {
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LOGERR("unknown command [%s]\n", command);
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}
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}
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fclose(child_data);
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waitpid(pid, &status, 0);
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#ifndef TW_NO_LEGACY_PROPS
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/* Unset legacy properties */
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if (legacy_props_path_modified) {
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if (switch_to_new_properties() != 0) {
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LOGERR("Legacy property environment did not disable successfully. Legacy properties may still be in use.\n");
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} else {
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LOGINFO("Legacy property environment disabled.\n");
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}
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}
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#endif
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if (!WIFEXITED(status) || WEXITSTATUS(status) != 0) {
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LOGERR("Error executing updater binary in zip '%s'\n", path);
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return INSTALL_ERROR;
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}
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return INSTALL_SUCCESS;
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}
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extern "C" int TWinstall_zip(const char* path, int* wipe_cache) {
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int ret_val, zip_verify = 1, md5_return, key_count;
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twrpDigest md5sum;
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string strpath = path;
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ZipArchive Zip;
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if (strcmp(path, "error") == 0) {
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LOGERR("Failed to get adb sideload file: '%s'\n", path);
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return INSTALL_CORRUPT;
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}
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gui_print("Installing '%s'...\n", path);
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if (strlen(path) < 9 || strncmp(path, "/sideload", 9) != 0) {
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gui_print("Checking for MD5 file...\n");
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md5sum.setfn(strpath);
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md5_return = md5sum.verify_md5digest();
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if (md5_return == -2) { // md5 did not match
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LOGERR("Aborting zip install\n");
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return INSTALL_CORRUPT;
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}
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}
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#ifndef TW_OEM_BUILD
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DataManager::GetValue(TW_SIGNED_ZIP_VERIFY_VAR, zip_verify);
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#endif
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DataManager::SetProgress(0);
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MemMapping map;
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if (sysMapFile(path, &map) != 0) {
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LOGERR("Failed to sysMapFile '%s'\n", path);
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return -1;
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}
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if (zip_verify) {
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gui_print("Verifying zip signature...\n");
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ret_val = verify_file(map.addr, map.length);
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if (ret_val != VERIFY_SUCCESS) {
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LOGERR("Zip signature verification failed: %i\n", ret_val);
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sysReleaseMap(&map);
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return -1;
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} else {
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gui_print("Zip signature verified successfully.\n");
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}
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}
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ret_val = mzOpenZipArchive(map.addr, map.length, &Zip);
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if (ret_val != 0) {
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LOGERR("Zip file is corrupt!\n", path);
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sysReleaseMap(&map);
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return INSTALL_CORRUPT;
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}
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ret_val = Run_Update_Binary(path, &Zip, wipe_cache);
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sysReleaseMap(&map);
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return ret_val;
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}
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