blob: 3858eb3eeb8ab30d51da962deb8219ac8ca80e05 [file] [log] [blame]
/*
*
* Copyright (c) 2020 Project CHIP Authors
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
/**
* @file
* Provides the implementation of the Device Layer ConfigurationManager object
* for QPG6100 platforms .
*/
/* this file behaves like a config.h, comes first */
#include <platform/internal/CHIPDeviceLayerInternal.h>
#include <platform/ConfigurationManager.h>
#include <platform/internal/GenericConfigurationManagerImpl.ipp>
#include <core/CHIPVendorIdentifiers.hpp>
#include <platform/qpg6100/qpg6100Config.h>
#if CHIP_DEVICE_CONFIG_ENABLE_FACTORY_PROVISIONING
#include <platform/internal/FactoryProvisioning.ipp>
#endif // CHIP_DEVICE_CONFIG_ENABLE_FACTORY_PROVISIONING
#include <support/CodeUtils.h>
#include <support/logging/CHIPLogging.h>
namespace chip {
namespace DeviceLayer {
using namespace ::chip::DeviceLayer::Internal;
/** Singleton instance of the ConfigurationManager implementation object.
*/
ConfigurationManagerImpl ConfigurationManagerImpl::sInstance;
CHIP_ERROR ConfigurationManagerImpl::_Init()
{
CHIP_ERROR err;
bool failSafeArmed;
// Initialize the generic implementation base class.
err = Internal::GenericConfigurationManagerImpl<ConfigurationManagerImpl>::_Init();
SuccessOrExit(err);
// TODO: initialize NVM component
// If the fail-safe was armed when the device last shutdown, initiate a factory reset.
if (_GetFailSafeArmed(failSafeArmed) == CHIP_NO_ERROR && failSafeArmed)
{
ChipLogProgress(DeviceLayer, "Detected fail-safe armed on reboot; initiating factory reset");
_InitiateFactoryReset();
}
err = CHIP_NO_ERROR;
exit:
return err;
}
bool ConfigurationManagerImpl::_CanFactoryReset()
{
// TODO: query the application to determine if factory reset is allowed.
return true;
}
void ConfigurationManagerImpl::_InitiateFactoryReset()
{
PlatformMgr().ScheduleWork(DoFactoryReset);
}
CHIP_ERROR ConfigurationManagerImpl::_ReadPersistedStorageValue(::chip::Platform::PersistedStorage::Key persistedStorageKey,
uint32_t & value)
{
CHIP_ERROR err;
uintmax_t recordKey = persistedStorageKey + kConfigKey_GroupKeyBase;
VerifyOrExit(recordKey <= kConfigKey_GroupKeyMax, err = CHIP_ERROR_PERSISTED_STORAGE_VALUE_NOT_FOUND);
err = ReadConfigValue(persistedStorageKey, value);
if (err == CHIP_DEVICE_ERROR_CONFIG_NOT_FOUND)
{
err = CHIP_ERROR_PERSISTED_STORAGE_VALUE_NOT_FOUND;
}
SuccessOrExit(err);
exit:
return err;
}
CHIP_ERROR ConfigurationManagerImpl::_WritePersistedStorageValue(::chip::Platform::PersistedStorage::Key persistedStorageKey,
uint32_t value)
{
CHIP_ERROR err;
uintmax_t recordKey = persistedStorageKey + kConfigKey_GroupKeyBase;
VerifyOrExit(recordKey <= kConfigKey_GroupKeyMax, err = CHIP_ERROR_PERSISTED_STORAGE_VALUE_NOT_FOUND);
err = WriteConfigValue(persistedStorageKey, value);
SuccessOrExit(err);
exit:
return err;
}
void ConfigurationManagerImpl::DoFactoryReset(intptr_t arg)
{
CHIP_ERROR err;
ChipLogProgress(DeviceLayer, "Performing factory reset");
err = FactoryResetConfig();
if (err != CHIP_NO_ERROR)
{
ChipLogError(DeviceLayer, "FactoryResetConfig() failed: %s", ErrorStr(err));
}
#if CHIP_DEVICE_CONFIG_ENABLE_THREAD
ChipLogProgress(DeviceLayer, "Clearing Thread provision");
ThreadStackMgr().ErasePersistentInfo();
#endif // CHIP_DEVICE_CONFIG_ENABLE_THREAD
// Restart the system.
ChipLogProgress(DeviceLayer, "System restarting");
// NVIC_SystemReset(); - FIXME
}
} // namespace DeviceLayer
} // namespace chip