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https://gitee.com/Vancouver2017/luban-lite.git
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218 lines
6.6 KiB
C
218 lines
6.6 KiB
C
/*
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* Copyright (c) 2025, ArtInChip Technology Co., Ltd
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Authors: Cui Jiawei <jiawei.cui@artinchip.com>
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*/
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#include <finsh.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdint.h>
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#include <string.h>
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#include <rtthread.h>
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#include <rtdevice.h>
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#include <rtdef.h>
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#define PARTITION_NAME "blk_data" /* Target block device name */
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#define TEST_READ_WRITE_SIZE \
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0x2000 /* Data length must be block-aligned since we're operating on block devices */
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#define TEST_START_BLK_ID 0 /* Starting block number */
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static rt_device_t s_flash_t = NULL;
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static struct rt_device_blk_geometry s_flash_geometry;
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static rt_uint8_t *s_read_buf = NULL;
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static rt_uint8_t *s_write_buf = NULL;
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static void address_map(rt_uint8_t *data, rt_uint32_t start_address, rt_uint32_t len)
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{
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rt_uint32_t i;
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for (i = 0; i < len; i++) {
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if (i && (i % 16) == 0)
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printf("\n");
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if ((i % 16) == 0) {
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printf("0x%08x : ", start_address);
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start_address += 16;
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}
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printf("%02x ", data[i]);
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}
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printf("\n");
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}
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static rt_err_t verify_data(rt_uint8_t *data_exp, rt_uint8_t *data_act, rt_uint32_t offset,
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rt_uint32_t len)
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{
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if (memcmp(data_exp, data_act, len) != 0) {
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printf("expected:-----------------------\n");
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address_map(data_exp, offset, len);
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printf("actual:-------------------------\n");
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address_map(data_act, offset, len);
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return -RT_ERROR;
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} else {
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if (len > 0x200) {
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address_map(data_act, offset, 0x100);
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printf("......\n");
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address_map(data_act + len - 0x50, offset + len - 0x50, 0x50);
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} else {
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address_map(data_act, offset, len);
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}
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return RT_EOK;
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}
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}
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/**
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* @brief Initialize the flash storage device with specified partition name.
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* Searches for the device by name, opens it if not already opened,
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* and retrieves its geometric parameters (block size, capacity etc.).
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*
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* @param part_name Partition name to locate the target flash device
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* @return Error code from RT-Thread subsystem operations
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*/
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static rt_err_t flash_device_init(const char *part_name)
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{
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rt_err_t res = RT_ERROR;
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s_flash_t = rt_device_find(part_name);
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if (!s_flash_t) {
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rt_kprintf("find %s failed!\n", part_name);
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return -res;
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}
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if (!s_flash_t->ref_count) {
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res = rt_device_open(s_flash_t, RT_DEVICE_OFLAG_RDWR);
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if (res != RT_EOK) {
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rt_kprintf("open flash device failed!\n");
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return -res;
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}
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}
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return -rt_device_control(s_flash_t, RT_DEVICE_CTRL_BLK_GETGEOME, &s_flash_geometry);
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}
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/**
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* @brief Read data from flash memory starting at specified block ID.
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* Requires buffer length to be aligned with flash block size.
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*
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* @param block_start_id Starting physical block index for read operation
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* @param buffer Data storage pointer for received bytes
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* @param buffer_len Total byte count to read (must be aligned with block size)
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* @return Error code from RT-Thread subsystem operations
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*/
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rt_err_t flash_device_read(rt_uint32_t block_start_id, rt_uint8_t *buffer, rt_uint32_t buffer_len)
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{
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rt_uint32_t ret = 0;
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if (buffer_len % s_flash_geometry.block_size != 0) {
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rt_kprintf("Data length must be aligned to block size (0x%x)\n",
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s_flash_geometry.block_size);
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return -RT_ERROR;
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}
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/* On success, it returns the number of blocks operated; on failure, it returns 0 */
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ret =
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rt_device_read(s_flash_t, block_start_id, buffer, buffer_len / s_flash_geometry.block_size);
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if (ret == 0)
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return -RT_ERROR;
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return RT_EOK;
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}
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/**
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* @brief Write data to flash memory starting at specified block ID.
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* Requires buffer length to be aligned with flash block size.
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*
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* @param block_start_id Starting physical block index for write operation
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* @param buffer Source data pointer containing bytes to program
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* @param buffer_len Total byte count to write (must be aligned with block size)
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* @return Error code from RT-Thread subsystem operations
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*/
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rt_err_t flash_device_write(rt_uint32_t block_start_id, rt_uint8_t *buffer, rt_uint32_t buffer_len)
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{
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rt_uint32_t ret = 0;
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if (buffer_len % s_flash_geometry.block_size != 0) {
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rt_kprintf("Data length must be aligned to block size (0x%x)\n",
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s_flash_geometry.block_size);
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return -RT_ERROR;
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}
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/* On success, it returns the number of blocks operated; on failure, it returns 0 */
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ret = rt_device_write(s_flash_t, block_start_id, buffer,
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buffer_len / s_flash_geometry.block_size);
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if (ret == 0)
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return -RT_ERROR;
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return RT_EOK;
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}
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static int cmd_spiflash_usage_example(int argc, char *argv[])
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{
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rt_err_t ret = RT_EOK;
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/* Allocate test data buffer */
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s_write_buf = rt_malloc_align(TEST_READ_WRITE_SIZE, CACHE_LINE_SIZE);
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if (!s_write_buf) {
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printf("Error: No memory for test data!\n");
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ret = RT_ERROR;
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goto exit;
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}
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/* Allocate read buffer */
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s_read_buf = rt_malloc_align(TEST_READ_WRITE_SIZE, CACHE_LINE_SIZE);
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if (!s_read_buf) {
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printf("Error: No memory for read buffer!\n");
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rt_free_align(s_write_buf);
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ret = RT_ERROR;
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goto exit;
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}
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/* prepare some data */
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for (int i = 0; i < TEST_READ_WRITE_SIZE; i++) {
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s_write_buf[i] = i % 256;
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}
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ret = flash_device_init(PARTITION_NAME);
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if (ret != RT_EOK) {
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rt_kprintf("flash device init failed!\n");
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goto exit;
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} else {
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rt_kprintf("flash device init successful!\n");
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}
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/* Can be written to directly without first erasing. */
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ret = flash_device_write(TEST_START_BLK_ID, s_write_buf, TEST_READ_WRITE_SIZE);
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if (ret != RT_EOK) {
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rt_kprintf("data write failed!\n");
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goto exit;
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} else {
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rt_kprintf("data write successful!\n");
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}
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ret = flash_device_read(TEST_START_BLK_ID, s_read_buf, TEST_READ_WRITE_SIZE);
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if (ret != RT_EOK) {
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rt_kprintf("data read failed!\n");
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goto exit;
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} else {
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rt_kprintf("data read successful!\n");
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}
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ret = verify_data(s_write_buf, s_read_buf, TEST_START_BLK_ID, TEST_READ_WRITE_SIZE);
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if (ret != RT_EOK)
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goto exit;
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exit:
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printf("flash device usage end.\n");
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if (s_flash_t)
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rt_device_close(s_flash_t);
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if (s_write_buf)
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rt_free_align(s_write_buf);
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if (s_read_buf)
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rt_free_align(s_read_buf);
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return -ret;
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}
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MSH_CMD_EXPORT_ALIAS(cmd_spiflash_usage_example, flash_device_usage, Flash block device example);
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