sh-sci.c 32.6 KB
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/*
 * drivers/serial/sh-sci.c
 *
 * SuperH on-chip serial module support.  (SCI with no FIFO / with FIFO)
 *
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 *  Copyright (C) 2002 - 2008  Paul Mundt
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 *  Modified to support SH7720 SCIF. Markus Brunner, Mark Jonas (Jul 2007).
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 *
 * based off of the old drivers/char/sh-sci.c by:
 *
 *   Copyright (C) 1999, 2000  Niibe Yutaka
 *   Copyright (C) 2000  Sugioka Toshinobu
 *   Modified to support multiple serial ports. Stuart Menefy (May 2000).
 *   Modified to support SecureEdge. David McCullough (2002)
 *   Modified to support SH7300 SCIF. Takashi Kusuda (Jun 2003).
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 *   Removed SH7300 support (Jul 2007).
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 *
 * This file is subject to the terms and conditions of the GNU General Public
 * License.  See the file "COPYING" in the main directory of this archive
 * for more details.
 */
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#if defined(CONFIG_SERIAL_SH_SCI_CONSOLE) && defined(CONFIG_MAGIC_SYSRQ)
#define SUPPORT_SYSRQ
#endif
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#undef DEBUG

#include <linux/module.h>
#include <linux/errno.h>
#include <linux/timer.h>
#include <linux/interrupt.h>
#include <linux/tty.h>
#include <linux/tty_flip.h>
#include <linux/serial.h>
#include <linux/major.h>
#include <linux/string.h>
#include <linux/sysrq.h>
#include <linux/ioport.h>
#include <linux/mm.h>
#include <linux/init.h>
#include <linux/delay.h>
#include <linux/console.h>
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#include <linux/platform_device.h>
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#include <linux/serial_sci.h>
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#include <linux/notifier.h>
#include <linux/cpufreq.h>
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#include <linux/clk.h>
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#include <linux/ctype.h>
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#include <linux/err.h>
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#include <linux/list.h>
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#ifdef CONFIG_SUPERH
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#include <asm/clock.h>
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#include <asm/sh_bios.h>
#endif

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#ifdef CONFIG_H8300
#include <asm/gpio.h>
#endif

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#include "sh-sci.h"

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struct sci_port {
	struct uart_port	port;

	/* Port type */
	unsigned int		type;

	/* Port IRQs: ERI, RXI, TXI, BRI (optional) */
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	unsigned int		irqs[SCIx_NR_IRQS];
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	/* Port enable callback */
	void			(*enable)(struct uart_port *port);

	/* Port disable callback */
	void			(*disable)(struct uart_port *port);

	/* Break timer */
	struct timer_list	break_timer;
	int			break_flag;
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#ifdef CONFIG_HAVE_CLK
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	/* Interface clock */
	struct clk		*iclk;
	/* Data clock */
	struct clk		*dclk;
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#endif
	struct list_head	node;
};

struct sh_sci_priv {
	spinlock_t lock;
	struct list_head ports;

#ifdef CONFIG_HAVE_CLK
	struct notifier_block clk_nb;
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#endif
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};

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/* Function prototypes */
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static void sci_stop_tx(struct uart_port *port);
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#define SCI_NPORTS CONFIG_SERIAL_SH_SCI_NR_UARTS
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static struct sci_port sci_ports[SCI_NPORTS];
static struct uart_driver sci_uart_driver;
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static inline struct sci_port *
to_sci_port(struct uart_port *uart)
{
	return container_of(uart, struct sci_port, port);
}

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#if defined(CONFIG_CONSOLE_POLL) || defined(CONFIG_SERIAL_SH_SCI_CONSOLE)
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#ifdef CONFIG_CONSOLE_POLL
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static inline void handle_error(struct uart_port *port)
{
	/* Clear error flags */
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	sci_out(port, SCxSR, SCxSR_ERROR_CLEAR(port));
}

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static int sci_poll_get_char(struct uart_port *port)
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{
	unsigned short status;
	int c;

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	do {
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		status = sci_in(port, SCxSR);
		if (status & SCxSR_ERRORS(port)) {
			handle_error(port);
			continue;
		}
	} while (!(status & SCxSR_RDxF(port)));
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	c = sci_in(port, SCxRDR);
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	/* Dummy read */
	sci_in(port, SCxSR);
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	sci_out(port, SCxSR, SCxSR_RDxF_CLEAR(port));

	return c;
}
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#endif
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static void sci_poll_put_char(struct uart_port *port, unsigned char c)
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{
	unsigned short status;

	do {
		status = sci_in(port, SCxSR);
	} while (!(status & SCxSR_TDxE(port)));

	sci_in(port, SCxSR);            /* Dummy read */
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	sci_out(port, SCxSR, SCxSR_TDxE_CLEAR(port) & ~SCxSR_TEND(port));
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	sci_out(port, SCxTDR, c);
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}
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#endif /* CONFIG_CONSOLE_POLL || CONFIG_SERIAL_SH_SCI_CONSOLE */
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#if defined(__H8300S__)
enum { sci_disable, sci_enable };

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static void h8300_sci_config(struct uart_port *port, unsigned int ctrl)
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{
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	volatile unsigned char *mstpcrl = (volatile unsigned char *)MSTPCRL;
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	int ch = (port->mapbase  - SMR0) >> 3;
	unsigned char mask = 1 << (ch+1);

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	if (ctrl == sci_disable)
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		*mstpcrl |= mask;
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	else
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		*mstpcrl &= ~mask;
}
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static void h8300_sci_enable(struct uart_port *port)
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{
	h8300_sci_config(port, sci_enable);
}

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static void h8300_sci_disable(struct uart_port *port)
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{
	h8300_sci_config(port, sci_disable);
}
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#endif

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#if defined(__H8300H__) || defined(__H8300S__)
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static void sci_init_pins(struct uart_port *port, unsigned int cflag)
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{
	int ch = (port->mapbase - SMR0) >> 3;

	/* set DDR regs */
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	H8300_GPIO_DDR(h8300_sci_pins[ch].port,
		       h8300_sci_pins[ch].rx,
		       H8300_GPIO_INPUT);
	H8300_GPIO_DDR(h8300_sci_pins[ch].port,
		       h8300_sci_pins[ch].tx,
		       H8300_GPIO_OUTPUT);

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	/* tx mark output*/
	H8300_SCI_DR(ch) |= h8300_sci_pins[ch].tx;
}
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#elif defined(CONFIG_CPU_SUBTYPE_SH7710) || defined(CONFIG_CPU_SUBTYPE_SH7712)
static inline void sci_init_pins(struct uart_port *port, unsigned int cflag)
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{
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	if (port->mapbase == 0xA4400000) {
		__raw_writew(__raw_readw(PACR) & 0xffc0, PACR);
		__raw_writew(__raw_readw(PBCR) & 0x0fff, PBCR);
	} else if (port->mapbase == 0xA4410000)
		__raw_writew(__raw_readw(PBCR) & 0xf003, PBCR);
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}
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#elif defined(CONFIG_CPU_SUBTYPE_SH7720) || defined(CONFIG_CPU_SUBTYPE_SH7721)
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static inline void sci_init_pins(struct uart_port *port, unsigned int cflag)
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{
	unsigned short data;

	if (cflag & CRTSCTS) {
		/* enable RTS/CTS */
		if (port->mapbase == 0xa4430000) { /* SCIF0 */
			/* Clear PTCR bit 9-2; enable all scif pins but sck */
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			data = __raw_readw(PORT_PTCR);
			__raw_writew((data & 0xfc03), PORT_PTCR);
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		} else if (port->mapbase == 0xa4438000) { /* SCIF1 */
			/* Clear PVCR bit 9-2 */
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			data = __raw_readw(PORT_PVCR);
			__raw_writew((data & 0xfc03), PORT_PVCR);
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		}
	} else {
		if (port->mapbase == 0xa4430000) { /* SCIF0 */
			/* Clear PTCR bit 5-2; enable only tx and rx  */
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			data = __raw_readw(PORT_PTCR);
			__raw_writew((data & 0xffc3), PORT_PTCR);
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		} else if (port->mapbase == 0xa4438000) { /* SCIF1 */
			/* Clear PVCR bit 5-2 */
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			data = __raw_readw(PORT_PVCR);
			__raw_writew((data & 0xffc3), PORT_PVCR);
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		}
	}
}
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#elif defined(CONFIG_CPU_SH3)
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/* For SH7705, SH7706, SH7707, SH7709, SH7709A, SH7729 */
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static inline void sci_init_pins(struct uart_port *port, unsigned int cflag)
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{
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	unsigned short data;

	/* We need to set SCPCR to enable RTS/CTS */
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	data = __raw_readw(SCPCR);
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	/* Clear out SCP7MD1,0, SCP6MD1,0, SCP4MD1,0*/
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	__raw_writew(data & 0x0fcf, SCPCR);
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	if (!(cflag & CRTSCTS)) {
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		/* We need to set SCPCR to enable RTS/CTS */
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		data = __raw_readw(SCPCR);
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		/* Clear out SCP7MD1,0, SCP4MD1,0,
		   Set SCP6MD1,0 = {01} (output)  */
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		__raw_writew((data & 0x0fcf) | 0x1000, SCPCR);
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		data = ctrl_inb(SCPDR);
		/* Set /RTS2 (bit6) = 0 */
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		ctrl_outb(data & 0xbf, SCPDR);
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	}
}
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#elif defined(CONFIG_CPU_SUBTYPE_SH7722)
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static inline void sci_init_pins(struct uart_port *port, unsigned int cflag)
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{
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	unsigned short data;
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	if (port->mapbase == 0xffe00000) {
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		data = __raw_readw(PSCR);
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		data &= ~0x03cf;
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		if (!(cflag & CRTSCTS))
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			data |= 0x0340;
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		__raw_writew(data, PSCR);
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	}
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}
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#elif defined(CONFIG_CPU_SUBTYPE_SH7763) || \
      defined(CONFIG_CPU_SUBTYPE_SH7780) || \
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      defined(CONFIG_CPU_SUBTYPE_SH7785) || \
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      defined(CONFIG_CPU_SUBTYPE_SH7786) || \
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      defined(CONFIG_CPU_SUBTYPE_SHX3)
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static inline void sci_init_pins(struct uart_port *port, unsigned int cflag)
{
	if (!(cflag & CRTSCTS))
		__raw_writew(0x0080, SCSPTR0); /* Set RTS = 1 */
}
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#elif defined(CONFIG_CPU_SH4) && !defined(CONFIG_CPU_SH4A)
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static inline void sci_init_pins(struct uart_port *port, unsigned int cflag)
{
	if (!(cflag & CRTSCTS))
		__raw_writew(0x0080, SCSPTR2); /* Set RTS = 1 */
}
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#else
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static inline void sci_init_pins(struct uart_port *port, unsigned int cflag)
{
	/* Nothing to do */
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}
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#endif

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#if defined(CONFIG_CPU_SUBTYPE_SH7760) || \
    defined(CONFIG_CPU_SUBTYPE_SH7780) || \
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    defined(CONFIG_CPU_SUBTYPE_SH7785) || \
    defined(CONFIG_CPU_SUBTYPE_SH7786)
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static inline int scif_txroom(struct uart_port *port)
{
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	return SCIF_TXROOM_MAX - (sci_in(port, SCTFDR) & 0xff);
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}

static inline int scif_rxroom(struct uart_port *port)
{
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	return sci_in(port, SCRFDR) & 0xff;
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}
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#elif defined(CONFIG_CPU_SUBTYPE_SH7763)
static inline int scif_txroom(struct uart_port *port)
{
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	if ((port->mapbase == 0xffe00000) ||
	    (port->mapbase == 0xffe08000)) {
		/* SCIF0/1*/
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		return SCIF_TXROOM_MAX - (sci_in(port, SCTFDR) & 0xff);
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	} else {
		/* SCIF2 */
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		return SCIF2_TXROOM_MAX - (sci_in(port, SCFDR) >> 8);
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	}
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}

static inline int scif_rxroom(struct uart_port *port)
{
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	if ((port->mapbase == 0xffe00000) ||
	    (port->mapbase == 0xffe08000)) {
		/* SCIF0/1*/
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		return sci_in(port, SCRFDR) & 0xff;
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	} else {
		/* SCIF2 */
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		return sci_in(port, SCFDR) & SCIF2_RFDC_MASK;
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	}
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}
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#else
static inline int scif_txroom(struct uart_port *port)
{
	return SCIF_TXROOM_MAX - (sci_in(port, SCFDR) >> 8);
}
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static inline int scif_rxroom(struct uart_port *port)
{
	return sci_in(port, SCFDR) & SCIF_RFDC_MASK;
}
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#endif

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static inline int sci_txroom(struct uart_port *port)
{
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	return (sci_in(port, SCxSR) & SCI_TDRE) != 0;
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}

static inline int sci_rxroom(struct uart_port *port)
{
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	return (sci_in(port, SCxSR) & SCxSR_RDxF(port)) != 0;
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}

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/* ********************************************************************** *
 *                   the interrupt related routines                       *
 * ********************************************************************** */

static void sci_transmit_chars(struct uart_port *port)
{
	struct circ_buf *xmit = &port->info->xmit;
	unsigned int stopped = uart_tx_stopped(port);
	unsigned short status;
	unsigned short ctrl;
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	int count;
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	status = sci_in(port, SCxSR);
	if (!(status & SCxSR_TDxE(port))) {
		ctrl = sci_in(port, SCSCR);
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		if (uart_circ_empty(xmit))
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			ctrl &= ~SCI_CTRL_FLAGS_TIE;
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		else
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			ctrl |= SCI_CTRL_FLAGS_TIE;
		sci_out(port, SCSCR, ctrl);
		return;
	}

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	if (port->type == PORT_SCI)
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		count = sci_txroom(port);
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	else
		count = scif_txroom(port);
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	do {
		unsigned char c;

		if (port->x_char) {
			c = port->x_char;
			port->x_char = 0;
		} else if (!uart_circ_empty(xmit) && !stopped) {
			c = xmit->buf[xmit->tail];
			xmit->tail = (xmit->tail + 1) & (UART_XMIT_SIZE - 1);
		} else {
			break;
		}

		sci_out(port, SCxTDR, c);

		port->icount.tx++;
	} while (--count > 0);

	sci_out(port, SCxSR, SCxSR_TDxE_CLEAR(port));

	if (uart_circ_chars_pending(xmit) < WAKEUP_CHARS)
		uart_write_wakeup(port);
	if (uart_circ_empty(xmit)) {
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		sci_stop_tx(port);
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	} else {
		ctrl = sci_in(port, SCSCR);

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		if (port->type != PORT_SCI) {
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			sci_in(port, SCxSR); /* Dummy read */
			sci_out(port, SCxSR, SCxSR_TDxE_CLEAR(port));
		}

		ctrl |= SCI_CTRL_FLAGS_TIE;
		sci_out(port, SCSCR, ctrl);
	}
}

/* On SH3, SCIF may read end-of-break as a space->mark char */
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#define STEPFN(c)  ({int __c = (c); (((__c-1)|(__c)) == -1); })
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static inline void sci_receive_chars(struct uart_port *port)
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{
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	struct sci_port *sci_port = to_sci_port(port);
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	struct tty_struct *tty = port->info->port.tty;
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	int i, count, copied = 0;
	unsigned short status;
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	unsigned char flag;
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	status = sci_in(port, SCxSR);
	if (!(status & SCxSR_RDxF(port)))
		return;

	while (1) {
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		if (port->type == PORT_SCI)
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			count = sci_rxroom(port);
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		else
			count = scif_rxroom(port);
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		/* Don't copy more bytes than there is room for in the buffer */
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		count = tty_buffer_request_room(tty, count);
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		/* If for any reason we can't copy more data, we're done! */
		if (count == 0)
			break;

		if (port->type == PORT_SCI) {
			char c = sci_in(port, SCxRDR);
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			if (uart_handle_sysrq_char(port, c) ||
			    sci_port->break_flag)
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				count = 0;
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			else
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				tty_insert_flip_char(tty, c, TTY_NORMAL);
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		} else {
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			for (i = 0; i < count; i++) {
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				char c = sci_in(port, SCxRDR);
				status = sci_in(port, SCxSR);
#if defined(CONFIG_CPU_SH3)
				/* Skip "chars" during break */
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				if (sci_port->break_flag) {
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					if ((c == 0) &&
					    (status & SCxSR_FER(port))) {
						count--; i--;
						continue;
					}
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					/* Nonzero => end-of-break */
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					dev_dbg(port->dev, "debounce<%02x>\n", c);
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					sci_port->break_flag = 0;

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					if (STEPFN(c)) {
						count--; i--;
						continue;
					}
				}
#endif /* CONFIG_CPU_SH3 */
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				if (uart_handle_sysrq_char(port, c)) {
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					count--; i--;
					continue;
				}

				/* Store data and status */
				if (status&SCxSR_FER(port)) {
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					flag = TTY_FRAME;
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					dev_notice(port->dev, "frame error\n");
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				} else if (status&SCxSR_PER(port)) {
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					flag = TTY_PARITY;
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					dev_notice(port->dev, "parity error\n");
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				} else
					flag = TTY_NORMAL;
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				tty_insert_flip_char(tty, c, flag);
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			}
		}

		sci_in(port, SCxSR); /* dummy read */
		sci_out(port, SCxSR, SCxSR_RDxF_CLEAR(port));

		copied += count;
		port->icount.rx += count;
	}

	if (copied) {
		/* Tell the rest of the system the news. New characters! */
		tty_flip_buffer_push(tty);
	} else {
		sci_in(port, SCxSR); /* dummy read */
		sci_out(port, SCxSR, SCxSR_RDxF_CLEAR(port));
	}
}

#define SCI_BREAK_JIFFIES (HZ/20)
/* The sci generates interrupts during the break,
 * 1 per millisecond or so during the break period, for 9600 baud.
 * So dont bother disabling interrupts.
 * But dont want more than 1 break event.
 * Use a kernel timer to periodically poll the rx line until
 * the break is finished.
 */
static void sci_schedule_break_timer(struct sci_port *port)
{
	port->break_timer.expires = jiffies + SCI_BREAK_JIFFIES;
	add_timer(&port->break_timer);
}
/* Ensure that two consecutive samples find the break over. */
static void sci_break_timer(unsigned long data)
{
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	struct sci_port *port = (struct sci_port *)data;

	if (sci_rxd_in(&port->port) == 0) {
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		port->break_flag = 1;
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		sci_schedule_break_timer(port);
	} else if (port->break_flag == 1) {
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		/* break is over. */
		port->break_flag = 2;
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		sci_schedule_break_timer(port);
	} else
		port->break_flag = 0;
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}

static inline int sci_handle_errors(struct uart_port *port)
{
	int copied = 0;
	unsigned short status = sci_in(port, SCxSR);
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	struct tty_struct *tty = port->info->port.tty;
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551
	if (status & SCxSR_ORER(port)) {
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		/* overrun error */
553
		if (tty_insert_flip_char(tty, 0, TTY_OVERRUN))
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			copied++;
555 556

		dev_notice(port->dev, "overrun error");
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	}

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	if (status & SCxSR_FER(port)) {
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		if (sci_rxd_in(port) == 0) {
			/* Notify of BREAK */
562
			struct sci_port *sci_port = to_sci_port(port);
563 564 565 566 567

			if (!sci_port->break_flag) {
				sci_port->break_flag = 1;
				sci_schedule_break_timer(sci_port);

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				/* Do sysrq handling. */
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				if (uart_handle_break(port))
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					return 0;
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				dev_dbg(port->dev, "BREAK detected\n");

574
				if (tty_insert_flip_char(tty, 0, TTY_BREAK))
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					copied++;
			}

578
		} else {
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			/* frame error */
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			if (tty_insert_flip_char(tty, 0, TTY_FRAME))
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				copied++;
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			dev_notice(port->dev, "frame error\n");
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		}
	}

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	if (status & SCxSR_PER(port)) {
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		/* parity error */
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		if (tty_insert_flip_char(tty, 0, TTY_PARITY))
			copied++;
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		dev_notice(port->dev, "parity error");
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	}

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	if (copied)
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		tty_flip_buffer_push(tty);

	return copied;
}

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static inline int sci_handle_fifo_overrun(struct uart_port *port)
{
	struct tty_struct *tty = port->info->port.tty;
	int copied = 0;

	if (port->type != PORT_SCIF)
		return 0;

	if ((sci_in(port, SCLSR) & SCIF_ORER) != 0) {
		sci_out(port, SCLSR, 0);

		tty_insert_flip_char(tty, 0, TTY_OVERRUN);
		tty_flip_buffer_push(tty);

		dev_notice(port->dev, "overrun error\n");
		copied++;
	}

	return copied;
}

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static inline int sci_handle_breaks(struct uart_port *port)
{
	int copied = 0;
	unsigned short status = sci_in(port, SCxSR);
626
	struct tty_struct *tty = port->info->port.tty;
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	struct sci_port *s = to_sci_port(port);
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	if (uart_handle_break(port))
		return 0;

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	if (!s->break_flag && status & SCxSR_BRK(port)) {
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#if defined(CONFIG_CPU_SH3)
		/* Debounce break */
		s->break_flag = 1;
#endif
		/* Notify of BREAK */
638
		if (tty_insert_flip_char(tty, 0, TTY_BREAK))
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			copied++;
640 641

		dev_dbg(port->dev, "BREAK detected\n");
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	}

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	if (copied)
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		tty_flip_buffer_push(tty);
646

647 648
	copied += sci_handle_fifo_overrun(port);

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	return copied;
}

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static irqreturn_t sci_rx_interrupt(int irq, void *port)
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{
	/* I think sci_receive_chars has to be called irrespective
	 * of whether the I_IXOFF is set, otherwise, how is the interrupt
	 * to be disabled?
	 */
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	sci_receive_chars(port);
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	return IRQ_HANDLED;
}

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static irqreturn_t sci_tx_interrupt(int irq, void *ptr)
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{
	struct uart_port *port = ptr;

667
	spin_lock_irq(&port->lock);
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	sci_transmit_chars(port);
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	spin_unlock_irq(&port->lock);
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	return IRQ_HANDLED;
}

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static irqreturn_t sci_er_interrupt(int irq, void *ptr)
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{
	struct uart_port *port = ptr;

	/* Handle errors */
	if (port->type == PORT_SCI) {
		if (sci_handle_errors(port)) {
			/* discard character in rx buffer */
			sci_in(port, SCxSR);
			sci_out(port, SCxSR, SCxSR_RDxF_CLEAR(port));
		}
	} else {
686
		sci_handle_fifo_overrun(port);
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		sci_rx_interrupt(irq, ptr);
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	}

	sci_out(port, SCxSR, SCxSR_ERROR_CLEAR(port));

	/* Kick the transmission */
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	sci_tx_interrupt(irq, ptr);
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	return IRQ_HANDLED;
}

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static irqreturn_t sci_br_interrupt(int irq, void *ptr)
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{
	struct uart_port *port = ptr;

	/* Handle BREAKs */
	sci_handle_breaks(port);
	sci_out(port, SCxSR, SCxSR_BREAK_CLEAR(port));

	return IRQ_HANDLED;
}

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static irqreturn_t sci_mpxed_interrupt(int irq, void *ptr)
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{
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	unsigned short ssr_status, scr_status;
	struct uart_port *port = ptr;
	irqreturn_t ret = IRQ_NONE;
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	ssr_status = sci_in(port, SCxSR);
	scr_status = sci_in(port, SCSCR);
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	/* Tx Interrupt */
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	if ((ssr_status & 0x0020) && (scr_status & SCI_CTRL_FLAGS_TIE))
		ret = sci_tx_interrupt(irq, ptr);
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	/* Rx Interrupt */
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	if ((ssr_status & 0x0002) && (scr_status & SCI_CTRL_FLAGS_RIE))
		ret = sci_rx_interrupt(irq, ptr);
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	/* Error Interrupt */
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	if ((ssr_status & 0x0080) && (scr_status & SCI_CTRL_FLAGS_REIE))
		ret = sci_er_interrupt(irq, ptr);
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	/* Break Interrupt */
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	if ((ssr_status & 0x0010) && (scr_status & SCI_CTRL_FLAGS_REIE))
		ret = sci_br_interrupt(irq, ptr);
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	return ret;
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}

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#ifdef CONFIG_HAVE_CLK
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/*
 * Here we define a transistion notifier so that we can update all of our
 * ports' baud rate when the peripheral clock changes.
 */
739 740
static int sci_notifier(struct notifier_block *self,
			unsigned long phase, void *p)
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{
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	struct sh_sci_priv *priv = container_of(self,
						struct sh_sci_priv, clk_nb);
	struct sci_port *sci_port;
	unsigned long flags;
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	if ((phase == CPUFREQ_POSTCHANGE) ||
748 749 750
	    (phase == CPUFREQ_RESUMECHANGE)) {
		spin_lock_irqsave(&priv->lock, flags);
		list_for_each_entry(sci_port, &priv->ports, node)
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			sci_port->port.uartclk = clk_get_rate(sci_port->dclk);
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		spin_unlock_irqrestore(&priv->lock, flags);
	}
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	return NOTIFY_OK;
}
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static void sci_clk_enable(struct uart_port *port)
{
	struct sci_port *sci_port = to_sci_port(port);

	clk_enable(sci_port->dclk);
	sci_port->port.uartclk = clk_get_rate(sci_port->dclk);

	if (sci_port->iclk)
		clk_enable(sci_port->iclk);
}

static void sci_clk_disable(struct uart_port *port)
{
	struct sci_port *sci_port = to_sci_port(port);

	if (sci_port->iclk)
		clk_disable(sci_port->iclk);

	clk_disable(sci_port->dclk);
}
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#endif
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static int sci_request_irq(struct sci_port *port)
{
	int i;
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	irqreturn_t (*handlers[4])(int irq, void *ptr) = {
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		sci_er_interrupt, sci_rx_interrupt, sci_tx_interrupt,
		sci_br_interrupt,
	};
	const char *desc[] = { "SCI Receive Error", "SCI Receive Data Full",
			       "SCI Transmit Data Empty", "SCI Break" };

	if (port->irqs[0] == port->irqs[1]) {
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		if (unlikely(!port->irqs[0]))
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			return -ENODEV;
794 795

		if (request_irq(port->irqs[0], sci_mpxed_interrupt,
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				IRQF_DISABLED, "sci", port)) {
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			dev_err(port->port.dev, "Can't allocate IRQ\n");
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			return -ENODEV;
		}
	} else {
		for (i = 0; i < ARRAY_SIZE(handlers); i++) {
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			if (unlikely(!port->irqs[i]))
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				continue;
804

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			if (request_irq(port->irqs[i], handlers[i],
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					IRQF_DISABLED, desc[i], port)) {
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				dev_err(port->port.dev, "Can't allocate IRQ\n");
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				return -ENODEV;
			}
		}
	}

	return 0;
}

static void sci_free_irq(struct sci_port *port)
{
	int i;

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	if (port->irqs[0] == port->irqs[1])
		free_irq(port->irqs[0], port);
	else {
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		for (i = 0; i < ARRAY_SIZE(port->irqs); i++) {
			if (!port->irqs[i])
				continue;

			free_irq(port->irqs[i], port);
		}
	}
}

static unsigned int sci_tx_empty(struct uart_port *port)
{
	/* Can't detect */
	return TIOCSER_TEMT;
}

static void sci_set_mctrl(struct uart_port *port, unsigned int mctrl)
{
	/* This routine is used for seting signals of: DTR, DCD, CTS/RTS */
	/* We use SCIF's hardware for CTS/RTS, so don't need any for that. */
	/* If you have signals for DTR and DCD, please implement here. */
}

static unsigned int sci_get_mctrl(struct uart_port *port)
{
	/* This routine is used for geting signals of: DTR, DCD, DSR, RI,
	   and CTS/RTS */

	return TIOCM_DTR | TIOCM_RTS | TIOCM_DSR;
}

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static void sci_start_tx(struct uart_port *port)
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{
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	unsigned short ctrl;
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857 858 859 860
	/* Set TIE (Transmit Interrupt Enable) bit in SCSCR */
	ctrl = sci_in(port, SCSCR);
	ctrl |= SCI_CTRL_FLAGS_TIE;
	sci_out(port, SCSCR, ctrl);
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}

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static void sci_stop_tx(struct uart_port *port)
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{
	unsigned short ctrl;

	/* Clear TIE (Transmit Interrupt Enable) bit in SCSCR */
	ctrl = sci_in(port, SCSCR);
	ctrl &= ~SCI_CTRL_FLAGS_TIE;
	sci_out(port, SCSCR, ctrl);
}

static void sci_start_rx(struct uart_port *port, unsigned int tty_start)
{
	unsigned short ctrl;

	/* Set RIE (Receive Interrupt Enable) bit in SCSCR */
	ctrl = sci_in(port, SCSCR);
	ctrl |= SCI_CTRL_FLAGS_RIE | SCI_CTRL_FLAGS_REIE;
	sci_out(port, SCSCR, ctrl);
}

static void sci_stop_rx(struct uart_port *port)
{
	unsigned short ctrl;

	/* Clear RIE (Receive Interrupt Enable) bit in SCSCR */
	ctrl = sci_in(port, SCSCR);
	ctrl &= ~(SCI_CTRL_FLAGS_RIE | SCI_CTRL_FLAGS_REIE);
	sci_out(port, SCSCR, ctrl);
}

static void sci_enable_ms(struct uart_port *port)
{
	/* Nothing here yet .. */
}

static void sci_break_ctl(struct uart_port *port, int break_state)
{
	/* Nothing here yet .. */
}

static int sci_startup(struct uart_port *port)
{
905
	struct sci_port *s = to_sci_port(port);
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	if (s->enable)
		s->enable(port);
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	sci_request_irq(s);
911
	sci_start_tx(port);
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	sci_start_rx(port, 1);

	return 0;
}

static void sci_shutdown(struct uart_port *port)
{
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	struct sci_port *s = to_sci_port(port);
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	sci_stop_rx(port);
922
	sci_stop_tx(port);
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	sci_free_irq(s);

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	if (s->disable)
		s->disable(port);
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}

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static void sci_set_termios(struct uart_port *port, struct ktermios *termios,
			    struct ktermios *old)
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{
	unsigned int status, baud, smr_val;
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	int t = -1;
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	baud = uart_get_baud_rate(port, termios, old, 0, port->uartclk/16);
936 937
	if (likely(baud))
		t = SCBRR_VALUE(baud, port->uartclk);
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	do {
		status = sci_in(port, SCxSR);
	} while (!(status & SCxSR_TEND(port)));

	sci_out(port, SCSCR, 0x00);	/* TE=0, RE=0, CKE1=0 */

945
	if (port->type != PORT_SCI)
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		sci_out(port, SCFCR, SCFCR_RFRST | SCFCR_TFRST);

	smr_val = sci_in(port, SCSMR) & 3;
	if ((termios->c_cflag & CSIZE) == CS7)
		smr_val |= 0x40;
	if (termios->c_cflag & PARENB)
		smr_val |= 0x20;
	if (termios->c_cflag & PARODD)
		smr_val |= 0x30;
	if (termios->c_cflag & CSTOPB)
		smr_val |= 0x08;

	uart_update_timeout(port, termios->c_cflag, baud);

	sci_out(port, SCSMR, smr_val);

	if (t > 0) {
963
		if (t >= 256) {
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			sci_out(port, SCSMR, (sci_in(port, SCSMR) & ~3) | 1);
			t >>= 2;
966
		} else
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			sci_out(port, SCSMR, sci_in(port, SCSMR) & ~3);
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		sci_out(port, SCBRR, t);
		udelay((1000000+(baud-1)) / baud); /* Wait one bit interval */
	}

973 974
	sci_init_pins(port, termios->c_cflag);
	sci_out(port, SCFCR, (termios->c_cflag & CRTSCTS) ? SCFCR_MCE : 0);
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	sci_out(port, SCSCR, SCSCR_INIT(port));

	if ((termios->c_cflag & CREAD) != 0)
979
		sci_start_rx(port, 0);
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}

static const char *sci_type(struct uart_port *port)
{
	switch (port->type) {
985 986 987 988 989 990 991 992
	case PORT_IRDA:
		return "irda";
	case PORT_SCI:
		return "sci";
	case PORT_SCIF:
		return "scif";
	case PORT_SCIFA:
		return "scifa";
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	}

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	return NULL;
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}

static void sci_release_port(struct uart_port *port)
{
	/* Nothing here yet .. */
}

static int sci_request_port(struct uart_port *port)
{
	/* Nothing here yet .. */
	return 0;
}

static void sci_config_port(struct uart_port *port, int flags)
{
1011
	struct sci_port *s = to_sci_port(port);
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	port->type = s->type;

1015 1016 1017 1018
	if (port->membase)
		return;

	if (port->flags & UPF_IOREMAP) {
1019
		port->membase = ioremap_nocache(port->mapbase, 0x40);
1020 1021 1022 1023 1024 1025 1026 1027 1028 1029

		if (IS_ERR(port->membase))
			dev_err(port->dev, "can't remap port#%d\n", port->line);
	} else {
		/*
		 * For the simple (and majority of) cases where we don't
		 * need to do any remapping, just cast the cookie
		 * directly.
		 */
		port->membase = (void __iomem *)port->mapbase;
1030
	}
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}

static int sci_verify_port(struct uart_port *port, struct serial_struct *ser)
{
1035
	struct sci_port *s = to_sci_port(port);
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	if (ser->irq != s->irqs[SCIx_TXI_IRQ] || ser->irq > nr_irqs)
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		return -EINVAL;
	if (ser->baud_base < 2400)
		/* No paper tape reader for Mitch.. */
		return -EINVAL;

	return 0;
}

static struct uart_ops sci_uart_ops = {
	.tx_empty	= sci_tx_empty,
	.set_mctrl	= sci_set_mctrl,
	.get_mctrl	= sci_get_mctrl,
	.start_tx	= sci_start_tx,
	.stop_tx	= sci_stop_tx,
	.stop_rx	= sci_stop_rx,
	.enable_ms	= sci_enable_ms,
	.break_ctl	= sci_break_ctl,
	.startup	= sci_startup,
	.shutdown	= sci_shutdown,
	.set_termios	= sci_set_termios,
	.type		= sci_type,
	.release_port	= sci_release_port,
	.request_port	= sci_request_port,
	.config_port	= sci_config_port,
	.verify_port	= sci_verify_port,
1063 1064 1065 1066
#ifdef CONFIG_CONSOLE_POLL
	.poll_get_char	= sci_poll_get_char,
	.poll_put_char	= sci_poll_put_char,
#endif
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};

1069 1070
static void __devinit sci_init_single(struct platform_device *dev,
				      struct sci_port *sci_port,
1071 1072
				      unsigned int index,
				      struct plat_sci_port *p)
1073
{
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	sci_port->port.ops	= &sci_uart_ops;
	sci_port->port.iotype	= UPIO_MEM;
	sci_port->port.line	= index;
	sci_port->port.fifosize	= 1;
1078 1079 1080

#if defined(__H8300H__) || defined(__H8300S__)
#ifdef __H8300S__
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	sci_port->enable	= h8300_sci_enable;
	sci_port->disable	= h8300_sci_disable;
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#endif
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	sci_port->port.uartclk	= CONFIG_CPU_CLOCK;
1085
#elif defined(CONFIG_HAVE_CLK)
1086
	sci_port->iclk		= p->clk ? clk_get(&dev->dev, p->clk) : NULL;
1087
	sci_port->dclk		= clk_get(&dev->dev, "peripheral_clk");
1088 1089
	sci_port->enable	= sci_clk_enable;
	sci_port->disable	= sci_clk_disable;
1090 1091
#else
#error "Need a valid uartclk"
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#endif
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	sci_port->break_timer.data = (unsigned long)sci_port;
	sci_port->break_timer.function = sci_break_timer;
	init_timer(&sci_port->break_timer);

	sci_port->port.mapbase	= p->mapbase;
	sci_port->port.membase	= p->membase;

	sci_port->port.irq	= p->irqs[SCIx_TXI_IRQ];
	sci_port->port.flags	= p->flags;
1103
	sci_port->port.dev	= &dev->dev;
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	sci_port->type		= sci_port->port.type = p->type;

	memcpy(&sci_port->irqs, &p->irqs, sizeof(p->irqs));
1107

1108 1109
}

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#ifdef CONFIG_SERIAL_SH_SCI_CONSOLE
1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122
static struct tty_driver *serial_console_device(struct console *co, int *index)
{
	struct uart_driver *p = &sci_uart_driver;
	*index = co->index;
	return p->tty_driver;
}

static void serial_console_putchar(struct uart_port *port, int ch)
{
	sci_poll_put_char(port, ch);
}

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/*
 *	Print a string to the serial port trying not to disturb
 *	any possible real use of the port...
 */
static void serial_console_write(struct console *co, const char *s,
				 unsigned count)
{
1130
	struct uart_port *port = co->data;
1131
	struct sci_port *sci_port = to_sci_port(port);
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	unsigned short bits;
1133

1134 1135 1136 1137
	if (sci_port->enable)
		sci_port->enable(port);

	uart_console_write(port, s, count, serial_console_putchar);
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	/* wait until fifo is empty and last bit has been transmitted */
	bits = SCxSR_TDxE(port) | SCxSR_TEND(port);
	while ((sci_in(port, SCxSR) & bits) != bits)
		cpu_relax();
1143 1144 1145

	if (sci_port->disable);
		sci_port->disable(port);
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}

static int __init serial_console_setup(struct console *co, char *options)
{
1150
	struct sci_port *sci_port;
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	struct uart_port *port;
	int baud = 115200;
	int bits = 8;
	int parity = 'n';
	int flow = 'n';
	int ret;

1158 1159 1160 1161 1162 1163 1164 1165
	/*
	 * 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 >= SCI_NPORTS)
		co->index = 0;

1166 1167 1168
	sci_port = &sci_ports[co->index];
	port = &sci_port->port;
	co->data = port;
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	/*
1171 1172 1173 1174
	 * Also need to check port->type, we don't actually have any
	 * UPIO_PORT ports, but uart_report_port() handily misreports
	 * it anyways if we don't have a port available by the time this is
	 * called.
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	 */
1176 1177 1178
	if (!port->type)
		return -ENODEV;

1179
	sci_config_port(port, 0);
1180

1181 1182
	if (sci_port->enable)
		sci_port->enable(port);
1183

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

	ret = uart_set_options(port, co, baud, parity, bits, flow);
#if defined(__H8300H__) || defined(__H8300S__)
	/* disable rx interrupt */
	if (ret == 0)
		sci_stop_rx(port);
#endif
1193
	/* TODO: disable clock */
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	return ret;
}

static struct console serial_console = {
	.name		= "ttySC",
1199
	.device		= serial_console_device,
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	.write		= serial_console_write,
	.setup		= serial_console_setup,
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	.flags		= CON_PRINTBUFFER,
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	.index		= -1,
};

static int __init sci_console_init(void)
{
	register_console(&serial_console);
	return 0;
}
console_initcall(sci_console_init);
#endif /* CONFIG_SERIAL_SH_SCI_CONSOLE */

1214
#if defined(CONFIG_SERIAL_SH_SCI_CONSOLE)
1215
#define SCI_CONSOLE	(&serial_console)
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#else
1217
#define SCI_CONSOLE	0
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#endif

static char banner[] __initdata =
	KERN_INFO "SuperH SCI(F) driver initialized\n";

static struct uart_driver sci_uart_driver = {
	.owner		= THIS_MODULE,
	.driver_name	= "sci",
	.dev_name	= "ttySC",
	.major		= SCI_MAJOR,
	.minor		= SCI_MINOR_START,
1229
	.nr		= SCI_NPORTS,
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	.cons		= SCI_CONSOLE,
};

1233

1234
static int sci_remove(struct platform_device *dev)
1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253
{
	struct sh_sci_priv *priv = platform_get_drvdata(dev);
	struct sci_port *p;
	unsigned long flags;

#ifdef CONFIG_HAVE_CLK
	cpufreq_unregister_notifier(&priv->clk_nb, CPUFREQ_TRANSITION_NOTIFIER);
#endif

	spin_lock_irqsave(&priv->lock, flags);
	list_for_each_entry(p, &priv->ports, node)
		uart_remove_one_port(&sci_uart_driver, &p->port);

	spin_unlock_irqrestore(&priv->lock, flags);

	kfree(priv);
	return 0;
}

1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272
static int __devinit sci_probe_single(struct platform_device *dev,
				      unsigned int index,
				      struct plat_sci_port *p,
				      struct sci_port *sciport)
{
	struct sh_sci_priv *priv = platform_get_drvdata(dev);
	unsigned long flags;
	int ret;

	/* Sanity check */
	if (unlikely(index >= SCI_NPORTS)) {
		dev_notice(&dev->dev, "Attempting to register port "
			   "%d when only %d are available.\n",
			   index+1, SCI_NPORTS);
		dev_notice(&dev->dev, "Consider bumping "
			   "CONFIG_SERIAL_SH_SCI_NR_UARTS!\n");
		return 0;
	}

1273
	sci_init_single(dev, sciport, index, p);
1274 1275

	ret = uart_add_one_port(&sci_uart_driver, &sciport->port);
1276
	if (ret)
1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287
		return ret;

	INIT_LIST_HEAD(&sciport->node);

	spin_lock_irqsave(&priv->lock, flags);
	list_add(&sciport->node, &priv->ports);
	spin_unlock_irqrestore(&priv->lock, flags);

	return 0;
}

1288 1289 1290 1291 1292 1293 1294
/*
 * Register a set of serial devices attached to a platform device.  The
 * list is terminated with a zero flags entry, which means we expect
 * all entries to have at least UPF_BOOT_AUTOCONF set. Platforms that need
 * remapping (such as sh64) should also set UPF_IOREMAP.
 */
static int __devinit sci_probe(struct platform_device *dev)
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{
1296
	struct plat_sci_port *p = dev->dev.platform_data;
1297
	struct sh_sci_priv *priv;
1298
	int i, ret = -EINVAL;
1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311

	priv = kzalloc(sizeof(*priv), GFP_KERNEL);
	if (!priv)
		return -ENOMEM;

	INIT_LIST_HEAD(&priv->ports);
	spin_lock_init(&priv->lock);
	platform_set_drvdata(dev, priv);

#ifdef CONFIG_HAVE_CLK
	priv->clk_nb.notifier_call = sci_notifier;
	cpufreq_register_notifier(&priv->clk_nb, CPUFREQ_TRANSITION_NOTIFIER);
#endif
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1313 1314 1315
	if (dev->id != -1) {
		ret = sci_probe_single(dev, dev->id, p, &sci_ports[dev->id]);
		if (ret)
1316
			goto err_unreg;
1317 1318 1319 1320 1321
	} else {
		for (i = 0; p && p->flags != 0; p++, i++) {
			ret = sci_probe_single(dev, i, p, &sci_ports[i]);
			if (ret)
				goto err_unreg;
1322 1323
		}
	}
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#ifdef CONFIG_SH_STANDARD_BIOS
	sh_bios_gdb_detach();
#endif

1329
	return 0;
1330 1331

err_unreg:
1332
	sci_remove(dev);
1333
	return ret;
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}

1336
static int sci_suspend(struct platform_device *dev, pm_message_t state)
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{
1338 1339 1340
	struct sh_sci_priv *priv = platform_get_drvdata(dev);
	struct sci_port *p;
	unsigned long flags;
1341

1342 1343 1344
	spin_lock_irqsave(&priv->lock, flags);
	list_for_each_entry(p, &priv->ports, node)
		uart_suspend_port(&sci_uart_driver, &p->port);
1345

1346
	spin_unlock_irqrestore(&priv->lock, flags);
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1348 1349
	return 0;
}
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1351 1352
static int sci_resume(struct platform_device *dev)
{
1353 1354 1355
	struct sh_sci_priv *priv = platform_get_drvdata(dev);
	struct sci_port *p;
	unsigned long flags;
1356

1357 1358 1359
	spin_lock_irqsave(&priv->lock, flags);
	list_for_each_entry(p, &priv->ports, node)
		uart_resume_port(&sci_uart_driver, &p->port);
1360

1361
	spin_unlock_irqrestore(&priv->lock, flags);
1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395

	return 0;
}

static struct platform_driver sci_driver = {
	.probe		= sci_probe,
	.remove		= __devexit_p(sci_remove),
	.suspend	= sci_suspend,
	.resume		= sci_resume,
	.driver		= {
		.name	= "sh-sci",
		.owner	= THIS_MODULE,
	},
};

static int __init sci_init(void)
{
	int ret;

	printk(banner);

	ret = uart_register_driver(&sci_uart_driver);
	if (likely(ret == 0)) {
		ret = platform_driver_register(&sci_driver);
		if (unlikely(ret))
			uart_unregister_driver(&sci_uart_driver);
	}

	return ret;
}

static void __exit sci_exit(void)
{
	platform_driver_unregister(&sci_driver);
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	uart_unregister_driver(&sci_uart_driver);
}

module_init(sci_init);
module_exit(sci_exit);

1402
MODULE_LICENSE("GPL");
1403
MODULE_ALIAS("platform:sh-sci");