omap.c 38.7 KB
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/*
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 *  linux/drivers/mmc/host/omap.c
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 *
 *  Copyright (C) 2004 Nokia Corporation
 *  Written by Tuukka Tikkanen and Juha Yrjl<juha.yrjola@nokia.com>
 *  Misc hacks here and there by Tony Lindgren <tony@atomide.com>
 *  Other hacks (DMA, SD, etc) by David Brownell
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */

#include <linux/module.h>
#include <linux/moduleparam.h>
#include <linux/init.h>
#include <linux/ioport.h>
#include <linux/platform_device.h>
#include <linux/interrupt.h>
#include <linux/dma-mapping.h>
#include <linux/delay.h>
#include <linux/spinlock.h>
#include <linux/timer.h>
#include <linux/mmc/host.h>
#include <linux/mmc/card.h>
#include <linux/clk.h>
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#include <linux/scatterlist.h>
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#include <linux/i2c/tps65010.h>
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#include <asm/io.h>
#include <asm/irq.h>
#include <asm/mach-types.h>

#include <asm/arch/board.h>
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#include <asm/arch/mmc.h>
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#include <asm/arch/gpio.h>
#include <asm/arch/dma.h>
#include <asm/arch/mux.h>
#include <asm/arch/fpga.h>

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#define	OMAP_MMC_REG_CMD	0x00
#define	OMAP_MMC_REG_ARGL	0x04
#define	OMAP_MMC_REG_ARGH	0x08
#define	OMAP_MMC_REG_CON	0x0c
#define	OMAP_MMC_REG_STAT	0x10
#define	OMAP_MMC_REG_IE		0x14
#define	OMAP_MMC_REG_CTO	0x18
#define	OMAP_MMC_REG_DTO	0x1c
#define	OMAP_MMC_REG_DATA	0x20
#define	OMAP_MMC_REG_BLEN	0x24
#define	OMAP_MMC_REG_NBLK	0x28
#define	OMAP_MMC_REG_BUF	0x2c
#define OMAP_MMC_REG_SDIO	0x34
#define	OMAP_MMC_REG_REV	0x3c
#define	OMAP_MMC_REG_RSP0	0x40
#define	OMAP_MMC_REG_RSP1	0x44
#define	OMAP_MMC_REG_RSP2	0x48
#define	OMAP_MMC_REG_RSP3	0x4c
#define	OMAP_MMC_REG_RSP4	0x50
#define	OMAP_MMC_REG_RSP5	0x54
#define	OMAP_MMC_REG_RSP6	0x58
#define	OMAP_MMC_REG_RSP7	0x5c
#define	OMAP_MMC_REG_IOSR	0x60
#define	OMAP_MMC_REG_SYSC	0x64
#define	OMAP_MMC_REG_SYSS	0x68

#define	OMAP_MMC_STAT_CARD_ERR		(1 << 14)
#define	OMAP_MMC_STAT_CARD_IRQ		(1 << 13)
#define	OMAP_MMC_STAT_OCR_BUSY		(1 << 12)
#define	OMAP_MMC_STAT_A_EMPTY		(1 << 11)
#define	OMAP_MMC_STAT_A_FULL		(1 << 10)
#define	OMAP_MMC_STAT_CMD_CRC		(1 <<  8)
#define	OMAP_MMC_STAT_CMD_TOUT		(1 <<  7)
#define	OMAP_MMC_STAT_DATA_CRC		(1 <<  6)
#define	OMAP_MMC_STAT_DATA_TOUT		(1 <<  5)
#define	OMAP_MMC_STAT_END_BUSY		(1 <<  4)
#define	OMAP_MMC_STAT_END_OF_DATA	(1 <<  3)
#define	OMAP_MMC_STAT_CARD_BUSY		(1 <<  2)
#define	OMAP_MMC_STAT_END_OF_CMD	(1 <<  0)

#define OMAP_MMC_READ(host, reg)	__raw_readw((host)->virt_base + OMAP_MMC_REG_##reg)
#define OMAP_MMC_WRITE(host, reg, val)	__raw_writew((val), (host)->virt_base + OMAP_MMC_REG_##reg)

/*
 * Command types
 */
#define OMAP_MMC_CMDTYPE_BC	0
#define OMAP_MMC_CMDTYPE_BCR	1
#define OMAP_MMC_CMDTYPE_AC	2
#define OMAP_MMC_CMDTYPE_ADTC	3

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#define DRIVER_NAME "mmci-omap"

/* Specifies how often in millisecs to poll for card status changes
 * when the cover switch is open */
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#define OMAP_MMC_COVER_POLL_DELAY	500
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struct mmc_omap_host;

struct mmc_omap_slot {
	int			id;
	unsigned int		vdd;
	u16			saved_con;
	u16			bus_mode;
	unsigned int		fclk_freq;
	unsigned		powered:1;

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	struct tasklet_struct	cover_tasklet;
	struct timer_list       cover_timer;
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	unsigned		cover_open;

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	struct mmc_request      *mrq;
	struct mmc_omap_host    *host;
	struct mmc_host		*mmc;
	struct omap_mmc_slot_data *pdata;
};

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struct mmc_omap_host {
	int			initialized;
	int			suspended;
	struct mmc_request *	mrq;
	struct mmc_command *	cmd;
	struct mmc_data *	data;
	struct mmc_host *	mmc;
	struct device *		dev;
	unsigned char		id; /* 16xx chips have 2 MMC blocks */
	struct clk *		iclk;
	struct clk *		fclk;
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	struct resource		*mem_res;
	void __iomem		*virt_base;
	unsigned int		phys_base;
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	int			irq;
	unsigned char		bus_mode;
	unsigned char		hw_bus_mode;

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	struct work_struct	cmd_abort_work;
	unsigned		abort:1;
	struct timer_list	cmd_abort_timer;
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	struct work_struct      slot_release_work;
	struct mmc_omap_slot    *next_slot;
	struct work_struct      send_stop_work;
	struct mmc_data		*stop_data;

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	unsigned int		sg_len;
	int			sg_idx;
	u16 *			buffer;
	u32			buffer_bytes_left;
	u32			total_bytes_left;

	unsigned		use_dma:1;
	unsigned		brs_received:1, dma_done:1;
	unsigned		dma_is_read:1;
	unsigned		dma_in_use:1;
	int			dma_ch;
	spinlock_t		dma_lock;
	struct timer_list	dma_timer;
	unsigned		dma_len;

	short			power_pin;

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	struct mmc_omap_slot    *slots[OMAP_MMC_MAX_SLOTS];
	struct mmc_omap_slot    *current_slot;
	spinlock_t              slot_lock;
	wait_queue_head_t       slot_wq;
	int                     nr_slots;

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	struct timer_list       clk_timer;
	spinlock_t		clk_lock;     /* for changing enabled state */
	unsigned int            fclk_enabled:1;

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	struct omap_mmc_platform_data *pdata;
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};

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void mmc_omap_fclk_offdelay(struct mmc_omap_slot *slot)
{
	unsigned long tick_ns;

	if (slot != NULL && slot->host->fclk_enabled && slot->fclk_freq > 0) {
		tick_ns = (1000000000 + slot->fclk_freq - 1) / slot->fclk_freq;
		ndelay(8 * tick_ns);
	}
}

void mmc_omap_fclk_enable(struct mmc_omap_host *host, unsigned int enable)
{
	unsigned long flags;

	spin_lock_irqsave(&host->clk_lock, flags);
	if (host->fclk_enabled != enable) {
		host->fclk_enabled = enable;
		if (enable)
			clk_enable(host->fclk);
		else
			clk_disable(host->fclk);
	}
	spin_unlock_irqrestore(&host->clk_lock, flags);
}

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static void mmc_omap_select_slot(struct mmc_omap_slot *slot, int claimed)
{
	struct mmc_omap_host *host = slot->host;
	unsigned long flags;

	if (claimed)
		goto no_claim;
	spin_lock_irqsave(&host->slot_lock, flags);
	while (host->mmc != NULL) {
		spin_unlock_irqrestore(&host->slot_lock, flags);
		wait_event(host->slot_wq, host->mmc == NULL);
		spin_lock_irqsave(&host->slot_lock, flags);
	}
	host->mmc = slot->mmc;
	spin_unlock_irqrestore(&host->slot_lock, flags);
no_claim:
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	del_timer(&host->clk_timer);
	if (host->current_slot != slot || !claimed)
		mmc_omap_fclk_offdelay(host->current_slot);

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	if (host->current_slot != slot) {
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		OMAP_MMC_WRITE(host, CON, slot->saved_con & 0xFC00);
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		if (host->pdata->switch_slot != NULL)
			host->pdata->switch_slot(mmc_dev(slot->mmc), slot->id);
		host->current_slot = slot;
	}

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	if (claimed) {
		mmc_omap_fclk_enable(host, 1);

		/* Doing the dummy read here seems to work around some bug
		 * at least in OMAP24xx silicon where the command would not
		 * start after writing the CMD register. Sigh. */
		OMAP_MMC_READ(host, CON);
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		OMAP_MMC_WRITE(host, CON, slot->saved_con);
	} else
		mmc_omap_fclk_enable(host, 0);
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}

static void mmc_omap_start_request(struct mmc_omap_host *host,
				   struct mmc_request *req);

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static void mmc_omap_slot_release_work(struct work_struct *work)
{
	struct mmc_omap_host *host = container_of(work, struct mmc_omap_host,
						  slot_release_work);
	struct mmc_omap_slot *next_slot = host->next_slot;
	struct mmc_request *rq;

	host->next_slot = NULL;
	mmc_omap_select_slot(next_slot, 1);

	rq = next_slot->mrq;
	next_slot->mrq = NULL;
	mmc_omap_start_request(host, rq);
}

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static void mmc_omap_release_slot(struct mmc_omap_slot *slot, int clk_enabled)
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{
	struct mmc_omap_host *host = slot->host;
	unsigned long flags;
	int i;

	BUG_ON(slot == NULL || host->mmc == NULL);
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	if (clk_enabled)
		/* Keeps clock running for at least 8 cycles on valid freq */
		mod_timer(&host->clk_timer, jiffies  + HZ/10);
	else {
		del_timer(&host->clk_timer);
		mmc_omap_fclk_offdelay(slot);
		mmc_omap_fclk_enable(host, 0);
	}
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	spin_lock_irqsave(&host->slot_lock, flags);
	/* Check for any pending requests */
	for (i = 0; i < host->nr_slots; i++) {
		struct mmc_omap_slot *new_slot;

		if (host->slots[i] == NULL || host->slots[i]->mrq == NULL)
			continue;

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		BUG_ON(host->next_slot != NULL);
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		new_slot = host->slots[i];
		/* The current slot should not have a request in queue */
		BUG_ON(new_slot == host->current_slot);

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		host->next_slot = new_slot;
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		host->mmc = new_slot->mmc;
		spin_unlock_irqrestore(&host->slot_lock, flags);
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		schedule_work(&host->slot_release_work);
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		return;
	}

	host->mmc = NULL;
	wake_up(&host->slot_wq);
	spin_unlock_irqrestore(&host->slot_lock, flags);
}

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static inline
int mmc_omap_cover_is_open(struct mmc_omap_slot *slot)
{
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	if (slot->pdata->get_cover_state)
		return slot->pdata->get_cover_state(mmc_dev(slot->mmc),
						    slot->id);
	return 0;
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}

static ssize_t
mmc_omap_show_cover_switch(struct device *dev, struct device_attribute *attr,
			   char *buf)
{
	struct mmc_host *mmc = container_of(dev, struct mmc_host, class_dev);
	struct mmc_omap_slot *slot = mmc_priv(mmc);

	return sprintf(buf, "%s\n", mmc_omap_cover_is_open(slot) ? "open" :
		       "closed");
}

static DEVICE_ATTR(cover_switch, S_IRUGO, mmc_omap_show_cover_switch, NULL);

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static ssize_t
mmc_omap_show_slot_name(struct device *dev, struct device_attribute *attr,
			char *buf)
{
	struct mmc_host *mmc = container_of(dev, struct mmc_host, class_dev);
	struct mmc_omap_slot *slot = mmc_priv(mmc);

	return sprintf(buf, "%s\n", slot->pdata->name);
}

static DEVICE_ATTR(slot_name, S_IRUGO, mmc_omap_show_slot_name, NULL);

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static void
mmc_omap_start_command(struct mmc_omap_host *host, struct mmc_command *cmd)
{
	u32 cmdreg;
	u32 resptype;
	u32 cmdtype;

	host->cmd = cmd;

	resptype = 0;
	cmdtype = 0;

	/* Our hardware needs to know exact type */
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	switch (mmc_resp_type(cmd)) {
	case MMC_RSP_NONE:
		break;
	case MMC_RSP_R1:
	case MMC_RSP_R1B:
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		/* resp 1, 1b, 6, 7 */
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		resptype = 1;
		break;
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	case MMC_RSP_R2:
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		resptype = 2;
		break;
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	case MMC_RSP_R3:
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		resptype = 3;
		break;
	default:
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		dev_err(mmc_dev(host->mmc), "Invalid response type: %04x\n", mmc_resp_type(cmd));
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		break;
	}

	if (mmc_cmd_type(cmd) == MMC_CMD_ADTC) {
		cmdtype = OMAP_MMC_CMDTYPE_ADTC;
	} else if (mmc_cmd_type(cmd) == MMC_CMD_BC) {
		cmdtype = OMAP_MMC_CMDTYPE_BC;
	} else if (mmc_cmd_type(cmd) == MMC_CMD_BCR) {
		cmdtype = OMAP_MMC_CMDTYPE_BCR;
	} else {
		cmdtype = OMAP_MMC_CMDTYPE_AC;
	}

	cmdreg = cmd->opcode | (resptype << 8) | (cmdtype << 12);

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	if (host->current_slot->bus_mode == MMC_BUSMODE_OPENDRAIN)
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		cmdreg |= 1 << 6;

	if (cmd->flags & MMC_RSP_BUSY)
		cmdreg |= 1 << 11;

	if (host->data && !(host->data->flags & MMC_DATA_WRITE))
		cmdreg |= 1 << 15;

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	mod_timer(&host->cmd_abort_timer, jiffies + HZ/2);
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	OMAP_MMC_WRITE(host, CTO, 200);
	OMAP_MMC_WRITE(host, ARGL, cmd->arg & 0xffff);
	OMAP_MMC_WRITE(host, ARGH, cmd->arg >> 16);
	OMAP_MMC_WRITE(host, IE,
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		       OMAP_MMC_STAT_A_EMPTY    | OMAP_MMC_STAT_A_FULL    |
		       OMAP_MMC_STAT_CMD_CRC    | OMAP_MMC_STAT_CMD_TOUT  |
		       OMAP_MMC_STAT_DATA_CRC   | OMAP_MMC_STAT_DATA_TOUT |
		       OMAP_MMC_STAT_END_OF_CMD | OMAP_MMC_STAT_CARD_ERR  |
		       OMAP_MMC_STAT_END_OF_DATA);
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	OMAP_MMC_WRITE(host, CMD, cmdreg);
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}

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static void
mmc_omap_release_dma(struct mmc_omap_host *host, struct mmc_data *data,
		     int abort)
{
	enum dma_data_direction dma_data_dir;

	BUG_ON(host->dma_ch < 0);
	if (data->error)
		omap_stop_dma(host->dma_ch);
	/* Release DMA channel lazily */
	mod_timer(&host->dma_timer, jiffies + HZ);
	if (data->flags & MMC_DATA_WRITE)
		dma_data_dir = DMA_TO_DEVICE;
	else
		dma_data_dir = DMA_FROM_DEVICE;
	dma_unmap_sg(mmc_dev(host->mmc), data->sg, host->sg_len,
		     dma_data_dir);
}

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static void mmc_omap_send_stop_work(struct work_struct *work)
{
	struct mmc_omap_host *host = container_of(work, struct mmc_omap_host,
						  send_stop_work);
	struct mmc_omap_slot *slot = host->current_slot;
	struct mmc_data *data = host->stop_data;
	unsigned long tick_ns;

	tick_ns = (1000000000 + slot->fclk_freq - 1)/slot->fclk_freq;
	ndelay(8*tick_ns);

	mmc_omap_start_command(host, data->stop);
}

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static void
mmc_omap_xfer_done(struct mmc_omap_host *host, struct mmc_data *data)
{
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	if (host->dma_in_use)
		mmc_omap_release_dma(host, data, data->error);

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	host->data = NULL;
	host->sg_len = 0;

	/* NOTE:  MMC layer will sometimes poll-wait CMD13 next, issuing
	 * dozens of requests until the card finishes writing data.
	 * It'd be cheaper to just wait till an EOFB interrupt arrives...
	 */

	if (!data->stop) {
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		struct mmc_host *mmc;

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		host->mrq = NULL;
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		mmc = host->mmc;
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		mmc_omap_release_slot(host->current_slot, 1);
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		mmc_request_done(mmc, data->mrq);
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		return;
	}

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	host->stop_data = data;
	schedule_work(&host->send_stop_work);
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}

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static void
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mmc_omap_send_abort(struct mmc_omap_host *host, int maxloops)
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{
	struct mmc_omap_slot *slot = host->current_slot;
	unsigned int restarts, passes, timeout;
	u16 stat = 0;

	/* Sending abort takes 80 clocks. Have some extra and round up */
	timeout = (120*1000000 + slot->fclk_freq - 1)/slot->fclk_freq;
	restarts = 0;
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	while (restarts < maxloops) {
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		OMAP_MMC_WRITE(host, STAT, 0xFFFF);
		OMAP_MMC_WRITE(host, CMD, (3 << 12) | (1 << 7));

		passes = 0;
		while (passes < timeout) {
			stat = OMAP_MMC_READ(host, STAT);
			if (stat & OMAP_MMC_STAT_END_OF_CMD)
				goto out;
			udelay(1);
			passes++;
		}

		restarts++;
	}
out:
	OMAP_MMC_WRITE(host, STAT, stat);
}

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static void
mmc_omap_abort_xfer(struct mmc_omap_host *host, struct mmc_data *data)
{
	if (host->dma_in_use)
		mmc_omap_release_dma(host, data, 1);

	host->data = NULL;
	host->sg_len = 0;

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	mmc_omap_send_abort(host, 10000);
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}

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static void
mmc_omap_end_of_data(struct mmc_omap_host *host, struct mmc_data *data)
{
	unsigned long flags;
	int done;

	if (!host->dma_in_use) {
		mmc_omap_xfer_done(host, data);
		return;
	}
	done = 0;
	spin_lock_irqsave(&host->dma_lock, flags);
	if (host->dma_done)
		done = 1;
	else
		host->brs_received = 1;
	spin_unlock_irqrestore(&host->dma_lock, flags);
	if (done)
		mmc_omap_xfer_done(host, data);
}

static void
mmc_omap_dma_timer(unsigned long data)
{
	struct mmc_omap_host *host = (struct mmc_omap_host *) data;

	BUG_ON(host->dma_ch < 0);
	omap_free_dma(host->dma_ch);
	host->dma_ch = -1;
}

static void
mmc_omap_dma_done(struct mmc_omap_host *host, struct mmc_data *data)
{
	unsigned long flags;
	int done;

	done = 0;
	spin_lock_irqsave(&host->dma_lock, flags);
	if (host->brs_received)
		done = 1;
	else
		host->dma_done = 1;
	spin_unlock_irqrestore(&host->dma_lock, flags);
	if (done)
		mmc_omap_xfer_done(host, data);
}

static void
mmc_omap_cmd_done(struct mmc_omap_host *host, struct mmc_command *cmd)
{
	host->cmd = NULL;

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	del_timer(&host->cmd_abort_timer);
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	if (cmd->flags & MMC_RSP_PRESENT) {
		if (cmd->flags & MMC_RSP_136) {
			/* response type 2 */
			cmd->resp[3] =
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				OMAP_MMC_READ(host, RSP0) |
				(OMAP_MMC_READ(host, RSP1) << 16);
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			cmd->resp[2] =
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				OMAP_MMC_READ(host, RSP2) |
				(OMAP_MMC_READ(host, RSP3) << 16);
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			cmd->resp[1] =
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				OMAP_MMC_READ(host, RSP4) |
				(OMAP_MMC_READ(host, RSP5) << 16);
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			cmd->resp[0] =
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				OMAP_MMC_READ(host, RSP6) |
				(OMAP_MMC_READ(host, RSP7) << 16);
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		} else {
			/* response types 1, 1b, 3, 4, 5, 6 */
			cmd->resp[0] =
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				OMAP_MMC_READ(host, RSP6) |
				(OMAP_MMC_READ(host, RSP7) << 16);
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		}
	}

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	if (host->data == NULL || cmd->error) {
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		struct mmc_host *mmc;

		if (host->data != NULL)
			mmc_omap_abort_xfer(host, host->data);
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		host->mrq = NULL;
588
		mmc = host->mmc;
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		mmc_omap_release_slot(host->current_slot, 1);
590
		mmc_request_done(mmc, cmd->mrq);
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	}
}

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/*
 * Abort stuck command. Can occur when card is removed while it is being
 * read.
 */
static void mmc_omap_abort_command(struct work_struct *work)
{
	struct mmc_omap_host *host = container_of(work, struct mmc_omap_host,
601 602
						  cmd_abort_work);
	BUG_ON(!host->cmd);
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	dev_dbg(mmc_dev(host->mmc), "Aborting stuck command CMD%d\n",
		host->cmd->opcode);

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	if (host->cmd->error == 0)
		host->cmd->error = -ETIMEDOUT;
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	if (host->data == NULL) {
		struct mmc_command *cmd;
		struct mmc_host    *mmc;

		cmd = host->cmd;
		host->cmd = NULL;
		mmc_omap_send_abort(host, 10000);

		host->mrq = NULL;
		mmc = host->mmc;
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		mmc_omap_release_slot(host->current_slot, 1);
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		mmc_request_done(mmc, cmd->mrq);
	} else
		mmc_omap_cmd_done(host, host->cmd);
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	host->abort = 0;
	enable_irq(host->irq);
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}

static void
mmc_omap_cmd_timer(unsigned long data)
{
	struct mmc_omap_host *host = (struct mmc_omap_host *) data;
633
	unsigned long flags;
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	spin_lock_irqsave(&host->slot_lock, flags);
	if (host->cmd != NULL && !host->abort) {
		OMAP_MMC_WRITE(host, IE, 0);
		disable_irq(host->irq);
		host->abort = 1;
		schedule_work(&host->cmd_abort_work);
	}
	spin_unlock_irqrestore(&host->slot_lock, flags);
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}

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/* PIO only */
static void
mmc_omap_sg_to_buf(struct mmc_omap_host *host)
{
	struct scatterlist *sg;

	sg = host->data->sg + host->sg_idx;
	host->buffer_bytes_left = sg->length;
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	host->buffer = sg_virt(sg);
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	if (host->buffer_bytes_left > host->total_bytes_left)
		host->buffer_bytes_left = host->total_bytes_left;
}

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static void
mmc_omap_clk_timer(unsigned long data)
{
	struct mmc_omap_host *host = (struct mmc_omap_host *) data;

	mmc_omap_fclk_enable(host, 0);
}

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/* PIO only */
static void
mmc_omap_xfer_data(struct mmc_omap_host *host, int write)
{
	int n;

	if (host->buffer_bytes_left == 0) {
		host->sg_idx++;
		BUG_ON(host->sg_idx == host->sg_len);
		mmc_omap_sg_to_buf(host);
	}
	n = 64;
	if (n > host->buffer_bytes_left)
		n = host->buffer_bytes_left;
	host->buffer_bytes_left -= n;
	host->total_bytes_left -= n;
	host->data->bytes_xfered += n;

	if (write) {
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		__raw_writesw(host->virt_base + OMAP_MMC_REG_DATA, host->buffer, n);
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	} else {
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		__raw_readsw(host->virt_base + OMAP_MMC_REG_DATA, host->buffer, n);
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	}
}

static inline void mmc_omap_report_irq(u16 status)
{
	static const char *mmc_omap_status_bits[] = {
		"EOC", "CD", "CB", "BRS", "EOFB", "DTO", "DCRC", "CTO",
		"CCRC", "CRW", "AF", "AE", "OCRB", "CIRQ", "CERR"
	};
	int i, c = 0;

	for (i = 0; i < ARRAY_SIZE(mmc_omap_status_bits); i++)
		if (status & (1 << i)) {
			if (c)
				printk(" ");
			printk("%s", mmc_omap_status_bits[i]);
			c++;
		}
}

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static irqreturn_t mmc_omap_irq(int irq, void *dev_id)
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{
	struct mmc_omap_host * host = (struct mmc_omap_host *)dev_id;
	u16 status;
	int end_command;
	int end_transfer;
714
	int transfer_error, cmd_error;
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	if (host->cmd == NULL && host->data == NULL) {
717
		status = OMAP_MMC_READ(host, STAT);
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		dev_info(mmc_dev(host->slots[0]->mmc),
			 "Spurious IRQ 0x%04x\n", status);
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		if (status != 0) {
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			OMAP_MMC_WRITE(host, STAT, status);
			OMAP_MMC_WRITE(host, IE, 0);
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		}
		return IRQ_HANDLED;
	}

	end_command = 0;
	end_transfer = 0;
	transfer_error = 0;
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	cmd_error = 0;
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	while ((status = OMAP_MMC_READ(host, STAT)) != 0) {
733 734
		int cmd;

735
		OMAP_MMC_WRITE(host, STAT, status);
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		if (host->cmd != NULL)
			cmd = host->cmd->opcode;
		else
			cmd = -1;
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#ifdef CONFIG_MMC_DEBUG
		dev_dbg(mmc_dev(host->mmc), "MMC IRQ %04x (CMD %d): ",
742
			status, cmd);
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		mmc_omap_report_irq(status);
		printk("\n");
#endif
		if (host->total_bytes_left) {
			if ((status & OMAP_MMC_STAT_A_FULL) ||
			    (status & OMAP_MMC_STAT_END_OF_DATA))
				mmc_omap_xfer_data(host, 0);
			if (status & OMAP_MMC_STAT_A_EMPTY)
				mmc_omap_xfer_data(host, 1);
		}

754
		if (status & OMAP_MMC_STAT_END_OF_DATA)
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			end_transfer = 1;

		if (status & OMAP_MMC_STAT_DATA_TOUT) {
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			dev_dbg(mmc_dev(host->mmc), "data timeout (CMD%d)\n",
				cmd);
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			if (host->data) {
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				host->data->error = -ETIMEDOUT;
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				transfer_error = 1;
			}
		}

		if (status & OMAP_MMC_STAT_DATA_CRC) {
			if (host->data) {
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				host->data->error = -EILSEQ;
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				dev_dbg(mmc_dev(host->mmc),
					 "data CRC error, bytes left %d\n",
					host->total_bytes_left);
				transfer_error = 1;
			} else {
				dev_dbg(mmc_dev(host->mmc), "data CRC error\n");
			}
		}

		if (status & OMAP_MMC_STAT_CMD_TOUT) {
			/* Timeouts are routine with some commands */
			if (host->cmd) {
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				struct mmc_omap_slot *slot =
					host->current_slot;
783 784
				if (slot == NULL ||
				    !mmc_omap_cover_is_open(slot))
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					dev_err(mmc_dev(host->mmc),
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						"command timeout (CMD%d)\n",
						cmd);
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				host->cmd->error = -ETIMEDOUT;
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				end_command = 1;
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				cmd_error = 1;
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			}
		}

		if (status & OMAP_MMC_STAT_CMD_CRC) {
			if (host->cmd) {
				dev_err(mmc_dev(host->mmc),
					"command CRC error (CMD%d, arg 0x%08x)\n",
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					cmd, host->cmd->arg);
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				host->cmd->error = -EILSEQ;
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				end_command = 1;
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				cmd_error = 1;
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			} else
				dev_err(mmc_dev(host->mmc),
					"command CRC error without cmd?\n");
		}

		if (status & OMAP_MMC_STAT_CARD_ERR) {
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			dev_dbg(mmc_dev(host->mmc),
				"ignoring card status error (CMD%d)\n",
810
				cmd);
811
			end_command = 1;
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		}

		/*
		 * NOTE: On 1610 the END_OF_CMD may come too early when
816
		 * starting a write
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		 */
		if ((status & OMAP_MMC_STAT_END_OF_CMD) &&
		    (!(status & OMAP_MMC_STAT_A_EMPTY))) {
			end_command = 1;
		}
	}

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	if (cmd_error && host->data) {
		del_timer(&host->cmd_abort_timer);
		host->abort = 1;
		OMAP_MMC_WRITE(host, IE, 0);
		disable_irq(host->irq);
		schedule_work(&host->cmd_abort_work);
		return IRQ_HANDLED;
	}

833
	if (end_command)
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		mmc_omap_cmd_done(host, host->cmd);
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	if (host->data != NULL) {
		if (transfer_error)
			mmc_omap_xfer_done(host, host->data);
		else if (end_transfer)
			mmc_omap_end_of_data(host, host->data);
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	}

	return IRQ_HANDLED;
}

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void omap_mmc_notify_cover_event(struct device *dev, int num, int is_closed)
846
{
847
	int cover_open;
848
	struct mmc_omap_host *host = dev_get_drvdata(dev);
849
	struct mmc_omap_slot *slot = host->slots[num];
850

851
	BUG_ON(num >= host->nr_slots);
852 853

	/* Other subsystems can call in here before we're initialised. */
854
	if (host->nr_slots == 0 || !host->slots[num])
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		return;

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	cover_open = mmc_omap_cover_is_open(slot);
	if (cover_open != slot->cover_open) {
		slot->cover_open = cover_open;
		sysfs_notify(&slot->mmc->class_dev.kobj, NULL, "cover_switch");
	}

	tasklet_hi_schedule(&slot->cover_tasklet);
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}

866
static void mmc_omap_cover_timer(unsigned long arg)
867 868
{
	struct mmc_omap_slot *slot = (struct mmc_omap_slot *) arg;
869
	tasklet_schedule(&slot->cover_tasklet);
870 871
}

872
static void mmc_omap_cover_handler(unsigned long param)
873
{
874 875
	struct mmc_omap_slot *slot = (struct mmc_omap_slot *)param;
	int cover_open = mmc_omap_cover_is_open(slot);
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	mmc_detect_change(slot->mmc, 0);
	if (!cover_open)
		return;

	/*
	 * If no card is inserted, we postpone polling until
	 * the cover has been closed.
	 */
	if (slot->mmc->card == NULL || !mmc_card_present(slot->mmc->card))
		return;

	mod_timer(&slot->cover_timer,
		  jiffies + msecs_to_jiffies(OMAP_MMC_COVER_POLL_DELAY));
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}

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/* Prepare to transfer the next segment of a scatterlist */
static void
mmc_omap_prepare_dma(struct mmc_omap_host *host, struct mmc_data *data)
{
	int dma_ch = host->dma_ch;
	unsigned long data_addr;
	u16 buf, frame;
	u32 count;
	struct scatterlist *sg = &data->sg[host->sg_idx];
	int src_port = 0;
	int dst_port = 0;
	int sync_dev = 0;

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	data_addr = host->phys_base + OMAP_MMC_REG_DATA;
906
	frame = data->blksz;
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	count = sg_dma_len(sg);

909
	if ((data->blocks == 1) && (count > data->blksz))
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		count = frame;

	host->dma_len = count;

	/* FIFO is 16x2 bytes on 15xx, and 32x2 bytes on 16xx and 24xx.
	 * Use 16 or 32 word frames when the blocksize is at least that large.
	 * Blocksize is usually 512 bytes; but not for some SD reads.
	 */
	if (cpu_is_omap15xx() && frame > 32)
		frame = 32;
	else if (frame > 64)
		frame = 64;
	count /= frame;
	frame >>= 1;

	if (!(data->flags & MMC_DATA_WRITE)) {
		buf = 0x800f | ((frame - 1) << 8);

		if (cpu_class_is_omap1()) {
			src_port = OMAP_DMA_PORT_TIPB;
			dst_port = OMAP_DMA_PORT_EMIFF;
		}
		if (cpu_is_omap24xx())
			sync_dev = OMAP24XX_DMA_MMC1_RX;

		omap_set_dma_src_params(dma_ch, src_port,
					OMAP_DMA_AMODE_CONSTANT,
					data_addr, 0, 0);
		omap_set_dma_dest_params(dma_ch, dst_port,
					 OMAP_DMA_AMODE_POST_INC,
					 sg_dma_address(sg), 0, 0);
		omap_set_dma_dest_data_pack(dma_ch, 1);
		omap_set_dma_dest_burst_mode(dma_ch, OMAP_DMA_DATA_BURST_4);
	} else {
		buf = 0x0f80 | ((frame - 1) << 0);

		if (cpu_class_is_omap1()) {
			src_port = OMAP_DMA_PORT_EMIFF;
			dst_port = OMAP_DMA_PORT_TIPB;
		}
		if (cpu_is_omap24xx())
			sync_dev = OMAP24XX_DMA_MMC1_TX;

		omap_set_dma_dest_params(dma_ch, dst_port,
					 OMAP_DMA_AMODE_CONSTANT,
					 data_addr, 0, 0);
		omap_set_dma_src_params(dma_ch, src_port,
					OMAP_DMA_AMODE_POST_INC,
					sg_dma_address(sg), 0, 0);
		omap_set_dma_src_data_pack(dma_ch, 1);
		omap_set_dma_src_burst_mode(dma_ch, OMAP_DMA_DATA_BURST_4);
	}

	/* Max limit for DMA frame count is 0xffff */
964
	BUG_ON(count > 0xffff);
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	OMAP_MMC_WRITE(host, BUF, buf);
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	omap_set_dma_transfer_params(dma_ch, OMAP_DMA_DATA_TYPE_S16,
				     frame, count, OMAP_DMA_SYNC_FRAME,
				     sync_dev, 0);
}

/* A scatterlist segment completed */
static void mmc_omap_dma_cb(int lch, u16 ch_status, void *data)
{
	struct mmc_omap_host *host = (struct mmc_omap_host *) data;
	struct mmc_data *mmcdat = host->data;

	if (unlikely(host->dma_ch < 0)) {
979 980
		dev_err(mmc_dev(host->mmc),
			"DMA callback while DMA not enabled\n");
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		return;
	}
	/* FIXME: We really should do something to _handle_ the errors */
984
	if (ch_status & OMAP1_DMA_TOUT_IRQ) {
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		dev_err(mmc_dev(host->mmc),"DMA timeout\n");
		return;
	}
	if (ch_status & OMAP_DMA_DROP_IRQ) {
		dev_err(mmc_dev(host->mmc), "DMA sync error\n");
		return;
	}
	if (!(ch_status & OMAP_DMA_BLOCK_IRQ)) {
		return;
	}
	mmcdat->bytes_xfered += host->dma_len;
	host->sg_idx++;
	if (host->sg_idx < host->sg_len) {
		mmc_omap_prepare_dma(host, host->data);
		omap_start_dma(host->dma_ch);
	} else
		mmc_omap_dma_done(host, host->data);
}

static int mmc_omap_get_dma_channel(struct mmc_omap_host *host, struct mmc_data *data)
{
	const char *dev_name;
	int sync_dev, dma_ch, is_read, r;

	is_read = !(data->flags & MMC_DATA_WRITE);
	del_timer_sync(&host->dma_timer);
	if (host->dma_ch >= 0) {
		if (is_read == host->dma_is_read)
			return 0;
		omap_free_dma(host->dma_ch);
		host->dma_ch = -1;
	}

	if (is_read) {
		if (host->id == 1) {
			sync_dev = OMAP_DMA_MMC_RX;
			dev_name = "MMC1 read";
		} else {
			sync_dev = OMAP_DMA_MMC2_RX;
			dev_name = "MMC2 read";
		}
	} else {
		if (host->id == 1) {
			sync_dev = OMAP_DMA_MMC_TX;
			dev_name = "MMC1 write";
		} else {
			sync_dev = OMAP_DMA_MMC2_TX;
			dev_name = "MMC2 write";
		}
	}
	r = omap_request_dma(sync_dev, dev_name, mmc_omap_dma_cb,
			     host, &dma_ch);
	if (r != 0) {
		dev_dbg(mmc_dev(host->mmc), "omap_request_dma() failed with %d\n", r);
		return r;
	}
	host->dma_ch = dma_ch;
	host->dma_is_read = is_read;

	return 0;
}

static inline void set_cmd_timeout(struct mmc_omap_host *host, struct mmc_request *req)
{
	u16 reg;

1051
	reg = OMAP_MMC_READ(host, SDIO);
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	reg &= ~(1 << 5);
1053
	OMAP_MMC_WRITE(host, SDIO, reg);
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	/* Set maximum timeout */
1055
	OMAP_MMC_WRITE(host, CTO, 0xff);
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}

static inline void set_data_timeout(struct mmc_omap_host *host, struct mmc_request *req)
{
1060
	unsigned int timeout, cycle_ns;
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	u16 reg;

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	cycle_ns = 1000000000 / host->current_slot->fclk_freq;
	timeout = req->data->timeout_ns / cycle_ns;
	timeout += req->data->timeout_clks;
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	/* Check if we need to use timeout multiplier register */
1068
	reg = OMAP_MMC_READ(host, SDIO);
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	if (timeout > 0xffff) {
		reg |= (1 << 5);
		timeout /= 1024;
	} else
		reg &= ~(1 << 5);
1074 1075
	OMAP_MMC_WRITE(host, SDIO, reg);
	OMAP_MMC_WRITE(host, DTO, timeout);
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}

static void
mmc_omap_prepare_data(struct mmc_omap_host *host, struct mmc_request *req)
{
	struct mmc_data *data = req->data;
	int i, use_dma, block_size;
	unsigned sg_len;

	host->data = data;
	if (data == NULL) {
1087 1088 1089
		OMAP_MMC_WRITE(host, BLEN, 0);
		OMAP_MMC_WRITE(host, NBLK, 0);
		OMAP_MMC_WRITE(host, BUF, 0);
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		host->dma_in_use = 0;
		set_cmd_timeout(host, req);
		return;
	}

1095
	block_size = data->blksz;
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	OMAP_MMC_WRITE(host, NBLK, data->blocks - 1);
	OMAP_MMC_WRITE(host, BLEN, block_size - 1);
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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 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139
	set_data_timeout(host, req);

	/* cope with calling layer confusion; it issues "single
	 * block" writes using multi-block scatterlists.
	 */
	sg_len = (data->blocks == 1) ? 1 : data->sg_len;

	/* Only do DMA for entire blocks */
	use_dma = host->use_dma;
	if (use_dma) {
		for (i = 0; i < sg_len; i++) {
			if ((data->sg[i].length % block_size) != 0) {
				use_dma = 0;
				break;
			}
		}
	}

	host->sg_idx = 0;
	if (use_dma) {
		if (mmc_omap_get_dma_channel(host, data) == 0) {
			enum dma_data_direction dma_data_dir;

			if (data->flags & MMC_DATA_WRITE)
				dma_data_dir = DMA_TO_DEVICE;
			else
				dma_data_dir = DMA_FROM_DEVICE;

			host->sg_len = dma_map_sg(mmc_dev(host->mmc), data->sg,
						sg_len, dma_data_dir);
			host->total_bytes_left = 0;
			mmc_omap_prepare_dma(host, req->data);
			host->brs_received = 0;
			host->dma_done = 0;
			host->dma_in_use = 1;
		} else
			use_dma = 0;
	}

	/* Revert to PIO? */
	if (!use_dma) {
1140
		OMAP_MMC_WRITE(host, BUF, 0x1f1f);
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		host->total_bytes_left = data->blocks * block_size;
		host->sg_len = sg_len;
		mmc_omap_sg_to_buf(host);
		host->dma_in_use = 0;
	}
}

1148 1149
static void mmc_omap_start_request(struct mmc_omap_host *host,
				   struct mmc_request *req)
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1150
{
1151
	BUG_ON(host->mrq != NULL);
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	host->mrq = req;

	/* only touch fifo AFTER the controller readies it */
	mmc_omap_prepare_data(host, req);
	mmc_omap_start_command(host, req->cmd);
	if (host->dma_in_use)
		omap_start_dma(host->dma_ch);
1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179
	BUG_ON(irqs_disabled());
}

static void mmc_omap_request(struct mmc_host *mmc, struct mmc_request *req)
{
	struct mmc_omap_slot *slot = mmc_priv(mmc);
	struct mmc_omap_host *host = slot->host;
	unsigned long flags;

	spin_lock_irqsave(&host->slot_lock, flags);
	if (host->mmc != NULL) {
		BUG_ON(slot->mrq != NULL);
		slot->mrq = req;
		spin_unlock_irqrestore(&host->slot_lock, flags);
		return;
	} else
		host->mmc = mmc;
	spin_unlock_irqrestore(&host->slot_lock, flags);
	mmc_omap_select_slot(slot, 1);
	mmc_omap_start_request(host, req);
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}

1182 1183
static void mmc_omap_set_power(struct mmc_omap_slot *slot, int power_on,
				int vdd)
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{
1185
	struct mmc_omap_host *host;
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1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202
	host = slot->host;

	if (slot->pdata->set_power != NULL)
		slot->pdata->set_power(mmc_dev(slot->mmc), slot->id, power_on,
					vdd);

	if (cpu_is_omap24xx()) {
		u16 w;

		if (power_on) {
			w = OMAP_MMC_READ(host, CON);
			OMAP_MMC_WRITE(host, CON, w | (1 << 11));
		} else {
			w = OMAP_MMC_READ(host, CON);
			OMAP_MMC_WRITE(host, CON, w & ~(1 << 11));
		}
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	}
}

1206
static int mmc_omap_calc_divisor(struct mmc_host *mmc, struct mmc_ios *ios)
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{
1208 1209
	struct mmc_omap_slot *slot = mmc_priv(mmc);
	struct mmc_omap_host *host = slot->host;
1210
	int func_clk_rate = clk_get_rate(host->fclk);
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	int dsor;

	if (ios->clock == 0)
1214
		return 0;
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1216 1217 1218
	dsor = func_clk_rate / ios->clock;
	if (dsor < 1)
		dsor = 1;
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1220
	if (func_clk_rate / dsor > ios->clock)
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		dsor++;

1223 1224 1225
	if (dsor > 250)
		dsor = 250;

1226 1227
	slot->fclk_freq = func_clk_rate / dsor;

1228 1229 1230 1231 1232 1233 1234 1235
	if (ios->bus_width == MMC_BUS_WIDTH_4)
		dsor |= 1 << 15;

	return dsor;
}

static void mmc_omap_set_ios(struct mmc_host *mmc, struct mmc_ios *ios)
{
1236 1237 1238
	struct mmc_omap_slot *slot = mmc_priv(mmc);
	struct mmc_omap_host *host = slot->host;
	int i, dsor;
J
Jarkko Lavinen 已提交
1239
	int clk_enabled;
1240 1241 1242

	mmc_omap_select_slot(slot, 0);

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	dsor = mmc_omap_calc_divisor(mmc, ios);

1245 1246
	if (ios->vdd != slot->vdd)
		slot->vdd = ios->vdd;
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1247

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	clk_enabled = 0;
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	switch (ios->power_mode) {
	case MMC_POWER_OFF:
1251
		mmc_omap_set_power(slot, 0, ios->vdd);
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		break;
	case MMC_POWER_UP:
1254
		/* Cannot touch dsor yet, just power up MMC */
1255 1256
		mmc_omap_set_power(slot, 1, ios->vdd);
		goto exit;
1257
	case MMC_POWER_ON:
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		mmc_omap_fclk_enable(host, 1);
		clk_enabled = 1;
1260
		dsor |= 1 << 11;
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		break;
	}

1264 1265 1266 1267 1268 1269
	if (slot->bus_mode != ios->bus_mode) {
		if (slot->pdata->set_bus_mode != NULL)
			slot->pdata->set_bus_mode(mmc_dev(mmc), slot->id,
						  ios->bus_mode);
		slot->bus_mode = ios->bus_mode;
	}
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1270 1271 1272 1273 1274 1275

	/* On insanely high arm_per frequencies something sometimes
	 * goes somehow out of sync, and the POW bit is not being set,
	 * which results in the while loop below getting stuck.
	 * Writing to the CON register twice seems to do the trick. */
	for (i = 0; i < 2; i++)
1276
		OMAP_MMC_WRITE(host, CON, dsor);
1277
	slot->saved_con = dsor;
1278
	if (ios->power_mode == MMC_POWER_ON) {
1279 1280 1281
		/* worst case at 400kHz, 80 cycles makes 200 microsecs */
		int usecs = 250;

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		/* Send clock cycles, poll completion */
1283 1284
		OMAP_MMC_WRITE(host, IE, 0);
		OMAP_MMC_WRITE(host, STAT, 0xffff);
1285
		OMAP_MMC_WRITE(host, CMD, 1 << 7);
1286 1287 1288 1289
		while (usecs > 0 && (OMAP_MMC_READ(host, STAT) & 1) == 0) {
			udelay(1);
			usecs--;
		}
1290
		OMAP_MMC_WRITE(host, STAT, 1);
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	}
1292 1293

exit:
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	mmc_omap_release_slot(slot, clk_enabled);
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}

1297
static const struct mmc_host_ops mmc_omap_ops = {
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	.request	= mmc_omap_request,
	.set_ios	= mmc_omap_set_ios,
};

1302
static int __init mmc_omap_new_slot(struct mmc_omap_host *host, int id)
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{
1304
	struct mmc_omap_slot *slot = NULL;
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	struct mmc_host *mmc;
1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 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 1350 1351 1352 1353 1354 1355 1356
	int r;

	mmc = mmc_alloc_host(sizeof(struct mmc_omap_slot), host->dev);
	if (mmc == NULL)
		return -ENOMEM;

	slot = mmc_priv(mmc);
	slot->host = host;
	slot->mmc = mmc;
	slot->id = id;
	slot->pdata = &host->pdata->slots[id];

	host->slots[id] = slot;

	mmc->caps = MMC_CAP_MULTIWRITE;
	if (host->pdata->conf.wire4)
		mmc->caps |= MMC_CAP_4_BIT_DATA;

	mmc->ops = &mmc_omap_ops;
	mmc->f_min = 400000;

	if (cpu_class_is_omap2())
		mmc->f_max = 48000000;
	else
		mmc->f_max = 24000000;
	if (host->pdata->max_freq)
		mmc->f_max = min(host->pdata->max_freq, mmc->f_max);
	mmc->ocr_avail = slot->pdata->ocr_mask;

	/* Use scatterlist DMA to reduce per-transfer costs.
	 * NOTE max_seg_size assumption that small blocks aren't
	 * normally used (except e.g. for reading SD registers).
	 */
	mmc->max_phys_segs = 32;
	mmc->max_hw_segs = 32;
	mmc->max_blk_size = 2048;	/* BLEN is 11 bits (+1) */
	mmc->max_blk_count = 2048;	/* NBLK is 11 bits (+1) */
	mmc->max_req_size = mmc->max_blk_size * mmc->max_blk_count;
	mmc->max_seg_size = mmc->max_req_size;

	r = mmc_add_host(mmc);
	if (r < 0)
		goto err_remove_host;

	if (slot->pdata->name != NULL) {
		r = device_create_file(&mmc->class_dev,
					&dev_attr_slot_name);
		if (r < 0)
			goto err_remove_host;
	}

1357 1358 1359 1360 1361 1362
	if (slot->pdata->get_cover_state != NULL) {
		r = device_create_file(&mmc->class_dev,
					&dev_attr_cover_switch);
		if (r < 0)
			goto err_remove_slot_name;

1363 1364 1365 1366 1367
		setup_timer(&slot->cover_timer, mmc_omap_cover_timer,
			    (unsigned long)slot);
		tasklet_init(&slot->cover_tasklet, mmc_omap_cover_handler,
			     (unsigned long)slot);
		tasklet_schedule(&slot->cover_tasklet);
1368 1369
	}

1370 1371
	return 0;

1372 1373 1374
err_remove_slot_name:
	if (slot->pdata->name != NULL)
		device_remove_file(&mmc->class_dev, &dev_attr_slot_name);
1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386
err_remove_host:
	mmc_remove_host(mmc);
	mmc_free_host(mmc);
	return r;
}

static void mmc_omap_remove_slot(struct mmc_omap_slot *slot)
{
	struct mmc_host *mmc = slot->mmc;

	if (slot->pdata->name != NULL)
		device_remove_file(&mmc->class_dev, &dev_attr_slot_name);
1387 1388 1389
	if (slot->pdata->get_cover_state != NULL)
		device_remove_file(&mmc->class_dev, &dev_attr_cover_switch);

1390 1391
	tasklet_kill(&slot->cover_tasklet);
	del_timer_sync(&slot->cover_timer);
1392
	flush_scheduled_work();
1393 1394 1395 1396 1397 1398 1399 1400

	mmc_remove_host(mmc);
	mmc_free_host(mmc);
}

static int __init mmc_omap_probe(struct platform_device *pdev)
{
	struct omap_mmc_platform_data *pdata = pdev->dev.platform_data;
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	struct mmc_omap_host *host = NULL;
1402
	struct resource *res;
1403
	int i, ret = 0;
1404
	int irq;
1405

1406
	if (pdata == NULL) {
1407 1408 1409
		dev_err(&pdev->dev, "platform data missing\n");
		return -ENXIO;
	}
1410 1411 1412 1413
	if (pdata->nr_slots == 0) {
		dev_err(&pdev->dev, "no slots\n");
		return -ENXIO;
	}
1414 1415

	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
1416
	irq = platform_get_irq(pdev, 0);
1417
	if (res == NULL || irq < 0)
1418
		return -ENXIO;
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1420
	res = request_mem_region(res->start, res->end - res->start + 1,
1421
				 pdev->name);
1422
	if (res == NULL)
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		return -EBUSY;

1425 1426
	host = kzalloc(sizeof(struct mmc_omap_host), GFP_KERNEL);
	if (host == NULL) {
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		ret = -ENOMEM;
1428
		goto err_free_mem_region;
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	}

1431 1432 1433
	INIT_WORK(&host->slot_release_work, mmc_omap_slot_release_work);
	INIT_WORK(&host->send_stop_work, mmc_omap_send_stop_work);

1434 1435 1436
	INIT_WORK(&host->cmd_abort_work, mmc_omap_abort_command);
	setup_timer(&host->cmd_abort_timer, mmc_omap_cmd_timer,
		    (unsigned long) host);
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	spin_lock_init(&host->clk_lock);
	setup_timer(&host->clk_timer, mmc_omap_clk_timer, (unsigned long) host);

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	spin_lock_init(&host->dma_lock);
1442
	setup_timer(&host->dma_timer, mmc_omap_dma_timer, (unsigned long) host);
1443 1444 1445 1446 1447 1448 1449
	spin_lock_init(&host->slot_lock);
	init_waitqueue_head(&host->slot_wq);

	host->pdata = pdata;
	host->dev = &pdev->dev;
	platform_set_drvdata(pdev, host);

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	host->id = pdev->id;
1451
	host->mem_res = res;
1452
	host->irq = irq;
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1454 1455 1456 1457 1458 1459 1460
	host->use_dma = 1;
	host->dma_ch = -1;

	host->irq = irq;
	host->phys_base = host->mem_res->start;
	host->virt_base = (void __iomem *) IO_ADDRESS(host->phys_base);

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	if (cpu_is_omap24xx()) {
		host->iclk = clk_get(&pdev->dev, "mmc_ick");
		if (IS_ERR(host->iclk))
1464
			goto err_free_mmc_host;
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		clk_enable(host->iclk);
	}

	if (!cpu_is_omap24xx())
		host->fclk = clk_get(&pdev->dev, "mmc_ck");
	else
		host->fclk = clk_get(&pdev->dev, "mmc_fck");

	if (IS_ERR(host->fclk)) {
		ret = PTR_ERR(host->fclk);
1475
		goto err_free_iclk;
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	}

1478 1479 1480
	ret = request_irq(host->irq, mmc_omap_irq, 0, DRIVER_NAME, host);
	if (ret)
		goto err_free_fclk;
1481

1482 1483 1484 1485 1486
	if (pdata->init != NULL) {
		ret = pdata->init(&pdev->dev);
		if (ret < 0)
			goto err_free_irq;
	}
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1488 1489 1490 1491 1492 1493
	host->nr_slots = pdata->nr_slots;
	for (i = 0; i < pdata->nr_slots; i++) {
		ret = mmc_omap_new_slot(host, i);
		if (ret < 0) {
			while (--i >= 0)
				mmc_omap_remove_slot(host->slots[i]);
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1495
			goto err_plat_cleanup;
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		}
	}

	return 0;

1501 1502 1503 1504 1505
err_plat_cleanup:
	if (pdata->cleanup)
		pdata->cleanup(&pdev->dev);
err_free_irq:
	free_irq(host->irq, host);
1506 1507 1508 1509 1510 1511 1512 1513
err_free_fclk:
	clk_put(host->fclk);
err_free_iclk:
	if (host->iclk != NULL) {
		clk_disable(host->iclk);
		clk_put(host->iclk);
	}
err_free_mmc_host:
1514
	kfree(host);
1515 1516
err_free_mem_region:
	release_mem_region(res->start, res->end - res->start + 1);
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	return ret;
}

static int mmc_omap_remove(struct platform_device *pdev)
{
	struct mmc_omap_host *host = platform_get_drvdata(pdev);
1523
	int i;
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	platform_set_drvdata(pdev, NULL);

1527 1528
	BUG_ON(host == NULL);

1529 1530 1531 1532 1533
	for (i = 0; i < host->nr_slots; i++)
		mmc_omap_remove_slot(host->slots[i]);

	if (host->pdata->cleanup)
		host->pdata->cleanup(&pdev->dev);
1534 1535 1536 1537 1538

	if (host->iclk && !IS_ERR(host->iclk))
		clk_put(host->iclk);
	if (host->fclk && !IS_ERR(host->fclk))
		clk_put(host->fclk);
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1539 1540

	release_mem_region(pdev->resource[0].start,
1541 1542
			   pdev->resource[0].end - pdev->resource[0].start + 1);

1543
	kfree(host);
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1544 1545 1546 1547 1548 1549 1550

	return 0;
}

#ifdef CONFIG_PM
static int mmc_omap_suspend(struct platform_device *pdev, pm_message_t mesg)
{
1551
	int i, ret = 0;
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	struct mmc_omap_host *host = platform_get_drvdata(pdev);

1554
	if (host == NULL || host->suspended)
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1555 1556
		return 0;

1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568
	for (i = 0; i < host->nr_slots; i++) {
		struct mmc_omap_slot *slot;

		slot = host->slots[i];
		ret = mmc_suspend_host(slot->mmc, mesg);
		if (ret < 0) {
			while (--i >= 0) {
				slot = host->slots[i];
				mmc_resume_host(slot->mmc);
			}
			return ret;
		}
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1569
	}
1570 1571
	host->suspended = 1;
	return 0;
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1572 1573 1574 1575
}

static int mmc_omap_resume(struct platform_device *pdev)
{
1576
	int i, ret = 0;
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1577 1578
	struct mmc_omap_host *host = platform_get_drvdata(pdev);

1579
	if (host == NULL || !host->suspended)
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1580 1581
		return 0;

1582 1583 1584 1585 1586 1587
	for (i = 0; i < host->nr_slots; i++) {
		struct mmc_omap_slot *slot;
		slot = host->slots[i];
		ret = mmc_resume_host(slot->mmc);
		if (ret < 0)
			return ret;
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1589 1590 1591
		host->suspended = 0;
	}
	return 0;
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1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604
}
#else
#define mmc_omap_suspend	NULL
#define mmc_omap_resume		NULL
#endif

static struct platform_driver mmc_omap_driver = {
	.probe		= mmc_omap_probe,
	.remove		= mmc_omap_remove,
	.suspend	= mmc_omap_suspend,
	.resume		= mmc_omap_resume,
	.driver		= {
		.name	= DRIVER_NAME,
1605
		.owner	= THIS_MODULE,
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	},
};

static int __init mmc_omap_init(void)
{
	return platform_driver_register(&mmc_omap_driver);
}

static void __exit mmc_omap_exit(void)
{
	platform_driver_unregister(&mmc_omap_driver);
}

module_init(mmc_omap_init);
module_exit(mmc_omap_exit);

MODULE_DESCRIPTION("OMAP Multimedia Card driver");
MODULE_LICENSE("GPL");
1624
MODULE_ALIAS("platform:" DRIVER_NAME);
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1625
MODULE_AUTHOR("Juha Yrjl");