This will probably not compile and may need additional work. For tracking purposes so we know what might still need looking at as none of this has been compiled and tested, here is a list of the merge conflicts that I attempted to fix before pushing this set of changes: git pull aosp lollipop-release remote: Finding sources: 100% (992/992) remote: Total 992 (delta 473), reused 992 (delta 473) Receiving objects: 100% (992/992), 1.51 MiB | 516.00 KiB/s, done. Resolving deltas: 100% (473/473), completed with 42 local objects. From https://android.googlesource.com/platform/bootable/recovery * branch lollipop-release -> FETCH_HEAD * [new branch] lollipop-release -> aosp/lollipop-release Auto-merging verifier_test.cpp CONFLICT (content): Merge conflict in verifier_test.cpp Auto-merging verifier.h CONFLICT (content): Merge conflict in verifier.h Auto-merging verifier.cpp CONFLICT (content): Merge conflict in verifier.cpp Auto-merging updater/updater.c Auto-merging updater/install.c CONFLICT (content): Merge conflict in updater/install.c Auto-merging updater/Android.mk CONFLICT (content): Merge conflict in updater/Android.mk Auto-merging uncrypt/Android.mk CONFLICT (content): Merge conflict in uncrypt/Android.mk Auto-merging ui.cpp CONFLICT (content): Merge conflict in ui.cpp Auto-merging screen_ui.cpp Auto-merging roots.cpp CONFLICT (content): Merge conflict in roots.cpp CONFLICT (rename/delete): res-hdpi/images/progress_fill.png deleted in HEAD and renamed incddb68b5ea. Versioncddb68b5eaof res-hdpi/images/progress_fill.png left in tree. CONFLICT (rename/delete): res-hdpi/images/progress_empty.png deleted in HEAD and renamed incddb68b5ea. Versioncddb68b5eaof res-hdpi/images/progress_empty.png left in tree. CONFLICT (rename/delete): res-hdpi/images/icon_error.png deleted in HEAD and renamed incddb68b5ea. Versioncddb68b5eaof res-hdpi/images/icon_error.png left in tree. Auto-merging recovery.cpp CONFLICT (content): Merge conflict in recovery.cpp Auto-merging minui/resources.c CONFLICT (content): Merge conflict in minui/resources.c Auto-merging minui/minui.h CONFLICT (content): Merge conflict in minui/minui.h Auto-merging minui/graphics.c CONFLICT (content): Merge conflict in minui/graphics.c Auto-merging minui/Android.mk CONFLICT (content): Merge conflict in minui/Android.mk Removing minelf/Retouch.h Removing minelf/Retouch.c Auto-merging minadbd/usb_linux_client.c CONFLICT (content): Merge conflict in minadbd/usb_linux_client.c Auto-merging minadbd/adb.h CONFLICT (content): Merge conflict in minadbd/adb.h Auto-merging minadbd/adb.c CONFLICT (content): Merge conflict in minadbd/adb.c Auto-merging minadbd/Android.mk CONFLICT (content): Merge conflict in minadbd/Android.mk Removing make-overlay.py Auto-merging install.h CONFLICT (content): Merge conflict in install.h Auto-merging etc/init.rc CONFLICT (content): Merge conflict in etc/init.rc Auto-merging bootloader.h Auto-merging applypatch/applypatch.c Auto-merging applypatch/Android.mk CONFLICT (content): Merge conflict in applypatch/Android.mk Auto-merging adb_install.cpp CONFLICT (content): Merge conflict in adb_install.cpp Auto-merging Android.mk CONFLICT (content): Merge conflict in Android.mk Automatic merge failed; fix conflicts and then commit the result. Change-Id: I3e0e03e48ad8550912111c7a5c9a140ed0267e2c
342 lines
10 KiB
C++
342 lines
10 KiB
C++
/*
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* Copyright (C) 2007 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 <errno.h>
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#include <stdlib.h>
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#include <sys/mount.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <sys/wait.h>
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#include <unistd.h>
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#include <ctype.h>
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#include <fcntl.h>
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extern "C" {
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#include <fs_mgr.h>
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#include "mtdutils/mtdutils.h"
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#include "mtdutils/mounts.h"
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}
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#include "roots.h"
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#include "common.h"
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#include "make_ext4fs.h"
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extern "C" {
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#include "wipe.h"
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#include "cryptfs.h"
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}
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static struct fstab *fstab = NULL;
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extern struct selabel_handle *sehandle;
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static const char* PERSISTENT_PATH = "/persistent";
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void load_volume_table()
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{
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int i;
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int ret;
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fstab = fs_mgr_read_fstab("/etc/recovery.fstab");
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if (!fstab) {
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LOGE("failed to read /etc/recovery.fstab\n");
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return;
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}
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ret = fs_mgr_add_entry(fstab, "/tmp", "ramdisk", "ramdisk");
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if (ret < 0 ) {
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LOGE("failed to add /tmp entry to fstab\n");
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fs_mgr_free_fstab(fstab);
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fstab = NULL;
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return;
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}
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printf("recovery filesystem table\n");
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printf("=========================\n");
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for (i = 0; i < fstab->num_entries; ++i) {
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Volume* v = &fstab->recs[i];
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printf(" %d %s %s %s %lld\n", i, v->mount_point, v->fs_type,
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v->blk_device, v->length);
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}
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printf("\n");
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}
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Volume* volume_for_path(const char* path) {
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return fs_mgr_get_entry_for_mount_point(fstab, path);
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}
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int ensure_path_mounted(const char* path) {
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if (PartitionManager.Mount_By_Path(path, true))
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return 0;
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else
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return -1;
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Volume* v = volume_for_path(path);
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if (v == NULL) {
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LOGE("unknown volume for path [%s]\n", path);
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return -1;
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}
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if (strcmp(v->fs_type, "ramdisk") == 0) {
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// the ramdisk is always mounted.
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return 0;
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}
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int result;
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result = scan_mounted_volumes();
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if (result < 0) {
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LOGE("failed to scan mounted volumes\n");
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return -1;
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}
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const MountedVolume* mv =
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find_mounted_volume_by_mount_point(v->mount_point);
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if (mv) {
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// volume is already mounted
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return 0;
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}
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mkdir(v->mount_point, 0755); // in case it doesn't already exist
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if (strcmp(v->fs_type, "yaffs2") == 0) {
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// mount an MTD partition as a YAFFS2 filesystem.
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mtd_scan_partitions();
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const MtdPartition* partition;
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partition = mtd_find_partition_by_name(v->blk_device);
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if (partition == NULL) {
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LOGE("failed to find \"%s\" partition to mount at \"%s\"\n",
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v->blk_device, v->mount_point);
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return -1;
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}
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return mtd_mount_partition(partition, v->mount_point, v->fs_type, 0);
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} else if (strcmp(v->fs_type, "ext4") == 0 ||
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strcmp(v->fs_type, "vfat") == 0) {
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result = mount(v->blk_device, v->mount_point, v->fs_type,
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MS_NOATIME | MS_NODEV | MS_NODIRATIME, "");
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if (result == 0) return 0;
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LOGE("failed to mount %s (%s)\n", v->mount_point, strerror(errno));
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return -1;
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}
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LOGE("unknown fs_type \"%s\" for %s\n", v->fs_type, v->mount_point);
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return -1;
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}
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int ensure_path_unmounted(const char* path) {
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if (PartitionManager.UnMount_By_Path(path, true))
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return 0;
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else
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return -1;
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Volume* v = volume_for_path(path);
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if (v == NULL) {
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LOGE("unknown volume for path [%s]\n", path);
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return -1;
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}
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if (strcmp(v->fs_type, "ramdisk") == 0) {
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// the ramdisk is always mounted; you can't unmount it.
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return -1;
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}
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int result;
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result = scan_mounted_volumes();
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if (result < 0) {
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LOGE("failed to scan mounted volumes\n");
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return -1;
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}
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const MountedVolume* mv =
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find_mounted_volume_by_mount_point(v->mount_point);
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if (mv == NULL) {
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// volume is already unmounted
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return 0;
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}
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return unmount_mounted_volume(mv);
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}
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static int exec_cmd(const char* path, char* const argv[]) {
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int status;
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pid_t child;
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if ((child = vfork()) == 0) {
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execv(path, argv);
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_exit(-1);
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}
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waitpid(child, &status, 0);
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if (!WIFEXITED(status) || WEXITSTATUS(status) != 0) {
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LOGE("%s failed with status %d\n", path, WEXITSTATUS(status));
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}
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return WEXITSTATUS(status);
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}
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int format_volume(const char* volume) {
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if (PartitionManager.Wipe_By_Path(volume))
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return 0;
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else
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return -1;
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Volume* v = volume_for_path(volume);
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if (v == NULL) {
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LOGE("unknown volume \"%s\"\n", volume);
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return -1;
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}
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if (strcmp(v->fs_type, "ramdisk") == 0) {
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// you can't format the ramdisk.
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LOGE("can't format_volume \"%s\"", volume);
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return -1;
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}
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if (strcmp(v->mount_point, volume) != 0) {
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LOGE("can't give path \"%s\" to format_volume\n", volume);
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return -1;
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}
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if (ensure_path_unmounted(volume) != 0) {
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LOGE("format_volume failed to unmount \"%s\"\n", v->mount_point);
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return -1;
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}
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if (strcmp(v->fs_type, "yaffs2") == 0 || strcmp(v->fs_type, "mtd") == 0) {
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mtd_scan_partitions();
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const MtdPartition* partition = mtd_find_partition_by_name(v->blk_device);
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if (partition == NULL) {
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LOGE("format_volume: no MTD partition \"%s\"\n", v->blk_device);
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return -1;
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}
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MtdWriteContext *write = mtd_write_partition(partition);
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if (write == NULL) {
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LOGW("format_volume: can't open MTD \"%s\"\n", v->blk_device);
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return -1;
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} else if (mtd_erase_blocks(write, -1) == (off_t) -1) {
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LOGW("format_volume: can't erase MTD \"%s\"\n", v->blk_device);
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mtd_write_close(write);
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return -1;
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} else if (mtd_write_close(write)) {
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LOGW("format_volume: can't close MTD \"%s\"\n", v->blk_device);
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return -1;
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}
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return 0;
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}
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if (strcmp(v->fs_type, "ext4") == 0 || strcmp(v->fs_type, "f2fs") == 0) {
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// if there's a key_loc that looks like a path, it should be a
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// block device for storing encryption metadata. wipe it too.
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if (v->key_loc != NULL && v->key_loc[0] == '/') {
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LOGI("wiping %s\n", v->key_loc);
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int fd = open(v->key_loc, O_WRONLY | O_CREAT, 0644);
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if (fd < 0) {
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LOGE("format_volume: failed to open %s\n", v->key_loc);
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return -1;
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}
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wipe_block_device(fd, get_file_size(fd));
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close(fd);
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}
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ssize_t length = 0;
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if (v->length != 0) {
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length = v->length;
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} else if (v->key_loc != NULL && strcmp(v->key_loc, "footer") == 0) {
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length = -CRYPT_FOOTER_OFFSET;
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}
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int result;
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if (strcmp(v->fs_type, "ext4") == 0) {
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result = make_ext4fs(v->blk_device, length, volume, sehandle);
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} else { /* Has to be f2fs because we checked earlier. */
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if (v->key_loc != NULL && strcmp(v->key_loc, "footer") == 0 && length < 0) {
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LOGE("format_volume: crypt footer + negative length (%zd) not supported on %s\n", length, v->fs_type);
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return -1;
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}
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if (length < 0) {
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LOGE("format_volume: negative length (%zd) not supported on %s\n", length, v->fs_type);
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return -1;
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}
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char *num_sectors;
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if (asprintf(&num_sectors, "%zd", length / 512) <= 0) {
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LOGE("format_volume: failed to create %s command for %s\n", v->fs_type, v->blk_device);
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return -1;
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}
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const char *f2fs_path = "/sbin/mkfs.f2fs";
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const char* const f2fs_argv[] = {"mkfs.f2fs", "-t", "-d1", v->blk_device, num_sectors, NULL};
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result = exec_cmd(f2fs_path, (char* const*)f2fs_argv);
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free(num_sectors);
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}
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if (result != 0) {
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LOGE("format_volume: make %s failed on %s with %d(%s)\n", v->fs_type, v->blk_device, result, strerror(errno));
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return -1;
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}
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return 0;
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}
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LOGE("format_volume: fs_type \"%s\" unsupported\n", v->fs_type);
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return -1;
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}
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int erase_persistent_partition() {
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Volume *v = volume_for_path(PERSISTENT_PATH);
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if (v == NULL) {
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// most devices won't have /persistent, so this is not an error.
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return 0;
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}
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int fd = open(v->blk_device, O_RDWR);
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uint64_t size = get_file_size(fd);
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if (size == 0) {
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LOGE("failed to stat size of /persistent\n");
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close(fd);
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return -1;
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}
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char oem_unlock_enabled;
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lseek(fd, size - 1, SEEK_SET);
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read(fd, &oem_unlock_enabled, 1);
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if (oem_unlock_enabled) {
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if (wipe_block_device(fd, size)) {
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LOGE("error wiping /persistent: %s\n", strerror(errno));
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close(fd);
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return -1;
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}
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lseek(fd, size - 1, SEEK_SET);
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write(fd, &oem_unlock_enabled, 1);
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}
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close(fd);
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return (int) oem_unlock_enabled;
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}
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int setup_install_mounts() {
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if (fstab == NULL) {
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LOGE("can't set up install mounts: no fstab loaded\n");
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return -1;
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}
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for (int i = 0; i < fstab->num_entries; ++i) {
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Volume* v = fstab->recs + i;
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if (strcmp(v->mount_point, "/tmp") == 0 ||
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strcmp(v->mount_point, "/cache") == 0) {
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if (ensure_path_mounted(v->mount_point) != 0) {
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LOGE("failed to mount %s\n", v->mount_point);
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return -1;
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}
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} else {
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if (ensure_path_unmounted(v->mount_point) != 0) {
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LOGE("failed to unmount %s\n", v->mount_point);
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return -1;
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}
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}
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}
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return 0;
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}
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