RE: [PATCH] i2c: imx: add I2C_M_REV_DIR_ADDR and I2C_M_NOSTART

"Carlos Song (OSS)" <[email protected]>
Newsgroups dev.linux.lists.imx,org.infradead.lists.linux-arm-kernel,org.kernel.vger.linux-i2c,org.kernel.vger.linux-kernel
Message-ID <AM0PR04MB6802658862C4E2ED8628FFA8E8DD2@AM0PR04MB6802.eurprd04.prod.outlook.com>

> -----Original Message-----
> From: Vincent Jardin via B4 Relay <[email protected]>
> Sent: Friday, August 7, 2026 6:38 AM
> To: Oleksij Rempel <[email protected]>; Pengutronix Kernel Team
> <[email protected]>; Andi Shyti <[email protected]>; Frank Li
> <[email protected]>; Sascha Hauer <[email protected]>; Fabio
> Estevam <[email protected]>
> Cc: [email protected]; [email protected];
> [email protected]; [email protected]; Vincent
> Jardin <[email protected]>
> Subject: [PATCH] i2c: imx: add I2C_M_REV_DIR_ADDR and I2C_M_NOSTART
> 
> From: Vincent Jardin <[email protected]>
> 
> The Realtek RTL8366SE SMI read frame per:
> 
>   S Addr Rd [A] reg[7:0] [A] reg[15:8] [A] [data[7:0]] A [data[15:8]] NA P
> 
> Linux support it using I2C_M_REV_DIR_ADDR on a write message that inverts
> the transmitted R/W bit, and I2C_M_NOSTART on the following read message
> that continues the frame without re-addressing.
> 
> This NXP i2c-imx is missing such support, so on an LX2160A the Realtek switch
> could not be used.
>


Hi, Vincent,

Thank you very much for your fix. Sorry for late ack.

This is a such rare i2c frame design in the Realtek RTL8366SE SMI read frame, right?

So you add I2C_FUNC_NOSTART | I2C_FUNC_PROTOCOL_MANGLING in i2c imx functionality.
Then support I2C_M_REV_DIR_ADDR flag check to flip read/write bit and support I2C_M_NOSTART to skip the
next start head, right? Have you test this i2c-imx feature in your LS board with RTL8366SE?

Is Realtek RTL8366SE SMI driver upstream? Can I found the driver?
I want to see this driver how to prepare and handle the i2c msg in this special frame.

Carlos Song
> Signed-off-by: Vincent Jardin <[email protected]>
> ---
> Follow the logics from i2c-algo-bit and i2c-s3c2410 (addr ^= 1).
> 
> Documentation/i2c/i2c-protocol.rst says I2C_M_NOSTART "may also be used
> between direction changes by some rare devices"; the RTL8366SE is one of
> such device !
> 
> - The NOSTART read turns the bus around without waiting for a completion,
>   because the controller stretches SCL after the previous byte and the
>   frame is therefore still open. That is what lets i2c_imx_read() enter
>   the state the ISR would otherwise have moved to.
> 
> - I2C_FUNC_PROTOCOL_MANGLING also covers I2C_M_IGNORE_NAK,
>   I2C_M_NO_RD_ACK and I2C_M_STOP, which this driver does not
> implement.
>   They are rejected with -EOPNOTSUPP rather than advertised and silently
>   ignored. I2C_M_NOSTART on the first message is rejected as well.
> ---
>  drivers/i2c/busses/i2c-imx.c | 143
> +++++++++++++++++++++++++++++++------------
>  1 file changed, 103 insertions(+), 40 deletions(-)
> 
> diff --git a/drivers/i2c/busses/i2c-imx.c b/drivers/i2c/busses/i2c-imx.c index
> 9477d814fde9..81c1bd461606 100644
> --- a/drivers/i2c/busses/i2c-imx.c
> +++ b/drivers/i2c/busses/i2c-imx.c
> @@ -1000,16 +1000,10 @@ static inline int i2c_imx_isr_write(struct
> imx_i2c_struct *i2c_imx)
>  	return 1;
>  }
> 
> -static inline int i2c_imx_isr_read(struct imx_i2c_struct *i2c_imx)
> +static inline void i2c_imx_setup_read(struct imx_i2c_struct *i2c_imx)
>  {
> -	int result;
>  	unsigned int temp;
> 
> -	result = i2c_imx_isr_acked(i2c_imx);
> -	if (result)
> -		return result;
> -
> -	/* setup bus to read data */
>  	temp = imx_i2c_read_reg(i2c_imx, IMX_I2C_I2CR);
>  	temp &= ~I2CR_MTX;
>  	if ((i2c_imx->msg->len - 1) || (i2c_imx->msg->flags & I2C_M_RECV_LEN))
> @@ -1017,6 +1011,18 @@ static inline int i2c_imx_isr_read(struct
> imx_i2c_struct *i2c_imx)
> 
>  	imx_i2c_write_reg(temp, i2c_imx, IMX_I2C_I2CR);
>  	imx_i2c_read_reg(i2c_imx, IMX_I2C_I2DR); /* dummy read */
> +}
> +
> +static inline int i2c_imx_isr_read(struct imx_i2c_struct *i2c_imx) {
> +	int result;
> +
> +	result = i2c_imx_isr_acked(i2c_imx);
> +	if (result)
> +		return result;
> +
> +	/* setup bus to read data */
> +	i2c_imx_setup_read(i2c_imx);
> 
>  	return 0;
>  }
> @@ -1172,6 +1178,16 @@ static irqreturn_t i2c_imx_isr(int irq, void *dev_id)
>  	return i2c_imx_master_isr(i2c_imx, status);  }
> 
> +static u8 i2c_imx_addr_byte(struct i2c_msg *msg) {
> +	u8 addr = i2c_8bit_addr_from_msg(msg);
> +
> +	if (msg->flags & I2C_M_REV_DIR_ADDR)
> +		addr ^= 1;
> +
> +	return addr;
> +}
> +
>  static int i2c_imx_dma_write(struct imx_i2c_struct *i2c_imx,
>  					struct i2c_msg *msgs)
>  {
> @@ -1200,7 +1216,7 @@ static int i2c_imx_dma_write(struct imx_i2c_struct
> *i2c_imx,
>  	 * Write slave address.
>  	 * The first byte must be transmitted by the CPU.
>  	 */
> -	imx_i2c_write_reg(i2c_8bit_addr_from_msg(msgs), i2c_imx,
> IMX_I2C_I2DR);
> +	imx_i2c_write_reg(i2c_imx_addr_byte(msgs), i2c_imx, IMX_I2C_I2DR);
>  	time_left = wait_for_completion_timeout(
>  				&i2c_imx->dma->cmd_complete,
>  				msecs_to_jiffies(DMA_TIMEOUT));
> @@ -1242,14 +1258,20 @@ static int i2c_imx_prepare_read(struct
> imx_i2c_struct *i2c_imx,
>  	int result;
>  	unsigned int temp = 0;
> 
> -	/* write slave address */
> -	imx_i2c_write_reg(i2c_8bit_addr_from_msg(msgs), i2c_imx,
> IMX_I2C_I2DR);
> -	result = i2c_imx_trx_complete(i2c_imx, !use_dma);
> -	if (result)
> -		return result;
> -	result = i2c_imx_acked(i2c_imx);
> -	if (result)
> -		return result;
> +	/*
> +	 * I2C_M_NOSTART continues a frame that is already open, so there is
> +	 * no address phase: go straight to turning the bus around.
> +	 */
> +	if (!(msgs->flags & I2C_M_NOSTART)) {
> +		/* write slave address */
> +		imx_i2c_write_reg(i2c_imx_addr_byte(msgs), i2c_imx,
> IMX_I2C_I2DR);
> +		result = i2c_imx_trx_complete(i2c_imx, !use_dma);
> +		if (result)
> +			return result;
> +		result = i2c_imx_acked(i2c_imx);
> +		if (result)
> +			return result;
> +	}
> 
>  	dev_dbg(&i2c_imx->adapter.dev, "<%s> setup bus\n", __func__);
> 
> @@ -1371,16 +1393,18 @@ static int i2c_imx_atomic_write(struct
> imx_i2c_struct *i2c_imx,
>  	int i, result;
> 
>  	dev_dbg(&i2c_imx->adapter.dev, "<%s> write slave address:
> addr=0x%x\n",
> -		__func__, i2c_8bit_addr_from_msg(msgs));
> +		__func__, i2c_imx_addr_byte(msgs));
> 
> -	/* write slave address */
> -	imx_i2c_write_reg(i2c_8bit_addr_from_msg(msgs), i2c_imx,
> IMX_I2C_I2DR);
> -	result = i2c_imx_trx_complete(i2c_imx, true);
> -	if (result)
> -		return result;
> -	result = i2c_imx_acked(i2c_imx);
> -	if (result)
> -		return result;
> +	if (!(msgs->flags & I2C_M_NOSTART)) {
> +		/* write slave address */
> +		imx_i2c_write_reg(i2c_imx_addr_byte(msgs), i2c_imx,
> IMX_I2C_I2DR);
> +		result = i2c_imx_trx_complete(i2c_imx, true);
> +		if (result)
> +			return result;
> +		result = i2c_imx_acked(i2c_imx);
> +		if (result)
> +			return result;
> +	}
>  	dev_dbg(&i2c_imx->adapter.dev, "<%s> write data\n", __func__);
> 
>  	/* write data */
> @@ -1402,7 +1426,7 @@ static int i2c_imx_atomic_write(struct
> imx_i2c_struct *i2c_imx,  static int i2c_imx_write(struct imx_i2c_struct
> *i2c_imx, struct i2c_msg *msgs)  {
>  	dev_dbg(&i2c_imx->adapter.dev, "<%s> write slave address:
> addr=0x%x\n",
> -		__func__, i2c_8bit_addr_from_msg(msgs));
> +		__func__, i2c_imx_addr_byte(msgs));
> 
>  	i2c_imx->state = IMX_I2C_STATE_WRITE;
>  	i2c_imx->msg = msgs;
> @@ -1411,8 +1435,16 @@ static int i2c_imx_write(struct imx_i2c_struct
> *i2c_imx, struct i2c_msg *msgs)
>  	/*
>  	 * By writing the device address we start the state machine in the ISR.
>  	 * The ISR will report when it is done or when it fails.
> +	 *
> +	 * I2C_M_NOSTART continues a frame that is already open and so has
> no
> +	 * address byte: push the first data byte instead. That raises the same
> +	 * interrupt and the ISR carries on from the second byte.
>  	 */
> -	imx_i2c_write_reg(i2c_8bit_addr_from_msg(msgs), i2c_imx,
> IMX_I2C_I2DR);
> +	if (msgs->flags & I2C_M_NOSTART)
> +		imx_i2c_write_reg(msgs->buf[i2c_imx->msg_buf_idx++], i2c_imx,
> +				  IMX_I2C_I2DR);
> +	else
> +		imx_i2c_write_reg(i2c_imx_addr_byte(msgs), i2c_imx,
> IMX_I2C_I2DR);
>  	wait_event_timeout(i2c_imx->queue,
>  			   i2c_imx->state == IMX_I2C_STATE_DONE ||
>  			   i2c_imx->state == IMX_I2C_STATE_FAILED, @@ -1529,22
> +1561,29 @@ static int i2c_imx_read(struct imx_i2c_struct *i2c_imx, struct
> i2c_msg *msgs,
> 
>  	dev_dbg(&i2c_imx->adapter.dev,
>  		"<%s> write slave address: addr=0x%x\n",
> -		__func__, i2c_8bit_addr_from_msg(msgs));
> +		__func__, i2c_imx_addr_byte(msgs));
> 
>  	i2c_imx->is_lastmsg = is_lastmsg;
> 
> -	if (block_data)
> -		i2c_imx->state = IMX_I2C_STATE_READ_BLOCK_DATA;
> -	else
> -		i2c_imx->state = IMX_I2C_STATE_READ;
>  	i2c_imx->msg = msgs;
>  	i2c_imx->msg_buf_idx = 0;
> 
> -	/*
> -	 * By writing the device address we start the state machine in the ISR.
> -	 * The ISR will report when it is done or when it fails.
> -	 */
> -	imx_i2c_write_reg(i2c_8bit_addr_from_msg(msgs), i2c_imx,
> IMX_I2C_I2DR);
> +	if (msgs->flags & I2C_M_NOSTART) {
> +		i2c_imx->state = block_data ?
> IMX_I2C_STATE_READ_BLOCK_DATA_LEN
> +					    : IMX_I2C_STATE_READ_CONTINUE;
> +		i2c_imx_setup_read(i2c_imx);
> +	} else {
> +		if (block_data)
> +			i2c_imx->state = IMX_I2C_STATE_READ_BLOCK_DATA;
> +		else
> +			i2c_imx->state = IMX_I2C_STATE_READ;
> +
> +		/*
> +		 * By writing the device address we start the state machine in the
> ISR.
> +		 * The ISR will report when it is done or when it fails.
> +		 */
> +		imx_i2c_write_reg(i2c_imx_addr_byte(msgs), i2c_imx,
> IMX_I2C_I2DR);
> +	}
>  	wait_event_timeout(i2c_imx->queue,
>  			   i2c_imx->state == IMX_I2C_STATE_DONE ||
>  			   i2c_imx->state == IMX_I2C_STATE_FAILED, @@ -1583,6
> +1622,27 @@ static int i2c_imx_xfer_common(struct i2c_adapter *adapter,
>  	struct imx_i2c_struct *i2c_imx = i2c_get_adapdata(adapter);
>  	int use_dma = 0;
> 
> +	for (i = 0; i < num; i++) {
> +		/*
> +		 * I2C_FUNC_PROTOCOL_MANGLING is advertised for
> +		 * I2C_M_REV_DIR_ADDR only; reject the flags it also covers but
> +		 * that this driver does not implement, rather than silently
> +		 * transferring something the caller did not ask for.
> +		 */
> +		if (msgs[i].flags & (I2C_M_IGNORE_NAK | I2C_M_NO_RD_ACK |
> +				     I2C_M_STOP))
> +			return -EOPNOTSUPP;
> +
> +		if (!(msgs[i].flags & I2C_M_NOSTART))
> +			continue;
> +
> +		/* Nothing to continue from, and a zero-length continuation
> +		 * would leave the controller with no byte to clock.
> +		 */
> +		if (i == 0 || msgs[i].len == 0)
> +			return -EOPNOTSUPP;
> +	}
> +
>  	/* Start I2C transfer */
>  	result = i2c_imx_start(i2c_imx, atomic);
>  	if (result) {
> @@ -1604,7 +1664,7 @@ static int i2c_imx_xfer_common(struct i2c_adapter
> *adapter,
>  		if (i == num - 1)
>  			is_lastmsg = true;
> 
> -		if (i) {
> +		if (i && !(msgs[i].flags & I2C_M_NOSTART)) {
>  			dev_dbg(&i2c_imx->adapter.dev,
>  				"<%s> repeated start\n", __func__);
>  			temp = imx_i2c_read_reg(i2c_imx, IMX_I2C_I2CR); @@
> -1636,7 +1696,8 @@ static int i2c_imx_xfer_common(struct i2c_adapter
> *adapter,  #endif
> 
>  		use_dma = i2c_imx->dma && msgs[i].len >= DMA_THRESHOLD &&
> -			msgs[i].flags & I2C_M_DMA_SAFE;
> +			msgs[i].flags & I2C_M_DMA_SAFE &&
> +			!(msgs[i].flags & I2C_M_NOSTART);
>  		if (msgs[i].flags & I2C_M_RD) {
>  			int block_data = msgs->flags & I2C_M_RECV_LEN;
> 
> @@ -1730,7 +1791,9 @@ static int i2c_imx_init_recovery_info(struct
> imx_i2c_struct *i2c_imx,  static u32 i2c_imx_func(struct i2c_adapter
> *adapter)  {
>  	return I2C_FUNC_I2C | I2C_FUNC_SMBUS_EMUL
> -		| I2C_FUNC_SMBUS_READ_BLOCK_DATA;
> +		| I2C_FUNC_SMBUS_READ_BLOCK_DATA
> +		| I2C_FUNC_NOSTART
> +		| I2C_FUNC_PROTOCOL_MANGLING;
>  }
> 
>  static const struct i2c_algorithm i2c_imx_algo = {
> 
> ---
> base-commit: 6c68fa601b49683ecb04eded993a71dfa8b2ba0b
> change-id: 20260807-for-upstream-i2c-imx-lx2160-reverse-7a94b9561188
> 
> Best regards,
> --
> Vincent Jardin <[email protected]>
> 
>
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