sdhci.c 95.5 KB
Newer Older
1
/*
P
Pierre Ossman 已提交
2
 *  linux/drivers/mmc/host/sdhci.c - Secure Digital Host Controller Interface driver
3
 *
4
 *  Copyright (C) 2005-2008 Pierre Ossman, All Rights Reserved.
5 6
 *
 * This program is free software; you can redistribute it and/or modify
7 8 9
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or (at
 * your option) any later version.
10 11 12 13
 *
 * Thanks to the following companies for their support:
 *
 *     - JMicron (hardware and technical support)
14 15 16 17
 */

#include <linux/delay.h>
#include <linux/highmem.h>
18
#include <linux/io.h>
19
#include <linux/module.h>
20
#include <linux/dma-mapping.h>
21
#include <linux/slab.h>
22
#include <linux/scatterlist.h>
M
Marek Szyprowski 已提交
23
#include <linux/regulator/consumer.h>
24
#include <linux/pm_runtime.h>
25

26 27
#include <linux/leds.h>

28
#include <linux/mmc/mmc.h>
29
#include <linux/mmc/host.h>
30
#include <linux/mmc/card.h>
31
#include <linux/mmc/sdio.h>
32
#include <linux/mmc/slot-gpio.h>
33 34 35 36 37 38

#include "sdhci.h"

#define DRIVER_NAME "sdhci"

#define DBG(f, x...) \
39
	pr_debug(DRIVER_NAME " [%s()]: " f, __func__,## x)
40

41 42
#define MAX_TUNING_LOOP 40

43
static unsigned int debug_quirks = 0;
44
static unsigned int debug_quirks2;
45

46 47
static void sdhci_finish_data(struct sdhci_host *);

48
static void sdhci_enable_preset_value(struct sdhci_host *host, bool enable);
49 50 51

static void sdhci_dumpregs(struct sdhci_host *host)
{
52 53
	pr_err(DRIVER_NAME ": =========== REGISTER DUMP (%s)===========\n",
	       mmc_hostname(host->mmc));
54

55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89
	pr_err(DRIVER_NAME ": Sys addr: 0x%08x | Version:  0x%08x\n",
	       sdhci_readl(host, SDHCI_DMA_ADDRESS),
	       sdhci_readw(host, SDHCI_HOST_VERSION));
	pr_err(DRIVER_NAME ": Blk size: 0x%08x | Blk cnt:  0x%08x\n",
	       sdhci_readw(host, SDHCI_BLOCK_SIZE),
	       sdhci_readw(host, SDHCI_BLOCK_COUNT));
	pr_err(DRIVER_NAME ": Argument: 0x%08x | Trn mode: 0x%08x\n",
	       sdhci_readl(host, SDHCI_ARGUMENT),
	       sdhci_readw(host, SDHCI_TRANSFER_MODE));
	pr_err(DRIVER_NAME ": Present:  0x%08x | Host ctl: 0x%08x\n",
	       sdhci_readl(host, SDHCI_PRESENT_STATE),
	       sdhci_readb(host, SDHCI_HOST_CONTROL));
	pr_err(DRIVER_NAME ": Power:    0x%08x | Blk gap:  0x%08x\n",
	       sdhci_readb(host, SDHCI_POWER_CONTROL),
	       sdhci_readb(host, SDHCI_BLOCK_GAP_CONTROL));
	pr_err(DRIVER_NAME ": Wake-up:  0x%08x | Clock:    0x%08x\n",
	       sdhci_readb(host, SDHCI_WAKE_UP_CONTROL),
	       sdhci_readw(host, SDHCI_CLOCK_CONTROL));
	pr_err(DRIVER_NAME ": Timeout:  0x%08x | Int stat: 0x%08x\n",
	       sdhci_readb(host, SDHCI_TIMEOUT_CONTROL),
	       sdhci_readl(host, SDHCI_INT_STATUS));
	pr_err(DRIVER_NAME ": Int enab: 0x%08x | Sig enab: 0x%08x\n",
	       sdhci_readl(host, SDHCI_INT_ENABLE),
	       sdhci_readl(host, SDHCI_SIGNAL_ENABLE));
	pr_err(DRIVER_NAME ": AC12 err: 0x%08x | Slot int: 0x%08x\n",
	       sdhci_readw(host, SDHCI_ACMD12_ERR),
	       sdhci_readw(host, SDHCI_SLOT_INT_STATUS));
	pr_err(DRIVER_NAME ": Caps:     0x%08x | Caps_1:   0x%08x\n",
	       sdhci_readl(host, SDHCI_CAPABILITIES),
	       sdhci_readl(host, SDHCI_CAPABILITIES_1));
	pr_err(DRIVER_NAME ": Cmd:      0x%08x | Max curr: 0x%08x\n",
	       sdhci_readw(host, SDHCI_COMMAND),
	       sdhci_readl(host, SDHCI_MAX_CURRENT));
	pr_err(DRIVER_NAME ": Host ctl2: 0x%08x\n",
	       sdhci_readw(host, SDHCI_HOST_CONTROL2));
90

91 92
	if (host->flags & SDHCI_USE_ADMA) {
		if (host->flags & SDHCI_USE_64_BIT_DMA)
93 94 95 96
			pr_err(DRIVER_NAME ": ADMA Err: 0x%08x | ADMA Ptr: 0x%08x%08x\n",
			       readl(host->ioaddr + SDHCI_ADMA_ERROR),
			       readl(host->ioaddr + SDHCI_ADMA_ADDRESS_HI),
			       readl(host->ioaddr + SDHCI_ADMA_ADDRESS));
97
		else
98 99 100
			pr_err(DRIVER_NAME ": ADMA Err: 0x%08x | ADMA Ptr: 0x%08x\n",
			       readl(host->ioaddr + SDHCI_ADMA_ERROR),
			       readl(host->ioaddr + SDHCI_ADMA_ADDRESS));
101
	}
102

103
	pr_err(DRIVER_NAME ": ===========================================\n");
104 105 106 107 108 109 110 111
}

/*****************************************************************************\
 *                                                                           *
 * Low level functions                                                       *
 *                                                                           *
\*****************************************************************************/

112 113 114 115 116
static inline bool sdhci_data_line_cmd(struct mmc_command *cmd)
{
	return cmd->data || cmd->flags & MMC_RSP_BUSY;
}

117 118
static void sdhci_set_card_detection(struct sdhci_host *host, bool enable)
{
119
	u32 present;
120

121
	if ((host->quirks & SDHCI_QUIRK_BROKEN_CARD_DETECTION) ||
122
	    !mmc_card_is_removable(host->mmc))
123 124
		return;

125 126 127
	if (enable) {
		present = sdhci_readl(host, SDHCI_PRESENT_STATE) &
				      SDHCI_CARD_PRESENT;
128

129 130 131 132 133
		host->ier |= present ? SDHCI_INT_CARD_REMOVE :
				       SDHCI_INT_CARD_INSERT;
	} else {
		host->ier &= ~(SDHCI_INT_CARD_REMOVE | SDHCI_INT_CARD_INSERT);
	}
134 135 136

	sdhci_writel(host, host->ier, SDHCI_INT_ENABLE);
	sdhci_writel(host, host->ier, SDHCI_SIGNAL_ENABLE);
137 138 139 140 141 142 143 144 145 146 147 148
}

static void sdhci_enable_card_detection(struct sdhci_host *host)
{
	sdhci_set_card_detection(host, true);
}

static void sdhci_disable_card_detection(struct sdhci_host *host)
{
	sdhci_set_card_detection(host, false);
}

149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164
static void sdhci_runtime_pm_bus_on(struct sdhci_host *host)
{
	if (host->bus_on)
		return;
	host->bus_on = true;
	pm_runtime_get_noresume(host->mmc->parent);
}

static void sdhci_runtime_pm_bus_off(struct sdhci_host *host)
{
	if (!host->bus_on)
		return;
	host->bus_on = false;
	pm_runtime_put_noidle(host->mmc->parent);
}

165
void sdhci_reset(struct sdhci_host *host, u8 mask)
166
{
167
	unsigned long timeout;
168

169
	sdhci_writeb(host, mask, SDHCI_SOFTWARE_RESET);
170

171
	if (mask & SDHCI_RESET_ALL) {
172
		host->clock = 0;
173 174 175 176
		/* Reset-all turns off SD Bus Power */
		if (host->quirks2 & SDHCI_QUIRK2_CARD_ON_NEEDS_BUS_ON)
			sdhci_runtime_pm_bus_off(host);
	}
177

178 179 180 181
	/* Wait max 100 ms */
	timeout = 100;

	/* hw clears the bit when it's done */
182
	while (sdhci_readb(host, SDHCI_SOFTWARE_RESET) & mask) {
183
		if (timeout == 0) {
184
			pr_err("%s: Reset 0x%x never completed.\n",
185 186 187 188 189 190
				mmc_hostname(host->mmc), (int)mask);
			sdhci_dumpregs(host);
			return;
		}
		timeout--;
		mdelay(1);
191
	}
192 193 194 195 196 197
}
EXPORT_SYMBOL_GPL(sdhci_reset);

static void sdhci_do_reset(struct sdhci_host *host, u8 mask)
{
	if (host->quirks & SDHCI_QUIRK_NO_CARD_NO_RESET) {
198 199 200
		struct mmc_host *mmc = host->mmc;

		if (!mmc->ops->get_cd(mmc))
201 202
			return;
	}
203

204
	host->ops->reset(host, mask);
205

206 207 208 209 210 211 212 213
	if (mask & SDHCI_RESET_ALL) {
		if (host->flags & (SDHCI_USE_SDMA | SDHCI_USE_ADMA)) {
			if (host->ops->enable_dma)
				host->ops->enable_dma(host);
		}

		/* Resetting the controller clears many */
		host->preset_enabled = false;
214
	}
215 216
}

217
static void sdhci_init(struct sdhci_host *host, int soft)
218
{
219 220
	struct mmc_host *mmc = host->mmc;

221
	if (soft)
222
		sdhci_do_reset(host, SDHCI_RESET_CMD|SDHCI_RESET_DATA);
223
	else
224
		sdhci_do_reset(host, SDHCI_RESET_ALL);
225

226 227 228 229 230 231 232 233
	host->ier = SDHCI_INT_BUS_POWER | SDHCI_INT_DATA_END_BIT |
		    SDHCI_INT_DATA_CRC | SDHCI_INT_DATA_TIMEOUT |
		    SDHCI_INT_INDEX | SDHCI_INT_END_BIT | SDHCI_INT_CRC |
		    SDHCI_INT_TIMEOUT | SDHCI_INT_DATA_END |
		    SDHCI_INT_RESPONSE;

	sdhci_writel(host, host->ier, SDHCI_INT_ENABLE);
	sdhci_writel(host, host->ier, SDHCI_SIGNAL_ENABLE);
234 235 236 237

	if (soft) {
		/* force clock reconfiguration */
		host->clock = 0;
238
		mmc->ops->set_ios(mmc, &mmc->ios);
239
	}
240
}
241

242 243
static void sdhci_reinit(struct sdhci_host *host)
{
244
	sdhci_init(host, 0);
245
	sdhci_enable_card_detection(host);
246 247
}

248
static void __sdhci_led_activate(struct sdhci_host *host)
249 250 251
{
	u8 ctrl;

252
	ctrl = sdhci_readb(host, SDHCI_HOST_CONTROL);
253
	ctrl |= SDHCI_CTRL_LED;
254
	sdhci_writeb(host, ctrl, SDHCI_HOST_CONTROL);
255 256
}

257
static void __sdhci_led_deactivate(struct sdhci_host *host)
258 259 260
{
	u8 ctrl;

261
	ctrl = sdhci_readb(host, SDHCI_HOST_CONTROL);
262
	ctrl &= ~SDHCI_CTRL_LED;
263
	sdhci_writeb(host, ctrl, SDHCI_HOST_CONTROL);
264 265
}

266
#if IS_REACHABLE(CONFIG_LEDS_CLASS)
267
static void sdhci_led_control(struct led_classdev *led,
268
			      enum led_brightness brightness)
269 270 271 272 273 274
{
	struct sdhci_host *host = container_of(led, struct sdhci_host, led);
	unsigned long flags;

	spin_lock_irqsave(&host->lock, flags);

275 276 277
	if (host->runtime_suspended)
		goto out;

278
	if (brightness == LED_OFF)
279
		__sdhci_led_deactivate(host);
280
	else
281
		__sdhci_led_activate(host);
282
out:
283 284
	spin_unlock_irqrestore(&host->lock, flags);
}
285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334

static int sdhci_led_register(struct sdhci_host *host)
{
	struct mmc_host *mmc = host->mmc;

	snprintf(host->led_name, sizeof(host->led_name),
		 "%s::", mmc_hostname(mmc));

	host->led.name = host->led_name;
	host->led.brightness = LED_OFF;
	host->led.default_trigger = mmc_hostname(mmc);
	host->led.brightness_set = sdhci_led_control;

	return led_classdev_register(mmc_dev(mmc), &host->led);
}

static void sdhci_led_unregister(struct sdhci_host *host)
{
	led_classdev_unregister(&host->led);
}

static inline void sdhci_led_activate(struct sdhci_host *host)
{
}

static inline void sdhci_led_deactivate(struct sdhci_host *host)
{
}

#else

static inline int sdhci_led_register(struct sdhci_host *host)
{
	return 0;
}

static inline void sdhci_led_unregister(struct sdhci_host *host)
{
}

static inline void sdhci_led_activate(struct sdhci_host *host)
{
	__sdhci_led_activate(host);
}

static inline void sdhci_led_deactivate(struct sdhci_host *host)
{
	__sdhci_led_deactivate(host);
}

335 336
#endif

337 338 339 340 341 342
/*****************************************************************************\
 *                                                                           *
 * Core functions                                                            *
 *                                                                           *
\*****************************************************************************/

P
Pierre Ossman 已提交
343
static void sdhci_read_block_pio(struct sdhci_host *host)
344
{
345 346
	unsigned long flags;
	size_t blksize, len, chunk;
347
	u32 uninitialized_var(scratch);
348
	u8 *buf;
349

P
Pierre Ossman 已提交
350
	DBG("PIO reading\n");
351

P
Pierre Ossman 已提交
352
	blksize = host->data->blksz;
353
	chunk = 0;
354

355
	local_irq_save(flags);
356

P
Pierre Ossman 已提交
357
	while (blksize) {
F
Fabio Estevam 已提交
358
		BUG_ON(!sg_miter_next(&host->sg_miter));
359

360
		len = min(host->sg_miter.length, blksize);
361

362 363
		blksize -= len;
		host->sg_miter.consumed = len;
364

365
		buf = host->sg_miter.addr;
366

367 368
		while (len) {
			if (chunk == 0) {
369
				scratch = sdhci_readl(host, SDHCI_BUFFER);
370
				chunk = 4;
P
Pierre Ossman 已提交
371
			}
372 373 374 375 376 377 378

			*buf = scratch & 0xFF;

			buf++;
			scratch >>= 8;
			chunk--;
			len--;
379
		}
P
Pierre Ossman 已提交
380
	}
381 382 383 384

	sg_miter_stop(&host->sg_miter);

	local_irq_restore(flags);
P
Pierre Ossman 已提交
385
}
386

P
Pierre Ossman 已提交
387 388
static void sdhci_write_block_pio(struct sdhci_host *host)
{
389 390 391 392
	unsigned long flags;
	size_t blksize, len, chunk;
	u32 scratch;
	u8 *buf;
393

P
Pierre Ossman 已提交
394 395 396
	DBG("PIO writing\n");

	blksize = host->data->blksz;
397 398
	chunk = 0;
	scratch = 0;
399

400
	local_irq_save(flags);
401

P
Pierre Ossman 已提交
402
	while (blksize) {
F
Fabio Estevam 已提交
403
		BUG_ON(!sg_miter_next(&host->sg_miter));
P
Pierre Ossman 已提交
404

405 406 407 408 409 410
		len = min(host->sg_miter.length, blksize);

		blksize -= len;
		host->sg_miter.consumed = len;

		buf = host->sg_miter.addr;
411

412 413 414 415 416 417 418 419
		while (len) {
			scratch |= (u32)*buf << (chunk * 8);

			buf++;
			chunk++;
			len--;

			if ((chunk == 4) || ((len == 0) && (blksize == 0))) {
420
				sdhci_writel(host, scratch, SDHCI_BUFFER);
421 422
				chunk = 0;
				scratch = 0;
423 424 425
			}
		}
	}
426 427 428 429

	sg_miter_stop(&host->sg_miter);

	local_irq_restore(flags);
P
Pierre Ossman 已提交
430 431 432 433 434 435
}

static void sdhci_transfer_pio(struct sdhci_host *host)
{
	u32 mask;

436
	if (host->blocks == 0)
P
Pierre Ossman 已提交
437 438 439 440 441 442 443
		return;

	if (host->data->flags & MMC_DATA_READ)
		mask = SDHCI_DATA_AVAILABLE;
	else
		mask = SDHCI_SPACE_AVAILABLE;

444 445 446 447 448 449 450 451 452
	/*
	 * Some controllers (JMicron JMB38x) mess up the buffer bits
	 * for transfers < 4 bytes. As long as it is just one block,
	 * we can ignore the bits.
	 */
	if ((host->quirks & SDHCI_QUIRK_BROKEN_SMALL_PIO) &&
		(host->data->blocks == 1))
		mask = ~0;

453
	while (sdhci_readl(host, SDHCI_PRESENT_STATE) & mask) {
454 455 456
		if (host->quirks & SDHCI_QUIRK_PIO_NEEDS_DELAY)
			udelay(100);

P
Pierre Ossman 已提交
457 458 459 460
		if (host->data->flags & MMC_DATA_READ)
			sdhci_read_block_pio(host);
		else
			sdhci_write_block_pio(host);
461

462 463
		host->blocks--;
		if (host->blocks == 0)
P
Pierre Ossman 已提交
464 465
			break;
	}
466

P
Pierre Ossman 已提交
467
	DBG("PIO transfer complete.\n");
468 469
}

470
static int sdhci_pre_dma_transfer(struct sdhci_host *host,
471
				  struct mmc_data *data, int cookie)
472 473 474
{
	int sg_count;

475 476 477 478 479
	/*
	 * If the data buffers are already mapped, return the previous
	 * dma_map_sg() result.
	 */
	if (data->host_cookie == COOKIE_PRE_MAPPED)
480 481 482 483 484 485 486 487 488 489
		return data->sg_count;

	sg_count = dma_map_sg(mmc_dev(host->mmc), data->sg, data->sg_len,
				data->flags & MMC_DATA_WRITE ?
				DMA_TO_DEVICE : DMA_FROM_DEVICE);

	if (sg_count == 0)
		return -ENOSPC;

	data->sg_count = sg_count;
490
	data->host_cookie = cookie;
491 492 493 494

	return sg_count;
}

495 496 497
static char *sdhci_kmap_atomic(struct scatterlist *sg, unsigned long *flags)
{
	local_irq_save(*flags);
498
	return kmap_atomic(sg_page(sg)) + sg->offset;
499 500 501 502
}

static void sdhci_kunmap_atomic(void *buffer, unsigned long *flags)
{
503
	kunmap_atomic(buffer);
504 505 506
	local_irq_restore(*flags);
}

507 508
static void sdhci_adma_write_desc(struct sdhci_host *host, void *desc,
				  dma_addr_t addr, int len, unsigned cmd)
B
Ben Dooks 已提交
509
{
510
	struct sdhci_adma2_64_desc *dma_desc = desc;
B
Ben Dooks 已提交
511

512
	/* 32-bit and 64-bit descriptors have these members in same position */
513 514
	dma_desc->cmd = cpu_to_le16(cmd);
	dma_desc->len = cpu_to_le16(len);
515 516 517 518
	dma_desc->addr_lo = cpu_to_le32((u32)addr);

	if (host->flags & SDHCI_USE_64_BIT_DMA)
		dma_desc->addr_hi = cpu_to_le32((u64)addr >> 32);
B
Ben Dooks 已提交
519 520
}

521 522
static void sdhci_adma_mark_end(void *desc)
{
523
	struct sdhci_adma2_64_desc *dma_desc = desc;
524

525
	/* 32-bit and 64-bit descriptors have 'cmd' in same position */
526
	dma_desc->cmd |= cpu_to_le16(ADMA2_END);
527 528
}

529 530
static void sdhci_adma_table_pre(struct sdhci_host *host,
	struct mmc_data *data, int sg_count)
531 532 533
{
	struct scatterlist *sg;
	unsigned long flags;
534 535 536 537
	dma_addr_t addr, align_addr;
	void *desc, *align;
	char *buffer;
	int len, offset, i;
538 539 540 541 542 543

	/*
	 * The spec does not specify endianness of descriptor table.
	 * We currently guess that it is LE.
	 */

544
	host->sg_count = sg_count;
545

546
	desc = host->adma_table;
547 548 549 550 551 552 553 554 555
	align = host->align_buffer;

	align_addr = host->align_addr;

	for_each_sg(data->sg, sg, host->sg_count, i) {
		addr = sg_dma_address(sg);
		len = sg_dma_len(sg);

		/*
556 557 558
		 * The SDHCI specification states that ADMA addresses must
		 * be 32-bit aligned. If they aren't, then we use a bounce
		 * buffer for the (up to three) bytes that screw up the
559 560
		 * alignment.
		 */
561 562
		offset = (SDHCI_ADMA2_ALIGN - (addr & SDHCI_ADMA2_MASK)) &
			 SDHCI_ADMA2_MASK;
563 564 565 566 567 568 569
		if (offset) {
			if (data->flags & MMC_DATA_WRITE) {
				buffer = sdhci_kmap_atomic(sg, &flags);
				memcpy(align, buffer, offset);
				sdhci_kunmap_atomic(buffer, &flags);
			}

B
Ben Dooks 已提交
570
			/* tran, valid */
571
			sdhci_adma_write_desc(host, desc, align_addr, offset,
A
Adrian Hunter 已提交
572
					      ADMA2_TRAN_VALID);
573 574 575

			BUG_ON(offset > 65536);

576 577
			align += SDHCI_ADMA2_ALIGN;
			align_addr += SDHCI_ADMA2_ALIGN;
578

579
			desc += host->desc_sz;
580 581 582 583 584 585 586

			addr += offset;
			len -= offset;
		}

		BUG_ON(len > 65536);

587 588 589 590 591 592
		if (len) {
			/* tran, valid */
			sdhci_adma_write_desc(host, desc, addr, len,
					      ADMA2_TRAN_VALID);
			desc += host->desc_sz;
		}
593 594 595 596 597

		/*
		 * If this triggers then we have a calculation bug
		 * somewhere. :/
		 */
598
		WARN_ON((desc - host->adma_table) >= host->adma_table_sz);
599 600
	}

601
	if (host->quirks & SDHCI_QUIRK_NO_ENDATTR_IN_NOPDESC) {
602
		/* Mark the last descriptor as the terminating descriptor */
603
		if (desc != host->adma_table) {
604
			desc -= host->desc_sz;
605
			sdhci_adma_mark_end(desc);
606 607
		}
	} else {
608
		/* Add a terminating entry - nop, end, valid */
609
		sdhci_adma_write_desc(host, desc, 0, 0, ADMA2_NOP_END_VALID);
610
	}
611 612 613 614 615 616 617
}

static void sdhci_adma_table_post(struct sdhci_host *host,
	struct mmc_data *data)
{
	struct scatterlist *sg;
	int i, size;
618
	void *align;
619 620 621
	char *buffer;
	unsigned long flags;

622 623
	if (data->flags & MMC_DATA_READ) {
		bool has_unaligned = false;
624

625 626 627 628 629 630
		/* Do a quick scan of the SG list for any unaligned mappings */
		for_each_sg(data->sg, sg, host->sg_count, i)
			if (sg_dma_address(sg) & SDHCI_ADMA2_MASK) {
				has_unaligned = true;
				break;
			}
631

632 633
		if (has_unaligned) {
			dma_sync_sg_for_cpu(mmc_dev(host->mmc), data->sg,
634
					    data->sg_len, DMA_FROM_DEVICE);
635

636
			align = host->align_buffer;
637

638 639 640 641 642 643 644 645
			for_each_sg(data->sg, sg, host->sg_count, i) {
				if (sg_dma_address(sg) & SDHCI_ADMA2_MASK) {
					size = SDHCI_ADMA2_ALIGN -
					       (sg_dma_address(sg) & SDHCI_ADMA2_MASK);

					buffer = sdhci_kmap_atomic(sg, &flags);
					memcpy(buffer, align, size);
					sdhci_kunmap_atomic(buffer, &flags);
646

647 648
					align += SDHCI_ADMA2_ALIGN;
				}
649 650 651 652 653
			}
		}
	}
}

654
static u8 sdhci_calc_timeout(struct sdhci_host *host, struct mmc_command *cmd)
655
{
656
	u8 count;
657
	struct mmc_data *data = cmd->data;
658
	unsigned target_timeout, current_timeout;
659

660 661 662 663 664 665
	/*
	 * If the host controller provides us with an incorrect timeout
	 * value, just skip the check and use 0xE.  The hardware may take
	 * longer to time out, but that's much better than having a too-short
	 * timeout value.
	 */
666
	if (host->quirks & SDHCI_QUIRK_BROKEN_TIMEOUT_VAL)
667
		return 0xE;
668

669
	/* Unspecified timeout, assume max */
670
	if (!data && !cmd->busy_timeout)
671
		return 0xE;
672

673 674
	/* timeout in us */
	if (!data)
675
		target_timeout = cmd->busy_timeout * 1000;
676
	else {
677
		target_timeout = DIV_ROUND_UP(data->timeout_ns, 1000);
678 679 680 681 682 683 684 685 686 687 688 689 690
		if (host->clock && data->timeout_clks) {
			unsigned long long val;

			/*
			 * data->timeout_clks is in units of clock cycles.
			 * host->clock is in Hz.  target_timeout is in us.
			 * Hence, us = 1000000 * cycles / Hz.  Round up.
			 */
			val = 1000000 * data->timeout_clks;
			if (do_div(val, host->clock))
				target_timeout++;
			target_timeout += val;
		}
691
	}
692

693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712
	/*
	 * Figure out needed cycles.
	 * We do this in steps in order to fit inside a 32 bit int.
	 * The first step is the minimum timeout, which will have a
	 * minimum resolution of 6 bits:
	 * (1) 2^13*1000 > 2^22,
	 * (2) host->timeout_clk < 2^16
	 *     =>
	 *     (1) / (2) > 2^6
	 */
	count = 0;
	current_timeout = (1 << 13) * 1000 / host->timeout_clk;
	while (current_timeout < target_timeout) {
		count++;
		current_timeout <<= 1;
		if (count >= 0xF)
			break;
	}

	if (count >= 0xF) {
713 714
		DBG("%s: Too large timeout 0x%x requested for CMD%d!\n",
		    mmc_hostname(host->mmc), count, cmd->opcode);
715 716 717
		count = 0xE;
	}

718 719 720
	return count;
}

721 722 723 724 725 726
static void sdhci_set_transfer_irqs(struct sdhci_host *host)
{
	u32 pio_irqs = SDHCI_INT_DATA_AVAIL | SDHCI_INT_SPACE_AVAIL;
	u32 dma_irqs = SDHCI_INT_DMA_END | SDHCI_INT_ADMA_ERROR;

	if (host->flags & SDHCI_REQ_USE_DMA)
727
		host->ier = (host->ier & ~pio_irqs) | dma_irqs;
728
	else
729 730 731 732
		host->ier = (host->ier & ~dma_irqs) | pio_irqs;

	sdhci_writel(host, host->ier, SDHCI_INT_ENABLE);
	sdhci_writel(host, host->ier, SDHCI_SIGNAL_ENABLE);
733 734
}

735
static void sdhci_set_timeout(struct sdhci_host *host, struct mmc_command *cmd)
736 737
{
	u8 count;
738 739 740 741 742 743 744 745 746 747 748

	if (host->ops->set_timeout) {
		host->ops->set_timeout(host, cmd);
	} else {
		count = sdhci_calc_timeout(host, cmd);
		sdhci_writeb(host, count, SDHCI_TIMEOUT_CONTROL);
	}
}

static void sdhci_prepare_data(struct sdhci_host *host, struct mmc_command *cmd)
{
749
	u8 ctrl;
750
	struct mmc_data *data = cmd->data;
751

752
	if (sdhci_data_line_cmd(cmd))
753
		sdhci_set_timeout(host, cmd);
754 755

	if (!data)
756 757
		return;

758 759
	WARN_ON(host->data);

760 761 762 763 764 765 766
	/* Sanity checks */
	BUG_ON(data->blksz * data->blocks > 524288);
	BUG_ON(data->blksz > host->mmc->max_blk_size);
	BUG_ON(data->blocks > 65535);

	host->data = data;
	host->data_early = 0;
767
	host->data->bytes_xfered = 0;
768

769
	if (host->flags & (SDHCI_USE_SDMA | SDHCI_USE_ADMA)) {
770
		struct scatterlist *sg;
771
		unsigned int length_mask, offset_mask;
772
		int i;
773

774 775 776 777 778 779 780 781 782
		host->flags |= SDHCI_REQ_USE_DMA;

		/*
		 * FIXME: This doesn't account for merging when mapping the
		 * scatterlist.
		 *
		 * The assumption here being that alignment and lengths are
		 * the same after DMA mapping to device address space.
		 */
783
		length_mask = 0;
784
		offset_mask = 0;
785
		if (host->flags & SDHCI_USE_ADMA) {
786
			if (host->quirks & SDHCI_QUIRK_32BIT_ADMA_SIZE) {
787
				length_mask = 3;
788 789 790 791 792 793 794
				/*
				 * As we use up to 3 byte chunks to work
				 * around alignment problems, we need to
				 * check the offset as well.
				 */
				offset_mask = 3;
			}
795 796
		} else {
			if (host->quirks & SDHCI_QUIRK_32BIT_DMA_SIZE)
797
				length_mask = 3;
798 799
			if (host->quirks & SDHCI_QUIRK_32BIT_DMA_ADDR)
				offset_mask = 3;
800 801
		}

802
		if (unlikely(length_mask | offset_mask)) {
803
			for_each_sg(data->sg, sg, data->sg_len, i) {
804
				if (sg->length & length_mask) {
805
					DBG("Reverting to PIO because of transfer size (%d)\n",
806
					    sg->length);
807 808 809
					host->flags &= ~SDHCI_REQ_USE_DMA;
					break;
				}
810
				if (sg->offset & offset_mask) {
811
					DBG("Reverting to PIO because of bad alignment\n");
812 813 814 815 816 817 818
					host->flags &= ~SDHCI_REQ_USE_DMA;
					break;
				}
			}
		}
	}

819
	if (host->flags & SDHCI_REQ_USE_DMA) {
820
		int sg_cnt = sdhci_pre_dma_transfer(host, data, COOKIE_MAPPED);
821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836

		if (sg_cnt <= 0) {
			/*
			 * This only happens when someone fed
			 * us an invalid request.
			 */
			WARN_ON(1);
			host->flags &= ~SDHCI_REQ_USE_DMA;
		} else if (host->flags & SDHCI_USE_ADMA) {
			sdhci_adma_table_pre(host, data, sg_cnt);

			sdhci_writel(host, host->adma_addr, SDHCI_ADMA_ADDRESS);
			if (host->flags & SDHCI_USE_64_BIT_DMA)
				sdhci_writel(host,
					     (u64)host->adma_addr >> 32,
					     SDHCI_ADMA_ADDRESS_HI);
837
		} else {
838 839 840
			WARN_ON(sg_cnt != 1);
			sdhci_writel(host, sg_dma_address(data->sg),
				SDHCI_DMA_ADDRESS);
841 842 843
		}
	}

844 845 846 847 848 849
	/*
	 * Always adjust the DMA selection as some controllers
	 * (e.g. JMicron) can't do PIO properly when the selection
	 * is ADMA.
	 */
	if (host->version >= SDHCI_SPEC_200) {
850
		ctrl = sdhci_readb(host, SDHCI_HOST_CONTROL);
851 852
		ctrl &= ~SDHCI_CTRL_DMA_MASK;
		if ((host->flags & SDHCI_REQ_USE_DMA) &&
853 854 855 856 857 858
			(host->flags & SDHCI_USE_ADMA)) {
			if (host->flags & SDHCI_USE_64_BIT_DMA)
				ctrl |= SDHCI_CTRL_ADMA64;
			else
				ctrl |= SDHCI_CTRL_ADMA32;
		} else {
859
			ctrl |= SDHCI_CTRL_SDMA;
860
		}
861
		sdhci_writeb(host, ctrl, SDHCI_HOST_CONTROL);
862 863
	}

864
	if (!(host->flags & SDHCI_REQ_USE_DMA)) {
865 866 867 868 869 870 871 872
		int flags;

		flags = SG_MITER_ATOMIC;
		if (host->data->flags & MMC_DATA_READ)
			flags |= SG_MITER_TO_SG;
		else
			flags |= SG_MITER_FROM_SG;
		sg_miter_start(&host->sg_miter, data->sg, data->sg_len, flags);
873
		host->blocks = data->blocks;
874
	}
875

876 877
	sdhci_set_transfer_irqs(host);

878 879 880
	/* Set the DMA boundary value and block size */
	sdhci_writew(host, SDHCI_MAKE_BLKSZ(SDHCI_DEFAULT_BOUNDARY_ARG,
		data->blksz), SDHCI_BLOCK_SIZE);
881
	sdhci_writew(host, data->blocks, SDHCI_BLOCK_COUNT);
882 883
}

884 885 886 887 888 889
static inline bool sdhci_auto_cmd12(struct sdhci_host *host,
				    struct mmc_request *mrq)
{
	return !mrq->sbc && (host->flags & SDHCI_AUTO_CMD12);
}

890
static void sdhci_set_transfer_mode(struct sdhci_host *host,
891
	struct mmc_command *cmd)
892
{
893
	u16 mode = 0;
894
	struct mmc_data *data = cmd->data;
895

896
	if (data == NULL) {
897 898 899 900
		if (host->quirks2 &
			SDHCI_QUIRK2_CLEAR_TRANSFERMODE_REG_BEFORE_CMD) {
			sdhci_writew(host, 0x0, SDHCI_TRANSFER_MODE);
		} else {
901
		/* clear Auto CMD settings for no data CMDs */
902 903
			mode = sdhci_readw(host, SDHCI_TRANSFER_MODE);
			sdhci_writew(host, mode & ~(SDHCI_TRNS_AUTO_CMD12 |
904
				SDHCI_TRNS_AUTO_CMD23), SDHCI_TRANSFER_MODE);
905
		}
906
		return;
907
	}
908

909 910
	WARN_ON(!host->data);

911 912 913
	if (!(host->quirks2 & SDHCI_QUIRK2_SUPPORT_SINGLE))
		mode = SDHCI_TRNS_BLK_CNT_EN;

914
	if (mmc_op_multi(cmd->opcode) || data->blocks > 1) {
915
		mode = SDHCI_TRNS_BLK_CNT_EN | SDHCI_TRNS_MULTI;
916 917 918 919
		/*
		 * If we are sending CMD23, CMD12 never gets sent
		 * on successful completion (so no Auto-CMD12).
		 */
920
		if (sdhci_auto_cmd12(host, cmd->mrq) &&
921
		    (cmd->opcode != SD_IO_RW_EXTENDED))
922
			mode |= SDHCI_TRNS_AUTO_CMD12;
923
		else if (cmd->mrq->sbc && (host->flags & SDHCI_AUTO_CMD23)) {
924
			mode |= SDHCI_TRNS_AUTO_CMD23;
925
			sdhci_writel(host, cmd->mrq->sbc->arg, SDHCI_ARGUMENT2);
926
		}
927
	}
928

929 930
	if (data->flags & MMC_DATA_READ)
		mode |= SDHCI_TRNS_READ;
931
	if (host->flags & SDHCI_REQ_USE_DMA)
932 933
		mode |= SDHCI_TRNS_DMA;

934
	sdhci_writew(host, mode, SDHCI_TRANSFER_MODE);
935 936
}

937 938 939 940 941 942 943 944 945 946
static bool sdhci_needs_reset(struct sdhci_host *host, struct mmc_request *mrq)
{
	return (!(host->flags & SDHCI_DEVICE_DEAD) &&
		((mrq->cmd && mrq->cmd->error) ||
		 (mrq->sbc && mrq->sbc->error) ||
		 (mrq->data && ((mrq->data->error && !mrq->data->stop) ||
				(mrq->data->stop && mrq->data->stop->error))) ||
		 (host->quirks & SDHCI_QUIRK_RESET_AFTER_REQUEST)));
}

947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969
static void __sdhci_finish_mrq(struct sdhci_host *host, struct mmc_request *mrq)
{
	int i;

	for (i = 0; i < SDHCI_MAX_MRQS; i++) {
		if (host->mrqs_done[i] == mrq) {
			WARN_ON(1);
			return;
		}
	}

	for (i = 0; i < SDHCI_MAX_MRQS; i++) {
		if (!host->mrqs_done[i]) {
			host->mrqs_done[i] = mrq;
			break;
		}
	}

	WARN_ON(i >= SDHCI_MAX_MRQS);

	tasklet_schedule(&host->finish_tasklet);
}

970 971
static void sdhci_finish_mrq(struct sdhci_host *host, struct mmc_request *mrq)
{
972 973 974 975 976 977 978 979 980
	if (host->cmd && host->cmd->mrq == mrq)
		host->cmd = NULL;

	if (host->data_cmd && host->data_cmd->mrq == mrq)
		host->data_cmd = NULL;

	if (host->data && host->data->mrq == mrq)
		host->data = NULL;

981 982 983
	if (sdhci_needs_reset(host, mrq))
		host->pending_reset = true;

984
	__sdhci_finish_mrq(host, mrq);
985 986
}

987 988
static void sdhci_finish_data(struct sdhci_host *host)
{
989 990
	struct mmc_command *data_cmd = host->data_cmd;
	struct mmc_data *data = host->data;
991 992

	host->data = NULL;
993
	host->data_cmd = NULL;
994

995 996 997
	if ((host->flags & (SDHCI_REQ_USE_DMA | SDHCI_USE_ADMA)) ==
	    (SDHCI_REQ_USE_DMA | SDHCI_USE_ADMA))
		sdhci_adma_table_post(host, data);
998 999

	/*
1000 1001 1002 1003 1004
	 * The specification states that the block count register must
	 * be updated, but it does not specify at what point in the
	 * data flow. That makes the register entirely useless to read
	 * back so we have to assume that nothing made it to the card
	 * in the event of an error.
1005
	 */
1006 1007
	if (data->error)
		data->bytes_xfered = 0;
1008
	else
1009
		data->bytes_xfered = data->blksz * data->blocks;
1010

1011 1012 1013 1014 1015 1016 1017
	/*
	 * Need to send CMD12 if -
	 * a) open-ended multiblock transfer (no CMD23)
	 * b) error in multiblock transfer
	 */
	if (data->stop &&
	    (data->error ||
1018
	     !data->mrq->sbc)) {
1019

1020 1021 1022 1023
		/*
		 * The controller needs a reset of internal state machines
		 * upon error conditions.
		 */
P
Pierre Ossman 已提交
1024
		if (data->error) {
1025 1026
			if (!host->cmd || host->cmd == data_cmd)
				sdhci_do_reset(host, SDHCI_RESET_CMD);
1027
			sdhci_do_reset(host, SDHCI_RESET_DATA);
1028 1029
		}

1030 1031
		/* Avoid triggering warning in sdhci_send_command() */
		host->cmd = NULL;
1032
		sdhci_send_command(host, data->stop);
1033 1034 1035
	} else {
		sdhci_finish_mrq(host, data->mrq);
	}
1036 1037
}

1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054
static void sdhci_mod_timer(struct sdhci_host *host, struct mmc_request *mrq,
			    unsigned long timeout)
{
	if (sdhci_data_line_cmd(mrq->cmd))
		mod_timer(&host->data_timer, timeout);
	else
		mod_timer(&host->timer, timeout);
}

static void sdhci_del_timer(struct sdhci_host *host, struct mmc_request *mrq)
{
	if (sdhci_data_line_cmd(mrq->cmd))
		del_timer(&host->data_timer);
	else
		del_timer(&host->timer);
}

1055
void sdhci_send_command(struct sdhci_host *host, struct mmc_command *cmd)
1056 1057
{
	int flags;
1058
	u32 mask;
1059
	unsigned long timeout;
1060 1061 1062

	WARN_ON(host->cmd);

1063 1064 1065
	/* Initially, a command has no error */
	cmd->error = 0;

1066
	/* Wait max 10 ms */
1067
	timeout = 10;
1068 1069

	mask = SDHCI_CMD_INHIBIT;
1070
	if (sdhci_data_line_cmd(cmd))
1071 1072 1073 1074
		mask |= SDHCI_DATA_INHIBIT;

	/* We shouldn't wait for data inihibit for stop commands, even
	   though they might use busy signaling */
1075
	if (cmd->mrq->data && (cmd == cmd->mrq->data->stop))
1076 1077
		mask &= ~SDHCI_DATA_INHIBIT;

1078
	while (sdhci_readl(host, SDHCI_PRESENT_STATE) & mask) {
1079
		if (timeout == 0) {
1080 1081
			pr_err("%s: Controller never released inhibit bit(s).\n",
			       mmc_hostname(host->mmc));
1082
			sdhci_dumpregs(host);
P
Pierre Ossman 已提交
1083
			cmd->error = -EIO;
1084
			sdhci_finish_mrq(host, cmd->mrq);
1085 1086
			return;
		}
1087 1088 1089
		timeout--;
		mdelay(1);
	}
1090

1091
	timeout = jiffies;
1092 1093
	if (!cmd->data && cmd->busy_timeout > 9000)
		timeout += DIV_ROUND_UP(cmd->busy_timeout, 1000) * HZ + HZ;
1094 1095
	else
		timeout += 10 * HZ;
1096
	sdhci_mod_timer(host, cmd->mrq, timeout);
1097 1098

	host->cmd = cmd;
1099
	if (sdhci_data_line_cmd(cmd)) {
1100 1101 1102
		WARN_ON(host->data_cmd);
		host->data_cmd = cmd;
	}
1103

1104
	sdhci_prepare_data(host, cmd);
1105

1106
	sdhci_writel(host, cmd->arg, SDHCI_ARGUMENT);
1107

1108
	sdhci_set_transfer_mode(host, cmd);
1109

1110
	if ((cmd->flags & MMC_RSP_136) && (cmd->flags & MMC_RSP_BUSY)) {
1111
		pr_err("%s: Unsupported response type!\n",
1112
			mmc_hostname(host->mmc));
P
Pierre Ossman 已提交
1113
		cmd->error = -EINVAL;
1114
		sdhci_finish_mrq(host, cmd->mrq);
1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130
		return;
	}

	if (!(cmd->flags & MMC_RSP_PRESENT))
		flags = SDHCI_CMD_RESP_NONE;
	else if (cmd->flags & MMC_RSP_136)
		flags = SDHCI_CMD_RESP_LONG;
	else if (cmd->flags & MMC_RSP_BUSY)
		flags = SDHCI_CMD_RESP_SHORT_BUSY;
	else
		flags = SDHCI_CMD_RESP_SHORT;

	if (cmd->flags & MMC_RSP_CRC)
		flags |= SDHCI_CMD_CRC;
	if (cmd->flags & MMC_RSP_OPCODE)
		flags |= SDHCI_CMD_INDEX;
1131 1132

	/* CMD19 is special in that the Data Present Select should be set */
1133 1134
	if (cmd->data || cmd->opcode == MMC_SEND_TUNING_BLOCK ||
	    cmd->opcode == MMC_SEND_TUNING_BLOCK_HS200)
1135 1136
		flags |= SDHCI_CMD_DATA;

1137
	sdhci_writew(host, SDHCI_MAKE_CMD(cmd->opcode, flags), SDHCI_COMMAND);
1138
}
1139
EXPORT_SYMBOL_GPL(sdhci_send_command);
1140 1141 1142

static void sdhci_finish_command(struct sdhci_host *host)
{
1143
	struct mmc_command *cmd = host->cmd;
1144 1145
	int i;

1146 1147 1148 1149
	host->cmd = NULL;

	if (cmd->flags & MMC_RSP_PRESENT) {
		if (cmd->flags & MMC_RSP_136) {
1150 1151
			/* CRC is stripped so we need to do some shifting. */
			for (i = 0;i < 4;i++) {
1152
				cmd->resp[i] = sdhci_readl(host,
1153 1154
					SDHCI_RESPONSE + (3-i)*4) << 8;
				if (i != 3)
1155
					cmd->resp[i] |=
1156
						sdhci_readb(host,
1157 1158 1159
						SDHCI_RESPONSE + (3-i)*4-1);
			}
		} else {
1160
			cmd->resp[0] = sdhci_readl(host, SDHCI_RESPONSE);
1161 1162 1163
		}
	}

1164 1165 1166 1167 1168 1169 1170 1171 1172 1173
	/*
	 * The host can send and interrupt when the busy state has
	 * ended, allowing us to wait without wasting CPU cycles.
	 * The busy signal uses DAT0 so this is similar to waiting
	 * for data to complete.
	 *
	 * Note: The 1.0 specification is a bit ambiguous about this
	 *       feature so there might be some problems with older
	 *       controllers.
	 */
1174 1175
	if (cmd->flags & MMC_RSP_BUSY) {
		if (cmd->data) {
1176 1177
			DBG("Cannot wait for busy signal when also doing a data transfer");
		} else if (!(host->quirks & SDHCI_QUIRK_NO_BUSY_IRQ) &&
1178 1179
			   cmd == host->data_cmd) {
			/* Command complete before busy is ended */
1180 1181 1182 1183
			return;
		}
	}

1184
	/* Finished CMD23, now send actual command. */
1185 1186
	if (cmd == cmd->mrq->sbc) {
		sdhci_send_command(host, cmd->mrq->cmd);
1187
	} else {
1188

1189 1190 1191
		/* Processed actual command. */
		if (host->data && host->data_early)
			sdhci_finish_data(host);
1192

1193
		if (!cmd->data)
1194
			sdhci_finish_mrq(host, cmd->mrq);
1195
	}
1196 1197
}

1198 1199
static u16 sdhci_get_preset_value(struct sdhci_host *host)
{
1200
	u16 preset = 0;
1201

1202 1203
	switch (host->timing) {
	case MMC_TIMING_UHS_SDR12:
1204 1205
		preset = sdhci_readw(host, SDHCI_PRESET_FOR_SDR12);
		break;
1206
	case MMC_TIMING_UHS_SDR25:
1207 1208
		preset = sdhci_readw(host, SDHCI_PRESET_FOR_SDR25);
		break;
1209
	case MMC_TIMING_UHS_SDR50:
1210 1211
		preset = sdhci_readw(host, SDHCI_PRESET_FOR_SDR50);
		break;
1212 1213
	case MMC_TIMING_UHS_SDR104:
	case MMC_TIMING_MMC_HS200:
1214 1215
		preset = sdhci_readw(host, SDHCI_PRESET_FOR_SDR104);
		break;
1216
	case MMC_TIMING_UHS_DDR50:
1217
	case MMC_TIMING_MMC_DDR52:
1218 1219
		preset = sdhci_readw(host, SDHCI_PRESET_FOR_DDR50);
		break;
1220 1221 1222
	case MMC_TIMING_MMC_HS400:
		preset = sdhci_readw(host, SDHCI_PRESET_FOR_HS400);
		break;
1223 1224 1225 1226 1227 1228 1229 1230 1231
	default:
		pr_warn("%s: Invalid UHS-I mode selected\n",
			mmc_hostname(host->mmc));
		preset = sdhci_readw(host, SDHCI_PRESET_FOR_SDR12);
		break;
	}
	return preset;
}

1232 1233
u16 sdhci_calc_clk(struct sdhci_host *host, unsigned int clock,
		   unsigned int *actual_clock)
1234
{
1235
	int div = 0; /* Initialized for compiler warning */
1236
	int real_div = div, clk_mul = 1;
1237
	u16 clk = 0;
1238
	bool switch_base_clk = false;
1239

1240
	if (host->version >= SDHCI_SPEC_300) {
1241
		if (host->preset_enabled) {
1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258
			u16 pre_val;

			clk = sdhci_readw(host, SDHCI_CLOCK_CONTROL);
			pre_val = sdhci_get_preset_value(host);
			div = (pre_val & SDHCI_PRESET_SDCLK_FREQ_MASK)
				>> SDHCI_PRESET_SDCLK_FREQ_SHIFT;
			if (host->clk_mul &&
				(pre_val & SDHCI_PRESET_CLKGEN_SEL_MASK)) {
				clk = SDHCI_PROG_CLOCK_MODE;
				real_div = div + 1;
				clk_mul = host->clk_mul;
			} else {
				real_div = max_t(int, 1, div << 1);
			}
			goto clock_set;
		}

1259 1260 1261 1262 1263
		/*
		 * Check if the Host Controller supports Programmable Clock
		 * Mode.
		 */
		if (host->clk_mul) {
1264 1265 1266 1267 1268
			for (div = 1; div <= 1024; div++) {
				if ((host->max_clk * host->clk_mul / div)
					<= clock)
					break;
			}
1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287
			if ((host->max_clk * host->clk_mul / div) <= clock) {
				/*
				 * Set Programmable Clock Mode in the Clock
				 * Control register.
				 */
				clk = SDHCI_PROG_CLOCK_MODE;
				real_div = div;
				clk_mul = host->clk_mul;
				div--;
			} else {
				/*
				 * Divisor can be too small to reach clock
				 * speed requirement. Then use the base clock.
				 */
				switch_base_clk = true;
			}
		}

		if (!host->clk_mul || switch_base_clk) {
1288 1289 1290 1291 1292 1293 1294 1295 1296
			/* Version 3.00 divisors must be a multiple of 2. */
			if (host->max_clk <= clock)
				div = 1;
			else {
				for (div = 2; div < SDHCI_MAX_DIV_SPEC_300;
				     div += 2) {
					if ((host->max_clk / div) <= clock)
						break;
				}
1297
			}
1298
			real_div = div;
1299
			div >>= 1;
1300 1301 1302
			if ((host->quirks2 & SDHCI_QUIRK2_CLOCK_DIV_ZERO_BROKEN)
				&& !div && host->max_clk <= 25000000)
				div = 1;
1303 1304 1305
		}
	} else {
		/* Version 2.00 divisors must be a power of 2. */
1306
		for (div = 1; div < SDHCI_MAX_DIV_SPEC_200; div *= 2) {
1307 1308 1309
			if ((host->max_clk / div) <= clock)
				break;
		}
1310
		real_div = div;
1311
		div >>= 1;
1312 1313
	}

1314
clock_set:
1315
	if (real_div)
1316
		*actual_clock = (host->max_clk * clk_mul) / real_div;
1317
	clk |= (div & SDHCI_DIV_MASK) << SDHCI_DIVIDER_SHIFT;
1318 1319
	clk |= ((div & SDHCI_DIV_HI_MASK) >> SDHCI_DIV_MASK_LEN)
		<< SDHCI_DIVIDER_HI_SHIFT;
1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338

	return clk;
}
EXPORT_SYMBOL_GPL(sdhci_calc_clk);

void sdhci_set_clock(struct sdhci_host *host, unsigned int clock)
{
	u16 clk;
	unsigned long timeout;

	host->mmc->actual_clock = 0;

	sdhci_writew(host, 0, SDHCI_CLOCK_CONTROL);

	if (clock == 0)
		return;

	clk = sdhci_calc_clk(host, clock, &host->mmc->actual_clock);

1339
	clk |= SDHCI_CLOCK_INT_EN;
1340
	sdhci_writew(host, clk, SDHCI_CLOCK_CONTROL);
1341

1342 1343
	/* Wait max 20 ms */
	timeout = 20;
1344
	while (!((clk = sdhci_readw(host, SDHCI_CLOCK_CONTROL))
1345 1346
		& SDHCI_CLOCK_INT_STABLE)) {
		if (timeout == 0) {
1347 1348
			pr_err("%s: Internal clock never stabilised.\n",
			       mmc_hostname(host->mmc));
1349 1350 1351
			sdhci_dumpregs(host);
			return;
		}
1352 1353 1354
		timeout--;
		mdelay(1);
	}
1355 1356

	clk |= SDHCI_CLOCK_CARD_EN;
1357
	sdhci_writew(host, clk, SDHCI_CLOCK_CONTROL);
1358
}
1359
EXPORT_SYMBOL_GPL(sdhci_set_clock);
1360

1361 1362
static void sdhci_set_power_reg(struct sdhci_host *host, unsigned char mode,
				unsigned short vdd)
1363
{
1364
	struct mmc_host *mmc = host->mmc;
1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378

	spin_unlock_irq(&host->lock);
	mmc_regulator_set_ocr(mmc, mmc->supply.vmmc, vdd);
	spin_lock_irq(&host->lock);

	if (mode != MMC_POWER_OFF)
		sdhci_writeb(host, SDHCI_POWER_ON, SDHCI_POWER_CONTROL);
	else
		sdhci_writeb(host, 0, SDHCI_POWER_CONTROL);
}

void sdhci_set_power(struct sdhci_host *host, unsigned char mode,
		     unsigned short vdd)
{
1379
	u8 pwr = 0;
1380

1381 1382
	if (mode != MMC_POWER_OFF) {
		switch (1 << vdd) {
1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394
		case MMC_VDD_165_195:
			pwr = SDHCI_POWER_180;
			break;
		case MMC_VDD_29_30:
		case MMC_VDD_30_31:
			pwr = SDHCI_POWER_300;
			break;
		case MMC_VDD_32_33:
		case MMC_VDD_33_34:
			pwr = SDHCI_POWER_330;
			break;
		default:
1395 1396 1397
			WARN(1, "%s: Invalid vdd %#x\n",
			     mmc_hostname(host->mmc), vdd);
			break;
1398 1399 1400 1401
		}
	}

	if (host->pwr == pwr)
1402
		return;
1403

1404 1405 1406
	host->pwr = pwr;

	if (pwr == 0) {
1407
		sdhci_writeb(host, 0, SDHCI_POWER_CONTROL);
1408 1409
		if (host->quirks2 & SDHCI_QUIRK2_CARD_ON_NEEDS_BUS_ON)
			sdhci_runtime_pm_bus_off(host);
1410 1411 1412 1413 1414 1415 1416
	} else {
		/*
		 * Spec says that we should clear the power reg before setting
		 * a new value. Some controllers don't seem to like this though.
		 */
		if (!(host->quirks & SDHCI_QUIRK_SINGLE_POWER_WRITE))
			sdhci_writeb(host, 0, SDHCI_POWER_CONTROL);
1417

1418 1419 1420 1421 1422 1423 1424
		/*
		 * At least the Marvell CaFe chip gets confused if we set the
		 * voltage and set turn on power at the same time, so set the
		 * voltage first.
		 */
		if (host->quirks & SDHCI_QUIRK_NO_SIMULT_VDD_AND_POWER)
			sdhci_writeb(host, pwr, SDHCI_POWER_CONTROL);
1425

1426
		pwr |= SDHCI_POWER_ON;
1427

1428
		sdhci_writeb(host, pwr, SDHCI_POWER_CONTROL);
1429

1430 1431
		if (host->quirks2 & SDHCI_QUIRK2_CARD_ON_NEEDS_BUS_ON)
			sdhci_runtime_pm_bus_on(host);
1432

1433 1434 1435 1436 1437 1438 1439
		/*
		 * Some controllers need an extra 10ms delay of 10ms before
		 * they can apply clock after applying power
		 */
		if (host->quirks & SDHCI_QUIRK_DELAY_AFTER_POWER)
			mdelay(10);
	}
1440 1441
}
EXPORT_SYMBOL_GPL(sdhci_set_power);
1442

1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453
static void __sdhci_set_power(struct sdhci_host *host, unsigned char mode,
			      unsigned short vdd)
{
	struct mmc_host *mmc = host->mmc;

	if (host->ops->set_power)
		host->ops->set_power(host, mode, vdd);
	else if (!IS_ERR(mmc->supply.vmmc))
		sdhci_set_power_reg(host, mode, vdd);
	else
		sdhci_set_power(host, mode, vdd);
1454 1455
}

1456 1457 1458 1459 1460 1461 1462 1463 1464
/*****************************************************************************\
 *                                                                           *
 * MMC callbacks                                                             *
 *                                                                           *
\*****************************************************************************/

static void sdhci_request(struct mmc_host *mmc, struct mmc_request *mrq)
{
	struct sdhci_host *host;
1465
	int present;
1466 1467 1468 1469
	unsigned long flags;

	host = mmc_priv(mmc);

1470
	/* Firstly check card presence */
1471
	present = mmc->ops->get_cd(mmc);
1472

1473 1474
	spin_lock_irqsave(&host->lock, flags);

1475
	sdhci_led_activate(host);
1476 1477 1478 1479 1480

	/*
	 * Ensure we don't send the STOP for non-SET_BLOCK_COUNTED
	 * requests if Auto-CMD12 is enabled.
	 */
1481
	if (sdhci_auto_cmd12(host, mrq)) {
1482 1483 1484 1485 1486
		if (mrq->stop) {
			mrq->data->stop = NULL;
			mrq->stop = NULL;
		}
	}
1487

1488
	if (!present || host->flags & SDHCI_DEVICE_DEAD) {
1489
		mrq->cmd->error = -ENOMEDIUM;
1490
		sdhci_finish_mrq(host, mrq);
1491
	} else {
1492
		if (mrq->sbc && !(host->flags & SDHCI_AUTO_CMD23))
1493 1494 1495
			sdhci_send_command(host, mrq->sbc);
		else
			sdhci_send_command(host, mrq->cmd);
1496
	}
1497

1498
	mmiowb();
1499 1500 1501
	spin_unlock_irqrestore(&host->lock, flags);
}

1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522
void sdhci_set_bus_width(struct sdhci_host *host, int width)
{
	u8 ctrl;

	ctrl = sdhci_readb(host, SDHCI_HOST_CONTROL);
	if (width == MMC_BUS_WIDTH_8) {
		ctrl &= ~SDHCI_CTRL_4BITBUS;
		if (host->version >= SDHCI_SPEC_300)
			ctrl |= SDHCI_CTRL_8BITBUS;
	} else {
		if (host->version >= SDHCI_SPEC_300)
			ctrl &= ~SDHCI_CTRL_8BITBUS;
		if (width == MMC_BUS_WIDTH_4)
			ctrl |= SDHCI_CTRL_4BITBUS;
		else
			ctrl &= ~SDHCI_CTRL_4BITBUS;
	}
	sdhci_writeb(host, ctrl, SDHCI_HOST_CONTROL);
}
EXPORT_SYMBOL_GPL(sdhci_set_bus_width);

1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541
void sdhci_set_uhs_signaling(struct sdhci_host *host, unsigned timing)
{
	u16 ctrl_2;

	ctrl_2 = sdhci_readw(host, SDHCI_HOST_CONTROL2);
	/* Select Bus Speed Mode for host */
	ctrl_2 &= ~SDHCI_CTRL_UHS_MASK;
	if ((timing == MMC_TIMING_MMC_HS200) ||
	    (timing == MMC_TIMING_UHS_SDR104))
		ctrl_2 |= SDHCI_CTRL_UHS_SDR104;
	else if (timing == MMC_TIMING_UHS_SDR12)
		ctrl_2 |= SDHCI_CTRL_UHS_SDR12;
	else if (timing == MMC_TIMING_UHS_SDR25)
		ctrl_2 |= SDHCI_CTRL_UHS_SDR25;
	else if (timing == MMC_TIMING_UHS_SDR50)
		ctrl_2 |= SDHCI_CTRL_UHS_SDR50;
	else if ((timing == MMC_TIMING_UHS_DDR50) ||
		 (timing == MMC_TIMING_MMC_DDR52))
		ctrl_2 |= SDHCI_CTRL_UHS_DDR50;
1542 1543
	else if (timing == MMC_TIMING_MMC_HS400)
		ctrl_2 |= SDHCI_CTRL_HS400; /* Non-standard */
1544 1545 1546 1547
	sdhci_writew(host, ctrl_2, SDHCI_HOST_CONTROL2);
}
EXPORT_SYMBOL_GPL(sdhci_set_uhs_signaling);

1548
static void sdhci_set_ios(struct mmc_host *mmc, struct mmc_ios *ios)
1549
{
1550
	struct sdhci_host *host = mmc_priv(mmc);
1551 1552 1553 1554 1555
	unsigned long flags;
	u8 ctrl;

	spin_lock_irqsave(&host->lock, flags);

A
Adrian Hunter 已提交
1556 1557
	if (host->flags & SDHCI_DEVICE_DEAD) {
		spin_unlock_irqrestore(&host->lock, flags);
1558 1559
		if (!IS_ERR(mmc->supply.vmmc) &&
		    ios->power_mode == MMC_POWER_OFF)
1560
			mmc_regulator_set_ocr(mmc, mmc->supply.vmmc, 0);
A
Adrian Hunter 已提交
1561 1562
		return;
	}
P
Pierre Ossman 已提交
1563

1564 1565 1566 1567 1568
	/*
	 * Reset the chip on each power off.
	 * Should clear out any weird states.
	 */
	if (ios->power_mode == MMC_POWER_OFF) {
1569
		sdhci_writel(host, 0, SDHCI_SIGNAL_ENABLE);
1570
		sdhci_reinit(host);
1571 1572
	}

1573
	if (host->version >= SDHCI_SPEC_300 &&
1574 1575
		(ios->power_mode == MMC_POWER_UP) &&
		!(host->quirks2 & SDHCI_QUIRK2_PRESET_VALUE_BROKEN))
1576 1577
		sdhci_enable_preset_value(host, false);

1578
	if (!ios->clock || ios->clock != host->clock) {
1579
		host->ops->set_clock(host, ios->clock);
1580
		host->clock = ios->clock;
1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592

		if (host->quirks & SDHCI_QUIRK_DATA_TIMEOUT_USES_SDCLK &&
		    host->clock) {
			host->timeout_clk = host->mmc->actual_clock ?
						host->mmc->actual_clock / 1000 :
						host->clock / 1000;
			host->mmc->max_busy_timeout =
				host->ops->get_max_timeout_count ?
				host->ops->get_max_timeout_count(host) :
				1 << 27;
			host->mmc->max_busy_timeout /= host->timeout_clk;
		}
1593
	}
1594

1595
	__sdhci_set_power(host, ios->power_mode, ios->vdd);
1596

1597 1598 1599
	if (host->ops->platform_send_init_74_clocks)
		host->ops->platform_send_init_74_clocks(host, ios->power_mode);

1600
	host->ops->set_bus_width(host, ios->bus_width);
1601

1602
	ctrl = sdhci_readb(host, SDHCI_HOST_CONTROL);
1603

1604 1605 1606
	if ((ios->timing == MMC_TIMING_SD_HS ||
	     ios->timing == MMC_TIMING_MMC_HS)
	    && !(host->quirks & SDHCI_QUIRK_NO_HISPD_BIT))
1607 1608 1609 1610
		ctrl |= SDHCI_CTRL_HISPD;
	else
		ctrl &= ~SDHCI_CTRL_HISPD;

1611
	if (host->version >= SDHCI_SPEC_300) {
1612 1613 1614
		u16 clk, ctrl_2;

		/* In case of UHS-I modes, set High Speed Enable */
1615 1616
		if ((ios->timing == MMC_TIMING_MMC_HS400) ||
		    (ios->timing == MMC_TIMING_MMC_HS200) ||
1617
		    (ios->timing == MMC_TIMING_MMC_DDR52) ||
1618
		    (ios->timing == MMC_TIMING_UHS_SDR50) ||
1619 1620
		    (ios->timing == MMC_TIMING_UHS_SDR104) ||
		    (ios->timing == MMC_TIMING_UHS_DDR50) ||
1621
		    (ios->timing == MMC_TIMING_UHS_SDR25))
1622
			ctrl |= SDHCI_CTRL_HISPD;
1623

1624
		if (!host->preset_enabled) {
1625
			sdhci_writeb(host, ctrl, SDHCI_HOST_CONTROL);
1626 1627 1628 1629
			/*
			 * We only need to set Driver Strength if the
			 * preset value enable is not set.
			 */
1630
			ctrl_2 = sdhci_readw(host, SDHCI_HOST_CONTROL2);
1631 1632 1633
			ctrl_2 &= ~SDHCI_CTRL_DRV_TYPE_MASK;
			if (ios->drv_type == MMC_SET_DRIVER_TYPE_A)
				ctrl_2 |= SDHCI_CTRL_DRV_TYPE_A;
1634 1635
			else if (ios->drv_type == MMC_SET_DRIVER_TYPE_B)
				ctrl_2 |= SDHCI_CTRL_DRV_TYPE_B;
1636 1637
			else if (ios->drv_type == MMC_SET_DRIVER_TYPE_C)
				ctrl_2 |= SDHCI_CTRL_DRV_TYPE_C;
1638 1639 1640
			else if (ios->drv_type == MMC_SET_DRIVER_TYPE_D)
				ctrl_2 |= SDHCI_CTRL_DRV_TYPE_D;
			else {
1641 1642
				pr_warn("%s: invalid driver type, default to driver type B\n",
					mmc_hostname(mmc));
1643 1644
				ctrl_2 |= SDHCI_CTRL_DRV_TYPE_B;
			}
1645 1646

			sdhci_writew(host, ctrl_2, SDHCI_HOST_CONTROL2);
1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662
		} else {
			/*
			 * According to SDHC Spec v3.00, if the Preset Value
			 * Enable in the Host Control 2 register is set, we
			 * need to reset SD Clock Enable before changing High
			 * Speed Enable to avoid generating clock gliches.
			 */

			/* Reset SD Clock Enable */
			clk = sdhci_readw(host, SDHCI_CLOCK_CONTROL);
			clk &= ~SDHCI_CLOCK_CARD_EN;
			sdhci_writew(host, clk, SDHCI_CLOCK_CONTROL);

			sdhci_writeb(host, ctrl, SDHCI_HOST_CONTROL);

			/* Re-enable SD Clock */
1663
			host->ops->set_clock(host, host->clock);
1664
		}
1665 1666 1667 1668 1669 1670

		/* Reset SD Clock Enable */
		clk = sdhci_readw(host, SDHCI_CLOCK_CONTROL);
		clk &= ~SDHCI_CLOCK_CARD_EN;
		sdhci_writew(host, clk, SDHCI_CLOCK_CONTROL);

1671
		host->ops->set_uhs_signaling(host, ios->timing);
1672
		host->timing = ios->timing;
1673

1674 1675 1676 1677 1678
		if (!(host->quirks2 & SDHCI_QUIRK2_PRESET_VALUE_BROKEN) &&
				((ios->timing == MMC_TIMING_UHS_SDR12) ||
				 (ios->timing == MMC_TIMING_UHS_SDR25) ||
				 (ios->timing == MMC_TIMING_UHS_SDR50) ||
				 (ios->timing == MMC_TIMING_UHS_SDR104) ||
1679 1680
				 (ios->timing == MMC_TIMING_UHS_DDR50) ||
				 (ios->timing == MMC_TIMING_MMC_DDR52))) {
1681 1682 1683 1684 1685 1686 1687 1688
			u16 preset;

			sdhci_enable_preset_value(host, true);
			preset = sdhci_get_preset_value(host);
			ios->drv_type = (preset & SDHCI_PRESET_DRV_MASK)
				>> SDHCI_PRESET_DRV_SHIFT;
		}

1689
		/* Re-enable SD Clock */
1690
		host->ops->set_clock(host, host->clock);
1691 1692
	} else
		sdhci_writeb(host, ctrl, SDHCI_HOST_CONTROL);
1693

1694 1695 1696 1697 1698
	/*
	 * Some (ENE) controllers go apeshit on some ios operation,
	 * signalling timeout and CRC errors even on CMD0. Resetting
	 * it on each ios seems to solve the problem.
	 */
1699
	if (host->quirks & SDHCI_QUIRK_RESET_CMD_DATA_ON_IOS)
1700
		sdhci_do_reset(host, SDHCI_RESET_CMD | SDHCI_RESET_DATA);
1701

1702
	mmiowb();
1703 1704 1705
	spin_unlock_irqrestore(&host->lock, flags);
}

1706
static int sdhci_get_cd(struct mmc_host *mmc)
1707 1708
{
	struct sdhci_host *host = mmc_priv(mmc);
1709
	int gpio_cd = mmc_gpio_get_cd(mmc);
1710 1711 1712 1713

	if (host->flags & SDHCI_DEVICE_DEAD)
		return 0;

1714
	/* If nonremovable, assume that the card is always present. */
1715
	if (!mmc_card_is_removable(host->mmc))
1716 1717
		return 1;

1718 1719 1720 1721
	/*
	 * Try slot gpio detect, if defined it take precedence
	 * over build in controller functionality
	 */
1722
	if (gpio_cd >= 0)
1723 1724
		return !!gpio_cd;

1725 1726 1727 1728
	/* If polling, assume that the card is always present. */
	if (host->quirks & SDHCI_QUIRK_BROKEN_CARD_DETECTION)
		return 1;

1729 1730 1731 1732
	/* Host native card detect */
	return !!(sdhci_readl(host, SDHCI_PRESENT_STATE) & SDHCI_CARD_PRESENT);
}

1733
static int sdhci_check_ro(struct sdhci_host *host)
1734 1735
{
	unsigned long flags;
1736
	int is_readonly;
1737 1738 1739

	spin_lock_irqsave(&host->lock, flags);

P
Pierre Ossman 已提交
1740
	if (host->flags & SDHCI_DEVICE_DEAD)
1741 1742 1743
		is_readonly = 0;
	else if (host->ops->get_ro)
		is_readonly = host->ops->get_ro(host);
P
Pierre Ossman 已提交
1744
	else
1745 1746
		is_readonly = !(sdhci_readl(host, SDHCI_PRESENT_STATE)
				& SDHCI_WRITE_PROTECT);
1747 1748 1749

	spin_unlock_irqrestore(&host->lock, flags);

1750 1751 1752
	/* This quirk needs to be replaced by a callback-function later */
	return host->quirks & SDHCI_QUIRK_INVERTED_WRITE_PROTECT ?
		!is_readonly : is_readonly;
1753 1754
}

1755 1756
#define SAMPLE_COUNT	5

1757
static int sdhci_get_ro(struct mmc_host *mmc)
1758
{
1759
	struct sdhci_host *host = mmc_priv(mmc);
1760 1761 1762
	int i, ro_count;

	if (!(host->quirks & SDHCI_QUIRK_UNSTABLE_RO_DETECT))
1763
		return sdhci_check_ro(host);
1764 1765 1766

	ro_count = 0;
	for (i = 0; i < SAMPLE_COUNT; i++) {
1767
		if (sdhci_check_ro(host)) {
1768 1769 1770 1771 1772 1773 1774 1775
			if (++ro_count > SAMPLE_COUNT / 2)
				return 1;
		}
		msleep(30);
	}
	return 0;
}

1776 1777 1778 1779 1780 1781 1782 1783
static void sdhci_hw_reset(struct mmc_host *mmc)
{
	struct sdhci_host *host = mmc_priv(mmc);

	if (host->ops && host->ops->hw_reset)
		host->ops->hw_reset(host);
}

1784 1785
static void sdhci_enable_sdio_irq_nolock(struct sdhci_host *host, int enable)
{
1786
	if (!(host->flags & SDHCI_DEVICE_DEAD)) {
1787
		if (enable)
1788
			host->ier |= SDHCI_INT_CARD_INT;
1789
		else
1790 1791 1792 1793
			host->ier &= ~SDHCI_INT_CARD_INT;

		sdhci_writel(host, host->ier, SDHCI_INT_ENABLE);
		sdhci_writel(host, host->ier, SDHCI_SIGNAL_ENABLE);
1794 1795
		mmiowb();
	}
1796 1797 1798 1799 1800 1801
}

static void sdhci_enable_sdio_irq(struct mmc_host *mmc, int enable)
{
	struct sdhci_host *host = mmc_priv(mmc);
	unsigned long flags;
P
Pierre Ossman 已提交
1802

1803
	spin_lock_irqsave(&host->lock, flags);
1804 1805 1806 1807 1808
	if (enable)
		host->flags |= SDHCI_SDIO_IRQ_ENABLED;
	else
		host->flags &= ~SDHCI_SDIO_IRQ_ENABLED;

1809
	sdhci_enable_sdio_irq_nolock(host, enable);
P
Pierre Ossman 已提交
1810 1811 1812
	spin_unlock_irqrestore(&host->lock, flags);
}

1813 1814
static int sdhci_start_signal_voltage_switch(struct mmc_host *mmc,
					     struct mmc_ios *ios)
1815
{
1816
	struct sdhci_host *host = mmc_priv(mmc);
1817
	u16 ctrl;
1818
	int ret;
1819

1820 1821 1822 1823 1824 1825
	/*
	 * Signal Voltage Switching is only applicable for Host Controllers
	 * v3.00 and above.
	 */
	if (host->version < SDHCI_SPEC_300)
		return 0;
1826

1827 1828
	ctrl = sdhci_readw(host, SDHCI_HOST_CONTROL2);

1829
	switch (ios->signal_voltage) {
1830
	case MMC_SIGNAL_VOLTAGE_330:
1831 1832
		if (!(host->flags & SDHCI_SIGNALING_330))
			return -EINVAL;
1833 1834 1835
		/* Set 1.8V Signal Enable in the Host Control2 register to 0 */
		ctrl &= ~SDHCI_CTRL_VDD_180;
		sdhci_writew(host, ctrl, SDHCI_HOST_CONTROL2);
1836

1837 1838 1839
		if (!IS_ERR(mmc->supply.vqmmc)) {
			ret = regulator_set_voltage(mmc->supply.vqmmc, 2700000,
						    3600000);
1840
			if (ret) {
J
Joe Perches 已提交
1841 1842
				pr_warn("%s: Switching to 3.3V signalling voltage failed\n",
					mmc_hostname(mmc));
1843 1844 1845 1846 1847
				return -EIO;
			}
		}
		/* Wait for 5ms */
		usleep_range(5000, 5500);
1848

1849 1850 1851 1852
		/* 3.3V regulator output should be stable within 5 ms */
		ctrl = sdhci_readw(host, SDHCI_HOST_CONTROL2);
		if (!(ctrl & SDHCI_CTRL_VDD_180))
			return 0;
1853

J
Joe Perches 已提交
1854 1855
		pr_warn("%s: 3.3V regulator output did not became stable\n",
			mmc_hostname(mmc));
1856 1857 1858

		return -EAGAIN;
	case MMC_SIGNAL_VOLTAGE_180:
1859 1860
		if (!(host->flags & SDHCI_SIGNALING_180))
			return -EINVAL;
1861 1862
		if (!IS_ERR(mmc->supply.vqmmc)) {
			ret = regulator_set_voltage(mmc->supply.vqmmc,
1863 1864
					1700000, 1950000);
			if (ret) {
J
Joe Perches 已提交
1865 1866
				pr_warn("%s: Switching to 1.8V signalling voltage failed\n",
					mmc_hostname(mmc));
1867 1868 1869
				return -EIO;
			}
		}
1870 1871 1872 1873 1874

		/*
		 * Enable 1.8V Signal Enable in the Host Control2
		 * register
		 */
1875 1876
		ctrl |= SDHCI_CTRL_VDD_180;
		sdhci_writew(host, ctrl, SDHCI_HOST_CONTROL2);
1877

1878 1879 1880 1881
		/* Some controller need to do more when switching */
		if (host->ops->voltage_switch)
			host->ops->voltage_switch(host);

1882 1883 1884 1885
		/* 1.8V regulator output should be stable within 5 ms */
		ctrl = sdhci_readw(host, SDHCI_HOST_CONTROL2);
		if (ctrl & SDHCI_CTRL_VDD_180)
			return 0;
1886

J
Joe Perches 已提交
1887 1888
		pr_warn("%s: 1.8V regulator output did not became stable\n",
			mmc_hostname(mmc));
1889

1890 1891
		return -EAGAIN;
	case MMC_SIGNAL_VOLTAGE_120:
1892 1893
		if (!(host->flags & SDHCI_SIGNALING_120))
			return -EINVAL;
1894 1895 1896
		if (!IS_ERR(mmc->supply.vqmmc)) {
			ret = regulator_set_voltage(mmc->supply.vqmmc, 1100000,
						    1300000);
1897
			if (ret) {
J
Joe Perches 已提交
1898 1899
				pr_warn("%s: Switching to 1.2V signalling voltage failed\n",
					mmc_hostname(mmc));
1900
				return -EIO;
1901 1902
			}
		}
1903
		return 0;
1904
	default:
1905 1906
		/* No signal voltage switch required */
		return 0;
1907
	}
1908 1909
}

1910 1911 1912 1913 1914
static int sdhci_card_busy(struct mmc_host *mmc)
{
	struct sdhci_host *host = mmc_priv(mmc);
	u32 present_state;

1915
	/* Check whether DAT[0] is 0 */
1916 1917
	present_state = sdhci_readl(host, SDHCI_PRESENT_STATE);

1918
	return !(present_state & SDHCI_DATA_0_LVL_MASK);
1919 1920
}

1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932
static int sdhci_prepare_hs400_tuning(struct mmc_host *mmc, struct mmc_ios *ios)
{
	struct sdhci_host *host = mmc_priv(mmc);
	unsigned long flags;

	spin_lock_irqsave(&host->lock, flags);
	host->flags |= SDHCI_HS400_TUNING;
	spin_unlock_irqrestore(&host->lock, flags);

	return 0;
}

1933
static int sdhci_execute_tuning(struct mmc_host *mmc, u32 opcode)
1934
{
1935
	struct sdhci_host *host = mmc_priv(mmc);
1936 1937 1938
	u16 ctrl;
	int tuning_loop_counter = MAX_TUNING_LOOP;
	int err = 0;
1939
	unsigned long flags;
1940
	unsigned int tuning_count = 0;
1941
	bool hs400_tuning;
1942

1943
	spin_lock_irqsave(&host->lock, flags);
1944

1945 1946 1947
	hs400_tuning = host->flags & SDHCI_HS400_TUNING;
	host->flags &= ~SDHCI_HS400_TUNING;

1948 1949 1950
	if (host->tuning_mode == SDHCI_TUNING_MODE_1)
		tuning_count = host->tuning_count;

1951
	/*
W
Weijun Yang 已提交
1952 1953 1954
	 * The Host Controller needs tuning in case of SDR104 and DDR50
	 * mode, and for SDR50 mode when Use Tuning for SDR50 is set in
	 * the Capabilities register.
1955 1956
	 * If the Host Controller supports the HS200 mode then the
	 * tuning function has to be executed.
1957
	 */
1958
	switch (host->timing) {
1959
	/* HS400 tuning is done in HS200 mode */
1960
	case MMC_TIMING_MMC_HS400:
1961 1962 1963
		err = -EINVAL;
		goto out_unlock;

1964
	case MMC_TIMING_MMC_HS200:
1965 1966 1967 1968 1969 1970 1971 1972
		/*
		 * Periodic re-tuning for HS400 is not expected to be needed, so
		 * disable it here.
		 */
		if (hs400_tuning)
			tuning_count = 0;
		break;

1973
	case MMC_TIMING_UHS_SDR104:
W
Weijun Yang 已提交
1974
	case MMC_TIMING_UHS_DDR50:
1975 1976 1977
		break;

	case MMC_TIMING_UHS_SDR50:
1978
		if (host->flags & SDHCI_SDR50_NEEDS_TUNING)
1979 1980 1981 1982
			break;
		/* FALLTHROUGH */

	default:
1983
		goto out_unlock;
1984 1985
	}

1986
	if (host->ops->platform_execute_tuning) {
1987
		spin_unlock_irqrestore(&host->lock, flags);
1988 1989 1990 1991
		err = host->ops->platform_execute_tuning(host, opcode);
		return err;
	}

1992 1993
	ctrl = sdhci_readw(host, SDHCI_HOST_CONTROL2);
	ctrl |= SDHCI_CTRL_EXEC_TUNING;
1994 1995
	if (host->quirks2 & SDHCI_QUIRK2_TUNING_WORK_AROUND)
		ctrl |= SDHCI_CTRL_TUNED_CLK;
1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007
	sdhci_writew(host, ctrl, SDHCI_HOST_CONTROL2);

	/*
	 * As per the Host Controller spec v3.00, tuning command
	 * generates Buffer Read Ready interrupt, so enable that.
	 *
	 * Note: The spec clearly says that when tuning sequence
	 * is being performed, the controller does not generate
	 * interrupts other than Buffer Read Ready interrupt. But
	 * to make sure we don't hit a controller bug, we _only_
	 * enable Buffer Read Ready interrupt here.
	 */
2008 2009
	sdhci_writel(host, SDHCI_INT_DATA_AVAIL, SDHCI_INT_ENABLE);
	sdhci_writel(host, SDHCI_INT_DATA_AVAIL, SDHCI_SIGNAL_ENABLE);
2010 2011 2012

	/*
	 * Issue CMD19 repeatedly till Execute Tuning is set to 0 or the number
2013
	 * of loops reaches 40 times.
2014 2015 2016
	 */
	do {
		struct mmc_command cmd = {0};
2017
		struct mmc_request mrq = {NULL};
2018

2019
		cmd.opcode = opcode;
2020 2021 2022 2023
		cmd.arg = 0;
		cmd.flags = MMC_RSP_R1 | MMC_CMD_ADTC;
		cmd.retries = 0;
		cmd.data = NULL;
2024
		cmd.mrq = &mrq;
2025 2026
		cmd.error = 0;

2027 2028 2029
		if (tuning_loop_counter-- == 0)
			break;

2030 2031 2032 2033 2034 2035 2036
		mrq.cmd = &cmd;

		/*
		 * In response to CMD19, the card sends 64 bytes of tuning
		 * block to the Host Controller. So we set the block size
		 * to 64 here.
		 */
2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047
		if (cmd.opcode == MMC_SEND_TUNING_BLOCK_HS200) {
			if (mmc->ios.bus_width == MMC_BUS_WIDTH_8)
				sdhci_writew(host, SDHCI_MAKE_BLKSZ(7, 128),
					     SDHCI_BLOCK_SIZE);
			else if (mmc->ios.bus_width == MMC_BUS_WIDTH_4)
				sdhci_writew(host, SDHCI_MAKE_BLKSZ(7, 64),
					     SDHCI_BLOCK_SIZE);
		} else {
			sdhci_writew(host, SDHCI_MAKE_BLKSZ(7, 64),
				     SDHCI_BLOCK_SIZE);
		}
2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060

		/*
		 * The tuning block is sent by the card to the host controller.
		 * So we set the TRNS_READ bit in the Transfer Mode register.
		 * This also takes care of setting DMA Enable and Multi Block
		 * Select in the same register to 0.
		 */
		sdhci_writew(host, SDHCI_TRNS_READ, SDHCI_TRANSFER_MODE);

		sdhci_send_command(host, &cmd);

		host->cmd = NULL;

2061
		spin_unlock_irqrestore(&host->lock, flags);
2062 2063 2064 2065
		/* Wait for Buffer Read Ready interrupt */
		wait_event_interruptible_timeout(host->buf_ready_int,
					(host->tuning_done == 1),
					msecs_to_jiffies(50));
2066
		spin_lock_irqsave(&host->lock, flags);
2067 2068

		if (!host->tuning_done) {
2069
			pr_info(DRIVER_NAME ": Timeout waiting for Buffer Read Ready interrupt during tuning procedure, falling back to fixed sampling clock\n");
2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081
			ctrl = sdhci_readw(host, SDHCI_HOST_CONTROL2);
			ctrl &= ~SDHCI_CTRL_TUNED_CLK;
			ctrl &= ~SDHCI_CTRL_EXEC_TUNING;
			sdhci_writew(host, ctrl, SDHCI_HOST_CONTROL2);

			err = -EIO;
			goto out;
		}

		host->tuning_done = 0;

		ctrl = sdhci_readw(host, SDHCI_HOST_CONTROL2);
2082 2083 2084 2085

		/* eMMC spec does not require a delay between tuning cycles */
		if (opcode == MMC_SEND_TUNING_BLOCK)
			mdelay(1);
2086 2087 2088 2089 2090 2091
	} while (ctrl & SDHCI_CTRL_EXEC_TUNING);

	/*
	 * The Host Driver has exhausted the maximum number of loops allowed,
	 * so use fixed sampling frequency.
	 */
2092
	if (tuning_loop_counter < 0) {
2093 2094
		ctrl &= ~SDHCI_CTRL_TUNED_CLK;
		sdhci_writew(host, ctrl, SDHCI_HOST_CONTROL2);
2095 2096
	}
	if (!(ctrl & SDHCI_CTRL_TUNED_CLK)) {
2097
		pr_info(DRIVER_NAME ": Tuning procedure failed, falling back to fixed sampling clock\n");
2098
		err = -EIO;
2099 2100 2101
	}

out:
2102
	if (tuning_count) {
2103 2104 2105 2106 2107 2108 2109 2110
		/*
		 * In case tuning fails, host controllers which support
		 * re-tuning can try tuning again at a later time, when the
		 * re-tuning timer expires.  So for these controllers, we
		 * return 0. Since there might be other controllers who do not
		 * have this capability, we return error for them.
		 */
		err = 0;
2111 2112
	}

2113
	host->mmc->retune_period = err ? 0 : tuning_count;
2114

2115 2116
	sdhci_writel(host, host->ier, SDHCI_INT_ENABLE);
	sdhci_writel(host, host->ier, SDHCI_SIGNAL_ENABLE);
2117
out_unlock:
2118
	spin_unlock_irqrestore(&host->lock, flags);
2119 2120 2121
	return err;
}

2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133
static int sdhci_select_drive_strength(struct mmc_card *card,
				       unsigned int max_dtr, int host_drv,
				       int card_drv, int *drv_type)
{
	struct sdhci_host *host = mmc_priv(card->host);

	if (!host->ops->select_drive_strength)
		return 0;

	return host->ops->select_drive_strength(host, card, max_dtr, host_drv,
						card_drv, drv_type);
}
2134 2135

static void sdhci_enable_preset_value(struct sdhci_host *host, bool enable)
2136 2137 2138 2139 2140 2141 2142 2143 2144
{
	/* Host Controller v3.00 defines preset value registers */
	if (host->version < SDHCI_SPEC_300)
		return;

	/*
	 * We only enable or disable Preset Value if they are not already
	 * enabled or disabled respectively. Otherwise, we bail out.
	 */
2145 2146 2147 2148 2149 2150 2151 2152
	if (host->preset_enabled != enable) {
		u16 ctrl = sdhci_readw(host, SDHCI_HOST_CONTROL2);

		if (enable)
			ctrl |= SDHCI_CTRL_PRESET_VAL_ENABLE;
		else
			ctrl &= ~SDHCI_CTRL_PRESET_VAL_ENABLE;

2153
		sdhci_writew(host, ctrl, SDHCI_HOST_CONTROL2);
2154 2155 2156 2157 2158 2159 2160

		if (enable)
			host->flags |= SDHCI_PV_ENABLED;
		else
			host->flags &= ~SDHCI_PV_ENABLED;

		host->preset_enabled = enable;
2161
	}
2162 2163
}

2164 2165 2166 2167 2168 2169
static void sdhci_post_req(struct mmc_host *mmc, struct mmc_request *mrq,
				int err)
{
	struct sdhci_host *host = mmc_priv(mmc);
	struct mmc_data *data = mrq->data;

2170
	if (data->host_cookie != COOKIE_UNMAPPED)
2171 2172 2173 2174 2175
		dma_unmap_sg(mmc_dev(host->mmc), data->sg, data->sg_len,
			     data->flags & MMC_DATA_WRITE ?
			       DMA_TO_DEVICE : DMA_FROM_DEVICE);

	data->host_cookie = COOKIE_UNMAPPED;
2176 2177 2178 2179 2180 2181 2182
}

static void sdhci_pre_req(struct mmc_host *mmc, struct mmc_request *mrq,
			       bool is_first_req)
{
	struct sdhci_host *host = mmc_priv(mmc);

2183
	mrq->data->host_cookie = COOKIE_UNMAPPED;
2184 2185

	if (host->flags & SDHCI_REQ_USE_DMA)
2186
		sdhci_pre_dma_transfer(host, mrq->data, COOKIE_PRE_MAPPED);
2187 2188
}

2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206
static inline bool sdhci_has_requests(struct sdhci_host *host)
{
	return host->cmd || host->data_cmd;
}

static void sdhci_error_out_mrqs(struct sdhci_host *host, int err)
{
	if (host->data_cmd) {
		host->data_cmd->error = err;
		sdhci_finish_mrq(host, host->data_cmd->mrq);
	}

	if (host->cmd) {
		host->cmd->error = err;
		sdhci_finish_mrq(host, host->cmd->mrq);
	}
}

2207
static void sdhci_card_event(struct mmc_host *mmc)
2208
{
2209
	struct sdhci_host *host = mmc_priv(mmc);
2210
	unsigned long flags;
2211
	int present;
2212

2213 2214 2215 2216
	/* First check if client has provided their own card event */
	if (host->ops->card_event)
		host->ops->card_event(host);

2217
	present = mmc->ops->get_cd(mmc);
2218

2219 2220
	spin_lock_irqsave(&host->lock, flags);

2221 2222
	/* Check sdhci_has_requests() first in case we are runtime suspended */
	if (sdhci_has_requests(host) && !present) {
2223
		pr_err("%s: Card removed during transfer!\n",
2224
			mmc_hostname(host->mmc));
2225
		pr_err("%s: Resetting controller.\n",
2226
			mmc_hostname(host->mmc));
2227

2228 2229
		sdhci_do_reset(host, SDHCI_RESET_CMD);
		sdhci_do_reset(host, SDHCI_RESET_DATA);
2230

2231
		sdhci_error_out_mrqs(host, -ENOMEDIUM);
2232 2233 2234
	}

	spin_unlock_irqrestore(&host->lock, flags);
2235 2236 2237 2238
}

static const struct mmc_host_ops sdhci_ops = {
	.request	= sdhci_request,
2239 2240
	.post_req	= sdhci_post_req,
	.pre_req	= sdhci_pre_req,
2241
	.set_ios	= sdhci_set_ios,
2242
	.get_cd		= sdhci_get_cd,
2243 2244 2245 2246
	.get_ro		= sdhci_get_ro,
	.hw_reset	= sdhci_hw_reset,
	.enable_sdio_irq = sdhci_enable_sdio_irq,
	.start_signal_voltage_switch	= sdhci_start_signal_voltage_switch,
2247
	.prepare_hs400_tuning		= sdhci_prepare_hs400_tuning,
2248
	.execute_tuning			= sdhci_execute_tuning,
2249
	.select_drive_strength		= sdhci_select_drive_strength,
2250
	.card_event			= sdhci_card_event,
2251
	.card_busy	= sdhci_card_busy,
2252 2253 2254 2255 2256 2257 2258 2259
};

/*****************************************************************************\
 *                                                                           *
 * Tasklets                                                                  *
 *                                                                           *
\*****************************************************************************/

2260
static bool sdhci_request_done(struct sdhci_host *host)
2261 2262 2263
{
	unsigned long flags;
	struct mmc_request *mrq;
2264
	int i;
2265

2266 2267
	spin_lock_irqsave(&host->lock, flags);

2268 2269 2270 2271 2272 2273
	for (i = 0; i < SDHCI_MAX_MRQS; i++) {
		mrq = host->mrqs_done[i];
		if (mrq) {
			host->mrqs_done[i] = NULL;
			break;
		}
2274
	}
2275

2276 2277 2278 2279
	if (!mrq) {
		spin_unlock_irqrestore(&host->lock, flags);
		return true;
	}
2280

2281 2282
	sdhci_del_timer(host, mrq);

2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298
	/*
	 * Always unmap the data buffers if they were mapped by
	 * sdhci_prepare_data() whenever we finish with a request.
	 * This avoids leaking DMA mappings on error.
	 */
	if (host->flags & SDHCI_REQ_USE_DMA) {
		struct mmc_data *data = mrq->data;

		if (data && data->host_cookie == COOKIE_MAPPED) {
			dma_unmap_sg(mmc_dev(host->mmc), data->sg, data->sg_len,
				     (data->flags & MMC_DATA_READ) ?
				     DMA_FROM_DEVICE : DMA_TO_DEVICE);
			data->host_cookie = COOKIE_UNMAPPED;
		}
	}

2299 2300 2301 2302
	/*
	 * The controller needs a reset of internal state machines
	 * upon error conditions.
	 */
2303
	if (sdhci_needs_reset(host, mrq)) {
2304
		/* Some controllers need this kick or reset won't work here */
2305
		if (host->quirks & SDHCI_QUIRK_CLOCK_BEFORE_RESET)
2306
			/* This is to force an update */
2307
			host->ops->set_clock(host, host->clock);
2308 2309 2310

		/* Spec says we should do both at the same time, but Ricoh
		   controllers do not like that. */
2311 2312 2313 2314
		if (!host->cmd)
			sdhci_do_reset(host, SDHCI_RESET_CMD);
		if (!host->data_cmd)
			sdhci_do_reset(host, SDHCI_RESET_DATA);
2315 2316

		host->pending_reset = false;
2317 2318
	}

2319 2320
	if (!sdhci_has_requests(host))
		sdhci_led_deactivate(host);
2321

2322
	mmiowb();
2323 2324 2325
	spin_unlock_irqrestore(&host->lock, flags);

	mmc_request_done(host->mmc, mrq);
2326 2327 2328 2329 2330 2331 2332 2333 2334 2335

	return false;
}

static void sdhci_tasklet_finish(unsigned long param)
{
	struct sdhci_host *host = (struct sdhci_host *)param;

	while (!sdhci_request_done(host))
		;
2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346
}

static void sdhci_timeout_timer(unsigned long data)
{
	struct sdhci_host *host;
	unsigned long flags;

	host = (struct sdhci_host*)data;

	spin_lock_irqsave(&host->lock, flags);

2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370
	if (host->cmd && !sdhci_data_line_cmd(host->cmd)) {
		pr_err("%s: Timeout waiting for hardware cmd interrupt.\n",
		       mmc_hostname(host->mmc));
		sdhci_dumpregs(host);

		host->cmd->error = -ETIMEDOUT;
		sdhci_finish_mrq(host, host->cmd->mrq);
	}

	mmiowb();
	spin_unlock_irqrestore(&host->lock, flags);
}

static void sdhci_timeout_data_timer(unsigned long data)
{
	struct sdhci_host *host;
	unsigned long flags;

	host = (struct sdhci_host *)data;

	spin_lock_irqsave(&host->lock, flags);

	if (host->data || host->data_cmd ||
	    (host->cmd && sdhci_data_line_cmd(host->cmd))) {
2371 2372
		pr_err("%s: Timeout waiting for hardware interrupt.\n",
		       mmc_hostname(host->mmc));
2373 2374 2375
		sdhci_dumpregs(host);

		if (host->data) {
P
Pierre Ossman 已提交
2376
			host->data->error = -ETIMEDOUT;
2377
			sdhci_finish_data(host);
2378 2379 2380
		} else if (host->data_cmd) {
			host->data_cmd->error = -ETIMEDOUT;
			sdhci_finish_mrq(host, host->data_cmd->mrq);
2381
		} else {
2382 2383
			host->cmd->error = -ETIMEDOUT;
			sdhci_finish_mrq(host, host->cmd->mrq);
2384 2385 2386
		}
	}

2387
	mmiowb();
2388 2389 2390 2391 2392 2393 2394 2395 2396
	spin_unlock_irqrestore(&host->lock, flags);
}

/*****************************************************************************\
 *                                                                           *
 * Interrupt handling                                                        *
 *                                                                           *
\*****************************************************************************/

2397
static void sdhci_cmd_irq(struct sdhci_host *host, u32 intmask, u32 *mask)
2398 2399
{
	if (!host->cmd) {
2400 2401 2402 2403 2404 2405 2406
		/*
		 * SDHCI recovers from errors by resetting the cmd and data
		 * circuits.  Until that is done, there very well might be more
		 * interrupts, so ignore them in that case.
		 */
		if (host->pending_reset)
			return;
2407 2408
		pr_err("%s: Got command interrupt 0x%08x even though no command operation was in progress.\n",
		       mmc_hostname(host->mmc), (unsigned)intmask);
2409 2410 2411 2412
		sdhci_dumpregs(host);
		return;
	}

2413 2414 2415 2416 2417 2418
	if (intmask & (SDHCI_INT_TIMEOUT | SDHCI_INT_CRC |
		       SDHCI_INT_END_BIT | SDHCI_INT_INDEX)) {
		if (intmask & SDHCI_INT_TIMEOUT)
			host->cmd->error = -ETIMEDOUT;
		else
			host->cmd->error = -EILSEQ;
2419

2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436
		/*
		 * If this command initiates a data phase and a response
		 * CRC error is signalled, the card can start transferring
		 * data - the card may have received the command without
		 * error.  We must not terminate the mmc_request early.
		 *
		 * If the card did not receive the command or returned an
		 * error which prevented it sending data, the data phase
		 * will time out.
		 */
		if (host->cmd->data &&
		    (intmask & (SDHCI_INT_CRC | SDHCI_INT_TIMEOUT)) ==
		     SDHCI_INT_CRC) {
			host->cmd = NULL;
			return;
		}

2437
		sdhci_finish_mrq(host, host->cmd->mrq);
2438 2439 2440
		return;
	}

2441 2442 2443
	if ((host->quirks2 & SDHCI_QUIRK2_STOP_WITH_TC) &&
	    !(host->cmd->flags & MMC_RSP_BUSY) && !host->data &&
	    host->cmd->opcode == MMC_STOP_TRANSMISSION)
2444
		*mask &= ~SDHCI_INT_DATA_END;
2445 2446

	if (intmask & SDHCI_INT_RESPONSE)
2447
		sdhci_finish_command(host);
2448 2449
}

2450
#ifdef CONFIG_MMC_DEBUG
2451
static void sdhci_adma_show_error(struct sdhci_host *host)
2452 2453
{
	const char *name = mmc_hostname(host->mmc);
2454
	void *desc = host->adma_table;
2455 2456 2457 2458

	sdhci_dumpregs(host);

	while (true) {
2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471
		struct sdhci_adma2_64_desc *dma_desc = desc;

		if (host->flags & SDHCI_USE_64_BIT_DMA)
			DBG("%s: %p: DMA 0x%08x%08x, LEN 0x%04x, Attr=0x%02x\n",
			    name, desc, le32_to_cpu(dma_desc->addr_hi),
			    le32_to_cpu(dma_desc->addr_lo),
			    le16_to_cpu(dma_desc->len),
			    le16_to_cpu(dma_desc->cmd));
		else
			DBG("%s: %p: DMA 0x%08x, LEN 0x%04x, Attr=0x%02x\n",
			    name, desc, le32_to_cpu(dma_desc->addr_lo),
			    le16_to_cpu(dma_desc->len),
			    le16_to_cpu(dma_desc->cmd));
2472

2473
		desc += host->desc_sz;
2474

2475
		if (dma_desc->cmd & cpu_to_le16(ADMA2_END))
2476 2477 2478 2479
			break;
	}
}
#else
2480
static void sdhci_adma_show_error(struct sdhci_host *host) { }
2481 2482
#endif

2483 2484
static void sdhci_data_irq(struct sdhci_host *host, u32 intmask)
{
2485
	u32 command;
2486

2487 2488
	/* CMD19 generates _only_ Buffer Read Ready interrupt */
	if (intmask & SDHCI_INT_DATA_AVAIL) {
2489 2490 2491
		command = SDHCI_GET_CMD(sdhci_readw(host, SDHCI_COMMAND));
		if (command == MMC_SEND_TUNING_BLOCK ||
		    command == MMC_SEND_TUNING_BLOCK_HS200) {
2492 2493 2494 2495 2496 2497
			host->tuning_done = 1;
			wake_up(&host->buf_ready_int);
			return;
		}
	}

2498
	if (!host->data) {
2499 2500 2501 2502 2503
		struct mmc_command *data_cmd = host->data_cmd;

		if (data_cmd)
			host->data_cmd = NULL;

2504
		/*
2505 2506 2507
		 * The "data complete" interrupt is also used to
		 * indicate that a busy state has ended. See comment
		 * above in sdhci_cmd_irq().
2508
		 */
2509
		if (data_cmd && (data_cmd->flags & MMC_RSP_BUSY)) {
2510
			if (intmask & SDHCI_INT_DATA_TIMEOUT) {
2511
				data_cmd->error = -ETIMEDOUT;
2512
				sdhci_finish_mrq(host, data_cmd->mrq);
2513 2514
				return;
			}
2515
			if (intmask & SDHCI_INT_DATA_END) {
2516 2517 2518 2519 2520
				/*
				 * Some cards handle busy-end interrupt
				 * before the command completed, so make
				 * sure we do things in the proper order.
				 */
2521 2522 2523
				if (host->cmd == data_cmd)
					return;

2524
				sdhci_finish_mrq(host, data_cmd->mrq);
2525 2526 2527
				return;
			}
		}
2528

2529 2530 2531 2532 2533 2534 2535 2536
		/*
		 * SDHCI recovers from errors by resetting the cmd and data
		 * circuits. Until that is done, there very well might be more
		 * interrupts, so ignore them in that case.
		 */
		if (host->pending_reset)
			return;

2537 2538
		pr_err("%s: Got data interrupt 0x%08x even though no data operation was in progress.\n",
		       mmc_hostname(host->mmc), (unsigned)intmask);
2539 2540 2541 2542 2543 2544
		sdhci_dumpregs(host);

		return;
	}

	if (intmask & SDHCI_INT_DATA_TIMEOUT)
P
Pierre Ossman 已提交
2545
		host->data->error = -ETIMEDOUT;
2546 2547 2548 2549 2550
	else if (intmask & SDHCI_INT_DATA_END_BIT)
		host->data->error = -EILSEQ;
	else if ((intmask & SDHCI_INT_DATA_CRC) &&
		SDHCI_GET_CMD(sdhci_readw(host, SDHCI_COMMAND))
			!= MMC_BUS_TEST_R)
P
Pierre Ossman 已提交
2551
		host->data->error = -EILSEQ;
2552
	else if (intmask & SDHCI_INT_ADMA_ERROR) {
2553
		pr_err("%s: ADMA error\n", mmc_hostname(host->mmc));
2554
		sdhci_adma_show_error(host);
2555
		host->data->error = -EIO;
2556 2557
		if (host->ops->adma_workaround)
			host->ops->adma_workaround(host, intmask);
2558
	}
2559

P
Pierre Ossman 已提交
2560
	if (host->data->error)
2561 2562
		sdhci_finish_data(host);
	else {
P
Pierre Ossman 已提交
2563
		if (intmask & (SDHCI_INT_DATA_AVAIL | SDHCI_INT_SPACE_AVAIL))
2564 2565
			sdhci_transfer_pio(host);

2566 2567 2568 2569
		/*
		 * We currently don't do anything fancy with DMA
		 * boundaries, but as we can't disable the feature
		 * we need to at least restart the transfer.
2570 2571 2572 2573
		 *
		 * According to the spec sdhci_readl(host, SDHCI_DMA_ADDRESS)
		 * should return a valid address to continue from, but as
		 * some controllers are faulty, don't trust them.
2574
		 */
2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591
		if (intmask & SDHCI_INT_DMA_END) {
			u32 dmastart, dmanow;
			dmastart = sg_dma_address(host->data->sg);
			dmanow = dmastart + host->data->bytes_xfered;
			/*
			 * Force update to the next DMA block boundary.
			 */
			dmanow = (dmanow &
				~(SDHCI_DEFAULT_BOUNDARY_SIZE - 1)) +
				SDHCI_DEFAULT_BOUNDARY_SIZE;
			host->data->bytes_xfered = dmanow - dmastart;
			DBG("%s: DMA base 0x%08x, transferred 0x%06x bytes,"
				" next 0x%08x\n",
				mmc_hostname(host->mmc), dmastart,
				host->data->bytes_xfered, dmanow);
			sdhci_writel(host, dmanow, SDHCI_DMA_ADDRESS);
		}
2592

2593
		if (intmask & SDHCI_INT_DATA_END) {
2594
			if (host->cmd == host->data_cmd) {
2595 2596 2597 2598 2599 2600 2601 2602 2603 2604
				/*
				 * Data managed to finish before the
				 * command completed. Make sure we do
				 * things in the proper order.
				 */
				host->data_early = 1;
			} else {
				sdhci_finish_data(host);
			}
		}
2605 2606 2607
	}
}

2608
static irqreturn_t sdhci_irq(int irq, void *dev_id)
2609
{
2610
	irqreturn_t result = IRQ_NONE;
2611
	struct sdhci_host *host = dev_id;
2612
	u32 intmask, mask, unexpected = 0;
2613
	int max_loops = 16;
2614 2615 2616

	spin_lock(&host->lock);

2617
	if (host->runtime_suspended && !sdhci_sdio_irq_enabled(host)) {
2618
		spin_unlock(&host->lock);
2619
		return IRQ_NONE;
2620 2621
	}

2622
	intmask = sdhci_readl(host, SDHCI_INT_STATUS);
2623
	if (!intmask || intmask == 0xffffffff) {
2624 2625 2626 2627
		result = IRQ_NONE;
		goto out;
	}

2628 2629 2630 2631 2632
	do {
		/* Clear selected interrupts. */
		mask = intmask & (SDHCI_INT_CMD_MASK | SDHCI_INT_DATA_MASK |
				  SDHCI_INT_BUS_POWER);
		sdhci_writel(host, mask, SDHCI_INT_STATUS);
2633

2634 2635
		DBG("*** %s got interrupt: 0x%08x\n",
			mmc_hostname(host->mmc), intmask);
2636

2637 2638 2639
		if (intmask & (SDHCI_INT_CARD_INSERT | SDHCI_INT_CARD_REMOVE)) {
			u32 present = sdhci_readl(host, SDHCI_PRESENT_STATE) &
				      SDHCI_CARD_PRESENT;
2640

2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651
			/*
			 * There is a observation on i.mx esdhc.  INSERT
			 * bit will be immediately set again when it gets
			 * cleared, if a card is inserted.  We have to mask
			 * the irq to prevent interrupt storm which will
			 * freeze the system.  And the REMOVE gets the
			 * same situation.
			 *
			 * More testing are needed here to ensure it works
			 * for other platforms though.
			 */
2652 2653 2654 2655 2656 2657
			host->ier &= ~(SDHCI_INT_CARD_INSERT |
				       SDHCI_INT_CARD_REMOVE);
			host->ier |= present ? SDHCI_INT_CARD_REMOVE :
					       SDHCI_INT_CARD_INSERT;
			sdhci_writel(host, host->ier, SDHCI_INT_ENABLE);
			sdhci_writel(host, host->ier, SDHCI_SIGNAL_ENABLE);
2658 2659 2660

			sdhci_writel(host, intmask & (SDHCI_INT_CARD_INSERT |
				     SDHCI_INT_CARD_REMOVE), SDHCI_INT_STATUS);
2661 2662 2663 2664

			host->thread_isr |= intmask & (SDHCI_INT_CARD_INSERT |
						       SDHCI_INT_CARD_REMOVE);
			result = IRQ_WAKE_THREAD;
2665
		}
2666

2667
		if (intmask & SDHCI_INT_CMD_MASK)
2668 2669
			sdhci_cmd_irq(host, intmask & SDHCI_INT_CMD_MASK,
				      &intmask);
2670

2671 2672
		if (intmask & SDHCI_INT_DATA_MASK)
			sdhci_data_irq(host, intmask & SDHCI_INT_DATA_MASK);
2673

2674 2675 2676
		if (intmask & SDHCI_INT_BUS_POWER)
			pr_err("%s: Card is consuming too much power!\n",
				mmc_hostname(host->mmc));
2677

2678 2679 2680 2681 2682
		if (intmask & SDHCI_INT_CARD_INT) {
			sdhci_enable_sdio_irq_nolock(host, false);
			host->thread_isr |= SDHCI_INT_CARD_INT;
			result = IRQ_WAKE_THREAD;
		}
P
Pierre Ossman 已提交
2683

2684 2685 2686 2687
		intmask &= ~(SDHCI_INT_CARD_INSERT | SDHCI_INT_CARD_REMOVE |
			     SDHCI_INT_CMD_MASK | SDHCI_INT_DATA_MASK |
			     SDHCI_INT_ERROR | SDHCI_INT_BUS_POWER |
			     SDHCI_INT_CARD_INT);
P
Pierre Ossman 已提交
2688

2689 2690 2691 2692
		if (intmask) {
			unexpected |= intmask;
			sdhci_writel(host, intmask, SDHCI_INT_STATUS);
		}
2693

2694 2695
		if (result == IRQ_NONE)
			result = IRQ_HANDLED;
2696

2697 2698
		intmask = sdhci_readl(host, SDHCI_INT_STATUS);
	} while (intmask && --max_loops);
2699 2700 2701
out:
	spin_unlock(&host->lock);

2702 2703 2704 2705 2706
	if (unexpected) {
		pr_err("%s: Unexpected interrupt 0x%08x.\n",
			   mmc_hostname(host->mmc), unexpected);
		sdhci_dumpregs(host);
	}
P
Pierre Ossman 已提交
2707

2708 2709 2710
	return result;
}

2711 2712 2713 2714 2715 2716 2717 2718 2719 2720 2721
static irqreturn_t sdhci_thread_irq(int irq, void *dev_id)
{
	struct sdhci_host *host = dev_id;
	unsigned long flags;
	u32 isr;

	spin_lock_irqsave(&host->lock, flags);
	isr = host->thread_isr;
	host->thread_isr = 0;
	spin_unlock_irqrestore(&host->lock, flags);

2722
	if (isr & (SDHCI_INT_CARD_INSERT | SDHCI_INT_CARD_REMOVE)) {
2723 2724 2725 2726
		struct mmc_host *mmc = host->mmc;

		mmc->ops->card_event(mmc);
		mmc_detect_change(mmc, msecs_to_jiffies(200));
2727 2728
	}

2729 2730 2731 2732 2733 2734 2735 2736 2737 2738 2739 2740
	if (isr & SDHCI_INT_CARD_INT) {
		sdio_run_irqs(host->mmc);

		spin_lock_irqsave(&host->lock, flags);
		if (host->flags & SDHCI_SDIO_IRQ_ENABLED)
			sdhci_enable_sdio_irq_nolock(host, true);
		spin_unlock_irqrestore(&host->lock, flags);
	}

	return isr ? IRQ_HANDLED : IRQ_NONE;
}

2741 2742 2743 2744 2745 2746 2747
/*****************************************************************************\
 *                                                                           *
 * Suspend/resume                                                            *
 *                                                                           *
\*****************************************************************************/

#ifdef CONFIG_PM
2748 2749 2750 2751 2752 2753 2754 2755
/*
 * To enable wakeup events, the corresponding events have to be enabled in
 * the Interrupt Status Enable register too. See 'Table 1-6: Wakeup Signal
 * Table' in the SD Host Controller Standard Specification.
 * It is useless to restore SDHCI_INT_ENABLE state in
 * sdhci_disable_irq_wakeups() since it will be set by
 * sdhci_enable_card_detection() or sdhci_init().
 */
K
Kevin Liu 已提交
2756 2757 2758 2759 2760
void sdhci_enable_irq_wakeups(struct sdhci_host *host)
{
	u8 val;
	u8 mask = SDHCI_WAKE_ON_INSERT | SDHCI_WAKE_ON_REMOVE
			| SDHCI_WAKE_ON_INT;
2761 2762
	u32 irq_val = SDHCI_INT_CARD_INSERT | SDHCI_INT_CARD_REMOVE |
		      SDHCI_INT_CARD_INT;
K
Kevin Liu 已提交
2763 2764 2765 2766

	val = sdhci_readb(host, SDHCI_WAKE_UP_CONTROL);
	val |= mask ;
	/* Avoid fake wake up */
2767
	if (host->quirks & SDHCI_QUIRK_BROKEN_CARD_DETECTION) {
K
Kevin Liu 已提交
2768
		val &= ~(SDHCI_WAKE_ON_INSERT | SDHCI_WAKE_ON_REMOVE);
2769 2770
		irq_val &= ~(SDHCI_INT_CARD_INSERT | SDHCI_INT_CARD_REMOVE);
	}
K
Kevin Liu 已提交
2771
	sdhci_writeb(host, val, SDHCI_WAKE_UP_CONTROL);
2772
	sdhci_writel(host, irq_val, SDHCI_INT_ENABLE);
K
Kevin Liu 已提交
2773 2774 2775
}
EXPORT_SYMBOL_GPL(sdhci_enable_irq_wakeups);

2776
static void sdhci_disable_irq_wakeups(struct sdhci_host *host)
K
Kevin Liu 已提交
2777 2778 2779 2780 2781 2782 2783 2784 2785
{
	u8 val;
	u8 mask = SDHCI_WAKE_ON_INSERT | SDHCI_WAKE_ON_REMOVE
			| SDHCI_WAKE_ON_INT;

	val = sdhci_readb(host, SDHCI_WAKE_UP_CONTROL);
	val &= ~mask;
	sdhci_writeb(host, val, SDHCI_WAKE_UP_CONTROL);
}
2786

2787
int sdhci_suspend_host(struct sdhci_host *host)
2788
{
2789 2790
	sdhci_disable_card_detection(host);

2791 2792
	mmc_retune_timer_stop(host->mmc);
	mmc_retune_needed(host->mmc);
2793

K
Kevin Liu 已提交
2794
	if (!device_may_wakeup(mmc_dev(host->mmc))) {
2795 2796 2797
		host->ier = 0;
		sdhci_writel(host, 0, SDHCI_INT_ENABLE);
		sdhci_writel(host, 0, SDHCI_SIGNAL_ENABLE);
K
Kevin Liu 已提交
2798 2799 2800 2801 2802
		free_irq(host->irq, host);
	} else {
		sdhci_enable_irq_wakeups(host);
		enable_irq_wake(host->irq);
	}
2803
	return 0;
2804 2805
}

2806
EXPORT_SYMBOL_GPL(sdhci_suspend_host);
2807

2808 2809
int sdhci_resume_host(struct sdhci_host *host)
{
2810
	struct mmc_host *mmc = host->mmc;
2811
	int ret = 0;
2812

2813
	if (host->flags & (SDHCI_USE_SDMA | SDHCI_USE_ADMA)) {
2814 2815 2816
		if (host->ops->enable_dma)
			host->ops->enable_dma(host);
	}
2817

2818 2819 2820 2821 2822 2823
	if ((host->mmc->pm_flags & MMC_PM_KEEP_POWER) &&
	    (host->quirks2 & SDHCI_QUIRK2_HOST_OFF_CARD_ON)) {
		/* Card keeps power but host controller does not */
		sdhci_init(host, 0);
		host->pwr = 0;
		host->clock = 0;
2824
		mmc->ops->set_ios(mmc, &mmc->ios);
2825 2826 2827 2828
	} else {
		sdhci_init(host, (host->mmc->pm_flags & MMC_PM_KEEP_POWER));
		mmiowb();
	}
2829

2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840
	if (!device_may_wakeup(mmc_dev(host->mmc))) {
		ret = request_threaded_irq(host->irq, sdhci_irq,
					   sdhci_thread_irq, IRQF_SHARED,
					   mmc_hostname(host->mmc), host);
		if (ret)
			return ret;
	} else {
		sdhci_disable_irq_wakeups(host);
		disable_irq_wake(host->irq);
	}

2841 2842
	sdhci_enable_card_detection(host);

2843
	return ret;
2844 2845
}

2846
EXPORT_SYMBOL_GPL(sdhci_resume_host);
2847 2848 2849 2850 2851

int sdhci_runtime_suspend_host(struct sdhci_host *host)
{
	unsigned long flags;

2852 2853
	mmc_retune_timer_stop(host->mmc);
	mmc_retune_needed(host->mmc);
2854 2855

	spin_lock_irqsave(&host->lock, flags);
2856 2857 2858
	host->ier &= SDHCI_INT_CARD_INT;
	sdhci_writel(host, host->ier, SDHCI_INT_ENABLE);
	sdhci_writel(host, host->ier, SDHCI_SIGNAL_ENABLE);
2859 2860
	spin_unlock_irqrestore(&host->lock, flags);

2861
	synchronize_hardirq(host->irq);
2862 2863 2864 2865 2866

	spin_lock_irqsave(&host->lock, flags);
	host->runtime_suspended = true;
	spin_unlock_irqrestore(&host->lock, flags);

2867
	return 0;
2868 2869 2870 2871 2872
}
EXPORT_SYMBOL_GPL(sdhci_runtime_suspend_host);

int sdhci_runtime_resume_host(struct sdhci_host *host)
{
2873
	struct mmc_host *mmc = host->mmc;
2874
	unsigned long flags;
2875
	int host_flags = host->flags;
2876 2877 2878 2879 2880 2881 2882 2883 2884 2885 2886

	if (host_flags & (SDHCI_USE_SDMA | SDHCI_USE_ADMA)) {
		if (host->ops->enable_dma)
			host->ops->enable_dma(host);
	}

	sdhci_init(host, 0);

	/* Force clock and power re-program */
	host->pwr = 0;
	host->clock = 0;
2887 2888
	mmc->ops->start_signal_voltage_switch(mmc, &mmc->ios);
	mmc->ops->set_ios(mmc, &mmc->ios);
2889

2890 2891 2892 2893 2894 2895
	if ((host_flags & SDHCI_PV_ENABLED) &&
		!(host->quirks2 & SDHCI_QUIRK2_PRESET_VALUE_BROKEN)) {
		spin_lock_irqsave(&host->lock, flags);
		sdhci_enable_preset_value(host, true);
		spin_unlock_irqrestore(&host->lock, flags);
	}
2896 2897 2898 2899 2900 2901

	spin_lock_irqsave(&host->lock, flags);

	host->runtime_suspended = false;

	/* Enable SDIO IRQ */
2902
	if (host->flags & SDHCI_SDIO_IRQ_ENABLED)
2903 2904 2905 2906 2907 2908 2909
		sdhci_enable_sdio_irq_nolock(host, true);

	/* Enable Card Detection */
	sdhci_enable_card_detection(host);

	spin_unlock_irqrestore(&host->lock, flags);

2910
	return 0;
2911 2912 2913
}
EXPORT_SYMBOL_GPL(sdhci_runtime_resume_host);

2914
#endif /* CONFIG_PM */
2915

2916 2917
/*****************************************************************************\
 *                                                                           *
2918
 * Device allocation/registration                                            *
2919 2920 2921
 *                                                                           *
\*****************************************************************************/

2922 2923
struct sdhci_host *sdhci_alloc_host(struct device *dev,
	size_t priv_size)
2924 2925 2926 2927
{
	struct mmc_host *mmc;
	struct sdhci_host *host;

2928
	WARN_ON(dev == NULL);
2929

2930
	mmc = mmc_alloc_host(sizeof(struct sdhci_host) + priv_size, dev);
2931
	if (!mmc)
2932
		return ERR_PTR(-ENOMEM);
2933 2934 2935

	host = mmc_priv(mmc);
	host->mmc = mmc;
2936 2937
	host->mmc_host_ops = sdhci_ops;
	mmc->ops = &host->mmc_host_ops;
2938

2939 2940
	host->flags = SDHCI_SIGNALING_330;

2941 2942
	return host;
}
2943

2944
EXPORT_SYMBOL_GPL(sdhci_alloc_host);
2945

2946 2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963 2964 2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975
static int sdhci_set_dma_mask(struct sdhci_host *host)
{
	struct mmc_host *mmc = host->mmc;
	struct device *dev = mmc_dev(mmc);
	int ret = -EINVAL;

	if (host->quirks2 & SDHCI_QUIRK2_BROKEN_64_BIT_DMA)
		host->flags &= ~SDHCI_USE_64_BIT_DMA;

	/* Try 64-bit mask if hardware is capable  of it */
	if (host->flags & SDHCI_USE_64_BIT_DMA) {
		ret = dma_set_mask_and_coherent(dev, DMA_BIT_MASK(64));
		if (ret) {
			pr_warn("%s: Failed to set 64-bit DMA mask.\n",
				mmc_hostname(mmc));
			host->flags &= ~SDHCI_USE_64_BIT_DMA;
		}
	}

	/* 32-bit mask as default & fallback */
	if (ret) {
		ret = dma_set_mask_and_coherent(dev, DMA_BIT_MASK(32));
		if (ret)
			pr_warn("%s: Failed to set 32-bit DMA mask.\n",
				mmc_hostname(mmc));
	}

	return ret;
}

2976 2977 2978 2979 2980 2981 2982 2983 2984 2985 2986 2987 2988 2989 2990 2991 2992 2993 2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007
void __sdhci_read_caps(struct sdhci_host *host, u16 *ver, u32 *caps, u32 *caps1)
{
	u16 v;

	if (host->read_caps)
		return;

	host->read_caps = true;

	if (debug_quirks)
		host->quirks = debug_quirks;

	if (debug_quirks2)
		host->quirks2 = debug_quirks2;

	sdhci_do_reset(host, SDHCI_RESET_ALL);

	v = ver ? *ver : sdhci_readw(host, SDHCI_HOST_VERSION);
	host->version = (v & SDHCI_SPEC_VER_MASK) >> SDHCI_SPEC_VER_SHIFT;

	if (host->quirks & SDHCI_QUIRK_MISSING_CAPS)
		return;

	host->caps = caps ? *caps : sdhci_readl(host, SDHCI_CAPABILITIES);

	if (host->version < SDHCI_SPEC_300)
		return;

	host->caps1 = caps1 ? *caps1 : sdhci_readl(host, SDHCI_CAPABILITIES_1);
}
EXPORT_SYMBOL_GPL(__sdhci_read_caps);

3008
int sdhci_setup_host(struct sdhci_host *host)
3009 3010
{
	struct mmc_host *mmc;
3011 3012
	u32 max_current_caps;
	unsigned int ocr_avail;
3013
	unsigned int override_timeout_clk;
3014
	u32 max_clk;
3015
	int ret;
3016

3017 3018 3019
	WARN_ON(host == NULL);
	if (host == NULL)
		return -EINVAL;
3020

3021
	mmc = host->mmc;
3022

3023
	sdhci_read_caps(host);
3024

3025 3026
	override_timeout_clk = host->timeout_clk;

3027
	if (host->version > SDHCI_SPEC_300) {
3028 3029
		pr_err("%s: Unknown controller version (%d). You may experience problems.\n",
		       mmc_hostname(mmc), host->version);
3030 3031
	}

3032
	if (host->quirks & SDHCI_QUIRK_FORCE_DMA)
3033
		host->flags |= SDHCI_USE_SDMA;
3034
	else if (!(host->caps & SDHCI_CAN_DO_SDMA))
3035
		DBG("Controller doesn't have SDMA capability\n");
3036
	else
3037
		host->flags |= SDHCI_USE_SDMA;
3038

3039
	if ((host->quirks & SDHCI_QUIRK_BROKEN_DMA) &&
3040
		(host->flags & SDHCI_USE_SDMA)) {
R
Rolf Eike Beer 已提交
3041
		DBG("Disabling DMA as it is marked broken\n");
3042
		host->flags &= ~SDHCI_USE_SDMA;
3043 3044
	}

3045
	if ((host->version >= SDHCI_SPEC_200) &&
3046
		(host->caps & SDHCI_CAN_DO_ADMA2))
3047
		host->flags |= SDHCI_USE_ADMA;
3048 3049 3050 3051 3052 3053 3054

	if ((host->quirks & SDHCI_QUIRK_BROKEN_ADMA) &&
		(host->flags & SDHCI_USE_ADMA)) {
		DBG("Disabling ADMA as it is marked broken\n");
		host->flags &= ~SDHCI_USE_ADMA;
	}

3055 3056 3057 3058 3059 3060 3061
	/*
	 * It is assumed that a 64-bit capable device has set a 64-bit DMA mask
	 * and *must* do 64-bit DMA.  A driver has the opportunity to change
	 * that during the first call to ->enable_dma().  Similarly
	 * SDHCI_QUIRK2_BROKEN_64_BIT_DMA must be left to the drivers to
	 * implement.
	 */
3062
	if (host->caps & SDHCI_CAN_64BIT)
3063 3064
		host->flags |= SDHCI_USE_64_BIT_DMA;

3065
	if (host->flags & (SDHCI_USE_SDMA | SDHCI_USE_ADMA)) {
3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076
		ret = sdhci_set_dma_mask(host);

		if (!ret && host->ops->enable_dma)
			ret = host->ops->enable_dma(host);

		if (ret) {
			pr_warn("%s: No suitable DMA available - falling back to PIO\n",
				mmc_hostname(mmc));
			host->flags &= ~(SDHCI_USE_SDMA | SDHCI_USE_ADMA);

			ret = 0;
3077 3078 3079
		}
	}

3080 3081 3082 3083
	/* SDMA does not support 64-bit DMA */
	if (host->flags & SDHCI_USE_64_BIT_DMA)
		host->flags &= ~SDHCI_USE_SDMA;

3084
	if (host->flags & SDHCI_USE_ADMA) {
3085 3086 3087
		dma_addr_t dma;
		void *buf;

3088
		/*
3089 3090 3091 3092
		 * The DMA descriptor table size is calculated as the maximum
		 * number of segments times 2, to allow for an alignment
		 * descriptor for each segment, plus 1 for a nop end descriptor,
		 * all multipled by the descriptor size.
3093
		 */
3094 3095 3096 3097 3098 3099 3100 3101 3102
		if (host->flags & SDHCI_USE_64_BIT_DMA) {
			host->adma_table_sz = (SDHCI_MAX_SEGS * 2 + 1) *
					      SDHCI_ADMA2_64_DESC_SZ;
			host->desc_sz = SDHCI_ADMA2_64_DESC_SZ;
		} else {
			host->adma_table_sz = (SDHCI_MAX_SEGS * 2 + 1) *
					      SDHCI_ADMA2_32_DESC_SZ;
			host->desc_sz = SDHCI_ADMA2_32_DESC_SZ;
		}
3103

3104
		host->align_buffer_sz = SDHCI_MAX_SEGS * SDHCI_ADMA2_ALIGN;
3105 3106 3107
		buf = dma_alloc_coherent(mmc_dev(mmc), host->align_buffer_sz +
					 host->adma_table_sz, &dma, GFP_KERNEL);
		if (!buf) {
J
Joe Perches 已提交
3108
			pr_warn("%s: Unable to allocate ADMA buffers - falling back to standard DMA\n",
3109 3110
				mmc_hostname(mmc));
			host->flags &= ~SDHCI_USE_ADMA;
3111 3112
		} else if ((dma + host->align_buffer_sz) &
			   (SDHCI_ADMA2_DESC_ALIGN - 1)) {
J
Joe Perches 已提交
3113 3114
			pr_warn("%s: unable to allocate aligned ADMA descriptor\n",
				mmc_hostname(mmc));
3115
			host->flags &= ~SDHCI_USE_ADMA;
3116 3117 3118 3119 3120
			dma_free_coherent(mmc_dev(mmc), host->align_buffer_sz +
					  host->adma_table_sz, buf, dma);
		} else {
			host->align_buffer = buf;
			host->align_addr = dma;
3121

3122 3123 3124
			host->adma_table = buf + host->align_buffer_sz;
			host->adma_addr = dma + host->align_buffer_sz;
		}
3125 3126
	}

3127 3128 3129 3130 3131
	/*
	 * If we use DMA, then it's up to the caller to set the DMA
	 * mask, but PIO does not need the hw shim so we set a new
	 * mask here in that case.
	 */
3132
	if (!(host->flags & (SDHCI_USE_SDMA | SDHCI_USE_ADMA))) {
3133
		host->dma_mask = DMA_BIT_MASK(64);
3134
		mmc_dev(mmc)->dma_mask = &host->dma_mask;
3135
	}
3136

3137
	if (host->version >= SDHCI_SPEC_300)
3138
		host->max_clk = (host->caps & SDHCI_CLOCK_V3_BASE_MASK)
3139 3140
			>> SDHCI_CLOCK_BASE_SHIFT;
	else
3141
		host->max_clk = (host->caps & SDHCI_CLOCK_BASE_MASK)
3142 3143
			>> SDHCI_CLOCK_BASE_SHIFT;

3144
	host->max_clk *= 1000000;
3145 3146
	if (host->max_clk == 0 || host->quirks &
			SDHCI_QUIRK_CAP_CLOCK_BASE_BROKEN) {
3147
		if (!host->ops->get_max_clock) {
3148 3149
			pr_err("%s: Hardware doesn't specify base clock frequency.\n",
			       mmc_hostname(mmc));
3150 3151
			ret = -ENODEV;
			goto undma;
3152 3153
		}
		host->max_clk = host->ops->get_max_clock(host);
3154
	}
3155

3156 3157 3158 3159
	/*
	 * In case of Host Controller v3.00, find out whether clock
	 * multiplier is supported.
	 */
3160
	host->clk_mul = (host->caps1 & SDHCI_CLOCK_MUL_MASK) >>
3161 3162 3163 3164 3165 3166 3167 3168 3169 3170 3171
			SDHCI_CLOCK_MUL_SHIFT;

	/*
	 * In case the value in Clock Multiplier is 0, then programmable
	 * clock mode is not supported, otherwise the actual clock
	 * multiplier is one more than the value of Clock Multiplier
	 * in the Capabilities Register.
	 */
	if (host->clk_mul)
		host->clk_mul += 1;

3172 3173 3174
	/*
	 * Set host parameters.
	 */
3175 3176
	max_clk = host->max_clk;

3177
	if (host->ops->get_min_clock)
3178
		mmc->f_min = host->ops->get_min_clock(host);
3179 3180 3181
	else if (host->version >= SDHCI_SPEC_300) {
		if (host->clk_mul) {
			mmc->f_min = (host->max_clk * host->clk_mul) / 1024;
3182
			max_clk = host->max_clk * host->clk_mul;
3183 3184 3185
		} else
			mmc->f_min = host->max_clk / SDHCI_MAX_DIV_SPEC_300;
	} else
3186
		mmc->f_min = host->max_clk / SDHCI_MAX_DIV_SPEC_200;
3187

3188
	if (!mmc->f_max || mmc->f_max > max_clk)
3189 3190
		mmc->f_max = max_clk;

3191
	if (!(host->quirks & SDHCI_QUIRK_DATA_TIMEOUT_USES_SDCLK)) {
3192
		host->timeout_clk = (host->caps & SDHCI_TIMEOUT_CLK_MASK) >>
3193 3194 3195 3196 3197 3198 3199 3200
					SDHCI_TIMEOUT_CLK_SHIFT;
		if (host->timeout_clk == 0) {
			if (host->ops->get_timeout_clock) {
				host->timeout_clk =
					host->ops->get_timeout_clock(host);
			} else {
				pr_err("%s: Hardware doesn't specify timeout clock frequency.\n",
					mmc_hostname(mmc));
3201 3202
				ret = -ENODEV;
				goto undma;
3203
			}
3204 3205
		}

3206
		if (host->caps & SDHCI_TIMEOUT_CLK_UNIT)
3207
			host->timeout_clk *= 1000;
3208

3209 3210 3211
		if (override_timeout_clk)
			host->timeout_clk = override_timeout_clk;

3212
		mmc->max_busy_timeout = host->ops->get_max_timeout_count ?
3213
			host->ops->get_max_timeout_count(host) : 1 << 27;
3214 3215
		mmc->max_busy_timeout /= host->timeout_clk;
	}
3216

3217
	mmc->caps |= MMC_CAP_SDIO_IRQ | MMC_CAP_ERASE | MMC_CAP_CMD23;
3218
	mmc->caps2 |= MMC_CAP2_SDIO_IRQ_NOTHREAD;
3219 3220 3221

	if (host->quirks & SDHCI_QUIRK_MULTIBLOCK_READ_ACMD12)
		host->flags |= SDHCI_AUTO_CMD12;
3222

3223
	/* Auto-CMD23 stuff only works in ADMA or PIO. */
A
Andrei Warkentin 已提交
3224
	if ((host->version >= SDHCI_SPEC_300) &&
3225
	    ((host->flags & SDHCI_USE_ADMA) ||
3226 3227
	     !(host->flags & SDHCI_USE_SDMA)) &&
	     !(host->quirks2 & SDHCI_QUIRK2_ACMD23_BROKEN)) {
3228 3229 3230 3231 3232 3233
		host->flags |= SDHCI_AUTO_CMD23;
		DBG("%s: Auto-CMD23 available\n", mmc_hostname(mmc));
	} else {
		DBG("%s: Auto-CMD23 unavailable\n", mmc_hostname(mmc));
	}

3234 3235 3236 3237 3238 3239 3240
	/*
	 * A controller may support 8-bit width, but the board itself
	 * might not have the pins brought out.  Boards that support
	 * 8-bit width must set "mmc->caps |= MMC_CAP_8_BIT_DATA;" in
	 * their platform code before calling sdhci_add_host(), and we
	 * won't assume 8-bit width for hosts without that CAP.
	 */
3241
	if (!(host->quirks & SDHCI_QUIRK_FORCE_1_BIT_DATA))
3242
		mmc->caps |= MMC_CAP_4_BIT_DATA;
3243

3244 3245 3246
	if (host->quirks2 & SDHCI_QUIRK2_HOST_NO_CMD23)
		mmc->caps &= ~MMC_CAP_CMD23;

3247
	if (host->caps & SDHCI_CAN_DO_HISPD)
3248
		mmc->caps |= MMC_CAP_SD_HIGHSPEED | MMC_CAP_MMC_HIGHSPEED;
3249

3250
	if ((host->quirks & SDHCI_QUIRK_BROKEN_CARD_DETECTION) &&
3251
	    mmc_card_is_removable(mmc) &&
3252
	    mmc_gpio_get_cd(host->mmc) < 0)
3253 3254
		mmc->caps |= MMC_CAP_NEEDS_POLL;

3255
	/* If there are external regulators, get them */
3256 3257 3258
	ret = mmc_regulator_get_supply(mmc);
	if (ret == -EPROBE_DEFER)
		goto undma;
3259

3260
	/* If vqmmc regulator and no 1.8V signalling, then there's no UHS */
3261 3262 3263 3264
	if (!IS_ERR(mmc->supply.vqmmc)) {
		ret = regulator_enable(mmc->supply.vqmmc);
		if (!regulator_is_supported_voltage(mmc->supply.vqmmc, 1700000,
						    1950000))
3265 3266 3267
			host->caps1 &= ~(SDHCI_SUPPORT_SDR104 |
					 SDHCI_SUPPORT_SDR50 |
					 SDHCI_SUPPORT_DDR50);
3268 3269 3270
		if (ret) {
			pr_warn("%s: Failed to enable vqmmc regulator: %d\n",
				mmc_hostname(mmc), ret);
3271
			mmc->supply.vqmmc = ERR_PTR(-EINVAL);
3272
		}
3273
	}
3274

3275 3276 3277 3278
	if (host->quirks2 & SDHCI_QUIRK2_NO_1_8_V) {
		host->caps1 &= ~(SDHCI_SUPPORT_SDR104 | SDHCI_SUPPORT_SDR50 |
				 SDHCI_SUPPORT_DDR50);
	}
3279

3280
	/* Any UHS-I mode in caps implies SDR12 and SDR25 support. */
3281 3282
	if (host->caps1 & (SDHCI_SUPPORT_SDR104 | SDHCI_SUPPORT_SDR50 |
			   SDHCI_SUPPORT_DDR50))
3283 3284 3285
		mmc->caps |= MMC_CAP_UHS_SDR12 | MMC_CAP_UHS_SDR25;

	/* SDR104 supports also implies SDR50 support */
3286
	if (host->caps1 & SDHCI_SUPPORT_SDR104) {
3287
		mmc->caps |= MMC_CAP_UHS_SDR104 | MMC_CAP_UHS_SDR50;
3288 3289 3290
		/* SD3.0: SDR104 is supported so (for eMMC) the caps2
		 * field can be promoted to support HS200.
		 */
3291
		if (!(host->quirks2 & SDHCI_QUIRK2_BROKEN_HS200))
3292
			mmc->caps2 |= MMC_CAP2_HS200;
3293
	} else if (host->caps1 & SDHCI_SUPPORT_SDR50) {
3294
		mmc->caps |= MMC_CAP_UHS_SDR50;
3295
	}
3296

3297
	if (host->quirks2 & SDHCI_QUIRK2_CAPS_BIT63_FOR_HS400 &&
3298
	    (host->caps1 & SDHCI_SUPPORT_HS400))
3299 3300
		mmc->caps2 |= MMC_CAP2_HS400;

3301 3302 3303 3304 3305 3306
	if ((mmc->caps2 & MMC_CAP2_HSX00_1_2V) &&
	    (IS_ERR(mmc->supply.vqmmc) ||
	     !regulator_is_supported_voltage(mmc->supply.vqmmc, 1100000,
					     1300000)))
		mmc->caps2 &= ~MMC_CAP2_HSX00_1_2V;

3307 3308
	if ((host->caps1 & SDHCI_SUPPORT_DDR50) &&
	    !(host->quirks2 & SDHCI_QUIRK2_BROKEN_DDR50))
3309 3310
		mmc->caps |= MMC_CAP_UHS_DDR50;

3311
	/* Does the host need tuning for SDR50? */
3312
	if (host->caps1 & SDHCI_USE_SDR50_TUNING)
3313 3314
		host->flags |= SDHCI_SDR50_NEEDS_TUNING;

3315
	/* Driver Type(s) (A, C, D) supported by the host */
3316
	if (host->caps1 & SDHCI_DRIVER_TYPE_A)
3317
		mmc->caps |= MMC_CAP_DRIVER_TYPE_A;
3318
	if (host->caps1 & SDHCI_DRIVER_TYPE_C)
3319
		mmc->caps |= MMC_CAP_DRIVER_TYPE_C;
3320
	if (host->caps1 & SDHCI_DRIVER_TYPE_D)
3321 3322
		mmc->caps |= MMC_CAP_DRIVER_TYPE_D;

3323
	/* Initial value for re-tuning timer count */
3324 3325
	host->tuning_count = (host->caps1 & SDHCI_RETUNING_TIMER_COUNT_MASK) >>
			     SDHCI_RETUNING_TIMER_COUNT_SHIFT;
3326 3327 3328 3329 3330 3331 3332 3333 3334

	/*
	 * In case Re-tuning Timer is not disabled, the actual value of
	 * re-tuning timer will be 2 ^ (n - 1).
	 */
	if (host->tuning_count)
		host->tuning_count = 1 << (host->tuning_count - 1);

	/* Re-tuning mode supported by the Host Controller */
3335
	host->tuning_mode = (host->caps1 & SDHCI_RETUNING_MODE_MASK) >>
3336 3337
			     SDHCI_RETUNING_MODE_SHIFT;

3338
	ocr_avail = 0;
3339

3340 3341 3342 3343 3344 3345 3346 3347
	/*
	 * According to SD Host Controller spec v3.00, if the Host System
	 * can afford more than 150mA, Host Driver should set XPC to 1. Also
	 * the value is meaningful only if Voltage Support in the Capabilities
	 * register is set. The actual current value is 4 times the register
	 * value.
	 */
	max_current_caps = sdhci_readl(host, SDHCI_MAX_CURRENT);
3348
	if (!max_current_caps && !IS_ERR(mmc->supply.vmmc)) {
3349
		int curr = regulator_get_current_limit(mmc->supply.vmmc);
3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362
		if (curr > 0) {

			/* convert to SDHCI_MAX_CURRENT format */
			curr = curr/1000;  /* convert to mA */
			curr = curr/SDHCI_MAX_CURRENT_MULTIPLIER;

			curr = min_t(u32, curr, SDHCI_MAX_CURRENT_LIMIT);
			max_current_caps =
				(curr << SDHCI_MAX_CURRENT_330_SHIFT) |
				(curr << SDHCI_MAX_CURRENT_300_SHIFT) |
				(curr << SDHCI_MAX_CURRENT_180_SHIFT);
		}
	}
3363

3364
	if (host->caps & SDHCI_CAN_VDD_330) {
3365
		ocr_avail |= MMC_VDD_32_33 | MMC_VDD_33_34;
3366

A
Aaron Lu 已提交
3367
		mmc->max_current_330 = ((max_current_caps &
3368 3369 3370 3371
				   SDHCI_MAX_CURRENT_330_MASK) >>
				   SDHCI_MAX_CURRENT_330_SHIFT) *
				   SDHCI_MAX_CURRENT_MULTIPLIER;
	}
3372
	if (host->caps & SDHCI_CAN_VDD_300) {
3373
		ocr_avail |= MMC_VDD_29_30 | MMC_VDD_30_31;
3374

A
Aaron Lu 已提交
3375
		mmc->max_current_300 = ((max_current_caps &
3376 3377 3378 3379
				   SDHCI_MAX_CURRENT_300_MASK) >>
				   SDHCI_MAX_CURRENT_300_SHIFT) *
				   SDHCI_MAX_CURRENT_MULTIPLIER;
	}
3380
	if (host->caps & SDHCI_CAN_VDD_180) {
3381 3382
		ocr_avail |= MMC_VDD_165_195;

A
Aaron Lu 已提交
3383
		mmc->max_current_180 = ((max_current_caps &
3384 3385 3386 3387 3388
				   SDHCI_MAX_CURRENT_180_MASK) >>
				   SDHCI_MAX_CURRENT_180_SHIFT) *
				   SDHCI_MAX_CURRENT_MULTIPLIER;
	}

3389 3390 3391 3392 3393
	/* If OCR set by host, use it instead. */
	if (host->ocr_mask)
		ocr_avail = host->ocr_mask;

	/* If OCR set by external regulators, give it highest prio. */
3394
	if (mmc->ocr_avail)
3395
		ocr_avail = mmc->ocr_avail;
3396

3397 3398 3399 3400 3401 3402 3403 3404 3405 3406 3407 3408
	mmc->ocr_avail = ocr_avail;
	mmc->ocr_avail_sdio = ocr_avail;
	if (host->ocr_avail_sdio)
		mmc->ocr_avail_sdio &= host->ocr_avail_sdio;
	mmc->ocr_avail_sd = ocr_avail;
	if (host->ocr_avail_sd)
		mmc->ocr_avail_sd &= host->ocr_avail_sd;
	else /* normal SD controllers don't support 1.8V */
		mmc->ocr_avail_sd &= ~MMC_VDD_165_195;
	mmc->ocr_avail_mmc = ocr_avail;
	if (host->ocr_avail_mmc)
		mmc->ocr_avail_mmc &= host->ocr_avail_mmc;
3409 3410

	if (mmc->ocr_avail == 0) {
3411 3412
		pr_err("%s: Hardware doesn't report any support voltages.\n",
		       mmc_hostname(mmc));
3413 3414
		ret = -ENODEV;
		goto unreg;
3415 3416
	}

3417 3418 3419 3420 3421 3422 3423 3424 3425
	if ((mmc->caps & (MMC_CAP_UHS_SDR12 | MMC_CAP_UHS_SDR25 |
			  MMC_CAP_UHS_SDR50 | MMC_CAP_UHS_SDR104 |
			  MMC_CAP_UHS_DDR50 | MMC_CAP_1_8V_DDR)) ||
	    (mmc->caps2 & (MMC_CAP2_HS200_1_8V_SDR | MMC_CAP2_HS400_1_8V)))
		host->flags |= SDHCI_SIGNALING_180;

	if (mmc->caps2 & MMC_CAP2_HSX00_1_2V)
		host->flags |= SDHCI_SIGNALING_120;

3426 3427 3428
	spin_lock_init(&host->lock);

	/*
3429 3430
	 * Maximum number of segments. Depends on if the hardware
	 * can do scatter/gather or not.
3431
	 */
3432
	if (host->flags & SDHCI_USE_ADMA)
3433
		mmc->max_segs = SDHCI_MAX_SEGS;
3434
	else if (host->flags & SDHCI_USE_SDMA)
3435
		mmc->max_segs = 1;
3436
	else /* PIO */
3437
		mmc->max_segs = SDHCI_MAX_SEGS;
3438 3439

	/*
3440 3441 3442
	 * Maximum number of sectors in one transfer. Limited by SDMA boundary
	 * size (512KiB). Note some tuning modes impose a 4MiB limit, but this
	 * is less anyway.
3443
	 */
3444
	mmc->max_req_size = 524288;
3445 3446 3447

	/*
	 * Maximum segment size. Could be one segment with the maximum number
3448 3449
	 * of bytes. When doing hardware scatter/gather, each entry cannot
	 * be larger than 64 KiB though.
3450
	 */
3451 3452 3453 3454 3455 3456
	if (host->flags & SDHCI_USE_ADMA) {
		if (host->quirks & SDHCI_QUIRK_BROKEN_ADMA_ZEROLEN_DESC)
			mmc->max_seg_size = 65535;
		else
			mmc->max_seg_size = 65536;
	} else {
3457
		mmc->max_seg_size = mmc->max_req_size;
3458
	}
3459

3460 3461 3462 3463
	/*
	 * Maximum block size. This varies from controller to controller and
	 * is specified in the capabilities register.
	 */
3464 3465 3466
	if (host->quirks & SDHCI_QUIRK_FORCE_BLK_SZ_2048) {
		mmc->max_blk_size = 2;
	} else {
3467
		mmc->max_blk_size = (host->caps & SDHCI_MAX_BLOCK_MASK) >>
3468 3469
				SDHCI_MAX_BLOCK_SHIFT;
		if (mmc->max_blk_size >= 3) {
J
Joe Perches 已提交
3470 3471
			pr_warn("%s: Invalid maximum block size, assuming 512 bytes\n",
				mmc_hostname(mmc));
3472 3473 3474 3475 3476
			mmc->max_blk_size = 0;
		}
	}

	mmc->max_blk_size = 512 << mmc->max_blk_size;
3477

3478 3479 3480
	/*
	 * Maximum block count.
	 */
3481
	mmc->max_blk_count = (host->quirks & SDHCI_QUIRK_NO_MULTIBLOCK) ? 1 : 65535;
3482

3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504
	return 0;

unreg:
	if (!IS_ERR(mmc->supply.vqmmc))
		regulator_disable(mmc->supply.vqmmc);
undma:
	if (host->align_buffer)
		dma_free_coherent(mmc_dev(mmc), host->align_buffer_sz +
				  host->adma_table_sz, host->align_buffer,
				  host->align_addr);
	host->adma_table = NULL;
	host->align_buffer = NULL;

	return ret;
}
EXPORT_SYMBOL_GPL(sdhci_setup_host);

int __sdhci_add_host(struct sdhci_host *host)
{
	struct mmc_host *mmc = host->mmc;
	int ret;

3505 3506 3507 3508 3509 3510
	/*
	 * Init tasklets.
	 */
	tasklet_init(&host->finish_tasklet,
		sdhci_tasklet_finish, (unsigned long)host);

3511
	setup_timer(&host->timer, sdhci_timeout_timer, (unsigned long)host);
3512 3513
	setup_timer(&host->data_timer, sdhci_timeout_data_timer,
		    (unsigned long)host);
3514

3515
	init_waitqueue_head(&host->buf_ready_int);
3516

3517 3518
	sdhci_init(host, 0);

3519 3520
	ret = request_threaded_irq(host->irq, sdhci_irq, sdhci_thread_irq,
				   IRQF_SHARED,	mmc_hostname(mmc), host);
3521 3522 3523
	if (ret) {
		pr_err("%s: Failed to request IRQ %d: %d\n",
		       mmc_hostname(mmc), host->irq, ret);
3524
		goto untasklet;
3525
	}
3526 3527 3528 3529 3530

#ifdef CONFIG_MMC_DEBUG
	sdhci_dumpregs(host);
#endif

3531
	ret = sdhci_led_register(host);
3532 3533 3534
	if (ret) {
		pr_err("%s: Failed to register LED device: %d\n",
		       mmc_hostname(mmc), ret);
3535
		goto unirq;
3536
	}
3537

3538 3539
	mmiowb();

3540 3541 3542
	ret = mmc_add_host(mmc);
	if (ret)
		goto unled;
3543

3544
	pr_info("%s: SDHCI controller on %s [%s] using %s\n",
3545
		mmc_hostname(mmc), host->hw_name, dev_name(mmc_dev(mmc)),
3546 3547
		(host->flags & SDHCI_USE_ADMA) ?
		(host->flags & SDHCI_USE_64_BIT_DMA) ? "ADMA 64-bit" : "ADMA" :
3548
		(host->flags & SDHCI_USE_SDMA) ? "DMA" : "PIO");
3549

3550 3551
	sdhci_enable_card_detection(host);

3552 3553
	return 0;

3554
unled:
3555
	sdhci_led_unregister(host);
3556
unirq:
3557
	sdhci_do_reset(host, SDHCI_RESET_ALL);
3558 3559
	sdhci_writel(host, 0, SDHCI_INT_ENABLE);
	sdhci_writel(host, 0, SDHCI_SIGNAL_ENABLE);
3560
	free_irq(host->irq, host);
3561
untasklet:
3562
	tasklet_kill(&host->finish_tasklet);
3563

3564 3565
	if (!IS_ERR(mmc->supply.vqmmc))
		regulator_disable(mmc->supply.vqmmc);
3566

3567 3568 3569 3570 3571 3572
	if (host->align_buffer)
		dma_free_coherent(mmc_dev(mmc), host->align_buffer_sz +
				  host->adma_table_sz, host->align_buffer,
				  host->align_addr);
	host->adma_table = NULL;
	host->align_buffer = NULL;
3573 3574 3575

	return ret;
}
3576 3577 3578 3579 3580 3581 3582 3583 3584
EXPORT_SYMBOL_GPL(__sdhci_add_host);

int sdhci_add_host(struct sdhci_host *host)
{
	int ret;

	ret = sdhci_setup_host(host);
	if (ret)
		return ret;
3585

3586 3587
	return __sdhci_add_host(host);
}
3588
EXPORT_SYMBOL_GPL(sdhci_add_host);
3589

P
Pierre Ossman 已提交
3590
void sdhci_remove_host(struct sdhci_host *host, int dead)
3591
{
3592
	struct mmc_host *mmc = host->mmc;
P
Pierre Ossman 已提交
3593 3594 3595 3596 3597 3598 3599
	unsigned long flags;

	if (dead) {
		spin_lock_irqsave(&host->lock, flags);

		host->flags |= SDHCI_DEVICE_DEAD;

3600
		if (sdhci_has_requests(host)) {
3601
			pr_err("%s: Controller removed during "
3602
				" transfer!\n", mmc_hostname(mmc));
3603
			sdhci_error_out_mrqs(host, -ENOMEDIUM);
P
Pierre Ossman 已提交
3604 3605 3606 3607 3608
		}

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

3609 3610
	sdhci_disable_card_detection(host);

3611
	mmc_remove_host(mmc);
3612

3613
	sdhci_led_unregister(host);
3614

P
Pierre Ossman 已提交
3615
	if (!dead)
3616
		sdhci_do_reset(host, SDHCI_RESET_ALL);
3617

3618 3619
	sdhci_writel(host, 0, SDHCI_INT_ENABLE);
	sdhci_writel(host, 0, SDHCI_SIGNAL_ENABLE);
3620 3621 3622
	free_irq(host->irq, host);

	del_timer_sync(&host->timer);
3623
	del_timer_sync(&host->data_timer);
3624 3625

	tasklet_kill(&host->finish_tasklet);
3626

3627 3628
	if (!IS_ERR(mmc->supply.vqmmc))
		regulator_disable(mmc->supply.vqmmc);
3629

3630
	if (host->align_buffer)
3631 3632 3633
		dma_free_coherent(mmc_dev(mmc), host->align_buffer_sz +
				  host->adma_table_sz, host->align_buffer,
				  host->align_addr);
3634

3635
	host->adma_table = NULL;
3636
	host->align_buffer = NULL;
3637 3638
}

3639
EXPORT_SYMBOL_GPL(sdhci_remove_host);
3640

3641
void sdhci_free_host(struct sdhci_host *host)
3642
{
3643
	mmc_free_host(host->mmc);
3644 3645
}

3646
EXPORT_SYMBOL_GPL(sdhci_free_host);
3647 3648 3649 3650 3651 3652 3653 3654 3655

/*****************************************************************************\
 *                                                                           *
 * Driver init/exit                                                          *
 *                                                                           *
\*****************************************************************************/

static int __init sdhci_drv_init(void)
{
3656
	pr_info(DRIVER_NAME
3657
		": Secure Digital Host Controller Interface driver\n");
3658
	pr_info(DRIVER_NAME ": Copyright(c) Pierre Ossman\n");
3659

3660
	return 0;
3661 3662 3663 3664 3665 3666 3667 3668 3669
}

static void __exit sdhci_drv_exit(void)
{
}

module_init(sdhci_drv_init);
module_exit(sdhci_drv_exit);

3670
module_param(debug_quirks, uint, 0444);
3671
module_param(debug_quirks2, uint, 0444);
3672

3673
MODULE_AUTHOR("Pierre Ossman <pierre@ossman.eu>");
3674
MODULE_DESCRIPTION("Secure Digital Host Controller Interface core driver");
3675
MODULE_LICENSE("GPL");
3676

3677
MODULE_PARM_DESC(debug_quirks, "Force certain quirks.");
3678
MODULE_PARM_DESC(debug_quirks2, "Force certain other quirks.");