Linux Audio

Check our new training course

Loading...
v6.2
   1// SPDX-License-Identifier: GPL-2.0-only
   2/*
   3 *  linux/drivers/mmc/s3cmci.h - Samsung S3C MCI driver
   4 *
   5 *  Copyright (C) 2004-2006 maintech GmbH, Thomas Kleffel <tk@maintech.de>
   6 *
   7 * Current driver maintained by Ben Dooks and Simtec Electronics
   8 *  Copyright (C) 2008 Simtec Electronics <ben-linux@fluff.org>
 
 
 
 
   9 */
  10
  11#include <linux/module.h>
  12#include <linux/dmaengine.h>
  13#include <linux/dma-mapping.h>
  14#include <linux/clk.h>
  15#include <linux/mmc/host.h>
  16#include <linux/platform_device.h>
  17#include <linux/cpufreq.h>
  18#include <linux/debugfs.h>
  19#include <linux/seq_file.h>
  20#include <linux/gpio/consumer.h>
  21#include <linux/interrupt.h>
  22#include <linux/irq.h>
  23#include <linux/io.h>
  24#include <linux/of.h>
  25#include <linux/of_device.h>
  26#include <linux/mmc/slot-gpio.h>
  27#include <linux/platform_data/mmc-s3cmci.h>
 
 
 
  28
  29#include "s3cmci.h"
  30
  31#define DRIVER_NAME "s3c-mci"
  32
  33#define S3C2410_SDICON			(0x00)
  34#define S3C2410_SDIPRE			(0x04)
  35#define S3C2410_SDICMDARG		(0x08)
  36#define S3C2410_SDICMDCON		(0x0C)
  37#define S3C2410_SDICMDSTAT		(0x10)
  38#define S3C2410_SDIRSP0			(0x14)
  39#define S3C2410_SDIRSP1			(0x18)
  40#define S3C2410_SDIRSP2			(0x1C)
  41#define S3C2410_SDIRSP3			(0x20)
  42#define S3C2410_SDITIMER		(0x24)
  43#define S3C2410_SDIBSIZE		(0x28)
  44#define S3C2410_SDIDCON			(0x2C)
  45#define S3C2410_SDIDCNT			(0x30)
  46#define S3C2410_SDIDSTA			(0x34)
  47#define S3C2410_SDIFSTA			(0x38)
  48
  49#define S3C2410_SDIDATA			(0x3C)
  50#define S3C2410_SDIIMSK			(0x40)
  51
  52#define S3C2440_SDIDATA			(0x40)
  53#define S3C2440_SDIIMSK			(0x3C)
  54
  55#define S3C2440_SDICON_SDRESET		(1 << 8)
  56#define S3C2410_SDICON_SDIOIRQ		(1 << 3)
  57#define S3C2410_SDICON_FIFORESET	(1 << 1)
  58#define S3C2410_SDICON_CLOCKTYPE	(1 << 0)
  59
  60#define S3C2410_SDICMDCON_LONGRSP	(1 << 10)
  61#define S3C2410_SDICMDCON_WAITRSP	(1 << 9)
  62#define S3C2410_SDICMDCON_CMDSTART	(1 << 8)
  63#define S3C2410_SDICMDCON_SENDERHOST	(1 << 6)
  64#define S3C2410_SDICMDCON_INDEX		(0x3f)
  65
  66#define S3C2410_SDICMDSTAT_CRCFAIL	(1 << 12)
  67#define S3C2410_SDICMDSTAT_CMDSENT	(1 << 11)
  68#define S3C2410_SDICMDSTAT_CMDTIMEOUT	(1 << 10)
  69#define S3C2410_SDICMDSTAT_RSPFIN	(1 << 9)
  70
  71#define S3C2440_SDIDCON_DS_WORD		(2 << 22)
  72#define S3C2410_SDIDCON_TXAFTERRESP	(1 << 20)
  73#define S3C2410_SDIDCON_RXAFTERCMD	(1 << 19)
  74#define S3C2410_SDIDCON_BLOCKMODE	(1 << 17)
  75#define S3C2410_SDIDCON_WIDEBUS		(1 << 16)
  76#define S3C2410_SDIDCON_DMAEN		(1 << 15)
  77#define S3C2410_SDIDCON_STOP		(1 << 14)
  78#define S3C2440_SDIDCON_DATSTART	(1 << 14)
  79
  80#define S3C2410_SDIDCON_XFER_RXSTART	(2 << 12)
  81#define S3C2410_SDIDCON_XFER_TXSTART	(3 << 12)
  82
  83#define S3C2410_SDIDCON_BLKNUM_MASK	(0xFFF)
  84
  85#define S3C2410_SDIDSTA_SDIOIRQDETECT	(1 << 9)
  86#define S3C2410_SDIDSTA_FIFOFAIL	(1 << 8)
  87#define S3C2410_SDIDSTA_CRCFAIL		(1 << 7)
  88#define S3C2410_SDIDSTA_RXCRCFAIL	(1 << 6)
  89#define S3C2410_SDIDSTA_DATATIMEOUT	(1 << 5)
  90#define S3C2410_SDIDSTA_XFERFINISH	(1 << 4)
  91#define S3C2410_SDIDSTA_TXDATAON	(1 << 1)
  92#define S3C2410_SDIDSTA_RXDATAON	(1 << 0)
  93
  94#define S3C2440_SDIFSTA_FIFORESET	(1 << 16)
  95#define S3C2440_SDIFSTA_FIFOFAIL	(3 << 14)
  96#define S3C2410_SDIFSTA_TFDET		(1 << 13)
  97#define S3C2410_SDIFSTA_RFDET		(1 << 12)
  98#define S3C2410_SDIFSTA_COUNTMASK	(0x7f)
  99
 100#define S3C2410_SDIIMSK_RESPONSECRC	(1 << 17)
 101#define S3C2410_SDIIMSK_CMDSENT		(1 << 16)
 102#define S3C2410_SDIIMSK_CMDTIMEOUT	(1 << 15)
 103#define S3C2410_SDIIMSK_RESPONSEND	(1 << 14)
 104#define S3C2410_SDIIMSK_SDIOIRQ		(1 << 12)
 105#define S3C2410_SDIIMSK_FIFOFAIL	(1 << 11)
 106#define S3C2410_SDIIMSK_CRCSTATUS	(1 << 10)
 107#define S3C2410_SDIIMSK_DATACRC		(1 << 9)
 108#define S3C2410_SDIIMSK_DATATIMEOUT	(1 << 8)
 109#define S3C2410_SDIIMSK_DATAFINISH	(1 << 7)
 110#define S3C2410_SDIIMSK_TXFIFOHALF	(1 << 4)
 111#define S3C2410_SDIIMSK_RXFIFOLAST	(1 << 2)
 112#define S3C2410_SDIIMSK_RXFIFOHALF	(1 << 0)
 113
 114enum dbg_channels {
 115	dbg_err   = (1 << 0),
 116	dbg_debug = (1 << 1),
 117	dbg_info  = (1 << 2),
 118	dbg_irq   = (1 << 3),
 119	dbg_sg    = (1 << 4),
 120	dbg_dma   = (1 << 5),
 121	dbg_pio   = (1 << 6),
 122	dbg_fail  = (1 << 7),
 123	dbg_conf  = (1 << 8),
 124};
 125
 126static const int dbgmap_err   = dbg_fail;
 127static const int dbgmap_info  = dbg_info | dbg_conf;
 128static const int dbgmap_debug = dbg_err | dbg_debug;
 129
 130#define dbg(host, channels, args...)		  \
 131	do {					  \
 132	if (dbgmap_err & channels) 		  \
 133		dev_err(&host->pdev->dev, args);  \
 134	else if (dbgmap_info & channels)	  \
 135		dev_info(&host->pdev->dev, args); \
 136	else if (dbgmap_debug & channels)	  \
 137		dev_dbg(&host->pdev->dev, args);  \
 138	} while (0)
 139
 
 
 
 
 140static void finalize_request(struct s3cmci_host *host);
 141static void s3cmci_send_request(struct mmc_host *mmc);
 142static void s3cmci_reset(struct s3cmci_host *host);
 143
 144#ifdef CONFIG_MMC_DEBUG
 145
 146static void dbg_dumpregs(struct s3cmci_host *host, char *prefix)
 147{
 148	u32 con, pre, cmdarg, cmdcon, cmdsta, r0, r1, r2, r3, timer;
 149	u32 datcon, datcnt, datsta, fsta;
 150
 151	con 	= readl(host->base + S3C2410_SDICON);
 152	pre 	= readl(host->base + S3C2410_SDIPRE);
 153	cmdarg 	= readl(host->base + S3C2410_SDICMDARG);
 154	cmdcon 	= readl(host->base + S3C2410_SDICMDCON);
 155	cmdsta 	= readl(host->base + S3C2410_SDICMDSTAT);
 156	r0 	= readl(host->base + S3C2410_SDIRSP0);
 157	r1 	= readl(host->base + S3C2410_SDIRSP1);
 158	r2 	= readl(host->base + S3C2410_SDIRSP2);
 159	r3 	= readl(host->base + S3C2410_SDIRSP3);
 160	timer 	= readl(host->base + S3C2410_SDITIMER);
 
 161	datcon 	= readl(host->base + S3C2410_SDIDCON);
 162	datcnt 	= readl(host->base + S3C2410_SDIDCNT);
 163	datsta 	= readl(host->base + S3C2410_SDIDSTA);
 164	fsta 	= readl(host->base + S3C2410_SDIFSTA);
 
 165
 166	dbg(host, dbg_debug, "%s  CON:[%08x]  PRE:[%08x]  TMR:[%08x]\n",
 167				prefix, con, pre, timer);
 168
 169	dbg(host, dbg_debug, "%s CCON:[%08x] CARG:[%08x] CSTA:[%08x]\n",
 170				prefix, cmdcon, cmdarg, cmdsta);
 171
 172	dbg(host, dbg_debug, "%s DCON:[%08x] FSTA:[%08x]"
 173			       " DSTA:[%08x] DCNT:[%08x]\n",
 174				prefix, datcon, fsta, datsta, datcnt);
 175
 176	dbg(host, dbg_debug, "%s   R0:[%08x]   R1:[%08x]"
 177			       "   R2:[%08x]   R3:[%08x]\n",
 178				prefix, r0, r1, r2, r3);
 179}
 180
 181static void prepare_dbgmsg(struct s3cmci_host *host, struct mmc_command *cmd,
 182			   int stop)
 183{
 184	snprintf(host->dbgmsg_cmd, 300,
 185		 "#%u%s op:%i arg:0x%08x flags:0x08%x retries:%u",
 186		 host->ccnt, (stop ? " (STOP)" : ""),
 187		 cmd->opcode, cmd->arg, cmd->flags, cmd->retries);
 188
 189	if (cmd->data) {
 190		snprintf(host->dbgmsg_dat, 300,
 191			 "#%u bsize:%u blocks:%u bytes:%u",
 192			 host->dcnt, cmd->data->blksz,
 193			 cmd->data->blocks,
 194			 cmd->data->blocks * cmd->data->blksz);
 195	} else {
 196		host->dbgmsg_dat[0] = '\0';
 197	}
 198}
 199
 200static void dbg_dumpcmd(struct s3cmci_host *host, struct mmc_command *cmd,
 201			int fail)
 202{
 203	unsigned int dbglvl = fail ? dbg_fail : dbg_debug;
 204
 205	if (!cmd)
 206		return;
 207
 208	if (cmd->error == 0) {
 209		dbg(host, dbglvl, "CMD[OK] %s R0:0x%08x\n",
 210			host->dbgmsg_cmd, cmd->resp[0]);
 211	} else {
 212		dbg(host, dbglvl, "CMD[ERR %i] %s Status:%s\n",
 213			cmd->error, host->dbgmsg_cmd, host->status);
 214	}
 215
 216	if (!cmd->data)
 217		return;
 218
 219	if (cmd->data->error == 0) {
 220		dbg(host, dbglvl, "DAT[OK] %s\n", host->dbgmsg_dat);
 221	} else {
 222		dbg(host, dbglvl, "DAT[ERR %i] %s DCNT:0x%08x\n",
 223			cmd->data->error, host->dbgmsg_dat,
 224			readl(host->base + S3C2410_SDIDCNT));
 225	}
 226}
 227#else
 228static void dbg_dumpcmd(struct s3cmci_host *host,
 229			struct mmc_command *cmd, int fail) { }
 230
 231static void prepare_dbgmsg(struct s3cmci_host *host, struct mmc_command *cmd,
 232			   int stop) { }
 233
 234static void dbg_dumpregs(struct s3cmci_host *host, char *prefix) { }
 235
 236#endif /* CONFIG_MMC_DEBUG */
 237
 238/**
 239 * s3cmci_host_usedma - return whether the host is using dma or pio
 240 * @host: The host state
 241 *
 242 * Return true if the host is using DMA to transfer data, else false
 243 * to use PIO mode. Will return static data depending on the driver
 244 * configuration.
 245 */
 246static inline bool s3cmci_host_usedma(struct s3cmci_host *host)
 247{
 248#ifdef CONFIG_MMC_S3C_PIO
 249	return false;
 250#else /* CONFIG_MMC_S3C_DMA */
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 251	return true;
 
 
 252#endif
 253}
 254
 255static inline u32 enable_imask(struct s3cmci_host *host, u32 imask)
 256{
 257	u32 newmask;
 258
 259	newmask = readl(host->base + host->sdiimsk);
 260	newmask |= imask;
 261
 262	writel(newmask, host->base + host->sdiimsk);
 263
 264	return newmask;
 265}
 266
 267static inline u32 disable_imask(struct s3cmci_host *host, u32 imask)
 268{
 269	u32 newmask;
 270
 271	newmask = readl(host->base + host->sdiimsk);
 272	newmask &= ~imask;
 273
 274	writel(newmask, host->base + host->sdiimsk);
 275
 276	return newmask;
 277}
 278
 279static inline void clear_imask(struct s3cmci_host *host)
 280{
 281	u32 mask = readl(host->base + host->sdiimsk);
 282
 283	/* preserve the SDIO IRQ mask state */
 284	mask &= S3C2410_SDIIMSK_SDIOIRQ;
 285	writel(mask, host->base + host->sdiimsk);
 286}
 287
 288/**
 289 * s3cmci_check_sdio_irq - test whether the SDIO IRQ is being signalled
 290 * @host: The host to check.
 291 *
 292 * Test to see if the SDIO interrupt is being signalled in case the
 293 * controller has failed to re-detect a card interrupt. Read GPE8 and
 294 * see if it is low and if so, signal a SDIO interrupt.
 295 *
 296 * This is currently called if a request is finished (we assume that the
 297 * bus is now idle) and when the SDIO IRQ is enabled in case the IRQ is
 298 * already being indicated.
 299*/
 300static void s3cmci_check_sdio_irq(struct s3cmci_host *host)
 301{
 302	if (host->sdio_irqen) {
 303		if (host->pdata->bus[3] &&
 304		    gpiod_get_value(host->pdata->bus[3]) == 0) {
 305			pr_debug("%s: signalling irq\n", __func__);
 306			mmc_signal_sdio_irq(host->mmc);
 307		}
 308	}
 309}
 310
 311static inline int get_data_buffer(struct s3cmci_host *host,
 312				  u32 *bytes, u32 **pointer)
 313{
 314	struct scatterlist *sg;
 315
 316	if (host->pio_active == XFER_NONE)
 317		return -EINVAL;
 318
 319	if ((!host->mrq) || (!host->mrq->data))
 320		return -EINVAL;
 321
 322	if (host->pio_sgptr >= host->mrq->data->sg_len) {
 323		dbg(host, dbg_debug, "no more buffers (%i/%i)\n",
 324		      host->pio_sgptr, host->mrq->data->sg_len);
 325		return -EBUSY;
 326	}
 327	sg = &host->mrq->data->sg[host->pio_sgptr];
 328
 329	*bytes = sg->length;
 330	*pointer = sg_virt(sg);
 331
 332	host->pio_sgptr++;
 333
 334	dbg(host, dbg_sg, "new buffer (%i/%i)\n",
 335	    host->pio_sgptr, host->mrq->data->sg_len);
 336
 337	return 0;
 338}
 339
 340static inline u32 fifo_count(struct s3cmci_host *host)
 341{
 342	u32 fifostat = readl(host->base + S3C2410_SDIFSTA);
 343
 344	fifostat &= S3C2410_SDIFSTA_COUNTMASK;
 345	return fifostat;
 346}
 347
 348static inline u32 fifo_free(struct s3cmci_host *host)
 349{
 350	u32 fifostat = readl(host->base + S3C2410_SDIFSTA);
 351
 352	fifostat &= S3C2410_SDIFSTA_COUNTMASK;
 353	return 63 - fifostat;
 354}
 355
 356/**
 357 * s3cmci_enable_irq - enable IRQ, after having disabled it.
 358 * @host: The device state.
 359 * @more: True if more IRQs are expected from transfer.
 360 *
 361 * Enable the main IRQ if needed after it has been disabled.
 362 *
 363 * The IRQ can be one of the following states:
 364 *	- disabled during IDLE
 365 *	- disabled whilst processing data
 366 *	- enabled during transfer
 367 *	- enabled whilst awaiting SDIO interrupt detection
 368 */
 369static void s3cmci_enable_irq(struct s3cmci_host *host, bool more)
 370{
 371	unsigned long flags;
 372	bool enable = false;
 373
 374	local_irq_save(flags);
 375
 376	host->irq_enabled = more;
 377	host->irq_disabled = false;
 378
 379	enable = more | host->sdio_irqen;
 380
 381	if (host->irq_state != enable) {
 382		host->irq_state = enable;
 383
 384		if (enable)
 385			enable_irq(host->irq);
 386		else
 387			disable_irq(host->irq);
 388	}
 389
 390	local_irq_restore(flags);
 391}
 392
 
 
 
 393static void s3cmci_disable_irq(struct s3cmci_host *host, bool transfer)
 394{
 395	unsigned long flags;
 396
 397	local_irq_save(flags);
 398
 399	/* pr_debug("%s: transfer %d\n", __func__, transfer); */
 400
 401	host->irq_disabled = transfer;
 402
 403	if (transfer && host->irq_state) {
 404		host->irq_state = false;
 405		disable_irq(host->irq);
 406	}
 407
 408	local_irq_restore(flags);
 409}
 410
 411static void do_pio_read(struct s3cmci_host *host)
 412{
 413	int res;
 414	u32 fifo;
 415	u32 *ptr;
 416	u32 fifo_words;
 417	void __iomem *from_ptr;
 418
 419	/* write real prescaler to host, it might be set slow to fix */
 420	writel(host->prescaler, host->base + S3C2410_SDIPRE);
 421
 422	from_ptr = host->base + host->sdidata;
 423
 424	while ((fifo = fifo_count(host))) {
 425		if (!host->pio_bytes) {
 426			res = get_data_buffer(host, &host->pio_bytes,
 427					      &host->pio_ptr);
 428			if (res) {
 429				host->pio_active = XFER_NONE;
 430				host->complete_what = COMPLETION_FINALIZE;
 431
 432				dbg(host, dbg_pio, "pio_read(): "
 433				    "complete (no more data).\n");
 434				return;
 435			}
 436
 437			dbg(host, dbg_pio,
 438			    "pio_read(): new target: [%i]@[%p]\n",
 439			    host->pio_bytes, host->pio_ptr);
 440		}
 441
 442		dbg(host, dbg_pio,
 443		    "pio_read(): fifo:[%02i] buffer:[%03i] dcnt:[%08X]\n",
 444		    fifo, host->pio_bytes,
 445		    readl(host->base + S3C2410_SDIDCNT));
 446
 447		/* If we have reached the end of the block, we can
 448		 * read a word and get 1 to 3 bytes.  If we in the
 449		 * middle of the block, we have to read full words,
 450		 * otherwise we will write garbage, so round down to
 451		 * an even multiple of 4. */
 452		if (fifo >= host->pio_bytes)
 453			fifo = host->pio_bytes;
 454		else
 455			fifo -= fifo & 3;
 456
 457		host->pio_bytes -= fifo;
 458		host->pio_count += fifo;
 459
 460		fifo_words = fifo >> 2;
 461		ptr = host->pio_ptr;
 462		while (fifo_words--)
 463			*ptr++ = readl(from_ptr);
 464		host->pio_ptr = ptr;
 465
 466		if (fifo & 3) {
 467			u32 n = fifo & 3;
 468			u32 data = readl(from_ptr);
 469			u8 *p = (u8 *)host->pio_ptr;
 470
 471			while (n--) {
 472				*p++ = data;
 473				data >>= 8;
 474			}
 475		}
 476	}
 477
 478	if (!host->pio_bytes) {
 479		res = get_data_buffer(host, &host->pio_bytes, &host->pio_ptr);
 480		if (res) {
 481			dbg(host, dbg_pio,
 482			    "pio_read(): complete (no more buffers).\n");
 483			host->pio_active = XFER_NONE;
 484			host->complete_what = COMPLETION_FINALIZE;
 485
 486			return;
 487		}
 488	}
 489
 490	enable_imask(host,
 491		     S3C2410_SDIIMSK_RXFIFOHALF | S3C2410_SDIIMSK_RXFIFOLAST);
 492}
 493
 494static void do_pio_write(struct s3cmci_host *host)
 495{
 496	void __iomem *to_ptr;
 497	int res;
 498	u32 fifo;
 499	u32 *ptr;
 500
 501	to_ptr = host->base + host->sdidata;
 502
 503	while ((fifo = fifo_free(host)) > 3) {
 504		if (!host->pio_bytes) {
 505			res = get_data_buffer(host, &host->pio_bytes,
 506							&host->pio_ptr);
 507			if (res) {
 508				dbg(host, dbg_pio,
 509				    "pio_write(): complete (no more data).\n");
 510				host->pio_active = XFER_NONE;
 511
 512				return;
 513			}
 514
 515			dbg(host, dbg_pio,
 516			    "pio_write(): new source: [%i]@[%p]\n",
 517			    host->pio_bytes, host->pio_ptr);
 518
 519		}
 520
 521		/* If we have reached the end of the block, we have to
 522		 * write exactly the remaining number of bytes.  If we
 523		 * in the middle of the block, we have to write full
 524		 * words, so round down to an even multiple of 4. */
 525		if (fifo >= host->pio_bytes)
 526			fifo = host->pio_bytes;
 527		else
 528			fifo -= fifo & 3;
 529
 530		host->pio_bytes -= fifo;
 531		host->pio_count += fifo;
 532
 533		fifo = (fifo + 3) >> 2;
 534		ptr = host->pio_ptr;
 535		while (fifo--)
 536			writel(*ptr++, to_ptr);
 537		host->pio_ptr = ptr;
 538	}
 539
 540	enable_imask(host, S3C2410_SDIIMSK_TXFIFOHALF);
 541}
 542
 543static void pio_tasklet(struct tasklet_struct *t)
 544{
 545	struct s3cmci_host *host = from_tasklet(host, t, pio_tasklet);
 546
 547	s3cmci_disable_irq(host, true);
 548
 549	if (host->pio_active == XFER_WRITE)
 550		do_pio_write(host);
 551
 552	if (host->pio_active == XFER_READ)
 553		do_pio_read(host);
 554
 555	if (host->complete_what == COMPLETION_FINALIZE) {
 556		clear_imask(host);
 557		if (host->pio_active != XFER_NONE) {
 558			dbg(host, dbg_err, "unfinished %s "
 559			    "- pio_count:[%u] pio_bytes:[%u]\n",
 560			    (host->pio_active == XFER_READ) ? "read" : "write",
 561			    host->pio_count, host->pio_bytes);
 562
 563			if (host->mrq->data)
 564				host->mrq->data->error = -EINVAL;
 565		}
 566
 567		s3cmci_enable_irq(host, false);
 568		finalize_request(host);
 569	} else
 570		s3cmci_enable_irq(host, true);
 571}
 572
 573/*
 574 * ISR for SDI Interface IRQ
 575 * Communication between driver and ISR works as follows:
 576 *   host->mrq 			points to current request
 577 *   host->complete_what	Indicates when the request is considered done
 578 *     COMPLETION_CMDSENT	  when the command was sent
 579 *     COMPLETION_RSPFIN          when a response was received
 580 *     COMPLETION_XFERFINISH	  when the data transfer is finished
 581 *     COMPLETION_XFERFINISH_RSPFIN both of the above.
 582 *   host->complete_request	is the completion-object the driver waits for
 583 *
 584 * 1) Driver sets up host->mrq and host->complete_what
 585 * 2) Driver prepares the transfer
 586 * 3) Driver enables interrupts
 587 * 4) Driver starts transfer
 588 * 5) Driver waits for host->complete_rquest
 589 * 6) ISR checks for request status (errors and success)
 590 * 6) ISR sets host->mrq->cmd->error and host->mrq->data->error
 591 * 7) ISR completes host->complete_request
 592 * 8) ISR disables interrupts
 593 * 9) Driver wakes up and takes care of the request
 594 *
 595 * Note: "->error"-fields are expected to be set to 0 before the request
 596 *       was issued by mmc.c - therefore they are only set, when an error
 597 *       contition comes up
 598 */
 599
 600static irqreturn_t s3cmci_irq(int irq, void *dev_id)
 601{
 602	struct s3cmci_host *host = dev_id;
 603	struct mmc_command *cmd;
 604	u32 mci_csta, mci_dsta, mci_fsta, mci_dcnt, mci_imsk;
 605	u32 mci_cclear = 0, mci_dclear;
 606	unsigned long iflags;
 607
 608	mci_dsta = readl(host->base + S3C2410_SDIDSTA);
 609	mci_imsk = readl(host->base + host->sdiimsk);
 610
 611	if (mci_dsta & S3C2410_SDIDSTA_SDIOIRQDETECT) {
 612		if (mci_imsk & S3C2410_SDIIMSK_SDIOIRQ) {
 613			mci_dclear = S3C2410_SDIDSTA_SDIOIRQDETECT;
 614			writel(mci_dclear, host->base + S3C2410_SDIDSTA);
 615
 616			mmc_signal_sdio_irq(host->mmc);
 617			return IRQ_HANDLED;
 618		}
 619	}
 620
 621	spin_lock_irqsave(&host->complete_lock, iflags);
 622
 623	mci_csta = readl(host->base + S3C2410_SDICMDSTAT);
 624	mci_dcnt = readl(host->base + S3C2410_SDIDCNT);
 625	mci_fsta = readl(host->base + S3C2410_SDIFSTA);
 626	mci_dclear = 0;
 627
 628	if ((host->complete_what == COMPLETION_NONE) ||
 629	    (host->complete_what == COMPLETION_FINALIZE)) {
 630		host->status = "nothing to complete";
 631		clear_imask(host);
 632		goto irq_out;
 633	}
 634
 635	if (!host->mrq) {
 636		host->status = "no active mrq";
 637		clear_imask(host);
 638		goto irq_out;
 639	}
 640
 641	cmd = host->cmd_is_stop ? host->mrq->stop : host->mrq->cmd;
 642
 643	if (!cmd) {
 644		host->status = "no active cmd";
 645		clear_imask(host);
 646		goto irq_out;
 647	}
 648
 649	if (!s3cmci_host_usedma(host)) {
 650		if ((host->pio_active == XFER_WRITE) &&
 651		    (mci_fsta & S3C2410_SDIFSTA_TFDET)) {
 652
 653			disable_imask(host, S3C2410_SDIIMSK_TXFIFOHALF);
 654			tasklet_schedule(&host->pio_tasklet);
 655			host->status = "pio tx";
 656		}
 657
 658		if ((host->pio_active == XFER_READ) &&
 659		    (mci_fsta & S3C2410_SDIFSTA_RFDET)) {
 660
 661			disable_imask(host,
 662				      S3C2410_SDIIMSK_RXFIFOHALF |
 663				      S3C2410_SDIIMSK_RXFIFOLAST);
 664
 665			tasklet_schedule(&host->pio_tasklet);
 666			host->status = "pio rx";
 667		}
 668	}
 669
 670	if (mci_csta & S3C2410_SDICMDSTAT_CMDTIMEOUT) {
 671		dbg(host, dbg_err, "CMDSTAT: error CMDTIMEOUT\n");
 672		cmd->error = -ETIMEDOUT;
 673		host->status = "error: command timeout";
 674		goto fail_transfer;
 675	}
 676
 677	if (mci_csta & S3C2410_SDICMDSTAT_CMDSENT) {
 678		if (host->complete_what == COMPLETION_CMDSENT) {
 679			host->status = "ok: command sent";
 680			goto close_transfer;
 681		}
 682
 683		mci_cclear |= S3C2410_SDICMDSTAT_CMDSENT;
 684	}
 685
 686	if (mci_csta & S3C2410_SDICMDSTAT_CRCFAIL) {
 687		if (cmd->flags & MMC_RSP_CRC) {
 688			if (host->mrq->cmd->flags & MMC_RSP_136) {
 689				dbg(host, dbg_irq,
 690				    "fixup: ignore CRC fail with long rsp\n");
 691			} else {
 692				/* note, we used to fail the transfer
 693				 * here, but it seems that this is just
 694				 * the hardware getting it wrong.
 695				 *
 696				 * cmd->error = -EILSEQ;
 697				 * host->status = "error: bad command crc";
 698				 * goto fail_transfer;
 699				*/
 700			}
 701		}
 702
 703		mci_cclear |= S3C2410_SDICMDSTAT_CRCFAIL;
 704	}
 705
 706	if (mci_csta & S3C2410_SDICMDSTAT_RSPFIN) {
 707		if (host->complete_what == COMPLETION_RSPFIN) {
 708			host->status = "ok: command response received";
 709			goto close_transfer;
 710		}
 711
 712		if (host->complete_what == COMPLETION_XFERFINISH_RSPFIN)
 713			host->complete_what = COMPLETION_XFERFINISH;
 714
 715		mci_cclear |= S3C2410_SDICMDSTAT_RSPFIN;
 716	}
 717
 718	/* errors handled after this point are only relevant
 719	   when a data transfer is in progress */
 720
 721	if (!cmd->data)
 722		goto clear_status_bits;
 723
 724	/* Check for FIFO failure */
 725	if (host->is2440) {
 726		if (mci_fsta & S3C2440_SDIFSTA_FIFOFAIL) {
 727			dbg(host, dbg_err, "FIFO failure\n");
 728			host->mrq->data->error = -EILSEQ;
 729			host->status = "error: 2440 fifo failure";
 730			goto fail_transfer;
 731		}
 732	} else {
 733		if (mci_dsta & S3C2410_SDIDSTA_FIFOFAIL) {
 734			dbg(host, dbg_err, "FIFO failure\n");
 735			cmd->data->error = -EILSEQ;
 736			host->status = "error:  fifo failure";
 737			goto fail_transfer;
 738		}
 739	}
 740
 741	if (mci_dsta & S3C2410_SDIDSTA_RXCRCFAIL) {
 742		dbg(host, dbg_err, "bad data crc (outgoing)\n");
 743		cmd->data->error = -EILSEQ;
 744		host->status = "error: bad data crc (outgoing)";
 745		goto fail_transfer;
 746	}
 747
 748	if (mci_dsta & S3C2410_SDIDSTA_CRCFAIL) {
 749		dbg(host, dbg_err, "bad data crc (incoming)\n");
 750		cmd->data->error = -EILSEQ;
 751		host->status = "error: bad data crc (incoming)";
 752		goto fail_transfer;
 753	}
 754
 755	if (mci_dsta & S3C2410_SDIDSTA_DATATIMEOUT) {
 756		dbg(host, dbg_err, "data timeout\n");
 757		cmd->data->error = -ETIMEDOUT;
 758		host->status = "error: data timeout";
 759		goto fail_transfer;
 760	}
 761
 762	if (mci_dsta & S3C2410_SDIDSTA_XFERFINISH) {
 763		if (host->complete_what == COMPLETION_XFERFINISH) {
 764			host->status = "ok: data transfer completed";
 765			goto close_transfer;
 766		}
 767
 768		if (host->complete_what == COMPLETION_XFERFINISH_RSPFIN)
 769			host->complete_what = COMPLETION_RSPFIN;
 770
 771		mci_dclear |= S3C2410_SDIDSTA_XFERFINISH;
 772	}
 773
 774clear_status_bits:
 775	writel(mci_cclear, host->base + S3C2410_SDICMDSTAT);
 776	writel(mci_dclear, host->base + S3C2410_SDIDSTA);
 777
 778	goto irq_out;
 779
 780fail_transfer:
 781	host->pio_active = XFER_NONE;
 782
 783close_transfer:
 784	host->complete_what = COMPLETION_FINALIZE;
 785
 786	clear_imask(host);
 787	tasklet_schedule(&host->pio_tasklet);
 788
 789	goto irq_out;
 790
 791irq_out:
 792	dbg(host, dbg_irq,
 793	    "csta:0x%08x dsta:0x%08x fsta:0x%08x dcnt:0x%08x status:%s.\n",
 794	    mci_csta, mci_dsta, mci_fsta, mci_dcnt, host->status);
 795
 796	spin_unlock_irqrestore(&host->complete_lock, iflags);
 797	return IRQ_HANDLED;
 798
 799}
 800
 801static void s3cmci_dma_done_callback(void *arg)
 
 
 
 
 802{
 803	struct s3cmci_host *host = arg;
 
 
 
 
 
 
 
 
 
 
 
 
 
 804	unsigned long iflags;
 
 
 
 
 
 
 805
 806	BUG_ON(!host->mrq);
 807	BUG_ON(!host->mrq->data);
 
 808
 809	spin_lock_irqsave(&host->complete_lock, iflags);
 810
 811	dbg(host, dbg_dma, "DMA FINISHED\n");
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 812
 813	host->dma_complete = 1;
 814	host->complete_what = COMPLETION_FINALIZE;
 815
 
 816	tasklet_schedule(&host->pio_tasklet);
 817	spin_unlock_irqrestore(&host->complete_lock, iflags);
 
 
 
 
 
 
 818
 
 819}
 820
 821static void finalize_request(struct s3cmci_host *host)
 822{
 823	struct mmc_request *mrq = host->mrq;
 824	struct mmc_command *cmd;
 825	int debug_as_failure = 0;
 826
 827	if (host->complete_what != COMPLETION_FINALIZE)
 828		return;
 829
 830	if (!mrq)
 831		return;
 832	cmd = host->cmd_is_stop ? mrq->stop : mrq->cmd;
 833
 834	if (cmd->data && (cmd->error == 0) &&
 835	    (cmd->data->error == 0)) {
 836		if (s3cmci_host_usedma(host) && (!host->dma_complete)) {
 837			dbg(host, dbg_dma, "DMA Missing (%d)!\n",
 838			    host->dma_complete);
 839			return;
 840		}
 841	}
 842
 843	/* Read response from controller. */
 844	cmd->resp[0] = readl(host->base + S3C2410_SDIRSP0);
 845	cmd->resp[1] = readl(host->base + S3C2410_SDIRSP1);
 846	cmd->resp[2] = readl(host->base + S3C2410_SDIRSP2);
 847	cmd->resp[3] = readl(host->base + S3C2410_SDIRSP3);
 848
 849	writel(host->prescaler, host->base + S3C2410_SDIPRE);
 850
 851	if (cmd->error)
 852		debug_as_failure = 1;
 853
 854	if (cmd->data && cmd->data->error)
 855		debug_as_failure = 1;
 856
 857	dbg_dumpcmd(host, cmd, debug_as_failure);
 858
 859	/* Cleanup controller */
 860	writel(0, host->base + S3C2410_SDICMDARG);
 861	writel(S3C2410_SDIDCON_STOP, host->base + S3C2410_SDIDCON);
 862	writel(0, host->base + S3C2410_SDICMDCON);
 863	clear_imask(host);
 864
 865	if (cmd->data && cmd->error)
 866		cmd->data->error = cmd->error;
 867
 868	if (cmd->data && cmd->data->stop && (!host->cmd_is_stop)) {
 869		host->cmd_is_stop = 1;
 870		s3cmci_send_request(host->mmc);
 871		return;
 872	}
 873
 874	/* If we have no data transfer we are finished here */
 875	if (!mrq->data)
 876		goto request_done;
 877
 878	/* Calculate the amout of bytes transfer if there was no error */
 879	if (mrq->data->error == 0) {
 880		mrq->data->bytes_xfered =
 881			(mrq->data->blocks * mrq->data->blksz);
 882	} else {
 883		mrq->data->bytes_xfered = 0;
 884	}
 885
 886	/* If we had an error while transferring data we flush the
 887	 * DMA channel and the fifo to clear out any garbage. */
 888	if (mrq->data->error != 0) {
 889		if (s3cmci_host_usedma(host))
 890			dmaengine_terminate_all(host->dma);
 891
 892		if (host->is2440) {
 893			/* Clear failure register and reset fifo. */
 894			writel(S3C2440_SDIFSTA_FIFORESET |
 895			       S3C2440_SDIFSTA_FIFOFAIL,
 896			       host->base + S3C2410_SDIFSTA);
 897		} else {
 898			u32 mci_con;
 899
 900			/* reset fifo */
 901			mci_con = readl(host->base + S3C2410_SDICON);
 902			mci_con |= S3C2410_SDICON_FIFORESET;
 903
 904			writel(mci_con, host->base + S3C2410_SDICON);
 905		}
 906	}
 907
 908request_done:
 909	host->complete_what = COMPLETION_NONE;
 910	host->mrq = NULL;
 911
 912	s3cmci_check_sdio_irq(host);
 913	mmc_request_done(host->mmc, mrq);
 914}
 915
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 916static void s3cmci_send_command(struct s3cmci_host *host,
 917					struct mmc_command *cmd)
 918{
 919	u32 ccon, imsk;
 920
 921	imsk  = S3C2410_SDIIMSK_CRCSTATUS | S3C2410_SDIIMSK_CMDTIMEOUT |
 922		S3C2410_SDIIMSK_RESPONSEND | S3C2410_SDIIMSK_CMDSENT |
 923		S3C2410_SDIIMSK_RESPONSECRC;
 924
 925	enable_imask(host, imsk);
 926
 927	if (cmd->data)
 928		host->complete_what = COMPLETION_XFERFINISH_RSPFIN;
 929	else if (cmd->flags & MMC_RSP_PRESENT)
 930		host->complete_what = COMPLETION_RSPFIN;
 931	else
 932		host->complete_what = COMPLETION_CMDSENT;
 933
 934	writel(cmd->arg, host->base + S3C2410_SDICMDARG);
 935
 936	ccon  = cmd->opcode & S3C2410_SDICMDCON_INDEX;
 937	ccon |= S3C2410_SDICMDCON_SENDERHOST | S3C2410_SDICMDCON_CMDSTART;
 938
 939	if (cmd->flags & MMC_RSP_PRESENT)
 940		ccon |= S3C2410_SDICMDCON_WAITRSP;
 941
 942	if (cmd->flags & MMC_RSP_136)
 943		ccon |= S3C2410_SDICMDCON_LONGRSP;
 944
 945	writel(ccon, host->base + S3C2410_SDICMDCON);
 946}
 947
 948static int s3cmci_setup_data(struct s3cmci_host *host, struct mmc_data *data)
 949{
 950	u32 dcon, imsk, stoptries = 3;
 951
 
 
 
 
 
 
 
 952	if ((data->blksz & 3) != 0) {
 953		/* We cannot deal with unaligned blocks with more than
 954		 * one block being transferred. */
 955
 956		if (data->blocks > 1) {
 957			pr_warn("%s: can't do non-word sized block transfers (blksz %d)\n",
 958				__func__, data->blksz);
 959			return -EINVAL;
 960		}
 961	}
 962
 963	while (readl(host->base + S3C2410_SDIDSTA) &
 964	       (S3C2410_SDIDSTA_TXDATAON | S3C2410_SDIDSTA_RXDATAON)) {
 965
 966		dbg(host, dbg_err,
 967		    "mci_setup_data() transfer stillin progress.\n");
 968
 969		writel(S3C2410_SDIDCON_STOP, host->base + S3C2410_SDIDCON);
 970		s3cmci_reset(host);
 971
 972		if ((stoptries--) == 0) {
 973			dbg_dumpregs(host, "DRF");
 974			return -EINVAL;
 975		}
 976	}
 977
 978	dcon  = data->blocks & S3C2410_SDIDCON_BLKNUM_MASK;
 979
 980	if (s3cmci_host_usedma(host))
 981		dcon |= S3C2410_SDIDCON_DMAEN;
 982
 983	if (host->bus_width == MMC_BUS_WIDTH_4)
 984		dcon |= S3C2410_SDIDCON_WIDEBUS;
 985
 986	dcon |= S3C2410_SDIDCON_BLOCKMODE;
 
 987
 988	if (data->flags & MMC_DATA_WRITE) {
 989		dcon |= S3C2410_SDIDCON_TXAFTERRESP;
 990		dcon |= S3C2410_SDIDCON_XFER_TXSTART;
 991	}
 992
 993	if (data->flags & MMC_DATA_READ) {
 994		dcon |= S3C2410_SDIDCON_RXAFTERCMD;
 995		dcon |= S3C2410_SDIDCON_XFER_RXSTART;
 996	}
 997
 998	if (host->is2440) {
 999		dcon |= S3C2440_SDIDCON_DS_WORD;
1000		dcon |= S3C2440_SDIDCON_DATSTART;
1001	}
1002
1003	writel(dcon, host->base + S3C2410_SDIDCON);
1004
1005	/* write BSIZE register */
1006
1007	writel(data->blksz, host->base + S3C2410_SDIBSIZE);
1008
1009	/* add to IMASK register */
1010	imsk = S3C2410_SDIIMSK_FIFOFAIL | S3C2410_SDIIMSK_DATACRC |
1011	       S3C2410_SDIIMSK_DATATIMEOUT | S3C2410_SDIIMSK_DATAFINISH;
1012
1013	enable_imask(host, imsk);
1014
1015	/* write TIMER register */
1016
1017	if (host->is2440) {
1018		writel(0x007FFFFF, host->base + S3C2410_SDITIMER);
1019	} else {
1020		writel(0x0000FFFF, host->base + S3C2410_SDITIMER);
1021
1022		/* FIX: set slow clock to prevent timeouts on read */
1023		if (data->flags & MMC_DATA_READ)
1024			writel(0xFF, host->base + S3C2410_SDIPRE);
1025	}
1026
1027	return 0;
1028}
1029
1030#define BOTH_DIR (MMC_DATA_WRITE | MMC_DATA_READ)
1031
1032static int s3cmci_prepare_pio(struct s3cmci_host *host, struct mmc_data *data)
1033{
1034	int rw = (data->flags & MMC_DATA_WRITE) ? 1 : 0;
1035
1036	BUG_ON((data->flags & BOTH_DIR) == BOTH_DIR);
1037
1038	host->pio_sgptr = 0;
1039	host->pio_bytes = 0;
1040	host->pio_count = 0;
1041	host->pio_active = rw ? XFER_WRITE : XFER_READ;
1042
1043	if (rw) {
1044		do_pio_write(host);
1045		enable_imask(host, S3C2410_SDIIMSK_TXFIFOHALF);
1046	} else {
1047		enable_imask(host, S3C2410_SDIIMSK_RXFIFOHALF
1048			     | S3C2410_SDIIMSK_RXFIFOLAST);
1049	}
1050
1051	return 0;
1052}
1053
1054static int s3cmci_prepare_dma(struct s3cmci_host *host, struct mmc_data *data)
1055{
 
1056	int rw = data->flags & MMC_DATA_WRITE;
1057	struct dma_async_tx_descriptor *desc;
1058	struct dma_slave_config conf = {
1059		.src_addr = host->mem->start + host->sdidata,
1060		.dst_addr = host->mem->start + host->sdidata,
1061		.src_addr_width = DMA_SLAVE_BUSWIDTH_4_BYTES,
1062		.dst_addr_width = DMA_SLAVE_BUSWIDTH_4_BYTES,
1063	};
1064
1065	BUG_ON((data->flags & BOTH_DIR) == BOTH_DIR);
1066
1067	/* Restore prescaler value */
1068	writel(host->prescaler, host->base + S3C2410_SDIPRE);
1069
1070	if (!rw)
1071		conf.direction = DMA_DEV_TO_MEM;
1072	else
1073		conf.direction = DMA_MEM_TO_DEV;
 
1074
1075	dma_map_sg(mmc_dev(host->mmc), data->sg, data->sg_len,
1076		   mmc_get_dma_dir(data));
1077
1078	dmaengine_slave_config(host->dma, &conf);
1079	desc = dmaengine_prep_slave_sg(host->dma, data->sg, data->sg_len,
1080		conf.direction,
1081		DMA_CTRL_ACK | DMA_PREP_INTERRUPT);
1082	if (!desc)
1083		goto unmap_exit;
1084	desc->callback = s3cmci_dma_done_callback;
1085	desc->callback_param = host;
1086	dmaengine_submit(desc);
1087	dma_async_issue_pending(host->dma);
1088
1089	return 0;
 
 
 
 
 
 
1090
1091unmap_exit:
1092	dma_unmap_sg(mmc_dev(host->mmc), data->sg, data->sg_len,
1093		     mmc_get_dma_dir(data));
1094	return -ENOMEM;
 
 
 
 
 
1095}
1096
1097static void s3cmci_send_request(struct mmc_host *mmc)
1098{
1099	struct s3cmci_host *host = mmc_priv(mmc);
1100	struct mmc_request *mrq = host->mrq;
1101	struct mmc_command *cmd = host->cmd_is_stop ? mrq->stop : mrq->cmd;
1102
1103	host->ccnt++;
1104	prepare_dbgmsg(host, cmd, host->cmd_is_stop);
1105
1106	/* Clear command, data and fifo status registers
1107	   Fifo clear only necessary on 2440, but doesn't hurt on 2410
1108	*/
1109	writel(0xFFFFFFFF, host->base + S3C2410_SDICMDSTAT);
1110	writel(0xFFFFFFFF, host->base + S3C2410_SDIDSTA);
1111	writel(0xFFFFFFFF, host->base + S3C2410_SDIFSTA);
1112
1113	if (cmd->data) {
1114		int res = s3cmci_setup_data(host, cmd->data);
1115
1116		host->dcnt++;
1117
1118		if (res) {
1119			dbg(host, dbg_err, "setup data error %d\n", res);
1120			cmd->error = res;
1121			cmd->data->error = res;
1122
1123			mmc_request_done(mmc, mrq);
1124			return;
1125		}
1126
1127		if (s3cmci_host_usedma(host))
1128			res = s3cmci_prepare_dma(host, cmd->data);
1129		else
1130			res = s3cmci_prepare_pio(host, cmd->data);
1131
1132		if (res) {
1133			dbg(host, dbg_err, "data prepare error %d\n", res);
1134			cmd->error = res;
1135			cmd->data->error = res;
1136
1137			mmc_request_done(mmc, mrq);
1138			return;
1139		}
1140	}
1141
1142	/* Send command */
1143	s3cmci_send_command(host, cmd);
1144
1145	/* Enable Interrupt */
1146	s3cmci_enable_irq(host, true);
1147}
1148
 
 
 
 
 
 
 
 
 
 
 
 
 
1149static void s3cmci_request(struct mmc_host *mmc, struct mmc_request *mrq)
1150{
1151	struct s3cmci_host *host = mmc_priv(mmc);
1152
1153	host->status = "mmc request";
1154	host->cmd_is_stop = 0;
1155	host->mrq = mrq;
1156
1157	if (mmc_gpio_get_cd(mmc) == 0) {
1158		dbg(host, dbg_err, "%s: no medium present\n", __func__);
1159		host->mrq->cmd->error = -ENOMEDIUM;
1160		mmc_request_done(mmc, mrq);
1161	} else
1162		s3cmci_send_request(mmc);
1163}
1164
1165static void s3cmci_set_clk(struct s3cmci_host *host, struct mmc_ios *ios)
1166{
1167	u32 mci_psc;
1168
1169	/* Set clock */
1170	for (mci_psc = 0; mci_psc < 255; mci_psc++) {
1171		host->real_rate = host->clk_rate / (host->clk_div*(mci_psc+1));
1172
1173		if (host->real_rate <= ios->clock)
1174			break;
1175	}
1176
1177	if (mci_psc > 255)
1178		mci_psc = 255;
1179
1180	host->prescaler = mci_psc;
1181	writel(host->prescaler, host->base + S3C2410_SDIPRE);
1182
1183	/* If requested clock is 0, real_rate will be 0, too */
1184	if (ios->clock == 0)
1185		host->real_rate = 0;
1186}
1187
1188static void s3cmci_set_ios(struct mmc_host *mmc, struct mmc_ios *ios)
1189{
1190	struct s3cmci_host *host = mmc_priv(mmc);
1191	u32 mci_con;
1192
1193	/* Set the power state */
1194
1195	mci_con = readl(host->base + S3C2410_SDICON);
1196
1197	switch (ios->power_mode) {
1198	case MMC_POWER_ON:
1199	case MMC_POWER_UP:
 
 
 
 
 
 
 
 
 
 
1200		if (!host->is2440)
1201			mci_con |= S3C2410_SDICON_FIFORESET;
 
1202		break;
1203
1204	case MMC_POWER_OFF:
1205	default:
 
 
1206		if (host->is2440)
1207			mci_con |= S3C2440_SDICON_SDRESET;
 
 
 
 
1208		break;
1209	}
1210
1211	if (host->pdata->set_power)
1212		host->pdata->set_power(ios->power_mode, ios->vdd);
1213
1214	s3cmci_set_clk(host, ios);
1215
1216	/* Set CLOCK_ENABLE */
1217	if (ios->clock)
1218		mci_con |= S3C2410_SDICON_CLOCKTYPE;
1219	else
1220		mci_con &= ~S3C2410_SDICON_CLOCKTYPE;
1221
1222	writel(mci_con, host->base + S3C2410_SDICON);
1223
1224	if ((ios->power_mode == MMC_POWER_ON) ||
1225	    (ios->power_mode == MMC_POWER_UP)) {
1226		dbg(host, dbg_conf, "running at %lukHz (requested: %ukHz).\n",
1227			host->real_rate/1000, ios->clock/1000);
1228	} else {
1229		dbg(host, dbg_conf, "powered down.\n");
1230	}
1231
1232	host->bus_width = ios->bus_width;
1233}
1234
1235static void s3cmci_reset(struct s3cmci_host *host)
1236{
1237	u32 con = readl(host->base + S3C2410_SDICON);
1238
1239	con |= S3C2440_SDICON_SDRESET;
1240	writel(con, host->base + S3C2410_SDICON);
1241}
1242
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1243static void s3cmci_enable_sdio_irq(struct mmc_host *mmc, int enable)
1244{
1245	struct s3cmci_host *host = mmc_priv(mmc);
1246	unsigned long flags;
1247	u32 con;
1248
1249	local_irq_save(flags);
1250
1251	con = readl(host->base + S3C2410_SDICON);
1252	host->sdio_irqen = enable;
1253
1254	if (enable == host->sdio_irqen)
1255		goto same_state;
1256
1257	if (enable) {
1258		con |= S3C2410_SDICON_SDIOIRQ;
1259		enable_imask(host, S3C2410_SDIIMSK_SDIOIRQ);
1260
1261		if (!host->irq_state && !host->irq_disabled) {
1262			host->irq_state = true;
1263			enable_irq(host->irq);
1264		}
1265	} else {
1266		disable_imask(host, S3C2410_SDIIMSK_SDIOIRQ);
1267		con &= ~S3C2410_SDICON_SDIOIRQ;
1268
1269		if (!host->irq_enabled && host->irq_state) {
1270			disable_irq_nosync(host->irq);
1271			host->irq_state = false;
1272		}
1273	}
1274
1275	writel(con, host->base + S3C2410_SDICON);
1276
1277 same_state:
1278	local_irq_restore(flags);
1279
1280	s3cmci_check_sdio_irq(host);
1281}
1282
1283static const struct mmc_host_ops s3cmci_ops = {
1284	.request	= s3cmci_request,
1285	.set_ios	= s3cmci_set_ios,
1286	.get_ro		= mmc_gpio_get_ro,
1287	.get_cd		= mmc_gpio_get_cd,
1288	.enable_sdio_irq = s3cmci_enable_sdio_irq,
1289};
1290
1291#ifdef CONFIG_ARM_S3C24XX_CPUFREQ
 
 
 
 
 
 
 
1292
1293static int s3cmci_cpufreq_transition(struct notifier_block *nb,
1294				     unsigned long val, void *data)
1295{
1296	struct s3cmci_host *host;
1297	struct mmc_host *mmc;
1298	unsigned long newclk;
1299	unsigned long flags;
1300
1301	host = container_of(nb, struct s3cmci_host, freq_transition);
1302	newclk = clk_get_rate(host->clk);
1303	mmc = host->mmc;
1304
1305	if ((val == CPUFREQ_PRECHANGE && newclk > host->clk_rate) ||
1306	    (val == CPUFREQ_POSTCHANGE && newclk < host->clk_rate)) {
1307		spin_lock_irqsave(&mmc->lock, flags);
1308
1309		host->clk_rate = newclk;
1310
1311		if (mmc->ios.power_mode != MMC_POWER_OFF &&
1312		    mmc->ios.clock != 0)
1313			s3cmci_set_clk(host, &mmc->ios);
1314
1315		spin_unlock_irqrestore(&mmc->lock, flags);
1316	}
1317
1318	return 0;
1319}
1320
1321static inline int s3cmci_cpufreq_register(struct s3cmci_host *host)
1322{
1323	host->freq_transition.notifier_call = s3cmci_cpufreq_transition;
1324
1325	return cpufreq_register_notifier(&host->freq_transition,
1326					 CPUFREQ_TRANSITION_NOTIFIER);
1327}
1328
1329static inline void s3cmci_cpufreq_deregister(struct s3cmci_host *host)
1330{
1331	cpufreq_unregister_notifier(&host->freq_transition,
1332				    CPUFREQ_TRANSITION_NOTIFIER);
1333}
1334
1335#else
1336static inline int s3cmci_cpufreq_register(struct s3cmci_host *host)
1337{
1338	return 0;
1339}
1340
1341static inline void s3cmci_cpufreq_deregister(struct s3cmci_host *host)
1342{
1343}
1344#endif
1345
1346
1347#ifdef CONFIG_DEBUG_FS
1348
1349static int s3cmci_state_show(struct seq_file *seq, void *v)
1350{
1351	struct s3cmci_host *host = seq->private;
1352
1353	seq_printf(seq, "Register base = 0x%p\n", host->base);
1354	seq_printf(seq, "Clock rate = %ld\n", host->clk_rate);
1355	seq_printf(seq, "Prescale = %d\n", host->prescaler);
1356	seq_printf(seq, "is2440 = %d\n", host->is2440);
1357	seq_printf(seq, "IRQ = %d\n", host->irq);
1358	seq_printf(seq, "IRQ enabled = %d\n", host->irq_enabled);
1359	seq_printf(seq, "IRQ disabled = %d\n", host->irq_disabled);
1360	seq_printf(seq, "IRQ state = %d\n", host->irq_state);
1361	seq_printf(seq, "CD IRQ = %d\n", host->irq_cd);
1362	seq_printf(seq, "Do DMA = %d\n", s3cmci_host_usedma(host));
1363	seq_printf(seq, "SDIIMSK at %d\n", host->sdiimsk);
1364	seq_printf(seq, "SDIDATA at %d\n", host->sdidata);
1365
1366	return 0;
1367}
1368
1369DEFINE_SHOW_ATTRIBUTE(s3cmci_state);
 
 
 
 
 
 
 
 
 
 
 
1370
1371#define DBG_REG(_r) { .addr = S3C2410_SDI##_r, .name = #_r }
1372
1373struct s3cmci_reg {
1374	unsigned short	addr;
1375	unsigned char	*name;
1376};
1377
1378static const struct s3cmci_reg debug_regs[] = {
1379	DBG_REG(CON),
1380	DBG_REG(PRE),
1381	DBG_REG(CMDARG),
1382	DBG_REG(CMDCON),
1383	DBG_REG(CMDSTAT),
1384	DBG_REG(RSP0),
1385	DBG_REG(RSP1),
1386	DBG_REG(RSP2),
1387	DBG_REG(RSP3),
1388	DBG_REG(TIMER),
1389	DBG_REG(BSIZE),
1390	DBG_REG(DCON),
1391	DBG_REG(DCNT),
1392	DBG_REG(DSTA),
1393	DBG_REG(FSTA),
1394	{}
1395};
1396
1397static int s3cmci_regs_show(struct seq_file *seq, void *v)
1398{
1399	struct s3cmci_host *host = seq->private;
1400	const struct s3cmci_reg *rptr = debug_regs;
1401
1402	for (; rptr->name; rptr++)
1403		seq_printf(seq, "SDI%s\t=0x%08x\n", rptr->name,
1404			   readl(host->base + rptr->addr));
1405
1406	seq_printf(seq, "SDIIMSK\t=0x%08x\n", readl(host->base + host->sdiimsk));
1407
1408	return 0;
1409}
1410
1411DEFINE_SHOW_ATTRIBUTE(s3cmci_regs);
 
 
 
 
 
 
 
 
 
 
 
1412
1413static void s3cmci_debugfs_attach(struct s3cmci_host *host)
1414{
1415	struct device *dev = &host->pdev->dev;
1416	struct dentry *root;
1417
1418	root = debugfs_create_dir(dev_name(dev), NULL);
1419	host->debug_root = root;
 
 
 
1420
1421	debugfs_create_file("state", 0444, root, host, &s3cmci_state_fops);
1422	debugfs_create_file("regs", 0444, root, host, &s3cmci_regs_fops);
 
 
 
 
 
 
 
 
 
 
 
1423}
1424
1425static void s3cmci_debugfs_remove(struct s3cmci_host *host)
1426{
1427	debugfs_remove_recursive(host->debug_root);
 
 
1428}
1429
1430#else
1431static inline void s3cmci_debugfs_attach(struct s3cmci_host *host) { }
1432static inline void s3cmci_debugfs_remove(struct s3cmci_host *host) { }
1433
1434#endif /* CONFIG_DEBUG_FS */
1435
1436static int s3cmci_probe_pdata(struct s3cmci_host *host)
1437{
1438	struct platform_device *pdev = host->pdev;
1439	struct mmc_host *mmc = host->mmc;
1440	struct s3c24xx_mci_pdata *pdata;
1441	int i, ret;
1442
1443	host->is2440 = platform_get_device_id(pdev)->driver_data;
1444	pdata = pdev->dev.platform_data;
1445	if (!pdata) {
1446		dev_err(&pdev->dev, "need platform data");
1447		return -ENXIO;
1448	}
1449
1450	for (i = 0; i < 6; i++) {
1451		pdata->bus[i] = devm_gpiod_get_index(&pdev->dev, "bus", i,
1452						     GPIOD_OUT_LOW);
1453		if (IS_ERR(pdata->bus[i])) {
1454			dev_err(&pdev->dev, "failed to get gpio %d\n", i);
1455			return PTR_ERR(pdata->bus[i]);
1456		}
1457	}
1458
1459	if (pdata->no_wprotect)
1460		mmc->caps2 |= MMC_CAP2_NO_WRITE_PROTECT;
1461
1462	if (pdata->no_detect)
1463		mmc->caps |= MMC_CAP_NEEDS_POLL;
1464
1465	if (pdata->wprotect_invert)
1466		mmc->caps2 |= MMC_CAP2_RO_ACTIVE_HIGH;
1467
1468	/* If we get -ENOENT we have no card detect GPIO line */
1469	ret = mmc_gpiod_request_cd(mmc, "cd", 0, false, 0);
1470	if (ret != -ENOENT) {
1471		dev_err(&pdev->dev, "error requesting GPIO for CD %d\n",
1472			ret);
1473		return ret;
1474	}
1475
1476	ret = mmc_gpiod_request_ro(host->mmc, "wp", 0, 0);
1477	if (ret != -ENOENT) {
1478		dev_err(&pdev->dev, "error requesting GPIO for WP %d\n",
1479			ret);
1480		return ret;
1481	}
1482
1483	return 0;
1484}
1485
1486static int s3cmci_probe_dt(struct s3cmci_host *host)
1487{
1488	struct platform_device *pdev = host->pdev;
1489	struct s3c24xx_mci_pdata *pdata;
1490	struct mmc_host *mmc = host->mmc;
1491	int ret;
1492
1493	host->is2440 = (long) of_device_get_match_data(&pdev->dev);
1494
1495	ret = mmc_of_parse(mmc);
1496	if (ret)
1497		return ret;
1498
1499	pdata = devm_kzalloc(&pdev->dev, sizeof(*pdata), GFP_KERNEL);
1500	if (!pdata)
1501		return -ENOMEM;
1502
1503	pdev->dev.platform_data = pdata;
1504
1505	return 0;
1506}
1507
1508static int s3cmci_probe(struct platform_device *pdev)
1509{
1510	struct s3cmci_host *host;
1511	struct mmc_host	*mmc;
1512	int ret;
 
 
 
 
1513
1514	mmc = mmc_alloc_host(sizeof(struct s3cmci_host), &pdev->dev);
1515	if (!mmc) {
1516		ret = -ENOMEM;
1517		goto probe_out;
1518	}
1519
 
 
 
 
 
 
 
 
 
 
 
 
1520	host = mmc_priv(mmc);
1521	host->mmc 	= mmc;
1522	host->pdev	= pdev;
1523
1524	if (pdev->dev.of_node)
1525		ret = s3cmci_probe_dt(host);
1526	else
1527		ret = s3cmci_probe_pdata(host);
1528
1529	if (ret)
1530		goto probe_free_host;
1531
1532	host->pdata = pdev->dev.platform_data;
 
 
 
 
1533
1534	spin_lock_init(&host->complete_lock);
1535	tasklet_setup(&host->pio_tasklet, pio_tasklet);
1536
1537	if (host->is2440) {
1538		host->sdiimsk	= S3C2440_SDIIMSK;
1539		host->sdidata	= S3C2440_SDIDATA;
1540		host->clk_div	= 1;
1541	} else {
1542		host->sdiimsk	= S3C2410_SDIIMSK;
1543		host->sdidata	= S3C2410_SDIDATA;
1544		host->clk_div	= 2;
1545	}
1546
1547	host->complete_what 	= COMPLETION_NONE;
1548	host->pio_active 	= XFER_NONE;
1549
 
 
 
 
1550	host->mem = platform_get_resource(pdev, IORESOURCE_MEM, 0);
1551	if (!host->mem) {
1552		dev_err(&pdev->dev,
1553			"failed to get io memory region resource.\n");
1554
1555		ret = -ENOENT;
1556		goto probe_free_host;
1557	}
1558
1559	host->mem = request_mem_region(host->mem->start,
1560				       resource_size(host->mem), pdev->name);
1561
1562	if (!host->mem) {
1563		dev_err(&pdev->dev, "failed to request io memory region.\n");
1564		ret = -ENOENT;
1565		goto probe_free_host;
1566	}
1567
1568	host->base = ioremap(host->mem->start, resource_size(host->mem));
1569	if (!host->base) {
1570		dev_err(&pdev->dev, "failed to ioremap() io memory region.\n");
1571		ret = -EINVAL;
1572		goto probe_free_mem_region;
1573	}
1574
1575	host->irq = platform_get_irq(pdev, 0);
1576	if (host->irq <= 0) {
 
1577		ret = -EINVAL;
1578		goto probe_iounmap;
1579	}
1580
1581	if (request_irq(host->irq, s3cmci_irq, IRQF_NO_AUTOEN, DRIVER_NAME, host)) {
1582		dev_err(&pdev->dev, "failed to request mci interrupt.\n");
1583		ret = -ENOENT;
1584		goto probe_iounmap;
1585	}
1586
 
 
 
 
 
1587	host->irq_state = false;
1588
1589	/* Depending on the dma state, get a DMA channel to use. */
 
 
 
 
 
1590
1591	if (s3cmci_host_usedma(host)) {
1592		host->dma = dma_request_chan(&pdev->dev, "rx-tx");
1593		ret = PTR_ERR_OR_ZERO(host->dma);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1594		if (ret) {
 
 
 
 
 
 
 
 
 
 
 
 
 
1595			dev_err(&pdev->dev, "cannot get DMA channel.\n");
1596			goto probe_free_irq;
 
 
 
 
 
 
1597		}
1598	}
1599
1600	host->clk = clk_get(&pdev->dev, "sdi");
1601	if (IS_ERR(host->clk)) {
1602		dev_err(&pdev->dev, "failed to find clock source.\n");
1603		ret = PTR_ERR(host->clk);
1604		host->clk = NULL;
1605		goto probe_free_dma;
1606	}
1607
1608	ret = clk_prepare_enable(host->clk);
1609	if (ret) {
1610		dev_err(&pdev->dev, "failed to enable clock source.\n");
1611		goto clk_free;
1612	}
1613
1614	host->clk_rate = clk_get_rate(host->clk);
1615
1616	mmc->ops 	= &s3cmci_ops;
1617	mmc->ocr_avail	= MMC_VDD_32_33 | MMC_VDD_33_34;
1618#ifdef CONFIG_MMC_S3C_HW_SDIO_IRQ
1619	mmc->caps	= MMC_CAP_4_BIT_DATA | MMC_CAP_SDIO_IRQ;
1620#else
1621	mmc->caps	= MMC_CAP_4_BIT_DATA;
1622#endif
1623	mmc->f_min 	= host->clk_rate / (host->clk_div * 256);
1624	mmc->f_max 	= host->clk_rate / host->clk_div;
1625
1626	if (host->pdata->ocr_avail)
1627		mmc->ocr_avail = host->pdata->ocr_avail;
1628
1629	mmc->max_blk_count	= 4095;
1630	mmc->max_blk_size	= 4095;
1631	mmc->max_req_size	= 4095 * 512;
1632	mmc->max_seg_size	= mmc->max_req_size;
1633
1634	mmc->max_segs		= 128;
1635
1636	dbg(host, dbg_debug,
1637	    "probe: mode:%s mapped mci_base:%p irq:%u irq_cd:%u dma:%p.\n",
1638	    (host->is2440?"2440":""),
1639	    host->base, host->irq, host->irq_cd, host->dma);
1640
1641	ret = s3cmci_cpufreq_register(host);
1642	if (ret) {
1643		dev_err(&pdev->dev, "failed to register cpufreq\n");
1644		goto free_dmabuf;
1645	}
1646
1647	ret = mmc_add_host(mmc);
1648	if (ret) {
1649		dev_err(&pdev->dev, "failed to add mmc host.\n");
1650		goto free_cpufreq;
1651	}
1652
1653	s3cmci_debugfs_attach(host);
1654
1655	platform_set_drvdata(pdev, mmc);
1656	dev_info(&pdev->dev, "%s - using %s, %s SDIO IRQ\n", mmc_hostname(mmc),
1657		 s3cmci_host_usedma(host) ? "dma" : "pio",
1658		 mmc->caps & MMC_CAP_SDIO_IRQ ? "hw" : "sw");
1659
1660	return 0;
1661
1662 free_cpufreq:
1663	s3cmci_cpufreq_deregister(host);
1664
1665 free_dmabuf:
1666	clk_disable_unprepare(host->clk);
1667
1668 clk_free:
1669	clk_put(host->clk);
1670
1671 probe_free_dma:
1672	if (s3cmci_host_usedma(host))
1673		dma_release_channel(host->dma);
 
 
 
 
 
 
 
 
 
 
 
 
1674
1675 probe_free_irq:
1676	free_irq(host->irq, host);
1677
1678 probe_iounmap:
1679	iounmap(host->base);
1680
1681 probe_free_mem_region:
1682	release_mem_region(host->mem->start, resource_size(host->mem));
1683
 
 
 
 
1684 probe_free_host:
1685	mmc_free_host(mmc);
1686
1687 probe_out:
1688	return ret;
1689}
1690
1691static void s3cmci_shutdown(struct platform_device *pdev)
1692{
1693	struct mmc_host	*mmc = platform_get_drvdata(pdev);
1694	struct s3cmci_host *host = mmc_priv(mmc);
1695
1696	if (host->irq_cd >= 0)
1697		free_irq(host->irq_cd, host);
1698
1699	s3cmci_debugfs_remove(host);
1700	s3cmci_cpufreq_deregister(host);
1701	mmc_remove_host(mmc);
1702	clk_disable_unprepare(host->clk);
1703}
1704
1705static int s3cmci_remove(struct platform_device *pdev)
1706{
1707	struct mmc_host		*mmc  = platform_get_drvdata(pdev);
1708	struct s3cmci_host	*host = mmc_priv(mmc);
 
 
1709
1710	s3cmci_shutdown(pdev);
1711
1712	clk_put(host->clk);
1713
1714	tasklet_disable(&host->pio_tasklet);
1715
1716	if (s3cmci_host_usedma(host))
1717		dma_release_channel(host->dma);
1718
1719	free_irq(host->irq, host);
1720
 
 
 
 
 
 
 
 
 
 
1721	iounmap(host->base);
1722	release_mem_region(host->mem->start, resource_size(host->mem));
1723
1724	mmc_free_host(mmc);
1725	return 0;
1726}
1727
1728static const struct of_device_id s3cmci_dt_match[] = {
1729	{
1730		.compatible = "samsung,s3c2410-sdi",
1731		.data = (void *)0,
1732	},
1733	{
1734		.compatible = "samsung,s3c2412-sdi",
1735		.data = (void *)1,
1736	},
1737	{
1738		.compatible = "samsung,s3c2440-sdi",
1739		.data = (void *)1,
1740	},
1741	{ /* sentinel */ },
1742};
1743MODULE_DEVICE_TABLE(of, s3cmci_dt_match);
1744
1745static const struct platform_device_id s3cmci_driver_ids[] = {
1746	{
1747		.name	= "s3c2410-sdi",
1748		.driver_data	= 0,
1749	}, {
1750		.name	= "s3c2412-sdi",
1751		.driver_data	= 1,
1752	}, {
1753		.name	= "s3c2440-sdi",
1754		.driver_data	= 1,
1755	},
1756	{ }
1757};
1758
1759MODULE_DEVICE_TABLE(platform, s3cmci_driver_ids);
1760
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1761static struct platform_driver s3cmci_driver = {
1762	.driver	= {
1763		.name	= "s3c-sdi",
1764		.probe_type = PROBE_PREFER_ASYNCHRONOUS,
1765		.of_match_table = s3cmci_dt_match,
1766	},
1767	.id_table	= s3cmci_driver_ids,
1768	.probe		= s3cmci_probe,
1769	.remove		= s3cmci_remove,
1770	.shutdown	= s3cmci_shutdown,
1771};
1772
1773module_platform_driver(s3cmci_driver);
1774
1775MODULE_DESCRIPTION("Samsung S3C MMC/SD Card Interface driver");
1776MODULE_LICENSE("GPL v2");
1777MODULE_AUTHOR("Thomas Kleffel <tk@maintech.de>, Ben Dooks <ben-linux@fluff.org>");
v3.5.6
 
   1/*
   2 *  linux/drivers/mmc/s3cmci.h - Samsung S3C MCI driver
   3 *
   4 *  Copyright (C) 2004-2006 maintech GmbH, Thomas Kleffel <tk@maintech.de>
   5 *
   6 * Current driver maintained by Ben Dooks and Simtec Electronics
   7 *  Copyright (C) 2008 Simtec Electronics <ben-linux@fluff.org>
   8 *
   9 * This program is free software; you can redistribute it and/or modify
  10 * it under the terms of the GNU General Public License version 2 as
  11 * published by the Free Software Foundation.
  12 */
  13
  14#include <linux/module.h>
 
  15#include <linux/dma-mapping.h>
  16#include <linux/clk.h>
  17#include <linux/mmc/host.h>
  18#include <linux/platform_device.h>
  19#include <linux/cpufreq.h>
  20#include <linux/debugfs.h>
  21#include <linux/seq_file.h>
  22#include <linux/gpio.h>
 
  23#include <linux/irq.h>
  24#include <linux/io.h>
  25
  26#include <mach/dma.h>
  27
  28#include <mach/regs-sdi.h>
  29#include <mach/regs-gpio.h>
  30
  31#include <plat/mci.h>
  32
  33#include "s3cmci.h"
  34
  35#define DRIVER_NAME "s3c-mci"
  36
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
  37enum dbg_channels {
  38	dbg_err   = (1 << 0),
  39	dbg_debug = (1 << 1),
  40	dbg_info  = (1 << 2),
  41	dbg_irq   = (1 << 3),
  42	dbg_sg    = (1 << 4),
  43	dbg_dma   = (1 << 5),
  44	dbg_pio   = (1 << 6),
  45	dbg_fail  = (1 << 7),
  46	dbg_conf  = (1 << 8),
  47};
  48
  49static const int dbgmap_err   = dbg_fail;
  50static const int dbgmap_info  = dbg_info | dbg_conf;
  51static const int dbgmap_debug = dbg_err | dbg_debug;
  52
  53#define dbg(host, channels, args...)		  \
  54	do {					  \
  55	if (dbgmap_err & channels) 		  \
  56		dev_err(&host->pdev->dev, args);  \
  57	else if (dbgmap_info & channels)	  \
  58		dev_info(&host->pdev->dev, args); \
  59	else if (dbgmap_debug & channels)	  \
  60		dev_dbg(&host->pdev->dev, args);  \
  61	} while (0)
  62
  63static struct s3c2410_dma_client s3cmci_dma_client = {
  64	.name		= "s3c-mci",
  65};
  66
  67static void finalize_request(struct s3cmci_host *host);
  68static void s3cmci_send_request(struct mmc_host *mmc);
  69static void s3cmci_reset(struct s3cmci_host *host);
  70
  71#ifdef CONFIG_MMC_DEBUG
  72
  73static void dbg_dumpregs(struct s3cmci_host *host, char *prefix)
  74{
  75	u32 con, pre, cmdarg, cmdcon, cmdsta, r0, r1, r2, r3, timer, bsize;
  76	u32 datcon, datcnt, datsta, fsta, imask;
  77
  78	con 	= readl(host->base + S3C2410_SDICON);
  79	pre 	= readl(host->base + S3C2410_SDIPRE);
  80	cmdarg 	= readl(host->base + S3C2410_SDICMDARG);
  81	cmdcon 	= readl(host->base + S3C2410_SDICMDCON);
  82	cmdsta 	= readl(host->base + S3C2410_SDICMDSTAT);
  83	r0 	= readl(host->base + S3C2410_SDIRSP0);
  84	r1 	= readl(host->base + S3C2410_SDIRSP1);
  85	r2 	= readl(host->base + S3C2410_SDIRSP2);
  86	r3 	= readl(host->base + S3C2410_SDIRSP3);
  87	timer 	= readl(host->base + S3C2410_SDITIMER);
  88	bsize 	= readl(host->base + S3C2410_SDIBSIZE);
  89	datcon 	= readl(host->base + S3C2410_SDIDCON);
  90	datcnt 	= readl(host->base + S3C2410_SDIDCNT);
  91	datsta 	= readl(host->base + S3C2410_SDIDSTA);
  92	fsta 	= readl(host->base + S3C2410_SDIFSTA);
  93	imask   = readl(host->base + host->sdiimsk);
  94
  95	dbg(host, dbg_debug, "%s  CON:[%08x]  PRE:[%08x]  TMR:[%08x]\n",
  96				prefix, con, pre, timer);
  97
  98	dbg(host, dbg_debug, "%s CCON:[%08x] CARG:[%08x] CSTA:[%08x]\n",
  99				prefix, cmdcon, cmdarg, cmdsta);
 100
 101	dbg(host, dbg_debug, "%s DCON:[%08x] FSTA:[%08x]"
 102			       " DSTA:[%08x] DCNT:[%08x]\n",
 103				prefix, datcon, fsta, datsta, datcnt);
 104
 105	dbg(host, dbg_debug, "%s   R0:[%08x]   R1:[%08x]"
 106			       "   R2:[%08x]   R3:[%08x]\n",
 107				prefix, r0, r1, r2, r3);
 108}
 109
 110static void prepare_dbgmsg(struct s3cmci_host *host, struct mmc_command *cmd,
 111			   int stop)
 112{
 113	snprintf(host->dbgmsg_cmd, 300,
 114		 "#%u%s op:%i arg:0x%08x flags:0x08%x retries:%u",
 115		 host->ccnt, (stop ? " (STOP)" : ""),
 116		 cmd->opcode, cmd->arg, cmd->flags, cmd->retries);
 117
 118	if (cmd->data) {
 119		snprintf(host->dbgmsg_dat, 300,
 120			 "#%u bsize:%u blocks:%u bytes:%u",
 121			 host->dcnt, cmd->data->blksz,
 122			 cmd->data->blocks,
 123			 cmd->data->blocks * cmd->data->blksz);
 124	} else {
 125		host->dbgmsg_dat[0] = '\0';
 126	}
 127}
 128
 129static void dbg_dumpcmd(struct s3cmci_host *host, struct mmc_command *cmd,
 130			int fail)
 131{
 132	unsigned int dbglvl = fail ? dbg_fail : dbg_debug;
 133
 134	if (!cmd)
 135		return;
 136
 137	if (cmd->error == 0) {
 138		dbg(host, dbglvl, "CMD[OK] %s R0:0x%08x\n",
 139			host->dbgmsg_cmd, cmd->resp[0]);
 140	} else {
 141		dbg(host, dbglvl, "CMD[ERR %i] %s Status:%s\n",
 142			cmd->error, host->dbgmsg_cmd, host->status);
 143	}
 144
 145	if (!cmd->data)
 146		return;
 147
 148	if (cmd->data->error == 0) {
 149		dbg(host, dbglvl, "DAT[OK] %s\n", host->dbgmsg_dat);
 150	} else {
 151		dbg(host, dbglvl, "DAT[ERR %i] %s DCNT:0x%08x\n",
 152			cmd->data->error, host->dbgmsg_dat,
 153			readl(host->base + S3C2410_SDIDCNT));
 154	}
 155}
 156#else
 157static void dbg_dumpcmd(struct s3cmci_host *host,
 158			struct mmc_command *cmd, int fail) { }
 159
 160static void prepare_dbgmsg(struct s3cmci_host *host, struct mmc_command *cmd,
 161			   int stop) { }
 162
 163static void dbg_dumpregs(struct s3cmci_host *host, char *prefix) { }
 164
 165#endif /* CONFIG_MMC_DEBUG */
 166
 167/**
 168 * s3cmci_host_usedma - return whether the host is using dma or pio
 169 * @host: The host state
 170 *
 171 * Return true if the host is using DMA to transfer data, else false
 172 * to use PIO mode. Will return static data depending on the driver
 173 * configuration.
 174 */
 175static inline bool s3cmci_host_usedma(struct s3cmci_host *host)
 176{
 177#ifdef CONFIG_MMC_S3C_PIO
 178	return false;
 179#elif defined(CONFIG_MMC_S3C_DMA)
 180	return true;
 181#else
 182	return host->dodma;
 183#endif
 184}
 185
 186/**
 187 * s3cmci_host_canpio - return true if host has pio code available
 188 *
 189 * Return true if the driver has been compiled with the PIO support code
 190 * available.
 191 */
 192static inline bool s3cmci_host_canpio(void)
 193{
 194#ifdef CONFIG_MMC_S3C_PIO
 195	return true;
 196#else
 197	return false;
 198#endif
 199}
 200
 201static inline u32 enable_imask(struct s3cmci_host *host, u32 imask)
 202{
 203	u32 newmask;
 204
 205	newmask = readl(host->base + host->sdiimsk);
 206	newmask |= imask;
 207
 208	writel(newmask, host->base + host->sdiimsk);
 209
 210	return newmask;
 211}
 212
 213static inline u32 disable_imask(struct s3cmci_host *host, u32 imask)
 214{
 215	u32 newmask;
 216
 217	newmask = readl(host->base + host->sdiimsk);
 218	newmask &= ~imask;
 219
 220	writel(newmask, host->base + host->sdiimsk);
 221
 222	return newmask;
 223}
 224
 225static inline void clear_imask(struct s3cmci_host *host)
 226{
 227	u32 mask = readl(host->base + host->sdiimsk);
 228
 229	/* preserve the SDIO IRQ mask state */
 230	mask &= S3C2410_SDIIMSK_SDIOIRQ;
 231	writel(mask, host->base + host->sdiimsk);
 232}
 233
 234/**
 235 * s3cmci_check_sdio_irq - test whether the SDIO IRQ is being signalled
 236 * @host: The host to check.
 237 *
 238 * Test to see if the SDIO interrupt is being signalled in case the
 239 * controller has failed to re-detect a card interrupt. Read GPE8 and
 240 * see if it is low and if so, signal a SDIO interrupt.
 241 *
 242 * This is currently called if a request is finished (we assume that the
 243 * bus is now idle) and when the SDIO IRQ is enabled in case the IRQ is
 244 * already being indicated.
 245*/
 246static void s3cmci_check_sdio_irq(struct s3cmci_host *host)
 247{
 248	if (host->sdio_irqen) {
 249		if (gpio_get_value(S3C2410_GPE(8)) == 0) {
 
 250			pr_debug("%s: signalling irq\n", __func__);
 251			mmc_signal_sdio_irq(host->mmc);
 252		}
 253	}
 254}
 255
 256static inline int get_data_buffer(struct s3cmci_host *host,
 257				  u32 *bytes, u32 **pointer)
 258{
 259	struct scatterlist *sg;
 260
 261	if (host->pio_active == XFER_NONE)
 262		return -EINVAL;
 263
 264	if ((!host->mrq) || (!host->mrq->data))
 265		return -EINVAL;
 266
 267	if (host->pio_sgptr >= host->mrq->data->sg_len) {
 268		dbg(host, dbg_debug, "no more buffers (%i/%i)\n",
 269		      host->pio_sgptr, host->mrq->data->sg_len);
 270		return -EBUSY;
 271	}
 272	sg = &host->mrq->data->sg[host->pio_sgptr];
 273
 274	*bytes = sg->length;
 275	*pointer = sg_virt(sg);
 276
 277	host->pio_sgptr++;
 278
 279	dbg(host, dbg_sg, "new buffer (%i/%i)\n",
 280	    host->pio_sgptr, host->mrq->data->sg_len);
 281
 282	return 0;
 283}
 284
 285static inline u32 fifo_count(struct s3cmci_host *host)
 286{
 287	u32 fifostat = readl(host->base + S3C2410_SDIFSTA);
 288
 289	fifostat &= S3C2410_SDIFSTA_COUNTMASK;
 290	return fifostat;
 291}
 292
 293static inline u32 fifo_free(struct s3cmci_host *host)
 294{
 295	u32 fifostat = readl(host->base + S3C2410_SDIFSTA);
 296
 297	fifostat &= S3C2410_SDIFSTA_COUNTMASK;
 298	return 63 - fifostat;
 299}
 300
 301/**
 302 * s3cmci_enable_irq - enable IRQ, after having disabled it.
 303 * @host: The device state.
 304 * @more: True if more IRQs are expected from transfer.
 305 *
 306 * Enable the main IRQ if needed after it has been disabled.
 307 *
 308 * The IRQ can be one of the following states:
 309 *	- disabled during IDLE
 310 *	- disabled whilst processing data
 311 *	- enabled during transfer
 312 *	- enabled whilst awaiting SDIO interrupt detection
 313 */
 314static void s3cmci_enable_irq(struct s3cmci_host *host, bool more)
 315{
 316	unsigned long flags;
 317	bool enable = false;
 318
 319	local_irq_save(flags);
 320
 321	host->irq_enabled = more;
 322	host->irq_disabled = false;
 323
 324	enable = more | host->sdio_irqen;
 325
 326	if (host->irq_state != enable) {
 327		host->irq_state = enable;
 328
 329		if (enable)
 330			enable_irq(host->irq);
 331		else
 332			disable_irq(host->irq);
 333	}
 334
 335	local_irq_restore(flags);
 336}
 337
 338/**
 339 *
 340 */
 341static void s3cmci_disable_irq(struct s3cmci_host *host, bool transfer)
 342{
 343	unsigned long flags;
 344
 345	local_irq_save(flags);
 346
 347	/* pr_debug("%s: transfer %d\n", __func__, transfer); */
 348
 349	host->irq_disabled = transfer;
 350
 351	if (transfer && host->irq_state) {
 352		host->irq_state = false;
 353		disable_irq(host->irq);
 354	}
 355
 356	local_irq_restore(flags);
 357}
 358
 359static void do_pio_read(struct s3cmci_host *host)
 360{
 361	int res;
 362	u32 fifo;
 363	u32 *ptr;
 364	u32 fifo_words;
 365	void __iomem *from_ptr;
 366
 367	/* write real prescaler to host, it might be set slow to fix */
 368	writel(host->prescaler, host->base + S3C2410_SDIPRE);
 369
 370	from_ptr = host->base + host->sdidata;
 371
 372	while ((fifo = fifo_count(host))) {
 373		if (!host->pio_bytes) {
 374			res = get_data_buffer(host, &host->pio_bytes,
 375					      &host->pio_ptr);
 376			if (res) {
 377				host->pio_active = XFER_NONE;
 378				host->complete_what = COMPLETION_FINALIZE;
 379
 380				dbg(host, dbg_pio, "pio_read(): "
 381				    "complete (no more data).\n");
 382				return;
 383			}
 384
 385			dbg(host, dbg_pio,
 386			    "pio_read(): new target: [%i]@[%p]\n",
 387			    host->pio_bytes, host->pio_ptr);
 388		}
 389
 390		dbg(host, dbg_pio,
 391		    "pio_read(): fifo:[%02i] buffer:[%03i] dcnt:[%08X]\n",
 392		    fifo, host->pio_bytes,
 393		    readl(host->base + S3C2410_SDIDCNT));
 394
 395		/* If we have reached the end of the block, we can
 396		 * read a word and get 1 to 3 bytes.  If we in the
 397		 * middle of the block, we have to read full words,
 398		 * otherwise we will write garbage, so round down to
 399		 * an even multiple of 4. */
 400		if (fifo >= host->pio_bytes)
 401			fifo = host->pio_bytes;
 402		else
 403			fifo -= fifo & 3;
 404
 405		host->pio_bytes -= fifo;
 406		host->pio_count += fifo;
 407
 408		fifo_words = fifo >> 2;
 409		ptr = host->pio_ptr;
 410		while (fifo_words--)
 411			*ptr++ = readl(from_ptr);
 412		host->pio_ptr = ptr;
 413
 414		if (fifo & 3) {
 415			u32 n = fifo & 3;
 416			u32 data = readl(from_ptr);
 417			u8 *p = (u8 *)host->pio_ptr;
 418
 419			while (n--) {
 420				*p++ = data;
 421				data >>= 8;
 422			}
 423		}
 424	}
 425
 426	if (!host->pio_bytes) {
 427		res = get_data_buffer(host, &host->pio_bytes, &host->pio_ptr);
 428		if (res) {
 429			dbg(host, dbg_pio,
 430			    "pio_read(): complete (no more buffers).\n");
 431			host->pio_active = XFER_NONE;
 432			host->complete_what = COMPLETION_FINALIZE;
 433
 434			return;
 435		}
 436	}
 437
 438	enable_imask(host,
 439		     S3C2410_SDIIMSK_RXFIFOHALF | S3C2410_SDIIMSK_RXFIFOLAST);
 440}
 441
 442static void do_pio_write(struct s3cmci_host *host)
 443{
 444	void __iomem *to_ptr;
 445	int res;
 446	u32 fifo;
 447	u32 *ptr;
 448
 449	to_ptr = host->base + host->sdidata;
 450
 451	while ((fifo = fifo_free(host)) > 3) {
 452		if (!host->pio_bytes) {
 453			res = get_data_buffer(host, &host->pio_bytes,
 454							&host->pio_ptr);
 455			if (res) {
 456				dbg(host, dbg_pio,
 457				    "pio_write(): complete (no more data).\n");
 458				host->pio_active = XFER_NONE;
 459
 460				return;
 461			}
 462
 463			dbg(host, dbg_pio,
 464			    "pio_write(): new source: [%i]@[%p]\n",
 465			    host->pio_bytes, host->pio_ptr);
 466
 467		}
 468
 469		/* If we have reached the end of the block, we have to
 470		 * write exactly the remaining number of bytes.  If we
 471		 * in the middle of the block, we have to write full
 472		 * words, so round down to an even multiple of 4. */
 473		if (fifo >= host->pio_bytes)
 474			fifo = host->pio_bytes;
 475		else
 476			fifo -= fifo & 3;
 477
 478		host->pio_bytes -= fifo;
 479		host->pio_count += fifo;
 480
 481		fifo = (fifo + 3) >> 2;
 482		ptr = host->pio_ptr;
 483		while (fifo--)
 484			writel(*ptr++, to_ptr);
 485		host->pio_ptr = ptr;
 486	}
 487
 488	enable_imask(host, S3C2410_SDIIMSK_TXFIFOHALF);
 489}
 490
 491static void pio_tasklet(unsigned long data)
 492{
 493	struct s3cmci_host *host = (struct s3cmci_host *) data;
 494
 495	s3cmci_disable_irq(host, true);
 496
 497	if (host->pio_active == XFER_WRITE)
 498		do_pio_write(host);
 499
 500	if (host->pio_active == XFER_READ)
 501		do_pio_read(host);
 502
 503	if (host->complete_what == COMPLETION_FINALIZE) {
 504		clear_imask(host);
 505		if (host->pio_active != XFER_NONE) {
 506			dbg(host, dbg_err, "unfinished %s "
 507			    "- pio_count:[%u] pio_bytes:[%u]\n",
 508			    (host->pio_active == XFER_READ) ? "read" : "write",
 509			    host->pio_count, host->pio_bytes);
 510
 511			if (host->mrq->data)
 512				host->mrq->data->error = -EINVAL;
 513		}
 514
 515		s3cmci_enable_irq(host, false);
 516		finalize_request(host);
 517	} else
 518		s3cmci_enable_irq(host, true);
 519}
 520
 521/*
 522 * ISR for SDI Interface IRQ
 523 * Communication between driver and ISR works as follows:
 524 *   host->mrq 			points to current request
 525 *   host->complete_what	Indicates when the request is considered done
 526 *     COMPLETION_CMDSENT	  when the command was sent
 527 *     COMPLETION_RSPFIN          when a response was received
 528 *     COMPLETION_XFERFINISH	  when the data transfer is finished
 529 *     COMPLETION_XFERFINISH_RSPFIN both of the above.
 530 *   host->complete_request	is the completion-object the driver waits for
 531 *
 532 * 1) Driver sets up host->mrq and host->complete_what
 533 * 2) Driver prepares the transfer
 534 * 3) Driver enables interrupts
 535 * 4) Driver starts transfer
 536 * 5) Driver waits for host->complete_rquest
 537 * 6) ISR checks for request status (errors and success)
 538 * 6) ISR sets host->mrq->cmd->error and host->mrq->data->error
 539 * 7) ISR completes host->complete_request
 540 * 8) ISR disables interrupts
 541 * 9) Driver wakes up and takes care of the request
 542 *
 543 * Note: "->error"-fields are expected to be set to 0 before the request
 544 *       was issued by mmc.c - therefore they are only set, when an error
 545 *       contition comes up
 546 */
 547
 548static irqreturn_t s3cmci_irq(int irq, void *dev_id)
 549{
 550	struct s3cmci_host *host = dev_id;
 551	struct mmc_command *cmd;
 552	u32 mci_csta, mci_dsta, mci_fsta, mci_dcnt, mci_imsk;
 553	u32 mci_cclear = 0, mci_dclear;
 554	unsigned long iflags;
 555
 556	mci_dsta = readl(host->base + S3C2410_SDIDSTA);
 557	mci_imsk = readl(host->base + host->sdiimsk);
 558
 559	if (mci_dsta & S3C2410_SDIDSTA_SDIOIRQDETECT) {
 560		if (mci_imsk & S3C2410_SDIIMSK_SDIOIRQ) {
 561			mci_dclear = S3C2410_SDIDSTA_SDIOIRQDETECT;
 562			writel(mci_dclear, host->base + S3C2410_SDIDSTA);
 563
 564			mmc_signal_sdio_irq(host->mmc);
 565			return IRQ_HANDLED;
 566		}
 567	}
 568
 569	spin_lock_irqsave(&host->complete_lock, iflags);
 570
 571	mci_csta = readl(host->base + S3C2410_SDICMDSTAT);
 572	mci_dcnt = readl(host->base + S3C2410_SDIDCNT);
 573	mci_fsta = readl(host->base + S3C2410_SDIFSTA);
 574	mci_dclear = 0;
 575
 576	if ((host->complete_what == COMPLETION_NONE) ||
 577	    (host->complete_what == COMPLETION_FINALIZE)) {
 578		host->status = "nothing to complete";
 579		clear_imask(host);
 580		goto irq_out;
 581	}
 582
 583	if (!host->mrq) {
 584		host->status = "no active mrq";
 585		clear_imask(host);
 586		goto irq_out;
 587	}
 588
 589	cmd = host->cmd_is_stop ? host->mrq->stop : host->mrq->cmd;
 590
 591	if (!cmd) {
 592		host->status = "no active cmd";
 593		clear_imask(host);
 594		goto irq_out;
 595	}
 596
 597	if (!s3cmci_host_usedma(host)) {
 598		if ((host->pio_active == XFER_WRITE) &&
 599		    (mci_fsta & S3C2410_SDIFSTA_TFDET)) {
 600
 601			disable_imask(host, S3C2410_SDIIMSK_TXFIFOHALF);
 602			tasklet_schedule(&host->pio_tasklet);
 603			host->status = "pio tx";
 604		}
 605
 606		if ((host->pio_active == XFER_READ) &&
 607		    (mci_fsta & S3C2410_SDIFSTA_RFDET)) {
 608
 609			disable_imask(host,
 610				      S3C2410_SDIIMSK_RXFIFOHALF |
 611				      S3C2410_SDIIMSK_RXFIFOLAST);
 612
 613			tasklet_schedule(&host->pio_tasklet);
 614			host->status = "pio rx";
 615		}
 616	}
 617
 618	if (mci_csta & S3C2410_SDICMDSTAT_CMDTIMEOUT) {
 619		dbg(host, dbg_err, "CMDSTAT: error CMDTIMEOUT\n");
 620		cmd->error = -ETIMEDOUT;
 621		host->status = "error: command timeout";
 622		goto fail_transfer;
 623	}
 624
 625	if (mci_csta & S3C2410_SDICMDSTAT_CMDSENT) {
 626		if (host->complete_what == COMPLETION_CMDSENT) {
 627			host->status = "ok: command sent";
 628			goto close_transfer;
 629		}
 630
 631		mci_cclear |= S3C2410_SDICMDSTAT_CMDSENT;
 632	}
 633
 634	if (mci_csta & S3C2410_SDICMDSTAT_CRCFAIL) {
 635		if (cmd->flags & MMC_RSP_CRC) {
 636			if (host->mrq->cmd->flags & MMC_RSP_136) {
 637				dbg(host, dbg_irq,
 638				    "fixup: ignore CRC fail with long rsp\n");
 639			} else {
 640				/* note, we used to fail the transfer
 641				 * here, but it seems that this is just
 642				 * the hardware getting it wrong.
 643				 *
 644				 * cmd->error = -EILSEQ;
 645				 * host->status = "error: bad command crc";
 646				 * goto fail_transfer;
 647				*/
 648			}
 649		}
 650
 651		mci_cclear |= S3C2410_SDICMDSTAT_CRCFAIL;
 652	}
 653
 654	if (mci_csta & S3C2410_SDICMDSTAT_RSPFIN) {
 655		if (host->complete_what == COMPLETION_RSPFIN) {
 656			host->status = "ok: command response received";
 657			goto close_transfer;
 658		}
 659
 660		if (host->complete_what == COMPLETION_XFERFINISH_RSPFIN)
 661			host->complete_what = COMPLETION_XFERFINISH;
 662
 663		mci_cclear |= S3C2410_SDICMDSTAT_RSPFIN;
 664	}
 665
 666	/* errors handled after this point are only relevant
 667	   when a data transfer is in progress */
 668
 669	if (!cmd->data)
 670		goto clear_status_bits;
 671
 672	/* Check for FIFO failure */
 673	if (host->is2440) {
 674		if (mci_fsta & S3C2440_SDIFSTA_FIFOFAIL) {
 675			dbg(host, dbg_err, "FIFO failure\n");
 676			host->mrq->data->error = -EILSEQ;
 677			host->status = "error: 2440 fifo failure";
 678			goto fail_transfer;
 679		}
 680	} else {
 681		if (mci_dsta & S3C2410_SDIDSTA_FIFOFAIL) {
 682			dbg(host, dbg_err, "FIFO failure\n");
 683			cmd->data->error = -EILSEQ;
 684			host->status = "error:  fifo failure";
 685			goto fail_transfer;
 686		}
 687	}
 688
 689	if (mci_dsta & S3C2410_SDIDSTA_RXCRCFAIL) {
 690		dbg(host, dbg_err, "bad data crc (outgoing)\n");
 691		cmd->data->error = -EILSEQ;
 692		host->status = "error: bad data crc (outgoing)";
 693		goto fail_transfer;
 694	}
 695
 696	if (mci_dsta & S3C2410_SDIDSTA_CRCFAIL) {
 697		dbg(host, dbg_err, "bad data crc (incoming)\n");
 698		cmd->data->error = -EILSEQ;
 699		host->status = "error: bad data crc (incoming)";
 700		goto fail_transfer;
 701	}
 702
 703	if (mci_dsta & S3C2410_SDIDSTA_DATATIMEOUT) {
 704		dbg(host, dbg_err, "data timeout\n");
 705		cmd->data->error = -ETIMEDOUT;
 706		host->status = "error: data timeout";
 707		goto fail_transfer;
 708	}
 709
 710	if (mci_dsta & S3C2410_SDIDSTA_XFERFINISH) {
 711		if (host->complete_what == COMPLETION_XFERFINISH) {
 712			host->status = "ok: data transfer completed";
 713			goto close_transfer;
 714		}
 715
 716		if (host->complete_what == COMPLETION_XFERFINISH_RSPFIN)
 717			host->complete_what = COMPLETION_RSPFIN;
 718
 719		mci_dclear |= S3C2410_SDIDSTA_XFERFINISH;
 720	}
 721
 722clear_status_bits:
 723	writel(mci_cclear, host->base + S3C2410_SDICMDSTAT);
 724	writel(mci_dclear, host->base + S3C2410_SDIDSTA);
 725
 726	goto irq_out;
 727
 728fail_transfer:
 729	host->pio_active = XFER_NONE;
 730
 731close_transfer:
 732	host->complete_what = COMPLETION_FINALIZE;
 733
 734	clear_imask(host);
 735	tasklet_schedule(&host->pio_tasklet);
 736
 737	goto irq_out;
 738
 739irq_out:
 740	dbg(host, dbg_irq,
 741	    "csta:0x%08x dsta:0x%08x fsta:0x%08x dcnt:0x%08x status:%s.\n",
 742	    mci_csta, mci_dsta, mci_fsta, mci_dcnt, host->status);
 743
 744	spin_unlock_irqrestore(&host->complete_lock, iflags);
 745	return IRQ_HANDLED;
 746
 747}
 748
 749/*
 750 * ISR for the CardDetect Pin
 751*/
 752
 753static irqreturn_t s3cmci_irq_cd(int irq, void *dev_id)
 754{
 755	struct s3cmci_host *host = (struct s3cmci_host *)dev_id;
 756
 757	dbg(host, dbg_irq, "card detect\n");
 758
 759	mmc_detect_change(host->mmc, msecs_to_jiffies(500));
 760
 761	return IRQ_HANDLED;
 762}
 763
 764static void s3cmci_dma_done_callback(struct s3c2410_dma_chan *dma_ch,
 765				     void *buf_id, int size,
 766				     enum s3c2410_dma_buffresult result)
 767{
 768	struct s3cmci_host *host = buf_id;
 769	unsigned long iflags;
 770	u32 mci_csta, mci_dsta, mci_fsta, mci_dcnt;
 771
 772	mci_csta = readl(host->base + S3C2410_SDICMDSTAT);
 773	mci_dsta = readl(host->base + S3C2410_SDIDSTA);
 774	mci_fsta = readl(host->base + S3C2410_SDIFSTA);
 775	mci_dcnt = readl(host->base + S3C2410_SDIDCNT);
 776
 777	BUG_ON(!host->mrq);
 778	BUG_ON(!host->mrq->data);
 779	BUG_ON(!host->dmatogo);
 780
 781	spin_lock_irqsave(&host->complete_lock, iflags);
 782
 783	if (result != S3C2410_RES_OK) {
 784		dbg(host, dbg_fail, "DMA FAILED: csta=0x%08x dsta=0x%08x "
 785			"fsta=0x%08x dcnt:0x%08x result:0x%08x toGo:%u\n",
 786			mci_csta, mci_dsta, mci_fsta,
 787			mci_dcnt, result, host->dmatogo);
 788
 789		goto fail_request;
 790	}
 791
 792	host->dmatogo--;
 793	if (host->dmatogo) {
 794		dbg(host, dbg_dma, "DMA DONE  Size:%i DSTA:[%08x] "
 795			"DCNT:[%08x] toGo:%u\n",
 796			size, mci_dsta, mci_dcnt, host->dmatogo);
 797
 798		goto out;
 799	}
 800
 801	dbg(host, dbg_dma, "DMA FINISHED Size:%i DSTA:%08x DCNT:%08x\n",
 802		size, mci_dsta, mci_dcnt);
 803
 804	host->dma_complete = 1;
 805	host->complete_what = COMPLETION_FINALIZE;
 806
 807out:
 808	tasklet_schedule(&host->pio_tasklet);
 809	spin_unlock_irqrestore(&host->complete_lock, iflags);
 810	return;
 811
 812fail_request:
 813	host->mrq->data->error = -EINVAL;
 814	host->complete_what = COMPLETION_FINALIZE;
 815	clear_imask(host);
 816
 817	goto out;
 818}
 819
 820static void finalize_request(struct s3cmci_host *host)
 821{
 822	struct mmc_request *mrq = host->mrq;
 823	struct mmc_command *cmd;
 824	int debug_as_failure = 0;
 825
 826	if (host->complete_what != COMPLETION_FINALIZE)
 827		return;
 828
 829	if (!mrq)
 830		return;
 831	cmd = host->cmd_is_stop ? mrq->stop : mrq->cmd;
 832
 833	if (cmd->data && (cmd->error == 0) &&
 834	    (cmd->data->error == 0)) {
 835		if (s3cmci_host_usedma(host) && (!host->dma_complete)) {
 836			dbg(host, dbg_dma, "DMA Missing (%d)!\n",
 837			    host->dma_complete);
 838			return;
 839		}
 840	}
 841
 842	/* Read response from controller. */
 843	cmd->resp[0] = readl(host->base + S3C2410_SDIRSP0);
 844	cmd->resp[1] = readl(host->base + S3C2410_SDIRSP1);
 845	cmd->resp[2] = readl(host->base + S3C2410_SDIRSP2);
 846	cmd->resp[3] = readl(host->base + S3C2410_SDIRSP3);
 847
 848	writel(host->prescaler, host->base + S3C2410_SDIPRE);
 849
 850	if (cmd->error)
 851		debug_as_failure = 1;
 852
 853	if (cmd->data && cmd->data->error)
 854		debug_as_failure = 1;
 855
 856	dbg_dumpcmd(host, cmd, debug_as_failure);
 857
 858	/* Cleanup controller */
 859	writel(0, host->base + S3C2410_SDICMDARG);
 860	writel(S3C2410_SDIDCON_STOP, host->base + S3C2410_SDIDCON);
 861	writel(0, host->base + S3C2410_SDICMDCON);
 862	clear_imask(host);
 863
 864	if (cmd->data && cmd->error)
 865		cmd->data->error = cmd->error;
 866
 867	if (cmd->data && cmd->data->stop && (!host->cmd_is_stop)) {
 868		host->cmd_is_stop = 1;
 869		s3cmci_send_request(host->mmc);
 870		return;
 871	}
 872
 873	/* If we have no data transfer we are finished here */
 874	if (!mrq->data)
 875		goto request_done;
 876
 877	/* Calculate the amout of bytes transfer if there was no error */
 878	if (mrq->data->error == 0) {
 879		mrq->data->bytes_xfered =
 880			(mrq->data->blocks * mrq->data->blksz);
 881	} else {
 882		mrq->data->bytes_xfered = 0;
 883	}
 884
 885	/* If we had an error while transferring data we flush the
 886	 * DMA channel and the fifo to clear out any garbage. */
 887	if (mrq->data->error != 0) {
 888		if (s3cmci_host_usedma(host))
 889			s3c2410_dma_ctrl(host->dma, S3C2410_DMAOP_FLUSH);
 890
 891		if (host->is2440) {
 892			/* Clear failure register and reset fifo. */
 893			writel(S3C2440_SDIFSTA_FIFORESET |
 894			       S3C2440_SDIFSTA_FIFOFAIL,
 895			       host->base + S3C2410_SDIFSTA);
 896		} else {
 897			u32 mci_con;
 898
 899			/* reset fifo */
 900			mci_con = readl(host->base + S3C2410_SDICON);
 901			mci_con |= S3C2410_SDICON_FIFORESET;
 902
 903			writel(mci_con, host->base + S3C2410_SDICON);
 904		}
 905	}
 906
 907request_done:
 908	host->complete_what = COMPLETION_NONE;
 909	host->mrq = NULL;
 910
 911	s3cmci_check_sdio_irq(host);
 912	mmc_request_done(host->mmc, mrq);
 913}
 914
 915static void s3cmci_dma_setup(struct s3cmci_host *host,
 916			     enum dma_data_direction source)
 917{
 918	static enum dma_data_direction last_source = -1;
 919	static int setup_ok;
 920
 921	if (last_source == source)
 922		return;
 923
 924	last_source = source;
 925
 926	s3c2410_dma_devconfig(host->dma, source,
 927			      host->mem->start + host->sdidata);
 928
 929	if (!setup_ok) {
 930		s3c2410_dma_config(host->dma, 4);
 931		s3c2410_dma_set_buffdone_fn(host->dma,
 932					    s3cmci_dma_done_callback);
 933		s3c2410_dma_setflags(host->dma, S3C2410_DMAF_AUTOSTART);
 934		setup_ok = 1;
 935	}
 936}
 937
 938static void s3cmci_send_command(struct s3cmci_host *host,
 939					struct mmc_command *cmd)
 940{
 941	u32 ccon, imsk;
 942
 943	imsk  = S3C2410_SDIIMSK_CRCSTATUS | S3C2410_SDIIMSK_CMDTIMEOUT |
 944		S3C2410_SDIIMSK_RESPONSEND | S3C2410_SDIIMSK_CMDSENT |
 945		S3C2410_SDIIMSK_RESPONSECRC;
 946
 947	enable_imask(host, imsk);
 948
 949	if (cmd->data)
 950		host->complete_what = COMPLETION_XFERFINISH_RSPFIN;
 951	else if (cmd->flags & MMC_RSP_PRESENT)
 952		host->complete_what = COMPLETION_RSPFIN;
 953	else
 954		host->complete_what = COMPLETION_CMDSENT;
 955
 956	writel(cmd->arg, host->base + S3C2410_SDICMDARG);
 957
 958	ccon  = cmd->opcode & S3C2410_SDICMDCON_INDEX;
 959	ccon |= S3C2410_SDICMDCON_SENDERHOST | S3C2410_SDICMDCON_CMDSTART;
 960
 961	if (cmd->flags & MMC_RSP_PRESENT)
 962		ccon |= S3C2410_SDICMDCON_WAITRSP;
 963
 964	if (cmd->flags & MMC_RSP_136)
 965		ccon |= S3C2410_SDICMDCON_LONGRSP;
 966
 967	writel(ccon, host->base + S3C2410_SDICMDCON);
 968}
 969
 970static int s3cmci_setup_data(struct s3cmci_host *host, struct mmc_data *data)
 971{
 972	u32 dcon, imsk, stoptries = 3;
 973
 974	/* write DCON register */
 975
 976	if (!data) {
 977		writel(0, host->base + S3C2410_SDIDCON);
 978		return 0;
 979	}
 980
 981	if ((data->blksz & 3) != 0) {
 982		/* We cannot deal with unaligned blocks with more than
 983		 * one block being transferred. */
 984
 985		if (data->blocks > 1) {
 986			pr_warning("%s: can't do non-word sized block transfers (blksz %d)\n", __func__, data->blksz);
 
 987			return -EINVAL;
 988		}
 989	}
 990
 991	while (readl(host->base + S3C2410_SDIDSTA) &
 992	       (S3C2410_SDIDSTA_TXDATAON | S3C2410_SDIDSTA_RXDATAON)) {
 993
 994		dbg(host, dbg_err,
 995		    "mci_setup_data() transfer stillin progress.\n");
 996
 997		writel(S3C2410_SDIDCON_STOP, host->base + S3C2410_SDIDCON);
 998		s3cmci_reset(host);
 999
1000		if ((stoptries--) == 0) {
1001			dbg_dumpregs(host, "DRF");
1002			return -EINVAL;
1003		}
1004	}
1005
1006	dcon  = data->blocks & S3C2410_SDIDCON_BLKNUM_MASK;
1007
1008	if (s3cmci_host_usedma(host))
1009		dcon |= S3C2410_SDIDCON_DMAEN;
1010
1011	if (host->bus_width == MMC_BUS_WIDTH_4)
1012		dcon |= S3C2410_SDIDCON_WIDEBUS;
1013
1014	if (!(data->flags & MMC_DATA_STREAM))
1015		dcon |= S3C2410_SDIDCON_BLOCKMODE;
1016
1017	if (data->flags & MMC_DATA_WRITE) {
1018		dcon |= S3C2410_SDIDCON_TXAFTERRESP;
1019		dcon |= S3C2410_SDIDCON_XFER_TXSTART;
1020	}
1021
1022	if (data->flags & MMC_DATA_READ) {
1023		dcon |= S3C2410_SDIDCON_RXAFTERCMD;
1024		dcon |= S3C2410_SDIDCON_XFER_RXSTART;
1025	}
1026
1027	if (host->is2440) {
1028		dcon |= S3C2440_SDIDCON_DS_WORD;
1029		dcon |= S3C2440_SDIDCON_DATSTART;
1030	}
1031
1032	writel(dcon, host->base + S3C2410_SDIDCON);
1033
1034	/* write BSIZE register */
1035
1036	writel(data->blksz, host->base + S3C2410_SDIBSIZE);
1037
1038	/* add to IMASK register */
1039	imsk = S3C2410_SDIIMSK_FIFOFAIL | S3C2410_SDIIMSK_DATACRC |
1040	       S3C2410_SDIIMSK_DATATIMEOUT | S3C2410_SDIIMSK_DATAFINISH;
1041
1042	enable_imask(host, imsk);
1043
1044	/* write TIMER register */
1045
1046	if (host->is2440) {
1047		writel(0x007FFFFF, host->base + S3C2410_SDITIMER);
1048	} else {
1049		writel(0x0000FFFF, host->base + S3C2410_SDITIMER);
1050
1051		/* FIX: set slow clock to prevent timeouts on read */
1052		if (data->flags & MMC_DATA_READ)
1053			writel(0xFF, host->base + S3C2410_SDIPRE);
1054	}
1055
1056	return 0;
1057}
1058
1059#define BOTH_DIR (MMC_DATA_WRITE | MMC_DATA_READ)
1060
1061static int s3cmci_prepare_pio(struct s3cmci_host *host, struct mmc_data *data)
1062{
1063	int rw = (data->flags & MMC_DATA_WRITE) ? 1 : 0;
1064
1065	BUG_ON((data->flags & BOTH_DIR) == BOTH_DIR);
1066
1067	host->pio_sgptr = 0;
1068	host->pio_bytes = 0;
1069	host->pio_count = 0;
1070	host->pio_active = rw ? XFER_WRITE : XFER_READ;
1071
1072	if (rw) {
1073		do_pio_write(host);
1074		enable_imask(host, S3C2410_SDIIMSK_TXFIFOHALF);
1075	} else {
1076		enable_imask(host, S3C2410_SDIIMSK_RXFIFOHALF
1077			     | S3C2410_SDIIMSK_RXFIFOLAST);
1078	}
1079
1080	return 0;
1081}
1082
1083static int s3cmci_prepare_dma(struct s3cmci_host *host, struct mmc_data *data)
1084{
1085	int dma_len, i;
1086	int rw = data->flags & MMC_DATA_WRITE;
 
 
 
 
 
 
 
1087
1088	BUG_ON((data->flags & BOTH_DIR) == BOTH_DIR);
1089
1090	s3cmci_dma_setup(host, rw ? DMA_TO_DEVICE : DMA_FROM_DEVICE);
1091	s3c2410_dma_ctrl(host->dma, S3C2410_DMAOP_FLUSH);
1092
1093	dma_len = dma_map_sg(mmc_dev(host->mmc), data->sg, data->sg_len,
1094			     rw ? DMA_TO_DEVICE : DMA_FROM_DEVICE);
1095
1096	if (dma_len == 0)
1097		return -ENOMEM;
1098
1099	host->dma_complete = 0;
1100	host->dmatogo = dma_len;
1101
1102	for (i = 0; i < dma_len; i++) {
1103		int res;
 
 
 
 
 
 
 
 
1104
1105		dbg(host, dbg_dma, "enqueue %i: %08x@%u\n", i,
1106		    sg_dma_address(&data->sg[i]),
1107		    sg_dma_len(&data->sg[i]));
1108
1109		res = s3c2410_dma_enqueue(host->dma, host,
1110					  sg_dma_address(&data->sg[i]),
1111					  sg_dma_len(&data->sg[i]));
1112
1113		if (res) {
1114			s3c2410_dma_ctrl(host->dma, S3C2410_DMAOP_FLUSH);
1115			return -EBUSY;
1116		}
1117	}
1118
1119	s3c2410_dma_ctrl(host->dma, S3C2410_DMAOP_START);
1120
1121	return 0;
1122}
1123
1124static void s3cmci_send_request(struct mmc_host *mmc)
1125{
1126	struct s3cmci_host *host = mmc_priv(mmc);
1127	struct mmc_request *mrq = host->mrq;
1128	struct mmc_command *cmd = host->cmd_is_stop ? mrq->stop : mrq->cmd;
1129
1130	host->ccnt++;
1131	prepare_dbgmsg(host, cmd, host->cmd_is_stop);
1132
1133	/* Clear command, data and fifo status registers
1134	   Fifo clear only necessary on 2440, but doesn't hurt on 2410
1135	*/
1136	writel(0xFFFFFFFF, host->base + S3C2410_SDICMDSTAT);
1137	writel(0xFFFFFFFF, host->base + S3C2410_SDIDSTA);
1138	writel(0xFFFFFFFF, host->base + S3C2410_SDIFSTA);
1139
1140	if (cmd->data) {
1141		int res = s3cmci_setup_data(host, cmd->data);
1142
1143		host->dcnt++;
1144
1145		if (res) {
1146			dbg(host, dbg_err, "setup data error %d\n", res);
1147			cmd->error = res;
1148			cmd->data->error = res;
1149
1150			mmc_request_done(mmc, mrq);
1151			return;
1152		}
1153
1154		if (s3cmci_host_usedma(host))
1155			res = s3cmci_prepare_dma(host, cmd->data);
1156		else
1157			res = s3cmci_prepare_pio(host, cmd->data);
1158
1159		if (res) {
1160			dbg(host, dbg_err, "data prepare error %d\n", res);
1161			cmd->error = res;
1162			cmd->data->error = res;
1163
1164			mmc_request_done(mmc, mrq);
1165			return;
1166		}
1167	}
1168
1169	/* Send command */
1170	s3cmci_send_command(host, cmd);
1171
1172	/* Enable Interrupt */
1173	s3cmci_enable_irq(host, true);
1174}
1175
1176static int s3cmci_card_present(struct mmc_host *mmc)
1177{
1178	struct s3cmci_host *host = mmc_priv(mmc);
1179	struct s3c24xx_mci_pdata *pdata = host->pdata;
1180	int ret;
1181
1182	if (pdata->no_detect)
1183		return -ENOSYS;
1184
1185	ret = gpio_get_value(pdata->gpio_detect) ? 0 : 1;
1186	return ret ^ pdata->detect_invert;
1187}
1188
1189static void s3cmci_request(struct mmc_host *mmc, struct mmc_request *mrq)
1190{
1191	struct s3cmci_host *host = mmc_priv(mmc);
1192
1193	host->status = "mmc request";
1194	host->cmd_is_stop = 0;
1195	host->mrq = mrq;
1196
1197	if (s3cmci_card_present(mmc) == 0) {
1198		dbg(host, dbg_err, "%s: no medium present\n", __func__);
1199		host->mrq->cmd->error = -ENOMEDIUM;
1200		mmc_request_done(mmc, mrq);
1201	} else
1202		s3cmci_send_request(mmc);
1203}
1204
1205static void s3cmci_set_clk(struct s3cmci_host *host, struct mmc_ios *ios)
1206{
1207	u32 mci_psc;
1208
1209	/* Set clock */
1210	for (mci_psc = 0; mci_psc < 255; mci_psc++) {
1211		host->real_rate = host->clk_rate / (host->clk_div*(mci_psc+1));
1212
1213		if (host->real_rate <= ios->clock)
1214			break;
1215	}
1216
1217	if (mci_psc > 255)
1218		mci_psc = 255;
1219
1220	host->prescaler = mci_psc;
1221	writel(host->prescaler, host->base + S3C2410_SDIPRE);
1222
1223	/* If requested clock is 0, real_rate will be 0, too */
1224	if (ios->clock == 0)
1225		host->real_rate = 0;
1226}
1227
1228static void s3cmci_set_ios(struct mmc_host *mmc, struct mmc_ios *ios)
1229{
1230	struct s3cmci_host *host = mmc_priv(mmc);
1231	u32 mci_con;
1232
1233	/* Set the power state */
1234
1235	mci_con = readl(host->base + S3C2410_SDICON);
1236
1237	switch (ios->power_mode) {
1238	case MMC_POWER_ON:
1239	case MMC_POWER_UP:
1240		s3c2410_gpio_cfgpin(S3C2410_GPE(5), S3C2410_GPE5_SDCLK);
1241		s3c2410_gpio_cfgpin(S3C2410_GPE(6), S3C2410_GPE6_SDCMD);
1242		s3c2410_gpio_cfgpin(S3C2410_GPE(7), S3C2410_GPE7_SDDAT0);
1243		s3c2410_gpio_cfgpin(S3C2410_GPE(8), S3C2410_GPE8_SDDAT1);
1244		s3c2410_gpio_cfgpin(S3C2410_GPE(9), S3C2410_GPE9_SDDAT2);
1245		s3c2410_gpio_cfgpin(S3C2410_GPE(10), S3C2410_GPE10_SDDAT3);
1246
1247		if (host->pdata->set_power)
1248			host->pdata->set_power(ios->power_mode, ios->vdd);
1249
1250		if (!host->is2440)
1251			mci_con |= S3C2410_SDICON_FIFORESET;
1252
1253		break;
1254
1255	case MMC_POWER_OFF:
1256	default:
1257		gpio_direction_output(S3C2410_GPE(5), 0);
1258
1259		if (host->is2440)
1260			mci_con |= S3C2440_SDICON_SDRESET;
1261
1262		if (host->pdata->set_power)
1263			host->pdata->set_power(ios->power_mode, ios->vdd);
1264
1265		break;
1266	}
1267
 
 
 
1268	s3cmci_set_clk(host, ios);
1269
1270	/* Set CLOCK_ENABLE */
1271	if (ios->clock)
1272		mci_con |= S3C2410_SDICON_CLOCKTYPE;
1273	else
1274		mci_con &= ~S3C2410_SDICON_CLOCKTYPE;
1275
1276	writel(mci_con, host->base + S3C2410_SDICON);
1277
1278	if ((ios->power_mode == MMC_POWER_ON) ||
1279	    (ios->power_mode == MMC_POWER_UP)) {
1280		dbg(host, dbg_conf, "running at %lukHz (requested: %ukHz).\n",
1281			host->real_rate/1000, ios->clock/1000);
1282	} else {
1283		dbg(host, dbg_conf, "powered down.\n");
1284	}
1285
1286	host->bus_width = ios->bus_width;
1287}
1288
1289static void s3cmci_reset(struct s3cmci_host *host)
1290{
1291	u32 con = readl(host->base + S3C2410_SDICON);
1292
1293	con |= S3C2440_SDICON_SDRESET;
1294	writel(con, host->base + S3C2410_SDICON);
1295}
1296
1297static int s3cmci_get_ro(struct mmc_host *mmc)
1298{
1299	struct s3cmci_host *host = mmc_priv(mmc);
1300	struct s3c24xx_mci_pdata *pdata = host->pdata;
1301	int ret;
1302
1303	if (pdata->no_wprotect)
1304		return 0;
1305
1306	ret = gpio_get_value(pdata->gpio_wprotect) ? 1 : 0;
1307	ret ^= pdata->wprotect_invert;
1308
1309	return ret;
1310}
1311
1312static void s3cmci_enable_sdio_irq(struct mmc_host *mmc, int enable)
1313{
1314	struct s3cmci_host *host = mmc_priv(mmc);
1315	unsigned long flags;
1316	u32 con;
1317
1318	local_irq_save(flags);
1319
1320	con = readl(host->base + S3C2410_SDICON);
1321	host->sdio_irqen = enable;
1322
1323	if (enable == host->sdio_irqen)
1324		goto same_state;
1325
1326	if (enable) {
1327		con |= S3C2410_SDICON_SDIOIRQ;
1328		enable_imask(host, S3C2410_SDIIMSK_SDIOIRQ);
1329
1330		if (!host->irq_state && !host->irq_disabled) {
1331			host->irq_state = true;
1332			enable_irq(host->irq);
1333		}
1334	} else {
1335		disable_imask(host, S3C2410_SDIIMSK_SDIOIRQ);
1336		con &= ~S3C2410_SDICON_SDIOIRQ;
1337
1338		if (!host->irq_enabled && host->irq_state) {
1339			disable_irq_nosync(host->irq);
1340			host->irq_state = false;
1341		}
1342	}
1343
1344	writel(con, host->base + S3C2410_SDICON);
1345
1346 same_state:
1347	local_irq_restore(flags);
1348
1349	s3cmci_check_sdio_irq(host);
1350}
1351
1352static struct mmc_host_ops s3cmci_ops = {
1353	.request	= s3cmci_request,
1354	.set_ios	= s3cmci_set_ios,
1355	.get_ro		= s3cmci_get_ro,
1356	.get_cd		= s3cmci_card_present,
1357	.enable_sdio_irq = s3cmci_enable_sdio_irq,
1358};
1359
1360static struct s3c24xx_mci_pdata s3cmci_def_pdata = {
1361	/* This is currently here to avoid a number of if (host->pdata)
1362	 * checks. Any zero fields to ensure reasonable defaults are picked. */
1363	 .no_wprotect = 1,
1364	 .no_detect = 1,
1365};
1366
1367#ifdef CONFIG_CPU_FREQ
1368
1369static int s3cmci_cpufreq_transition(struct notifier_block *nb,
1370				     unsigned long val, void *data)
1371{
1372	struct s3cmci_host *host;
1373	struct mmc_host *mmc;
1374	unsigned long newclk;
1375	unsigned long flags;
1376
1377	host = container_of(nb, struct s3cmci_host, freq_transition);
1378	newclk = clk_get_rate(host->clk);
1379	mmc = host->mmc;
1380
1381	if ((val == CPUFREQ_PRECHANGE && newclk > host->clk_rate) ||
1382	    (val == CPUFREQ_POSTCHANGE && newclk < host->clk_rate)) {
1383		spin_lock_irqsave(&mmc->lock, flags);
1384
1385		host->clk_rate = newclk;
1386
1387		if (mmc->ios.power_mode != MMC_POWER_OFF &&
1388		    mmc->ios.clock != 0)
1389			s3cmci_set_clk(host, &mmc->ios);
1390
1391		spin_unlock_irqrestore(&mmc->lock, flags);
1392	}
1393
1394	return 0;
1395}
1396
1397static inline int s3cmci_cpufreq_register(struct s3cmci_host *host)
1398{
1399	host->freq_transition.notifier_call = s3cmci_cpufreq_transition;
1400
1401	return cpufreq_register_notifier(&host->freq_transition,
1402					 CPUFREQ_TRANSITION_NOTIFIER);
1403}
1404
1405static inline void s3cmci_cpufreq_deregister(struct s3cmci_host *host)
1406{
1407	cpufreq_unregister_notifier(&host->freq_transition,
1408				    CPUFREQ_TRANSITION_NOTIFIER);
1409}
1410
1411#else
1412static inline int s3cmci_cpufreq_register(struct s3cmci_host *host)
1413{
1414	return 0;
1415}
1416
1417static inline void s3cmci_cpufreq_deregister(struct s3cmci_host *host)
1418{
1419}
1420#endif
1421
1422
1423#ifdef CONFIG_DEBUG_FS
1424
1425static int s3cmci_state_show(struct seq_file *seq, void *v)
1426{
1427	struct s3cmci_host *host = seq->private;
1428
1429	seq_printf(seq, "Register base = 0x%08x\n", (u32)host->base);
1430	seq_printf(seq, "Clock rate = %ld\n", host->clk_rate);
1431	seq_printf(seq, "Prescale = %d\n", host->prescaler);
1432	seq_printf(seq, "is2440 = %d\n", host->is2440);
1433	seq_printf(seq, "IRQ = %d\n", host->irq);
1434	seq_printf(seq, "IRQ enabled = %d\n", host->irq_enabled);
1435	seq_printf(seq, "IRQ disabled = %d\n", host->irq_disabled);
1436	seq_printf(seq, "IRQ state = %d\n", host->irq_state);
1437	seq_printf(seq, "CD IRQ = %d\n", host->irq_cd);
1438	seq_printf(seq, "Do DMA = %d\n", s3cmci_host_usedma(host));
1439	seq_printf(seq, "SDIIMSK at %d\n", host->sdiimsk);
1440	seq_printf(seq, "SDIDATA at %d\n", host->sdidata);
1441
1442	return 0;
1443}
1444
1445static int s3cmci_state_open(struct inode *inode, struct file *file)
1446{
1447	return single_open(file, s3cmci_state_show, inode->i_private);
1448}
1449
1450static const struct file_operations s3cmci_fops_state = {
1451	.owner		= THIS_MODULE,
1452	.open		= s3cmci_state_open,
1453	.read		= seq_read,
1454	.llseek		= seq_lseek,
1455	.release	= single_release,
1456};
1457
1458#define DBG_REG(_r) { .addr = S3C2410_SDI##_r, .name = #_r }
1459
1460struct s3cmci_reg {
1461	unsigned short	addr;
1462	unsigned char	*name;
1463} debug_regs[] = {
 
 
1464	DBG_REG(CON),
1465	DBG_REG(PRE),
1466	DBG_REG(CMDARG),
1467	DBG_REG(CMDCON),
1468	DBG_REG(CMDSTAT),
1469	DBG_REG(RSP0),
1470	DBG_REG(RSP1),
1471	DBG_REG(RSP2),
1472	DBG_REG(RSP3),
1473	DBG_REG(TIMER),
1474	DBG_REG(BSIZE),
1475	DBG_REG(DCON),
1476	DBG_REG(DCNT),
1477	DBG_REG(DSTA),
1478	DBG_REG(FSTA),
1479	{}
1480};
1481
1482static int s3cmci_regs_show(struct seq_file *seq, void *v)
1483{
1484	struct s3cmci_host *host = seq->private;
1485	struct s3cmci_reg *rptr = debug_regs;
1486
1487	for (; rptr->name; rptr++)
1488		seq_printf(seq, "SDI%s\t=0x%08x\n", rptr->name,
1489			   readl(host->base + rptr->addr));
1490
1491	seq_printf(seq, "SDIIMSK\t=0x%08x\n", readl(host->base + host->sdiimsk));
1492
1493	return 0;
1494}
1495
1496static int s3cmci_regs_open(struct inode *inode, struct file *file)
1497{
1498	return single_open(file, s3cmci_regs_show, inode->i_private);
1499}
1500
1501static const struct file_operations s3cmci_fops_regs = {
1502	.owner		= THIS_MODULE,
1503	.open		= s3cmci_regs_open,
1504	.read		= seq_read,
1505	.llseek		= seq_lseek,
1506	.release	= single_release,
1507};
1508
1509static void s3cmci_debugfs_attach(struct s3cmci_host *host)
1510{
1511	struct device *dev = &host->pdev->dev;
 
1512
1513	host->debug_root = debugfs_create_dir(dev_name(dev), NULL);
1514	if (IS_ERR(host->debug_root)) {
1515		dev_err(dev, "failed to create debugfs root\n");
1516		return;
1517	}
1518
1519	host->debug_state = debugfs_create_file("state", 0444,
1520						host->debug_root, host,
1521						&s3cmci_fops_state);
1522
1523	if (IS_ERR(host->debug_state))
1524		dev_err(dev, "failed to create debug state file\n");
1525
1526	host->debug_regs = debugfs_create_file("regs", 0444,
1527					       host->debug_root, host,
1528					       &s3cmci_fops_regs);
1529
1530	if (IS_ERR(host->debug_regs))
1531		dev_err(dev, "failed to create debug regs file\n");
1532}
1533
1534static void s3cmci_debugfs_remove(struct s3cmci_host *host)
1535{
1536	debugfs_remove(host->debug_regs);
1537	debugfs_remove(host->debug_state);
1538	debugfs_remove(host->debug_root);
1539}
1540
1541#else
1542static inline void s3cmci_debugfs_attach(struct s3cmci_host *host) { }
1543static inline void s3cmci_debugfs_remove(struct s3cmci_host *host) { }
1544
1545#endif /* CONFIG_DEBUG_FS */
1546
1547static int __devinit s3cmci_probe(struct platform_device *pdev)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1548{
1549	struct s3cmci_host *host;
1550	struct mmc_host	*mmc;
1551	int ret;
1552	int is2440;
1553	int i;
1554
1555	is2440 = platform_get_device_id(pdev)->driver_data;
1556
1557	mmc = mmc_alloc_host(sizeof(struct s3cmci_host), &pdev->dev);
1558	if (!mmc) {
1559		ret = -ENOMEM;
1560		goto probe_out;
1561	}
1562
1563	for (i = S3C2410_GPE(5); i <= S3C2410_GPE(10); i++) {
1564		ret = gpio_request(i, dev_name(&pdev->dev));
1565		if (ret) {
1566			dev_err(&pdev->dev, "failed to get gpio %d\n", i);
1567
1568			for (i--; i >= S3C2410_GPE(5); i--)
1569				gpio_free(i);
1570
1571			goto probe_free_host;
1572		}
1573	}
1574
1575	host = mmc_priv(mmc);
1576	host->mmc 	= mmc;
1577	host->pdev	= pdev;
1578	host->is2440	= is2440;
 
 
 
 
 
 
 
1579
1580	host->pdata = pdev->dev.platform_data;
1581	if (!host->pdata) {
1582		pdev->dev.platform_data = &s3cmci_def_pdata;
1583		host->pdata = &s3cmci_def_pdata;
1584	}
1585
1586	spin_lock_init(&host->complete_lock);
1587	tasklet_init(&host->pio_tasklet, pio_tasklet, (unsigned long) host);
1588
1589	if (is2440) {
1590		host->sdiimsk	= S3C2440_SDIIMSK;
1591		host->sdidata	= S3C2440_SDIDATA;
1592		host->clk_div	= 1;
1593	} else {
1594		host->sdiimsk	= S3C2410_SDIIMSK;
1595		host->sdidata	= S3C2410_SDIDATA;
1596		host->clk_div	= 2;
1597	}
1598
1599	host->complete_what 	= COMPLETION_NONE;
1600	host->pio_active 	= XFER_NONE;
1601
1602#ifdef CONFIG_MMC_S3C_PIODMA
1603	host->dodma		= host->pdata->use_dma;
1604#endif
1605
1606	host->mem = platform_get_resource(pdev, IORESOURCE_MEM, 0);
1607	if (!host->mem) {
1608		dev_err(&pdev->dev,
1609			"failed to get io memory region resource.\n");
1610
1611		ret = -ENOENT;
1612		goto probe_free_gpio;
1613	}
1614
1615	host->mem = request_mem_region(host->mem->start,
1616				       resource_size(host->mem), pdev->name);
1617
1618	if (!host->mem) {
1619		dev_err(&pdev->dev, "failed to request io memory region.\n");
1620		ret = -ENOENT;
1621		goto probe_free_gpio;
1622	}
1623
1624	host->base = ioremap(host->mem->start, resource_size(host->mem));
1625	if (!host->base) {
1626		dev_err(&pdev->dev, "failed to ioremap() io memory region.\n");
1627		ret = -EINVAL;
1628		goto probe_free_mem_region;
1629	}
1630
1631	host->irq = platform_get_irq(pdev, 0);
1632	if (host->irq == 0) {
1633		dev_err(&pdev->dev, "failed to get interrupt resource.\n");
1634		ret = -EINVAL;
1635		goto probe_iounmap;
1636	}
1637
1638	if (request_irq(host->irq, s3cmci_irq, 0, DRIVER_NAME, host)) {
1639		dev_err(&pdev->dev, "failed to request mci interrupt.\n");
1640		ret = -ENOENT;
1641		goto probe_iounmap;
1642	}
1643
1644	/* We get spurious interrupts even when we have set the IMSK
1645	 * register to ignore everything, so use disable_irq() to make
1646	 * ensure we don't lock the system with un-serviceable requests. */
1647
1648	disable_irq(host->irq);
1649	host->irq_state = false;
1650
1651	if (!host->pdata->no_detect) {
1652		ret = gpio_request(host->pdata->gpio_detect, "s3cmci detect");
1653		if (ret) {
1654			dev_err(&pdev->dev, "failed to get detect gpio\n");
1655			goto probe_free_irq;
1656		}
1657
1658		host->irq_cd = gpio_to_irq(host->pdata->gpio_detect);
1659
1660		if (host->irq_cd >= 0) {
1661			if (request_irq(host->irq_cd, s3cmci_irq_cd,
1662					IRQF_TRIGGER_RISING |
1663					IRQF_TRIGGER_FALLING,
1664					DRIVER_NAME, host)) {
1665				dev_err(&pdev->dev,
1666					"can't get card detect irq.\n");
1667				ret = -ENOENT;
1668				goto probe_free_gpio_cd;
1669			}
1670		} else {
1671			dev_warn(&pdev->dev,
1672				 "host detect has no irq available\n");
1673			gpio_direction_input(host->pdata->gpio_detect);
1674		}
1675	} else
1676		host->irq_cd = -1;
1677
1678	if (!host->pdata->no_wprotect) {
1679		ret = gpio_request(host->pdata->gpio_wprotect, "s3cmci wp");
1680		if (ret) {
1681			dev_err(&pdev->dev, "failed to get writeprotect\n");
1682			goto probe_free_irq_cd;
1683		}
1684
1685		gpio_direction_input(host->pdata->gpio_wprotect);
1686	}
1687
1688	/* depending on the dma state, get a dma channel to use. */
1689
1690	if (s3cmci_host_usedma(host)) {
1691		host->dma = s3c2410_dma_request(DMACH_SDI, &s3cmci_dma_client,
1692						host);
1693		if (host->dma < 0) {
1694			dev_err(&pdev->dev, "cannot get DMA channel.\n");
1695			if (!s3cmci_host_canpio()) {
1696				ret = -EBUSY;
1697				goto probe_free_gpio_wp;
1698			} else {
1699				dev_warn(&pdev->dev, "falling back to PIO.\n");
1700				host->dodma = 0;
1701			}
1702		}
1703	}
1704
1705	host->clk = clk_get(&pdev->dev, "sdi");
1706	if (IS_ERR(host->clk)) {
1707		dev_err(&pdev->dev, "failed to find clock source.\n");
1708		ret = PTR_ERR(host->clk);
1709		host->clk = NULL;
1710		goto probe_free_dma;
1711	}
1712
1713	ret = clk_enable(host->clk);
1714	if (ret) {
1715		dev_err(&pdev->dev, "failed to enable clock source.\n");
1716		goto clk_free;
1717	}
1718
1719	host->clk_rate = clk_get_rate(host->clk);
1720
1721	mmc->ops 	= &s3cmci_ops;
1722	mmc->ocr_avail	= MMC_VDD_32_33 | MMC_VDD_33_34;
1723#ifdef CONFIG_MMC_S3C_HW_SDIO_IRQ
1724	mmc->caps	= MMC_CAP_4_BIT_DATA | MMC_CAP_SDIO_IRQ;
1725#else
1726	mmc->caps	= MMC_CAP_4_BIT_DATA;
1727#endif
1728	mmc->f_min 	= host->clk_rate / (host->clk_div * 256);
1729	mmc->f_max 	= host->clk_rate / host->clk_div;
1730
1731	if (host->pdata->ocr_avail)
1732		mmc->ocr_avail = host->pdata->ocr_avail;
1733
1734	mmc->max_blk_count	= 4095;
1735	mmc->max_blk_size	= 4095;
1736	mmc->max_req_size	= 4095 * 512;
1737	mmc->max_seg_size	= mmc->max_req_size;
1738
1739	mmc->max_segs		= 128;
1740
1741	dbg(host, dbg_debug,
1742	    "probe: mode:%s mapped mci_base:%p irq:%u irq_cd:%u dma:%u.\n",
1743	    (host->is2440?"2440":""),
1744	    host->base, host->irq, host->irq_cd, host->dma);
1745
1746	ret = s3cmci_cpufreq_register(host);
1747	if (ret) {
1748		dev_err(&pdev->dev, "failed to register cpufreq\n");
1749		goto free_dmabuf;
1750	}
1751
1752	ret = mmc_add_host(mmc);
1753	if (ret) {
1754		dev_err(&pdev->dev, "failed to add mmc host.\n");
1755		goto free_cpufreq;
1756	}
1757
1758	s3cmci_debugfs_attach(host);
1759
1760	platform_set_drvdata(pdev, mmc);
1761	dev_info(&pdev->dev, "%s - using %s, %s SDIO IRQ\n", mmc_hostname(mmc),
1762		 s3cmci_host_usedma(host) ? "dma" : "pio",
1763		 mmc->caps & MMC_CAP_SDIO_IRQ ? "hw" : "sw");
1764
1765	return 0;
1766
1767 free_cpufreq:
1768	s3cmci_cpufreq_deregister(host);
1769
1770 free_dmabuf:
1771	clk_disable(host->clk);
1772
1773 clk_free:
1774	clk_put(host->clk);
1775
1776 probe_free_dma:
1777	if (s3cmci_host_usedma(host))
1778		s3c2410_dma_free(host->dma, &s3cmci_dma_client);
1779
1780 probe_free_gpio_wp:
1781	if (!host->pdata->no_wprotect)
1782		gpio_free(host->pdata->gpio_wprotect);
1783
1784 probe_free_gpio_cd:
1785	if (!host->pdata->no_detect)
1786		gpio_free(host->pdata->gpio_detect);
1787
1788 probe_free_irq_cd:
1789	if (host->irq_cd >= 0)
1790		free_irq(host->irq_cd, host);
1791
1792 probe_free_irq:
1793	free_irq(host->irq, host);
1794
1795 probe_iounmap:
1796	iounmap(host->base);
1797
1798 probe_free_mem_region:
1799	release_mem_region(host->mem->start, resource_size(host->mem));
1800
1801 probe_free_gpio:
1802	for (i = S3C2410_GPE(5); i <= S3C2410_GPE(10); i++)
1803		gpio_free(i);
1804
1805 probe_free_host:
1806	mmc_free_host(mmc);
1807
1808 probe_out:
1809	return ret;
1810}
1811
1812static void s3cmci_shutdown(struct platform_device *pdev)
1813{
1814	struct mmc_host	*mmc = platform_get_drvdata(pdev);
1815	struct s3cmci_host *host = mmc_priv(mmc);
1816
1817	if (host->irq_cd >= 0)
1818		free_irq(host->irq_cd, host);
1819
1820	s3cmci_debugfs_remove(host);
1821	s3cmci_cpufreq_deregister(host);
1822	mmc_remove_host(mmc);
1823	clk_disable(host->clk);
1824}
1825
1826static int __devexit s3cmci_remove(struct platform_device *pdev)
1827{
1828	struct mmc_host		*mmc  = platform_get_drvdata(pdev);
1829	struct s3cmci_host	*host = mmc_priv(mmc);
1830	struct s3c24xx_mci_pdata *pd = host->pdata;
1831	int i;
1832
1833	s3cmci_shutdown(pdev);
1834
1835	clk_put(host->clk);
1836
1837	tasklet_disable(&host->pio_tasklet);
1838
1839	if (s3cmci_host_usedma(host))
1840		s3c2410_dma_free(host->dma, &s3cmci_dma_client);
1841
1842	free_irq(host->irq, host);
1843
1844	if (!pd->no_wprotect)
1845		gpio_free(pd->gpio_wprotect);
1846
1847	if (!pd->no_detect)
1848		gpio_free(pd->gpio_detect);
1849
1850	for (i = S3C2410_GPE(5); i <= S3C2410_GPE(10); i++)
1851		gpio_free(i);
1852
1853
1854	iounmap(host->base);
1855	release_mem_region(host->mem->start, resource_size(host->mem));
1856
1857	mmc_free_host(mmc);
1858	return 0;
1859}
1860
1861static struct platform_device_id s3cmci_driver_ids[] = {
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1862	{
1863		.name	= "s3c2410-sdi",
1864		.driver_data	= 0,
1865	}, {
1866		.name	= "s3c2412-sdi",
1867		.driver_data	= 1,
1868	}, {
1869		.name	= "s3c2440-sdi",
1870		.driver_data	= 1,
1871	},
1872	{ }
1873};
1874
1875MODULE_DEVICE_TABLE(platform, s3cmci_driver_ids);
1876
1877
1878#ifdef CONFIG_PM
1879
1880static int s3cmci_suspend(struct device *dev)
1881{
1882	struct mmc_host *mmc = platform_get_drvdata(to_platform_device(dev));
1883
1884	return mmc_suspend_host(mmc);
1885}
1886
1887static int s3cmci_resume(struct device *dev)
1888{
1889	struct mmc_host *mmc = platform_get_drvdata(to_platform_device(dev));
1890
1891	return mmc_resume_host(mmc);
1892}
1893
1894static const struct dev_pm_ops s3cmci_pm = {
1895	.suspend	= s3cmci_suspend,
1896	.resume		= s3cmci_resume,
1897};
1898
1899#define s3cmci_pm_ops &s3cmci_pm
1900#else /* CONFIG_PM */
1901#define s3cmci_pm_ops NULL
1902#endif /* CONFIG_PM */
1903
1904
1905static struct platform_driver s3cmci_driver = {
1906	.driver	= {
1907		.name	= "s3c-sdi",
1908		.owner	= THIS_MODULE,
1909		.pm	= s3cmci_pm_ops,
1910	},
1911	.id_table	= s3cmci_driver_ids,
1912	.probe		= s3cmci_probe,
1913	.remove		= __devexit_p(s3cmci_remove),
1914	.shutdown	= s3cmci_shutdown,
1915};
1916
1917module_platform_driver(s3cmci_driver);
1918
1919MODULE_DESCRIPTION("Samsung S3C MMC/SD Card Interface driver");
1920MODULE_LICENSE("GPL v2");
1921MODULE_AUTHOR("Thomas Kleffel <tk@maintech.de>, Ben Dooks <ben-linux@fluff.org>");