182 lines
5.9 KiB
C++
182 lines
5.9 KiB
C++
//
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// Copyright (C) 2015 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 "update_engine/boot_control_recovery.h"
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#include <base/bind.h>
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#include <base/files/file_util.h>
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#include <base/logging.h>
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#include <base/strings/string_util.h>
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#include <brillo/make_unique_ptr.h>
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#include <brillo/message_loops/message_loop.h>
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#include "update_engine/common/utils.h"
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#include "update_engine/utils_android.h"
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using std::string;
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#ifndef _UE_SIDELOAD
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#error "BootControlRecovery should only be used for update_engine_sideload."
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#endif
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// When called from update_engine_sideload, we don't attempt to dynamically load
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// the right boot_control HAL, instead we use the only HAL statically linked in
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// via the PRODUCT_STATIC_BOOT_CONTROL_HAL make variable and access the module
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// struct directly.
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extern const hw_module_t HAL_MODULE_INFO_SYM;
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namespace chromeos_update_engine {
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namespace boot_control {
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// Factory defined in boot_control.h.
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std::unique_ptr<BootControlInterface> CreateBootControl() {
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std::unique_ptr<BootControlRecovery> boot_control(new BootControlRecovery());
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if (!boot_control->Init()) {
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return nullptr;
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}
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return std::move(boot_control);
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}
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} // namespace boot_control
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bool BootControlRecovery::Init() {
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const hw_module_t* hw_module;
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int ret;
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// For update_engine_sideload, we simulate the hw_get_module() by accessing it
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// from the current process directly.
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hw_module = &HAL_MODULE_INFO_SYM;
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ret = 0;
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if (!hw_module ||
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strcmp(BOOT_CONTROL_HARDWARE_MODULE_ID, hw_module->id) != 0) {
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ret = -EINVAL;
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}
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if (ret != 0) {
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LOG(ERROR) << "Error loading boot_control HAL implementation.";
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return false;
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}
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module_ = reinterpret_cast<boot_control_module_t*>(
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const_cast<hw_module_t*>(hw_module));
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module_->init(module_);
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LOG(INFO) << "Loaded boot_control HAL "
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<< "'" << hw_module->name << "' "
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<< "version " << (hw_module->module_api_version >> 8) << "."
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<< (hw_module->module_api_version & 0xff) << " "
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<< "authored by '" << hw_module->author << "'.";
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return true;
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}
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unsigned int BootControlRecovery::GetNumSlots() const {
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return module_->getNumberSlots(module_);
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}
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BootControlInterface::Slot BootControlRecovery::GetCurrentSlot() const {
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return module_->getCurrentSlot(module_);
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}
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bool BootControlRecovery::GetPartitionDevice(const string& partition_name,
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Slot slot,
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string* device) const {
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// We can't use fs_mgr to look up |partition_name| because fstab
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// doesn't list every slot partition (it uses the slotselect option
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// to mask the suffix).
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//
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// We can however assume that there's an entry for the /misc mount
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// point and use that to get the device file for the misc
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// partition. This helps us locate the disk that |partition_name|
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// resides on. From there we'll assume that a by-name scheme is used
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// so we can just replace the trailing "misc" by the given
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// |partition_name| and suffix corresponding to |slot|, e.g.
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//
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// /dev/block/platform/soc.0/7824900.sdhci/by-name/misc ->
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// /dev/block/platform/soc.0/7824900.sdhci/by-name/boot_a
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//
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// If needed, it's possible to relax the by-name assumption in the
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// future by trawling /sys/block looking for the appropriate sibling
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// of misc and then finding an entry in /dev matching the sysfs
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// entry.
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base::FilePath misc_device;
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if (!utils::DeviceForMountPoint("/misc", &misc_device))
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return false;
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if (!utils::IsSymlink(misc_device.value().c_str())) {
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LOG(ERROR) << "Device file " << misc_device.value() << " for /misc "
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<< "is not a symlink.";
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return false;
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}
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const char* suffix = module_->getSuffix(module_, slot);
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if (suffix == nullptr) {
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LOG(ERROR) << "boot_control impl returned no suffix for slot "
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<< SlotName(slot);
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return false;
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}
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base::FilePath path = misc_device.DirName().Append(partition_name + suffix);
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if (!base::PathExists(path)) {
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LOG(ERROR) << "Device file " << path.value() << " does not exist.";
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return false;
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}
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*device = path.value();
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return true;
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}
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bool BootControlRecovery::IsSlotBootable(Slot slot) const {
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int ret = module_->isSlotBootable(module_, slot);
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if (ret < 0) {
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LOG(ERROR) << "Unable to determine if slot " << SlotName(slot)
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<< " is bootable: " << strerror(-ret);
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return false;
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}
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return ret == 1;
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}
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bool BootControlRecovery::MarkSlotUnbootable(Slot slot) {
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int ret = module_->setSlotAsUnbootable(module_, slot);
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if (ret < 0) {
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LOG(ERROR) << "Unable to mark slot " << SlotName(slot)
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<< " as bootable: " << strerror(-ret);
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return false;
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}
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return ret == 0;
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}
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bool BootControlRecovery::SetActiveBootSlot(Slot slot) {
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int ret = module_->setActiveBootSlot(module_, slot);
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if (ret < 0) {
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LOG(ERROR) << "Unable to set the active slot to slot " << SlotName(slot)
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<< ": " << strerror(-ret);
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}
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return ret == 0;
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}
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bool BootControlRecovery::MarkBootSuccessfulAsync(
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base::Callback<void(bool)> callback) {
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int ret = module_->markBootSuccessful(module_);
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if (ret < 0) {
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LOG(ERROR) << "Unable to mark boot successful: " << strerror(-ret);
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}
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return brillo::MessageLoop::current()->PostTask(
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FROM_HERE, base::Bind(callback, ret == 0)) !=
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brillo::MessageLoop::kTaskIdNull;
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}
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} // namespace chromeos_update_engine
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