android_bootable_recovery/extendedcommands.c

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#include <ctype.h>
#include <errno.h>
#include <fcntl.h>
#include <getopt.h>
#include <limits.h>
#include <linux/input.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/reboot.h>
#include <sys/types.h>
#include <time.h>
#include <unistd.h>
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#include <sys/wait.h>
#include <sys/limits.h>
#include <dirent.h>
#include <sys/stat.h>
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#include <signal.h>
#include <sys/wait.h>
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#include "bootloader.h"
#include "common.h"
#include "cutils/properties.h"
#include "firmware.h"
#include "install.h"
#include "minui/minui.h"
#include "minzip/DirUtil.h"
#include "roots.h"
#include "recovery_ui.h"
#include "commands.h"
#include "amend/amend.h"
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int signature_check_enabled = 1;
int script_assert_enabled = 1;
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static const char *SDCARD_PACKAGE_FILE = "SDCARD:update.zip";
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void
toggle_signature_check()
{
signature_check_enabled = !signature_check_enabled;
ui_print("Signature Check: %s\n", signature_check_enabled ? "Enabled" : "Disabled");
}
void toggle_script_asserts()
{
script_assert_enabled = !script_assert_enabled;
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ui_print("Script Asserts: %s\n", script_assert_enabled ? "Enabled" : "Disabled");
}
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void install_zip(const char* packagefilepath)
{
ui_print("\n-- Installing: %s\n", packagefilepath);
set_sdcard_update_bootloader_message();
int status = install_package(packagefilepath);
ui_reset_progress();
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if (status != INSTALL_SUCCESS) {
ui_set_background(BACKGROUND_ICON_ERROR);
ui_print("Installation aborted.\n");
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return;
}
if (firmware_update_pending()) {
ui_print("\nReboot via menu to complete\ninstallation.\n");
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}
ui_set_background(BACKGROUND_ICON_NONE);
ui_print("\nInstall from sdcard complete.\n");
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}
char* INSTALL_MENU_ITEMS[] = { "apply sdcard:update.zip",
"choose zip from sdcard",
"toggle signature verification",
"toggle script asserts",
NULL };
#define ITEM_APPLY_SDCARD 0
#define ITEM_CHOOSE_ZIP 1
#define ITEM_SIG_CHECK 2
#define ITEM_ASSERTS 3
void show_install_update_menu()
{
static char* headers[] = { "Apply update from .zip file on SD card",
"",
NULL
};
for (;;)
{
int chosen_item = get_menu_selection(headers, INSTALL_MENU_ITEMS, 0);
switch (chosen_item)
{
case ITEM_ASSERTS:
toggle_script_asserts();
break;
case ITEM_SIG_CHECK:
toggle_signature_check();
break;
case ITEM_APPLY_SDCARD:
install_zip(SDCARD_PACKAGE_FILE);
break;
case ITEM_CHOOSE_ZIP:
show_choose_zip_menu();
break;
default:
return;
}
}
}
char** gather_files(const char* directory, const char* fileExtensionOrDirectory, int* numFiles)
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{
char path[PATH_MAX] = "";
DIR *dir;
struct dirent *de;
int total = 0;
int i;
char** files;
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int pass;
*numFiles = 0;
int dirLen = strlen(directory);
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dir = opendir(directory);
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if (dir == NULL) {
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ui_print("Couldn't open directory.\n");
return NULL;
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}
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int extension_length;
if (fileExtensionOrDirectory != NULL)
extension_length = strlen(fileExtensionOrDirectory);
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int isCounting = 1;
i = 0;
for (pass = 0; pass < 2; pass++) {
while ((de=readdir(dir)) != NULL) {
// skip hidden files
if (de->d_name[0] == '.')
continue;
// NULL means that we are gathering directories, so skip this
if (fileExtensionOrDirectory != NULL)
{
// make sure that we can have the desired extension (prevent seg fault)
if (strlen(de->d_name) < extension_length)
continue;
// compare the extension
if (strcmp(de->d_name + strlen(de->d_name) - extension_length, fileExtensionOrDirectory) != 0)
continue;
}
else
{
struct stat info;
char* fullFileName = (char*)malloc(strlen(de->d_name) + dirLen + 1);
strcpy(fullFileName, directory);
strcat(fullFileName, de->d_name);
stat(fullFileName, &info);
free(fullFileName);
// make sure it is a directory
if (!(S_ISDIR(info.st_mode)))
continue;
}
if (pass == 0)
{
total++;
continue;
}
files[i] = (char*) malloc(dirLen + strlen(de->d_name) + 2);
strcpy(files[i], directory);
strcat(files[i], de->d_name);
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if (fileExtensionOrDirectory == NULL)
strcat(files[i], "/");
i++;
}
if (pass == 1)
break;
if (total == 0)
break;
rewinddir(dir);
*numFiles = total;
files = (char**) malloc((total+1)*sizeof(char*));
files[total]=NULL;
}
if(closedir(dir) < 0) {
LOGE("Failed to close directory.");
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}
if (total==0) {
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return NULL;
}
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return files;
}
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void free_string_array(char** array)
{
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char* cursor = array[0];
int i = 0;
while (cursor != NULL)
{
free(cursor);
cursor = array[++i];
}
free(array);
}
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// pass in NULL for fileExtensionOrDirectory and you will get a directory chooser
char* choose_file_menu(const char* directory, const char* fileExtensionOrDirectory, const char* headers[])
{
char path[PATH_MAX] = "";
DIR *dir;
struct dirent *de;
int numFiles = 0;
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int numDirs = 0;
int i;
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int dir_len = strlen(directory);
char** files = gather_files(directory, fileExtensionOrDirectory, &numFiles);
char** dirs;
if (fileExtensionOrDirectory != NULL)
dirs = gather_files(directory, NULL, &numDirs);
int total = numDirs + numFiles;
if (total == 0)
{
ui_print("No files found.\n");
return NULL;
}
char** list = (char**) malloc((total + 1) * sizeof(char*));
list[total] = NULL;
for (i = 0 ; i < numDirs; i++)
{
list[i] = strdup(dirs[i] + dir_len);
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}
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for (i = 0 ; i < numFiles; i++)
{
list[numDirs + i] = strdup(files[i] + dir_len);
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}
for (;;)
{
int chosen_item = get_menu_selection(headers, list, 0);
if (chosen_item == GO_BACK)
break;
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if (chosen_item < numDirs)
{
char* subret = choose_file_menu(dirs[chosen_item], fileExtensionOrDirectory, headers);
if (subret != NULL)
return subret;
continue;
}
static char ret[PATH_MAX];
strcpy(ret, files[chosen_item - numDirs]);
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ui_print("File chosen: %s\n", ret);
return ret;
}
return NULL;
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}
void show_choose_zip_menu()
{
if (ensure_root_path_mounted("SDCARD:") != 0) {
LOGE ("Can't mount /sdcard\n");
return;
}
static char* headers[] = { "Choose a zip to apply",
"",
NULL
};
char* file = choose_file_menu("/sdcard/", ".zip", headers);
if (file == NULL)
return;
char sdcard_package_file[1024];
strcpy(sdcard_package_file, "SDCARD:");
strcat(sdcard_package_file, file + strlen("/sdcard/"));
install_zip(sdcard_package_file);
}
// This was pulled from bionic: The default system command always looks
// for shell in /system/bin/sh. This is bad.
#define _PATH_BSHELL "/sbin/sh"
#define system recovery_system
extern char **environ;
int
system(const char *command)
{
pid_t pid;
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sig_t intsave, quitsave;
sigset_t mask, omask;
int pstat;
char *argp[] = {"sh", "-c", NULL, NULL};
if (!command) /* just checking... */
return(1);
argp[2] = (char *)command;
sigemptyset(&mask);
sigaddset(&mask, SIGCHLD);
sigprocmask(SIG_BLOCK, &mask, &omask);
switch (pid = vfork()) {
case -1: /* error */
sigprocmask(SIG_SETMASK, &omask, NULL);
return(-1);
case 0: /* child */
sigprocmask(SIG_SETMASK, &omask, NULL);
execve(_PATH_BSHELL, argp, environ);
_exit(127);
}
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intsave = (sig_t) bsd_signal(SIGINT, SIG_IGN);
quitsave = (sig_t) bsd_signal(SIGQUIT, SIG_IGN);
pid = waitpid(pid, (int *)&pstat, 0);
sigprocmask(SIG_SETMASK, &omask, NULL);
(void)bsd_signal(SIGINT, intsave);
(void)bsd_signal(SIGQUIT, quitsave);
return (pid == -1 ? -1 : pstat);
}
int do_nandroid_backup(char* backup_name)
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{
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if (ensure_root_path_mounted("SDCARD:") != 0) {
LOGE ("Can't mount /sdcard\n");
return 1;
}
char cmd[PATH_MAX];
if (NULL == backup_name)
backup_name = "";
sprintf(cmd, "/sbin/nandroid-mobile.sh backup /sdcard/clockworkmod/backup/ %s", backup_name);
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ui_print("Performing backup...\n");
int ret = system(cmd);
if (ret != 0)
{
ui_print("Error while backing up! Error code: %d\n", ret);
return ret;
}
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ui_print("Backup complete.\n");
return ret;
}
int do_nandroid_restore(char* backup_path)
{
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if (ensure_root_path_mounted("SDCARD:") != 0) {
LOGE ("Can't mount /sdcard\n");
return 1;
}
char* command[PATH_MAX];
sprintf(command, "nandroid-mobile.sh restore %s", backup_path);
ui_print("Performing restore...\n");
int ret = system(command);
if (ret != 0)
{
ui_print("Error while restoring!\n");
return ret;
}
ui_print("Restore complete.\n");
return ret;
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}
void show_nandroid_restore_menu()
{
static char* headers[] = { "Choose an image to restore",
"",
NULL
};
char* file = choose_file_menu("/sdcard/clockworkmod/backup/", NULL, headers);
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if (file == NULL)
return;
do_nandroid_restore(file);
}
void do_mount_usb_storage()
{
system("echo /dev/block/mmcblk0 > /sys/devices/platform/usb_mass_storage/lun0/file");
static char* headers[] = { "USB Mass Storage device",
"Leaving this menu unmount",
"your SD card from your PC.",
"",
NULL
};
static char* list[] = { "Unmount", NULL };
for (;;)
{
int chosen_item = get_menu_selection(headers, list, 0);
if (chosen_item == GO_BACK || chosen_item == 0)
break;
}
system("echo '' > /sys/devices/platform/usb_mass_storage/lun0/file");
system("echo 0 > /sys/devices/platform/usb_mass_storage/lun0/enable");
}
#define EXTENDEDCOMMAND_SCRIPT "/cache/recovery/extendedcommand"
int extendedcommand_file_exists()
{
struct stat file_info;
return 0 == stat(EXTENDEDCOMMAND_SCRIPT, &file_info);
}
int run_script(char* filename)
{
struct stat file_info;
if (0 != stat(filename, &file_info)) {
printf("Error executing stat on file: %s\n", filename);
return 1;
}
int script_len = file_info.st_size;
char* script_data = (char*)malloc(script_len);
FILE *file = fopen(filename, "rb");
fread(script_data, script_len, 1, file);
fclose(file);
/* Parse the script. Note that the script and parse tree are never freed.
*/
const AmCommandList *commands = parseAmendScript(script_data, script_len);
if (commands == NULL) {
printf("Syntax error in update script\n");
return 1;
} else {
printf("Parsed %.*s\n", script_len, filename);
}
/* Execute the script.
*/
int ret = execCommandList((ExecContext *)1, commands);
if (ret != 0) {
int num = ret;
char *line, *next = script_data;
while (next != NULL && ret-- > 0) {
line = next;
next = memchr(line, '\n', script_data + script_len - line);
if (next != NULL) *next++ = '\0';
}
printf("Failure at line %d:\n%s\n", num, next ? line : "(not found)");
return 1;
}
return 0;
}
int run_and_remove_extendedcommand()
{
int ret = run_script(EXTENDEDCOMMAND_SCRIPT);
remove(EXTENDEDCOMMAND_SCRIPT);
return ret;
}
int amend_main(int argc, char** argv)
{
if (argc != 2)
{
printf("Usage: amend <script>\n");
return 0;
}
RecoveryCommandContext ctx = { NULL };
if (register_update_commands(&ctx)) {
LOGE("Can't install update commands\n");
}
return run_script(argv[1]);
}