234 lines
8.9 KiB
C
234 lines
8.9 KiB
C
/*
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* Copyright (C) 2008 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "private/android_filesystem_config.h"
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#include <dirent.h>
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#include <limits.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <sys/types.h>
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#include <unistd.h>
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/*
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* Recursively walk the directory tree at <sysdir>/<subdir>, writing
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* script commands to set permissions and create symlinks.
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* Assume the contents already have the specified default permissions,
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* so only output commands if they need to be changed from the defaults.
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*
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* Note that permissions are set by fs_config(), which uses a lookup table of
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* Android permissions. They are not drawn from the build host filesystem.
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*/
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static void walk_files(
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const char *sysdir, const char *subdir,
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unsigned default_uid, unsigned default_gid,
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unsigned default_dir_mode, unsigned default_file_mode) {
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const char *sep = strcmp(subdir, "") ? "/" : "";
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char fn[PATH_MAX];
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unsigned dir_uid = 0, dir_gid = 0, dir_mode = 0;
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snprintf(fn, PATH_MAX, "system%s%s", sep, subdir);
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fs_config(fn, 1, &dir_uid, &dir_gid, &dir_mode);
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snprintf(fn, PATH_MAX, "%s%s%s", sysdir, sep, subdir);
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DIR *dir = opendir(fn);
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if (dir == NULL) {
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perror(fn);
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exit(1);
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}
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/*
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* We can use "set_perm" and "set_perm_recursive" to set file permissions
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* (owner, group, and file mode) for individual files and entire subtrees.
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* We want to use set_perm_recursive efficiently to avoid setting the
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* permissions of every single file in the system image individually.
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*
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* What we do is recursively set our entire subtree to the permissions
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* used by the first file we encounter, and then use "set_perm" to adjust
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* the permissions of subsequent files which don't match the first one.
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* This is bad if the first file is an outlier, but it generally works.
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* Subdirectories can do the same thing recursively if they're different.
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*/
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int is_first = 1;
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const struct dirent *e;
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while ((e = readdir(dir))) {
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// Skip over "." and ".." entries
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if (!strcmp(e->d_name, ".") || !strcmp(e->d_name, "..")) continue;
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if (e->d_type == DT_LNK) { // Symlink
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// Symlinks don't really have permissions, so this is orthogonal.
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snprintf(fn, PATH_MAX, "%s/%s%s%s", sysdir, subdir, sep, e->d_name);
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int len = readlink(fn, fn, PATH_MAX - 1);
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if (len <= 0) {
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perror(fn);
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exit(1);
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}
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fn[len] = '\0';
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printf("symlink %s SYSTEM:%s%s%s\n", fn, subdir, sep, e->d_name);
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} else if (e->d_type == DT_DIR) { // Subdirectory
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// Use the parent directory as the model for default permissions.
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// We haven't seen a file, so just make up some file defaults.
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if (is_first && (
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dir_mode != default_dir_mode ||
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dir_uid != default_uid || dir_gid != default_gid)) {
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default_uid = dir_uid;
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default_gid = dir_gid;
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default_dir_mode = dir_mode;
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default_file_mode = dir_mode & default_file_mode & 0666;
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printf("set_perm_recursive %d %d 0%o 0%o SYSTEM:%s\n",
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default_uid, default_gid,
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default_dir_mode, default_file_mode,
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subdir);
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}
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is_first = 0;
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// Recursively handle the subdirectory.
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// Note, the recursive call handles the directory's own permissions.
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snprintf(fn, PATH_MAX, "%s%s%s", subdir, sep, e->d_name);
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walk_files(sysdir, fn,
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default_uid, default_gid,
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default_dir_mode, default_file_mode);
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} else { // Ordinary file
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// Get the file's desired permissions.
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unsigned file_uid = 0, file_gid = 0, file_mode = 0;
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snprintf(fn, PATH_MAX, "system/%s%s%s", subdir, sep, e->d_name);
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fs_config(fn, 0, &file_uid, &file_gid, &file_mode);
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// If this is the first file, its mode gets to become the default.
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if (is_first && (
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dir_mode != default_dir_mode ||
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file_mode != default_file_mode ||
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dir_uid != default_uid || file_uid != default_uid ||
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dir_gid != default_gid || file_gid != default_gid)) {
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default_uid = dir_uid;
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default_gid = dir_gid;
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default_dir_mode = dir_mode;
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default_file_mode = file_mode;
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printf("set_perm_recursive %d %d 0%o 0%o SYSTEM:%s\n",
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default_uid, default_gid,
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default_dir_mode, default_file_mode,
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subdir);
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}
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is_first = 0;
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// Otherwise, override this file if it doesn't match the defaults.
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if (file_mode != default_file_mode ||
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file_uid != default_uid || file_gid != default_gid) {
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printf("set_perm %d %d 0%o SYSTEM:%s%s%s\n",
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file_uid, file_gid, file_mode,
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subdir, sep, e->d_name);
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}
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}
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}
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// Set the directory's permissions directly, if they never got set.
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if (dir_mode != default_dir_mode ||
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dir_uid != default_uid || dir_gid != default_gid) {
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printf("set_perm %d %d 0%o SYSTEM:%s\n",
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dir_uid, dir_gid, dir_mode, subdir);
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}
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closedir(dir);
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}
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/*
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* Generate the update script (in "Amend", see commands/recovery/commands.c)
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* for the complete-reinstall OTA update packages the build system makes.
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*
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* The generated script makes a variety of sanity checks about the device,
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* erases and reinstalls system files, and sets file permissions appropriately.
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*/
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int main(int argc, char *argv[]) {
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if (argc != 3) {
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fprintf(stderr, "usage: %s systemdir android-info.txt >update-script\n",
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argv[0]);
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return 2;
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}
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// ensure basic recovery script language compatibility
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printf("assert compatible_with(\"0.2\") == \"true\"\n");
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// if known, make sure the device name is correct
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const char *device = getenv("TARGET_DEVICE");
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if (device != NULL) {
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printf("assert getprop(\"ro.product.device\") == \"%s\" || "
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"getprop(\"ro.build.product\") == \"%s\"\n", device, device);
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}
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// scan android-info.txt to enforce compatibility with the target system
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FILE *fp = fopen(argv[2], "r");
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if (fp == NULL) {
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perror(argv[2]);
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return 1;
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}
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// The lines we're looking for look like:
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// version-bootloader=x.yy.zzzz|x.yy.zzzz|...
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// or:
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// require version-bootloader=x.yy.zzzz|x.yy.zzzz|...
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char line[256];
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while (fgets(line, sizeof(line), fp)) {
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const char *name = strtok(line, "="), *value = strtok(NULL, "|\n");
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if (value != NULL &&
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(!strcmp(name, "version-bootloader") ||
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!strcmp(name, "require version-bootloader"))) {
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printf("assert getprop(\"ro.bootloader\") == \"%s\"", value);
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while ((value = strtok(NULL, "|\n")) != NULL) {
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printf(" || getprop(\"ro.bootloader\") == \"%s\"", value);
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}
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printf("\n");
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}
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// We also used to check version-baseband, but we update radio.img
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// ourselves, so there's no need.
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}
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// erase the boot sector first, so if the update gets interrupted,
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// the system will reboot into the recovery partition and start over.
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printf("format BOOT:\n");
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// write the radio image (actually just loads it into RAM for now)
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printf("show_progress 0.1 0\n");
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printf("write_radio_image PACKAGE:radio.img\n");
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// erase and reinstall the system image
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printf("show_progress 0.5 0\n");
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printf("format SYSTEM:\n");
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printf("copy_dir PACKAGE:system SYSTEM:\n");
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// walk the files in the system image, set their permissions, etc.
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// use -1 for default values to force permissions to be set explicitly.
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walk_files(argv[1], "", -1, -1, -1, -1);
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// as the last step, write the boot sector.
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printf("show_progress 0.2 0\n");
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printf("write_raw_image PACKAGE:boot.img BOOT:\n");
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// after the end of the script, the radio will be written to cache
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// leave some space in the progress bar for this operation
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printf("show_progress 0.2 10\n");
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return 0;
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}
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