block.c 59.1 KB
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/*
 * Block driver for media (i.e., flash cards)
 *
 * Copyright 2002 Hewlett-Packard Company
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 * Copyright 2005-2008 Pierre Ossman
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 *
 * Use consistent with the GNU GPL is permitted,
 * provided that this copyright notice is
 * preserved in its entirety in all copies and derived works.
 *
 * HEWLETT-PACKARD COMPANY MAKES NO WARRANTIES, EXPRESSED OR IMPLIED,
 * AS TO THE USEFULNESS OR CORRECTNESS OF THIS CODE OR ITS
 * FITNESS FOR ANY PARTICULAR PURPOSE.
 *
 * Many thanks to Alessandro Rubini and Jonathan Corbet!
 *
 * Author:  Andrew Christian
 *          28 May 2002
 */
#include <linux/moduleparam.h>
#include <linux/module.h>
#include <linux/init.h>

#include <linux/kernel.h>
#include <linux/fs.h>
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#include <linux/slab.h>
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#include <linux/errno.h>
#include <linux/hdreg.h>
#include <linux/kdev_t.h>
#include <linux/blkdev.h>
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#include <linux/mutex.h>
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#include <linux/scatterlist.h>
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#include <linux/string_helpers.h>
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#include <linux/delay.h>
#include <linux/capability.h>
#include <linux/compat.h>
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#include <linux/pm_runtime.h>
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#include <linux/idr.h>
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#include <linux/mmc/ioctl.h>
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#include <linux/mmc/card.h>
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#include <linux/mmc/host.h>
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#include <linux/mmc/mmc.h>
#include <linux/mmc/sd.h>
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#include <linux/uaccess.h>
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#include "queue.h"
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#include "block.h"
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#include "core.h"
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#include "card.h"
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#include "host.h"
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#include "bus.h"
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#include "mmc_ops.h"
#include "sd_ops.h"
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MODULE_ALIAS("mmc:block");
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#ifdef MODULE_PARAM_PREFIX
#undef MODULE_PARAM_PREFIX
#endif
#define MODULE_PARAM_PREFIX "mmcblk."

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#define INAND_CMD38_ARG_EXT_CSD  113
#define INAND_CMD38_ARG_ERASE    0x00
#define INAND_CMD38_ARG_TRIM     0x01
#define INAND_CMD38_ARG_SECERASE 0x80
#define INAND_CMD38_ARG_SECTRIM1 0x81
#define INAND_CMD38_ARG_SECTRIM2 0x88
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#define MMC_BLK_TIMEOUT_MS  (10 * 60 * 1000)        /* 10 minute timeout */
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#define MMC_SANITIZE_REQ_TIMEOUT 240000
#define MMC_EXTRACT_INDEX_FROM_ARG(x) ((x & 0x00FF0000) >> 16)
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#define mmc_req_rel_wr(req)	((req->cmd_flags & REQ_FUA) && \
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				  (rq_data_dir(req) == WRITE))
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static DEFINE_MUTEX(block_mutex);
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/*
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 * The defaults come from config options but can be overriden by module
 * or bootarg options.
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 */
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static int perdev_minors = CONFIG_MMC_BLOCK_MINORS;
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/*
 * We've only got one major, so number of mmcblk devices is
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 * limited to (1 << 20) / number of minors per device.  It is also
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 * limited by the MAX_DEVICES below.
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 */
static int max_devices;

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#define MAX_DEVICES 256

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static DEFINE_IDA(mmc_blk_ida);
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/*
 * There is one mmc_blk_data per slot.
 */
struct mmc_blk_data {
	spinlock_t	lock;
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	struct device	*parent;
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	struct gendisk	*disk;
	struct mmc_queue queue;
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	struct list_head part;
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	unsigned int	flags;
#define MMC_BLK_CMD23	(1 << 0)	/* Can do SET_BLOCK_COUNT for multiblock */
#define MMC_BLK_REL_WR	(1 << 1)	/* MMC Reliable write support */

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	unsigned int	usage;
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	unsigned int	read_only;
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	unsigned int	part_type;
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	unsigned int	reset_done;
#define MMC_BLK_READ		BIT(0)
#define MMC_BLK_WRITE		BIT(1)
#define MMC_BLK_DISCARD		BIT(2)
#define MMC_BLK_SECDISCARD	BIT(3)
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	/*
	 * Only set in main mmc_blk_data associated
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	 * with mmc_card with dev_set_drvdata, and keeps
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	 * track of the current selected device partition.
	 */
	unsigned int	part_curr;
	struct device_attribute force_ro;
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	struct device_attribute power_ro_lock;
	int	area_type;
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};

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static DEFINE_MUTEX(open_lock);
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module_param(perdev_minors, int, 0444);
MODULE_PARM_DESC(perdev_minors, "Minors numbers to allocate per device");

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static inline int mmc_blk_part_switch(struct mmc_card *card,
				      struct mmc_blk_data *md);
static int get_card_status(struct mmc_card *card, u32 *status, int retries);

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static struct mmc_blk_data *mmc_blk_get(struct gendisk *disk)
{
	struct mmc_blk_data *md;

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	mutex_lock(&open_lock);
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	md = disk->private_data;
	if (md && md->usage == 0)
		md = NULL;
	if (md)
		md->usage++;
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	mutex_unlock(&open_lock);
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	return md;
}

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static inline int mmc_get_devidx(struct gendisk *disk)
{
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	int devidx = disk->first_minor / perdev_minors;
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	return devidx;
}

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static void mmc_blk_put(struct mmc_blk_data *md)
{
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	mutex_lock(&open_lock);
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	md->usage--;
	if (md->usage == 0) {
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		int devidx = mmc_get_devidx(md->disk);
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		blk_cleanup_queue(md->queue.queue);
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		ida_simple_remove(&mmc_blk_ida, devidx);
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		put_disk(md->disk);
		kfree(md);
	}
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	mutex_unlock(&open_lock);
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}

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static ssize_t power_ro_lock_show(struct device *dev,
		struct device_attribute *attr, char *buf)
{
	int ret;
	struct mmc_blk_data *md = mmc_blk_get(dev_to_disk(dev));
	struct mmc_card *card = md->queue.card;
	int locked = 0;

	if (card->ext_csd.boot_ro_lock & EXT_CSD_BOOT_WP_B_PERM_WP_EN)
		locked = 2;
	else if (card->ext_csd.boot_ro_lock & EXT_CSD_BOOT_WP_B_PWR_WP_EN)
		locked = 1;

	ret = snprintf(buf, PAGE_SIZE, "%d\n", locked);

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	mmc_blk_put(md);

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	return ret;
}

static ssize_t power_ro_lock_store(struct device *dev,
		struct device_attribute *attr, const char *buf, size_t count)
{
	int ret;
	struct mmc_blk_data *md, *part_md;
	struct mmc_card *card;
	unsigned long set;

	if (kstrtoul(buf, 0, &set))
		return -EINVAL;

	if (set != 1)
		return count;

	md = mmc_blk_get(dev_to_disk(dev));
	card = md->queue.card;

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	mmc_get_card(card);
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	ret = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_BOOT_WP,
				card->ext_csd.boot_ro_lock |
				EXT_CSD_BOOT_WP_B_PWR_WP_EN,
				card->ext_csd.part_time);
	if (ret)
		pr_err("%s: Locking boot partition ro until next power on failed: %d\n", md->disk->disk_name, ret);
	else
		card->ext_csd.boot_ro_lock |= EXT_CSD_BOOT_WP_B_PWR_WP_EN;

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	mmc_put_card(card);
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	if (!ret) {
		pr_info("%s: Locking boot partition ro until next power on\n",
			md->disk->disk_name);
		set_disk_ro(md->disk, 1);

		list_for_each_entry(part_md, &md->part, part)
			if (part_md->area_type == MMC_BLK_DATA_AREA_BOOT) {
				pr_info("%s: Locking boot partition ro until next power on\n", part_md->disk->disk_name);
				set_disk_ro(part_md->disk, 1);
			}
	}

	mmc_blk_put(md);
	return count;
}

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static ssize_t force_ro_show(struct device *dev, struct device_attribute *attr,
			     char *buf)
{
	int ret;
	struct mmc_blk_data *md = mmc_blk_get(dev_to_disk(dev));

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	ret = snprintf(buf, PAGE_SIZE, "%d\n",
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		       get_disk_ro(dev_to_disk(dev)) ^
		       md->read_only);
	mmc_blk_put(md);
	return ret;
}

static ssize_t force_ro_store(struct device *dev, struct device_attribute *attr,
			      const char *buf, size_t count)
{
	int ret;
	char *end;
	struct mmc_blk_data *md = mmc_blk_get(dev_to_disk(dev));
	unsigned long set = simple_strtoul(buf, &end, 0);
	if (end == buf) {
		ret = -EINVAL;
		goto out;
	}

	set_disk_ro(dev_to_disk(dev), set || md->read_only);
	ret = count;
out:
	mmc_blk_put(md);
	return ret;
}

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static int mmc_blk_open(struct block_device *bdev, fmode_t mode)
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{
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	struct mmc_blk_data *md = mmc_blk_get(bdev->bd_disk);
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	int ret = -ENXIO;

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	mutex_lock(&block_mutex);
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	if (md) {
		if (md->usage == 2)
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			check_disk_change(bdev);
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		ret = 0;
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		if ((mode & FMODE_WRITE) && md->read_only) {
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			mmc_blk_put(md);
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			ret = -EROFS;
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		}
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	}
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	mutex_unlock(&block_mutex);
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	return ret;
}

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static void mmc_blk_release(struct gendisk *disk, fmode_t mode)
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{
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	struct mmc_blk_data *md = disk->private_data;
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	mutex_lock(&block_mutex);
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	mmc_blk_put(md);
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	mutex_unlock(&block_mutex);
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}

static int
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mmc_blk_getgeo(struct block_device *bdev, struct hd_geometry *geo)
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{
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	geo->cylinders = get_capacity(bdev->bd_disk) / (4 * 16);
	geo->heads = 4;
	geo->sectors = 16;
	return 0;
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}

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struct mmc_blk_ioc_data {
	struct mmc_ioc_cmd ic;
	unsigned char *buf;
	u64 buf_bytes;
};

static struct mmc_blk_ioc_data *mmc_blk_ioctl_copy_from_user(
	struct mmc_ioc_cmd __user *user)
{
	struct mmc_blk_ioc_data *idata;
	int err;

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	idata = kmalloc(sizeof(*idata), GFP_KERNEL);
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	if (!idata) {
		err = -ENOMEM;
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		goto out;
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	}

	if (copy_from_user(&idata->ic, user, sizeof(idata->ic))) {
		err = -EFAULT;
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		goto idata_err;
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	}

	idata->buf_bytes = (u64) idata->ic.blksz * idata->ic.blocks;
	if (idata->buf_bytes > MMC_IOC_MAX_BYTES) {
		err = -EOVERFLOW;
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		goto idata_err;
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	}

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	if (!idata->buf_bytes) {
		idata->buf = NULL;
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		return idata;
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	}
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	idata->buf = kmalloc(idata->buf_bytes, GFP_KERNEL);
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	if (!idata->buf) {
		err = -ENOMEM;
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		goto idata_err;
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	}

	if (copy_from_user(idata->buf, (void __user *)(unsigned long)
					idata->ic.data_ptr, idata->buf_bytes)) {
		err = -EFAULT;
		goto copy_err;
	}

	return idata;

copy_err:
	kfree(idata->buf);
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idata_err:
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	kfree(idata);
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out:
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	return ERR_PTR(err);
}

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static int mmc_blk_ioctl_copy_to_user(struct mmc_ioc_cmd __user *ic_ptr,
				      struct mmc_blk_ioc_data *idata)
{
	struct mmc_ioc_cmd *ic = &idata->ic;

	if (copy_to_user(&(ic_ptr->response), ic->response,
			 sizeof(ic->response)))
		return -EFAULT;

	if (!idata->ic.write_flag) {
		if (copy_to_user((void __user *)(unsigned long)ic->data_ptr,
				 idata->buf, idata->buf_bytes))
			return -EFAULT;
	}

	return 0;
}

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static int ioctl_rpmb_card_status_poll(struct mmc_card *card, u32 *status,
				       u32 retries_max)
{
	int err;
	u32 retry_count = 0;

	if (!status || !retries_max)
		return -EINVAL;

	do {
		err = get_card_status(card, status, 5);
		if (err)
			break;

		if (!R1_STATUS(*status) &&
				(R1_CURRENT_STATE(*status) != R1_STATE_PRG))
			break; /* RPMB programming operation complete */

		/*
		 * Rechedule to give the MMC device a chance to continue
		 * processing the previous command without being polled too
		 * frequently.
		 */
		usleep_range(1000, 5000);
	} while (++retry_count < retries_max);

	if (retry_count == retries_max)
		err = -EPERM;

	return err;
}

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static int ioctl_do_sanitize(struct mmc_card *card)
{
	int err;

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	if (!mmc_can_sanitize(card)) {
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			pr_warn("%s: %s - SANITIZE is not supported\n",
				mmc_hostname(card->host), __func__);
			err = -EOPNOTSUPP;
			goto out;
	}

	pr_debug("%s: %s - SANITIZE IN PROGRESS...\n",
		mmc_hostname(card->host), __func__);

	err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
					EXT_CSD_SANITIZE_START, 1,
					MMC_SANITIZE_REQ_TIMEOUT);

	if (err)
		pr_err("%s: %s - EXT_CSD_SANITIZE_START failed. err=%d\n",
		       mmc_hostname(card->host), __func__, err);

	pr_debug("%s: %s - SANITIZE COMPLETED\n", mmc_hostname(card->host),
					     __func__);
out:
	return err;
}

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static int __mmc_blk_ioctl_cmd(struct mmc_card *card, struct mmc_blk_data *md,
			       struct mmc_blk_ioc_data *idata)
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{
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	struct mmc_command cmd = {};
	struct mmc_data data = {};
	struct mmc_request mrq = {};
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	struct scatterlist sg;
	int err;
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	int is_rpmb = false;
	u32 status = 0;
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	if (!card || !md || !idata)
		return -EINVAL;
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	if (md->area_type & MMC_BLK_DATA_AREA_RPMB)
		is_rpmb = true;

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	cmd.opcode = idata->ic.opcode;
	cmd.arg = idata->ic.arg;
	cmd.flags = idata->ic.flags;

	if (idata->buf_bytes) {
		data.sg = &sg;
		data.sg_len = 1;
		data.blksz = idata->ic.blksz;
		data.blocks = idata->ic.blocks;

		sg_init_one(data.sg, idata->buf, idata->buf_bytes);

		if (idata->ic.write_flag)
			data.flags = MMC_DATA_WRITE;
		else
			data.flags = MMC_DATA_READ;

		/* data.flags must already be set before doing this. */
		mmc_set_data_timeout(&data, card);

		/* Allow overriding the timeout_ns for empirical tuning. */
		if (idata->ic.data_timeout_ns)
			data.timeout_ns = idata->ic.data_timeout_ns;

		if ((cmd.flags & MMC_RSP_R1B) == MMC_RSP_R1B) {
			/*
			 * Pretend this is a data transfer and rely on the
			 * host driver to compute timeout.  When all host
			 * drivers support cmd.cmd_timeout for R1B, this
			 * can be changed to:
			 *
			 *     mrq.data = NULL;
			 *     cmd.cmd_timeout = idata->ic.cmd_timeout_ms;
			 */
			data.timeout_ns = idata->ic.cmd_timeout_ms * 1000000;
		}

		mrq.data = &data;
	}

	mrq.cmd = &cmd;

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	err = mmc_blk_part_switch(card, md);
	if (err)
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		return err;
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	if (idata->ic.is_acmd) {
		err = mmc_app_cmd(card->host, card);
		if (err)
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			return err;
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	}

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	if (is_rpmb) {
		err = mmc_set_blockcount(card, data.blocks,
			idata->ic.write_flag & (1 << 31));
		if (err)
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			return err;
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	}

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	if ((MMC_EXTRACT_INDEX_FROM_ARG(cmd.arg) == EXT_CSD_SANITIZE_START) &&
	    (cmd.opcode == MMC_SWITCH)) {
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		err = ioctl_do_sanitize(card);

		if (err)
			pr_err("%s: ioctl_do_sanitize() failed. err = %d",
			       __func__, err);

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		return err;
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	}

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	mmc_wait_for_req(card->host, &mrq);

	if (cmd.error) {
		dev_err(mmc_dev(card->host), "%s: cmd error %d\n",
						__func__, cmd.error);
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		return cmd.error;
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	}
	if (data.error) {
		dev_err(mmc_dev(card->host), "%s: data error %d\n",
						__func__, data.error);
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		return data.error;
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	}

	/*
	 * According to the SD specs, some commands require a delay after
	 * issuing the command.
	 */
	if (idata->ic.postsleep_min_us)
		usleep_range(idata->ic.postsleep_min_us, idata->ic.postsleep_max_us);

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	memcpy(&(idata->ic.response), cmd.resp, sizeof(cmd.resp));
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	if (is_rpmb) {
		/*
		 * Ensure RPMB command has completed by polling CMD13
		 * "Send Status".
		 */
		err = ioctl_rpmb_card_status_poll(card, &status, 5);
		if (err)
			dev_err(mmc_dev(card->host),
					"%s: Card Status=0x%08X, error %d\n",
					__func__, status, err);
	}

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	return err;
}

static int mmc_blk_ioctl_cmd(struct block_device *bdev,
			     struct mmc_ioc_cmd __user *ic_ptr)
{
	struct mmc_blk_ioc_data *idata;
	struct mmc_blk_data *md;
	struct mmc_card *card;
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	int err = 0, ioc_err = 0;
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	/*
	 * The caller must have CAP_SYS_RAWIO, and must be calling this on the
	 * whole block device, not on a partition.  This prevents overspray
	 * between sibling partitions.
	 */
	if ((!capable(CAP_SYS_RAWIO)) || (bdev != bdev->bd_contains))
		return -EPERM;

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	idata = mmc_blk_ioctl_copy_from_user(ic_ptr);
	if (IS_ERR(idata))
		return PTR_ERR(idata);

	md = mmc_blk_get(bdev->bd_disk);
	if (!md) {
		err = -EINVAL;
		goto cmd_err;
	}

	card = md->queue.card;
	if (IS_ERR(card)) {
		err = PTR_ERR(card);
		goto cmd_done;
	}

	mmc_get_card(card);

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	ioc_err = __mmc_blk_ioctl_cmd(card, md, idata);
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	/* Always switch back to main area after RPMB access */
	if (md->area_type & MMC_BLK_DATA_AREA_RPMB)
		mmc_blk_part_switch(card, dev_get_drvdata(&card->dev));

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	mmc_put_card(card);
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609
	err = mmc_blk_ioctl_copy_to_user(ic_ptr, idata);
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cmd_done:
	mmc_blk_put(md);
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cmd_err:
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	kfree(idata->buf);
	kfree(idata);
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	return ioc_err ? ioc_err : err;
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}

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static int mmc_blk_ioctl_multi_cmd(struct block_device *bdev,
				   struct mmc_ioc_multi_cmd __user *user)
{
	struct mmc_blk_ioc_data **idata = NULL;
	struct mmc_ioc_cmd __user *cmds = user->cmds;
	struct mmc_card *card;
	struct mmc_blk_data *md;
626
	int i, err = 0, ioc_err = 0;
627 628
	__u64 num_of_cmds;

629 630 631 632 633 634 635 636
	/*
	 * The caller must have CAP_SYS_RAWIO, and must be calling this on the
	 * whole block device, not on a partition.  This prevents overspray
	 * between sibling partitions.
	 */
	if ((!capable(CAP_SYS_RAWIO)) || (bdev != bdev->bd_contains))
		return -EPERM;

637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657
	if (copy_from_user(&num_of_cmds, &user->num_of_cmds,
			   sizeof(num_of_cmds)))
		return -EFAULT;

	if (num_of_cmds > MMC_IOC_MAX_CMDS)
		return -EINVAL;

	idata = kcalloc(num_of_cmds, sizeof(*idata), GFP_KERNEL);
	if (!idata)
		return -ENOMEM;

	for (i = 0; i < num_of_cmds; i++) {
		idata[i] = mmc_blk_ioctl_copy_from_user(&cmds[i]);
		if (IS_ERR(idata[i])) {
			err = PTR_ERR(idata[i]);
			num_of_cmds = i;
			goto cmd_err;
		}
	}

	md = mmc_blk_get(bdev->bd_disk);
658 659
	if (!md) {
		err = -EINVAL;
660
		goto cmd_err;
661
	}
662 663 664 665 666 667 668 669 670

	card = md->queue.card;
	if (IS_ERR(card)) {
		err = PTR_ERR(card);
		goto cmd_done;
	}

	mmc_get_card(card);

671 672
	for (i = 0; i < num_of_cmds && !ioc_err; i++)
		ioc_err = __mmc_blk_ioctl_cmd(card, md, idata[i]);
673

674 675 676 677
	/* Always switch back to main area after RPMB access */
	if (md->area_type & MMC_BLK_DATA_AREA_RPMB)
		mmc_blk_part_switch(card, dev_get_drvdata(&card->dev));

678 679 680
	mmc_put_card(card);

	/* copy to user if data and response */
681
	for (i = 0; i < num_of_cmds && !err; i++)
682 683 684 685 686 687 688 689 690 691
		err = mmc_blk_ioctl_copy_to_user(&cmds[i], idata[i]);

cmd_done:
	mmc_blk_put(md);
cmd_err:
	for (i = 0; i < num_of_cmds; i++) {
		kfree(idata[i]->buf);
		kfree(idata[i]);
	}
	kfree(idata);
692
	return ioc_err ? ioc_err : err;
693 694
}

695 696 697
static int mmc_blk_ioctl(struct block_device *bdev, fmode_t mode,
	unsigned int cmd, unsigned long arg)
{
698 699 700 701 702 703 704 705 706 707
	switch (cmd) {
	case MMC_IOC_CMD:
		return mmc_blk_ioctl_cmd(bdev,
				(struct mmc_ioc_cmd __user *)arg);
	case MMC_IOC_MULTI_CMD:
		return mmc_blk_ioctl_multi_cmd(bdev,
				(struct mmc_ioc_multi_cmd __user *)arg);
	default:
		return -EINVAL;
	}
708 709 710 711 712 713 714 715 716 717
}

#ifdef CONFIG_COMPAT
static int mmc_blk_compat_ioctl(struct block_device *bdev, fmode_t mode,
	unsigned int cmd, unsigned long arg)
{
	return mmc_blk_ioctl(bdev, mode, cmd, (unsigned long) compat_ptr(arg));
}
#endif

718
static const struct block_device_operations mmc_bdops = {
A
Al Viro 已提交
719 720
	.open			= mmc_blk_open,
	.release		= mmc_blk_release,
721
	.getgeo			= mmc_blk_getgeo,
L
Linus Torvalds 已提交
722
	.owner			= THIS_MODULE,
723 724 725 726
	.ioctl			= mmc_blk_ioctl,
#ifdef CONFIG_COMPAT
	.compat_ioctl		= mmc_blk_compat_ioctl,
#endif
L
Linus Torvalds 已提交
727 728
};

729 730 731 732
static inline int mmc_blk_part_switch(struct mmc_card *card,
				      struct mmc_blk_data *md)
{
	int ret;
733
	struct mmc_blk_data *main_md = dev_get_drvdata(&card->dev);
734

735 736 737 738
	if (main_md->part_curr == md->part_type)
		return 0;

	if (mmc_card_mmc(card)) {
739 740
		u8 part_config = card->ext_csd.part_config;

741 742 743
		if (md->part_type == EXT_CSD_PART_CONFIG_ACC_RPMB)
			mmc_retune_pause(card->host);

744 745
		part_config &= ~EXT_CSD_PART_CONFIG_ACC_MASK;
		part_config |= md->part_type;
746 747

		ret = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
748
				 EXT_CSD_PART_CONFIG, part_config,
749
				 card->ext_csd.part_time);
750 751 752
		if (ret) {
			if (md->part_type == EXT_CSD_PART_CONFIG_ACC_RPMB)
				mmc_retune_unpause(card->host);
753
			return ret;
754
		}
755 756

		card->ext_csd.part_config = part_config;
757 758 759

		if (main_md->part_curr == EXT_CSD_PART_CONFIG_ACC_RPMB)
			mmc_retune_unpause(card->host);
760
	}
761 762 763 764 765

	main_md->part_curr = md->part_type;
	return 0;
}

766
static int mmc_sd_num_wr_blocks(struct mmc_card *card, u32 *written_blocks)
767 768
{
	int err;
B
Ben Dooks 已提交
769 770
	u32 result;
	__be32 *blocks;
771

772 773 774
	struct mmc_request mrq = {};
	struct mmc_command cmd = {};
	struct mmc_data data = {};
775 776 777 778 779

	struct scatterlist sg;

	cmd.opcode = MMC_APP_CMD;
	cmd.arg = card->rca << 16;
D
David Brownell 已提交
780
	cmd.flags = MMC_RSP_SPI_R1 | MMC_RSP_R1 | MMC_CMD_AC;
781 782

	err = mmc_wait_for_cmd(card->host, &cmd, 0);
D
David Brownell 已提交
783
	if (err)
784
		return err;
D
David Brownell 已提交
785
	if (!mmc_host_is_spi(card->host) && !(cmd.resp[0] & R1_APP_CMD))
786
		return -EIO;
787 788 789 790 791

	memset(&cmd, 0, sizeof(struct mmc_command));

	cmd.opcode = SD_APP_SEND_NUM_WR_BLKS;
	cmd.arg = 0;
D
David Brownell 已提交
792
	cmd.flags = MMC_RSP_SPI_R1 | MMC_RSP_R1 | MMC_CMD_ADTC;
793 794 795 796 797 798

	data.blksz = 4;
	data.blocks = 1;
	data.flags = MMC_DATA_READ;
	data.sg = &sg;
	data.sg_len = 1;
799
	mmc_set_data_timeout(&data, card);
800 801 802 803

	mrq.cmd = &cmd;
	mrq.data = &data;

B
Ben Dooks 已提交
804 805
	blocks = kmalloc(4, GFP_KERNEL);
	if (!blocks)
806
		return -ENOMEM;
B
Ben Dooks 已提交
807 808

	sg_init_one(&sg, blocks, 4);
809 810 811

	mmc_wait_for_req(card->host, &mrq);

B
Ben Dooks 已提交
812 813 814
	result = ntohl(*blocks);
	kfree(blocks);

P
Pierre Ossman 已提交
815
	if (cmd.error || data.error)
816 817 818
		return -EIO;

	*written_blocks = result;
819

820
	return 0;
821 822
}

823
static int get_card_status(struct mmc_card *card, u32 *status, int retries)
824
{
825
	struct mmc_command cmd = {};
826 827 828 829 830 831
	int err;

	cmd.opcode = MMC_SEND_STATUS;
	if (!mmc_host_is_spi(card->host))
		cmd.arg = card->rca << 16;
	cmd.flags = MMC_RSP_SPI_R2 | MMC_RSP_R1 | MMC_CMD_AC;
832 833 834 835
	err = mmc_wait_for_cmd(card->host, &cmd, retries);
	if (err == 0)
		*status = cmd.resp[0];
	return err;
836 837
}

838
static int card_busy_detect(struct mmc_card *card, unsigned int timeout_ms,
839
		bool hw_busy_detect, struct request *req, bool *gen_err)
840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855
{
	unsigned long timeout = jiffies + msecs_to_jiffies(timeout_ms);
	int err = 0;
	u32 status;

	do {
		err = get_card_status(card, &status, 5);
		if (err) {
			pr_err("%s: error %d requesting status\n",
			       req->rq_disk->disk_name, err);
			return err;
		}

		if (status & R1_ERROR) {
			pr_err("%s: %s: error sending status cmd, status %#x\n",
				req->rq_disk->disk_name, __func__, status);
856
			*gen_err = true;
857 858
		}

859 860 861 862 863
		/* We may rely on the host hw to handle busy detection.*/
		if ((card->host->caps & MMC_CAP_WAIT_WHILE_BUSY) &&
			hw_busy_detect)
			break;

864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885
		/*
		 * Timeout if the device never becomes ready for data and never
		 * leaves the program state.
		 */
		if (time_after(jiffies, timeout)) {
			pr_err("%s: Card stuck in programming state! %s %s\n",
				mmc_hostname(card->host),
				req->rq_disk->disk_name, __func__);
			return -ETIMEDOUT;
		}

		/*
		 * Some cards mishandle the status bits,
		 * so make sure to check both the busy
		 * indication and the card state.
		 */
	} while (!(status & R1_READY_FOR_DATA) ||
		 (R1_CURRENT_STATE(status) == R1_STATE_PRG));

	return err;
}

886
static int send_stop(struct mmc_card *card, unsigned int timeout_ms,
887
		struct request *req, bool *gen_err, u32 *stop_status)
888 889
{
	struct mmc_host *host = card->host;
890
	struct mmc_command cmd = {};
891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924
	int err;
	bool use_r1b_resp = rq_data_dir(req) == WRITE;

	/*
	 * Normally we use R1B responses for WRITE, but in cases where the host
	 * has specified a max_busy_timeout we need to validate it. A failure
	 * means we need to prevent the host from doing hw busy detection, which
	 * is done by converting to a R1 response instead.
	 */
	if (host->max_busy_timeout && (timeout_ms > host->max_busy_timeout))
		use_r1b_resp = false;

	cmd.opcode = MMC_STOP_TRANSMISSION;
	if (use_r1b_resp) {
		cmd.flags = MMC_RSP_SPI_R1B | MMC_RSP_R1B | MMC_CMD_AC;
		cmd.busy_timeout = timeout_ms;
	} else {
		cmd.flags = MMC_RSP_SPI_R1 | MMC_RSP_R1 | MMC_CMD_AC;
	}

	err = mmc_wait_for_cmd(host, &cmd, 5);
	if (err)
		return err;

	*stop_status = cmd.resp[0];

	/* No need to check card status in case of READ. */
	if (rq_data_dir(req) == READ)
		return 0;

	if (!mmc_host_is_spi(host) &&
		(*stop_status & R1_ERROR)) {
		pr_err("%s: %s: general error sending stop command, resp %#x\n",
			req->rq_disk->disk_name, __func__, *stop_status);
925
		*gen_err = true;
926 927 928 929 930
	}

	return card_busy_detect(card, timeout_ms, use_r1b_resp, req, gen_err);
}

931
#define ERR_NOMEDIUM	3
932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951
#define ERR_RETRY	2
#define ERR_ABORT	1
#define ERR_CONTINUE	0

static int mmc_blk_cmd_error(struct request *req, const char *name, int error,
	bool status_valid, u32 status)
{
	switch (error) {
	case -EILSEQ:
		/* response crc error, retry the r/w cmd */
		pr_err("%s: %s sending %s command, card status %#x\n",
			req->rq_disk->disk_name, "response CRC error",
			name, status);
		return ERR_RETRY;

	case -ETIMEDOUT:
		pr_err("%s: %s sending %s command, card status %#x\n",
			req->rq_disk->disk_name, "timed out", name, status);

		/* If the status cmd initially failed, retry the r/w cmd */
952 953 954
		if (!status_valid) {
			pr_err("%s: status not valid, retrying timeout\n",
				req->rq_disk->disk_name);
955
			return ERR_RETRY;
956
		}
957 958 959 960 961 962

		/*
		 * If it was a r/w cmd crc error, or illegal command
		 * (eg, issued in wrong state) then retry - we should
		 * have corrected the state problem above.
		 */
963 964 965
		if (status & (R1_COM_CRC_ERROR | R1_ILLEGAL_COMMAND)) {
			pr_err("%s: command error, retrying timeout\n",
				req->rq_disk->disk_name);
966
			return ERR_RETRY;
967
		}
968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998

		/* Otherwise abort the command */
		return ERR_ABORT;

	default:
		/* We don't understand the error code the driver gave us */
		pr_err("%s: unknown error %d sending read/write command, card status %#x\n",
		       req->rq_disk->disk_name, error, status);
		return ERR_ABORT;
	}
}

/*
 * Initial r/w and stop cmd error recovery.
 * We don't know whether the card received the r/w cmd or not, so try to
 * restore things back to a sane state.  Essentially, we do this as follows:
 * - Obtain card status.  If the first attempt to obtain card status fails,
 *   the status word will reflect the failed status cmd, not the failed
 *   r/w cmd.  If we fail to obtain card status, it suggests we can no
 *   longer communicate with the card.
 * - Check the card state.  If the card received the cmd but there was a
 *   transient problem with the response, it might still be in a data transfer
 *   mode.  Try to send it a stop command.  If this fails, we can't recover.
 * - If the r/w cmd failed due to a response CRC error, it was probably
 *   transient, so retry the cmd.
 * - If the r/w cmd timed out, but we didn't get the r/w cmd status, retry.
 * - If the r/w cmd timed out, and the r/w cmd failed due to CRC error or
 *   illegal cmd, retry.
 * Otherwise we don't understand what happened, so abort.
 */
static int mmc_blk_cmd_recovery(struct mmc_card *card, struct request *req,
999
	struct mmc_blk_request *brq, bool *ecc_err, bool *gen_err)
1000 1001 1002 1003 1004
{
	bool prev_cmd_status_valid = true;
	u32 status, stop_status = 0;
	int err, retry;

1005 1006 1007
	if (mmc_card_removed(card))
		return ERR_NOMEDIUM;

1008 1009 1010 1011 1012 1013 1014 1015 1016 1017
	/*
	 * Try to get card status which indicates both the card state
	 * and why there was no response.  If the first attempt fails,
	 * we can't be sure the returned status is for the r/w command.
	 */
	for (retry = 2; retry >= 0; retry--) {
		err = get_card_status(card, &status, 0);
		if (!err)
			break;

1018 1019 1020
		/* Re-tune if needed */
		mmc_retune_recheck(card->host);

1021 1022 1023 1024 1025 1026
		prev_cmd_status_valid = false;
		pr_err("%s: error %d sending status command, %sing\n",
		       req->rq_disk->disk_name, err, retry ? "retry" : "abort");
	}

	/* We couldn't get a response from the card.  Give up. */
1027 1028 1029 1030
	if (err) {
		/* Check if the card is removed */
		if (mmc_detect_card_removed(card->host))
			return ERR_NOMEDIUM;
1031
		return ERR_ABORT;
1032
	}
1033

1034 1035 1036 1037
	/* Flag ECC errors */
	if ((status & R1_CARD_ECC_FAILED) ||
	    (brq->stop.resp[0] & R1_CARD_ECC_FAILED) ||
	    (brq->cmd.resp[0] & R1_CARD_ECC_FAILED))
1038
		*ecc_err = true;
1039

1040 1041 1042 1043 1044 1045 1046
	/* Flag General errors */
	if (!mmc_host_is_spi(card->host) && rq_data_dir(req) != READ)
		if ((status & R1_ERROR) ||
			(brq->stop.resp[0] & R1_ERROR)) {
			pr_err("%s: %s: general error sending stop or status command, stop cmd response %#x, card status %#x\n",
			       req->rq_disk->disk_name, __func__,
			       brq->stop.resp[0], status);
1047
			*gen_err = true;
1048 1049
		}

1050 1051 1052 1053 1054 1055
	/*
	 * Check the current card state.  If it is in some data transfer
	 * mode, tell it to stop (and hopefully transition back to TRAN.)
	 */
	if (R1_CURRENT_STATE(status) == R1_STATE_DATA ||
	    R1_CURRENT_STATE(status) == R1_STATE_RCV) {
1056 1057 1058 1059
		err = send_stop(card,
			DIV_ROUND_UP(brq->data.timeout_ns, 1000000),
			req, gen_err, &stop_status);
		if (err) {
1060 1061
			pr_err("%s: error %d sending stop command\n",
			       req->rq_disk->disk_name, err);
1062 1063 1064 1065
			/*
			 * If the stop cmd also timed out, the card is probably
			 * not present, so abort. Other errors are bad news too.
			 */
1066
			return ERR_ABORT;
1067 1068
		}

1069
		if (stop_status & R1_CARD_ECC_FAILED)
1070
			*ecc_err = true;
1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082
	}

	/* Check for set block count errors */
	if (brq->sbc.error)
		return mmc_blk_cmd_error(req, "SET_BLOCK_COUNT", brq->sbc.error,
				prev_cmd_status_valid, status);

	/* Check for r/w command errors */
	if (brq->cmd.error)
		return mmc_blk_cmd_error(req, "r/w cmd", brq->cmd.error,
				prev_cmd_status_valid, status);

1083 1084 1085 1086
	/* Data errors */
	if (!brq->stop.error)
		return ERR_CONTINUE;

1087
	/* Now for stop errors.  These aren't fatal to the transfer. */
1088
	pr_info("%s: error %d sending stop command, original cmd response %#x, card status %#x\n",
1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102
	       req->rq_disk->disk_name, brq->stop.error,
	       brq->cmd.resp[0], status);

	/*
	 * Subsitute in our own stop status as this will give the error
	 * state which happened during the execution of the r/w command.
	 */
	if (stop_status) {
		brq->stop.resp[0] = stop_status;
		brq->stop.error = 0;
	}
	return ERR_CONTINUE;
}

1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114
static int mmc_blk_reset(struct mmc_blk_data *md, struct mmc_host *host,
			 int type)
{
	int err;

	if (md->reset_done & type)
		return -EEXIST;

	md->reset_done |= type;
	err = mmc_hw_reset(host);
	/* Ensure we switch back to the correct partition */
	if (err != -EOPNOTSUPP) {
1115 1116
		struct mmc_blk_data *main_md =
			dev_get_drvdata(&host->card->dev);
1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136
		int part_err;

		main_md->part_curr = main_md->part_type;
		part_err = mmc_blk_part_switch(host->card, md);
		if (part_err) {
			/*
			 * We have failed to get back into the correct
			 * partition, so we need to abort the whole request.
			 */
			return -ENODEV;
		}
	}
	return err;
}

static inline void mmc_blk_reset_success(struct mmc_blk_data *md, int type)
{
	md->reset_done &= ~type;
}

1137 1138
int mmc_access_rpmb(struct mmc_queue *mq)
{
L
Linus Walleij 已提交
1139
	struct mmc_blk_data *md = mq->blkdata;
1140 1141 1142 1143 1144 1145 1146 1147 1148
	/*
	 * If this is a RPMB partition access, return ture
	 */
	if (md && md->part_type == EXT_CSD_PART_CONFIG_ACC_RPMB)
		return true;

	return false;
}

1149
static void mmc_blk_issue_discard_rq(struct mmc_queue *mq, struct request *req)
A
Adrian Hunter 已提交
1150
{
L
Linus Walleij 已提交
1151
	struct mmc_blk_data *md = mq->blkdata;
A
Adrian Hunter 已提交
1152 1153
	struct mmc_card *card = md->queue.card;
	unsigned int from, nr, arg;
1154
	int err = 0, type = MMC_BLK_DISCARD;
A
Adrian Hunter 已提交
1155 1156 1157

	if (!mmc_can_erase(card)) {
		err = -EOPNOTSUPP;
1158
		goto fail;
A
Adrian Hunter 已提交
1159 1160 1161 1162 1163
	}

	from = blk_rq_pos(req);
	nr = blk_rq_sectors(req);

1164 1165 1166
	if (mmc_can_discard(card))
		arg = MMC_DISCARD_ARG;
	else if (mmc_can_trim(card))
A
Adrian Hunter 已提交
1167 1168 1169
		arg = MMC_TRIM_ARG;
	else
		arg = MMC_ERASE_ARG;
1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182
	do {
		err = 0;
		if (card->quirks & MMC_QUIRK_INAND_CMD38) {
			err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
					 INAND_CMD38_ARG_EXT_CSD,
					 arg == MMC_TRIM_ARG ?
					 INAND_CMD38_ARG_TRIM :
					 INAND_CMD38_ARG_ERASE,
					 0);
		}
		if (!err)
			err = mmc_erase(card, from, nr, arg);
	} while (err == -EIO && !mmc_blk_reset(md, card->host, type));
1183 1184
	if (!err)
		mmc_blk_reset_success(md, type);
1185
fail:
1186
	blk_end_request(req, err, blk_rq_bytes(req));
A
Adrian Hunter 已提交
1187 1188
}

1189
static void mmc_blk_issue_secdiscard_rq(struct mmc_queue *mq,
1190 1191
				       struct request *req)
{
L
Linus Walleij 已提交
1192
	struct mmc_blk_data *md = mq->blkdata;
1193
	struct mmc_card *card = md->queue.card;
1194
	unsigned int from, nr, arg;
1195
	int err = 0, type = MMC_BLK_SECDISCARD;
1196

1197
	if (!(mmc_can_secure_erase_trim(card))) {
1198 1199 1200 1201
		err = -EOPNOTSUPP;
		goto out;
	}

1202 1203 1204
	from = blk_rq_pos(req);
	nr = blk_rq_sectors(req);

1205 1206 1207 1208
	if (mmc_can_trim(card) && !mmc_erase_group_aligned(card, from, nr))
		arg = MMC_SECURE_TRIM1_ARG;
	else
		arg = MMC_SECURE_ERASE_ARG;
1209

1210
retry:
1211 1212 1213 1214 1215 1216 1217 1218
	if (card->quirks & MMC_QUIRK_INAND_CMD38) {
		err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
				 INAND_CMD38_ARG_EXT_CSD,
				 arg == MMC_SECURE_TRIM1_ARG ?
				 INAND_CMD38_ARG_SECTRIM1 :
				 INAND_CMD38_ARG_SECERASE,
				 0);
		if (err)
1219
			goto out_retry;
1220
	}
1221

1222
	err = mmc_erase(card, from, nr, arg);
1223 1224 1225 1226 1227 1228
	if (err == -EIO)
		goto out_retry;
	if (err)
		goto out;

	if (arg == MMC_SECURE_TRIM1_ARG) {
1229 1230 1231 1232 1233 1234
		if (card->quirks & MMC_QUIRK_INAND_CMD38) {
			err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
					 INAND_CMD38_ARG_EXT_CSD,
					 INAND_CMD38_ARG_SECTRIM2,
					 0);
			if (err)
1235
				goto out_retry;
1236
		}
1237

1238
		err = mmc_erase(card, from, nr, MMC_SECURE_TRIM2_ARG);
1239 1240 1241 1242
		if (err == -EIO)
			goto out_retry;
		if (err)
			goto out;
1243
	}
1244 1245 1246

out_retry:
	if (err && !mmc_blk_reset(md, card->host, type))
1247 1248 1249
		goto retry;
	if (!err)
		mmc_blk_reset_success(md, type);
1250
out:
1251
	blk_end_request(req, err, blk_rq_bytes(req));
1252 1253
}

1254
static void mmc_blk_issue_flush(struct mmc_queue *mq, struct request *req)
A
Andrei Warkentin 已提交
1255
{
L
Linus Walleij 已提交
1256
	struct mmc_blk_data *md = mq->blkdata;
1257 1258 1259 1260 1261 1262
	struct mmc_card *card = md->queue.card;
	int ret = 0;

	ret = mmc_flush_cache(card);
	if (ret)
		ret = -EIO;
A
Andrei Warkentin 已提交
1263

1264
	blk_end_request_all(req, ret);
A
Andrei Warkentin 已提交
1265 1266 1267 1268 1269 1270 1271 1272 1273
}

/*
 * Reformat current write as a reliable write, supporting
 * both legacy and the enhanced reliable write MMC cards.
 * In each transfer we'll handle only as much as a single
 * reliable write can handle, thus finish the request in
 * partial completions.
 */
1274 1275 1276
static inline void mmc_apply_rel_rw(struct mmc_blk_request *brq,
				    struct mmc_card *card,
				    struct request *req)
A
Andrei Warkentin 已提交
1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289
{
	if (!(card->ext_csd.rel_param & EXT_CSD_WR_REL_PARAM_EN)) {
		/* Legacy mode imposes restrictions on transfers. */
		if (!IS_ALIGNED(brq->cmd.arg, card->ext_csd.rel_sectors))
			brq->data.blocks = 1;

		if (brq->data.blocks > card->ext_csd.rel_sectors)
			brq->data.blocks = card->ext_csd.rel_sectors;
		else if (brq->data.blocks < card->ext_csd.rel_sectors)
			brq->data.blocks = 1;
	}
}

1290 1291 1292 1293 1294 1295 1296 1297
#define CMD_ERRORS							\
	(R1_OUT_OF_RANGE |	/* Command argument out of range */	\
	 R1_ADDRESS_ERROR |	/* Misaligned address */		\
	 R1_BLOCK_LEN_ERROR |	/* Transferred block length incorrect */\
	 R1_WP_VIOLATION |	/* Tried to write to protected block */	\
	 R1_CC_ERROR |		/* Card controller error */		\
	 R1_ERROR)		/* General/unknown error */

1298 1299
static enum mmc_blk_status mmc_blk_err_check(struct mmc_card *card,
					     struct mmc_async_req *areq)
1300
{
1301
	struct mmc_queue_req *mq_mrq = container_of(areq, struct mmc_queue_req,
1302
						    areq);
1303 1304
	struct mmc_blk_request *brq = &mq_mrq->brq;
	struct request *req = mq_mrq->req;
1305
	int need_retune = card->host->need_retune;
1306
	bool ecc_err = false;
1307
	bool gen_err = false;
1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318

	/*
	 * sbc.error indicates a problem with the set block count
	 * command.  No data will have been transferred.
	 *
	 * cmd.error indicates a problem with the r/w command.  No
	 * data will have been transferred.
	 *
	 * stop.error indicates a problem with the stop command.  Data
	 * may have been transferred, or may still be transferring.
	 */
1319 1320
	if (brq->sbc.error || brq->cmd.error || brq->stop.error ||
	    brq->data.error) {
1321
		switch (mmc_blk_cmd_recovery(card, req, brq, &ecc_err, &gen_err)) {
1322 1323 1324 1325
		case ERR_RETRY:
			return MMC_BLK_RETRY;
		case ERR_ABORT:
			return MMC_BLK_ABORT;
1326 1327
		case ERR_NOMEDIUM:
			return MMC_BLK_NOMEDIUM;
1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349
		case ERR_CONTINUE:
			break;
		}
	}

	/*
	 * Check for errors relating to the execution of the
	 * initial command - such as address errors.  No data
	 * has been transferred.
	 */
	if (brq->cmd.resp[0] & CMD_ERRORS) {
		pr_err("%s: r/w command failed, status = %#x\n",
		       req->rq_disk->disk_name, brq->cmd.resp[0]);
		return MMC_BLK_ABORT;
	}

	/*
	 * Everything else is either success, or a data error of some
	 * kind.  If it was a write, we may have transitioned to
	 * program mode, which we have to wait for it to complete.
	 */
	if (!mmc_host_is_spi(card->host) && rq_data_dir(req) != READ) {
1350
		int err;
1351

1352 1353 1354 1355 1356
		/* Check stop command response */
		if (brq->stop.resp[0] & R1_ERROR) {
			pr_err("%s: %s: general error sending stop command, stop cmd response %#x\n",
			       req->rq_disk->disk_name, __func__,
			       brq->stop.resp[0]);
1357
			gen_err = true;
1358 1359
		}

1360 1361
		err = card_busy_detect(card, MMC_BLK_TIMEOUT_MS, false, req,
					&gen_err);
1362 1363
		if (err)
			return MMC_BLK_CMD_ERR;
1364 1365
	}

1366 1367 1368 1369 1370 1371 1372
	/* if general error occurs, retry the write operation. */
	if (gen_err) {
		pr_warn("%s: retrying write for general error\n",
				req->rq_disk->disk_name);
		return MMC_BLK_RETRY;
	}

1373
	if (brq->data.error) {
1374
		if (need_retune && !brq->retune_retry_done) {
1375 1376
			pr_debug("%s: retrying because a re-tune was needed\n",
				 req->rq_disk->disk_name);
1377 1378 1379
			brq->retune_retry_done = 1;
			return MMC_BLK_RETRY;
		}
1380 1381 1382 1383 1384 1385 1386
		pr_err("%s: error %d transferring data, sector %u, nr %u, cmd response %#x, card status %#x\n",
		       req->rq_disk->disk_name, brq->data.error,
		       (unsigned)blk_rq_pos(req),
		       (unsigned)blk_rq_sectors(req),
		       brq->cmd.resp[0], brq->stop.resp[0]);

		if (rq_data_dir(req) == READ) {
1387 1388
			if (ecc_err)
				return MMC_BLK_ECC_ERR;
1389 1390 1391 1392 1393 1394
			return MMC_BLK_DATA_ERR;
		} else {
			return MMC_BLK_CMD_ERR;
		}
	}

1395 1396
	if (!brq->data.bytes_xfered)
		return MMC_BLK_RETRY;
1397

1398 1399 1400 1401
	if (blk_rq_bytes(req) != brq->data.bytes_xfered)
		return MMC_BLK_PARTIAL;

	return MMC_BLK_SUCCESS;
1402 1403
}

1404 1405 1406 1407
static void mmc_blk_rw_rq_prep(struct mmc_queue_req *mqrq,
			       struct mmc_card *card,
			       int disable_multi,
			       struct mmc_queue *mq)
L
Linus Torvalds 已提交
1408
{
1409 1410 1411
	u32 readcmd, writecmd;
	struct mmc_blk_request *brq = &mqrq->brq;
	struct request *req = mqrq->req;
L
Linus Walleij 已提交
1412
	struct mmc_blk_data *md = mq->blkdata;
S
Saugata Das 已提交
1413
	bool do_data_tag;
L
Linus Torvalds 已提交
1414

A
Andrei Warkentin 已提交
1415 1416
	/*
	 * Reliable writes are used to implement Forced Unit Access and
1417
	 * are supported only on MMCs.
A
Andrei Warkentin 已提交
1418
	 */
1419
	bool do_rel_wr = (req->cmd_flags & REQ_FUA) &&
A
Andrei Warkentin 已提交
1420
		(rq_data_dir(req) == WRITE) &&
1421
		(md->flags & MMC_BLK_REL_WR);
A
Andrei Warkentin 已提交
1422

1423 1424 1425
	memset(brq, 0, sizeof(struct mmc_blk_request));
	brq->mrq.cmd = &brq->cmd;
	brq->mrq.data = &brq->data;
L
Linus Torvalds 已提交
1426

1427 1428 1429 1430 1431 1432 1433 1434
	brq->cmd.arg = blk_rq_pos(req);
	if (!mmc_card_blockaddr(card))
		brq->cmd.arg <<= 9;
	brq->cmd.flags = MMC_RSP_SPI_R1 | MMC_RSP_R1 | MMC_CMD_ADTC;
	brq->data.blksz = 512;
	brq->stop.opcode = MMC_STOP_TRANSMISSION;
	brq->stop.arg = 0;
	brq->data.blocks = blk_rq_sectors(req);
1435

1436 1437 1438 1439 1440 1441 1442
	/*
	 * The block layer doesn't support all sector count
	 * restrictions, so we need to be prepared for too big
	 * requests.
	 */
	if (brq->data.blocks > card->host->max_blk_count)
		brq->data.blocks = card->host->max_blk_count;
L
Linus Torvalds 已提交
1443

1444 1445 1446 1447 1448 1449 1450 1451 1452
	if (brq->data.blocks > 1) {
		/*
		 * After a read error, we redo the request one sector
		 * at a time in order to accurately determine which
		 * sectors can be read successfully.
		 */
		if (disable_multi)
			brq->data.blocks = 1;

1453 1454 1455 1456 1457 1458 1459 1460 1461
		/*
		 * Some controllers have HW issues while operating
		 * in multiple I/O mode
		 */
		if (card->host->ops->multi_io_quirk)
			brq->data.blocks = card->host->ops->multi_io_quirk(card,
						(rq_data_dir(req) == READ) ?
						MMC_DATA_READ : MMC_DATA_WRITE,
						brq->data.blocks);
1462
	}
1463

1464 1465 1466
	if (brq->data.blocks > 1 || do_rel_wr) {
		/* SPI multiblock writes terminate using a special
		 * token, not a STOP_TRANSMISSION request.
1467
		 */
1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479
		if (!mmc_host_is_spi(card->host) ||
		    rq_data_dir(req) == READ)
			brq->mrq.stop = &brq->stop;
		readcmd = MMC_READ_MULTIPLE_BLOCK;
		writecmd = MMC_WRITE_MULTIPLE_BLOCK;
	} else {
		brq->mrq.stop = NULL;
		readcmd = MMC_READ_SINGLE_BLOCK;
		writecmd = MMC_WRITE_BLOCK;
	}
	if (rq_data_dir(req) == READ) {
		brq->cmd.opcode = readcmd;
1480
		brq->data.flags = MMC_DATA_READ;
1481 1482 1483
		if (brq->mrq.stop)
			brq->stop.flags = MMC_RSP_SPI_R1 | MMC_RSP_R1 |
					MMC_CMD_AC;
1484 1485
	} else {
		brq->cmd.opcode = writecmd;
1486
		brq->data.flags = MMC_DATA_WRITE;
1487 1488 1489
		if (brq->mrq.stop)
			brq->stop.flags = MMC_RSP_SPI_R1B | MMC_RSP_R1B |
					MMC_CMD_AC;
1490
	}
1491

1492 1493
	if (do_rel_wr)
		mmc_apply_rel_rw(brq, card, req);
A
Andrei Warkentin 已提交
1494

S
Saugata Das 已提交
1495 1496 1497 1498 1499 1500 1501 1502 1503 1504
	/*
	 * Data tag is used only during writing meta data to speed
	 * up write and any subsequent read of this meta data
	 */
	do_data_tag = (card->ext_csd.data_tag_unit_size) &&
		(req->cmd_flags & REQ_META) &&
		(rq_data_dir(req) == WRITE) &&
		((brq->data.blocks * brq->data.blksz) >=
		 card->ext_csd.data_tag_unit_size);

1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522
	/*
	 * Pre-defined multi-block transfers are preferable to
	 * open ended-ones (and necessary for reliable writes).
	 * However, it is not sufficient to just send CMD23,
	 * and avoid the final CMD12, as on an error condition
	 * CMD12 (stop) needs to be sent anyway. This, coupled
	 * with Auto-CMD23 enhancements provided by some
	 * hosts, means that the complexity of dealing
	 * with this is best left to the host. If CMD23 is
	 * supported by card and host, we'll fill sbc in and let
	 * the host deal with handling it correctly. This means
	 * that for hosts that don't expose MMC_CAP_CMD23, no
	 * change of behavior will be observed.
	 *
	 * N.B: Some MMC cards experience perf degradation.
	 * We'll avoid using CMD23-bounded multiblock writes for
	 * these, while retaining features like reliable writes.
	 */
S
Saugata Das 已提交
1523 1524 1525
	if ((md->flags & MMC_BLK_CMD23) && mmc_op_multi(brq->cmd.opcode) &&
	    (do_rel_wr || !(card->quirks & MMC_QUIRK_BLK_NO_CMD23) ||
	     do_data_tag)) {
1526 1527
		brq->sbc.opcode = MMC_SET_BLOCK_COUNT;
		brq->sbc.arg = brq->data.blocks |
S
Saugata Das 已提交
1528 1529
			(do_rel_wr ? (1 << 31) : 0) |
			(do_data_tag ? (1 << 29) : 0);
1530 1531 1532
		brq->sbc.flags = MMC_RSP_R1 | MMC_CMD_AC;
		brq->mrq.sbc = &brq->sbc;
	}
1533

1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552
	mmc_set_data_timeout(&brq->data, card);

	brq->data.sg = mqrq->sg;
	brq->data.sg_len = mmc_queue_map_sg(mq, mqrq);

	/*
	 * Adjust the sg list so it is the same size as the
	 * request.
	 */
	if (brq->data.blocks != blk_rq_sectors(req)) {
		int i, data_size = brq->data.blocks << 9;
		struct scatterlist *sg;

		for_each_sg(brq->data.sg, sg, brq->data.sg_len, i) {
			data_size -= sg->length;
			if (data_size <= 0) {
				sg->length += data_size;
				i++;
				break;
1553 1554
			}
		}
1555 1556 1557
		brq->data.sg_len = i;
	}

1558 1559
	mqrq->areq.mrq = &brq->mrq;
	mqrq->areq.err_check = mmc_blk_err_check;
1560

1561 1562
	mmc_queue_bounce_pre(mqrq);
}
1563

1564 1565 1566
static bool mmc_blk_rw_cmd_err(struct mmc_blk_data *md, struct mmc_card *card,
			       struct mmc_blk_request *brq, struct request *req,
			       bool old_req_pending)
1567
{
1568
	struct mmc_queue_req *mq_rq;
1569 1570
	bool req_pending;

1571 1572
	mq_rq = container_of(brq, struct mmc_queue_req, brq);

1573 1574 1575 1576 1577 1578 1579 1580 1581 1582
	/*
	 * If this is an SD card and we're writing, we can first
	 * mark the known good sectors as ok.
	 *
	 * If the card is not SD, we can still ok written sectors
	 * as reported by the controller (which might be less than
	 * the real number of written sectors, but never more).
	 */
	if (mmc_card_sd(card)) {
		u32 blocks;
1583
		int err;
1584

1585
		err = mmc_sd_num_wr_blocks(card, &blocks);
1586 1587 1588 1589
		if (err)
			req_pending = old_req_pending;
		else
			req_pending = blk_end_request(req, 0, blocks << 9);
1590
	} else {
1591
		req_pending = blk_end_request(req, 0, brq->data.bytes_xfered);
1592
	}
1593
	return req_pending;
1594 1595
}

1596 1597 1598 1599
static void mmc_blk_rw_cmd_abort(struct mmc_card *card, struct request *req)
{
	if (mmc_card_removed(card))
		req->rq_flags |= RQF_QUIET;
1600
	while (blk_end_request(req, -EIO, blk_rq_cur_bytes(req)));
1601 1602
}

1603 1604 1605 1606 1607 1608
/**
 * mmc_blk_rw_try_restart() - tries to restart the current async request
 * @mq: the queue with the card and host to restart
 * @req: a new request that want to be started after the current one
 */
static void mmc_blk_rw_try_restart(struct mmc_queue *mq, struct request *req)
1609 1610 1611 1612
{
	if (!req)
		return;

1613 1614 1615 1616
	/*
	 * If the card was removed, just cancel everything and return.
	 */
	if (mmc_card_removed(mq->card)) {
1617 1618
		req->rq_flags |= RQF_QUIET;
		blk_end_request_all(req, -EIO);
1619
		return;
1620
	}
1621 1622
	/* Else proceed and try to restart the current async request */
	mmc_blk_rw_rq_prep(mq->mqrq_cur, mq->card, 0, mq);
1623
	mmc_start_areq(mq->card->host, &mq->mqrq_cur->areq, NULL);
1624 1625
}

L
Linus Walleij 已提交
1626
static void mmc_blk_issue_rw_rq(struct mmc_queue *mq, struct request *new_req)
1627
{
L
Linus Walleij 已提交
1628
	struct mmc_blk_data *md = mq->blkdata;
1629
	struct mmc_card *card = md->queue.card;
1630
	struct mmc_blk_request *brq;
1631
	int disable_multi = 0, retry = 0, type, retune_retry_done = 0;
1632
	enum mmc_blk_status status;
1633
	struct mmc_queue_req *mq_rq;
L
Linus Walleij 已提交
1634
	struct request *old_req;
1635 1636
	struct mmc_async_req *new_areq;
	struct mmc_async_req *old_areq;
1637
	bool req_pending = true;
L
Linus Torvalds 已提交
1638

L
Linus Walleij 已提交
1639
	if (!new_req && !mq->mqrq_prev->req)
1640
		return;
1641

1642
	do {
L
Linus Walleij 已提交
1643
		if (new_req) {
1644 1645 1646 1647
			/*
			 * When 4KB native sector is enabled, only 8 blocks
			 * multiple read or write is allowed
			 */
1648
			if (mmc_large_sector(card) &&
L
Linus Walleij 已提交
1649
				!IS_ALIGNED(blk_rq_sectors(new_req), 8)) {
1650
				pr_err("%s: Transfer size is not 4KB sector size aligned\n",
L
Linus Walleij 已提交
1651 1652
					new_req->rq_disk->disk_name);
				mmc_blk_rw_cmd_abort(card, new_req);
1653
				return;
1654
			}
1655

1656
			mmc_blk_rw_rq_prep(mq->mqrq_cur, card, 0, mq);
1657
			new_areq = &mq->mqrq_cur->areq;
1658
		} else
1659 1660
			new_areq = NULL;

1661
		old_areq = mmc_start_areq(card->host, new_areq, &status);
1662
		if (!old_areq) {
1663 1664 1665 1666 1667
			/*
			 * We have just put the first request into the pipeline
			 * and there is nothing more to do until it is
			 * complete.
			 */
1668
			if (status == MMC_BLK_NEW_REQUEST)
1669
				mq->new_request = true;
1670
			return;
1671
		}
1672

1673 1674 1675 1676
		/*
		 * An asynchronous request has been completed and we proceed
		 * to handle the result of it.
		 */
1677
		mq_rq =	container_of(old_areq, struct mmc_queue_req, areq);
1678
		brq = &mq_rq->brq;
L
Linus Walleij 已提交
1679 1680
		old_req = mq_rq->req;
		type = rq_data_dir(old_req) == READ ? MMC_BLK_READ : MMC_BLK_WRITE;
1681
		mmc_queue_bounce_post(mq_rq);
1682

1683 1684 1685 1686 1687 1688
		switch (status) {
		case MMC_BLK_SUCCESS:
		case MMC_BLK_PARTIAL:
			/*
			 * A block was successfully transferred.
			 */
1689
			mmc_blk_reset_success(md, type);
1690

1691 1692
			req_pending = blk_end_request(old_req, 0,
						      brq->data.bytes_xfered);
1693 1694 1695 1696 1697
			/*
			 * If the blk_end_request function returns non-zero even
			 * though all data has been transferred and no errors
			 * were returned by the host controller, it's a bug.
			 */
1698
			if (status == MMC_BLK_SUCCESS && req_pending) {
1699
				pr_err("%s BUG rq_tot %d d_xfer %d\n",
L
Linus Walleij 已提交
1700
				       __func__, blk_rq_bytes(old_req),
1701
				       brq->data.bytes_xfered);
L
Linus Walleij 已提交
1702
				mmc_blk_rw_cmd_abort(card, old_req);
1703
				return;
1704
			}
1705 1706
			break;
		case MMC_BLK_CMD_ERR:
1707
			req_pending = mmc_blk_rw_cmd_err(md, card, brq, old_req, req_pending);
1708
			if (mmc_blk_reset(md, card->host, type)) {
L
Linus Walleij 已提交
1709
				mmc_blk_rw_cmd_abort(card, old_req);
1710
				mmc_blk_rw_try_restart(mq, new_req);
1711 1712
				return;
			}
1713
			if (!req_pending) {
1714
				mmc_blk_rw_try_restart(mq, new_req);
1715 1716
				return;
			}
1717
			break;
1718
		case MMC_BLK_RETRY:
1719
			retune_retry_done = brq->retune_retry_done;
1720
			if (retry++ < 5)
1721
				break;
1722
			/* Fall through */
1723
		case MMC_BLK_ABORT:
1724 1725
			if (!mmc_blk_reset(md, card->host, type))
				break;
L
Linus Walleij 已提交
1726
			mmc_blk_rw_cmd_abort(card, old_req);
1727
			mmc_blk_rw_try_restart(mq, new_req);
1728
			return;
1729 1730 1731 1732 1733 1734
		case MMC_BLK_DATA_ERR: {
			int err;

			err = mmc_blk_reset(md, card->host, type);
			if (!err)
				break;
1735
			if (err == -ENODEV) {
L
Linus Walleij 已提交
1736
				mmc_blk_rw_cmd_abort(card, old_req);
1737
				mmc_blk_rw_try_restart(mq, new_req);
1738 1739
				return;
			}
1740 1741 1742 1743 1744
			/* Fall through */
		}
		case MMC_BLK_ECC_ERR:
			if (brq->data.blocks > 1) {
				/* Redo read one sector at a time */
J
Joe Perches 已提交
1745
				pr_warn("%s: retrying using single block read\n",
L
Linus Walleij 已提交
1746
					old_req->rq_disk->disk_name);
1747 1748 1749
				disable_multi = 1;
				break;
			}
1750 1751 1752 1753 1754
			/*
			 * After an error, we redo I/O one sector at a
			 * time, so we only reach here after trying to
			 * read a single sector.
			 */
1755 1756 1757
			req_pending = blk_end_request(old_req, -EIO,
						      brq->data.blksz);
			if (!req_pending) {
1758
				mmc_blk_rw_try_restart(mq, new_req);
1759 1760
				return;
			}
1761
			break;
1762
		case MMC_BLK_NOMEDIUM:
L
Linus Walleij 已提交
1763
			mmc_blk_rw_cmd_abort(card, old_req);
1764
			mmc_blk_rw_try_restart(mq, new_req);
1765
			return;
1766 1767
		default:
			pr_err("%s: Unhandled return value (%d)",
L
Linus Walleij 已提交
1768 1769
					old_req->rq_disk->disk_name, status);
			mmc_blk_rw_cmd_abort(card, old_req);
1770
			mmc_blk_rw_try_restart(mq, new_req);
1771
			return;
1772 1773
		}

1774
		if (req_pending) {
1775 1776 1777 1778 1779 1780
			/*
			 * In case of a incomplete request
			 * prepare it again and resend.
			 */
			mmc_blk_rw_rq_prep(mq_rq, card,
					disable_multi, mq);
1781
			mmc_start_areq(card->host,
1782
					&mq_rq->areq, NULL);
1783
			mq_rq->brq.retune_retry_done = retune_retry_done;
1784
		}
1785
	} while (req_pending);
L
Linus Torvalds 已提交
1786 1787
}

1788
void mmc_blk_issue_rq(struct mmc_queue *mq, struct request *req)
A
Adrian Hunter 已提交
1789
{
1790
	int ret;
L
Linus Walleij 已提交
1791
	struct mmc_blk_data *md = mq->blkdata;
1792
	struct mmc_card *card = md->queue.card;
1793
	bool req_is_special = mmc_req_is_special(req);
1794

1795 1796
	if (req && !mq->mqrq_prev->req)
		/* claim host only for the first request */
1797
		mmc_get_card(card);
1798

1799 1800
	ret = mmc_blk_part_switch(card, md);
	if (ret) {
1801
		if (req) {
1802
			blk_end_request_all(req, -EIO);
1803
		}
1804 1805
		goto out;
	}
1806

1807
	mq->new_request = false;
M
Mike Christie 已提交
1808
	if (req && req_op(req) == REQ_OP_DISCARD) {
1809 1810 1811
		/* complete ongoing async transfer before issuing discard */
		if (card->host->areq)
			mmc_blk_issue_rw_rq(mq, NULL);
1812
		mmc_blk_issue_discard_rq(mq, req);
1813 1814 1815 1816
	} else if (req && req_op(req) == REQ_OP_SECURE_ERASE) {
		/* complete ongoing async transfer before issuing secure erase*/
		if (card->host->areq)
			mmc_blk_issue_rw_rq(mq, NULL);
1817
		mmc_blk_issue_secdiscard_rq(mq, req);
1818
	} else if (req && req_op(req) == REQ_OP_FLUSH) {
1819 1820 1821
		/* complete ongoing async transfer before issuing flush */
		if (card->host->areq)
			mmc_blk_issue_rw_rq(mq, NULL);
1822
		mmc_blk_issue_flush(mq, req);
1823
	} else {
1824
		mmc_blk_issue_rw_rq(mq, req);
1825
	}
1826

1827
out:
1828
	if ((!req && !mq->new_request) || req_is_special)
1829 1830 1831 1832 1833 1834
		/*
		 * Release host when there are no more requests
		 * and after special request(discard, flush) is done.
		 * In case sepecial request, there is no reentry to
		 * the 'mmc_blk_issue_rq' with 'mqrq_prev->req'.
		 */
1835
		mmc_put_card(card);
A
Adrian Hunter 已提交
1836
}
L
Linus Torvalds 已提交
1837

1838 1839 1840 1841 1842 1843
static inline int mmc_blk_readonly(struct mmc_card *card)
{
	return mmc_card_readonly(card) ||
	       !(card->csd.cmdclass & CCC_BLOCK_WRITE);
}

1844 1845 1846 1847
static struct mmc_blk_data *mmc_blk_alloc_req(struct mmc_card *card,
					      struct device *parent,
					      sector_t size,
					      bool default_ro,
1848 1849
					      const char *subname,
					      int area_type)
L
Linus Torvalds 已提交
1850 1851 1852 1853
{
	struct mmc_blk_data *md;
	int devidx, ret;

1854 1855 1856
	devidx = ida_simple_get(&mmc_blk_ida, 0, max_devices, GFP_KERNEL);
	if (devidx < 0)
		return ERR_PTR(devidx);
L
Linus Torvalds 已提交
1857

1858
	md = kzalloc(sizeof(struct mmc_blk_data), GFP_KERNEL);
1859 1860 1861 1862
	if (!md) {
		ret = -ENOMEM;
		goto out;
	}
L
Linus Torvalds 已提交
1863

1864 1865
	md->area_type = area_type;

1866 1867 1868 1869 1870
	/*
	 * Set the read-only status based on the supported commands
	 * and the write protect switch.
	 */
	md->read_only = mmc_blk_readonly(card);
L
Linus Torvalds 已提交
1871

1872
	md->disk = alloc_disk(perdev_minors);
1873 1874 1875 1876
	if (md->disk == NULL) {
		ret = -ENOMEM;
		goto err_kfree;
	}
L
Linus Torvalds 已提交
1877

1878
	spin_lock_init(&md->lock);
1879
	INIT_LIST_HEAD(&md->part);
1880
	md->usage = 1;
L
Linus Torvalds 已提交
1881

1882
	ret = mmc_init_queue(&md->queue, card, &md->lock, subname);
1883 1884
	if (ret)
		goto err_putdisk;
L
Linus Torvalds 已提交
1885

L
Linus Walleij 已提交
1886
	md->queue.blkdata = md;
1887

1888
	md->disk->major	= MMC_BLOCK_MAJOR;
1889
	md->disk->first_minor = devidx * perdev_minors;
1890 1891 1892
	md->disk->fops = &mmc_bdops;
	md->disk->private_data = md;
	md->disk->queue = md->queue.queue;
1893
	md->parent = parent;
1894
	set_disk_ro(md->disk, md->read_only || default_ro);
1895
	md->disk->flags = GENHD_FL_EXT_DEVT;
1896
	if (area_type & (MMC_BLK_DATA_AREA_RPMB | MMC_BLK_DATA_AREA_BOOT))
1897
		md->disk->flags |= GENHD_FL_NO_PART_SCAN;
1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910

	/*
	 * As discussed on lkml, GENHD_FL_REMOVABLE should:
	 *
	 * - be set for removable media with permanent block devices
	 * - be unset for removable block devices with permanent media
	 *
	 * Since MMC block devices clearly fall under the second
	 * case, we do not set GENHD_FL_REMOVABLE.  Userspace
	 * should use the block device creation/destruction hotplug
	 * messages to tell when the card is present.
	 */

1911
	snprintf(md->disk->disk_name, sizeof(md->disk->disk_name),
1912
		 "mmcblk%u%s", card->host->index, subname ? subname : "");
1913

1914 1915 1916 1917 1918 1919
	if (mmc_card_mmc(card))
		blk_queue_logical_block_size(md->queue.queue,
					     card->ext_csd.data_sector_size);
	else
		blk_queue_logical_block_size(md->queue.queue, 512);

1920
	set_capacity(md->disk, size);
1921

1922
	if (mmc_host_cmd23(card->host)) {
1923 1924
		if ((mmc_card_mmc(card) &&
		     card->csd.mmca_vsn >= CSD_SPEC_VER_3) ||
1925 1926 1927 1928
		    (mmc_card_sd(card) &&
		     card->scr.cmds & SD_SCR_CMD23_SUPPORT))
			md->flags |= MMC_BLK_CMD23;
	}
1929 1930 1931 1932 1933 1934

	if (mmc_card_mmc(card) &&
	    md->flags & MMC_BLK_CMD23 &&
	    ((card->ext_csd.rel_param & EXT_CSD_WR_REL_PARAM_EN) ||
	     card->ext_csd.rel_sectors)) {
		md->flags |= MMC_BLK_REL_WR;
1935
		blk_queue_write_cache(md->queue.queue, true, true);
1936 1937
	}

1938 1939 1940 1941 1942 1943 1944
	return md;

 err_putdisk:
	put_disk(md->disk);
 err_kfree:
	kfree(md);
 out:
1945
	ida_simple_remove(&mmc_blk_ida, devidx);
1946 1947 1948 1949 1950 1951
	return ERR_PTR(ret);
}

static struct mmc_blk_data *mmc_blk_alloc(struct mmc_card *card)
{
	sector_t size;
1952

P
Pierre Ossman 已提交
1953 1954 1955 1956 1957
	if (!mmc_card_sd(card) && mmc_card_blockaddr(card)) {
		/*
		 * The EXT_CSD sector count is in number or 512 byte
		 * sectors.
		 */
1958
		size = card->ext_csd.sectors;
P
Pierre Ossman 已提交
1959 1960 1961 1962 1963
	} else {
		/*
		 * The CSD capacity field is in units of read_blkbits.
		 * set_capacity takes units of 512 bytes.
		 */
1964 1965
		size = (typeof(sector_t))card->csd.capacity
			<< (card->csd.read_blkbits - 9);
P
Pierre Ossman 已提交
1966
	}
1967

1968
	return mmc_blk_alloc_req(card, &card->dev, size, false, NULL,
1969
					MMC_BLK_DATA_AREA_MAIN);
1970
}
1971

1972 1973 1974 1975 1976
static int mmc_blk_alloc_part(struct mmc_card *card,
			      struct mmc_blk_data *md,
			      unsigned int part_type,
			      sector_t size,
			      bool default_ro,
1977 1978
			      const char *subname,
			      int area_type)
1979 1980 1981 1982 1983
{
	char cap_str[10];
	struct mmc_blk_data *part_md;

	part_md = mmc_blk_alloc_req(card, disk_to_dev(md->disk), size, default_ro,
1984
				    subname, area_type);
1985 1986 1987 1988 1989
	if (IS_ERR(part_md))
		return PTR_ERR(part_md);
	part_md->part_type = part_type;
	list_add(&part_md->part, &md->part);

1990
	string_get_size((u64)get_capacity(part_md->disk), 512, STRING_UNITS_2,
1991
			cap_str, sizeof(cap_str));
1992
	pr_info("%s: %s %s partition %u %s\n",
1993 1994 1995 1996 1997
	       part_md->disk->disk_name, mmc_card_id(card),
	       mmc_card_name(card), part_md->part_type, cap_str);
	return 0;
}

1998 1999 2000 2001 2002 2003
/* MMC Physical partitions consist of two boot partitions and
 * up to four general purpose partitions.
 * For each partition enabled in EXT_CSD a block device will be allocatedi
 * to provide access to the partition.
 */

2004 2005
static int mmc_blk_alloc_parts(struct mmc_card *card, struct mmc_blk_data *md)
{
2006
	int idx, ret = 0;
2007 2008 2009 2010

	if (!mmc_card_mmc(card))
		return 0;

2011 2012 2013 2014 2015 2016
	for (idx = 0; idx < card->nr_parts; idx++) {
		if (card->part[idx].size) {
			ret = mmc_blk_alloc_part(card, md,
				card->part[idx].part_cfg,
				card->part[idx].size >> 9,
				card->part[idx].force_ro,
2017 2018
				card->part[idx].name,
				card->part[idx].area_type);
2019 2020 2021
			if (ret)
				return ret;
		}
2022 2023 2024
	}

	return ret;
L
Linus Torvalds 已提交
2025 2026
}

2027 2028
static void mmc_blk_remove_req(struct mmc_blk_data *md)
{
2029 2030
	struct mmc_card *card;

2031
	if (md) {
2032 2033 2034 2035 2036
		/*
		 * Flush remaining requests and free queues. It
		 * is freeing the queue that stops new requests
		 * from being accepted.
		 */
2037
		card = md->queue.card;
2038
		mmc_cleanup_queue(&md->queue);
2039 2040
		if (md->disk->flags & GENHD_FL_UP) {
			device_remove_file(disk_to_dev(md->disk), &md->force_ro);
2041 2042 2043 2044
			if ((md->area_type & MMC_BLK_DATA_AREA_BOOT) &&
					card->ext_csd.boot_ro_lockable)
				device_remove_file(disk_to_dev(md->disk),
					&md->power_ro_lock);
2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067

			del_gendisk(md->disk);
		}
		mmc_blk_put(md);
	}
}

static void mmc_blk_remove_parts(struct mmc_card *card,
				 struct mmc_blk_data *md)
{
	struct list_head *pos, *q;
	struct mmc_blk_data *part_md;

	list_for_each_safe(pos, q, &md->part) {
		part_md = list_entry(pos, struct mmc_blk_data, part);
		list_del(pos);
		mmc_blk_remove_req(part_md);
	}
}

static int mmc_add_disk(struct mmc_blk_data *md)
{
	int ret;
2068
	struct mmc_card *card = md->queue.card;
2069

2070
	device_add_disk(md->parent, md->disk);
2071 2072
	md->force_ro.show = force_ro_show;
	md->force_ro.store = force_ro_store;
2073
	sysfs_attr_init(&md->force_ro.attr);
2074 2075 2076 2077
	md->force_ro.attr.name = "force_ro";
	md->force_ro.attr.mode = S_IRUGO | S_IWUSR;
	ret = device_create_file(disk_to_dev(md->disk), &md->force_ro);
	if (ret)
2078 2079 2080 2081
		goto force_ro_fail;

	if ((md->area_type & MMC_BLK_DATA_AREA_BOOT) &&
	     card->ext_csd.boot_ro_lockable) {
A
Al Viro 已提交
2082
		umode_t mode;
2083 2084 2085 2086 2087 2088 2089 2090

		if (card->ext_csd.boot_ro_lock & EXT_CSD_BOOT_WP_B_PWR_WP_DIS)
			mode = S_IRUGO;
		else
			mode = S_IRUGO | S_IWUSR;

		md->power_ro_lock.show = power_ro_lock_show;
		md->power_ro_lock.store = power_ro_lock_store;
2091
		sysfs_attr_init(&md->power_ro_lock.attr);
2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105
		md->power_ro_lock.attr.mode = mode;
		md->power_ro_lock.attr.name =
					"ro_lock_until_next_power_on";
		ret = device_create_file(disk_to_dev(md->disk),
				&md->power_ro_lock);
		if (ret)
			goto power_ro_lock_fail;
	}
	return ret;

power_ro_lock_fail:
	device_remove_file(disk_to_dev(md->disk), &md->force_ro);
force_ro_fail:
	del_gendisk(md->disk);
2106 2107 2108 2109

	return ret;
}

2110 2111
static const struct mmc_fixup blk_fixups[] =
{
2112 2113 2114 2115 2116 2117 2118 2119 2120 2121
	MMC_FIXUP("SEM02G", CID_MANFID_SANDISK, 0x100, add_quirk,
		  MMC_QUIRK_INAND_CMD38),
	MMC_FIXUP("SEM04G", CID_MANFID_SANDISK, 0x100, add_quirk,
		  MMC_QUIRK_INAND_CMD38),
	MMC_FIXUP("SEM08G", CID_MANFID_SANDISK, 0x100, add_quirk,
		  MMC_QUIRK_INAND_CMD38),
	MMC_FIXUP("SEM16G", CID_MANFID_SANDISK, 0x100, add_quirk,
		  MMC_QUIRK_INAND_CMD38),
	MMC_FIXUP("SEM32G", CID_MANFID_SANDISK, 0x100, add_quirk,
		  MMC_QUIRK_INAND_CMD38),
2122 2123 2124 2125 2126 2127 2128 2129 2130

	/*
	 * Some MMC cards experience performance degradation with CMD23
	 * instead of CMD12-bounded multiblock transfers. For now we'll
	 * black list what's bad...
	 * - Certain Toshiba cards.
	 *
	 * N.B. This doesn't affect SD cards.
	 */
2131 2132 2133 2134
	MMC_FIXUP("SDMB-32", CID_MANFID_SANDISK, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_BLK_NO_CMD23),
	MMC_FIXUP("SDM032", CID_MANFID_SANDISK, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_BLK_NO_CMD23),
2135
	MMC_FIXUP("MMC08G", CID_MANFID_TOSHIBA, CID_OEMID_ANY, add_quirk_mmc,
2136
		  MMC_QUIRK_BLK_NO_CMD23),
2137
	MMC_FIXUP("MMC16G", CID_MANFID_TOSHIBA, CID_OEMID_ANY, add_quirk_mmc,
2138
		  MMC_QUIRK_BLK_NO_CMD23),
2139
	MMC_FIXUP("MMC32G", CID_MANFID_TOSHIBA, CID_OEMID_ANY, add_quirk_mmc,
2140
		  MMC_QUIRK_BLK_NO_CMD23),
2141 2142

	/*
2143
	 * Some MMC cards need longer data read timeout than indicated in CSD.
2144
	 */
2145
	MMC_FIXUP(CID_NAME_ANY, CID_MANFID_MICRON, 0x200, add_quirk_mmc,
2146
		  MMC_QUIRK_LONG_READ_TIME),
2147 2148
	MMC_FIXUP("008GE0", CID_MANFID_TOSHIBA, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_LONG_READ_TIME),
2149

2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171
	/*
	 * On these Samsung MoviNAND parts, performing secure erase or
	 * secure trim can result in unrecoverable corruption due to a
	 * firmware bug.
	 */
	MMC_FIXUP("M8G2FA", CID_MANFID_SAMSUNG, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_SEC_ERASE_TRIM_BROKEN),
	MMC_FIXUP("MAG4FA", CID_MANFID_SAMSUNG, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_SEC_ERASE_TRIM_BROKEN),
	MMC_FIXUP("MBG8FA", CID_MANFID_SAMSUNG, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_SEC_ERASE_TRIM_BROKEN),
	MMC_FIXUP("MCGAFA", CID_MANFID_SAMSUNG, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_SEC_ERASE_TRIM_BROKEN),
	MMC_FIXUP("VAL00M", CID_MANFID_SAMSUNG, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_SEC_ERASE_TRIM_BROKEN),
	MMC_FIXUP("VYL00M", CID_MANFID_SAMSUNG, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_SEC_ERASE_TRIM_BROKEN),
	MMC_FIXUP("KYL00M", CID_MANFID_SAMSUNG, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_SEC_ERASE_TRIM_BROKEN),
	MMC_FIXUP("VZL00M", CID_MANFID_SAMSUNG, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_SEC_ERASE_TRIM_BROKEN),

2172 2173 2174 2175 2176 2177 2178 2179 2180
	/*
	 *  On Some Kingston eMMCs, performing trim can result in
	 *  unrecoverable data conrruption occasionally due to a firmware bug.
	 */
	MMC_FIXUP("V10008", CID_MANFID_KINGSTON, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_TRIM_BROKEN),
	MMC_FIXUP("V10016", CID_MANFID_KINGSTON, CID_OEMID_ANY, add_quirk_mmc,
		  MMC_QUIRK_TRIM_BROKEN),

2181 2182 2183
	END_FIXUP
};

2184
static int mmc_blk_probe(struct mmc_card *card)
L
Linus Torvalds 已提交
2185
{
2186
	struct mmc_blk_data *md, *part_md;
2187 2188
	char cap_str[10];

2189 2190 2191 2192
	/*
	 * Check that the card supports the command class(es) we need.
	 */
	if (!(card->csd.cmdclass & CCC_BLOCK_READ))
L
Linus Torvalds 已提交
2193 2194
		return -ENODEV;

2195 2196
	mmc_fixup_device(card, blk_fixups);

L
Linus Torvalds 已提交
2197 2198 2199 2200
	md = mmc_blk_alloc(card);
	if (IS_ERR(md))
		return PTR_ERR(md);

2201
	string_get_size((u64)get_capacity(md->disk), 512, STRING_UNITS_2,
2202
			cap_str, sizeof(cap_str));
2203
	pr_info("%s: %s %s %s %s\n",
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Linus Torvalds 已提交
2204
		md->disk->disk_name, mmc_card_id(card), mmc_card_name(card),
2205
		cap_str, md->read_only ? "(ro)" : "");
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2206

2207 2208 2209
	if (mmc_blk_alloc_parts(card, md))
		goto out;

2210
	dev_set_drvdata(&card->dev, md);
2211

2212 2213 2214 2215 2216 2217 2218
	if (mmc_add_disk(md))
		goto out;

	list_for_each_entry(part_md, &md->part, part) {
		if (mmc_add_disk(part_md))
			goto out;
	}
2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231

	pm_runtime_set_autosuspend_delay(&card->dev, 3000);
	pm_runtime_use_autosuspend(&card->dev);

	/*
	 * Don't enable runtime PM for SD-combo cards here. Leave that
	 * decision to be taken during the SDIO init sequence instead.
	 */
	if (card->type != MMC_TYPE_SD_COMBO) {
		pm_runtime_set_active(&card->dev);
		pm_runtime_enable(&card->dev);
	}

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2232 2233 2234
	return 0;

 out:
2235 2236
	mmc_blk_remove_parts(card, md);
	mmc_blk_remove_req(md);
2237
	return 0;
L
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2238 2239
}

2240
static void mmc_blk_remove(struct mmc_card *card)
L
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2241
{
2242
	struct mmc_blk_data *md = dev_get_drvdata(&card->dev);
L
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2243

2244
	mmc_blk_remove_parts(card, md);
2245
	pm_runtime_get_sync(&card->dev);
2246 2247 2248
	mmc_claim_host(card->host);
	mmc_blk_part_switch(card, md);
	mmc_release_host(card->host);
2249 2250 2251
	if (card->type != MMC_TYPE_SD_COMBO)
		pm_runtime_disable(&card->dev);
	pm_runtime_put_noidle(&card->dev);
2252
	mmc_blk_remove_req(md);
2253
	dev_set_drvdata(&card->dev, NULL);
L
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2254 2255
}

2256
static int _mmc_blk_suspend(struct mmc_card *card)
L
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2257
{
2258
	struct mmc_blk_data *part_md;
2259
	struct mmc_blk_data *md = dev_get_drvdata(&card->dev);
L
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2260 2261 2262

	if (md) {
		mmc_queue_suspend(&md->queue);
2263 2264 2265
		list_for_each_entry(part_md, &md->part, part) {
			mmc_queue_suspend(&part_md->queue);
		}
L
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2266 2267 2268 2269
	}
	return 0;
}

2270
static void mmc_blk_shutdown(struct mmc_card *card)
2271
{
2272
	_mmc_blk_suspend(card);
2273 2274
}

2275 2276
#ifdef CONFIG_PM_SLEEP
static int mmc_blk_suspend(struct device *dev)
2277
{
2278 2279 2280
	struct mmc_card *card = mmc_dev_to_card(dev);

	return _mmc_blk_suspend(card);
2281 2282
}

2283
static int mmc_blk_resume(struct device *dev)
L
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2284
{
2285
	struct mmc_blk_data *part_md;
2286
	struct mmc_blk_data *md = dev_get_drvdata(dev);
L
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2287 2288

	if (md) {
2289 2290 2291 2292 2293
		/*
		 * Resume involves the card going into idle state,
		 * so current partition is always the main one.
		 */
		md->part_curr = md->part_type;
L
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2294
		mmc_queue_resume(&md->queue);
2295 2296 2297
		list_for_each_entry(part_md, &md->part, part) {
			mmc_queue_resume(&part_md->queue);
		}
L
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2298 2299 2300 2301 2302
	}
	return 0;
}
#endif

2303 2304
static SIMPLE_DEV_PM_OPS(mmc_blk_pm_ops, mmc_blk_suspend, mmc_blk_resume);

2305 2306 2307 2308 2309
static struct mmc_driver mmc_driver = {
	.drv		= {
		.name	= "mmcblk",
		.pm	= &mmc_blk_pm_ops,
	},
L
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2310 2311
	.probe		= mmc_blk_probe,
	.remove		= mmc_blk_remove,
2312
	.shutdown	= mmc_blk_shutdown,
L
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2313 2314 2315 2316
};

static int __init mmc_blk_init(void)
{
2317
	int res;
L
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2318

2319 2320 2321
	if (perdev_minors != CONFIG_MMC_BLOCK_MINORS)
		pr_info("mmcblk: using %d minors per device\n", perdev_minors);

B
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2322
	max_devices = min(MAX_DEVICES, (1 << MINORBITS) / perdev_minors);
2323

2324 2325
	res = register_blkdev(MMC_BLOCK_MAJOR, "mmc");
	if (res)
L
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2326 2327
		goto out;

2328 2329 2330
	res = mmc_register_driver(&mmc_driver);
	if (res)
		goto out2;
L
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2331

2332 2333 2334
	return 0;
 out2:
	unregister_blkdev(MMC_BLOCK_MAJOR, "mmc");
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2335 2336 2337 2338 2339 2340 2341
 out:
	return res;
}

static void __exit mmc_blk_exit(void)
{
	mmc_unregister_driver(&mmc_driver);
2342
	unregister_blkdev(MMC_BLOCK_MAJOR, "mmc");
L
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2343 2344 2345 2346 2347 2348 2349 2350
}

module_init(mmc_blk_init);
module_exit(mmc_blk_exit);

MODULE_LICENSE("GPL");
MODULE_DESCRIPTION("Multimedia Card (MMC) block device driver");