subsys: storage: Add flash_map abstraction module
Introduce flas_map module is abstraction over flash memory and its driver for using flash memories along with description of available flash areas. Module provides simple API for write/read/erase and so one. Signed-off-by: Andrzej Puzdrowski <andrzej.puzdrowski@nordicsemi.no>
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90
include/flash_map.h
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90
include/flash_map.h
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@ -0,0 +1,90 @@
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/*
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* Copyright (c) 2017 Nordic Semiconductor ASA
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* Copyright (c) 2015 Runtime Inc
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#ifndef __FLASH_MAP_H__
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#define __FLASH_MAP_H__
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#ifdef __cplusplus
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extern "C" {
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#endif
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/**
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*
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* Provides abstraction of flash regions for type of use.
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* I.e. dude where's my image?
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*
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* System will contain a map which contains flash areas. Every
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* region will contain flash identifier, offset within flash and length.
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*
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* 1. This system map could be in a file within filesystem (Initializer
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* must know/figure out where the filesystem is at).
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* 2. Map could be at fixed location for project (compiled to code)
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* 3. Map could be at specific place in flash (put in place at mfg time).
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*
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* Note that the map you use must be valid for BSP it's for,
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* match the linker scripts when platform executes from flash,
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* and match the target offset specified in download script.
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*/
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#include <zephyr/types.h>
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#include <stddef.h>
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#include <sys/types.h>
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#define SOC_FLASH_0_ID 0 /* device_id for SoC flash memory driver */
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#define SPI_FLASH_0_ID 1 /* device_id for external SPI flash driver */
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struct flash_area {
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u8_t fa_id;
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u8_t fa_device_id;
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u16_t pad16;
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off_t fa_off;
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size_t fa_size;
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};
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struct flash_sector {
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off_t fs_off;
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size_t fs_size;
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};
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/*
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* Initializes flash map. Memory will be referenced by flash_map code
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* from this on.
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*/
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void flash_map_init(void);
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/*
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* Start using flash area.
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*/
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int flash_area_open(u8_t id, const struct flash_area **fa);
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void flash_area_close(const struct flash_area *fa);
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/*
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* Read/write/erase. Offset is relative from beginning of flash area.
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*/
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int flash_area_read(const struct flash_area *fa, off_t off, void *dst,
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size_t len);
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int flash_area_write(const struct flash_area *fa, off_t off, const void *src,
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size_t len);
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int flash_area_erase(const struct flash_area *fa, off_t off, size_t len);
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/* int flash_area_is_empty(const struct flash_area *, bool *); */
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/*
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* Alignment restriction for flash writes.
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*/
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u8_t flash_area_align(const struct flash_area *fa);
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/*
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* Given flash area ID, return info about sectors within the area.
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*/
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int flash_area_get_sectors(int fa_id, uint32_t *count,
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struct flash_sector *sectors);
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#ifdef __cplusplus
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}
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#endif
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#endif /* __FLASH_MAP_H__ */
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@ -10,3 +10,4 @@ add_subdirectory_ifdef(CONFIG_MCUBOOT_IMG_MANAGER dfu)
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add_subdirectory_ifdef(CONFIG_NET_BUF net)
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add_subdirectory_ifdef(CONFIG_USB usb)
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add_subdirectory(random)
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add_subdirectory(storage)
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@ -28,3 +28,5 @@ source "subsys/usb/Kconfig"
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source "subsys/dfu/Kconfig"
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source "subsys/random/Kconfig"
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source "subsys/storage/Kconfig"
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1
subsys/storage/CMakeLists.txt
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1
subsys/storage/CMakeLists.txt
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add_subdirectory_ifdef(CONFIG_FLASH_MAP flash_map)
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13
subsys/storage/Kconfig
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13
subsys/storage/Kconfig
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# Kconfig - Subsystem configuration options
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#
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# Copyright (c) 2018 Nordic Semiconductor ASA
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#
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# SPDX-License-Identifier: Apache-2.0
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#
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menu "Storage"
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source "subsys/storage/flash_map/Kconfig"
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endmenu
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3
subsys/storage/flash_map/CMakeLists.txt
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3
subsys/storage/flash_map/CMakeLists.txt
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zephyr_sources(flash_map.c)
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zephyr_sources_ifndef(CONFIG_FLASH_MAP_CUSTOM flash_map_default.c)
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28
subsys/storage/flash_map/Kconfig
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28
subsys/storage/flash_map/Kconfig
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# Kconfig - Flash map abstraction module
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#
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# Copyright (c) 2017 Nordic Semiconductor ASA
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#
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# SPDX-License-Identifier: Apache-2.0
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#
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#
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# Flash map
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#
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menuconfig FLASH_MAP
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bool
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prompt "Flash map abstraction module"
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default n
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depends on FLASH
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help
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Enable support of flash map abstraction.
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config FLASH_MAP_CUSTOM
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bool
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prompt "Custom flash map description"
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default n
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depends on FLASH_MAP
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help
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This option enables custom flash map description.
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User must provide such a description in place of default on
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if had enabled this option.
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270
subsys/storage/flash_map/flash_map.c
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270
subsys/storage/flash_map/flash_map.c
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/*
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* Copyright (c) 2017 Nordic Semiconductor ASA
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* Copyright (c) 2015 Runtime Inc
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include <zephyr/types.h>
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#include <stddef.h>
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#include <sys/types.h>
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#include <device.h>
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#include <flash_map.h>
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#include <flash.h>
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#include <soc.h>
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#if defined(CONFIG_FLASH_PAGE_LAYOUT)
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struct layout_data {
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u32_t area_idx;
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u32_t area_off;
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u32_t area_len;
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void *ret; /* struct flash_area* or struct flash_sector* */
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u32_t ret_idx;
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u32_t ret_len;
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int status;
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};
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#endif /* CONFIG_FLASH_PAGE_LAYOUT */
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struct driver_map_entry {
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u8_t id;
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const char * const name;
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};
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static const struct driver_map_entry flash_drivers_map[] = {
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#ifdef FLASH_DRIVER_NAME /* SoC embedded flash driver */
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{SOC_FLASH_0_ID, FLASH_DRIVER_NAME},
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#endif
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#ifdef CONFIG_SPI_FLASH_W25QXXDV
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{SPI_FLASH_0_ID, CONFIG_SPI_FLASH_W25QXXDV_DRV_NAME},
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#endif
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};
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const struct flash_area *flash_map;
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extern const int flash_map_entries;
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int flash_area_open(u8_t id, const struct flash_area **fap)
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{
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const struct flash_area *area;
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int i;
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if (flash_map == NULL) {
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return -EACCES;
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}
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for (i = 0; i < flash_map_entries; i++) {
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area = flash_map + i;
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if (area->fa_id == id) {
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*fap = area;
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return 0;
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}
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}
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return -ENOENT;
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}
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void flash_area_close(const struct flash_area *fa)
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{
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/* nothing to do for now */
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}
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static struct device *get_flah_dev_from_id(u8_t id)
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{
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for (int i = 0; i < ARRAY_SIZE(flash_drivers_map); i++) {
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if (flash_drivers_map[i].id == id) {
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return device_get_binding(flash_drivers_map[i].name);
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}
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}
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k_panic();
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}
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static inline bool is_in_flash_area_bounds(const struct flash_area *fa,
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off_t off, size_t len)
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{
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return (off <= fa->fa_size && off + len <= fa->fa_size);
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}
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struct flash_area const *get_flash_area_from_id(int idx)
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{
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for (int i = 0; i < flash_map_entries; i++) {
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if (flash_map[i].fa_id == idx) {
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return &flash_map[i];
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}
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}
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return NULL;
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}
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#if defined(CONFIG_FLASH_PAGE_LAYOUT)
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/*
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* Check if a flash_page_foreach() callback should exit early, due to
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* one of the following conditions:
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*
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* - The flash page described by "info" is before the area of interest
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* described in "data"
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* - The flash page is after the end of the area
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* - There are too many flash pages on the device to fit in the array
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* held in data->ret. In this case, data->status is set to -ENOMEM.
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*
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* The value to return to flash_page_foreach() is stored in
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* "bail_value" if the callback should exit early.
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*/
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static bool should_bail(const struct flash_pages_info *info,
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struct layout_data *data,
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bool *bail_value)
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{
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if (info->start_offset < data->area_off) {
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*bail_value = true;
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return true;
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} else if (info->start_offset >= data->area_off + data->area_len) {
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*bail_value = false;
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return true;
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} else if (data->ret_idx >= data->ret_len) {
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data->status = -ENOMEM;
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*bail_value = false;
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return true;
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}
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return false;
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}
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/*
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* Generic page layout discovery routine. This is kept separate to
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* support both the deprecated flash_area_to_sectors() and the current
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* flash_area_get_sectors(). A lot of this can be inlined once
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* flash_area_to_sectors() is removed.
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*/
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static int flash_area_layout(int idx, int *cnt, void *ret,
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flash_page_cb cb, struct layout_data *cb_data)
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{
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struct device *flash_dev;
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cb_data->area_idx = idx;
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const struct flash_area *fa;
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fa = get_flash_area_from_id(idx);
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if (fa == NULL) {
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return -EINVAL;
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}
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cb_data->area_idx = idx;
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cb_data->area_off = fa->fa_off;
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cb_data->area_len = fa->fa_size;
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cb_data->ret = ret;
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cb_data->ret_idx = 0;
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cb_data->ret_len = *cnt;
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cb_data->status = 0;
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flash_dev = get_flah_dev_from_id(fa->fa_device_id);
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flash_page_foreach(flash_dev, cb, cb_data);
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if (cb_data->status == 0) {
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*cnt = cb_data->ret_idx;
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}
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return cb_data->status;
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}
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static bool get_sectors_cb(const struct flash_pages_info *info, void *datav)
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{
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struct layout_data *data = datav;
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struct flash_sector *ret = data->ret;
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bool bail;
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if (should_bail(info, data, &bail)) {
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return bail;
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}
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ret[data->ret_idx].fs_off = info->start_offset - data->area_off;
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ret[data->ret_idx].fs_size = info->size;
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data->ret_idx++;
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return true;
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}
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int flash_area_get_sectors(int idx, uint32_t *cnt, struct flash_sector *ret)
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{
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struct layout_data data;
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return flash_area_layout(idx, cnt, ret, get_sectors_cb, &data);
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}
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#endif /* CONFIG_FLASH_PAGE_LAYOUT */
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int flash_area_read(const struct flash_area *fa, off_t off, void *dst,
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size_t len)
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{
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struct device *dev;
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if (!is_in_flash_area_bounds(fa, off, len)) {
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return -1;
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}
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dev = get_flah_dev_from_id(fa->fa_device_id);
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return flash_read(dev, fa->fa_off + off, dst, len);
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}
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int flash_area_write(const struct flash_area *fa, off_t off, const void *src,
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size_t len)
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{
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struct device *flash_dev;
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int rc;
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if (!is_in_flash_area_bounds(fa, off, len)) {
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return -1;
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}
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flash_dev = get_flah_dev_from_id(fa->fa_device_id);
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rc = flash_write_protection_set(flash_dev, false);
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if (rc) {
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return rc;
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}
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rc = flash_write(flash_dev, fa->fa_off + off, (void *)src, len);
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/* Ignore errors here - this does not affect write operation */
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(void) flash_write_protection_set(flash_dev, true);
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return rc;
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}
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int flash_area_erase(const struct flash_area *fa, off_t off, size_t len)
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{
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struct device *flash_dev;
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int rc;
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if (!is_in_flash_area_bounds(fa, off, len)) {
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return -1;
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}
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flash_dev = get_flah_dev_from_id(fa->fa_device_id);
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rc = flash_write_protection_set(flash_dev, false);
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if (rc) {
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return rc;
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}
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rc = flash_erase(flash_dev, fa->fa_off + off, len);
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/* Ignore errors here - this does not affect write operation */
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(void) flash_write_protection_set(flash_dev, true);
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return rc;
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}
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u8_t flash_area_align(const struct flash_area *fa)
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{
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struct device *dev;
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dev = get_flah_dev_from_id(fa->fa_device_id);
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return flash_get_write_block_size(dev);
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}
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void flash_map_init(void)
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{
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}
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56
subsys/storage/flash_map/flash_map_default.c
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56
subsys/storage/flash_map/flash_map_default.c
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/*
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* Copyright (c) 2017 Nordic Semiconductor ASA
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* Copyright (c) 2015 Runtime Inc
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include <zephyr.h>
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#include <flash_map.h>
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const struct flash_area default_flash_map[] = {
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/* FLASH_AREA_BOOTLOADER */
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{
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.fa_id = 0,
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.fa_device_id = SOC_FLASH_0_ID,
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.fa_off = FLASH_AREA_MCUBOOT_OFFSET,
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.fa_size = FLASH_AREA_MCUBOOT_SIZE,
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},
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/* FLASH_AREA_IMAGE_0 */
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{
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.fa_id = 1,
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.fa_device_id = SOC_FLASH_0_ID,
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.fa_off = FLASH_AREA_IMAGE_0_OFFSET,
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.fa_size = FLASH_AREA_IMAGE_0_SIZE,
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},
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/* FLASH_AREA_IMAGE_1 */
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{
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.fa_id = 2,
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.fa_device_id = SOC_FLASH_0_ID,
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.fa_off = FLASH_AREA_IMAGE_1_OFFSET,
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.fa_size = FLASH_AREA_IMAGE_1_SIZE,
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},
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/* FLASH_AREA_IMAGE_SCRATCH */
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{
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.fa_id = 3,
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.fa_device_id = SOC_FLASH_0_ID,
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.fa_off = FLASH_AREA_IMAGE_SCRATCH_OFFSET,
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.fa_size = FLASH_AREA_IMAGE_SCRATCH_SIZE,
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},
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#ifdef CONFIG_FILE_SYSTEM_NFFS
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/* FLASH_AREA_NFFS_ */
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{
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.fa_id = 4,
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.fa_device_id = SOC_FLASH_0_ID,
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.fa_off = FLASH_AREA_NFFS_OFFSET,
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.fa_size = FLASH_AREA_NFFS_SIZE,
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},
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#endif
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};
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const int flash_map_entries = ARRAY_SIZE(default_flash_map);
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const struct flash_area *flash_map = default_flash_map;
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5
tests/subsys/storage/flash_mpa/CMakeLists.txt
Normal file
5
tests/subsys/storage/flash_mpa/CMakeLists.txt
Normal file
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include($ENV{ZEPHYR_BASE}/cmake/app/boilerplate.cmake NO_POLICY_SCOPE)
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project(NONE)
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||||
FILE(GLOB app_sources src/*.c)
|
||||
target_sources(app PRIVATE ${app_sources})
|
9
tests/subsys/storage/flash_mpa/prj.conf
Normal file
9
tests/subsys/storage/flash_mpa/prj.conf
Normal file
|
@ -0,0 +1,9 @@
|
|||
CONFIG_ZTEST=y
|
||||
CONFIG_STDOUT_CONSOLE=y
|
||||
CONFIG_FLASH=y
|
||||
CONFIG_SOC_FLASH_NRF5=y
|
||||
CONFIG_FLASH_PAGE_LAYOUT=y
|
||||
CONFIG_FLASH_MAP=y
|
||||
CONFIG_ARM_CORE_MPU=n
|
||||
CONFIG_ARM_MPU=n
|
||||
CONFIG_ARM_MPU_NRF52X=n
|
103
tests/subsys/storage/flash_mpa/src/main.c
Normal file
103
tests/subsys/storage/flash_mpa/src/main.c
Normal file
|
@ -0,0 +1,103 @@
|
|||
/*
|
||||
* Copyright (c) 2017 Nordic Semiconductor ASA
|
||||
* Copyright (c) 2015 Runtime Inc
|
||||
*
|
||||
* SPDX-License-Identifier: Apache-2.0
|
||||
*/
|
||||
|
||||
#include <ztest.h>
|
||||
#include <flash.h>
|
||||
#include <flash_map.h>
|
||||
|
||||
|
||||
|
||||
#define FLASH_AREA_BOOTLOADER 0
|
||||
#define FLASH_AREA_IMAGE_0 1
|
||||
#define FLASH_AREA_IMAGE_1 2
|
||||
#define FLASH_AREA_IMAGE_SCRATCH 3
|
||||
|
||||
extern int flash_map_entries;
|
||||
struct flash_sector fs_sectors[256];
|
||||
|
||||
/*
|
||||
* Test flash_area_to_sectors()
|
||||
*/
|
||||
void flash_map_test_case_2(void)
|
||||
{
|
||||
const struct flash_area *fa;
|
||||
int sec_cnt;
|
||||
int i;
|
||||
int rc;
|
||||
off_t off;
|
||||
u8_t wd[256];
|
||||
u8_t rd[256];
|
||||
struct device *flash_dev;
|
||||
|
||||
rc = flash_area_open(FLASH_AREA_IMAGE_1, &fa);
|
||||
zassert_true(rc == 0, "flash_area_open() fail");
|
||||
|
||||
/* First erase the area so it's ready for use. */
|
||||
flash_dev = device_get_binding(CONFIG_SOC_FLASH_NRF5_DEV_NAME);
|
||||
rc = flash_erase(flash_dev, fa->fa_off, fa->fa_size);
|
||||
zassert_true(rc == 0, "flash area erase fail");
|
||||
|
||||
memset(wd, 0xa5, sizeof(wd));
|
||||
|
||||
rc = flash_area_get_sectors(FLASH_AREA_IMAGE_1, &sec_cnt, fs_sectors);
|
||||
zassert_true(rc == 0, "flash_area_get_sectors failed");
|
||||
|
||||
/* write stuff to beginning of every sector */
|
||||
off = 0;
|
||||
for (i = 0; i < sec_cnt; i++) {
|
||||
rc = flash_area_write(fa, off, wd, sizeof(wd));
|
||||
zassert_true(rc == 0, "flash_area_write() fail");
|
||||
|
||||
/* read it back via hal_flash_Read() */
|
||||
rc = flash_read(flash_dev, fa->fa_off + off, rd, sizeof(rd));
|
||||
zassert_true(rc == 0, "hal_flash_read() fail");
|
||||
|
||||
rc = memcmp(wd, rd, sizeof(wd));
|
||||
zassert_true(rc == 0, "read data != write data");
|
||||
|
||||
(void) flash_write_protection_set(flash_dev, false);
|
||||
/* write stuff to end of area */
|
||||
rc = flash_write(flash_dev, fa->fa_off + off +
|
||||
fs_sectors[i].fs_size - sizeof(wd),
|
||||
wd, sizeof(wd));
|
||||
zassert_true(rc == 0, "hal_flash_write() fail");
|
||||
|
||||
/* and read it back */
|
||||
memset(rd, 0, sizeof(rd));
|
||||
rc = flash_area_read(fa, off + fs_sectors[i].fs_size -
|
||||
sizeof(rd),
|
||||
rd, sizeof(rd));
|
||||
zassert_true(rc == 0, "hal_flash_read() fail");
|
||||
|
||||
rc = memcmp(wd, rd, sizeof(rd));
|
||||
zassert_true(rc == 0, "read data != write data");
|
||||
|
||||
off += fs_sectors[i].fs_size;
|
||||
}
|
||||
|
||||
/* erase it */
|
||||
rc = flash_area_erase(fa, 0, fa->fa_size);
|
||||
zassert_true(rc == 0, "read data != write data");
|
||||
|
||||
/* should read back ff all throughout*/
|
||||
memset(wd, 0xff, sizeof(wd));
|
||||
for (off = 0; off < fa->fa_size; off += sizeof(rd)) {
|
||||
rc = flash_area_read(fa, off, rd, sizeof(rd));
|
||||
zassert_true(rc == 0, "hal_flash_read() fail");
|
||||
|
||||
rc = memcmp(wd, rd, sizeof(rd));
|
||||
zassert_true(rc == 0, "area not erased");
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
void test_main(void *p1, void *p2, void *p3)
|
||||
{
|
||||
ztest_test_suite(test_flash_map,
|
||||
ztest_unit_test(flash_map_test_case_2));
|
||||
ztest_run_test_suite(test_flash_map);
|
||||
}
|
5
tests/subsys/storage/flash_mpa/testcase.yaml
Normal file
5
tests/subsys/storage/flash_mpa/testcase.yaml
Normal file
|
@ -0,0 +1,5 @@
|
|||
tests:
|
||||
test:
|
||||
build_only: true
|
||||
platform_whitelist: nrf52840_pca10056, nrf52_pca10040, nrf51_pca10028
|
||||
tags: flash_map
|
Loading…
Reference in a new issue