/**
******************************************************************************
* @file User/xxx.c
* @author HUGE-IC Application Team
* @version V1.0.0
* @date 01-08-2023
* @brief Main program body
******************************************************************************
* @attention
*
*
© COPYRIGHT 2018 HUGE-IC
*
*
*
******************************************************************************
*/
#include "typesdef.h"
#include "errno.h"
#include "list.h"
#include "dev.h"
#include "hal/sha.h"
/*
brief:
flags: -> 使用SHA_CALC_LAST_DATA来结束输入产生输出。
*/
int32 sha_calc(struct sha_dev *dev, uint8 input[], uint32 len, enum SHA_CALC_FLAGS flags)
{
if (dev && ((const struct sha_hal_ops *)dev->dev.ops)->calc) {
return ((const struct sha_hal_ops *)dev->dev.ops)->calc(dev,input,len,flags);
}
return RET_ERR;
}
/*
brief: 读取时请确保sha_calc执行成功
*/
int32 sha_read(struct sha_dev *dev, uint8 output[], uint32 timeout)
{
if (dev && ((const struct sha_hal_ops *)dev->dev.ops)->read) {
return ((const struct sha_hal_ops *)dev->dev.ops)->read(dev,output,timeout);
}
return RET_ERR;
}
int32 sha_ioctl(struct sha_dev *dev,uint32 cmd, uint32 para)
{
if(dev && ((const struct sha_hal_ops *)dev->dev.ops)->ioctl) {
return ((const struct sha_hal_ops *)dev->dev.ops)->ioctl(dev,cmd,para);
}
return RET_ERR;
}
int32 sha_init(struct sha_dev *dev, enum SHA_CALC_FLAGS flags)
{
if(dev && ((const struct sha_hal_ops *)dev->dev.ops)->ioctl) {
return ((const struct sha_hal_ops *)dev->dev.ops)->ioctl(dev,SHA_IOCTL_CMD_RESET,flags);
}
return RET_ERR;
}
int32 sha_update(struct sha_dev *dev, uint8 *input, uint32 len)
{
if (dev && ((const struct sha_hal_ops *)dev->dev.ops)->calc) {
return ((const struct sha_hal_ops *)dev->dev.ops)->calc(dev,input,len,0);
}
return RET_ERR;
}
int32 sha_final(struct sha_dev *dev, uint8 *output)
{
uint32 ret = 0;
// if (dev && ((const struct sha_hal_ops *)dev->dev.ops)->calc) {
// ret = ((const struct sha_hal_ops *)dev->dev.ops)->calc(dev,0x38000000,0,SHA_CALC_LAST_DATA);
// }
if (dev && ((const struct sha_hal_ops *)dev->dev.ops)->read) {
ret = ((const struct sha_hal_ops *)dev->dev.ops)->read(dev,output,0);
}
return ret;
}
int32 sha_finup(struct sha_dev *dev, uint8 *input, uint32 len, uint8 *output)
{
uint32 ret = 0;
if (dev && ((const struct sha_hal_ops *)dev->dev.ops)->calc) {
ret = ((const struct sha_hal_ops *)dev->dev.ops)->calc(dev,input,len,0);
}
if (dev && ((const struct sha_hal_ops *)dev->dev.ops)->read) {
ret = ((const struct sha_hal_ops *)dev->dev.ops)->read(dev,output,0);
}
return ret;
}
int32 sha_requset_irq(struct sha_dev *dev,void *irq_handle,void *args)
{
if(dev && ((const struct sha_hal_ops *)dev->dev.ops)->requset_irq) {
return ((const struct sha_hal_ops *)dev->dev.ops)->requset_irq(dev,irq_handle,args);
}
return RET_ERR;
}
int32 sha_release_irq(struct sha_dev *dev)
{
if(dev && ((const struct sha_hal_ops *)dev->dev.ops)->release_irq) {
return ((const struct sha_hal_ops *)dev->dev.ops)->release_irq(dev);
}
return RET_ERR;
}