330 lines
11 KiB
C
330 lines
11 KiB
C
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/**
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* Copyright (c) 2015 - 2020, Nordic Semiconductor ASA
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*
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without modification,
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* are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice, this
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* list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form, except as embedded into a Nordic
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* Semiconductor ASA integrated circuit in a product or a software update for
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* such product, must reproduce the above copyright notice, this list of
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* conditions and the following disclaimer in the documentation and/or other
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* materials provided with the distribution.
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*
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* 3. Neither the name of Nordic Semiconductor ASA nor the names of its
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* contributors may be used to endorse or promote products derived from this
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* software without specific prior written permission.
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*
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* 4. This software, with or without modification, must only be used with a
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* Nordic Semiconductor ASA integrated circuit.
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*
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* 5. Any software provided in binary form under this license must not be reverse
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* engineered, decompiled, modified and/or disassembled.
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*
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* THIS SOFTWARE IS PROVIDED BY NORDIC SEMICONDUCTOR ASA "AS IS" AND ANY EXPRESS
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* OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY, NONINFRINGEMENT, AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL NORDIC SEMICONDUCTOR ASA OR CONTRIBUTORS BE
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* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
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* GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
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* OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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*/
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#ifndef FDS_INTERNAL_DEFS_H__
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#define FDS_INTERNAL_DEFS_H__
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#include "sdk_config.h"
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#include <stdint.h>
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#include <stdbool.h>
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#if defined (FDS_THREADS)
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#include "nrf_soc.h"
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#include "app_util_platform.h"
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#endif
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#ifdef __cplusplus
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extern "C" {
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#endif
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#define FDS_PAGE_TAG_SIZE (2) // Page tag size, in 4-byte words.
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#define FDS_PAGE_TAG_WORD_0 (0) // Offset of the first word in the page tag from the page address.
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#define FDS_PAGE_TAG_WORD_1 (1) // Offset of the second word in the page tag from the page address.
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// Page tag constants
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#define FDS_PAGE_TAG_MAGIC (0xDEADC0DE)
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#define FDS_PAGE_TAG_SWAP (0xF11E01FF)
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#define FDS_PAGE_TAG_DATA (0xF11E01FE)
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#define FDS_ERASED_WORD (0xFFFFFFFF)
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#define FDS_OFFSET_TL (0) // Offset of TL from the record base address, in 4-byte words.
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#define FDS_OFFSET_IC (1) // Offset of IC from the record base address, in 4-byte words.
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#define FDS_OFFSET_ID (2) // Offset of ID from the record base address, in 4-byte words.
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#define FDS_OFFSET_DATA (3) // Offset of the data from the record base address, in 4-byte words.
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#define FDS_HEADER_SIZE_TL (1) // Size of the TL part of the header, in 4-byte words.
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#define FDS_HEADER_SIZE_IC (1) // Size of the IC part of the header, in 4-byte words.
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#define FDS_HEADER_SIZE_ID (1) // Size of the record ID in the header, in 4-byte words.
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#define FDS_HEADER_SIZE (3) // Size of the whole header, in 4-byte words.
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#define FDS_OP_EXECUTING (NRF_SUCCESS)
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#define FDS_OP_COMPLETED (0x1D1D)
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#define NRF_FSTORAGE_NVMC 1
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#define NRF_FSTORAGE_SD 2
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// The size of a physical page, in 4-byte words.
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#if defined(NRF51)
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#define FDS_PHY_PAGE_SIZE (256)
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#else
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#define FDS_PHY_PAGE_SIZE (1024)
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#endif
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// The number of physical pages to be used. This value is configured indirectly.
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#define FDS_PHY_PAGES ((FDS_VIRTUAL_PAGES * FDS_VIRTUAL_PAGE_SIZE) / FDS_PHY_PAGE_SIZE)
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// The number of physical pages at the end of the flash that are reserved by other modules.
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#define FDS_PHY_PAGES_RESERVED ((FDS_VIRTUAL_PAGES_RESERVED * FDS_VIRTUAL_PAGE_SIZE) / FDS_PHY_PAGE_SIZE)
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// The size of a virtual page, in number of physical pages.
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#define FDS_PHY_PAGES_IN_VPAGE (FDS_VIRTUAL_PAGE_SIZE / FDS_PHY_PAGE_SIZE)
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// The number of pages available to store data; which is the total minus one (the swap).
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#define FDS_DATA_PAGES (FDS_VIRTUAL_PAGES - 1)
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// Just a shorter name for the size, in words, of a virtual page.
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#define FDS_PAGE_SIZE (FDS_VIRTUAL_PAGE_SIZE)
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#if (FDS_VIRTUAL_PAGE_SIZE % FDS_PHY_PAGE_SIZE != 0)
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#error "FDS_VIRTUAL_PAGE_SIZE must be a multiple of the size of a physical page."
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#endif
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#if (FDS_VIRTUAL_PAGES < 2)
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#error "FDS requires at least two virtual pages."
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#endif
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// Page types.
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typedef enum
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{
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FDS_PAGE_DATA, // Page is ready for storage.
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FDS_PAGE_SWAP, // Page is reserved for garbage collection.
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FDS_PAGE_ERASED, // Page is erased.
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FDS_PAGE_UNDEFINED, // Undefined page type.
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} fds_page_type_t;
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typedef enum
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{
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FDS_HEADER_VALID, // Valid header.
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FDS_HEADER_DIRTY, // Header is incomplete, or record has been deleted.
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FDS_HEADER_CORRUPT // Header contains corrupt information, not related to CRC.
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} fds_header_status_t;
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typedef struct
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{
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fds_page_type_t page_type; // The page type.
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uint32_t const * p_addr; // The address of the page.
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uint16_t write_offset; // The page write offset, in 4-byte words.
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uint16_t words_reserved; // The amount of words reserved.
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uint32_t volatile records_open; // The number of open records.
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bool can_gc; // Indicates that there are some records that have been deleted.
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} fds_page_t;
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typedef struct
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{
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uint32_t const * p_addr;
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uint16_t write_offset;
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} fds_swap_page_t;
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// FDS op-codes.
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typedef enum
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{
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FDS_OP_NONE,
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FDS_OP_INIT, // Initialize the module.
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FDS_OP_WRITE, // Write a record to flash.
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FDS_OP_UPDATE, // Update a record.
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FDS_OP_DEL_RECORD, // Delete a record.
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FDS_OP_DEL_FILE, // Delete a file.
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FDS_OP_GC // Run garbage collection.
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} fds_op_code_t;
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typedef enum
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{
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FDS_OP_INIT_TAG_SWAP,
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FDS_OP_INIT_TAG_DATA,
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FDS_OP_INIT_ERASE_SWAP,
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FDS_OP_INIT_PROMOTE_SWAP,
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} fds_init_step_t;
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typedef enum
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{
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FDS_OP_WRITE_HEADER_BEGIN, // Write the record key and length.
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FDS_OP_WRITE_HEADER_FINALIZE, // Write the file ID and CRC.
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FDS_OP_WRITE_RECORD_ID, // Write the record ID.
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FDS_OP_WRITE_DATA, // Write the record data.
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FDS_OP_WRITE_FIND_RECORD,
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FDS_OP_WRITE_FLAG_DIRTY, // Flag a record as dirty (as part of an update operation).
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FDS_OP_WRITE_DONE,
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} fds_write_step_t;
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typedef enum
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{
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FDS_OP_DEL_RECORD_FLAG_DIRTY, // Flag a record as dirty.
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FDS_OP_DEL_FILE_FLAG_DIRTY, // Flag multiple records as dirty.
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FDS_OP_DEL_DONE,
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} fds_delete_step_t;
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#if defined(__CC_ARM)
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#pragma push
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#pragma anon_unions
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#elif defined(__ICCARM__)
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#pragma language=extended
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#elif defined(__GNUC__)
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// anonymous unions are enabled by default
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#endif
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typedef struct
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{
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fds_op_code_t op_code; // The opcode for the operation.
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union
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{
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struct
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{
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fds_init_step_t step; // The current step the operation is at.
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} init;
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struct
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{
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fds_header_t header;
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void const * p_data;
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uint16_t page; // The page the flash space for this command was reserved.
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fds_write_step_t step; // The current step the operation is at.
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uint32_t record_to_delete; // The record to delete in case this is an update.
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} write;
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struct
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{
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fds_delete_step_t step;
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uint16_t file_id;
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uint16_t record_key;
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uint32_t record_to_delete;
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} del;
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};
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} fds_op_t;
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#if defined(__CC_ARM)
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#pragma pop
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#elif defined(__ICCARM__)
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// leave anonymous unions enabled
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#elif defined(__GNUC__)
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// anonymous unions are enabled by default
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#endif
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enum
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{
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PAGE_ERASED = 0x1, // One or more erased pages found.
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PAGE_DATA = 0x2, // One or more data pages found.
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PAGE_SWAP_CLEAN = 0x4, // A clean (empty) swap page was found.
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PAGE_SWAP_DIRTY = 0x8, // A dirty (non-empty) swap page was found.
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};
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typedef enum
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{
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// No erased pages or FDS pages found.
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// This is a fatal error.
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NO_PAGES,
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// The filesystem can not be garbage collected.
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// This is a fatal error.
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NO_SWAP = (PAGE_DATA),
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// Perform a fresh installation.
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FRESH_INSTALL = (PAGE_ERASED),
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// Tag an erased page as swap.
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TAG_SWAP = (PAGE_ERASED | PAGE_DATA),
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// Tag all erased pages as data.
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TAG_DATA = (PAGE_ERASED | PAGE_SWAP_CLEAN),
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// Tag all remaining erased pages as data.
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TAG_DATA_INST = (PAGE_ERASED | PAGE_DATA | PAGE_SWAP_CLEAN),
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// The swap is dirty, likely because the device powered off during GC.
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// Because there is also an erased page, assume that that page has been garbage collected.
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// Hence, tag the swap as data (promote), an erased page as swap and remaining pages as data.
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PROMOTE_SWAP = (PAGE_ERASED | PAGE_SWAP_DIRTY),
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// Tag the swap as data (promote), an erased page as swap and remaining pages as data.
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PROMOTE_SWAP_INST = (PAGE_ERASED | PAGE_DATA | PAGE_SWAP_DIRTY),
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// The swap is dirty (written) and there are no erased pages. It is likely that the device
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// powered off during GC. It is safe to discard (erase) the swap, since data that was
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// swapped out still lies in one of the valid pages.
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DISCARD_SWAP = (PAGE_DATA | PAGE_SWAP_DIRTY),
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// Do nothing.
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ALREADY_INSTALLED = (PAGE_DATA | PAGE_SWAP_CLEAN),
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} fds_init_opts_t;
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typedef enum
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{
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GC_BEGIN, // Begin GC.
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GC_NEXT_PAGE, // GC a page.
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GC_FIND_NEXT_RECORD, // Find a valid record to copy.
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GC_COPY_RECORD, // Copy a valid record to swap.
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GC_ERASE_PAGE, // Erase the page being garbage collected.
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GC_DISCARD_SWAP, // Erase (discard) the swap page.
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GC_PROMOTE_SWAP, // Tag the swap as valid.
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GC_TAG_NEW_SWAP // Tag a freshly erased (GCed) page as swap.
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} fds_gc_state_t;
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// Holds garbage collection status and related data.
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typedef struct
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{
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fds_gc_state_t state; // The current GC step.
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uint16_t cur_page; // The current page being garbage collected.
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uint32_t const * p_record_src; // The current record being copied to swap.
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uint16_t run_count; // Total number of times GC was run.
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bool do_gc_page[FDS_DATA_PAGES]; // Controls which pages to garbage collect.
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bool resume; // Whether or not GC should be resumed.
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} fds_gc_data_t;
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// Macros to enable and disable application interrupts.
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#if defined (FDS_THREADS)
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#define CRITICAL_SECTION_ENTER() CRITICAL_REGION_ENTER()
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#define CRITICAL_SECTION_EXIT() CRITICAL_REGION_EXIT()
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#else
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#define CRITICAL_SECTION_ENTER()
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#define CRITICAL_SECTION_EXIT()
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#endif
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#ifdef __cplusplus
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}
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#endif
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#endif // FDS_INTERNAL_DEFS_H__
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