KL82 LPUART Tx Send Non Blocking and Rx Interrupt

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KL82 LPUART Tx Send Non Blocking and Rx Interrupt

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ronald_j_chasse
Contributor II

I am working on a project with a kl82 frdm board that will use the LPUART API to send "non blocking" data intermittently as well as be able to receive data through interrupt. I am using the LPUART_TransferSendNonBlocking function to send packets of data, but I also want to use the LPUART_IRQHandler whenever a byte is received. It seems that I can use the two separately, but I cannot use them together. I have seen some examples that use the LPUART_TransferReceiveNonBlocking function in order to receive bytes but the packets that are expected to receive are different lengths and I believe the callback function will only trigger once that amount of bytes has been received.

My example provided basically sends 26 bytes using the LPUART_TransferSendNonBlocking function, send one byte in the callback, and repeats every half a second. I want to be able to receive bytes on interrupt though with the LPUART1_IRQHandler function.

If anyone knows why this method doesn't work or knows of a better solution using this API please let me know!

Thanks,

Ronnie

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KATE_WANG
NXP Employee
NXP Employee

Hi

Have you tried using the ring buffer to receive data?

First create handle using LPUART_TransferCreateHandle

For tx, call LPUART_TransferSendNonBlocking to send fixed length of data

For rx, call LPUART_TransferStartRingBuffer to start ring buffer, the received data will be stored in ring buffer first, then if you want to read data from ring buffer, call LPUART_TransferGetRxRingBufferLength to get currently how many data is avaliable in rb(x bytes), then call LPUART_TransferReceiveNonBlocking to read x bytes out of rb.

BR
KATE
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snahmad
Contributor II

Is this solution works?

 

Have you tried using the ring buffer to receive data?

First create handle using LPUART_TransferCreateHandle

For tx, call LPUART_TransferSendNonBlocking to send fixed length of data

For rx, call LPUART_TransferStartRingBuffer to start ring buffer, the received data will be stored in ring buffer first, then if you want to read data from ring buffer, call LPUART_TransferGetRxRingBufferLength to get currently how many data is avaliable in rb(x bytes), then call LPUART_TransferReceiveNonBlocking to read x bytes out of rb.

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kerryzhou
NXP TechSupport
NXP TechSupport
Hi ronald_j_chasse, Do you test this project in the SDK: SDK_2.5.0_FRDM-KL82Z\boards\frdmkl82z\driver_examples\lpuart\interrupt_transfer If you want to use the interrupt to receive the UART data, you need to call the API: LPUART_TransferReceiveNonBlocking You can check this API, this API will also have the enable the receive interrupt code: LPUART_EnableInterrupts(base, kLPUART_RxDataRegFullInterruptEnable); If you don't want to use the API, I think you also can use the register to control it, then write your own ISR interrupt handler code to receive the detail data which you want! Wish it helps you! If you still have questions about it, please kindly let me know! Best Regards, Kerry ------------------------------------------------------------------------------- Note: - If this post answers your question, please click the "Mark Correct" button. Thank you! - We are following threads for 7 weeks after the last post, later replies are ignored Please open a new thread and refer to the closed one, if you have a related question at a later point in time. -----------------------------------------------------------------------------

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ronald_j_chasse
Contributor II

Yes I have looked at this example and seen the function with the following parameters as well: 

LPUART_TransferReceiveNonBlocking(DEMO_LPUART, &g_lpuartHandle, &receiveXfer, NULL);

The problem I have with using this function is that receiveXfer needs a "dataSize" attached to it to indicate how many bytes are to be received before calling the interrupt. The data packets that I expect to receive in my protocol varies from a single byte up to 256 bytes and any in between. I would ideally want to have the interrupt called for each byte or once the last byte is received- but there is no way of knowing when the last byte will be received.

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kerryzhou
NXP TechSupport
NXP TechSupport

Hi ronald_j_chasse,

   Thanks for your updated information.

   If you don't want this type API, and want to receive your own protocol varies from a single bye upto any bytes, I think you can just enable the Receive Interrupt to receive the UART data. Then you can design your own Interrupt ISR, in the UART ISR, you can use the counter to count your received data.

    This is a very common customer's usage.

    From the UART module side, after you enable the UART to receive an interrupt when one UART data is coming, then it will trigger one UART receive interrupt, in the UART ISR, you just need to check whether the interrupt is caused by the received interrupt, then you can do your own code.

   You totally can don't use the LPUART_TransferReceiveNonBlocking API, you can write your own API, just to enable the receive interrupt, then in the ISR do your own code.

 

Wish it helps you!

If you still have questions about it, please kindly let me know!

Best Regards,

Kerry

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- We are following threads for 7 weeks after the last post, later replies are ignored

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ronald_j_chasse
Contributor II

Thanks for your input! I still have some questions though.

I still want to use the LPUART_TransferSendNonBlocking function from the API. I do not know how to use the receive interrupt or create my own ISR for it. I have used the LPUART1_IRQHandler ISR to handle the received bytes, but it seems like I cannot use it while using the LPUART_TransferSendNonBlocking function. I want to be able to use BOTH the LPUART_TransferSendNonBlocking function AND some kind of interrupt for receiving 1 byte at a time.

Thanks!

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kerryzhou
NXP TechSupport
NXP TechSupport

Hi ronald_j_chasse,

   If you want to enable both the TX and RX interrupt, you just need to enable both LPUARTx_CTRL[TIE] and LPUARTx_CTRL[RIE], more details, please check the CTRL register description in the KL82 reference manual.

18.jpg

So, you can use this API:

LPUART_EnableInterrupts(base, kLPUART_TxDataRegEmptyInterruptEnable | kLPUART_RxDataRegFullInterruptEnable);

About the interrupt, please check :

static void HAL_UartInterruptHandle(uint8_t instance)
{
    hal_uart_state_t *uartHandle = s_UartState[instance];
    uint32_t status;

    if (NULL == uartHandle)
    {
        return;
    }

    status = LPUART_GetStatusFlags(s_LpuartAdapterBase[instance]);

    /* Receive data register full */
    if ((LPUART_STAT_RDRF_MASK & status) &&
        (LPUART_GetEnabledInterrupts(s_LpuartAdapterBase[instance]) & kLPUART_RxDataRegFullInterruptEnable))
    {
        if (uartHandle->rx.buffer)
        {
            uartHandle->rx.buffer[uartHandle->rx.bufferSofar++] = LPUART_ReadByte(s_LpuartAdapterBase[instance]);
            if (uartHandle->rx.bufferSofar >= uartHandle->rx.bufferLength)
            {
                LPUART_DisableInterrupts(s_LpuartAdapterBase[instance],
                                         kLPUART_RxDataRegFullInterruptEnable | kLPUART_RxOverrunInterruptEnable);
                if (uartHandle->callback)
                {
                    uartHandle->rx.buffer = NULL;
                    uartHandle->callback(uartHandle, kStatus_HAL_UartRxIdle, uartHandle->callbackParam);
                }
            }
        }
    }

    /* Send data register empty and the interrupt is enabled. */
    if ((LPUART_STAT_TDRE_MASK & status) &&
        (LPUART_GetEnabledInterrupts(s_LpuartAdapterBase[instance]) & kLPUART_TxDataRegEmptyInterruptEnable))
    {
        if (uartHandle->tx.buffer)
        {
            LPUART_WriteByte(s_LpuartAdapterBase[instance], uartHandle->tx.buffer[uartHandle->tx.bufferSofar++]);
            if (uartHandle->tx.bufferSofar >= uartHandle->tx.bufferLength)
            {
                LPUART_DisableInterrupts(s_LpuartAdapterBase[uartHandle->instance],
                                         kLPUART_TxDataRegEmptyInterruptEnable);
                if (uartHandle->callback)
                {
                    uartHandle->tx.buffer = NULL;
                    uartHandle->callback(uartHandle, kStatus_HAL_UartTxIdle, uartHandle->callbackParam);
                }
            }
        }
    }

#if 1
    LPUART_ClearStatusFlags(s_LpuartAdapterBase[instance], status);
#endif
}
#endif

#endif

You also can do the operation in the callback function.

 

Wish it helps you!

If you still have questions about it, please kindly let me know!

Best Regards,

Kerry

-------------------------------------------------------------------------------

Note:

- If this post answers your question, please click the "Mark Correct" button. Thank you!

 

- We are following threads for 7 weeks after the last post, later replies are ignored

Please open a new thread and refer to the closed one, if you have a related question at a later point in time.

-----------------------------------------------------------------------------

 

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snahmad
Contributor II

Hi Kerry,

 

Give me Example project which do send and receive non blocking uart using Its own interrupt handler.

In which I can count how many byes received/read.

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kerryzhou
NXP TechSupport
NXP TechSupport

Hi @snahmad ,

   If you have any kinetis issues, please create your own question post, then our kinetis engineer will help you in your own post, thanks.

  I don't support the kinetis product now, but my kinetis colleague will help you in your new question post.

 

Best Regards,

kerry

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snahmad
Contributor II

Can someone full example project for rx count using interrupt handler.

 

 

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