msm_serial.c 25.6 KB
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/*
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 * Driver for msm7k serial device and console
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 *
 * Copyright (C) 2007 Google, Inc.
 * Author: Robert Love <rlove@google.com>
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 * Copyright (c) 2011, Code Aurora Forum. All rights reserved.
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 *
 * This software is licensed under the terms of the GNU General Public
 * License version 2, as published by the Free Software Foundation, and
 * may be copied, distributed, and modified under those terms.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 */

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

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#include <linux/atomic.h>
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#include <linux/hrtimer.h>
#include <linux/module.h>
#include <linux/io.h>
#include <linux/ioport.h>
#include <linux/irq.h>
#include <linux/init.h>
#include <linux/console.h>
#include <linux/tty.h>
#include <linux/tty_flip.h>
#include <linux/serial_core.h>
#include <linux/serial.h>
#include <linux/clk.h>
#include <linux/platform_device.h>
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#include <linux/delay.h>
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#include <linux/of.h>
#include <linux/of_device.h>
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#include "msm_serial.h"

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enum {
	UARTDM_1P1 = 1,
	UARTDM_1P2,
	UARTDM_1P3,
	UARTDM_1P4,
};

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struct msm_port {
	struct uart_port	uart;
	char			name[16];
	struct clk		*clk;
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	struct clk		*pclk;
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	unsigned int		imr;
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	int			is_uartdm;
	unsigned int		old_snap_state;
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};

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static inline void wait_for_xmitr(struct uart_port *port)
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{
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	while (!(msm_read(port, UART_SR) & UART_SR_TX_EMPTY)) {
		if (msm_read(port, UART_ISR) & UART_ISR_TX_READY)
			break;
		udelay(1);
	}
	msm_write(port, UART_CR_CMD_RESET_TX_READY, UART_CR);
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}

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static void msm_stop_tx(struct uart_port *port)
{
	struct msm_port *msm_port = UART_TO_MSM(port);

	msm_port->imr &= ~UART_IMR_TXLEV;
	msm_write(port, msm_port->imr, UART_IMR);
}

static void msm_start_tx(struct uart_port *port)
{
	struct msm_port *msm_port = UART_TO_MSM(port);

	msm_port->imr |= UART_IMR_TXLEV;
	msm_write(port, msm_port->imr, UART_IMR);
}

static void msm_stop_rx(struct uart_port *port)
{
	struct msm_port *msm_port = UART_TO_MSM(port);

	msm_port->imr &= ~(UART_IMR_RXLEV | UART_IMR_RXSTALE);
	msm_write(port, msm_port->imr, UART_IMR);
}

static void msm_enable_ms(struct uart_port *port)
{
	struct msm_port *msm_port = UART_TO_MSM(port);

	msm_port->imr |= UART_IMR_DELTA_CTS;
	msm_write(port, msm_port->imr, UART_IMR);
}

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static void handle_rx_dm(struct uart_port *port, unsigned int misr)
{
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	struct tty_port *tport = &port->state->port;
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	unsigned int sr;
	int count = 0;
	struct msm_port *msm_port = UART_TO_MSM(port);

	if ((msm_read(port, UART_SR) & UART_SR_OVERRUN)) {
		port->icount.overrun++;
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		tty_insert_flip_char(tport, 0, TTY_OVERRUN);
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		msm_write(port, UART_CR_CMD_RESET_ERR, UART_CR);
	}

	if (misr & UART_IMR_RXSTALE) {
		count = msm_read(port, UARTDM_RX_TOTAL_SNAP) -
			msm_port->old_snap_state;
		msm_port->old_snap_state = 0;
	} else {
		count = 4 * (msm_read(port, UART_RFWR));
		msm_port->old_snap_state += count;
	}

	/* TODO: Precise error reporting */

	port->icount.rx += count;

	while (count > 0) {
		unsigned int c;

		sr = msm_read(port, UART_SR);
		if ((sr & UART_SR_RX_READY) == 0) {
			msm_port->old_snap_state -= count;
			break;
		}
		c = msm_read(port, UARTDM_RF);
		if (sr & UART_SR_RX_BREAK) {
			port->icount.brk++;
			if (uart_handle_break(port))
				continue;
		} else if (sr & UART_SR_PAR_FRAME_ERR)
			port->icount.frame++;

		/* TODO: handle sysrq */
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		tty_insert_flip_string(tport, (char *)&c,
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				       (count > 4) ? 4 : count);
		count -= 4;
	}

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	spin_unlock(&port->lock);
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	tty_flip_buffer_push(tport);
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	spin_lock(&port->lock);

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	if (misr & (UART_IMR_RXSTALE))
		msm_write(port, UART_CR_CMD_RESET_STALE_INT, UART_CR);
	msm_write(port, 0xFFFFFF, UARTDM_DMRX);
	msm_write(port, UART_CR_CMD_STALE_EVENT_ENABLE, UART_CR);
}

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static void handle_rx(struct uart_port *port)
{
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	struct tty_port *tport = &port->state->port;
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	unsigned int sr;

	/*
	 * Handle overrun. My understanding of the hardware is that overrun
	 * is not tied to the RX buffer, so we handle the case out of band.
	 */
	if ((msm_read(port, UART_SR) & UART_SR_OVERRUN)) {
		port->icount.overrun++;
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		tty_insert_flip_char(tport, 0, TTY_OVERRUN);
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		msm_write(port, UART_CR_CMD_RESET_ERR, UART_CR);
	}

	/* and now the main RX loop */
	while ((sr = msm_read(port, UART_SR)) & UART_SR_RX_READY) {
		unsigned int c;
		char flag = TTY_NORMAL;

		c = msm_read(port, UART_RF);

		if (sr & UART_SR_RX_BREAK) {
			port->icount.brk++;
			if (uart_handle_break(port))
				continue;
		} else if (sr & UART_SR_PAR_FRAME_ERR) {
			port->icount.frame++;
		} else {
			port->icount.rx++;
		}

		/* Mask conditions we're ignorning. */
		sr &= port->read_status_mask;

		if (sr & UART_SR_RX_BREAK) {
			flag = TTY_BREAK;
		} else if (sr & UART_SR_PAR_FRAME_ERR) {
			flag = TTY_FRAME;
		}

		if (!uart_handle_sysrq_char(port, c))
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			tty_insert_flip_char(tport, c, flag);
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	}

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	spin_unlock(&port->lock);
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	tty_flip_buffer_push(tport);
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	spin_lock(&port->lock);
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}

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static void reset_dm_count(struct uart_port *port, int count)
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{
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	wait_for_xmitr(port);
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	msm_write(port, count, UARTDM_NCF_TX);
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	msm_read(port, UARTDM_NCF_TX);
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}

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static void handle_tx(struct uart_port *port)
{
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	struct circ_buf *xmit = &port->state->xmit;
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	struct msm_port *msm_port = UART_TO_MSM(port);
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	unsigned int tx_count, num_chars;
	unsigned int tf_pointer = 0;

	tx_count = uart_circ_chars_pending(xmit);
	tx_count = min3(tx_count, (unsigned int)UART_XMIT_SIZE - xmit->tail,
			port->fifosize);
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	if (port->x_char) {
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		if (msm_port->is_uartdm)
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			reset_dm_count(port, tx_count + 1);
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		msm_write(port, port->x_char,
			  msm_port->is_uartdm ? UARTDM_TF : UART_TF);
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		port->icount.tx++;
		port->x_char = 0;
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	} else if (tx_count && msm_port->is_uartdm) {
		reset_dm_count(port, tx_count);
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	}

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	while (tf_pointer < tx_count) {
		int i;
		char buf[4] = { 0 };
		unsigned int *bf = (unsigned int *)&buf;
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		if (!(msm_read(port, UART_SR) & UART_SR_TX_READY))
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			break;

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		if (msm_port->is_uartdm)
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			num_chars = min(tx_count - tf_pointer,
					(unsigned int)sizeof(buf));
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		else
			num_chars = 1;
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		for (i = 0; i < num_chars; i++) {
			buf[i] = xmit->buf[xmit->tail + i];
			port->icount.tx++;
		}

		msm_write(port, *bf, msm_port->is_uartdm ? UARTDM_TF : UART_TF);
		xmit->tail = (xmit->tail + num_chars) & (UART_XMIT_SIZE - 1);
		tf_pointer += num_chars;
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	}

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	/* disable tx interrupts if nothing more to send */
	if (uart_circ_empty(xmit))
		msm_stop_tx(port);

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	if (uart_circ_chars_pending(xmit) < WAKEUP_CHARS)
		uart_write_wakeup(port);
}

static void handle_delta_cts(struct uart_port *port)
{
	msm_write(port, UART_CR_CMD_RESET_CTS, UART_CR);
	port->icount.cts++;
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	wake_up_interruptible(&port->state->port.delta_msr_wait);
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}

static irqreturn_t msm_irq(int irq, void *dev_id)
{
	struct uart_port *port = dev_id;
	struct msm_port *msm_port = UART_TO_MSM(port);
	unsigned int misr;

	spin_lock(&port->lock);
	misr = msm_read(port, UART_MISR);
	msm_write(port, 0, UART_IMR); /* disable interrupt */

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	if (misr & (UART_IMR_RXLEV | UART_IMR_RXSTALE)) {
		if (msm_port->is_uartdm)
			handle_rx_dm(port, misr);
		else
			handle_rx(port);
	}
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	if (misr & UART_IMR_TXLEV)
		handle_tx(port);
	if (misr & UART_IMR_DELTA_CTS)
		handle_delta_cts(port);

	msm_write(port, msm_port->imr, UART_IMR); /* restore interrupt */
	spin_unlock(&port->lock);

	return IRQ_HANDLED;
}

static unsigned int msm_tx_empty(struct uart_port *port)
{
	return (msm_read(port, UART_SR) & UART_SR_TX_EMPTY) ? TIOCSER_TEMT : 0;
}

static unsigned int msm_get_mctrl(struct uart_port *port)
{
	return TIOCM_CAR | TIOCM_CTS | TIOCM_DSR | TIOCM_RTS;
}

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static void msm_reset(struct uart_port *port)
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{
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	struct msm_port *msm_port = UART_TO_MSM(port);

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	/* reset everything */
	msm_write(port, UART_CR_CMD_RESET_RX, UART_CR);
	msm_write(port, UART_CR_CMD_RESET_TX, UART_CR);
	msm_write(port, UART_CR_CMD_RESET_ERR, UART_CR);
	msm_write(port, UART_CR_CMD_RESET_BREAK_INT, UART_CR);
	msm_write(port, UART_CR_CMD_RESET_CTS, UART_CR);
	msm_write(port, UART_CR_CMD_SET_RFR, UART_CR);
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	/* Disable DM modes */
	if (msm_port->is_uartdm)
		msm_write(port, 0, UARTDM_DMEN);
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}
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static void msm_set_mctrl(struct uart_port *port, unsigned int mctrl)
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{
	unsigned int mr;
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	mr = msm_read(port, UART_MR1);

	if (!(mctrl & TIOCM_RTS)) {
		mr &= ~UART_MR1_RX_RDY_CTL;
		msm_write(port, mr, UART_MR1);
		msm_write(port, UART_CR_CMD_RESET_RFR, UART_CR);
	} else {
		mr |= UART_MR1_RX_RDY_CTL;
		msm_write(port, mr, UART_MR1);
	}
}

static void msm_break_ctl(struct uart_port *port, int break_ctl)
{
	if (break_ctl)
		msm_write(port, UART_CR_CMD_START_BREAK, UART_CR);
	else
		msm_write(port, UART_CR_CMD_STOP_BREAK, UART_CR);
}

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struct msm_baud_map {
	u16	divisor;
	u8	code;
	u8	rxstale;
};

static const struct msm_baud_map *
msm_find_best_baud(struct uart_port *port, unsigned int baud)
{
	unsigned int i, divisor;
	const struct msm_baud_map *entry;
	static const struct msm_baud_map table[] = {
		{ 1536, 0x00,  1 },
		{  768, 0x11,  1 },
		{  384, 0x22,  1 },
		{  192, 0x33,  1 },
		{   96, 0x44,  1 },
		{   48, 0x55,  1 },
		{   32, 0x66,  1 },
		{   24, 0x77,  1 },
		{   16, 0x88,  1 },
		{   12, 0x99,  6 },
		{    8, 0xaa,  6 },
		{    6, 0xbb,  6 },
		{    4, 0xcc,  6 },
		{    3, 0xdd,  8 },
		{    2, 0xee, 16 },
		{    1, 0xff, 31 },
	};

	divisor = uart_get_divisor(port, baud);

	for (i = 0, entry = table; i < ARRAY_SIZE(table); i++, entry++)
		if (entry->divisor <= divisor)
			break;

	return entry; /* Default to smallest divider */
}

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static int msm_set_baud_rate(struct uart_port *port, unsigned int baud)
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{
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	unsigned int rxstale, watermark;
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	struct msm_port *msm_port = UART_TO_MSM(port);
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	const struct msm_baud_map *entry;
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	entry = msm_find_best_baud(port, baud);
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	if (msm_port->is_uartdm)
		msm_write(port, UART_CR_CMD_RESET_RX, UART_CR);

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	msm_write(port, entry->code, UART_CSR);
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	/* RX stale watermark */
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	rxstale = entry->rxstale;
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	watermark = UART_IPR_STALE_LSB & rxstale;
	watermark |= UART_IPR_RXSTALE_LAST;
	watermark |= UART_IPR_STALE_TIMEOUT_MSB & (rxstale << 2);
	msm_write(port, watermark, UART_IPR);

	/* set RX watermark */
	watermark = (port->fifosize * 3) / 4;
	msm_write(port, watermark, UART_RFWR);

	/* set TX watermark */
	msm_write(port, 10, UART_TFWR);
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	if (msm_port->is_uartdm) {
		msm_write(port, UART_CR_CMD_RESET_STALE_INT, UART_CR);
		msm_write(port, 0xFFFFFF, UARTDM_DMRX);
		msm_write(port, UART_CR_CMD_STALE_EVENT_ENABLE, UART_CR);
	}

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	return baud;
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}


static void msm_init_clock(struct uart_port *port)
{
	struct msm_port *msm_port = UART_TO_MSM(port);

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	clk_prepare_enable(msm_port->clk);
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	clk_prepare_enable(msm_port->pclk);
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	msm_serial_set_mnd_regs(port);
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}

static int msm_startup(struct uart_port *port)
{
	struct msm_port *msm_port = UART_TO_MSM(port);
	unsigned int data, rfr_level;
	int ret;

	snprintf(msm_port->name, sizeof(msm_port->name),
		 "msm_serial%d", port->line);

	ret = request_irq(port->irq, msm_irq, IRQF_TRIGGER_HIGH,
			  msm_port->name, port);
	if (unlikely(ret))
		return ret;

	msm_init_clock(port);

	if (likely(port->fifosize > 12))
		rfr_level = port->fifosize - 12;
	else
		rfr_level = port->fifosize;

	/* set automatic RFR level */
	data = msm_read(port, UART_MR1);
	data &= ~UART_MR1_AUTO_RFR_LEVEL1;
	data &= ~UART_MR1_AUTO_RFR_LEVEL0;
	data |= UART_MR1_AUTO_RFR_LEVEL1 & (rfr_level << 2);
	data |= UART_MR1_AUTO_RFR_LEVEL0 & rfr_level;
	msm_write(port, data, UART_MR1);

	/* make sure that RXSTALE count is non-zero */
	data = msm_read(port, UART_IPR);
	if (unlikely(!data)) {
		data |= UART_IPR_RXSTALE_LAST;
		data |= UART_IPR_STALE_LSB;
		msm_write(port, data, UART_IPR);
	}

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	data = 0;
	if (!port->cons || (port->cons && !(port->cons->flags & CON_ENABLED))) {
		msm_write(port, UART_CR_CMD_PROTECTION_EN, UART_CR);
		msm_reset(port);
		data = UART_CR_TX_ENABLE;
	}

	data |= UART_CR_RX_ENABLE;
	msm_write(port, data, UART_CR);	/* enable TX & RX */
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	/* Make sure IPR is not 0 to start with*/
	if (msm_port->is_uartdm)
		msm_write(port, UART_IPR_STALE_LSB, UART_IPR);
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	/* turn on RX and CTS interrupts */
	msm_port->imr = UART_IMR_RXLEV | UART_IMR_RXSTALE |
			UART_IMR_CURRENT_CTS;

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	if (msm_port->is_uartdm) {
		msm_write(port, 0xFFFFFF, UARTDM_DMRX);
		msm_write(port, UART_CR_CMD_RESET_STALE_INT, UART_CR);
		msm_write(port, UART_CR_CMD_STALE_EVENT_ENABLE, UART_CR);
	}

	msm_write(port, msm_port->imr, UART_IMR);
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	return 0;
}

static void msm_shutdown(struct uart_port *port)
{
	struct msm_port *msm_port = UART_TO_MSM(port);

	msm_port->imr = 0;
	msm_write(port, 0, UART_IMR); /* disable interrupts */

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	clk_disable_unprepare(msm_port->clk);
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	free_irq(port->irq, port);
}

static void msm_set_termios(struct uart_port *port, struct ktermios *termios,
			    struct ktermios *old)
{
	unsigned long flags;
	unsigned int baud, mr;

	spin_lock_irqsave(&port->lock, flags);

	/* calculate and set baud rate */
	baud = uart_get_baud_rate(port, termios, old, 300, 115200);
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	baud = msm_set_baud_rate(port, baud);
	if (tty_termios_baud_rate(termios))
		tty_termios_encode_baud_rate(termios, baud, baud);
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	/* calculate parity */
	mr = msm_read(port, UART_MR2);
	mr &= ~UART_MR2_PARITY_MODE;
	if (termios->c_cflag & PARENB) {
		if (termios->c_cflag & PARODD)
			mr |= UART_MR2_PARITY_MODE_ODD;
		else if (termios->c_cflag & CMSPAR)
			mr |= UART_MR2_PARITY_MODE_SPACE;
		else
			mr |= UART_MR2_PARITY_MODE_EVEN;
	}

	/* calculate bits per char */
	mr &= ~UART_MR2_BITS_PER_CHAR;
	switch (termios->c_cflag & CSIZE) {
	case CS5:
		mr |= UART_MR2_BITS_PER_CHAR_5;
		break;
	case CS6:
		mr |= UART_MR2_BITS_PER_CHAR_6;
		break;
	case CS7:
		mr |= UART_MR2_BITS_PER_CHAR_7;
		break;
	case CS8:
	default:
		mr |= UART_MR2_BITS_PER_CHAR_8;
		break;
	}

	/* calculate stop bits */
	mr &= ~(UART_MR2_STOP_BIT_LEN_ONE | UART_MR2_STOP_BIT_LEN_TWO);
	if (termios->c_cflag & CSTOPB)
		mr |= UART_MR2_STOP_BIT_LEN_TWO;
	else
		mr |= UART_MR2_STOP_BIT_LEN_ONE;

	/* set parity, bits per char, and stop bit */
	msm_write(port, mr, UART_MR2);

	/* calculate and set hardware flow control */
	mr = msm_read(port, UART_MR1);
	mr &= ~(UART_MR1_CTS_CTL | UART_MR1_RX_RDY_CTL);
	if (termios->c_cflag & CRTSCTS) {
		mr |= UART_MR1_CTS_CTL;
		mr |= UART_MR1_RX_RDY_CTL;
	}
	msm_write(port, mr, UART_MR1);

	/* Configure status bits to ignore based on termio flags. */
	port->read_status_mask = 0;
	if (termios->c_iflag & INPCK)
		port->read_status_mask |= UART_SR_PAR_FRAME_ERR;
	if (termios->c_iflag & (BRKINT | PARMRK))
		port->read_status_mask |= UART_SR_RX_BREAK;

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

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

static const char *msm_type(struct uart_port *port)
{
	return "MSM";
}

static void msm_release_port(struct uart_port *port)
{
	struct platform_device *pdev = to_platform_device(port->dev);
601
	struct resource *uart_resource;
602 603
	resource_size_t size;

604 605
	uart_resource = platform_get_resource(pdev, IORESOURCE_MEM, 0);
	if (unlikely(!uart_resource))
606
		return;
607
	size = resource_size(uart_resource);
608 609 610 611 612 613 614 615 616

	release_mem_region(port->mapbase, size);
	iounmap(port->membase);
	port->membase = NULL;
}

static int msm_request_port(struct uart_port *port)
{
	struct platform_device *pdev = to_platform_device(port->dev);
617
	struct resource *uart_resource;
618
	resource_size_t size;
619
	int ret;
620

621
	uart_resource = platform_get_resource(pdev, IORESOURCE_MEM, 0);
622
	if (unlikely(!uart_resource))
623 624
		return -ENXIO;

625 626 627
	size = resource_size(uart_resource);

	if (!request_mem_region(port->mapbase, size, "msm_serial"))
628 629 630 631
		return -EBUSY;

	port->membase = ioremap(port->mapbase, size);
	if (!port->membase) {
632 633 634 635
		ret = -EBUSY;
		goto fail_release_port;
	}

636
	return 0;
637 638 639 640

fail_release_port:
	release_mem_region(port->mapbase, size);
	return ret;
641 642 643 644
}

static void msm_config_port(struct uart_port *port, int flags)
{
645
	int ret;
646 647
	if (flags & UART_CONFIG_TYPE) {
		port->type = PORT_MSM;
648 649 650
		ret = msm_request_port(port);
		if (ret)
			return;
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	}
}

static int msm_verify_port(struct uart_port *port, struct serial_struct *ser)
{
	if (unlikely(ser->type != PORT_UNKNOWN && ser->type != PORT_MSM))
		return -EINVAL;
	if (unlikely(port->irq != ser->irq))
		return -EINVAL;
	return 0;
}

static void msm_power(struct uart_port *port, unsigned int state,
		      unsigned int oldstate)
{
	struct msm_port *msm_port = UART_TO_MSM(port);

	switch (state) {
	case 0:
670
		clk_prepare_enable(msm_port->clk);
671
		clk_prepare_enable(msm_port->pclk);
672 673
		break;
	case 3:
674
		clk_disable_unprepare(msm_port->clk);
675
		clk_disable_unprepare(msm_port->pclk);
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		break;
	default:
		printk(KERN_ERR "msm_serial: Unknown PM state %d\n", state);
	}
}

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#ifdef CONFIG_CONSOLE_POLL
static int msm_poll_init(struct uart_port *port)
{
	struct msm_port *msm_port = UART_TO_MSM(port);

	/* Enable single character mode on RX FIFO */
	if (msm_port->is_uartdm >= UARTDM_1P4)
		msm_write(port, UARTDM_DMEN_RX_SC_ENABLE, UARTDM_DMEN);

	return 0;
}

static int msm_poll_get_char_single(struct uart_port *port)
{
	struct msm_port *msm_port = UART_TO_MSM(port);
	unsigned int rf_reg = msm_port->is_uartdm ? UARTDM_RF : UART_RF;

	if (!(msm_read(port, UART_SR) & UART_SR_RX_READY))
		return NO_POLL_CHAR;
	else
		return msm_read(port, rf_reg) & 0xff;
}

static int msm_poll_get_char_dm_1p3(struct uart_port *port)
{
	int c;
	static u32 slop;
	static int count;
	unsigned char *sp = (unsigned char *)&slop;

	/* Check if a previous read had more than one char */
	if (count) {
		c = sp[sizeof(slop) - count];
		count--;
	/* Or if FIFO is empty */
	} else if (!(msm_read(port, UART_SR) & UART_SR_RX_READY)) {
		/*
		 * If RX packing buffer has less than a word, force stale to
		 * push contents into RX FIFO
		 */
		count = msm_read(port, UARTDM_RXFS);
		count = (count >> UARTDM_RXFS_BUF_SHIFT) & UARTDM_RXFS_BUF_MASK;
		if (count) {
			msm_write(port, UART_CR_CMD_FORCE_STALE, UART_CR);
			slop = msm_read(port, UARTDM_RF);
			c = sp[0];
			count--;
		} else {
			c = NO_POLL_CHAR;
		}
	/* FIFO has a word */
	} else {
		slop = msm_read(port, UARTDM_RF);
		c = sp[0];
		count = sizeof(slop) - 1;
	}

	return c;
}

static int msm_poll_get_char(struct uart_port *port)
{
	u32 imr;
	int c;
	struct msm_port *msm_port = UART_TO_MSM(port);

	/* Disable all interrupts */
	imr = msm_read(port, UART_IMR);
	msm_write(port, 0, UART_IMR);

	if (msm_port->is_uartdm == UARTDM_1P3)
		c = msm_poll_get_char_dm_1p3(port);
	else
		c = msm_poll_get_char_single(port);

	/* Enable interrupts */
	msm_write(port, imr, UART_IMR);

	return c;
}

static void msm_poll_put_char(struct uart_port *port, unsigned char c)
{
	u32 imr;
	struct msm_port *msm_port = UART_TO_MSM(port);

	/* Disable all interrupts */
	imr = msm_read(port, UART_IMR);
	msm_write(port, 0, UART_IMR);

	if (msm_port->is_uartdm)
		reset_dm_count(port, 1);

	/* Wait until FIFO is empty */
	while (!(msm_read(port, UART_SR) & UART_SR_TX_READY))
		cpu_relax();

	/* Write a character */
	msm_write(port, c, msm_port->is_uartdm ? UARTDM_TF : UART_TF);

	/* Wait until FIFO is empty */
	while (!(msm_read(port, UART_SR) & UART_SR_TX_READY))
		cpu_relax();

	/* Enable interrupts */
	msm_write(port, imr, UART_IMR);

	return;
}
#endif

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static struct uart_ops msm_uart_pops = {
	.tx_empty = msm_tx_empty,
	.set_mctrl = msm_set_mctrl,
	.get_mctrl = msm_get_mctrl,
	.stop_tx = msm_stop_tx,
	.start_tx = msm_start_tx,
	.stop_rx = msm_stop_rx,
	.enable_ms = msm_enable_ms,
	.break_ctl = msm_break_ctl,
	.startup = msm_startup,
	.shutdown = msm_shutdown,
	.set_termios = msm_set_termios,
	.type = msm_type,
	.release_port = msm_release_port,
	.request_port = msm_request_port,
	.config_port = msm_config_port,
	.verify_port = msm_verify_port,
	.pm = msm_power,
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#ifdef CONFIG_CONSOLE_POLL
	.poll_init = msm_poll_init,
	.poll_get_char	= msm_poll_get_char,
	.poll_put_char	= msm_poll_put_char,
#endif
816 817 818 819 820 821 822 823
};

static struct msm_port msm_uart_ports[] = {
	{
		.uart = {
			.iotype = UPIO_MEM,
			.ops = &msm_uart_pops,
			.flags = UPF_BOOT_AUTOCONF,
824
			.fifosize = 64,
825 826 827 828 829 830 831 832
			.line = 0,
		},
	},
	{
		.uart = {
			.iotype = UPIO_MEM,
			.ops = &msm_uart_pops,
			.flags = UPF_BOOT_AUTOCONF,
833
			.fifosize = 64,
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			.line = 1,
		},
	},
	{
		.uart = {
			.iotype = UPIO_MEM,
			.ops = &msm_uart_pops,
			.flags = UPF_BOOT_AUTOCONF,
			.fifosize = 64,
			.line = 2,
		},
	},
};

#define UART_NR	ARRAY_SIZE(msm_uart_ports)

static inline struct uart_port *get_port_from_line(unsigned int line)
{
	return &msm_uart_ports[line].uart;
}

#ifdef CONFIG_SERIAL_MSM_CONSOLE
static void msm_console_write(struct console *co, const char *s,
			      unsigned int count)
{
859
	int i;
860 861
	struct uart_port *port;
	struct msm_port *msm_port;
862 863
	int num_newlines = 0;
	bool replaced = false;
864 865 866 867 868 869

	BUG_ON(co->index < 0 || co->index >= UART_NR);

	port = get_port_from_line(co->index);
	msm_port = UART_TO_MSM(port);

870 871 872 873 874 875
	/* Account for newlines that will get a carriage return added */
	for (i = 0; i < count; i++)
		if (s[i] == '\n')
			num_newlines++;
	count += num_newlines;

876
	spin_lock(&port->lock);
877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912
	if (msm_port->is_uartdm)
		reset_dm_count(port, count);

	i = 0;
	while (i < count) {
		int j;
		unsigned int num_chars;
		char buf[4] = { 0 };
		unsigned int *bf = (unsigned int *)&buf;

		if (msm_port->is_uartdm)
			num_chars = min(count - i, (unsigned int)sizeof(buf));
		else
			num_chars = 1;

		for (j = 0; j < num_chars; j++) {
			char c = *s;

			if (c == '\n' && !replaced) {
				buf[j] = '\r';
				j++;
				replaced = true;
			}
			if (j < num_chars) {
				buf[j] = c;
				s++;
				replaced = false;
			}
		}

		while (!(msm_read(port, UART_SR) & UART_SR_TX_READY))
			cpu_relax();

		msm_write(port, *bf, msm_port->is_uartdm ? UARTDM_TF : UART_TF);
		i += num_chars;
	}
913 914 915 916 917 918
	spin_unlock(&port->lock);
}

static int __init msm_console_setup(struct console *co, char *options)
{
	struct uart_port *port;
919
	struct msm_port *msm_port;
920 921 922 923 924 925
	int baud, flow, bits, parity;

	if (unlikely(co->index >= UART_NR || co->index < 0))
		return -ENXIO;

	port = get_port_from_line(co->index);
926
	msm_port = UART_TO_MSM(port);
927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947

	if (unlikely(!port->membase))
		return -ENXIO;

	msm_init_clock(port);

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

	bits = 8;
	parity = 'n';
	flow = 'n';
	msm_write(port, UART_MR2_BITS_PER_CHAR_8 | UART_MR2_STOP_BIT_LEN_ONE,
		  UART_MR2);	/* 8N1 */

	if (baud < 300 || baud > 115200)
		baud = 115200;
	msm_set_baud_rate(port, baud);

	msm_reset(port);

948 949 950 951 952
	if (msm_port->is_uartdm) {
		msm_write(port, UART_CR_CMD_PROTECTION_EN, UART_CR);
		msm_write(port, UART_CR_TX_ENABLE, UART_CR);
	}

953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983
	printk(KERN_INFO "msm_serial: console setup on port #%d\n", port->line);

	return uart_set_options(port, co, baud, parity, bits, flow);
}

static struct uart_driver msm_uart_driver;

static struct console msm_console = {
	.name = "ttyMSM",
	.write = msm_console_write,
	.device = uart_console_device,
	.setup = msm_console_setup,
	.flags = CON_PRINTBUFFER,
	.index = -1,
	.data = &msm_uart_driver,
};

#define MSM_CONSOLE	(&msm_console)

#else
#define MSM_CONSOLE	NULL
#endif

static struct uart_driver msm_uart_driver = {
	.owner = THIS_MODULE,
	.driver_name = "msm_serial",
	.dev_name = "ttyMSM",
	.nr = UART_NR,
	.cons = MSM_CONSOLE,
};

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David Brown 已提交
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static atomic_t msm_uart_next_id = ATOMIC_INIT(0);

986
static const struct of_device_id msm_uartdm_table[] = {
987 988 989 990
	{ .compatible = "qcom,msm-uartdm-v1.1", .data = (void *)UARTDM_1P1 },
	{ .compatible = "qcom,msm-uartdm-v1.2", .data = (void *)UARTDM_1P2 },
	{ .compatible = "qcom,msm-uartdm-v1.3", .data = (void *)UARTDM_1P3 },
	{ .compatible = "qcom,msm-uartdm-v1.4", .data = (void *)UARTDM_1P4 },
991 992 993
	{ }
};

994 995 996 997 998
static int __init msm_serial_probe(struct platform_device *pdev)
{
	struct msm_port *msm_port;
	struct resource *resource;
	struct uart_port *port;
999
	const struct of_device_id *id;
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Roel Kluin 已提交
1000
	int irq;
1001

D
David Brown 已提交
1002 1003 1004
	if (pdev->id == -1)
		pdev->id = atomic_inc_return(&msm_uart_next_id) - 1;

1005 1006 1007 1008 1009 1010 1011 1012 1013
	if (unlikely(pdev->id < 0 || pdev->id >= UART_NR))
		return -ENXIO;

	printk(KERN_INFO "msm_serial: detected port #%d\n", pdev->id);

	port = get_port_from_line(pdev->id);
	port->dev = &pdev->dev;
	msm_port = UART_TO_MSM(port);

1014 1015 1016
	id = of_match_device(msm_uartdm_table, &pdev->dev);
	if (id)
		msm_port->is_uartdm = (unsigned long)id->data;
1017 1018 1019
	else
		msm_port->is_uartdm = 0;

1020
	msm_port->clk = devm_clk_get(&pdev->dev, "core");
1021 1022 1023 1024
	if (IS_ERR(msm_port->clk))
		return PTR_ERR(msm_port->clk);

	if (msm_port->is_uartdm) {
1025
		msm_port->pclk = devm_clk_get(&pdev->dev, "iface");
1026 1027
		if (IS_ERR(msm_port->pclk))
			return PTR_ERR(msm_port->pclk);
1028

1029
		clk_set_rate(msm_port->clk, 1843200);
1030
	}
1031

1032
	port->uartclk = clk_get_rate(msm_port->clk);
1033 1034
	printk(KERN_INFO "uartclk = %d\n", port->uartclk);

1035

1036
	resource = platform_get_resource(pdev, IORESOURCE_MEM, 0);
1037 1038 1039 1040
	if (unlikely(!resource))
		return -ENXIO;
	port->mapbase = resource->start;

R
Roel Kluin 已提交
1041 1042
	irq = platform_get_irq(pdev, 0);
	if (unlikely(irq < 0))
1043
		return -ENXIO;
R
Roel Kluin 已提交
1044
	port->irq = irq;
1045 1046 1047 1048 1049 1050

	platform_set_drvdata(pdev, port);

	return uart_add_one_port(&msm_uart_driver, port);
}

B
Bill Pemberton 已提交
1051
static int msm_serial_remove(struct platform_device *pdev)
1052
{
1053
	struct uart_port *port = platform_get_drvdata(pdev);
1054

1055
	uart_remove_one_port(&msm_uart_driver, port);
1056 1057 1058 1059

	return 0;
}

D
David Brown 已提交
1060 1061
static struct of_device_id msm_match_table[] = {
	{ .compatible = "qcom,msm-uart" },
1062
	{ .compatible = "qcom,msm-uartdm" },
D
David Brown 已提交
1063 1064 1065
	{}
};

1066 1067
static struct platform_driver msm_platform_driver = {
	.remove = msm_serial_remove,
1068
	.probe = msm_serial_probe,
1069 1070 1071
	.driver = {
		.name = "msm_serial",
		.owner = THIS_MODULE,
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David Brown 已提交
1072
		.of_match_table = msm_match_table,
1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083
	},
};

static int __init msm_serial_init(void)
{
	int ret;

	ret = uart_register_driver(&msm_uart_driver);
	if (unlikely(ret))
		return ret;

1084
	ret = platform_driver_register(&msm_platform_driver);
1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107
	if (unlikely(ret))
		uart_unregister_driver(&msm_uart_driver);

	printk(KERN_INFO "msm_serial: driver initialized\n");

	return ret;
}

static void __exit msm_serial_exit(void)
{
#ifdef CONFIG_SERIAL_MSM_CONSOLE
	unregister_console(&msm_console);
#endif
	platform_driver_unregister(&msm_platform_driver);
	uart_unregister_driver(&msm_uart_driver);
}

module_init(msm_serial_init);
module_exit(msm_serial_exit);

MODULE_AUTHOR("Robert Love <rlove@google.com>");
MODULE_DESCRIPTION("Driver for msm7x serial device");
MODULE_LICENSE("GPL");