imx.c 41.6 KB
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/*
 *  Driver for Motorola IMX serial ports
 *
 *  Based on drivers/char/serial.c, by Linus Torvalds, Theodore Ts'o.
 *
 *  Author: Sascha Hauer <sascha@saschahauer.de>
 *  Copyright (C) 2004 Pengutronix
 *
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 *  Copyright (C) 2009 emlix GmbH
 *  Author: Fabian Godehardt (added IrDA support for iMX)
 *
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 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * (at your option) any later version.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
 *
 * [29-Mar-2005] Mike Lee
 * Added hardware handshake
 */

#if defined(CONFIG_SERIAL_IMX_CONSOLE) && defined(CONFIG_MAGIC_SYSRQ)
#define SUPPORT_SYSRQ
#endif

#include <linux/module.h>
#include <linux/ioport.h>
#include <linux/init.h>
#include <linux/console.h>
#include <linux/sysrq.h>
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#include <linux/platform_device.h>
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#include <linux/tty.h>
#include <linux/tty_flip.h>
#include <linux/serial_core.h>
#include <linux/serial.h>
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#include <linux/clk.h>
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#include <linux/delay.h>
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#include <linux/rational.h>
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#include <linux/slab.h>
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#include <linux/of.h>
#include <linux/of_device.h>
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#include <linux/pinctrl/consumer.h>
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#include <linux/io.h>
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#include <asm/irq.h>
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#include <linux/platform_data/serial-imx.h>
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/* Register definitions */
#define URXD0 0x0  /* Receiver Register */
#define URTX0 0x40 /* Transmitter Register */
#define UCR1  0x80 /* Control Register 1 */
#define UCR2  0x84 /* Control Register 2 */
#define UCR3  0x88 /* Control Register 3 */
#define UCR4  0x8c /* Control Register 4 */
#define UFCR  0x90 /* FIFO Control Register */
#define USR1  0x94 /* Status Register 1 */
#define USR2  0x98 /* Status Register 2 */
#define UESC  0x9c /* Escape Character Register */
#define UTIM  0xa0 /* Escape Timer Register */
#define UBIR  0xa4 /* BRM Incremental Register */
#define UBMR  0xa8 /* BRM Modulator Register */
#define UBRC  0xac /* Baud Rate Count Register */
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#define IMX21_ONEMS 0xb0 /* One Millisecond register */
#define IMX1_UTS 0xd0 /* UART Test Register on i.mx1 */
#define IMX21_UTS 0xb4 /* UART Test Register on all other i.mx*/
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/* UART Control Register Bit Fields.*/
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#define URXD_CHARRDY	(1<<15)
#define URXD_ERR	(1<<14)
#define URXD_OVRRUN	(1<<13)
#define URXD_FRMERR	(1<<12)
#define URXD_BRK	(1<<11)
#define URXD_PRERR	(1<<10)
#define UCR1_ADEN	(1<<15) /* Auto detect interrupt */
#define UCR1_ADBR	(1<<14) /* Auto detect baud rate */
#define UCR1_TRDYEN	(1<<13) /* Transmitter ready interrupt enable */
#define UCR1_IDEN	(1<<12) /* Idle condition interrupt */
#define UCR1_RRDYEN	(1<<9)	/* Recv ready interrupt enable */
#define UCR1_RDMAEN	(1<<8)	/* Recv ready DMA enable */
#define UCR1_IREN	(1<<7)	/* Infrared interface enable */
#define UCR1_TXMPTYEN	(1<<6)	/* Transimitter empty interrupt enable */
#define UCR1_RTSDEN	(1<<5)	/* RTS delta interrupt enable */
#define UCR1_SNDBRK	(1<<4)	/* Send break */
#define UCR1_TDMAEN	(1<<3)	/* Transmitter ready DMA enable */
#define IMX1_UCR1_UARTCLKEN (1<<2) /* UART clock enabled, i.mx1 only */
#define UCR1_DOZE	(1<<1)	/* Doze */
#define UCR1_UARTEN	(1<<0)	/* UART enabled */
#define UCR2_ESCI	(1<<15)	/* Escape seq interrupt enable */
#define UCR2_IRTS	(1<<14)	/* Ignore RTS pin */
#define UCR2_CTSC	(1<<13)	/* CTS pin control */
#define UCR2_CTS	(1<<12)	/* Clear to send */
#define UCR2_ESCEN	(1<<11)	/* Escape enable */
#define UCR2_PREN	(1<<8)	/* Parity enable */
#define UCR2_PROE	(1<<7)	/* Parity odd/even */
#define UCR2_STPB	(1<<6)	/* Stop */
#define UCR2_WS		(1<<5)	/* Word size */
#define UCR2_RTSEN	(1<<4)	/* Request to send interrupt enable */
#define UCR2_ATEN	(1<<3)	/* Aging Timer Enable */
#define UCR2_TXEN	(1<<2)	/* Transmitter enabled */
#define UCR2_RXEN	(1<<1)	/* Receiver enabled */
#define UCR2_SRST	(1<<0)	/* SW reset */
#define UCR3_DTREN	(1<<13) /* DTR interrupt enable */
#define UCR3_PARERREN	(1<<12) /* Parity enable */
#define UCR3_FRAERREN	(1<<11) /* Frame error interrupt enable */
#define UCR3_DSR	(1<<10) /* Data set ready */
#define UCR3_DCD	(1<<9)	/* Data carrier detect */
#define UCR3_RI		(1<<8)	/* Ring indicator */
#define UCR3_TIMEOUTEN	(1<<7)	/* Timeout interrupt enable */
#define UCR3_RXDSEN	(1<<6)	/* Receive status interrupt enable */
#define UCR3_AIRINTEN	(1<<5)	/* Async IR wake interrupt enable */
#define UCR3_AWAKEN	(1<<4)	/* Async wake interrupt enable */
#define IMX21_UCR3_RXDMUXSEL	(1<<2)	/* RXD Muxed Input Select */
#define UCR3_INVT	(1<<1)	/* Inverted Infrared transmission */
#define UCR3_BPEN	(1<<0)	/* Preset registers enable */
#define UCR4_CTSTL_SHF	10	/* CTS trigger level shift */
#define UCR4_CTSTL_MASK	0x3F	/* CTS trigger is 6 bits wide */
#define UCR4_INVR	(1<<9)	/* Inverted infrared reception */
#define UCR4_ENIRI	(1<<8)	/* Serial infrared interrupt enable */
#define UCR4_WKEN	(1<<7)	/* Wake interrupt enable */
#define UCR4_REF16	(1<<6)	/* Ref freq 16 MHz */
#define UCR4_IRSC	(1<<5)	/* IR special case */
#define UCR4_TCEN	(1<<3)	/* Transmit complete interrupt enable */
#define UCR4_BKEN	(1<<2)	/* Break condition interrupt enable */
#define UCR4_OREN	(1<<1)	/* Receiver overrun interrupt enable */
#define UCR4_DREN	(1<<0)	/* Recv data ready interrupt enable */
#define UFCR_RXTL_SHF	0	/* Receiver trigger level shift */
#define UFCR_DCEDTE	(1<<6)	/* DCE/DTE mode select */
#define UFCR_RFDIV	(7<<7)	/* Reference freq divider mask */
#define UFCR_RFDIV_REG(x)	(((x) < 7 ? 6 - (x) : 6) << 7)
#define UFCR_TXTL_SHF	10	/* Transmitter trigger level shift */
#define USR1_PARITYERR	(1<<15) /* Parity error interrupt flag */
#define USR1_RTSS	(1<<14) /* RTS pin status */
#define USR1_TRDY	(1<<13) /* Transmitter ready interrupt/dma flag */
#define USR1_RTSD	(1<<12) /* RTS delta */
#define USR1_ESCF	(1<<11) /* Escape seq interrupt flag */
#define USR1_FRAMERR	(1<<10) /* Frame error interrupt flag */
#define USR1_RRDY	(1<<9)	 /* Receiver ready interrupt/dma flag */
#define USR1_TIMEOUT	(1<<7)	 /* Receive timeout interrupt status */
#define USR1_RXDS	 (1<<6)	 /* Receiver idle interrupt flag */
#define USR1_AIRINT	 (1<<5)	 /* Async IR wake interrupt flag */
#define USR1_AWAKE	 (1<<4)	 /* Aysnc wake interrupt flag */
#define USR2_ADET	 (1<<15) /* Auto baud rate detect complete */
#define USR2_TXFE	 (1<<14) /* Transmit buffer FIFO empty */
#define USR2_DTRF	 (1<<13) /* DTR edge interrupt flag */
#define USR2_IDLE	 (1<<12) /* Idle condition */
#define USR2_IRINT	 (1<<8)	 /* Serial infrared interrupt flag */
#define USR2_WAKE	 (1<<7)	 /* Wake */
#define USR2_RTSF	 (1<<4)	 /* RTS edge interrupt flag */
#define USR2_TXDC	 (1<<3)	 /* Transmitter complete */
#define USR2_BRCD	 (1<<2)	 /* Break condition */
#define USR2_ORE	(1<<1)	 /* Overrun error */
#define USR2_RDR	(1<<0)	 /* Recv data ready */
#define UTS_FRCPERR	(1<<13) /* Force parity error */
#define UTS_LOOP	(1<<12)	 /* Loop tx and rx */
#define UTS_TXEMPTY	 (1<<6)	 /* TxFIFO empty */
#define UTS_RXEMPTY	 (1<<5)	 /* RxFIFO empty */
#define UTS_TXFULL	 (1<<4)	 /* TxFIFO full */
#define UTS_RXFULL	 (1<<3)	 /* RxFIFO full */
#define UTS_SOFTRST	 (1<<0)	 /* Software reset */
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/* We've been assigned a range on the "Low-density serial ports" major */
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#define SERIAL_IMX_MAJOR	207
#define MINOR_START		16
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#define DEV_NAME		"ttymxc"
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/*
 * This determines how often we check the modem status signals
 * for any change.  They generally aren't connected to an IRQ
 * so we have to poll them.  We also check immediately before
 * filling the TX fifo incase CTS has been dropped.
 */
#define MCTRL_TIMEOUT	(250*HZ/1000)

#define DRIVER_NAME "IMX-uart"

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#define UART_NR 8

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/* i.mx21 type uart runs on all i.mx except i.mx1 */
enum imx_uart_type {
	IMX1_UART,
	IMX21_UART,
};

/* device type dependent stuff */
struct imx_uart_data {
	unsigned uts_reg;
	enum imx_uart_type devtype;
};

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struct imx_port {
	struct uart_port	port;
	struct timer_list	timer;
	unsigned int		old_status;
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	int			txirq, rxirq, rtsirq;
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	unsigned int		have_rtscts:1;
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	unsigned int		dte_mode:1;
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	unsigned int		use_irda:1;
	unsigned int		irda_inv_rx:1;
	unsigned int		irda_inv_tx:1;
	unsigned short		trcv_delay; /* transceiver delay */
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	struct clk		*clk_ipg;
	struct clk		*clk_per;
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	const struct imx_uart_data *devdata;
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};

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struct imx_port_ucrs {
	unsigned int	ucr1;
	unsigned int	ucr2;
	unsigned int	ucr3;
};

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#ifdef CONFIG_IRDA
#define USE_IRDA(sport)	((sport)->use_irda)
#else
#define USE_IRDA(sport)	(0)
#endif

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static struct imx_uart_data imx_uart_devdata[] = {
	[IMX1_UART] = {
		.uts_reg = IMX1_UTS,
		.devtype = IMX1_UART,
	},
	[IMX21_UART] = {
		.uts_reg = IMX21_UTS,
		.devtype = IMX21_UART,
	},
};

static struct platform_device_id imx_uart_devtype[] = {
	{
		.name = "imx1-uart",
		.driver_data = (kernel_ulong_t) &imx_uart_devdata[IMX1_UART],
	}, {
		.name = "imx21-uart",
		.driver_data = (kernel_ulong_t) &imx_uart_devdata[IMX21_UART],
	}, {
		/* sentinel */
	}
};
MODULE_DEVICE_TABLE(platform, imx_uart_devtype);

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static struct of_device_id imx_uart_dt_ids[] = {
	{ .compatible = "fsl,imx1-uart", .data = &imx_uart_devdata[IMX1_UART], },
	{ .compatible = "fsl,imx21-uart", .data = &imx_uart_devdata[IMX21_UART], },
	{ /* sentinel */ }
};
MODULE_DEVICE_TABLE(of, imx_uart_dt_ids);

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static inline unsigned uts_reg(struct imx_port *sport)
{
	return sport->devdata->uts_reg;
}

static inline int is_imx1_uart(struct imx_port *sport)
{
	return sport->devdata->devtype == IMX1_UART;
}

static inline int is_imx21_uart(struct imx_port *sport)
{
	return sport->devdata->devtype == IMX21_UART;
}

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/*
 * Save and restore functions for UCR1, UCR2 and UCR3 registers
 */
static void imx_port_ucrs_save(struct uart_port *port,
			       struct imx_port_ucrs *ucr)
{
	/* save control registers */
	ucr->ucr1 = readl(port->membase + UCR1);
	ucr->ucr2 = readl(port->membase + UCR2);
	ucr->ucr3 = readl(port->membase + UCR3);
}

static void imx_port_ucrs_restore(struct uart_port *port,
				  struct imx_port_ucrs *ucr)
{
	/* restore control registers */
	writel(ucr->ucr1, port->membase + UCR1);
	writel(ucr->ucr2, port->membase + UCR2);
	writel(ucr->ucr3, port->membase + UCR3);
}

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/*
 * Handle any change of modem status signal since we were last called.
 */
static void imx_mctrl_check(struct imx_port *sport)
{
	unsigned int status, changed;

	status = sport->port.ops->get_mctrl(&sport->port);
	changed = status ^ sport->old_status;

	if (changed == 0)
		return;

	sport->old_status = status;

	if (changed & TIOCM_RI)
		sport->port.icount.rng++;
	if (changed & TIOCM_DSR)
		sport->port.icount.dsr++;
	if (changed & TIOCM_CAR)
		uart_handle_dcd_change(&sport->port, status & TIOCM_CAR);
	if (changed & TIOCM_CTS)
		uart_handle_cts_change(&sport->port, status & TIOCM_CTS);

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	wake_up_interruptible(&sport->port.state->port.delta_msr_wait);
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}

/*
 * This is our per-port timeout handler, for checking the
 * modem status signals.
 */
static void imx_timeout(unsigned long data)
{
	struct imx_port *sport = (struct imx_port *)data;
	unsigned long flags;

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	if (sport->port.state) {
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		spin_lock_irqsave(&sport->port.lock, flags);
		imx_mctrl_check(sport);
		spin_unlock_irqrestore(&sport->port.lock, flags);

		mod_timer(&sport->timer, jiffies + MCTRL_TIMEOUT);
	}
}

/*
 * interrupts disabled on entry
 */
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static void imx_stop_tx(struct uart_port *port)
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{
	struct imx_port *sport = (struct imx_port *)port;
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	unsigned long temp;

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	if (USE_IRDA(sport)) {
		/* half duplex - wait for end of transmission */
		int n = 256;
		while ((--n > 0) &&
		      !(readl(sport->port.membase + USR2) & USR2_TXDC)) {
			udelay(5);
			barrier();
		}
		/*
		 * irda transceiver - wait a bit more to avoid
		 * cutoff, hardware dependent
		 */
		udelay(sport->trcv_delay);

		/*
		 * half duplex - reactivate receive mode,
		 * flush receive pipe echo crap
		 */
		if (readl(sport->port.membase + USR2) & USR2_TXDC) {
			temp = readl(sport->port.membase + UCR1);
			temp &= ~(UCR1_TXMPTYEN | UCR1_TRDYEN);
			writel(temp, sport->port.membase + UCR1);

			temp = readl(sport->port.membase + UCR4);
			temp &= ~(UCR4_TCEN);
			writel(temp, sport->port.membase + UCR4);

			while (readl(sport->port.membase + URXD0) &
			       URXD_CHARRDY)
				barrier();

			temp = readl(sport->port.membase + UCR1);
			temp |= UCR1_RRDYEN;
			writel(temp, sport->port.membase + UCR1);

			temp = readl(sport->port.membase + UCR4);
			temp |= UCR4_DREN;
			writel(temp, sport->port.membase + UCR4);
		}
		return;
	}

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	temp = readl(sport->port.membase + UCR1);
	writel(temp & ~UCR1_TXMPTYEN, sport->port.membase + UCR1);
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}

/*
 * interrupts disabled on entry
 */
static void imx_stop_rx(struct uart_port *port)
{
	struct imx_port *sport = (struct imx_port *)port;
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	unsigned long temp;

	temp = readl(sport->port.membase + UCR2);
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	writel(temp & ~UCR2_RXEN, sport->port.membase + UCR2);
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}

/*
 * Set the modem control timer to fire immediately.
 */
static void imx_enable_ms(struct uart_port *port)
{
	struct imx_port *sport = (struct imx_port *)port;

	mod_timer(&sport->timer, jiffies);
}

static inline void imx_transmit_buffer(struct imx_port *sport)
{
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	struct circ_buf *xmit = &sport->port.state->xmit;
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	while (!uart_circ_empty(xmit) &&
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			!(readl(sport->port.membase + uts_reg(sport))
				& UTS_TXFULL)) {
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		/* send xmit->buf[xmit->tail]
		 * out the port here */
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		writel(xmit->buf[xmit->tail], sport->port.membase + URTX0);
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		xmit->tail = (xmit->tail + 1) & (UART_XMIT_SIZE - 1);
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		sport->port.icount.tx++;
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	}
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	if (uart_circ_chars_pending(xmit) < WAKEUP_CHARS)
		uart_write_wakeup(&sport->port);

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	if (uart_circ_empty(xmit))
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		imx_stop_tx(&sport->port);
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}

/*
 * interrupts disabled on entry
 */
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static void imx_start_tx(struct uart_port *port)
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{
	struct imx_port *sport = (struct imx_port *)port;
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	unsigned long temp;
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	if (USE_IRDA(sport)) {
		/* half duplex in IrDA mode; have to disable receive mode */
		temp = readl(sport->port.membase + UCR4);
		temp &= ~(UCR4_DREN);
		writel(temp, sport->port.membase + UCR4);

		temp = readl(sport->port.membase + UCR1);
		temp &= ~(UCR1_RRDYEN);
		writel(temp, sport->port.membase + UCR1);
	}
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	/* Clear any pending ORE flag before enabling interrupt */
	temp = readl(sport->port.membase + USR2);
	writel(temp | USR2_ORE, sport->port.membase + USR2);

	temp = readl(sport->port.membase + UCR4);
	temp |= UCR4_OREN;
	writel(temp, sport->port.membase + UCR4);
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	temp = readl(sport->port.membase + UCR1);
	writel(temp | UCR1_TXMPTYEN, sport->port.membase + UCR1);
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	if (USE_IRDA(sport)) {
		temp = readl(sport->port.membase + UCR1);
		temp |= UCR1_TRDYEN;
		writel(temp, sport->port.membase + UCR1);

		temp = readl(sport->port.membase + UCR4);
		temp |= UCR4_TCEN;
		writel(temp, sport->port.membase + UCR4);
	}

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	if (readl(sport->port.membase + uts_reg(sport)) & UTS_TXEMPTY)
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		imx_transmit_buffer(sport);
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}

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static irqreturn_t imx_rtsint(int irq, void *dev_id)
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{
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	struct imx_port *sport = dev_id;
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	unsigned int val;
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	unsigned long flags;

	spin_lock_irqsave(&sport->port.lock, flags);

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	writel(USR1_RTSD, sport->port.membase + USR1);
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	val = readl(sport->port.membase + USR1) & USR1_RTSS;
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	uart_handle_cts_change(&sport->port, !!val);
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	wake_up_interruptible(&sport->port.state->port.delta_msr_wait);
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	spin_unlock_irqrestore(&sport->port.lock, flags);
	return IRQ_HANDLED;
}

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static irqreturn_t imx_txint(int irq, void *dev_id)
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{
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	struct imx_port *sport = dev_id;
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	struct circ_buf *xmit = &sport->port.state->xmit;
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	unsigned long flags;

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	spin_lock_irqsave(&sport->port.lock, flags);
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	if (sport->port.x_char) {
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		/* Send next char */
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		writel(sport->port.x_char, sport->port.membase + URTX0);
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		goto out;
	}

	if (uart_circ_empty(xmit) || uart_tx_stopped(&sport->port)) {
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		imx_stop_tx(&sport->port);
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		goto out;
	}

	imx_transmit_buffer(sport);

	if (uart_circ_chars_pending(xmit) < WAKEUP_CHARS)
		uart_write_wakeup(&sport->port);

out:
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	spin_unlock_irqrestore(&sport->port.lock, flags);
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	return IRQ_HANDLED;
}

523
static irqreturn_t imx_rxint(int irq, void *dev_id)
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{
	struct imx_port *sport = dev_id;
526
	unsigned int rx, flg, ignored = 0;
J
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527
	struct tty_port *port = &sport->port.state->port;
528
	unsigned long flags, temp;
L
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529

530
	spin_lock_irqsave(&sport->port.lock, flags);
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531

532
	while (readl(sport->port.membase + USR2) & USR2_RDR) {
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533 534 535
		flg = TTY_NORMAL;
		sport->port.icount.rx++;

536 537
		rx = readl(sport->port.membase + URXD0);

538
		temp = readl(sport->port.membase + USR2);
539
		if (temp & USR2_BRCD) {
540
			writel(USR2_BRCD, sport->port.membase + USR2);
541 542
			if (uart_handle_break(&sport->port))
				continue;
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		}

545
		if (uart_handle_sysrq_char(&sport->port, (unsigned char)rx))
546 547
			continue;

548 549 550 551
		if (unlikely(rx & URXD_ERR)) {
			if (rx & URXD_BRK)
				sport->port.icount.brk++;
			else if (rx & URXD_PRERR)
552 553 554 555 556 557 558 559 560 561 562 563 564 565
				sport->port.icount.parity++;
			else if (rx & URXD_FRMERR)
				sport->port.icount.frame++;
			if (rx & URXD_OVRRUN)
				sport->port.icount.overrun++;

			if (rx & sport->port.ignore_status_mask) {
				if (++ignored > 100)
					goto out;
				continue;
			}

			rx &= sport->port.read_status_mask;

566 567 568
			if (rx & URXD_BRK)
				flg = TTY_BREAK;
			else if (rx & URXD_PRERR)
569 570 571 572 573
				flg = TTY_PARITY;
			else if (rx & URXD_FRMERR)
				flg = TTY_FRAME;
			if (rx & URXD_OVRRUN)
				flg = TTY_OVERRUN;
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575 576 577 578
#ifdef SUPPORT_SYSRQ
			sport->port.sysrq = 0;
#endif
		}
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		tty_insert_flip_char(port, rx, flg);
581
	}
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out:
584
	spin_unlock_irqrestore(&sport->port.lock, flags);
J
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585
	tty_flip_buffer_push(port);
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	return IRQ_HANDLED;
}

589 590 591 592
static irqreturn_t imx_int(int irq, void *dev_id)
{
	struct imx_port *sport = dev_id;
	unsigned int sts;
593
	unsigned int sts2;
594 595 596 597 598 599 600 601 602 603

	sts = readl(sport->port.membase + USR1);

	if (sts & USR1_RRDY)
		imx_rxint(irq, dev_id);

	if (sts & USR1_TRDY &&
			readl(sport->port.membase + UCR1) & UCR1_TXMPTYEN)
		imx_txint(irq, dev_id);

604
	if (sts & USR1_RTSD)
605 606
		imx_rtsint(irq, dev_id);

607 608 609
	if (sts & USR1_AWAKE)
		writel(USR1_AWAKE, sport->port.membase + USR1);

610 611 612 613 614 615 616
	sts2 = readl(sport->port.membase + USR2);
	if (sts2 & USR2_ORE) {
		dev_err(sport->port.dev, "Rx FIFO overrun\n");
		sport->port.icount.overrun++;
		writel(sts2 | USR2_ORE, sport->port.membase + USR2);
	}

617 618 619
	return IRQ_HANDLED;
}

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/*
 * Return TIOCSER_TEMT when transmitter is not busy.
 */
static unsigned int imx_tx_empty(struct uart_port *port)
{
	struct imx_port *sport = (struct imx_port *)port;

627
	return (readl(sport->port.membase + USR2) & USR2_TXDC) ?  TIOCSER_TEMT : 0;
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}

630 631 632
/*
 * We have a modem side uart, so the meanings of RTS and CTS are inverted.
 */
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static unsigned int imx_get_mctrl(struct uart_port *port)
{
635 636
	struct imx_port *sport = (struct imx_port *)port;
	unsigned int tmp = TIOCM_DSR | TIOCM_CAR;
637

638 639
	if (readl(sport->port.membase + USR1) & USR1_RTSS)
		tmp |= TIOCM_CTS;
640

641 642
	if (readl(sport->port.membase + UCR2) & UCR2_CTS)
		tmp |= TIOCM_RTS;
643

644
	return tmp;
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}

static void imx_set_mctrl(struct uart_port *port, unsigned int mctrl)
{
649
	struct imx_port *sport = (struct imx_port *)port;
650 651 652
	unsigned long temp;

	temp = readl(sport->port.membase + UCR2) & ~UCR2_CTS;
653

654
	if (mctrl & TIOCM_RTS)
655 656 657
		temp |= UCR2_CTS;

	writel(temp, sport->port.membase + UCR2);
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}

/*
 * Interrupts always disabled.
 */
static void imx_break_ctl(struct uart_port *port, int break_state)
{
	struct imx_port *sport = (struct imx_port *)port;
666
	unsigned long flags, temp;
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667 668 669

	spin_lock_irqsave(&sport->port.lock, flags);

670 671
	temp = readl(sport->port.membase + UCR1) & ~UCR1_SNDBRK;

672
	if (break_state != 0)
673 674 675
		temp |= UCR1_SNDBRK;

	writel(temp, sport->port.membase + UCR1);
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	spin_unlock_irqrestore(&sport->port.lock, flags);
}

#define TXTL 2 /* reset default */
#define RXTL 1 /* reset default */

683 684 685 686
static int imx_setup_ufcr(struct imx_port *sport, unsigned int mode)
{
	unsigned int val;

687 688 689
	/* set receiver / transmitter trigger level */
	val = readl(sport->port.membase + UFCR) & (UFCR_RFDIV | UFCR_DCEDTE);
	val |= TXTL << UFCR_TXTL_SHF | RXTL;
690
	writel(val, sport->port.membase + UFCR);
691 692 693
	return 0;
}

694 695 696
/* half the RX buffer size */
#define CTSTL 16

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static int imx_startup(struct uart_port *port)
{
	struct imx_port *sport = (struct imx_port *)port;
	int retval;
701
	unsigned long flags, temp;
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702

703
	imx_setup_ufcr(sport, 0);
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	/* disable the DREN bit (Data Ready interrupt enable) before
	 * requesting IRQs
	 */
708
	temp = readl(sport->port.membase + UCR4);
709 710 711 712

	if (USE_IRDA(sport))
		temp |= UCR4_IRSC;

713
	/* set the trigger level for CTS */
714 715
	temp &= ~(UCR4_CTSTL_MASK << UCR4_CTSTL_SHF);
	temp |= CTSTL << UCR4_CTSTL_SHF;
716

717
	writel(temp & ~UCR4_DREN, sport->port.membase + UCR4);
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719 720 721 722 723 724 725 726 727 728 729 730
	if (USE_IRDA(sport)) {
		/* reset fifo's and state machines */
		int i = 100;
		temp = readl(sport->port.membase + UCR2);
		temp &= ~UCR2_SRST;
		writel(temp, sport->port.membase + UCR2);
		while (!(readl(sport->port.membase + UCR2) & UCR2_SRST) &&
		    (--i > 0)) {
			udelay(1);
		}
	}

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	/*
732 733
	 * Allocate the IRQ(s) i.MX1 has three interrupts whereas later
	 * chips only have one interrupt.
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734
	 */
735 736 737 738 739 740 741 742 743 744 745
	if (sport->txirq > 0) {
		retval = request_irq(sport->rxirq, imx_rxint, 0,
				DRIVER_NAME, sport);
		if (retval)
			goto error_out1;

		retval = request_irq(sport->txirq, imx_txint, 0,
				DRIVER_NAME, sport);
		if (retval)
			goto error_out2;

746 747
		/* do not use RTS IRQ on IrDA */
		if (!USE_IRDA(sport)) {
748
			retval = request_irq(sport->rtsirq, imx_rtsint, 0,
749 750 751 752
					DRIVER_NAME, sport);
			if (retval)
				goto error_out3;
		}
753 754 755 756 757 758 759 760
	} else {
		retval = request_irq(sport->port.irq, imx_int, 0,
				DRIVER_NAME, sport);
		if (retval) {
			free_irq(sport->port.irq, sport);
			goto error_out1;
		}
	}
761

762
	spin_lock_irqsave(&sport->port.lock, flags);
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	/*
	 * Finally, clear and enable interrupts
	 */
766 767 768
	writel(USR1_RTSD, sport->port.membase + USR1);

	temp = readl(sport->port.membase + UCR1);
769
	temp |= UCR1_RRDYEN | UCR1_RTSDEN | UCR1_UARTEN;
770 771 772 773 774 775

	if (USE_IRDA(sport)) {
		temp |= UCR1_IREN;
		temp &= ~(UCR1_RTSDEN);
	}

776
	writel(temp, sport->port.membase + UCR1);
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778 779 780
	temp = readl(sport->port.membase + UCR2);
	temp |= (UCR2_RXEN | UCR2_TXEN);
	writel(temp, sport->port.membase + UCR2);
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782 783 784 785 786 787 788 789 790
	if (USE_IRDA(sport)) {
		/* clear RX-FIFO */
		int i = 64;
		while ((--i > 0) &&
			(readl(sport->port.membase + URXD0) & URXD_CHARRDY)) {
			barrier();
		}
	}

791
	if (is_imx21_uart(sport)) {
792
		temp = readl(sport->port.membase + UCR3);
793
		temp |= IMX21_UCR3_RXDMUXSEL;
794 795
		writel(temp, sport->port.membase + UCR3);
	}
796

797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812
	if (USE_IRDA(sport)) {
		temp = readl(sport->port.membase + UCR4);
		if (sport->irda_inv_rx)
			temp |= UCR4_INVR;
		else
			temp &= ~(UCR4_INVR);
		writel(temp | UCR4_DREN, sport->port.membase + UCR4);

		temp = readl(sport->port.membase + UCR3);
		if (sport->irda_inv_tx)
			temp |= UCR3_INVT;
		else
			temp &= ~(UCR3_INVT);
		writel(temp, sport->port.membase + UCR3);
	}

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	/*
	 * Enable modem status interrupts
	 */
	imx_enable_ms(&sport->port);
817
	spin_unlock_irqrestore(&sport->port.lock, flags);
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819 820 821 822 823 824 825 826 827 828
	if (USE_IRDA(sport)) {
		struct imxuart_platform_data *pdata;
		pdata = sport->port.dev->platform_data;
		sport->irda_inv_rx = pdata->irda_inv_rx;
		sport->irda_inv_tx = pdata->irda_inv_tx;
		sport->trcv_delay = pdata->transceiver_delay;
		if (pdata->irda_enable)
			pdata->irda_enable(1);
	}

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	return 0;

831
error_out3:
832 833
	if (sport->txirq)
		free_irq(sport->txirq, sport);
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834
error_out2:
835 836
	if (sport->rxirq)
		free_irq(sport->rxirq, sport);
837
error_out1:
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	return retval;
}

static void imx_shutdown(struct uart_port *port)
{
	struct imx_port *sport = (struct imx_port *)port;
844
	unsigned long temp;
845
	unsigned long flags;
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846

847
	spin_lock_irqsave(&sport->port.lock, flags);
848 849 850
	temp = readl(sport->port.membase + UCR2);
	temp &= ~(UCR2_TXEN);
	writel(temp, sport->port.membase + UCR2);
851
	spin_unlock_irqrestore(&sport->port.lock, flags);
852

853 854 855 856 857 858 859
	if (USE_IRDA(sport)) {
		struct imxuart_platform_data *pdata;
		pdata = sport->port.dev->platform_data;
		if (pdata->irda_enable)
			pdata->irda_enable(0);
	}

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860 861 862 863 864 865 866 867
	/*
	 * Stop our timer.
	 */
	del_timer_sync(&sport->timer);

	/*
	 * Free the interrupts
	 */
868
	if (sport->txirq > 0) {
869 870
		if (!USE_IRDA(sport))
			free_irq(sport->rtsirq, sport);
871 872 873 874
		free_irq(sport->txirq, sport);
		free_irq(sport->rxirq, sport);
	} else
		free_irq(sport->port.irq, sport);
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875 876 877 878 879

	/*
	 * Disable all interrupts, port and break condition.
	 */

880
	spin_lock_irqsave(&sport->port.lock, flags);
881 882
	temp = readl(sport->port.membase + UCR1);
	temp &= ~(UCR1_TXMPTYEN | UCR1_RRDYEN | UCR1_RTSDEN | UCR1_UARTEN);
883 884 885
	if (USE_IRDA(sport))
		temp &= ~(UCR1_IREN);

886
	writel(temp, sport->port.membase + UCR1);
887
	spin_unlock_irqrestore(&sport->port.lock, flags);
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888 889 890
}

static void
A
Alan Cox 已提交
891 892
imx_set_termios(struct uart_port *port, struct ktermios *termios,
		   struct ktermios *old)
L
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893 894 895 896 897
{
	struct imx_port *sport = (struct imx_port *)port;
	unsigned long flags;
	unsigned int ucr2, old_ucr1, old_txrxen, baud, quot;
	unsigned int old_csize = old ? old->c_cflag & CSIZE : CS8;
898 899
	unsigned int div, ufcr;
	unsigned long num, denom;
900
	uint64_t tdiv64;
L
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901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926

	/*
	 * If we don't support modem control lines, don't allow
	 * these to be set.
	 */
	if (0) {
		termios->c_cflag &= ~(HUPCL | CRTSCTS | CMSPAR);
		termios->c_cflag |= CLOCAL;
	}

	/*
	 * We only support CS7 and CS8.
	 */
	while ((termios->c_cflag & CSIZE) != CS7 &&
	       (termios->c_cflag & CSIZE) != CS8) {
		termios->c_cflag &= ~CSIZE;
		termios->c_cflag |= old_csize;
		old_csize = CS8;
	}

	if ((termios->c_cflag & CSIZE) == CS8)
		ucr2 = UCR2_WS | UCR2_SRST | UCR2_IRTS;
	else
		ucr2 = UCR2_SRST | UCR2_IRTS;

	if (termios->c_cflag & CRTSCTS) {
927
		if (sport->have_rtscts) {
928 929 930 931 932
			ucr2 &= ~UCR2_IRTS;
			ucr2 |= UCR2_CTSC;
		} else {
			termios->c_cflag &= ~CRTSCTS;
		}
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933 934 935 936 937 938
	}

	if (termios->c_cflag & CSTOPB)
		ucr2 |= UCR2_STPB;
	if (termios->c_cflag & PARENB) {
		ucr2 |= UCR2_PREN;
939
		if (termios->c_cflag & PARODD)
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940 941 942
			ucr2 |= UCR2_PROE;
	}

943 944
	del_timer_sync(&sport->timer);

L
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945 946 947
	/*
	 * Ask the core to calculate the divisor for us.
	 */
948
	baud = uart_get_baud_rate(port, termios, old, 50, port->uartclk / 16);
L
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949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982
	quot = uart_get_divisor(port, baud);

	spin_lock_irqsave(&sport->port.lock, flags);

	sport->port.read_status_mask = 0;
	if (termios->c_iflag & INPCK)
		sport->port.read_status_mask |= (URXD_FRMERR | URXD_PRERR);
	if (termios->c_iflag & (BRKINT | PARMRK))
		sport->port.read_status_mask |= URXD_BRK;

	/*
	 * Characters to ignore
	 */
	sport->port.ignore_status_mask = 0;
	if (termios->c_iflag & IGNPAR)
		sport->port.ignore_status_mask |= URXD_PRERR;
	if (termios->c_iflag & IGNBRK) {
		sport->port.ignore_status_mask |= URXD_BRK;
		/*
		 * If we're ignoring parity and break indicators,
		 * ignore overruns too (for real raw support).
		 */
		if (termios->c_iflag & IGNPAR)
			sport->port.ignore_status_mask |= URXD_OVRRUN;
	}

	/*
	 * Update the per-port timeout.
	 */
	uart_update_timeout(port, termios->c_cflag, baud);

	/*
	 * disable interrupts and drain transmitter
	 */
983 984 985
	old_ucr1 = readl(sport->port.membase + UCR1);
	writel(old_ucr1 & ~(UCR1_TXMPTYEN | UCR1_RRDYEN | UCR1_RTSDEN),
			sport->port.membase + UCR1);
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986

987
	while (!(readl(sport->port.membase + USR2) & USR2_TXDC))
L
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988 989 990
		barrier();

	/* then, disable everything */
991
	old_txrxen = readl(sport->port.membase + UCR2);
992
	writel(old_txrxen & ~(UCR2_TXEN | UCR2_RXEN),
993 994
			sport->port.membase + UCR2);
	old_txrxen &= (UCR2_TXEN | UCR2_RXEN);
L
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996 997 998 999 1000
	if (USE_IRDA(sport)) {
		/*
		 * use maximum available submodule frequency to
		 * avoid missing short pulses due to low sampling rate
		 */
1001
		div = 1;
1002 1003 1004 1005 1006 1007 1008
	} else {
		div = sport->port.uartclk / (baud * 16);
		if (div > 7)
			div = 7;
		if (!div)
			div = 1;
	}
1009

1010 1011
	rational_best_approximation(16 * div * baud, sport->port.uartclk,
		1 << 16, 1 << 16, &num, &denom);
1012

1013 1014 1015 1016
	tdiv64 = sport->port.uartclk;
	tdiv64 *= num;
	do_div(tdiv64, denom * 16 * div);
	tty_termios_encode_baud_rate(termios,
1017
				(speed_t)tdiv64, (speed_t)tdiv64);
1018

1019 1020
	num -= 1;
	denom -= 1;
1021 1022

	ufcr = readl(sport->port.membase + UFCR);
1023
	ufcr = (ufcr & (~UFCR_RFDIV)) | UFCR_RFDIV_REG(div);
1024 1025
	if (sport->dte_mode)
		ufcr |= UFCR_DCEDTE;
1026 1027
	writel(ufcr, sport->port.membase + UFCR);

1028 1029 1030
	writel(num, sport->port.membase + UBIR);
	writel(denom, sport->port.membase + UBMR);

1031
	if (is_imx21_uart(sport))
1032
		writel(sport->port.uartclk / div / 1000,
1033
				sport->port.membase + IMX21_ONEMS);
1034 1035

	writel(old_ucr1, sport->port.membase + UCR1);
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1037 1038
	/* set the parity, stop bits and data size */
	writel(ucr2 | old_txrxen, sport->port.membase + UCR2);
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	if (UART_ENABLE_MS(&sport->port, termios->c_cflag))
		imx_enable_ms(&sport->port);

	spin_unlock_irqrestore(&sport->port.lock, flags);
}

static const char *imx_type(struct uart_port *port)
{
	struct imx_port *sport = (struct imx_port *)port;

	return sport->port.type == PORT_IMX ? "IMX" : NULL;
}

/*
 * Release the memory region(s) being used by 'port'.
 */
static void imx_release_port(struct uart_port *port)
{
1058 1059
	struct platform_device *pdev = to_platform_device(port->dev);
	struct resource *mmres;
L
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1060

1061
	mmres = platform_get_resource(pdev, IORESOURCE_MEM, 0);
1062
	release_mem_region(mmres->start, resource_size(mmres));
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}

/*
 * Request the memory region(s) being used by 'port'.
 */
static int imx_request_port(struct uart_port *port)
{
1070 1071 1072 1073 1074 1075 1076 1077
	struct platform_device *pdev = to_platform_device(port->dev);
	struct resource *mmres;
	void *ret;

	mmres = platform_get_resource(pdev, IORESOURCE_MEM, 0);
	if (!mmres)
		return -ENODEV;

1078
	ret = request_mem_region(mmres->start, resource_size(mmres), "imx-uart");
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1080
	return  ret ? 0 : -EBUSY;
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}

/*
 * Configure/autoconfigure the port.
 */
static void imx_config_port(struct uart_port *port, int flags)
{
	struct imx_port *sport = (struct imx_port *)port;

	if (flags & UART_CONFIG_TYPE &&
	    imx_request_port(&sport->port) == 0)
		sport->port.type = PORT_IMX;
}

/*
 * Verify the new serial_struct (for TIOCSSERIAL).
 * The only change we allow are to the flags and type, and
 * even then only between PORT_IMX and PORT_UNKNOWN
 */
static int
imx_verify_port(struct uart_port *port, struct serial_struct *ser)
{
	struct imx_port *sport = (struct imx_port *)port;
	int ret = 0;

	if (ser->type != PORT_UNKNOWN && ser->type != PORT_IMX)
		ret = -EINVAL;
	if (sport->port.irq != ser->irq)
		ret = -EINVAL;
	if (ser->io_type != UPIO_MEM)
		ret = -EINVAL;
	if (sport->port.uartclk / 16 != ser->baud_base)
		ret = -EINVAL;
	if ((void *)sport->port.mapbase != ser->iomem_base)
		ret = -EINVAL;
	if (sport->port.iobase != ser->port)
		ret = -EINVAL;
	if (ser->hub6 != 0)
		ret = -EINVAL;
	return ret;
}

1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186
#if defined(CONFIG_CONSOLE_POLL)
static int imx_poll_get_char(struct uart_port *port)
{
	struct imx_port_ucrs old_ucr;
	unsigned int status;
	unsigned char c;

	/* save control registers */
	imx_port_ucrs_save(port, &old_ucr);

	/* disable interrupts */
	writel(UCR1_UARTEN, port->membase + UCR1);
	writel(old_ucr.ucr2 & ~(UCR2_ATEN | UCR2_RTSEN | UCR2_ESCI),
	       port->membase + UCR2);
	writel(old_ucr.ucr3 & ~(UCR3_DCD | UCR3_RI | UCR3_DTREN),
	       port->membase + UCR3);

	/* poll */
	do {
		status = readl(port->membase + USR2);
	} while (~status & USR2_RDR);

	/* read */
	c = readl(port->membase + URXD0);

	/* restore control registers */
	imx_port_ucrs_restore(port, &old_ucr);

	return c;
}

static void imx_poll_put_char(struct uart_port *port, unsigned char c)
{
	struct imx_port_ucrs old_ucr;
	unsigned int status;

	/* save control registers */
	imx_port_ucrs_save(port, &old_ucr);

	/* disable interrupts */
	writel(UCR1_UARTEN, port->membase + UCR1);
	writel(old_ucr.ucr2 & ~(UCR2_ATEN | UCR2_RTSEN | UCR2_ESCI),
	       port->membase + UCR2);
	writel(old_ucr.ucr3 & ~(UCR3_DCD | UCR3_RI | UCR3_DTREN),
	       port->membase + UCR3);

	/* drain */
	do {
		status = readl(port->membase + USR1);
	} while (~status & USR1_TRDY);

	/* write */
	writel(c, port->membase + URTX0);

	/* flush */
	do {
		status = readl(port->membase + USR2);
	} while (~status & USR2_TXDC);

	/* restore control registers */
	imx_port_ucrs_restore(port, &old_ucr);
}
#endif

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static struct uart_ops imx_pops = {
	.tx_empty	= imx_tx_empty,
	.set_mctrl	= imx_set_mctrl,
	.get_mctrl	= imx_get_mctrl,
	.stop_tx	= imx_stop_tx,
	.start_tx	= imx_start_tx,
	.stop_rx	= imx_stop_rx,
	.enable_ms	= imx_enable_ms,
	.break_ctl	= imx_break_ctl,
	.startup	= imx_startup,
	.shutdown	= imx_shutdown,
	.set_termios	= imx_set_termios,
	.type		= imx_type,
	.release_port	= imx_release_port,
	.request_port	= imx_request_port,
	.config_port	= imx_config_port,
	.verify_port	= imx_verify_port,
1204 1205 1206 1207
#if defined(CONFIG_CONSOLE_POLL)
	.poll_get_char  = imx_poll_get_char,
	.poll_put_char  = imx_poll_put_char,
#endif
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};

1210
static struct imx_port *imx_ports[UART_NR];
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#ifdef CONFIG_SERIAL_IMX_CONSOLE
1213 1214 1215
static void imx_console_putchar(struct uart_port *port, int ch)
{
	struct imx_port *sport = (struct imx_port *)port;
1216

1217
	while (readl(sport->port.membase + uts_reg(sport)) & UTS_TXFULL)
1218
		barrier();
1219 1220

	writel(ch, sport->port.membase + URTX0);
1221
}
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1222 1223 1224 1225 1226 1227 1228

/*
 * Interrupts are disabled on entering
 */
static void
imx_console_write(struct console *co, const char *s, unsigned int count)
{
1229
	struct imx_port *sport = imx_ports[co->index];
1230 1231
	struct imx_port_ucrs old_ucr;
	unsigned int ucr1;
1232
	unsigned long flags = 0;
1233
	int locked = 1;
1234

1235 1236 1237 1238 1239 1240
	if (sport->port.sysrq)
		locked = 0;
	else if (oops_in_progress)
		locked = spin_trylock_irqsave(&sport->port.lock, flags);
	else
		spin_lock_irqsave(&sport->port.lock, flags);
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1241 1242

	/*
1243
	 *	First, save UCR1/2/3 and then disable interrupts
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1244
	 */
1245 1246
	imx_port_ucrs_save(&sport->port, &old_ucr);
	ucr1 = old_ucr.ucr1;
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1247

1248 1249
	if (is_imx1_uart(sport))
		ucr1 |= IMX1_UCR1_UARTCLKEN;
1250 1251 1252 1253
	ucr1 |= UCR1_UARTEN;
	ucr1 &= ~(UCR1_TXMPTYEN | UCR1_RRDYEN | UCR1_RTSDEN);

	writel(ucr1, sport->port.membase + UCR1);
1254

1255
	writel(old_ucr.ucr2 | UCR2_TXEN, sport->port.membase + UCR2);
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1256

1257
	uart_console_write(&sport->port, s, count, imx_console_putchar);
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1258 1259 1260

	/*
	 *	Finally, wait for transmitter to become empty
1261
	 *	and restore UCR1/2/3
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1262
	 */
1263
	while (!(readl(sport->port.membase + USR2) & USR2_TXDC));
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1264

1265
	imx_port_ucrs_restore(&sport->port, &old_ucr);
1266

1267 1268
	if (locked)
		spin_unlock_irqrestore(&sport->port.lock, flags);
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}

/*
 * If the port was already initialised (eg, by a boot loader),
 * try to determine the current setup.
 */
static void __init
imx_console_get_options(struct imx_port *sport, int *baud,
			   int *parity, int *bits)
{
1279

R
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1280
	if (readl(sport->port.membase + UCR1) & UCR1_UARTEN) {
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1281
		/* ok, the port was enabled */
1282
		unsigned int ucr2, ubir, ubmr, uartclk;
1283 1284
		unsigned int baud_raw;
		unsigned int ucfr_rfdiv;
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1285

1286
		ucr2 = readl(sport->port.membase + UCR2);
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1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300

		*parity = 'n';
		if (ucr2 & UCR2_PREN) {
			if (ucr2 & UCR2_PROE)
				*parity = 'o';
			else
				*parity = 'e';
		}

		if (ucr2 & UCR2_WS)
			*bits = 8;
		else
			*bits = 7;

1301 1302
		ubir = readl(sport->port.membase + UBIR) & 0xffff;
		ubmr = readl(sport->port.membase + UBMR) & 0xffff;
1303

1304
		ucfr_rfdiv = (readl(sport->port.membase + UFCR) & UFCR_RFDIV) >> 7;
1305 1306 1307 1308 1309
		if (ucfr_rfdiv == 6)
			ucfr_rfdiv = 7;
		else
			ucfr_rfdiv = 6 - ucfr_rfdiv;

1310
		uartclk = clk_get_rate(sport->clk_per);
1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327
		uartclk /= ucfr_rfdiv;

		{	/*
			 * The next code provides exact computation of
			 *   baud_raw = round(((uartclk/16) * (ubir + 1)) / (ubmr + 1))
			 * without need of float support or long long division,
			 * which would be required to prevent 32bit arithmetic overflow
			 */
			unsigned int mul = ubir + 1;
			unsigned int div = 16 * (ubmr + 1);
			unsigned int rem = uartclk % div;

			baud_raw = (uartclk / div) * mul;
			baud_raw += (rem * mul + div / 2) / div;
			*baud = (baud_raw + 50) / 100 * 100;
		}

1328
		if (*baud != baud_raw)
1329
			pr_info("Console IMX rounded baud rate from %d to %d\n",
1330
				baud_raw, *baud);
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1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349
	}
}

static int __init
imx_console_setup(struct console *co, char *options)
{
	struct imx_port *sport;
	int baud = 9600;
	int bits = 8;
	int parity = 'n';
	int flow = 'n';

	/*
	 * Check whether an invalid uart number has been specified, and
	 * if so, search for the first available port that does have
	 * console support.
	 */
	if (co->index == -1 || co->index >= ARRAY_SIZE(imx_ports))
		co->index = 0;
1350
	sport = imx_ports[co->index];
1351
	if (sport == NULL)
1352
		return -ENODEV;
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1353 1354 1355 1356 1357 1358

	if (options)
		uart_parse_options(options, &baud, &parity, &bits, &flow);
	else
		imx_console_get_options(sport, &baud, &parity, &bits);

1359 1360
	imx_setup_ufcr(sport, 0);

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1361 1362 1363
	return uart_set_options(&sport->port, co, baud, parity, bits, flow);
}

1364
static struct uart_driver imx_reg;
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1365
static struct console imx_console = {
1366
	.name		= DEV_NAME,
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	.write		= imx_console_write,
	.device		= uart_console_device,
	.setup		= imx_console_setup,
	.flags		= CON_PRINTBUFFER,
	.index		= -1,
	.data		= &imx_reg,
};

#define IMX_CONSOLE	&imx_console
#else
#define IMX_CONSOLE	NULL
#endif

static struct uart_driver imx_reg = {
	.owner          = THIS_MODULE,
	.driver_name    = DRIVER_NAME,
1383
	.dev_name       = DEV_NAME,
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1384 1385 1386 1387 1388 1389
	.major          = SERIAL_IMX_MAJOR,
	.minor          = MINOR_START,
	.nr             = ARRAY_SIZE(imx_ports),
	.cons           = IMX_CONSOLE,
};

1390
static int serial_imx_suspend(struct platform_device *dev, pm_message_t state)
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1391
{
1392
	struct imx_port *sport = platform_get_drvdata(dev);
1393 1394 1395 1396 1397 1398
	unsigned int val;

	/* enable wakeup from i.MX UART */
	val = readl(sport->port.membase + UCR3);
	val |= UCR3_AWAKEN;
	writel(val, sport->port.membase + UCR3);
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1400
	uart_suspend_port(&imx_reg, &sport->port);
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1401

1402
	return 0;
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1403 1404
}

1405
static int serial_imx_resume(struct platform_device *dev)
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1406
{
1407
	struct imx_port *sport = platform_get_drvdata(dev);
1408 1409 1410 1411 1412 1413
	unsigned int val;

	/* disable wakeup from i.MX UART */
	val = readl(sport->port.membase + UCR3);
	val &= ~UCR3_AWAKEN;
	writel(val, sport->port.membase + UCR3);
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1414

1415
	uart_resume_port(&imx_reg, &sport->port);
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1416

1417
	return 0;
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1418 1419
}

1420
#ifdef CONFIG_OF
1421 1422 1423 1424
/*
 * This function returns 1 iff pdev isn't a device instatiated by dt, 0 iff it
 * could successfully get all information from dt or a negative errno.
 */
1425 1426 1427 1428 1429 1430
static int serial_imx_probe_dt(struct imx_port *sport,
		struct platform_device *pdev)
{
	struct device_node *np = pdev->dev.of_node;
	const struct of_device_id *of_id =
			of_match_device(imx_uart_dt_ids, &pdev->dev);
1431
	int ret;
1432 1433

	if (!np)
1434 1435
		/* no device tree device */
		return 1;
1436

1437 1438 1439
	ret = of_alias_get_id(np, "serial");
	if (ret < 0) {
		dev_err(&pdev->dev, "failed to get alias id, errno %d\n", ret);
1440
		return ret;
1441 1442
	}
	sport->port.line = ret;
1443 1444 1445 1446 1447 1448 1449

	if (of_get_property(np, "fsl,uart-has-rtscts", NULL))
		sport->have_rtscts = 1;

	if (of_get_property(np, "fsl,irda-mode", NULL))
		sport->use_irda = 1;

1450 1451 1452
	if (of_get_property(np, "fsl,dte-mode", NULL))
		sport->dte_mode = 1;

1453 1454 1455 1456 1457 1458 1459 1460
	sport->devdata = of_id->data;

	return 0;
}
#else
static inline int serial_imx_probe_dt(struct imx_port *sport,
		struct platform_device *pdev)
{
1461
	return 1;
1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482
}
#endif

static void serial_imx_probe_pdata(struct imx_port *sport,
		struct platform_device *pdev)
{
	struct imxuart_platform_data *pdata = pdev->dev.platform_data;

	sport->port.line = pdev->id;
	sport->devdata = (struct imx_uart_data	*) pdev->id_entry->driver_data;

	if (!pdata)
		return;

	if (pdata->flags & IMXUART_HAVE_RTSCTS)
		sport->have_rtscts = 1;

	if (pdata->flags & IMXUART_IRDA)
		sport->use_irda = 1;
}

1483
static int serial_imx_probe(struct platform_device *pdev)
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1484
{
1485
	struct imx_port *sport;
1486
	struct imxuart_platform_data *pdata;
1487 1488 1489
	void __iomem *base;
	int ret = 0;
	struct resource *res;
1490
	struct pinctrl *pinctrl;
1491

S
Sachin Kamat 已提交
1492
	sport = devm_kzalloc(&pdev->dev, sizeof(*sport), GFP_KERNEL);
1493 1494
	if (!sport)
		return -ENOMEM;
1495

1496
	ret = serial_imx_probe_dt(sport, pdev);
1497
	if (ret > 0)
1498
		serial_imx_probe_pdata(sport, pdev);
1499
	else if (ret < 0)
S
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1500
		return ret;
1501

1502
	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
S
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1503 1504
	if (!res)
		return -ENODEV;
1505

S
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1506 1507 1508
	base = devm_ioremap(&pdev->dev, res->start, PAGE_SIZE);
	if (!base)
		return -ENOMEM;
1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524

	sport->port.dev = &pdev->dev;
	sport->port.mapbase = res->start;
	sport->port.membase = base;
	sport->port.type = PORT_IMX,
	sport->port.iotype = UPIO_MEM;
	sport->port.irq = platform_get_irq(pdev, 0);
	sport->rxirq = platform_get_irq(pdev, 0);
	sport->txirq = platform_get_irq(pdev, 1);
	sport->rtsirq = platform_get_irq(pdev, 2);
	sport->port.fifosize = 32;
	sport->port.ops = &imx_pops;
	sport->port.flags = UPF_BOOT_AUTOCONF;
	init_timer(&sport->timer);
	sport->timer.function = imx_timeout;
	sport->timer.data     = (unsigned long)sport;
S
Sascha Hauer 已提交
1525

1526 1527 1528
	pinctrl = devm_pinctrl_get_select_default(&pdev->dev);
	if (IS_ERR(pinctrl)) {
		ret = PTR_ERR(pinctrl);
1529
		dev_err(&pdev->dev, "failed to get default pinctrl: %d\n", ret);
S
Sachin Kamat 已提交
1530
		return ret;
1531 1532
	}

1533 1534 1535
	sport->clk_ipg = devm_clk_get(&pdev->dev, "ipg");
	if (IS_ERR(sport->clk_ipg)) {
		ret = PTR_ERR(sport->clk_ipg);
1536
		dev_err(&pdev->dev, "failed to get ipg clk: %d\n", ret);
S
Sachin Kamat 已提交
1537
		return ret;
S
Sascha Hauer 已提交
1538 1539
	}

1540 1541 1542
	sport->clk_per = devm_clk_get(&pdev->dev, "per");
	if (IS_ERR(sport->clk_per)) {
		ret = PTR_ERR(sport->clk_per);
1543
		dev_err(&pdev->dev, "failed to get per clk: %d\n", ret);
S
Sachin Kamat 已提交
1544
		return ret;
1545 1546 1547 1548 1549 1550
	}

	clk_prepare_enable(sport->clk_per);
	clk_prepare_enable(sport->clk_ipg);

	sport->port.uartclk = clk_get_rate(sport->clk_per);
1551

1552
	imx_ports[sport->port.line] = sport;
1553

1554
	pdata = pdev->dev.platform_data;
1555
	if (pdata && pdata->init) {
D
Darius Augulis 已提交
1556 1557 1558 1559
		ret = pdata->init(pdev);
		if (ret)
			goto clkput;
	}
1560

1561 1562 1563
	ret = uart_add_one_port(&imx_reg, &sport->port);
	if (ret)
		goto deinit;
1564
	platform_set_drvdata(pdev, sport);
1565

L
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1566
	return 0;
1567
deinit:
1568
	if (pdata && pdata->exit)
1569
		pdata->exit(pdev);
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1570
clkput:
1571 1572
	clk_disable_unprepare(sport->clk_per);
	clk_disable_unprepare(sport->clk_ipg);
1573
	return ret;
L
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1574 1575
}

1576
static int serial_imx_remove(struct platform_device *pdev)
L
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1577
{
1578 1579
	struct imxuart_platform_data *pdata;
	struct imx_port *sport = platform_get_drvdata(pdev);
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1580

1581 1582 1583
	pdata = pdev->dev.platform_data;

	platform_set_drvdata(pdev, NULL);
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1584

1585 1586 1587 1588
	uart_remove_one_port(&imx_reg, &sport->port);

	clk_disable_unprepare(sport->clk_per);
	clk_disable_unprepare(sport->clk_ipg);
S
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1589

1590
	if (pdata && pdata->exit)
1591 1592
		pdata->exit(pdev);

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1593 1594 1595
	return 0;
}

1596
static struct platform_driver serial_imx_driver = {
1597 1598
	.probe		= serial_imx_probe,
	.remove		= serial_imx_remove,
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1599 1600 1601

	.suspend	= serial_imx_suspend,
	.resume		= serial_imx_resume,
1602
	.id_table	= imx_uart_devtype,
1603
	.driver		= {
1604
		.name	= "imx-uart",
1605
		.owner	= THIS_MODULE,
1606
		.of_match_table = imx_uart_dt_ids,
1607
	},
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1608 1609 1610 1611 1612 1613
};

static int __init imx_serial_init(void)
{
	int ret;

1614
	pr_info("Serial: IMX driver\n");
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	ret = uart_register_driver(&imx_reg);
	if (ret)
		return ret;

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	ret = platform_driver_register(&serial_imx_driver);
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	if (ret != 0)
		uart_unregister_driver(&imx_reg);

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	return ret;
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}

static void __exit imx_serial_exit(void)
{
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	platform_driver_unregister(&serial_imx_driver);
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	uart_unregister_driver(&imx_reg);
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}

module_init(imx_serial_init);
module_exit(imx_serial_exit);

MODULE_AUTHOR("Sascha Hauer");
MODULE_DESCRIPTION("IMX generic serial port driver");
MODULE_LICENSE("GPL");
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MODULE_ALIAS("platform:imx-uart");