bfin_uart.c 39.8 KB
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/*
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 * Blackfin On-Chip Serial Driver
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 *
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 * Copyright 2006-2011 Analog Devices Inc.
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 *
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 * Enter bugs at http://blackfin.uclinux.org/
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 *
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 * Licensed under the GPL-2 or later.
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 */

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

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#define DRIVER_NAME "bfin-uart"
#define pr_fmt(fmt) DRIVER_NAME ": " fmt

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#include <linux/module.h>
#include <linux/ioport.h>
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#include <linux/gfp.h>
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#include <linux/io.h>
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#include <linux/init.h>
#include <linux/console.h>
#include <linux/sysrq.h>
#include <linux/platform_device.h>
#include <linux/tty.h>
#include <linux/tty_flip.h>
#include <linux/serial_core.h>
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#include <linux/gpio.h>
#include <linux/irq.h>
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#include <linux/kgdb.h>
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#include <linux/slab.h>
#include <linux/dma-mapping.h>
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#include <asm/portmux.h>
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#include <asm/cacheflush.h>
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#include <asm/dma.h>
#include <asm/bfin_serial.h>
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#ifdef CONFIG_SERIAL_BFIN_MODULE
# undef CONFIG_EARLY_PRINTK
#endif

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#ifdef CONFIG_SERIAL_BFIN_MODULE
# undef CONFIG_EARLY_PRINTK
#endif

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/* UART name and device definitions */
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#define BFIN_SERIAL_DEV_NAME	"ttyBF"
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#define BFIN_SERIAL_MAJOR	204
#define BFIN_SERIAL_MINOR	64

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static struct bfin_serial_port *bfin_serial_ports[BFIN_UART_NR_PORTS];
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#if defined(CONFIG_KGDB_SERIAL_CONSOLE) || \
	defined(CONFIG_KGDB_SERIAL_CONSOLE_MODULE)

# ifndef CONFIG_SERIAL_BFIN_PIO
#  error KGDB only support UART in PIO mode.
# endif

static int kgdboc_port_line;
static int kgdboc_break_enabled;
#endif
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/*
 * Setup for console. Argument comes from the menuconfig
 */
#define DMA_RX_XCOUNT		512
#define DMA_RX_YCOUNT		(PAGE_SIZE / DMA_RX_XCOUNT)

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#define DMA_RX_FLUSH_JIFFIES	(HZ / 50)
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#ifdef CONFIG_SERIAL_BFIN_DMA
static void bfin_serial_dma_tx_chars(struct bfin_serial_port *uart);
#else
static void bfin_serial_tx_chars(struct bfin_serial_port *uart);
#endif

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static void bfin_serial_reset_irda(struct uart_port *port);

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#if defined(CONFIG_SERIAL_BFIN_CTSRTS) || \
	defined(CONFIG_SERIAL_BFIN_HARD_CTSRTS)
static unsigned int bfin_serial_get_mctrl(struct uart_port *port)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
	if (uart->cts_pin < 0)
		return TIOCM_CTS | TIOCM_DSR | TIOCM_CAR;

	/* CTS PIN is negative assertive. */
	if (UART_GET_CTS(uart))
		return TIOCM_CTS | TIOCM_DSR | TIOCM_CAR;
	else
		return TIOCM_DSR | TIOCM_CAR;
}

static void bfin_serial_set_mctrl(struct uart_port *port, unsigned int mctrl)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
	if (uart->rts_pin < 0)
		return;

	/* RTS PIN is negative assertive. */
	if (mctrl & TIOCM_RTS)
		UART_ENABLE_RTS(uart);
	else
		UART_DISABLE_RTS(uart);
}

/*
 * Handle any change of modem status signal.
 */
static irqreturn_t bfin_serial_mctrl_cts_int(int irq, void *dev_id)
{
	struct bfin_serial_port *uart = dev_id;
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	unsigned int status = bfin_serial_get_mctrl(&uart->port);
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#ifdef CONFIG_SERIAL_BFIN_HARD_CTSRTS
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	struct tty_struct *tty = uart->port.state->port.tty;

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	UART_CLEAR_SCTS(uart);
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	if (tty->hw_stopped) {
		if (status) {
			tty->hw_stopped = 0;
			uart_write_wakeup(&uart->port);
		}
	} else {
		if (!status)
			tty->hw_stopped = 1;
	}
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#endif
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	uart_handle_cts_change(&uart->port, status & TIOCM_CTS);
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	return IRQ_HANDLED;
}
#else
static unsigned int bfin_serial_get_mctrl(struct uart_port *port)
{
	return TIOCM_CTS | TIOCM_DSR | TIOCM_CAR;
}

static void bfin_serial_set_mctrl(struct uart_port *port, unsigned int mctrl)
{
}
#endif

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/*
 * interrupts are disabled on entry
 */
static void bfin_serial_stop_tx(struct uart_port *port)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
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#ifdef CONFIG_SERIAL_BFIN_DMA
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	struct circ_buf *xmit = &uart->port.state->xmit;
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#endif
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	while (!(UART_GET_LSR(uart) & TEMT))
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		cpu_relax();
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#ifdef CONFIG_SERIAL_BFIN_DMA
	disable_dma(uart->tx_dma_channel);
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	xmit->tail = (xmit->tail + uart->tx_count) & (UART_XMIT_SIZE - 1);
	uart->port.icount.tx += uart->tx_count;
	uart->tx_count = 0;
	uart->tx_done = 1;
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#else
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#if defined(CONFIG_BF54x) || defined(CONFIG_BF60x)
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	/* Clear TFI bit */
	UART_PUT_LSR(uart, TFI);
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#endif
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	UART_CLEAR_IER(uart, ETBEI);
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#endif
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}

/*
 * port is locked and interrupts are disabled
 */
static void bfin_serial_start_tx(struct uart_port *port)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
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	struct tty_struct *tty = uart->port.state->port.tty;
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	/*
	 * To avoid losting RX interrupt, we reset IR function
	 * before sending data.
	 */
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	if (tty->termios.c_line == N_IRDA)
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		bfin_serial_reset_irda(port);
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#ifdef CONFIG_SERIAL_BFIN_DMA
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	if (uart->tx_done)
		bfin_serial_dma_tx_chars(uart);
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#else
	UART_SET_IER(uart, ETBEI);
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	bfin_serial_tx_chars(uart);
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#endif
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}

/*
 * Interrupts are enabled
 */
static void bfin_serial_stop_rx(struct uart_port *port)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
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	UART_CLEAR_IER(uart, ERBFI);
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}

/*
 * Set the modem control timer to fire immediately.
 */
static void bfin_serial_enable_ms(struct uart_port *port)
{
}

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#if ANOMALY_05000363 && defined(CONFIG_SERIAL_BFIN_PIO)
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# define UART_GET_ANOMALY_THRESHOLD(uart)    ((uart)->anomaly_threshold)
# define UART_SET_ANOMALY_THRESHOLD(uart, v) ((uart)->anomaly_threshold = (v))
#else
# define UART_GET_ANOMALY_THRESHOLD(uart)    0
# define UART_SET_ANOMALY_THRESHOLD(uart, v)
#endif

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#ifdef CONFIG_SERIAL_BFIN_PIO
static void bfin_serial_rx_chars(struct bfin_serial_port *uart)
{
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	struct tty_struct *tty = NULL;
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	unsigned int status, ch, flg;
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	static struct timeval anomaly_start = { .tv_sec = 0 };
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	status = UART_GET_LSR(uart);
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	UART_CLEAR_LSR(uart);

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	ch = UART_GET_CHAR(uart);
	uart->port.icount.rx++;
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#if defined(CONFIG_KGDB_SERIAL_CONSOLE) || \
	defined(CONFIG_KGDB_SERIAL_CONSOLE_MODULE)
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	if (kgdb_connected && kgdboc_port_line == uart->port.line
		&& kgdboc_break_enabled)
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		if (ch == 0x3) {/* Ctrl + C */
			kgdb_breakpoint();
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			return;
		}
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	if (!uart->port.state || !uart->port.state->port.tty)
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		return;
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#endif
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	tty = uart->port.state->port.tty;
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	if (ANOMALY_05000363) {
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		/* The BF533 (and BF561) family of processors have a nice anomaly
		 * where they continuously generate characters for a "single" break.
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		 * We have to basically ignore this flood until the "next" valid
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		 * character comes across.  Due to the nature of the flood, it is
		 * not possible to reliably catch bytes that are sent too quickly
		 * after this break.  So application code talking to the Blackfin
		 * which sends a break signal must allow at least 1.5 character
		 * times after the end of the break for things to stabilize.  This
		 * timeout was picked as it must absolutely be larger than 1
		 * character time +/- some percent.  So 1.5 sounds good.  All other
		 * Blackfin families operate properly.  Woo.
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		 */
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		if (anomaly_start.tv_sec) {
			struct timeval curr;
			suseconds_t usecs;

			if ((~ch & (~ch + 1)) & 0xff)
				goto known_good_char;

			do_gettimeofday(&curr);
			if (curr.tv_sec - anomaly_start.tv_sec > 1)
				goto known_good_char;

			usecs = 0;
			if (curr.tv_sec != anomaly_start.tv_sec)
				usecs += USEC_PER_SEC;
			usecs += curr.tv_usec - anomaly_start.tv_usec;

			if (usecs > UART_GET_ANOMALY_THRESHOLD(uart))
				goto known_good_char;

			if (ch)
				anomaly_start.tv_sec = 0;
			else
				anomaly_start = curr;

			return;

 known_good_char:
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			status &= ~BI;
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			anomaly_start.tv_sec = 0;
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		}
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	}

	if (status & BI) {
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		if (ANOMALY_05000363)
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			if (bfin_revid() < 5)
				do_gettimeofday(&anomaly_start);
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		uart->port.icount.brk++;
		if (uart_handle_break(&uart->port))
			goto ignore_char;
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		status &= ~(PE | FE);
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	}
	if (status & PE)
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		uart->port.icount.parity++;
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	if (status & OE)
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		uart->port.icount.overrun++;
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	if (status & FE)
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		uart->port.icount.frame++;
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	status &= uart->port.read_status_mask;

	if (status & BI)
		flg = TTY_BREAK;
	else if (status & PE)
		flg = TTY_PARITY;
	else if (status & FE)
		flg = TTY_FRAME;
	else
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		flg = TTY_NORMAL;

	if (uart_handle_sysrq_char(&uart->port, ch))
		goto ignore_char;

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	uart_insert_char(&uart->port, status, OE, ch, flg);

 ignore_char:
	tty_flip_buffer_push(tty);
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}

static void bfin_serial_tx_chars(struct bfin_serial_port *uart)
{
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	struct circ_buf *xmit = &uart->port.state->xmit;
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	if (uart_circ_empty(xmit) || uart_tx_stopped(&uart->port)) {
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#if defined(CONFIG_BF54x) || defined(CONFIG_BF60x)
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		/* Clear TFI bit */
		UART_PUT_LSR(uart, TFI);
#endif
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		/* Anomaly notes:
		 *  05000215 -	we always clear ETBEI within last UART TX
		 *		interrupt to end a string. It is always set
		 *		when start a new tx.
		 */
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		UART_CLEAR_IER(uart, ETBEI);
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		return;
	}

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	if (uart->port.x_char) {
		UART_PUT_CHAR(uart, uart->port.x_char);
		uart->port.icount.tx++;
		uart->port.x_char = 0;
	}

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	while ((UART_GET_LSR(uart) & THRE) && xmit->tail != xmit->head) {
		UART_PUT_CHAR(uart, xmit->buf[xmit->tail]);
		xmit->tail = (xmit->tail + 1) & (UART_XMIT_SIZE - 1);
		uart->port.icount.tx++;
	}
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	if (uart_circ_chars_pending(xmit) < WAKEUP_CHARS)
		uart_write_wakeup(&uart->port);
}

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static irqreturn_t bfin_serial_rx_int(int irq, void *dev_id)
{
	struct bfin_serial_port *uart = dev_id;

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	while (UART_GET_LSR(uart) & DR)
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		bfin_serial_rx_chars(uart);
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	return IRQ_HANDLED;
}

static irqreturn_t bfin_serial_tx_int(int irq, void *dev_id)
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{
	struct bfin_serial_port *uart = dev_id;

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	spin_lock(&uart->port.lock);
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	if (UART_GET_LSR(uart) & THRE)
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		bfin_serial_tx_chars(uart);
	spin_unlock(&uart->port.lock);
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	return IRQ_HANDLED;
}
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#endif
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#ifdef CONFIG_SERIAL_BFIN_DMA
static void bfin_serial_dma_tx_chars(struct bfin_serial_port *uart)
{
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	struct circ_buf *xmit = &uart->port.state->xmit;
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	uart->tx_done = 0;

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	if (uart_circ_empty(xmit) || uart_tx_stopped(&uart->port)) {
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		uart->tx_count = 0;
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		uart->tx_done = 1;
		return;
	}

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	if (uart->port.x_char) {
		UART_PUT_CHAR(uart, uart->port.x_char);
		uart->port.icount.tx++;
		uart->port.x_char = 0;
	}
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	uart->tx_count = CIRC_CNT(xmit->head, xmit->tail, UART_XMIT_SIZE);
	if (uart->tx_count > (UART_XMIT_SIZE - xmit->tail))
		uart->tx_count = UART_XMIT_SIZE - xmit->tail;
	blackfin_dcache_flush_range((unsigned long)(xmit->buf+xmit->tail),
					(unsigned long)(xmit->buf+xmit->tail+uart->tx_count));
	set_dma_config(uart->tx_dma_channel,
		set_bfin_dma_config(DIR_READ, DMA_FLOW_STOP,
			INTR_ON_BUF,
			DIMENSION_LINEAR,
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			DATA_SIZE_8,
			DMA_SYNC_RESTART));
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	set_dma_start_addr(uart->tx_dma_channel, (unsigned long)(xmit->buf+xmit->tail));
	set_dma_x_count(uart->tx_dma_channel, uart->tx_count);
	set_dma_x_modify(uart->tx_dma_channel, 1);
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	SSYNC();
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	enable_dma(uart->tx_dma_channel);
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	UART_SET_IER(uart, ETBEI);
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}

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static void bfin_serial_dma_rx_chars(struct bfin_serial_port *uart)
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{
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	struct tty_struct *tty = uart->port.state->port.tty;
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	int i, flg, status;

	status = UART_GET_LSR(uart);
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	UART_CLEAR_LSR(uart);

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	uart->port.icount.rx +=
		CIRC_CNT(uart->rx_dma_buf.head, uart->rx_dma_buf.tail,
		UART_XMIT_SIZE);
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	if (status & BI) {
		uart->port.icount.brk++;
		if (uart_handle_break(&uart->port))
			goto dma_ignore_char;
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		status &= ~(PE | FE);
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	}
	if (status & PE)
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		uart->port.icount.parity++;
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	if (status & OE)
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		uart->port.icount.overrun++;
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	if (status & FE)
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		uart->port.icount.frame++;
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	status &= uart->port.read_status_mask;

	if (status & BI)
		flg = TTY_BREAK;
	else if (status & PE)
		flg = TTY_PARITY;
	else if (status & FE)
		flg = TTY_FRAME;
	else
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		flg = TTY_NORMAL;

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	for (i = uart->rx_dma_buf.tail; ; i++) {
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		if (i >= UART_XMIT_SIZE)
			i = 0;
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		if (i == uart->rx_dma_buf.head)
			break;
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		if (!uart_handle_sysrq_char(&uart->port, uart->rx_dma_buf.buf[i]))
			uart_insert_char(&uart->port, status, OE,
				uart->rx_dma_buf.buf[i], flg);
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	}
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 dma_ignore_char:
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	tty_flip_buffer_push(tty);
}

void bfin_serial_rx_dma_timeout(struct bfin_serial_port *uart)
{
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	int x_pos, pos;
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	dma_disable_irq_nosync(uart->rx_dma_channel);
	spin_lock_bh(&uart->rx_lock);
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	/* 2D DMA RX buffer ring is used. Because curr_y_count and
	 * curr_x_count can't be read as an atomic operation,
	 * curr_y_count should be read before curr_x_count. When
	 * curr_x_count is read, curr_y_count may already indicate
	 * next buffer line. But, the position calculated here is
	 * still indicate the old line. The wrong position data may
	 * be smaller than current buffer tail, which cause garbages
	 * are received if it is not prohibit.
	 */
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	uart->rx_dma_nrows = get_dma_curr_ycount(uart->rx_dma_channel);
	x_pos = get_dma_curr_xcount(uart->rx_dma_channel);
	uart->rx_dma_nrows = DMA_RX_YCOUNT - uart->rx_dma_nrows;
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	if (uart->rx_dma_nrows == DMA_RX_YCOUNT || x_pos == 0)
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		uart->rx_dma_nrows = 0;
	x_pos = DMA_RX_XCOUNT - x_pos;
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	if (x_pos == DMA_RX_XCOUNT)
		x_pos = 0;

	pos = uart->rx_dma_nrows * DMA_RX_XCOUNT + x_pos;
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	/* Ignore receiving data if new position is in the same line of
	 * current buffer tail and small.
	 */
	if (pos > uart->rx_dma_buf.tail ||
		uart->rx_dma_nrows < (uart->rx_dma_buf.tail/DMA_RX_XCOUNT)) {
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		uart->rx_dma_buf.head = pos;
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		bfin_serial_dma_rx_chars(uart);
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		uart->rx_dma_buf.tail = uart->rx_dma_buf.head;
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	}
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	spin_unlock_bh(&uart->rx_lock);
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	dma_enable_irq(uart->rx_dma_channel);
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	mod_timer(&(uart->rx_dma_timer), jiffies + DMA_RX_FLUSH_JIFFIES);
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}

static irqreturn_t bfin_serial_dma_tx_int(int irq, void *dev_id)
{
	struct bfin_serial_port *uart = dev_id;
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	struct circ_buf *xmit = &uart->port.state->xmit;
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	spin_lock(&uart->port.lock);
	if (!(get_dma_curr_irqstat(uart->tx_dma_channel)&DMA_RUN)) {
		disable_dma(uart->tx_dma_channel);
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		clear_dma_irqstat(uart->tx_dma_channel);
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		/* Anomaly notes:
		 *  05000215 -	we always clear ETBEI within last UART TX
		 *		interrupt to end a string. It is always set
		 *		when start a new tx.
		 */
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		UART_CLEAR_IER(uart, ETBEI);
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		uart->port.icount.tx += uart->tx_count;
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		if (!(xmit->tail == 0 && xmit->head == 0)) {
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			xmit->tail = (xmit->tail + uart->tx_count) & (UART_XMIT_SIZE - 1);
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			if (uart_circ_chars_pending(xmit) < WAKEUP_CHARS)
				uart_write_wakeup(&uart->port);
		}
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		bfin_serial_dma_tx_chars(uart);
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	}

	spin_unlock(&uart->port.lock);
	return IRQ_HANDLED;
}

static irqreturn_t bfin_serial_dma_rx_int(int irq, void *dev_id)
{
	struct bfin_serial_port *uart = dev_id;
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	unsigned int irqstat;
553
	int x_pos, pos;
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	spin_lock(&uart->rx_lock);
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	irqstat = get_dma_curr_irqstat(uart->rx_dma_channel);
	clear_dma_irqstat(uart->rx_dma_channel);
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	uart->rx_dma_nrows = get_dma_curr_ycount(uart->rx_dma_channel);
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	x_pos = get_dma_curr_xcount(uart->rx_dma_channel);
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	uart->rx_dma_nrows = DMA_RX_YCOUNT - uart->rx_dma_nrows;
562
	if (uart->rx_dma_nrows == DMA_RX_YCOUNT || x_pos == 0)
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		uart->rx_dma_nrows = 0;

	pos = uart->rx_dma_nrows * DMA_RX_XCOUNT;
	if (pos > uart->rx_dma_buf.tail ||
		uart->rx_dma_nrows < (uart->rx_dma_buf.tail/DMA_RX_XCOUNT)) {
		uart->rx_dma_buf.head = pos;
		bfin_serial_dma_rx_chars(uart);
		uart->rx_dma_buf.tail = uart->rx_dma_buf.head;
	}

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	spin_unlock(&uart->rx_lock);
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	return IRQ_HANDLED;
}
#endif

/*
 * Return TIOCSER_TEMT when transmitter is not busy.
 */
static unsigned int bfin_serial_tx_empty(struct uart_port *port)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
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	unsigned int lsr;
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	lsr = UART_GET_LSR(uart);
	if (lsr & TEMT)
		return TIOCSER_TEMT;
	else
		return 0;
}

static void bfin_serial_break_ctl(struct uart_port *port, int break_state)
{
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	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
597
	u32 lcr = UART_GET_LCR(uart);
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	if (break_state)
		lcr |= SB;
	else
		lcr &= ~SB;
	UART_PUT_LCR(uart, lcr);
	SSYNC();
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}

static int bfin_serial_startup(struct uart_port *port)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;

#ifdef CONFIG_SERIAL_BFIN_DMA
	dma_addr_t dma_handle;

	if (request_dma(uart->rx_dma_channel, "BFIN_UART_RX") < 0) {
		printk(KERN_NOTICE "Unable to attach Blackfin UART RX DMA channel\n");
		return -EBUSY;
	}

	if (request_dma(uart->tx_dma_channel, "BFIN_UART_TX") < 0) {
		printk(KERN_NOTICE "Unable to attach Blackfin UART TX DMA channel\n");
		free_dma(uart->rx_dma_channel);
		return -EBUSY;
	}

	set_dma_callback(uart->rx_dma_channel, bfin_serial_dma_rx_int, uart);
	set_dma_callback(uart->tx_dma_channel, bfin_serial_dma_tx_int, uart);

	uart->rx_dma_buf.buf = (unsigned char *)dma_alloc_coherent(NULL, PAGE_SIZE, &dma_handle, GFP_DMA);
	uart->rx_dma_buf.head = 0;
	uart->rx_dma_buf.tail = 0;
	uart->rx_dma_nrows = 0;

	set_dma_config(uart->rx_dma_channel,
		set_bfin_dma_config(DIR_WRITE, DMA_FLOW_AUTO,
				INTR_ON_ROW, DIMENSION_2D,
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				DATA_SIZE_8,
				DMA_SYNC_RESTART));
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	set_dma_x_count(uart->rx_dma_channel, DMA_RX_XCOUNT);
	set_dma_x_modify(uart->rx_dma_channel, 1);
	set_dma_y_count(uart->rx_dma_channel, DMA_RX_YCOUNT);
	set_dma_y_modify(uart->rx_dma_channel, 1);
	set_dma_start_addr(uart->rx_dma_channel, (unsigned long)uart->rx_dma_buf.buf);
	enable_dma(uart->rx_dma_channel);

	uart->rx_dma_timer.data = (unsigned long)(uart);
	uart->rx_dma_timer.function = (void *)bfin_serial_rx_dma_timeout;
	uart->rx_dma_timer.expires = jiffies + DMA_RX_FLUSH_JIFFIES;
	add_timer(&(uart->rx_dma_timer));
#else
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# if defined(CONFIG_KGDB_SERIAL_CONSOLE) || \
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	defined(CONFIG_KGDB_SERIAL_CONSOLE_MODULE)
	if (kgdboc_port_line == uart->port.line && kgdboc_break_enabled)
		kgdboc_break_enabled = 0;
	else {
# endif
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	if (request_irq(uart->rx_irq, bfin_serial_rx_int, 0,
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	     "BFIN_UART_RX", uart)) {
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		printk(KERN_NOTICE "Unable to attach BlackFin UART RX interrupt\n");
		return -EBUSY;
	}

	if (request_irq
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	    (uart->tx_irq, bfin_serial_tx_int, 0,
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	     "BFIN_UART_TX", uart)) {
		printk(KERN_NOTICE "Unable to attach BlackFin UART TX interrupt\n");
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		free_irq(uart->rx_irq, uart);
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		return -EBUSY;
	}
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# ifdef CONFIG_BF54x
	{
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		/*
		 * UART2 and UART3 on BF548 share interrupt PINs and DMA
		 * controllers with SPORT2 and SPORT3. UART rx and tx
		 * interrupts are generated in PIO mode only when configure
		 * their peripheral mapping registers properly, which means
		 * request corresponding DMA channels in PIO mode as well.
		 */
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		unsigned uart_dma_ch_rx, uart_dma_ch_tx;

680
		switch (uart->rx_irq) {
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		case IRQ_UART3_RX:
			uart_dma_ch_rx = CH_UART3_RX;
			uart_dma_ch_tx = CH_UART3_TX;
			break;
		case IRQ_UART2_RX:
			uart_dma_ch_rx = CH_UART2_RX;
			uart_dma_ch_tx = CH_UART2_TX;
			break;
		default:
			uart_dma_ch_rx = uart_dma_ch_tx = 0;
			break;
		};

		if (uart_dma_ch_rx &&
			request_dma(uart_dma_ch_rx, "BFIN_UART_RX") < 0) {
			printk(KERN_NOTICE"Fail to attach UART interrupt\n");
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			free_irq(uart->rx_irq, uart);
			free_irq(uart->tx_irq, uart);
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			return -EBUSY;
		}
		if (uart_dma_ch_tx &&
			request_dma(uart_dma_ch_tx, "BFIN_UART_TX") < 0) {
			printk(KERN_NOTICE "Fail to attach UART interrupt\n");
			free_dma(uart_dma_ch_rx);
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			free_irq(uart->rx_irq, uart);
			free_irq(uart->tx_irq, uart);
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			return -EBUSY;
		}
	}
# endif
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# if defined(CONFIG_KGDB_SERIAL_CONSOLE) || \
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	defined(CONFIG_KGDB_SERIAL_CONSOLE_MODULE)
	}
# endif
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#endif

#ifdef CONFIG_SERIAL_BFIN_CTSRTS
	if (uart->cts_pin >= 0) {
		if (request_irq(gpio_to_irq(uart->cts_pin),
			bfin_serial_mctrl_cts_int,
			IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING |
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			0, "BFIN_UART_CTS", uart)) {
723
			uart->cts_pin = -1;
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			pr_info("Unable to attach BlackFin UART CTS interrupt. So, disable it.\n");
725 726
		}
	}
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	if (uart->rts_pin >= 0) {
		if (gpio_request(uart->rts_pin, DRIVER_NAME)) {
			pr_info("fail to request RTS PIN at GPIO_%d\n", uart->rts_pin);
			uart->rts_pin = -1;
		} else
			gpio_direction_output(uart->rts_pin, 0);
	}
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#endif
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#ifdef CONFIG_SERIAL_BFIN_HARD_CTSRTS
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	if (uart->cts_pin >= 0) {
		if (request_irq(uart->status_irq, bfin_serial_mctrl_cts_int,
			IRQF_DISABLED, "BFIN_UART_MODEM_STATUS", uart)) {
			uart->cts_pin = -1;
			dev_info(port->dev, "Unable to attach BlackFin UART Modem Status interrupt.\n");
		}
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		/* CTS RTS PINs are negative assertive. */
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		UART_PUT_MCR(uart, UART_GET_MCR(uart) | ACTS);
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		UART_SET_IER(uart, EDSSI);
	}
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#endif

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	UART_SET_IER(uart, ERBFI);
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	return 0;
}

static void bfin_serial_shutdown(struct uart_port *port)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;

#ifdef CONFIG_SERIAL_BFIN_DMA
	disable_dma(uart->tx_dma_channel);
	free_dma(uart->tx_dma_channel);
	disable_dma(uart->rx_dma_channel);
	free_dma(uart->rx_dma_channel);
	del_timer(&(uart->rx_dma_timer));
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	dma_free_coherent(NULL, PAGE_SIZE, uart->rx_dma_buf.buf, 0);
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#else
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#ifdef CONFIG_BF54x
	switch (uart->port.irq) {
	case IRQ_UART3_RX:
		free_dma(CH_UART3_RX);
		free_dma(CH_UART3_TX);
		break;
	case IRQ_UART2_RX:
		free_dma(CH_UART2_RX);
		free_dma(CH_UART2_TX);
		break;
	default:
		break;
	};
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#endif
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	free_irq(uart->rx_irq, uart);
	free_irq(uart->tx_irq, uart);
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#endif
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#ifdef CONFIG_SERIAL_BFIN_CTSRTS
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	if (uart->cts_pin >= 0)
		free_irq(gpio_to_irq(uart->cts_pin), uart);
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	if (uart->rts_pin >= 0)
		gpio_free(uart->rts_pin);
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#endif
#ifdef CONFIG_SERIAL_BFIN_HARD_CTSRTS
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	if (uart->cts_pin >= 0)
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		free_irq(uart->status_irq, uart);
#endif
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}

static void
bfin_serial_set_termios(struct uart_port *port, struct ktermios *termios,
		   struct ktermios *old)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
	unsigned long flags;
	unsigned int baud, quot;
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	unsigned int ier, lcr = 0;
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	switch (termios->c_cflag & CSIZE) {
	case CS8:
		lcr = WLS(8);
		break;
	case CS7:
		lcr = WLS(7);
		break;
	case CS6:
		lcr = WLS(6);
		break;
	case CS5:
		lcr = WLS(5);
		break;
	default:
		printk(KERN_ERR "%s: word lengh not supported\n",
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			__func__);
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	}

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	/* Anomaly notes:
	 *  05000231 -  STOP bit is always set to 1 whatever the user is set.
	 */
	if (termios->c_cflag & CSTOPB) {
		if (ANOMALY_05000231)
			printk(KERN_WARNING "STOP bits other than 1 is not "
				"supported in case of anomaly 05000231.\n");
		else
			lcr |= STB;
	}
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	if (termios->c_cflag & PARENB)
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		lcr |= PEN;
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	if (!(termios->c_cflag & PARODD))
		lcr |= EPS;
	if (termios->c_cflag & CMSPAR)
		lcr |= STP;
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	spin_lock_irqsave(&uart->port.lock, flags);

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	port->read_status_mask = OE;
	if (termios->c_iflag & INPCK)
		port->read_status_mask |= (FE | PE);
	if (termios->c_iflag & (BRKINT | PARMRK))
		port->read_status_mask |= BI;
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	/*
	 * Characters to ignore
	 */
	port->ignore_status_mask = 0;
	if (termios->c_iflag & IGNPAR)
		port->ignore_status_mask |= FE | PE;
	if (termios->c_iflag & IGNBRK) {
		port->ignore_status_mask |= BI;
		/*
		 * If we're ignoring parity and break indicators,
		 * ignore overruns too (for real raw support).
		 */
		if (termios->c_iflag & IGNPAR)
			port->ignore_status_mask |= OE;
	}
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	baud = uart_get_baud_rate(port, termios, old, 0, port->uartclk/16);
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	quot = uart_get_divisor(port, baud);

	/* If discipline is not IRDA, apply ANOMALY_05000230 */
	if (termios->c_line != N_IRDA)
		quot -= ANOMALY_05000230;

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	UART_SET_ANOMALY_THRESHOLD(uart, USEC_PER_SEC / baud * 15);

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	/* Disable UART */
	ier = UART_GET_IER(uart);
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	UART_PUT_GCTL(uart, UART_GET_GCTL(uart) & ~UCEN);
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	UART_DISABLE_INTS(uart);
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877
	/* Set DLAB in LCR to Access CLK */
878
	UART_SET_DLAB(uart);
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	UART_PUT_CLK(uart, quot);
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	SSYNC();

	/* Clear DLAB in LCR to Access THR RBR IER */
884
	UART_CLEAR_DLAB(uart);
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	UART_PUT_LCR(uart, (UART_GET_LCR(uart) & ~LCR_MASK) | lcr);
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	/* Enable UART */
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	UART_ENABLE_INTS(uart, ier);
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	UART_PUT_GCTL(uart, UART_GET_GCTL(uart) | UCEN);
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	/* Port speed changed, update the per-port timeout. */
	uart_update_timeout(port, termios->c_cflag, baud);

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

static const char *bfin_serial_type(struct uart_port *port)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;

	return uart->port.type == PORT_BFIN ? "BFIN-UART" : NULL;
}

/*
 * Release the memory region(s) being used by 'port'.
 */
static void bfin_serial_release_port(struct uart_port *port)
{
}

/*
 * Request the memory region(s) being used by 'port'.
 */
static int bfin_serial_request_port(struct uart_port *port)
{
	return 0;
}

/*
 * Configure/autoconfigure the port.
 */
static void bfin_serial_config_port(struct uart_port *port, int flags)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;

	if (flags & UART_CONFIG_TYPE &&
	    bfin_serial_request_port(&uart->port) == 0)
		uart->port.type = PORT_BFIN;
}

/*
 * Verify the new serial_struct (for TIOCSSERIAL).
 * The only change we allow are to the flags and type, and
 * even then only between PORT_BFIN and PORT_UNKNOWN
 */
static int
bfin_serial_verify_port(struct uart_port *port, struct serial_struct *ser)
{
	return 0;
}

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/*
 * Enable the IrDA function if tty->ldisc.num is N_IRDA.
 * In other cases, disable IrDA function.
 */
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static void bfin_serial_set_ldisc(struct uart_port *port, int ld)
948
{
949
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
950
	unsigned int val;
951

952
	switch (ld) {
953
	case N_IRDA:
954
		val = UART_GET_GCTL(uart);
955
		val |= (UMOD_IRDA | RPOLC);
956
		UART_PUT_GCTL(uart, val);
957 958
		break;
	default:
959
		val = UART_GET_GCTL(uart);
960
		val &= ~(UMOD_MASK | RPOLC);
961
		UART_PUT_GCTL(uart, val);
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	}
}

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static void bfin_serial_reset_irda(struct uart_port *port)
{
967
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
968
	unsigned int val;
969

970
	val = UART_GET_GCTL(uart);
971
	val &= ~(UMOD_MASK | RPOLC);
972
	UART_PUT_GCTL(uart, val);
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	SSYNC();
974
	val |= (UMOD_IRDA | RPOLC);
975
	UART_PUT_GCTL(uart, val);
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	SSYNC();
}

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#ifdef CONFIG_CONSOLE_POLL
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/* Anomaly notes:
 *  05000099 -  Because we only use THRE in poll_put and DR in poll_get,
 *		losing other bits of UART_LSR is not a problem here.
 */
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static void bfin_serial_poll_put_char(struct uart_port *port, unsigned char chr)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;

	while (!(UART_GET_LSR(uart) & THRE))
		cpu_relax();

	UART_CLEAR_DLAB(uart);
	UART_PUT_CHAR(uart, (unsigned char)chr);
}

static int bfin_serial_poll_get_char(struct uart_port *port)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
	unsigned char chr;

	while (!(UART_GET_LSR(uart) & DR))
		cpu_relax();

	UART_CLEAR_DLAB(uart);
	chr = UART_GET_CHAR(uart);

	return chr;
}
#endif

#if defined(CONFIG_KGDB_SERIAL_CONSOLE) || \
	defined(CONFIG_KGDB_SERIAL_CONSOLE_MODULE)
static void bfin_kgdboc_port_shutdown(struct uart_port *port)
{
	if (kgdboc_break_enabled) {
		kgdboc_break_enabled = 0;
		bfin_serial_shutdown(port);
	}
}

static int bfin_kgdboc_port_startup(struct uart_port *port)
{
	kgdboc_port_line = port->line;
	kgdboc_break_enabled = !bfin_serial_startup(port);
	return 0;
}
#endif

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static struct uart_ops bfin_serial_pops = {
	.tx_empty	= bfin_serial_tx_empty,
	.set_mctrl	= bfin_serial_set_mctrl,
	.get_mctrl	= bfin_serial_get_mctrl,
	.stop_tx	= bfin_serial_stop_tx,
	.start_tx	= bfin_serial_start_tx,
	.stop_rx	= bfin_serial_stop_rx,
	.enable_ms	= bfin_serial_enable_ms,
	.break_ctl	= bfin_serial_break_ctl,
	.startup	= bfin_serial_startup,
	.shutdown	= bfin_serial_shutdown,
	.set_termios	= bfin_serial_set_termios,
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	.set_ldisc	= bfin_serial_set_ldisc,
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	.type		= bfin_serial_type,
	.release_port	= bfin_serial_release_port,
	.request_port	= bfin_serial_request_port,
	.config_port	= bfin_serial_config_port,
	.verify_port	= bfin_serial_verify_port,
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#if defined(CONFIG_KGDB_SERIAL_CONSOLE) || \
	defined(CONFIG_KGDB_SERIAL_CONSOLE_MODULE)
	.kgdboc_port_startup	= bfin_kgdboc_port_startup,
	.kgdboc_port_shutdown	= bfin_kgdboc_port_shutdown,
#endif
#ifdef CONFIG_CONSOLE_POLL
	.poll_put_char	= bfin_serial_poll_put_char,
	.poll_get_char	= bfin_serial_poll_get_char,
#endif
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};

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#if defined(CONFIG_SERIAL_BFIN_CONSOLE) || defined(CONFIG_EARLY_PRINTK)
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/*
 * If the port was already initialised (eg, by a boot loader),
 * try to determine the current setup.
 */
static void __init
bfin_serial_console_get_options(struct bfin_serial_port *uart, int *baud,
			   int *parity, int *bits)
{
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	unsigned int status;
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	status = UART_GET_IER(uart) & (ERBFI | ETBEI);
	if (status == (ERBFI | ETBEI)) {
		/* ok, the port was enabled */
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		u32 lcr, clk;
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		lcr = UART_GET_LCR(uart);

		*parity = 'n';
		if (lcr & PEN) {
			if (lcr & EPS)
				*parity = 'e';
			else
				*parity = 'o';
		}
1082 1083
		*bits = ((lcr & WLS_MASK) >> WLS_OFFSET) + 5;

1084
		/* Set DLAB in LCR to Access CLK */
1085
		UART_SET_DLAB(uart);
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1087
		clk = UART_GET_CLK(uart);
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		/* Clear DLAB in LCR to Access THR RBR IER */
1090
		UART_CLEAR_DLAB(uart);
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1092
		*baud = get_sclk() / (16*clk);
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1093
	}
1094
	pr_debug("%s:baud = %d, parity = %c, bits= %d\n", __func__, *baud, *parity, *bits);
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}
1096 1097

static struct uart_driver bfin_serial_reg;
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1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126
static void bfin_serial_console_putchar(struct uart_port *port, int ch)
{
	struct bfin_serial_port *uart = (struct bfin_serial_port *)port;
	while (!(UART_GET_LSR(uart) & THRE))
		barrier();
	UART_PUT_CHAR(uart, ch);
}

#endif /* defined (CONFIG_SERIAL_BFIN_CONSOLE) ||
		 defined (CONFIG_EARLY_PRINTK) */

#ifdef CONFIG_SERIAL_BFIN_CONSOLE
#define CLASS_BFIN_CONSOLE	"bfin-console"
/*
 * Interrupts are disabled on entering
 */
static void
bfin_serial_console_write(struct console *co, const char *s, unsigned int count)
{
	struct bfin_serial_port *uart = bfin_serial_ports[co->index];
	unsigned long flags;

	spin_lock_irqsave(&uart->port.lock, flags);
	uart_console_write(&uart->port, s, count, bfin_serial_console_putchar);
	spin_unlock_irqrestore(&uart->port.lock, flags);

}

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static int __init
bfin_serial_console_setup(struct console *co, char *options)
{
	struct bfin_serial_port *uart;
	int baud = 57600;
	int bits = 8;
	int parity = 'n';
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# if defined(CONFIG_SERIAL_BFIN_CTSRTS) || \
	defined(CONFIG_SERIAL_BFIN_HARD_CTSRTS)
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	int flow = 'r';
1137
# else
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	int flow = 'n';
1139
# endif
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	/*
	 * Check whether an invalid uart number has been specified, and
	 * if so, search for the first available port that does have
	 * console support.
	 */
1146 1147 1148 1149 1150 1151
	if (co->index < 0 || co->index >= BFIN_UART_NR_PORTS)
		return -ENODEV;

	uart = bfin_serial_ports[co->index];
	if (!uart)
		return -ENODEV;
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	if (options)
		uart_parse_options(options, &baud, &parity, &bits, &flow);
	else
		bfin_serial_console_get_options(uart, &baud, &parity, &bits);

	return uart_set_options(&uart->port, co, baud, parity, bits, flow);
1159
}
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static struct console bfin_serial_console = {
1162
	.name		= BFIN_SERIAL_DEV_NAME,
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	.write		= bfin_serial_console_write,
	.device		= uart_console_device,
	.setup		= bfin_serial_console_setup,
	.flags		= CON_PRINTBUFFER,
	.index		= -1,
	.data		= &bfin_serial_reg,
};
1170
#define BFIN_SERIAL_CONSOLE	(&bfin_serial_console)
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#else
#define BFIN_SERIAL_CONSOLE	NULL
1173 1174
#endif /* CONFIG_SERIAL_BFIN_CONSOLE */

1175 1176 1177
#ifdef	CONFIG_EARLY_PRINTK
static struct bfin_serial_port bfin_earlyprintk_port;
#define CLASS_BFIN_EARLYPRINTK	"bfin-earlyprintk"
1178

1179 1180 1181 1182 1183
/*
 * Interrupts are disabled on entering
 */
static void
bfin_earlyprintk_console_write(struct console *co, const char *s, unsigned int count)
1184
{
1185
	unsigned long flags;
1186

1187 1188
	if (bfin_earlyprintk_port.port.line != co->index)
		return;
1189

1190 1191 1192 1193
	spin_lock_irqsave(&bfin_earlyprintk_port.port.lock, flags);
	uart_console_write(&bfin_earlyprintk_port.port, s, count,
		bfin_serial_console_putchar);
	spin_unlock_irqrestore(&bfin_earlyprintk_port.port.lock, flags);
1194 1195
}

1196 1197 1198 1199 1200 1201
/*
 * This should have a .setup or .early_setup in it, but then things get called
 * without the command line options, and the baud rate gets messed up - so
 * don't let the common infrastructure play with things. (see calls to setup
 * & earlysetup in ./kernel/printk.c:register_console()
 */
1202
static struct __initdata console bfin_early_serial_console = {
1203
	.name = "early_BFuart",
1204
	.write = bfin_earlyprintk_console_write,
1205 1206 1207 1208 1209
	.device = uart_console_device,
	.flags = CON_PRINTBUFFER,
	.index = -1,
	.data  = &bfin_serial_reg,
};
1210 1211
#endif

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static struct uart_driver bfin_serial_reg = {
	.owner			= THIS_MODULE,
1214 1215
	.driver_name		= DRIVER_NAME,
	.dev_name		= BFIN_SERIAL_DEV_NAME,
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	.major			= BFIN_SERIAL_MAJOR,
	.minor			= BFIN_SERIAL_MINOR,
1218
	.nr			= BFIN_UART_NR_PORTS,
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	.cons			= BFIN_SERIAL_CONSOLE,
};

1222
static int bfin_serial_suspend(struct platform_device *pdev, pm_message_t state)
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1223
{
1224
	struct bfin_serial_port *uart = platform_get_drvdata(pdev);
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1226 1227
	return uart_suspend_port(&bfin_serial_reg, &uart->port);
}
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1229 1230 1231 1232 1233
static int bfin_serial_resume(struct platform_device *pdev)
{
	struct bfin_serial_port *uart = platform_get_drvdata(pdev);

	return uart_resume_port(&bfin_serial_reg, &uart->port);
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}

1236
static int bfin_serial_probe(struct platform_device *pdev)
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{
1238 1239 1240
	struct resource *res;
	struct bfin_serial_port *uart = NULL;
	int ret = 0;
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1242 1243 1244
	if (pdev->id < 0 || pdev->id >= BFIN_UART_NR_PORTS) {
		dev_err(&pdev->dev, "Wrong bfin uart platform device id.\n");
		return -ENOENT;
1245
	}
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1247
	if (bfin_serial_ports[pdev->id] == NULL) {
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1249 1250 1251 1252 1253 1254 1255
		uart = kzalloc(sizeof(*uart), GFP_KERNEL);
		if (!uart) {
			dev_err(&pdev->dev,
				"fail to malloc bfin_serial_port\n");
			return -ENOMEM;
		}
		bfin_serial_ports[pdev->id] = uart;
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1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290
#ifdef CONFIG_EARLY_PRINTK
		if (!(bfin_earlyprintk_port.port.membase
			&& bfin_earlyprintk_port.port.line == pdev->id)) {
			/*
			 * If the peripheral PINs of current port is allocated
			 * in earlyprintk probe stage, don't do it again.
			 */
#endif
		ret = peripheral_request_list(
			(unsigned short *)pdev->dev.platform_data, DRIVER_NAME);
		if (ret) {
			dev_err(&pdev->dev,
				"fail to request bfin serial peripherals\n");
			goto out_error_free_mem;
		}
#ifdef CONFIG_EARLY_PRINTK
		}
#endif

		spin_lock_init(&uart->port.lock);
		uart->port.uartclk   = get_sclk();
		uart->port.fifosize  = BFIN_UART_TX_FIFO_SIZE;
		uart->port.ops       = &bfin_serial_pops;
		uart->port.line      = pdev->id;
		uart->port.iotype    = UPIO_MEM;
		uart->port.flags     = UPF_BOOT_AUTOCONF;

		res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
		if (res == NULL) {
			dev_err(&pdev->dev, "Cannot get IORESOURCE_MEM\n");
			ret = -ENOENT;
			goto out_error_free_peripherals;
		}

1291
		uart->port.membase = ioremap(res->start, resource_size(res));
1292 1293 1294 1295 1296 1297
		if (!uart->port.membase) {
			dev_err(&pdev->dev, "Cannot map uart IO\n");
			ret = -ENXIO;
			goto out_error_free_peripherals;
		}
		uart->port.mapbase = res->start;
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1299 1300 1301
		uart->tx_irq = platform_get_irq(pdev, 0);
		if (uart->tx_irq < 0) {
			dev_err(&pdev->dev, "No uart TX IRQ specified\n");
1302 1303
			ret = -ENOENT;
			goto out_error_unmap;
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		}
1305

1306 1307 1308 1309 1310 1311 1312 1313 1314
		uart->rx_irq = platform_get_irq(pdev, 1);
		if (uart->rx_irq < 0) {
			dev_err(&pdev->dev, "No uart RX IRQ specified\n");
			ret = -ENOENT;
			goto out_error_unmap;
		}
		uart->port.irq = uart->rx_irq;

		uart->status_irq = platform_get_irq(pdev, 2);
1315 1316 1317 1318 1319 1320 1321
		if (uart->status_irq < 0) {
			dev_err(&pdev->dev, "No uart status IRQ specified\n");
			ret = -ENOENT;
			goto out_error_unmap;
		}

#ifdef CONFIG_SERIAL_BFIN_DMA
1322
		spin_lock_init(&uart->rx_lock);
1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349
		uart->tx_done	    = 1;
		uart->tx_count	    = 0;

		res = platform_get_resource(pdev, IORESOURCE_DMA, 0);
		if (res == NULL) {
			dev_err(&pdev->dev, "No uart TX DMA channel specified\n");
			ret = -ENOENT;
			goto out_error_unmap;
		}
		uart->tx_dma_channel = res->start;

		res = platform_get_resource(pdev, IORESOURCE_DMA, 1);
		if (res == NULL) {
			dev_err(&pdev->dev, "No uart RX DMA channel specified\n");
			ret = -ENOENT;
			goto out_error_unmap;
		}
		uart->rx_dma_channel = res->start;

		init_timer(&(uart->rx_dma_timer));
#endif

#if defined(CONFIG_SERIAL_BFIN_CTSRTS) || \
	defined(CONFIG_SERIAL_BFIN_HARD_CTSRTS)
		res = platform_get_resource(pdev, IORESOURCE_IO, 0);
		if (res == NULL)
			uart->cts_pin = -1;
1350
		else {
1351
			uart->cts_pin = res->start;
1352
#ifdef CONFIG_SERIAL_BFIN_CTSRTS
1353
			uart->port.flags |= ASYNC_CTS_FLOW;
1354
#endif
1355
		}
1356 1357 1358 1359 1360 1361 1362

		res = platform_get_resource(pdev, IORESOURCE_IO, 1);
		if (res == NULL)
			uart->rts_pin = -1;
		else
			uart->rts_pin = res->start;
#endif
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	}

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
#ifdef CONFIG_SERIAL_BFIN_CONSOLE
	if (!is_early_platform_device(pdev)) {
#endif
		uart = bfin_serial_ports[pdev->id];
		uart->port.dev = &pdev->dev;
		dev_set_drvdata(&pdev->dev, uart);
		ret = uart_add_one_port(&bfin_serial_reg, &uart->port);
#ifdef CONFIG_SERIAL_BFIN_CONSOLE
	}
#endif

	if (!ret)
		return 0;

	if (uart) {
out_error_unmap:
		iounmap(uart->port.membase);
out_error_free_peripherals:
		peripheral_free_list(
			(unsigned short *)pdev->dev.platform_data);
out_error_free_mem:
		kfree(uart);
		bfin_serial_ports[pdev->id] = NULL;
	}

	return ret;
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}

1393
static int __devexit bfin_serial_remove(struct platform_device *pdev)
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{
1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405
	struct bfin_serial_port *uart = platform_get_drvdata(pdev);

	dev_set_drvdata(&pdev->dev, NULL);

	if (uart) {
		uart_remove_one_port(&bfin_serial_reg, &uart->port);
		iounmap(uart->port.membase);
		peripheral_free_list(
			(unsigned short *)pdev->dev.platform_data);
		kfree(uart);
		bfin_serial_ports[pdev->id] = NULL;
1406
	}
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	return 0;
}

static struct platform_driver bfin_serial_driver = {
	.probe		= bfin_serial_probe,
1413
	.remove		= __devexit_p(bfin_serial_remove),
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	.suspend	= bfin_serial_suspend,
	.resume		= bfin_serial_resume,
	.driver		= {
1417
		.name	= DRIVER_NAME,
1418
		.owner	= THIS_MODULE,
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	},
};

1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447
#if defined(CONFIG_SERIAL_BFIN_CONSOLE)
static __initdata struct early_platform_driver early_bfin_serial_driver = {
	.class_str = CLASS_BFIN_CONSOLE,
	.pdrv = &bfin_serial_driver,
	.requested_id = EARLY_PLATFORM_ID_UNSET,
};

static int __init bfin_serial_rs_console_init(void)
{
	early_platform_driver_register(&early_bfin_serial_driver, DRIVER_NAME);

	early_platform_driver_probe(CLASS_BFIN_CONSOLE, BFIN_UART_NR_PORTS, 0);

	register_console(&bfin_serial_console);

	return 0;
}
console_initcall(bfin_serial_rs_console_init);
#endif

#ifdef CONFIG_EARLY_PRINTK
/*
 * Memory can't be allocated dynamically during earlyprink init stage.
 * So, do individual probe for earlyprink with a static uart port variable.
 */
static int bfin_earlyprintk_probe(struct platform_device *pdev)
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1448
{
1449
	struct resource *res;
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1450 1451
	int ret;

1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472
	if (pdev->id < 0 || pdev->id >= BFIN_UART_NR_PORTS) {
		dev_err(&pdev->dev, "Wrong earlyprintk platform device id.\n");
		return -ENOENT;
	}

	ret = peripheral_request_list(
		(unsigned short *)pdev->dev.platform_data, DRIVER_NAME);
	if (ret) {
		dev_err(&pdev->dev,
				"fail to request bfin serial peripherals\n");
			return ret;
	}

	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
	if (res == NULL) {
		dev_err(&pdev->dev, "Cannot get IORESOURCE_MEM\n");
		ret = -ENOENT;
		goto out_error_free_peripherals;
	}

	bfin_earlyprintk_port.port.membase = ioremap(res->start,
1473
						     resource_size(res));
1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512
	if (!bfin_earlyprintk_port.port.membase) {
		dev_err(&pdev->dev, "Cannot map uart IO\n");
		ret = -ENXIO;
		goto out_error_free_peripherals;
	}
	bfin_earlyprintk_port.port.mapbase = res->start;
	bfin_earlyprintk_port.port.line = pdev->id;
	bfin_earlyprintk_port.port.uartclk = get_sclk();
	bfin_earlyprintk_port.port.fifosize  = BFIN_UART_TX_FIFO_SIZE;
	spin_lock_init(&bfin_earlyprintk_port.port.lock);

	return 0;

out_error_free_peripherals:
	peripheral_free_list(
		(unsigned short *)pdev->dev.platform_data);

	return ret;
}

static struct platform_driver bfin_earlyprintk_driver = {
	.probe		= bfin_earlyprintk_probe,
	.driver		= {
		.name	= DRIVER_NAME,
		.owner	= THIS_MODULE,
	},
};

static __initdata struct early_platform_driver early_bfin_earlyprintk_driver = {
	.class_str = CLASS_BFIN_EARLYPRINTK,
	.pdrv = &bfin_earlyprintk_driver,
	.requested_id = EARLY_PLATFORM_ID_UNSET,
};

struct console __init *bfin_earlyserial_init(unsigned int port,
						unsigned int cflag)
{
	struct ktermios t;
	char port_name[20];
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1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553
	if (port < 0 || port >= BFIN_UART_NR_PORTS)
		return NULL;

	/*
	 * Only probe resource of the given port in earlyprintk boot arg.
	 * The expected port id should be indicated in port name string.
	 */
	snprintf(port_name, 20, DRIVER_NAME ".%d", port);
	early_platform_driver_register(&early_bfin_earlyprintk_driver,
		port_name);
	early_platform_driver_probe(CLASS_BFIN_EARLYPRINTK, 1, 0);

	if (!bfin_earlyprintk_port.port.membase)
		return NULL;

#ifdef CONFIG_SERIAL_BFIN_CONSOLE
	/*
	 * If we are using early serial, don't let the normal console rewind
	 * log buffer, since that causes things to be printed multiple times
	 */
	bfin_serial_console.flags &= ~CON_PRINTBUFFER;
#endif

	bfin_early_serial_console.index = port;
	t.c_cflag = cflag;
	t.c_iflag = 0;
	t.c_oflag = 0;
	t.c_lflag = ICANON;
	t.c_line = port;
	bfin_serial_set_termios(&bfin_earlyprintk_port.port, &t, &t);

	return &bfin_early_serial_console;
}
#endif /* CONFIG_EARLY_PRINTK */

static int __init bfin_serial_init(void)
{
	int ret;

	pr_info("Blackfin serial driver\n");
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1554 1555

	ret = uart_register_driver(&bfin_serial_reg);
1556 1557 1558 1559 1560 1561 1562 1563 1564
	if (ret) {
		pr_err("failed to register %s:%d\n",
			bfin_serial_reg.driver_name, ret);
	}

	ret = platform_driver_register(&bfin_serial_driver);
	if (ret) {
		pr_err("fail to register bfin uart\n");
		uart_unregister_driver(&bfin_serial_reg);
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1565
	}
1566

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	return ret;
}

static void __exit bfin_serial_exit(void)
{
	platform_driver_unregister(&bfin_serial_driver);
	uart_unregister_driver(&bfin_serial_reg);
}

1576

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module_init(bfin_serial_init);
module_exit(bfin_serial_exit);

1580
MODULE_AUTHOR("Sonic Zhang, Aubrey Li");
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MODULE_DESCRIPTION("Blackfin generic serial port driver");
MODULE_LICENSE("GPL");
MODULE_ALIAS_CHARDEV_MAJOR(BFIN_SERIAL_MAJOR);
1584
MODULE_ALIAS("platform:bfin-uart");