580ff26024
Note this is slightly different than cases where we use the sign-bit for
muxing two different types, such as `int err` and `lfsr_srid_t rid`. In
those cases we'd never extract the lower bits of the int
unconditionally.
This leads to fewer casts and I think signals the intention of these
sign-bit-is-flag ints a bit better. We aren't really interpreting these
as signed, and mask out other bits in some cases (lfsr_data_t).
This leads to more code in places, I'm guessing because of C treating
signed overflow as undefined behavior... Maybe this is a good thing:
code stack
before: 33856 2824
after: 33876 (+0.1%) 2824 (+0.0%)
971 lines
30 KiB
C
971 lines
30 KiB
C
/*
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* The little filesystem
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*
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* Copyright (c) 2022, The littlefs authors.
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* Copyright (c) 2017, Arm Limited. All rights reserved.
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#ifndef LFS_H
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#define LFS_H
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#include "lfs_util.h"
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#ifdef __cplusplus
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extern "C"
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{
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#endif
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/// Version info ///
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// Software library version
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// Major (top-nibble), incremented on backwards incompatible changes
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// Minor (bottom-nibble), incremented on feature additions
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#define LFS_VERSION 0x00020005
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#define LFS_VERSION_MAJOR (0xffff & (LFS_VERSION >> 16))
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#define LFS_VERSION_MINOR (0xffff & (LFS_VERSION >> 0))
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// Version of On-disk data structures
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// Major (top-nibble), incremented on backwards incompatible changes
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// Minor (bottom-nibble), incremented on feature additions
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#define LFS_DISK_VERSION 0x00000000
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#define LFS_DISK_VERSION_MAJOR (0xffff & (LFS_DISK_VERSION >> 16))
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#define LFS_DISK_VERSION_MINOR (0xffff & (LFS_DISK_VERSION >> 0))
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/// Definitions ///
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// Type definitions
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typedef uint32_t lfs_size_t;
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typedef int32_t lfs_ssize_t;
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typedef uint32_t lfs_off_t;
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typedef int32_t lfs_soff_t;
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typedef uint32_t lfs_block_t;
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typedef uint32_t lfsr_rid_t;
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typedef int32_t lfsr_srid_t;
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typedef uint16_t lfsr_tag_t;
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typedef int16_t lfsr_stag_t;
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typedef uint32_t lfsr_bid_t;
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typedef int32_t lfsr_sbid_t;
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typedef uint32_t lfsr_mid_t;
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typedef int32_t lfsr_smid_t;
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typedef uint32_t lfsr_did_t;
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typedef int32_t lfsr_sdid_t;
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// Maximum name size in bytes, may be redefined to reduce the size of the
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// info struct. Limited to <= 1022. Stored in superblock and must be
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// respected by other littlefs drivers.
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#ifndef LFS_NAME_MAX
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#define LFS_NAME_MAX 255
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#endif
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// Maximum size of a file in bytes, may be redefined to limit to support other
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// drivers. Limited on disk to <= 4294967296. However, above 2147483647 the
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// functions lfs_file_seek, lfs_file_size, and lfs_file_tell will return
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// incorrect values due to using signed integers. Stored in superblock and
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// must be respected by other littlefs drivers.
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#ifndef LFS_FILE_MAX
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#define LFS_FILE_MAX 2147483647
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#endif
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// TODO rm me
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//// Maximum size of custom attributes in bytes, may be redefined, but there is
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//// no real benefit to using a smaller LFS_ATTR_MAX. Limited to <= 1022.
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//#ifndef LFS_ATTR_MAX
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//#define LFS_ATTR_MAX 1022
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//#endif
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// TODO document
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#ifndef LFS_UATTR_MAX
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#define LFS_UATTR_MAX 255
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#endif
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#ifndef LFS_SATTR_MAX
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#define LFS_SATTR_MAX 255
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#endif
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// Possible error codes, these are negative to allow
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// valid positive return values
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enum lfs_error {
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LFS_ERR_OK = 0, // No error
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LFS_ERR_IO = -5, // Error during device operation
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LFS_ERR_CORRUPT = -84, // Corrupted
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LFS_ERR_NOENT = -2, // No directory entry
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LFS_ERR_EXIST = -17, // Entry already exists
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LFS_ERR_NOTDIR = -20, // Entry is not a dir
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LFS_ERR_ISDIR = -21, // Entry is a dir
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LFS_ERR_NOTEMPTY = -39, // Dir is not empty
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LFS_ERR_FBIG = -27, // File too large
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LFS_ERR_INVAL = -22, // Invalid parameter
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LFS_ERR_NOSPC = -28, // No space left on device
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LFS_ERR_NOMEM = -12, // No more memory available
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LFS_ERR_NOATTR = -61, // No data/attr available
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LFS_ERR_NAMETOOLONG = -36, // File name too long
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LFS_ERR_RANGE = -34, // Result out of range
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};
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// File types
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enum lfs_type {
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// file types
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LFS_TYPE_REG = 1,
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LFS_TYPE_DIR = 2,
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// internally used types
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LFS_TYPE_BOOKMARK = 4,
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};
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// File open flags
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enum lfs_open_flags {
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// open flags
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LFS_O_RDONLY = 0, // Open a file as read only
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#ifndef LFS_READONLY
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LFS_O_WRONLY = 1, // Open a file as write only
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LFS_O_RDWR = 2, // Open a file as read and write
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LFS_O_CREAT = 0x0004, // Create a file if it does not exist
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LFS_O_EXCL = 0x0008, // Fail if a file already exists
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LFS_O_TRUNC = 0x0010, // Truncate the existing file to zero size
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LFS_O_APPEND = 0x0020, // Move to end of file on every write
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LFS_O_SYNC = 0x0040, // Sync metadata on every write
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LFS_O_DESYNC = 0x0080, // Do not sync or recieve file updates
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LFS_O_FLUSH = 0x0100, // Flush data on every write
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#endif
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// internally used flags
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LFS_F_UNFLUSH = 0x1000, // File's data does not match storage
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LFS_F_UNSYNC = 0x2000, // File's metadata does not match storage
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LFS_F_ORPHAN = 0x4000, // File does not exist yet
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LFS_F_ZOMBIE = 0x8000, // File has been removed
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};
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// File seek flags
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enum lfs_whence_flags {
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LFS_SEEK_SET = 0, // Seek relative to an absolute position
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LFS_SEEK_CUR = 1, // Seek relative to the current file position
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LFS_SEEK_END = 2, // Seek relative to the end of the file
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};
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// Configuration provided during initialization of the littlefs
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struct lfs_config {
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// Opaque user provided context that can be used to pass
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// information to the block device operations
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void *context;
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// Read a region in a block. Negative error codes are propagated
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// to the user.
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int (*read)(const struct lfs_config *c, lfs_block_t block,
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lfs_off_t off, void *buffer, lfs_size_t size);
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// Program a region in a block. The block must have previously
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// been erased. Negative error codes are propagated to the user.
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// May return LFS_ERR_CORRUPT if the block should be considered bad.
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int (*prog)(const struct lfs_config *c, lfs_block_t block,
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lfs_off_t off, const void *buffer, lfs_size_t size);
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// Erase a block. A block must be erased before being programmed.
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// The state of an erased block is undefined. Negative error codes
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// are propagated to the user.
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// May return LFS_ERR_CORRUPT if the block should be considered bad.
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int (*erase)(const struct lfs_config *c, lfs_block_t block);
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// Sync the state of the underlying block device. Negative error codes
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// are propagated to the user.
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int (*sync)(const struct lfs_config *c);
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#ifdef LFS_THREADSAFE
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// Lock the underlying block device. Negative error codes
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// are propagated to the user.
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int (*lock)(const struct lfs_config *c);
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// Unlock the underlying block device. Negative error codes
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// are propagated to the user.
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int (*unlock)(const struct lfs_config *c);
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#endif
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// Minimum size of a block read in bytes. All read operations will be a
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// multiple of this value.
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lfs_size_t read_size;
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// Minimum size of a block program in bytes. All program operations will be
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// a multiple of this value.
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lfs_size_t prog_size;
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// Size of an erasable block in bytes. This does not impact ram consumption
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// and may be larger than the physical erase size. However, non-inlined
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// files take up at minimum one block. Must be a multiple of the read and
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// program sizes.
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lfs_size_t block_size;
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// Number of erasable blocks on the device.
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lfs_size_t block_count;
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// Number of erase cycles before littlefs evicts metadata logs and moves
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// the metadata to another block. Suggested values are in the
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// range 100-1000, with large values having better performance at the cost
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// of less consistent wear distribution.
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//
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// Set to -1 to disable block-level wear-leveling.
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int32_t block_cycles;
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// Size of block caches in bytes. Each cache buffers a portion of a block in
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// RAM. The littlefs needs a read cache, a program cache, and one additional
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// cache per file. Larger caches can improve performance by storing more
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// data and reducing the number of disk accesses. Must be a multiple of the
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// read and program sizes, and a factor of the block size.
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lfs_size_t cache_size;
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// Size of the lookahead buffer in bytes. A larger lookahead buffer
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// increases the number of blocks found during an allocation pass. The
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// lookahead buffer is stored as a compact bitmap, so each byte of RAM
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// can track 8 blocks. Must be a multiple of 8.
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lfs_size_t lookahead_size;
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// Optional statically allocated read buffer. Must be cache_size.
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// By default lfs_malloc is used to allocate this buffer.
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void *read_buffer;
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// Optional statically allocated program buffer. Must be cache_size.
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// By default lfs_malloc is used to allocate this buffer.
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void *prog_buffer;
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// Optional statically allocated lookahead buffer. Must be lookahead_size.
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// By default lfs_malloc is used to allocate this buffer.
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void *lookahead_buffer;
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// Optional upper limit on length of file names in bytes. No downside for
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// larger names except the size of the info struct which is controlled by
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// the LFS_NAME_MAX define. Defaults to LFS_NAME_MAX when zero. Stored in
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// superblock and must be respected by other littlefs drivers.
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lfs_size_t name_limit;
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// Optional upper limit on files in bytes. No downside for larger files
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// but must be <= LFS_FILE_MAX. Defaults to LFS_FILE_MAX when zero. Stored
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// in superblock and must be respected by other littlefs drivers.
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lfs_size_t size_limit;
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// TODO document
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lfs_size_t uattr_limit;
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lfs_size_t sattr_limit;
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// TODO rm me
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// // Optional upper limit on custom attributes in bytes. No downside for
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// // larger attributes size but must be <= LFS_ATTR_MAX. Defaults to
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// // LFS_ATTR_MAX when zero.
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// lfs_size_t attr_max;
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//
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// // Optional upper limit on total space given to metadata pairs in bytes. On
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// // devices with large blocks (e.g. 128kB) setting this to a low size (2-8kB)
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// // can help bound the metadata compaction time. Must be <= block_size.
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// // Defaults to block_size when zero.
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// lfs_size_t metadata_max;
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// TODO document
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lfs_size_t inline_size;
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lfs_size_t shrub_size;
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lfs_size_t fragment_size;
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lfs_size_t crystal_thresh;
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};
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// File info structure
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struct lfs_info {
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// Type of the file, either LFS_TYPE_REG or LFS_TYPE_DIR
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uint8_t type;
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// Size of the file, only valid for REG files. Limited to 32-bits.
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lfs_size_t size;
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// Name of the file stored as a null-terminated string. Limited to
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// LFS_NAME_MAX+1, which can be changed by redefining LFS_NAME_MAX to
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// reduce RAM. LFS_NAME_MAX is stored in superblock and must be
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// respected by other littlefs drivers.
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char name[LFS_NAME_MAX+1];
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};
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// Custom attribute structure, used to describe custom attributes
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// committed atomically during file writes.
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struct lfs_attr {
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// 8-bit type of attribute, provided by user and used to
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// identify the attribute
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uint8_t type;
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// Pointer to buffer containing the attribute
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void *buffer;
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// Size of attribute in bytes, limited to LFS_ATTR_MAX
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lfs_size_t size;
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};
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// Optional configuration provided during lfs_file_opencfg
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struct lfs_file_config {
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// Optional statically allocated file buffer. Must be cache_size.
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// By default lfs_malloc is used to allocate this buffer.
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void *buffer;
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// Optional list of custom attributes related to the file. If the file
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// is opened with read access, these attributes will be read from disk
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// during the open call. If the file is opened with write access, the
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// attributes will be written to disk every file sync or close. This
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// write occurs atomically with update to the file's contents.
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//
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// Custom attributes are uniquely identified by an 8-bit type and limited
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// to LFS_ATTR_MAX bytes. When read, if the stored attribute is smaller
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// than the buffer, it will be padded with zeros. If the stored attribute
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// is larger, then it will be silently truncated. If the attribute is not
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// found, it will be created implicitly.
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struct lfs_attr *attrs;
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// Number of custom attributes in the list
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lfs_size_t attr_count;
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};
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/// internal littlefs data structures ///
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typedef struct lfs_cache {
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lfs_block_t block;
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lfs_size_t off;
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lfs_size_t size;
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uint8_t *buffer;
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} lfs_cache_t;
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// TODO do we get ram savings with a lfsr_rorbyd_t substruct? need to measure
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typedef struct lfsr_rbyd {
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// note this lines up with weight in lfsr_data_t
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// sign(weight)=0 => rbyd
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lfsr_rid_t weight;
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lfs_block_t blocks[2];
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// sign(trunk)=0 => normal rbyd
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// sign(trunk)=1 => shrub rbyd
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lfs_size_t trunk;
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// sign(eoff) => commit parity
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// eoff=0, trunk=0 => not yet committed
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// eoff=0, trunk>0 => not yet fetched
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// eoff>=block_size => rbyd not erased/needs compaction
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lfs_size_t eoff;
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uint32_t cksum;
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} lfsr_rbyd_t;
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// a btree is just the root rbyd
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typedef lfsr_rbyd_t lfsr_btree_t;
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// a shrub is a secondary trunk in an mdir
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typedef struct {
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// this mostly lines up with lfsr_rbyd_t
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lfsr_rid_t weight;
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lfs_block_t blocks[2];
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lfs_size_t trunk;
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// except for shrub estimate, which takes the place of eoff, etc
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lfs_size_t estimate;
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} lfsr_shrub_t;
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typedef struct lfsr_mptr {
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lfs_block_t blocks[2];
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} lfsr_mptr_t;
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typedef struct lfsr_mdir {
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lfsr_smid_t mid;
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lfsr_rbyd_t rbyd;
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} lfsr_mdir_t;
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typedef struct lfsr_opened {
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struct lfsr_opened *next;
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uint8_t type;
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uint16_t flags;
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lfsr_mdir_t mdir;
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} lfsr_opened_t;
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typedef struct lfs_mdir {
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lfs_block_t pair[2];
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uint32_t rev;
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lfs_off_t off;
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uint32_t etag;
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uint16_t count;
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bool erased;
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bool split;
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lfs_block_t tail[2];
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} lfs_mdir_t;
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// Either an on-disk or in-device data pointer
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//
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// The top 2 bits of data's size indicates the actual encoding
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// 0b00 => in-RAM buffer
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// 0b01 => a single leb128
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// 0b10 => on-disk reference
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// 0b11 => concatenated datas
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//
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// Note concatenated datas can only be 1 level deep. Concatenating
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// concatenated datas would require recursion to resolve.
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//
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typedef struct lfsr_data {
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union {
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lfs_size_t size;
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struct {
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lfs_size_t size;
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lfs_block_t block;
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lfs_size_t off;
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} disk;
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struct {
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lfs_size_t size;
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const uint8_t *buffer;
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} buf;
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struct {
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lfs_size_t size;
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uint8_t buf[8];
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} imm;
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struct {
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lfs_size_t size;
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const struct lfsr_data *datas;
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} cat;
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} u;
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} lfsr_data_t;
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// littlefs directory type
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typedef struct lfs_dir {
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struct lfs_dir *next;
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uint16_t id;
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uint8_t type;
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lfs_mdir_t m;
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lfs_off_t pos;
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lfs_block_t head[2];
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} lfs_dir_t;
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typedef struct lfsr_dir {
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lfsr_opened_t p; // pos mdir
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lfsr_opened_t b; // bookmark mdir
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lfsr_did_t did;
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lfs_off_t pos;
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} lfsr_dir_t;
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// littlefs file type
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typedef struct lfs_file {
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struct lfs_file *next;
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uint16_t id;
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uint8_t type;
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lfs_mdir_t m;
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struct lfs_ctz {
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lfs_block_t head;
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lfs_size_t size;
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} ctz;
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uint32_t flags;
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lfs_off_t pos;
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lfs_block_t block;
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lfs_off_t off;
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lfs_cache_t cache;
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const struct lfs_file_config *cfg;
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} lfs_file_t;
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typedef lfsr_data_t lfsr_sprout_t;
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typedef struct lfsr_bptr {
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lfsr_data_t data;
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lfs_size_t cksize;
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uint32_t cksum;
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} lfsr_bptr_t;
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// the lfsr_bshrub_t struct represents the on-disk component of a file
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typedef struct lfsr_bshrub {
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// navigating this union is a bit tricky, and relies on the related
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// mdir's block:
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//
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// sign(size)=1, data.size==0 => bnull
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|
// sign(size)=1, data.block==mdir.block => bsprout
|
|
// sign(size)=1, data.block!=mdir.block => bptr
|
|
// sign(size)=0, data.block==mdir.block => bshrub
|
|
// sign(size)=0, data.block!=mdir.block => btree
|
|
//
|
|
union {
|
|
lfs_off_t size;
|
|
lfsr_sprout_t bsprout;
|
|
lfsr_bptr_t bptr;
|
|
lfsr_shrub_t bshrub;
|
|
lfsr_btree_t btree;
|
|
} u;
|
|
} lfsr_bshrub_t;
|
|
|
|
typedef struct lfsr_file {
|
|
lfsr_opened_t m;
|
|
|
|
// files contain both an active bshrub and staging bshrub, to allow
|
|
// staging during mdir compacts
|
|
lfsr_bshrub_t bshrub;
|
|
lfsr_bshrub_t bshrub_;
|
|
lfs_off_t pos;
|
|
|
|
lfs_off_t buffer_pos;
|
|
uint8_t *buffer;
|
|
lfs_size_t buffer_size;
|
|
|
|
lfs_block_t eblock;
|
|
lfs_size_t eoff;
|
|
|
|
const struct lfs_file_config *cfg;
|
|
} lfsr_file_t;
|
|
|
|
typedef struct lfs_superblock {
|
|
uint32_t version;
|
|
lfs_size_t block_size;
|
|
lfs_size_t block_count;
|
|
lfs_size_t name_max;
|
|
lfs_size_t file_max;
|
|
lfs_size_t attr_max;
|
|
} lfs_superblock_t;
|
|
|
|
typedef struct lfs_gstate {
|
|
uint32_t tag;
|
|
lfs_block_t pair[2];
|
|
} lfs_gstate_t;
|
|
|
|
typedef struct lfsr_mtree {
|
|
union {
|
|
// the sign bit indicates if this is an inlined mdir/direct mdir
|
|
// pointer or a full mtree
|
|
lfsr_mid_t weight;
|
|
struct {
|
|
lfsr_mid_t weight;
|
|
lfsr_mptr_t mptr;
|
|
} mptr;
|
|
lfsr_btree_t btree;
|
|
} u;
|
|
} lfsr_mtree_t;
|
|
|
|
// grm encoding:
|
|
// .---. mode: 1 leb128 1 byte
|
|
// |mod| mids: 2 leb128s <=2x5 bytes
|
|
// +- -+- -+- -+- -+- -. total: <=11 bytes
|
|
// ' mid x mod '
|
|
// + +
|
|
// ' '
|
|
// '- -+- -+- -+- -+- -'
|
|
//
|
|
#define LFSR_GRM_DSIZE (1+5+5)
|
|
|
|
typedef struct lfsr_grm {
|
|
lfsr_smid_t rms[2];
|
|
} lfsr_grm_t;
|
|
|
|
// The littlefs filesystem type
|
|
typedef struct lfs {
|
|
lfs_cache_t rcache;
|
|
lfs_cache_t pcache;
|
|
uint32_t pcksum;
|
|
|
|
lfs_block_t root[2];
|
|
struct lfs_mlist {
|
|
struct lfs_mlist *next;
|
|
uint16_t id;
|
|
uint8_t type;
|
|
lfs_mdir_t m;
|
|
} *mlist;
|
|
uint32_t seed;
|
|
|
|
lfs_gstate_t gstate;
|
|
lfs_gstate_t gdisk;
|
|
lfs_gstate_t gdelta;
|
|
|
|
struct lfs_lookahead {
|
|
lfs_block_t start;
|
|
lfs_block_t size;
|
|
lfs_block_t next;
|
|
lfs_block_t ckpoint;
|
|
uint8_t *buffer;
|
|
} lookahead;
|
|
|
|
const struct lfs_config *cfg;
|
|
lfs_size_t name_limit;
|
|
lfs_off_t size_limit;
|
|
lfs_size_t uattr_limit;
|
|
lfs_size_t sattr_limit;
|
|
|
|
// begin lfsr things
|
|
lfsr_grm_t grm;
|
|
uint8_t grm_g[LFSR_GRM_DSIZE];
|
|
uint8_t grm_d[LFSR_GRM_DSIZE];
|
|
|
|
// TODO we should put this flag somewhere, should lfs_t have a general
|
|
// purpose flags field? this has been useful for lfsr_file_t
|
|
bool hasorphans;
|
|
|
|
uint8_t attr_estimate;
|
|
uint8_t mleaf_bits;
|
|
|
|
lfsr_mdir_t mroot;
|
|
lfsr_mtree_t mtree;
|
|
|
|
// linked-list of opened mdirs
|
|
lfsr_opened_t *opened;
|
|
|
|
#ifdef LFS_MIGRATE
|
|
struct lfs1 *lfs1;
|
|
#endif
|
|
} lfs_t;
|
|
|
|
|
|
/// Filesystem functions ///
|
|
|
|
#ifndef LFS_READONLY
|
|
// Format a block device with the littlefs
|
|
//
|
|
// Requires a littlefs object and config struct. This clobbers the littlefs
|
|
// object, and does not leave the filesystem mounted. The config struct must
|
|
// be zeroed for defaults and backwards compatibility.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_format(lfs_t *lfs, const struct lfs_config *config);
|
|
int lfsr_format(lfs_t *lfs, const struct lfs_config *config);
|
|
#endif
|
|
|
|
// Mounts a littlefs
|
|
//
|
|
// Requires a littlefs object and config struct. Multiple filesystems
|
|
// may be mounted simultaneously with multiple littlefs objects. Both
|
|
// lfs and config must be allocated while mounted. The config struct must
|
|
// be zeroed for defaults and backwards compatibility.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_mount(lfs_t *lfs, const struct lfs_config *config);
|
|
int lfsr_mount(lfs_t *lfs, const struct lfs_config *config);
|
|
|
|
// Unmounts a littlefs
|
|
//
|
|
// Does nothing besides releasing any allocated resources.
|
|
// Returns a negative error code on failure.
|
|
int lfs_unmount(lfs_t *lfs);
|
|
int lfsr_unmount(lfs_t *lfs);
|
|
|
|
/// General operations ///
|
|
|
|
#ifndef LFS_READONLY
|
|
// Removes a file or directory
|
|
//
|
|
// If removing a directory, the directory must be empty.
|
|
// Returns a negative error code on failure.
|
|
int lfs_remove(lfs_t *lfs, const char *path);
|
|
int lfsr_remove(lfs_t *lfs, const char *path);
|
|
#endif
|
|
|
|
#ifndef LFS_READONLY
|
|
// Rename or move a file or directory
|
|
//
|
|
// If the destination exists, it must match the source in type.
|
|
// If the destination is a directory, the directory must be empty.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_rename(lfs_t *lfs, const char *oldpath, const char *newpath);
|
|
int lfsr_rename(lfs_t *lfs, const char *old_path, const char *new_path);
|
|
#endif
|
|
|
|
// Find info about a file or directory
|
|
//
|
|
// Fills out the info structure, based on the specified file or directory.
|
|
// Returns a negative error code on failure.
|
|
int lfs_stat(lfs_t *lfs, const char *path, struct lfs_info *info);
|
|
int lfsr_stat(lfs_t *lfs, const char *path, struct lfs_info *info);
|
|
|
|
// Get a custom attribute
|
|
//
|
|
// Custom attributes are uniquely identified by an 8-bit type and limited
|
|
// to LFS_ATTR_MAX bytes. When read, if the stored attribute is smaller than
|
|
// the buffer, it will be padded with zeros. If the stored attribute is larger,
|
|
// then it will be silently truncated. If no attribute is found, the error
|
|
// LFS_ERR_NOATTR is returned and the buffer is filled with zeros.
|
|
//
|
|
// Returns the size of the attribute, or a negative error code on failure.
|
|
// Note, the returned size is the size of the attribute on disk, irrespective
|
|
// of the size of the buffer. This can be used to dynamically allocate a buffer
|
|
// or check for existence.
|
|
lfs_ssize_t lfs_getattr(lfs_t *lfs, const char *path,
|
|
uint8_t type, void *buffer, lfs_size_t size);
|
|
|
|
#ifndef LFS_READONLY
|
|
// Set custom attributes
|
|
//
|
|
// Custom attributes are uniquely identified by an 8-bit type and limited
|
|
// to LFS_ATTR_MAX bytes. If an attribute is not found, it will be
|
|
// implicitly created.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_setattr(lfs_t *lfs, const char *path,
|
|
uint8_t type, const void *buffer, lfs_size_t size);
|
|
#endif
|
|
|
|
#ifndef LFS_READONLY
|
|
// Removes a custom attribute
|
|
//
|
|
// If an attribute is not found, nothing happens.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_removeattr(lfs_t *lfs, const char *path, uint8_t type);
|
|
#endif
|
|
|
|
|
|
/// File operations ///
|
|
|
|
#ifndef LFS_NO_MALLOC
|
|
// Open a file
|
|
//
|
|
// The mode that the file is opened in is determined by the flags, which
|
|
// are values from the enum lfs_open_flags that are bitwise-ored together.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_file_open(lfs_t *lfs, lfs_file_t *file,
|
|
const char *path, int flags);
|
|
int lfsr_file_open(lfs_t *lfs, lfsr_file_t *file,
|
|
const char *path, uint32_t flags);
|
|
|
|
// if LFS_NO_MALLOC is defined, lfs_file_open() will fail with LFS_ERR_NOMEM
|
|
// thus use lfs_file_opencfg() with config.buffer set.
|
|
#endif
|
|
|
|
// Open a file with extra configuration
|
|
//
|
|
// The mode that the file is opened in is determined by the flags, which
|
|
// are values from the enum lfs_open_flags that are bitwise-ored together.
|
|
//
|
|
// The config struct provides additional config options per file as described
|
|
// above. The config struct must remain allocated while the file is open, and
|
|
// the config struct must be zeroed for defaults and backwards compatibility.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_file_opencfg(lfs_t *lfs, lfs_file_t *file,
|
|
const char *path, int flags,
|
|
const struct lfs_file_config *config);
|
|
int lfsr_file_opencfg(lfs_t *lfs, lfsr_file_t *file,
|
|
const char *path, uint32_t flags,
|
|
const struct lfs_file_config *config);
|
|
|
|
// Close a file
|
|
//
|
|
// If the file is not desynchronized, any pending writes are written out
|
|
// to storage as though sync had been called.
|
|
//
|
|
// Releases any allocated resources, even if there is an error.
|
|
//
|
|
// Readonly and desynchronized files do not touch disk and will always
|
|
// return 0.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_file_close(lfs_t *lfs, lfs_file_t *file);
|
|
int lfsr_file_close(lfs_t *lfs, lfsr_file_t *file);
|
|
|
|
// Synchronize a file on storage
|
|
//
|
|
// Any pending writes are written out to storage and other open files.
|
|
//
|
|
// If the file was desynchronized, it is now marked as synchronized. It will
|
|
// now recieve file updates and syncs on close.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_file_sync(lfs_t *lfs, lfs_file_t *file);
|
|
int lfsr_file_sync(lfs_t *lfs, lfsr_file_t *file);
|
|
|
|
// Mark a file as desynchronized
|
|
//
|
|
// Desynchronized files do not recieve file updates and do not sync on close.
|
|
// They effectively act as snapshots of the underlying file at that point
|
|
// in time.
|
|
//
|
|
// If an error occurs during a write operation, the file is implicitly marked
|
|
// as desynchronized.
|
|
//
|
|
// An explicit and successful call to lfsr_file_sync reverses this, marking
|
|
// the file as synchronized again.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfsr_file_desync(lfs_t *lfs, lfsr_file_t *file);
|
|
|
|
// Flush any buffered data
|
|
//
|
|
// This does not update metadata and is called implicitly by lfsr_file_sync.
|
|
// Calling this explicitly may be useful for preventing write errors in
|
|
// read operations.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfsr_file_flush(lfs_t *lfs, lfsr_file_t *file);
|
|
|
|
// Read data from file
|
|
//
|
|
// Takes a buffer and size indicating where to store the read data.
|
|
// Returns the number of bytes read, or a negative error code on failure.
|
|
lfs_ssize_t lfs_file_read(lfs_t *lfs, lfs_file_t *file,
|
|
void *buffer, lfs_size_t size);
|
|
lfs_ssize_t lfsr_file_read(lfs_t *lfs, lfsr_file_t *file,
|
|
void *buffer, lfs_size_t size);
|
|
|
|
#ifndef LFS_READONLY
|
|
// Write data to file
|
|
//
|
|
// Takes a buffer and size indicating the data to write. The file will not
|
|
// actually be updated on the storage until either sync or close is called.
|
|
//
|
|
// Returns the number of bytes written, or a negative error code on failure.
|
|
lfs_ssize_t lfs_file_write(lfs_t *lfs, lfs_file_t *file,
|
|
const void *buffer, lfs_size_t size);
|
|
lfs_ssize_t lfsr_file_write(lfs_t *lfs, lfsr_file_t *file,
|
|
const void *buffer, lfs_size_t size);
|
|
#endif
|
|
|
|
// Change the position of the file
|
|
//
|
|
// The change in position is determined by the offset and whence flag.
|
|
// Returns the new position of the file, or a negative error code on failure.
|
|
lfs_soff_t lfs_file_seek(lfs_t *lfs, lfs_file_t *file,
|
|
lfs_soff_t off, int whence);
|
|
lfs_soff_t lfsr_file_seek(lfs_t *lfs, lfsr_file_t *file,
|
|
lfs_soff_t off, uint8_t whence);
|
|
|
|
#ifndef LFS_READONLY
|
|
// Truncate/grow the size of the file to the specified size
|
|
//
|
|
// If size is larger than the current file size, a hole is created, appearing
|
|
// as if the file was filled with zeros.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_file_truncate(lfs_t *lfs, lfs_file_t *file, lfs_off_t size);
|
|
int lfsr_file_truncate(lfs_t *lfs, lfsr_file_t *file, lfs_off_t size);
|
|
#endif
|
|
|
|
#ifndef LFS_READONLY
|
|
// Truncate/grow the file, but from the front
|
|
//
|
|
// If size is larger than the current file size, a hole is created, appearing
|
|
// as if the file was filled with zeros.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfsr_file_fruncate(lfs_t *lfs, lfsr_file_t *file, lfs_off_t size);
|
|
#endif
|
|
|
|
// Return the position of the file
|
|
//
|
|
// Equivalent to lfs_file_seek(lfs, file, 0, LFS_SEEK_CUR)
|
|
// Returns the position of the file, or a negative error code on failure.
|
|
lfs_soff_t lfs_file_tell(lfs_t *lfs, lfs_file_t *file);
|
|
lfs_soff_t lfsr_file_tell(lfs_t *lfs, lfsr_file_t *file);
|
|
|
|
// Change the position of the file to the beginning of the file
|
|
//
|
|
// Equivalent to lfs_file_seek(lfs, file, 0, LFS_SEEK_SET)
|
|
// Returns a negative error code on failure.
|
|
int lfs_file_rewind(lfs_t *lfs, lfs_file_t *file);
|
|
int lfsr_file_rewind(lfs_t *lfs, lfsr_file_t *file);
|
|
|
|
// Return the size of the file
|
|
//
|
|
// Similar to lfs_file_seek(lfs, file, 0, LFS_SEEK_END)
|
|
// Returns the size of the file, or a negative error code on failure.
|
|
lfs_soff_t lfs_file_size(lfs_t *lfs, lfs_file_t *file);
|
|
lfs_soff_t lfsr_file_size(lfs_t *lfs, lfsr_file_t *file);
|
|
|
|
|
|
/// Directory operations ///
|
|
|
|
#ifndef LFS_READONLY
|
|
// Create a directory
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_mkdir(lfs_t *lfs, const char *path);
|
|
int lfsr_mkdir(lfs_t *lfs, const char *path);
|
|
#endif
|
|
|
|
// Open a directory
|
|
//
|
|
// Once open a directory can be used with read to iterate over files.
|
|
// Returns a negative error code on failure.
|
|
int lfs_dir_open(lfs_t *lfs, lfs_dir_t *dir, const char *path);
|
|
int lfsr_dir_open(lfs_t *lfs, lfsr_dir_t *dir, const char *path);
|
|
|
|
// Close a directory
|
|
//
|
|
// Releases any allocated resources.
|
|
// Returns a negative error code on failure.
|
|
int lfs_dir_close(lfs_t *lfs, lfs_dir_t *dir);
|
|
int lfsr_dir_close(lfs_t *lfs, lfsr_dir_t *dir);
|
|
|
|
// Read an entry in the directory
|
|
//
|
|
// Fills out the info structure, based on the specified file or directory.
|
|
// Returns a positive value on success, 0 at the end of directory,
|
|
// or a negative error code on failure.
|
|
int lfs_dir_read(lfs_t *lfs, lfs_dir_t *dir, struct lfs_info *info);
|
|
int lfsr_dir_read(lfs_t *lfs, lfsr_dir_t *dir, struct lfs_info *info);
|
|
|
|
// Change the position of the directory
|
|
//
|
|
// The new off must be a value previous returned from tell and specifies
|
|
// an absolute offset in the directory seek.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_dir_seek(lfs_t *lfs, lfs_dir_t *dir, lfs_off_t off);
|
|
int lfsr_dir_seek(lfs_t *lfs, lfsr_dir_t *dir, lfs_soff_t off);
|
|
|
|
// Return the position of the directory
|
|
//
|
|
// The returned offset is only meant to be consumed by seek and may not make
|
|
// sense, but does indicate the current position in the directory iteration.
|
|
//
|
|
// Returns the position of the directory, or a negative error code on failure.
|
|
lfs_soff_t lfs_dir_tell(lfs_t *lfs, lfs_dir_t *dir);
|
|
lfs_soff_t lfsr_dir_tell(lfs_t *lfs, lfsr_dir_t *dir);
|
|
|
|
// Change the position of the directory to the beginning of the directory
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_dir_rewind(lfs_t *lfs, lfs_dir_t *dir);
|
|
int lfsr_dir_rewind(lfs_t *lfs, lfsr_dir_t *dir);
|
|
|
|
|
|
/// Filesystem-level filesystem operations
|
|
|
|
// Finds the current size of the filesystem
|
|
//
|
|
// Note: Result is best effort. If files share COW structures, the returned
|
|
// size may be larger than the filesystem actually is.
|
|
//
|
|
// Returns the number of allocated blocks, or a negative error code on failure.
|
|
lfs_ssize_t lfs_fs_size(lfs_t *lfs);
|
|
lfs_ssize_t lfsr_fs_size(lfs_t *lfs);
|
|
|
|
// Traverse through all blocks in use by the filesystem
|
|
//
|
|
// The provided callback will be called with each block address that is
|
|
// currently in use by the filesystem. This can be used to determine which
|
|
// blocks are in use or how much of the storage is available.
|
|
//
|
|
// Returns a negative error code on failure.
|
|
int lfs_fs_traverse(lfs_t *lfs, int (*cb)(void*, lfs_block_t), void *data);
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#ifndef LFS_READONLY
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#ifdef LFS_MIGRATE
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// Attempts to migrate a previous version of littlefs
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//
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// Behaves similarly to the lfs_format function. Attempts to mount
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// the previous version of littlefs and update the filesystem so it can be
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// mounted with the current version of littlefs.
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//
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// Requires a littlefs object and config struct. This clobbers the littlefs
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// object, and does not leave the filesystem mounted. The config struct must
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// be zeroed for defaults and backwards compatibility.
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//
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// Returns a negative error code on failure.
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int lfs_migrate(lfs_t *lfs, const struct lfs_config *cfg);
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#endif
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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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#endif
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