2015-08-14 23:58:21 +02:00
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/*
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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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#ifndef ANDROID_INCLUDE_HARDWARE_BOOT_CONTROL_H
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#define ANDROID_INCLUDE_HARDWARE_BOOT_CONTROL_H
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#include <hardware/hardware.h>
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__BEGIN_DECLS
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#define BOOT_CONTROL_MODULE_API_VERSION_0_1 HARDWARE_MODULE_API_VERSION(0, 1)
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/**
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* The id of this module
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*/
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#define BOOT_CONTROL_HARDWARE_MODULE_ID "bootctrl"
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/*
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* The Boot Control HAL is designed to allow for managing sets of redundant
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* partitions, called slots, that can be booted from independantly. Slots
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* are sets of partitions whose names differ only by a given suffix.
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* They are identified here by a 0 indexed number, and associated with their
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* suffix, which can be appended to the base name for any particular partition
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* to find the one associated with that slot. The bootloader must pass the suffix
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* of the currently active slot either through a kernel command line property at
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* androidboot.slot_suffix, or the device tree at /firmware/android/slot_suffix.
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* The primary use of this set up is to allow for background updates while the
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* device is running, and to provide a fallback in the event that the update fails.
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*/
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/**
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* Every hardware module must have a data structure named HAL_MODULE_INFO_SYM
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* and the fields of this data structure must begin with hw_module_t
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* followed by module specific information.
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*/
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typedef struct boot_control_module {
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struct hw_module_t common;
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/*
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* (*init)() perform any initialization tasks needed for the HAL.
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* This is called only once.
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*/
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void (*init)(struct boot_control_module *module);
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/*
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* (*getNumberSlots)() returns the number of available slots.
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* For instance, a system with a single set of partitions would return
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* 1, a system with A/B would return 2, A/B/C -> 3...
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*/
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unsigned (*getNumberSlots)(struct boot_control_module *module);
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/*
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* (*getCurrentSlot)() returns the value letting the system know
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* whether the current slot is A or B. The meaning of A and B is
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* left up to the implementer. It is assumed that if the current slot
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* is A, then the block devices underlying B can be accessed directly
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* without any risk of corruption.
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* The returned value is always guaranteed to be strictly less than the
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* value returned by getNumberSlots. Slots start at 0 and
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* finish at getNumberSlots() - 1
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*/
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unsigned (*getCurrentSlot)(struct boot_control_module *module);
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/*
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* (*markBootSuccessful)() marks the current slot
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* as having booted successfully
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*
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* Returns 0 on success, -errno on error.
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*/
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int (*markBootSuccessful)(struct boot_control_module *module);
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/*
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* (*setActiveBootSlot)() marks the slot passed in parameter as
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* the active boot slot (see getCurrentSlot for an explanation
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* of the "slot" parameter). This overrides any previous call to
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* setSlotAsUnbootable.
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* Returns 0 on success, -errno on error.
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*/
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int (*setActiveBootSlot)(struct boot_control_module *module, unsigned slot);
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/*
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* (*setSlotAsUnbootable)() marks the slot passed in parameter as
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* an unbootable. This can be used while updating the contents of the slot's
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* partitions, so that the system will not attempt to boot a known bad set up.
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* Returns 0 on success, -errno on error.
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*/
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int (*setSlotAsUnbootable)(struct boot_control_module *module, unsigned slot);
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/*
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2015-12-08 19:15:01 +01:00
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* (*isSlotBootable)() returns if the slot passed in parameter is
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* bootable. Note that slots can be made unbootable by both the
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* bootloader and by the OS using setSlotAsUnbootable.
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* Returns 1 if the slot is bootable, 0 if it's not, and -errno on
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* error.
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2015-08-14 23:58:21 +02:00
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*/
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int (*isSlotBootable)(struct boot_control_module *module, unsigned slot);
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/*
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* (*getSuffix)() returns the string suffix used by partitions that
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* correspond to the slot number passed in parameter. The returned string
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* is expected to be statically allocated and not need to be freed.
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* Returns NULL if slot does not match an existing slot.
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*/
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const char* (*getSuffix)(struct boot_control_module *module, unsigned slot);
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2015-12-08 19:21:29 +01:00
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/*
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* (*isSlotMarkedSucessful)() returns if the slot passed in parameter has
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* been marked as successful using markBootSuccessful.
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* Returns 1 if the slot has been marked as successful, 0 if it's
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* not the case, and -errno on error.
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*/
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int (*isSlotMarkedSuccessful)(struct boot_control_module *module, unsigned slot);
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2020-11-30 23:42:25 +01:00
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/**
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* Returns the active slot to boot into on the next boot. If
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* setActiveBootSlot() has been called, the getter function should return
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* the same slot as the one provided in the last setActiveBootSlot() call.
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*/
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unsigned (*getActiveBootSlot)(struct boot_control_module *module);
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void* reserved[30];
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2015-08-14 23:58:21 +02:00
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} boot_control_module_t;
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__END_DECLS
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#endif // ANDROID_INCLUDE_HARDWARE_BOOT_CONTROL_H
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