mmc.c 52.5 KB
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/*
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 *  linux/drivers/mmc/core/mmc.c
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 *
 *  Copyright (C) 2003-2004 Russell King, All Rights Reserved.
 *  Copyright (C) 2005-2007 Pierre Ossman, All Rights Reserved.
 *  MMCv4 support Copyright (C) 2006 Philip Langdale, All Rights Reserved.
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */

#include <linux/err.h>
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#include <linux/of.h>
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#include <linux/slab.h>
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#include <linux/stat.h>
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#include <linux/pm_runtime.h>
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#include <linux/mmc/host.h>
#include <linux/mmc/card.h>
#include <linux/mmc/mmc.h>

#include "core.h"
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#include "host.h"
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#include "bus.h"
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#include "mmc_ops.h"
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#include "sd_ops.h"
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static const unsigned int tran_exp[] = {
	10000,		100000,		1000000,	10000000,
	0,		0,		0,		0
};

static const unsigned char tran_mant[] = {
	0,	10,	12,	13,	15,	20,	25,	30,
	35,	40,	45,	50,	55,	60,	70,	80,
};

static const unsigned int tacc_exp[] = {
	1,	10,	100,	1000,	10000,	100000,	1000000, 10000000,
};

static const unsigned int tacc_mant[] = {
	0,	10,	12,	13,	15,	20,	25,	30,
	35,	40,	45,	50,	55,	60,	70,	80,
};

#define UNSTUFF_BITS(resp,start,size)					\
	({								\
		const int __size = size;				\
		const u32 __mask = (__size < 32 ? 1 << __size : 0) - 1;	\
		const int __off = 3 - ((start) / 32);			\
		const int __shft = (start) & 31;			\
		u32 __res;						\
									\
		__res = resp[__off] >> __shft;				\
		if (__size + __shft > 32)				\
			__res |= resp[__off-1] << ((32 - __shft) % 32);	\
		__res & __mask;						\
	})

/*
 * Given the decoded CSD structure, decode the raw CID to our CID structure.
 */
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static int mmc_decode_cid(struct mmc_card *card)
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{
	u32 *resp = card->raw_cid;

	/*
	 * The selection of the format here is based upon published
	 * specs from sandisk and from what people have reported.
	 */
	switch (card->csd.mmca_vsn) {
	case 0: /* MMC v1.0 - v1.2 */
	case 1: /* MMC v1.4 */
		card->cid.manfid	= UNSTUFF_BITS(resp, 104, 24);
		card->cid.prod_name[0]	= UNSTUFF_BITS(resp, 96, 8);
		card->cid.prod_name[1]	= UNSTUFF_BITS(resp, 88, 8);
		card->cid.prod_name[2]	= UNSTUFF_BITS(resp, 80, 8);
		card->cid.prod_name[3]	= UNSTUFF_BITS(resp, 72, 8);
		card->cid.prod_name[4]	= UNSTUFF_BITS(resp, 64, 8);
		card->cid.prod_name[5]	= UNSTUFF_BITS(resp, 56, 8);
		card->cid.prod_name[6]	= UNSTUFF_BITS(resp, 48, 8);
		card->cid.hwrev		= UNSTUFF_BITS(resp, 44, 4);
		card->cid.fwrev		= UNSTUFF_BITS(resp, 40, 4);
		card->cid.serial	= UNSTUFF_BITS(resp, 16, 24);
		card->cid.month		= UNSTUFF_BITS(resp, 12, 4);
		card->cid.year		= UNSTUFF_BITS(resp, 8, 4) + 1997;
		break;

	case 2: /* MMC v2.0 - v2.2 */
	case 3: /* MMC v3.1 - v3.3 */
	case 4: /* MMC v4 */
		card->cid.manfid	= UNSTUFF_BITS(resp, 120, 8);
		card->cid.oemid		= UNSTUFF_BITS(resp, 104, 16);
		card->cid.prod_name[0]	= UNSTUFF_BITS(resp, 96, 8);
		card->cid.prod_name[1]	= UNSTUFF_BITS(resp, 88, 8);
		card->cid.prod_name[2]	= UNSTUFF_BITS(resp, 80, 8);
		card->cid.prod_name[3]	= UNSTUFF_BITS(resp, 72, 8);
		card->cid.prod_name[4]	= UNSTUFF_BITS(resp, 64, 8);
		card->cid.prod_name[5]	= UNSTUFF_BITS(resp, 56, 8);
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		card->cid.prv		= UNSTUFF_BITS(resp, 48, 8);
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		card->cid.serial	= UNSTUFF_BITS(resp, 16, 32);
		card->cid.month		= UNSTUFF_BITS(resp, 12, 4);
		card->cid.year		= UNSTUFF_BITS(resp, 8, 4) + 1997;
		break;

	default:
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		pr_err("%s: card has unknown MMCA version %d\n",
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			mmc_hostname(card->host), card->csd.mmca_vsn);
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		return -EINVAL;
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	}
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	return 0;
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}

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static void mmc_set_erase_size(struct mmc_card *card)
{
	if (card->ext_csd.erase_group_def & 1)
		card->erase_size = card->ext_csd.hc_erase_size;
	else
		card->erase_size = card->csd.erase_size;

	mmc_init_erase(card);
}

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/*
 * Given a 128-bit response, decode to our card CSD structure.
 */
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static int mmc_decode_csd(struct mmc_card *card)
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{
	struct mmc_csd *csd = &card->csd;
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	unsigned int e, m, a, b;
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	u32 *resp = card->raw_csd;

	/*
	 * We only understand CSD structure v1.1 and v1.2.
	 * v1.2 has extra information in bits 15, 11 and 10.
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	 * We also support eMMC v4.4 & v4.41.
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	 */
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	csd->structure = UNSTUFF_BITS(resp, 126, 2);
	if (csd->structure == 0) {
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		pr_err("%s: unrecognised CSD structure version %d\n",
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			mmc_hostname(card->host), csd->structure);
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		return -EINVAL;
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	}

	csd->mmca_vsn	 = UNSTUFF_BITS(resp, 122, 4);
	m = UNSTUFF_BITS(resp, 115, 4);
	e = UNSTUFF_BITS(resp, 112, 3);
	csd->tacc_ns	 = (tacc_exp[e] * tacc_mant[m] + 9) / 10;
	csd->tacc_clks	 = UNSTUFF_BITS(resp, 104, 8) * 100;

	m = UNSTUFF_BITS(resp, 99, 4);
	e = UNSTUFF_BITS(resp, 96, 3);
	csd->max_dtr	  = tran_exp[e] * tran_mant[m];
	csd->cmdclass	  = UNSTUFF_BITS(resp, 84, 12);

	e = UNSTUFF_BITS(resp, 47, 3);
	m = UNSTUFF_BITS(resp, 62, 12);
	csd->capacity	  = (1 + m) << (e + 2);

	csd->read_blkbits = UNSTUFF_BITS(resp, 80, 4);
	csd->read_partial = UNSTUFF_BITS(resp, 79, 1);
	csd->write_misalign = UNSTUFF_BITS(resp, 78, 1);
	csd->read_misalign = UNSTUFF_BITS(resp, 77, 1);
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	csd->dsr_imp = UNSTUFF_BITS(resp, 76, 1);
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	csd->r2w_factor = UNSTUFF_BITS(resp, 26, 3);
	csd->write_blkbits = UNSTUFF_BITS(resp, 22, 4);
	csd->write_partial = UNSTUFF_BITS(resp, 21, 1);
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	if (csd->write_blkbits >= 9) {
		a = UNSTUFF_BITS(resp, 42, 5);
		b = UNSTUFF_BITS(resp, 37, 5);
		csd->erase_size = (a + 1) * (b + 1);
		csd->erase_size <<= csd->write_blkbits - 9;
	}

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	return 0;
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}

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static void mmc_select_card_type(struct mmc_card *card)
{
	struct mmc_host *host = card->host;
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	u8 card_type = card->ext_csd.raw_card_type;
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	u32 caps = host->caps, caps2 = host->caps2;
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	unsigned int hs_max_dtr = 0, hs200_max_dtr = 0;
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	unsigned int avail_type = 0;
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	if (caps & MMC_CAP_MMC_HIGHSPEED &&
	    card_type & EXT_CSD_CARD_TYPE_HS_26) {
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		hs_max_dtr = MMC_HIGH_26_MAX_DTR;
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		avail_type |= EXT_CSD_CARD_TYPE_HS_26;
	}
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	if (caps & MMC_CAP_MMC_HIGHSPEED &&
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	    card_type & EXT_CSD_CARD_TYPE_HS_52) {
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		hs_max_dtr = MMC_HIGH_52_MAX_DTR;
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		avail_type |= EXT_CSD_CARD_TYPE_HS_52;
	}
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	if (caps & MMC_CAP_1_8V_DDR &&
	    card_type & EXT_CSD_CARD_TYPE_DDR_1_8V) {
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		hs_max_dtr = MMC_HIGH_DDR_MAX_DTR;
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		avail_type |= EXT_CSD_CARD_TYPE_DDR_1_8V;
	}

	if (caps & MMC_CAP_1_2V_DDR &&
	    card_type & EXT_CSD_CARD_TYPE_DDR_1_2V) {
		hs_max_dtr = MMC_HIGH_DDR_MAX_DTR;
		avail_type |= EXT_CSD_CARD_TYPE_DDR_1_2V;
	}
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	if (caps2 & MMC_CAP2_HS200_1_8V_SDR &&
	    card_type & EXT_CSD_CARD_TYPE_HS200_1_8V) {
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		hs200_max_dtr = MMC_HS200_MAX_DTR;
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		avail_type |= EXT_CSD_CARD_TYPE_HS200_1_8V;
	}

	if (caps2 & MMC_CAP2_HS200_1_2V_SDR &&
	    card_type & EXT_CSD_CARD_TYPE_HS200_1_2V) {
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		hs200_max_dtr = MMC_HS200_MAX_DTR;
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		avail_type |= EXT_CSD_CARD_TYPE_HS200_1_2V;
	}
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	if (caps2 & MMC_CAP2_HS400_1_8V &&
	    card_type & EXT_CSD_CARD_TYPE_HS400_1_8V) {
		hs200_max_dtr = MMC_HS200_MAX_DTR;
		avail_type |= EXT_CSD_CARD_TYPE_HS400_1_8V;
	}

	if (caps2 & MMC_CAP2_HS400_1_2V &&
	    card_type & EXT_CSD_CARD_TYPE_HS400_1_2V) {
		hs200_max_dtr = MMC_HS200_MAX_DTR;
		avail_type |= EXT_CSD_CARD_TYPE_HS400_1_2V;
	}

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	card->ext_csd.hs_max_dtr = hs_max_dtr;
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	card->ext_csd.hs200_max_dtr = hs200_max_dtr;
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	card->mmc_avail_type = avail_type;
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}

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static void mmc_manage_enhanced_area(struct mmc_card *card, u8 *ext_csd)
{
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	u8 hc_erase_grp_sz, hc_wp_grp_sz;

	/*
	 * Disable these attributes by default
	 */
	card->ext_csd.enhanced_area_offset = -EINVAL;
	card->ext_csd.enhanced_area_size = -EINVAL;
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	/*
	 * Enhanced area feature support -- check whether the eMMC
	 * card has the Enhanced area enabled.  If so, export enhanced
	 * area offset and size to user by adding sysfs interface.
	 */
	if ((ext_csd[EXT_CSD_PARTITION_SUPPORT] & 0x2) &&
	    (ext_csd[EXT_CSD_PARTITION_ATTRIBUTE] & 0x1)) {
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		if (card->ext_csd.partition_setting_completed) {
			hc_erase_grp_sz =
				ext_csd[EXT_CSD_HC_ERASE_GRP_SIZE];
			hc_wp_grp_sz =
				ext_csd[EXT_CSD_HC_WP_GRP_SIZE];
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			/*
			 * calculate the enhanced data area offset, in bytes
			 */
			card->ext_csd.enhanced_area_offset =
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				(((unsigned long long)ext_csd[139]) << 24) +
				(((unsigned long long)ext_csd[138]) << 16) +
				(((unsigned long long)ext_csd[137]) << 8) +
				(((unsigned long long)ext_csd[136]));
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			if (mmc_card_blockaddr(card))
				card->ext_csd.enhanced_area_offset <<= 9;
			/*
			 * calculate the enhanced data area size, in kilobytes
			 */
			card->ext_csd.enhanced_area_size =
				(ext_csd[142] << 16) + (ext_csd[141] << 8) +
				ext_csd[140];
			card->ext_csd.enhanced_area_size *=
				(size_t)(hc_erase_grp_sz * hc_wp_grp_sz);
			card->ext_csd.enhanced_area_size <<= 9;
		} else {
			pr_warn("%s: defines enhanced area without partition setting complete\n",
				mmc_hostname(card->host));
		}
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	}
}

static void mmc_manage_gp_partitions(struct mmc_card *card, u8 *ext_csd)
{
	int idx;
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	u8 hc_erase_grp_sz, hc_wp_grp_sz;
	unsigned int part_size;
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	/*
	 * General purpose partition feature support --
	 * If ext_csd has the size of general purpose partitions,
	 * set size, part_cfg, partition name in mmc_part.
	 */
	if (ext_csd[EXT_CSD_PARTITION_SUPPORT] &
	    EXT_CSD_PART_SUPPORT_PART_EN) {
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		hc_erase_grp_sz =
			ext_csd[EXT_CSD_HC_ERASE_GRP_SIZE];
		hc_wp_grp_sz =
			ext_csd[EXT_CSD_HC_WP_GRP_SIZE];
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		for (idx = 0; idx < MMC_NUM_GP_PARTITION; idx++) {
			if (!ext_csd[EXT_CSD_GP_SIZE_MULT + idx * 3] &&
			    !ext_csd[EXT_CSD_GP_SIZE_MULT + idx * 3 + 1] &&
			    !ext_csd[EXT_CSD_GP_SIZE_MULT + idx * 3 + 2])
				continue;
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			if (card->ext_csd.partition_setting_completed == 0) {
				pr_warn("%s: has partition size defined without partition complete\n",
					mmc_hostname(card->host));
				break;
			}
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			part_size =
				(ext_csd[EXT_CSD_GP_SIZE_MULT + idx * 3 + 2]
				<< 16) +
				(ext_csd[EXT_CSD_GP_SIZE_MULT + idx * 3 + 1]
				<< 8) +
				ext_csd[EXT_CSD_GP_SIZE_MULT + idx * 3];
			part_size *= (size_t)(hc_erase_grp_sz *
				hc_wp_grp_sz);
			mmc_part_add(card, part_size << 19,
				EXT_CSD_PART_CONFIG_ACC_GP0 + idx,
				"gp%d", idx, false,
				MMC_BLK_DATA_AREA_GP);
		}
	}
}

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/*
 * Decode extended CSD.
 */
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static int mmc_decode_ext_csd(struct mmc_card *card, u8 *ext_csd)
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{
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	int err = 0, idx;
	unsigned int part_size;
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	struct device_node *np;
	bool broken_hpi = false;
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	/* Version is coded in the CSD_STRUCTURE byte in the EXT_CSD register */
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	card->ext_csd.raw_ext_csd_structure = ext_csd[EXT_CSD_STRUCTURE];
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	if (card->csd.structure == 3) {
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		if (card->ext_csd.raw_ext_csd_structure > 2) {
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			pr_err("%s: unrecognised EXT_CSD structure "
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				"version %d\n", mmc_hostname(card->host),
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					card->ext_csd.raw_ext_csd_structure);
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			err = -EINVAL;
			goto out;
		}
	}

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	np = mmc_of_find_child_device(card->host, 0);
	if (np && of_device_is_compatible(np, "mmc-card"))
		broken_hpi = of_property_read_bool(np, "broken-hpi");
	of_node_put(np);

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	/*
	 * The EXT_CSD format is meant to be forward compatible. As long
	 * as CSD_STRUCTURE does not change, all values for EXT_CSD_REV
	 * are authorized, see JEDEC JESD84-B50 section B.8.
	 */
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	card->ext_csd.rev = ext_csd[EXT_CSD_REV];
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	card->ext_csd.raw_sectors[0] = ext_csd[EXT_CSD_SEC_CNT + 0];
	card->ext_csd.raw_sectors[1] = ext_csd[EXT_CSD_SEC_CNT + 1];
	card->ext_csd.raw_sectors[2] = ext_csd[EXT_CSD_SEC_CNT + 2];
	card->ext_csd.raw_sectors[3] = ext_csd[EXT_CSD_SEC_CNT + 3];
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	if (card->ext_csd.rev >= 2) {
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		card->ext_csd.sectors =
			ext_csd[EXT_CSD_SEC_CNT + 0] << 0 |
			ext_csd[EXT_CSD_SEC_CNT + 1] << 8 |
			ext_csd[EXT_CSD_SEC_CNT + 2] << 16 |
			ext_csd[EXT_CSD_SEC_CNT + 3] << 24;
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		/* Cards with density > 2GiB are sector addressed */
		if (card->ext_csd.sectors > (2u * 1024 * 1024 * 1024) / 512)
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			mmc_card_set_blockaddr(card);
	}
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	card->ext_csd.raw_card_type = ext_csd[EXT_CSD_CARD_TYPE];
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	mmc_select_card_type(card);
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	card->ext_csd.raw_s_a_timeout = ext_csd[EXT_CSD_S_A_TIMEOUT];
	card->ext_csd.raw_erase_timeout_mult =
		ext_csd[EXT_CSD_ERASE_TIMEOUT_MULT];
	card->ext_csd.raw_hc_erase_grp_size =
		ext_csd[EXT_CSD_HC_ERASE_GRP_SIZE];
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	if (card->ext_csd.rev >= 3) {
		u8 sa_shift = ext_csd[EXT_CSD_S_A_TIMEOUT];
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		card->ext_csd.part_config = ext_csd[EXT_CSD_PART_CONFIG];

		/* EXT_CSD value is in units of 10ms, but we store in ms */
		card->ext_csd.part_time = 10 * ext_csd[EXT_CSD_PART_SWITCH_TIME];
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		/* Sleep / awake timeout in 100ns units */
		if (sa_shift > 0 && sa_shift <= 0x17)
			card->ext_csd.sa_timeout =
					1 << ext_csd[EXT_CSD_S_A_TIMEOUT];
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		card->ext_csd.erase_group_def =
			ext_csd[EXT_CSD_ERASE_GROUP_DEF];
		card->ext_csd.hc_erase_timeout = 300 *
			ext_csd[EXT_CSD_ERASE_TIMEOUT_MULT];
		card->ext_csd.hc_erase_size =
			ext_csd[EXT_CSD_HC_ERASE_GRP_SIZE] << 10;
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		card->ext_csd.rel_sectors = ext_csd[EXT_CSD_REL_WR_SEC_C];
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		/*
		 * There are two boot regions of equal size, defined in
		 * multiples of 128K.
		 */
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		if (ext_csd[EXT_CSD_BOOT_MULT] && mmc_boot_partition_access(card->host)) {
			for (idx = 0; idx < MMC_NUM_BOOT_PARTITION; idx++) {
				part_size = ext_csd[EXT_CSD_BOOT_MULT] << 17;
				mmc_part_add(card, part_size,
					EXT_CSD_PART_CONFIG_ACC_BOOT0 + idx,
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					"boot%d", idx, true,
					MMC_BLK_DATA_AREA_BOOT);
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			}
		}
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	}

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	card->ext_csd.raw_hc_erase_gap_size =
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		ext_csd[EXT_CSD_HC_WP_GRP_SIZE];
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	card->ext_csd.raw_sec_trim_mult =
		ext_csd[EXT_CSD_SEC_TRIM_MULT];
	card->ext_csd.raw_sec_erase_mult =
		ext_csd[EXT_CSD_SEC_ERASE_MULT];
	card->ext_csd.raw_sec_feature_support =
		ext_csd[EXT_CSD_SEC_FEATURE_SUPPORT];
	card->ext_csd.raw_trim_mult =
		ext_csd[EXT_CSD_TRIM_MULT];
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	card->ext_csd.raw_partition_support = ext_csd[EXT_CSD_PARTITION_SUPPORT];
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	card->ext_csd.raw_driver_strength = ext_csd[EXT_CSD_DRIVER_STRENGTH];
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	if (card->ext_csd.rev >= 4) {
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		if (ext_csd[EXT_CSD_PARTITION_SETTING_COMPLETED] &
		    EXT_CSD_PART_SETTING_COMPLETED)
			card->ext_csd.partition_setting_completed = 1;
		else
			card->ext_csd.partition_setting_completed = 0;

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		mmc_manage_enhanced_area(card, ext_csd);
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		mmc_manage_gp_partitions(card, ext_csd);
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		card->ext_csd.sec_trim_mult =
			ext_csd[EXT_CSD_SEC_TRIM_MULT];
		card->ext_csd.sec_erase_mult =
			ext_csd[EXT_CSD_SEC_ERASE_MULT];
		card->ext_csd.sec_feature_support =
			ext_csd[EXT_CSD_SEC_FEATURE_SUPPORT];
		card->ext_csd.trim_timeout = 300 *
			ext_csd[EXT_CSD_TRIM_MULT];
460 461 462 463 464 465 466 467

		/*
		 * Note that the call to mmc_part_add above defaults to read
		 * only. If this default assumption is changed, the call must
		 * take into account the value of boot_locked below.
		 */
		card->ext_csd.boot_ro_lock = ext_csd[EXT_CSD_BOOT_WP];
		card->ext_csd.boot_ro_lockable = true;
468 469 470 471 472 473 474 475 476 477 478 479 480 481 482 483 484 485

		/* Save power class values */
		card->ext_csd.raw_pwr_cl_52_195 =
			ext_csd[EXT_CSD_PWR_CL_52_195];
		card->ext_csd.raw_pwr_cl_26_195 =
			ext_csd[EXT_CSD_PWR_CL_26_195];
		card->ext_csd.raw_pwr_cl_52_360 =
			ext_csd[EXT_CSD_PWR_CL_52_360];
		card->ext_csd.raw_pwr_cl_26_360 =
			ext_csd[EXT_CSD_PWR_CL_26_360];
		card->ext_csd.raw_pwr_cl_200_195 =
			ext_csd[EXT_CSD_PWR_CL_200_195];
		card->ext_csd.raw_pwr_cl_200_360 =
			ext_csd[EXT_CSD_PWR_CL_200_360];
		card->ext_csd.raw_pwr_cl_ddr_52_195 =
			ext_csd[EXT_CSD_PWR_CL_DDR_52_195];
		card->ext_csd.raw_pwr_cl_ddr_52_360 =
			ext_csd[EXT_CSD_PWR_CL_DDR_52_360];
486 487
		card->ext_csd.raw_pwr_cl_ddr_200_360 =
			ext_csd[EXT_CSD_PWR_CL_DDR_200_360];
488 489
	}

490
	if (card->ext_csd.rev >= 5) {
491 492 493 494
		/* Adjust production date as per JEDEC JESD84-B451 */
		if (card->cid.year < 2010)
			card->cid.year += 16;

495 496 497
		/* check whether the eMMC card supports BKOPS */
		if (ext_csd[EXT_CSD_BKOPS_SUPPORT] & 0x1) {
			card->ext_csd.bkops = 1;
498 499 500
			card->ext_csd.man_bkops_en =
					(ext_csd[EXT_CSD_BKOPS_EN] &
						EXT_CSD_MANUAL_BKOPS_MASK);
501 502
			card->ext_csd.raw_bkops_status =
				ext_csd[EXT_CSD_BKOPS_STATUS];
503
			if (!card->ext_csd.man_bkops_en)
504
				pr_debug("%s: MAN_BKOPS_EN bit is not set\n",
505 506 507
					mmc_hostname(card->host));
		}

508
		/* check whether the eMMC card supports HPI */
509
		if (!broken_hpi && (ext_csd[EXT_CSD_HPI_FEATURES] & 0x1)) {
510 511 512 513 514 515 516 517 518 519 520 521 522
			card->ext_csd.hpi = 1;
			if (ext_csd[EXT_CSD_HPI_FEATURES] & 0x2)
				card->ext_csd.hpi_cmd =	MMC_STOP_TRANSMISSION;
			else
				card->ext_csd.hpi_cmd = MMC_SEND_STATUS;
			/*
			 * Indicate the maximum timeout to close
			 * a command interrupted by HPI
			 */
			card->ext_csd.out_of_int_time =
				ext_csd[EXT_CSD_OUT_OF_INTERRUPT_TIME] * 10;
		}

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Andrei Warkentin 已提交
523
		card->ext_csd.rel_param = ext_csd[EXT_CSD_WR_REL_PARAM];
524
		card->ext_csd.rst_n_function = ext_csd[EXT_CSD_RST_N_FUNCTION];
525 526 527 528 529

		/*
		 * RPMB regions are defined in multiples of 128K.
		 */
		card->ext_csd.raw_rpmb_size_mult = ext_csd[EXT_CSD_RPMB_MULT];
530
		if (ext_csd[EXT_CSD_RPMB_MULT] && mmc_host_cmd23(card->host)) {
531 532 533 534 535
			mmc_part_add(card, ext_csd[EXT_CSD_RPMB_MULT] << 17,
				EXT_CSD_PART_CONFIG_ACC_RPMB,
				"rpmb", 0, false,
				MMC_BLK_DATA_AREA_RPMB);
		}
536
	}
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Andrei Warkentin 已提交
537

538
	card->ext_csd.raw_erased_mem_count = ext_csd[EXT_CSD_ERASED_MEM_CONT];
539 540 541 542 543
	if (ext_csd[EXT_CSD_ERASED_MEM_CONT])
		card->erased_byte = 0xFF;
	else
		card->erased_byte = 0x0;

544
	/* eMMC v4.5 or later */
545
	if (card->ext_csd.rev >= 6) {
546 547
		card->ext_csd.feature_support |= MMC_DISCARD_FEATURE;

548 549
		card->ext_csd.generic_cmd6_time = 10 *
			ext_csd[EXT_CSD_GENERIC_CMD6_TIME];
550 551
		card->ext_csd.power_off_longtime = 10 *
			ext_csd[EXT_CSD_POWER_OFF_LONG_TIME];
552

553 554 555 556 557
		card->ext_csd.cache_size =
			ext_csd[EXT_CSD_CACHE_SIZE + 0] << 0 |
			ext_csd[EXT_CSD_CACHE_SIZE + 1] << 8 |
			ext_csd[EXT_CSD_CACHE_SIZE + 2] << 16 |
			ext_csd[EXT_CSD_CACHE_SIZE + 3] << 24;
S
Saugata Das 已提交
558 559 560 561 562 563 564 565 566 567 568 569 570 571

		if (ext_csd[EXT_CSD_DATA_SECTOR_SIZE] == 1)
			card->ext_csd.data_sector_size = 4096;
		else
			card->ext_csd.data_sector_size = 512;

		if ((ext_csd[EXT_CSD_DATA_TAG_SUPPORT] & 1) &&
		    (ext_csd[EXT_CSD_TAG_UNIT_SIZE] <= 8)) {
			card->ext_csd.data_tag_unit_size =
			((unsigned int) 1 << ext_csd[EXT_CSD_TAG_UNIT_SIZE]) *
			(card->ext_csd.data_sector_size);
		} else {
			card->ext_csd.data_tag_unit_size = 0;
		}
572 573 574 575 576

		card->ext_csd.max_packed_writes =
			ext_csd[EXT_CSD_MAX_PACKED_WRITES];
		card->ext_csd.max_packed_reads =
			ext_csd[EXT_CSD_MAX_PACKED_READS];
577 578
	} else {
		card->ext_csd.data_sector_size = 512;
579
	}
580

581 582 583 584 585 586 587 588
	/* eMMC v5 or later */
	if (card->ext_csd.rev >= 7) {
		memcpy(card->ext_csd.fwrev, &ext_csd[EXT_CSD_FIRMWARE_VERSION],
		       MMC_FIRMWARE_LEN);
		card->ext_csd.ffu_capable =
			(ext_csd[EXT_CSD_SUPPORTED_MODE] & 0x1) &&
			!(ext_csd[EXT_CSD_FW_CONFIG] & 0x1);
	}
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Pierre Ossman 已提交
589
out:
590 591 592
	return err;
}

593 594
static int mmc_read_ext_csd(struct mmc_card *card)
{
595
	u8 *ext_csd;
596 597
	int err;

598 599 600
	if (!mmc_can_ext_csd(card))
		return 0;

601
	err = mmc_get_ext_csd(card, &ext_csd);
602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622
	if (err) {
		/* If the host or the card can't do the switch,
		 * fail more gracefully. */
		if ((err != -EINVAL)
		 && (err != -ENOSYS)
		 && (err != -EFAULT))
			return err;

		/*
		 * High capacity cards should have this "magic" size
		 * stored in their CSD.
		 */
		if (card->csd.capacity == (4096 * 512)) {
			pr_err("%s: unable to read EXT_CSD on a possible high capacity card. Card will be ignored.\n",
				mmc_hostname(card->host));
		} else {
			pr_warn("%s: unable to read EXT_CSD, performance might suffer\n",
				mmc_hostname(card->host));
			err = 0;
		}

623
		return err;
624
	}
625 626 627 628 629 630

	err = mmc_decode_ext_csd(card, ext_csd);
	kfree(ext_csd);
	return err;
}

631
static int mmc_compare_ext_csds(struct mmc_card *card, unsigned bus_width)
632 633 634 635
{
	u8 *bw_ext_csd;
	int err;

636 637 638
	if (bus_width == MMC_BUS_WIDTH_1)
		return 0;

639
	err = mmc_get_ext_csd(card, &bw_ext_csd);
640 641
	if (err)
		return err;
642 643

	/* only compare read only fields */
644
	err = !((card->ext_csd.raw_partition_support ==
645
			bw_ext_csd[EXT_CSD_PARTITION_SUPPORT]) &&
646
		(card->ext_csd.raw_erased_mem_count ==
647
			bw_ext_csd[EXT_CSD_ERASED_MEM_CONT]) &&
648
		(card->ext_csd.rev ==
649
			bw_ext_csd[EXT_CSD_REV]) &&
650
		(card->ext_csd.raw_ext_csd_structure ==
651
			bw_ext_csd[EXT_CSD_STRUCTURE]) &&
652
		(card->ext_csd.raw_card_type ==
653
			bw_ext_csd[EXT_CSD_CARD_TYPE]) &&
654
		(card->ext_csd.raw_s_a_timeout ==
655
			bw_ext_csd[EXT_CSD_S_A_TIMEOUT]) &&
656
		(card->ext_csd.raw_hc_erase_gap_size ==
657
			bw_ext_csd[EXT_CSD_HC_WP_GRP_SIZE]) &&
658
		(card->ext_csd.raw_erase_timeout_mult ==
659
			bw_ext_csd[EXT_CSD_ERASE_TIMEOUT_MULT]) &&
660
		(card->ext_csd.raw_hc_erase_grp_size ==
661
			bw_ext_csd[EXT_CSD_HC_ERASE_GRP_SIZE]) &&
662
		(card->ext_csd.raw_sec_trim_mult ==
663
			bw_ext_csd[EXT_CSD_SEC_TRIM_MULT]) &&
664
		(card->ext_csd.raw_sec_erase_mult ==
665
			bw_ext_csd[EXT_CSD_SEC_ERASE_MULT]) &&
666
		(card->ext_csd.raw_sec_feature_support ==
667
			bw_ext_csd[EXT_CSD_SEC_FEATURE_SUPPORT]) &&
668
		(card->ext_csd.raw_trim_mult ==
669
			bw_ext_csd[EXT_CSD_TRIM_MULT]) &&
670 671 672 673 674 675 676
		(card->ext_csd.raw_sectors[0] ==
			bw_ext_csd[EXT_CSD_SEC_CNT + 0]) &&
		(card->ext_csd.raw_sectors[1] ==
			bw_ext_csd[EXT_CSD_SEC_CNT + 1]) &&
		(card->ext_csd.raw_sectors[2] ==
			bw_ext_csd[EXT_CSD_SEC_CNT + 2]) &&
		(card->ext_csd.raw_sectors[3] ==
677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692
			bw_ext_csd[EXT_CSD_SEC_CNT + 3]) &&
		(card->ext_csd.raw_pwr_cl_52_195 ==
			bw_ext_csd[EXT_CSD_PWR_CL_52_195]) &&
		(card->ext_csd.raw_pwr_cl_26_195 ==
			bw_ext_csd[EXT_CSD_PWR_CL_26_195]) &&
		(card->ext_csd.raw_pwr_cl_52_360 ==
			bw_ext_csd[EXT_CSD_PWR_CL_52_360]) &&
		(card->ext_csd.raw_pwr_cl_26_360 ==
			bw_ext_csd[EXT_CSD_PWR_CL_26_360]) &&
		(card->ext_csd.raw_pwr_cl_200_195 ==
			bw_ext_csd[EXT_CSD_PWR_CL_200_195]) &&
		(card->ext_csd.raw_pwr_cl_200_360 ==
			bw_ext_csd[EXT_CSD_PWR_CL_200_360]) &&
		(card->ext_csd.raw_pwr_cl_ddr_52_195 ==
			bw_ext_csd[EXT_CSD_PWR_CL_DDR_52_195]) &&
		(card->ext_csd.raw_pwr_cl_ddr_52_360 ==
693 694 695 696
			bw_ext_csd[EXT_CSD_PWR_CL_DDR_52_360]) &&
		(card->ext_csd.raw_pwr_cl_ddr_200_360 ==
			bw_ext_csd[EXT_CSD_PWR_CL_DDR_200_360]));

697 698 699
	if (err)
		err = -EINVAL;

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Ulf Hansson 已提交
700
	kfree(bw_ext_csd);
P
Pierre Ossman 已提交
701 702 703
	return err;
}

704 705 706 707 708
MMC_DEV_ATTR(cid, "%08x%08x%08x%08x\n", card->raw_cid[0], card->raw_cid[1],
	card->raw_cid[2], card->raw_cid[3]);
MMC_DEV_ATTR(csd, "%08x%08x%08x%08x\n", card->raw_csd[0], card->raw_csd[1],
	card->raw_csd[2], card->raw_csd[3]);
MMC_DEV_ATTR(date, "%02d/%04d\n", card->cid.month, card->cid.year);
709 710
MMC_DEV_ATTR(erase_size, "%u\n", card->erase_size << 9);
MMC_DEV_ATTR(preferred_erase_size, "%u\n", card->pref_erase << 9);
711
MMC_DEV_ATTR(ffu_capable, "%d\n", card->ext_csd.ffu_capable);
712 713 714 715
MMC_DEV_ATTR(hwrev, "0x%x\n", card->cid.hwrev);
MMC_DEV_ATTR(manfid, "0x%06x\n", card->cid.manfid);
MMC_DEV_ATTR(name, "%s\n", card->cid.prod_name);
MMC_DEV_ATTR(oemid, "0x%04x\n", card->cid.oemid);
716
MMC_DEV_ATTR(prv, "0x%x\n", card->cid.prv);
717
MMC_DEV_ATTR(serial, "0x%08x\n", card->cid.serial);
718 719 720
MMC_DEV_ATTR(enhanced_area_offset, "%llu\n",
		card->ext_csd.enhanced_area_offset);
MMC_DEV_ATTR(enhanced_area_size, "%u\n", card->ext_csd.enhanced_area_size);
721 722
MMC_DEV_ATTR(raw_rpmb_size_mult, "%#x\n", card->ext_csd.raw_rpmb_size_mult);
MMC_DEV_ATTR(rel_sectors, "%#x\n", card->ext_csd.rel_sectors);
723

724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739
static ssize_t mmc_fwrev_show(struct device *dev,
			      struct device_attribute *attr,
			      char *buf)
{
	struct mmc_card *card = mmc_dev_to_card(dev);

	if (card->ext_csd.rev < 7) {
		return sprintf(buf, "0x%x\n", card->cid.fwrev);
	} else {
		return sprintf(buf, "0x%*phN\n", MMC_FIRMWARE_LEN,
			       card->ext_csd.fwrev);
	}
}

static DEVICE_ATTR(fwrev, S_IRUGO, mmc_fwrev_show, NULL);

740 741 742 743
static struct attribute *mmc_std_attrs[] = {
	&dev_attr_cid.attr,
	&dev_attr_csd.attr,
	&dev_attr_date.attr,
744 745
	&dev_attr_erase_size.attr,
	&dev_attr_preferred_erase_size.attr,
746
	&dev_attr_fwrev.attr,
747
	&dev_attr_ffu_capable.attr,
748 749 750 751
	&dev_attr_hwrev.attr,
	&dev_attr_manfid.attr,
	&dev_attr_name.attr,
	&dev_attr_oemid.attr,
752
	&dev_attr_prv.attr,
753
	&dev_attr_serial.attr,
754 755
	&dev_attr_enhanced_area_offset.attr,
	&dev_attr_enhanced_area_size.attr,
756 757
	&dev_attr_raw_rpmb_size_mult.attr,
	&dev_attr_rel_sectors.attr,
758 759
	NULL,
};
A
Axel Lin 已提交
760
ATTRIBUTE_GROUPS(mmc_std);
761 762

static struct device_type mmc_type = {
A
Axel Lin 已提交
763
	.groups = mmc_std_groups,
764 765
};

766 767 768 769 770 771
/*
 * Select the PowerClass for the current bus width
 * If power class is defined for 4/8 bit bus in the
 * extended CSD register, select it by executing the
 * mmc_switch command.
 */
772 773
static int __mmc_select_powerclass(struct mmc_card *card,
				   unsigned int bus_width)
774
{
775 776
	struct mmc_host *host = card->host;
	struct mmc_ext_csd *ext_csd = &card->ext_csd;
777
	unsigned int pwrclass_val = 0;
778
	int err = 0;
779 780 781

	switch (1 << host->ios.vdd) {
	case MMC_VDD_165_195:
782 783 784
		if (host->ios.clock <= MMC_HIGH_26_MAX_DTR)
			pwrclass_val = ext_csd->raw_pwr_cl_26_195;
		else if (host->ios.clock <= MMC_HIGH_52_MAX_DTR)
785
			pwrclass_val = (bus_width <= EXT_CSD_BUS_WIDTH_8) ?
786 787 788 789
				ext_csd->raw_pwr_cl_52_195 :
				ext_csd->raw_pwr_cl_ddr_52_195;
		else if (host->ios.clock <= MMC_HS200_MAX_DTR)
			pwrclass_val = ext_csd->raw_pwr_cl_200_195;
790
		break;
791 792 793 794 795
	case MMC_VDD_27_28:
	case MMC_VDD_28_29:
	case MMC_VDD_29_30:
	case MMC_VDD_30_31:
	case MMC_VDD_31_32:
796 797 798 799
	case MMC_VDD_32_33:
	case MMC_VDD_33_34:
	case MMC_VDD_34_35:
	case MMC_VDD_35_36:
800 801 802
		if (host->ios.clock <= MMC_HIGH_26_MAX_DTR)
			pwrclass_val = ext_csd->raw_pwr_cl_26_360;
		else if (host->ios.clock <= MMC_HIGH_52_MAX_DTR)
803
			pwrclass_val = (bus_width <= EXT_CSD_BUS_WIDTH_8) ?
804 805 806
				ext_csd->raw_pwr_cl_52_360 :
				ext_csd->raw_pwr_cl_ddr_52_360;
		else if (host->ios.clock <= MMC_HS200_MAX_DTR)
807 808 809
			pwrclass_val = (bus_width == EXT_CSD_DDR_BUS_WIDTH_8) ?
				ext_csd->raw_pwr_cl_ddr_200_360 :
				ext_csd->raw_pwr_cl_200_360;
810 811
		break;
	default:
J
Joe Perches 已提交
812 813
		pr_warn("%s: Voltage range not supported for power class\n",
			mmc_hostname(host));
814 815 816 817 818 819 820 821 822 823 824 825 826 827 828
		return -EINVAL;
	}

	if (bus_width & (EXT_CSD_BUS_WIDTH_8 | EXT_CSD_DDR_BUS_WIDTH_8))
		pwrclass_val = (pwrclass_val & EXT_CSD_PWR_CL_8BIT_MASK) >>
				EXT_CSD_PWR_CL_8BIT_SHIFT;
	else
		pwrclass_val = (pwrclass_val & EXT_CSD_PWR_CL_4BIT_MASK) >>
				EXT_CSD_PWR_CL_4BIT_SHIFT;

	/* If the power class is different from the default value */
	if (pwrclass_val > 0) {
		err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
				 EXT_CSD_POWER_CLASS,
				 pwrclass_val,
829
				 card->ext_csd.generic_cmd6_time);
830 831 832 833 834
	}

	return err;
}

835 836 837 838 839 840 841
static int mmc_select_powerclass(struct mmc_card *card)
{
	struct mmc_host *host = card->host;
	u32 bus_width, ext_csd_bits;
	int err, ddr;

	/* Power class selection is supported for versions >= 4.0 */
842
	if (!mmc_can_ext_csd(card))
843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865
		return 0;

	bus_width = host->ios.bus_width;
	/* Power class values are defined only for 4/8 bit bus */
	if (bus_width == MMC_BUS_WIDTH_1)
		return 0;

	ddr = card->mmc_avail_type & EXT_CSD_CARD_TYPE_DDR_52;
	if (ddr)
		ext_csd_bits = (bus_width == MMC_BUS_WIDTH_8) ?
			EXT_CSD_DDR_BUS_WIDTH_8 : EXT_CSD_DDR_BUS_WIDTH_4;
	else
		ext_csd_bits = (bus_width == MMC_BUS_WIDTH_8) ?
			EXT_CSD_BUS_WIDTH_8 :  EXT_CSD_BUS_WIDTH_4;

	err = __mmc_select_powerclass(card, ext_csd_bits);
	if (err)
		pr_warn("%s: power class selection to bus width %d ddr %d failed\n",
			mmc_hostname(host), 1 << bus_width, ddr);

	return err;
}

866
/*
867
 * Set the bus speed for the selected speed mode.
868
 */
869 870 871 872
static void mmc_set_bus_speed(struct mmc_card *card)
{
	unsigned int max_dtr = (unsigned int)-1;

873 874
	if ((mmc_card_hs200(card) || mmc_card_hs400(card)) &&
	     max_dtr > card->ext_csd.hs200_max_dtr)
875 876 877 878 879 880 881 882 883 884 885 886 887 888 889
		max_dtr = card->ext_csd.hs200_max_dtr;
	else if (mmc_card_hs(card) && max_dtr > card->ext_csd.hs_max_dtr)
		max_dtr = card->ext_csd.hs_max_dtr;
	else if (max_dtr > card->csd.max_dtr)
		max_dtr = card->csd.max_dtr;

	mmc_set_clock(card->host, max_dtr);
}

/*
 * Select the bus width amoung 4-bit and 8-bit(SDR).
 * If the bus width is changed successfully, return the selected width value.
 * Zero is returned instead of error value if the wide width is not supported.
 */
static int mmc_select_bus_width(struct mmc_card *card)
890 891 892
{
	static unsigned ext_csd_bits[] = {
		EXT_CSD_BUS_WIDTH_8,
893
		EXT_CSD_BUS_WIDTH_4,
894 895 896
	};
	static unsigned bus_widths[] = {
		MMC_BUS_WIDTH_8,
897
		MMC_BUS_WIDTH_4,
898
	};
899 900 901
	struct mmc_host *host = card->host;
	unsigned idx, bus_width = 0;
	int err = 0;
902

903
	if (!mmc_can_ext_csd(card) ||
904 905
	    !(host->caps & (MMC_CAP_4_BIT_DATA | MMC_CAP_8_BIT_DATA)))
		return 0;
906

907
	idx = (host->caps & MMC_CAP_8_BIT_DATA) ? 0 : 1;
908 909 910 911 912 913 914

	/*
	 * Unlike SD, MMC cards dont have a configuration register to notify
	 * supported bus width. So bus test command should be run to identify
	 * the supported bus width or compare the ext csd values of current
	 * bus width and ext csd values of 1 bit mode read earlier.
	 */
915
	for (; idx < ARRAY_SIZE(bus_widths); idx++) {
916 917 918 919 920 921 922 923 924 925 926 927 928 929
		/*
		 * Host is capable of 8bit transfer, then switch
		 * the device to work in 8bit transfer mode. If the
		 * mmc switch command returns error then switch to
		 * 4bit transfer mode. On success set the corresponding
		 * bus width on the host.
		 */
		err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
				 EXT_CSD_BUS_WIDTH,
				 ext_csd_bits[idx],
				 card->ext_csd.generic_cmd6_time);
		if (err)
			continue;

930 931
		bus_width = bus_widths[idx];
		mmc_set_bus_width(host, bus_width);
932

933 934 935 936 937
		/*
		 * If controller can't handle bus width test,
		 * compare ext_csd previously read in 1 bit mode
		 * against ext_csd at new bus width
		 */
938
		if (!(host->caps & MMC_CAP_BUS_WIDTH_TEST))
939
			err = mmc_compare_ext_csds(card, bus_width);
940
		else
941 942 943 944
			err = mmc_bus_test(card, bus_width);

		if (!err) {
			err = bus_width;
945
			break;
946 947
		} else {
			pr_warn("%s: switch to bus width %d failed\n",
948
				mmc_hostname(host), 1 << bus_width);
949
		}
950 951
	}

952 953 954 955 956 957 958 959 960 961 962 963 964 965
	return err;
}

/*
 * Switch to the high-speed mode
 */
static int mmc_select_hs(struct mmc_card *card)
{
	int err;

	err = __mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
			   EXT_CSD_HS_TIMING, EXT_CSD_TIMING_HS,
			   card->ext_csd.generic_cmd6_time,
			   true, true, true);
966
	if (!err)
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
		mmc_set_timing(card->host, MMC_TIMING_MMC_HS);

	return err;
}

/*
 * Activate wide bus and DDR if supported.
 */
static int mmc_select_hs_ddr(struct mmc_card *card)
{
	struct mmc_host *host = card->host;
	u32 bus_width, ext_csd_bits;
	int err = 0;

	if (!(card->mmc_avail_type & EXT_CSD_CARD_TYPE_DDR_52))
		return 0;

	bus_width = host->ios.bus_width;
	if (bus_width == MMC_BUS_WIDTH_1)
		return 0;

	ext_csd_bits = (bus_width == MMC_BUS_WIDTH_8) ?
		EXT_CSD_DDR_BUS_WIDTH_8 : EXT_CSD_DDR_BUS_WIDTH_4;

	err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
			EXT_CSD_BUS_WIDTH,
			ext_csd_bits,
			card->ext_csd.generic_cmd6_time);
	if (err) {
996
		pr_err("%s: switch to bus width %d ddr failed\n",
997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009
			mmc_hostname(host), 1 << bus_width);
		return err;
	}

	/*
	 * eMMC cards can support 3.3V to 1.2V i/o (vccq)
	 * signaling.
	 *
	 * EXT_CSD_CARD_TYPE_DDR_1_8V means 3.3V or 1.8V vccq.
	 *
	 * 1.8V vccq at 3.3V core voltage (vcc) is not required
	 * in the JEDEC spec for DDR.
	 *
1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
	 * Even (e)MMC card can support 3.3v to 1.2v vccq, but not all
	 * host controller can support this, like some of the SDHCI
	 * controller which connect to an eMMC device. Some of these
	 * host controller still needs to use 1.8v vccq for supporting
	 * DDR mode.
	 *
	 * So the sequence will be:
	 * if (host and device can both support 1.2v IO)
	 *	use 1.2v IO;
	 * else if (host and device can both support 1.8v IO)
	 *	use 1.8v IO;
	 * so if host and device can only support 3.3v IO, this is the
	 * last choice.
1023 1024 1025
	 *
	 * WARNING: eMMC rules are NOT the same as SD DDR
	 */
1026 1027 1028
	err = -EINVAL;
	if (card->mmc_avail_type & EXT_CSD_CARD_TYPE_DDR_1_2V)
		err = __mmc_set_signal_voltage(host, MMC_SIGNAL_VOLTAGE_120);
1029

1030 1031 1032 1033 1034 1035 1036 1037 1038
	if (err && (card->mmc_avail_type & EXT_CSD_CARD_TYPE_DDR_1_8V))
		err = __mmc_set_signal_voltage(host, MMC_SIGNAL_VOLTAGE_180);

	/* make sure vccq is 3.3v after switching disaster */
	if (err)
		err = __mmc_set_signal_voltage(host, MMC_SIGNAL_VOLTAGE_330);

	if (!err)
		mmc_set_timing(host, MMC_TIMING_MMC_DDR52);
1039 1040 1041 1042

	return err;
}

A
Adrian Hunter 已提交
1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055
/* Caller must hold re-tuning */
static int mmc_switch_status(struct mmc_card *card)
{
	u32 status;
	int err;

	err = mmc_send_status(card, &status);
	if (err)
		return err;

	return mmc_switch_status_error(card->host, status);
}

1056 1057 1058
static int mmc_select_hs400(struct mmc_card *card)
{
	struct mmc_host *host = card->host;
1059
	bool send_status = true;
1060
	unsigned int max_dtr;
1061
	int err = 0;
1062
	u8 val;
1063 1064 1065 1066 1067 1068 1069 1070

	/*
	 * HS400 mode requires 8-bit bus width
	 */
	if (!(card->mmc_avail_type & EXT_CSD_CARD_TYPE_HS400 &&
	      host->ios.bus_width == MMC_BUS_WIDTH_8))
		return 0;

1071 1072 1073
	if (host->caps & MMC_CAP_WAIT_WHILE_BUSY)
		send_status = false;

1074 1075 1076
	/* Reduce frequency to HS frequency */
	max_dtr = card->ext_csd.hs_max_dtr;
	mmc_set_clock(host, max_dtr);
1077

1078
	/* Switch card to HS mode */
1079
	val = EXT_CSD_TIMING_HS;
1080
	err = __mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
1081
			   EXT_CSD_HS_TIMING, val,
1082
			   card->ext_csd.generic_cmd6_time,
1083
			   true, send_status, true);
1084
	if (err) {
1085
		pr_err("%s: switch to high-speed from hs200 failed, err:%d\n",
1086 1087 1088 1089
			mmc_hostname(host), err);
		return err;
	}

1090 1091 1092
	/* Set host controller to HS timing */
	mmc_set_timing(card->host, MMC_TIMING_MMC_HS);

1093 1094 1095 1096 1097 1098 1099
	if (!send_status) {
		err = mmc_switch_status(card);
		if (err)
			goto out_err;
	}

	/* Switch card to DDR */
1100 1101 1102 1103 1104
	err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
			 EXT_CSD_BUS_WIDTH,
			 EXT_CSD_DDR_BUS_WIDTH_8,
			 card->ext_csd.generic_cmd6_time);
	if (err) {
1105
		pr_err("%s: switch to bus width for hs400 failed, err:%d\n",
1106 1107 1108 1109
			mmc_hostname(host), err);
		return err;
	}

1110
	/* Switch card to HS400 */
1111 1112
	val = EXT_CSD_TIMING_HS400 |
	      card->drive_strength << EXT_CSD_DRV_STR_SHIFT;
1113
	err = __mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
1114
			   EXT_CSD_HS_TIMING, val,
1115
			   card->ext_csd.generic_cmd6_time,
1116
			   true, send_status, true);
1117
	if (err) {
1118
		pr_err("%s: switch to hs400 failed, err:%d\n",
1119 1120 1121 1122
			 mmc_hostname(host), err);
		return err;
	}

1123
	/* Set host controller to HS400 timing and frequency */
1124 1125 1126
	mmc_set_timing(host, MMC_TIMING_MMC_HS400);
	mmc_set_bus_speed(card);

1127 1128 1129 1130 1131 1132
	if (!send_status) {
		err = mmc_switch_status(card);
		if (err)
			goto out_err;
	}

1133
	return 0;
1134 1135 1136 1137 1138

out_err:
	pr_err("%s: %s failed, error %d\n", mmc_hostname(card->host),
	       __func__, err);
	return err;
1139 1140
}

1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151
int mmc_hs200_to_hs400(struct mmc_card *card)
{
	return mmc_select_hs400(card);
}

int mmc_hs400_to_hs200(struct mmc_card *card)
{
	struct mmc_host *host = card->host;
	bool send_status = true;
	unsigned int max_dtr;
	int err;
1152
	u8 val;
1153 1154 1155 1156 1157 1158 1159 1160 1161

	if (host->caps & MMC_CAP_WAIT_WHILE_BUSY)
		send_status = false;

	/* Reduce frequency to HS */
	max_dtr = card->ext_csd.hs_max_dtr;
	mmc_set_clock(host, max_dtr);

	/* Switch HS400 to HS DDR */
1162
	val = EXT_CSD_TIMING_HS;
1163
	err = __mmc_switch(card, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_HS_TIMING,
1164
			   val, card->ext_csd.generic_cmd6_time,
1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192
			   true, send_status, true);
	if (err)
		goto out_err;

	mmc_set_timing(host, MMC_TIMING_MMC_DDR52);

	if (!send_status) {
		err = mmc_switch_status(card);
		if (err)
			goto out_err;
	}

	/* Switch HS DDR to HS */
	err = __mmc_switch(card, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_BUS_WIDTH,
			   EXT_CSD_BUS_WIDTH_8, card->ext_csd.generic_cmd6_time,
			   true, send_status, true);
	if (err)
		goto out_err;

	mmc_set_timing(host, MMC_TIMING_MMC_HS);

	if (!send_status) {
		err = mmc_switch_status(card);
		if (err)
			goto out_err;
	}

	/* Switch HS to HS200 */
1193 1194
	val = EXT_CSD_TIMING_HS200 |
	      card->drive_strength << EXT_CSD_DRV_STR_SHIFT;
1195
	err = __mmc_switch(card, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_HS_TIMING,
1196 1197
			   val, card->ext_csd.generic_cmd6_time, true,
			   send_status, true);
1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218
	if (err)
		goto out_err;

	mmc_set_timing(host, MMC_TIMING_MMC_HS200);

	if (!send_status) {
		err = mmc_switch_status(card);
		if (err)
			goto out_err;
	}

	mmc_set_bus_speed(card);

	return 0;

out_err:
	pr_err("%s: %s failed, error %d\n", mmc_hostname(card->host),
	       __func__, err);
	return err;
}

1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235
static void mmc_select_driver_type(struct mmc_card *card)
{
	int card_drv_type, drive_strength, drv_type;

	card_drv_type = card->ext_csd.raw_driver_strength |
			mmc_driver_type_mask(0);

	drive_strength = mmc_select_drive_strength(card,
						   card->ext_csd.hs200_max_dtr,
						   card_drv_type, &drv_type);

	card->drive_strength = drive_strength;

	if (drv_type)
		mmc_set_driver_type(card->host, drv_type);
}

1236 1237 1238 1239 1240 1241 1242 1243 1244 1245
/*
 * For device supporting HS200 mode, the following sequence
 * should be done before executing the tuning process.
 * 1. set the desired bus width(4-bit or 8-bit, 1-bit is not supported)
 * 2. switch to HS200 mode
 * 3. set the clock to > 52Mhz and <=200MHz
 */
static int mmc_select_hs200(struct mmc_card *card)
{
	struct mmc_host *host = card->host;
1246
	bool send_status = true;
1247
	unsigned int old_timing, old_signal_voltage;
1248
	int err = -EINVAL;
1249
	u8 val;
1250

1251
	old_signal_voltage = host->ios.signal_voltage;
1252 1253 1254 1255 1256 1257 1258 1259
	if (card->mmc_avail_type & EXT_CSD_CARD_TYPE_HS200_1_2V)
		err = __mmc_set_signal_voltage(host, MMC_SIGNAL_VOLTAGE_120);

	if (err && card->mmc_avail_type & EXT_CSD_CARD_TYPE_HS200_1_8V)
		err = __mmc_set_signal_voltage(host, MMC_SIGNAL_VOLTAGE_180);

	/* If fails try again during next card power cycle */
	if (err)
1260
		return err;
1261

1262 1263
	mmc_select_driver_type(card);

1264 1265 1266
	if (host->caps & MMC_CAP_WAIT_WHILE_BUSY)
		send_status = false;

1267 1268 1269 1270 1271 1272
	/*
	 * Set the bus width(4 or 8) with host's support and
	 * switch to HS200 mode if bus width is set successfully.
	 */
	err = mmc_select_bus_width(card);
	if (!IS_ERR_VALUE(err)) {
1273 1274
		val = EXT_CSD_TIMING_HS200 |
		      card->drive_strength << EXT_CSD_DRV_STR_SHIFT;
1275
		err = __mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
1276
				   EXT_CSD_HS_TIMING, val,
1277
				   card->ext_csd.generic_cmd6_time,
1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291
				   true, send_status, true);
		if (err)
			goto err;
		old_timing = host->ios.timing;
		mmc_set_timing(host, MMC_TIMING_MMC_HS200);
		if (!send_status) {
			err = mmc_switch_status(card);
			/*
			 * mmc_select_timing() assumes timing has not changed if
			 * it is a switch error.
			 */
			if (err == -EBADMSG)
				mmc_set_timing(host, old_timing);
		}
1292
	}
1293
err:
1294 1295 1296 1297 1298
	if (err) {
		/* fall back to the old signal voltage, if fails report error */
		if (__mmc_set_signal_voltage(host, old_signal_voltage))
			err = -EIO;

1299 1300
		pr_err("%s: %s failed, error %d\n", mmc_hostname(card->host),
		       __func__, err);
1301
	}
1302 1303 1304
	return err;
}

1305 1306 1307 1308 1309 1310 1311
/*
 * Activate High Speed or HS200 mode if supported.
 */
static int mmc_select_timing(struct mmc_card *card)
{
	int err = 0;

1312
	if (!mmc_can_ext_csd(card))
1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328
		goto bus_speed;

	if (card->mmc_avail_type & EXT_CSD_CARD_TYPE_HS200)
		err = mmc_select_hs200(card);
	else if (card->mmc_avail_type & EXT_CSD_CARD_TYPE_HS)
		err = mmc_select_hs(card);

	if (err && err != -EBADMSG)
		return err;

bus_speed:
	/*
	 * Set the bus speed to the selected bus timing.
	 * If timing is not selected, backward compatible is the default.
	 */
	mmc_set_bus_speed(card);
1329
	return 0;
1330 1331 1332 1333
}

/*
 * Execute tuning sequence to seek the proper bus operating
1334
 * conditions for HS200 and HS400, which sends CMD21 to the device.
1335 1336 1337 1338 1339
 */
static int mmc_hs200_tuning(struct mmc_card *card)
{
	struct mmc_host *host = card->host;

1340 1341 1342 1343 1344 1345 1346 1347 1348
	/*
	 * Timing should be adjusted to the HS400 target
	 * operation frequency for tuning process
	 */
	if (card->mmc_avail_type & EXT_CSD_CARD_TYPE_HS400 &&
	    host->ios.bus_width == MMC_BUS_WIDTH_8)
		if (host->ops->prepare_hs400_tuning)
			host->ops->prepare_hs400_tuning(host, &host->ios);

1349
	return mmc_execute_tuning(card);
1350 1351
}

P
Pierre Ossman 已提交
1352
/*
1353 1354
 * Handle the detection and initialisation of a card.
 *
D
Deepak Saxena 已提交
1355
 * In the case of a resume, "oldcard" will contain the card
1356
 * we're trying to reinitialise.
P
Pierre Ossman 已提交
1357
 */
1358
static int mmc_init_card(struct mmc_host *host, u32 ocr,
1359
	struct mmc_card *oldcard)
P
Pierre Ossman 已提交
1360 1361
{
	struct mmc_card *card;
1362
	int err;
P
Pierre Ossman 已提交
1363
	u32 cid[4];
1364
	u32 rocr;
P
Pierre Ossman 已提交
1365 1366

	BUG_ON(!host);
P
Pierre Ossman 已提交
1367
	WARN_ON(!host->claimed);
P
Pierre Ossman 已提交
1368

1369 1370 1371 1372
	/* Set correct bus mode for MMC before attempting init */
	if (!mmc_host_is_spi(host))
		mmc_set_bus_mode(host, MMC_BUSMODE_OPENDRAIN);

P
Pierre Ossman 已提交
1373 1374 1375 1376 1377
	/*
	 * Since we're changing the OCR value, we seem to
	 * need to tell some cards to go back to the idle
	 * state.  We wait 1ms to give cards time to
	 * respond.
1378
	 * mmc_go_idle is needed for eMMC that are asleep
P
Pierre Ossman 已提交
1379 1380 1381 1382
	 */
	mmc_go_idle(host);

	/* The extra bit indicates that we support high capacity */
1383
	err = mmc_send_op_cond(host, ocr | (1 << 30), &rocr);
P
Pierre Ossman 已提交
1384
	if (err)
1385
		goto err;
P
Pierre Ossman 已提交
1386

D
David Brownell 已提交
1387 1388 1389 1390 1391 1392 1393 1394 1395
	/*
	 * For SPI, enable CRC as appropriate.
	 */
	if (mmc_host_is_spi(host)) {
		err = mmc_spi_set_crc(host, use_spi_crc);
		if (err)
			goto err;
	}

P
Pierre Ossman 已提交
1396 1397 1398
	/*
	 * Fetch CID from card.
	 */
D
David Brownell 已提交
1399 1400 1401 1402
	if (mmc_host_is_spi(host))
		err = mmc_send_cid(host, cid);
	else
		err = mmc_all_send_cid(host, cid);
P
Pierre Ossman 已提交
1403
	if (err)
P
Pierre Ossman 已提交
1404 1405
		goto err;

1406
	if (oldcard) {
P
Pierre Ossman 已提交
1407 1408
		if (memcmp(cid, oldcard->raw_cid, sizeof(cid)) != 0) {
			err = -ENOENT;
1409
			goto err;
P
Pierre Ossman 已提交
1410
		}
1411 1412 1413 1414 1415 1416

		card = oldcard;
	} else {
		/*
		 * Allocate card structure.
		 */
1417
		card = mmc_alloc_card(host, &mmc_type);
P
Pierre Ossman 已提交
1418 1419
		if (IS_ERR(card)) {
			err = PTR_ERR(card);
1420
			goto err;
P
Pierre Ossman 已提交
1421
		}
P
Pierre Ossman 已提交
1422

1423
		card->ocr = ocr;
1424 1425 1426 1427
		card->type = MMC_TYPE_MMC;
		card->rca = 1;
		memcpy(card->raw_cid, cid, sizeof(card->raw_cid));
	}
P
Pierre Ossman 已提交
1428

1429 1430 1431 1432 1433 1434
	/*
	 * Call the optional HC's init_card function to handle quirks.
	 */
	if (host->ops->init_card)
		host->ops->init_card(host, card);

P
Pierre Ossman 已提交
1435
	/*
D
David Brownell 已提交
1436
	 * For native busses:  set card RCA and quit open drain mode.
P
Pierre Ossman 已提交
1437
	 */
D
David Brownell 已提交
1438 1439 1440 1441
	if (!mmc_host_is_spi(host)) {
		err = mmc_set_relative_addr(card);
		if (err)
			goto free_card;
P
Pierre Ossman 已提交
1442

D
David Brownell 已提交
1443 1444
		mmc_set_bus_mode(host, MMC_BUSMODE_PUSHPULL);
	}
P
Pierre Ossman 已提交
1445

1446 1447 1448 1449 1450
	if (!oldcard) {
		/*
		 * Fetch CSD from card.
		 */
		err = mmc_send_csd(card, card->raw_csd);
P
Pierre Ossman 已提交
1451
		if (err)
1452
			goto free_card;
P
Pierre Ossman 已提交
1453

P
Pierre Ossman 已提交
1454
		err = mmc_decode_csd(card);
P
Pierre Ossman 已提交
1455
		if (err)
P
Pierre Ossman 已提交
1456 1457
			goto free_card;
		err = mmc_decode_cid(card);
P
Pierre Ossman 已提交
1458
		if (err)
P
Pierre Ossman 已提交
1459
			goto free_card;
1460
	}
P
Pierre Ossman 已提交
1461

1462 1463 1464 1465 1466 1467 1468
	/*
	 * handling only for cards supporting DSR and hosts requesting
	 * DSR configuration
	 */
	if (card->csd.dsr_imp && host->dsr_req)
		mmc_set_dsr(host);

P
Pierre Ossman 已提交
1469
	/*
1470
	 * Select card, as all following commands rely on that.
P
Pierre Ossman 已提交
1471
	 */
D
David Brownell 已提交
1472 1473 1474 1475 1476
	if (!mmc_host_is_spi(host)) {
		err = mmc_select_card(card);
		if (err)
			goto free_card;
	}
P
Pierre Ossman 已提交
1477

1478
	if (!oldcard) {
1479 1480
		/* Read extended CSD. */
		err = mmc_read_ext_csd(card);
P
Pierre Ossman 已提交
1481
		if (err)
1482
			goto free_card;
1483

1484 1485
		/*
		 * If doing byte addressing, check if required to do sector
1486 1487 1488 1489
		 * addressing.  Handle the case of <2GB cards needing sector
		 * addressing.  See section 8.1 JEDEC Standard JED84-A441;
		 * ocr register has bit 30 set for sector addressing.
		 */
1490
		if (rocr & BIT(30))
1491 1492
			mmc_card_set_blockaddr(card);

1493 1494
		/* Erase size depends on CSD and Extended CSD */
		mmc_set_erase_size(card);
1495
	}
P
Pierre Ossman 已提交
1496

1497 1498
	/*
	 * If enhanced_area_en is TRUE, host needs to enable ERASE_GRP_DEF
L
Lucas De Marchi 已提交
1499
	 * bit.  This bit will be lost every time after a reset or power off.
1500
	 */
1501
	if (card->ext_csd.partition_setting_completed ||
1502
	    (card->ext_csd.rev >= 3 && (host->caps2 & MMC_CAP2_HC_ERASE_SZ))) {
1503
		err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
1504 1505
				 EXT_CSD_ERASE_GROUP_DEF, 1,
				 card->ext_csd.generic_cmd6_time);
1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529

		if (err && err != -EBADMSG)
			goto free_card;

		if (err) {
			err = 0;
			/*
			 * Just disable enhanced area off & sz
			 * will try to enable ERASE_GROUP_DEF
			 * during next time reinit
			 */
			card->ext_csd.enhanced_area_offset = -EINVAL;
			card->ext_csd.enhanced_area_size = -EINVAL;
		} else {
			card->ext_csd.erase_group_def = 1;
			/*
			 * enable ERASE_GRP_DEF successfully.
			 * This will affect the erase size, so
			 * here need to reset erase size
			 */
			mmc_set_erase_size(card);
		}
	}

1530 1531 1532
	/*
	 * Ensure eMMC user default partition is enabled
	 */
1533 1534 1535 1536 1537 1538 1539
	if (card->ext_csd.part_config & EXT_CSD_PART_CONFIG_ACC_MASK) {
		card->ext_csd.part_config &= ~EXT_CSD_PART_CONFIG_ACC_MASK;
		err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_PART_CONFIG,
				 card->ext_csd.part_config,
				 card->ext_csd.part_time);
		if (err && err != -EBADMSG)
			goto free_card;
1540 1541
	}

1542
	/*
1543
	 * Enable power_off_notification byte in the ext_csd register
1544
	 */
1545
	if (card->ext_csd.rev >= 6) {
1546 1547 1548 1549 1550 1551 1552
		err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
				 EXT_CSD_POWER_OFF_NOTIFICATION,
				 EXT_CSD_POWER_ON,
				 card->ext_csd.generic_cmd6_time);
		if (err && err != -EBADMSG)
			goto free_card;

1553 1554 1555 1556 1557
		/*
		 * The err can be -EBADMSG or 0,
		 * so check for success and update the flag
		 */
		if (!err)
1558
			card->ext_csd.power_off_notification = EXT_CSD_POWER_ON;
1559
	}
1560

1561
	/*
1562
	 * Select timing interface
H
Hanumath Prasad 已提交
1563
	 */
1564 1565 1566
	err = mmc_select_timing(card);
	if (err)
		goto free_card;
H
Hanumath Prasad 已提交
1567

1568
	if (mmc_card_hs200(card)) {
1569 1570
		err = mmc_hs200_tuning(card);
		if (err)
1571
			goto free_card;
1572 1573 1574

		err = mmc_select_hs400(card);
		if (err)
1575
			goto free_card;
1576 1577 1578 1579 1580 1581
	} else if (mmc_card_hs(card)) {
		/* Select the desired bus width optionally */
		err = mmc_select_bus_width(card);
		if (!IS_ERR_VALUE(err)) {
			err = mmc_select_hs_ddr(card);
			if (err)
1582
				goto free_card;
1583
		}
1584 1585
	}

1586 1587 1588 1589 1590
	/*
	 * Choose the power class with selected bus interface
	 */
	mmc_select_powerclass(card);

S
Subhash Jadavani 已提交
1591 1592 1593 1594 1595 1596 1597 1598 1599 1600
	/*
	 * Enable HPI feature (if supported)
	 */
	if (card->ext_csd.hpi) {
		err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
				EXT_CSD_HPI_MGMT, 1,
				card->ext_csd.generic_cmd6_time);
		if (err && err != -EBADMSG)
			goto free_card;
		if (err) {
J
Joe Perches 已提交
1601 1602
			pr_warn("%s: Enabling HPI failed\n",
				mmc_hostname(card->host));
S
Subhash Jadavani 已提交
1603 1604 1605 1606 1607
			err = 0;
		} else
			card->ext_csd.hpi_en = 1;
	}

1608 1609 1610 1611
	/*
	 * If cache size is higher than 0, this indicates
	 * the existence of cache and it can be turned on.
	 */
1612
	if (card->ext_csd.cache_size > 0) {
1613
		err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
1614 1615
				EXT_CSD_CACHE_CTRL, 1,
				card->ext_csd.generic_cmd6_time);
1616 1617 1618 1619 1620 1621
		if (err && err != -EBADMSG)
			goto free_card;

		/*
		 * Only if no error, cache is turned on successfully.
		 */
1622
		if (err) {
J
Joe Perches 已提交
1623 1624
			pr_warn("%s: Cache is supported, but failed to turn on (%d)\n",
				mmc_hostname(card->host), err);
1625 1626 1627 1628 1629
			card->ext_csd.cache_ctrl = 0;
			err = 0;
		} else {
			card->ext_csd.cache_ctrl = 1;
		}
1630 1631
	}

1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654
	/*
	 * The mandatory minimum values are defined for packed command.
	 * read: 5, write: 3
	 */
	if (card->ext_csd.max_packed_writes >= 3 &&
	    card->ext_csd.max_packed_reads >= 5 &&
	    host->caps2 & MMC_CAP2_PACKED_CMD) {
		err = mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
				EXT_CSD_EXP_EVENTS_CTRL,
				EXT_CSD_PACKED_EVENT_EN,
				card->ext_csd.generic_cmd6_time);
		if (err && err != -EBADMSG)
			goto free_card;
		if (err) {
			pr_warn("%s: Enabling packed event failed\n",
				mmc_hostname(card->host));
			card->ext_csd.packed_event_en = 0;
			err = 0;
		} else {
			card->ext_csd.packed_event_en = 1;
		}
	}

1655 1656 1657
	if (!oldcard)
		host->card = card;

P
Pierre Ossman 已提交
1658
	return 0;
1659 1660 1661 1662 1663

free_card:
	if (!oldcard)
		mmc_remove_card(card);
err:
P
Pierre Ossman 已提交
1664
	return err;
1665 1666
}

1667 1668 1669 1670 1671 1672 1673 1674 1675
static int mmc_can_sleep(struct mmc_card *card)
{
	return (card && card->ext_csd.rev >= 3);
}

static int mmc_sleep(struct mmc_host *host)
{
	struct mmc_command cmd = {0};
	struct mmc_card *card = host->card;
1676
	unsigned int timeout_ms = DIV_ROUND_UP(card->ext_csd.sa_timeout, 10000);
1677 1678
	int err;

1679 1680 1681
	/* Re-tuning can't be done once the card is deselected */
	mmc_retune_hold(host);

1682 1683
	err = mmc_deselect_cards(host);
	if (err)
1684
		goto out_release;
1685 1686 1687 1688 1689

	cmd.opcode = MMC_SLEEP_AWAKE;
	cmd.arg = card->rca << 16;
	cmd.arg |= 1 << 15;

1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702
	/*
	 * If the max_busy_timeout of the host is specified, validate it against
	 * the sleep cmd timeout. A failure means we need to prevent the host
	 * from doing hw busy detection, which is done by converting to a R1
	 * response instead of a R1B.
	 */
	if (host->max_busy_timeout && (timeout_ms > host->max_busy_timeout)) {
		cmd.flags = MMC_RSP_R1 | MMC_CMD_AC;
	} else {
		cmd.flags = MMC_RSP_R1B | MMC_CMD_AC;
		cmd.busy_timeout = timeout_ms;
	}

1703 1704
	err = mmc_wait_for_cmd(host, &cmd, 0);
	if (err)
1705
		goto out_release;
1706 1707 1708 1709 1710 1711 1712

	/*
	 * If the host does not wait while the card signals busy, then we will
	 * will have to wait the sleep/awake timeout.  Note, we cannot use the
	 * SEND_STATUS command to poll the status because that command (and most
	 * others) is invalid while the card sleeps.
	 */
1713 1714
	if (!cmd.busy_timeout || !(host->caps & MMC_CAP_WAIT_WHILE_BUSY))
		mmc_delay(timeout_ms);
1715

1716 1717
out_release:
	mmc_retune_release(host);
1718 1719 1720
	return err;
}

1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736
static int mmc_can_poweroff_notify(const struct mmc_card *card)
{
	return card &&
		mmc_card_mmc(card) &&
		(card->ext_csd.power_off_notification == EXT_CSD_POWER_ON);
}

static int mmc_poweroff_notify(struct mmc_card *card, unsigned int notify_type)
{
	unsigned int timeout = card->ext_csd.generic_cmd6_time;
	int err;

	/* Use EXT_CSD_POWER_OFF_SHORT as default notification type. */
	if (notify_type == EXT_CSD_POWER_OFF_LONG)
		timeout = card->ext_csd.power_off_longtime;

1737 1738
	err = __mmc_switch(card, EXT_CSD_CMD_SET_NORMAL,
			EXT_CSD_POWER_OFF_NOTIFICATION,
1739
			notify_type, timeout, true, false, false);
1740 1741 1742 1743 1744 1745 1746 1747 1748 1749
	if (err)
		pr_err("%s: Power Off Notification timed out, %u\n",
		       mmc_hostname(card->host), timeout);

	/* Disable the power off notification after the switch operation. */
	card->ext_csd.power_off_notification = EXT_CSD_NO_POWER_NOTIFICATION;

	return err;
}

1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761
/*
 * Host is being removed. Free up the current card.
 */
static void mmc_remove(struct mmc_host *host)
{
	BUG_ON(!host);
	BUG_ON(!host->card);

	mmc_remove_card(host->card);
	host->card = NULL;
}

1762 1763 1764 1765 1766 1767 1768 1769
/*
 * Card detection - card is alive.
 */
static int mmc_alive(struct mmc_host *host)
{
	return mmc_send_status(host->card, NULL);
}

1770 1771 1772 1773 1774 1775 1776 1777 1778 1779
/*
 * Card detection callback from host.
 */
static void mmc_detect(struct mmc_host *host)
{
	int err;

	BUG_ON(!host);
	BUG_ON(!host->card);

1780
	mmc_get_card(host->card);
1781 1782 1783 1784

	/*
	 * Just check if our card has been removed.
	 */
1785
	err = _mmc_detect_card_removed(host);
1786

1787
	mmc_put_card(host->card);
1788

P
Pierre Ossman 已提交
1789
	if (err) {
P
Pierre Ossman 已提交
1790
		mmc_remove(host);
1791 1792 1793

		mmc_claim_host(host);
		mmc_detach_bus(host);
1794
		mmc_power_off(host);
1795 1796 1797 1798
		mmc_release_host(host);
	}
}

1799
static int _mmc_suspend(struct mmc_host *host, bool is_suspend)
1800
{
1801
	int err = 0;
1802 1803
	unsigned int notify_type = is_suspend ? EXT_CSD_POWER_OFF_SHORT :
					EXT_CSD_POWER_OFF_LONG;
1804

1805 1806
	BUG_ON(!host);
	BUG_ON(!host->card);
P
Pierre Ossman 已提交
1807

1808
	mmc_claim_host(host);
1809

1810 1811 1812
	if (mmc_card_suspended(host->card))
		goto out;

1813 1814 1815 1816 1817 1818
	if (mmc_card_doing_bkops(host->card)) {
		err = mmc_stop_bkops(host->card);
		if (err)
			goto out;
	}

1819
	err = mmc_flush_cache(host->card);
1820 1821 1822
	if (err)
		goto out;

1823
	if (mmc_can_poweroff_notify(host->card) &&
1824
		((host->caps2 & MMC_CAP2_FULL_PWR_CYCLE) || !is_suspend))
1825
		err = mmc_poweroff_notify(host->card, notify_type);
1826 1827
	else if (mmc_can_sleep(host->card))
		err = mmc_sleep(host);
1828
	else if (!mmc_host_is_spi(host))
1829
		err = mmc_deselect_cards(host);
1830

1831
	if (!err) {
1832
		mmc_power_off(host);
1833 1834
		mmc_card_set_suspended(host->card);
	}
1835 1836
out:
	mmc_release_host(host);
1837
	return err;
1838
}
P
Pierre Ossman 已提交
1839

1840
/*
1841
 * Suspend callback
1842 1843 1844
 */
static int mmc_suspend(struct mmc_host *host)
{
1845 1846 1847 1848 1849 1850 1851 1852 1853
	int err;

	err = _mmc_suspend(host, true);
	if (!err) {
		pm_runtime_disable(&host->card->dev);
		pm_runtime_set_suspended(&host->card->dev);
	}

	return err;
1854 1855
}

1856 1857 1858 1859
/*
 * This function tries to determine if the same card is still present
 * and, if so, restore all state to it.
 */
1860
static int _mmc_resume(struct mmc_host *host)
1861
{
1862
	int err = 0;
1863 1864 1865 1866 1867

	BUG_ON(!host);
	BUG_ON(!host->card);

	mmc_claim_host(host);
1868 1869 1870 1871

	if (!mmc_card_suspended(host->card))
		goto out;

1872 1873
	mmc_power_up(host, host->card->ocr);
	err = mmc_init_card(host, host->card->ocr, host->card);
1874
	mmc_card_clr_suspended(host->card);
1875

1876 1877
out:
	mmc_release_host(host);
1878
	return err;
1879 1880
}

1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893
/*
 * Shutdown callback
 */
static int mmc_shutdown(struct mmc_host *host)
{
	int err = 0;

	/*
	 * In a specific case for poweroff notify, we need to resume the card
	 * before we can shutdown it properly.
	 */
	if (mmc_can_poweroff_notify(host->card) &&
		!(host->caps2 & MMC_CAP2_FULL_PWR_CYCLE))
1894
		err = _mmc_resume(host);
1895 1896 1897 1898 1899 1900

	if (!err)
		err = _mmc_suspend(host, false);

	return err;
}
1901

1902 1903 1904 1905 1906 1907
/*
 * Callback for resume.
 */
static int mmc_resume(struct mmc_host *host)
{
	pm_runtime_enable(&host->card->dev);
1908
	return 0;
1909 1910
}

1911 1912 1913 1914 1915 1916 1917 1918 1919 1920
/*
 * Callback for runtime_suspend.
 */
static int mmc_runtime_suspend(struct mmc_host *host)
{
	int err;

	if (!(host->caps & MMC_CAP_AGGRESSIVE_PM))
		return 0;

1921
	err = _mmc_suspend(host, true);
1922
	if (err)
1923
		pr_err("%s: error %d doing aggressive suspend\n",
1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935
			mmc_hostname(host), err);

	return err;
}

/*
 * Callback for runtime_resume.
 */
static int mmc_runtime_resume(struct mmc_host *host)
{
	int err;

1936
	err = _mmc_resume(host);
1937
	if (err && err != -ENOMEDIUM)
1938
		pr_err("%s: error %d doing runtime resume\n",
1939 1940 1941 1942 1943
			mmc_hostname(host), err);

	return 0;
}

1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958
int mmc_can_reset(struct mmc_card *card)
{
	u8 rst_n_function;

	rst_n_function = card->ext_csd.rst_n_function;
	if ((rst_n_function & EXT_CSD_RST_N_EN_MASK) != EXT_CSD_RST_N_ENABLED)
		return 0;
	return 1;
}
EXPORT_SYMBOL(mmc_can_reset);

static int mmc_reset(struct mmc_host *host)
{
	struct mmc_card *card = host->card;

1959 1960 1961 1962 1963 1964
	/*
	 * In the case of recovery, we can't expect flushing the cache to work
	 * always, but we have a go and ignore errors.
	 */
	mmc_flush_cache(host->card);

1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975
	if ((host->caps & MMC_CAP_HW_RESET) && host->ops->hw_reset &&
	     mmc_can_reset(card)) {
		/* If the card accept RST_n signal, send it. */
		mmc_set_clock(host, host->f_init);
		host->ops->hw_reset(host);
		/* Set initial state and call mmc_set_ios */
		mmc_set_initial_state(host);
	} else {
		/* Do a brute force power cycle */
		mmc_power_cycle(host, card->ocr);
	}
1976
	return mmc_init_card(host, card->ocr, card);
1977 1978
}

1979 1980 1981 1982 1983
static const struct mmc_bus_ops mmc_ops = {
	.remove = mmc_remove,
	.detect = mmc_detect,
	.suspend = mmc_suspend,
	.resume = mmc_resume,
1984 1985
	.runtime_suspend = mmc_runtime_suspend,
	.runtime_resume = mmc_runtime_resume,
1986
	.alive = mmc_alive,
1987
	.shutdown = mmc_shutdown,
1988
	.reset = mmc_reset,
1989 1990 1991 1992 1993
};

/*
 * Starting point for MMC card init.
 */
1994
int mmc_attach_mmc(struct mmc_host *host)
1995 1996
{
	int err;
1997
	u32 ocr, rocr;
1998 1999

	BUG_ON(!host);
P
Pierre Ossman 已提交
2000
	WARN_ON(!host->claimed);
2001

2002 2003 2004 2005
	/* Set correct bus mode for MMC before attempting attach */
	if (!mmc_host_is_spi(host))
		mmc_set_bus_mode(host, MMC_BUSMODE_OPENDRAIN);

2006 2007 2008 2009
	err = mmc_send_op_cond(host, 0, &ocr);
	if (err)
		return err;

2010
	mmc_attach_bus(host, &mmc_ops);
2011 2012
	if (host->ocr_avail_mmc)
		host->ocr_avail = host->ocr_avail_mmc;
2013

D
David Brownell 已提交
2014 2015 2016 2017 2018 2019 2020 2021 2022
	/*
	 * We need to get OCR a different way for SPI.
	 */
	if (mmc_host_is_spi(host)) {
		err = mmc_spi_read_ocr(host, 1, &ocr);
		if (err)
			goto err;
	}

2023
	rocr = mmc_select_voltage(host, ocr);
2024 2025 2026 2027

	/*
	 * Can we support the voltage of the card?
	 */
2028
	if (!rocr) {
2029
		err = -EINVAL;
2030
		goto err;
2031
	}
2032 2033 2034 2035

	/*
	 * Detect and init the card.
	 */
2036
	err = mmc_init_card(host, rocr, NULL);
P
Pierre Ossman 已提交
2037
	if (err)
2038 2039 2040
		goto err;

	mmc_release_host(host);
P
Pierre Ossman 已提交
2041
	err = mmc_add_card(host->card);
P
Pierre Ossman 已提交
2042
	if (err)
2043
		goto remove_card;
P
Pierre Ossman 已提交
2044

2045
	mmc_claim_host(host);
P
Pierre Ossman 已提交
2046 2047
	return 0;

2048
remove_card:
2049
	mmc_remove_card(host->card);
2050
	mmc_claim_host(host);
2051
	host->card = NULL;
P
Pierre Ossman 已提交
2052 2053 2054
err:
	mmc_detach_bus(host);

2055
	pr_err("%s: error %d whilst initialising MMC card\n",
2056 2057
		mmc_hostname(host), err);

P
Pierre Ossman 已提交
2058
	return err;
P
Pierre Ossman 已提交
2059
}