tmio_mmc.c 34.2 KB
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/*
 *  linux/drivers/mmc/tmio_mmc.c
 *
 *  Copyright (C) 2004 Ian Molton
 *  Copyright (C) 2007 Ian Molton
 *
 * 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.
 *
 * Driver for the MMC / SD / SDIO cell found in:
 *
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 * TC6393XB TC6391XB TC6387XB T7L66XB ASIC3
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 *
 * This driver draws mainly on scattered spec sheets, Reverse engineering
 * of the toshiba e800  SD driver and some parts of the 2.4 ASIC3 driver (4 bit
 * support). (Further 4 bit support from a later datasheet).
 *
 * TODO:
 *   Investigate using a workqueue for PIO transfers
 *   Eliminate FIXMEs
 *   SDIO support
 *   Better Power management
 *   Handle MMC errors better
 *   double buffer support
 *
 */
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#include <linux/delay.h>
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#include <linux/device.h>
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#include <linux/dmaengine.h>
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#include <linux/highmem.h>
#include <linux/interrupt.h>
#include <linux/io.h>
#include <linux/irq.h>
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#include <linux/mfd/core.h>
#include <linux/mfd/tmio.h>
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#include <linux/mmc/host.h>
#include <linux/module.h>
#include <linux/pagemap.h>
#include <linux/scatterlist.h>

#define CTL_SD_CMD 0x00
#define CTL_ARG_REG 0x04
#define CTL_STOP_INTERNAL_ACTION 0x08
#define CTL_XFER_BLK_COUNT 0xa
#define CTL_RESPONSE 0x0c
#define CTL_STATUS 0x1c
#define CTL_IRQ_MASK 0x20
#define CTL_SD_CARD_CLK_CTL 0x24
#define CTL_SD_XFER_LEN 0x26
#define CTL_SD_MEM_CARD_OPT 0x28
#define CTL_SD_ERROR_DETAIL_STATUS 0x2c
#define CTL_SD_DATA_PORT 0x30
#define CTL_TRANSACTION_CTL 0x34
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#define CTL_SDIO_STATUS 0x36
#define CTL_SDIO_IRQ_MASK 0x38
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#define CTL_RESET_SD 0xe0
#define CTL_SDIO_REGS 0x100
#define CTL_CLK_AND_WAIT_CTL 0x138
#define CTL_RESET_SDIO 0x1e0

/* Definitions for values the CTRL_STATUS register can take. */
#define TMIO_STAT_CMDRESPEND    0x00000001
#define TMIO_STAT_DATAEND       0x00000004
#define TMIO_STAT_CARD_REMOVE   0x00000008
#define TMIO_STAT_CARD_INSERT   0x00000010
#define TMIO_STAT_SIGSTATE      0x00000020
#define TMIO_STAT_WRPROTECT     0x00000080
#define TMIO_STAT_CARD_REMOVE_A 0x00000100
#define TMIO_STAT_CARD_INSERT_A 0x00000200
#define TMIO_STAT_SIGSTATE_A    0x00000400
#define TMIO_STAT_CMD_IDX_ERR   0x00010000
#define TMIO_STAT_CRCFAIL       0x00020000
#define TMIO_STAT_STOPBIT_ERR   0x00040000
#define TMIO_STAT_DATATIMEOUT   0x00080000
#define TMIO_STAT_RXOVERFLOW    0x00100000
#define TMIO_STAT_TXUNDERRUN    0x00200000
#define TMIO_STAT_CMDTIMEOUT    0x00400000
#define TMIO_STAT_RXRDY         0x01000000
#define TMIO_STAT_TXRQ          0x02000000
#define TMIO_STAT_ILL_FUNC      0x20000000
#define TMIO_STAT_CMD_BUSY      0x40000000
#define TMIO_STAT_ILL_ACCESS    0x80000000

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/* Definitions for values the CTRL_SDIO_STATUS register can take. */
#define TMIO_SDIO_STAT_IOIRQ	0x0001
#define TMIO_SDIO_STAT_EXPUB52	0x4000
#define TMIO_SDIO_STAT_EXWT	0x8000
#define TMIO_SDIO_MASK_ALL	0xc007

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/* Define some IRQ masks */
/* This is the mask used at reset by the chip */
#define TMIO_MASK_ALL           0x837f031d
#define TMIO_MASK_READOP  (TMIO_STAT_RXRDY | TMIO_STAT_DATAEND)
#define TMIO_MASK_WRITEOP (TMIO_STAT_TXRQ | TMIO_STAT_DATAEND)
#define TMIO_MASK_CMD     (TMIO_STAT_CMDRESPEND | TMIO_STAT_CMDTIMEOUT | \
		TMIO_STAT_CARD_REMOVE | TMIO_STAT_CARD_INSERT)
#define TMIO_MASK_IRQ     (TMIO_MASK_READOP | TMIO_MASK_WRITEOP | TMIO_MASK_CMD)

#define enable_mmc_irqs(host, i) \
	do { \
		u32 mask;\
		mask  = sd_ctrl_read32((host), CTL_IRQ_MASK); \
		mask &= ~((i) & TMIO_MASK_IRQ); \
		sd_ctrl_write32((host), CTL_IRQ_MASK, mask); \
	} while (0)

#define disable_mmc_irqs(host, i) \
	do { \
		u32 mask;\
		mask  = sd_ctrl_read32((host), CTL_IRQ_MASK); \
		mask |= ((i) & TMIO_MASK_IRQ); \
		sd_ctrl_write32((host), CTL_IRQ_MASK, mask); \
	} while (0)

#define ack_mmc_irqs(host, i) \
	do { \
		sd_ctrl_write32((host), CTL_STATUS, ~(i)); \
	} while (0)

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/* This is arbitrary, just noone needed any higher alignment yet */
#define MAX_ALIGN 4
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struct tmio_mmc_host {
	void __iomem *ctl;
	unsigned long bus_shift;
	struct mmc_command      *cmd;
	struct mmc_request      *mrq;
	struct mmc_data         *data;
	struct mmc_host         *mmc;
	int                     irq;
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	unsigned int		sdio_irq_enabled;
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	/* Callbacks for clock / power control */
	void (*set_pwr)(struct platform_device *host, int state);
	void (*set_clk_div)(struct platform_device *host, int state);

	/* pio related stuff */
	struct scatterlist      *sg_ptr;
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	struct scatterlist      *sg_orig;
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	unsigned int            sg_len;
	unsigned int            sg_off;

	struct platform_device *pdev;

	/* DMA support */
	struct dma_chan		*chan_rx;
	struct dma_chan		*chan_tx;
	struct tasklet_struct	dma_complete;
	struct tasklet_struct	dma_issue;
#ifdef CONFIG_TMIO_MMC_DMA
	unsigned int            dma_sglen;
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	u8			bounce_buf[PAGE_CACHE_SIZE] __attribute__((aligned(MAX_ALIGN)));
	struct scatterlist	bounce_sg;
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#endif
};

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static void tmio_check_bounce_buffer(struct tmio_mmc_host *host);

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static u16 sd_ctrl_read16(struct tmio_mmc_host *host, int addr)
{
	return readw(host->ctl + (addr << host->bus_shift));
}

static void sd_ctrl_read16_rep(struct tmio_mmc_host *host, int addr,
		u16 *buf, int count)
{
	readsw(host->ctl + (addr << host->bus_shift), buf, count);
}

static u32 sd_ctrl_read32(struct tmio_mmc_host *host, int addr)
{
	return readw(host->ctl + (addr << host->bus_shift)) |
	       readw(host->ctl + ((addr + 2) << host->bus_shift)) << 16;
}

static void sd_ctrl_write16(struct tmio_mmc_host *host, int addr, u16 val)
{
	writew(val, host->ctl + (addr << host->bus_shift));
}

static void sd_ctrl_write16_rep(struct tmio_mmc_host *host, int addr,
		u16 *buf, int count)
{
	writesw(host->ctl + (addr << host->bus_shift), buf, count);
}

static void sd_ctrl_write32(struct tmio_mmc_host *host, int addr, u32 val)
{
	writew(val, host->ctl + (addr << host->bus_shift));
	writew(val >> 16, host->ctl + ((addr + 2) << host->bus_shift));
}

static void tmio_mmc_init_sg(struct tmio_mmc_host *host, struct mmc_data *data)
{
	host->sg_len = data->sg_len;
	host->sg_ptr = data->sg;
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	host->sg_orig = data->sg;
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	host->sg_off = 0;
}

static int tmio_mmc_next_sg(struct tmio_mmc_host *host)
{
	host->sg_ptr = sg_next(host->sg_ptr);
	host->sg_off = 0;
	return --host->sg_len;
}

static char *tmio_mmc_kmap_atomic(struct scatterlist *sg, unsigned long *flags)
{
	local_irq_save(*flags);
	return kmap_atomic(sg_page(sg), KM_BIO_SRC_IRQ) + sg->offset;
}

static void tmio_mmc_kunmap_atomic(void *virt, unsigned long *flags)
{
	kunmap_atomic(virt, KM_BIO_SRC_IRQ);
	local_irq_restore(*flags);
}

#ifdef CONFIG_MMC_DEBUG

#define STATUS_TO_TEXT(a) \
	do { \
		if (status & TMIO_STAT_##a) \
			printk(#a); \
	} while (0)

void pr_debug_status(u32 status)
{
	printk(KERN_DEBUG "status: %08x = ", status);
	STATUS_TO_TEXT(CARD_REMOVE);
	STATUS_TO_TEXT(CARD_INSERT);
	STATUS_TO_TEXT(SIGSTATE);
	STATUS_TO_TEXT(WRPROTECT);
	STATUS_TO_TEXT(CARD_REMOVE_A);
	STATUS_TO_TEXT(CARD_INSERT_A);
	STATUS_TO_TEXT(SIGSTATE_A);
	STATUS_TO_TEXT(CMD_IDX_ERR);
	STATUS_TO_TEXT(STOPBIT_ERR);
	STATUS_TO_TEXT(ILL_FUNC);
	STATUS_TO_TEXT(CMD_BUSY);
	STATUS_TO_TEXT(CMDRESPEND);
	STATUS_TO_TEXT(DATAEND);
	STATUS_TO_TEXT(CRCFAIL);
	STATUS_TO_TEXT(DATATIMEOUT);
	STATUS_TO_TEXT(CMDTIMEOUT);
	STATUS_TO_TEXT(RXOVERFLOW);
	STATUS_TO_TEXT(TXUNDERRUN);
	STATUS_TO_TEXT(RXRDY);
	STATUS_TO_TEXT(TXRQ);
	STATUS_TO_TEXT(ILL_ACCESS);
	printk("\n");
}
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#else
#define pr_debug_status(s)  do { } while (0)
#endif
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static void tmio_mmc_enable_sdio_irq(struct mmc_host *mmc, int enable)
{
	struct tmio_mmc_host *host = mmc_priv(mmc);

	if (enable) {
		host->sdio_irq_enabled = 1;
		sd_ctrl_write16(host, CTL_TRANSACTION_CTL, 0x0001);
		sd_ctrl_write16(host, CTL_SDIO_IRQ_MASK,
			(TMIO_SDIO_MASK_ALL & ~TMIO_SDIO_STAT_IOIRQ));
	} else {
		sd_ctrl_write16(host, CTL_SDIO_IRQ_MASK, TMIO_SDIO_MASK_ALL);
		sd_ctrl_write16(host, CTL_TRANSACTION_CTL, 0x0000);
		host->sdio_irq_enabled = 0;
	}
}

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static void tmio_mmc_set_clock(struct tmio_mmc_host *host, int new_clock)
{
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	u32 clk = 0, clock;
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	if (new_clock) {
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		for (clock = host->mmc->f_min, clk = 0x80000080;
			new_clock >= (clock<<1); clk >>= 1)
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			clock <<= 1;
		clk |= 0x100;
	}

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	if (host->set_clk_div)
		host->set_clk_div(host->pdev, (clk>>22) & 1);

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	sd_ctrl_write16(host, CTL_SD_CARD_CLK_CTL, clk & 0x1ff);
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}

static void tmio_mmc_clk_stop(struct tmio_mmc_host *host)
{
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	struct mfd_cell *cell = host->pdev->dev.platform_data;
	struct tmio_mmc_data *pdata = cell->driver_data;

	/*
	 * Testing on sh-mobile showed that SDIO IRQs are unmasked when
	 * CTL_CLK_AND_WAIT_CTL gets written, so we have to disable the
	 * device IRQ here and restore the SDIO IRQ mask before
	 * re-enabling the device IRQ.
	 */
	if (pdata->flags & TMIO_MMC_SDIO_IRQ)
		disable_irq(host->irq);
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	sd_ctrl_write16(host, CTL_CLK_AND_WAIT_CTL, 0x0000);
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	msleep(10);
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	if (pdata->flags & TMIO_MMC_SDIO_IRQ) {
		tmio_mmc_enable_sdio_irq(host->mmc, host->sdio_irq_enabled);
		enable_irq(host->irq);
	}
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	sd_ctrl_write16(host, CTL_SD_CARD_CLK_CTL, ~0x0100 &
		sd_ctrl_read16(host, CTL_SD_CARD_CLK_CTL));
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	msleep(10);
}

static void tmio_mmc_clk_start(struct tmio_mmc_host *host)
{
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	struct mfd_cell *cell = host->pdev->dev.platform_data;
	struct tmio_mmc_data *pdata = cell->driver_data;

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	sd_ctrl_write16(host, CTL_SD_CARD_CLK_CTL, 0x0100 |
		sd_ctrl_read16(host, CTL_SD_CARD_CLK_CTL));
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	msleep(10);
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	/* see comment in tmio_mmc_clk_stop above */
	if (pdata->flags & TMIO_MMC_SDIO_IRQ)
		disable_irq(host->irq);
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	sd_ctrl_write16(host, CTL_CLK_AND_WAIT_CTL, 0x0100);
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	msleep(10);
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	if (pdata->flags & TMIO_MMC_SDIO_IRQ) {
		tmio_mmc_enable_sdio_irq(host->mmc, host->sdio_irq_enabled);
		enable_irq(host->irq);
	}
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}

static void reset(struct tmio_mmc_host *host)
{
	/* FIXME - should we set stop clock reg here */
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	sd_ctrl_write16(host, CTL_RESET_SD, 0x0000);
	sd_ctrl_write16(host, CTL_RESET_SDIO, 0x0000);
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	msleep(10);
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	sd_ctrl_write16(host, CTL_RESET_SD, 0x0001);
	sd_ctrl_write16(host, CTL_RESET_SDIO, 0x0001);
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	msleep(10);
}

static void
tmio_mmc_finish_request(struct tmio_mmc_host *host)
{
	struct mmc_request *mrq = host->mrq;

	host->mrq = NULL;
	host->cmd = NULL;
	host->data = NULL;

	mmc_request_done(host->mmc, mrq);
}

/* These are the bitmasks the tmio chip requires to implement the MMC response
 * types. Note that R1 and R6 are the same in this scheme. */
#define APP_CMD        0x0040
#define RESP_NONE      0x0300
#define RESP_R1        0x0400
#define RESP_R1B       0x0500
#define RESP_R2        0x0600
#define RESP_R3        0x0700
#define DATA_PRESENT   0x0800
#define TRANSFER_READ  0x1000
#define TRANSFER_MULTI 0x2000
#define SECURITY_CMD   0x4000

static int
tmio_mmc_start_command(struct tmio_mmc_host *host, struct mmc_command *cmd)
{
	struct mmc_data *data = host->data;
	int c = cmd->opcode;

	/* Command 12 is handled by hardware */
	if (cmd->opcode == 12 && !cmd->arg) {
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		sd_ctrl_write16(host, CTL_STOP_INTERNAL_ACTION, 0x001);
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		return 0;
	}

	switch (mmc_resp_type(cmd)) {
	case MMC_RSP_NONE: c |= RESP_NONE; break;
	case MMC_RSP_R1:   c |= RESP_R1;   break;
	case MMC_RSP_R1B:  c |= RESP_R1B;  break;
	case MMC_RSP_R2:   c |= RESP_R2;   break;
	case MMC_RSP_R3:   c |= RESP_R3;   break;
	default:
		pr_debug("Unknown response type %d\n", mmc_resp_type(cmd));
		return -EINVAL;
	}

	host->cmd = cmd;

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/* FIXME - this seems to be ok commented out but the spec suggest this bit
 *         should be set when issuing app commands.
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 *	if(cmd->flags & MMC_FLAG_ACMD)
 *		c |= APP_CMD;
 */
	if (data) {
		c |= DATA_PRESENT;
		if (data->blocks > 1) {
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			sd_ctrl_write16(host, CTL_STOP_INTERNAL_ACTION, 0x100);
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			c |= TRANSFER_MULTI;
		}
		if (data->flags & MMC_DATA_READ)
			c |= TRANSFER_READ;
	}

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	enable_mmc_irqs(host, TMIO_MASK_CMD);
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	/* Fire off the command */
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	sd_ctrl_write32(host, CTL_ARG_REG, cmd->arg);
	sd_ctrl_write16(host, CTL_SD_CMD, c);
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	return 0;
}

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/*
 * This chip always returns (at least?) as much data as you ask for.
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 * I'm unsure what happens if you ask for less than a block. This should be
 * looked into to ensure that a funny length read doesnt hose the controller.
 */
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static void tmio_mmc_pio_irq(struct tmio_mmc_host *host)
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{
	struct mmc_data *data = host->data;
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	void *sg_virt;
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	unsigned short *buf;
	unsigned int count;
	unsigned long flags;

	if (!data) {
		pr_debug("Spurious PIO IRQ\n");
		return;
	}

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	sg_virt = tmio_mmc_kmap_atomic(host->sg_ptr, &flags);
	buf = (unsigned short *)(sg_virt + host->sg_off);
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	count = host->sg_ptr->length - host->sg_off;
	if (count > data->blksz)
		count = data->blksz;

	pr_debug("count: %08x offset: %08x flags %08x\n",
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		 count, host->sg_off, data->flags);
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	/* Transfer the data */
	if (data->flags & MMC_DATA_READ)
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		sd_ctrl_read16_rep(host, CTL_SD_DATA_PORT, buf, count >> 1);
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	else
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		sd_ctrl_write16_rep(host, CTL_SD_DATA_PORT, buf, count >> 1);
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	host->sg_off += count;

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	tmio_mmc_kunmap_atomic(sg_virt, &flags);
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	if (host->sg_off == host->sg_ptr->length)
		tmio_mmc_next_sg(host);

	return;
}

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static void tmio_mmc_do_data_irq(struct tmio_mmc_host *host)
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{
	struct mmc_data *data = host->data;
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	struct mmc_command *stop;
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	host->data = NULL;

	if (!data) {
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		dev_warn(&host->pdev->dev, "Spurious data end IRQ\n");
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		return;
	}
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	stop = data->stop;
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	/* FIXME - return correct transfer count on errors */
	if (!data->error)
		data->bytes_xfered = data->blocks * data->blksz;
	else
		data->bytes_xfered = 0;

	pr_debug("Completed data request\n");

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	/*
	 * FIXME: other drivers allow an optional stop command of any given type
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	 *        which we dont do, as the chip can auto generate them.
	 *        Perhaps we can be smarter about when to use auto CMD12 and
	 *        only issue the auto request when we know this is the desired
	 *        stop command, allowing fallback to the stop command the
	 *        upper layers expect. For now, we do what works.
	 */

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	if (data->flags & MMC_DATA_READ) {
		if (!host->chan_rx)
			disable_mmc_irqs(host, TMIO_MASK_READOP);
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		else
			tmio_check_bounce_buffer(host);
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		dev_dbg(&host->pdev->dev, "Complete Rx request %p\n",
			host->mrq);
	} else {
		if (!host->chan_tx)
			disable_mmc_irqs(host, TMIO_MASK_WRITEOP);
		dev_dbg(&host->pdev->dev, "Complete Tx request %p\n",
			host->mrq);
	}
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	if (stop) {
		if (stop->opcode == 12 && !stop->arg)
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			sd_ctrl_write16(host, CTL_STOP_INTERNAL_ACTION, 0x000);
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		else
			BUG();
	}

	tmio_mmc_finish_request(host);
}

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static void tmio_mmc_data_irq(struct tmio_mmc_host *host)
{
	struct mmc_data *data = host->data;

	if (!data)
		return;

	if (host->chan_tx && (data->flags & MMC_DATA_WRITE)) {
		/*
		 * Has all data been written out yet? Testing on SuperH showed,
		 * that in most cases the first interrupt comes already with the
		 * BUSY status bit clear, but on some operations, like mount or
		 * in the beginning of a write / sync / umount, there is one
		 * DATAEND interrupt with the BUSY bit set, in this cases
		 * waiting for one more interrupt fixes the problem.
		 */
		if (!(sd_ctrl_read32(host, CTL_STATUS) & TMIO_STAT_CMD_BUSY)) {
			disable_mmc_irqs(host, TMIO_STAT_DATAEND);
			tasklet_schedule(&host->dma_complete);
		}
	} else if (host->chan_rx && (data->flags & MMC_DATA_READ)) {
		disable_mmc_irqs(host, TMIO_STAT_DATAEND);
		tasklet_schedule(&host->dma_complete);
	} else {
		tmio_mmc_do_data_irq(host);
	}
}

static void tmio_mmc_cmd_irq(struct tmio_mmc_host *host,
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	unsigned int stat)
{
	struct mmc_command *cmd = host->cmd;
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	int i, addr;
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	if (!host->cmd) {
		pr_debug("Spurious CMD irq\n");
		return;
	}

	host->cmd = NULL;

	/* This controller is sicker than the PXA one. Not only do we need to
	 * drop the top 8 bits of the first response word, we also need to
	 * modify the order of the response for short response command types.
	 */

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	for (i = 3, addr = CTL_RESPONSE ; i >= 0 ; i--, addr += 4)
		cmd->resp[i] = sd_ctrl_read32(host, addr);
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	if (cmd->flags &  MMC_RSP_136) {
		cmd->resp[0] = (cmd->resp[0] << 8) | (cmd->resp[1] >> 24);
		cmd->resp[1] = (cmd->resp[1] << 8) | (cmd->resp[2] >> 24);
		cmd->resp[2] = (cmd->resp[2] << 8) | (cmd->resp[3] >> 24);
		cmd->resp[3] <<= 8;
	} else if (cmd->flags & MMC_RSP_R3) {
		cmd->resp[0] = cmd->resp[3];
	}

	if (stat & TMIO_STAT_CMDTIMEOUT)
		cmd->error = -ETIMEDOUT;
	else if (stat & TMIO_STAT_CRCFAIL && cmd->flags & MMC_RSP_CRC)
		cmd->error = -EILSEQ;

	/* If there is data to handle we enable data IRQs here, and
	 * we will ultimatley finish the request in the data_end handler.
	 * If theres no data or we encountered an error, finish now.
	 */
	if (host->data && !cmd->error) {
588 589 590 591
		if (host->data->flags & MMC_DATA_READ) {
			if (!host->chan_rx)
				enable_mmc_irqs(host, TMIO_MASK_READOP);
		} else {
592
			if (!host->chan_tx)
593 594 595 596
				enable_mmc_irqs(host, TMIO_MASK_WRITEOP);
			else
				tasklet_schedule(&host->dma_issue);
		}
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	} else {
		tmio_mmc_finish_request(host);
	}

	return;
}

static irqreturn_t tmio_mmc_irq(int irq, void *devid)
{
	struct tmio_mmc_host *host = devid;
607 608
	struct mfd_cell	*cell = host->pdev->dev.platform_data;
	struct tmio_mmc_data *pdata = cell->driver_data;
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	unsigned int ireg, irq_mask, status;
610
	unsigned int sdio_ireg, sdio_irq_mask, sdio_status;
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	pr_debug("MMC IRQ begin\n");

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	status = sd_ctrl_read32(host, CTL_STATUS);
	irq_mask = sd_ctrl_read32(host, CTL_IRQ_MASK);
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	ireg = status & TMIO_MASK_IRQ & ~irq_mask;

618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640
	sdio_ireg = 0;
	if (!ireg && pdata->flags & TMIO_MMC_SDIO_IRQ) {
		sdio_status = sd_ctrl_read16(host, CTL_SDIO_STATUS);
		sdio_irq_mask = sd_ctrl_read16(host, CTL_SDIO_IRQ_MASK);
		sdio_ireg = sdio_status & TMIO_SDIO_MASK_ALL & ~sdio_irq_mask;

		sd_ctrl_write16(host, CTL_SDIO_STATUS, sdio_status & ~TMIO_SDIO_MASK_ALL);

		if (sdio_ireg && !host->sdio_irq_enabled) {
			pr_warning("tmio_mmc: Spurious SDIO IRQ, disabling! 0x%04x 0x%04x 0x%04x\n",
				   sdio_status, sdio_irq_mask, sdio_ireg);
			tmio_mmc_enable_sdio_irq(host->mmc, 0);
			goto out;
		}

		if (host->mmc->caps & MMC_CAP_SDIO_IRQ &&
			sdio_ireg & TMIO_SDIO_STAT_IOIRQ)
			mmc_signal_sdio_irq(host->mmc);

		if (sdio_ireg)
			goto out;
	}

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	pr_debug_status(status);
	pr_debug_status(ireg);

	if (!ireg) {
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		disable_mmc_irqs(host, status & ~irq_mask);
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646

647
		pr_warning("tmio_mmc: Spurious irq, disabling! "
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			"0x%08x 0x%08x 0x%08x\n", status, irq_mask, ireg);
		pr_debug_status(status);

		goto out;
	}

	while (ireg) {
		/* Card insert / remove attempts */
		if (ireg & (TMIO_STAT_CARD_INSERT | TMIO_STAT_CARD_REMOVE)) {
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			ack_mmc_irqs(host, TMIO_STAT_CARD_INSERT |
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				TMIO_STAT_CARD_REMOVE);
659
			mmc_detect_change(host->mmc, msecs_to_jiffies(100));
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		}

		/* CRC and other errors */
/*		if (ireg & TMIO_STAT_ERR_IRQ)
 *			handled |= tmio_error_irq(host, irq, stat);
 */

		/* Command completion */
		if (ireg & TMIO_MASK_CMD) {
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			ack_mmc_irqs(host, TMIO_MASK_CMD);
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			tmio_mmc_cmd_irq(host, status);
		}

		/* Data transfer */
		if (ireg & (TMIO_STAT_RXRDY | TMIO_STAT_TXRQ)) {
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			ack_mmc_irqs(host, TMIO_STAT_RXRDY | TMIO_STAT_TXRQ);
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			tmio_mmc_pio_irq(host);
		}

		/* Data transfer completion */
		if (ireg & TMIO_STAT_DATAEND) {
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			ack_mmc_irqs(host, TMIO_STAT_DATAEND);
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682 683 684 685
			tmio_mmc_data_irq(host);
		}

		/* Check status - keep going until we've handled it all */
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		status = sd_ctrl_read32(host, CTL_STATUS);
		irq_mask = sd_ctrl_read32(host, CTL_IRQ_MASK);
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		ireg = status & TMIO_MASK_IRQ & ~irq_mask;

		pr_debug("Status at end of loop: %08x\n", status);
		pr_debug_status(status);
	}
	pr_debug("MMC IRQ end\n");

out:
	return IRQ_HANDLED;
}

699
#ifdef CONFIG_TMIO_MMC_DMA
700 701 702 703 704 705 706 707 708 709
static void tmio_check_bounce_buffer(struct tmio_mmc_host *host)
{
	if (host->sg_ptr == &host->bounce_sg) {
		unsigned long flags;
		void *sg_vaddr = tmio_mmc_kmap_atomic(host->sg_orig, &flags);
		memcpy(sg_vaddr, host->bounce_buf, host->bounce_sg.length);
		tmio_mmc_kunmap_atomic(sg_vaddr, &flags);
	}
}

710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729
static void tmio_mmc_enable_dma(struct tmio_mmc_host *host, bool enable)
{
#if defined(CONFIG_SUPERH) || defined(CONFIG_ARCH_SHMOBILE)
	/* Switch DMA mode on or off - SuperH specific? */
	sd_ctrl_write16(host, 0xd8, enable ? 2 : 0);
#endif
}

static void tmio_dma_complete(void *arg)
{
	struct tmio_mmc_host *host = arg;

	dev_dbg(&host->pdev->dev, "Command completed\n");

	if (!host->data)
		dev_warn(&host->pdev->dev, "NULL data in DMA completion!\n");
	else
		enable_mmc_irqs(host, TMIO_STAT_DATAEND);
}

730
static void tmio_mmc_start_dma_rx(struct tmio_mmc_host *host)
731
{
732
	struct scatterlist *sg = host->sg_ptr, *sg_tmp;
733 734
	struct dma_async_tx_descriptor *desc = NULL;
	struct dma_chan *chan = host->chan_rx;
735 736
	struct mfd_cell	*cell = host->pdev->dev.platform_data;
	struct tmio_mmc_data *pdata = cell->driver_data;
737
	dma_cookie_t cookie;
738 739 740 741 742 743 744 745 746 747 748 749 750 751
	int ret, i;
	bool aligned = true, multiple = true;
	unsigned int align = (1 << pdata->dma->alignment_shift) - 1;

	for_each_sg(sg, sg_tmp, host->sg_len, i) {
		if (sg_tmp->offset & align)
			aligned = false;
		if (sg_tmp->length & align) {
			multiple = false;
			break;
		}
	}

	if ((!aligned && (host->sg_len > 1 || sg->length > PAGE_CACHE_SIZE ||
752 753
			  align >= MAX_ALIGN)) || !multiple) {
		ret = -EINVAL;
754
		goto pio;
755
	}
756 757 758 759 760 761 762

	/* The only sg element can be unaligned, use our bounce buffer then */
	if (!aligned) {
		sg_init_one(&host->bounce_sg, host->bounce_buf, sg->length);
		host->sg_ptr = &host->bounce_sg;
		sg = host->sg_ptr;
	}
763 764 765 766 767 768 769 770 771 772 773

	ret = dma_map_sg(&host->pdev->dev, sg, host->sg_len, DMA_FROM_DEVICE);
	if (ret > 0) {
		host->dma_sglen = ret;
		desc = chan->device->device_prep_slave_sg(chan, sg, ret,
			DMA_FROM_DEVICE, DMA_PREP_INTERRUPT | DMA_CTRL_ACK);
	}

	if (desc) {
		desc->callback = tmio_dma_complete;
		desc->callback_param = host;
774 775 776 777
		cookie = desc->tx_submit(desc);
		if (cookie < 0) {
			desc = NULL;
			ret = cookie;
778 779 780 781 782
		} else {
			chan->device->device_issue_pending(chan);
		}
	}
	dev_dbg(&host->pdev->dev, "%s(): mapped %d -> %d, cookie %d, rq %p\n",
783
		__func__, host->sg_len, ret, cookie, host->mrq);
784

785
pio:
786
	if (!desc) {
787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803
		/* DMA failed, fall back to PIO */
		if (ret >= 0)
			ret = -EIO;
		host->chan_rx = NULL;
		dma_release_channel(chan);
		/* Free the Tx channel too */
		chan = host->chan_tx;
		if (chan) {
			host->chan_tx = NULL;
			dma_release_channel(chan);
		}
		dev_warn(&host->pdev->dev,
			 "DMA failed: %d, falling back to PIO\n", ret);
		tmio_mmc_enable_dma(host, false);
	}

	dev_dbg(&host->pdev->dev, "%s(): desc %p, cookie %d, sg[%d]\n", __func__,
804
		desc, cookie, host->sg_len);
805 806
}

807
static void tmio_mmc_start_dma_tx(struct tmio_mmc_host *host)
808
{
809
	struct scatterlist *sg = host->sg_ptr, *sg_tmp;
810 811
	struct dma_async_tx_descriptor *desc = NULL;
	struct dma_chan *chan = host->chan_tx;
812 813
	struct mfd_cell	*cell = host->pdev->dev.platform_data;
	struct tmio_mmc_data *pdata = cell->driver_data;
814
	dma_cookie_t cookie;
815 816 817 818 819 820 821 822 823 824 825 826 827 828
	int ret, i;
	bool aligned = true, multiple = true;
	unsigned int align = (1 << pdata->dma->alignment_shift) - 1;

	for_each_sg(sg, sg_tmp, host->sg_len, i) {
		if (sg_tmp->offset & align)
			aligned = false;
		if (sg_tmp->length & align) {
			multiple = false;
			break;
		}
	}

	if ((!aligned && (host->sg_len > 1 || sg->length > PAGE_CACHE_SIZE ||
829 830
			  align >= MAX_ALIGN)) || !multiple) {
		ret = -EINVAL;
831
		goto pio;
832
	}
833 834 835 836 837 838 839 840 841 842 843

	/* The only sg element can be unaligned, use our bounce buffer then */
	if (!aligned) {
		unsigned long flags;
		void *sg_vaddr = tmio_mmc_kmap_atomic(sg, &flags);
		sg_init_one(&host->bounce_sg, host->bounce_buf, sg->length);
		memcpy(host->bounce_buf, sg_vaddr, host->bounce_sg.length);
		tmio_mmc_kunmap_atomic(sg_vaddr, &flags);
		host->sg_ptr = &host->bounce_sg;
		sg = host->sg_ptr;
	}
844 845 846 847 848 849 850 851 852 853 854

	ret = dma_map_sg(&host->pdev->dev, sg, host->sg_len, DMA_TO_DEVICE);
	if (ret > 0) {
		host->dma_sglen = ret;
		desc = chan->device->device_prep_slave_sg(chan, sg, ret,
			DMA_TO_DEVICE, DMA_PREP_INTERRUPT | DMA_CTRL_ACK);
	}

	if (desc) {
		desc->callback = tmio_dma_complete;
		desc->callback_param = host;
855 856 857 858
		cookie = desc->tx_submit(desc);
		if (cookie < 0) {
			desc = NULL;
			ret = cookie;
859 860 861
		}
	}
	dev_dbg(&host->pdev->dev, "%s(): mapped %d -> %d, cookie %d, rq %p\n",
862
		__func__, host->sg_len, ret, cookie, host->mrq);
863

864
pio:
865
	if (!desc) {
866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882
		/* DMA failed, fall back to PIO */
		if (ret >= 0)
			ret = -EIO;
		host->chan_tx = NULL;
		dma_release_channel(chan);
		/* Free the Rx channel too */
		chan = host->chan_rx;
		if (chan) {
			host->chan_rx = NULL;
			dma_release_channel(chan);
		}
		dev_warn(&host->pdev->dev,
			 "DMA failed: %d, falling back to PIO\n", ret);
		tmio_mmc_enable_dma(host, false);
	}

	dev_dbg(&host->pdev->dev, "%s(): desc %p, cookie %d\n", __func__,
883
		desc, cookie);
884 885
}

886
static void tmio_mmc_start_dma(struct tmio_mmc_host *host,
887 888 889 890
			       struct mmc_data *data)
{
	if (data->flags & MMC_DATA_READ) {
		if (host->chan_rx)
891
			tmio_mmc_start_dma_rx(host);
892 893
	} else {
		if (host->chan_tx)
894
			tmio_mmc_start_dma_tx(host);
895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977
	}
}

static void tmio_issue_tasklet_fn(unsigned long priv)
{
	struct tmio_mmc_host *host = (struct tmio_mmc_host *)priv;
	struct dma_chan *chan = host->chan_tx;

	chan->device->device_issue_pending(chan);
}

static void tmio_tasklet_fn(unsigned long arg)
{
	struct tmio_mmc_host *host = (struct tmio_mmc_host *)arg;

	if (host->data->flags & MMC_DATA_READ)
		dma_unmap_sg(&host->pdev->dev, host->sg_ptr, host->dma_sglen,
			     DMA_FROM_DEVICE);
	else
		dma_unmap_sg(&host->pdev->dev, host->sg_ptr, host->dma_sglen,
			     DMA_TO_DEVICE);

	tmio_mmc_do_data_irq(host);
}

/* It might be necessary to make filter MFD specific */
static bool tmio_mmc_filter(struct dma_chan *chan, void *arg)
{
	dev_dbg(chan->device->dev, "%s: slave data %p\n", __func__, arg);
	chan->private = arg;
	return true;
}

static void tmio_mmc_request_dma(struct tmio_mmc_host *host,
				 struct tmio_mmc_data *pdata)
{
	/* We can only either use DMA for both Tx and Rx or not use it at all */
	if (pdata->dma) {
		dma_cap_mask_t mask;

		dma_cap_zero(mask);
		dma_cap_set(DMA_SLAVE, mask);

		host->chan_tx = dma_request_channel(mask, tmio_mmc_filter,
						    pdata->dma->chan_priv_tx);
		dev_dbg(&host->pdev->dev, "%s: TX: got channel %p\n", __func__,
			host->chan_tx);

		if (!host->chan_tx)
			return;

		host->chan_rx = dma_request_channel(mask, tmio_mmc_filter,
						    pdata->dma->chan_priv_rx);
		dev_dbg(&host->pdev->dev, "%s: RX: got channel %p\n", __func__,
			host->chan_rx);

		if (!host->chan_rx) {
			dma_release_channel(host->chan_tx);
			host->chan_tx = NULL;
			return;
		}

		tasklet_init(&host->dma_complete, tmio_tasklet_fn, (unsigned long)host);
		tasklet_init(&host->dma_issue, tmio_issue_tasklet_fn, (unsigned long)host);

		tmio_mmc_enable_dma(host, true);
	}
}

static void tmio_mmc_release_dma(struct tmio_mmc_host *host)
{
	if (host->chan_tx) {
		struct dma_chan *chan = host->chan_tx;
		host->chan_tx = NULL;
		dma_release_channel(chan);
	}
	if (host->chan_rx) {
		struct dma_chan *chan = host->chan_rx;
		host->chan_rx = NULL;
		dma_release_channel(chan);
	}
}
#else
978 979 980 981
static void tmio_check_bounce_buffer(struct tmio_mmc_host *host)
{
}

982
static void tmio_mmc_start_dma(struct tmio_mmc_host *host,
983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998
			       struct mmc_data *data)
{
}

static void tmio_mmc_request_dma(struct tmio_mmc_host *host,
				 struct tmio_mmc_data *pdata)
{
	host->chan_tx = NULL;
	host->chan_rx = NULL;
}

static void tmio_mmc_release_dma(struct tmio_mmc_host *host)
{
}
#endif

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static int tmio_mmc_start_data(struct tmio_mmc_host *host,
	struct mmc_data *data)
{
1002 1003 1004
	struct mfd_cell *cell = host->pdev->dev.platform_data;
	struct tmio_mmc_data *pdata = cell->driver_data;

I
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1005
	pr_debug("setup data transfer: blocksize %08x  nr_blocks %d\n",
1006
		 data->blksz, data->blocks);
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1007

1008 1009 1010 1011 1012 1013 1014 1015 1016
	/* Some hardware cannot perform 2 byte requests in 4 bit mode */
	if (host->mmc->ios.bus_width == MMC_BUS_WIDTH_4) {
		int blksz_2bytes = pdata->flags & TMIO_MMC_BLKSZ_2BYTES;

		if (data->blksz < 2 || (data->blksz < 4 && !blksz_2bytes)) {
			pr_err("%s: %d byte block unsupported in 4 bit mode\n",
			       mmc_hostname(host->mmc), data->blksz);
			return -EINVAL;
		}
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1017 1018 1019 1020 1021 1022
	}

	tmio_mmc_init_sg(host, data);
	host->data = data;

	/* Set transfer length / blocksize */
P
Philipp Zabel 已提交
1023 1024
	sd_ctrl_write16(host, CTL_SD_XFER_LEN, data->blksz);
	sd_ctrl_write16(host, CTL_XFER_BLK_COUNT, data->blocks);
I
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1025

1026 1027 1028
	tmio_mmc_start_dma(host, data);

	return 0;
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}

/* Process requests from the MMC layer */
static void tmio_mmc_request(struct mmc_host *mmc, struct mmc_request *mrq)
{
	struct tmio_mmc_host *host = mmc_priv(mmc);
	int ret;

	if (host->mrq)
		pr_debug("request not null\n");

	host->mrq = mrq;

	if (mrq->data) {
		ret = tmio_mmc_start_data(host, mrq->data);
		if (ret)
			goto fail;
	}

	ret = tmio_mmc_start_command(host, mrq->cmd);
	if (!ret)
		return;

fail:
	mrq->cmd->error = ret;
	mmc_request_done(mmc, mrq);
}

/* Set MMC clock / power.
 * Note: This controller uses a simple divider scheme therefore it cannot
 * run a MMC card at full speed (20MHz). The max clock is 24MHz on SD, but as
 * MMC wont run that fast, it has to be clocked at 12MHz which is the next
 * slowest setting.
 */
static void tmio_mmc_set_ios(struct mmc_host *mmc, struct mmc_ios *ios)
{
	struct tmio_mmc_host *host = mmc_priv(mmc);

	if (ios->clock)
		tmio_mmc_set_clock(host, ios->clock);

	/* Power sequence - OFF -> ON -> UP */
	switch (ios->power_mode) {
	case MMC_POWER_OFF: /* power down SD bus */
1073 1074
		if (host->set_pwr)
			host->set_pwr(host->pdev, 0);
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		tmio_mmc_clk_stop(host);
		break;
	case MMC_POWER_ON: /* power up SD bus */
1078 1079
		if (host->set_pwr)
			host->set_pwr(host->pdev, 1);
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1080 1081 1082 1083 1084 1085 1086 1087
		break;
	case MMC_POWER_UP: /* start bus clock */
		tmio_mmc_clk_start(host);
		break;
	}

	switch (ios->bus_width) {
	case MMC_BUS_WIDTH_1:
P
Philipp Zabel 已提交
1088
		sd_ctrl_write16(host, CTL_SD_MEM_CARD_OPT, 0x80e0);
I
Ian Molton 已提交
1089 1090
	break;
	case MMC_BUS_WIDTH_4:
P
Philipp Zabel 已提交
1091
		sd_ctrl_write16(host, CTL_SD_MEM_CARD_OPT, 0x00e0);
I
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	break;
	}

	/* Let things settle. delay taken from winCE driver */
	udelay(140);
}

static int tmio_mmc_get_ro(struct mmc_host *mmc)
{
	struct tmio_mmc_host *host = mmc_priv(mmc);
1102 1103
	struct mfd_cell	*cell = host->pdev->dev.platform_data;
	struct tmio_mmc_data *pdata = cell->driver_data;
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1105 1106
	return ((pdata->flags & TMIO_MMC_WRPROTECT_DISABLE) ||
		(sd_ctrl_read32(host, CTL_STATUS) & TMIO_STAT_WRPROTECT)) ? 0 : 1;
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}

1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120
static int tmio_mmc_get_cd(struct mmc_host *mmc)
{
	struct tmio_mmc_host *host = mmc_priv(mmc);
	struct mfd_cell	*cell = host->pdev->dev.platform_data;
	struct tmio_mmc_data *pdata = cell->driver_data;

	if (!pdata->get_cd)
		return -ENOSYS;
	else
		return pdata->get_cd(host->pdev);
}

1121
static const struct mmc_host_ops tmio_mmc_ops = {
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	.request	= tmio_mmc_request,
	.set_ios	= tmio_mmc_set_ios,
	.get_ro         = tmio_mmc_get_ro,
1125
	.get_cd		= tmio_mmc_get_cd,
1126
	.enable_sdio_irq = tmio_mmc_enable_sdio_irq,
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};

#ifdef CONFIG_PM
static int tmio_mmc_suspend(struct platform_device *dev, pm_message_t state)
{
	struct mfd_cell	*cell = (struct mfd_cell *)dev->dev.platform_data;
	struct mmc_host *mmc = platform_get_drvdata(dev);
	int ret;

1136
	ret = mmc_suspend_host(mmc);
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	/* Tell MFD core it can disable us now.*/
	if (!ret && cell->disable)
		cell->disable(dev);

	return ret;
}

static int tmio_mmc_resume(struct platform_device *dev)
{
	struct mfd_cell	*cell = (struct mfd_cell *)dev->dev.platform_data;
	struct mmc_host *mmc = platform_get_drvdata(dev);
	int ret = 0;

	/* Tell the MFD core we are ready to be enabled */
1152 1153
	if (cell->resume) {
		ret = cell->resume(dev);
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		if (ret)
			goto out;
	}

	mmc_resume_host(mmc);

out:
	return ret;
}
#else
#define tmio_mmc_suspend NULL
#define tmio_mmc_resume NULL
#endif

static int __devinit tmio_mmc_probe(struct platform_device *dev)
{
	struct mfd_cell	*cell = (struct mfd_cell *)dev->dev.platform_data;
1171
	struct tmio_mmc_data *pdata;
1172
	struct resource *res_ctl;
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	struct tmio_mmc_host *host;
	struct mmc_host *mmc;
1175
	int ret = -EINVAL;
1176
	u32 irq_mask = TMIO_MASK_CMD;
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1178
	if (dev->num_resources != 2)
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		goto out;

	res_ctl = platform_get_resource(dev, IORESOURCE_MEM, 0);
1182
	if (!res_ctl)
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		goto out;

1185
	pdata = cell->driver_data;
1186
	if (!pdata || !pdata->hclk)
1187
		goto out;
1188 1189

	ret = -ENOMEM;
1190

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	mmc = mmc_alloc_host(sizeof(struct tmio_mmc_host), &dev->dev);
	if (!mmc)
		goto out;

	host = mmc_priv(mmc);
	host->mmc = mmc;
1197
	host->pdev = dev;
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	platform_set_drvdata(dev, mmc);

1200 1201 1202
	host->set_pwr = pdata->set_pwr;
	host->set_clk_div = pdata->set_clk_div;

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	/* SD control register space size is 0x200, 0x400 for bus_shift=1 */
	host->bus_shift = resource_size(res_ctl) >> 10;

1206
	host->ctl = ioremap(res_ctl->start, resource_size(res_ctl));
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	if (!host->ctl)
		goto host_free;

	mmc->ops = &tmio_mmc_ops;
1211
	mmc->caps = MMC_CAP_4_BIT_DATA | pdata->capabilities;
1212 1213
	mmc->f_max = pdata->hclk;
	mmc->f_min = mmc->f_max / 512;
1214 1215 1216 1217 1218 1219
	mmc->max_segs = 32;
	mmc->max_blk_size = 512;
	mmc->max_blk_count = (PAGE_CACHE_SIZE / mmc->max_blk_size) *
		mmc->max_segs;
	mmc->max_req_size = mmc->max_blk_size * mmc->max_blk_count;
	mmc->max_seg_size = mmc->max_req_size;
1220 1221 1222 1223
	if (pdata->ocr_mask)
		mmc->ocr_avail = pdata->ocr_mask;
	else
		mmc->ocr_avail = MMC_VDD_32_33 | MMC_VDD_33_34;
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	/* Tell the MFD core we are ready to be enabled */
	if (cell->enable) {
		ret = cell->enable(dev);
		if (ret)
1229
			goto unmap_ctl;
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	}

	tmio_mmc_clk_stop(host);
	reset(host);

	ret = platform_get_irq(dev, 0);
	if (ret >= 0)
		host->irq = ret;
	else
1239
		goto cell_disable;
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1241
	disable_mmc_irqs(host, TMIO_MASK_ALL);
1242 1243
	if (pdata->flags & TMIO_MMC_SDIO_IRQ)
		tmio_mmc_enable_sdio_irq(mmc, 0);
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	ret = request_irq(host->irq, tmio_mmc_irq, IRQF_DISABLED |
1246
		IRQF_TRIGGER_FALLING, dev_name(&dev->dev), host);
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	if (ret)
1248
		goto cell_disable;
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1250 1251 1252
	/* See if we also get DMA */
	tmio_mmc_request_dma(host, pdata);

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	mmc_add_host(mmc);

1255 1256
	pr_info("%s at 0x%08lx irq %d\n", mmc_hostname(host->mmc),
		(unsigned long)host->ctl, host->irq);
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	/* Unmask the IRQs we want to know about */
1259 1260 1261 1262 1263
	if (!host->chan_rx)
		irq_mask |= TMIO_MASK_READOP;
	if (!host->chan_tx)
		irq_mask |= TMIO_MASK_WRITEOP;
	enable_mmc_irqs(host, irq_mask);
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	return 0;

1267 1268 1269
cell_disable:
	if (cell->disable)
		cell->disable(dev);
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unmap_ctl:
	iounmap(host->ctl);
host_free:
	mmc_free_host(mmc);
out:
	return ret;
}

static int __devexit tmio_mmc_remove(struct platform_device *dev)
{
1280
	struct mfd_cell	*cell = (struct mfd_cell *)dev->dev.platform_data;
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	struct mmc_host *mmc = platform_get_drvdata(dev);

	platform_set_drvdata(dev, NULL);

	if (mmc) {
		struct tmio_mmc_host *host = mmc_priv(mmc);
		mmc_remove_host(mmc);
1288
		tmio_mmc_release_dma(host);
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		free_irq(host->irq, host);
1290 1291
		if (cell->disable)
			cell->disable(dev);
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		iounmap(host->ctl);
1293
		mmc_free_host(mmc);
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	}

	return 0;
}

/* ------------------- device registration ----------------------- */

static struct platform_driver tmio_mmc_driver = {
	.driver = {
		.name = "tmio-mmc",
		.owner = THIS_MODULE,
	},
	.probe = tmio_mmc_probe,
	.remove = __devexit_p(tmio_mmc_remove),
	.suspend = tmio_mmc_suspend,
	.resume = tmio_mmc_resume,
};


static int __init tmio_mmc_init(void)
{
	return platform_driver_register(&tmio_mmc_driver);
}

static void __exit tmio_mmc_exit(void)
{
	platform_driver_unregister(&tmio_mmc_driver);
}

module_init(tmio_mmc_init);
module_exit(tmio_mmc_exit);

MODULE_DESCRIPTION("Toshiba TMIO SD/MMC driver");
MODULE_AUTHOR("Ian Molton <spyro@f2s.com>");
MODULE_LICENSE("GPL v2");
MODULE_ALIAS("platform:tmio-mmc");