315 lines
7.9 KiB
C
315 lines
7.9 KiB
C
/**
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* \file
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*
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* \brief Flash functionality implementation.
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*
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* Copyright (c) 2015-2018 Microchip Technology Inc. and its subsidiaries.
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*
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* \asf_license_start
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*
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* \page License
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*
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* Subject to your compliance with these terms, you may use Microchip
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* software and any derivatives exclusively with Microchip products.
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* It is your responsibility to comply with third party license terms applicable
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* to your use of third party software (including open source software) that
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* may accompany Microchip software.
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*
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* THIS SOFTWARE IS SUPPLIED BY MICROCHIP "AS IS". NO WARRANTIES,
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* WHETHER EXPRESS, IMPLIED OR STATUTORY, APPLY TO THIS SOFTWARE,
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* INCLUDING ANY IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY,
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* AND FITNESS FOR A PARTICULAR PURPOSE. IN NO EVENT WILL MICROCHIP BE
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* LIABLE FOR ANY INDIRECT, SPECIAL, PUNITIVE, INCIDENTAL OR CONSEQUENTIAL
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* LOSS, DAMAGE, COST OR EXPENSE OF ANY KIND WHATSOEVER RELATED TO THE
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* SOFTWARE, HOWEVER CAUSED, EVEN IF MICROCHIP HAS BEEN ADVISED OF THE
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* POSSIBILITY OR THE DAMAGES ARE FORESEEABLE. TO THE FULLEST EXTENT
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* ALLOWED BY LAW, MICROCHIP'S TOTAL LIABILITY ON ALL CLAIMS IN ANY WAY
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* RELATED TO THIS SOFTWARE WILL NOT EXCEED THE AMOUNT OF FEES, IF ANY,
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* THAT YOU HAVE PAID DIRECTLY TO MICROCHIP FOR THIS SOFTWARE.
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*
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* \asf_license_stop
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*
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*/
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#include "hal_flash.h"
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#include <utils_assert.h>
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#include <utils.h>
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#include <hal_atomic.h>
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/**
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* \brief Driver version
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*/
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#define DRIVER_VERSION 0x00000001u
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static void flash_ready(struct _flash_device *device);
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static void flash_error(struct _flash_device *device);
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static int32_t flash_is_address_aligned(struct flash_descriptor *flash, const uint32_t flash_addr);
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/**
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* \brief Initialize the FLASH HAL instance and hardware for callback mode.
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*/
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int32_t flash_init(struct flash_descriptor *flash, void *const hw)
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{
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int32_t rc;
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ASSERT(flash && hw);
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rc = _flash_init(&flash->dev, hw);
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if (rc) {
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return rc;
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}
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flash->dev.flash_cb.ready_cb = flash_ready;
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flash->dev.flash_cb.error_cb = flash_error;
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return ERR_NONE;
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}
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/**
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* \brief Deinitialize the FLASH HAL instance.
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*/
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int32_t flash_deinit(struct flash_descriptor *flash)
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{
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ASSERT(flash);
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_flash_deinit(&flash->dev);
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return ERR_NONE;
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}
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/**
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* \brief Reads a number of bytes to a page in the internal Flash
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*/
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int32_t flash_read(struct flash_descriptor *flash, uint32_t src_addr, uint8_t *buffer, uint32_t length)
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{
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ASSERT(flash && buffer && length);
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uint32_t page_size = _flash_get_page_size(&flash->dev);
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uint32_t total_pages = _flash_get_total_pages(&flash->dev);
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/* Check if the address is valid */
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if ((src_addr > page_size * total_pages) || (src_addr + length > page_size * total_pages)) {
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return ERR_BAD_ADDRESS;
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}
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_flash_read(&flash->dev, src_addr, buffer, length);
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return ERR_NONE;
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}
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/**
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* \brief Updates several bytes to the internal Flash
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*/
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int32_t flash_write(struct flash_descriptor *flash, uint32_t dst_addr, uint8_t *buffer, uint32_t length)
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{
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ASSERT(flash && buffer && length);
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uint32_t page_size = _flash_get_page_size(&flash->dev);
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uint32_t total_pages = _flash_get_total_pages(&flash->dev);
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/* Check if the address is valid */
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if ((dst_addr > page_size * total_pages) || (dst_addr + length > page_size * total_pages)) {
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return ERR_BAD_ADDRESS;
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}
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if (_flash_is_locked(&flash->dev, dst_addr)) {
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return ERR_DENIED;
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}
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_flash_write(&flash->dev, dst_addr, buffer, length);
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return ERR_NONE;
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}
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/**
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* \brief Appends a number of bytes to a page in the internal Flash
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*/
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int32_t flash_append(struct flash_descriptor *flash, uint32_t dst_addr, uint8_t *buffer, uint32_t length)
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{
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ASSERT(flash && buffer && length);
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uint32_t page_size = _flash_get_page_size(&flash->dev);
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uint32_t total_pages = _flash_get_total_pages(&flash->dev);
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/* Check if the address is valid */
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if ((dst_addr > page_size * total_pages) || (dst_addr + length > page_size * total_pages)) {
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return ERR_BAD_ADDRESS;
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}
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if (_flash_is_locked(&flash->dev, dst_addr)) {
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return ERR_DENIED;
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}
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_flash_append(&flash->dev, dst_addr, buffer, length);
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return ERR_NONE;
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}
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/**
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* \brief Execute erase in the internal flash
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*/
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int32_t flash_erase(struct flash_descriptor *flash, const uint32_t dst_addr, const uint32_t page_nums)
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{
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ASSERT(flash && page_nums);
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uint32_t page_size = _flash_get_page_size(&flash->dev);
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uint32_t total_pages = _flash_get_total_pages(&flash->dev);
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int32_t rc;
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rc = flash_is_address_aligned(flash, dst_addr);
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if (rc) {
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return rc;
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}
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if ((page_nums > total_pages) || (dst_addr / page_size + page_nums > total_pages)) {
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return ERR_INVALID_ARG;
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}
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_flash_erase(&flash->dev, dst_addr, page_nums);
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return ERR_NONE;
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}
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/**
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* \brief Register a function as FLASH transfer completion callback
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*/
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int32_t flash_register_callback(struct flash_descriptor *flash, const enum flash_cb_type type, flash_cb_t func)
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{
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ASSERT(flash);
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switch (type) {
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case FLASH_CB_READY:
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flash->callbacks.cb_ready = func;
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break;
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case FLASH_CB_ERROR:
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flash->callbacks.cb_error = func;
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break;
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default:
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return ERR_INVALID_ARG;
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}
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_flash_set_irq_state(&flash->dev, (enum _flash_cb_type)type, NULL != func);
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return ERR_NONE;
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}
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/**
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* \brief Execute lock in the internal flash
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*/
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int32_t flash_lock(struct flash_descriptor *flash, const uint32_t dst_addr, const uint32_t page_nums)
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{
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ASSERT(flash && page_nums);
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uint32_t page_size = _flash_get_page_size(&flash->dev);
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uint32_t total_pages = _flash_get_total_pages(&flash->dev);
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int32_t rc;
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rc = flash_is_address_aligned(flash, dst_addr);
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if (rc) {
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return rc;
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}
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if ((page_nums > total_pages) || (dst_addr / page_size + page_nums > total_pages)) {
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return ERR_INVALID_ARG;
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}
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return _flash_lock(&flash->dev, dst_addr, page_nums);
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}
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/**
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* \brief Execute unlock in the internal flash
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*/
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int32_t flash_unlock(struct flash_descriptor *flash, const uint32_t dst_addr, const uint32_t page_nums)
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{
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ASSERT(flash && page_nums);
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uint32_t page_size = _flash_get_page_size(&flash->dev);
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uint32_t total_pages = _flash_get_total_pages(&flash->dev);
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int32_t rc;
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rc = flash_is_address_aligned(flash, dst_addr);
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if (rc) {
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return rc;
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}
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if ((page_nums > total_pages) || (dst_addr / page_size + page_nums > total_pages)) {
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return ERR_INVALID_ARG;
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}
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return _flash_unlock(&flash->dev, dst_addr, page_nums);
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}
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/**
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* \brief Get the flash page size.
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*/
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uint32_t flash_get_page_size(struct flash_descriptor *flash)
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{
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ASSERT(flash);
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return _flash_get_page_size(&flash->dev);
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}
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/**
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* \brief Get the numbers of flash page.
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*/
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uint32_t flash_get_total_pages(struct flash_descriptor *flash)
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{
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ASSERT(flash);
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return _flash_get_total_pages(&flash->dev);
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}
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/**
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* \brief Retrieve the current driver version
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*/
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uint32_t flash_get_version(void)
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{
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return DRIVER_VERSION;
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}
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/**
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* \internal check the address whether it is aligned
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* \param[in, out] flash Pointer to the HAL FLASH instance.
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* \param[in] flash_addr address to be check in flash
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*
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* \return whether it is valid
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* \retval 0 Valid.
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* \retval -1 Error, invalid.
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*/
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static int32_t flash_is_address_aligned(struct flash_descriptor *flash, const uint32_t flash_addr)
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{
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ASSERT(flash);
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uint32_t page_size = _flash_get_page_size(&flash->dev);
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/* Check if the read address not aligned to the start of a page */
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if (flash_addr & (page_size - 1)) {
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return ERR_BAD_ADDRESS;
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}
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return ERR_NONE;
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}
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/**
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* \internal Ready for a new flash command
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*
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* \param[in] device The pointer to flash device structure
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*/
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static void flash_ready(struct _flash_device *device)
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{
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struct flash_descriptor *const descr = CONTAINER_OF(device, struct flash_descriptor, dev);
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if (descr->callbacks.cb_ready) {
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descr->callbacks.cb_ready(descr);
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}
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}
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/**
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* \internal Error occurs in flash command
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*
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* \param[in] device The pointer to flash device structure
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*/
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static void flash_error(struct _flash_device *device)
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{
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struct flash_descriptor *const descr = CONTAINER_OF(device, struct flash_descriptor, dev);
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if (descr->callbacks.cb_error) {
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descr->callbacks.cb_error(descr);
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}
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}
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