Files
TencentOS-tiny/components/ota/common/flash/ota_flash.c
daishengdong 5b51d50ade add ota algorithm for device
1. effective "Differential Upgrade" patch algorithm with high compression rate
2. effective recovery algorithm support recovery firmware in blocks which has low memory consumption and wear-leveling strategies, especially suitable for embeded devices with low RAM.
3. add sample ota bootloader project, see:
board\TencentOS_tiny_EVB_MX_Plus\KEIL\ota\ota_bootloader_recovery
4. add sample application project for download firmware through http, see:
board\TencentOS_tiny_EVB_MX_Plus\KEIL\ota\ota_application_download_through_http
5. add sample application project for download firmware through qcloud explorer console, see:
board\TencentOS_tiny_EVB_MX_Plus\KEIL\ota\ota_application_download_through_qcloud_iot_explorer
6. an OTA markdown document is pending
2020-06-02 15:03:42 +08:00

84 lines
2.6 KiB
C

/*----------------------------------------------------------------------------
* Tencent is pleased to support the open source community by making TencentOS
* available.
*
* Copyright (C) 2019 THL A29 Limited, a Tencent company. All rights reserved.
* If you have downloaded a copy of the TencentOS binary from Tencent, please
* note that the TencentOS binary is licensed under the BSD 3-Clause License.
*
* If you have downloaded a copy of the TencentOS source code from Tencent,
* please note that TencentOS source code is licensed under the BSD 3-Clause
* License, except for the third-party components listed below which are
* subject to different license terms. Your integration of TencentOS into your
* own projects may require compliance with the BSD 3-Clause License, as well
* as the other licenses applicable to the third-party components included
* within TencentOS.
*---------------------------------------------------------------------------*/
#include "ota_flash.h"
static ota_flash_ctl_t flash_ctl;
int ota_flash_init(ota_flash_drv_t *flash_drv, ota_flash_prop_t *flash_prop)
{
if (!flash_drv || !flash_prop) {
return -1;
}
memcpy(&flash_ctl.flash_drv, flash_drv, sizeof(ota_flash_drv_t));
OTA_FLASH_SECTOR_SIZE_LOG2 = flash_prop->sector_size_log2;
if (flash_prop->pgm_type == OTA_FLASH_PROGRAM_TYPE_BYTE) {
OTA_FLASH_WRITE_ALIGN = sizeof(ota_byte_t);
} else if (flash_prop->pgm_type == OTA_FLASH_PROGRAM_TYPE_HALFWORD) {
OTA_FLASH_WRITE_ALIGN = sizeof(ota_hword_t);
} else if (flash_prop->pgm_type == OTA_FLASH_PROGRAM_TYPE_WORD) {
OTA_FLASH_WRITE_ALIGN = sizeof(ota_word_t);
} else if (flash_prop->pgm_type == OTA_FLASH_PROGRAM_TYPE_DOUBLEWORD) {
OTA_FLASH_WRITE_ALIGN = sizeof(ota_dword_t);
}
return 0;
}
int ota_flash_read(uint32_t addr, void *buf, size_t buf_size)
{
if (OTA_FLASH_READ(addr, buf, buf_size) < 0) {
return -1;
}
return 0;
}
int ota_flash_write(uint32_t addr, void *buf, size_t buf_size)
{
if (OTA_FLASH_WRITE(addr, buf, buf_size) < 0) {
return -1;
}
return 0;
}
int ota_flash_erase(uint32_t start, size_t len)
{
if (OTA_FLASH_ERASE(start, len) < 0) {
return -1;
}
return 0;
}
int ota_flash_erase_blocks(uint32_t start, size_t len)
{
return ota_flash_erase(start, OTA_ALIGN_UP(len, OTA_FLASH_SECTOR_SIZE));
}
size_t ota_flash_write_size_aligned_get(size_t len)
{
return OTA_ALIGN_UP(len, OTA_FLASH_WRITE_ALIGN);
}
int ota_flash_size_is_aligned(size_t len)
{
return OTA_IS_ALINGED(len, OTA_FLASH_WRITE_ALIGN);
}