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mmc: it's safe to ignore mmc_send_if_cond() return value
[u-boot] / drivers / mmc / omap3_mmc.c
1 /*
2  * (C) Copyright 2008
3  * Texas Instruments, <www.ti.com>
4  * Syed Mohammed Khasim <khasim@ti.com>
5  *
6  * See file CREDITS for list of people who contributed to this
7  * project.
8  *
9  * This program is free software; you can redistribute it and/or
10  * modify it under the terms of the GNU General Public License as
11  * published by the Free Software Foundation's version 2 of
12  * the License.
13  *
14  * This program is distributed in the hope that it will be useful,
15  * but WITHOUT ANY WARRANTY; without even the implied warranty of
16  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17  * GNU General Public License for more details.
18  *
19  * You should have received a copy of the GNU General Public License
20  * along with this program; if not, write to the Free Software
21  * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
22  * MA 02111-1307 USA
23  */
24
25 #include <config.h>
26 #include <common.h>
27 #include <fat.h>
28 #include <mmc.h>
29 #include <part.h>
30 #include <i2c.h>
31 #include <asm/io.h>
32 #include <asm/arch/mmc.h>
33
34 const unsigned short mmc_transspeed_val[15][4] = {
35         {CLKD(10, 1), CLKD(10, 10), CLKD(10, 100), CLKD(10, 1000)},
36         {CLKD(12, 1), CLKD(12, 10), CLKD(12, 100), CLKD(12, 1000)},
37         {CLKD(13, 1), CLKD(13, 10), CLKD(13, 100), CLKD(13, 1000)},
38         {CLKD(15, 1), CLKD(15, 10), CLKD(15, 100), CLKD(15, 1000)},
39         {CLKD(20, 1), CLKD(20, 10), CLKD(20, 100), CLKD(20, 1000)},
40         {CLKD(26, 1), CLKD(26, 10), CLKD(26, 100), CLKD(26, 1000)},
41         {CLKD(30, 1), CLKD(30, 10), CLKD(30, 100), CLKD(30, 1000)},
42         {CLKD(35, 1), CLKD(35, 10), CLKD(35, 100), CLKD(35, 1000)},
43         {CLKD(40, 1), CLKD(40, 10), CLKD(40, 100), CLKD(40, 1000)},
44         {CLKD(45, 1), CLKD(45, 10), CLKD(45, 100), CLKD(45, 1000)},
45         {CLKD(52, 1), CLKD(52, 10), CLKD(52, 100), CLKD(52, 1000)},
46         {CLKD(55, 1), CLKD(55, 10), CLKD(55, 100), CLKD(55, 1000)},
47         {CLKD(60, 1), CLKD(60, 10), CLKD(60, 100), CLKD(60, 1000)},
48         {CLKD(70, 1), CLKD(70, 10), CLKD(70, 100), CLKD(70, 1000)},
49         {CLKD(80, 1), CLKD(80, 10), CLKD(80, 100), CLKD(80, 1000)}
50 };
51
52 mmc_card_data cur_card_data;
53 static block_dev_desc_t mmc_blk_dev;
54 static hsmmc_t *mmc_base = (hsmmc_t *)OMAP_HSMMC_BASE;
55
56 block_dev_desc_t *mmc_get_dev(int dev)
57 {
58         return (block_dev_desc_t *) &mmc_blk_dev;
59 }
60
61 void twl4030_mmc_config(void)
62 {
63         unsigned char data;
64
65         data = DEV_GRP_P1;
66         i2c_write(PWRMGT_ADDR_ID4, VMMC1_DEV_GRP, 1, &data, 1);
67         data = VMMC1_VSEL_30;
68         i2c_write(PWRMGT_ADDR_ID4, VMMC1_DEDICATED, 1, &data, 1);
69 }
70
71 unsigned char mmc_board_init(void)
72 {
73         t2_t *t2_base = (t2_t *)T2_BASE;
74
75         twl4030_mmc_config();
76
77         writel(readl(&t2_base->pbias_lite) | PBIASLITEPWRDNZ1 |
78                 PBIASSPEEDCTRL0 | PBIASLITEPWRDNZ0,
79                 &t2_base->pbias_lite);
80
81         writel(readl(&t2_base->devconf0) | MMCSDIO1ADPCLKISEL,
82                 &t2_base->devconf0);
83
84         return 1;
85 }
86
87 void mmc_init_stream(void)
88 {
89         writel(readl(&mmc_base->con) | INIT_INITSTREAM, &mmc_base->con);
90
91         writel(MMC_CMD0, &mmc_base->cmd);
92         while (!(readl(&mmc_base->stat) & CC_MASK));
93
94         writel(CC_MASK, &mmc_base->stat);
95
96         writel(MMC_CMD0, &mmc_base->cmd);
97         while (!(readl(&mmc_base->stat) & CC_MASK));
98
99         writel(readl(&mmc_base->con) & ~INIT_INITSTREAM, &mmc_base->con);
100 }
101
102 unsigned char mmc_clock_config(unsigned int iclk, unsigned short clk_div)
103 {
104         unsigned int val;
105
106         mmc_reg_out(&mmc_base->sysctl, (ICE_MASK | DTO_MASK | CEN_MASK),
107                         (ICE_STOP | DTO_15THDTO | CEN_DISABLE));
108
109         switch (iclk) {
110         case CLK_INITSEQ:
111                 val = MMC_INIT_SEQ_CLK / 2;
112                 break;
113         case CLK_400KHZ:
114                 val = MMC_400kHz_CLK;
115                 break;
116         case CLK_MISC:
117                 val = clk_div;
118                 break;
119         default:
120                 return 0;
121         }
122         mmc_reg_out(&mmc_base->sysctl, ICE_MASK | CLKD_MASK,
123                         (val << CLKD_OFFSET) | ICE_OSCILLATE);
124
125         while ((readl(&mmc_base->sysctl) & ICS_MASK) == ICS_NOTREADY);
126
127         writel(readl(&mmc_base->sysctl) | CEN_ENABLE, &mmc_base->sysctl);
128         return 1;
129 }
130
131 unsigned char mmc_init_setup(void)
132 {
133         unsigned int reg_val;
134
135         mmc_board_init();
136
137         writel(readl(&mmc_base->sysconfig) | MMC_SOFTRESET,
138                 &mmc_base->sysconfig);
139         while ((readl(&mmc_base->sysstatus) & RESETDONE) == 0);
140
141         writel(readl(&mmc_base->sysctl) | SOFTRESETALL, &mmc_base->sysctl);
142         while ((readl(&mmc_base->sysctl) & SOFTRESETALL) != 0x0);
143
144         writel(DTW_1_BITMODE | SDBP_PWROFF | SDVS_3V0, &mmc_base->hctl);
145         writel(readl(&mmc_base->capa) | VS30_3V0SUP | VS18_1V8SUP,
146                 &mmc_base->capa);
147
148         reg_val = readl(&mmc_base->con) & RESERVED_MASK;
149
150         writel(CTPL_MMC_SD | reg_val | WPP_ACTIVEHIGH | CDP_ACTIVEHIGH |
151                 MIT_CTO | DW8_1_4BITMODE | MODE_FUNC | STR_BLOCK |
152                 HR_NOHOSTRESP | INIT_NOINIT | NOOPENDRAIN, &mmc_base->con);
153
154         mmc_clock_config(CLK_INITSEQ, 0);
155         writel(readl(&mmc_base->hctl) | SDBP_PWRON, &mmc_base->hctl);
156
157         writel(IE_BADA | IE_CERR | IE_DEB | IE_DCRC | IE_DTO | IE_CIE |
158                 IE_CEB | IE_CCRC | IE_CTO | IE_BRR | IE_BWR | IE_TC | IE_CC,
159                 &mmc_base->ie);
160
161         mmc_init_stream();
162         return 1;
163 }
164
165 unsigned char mmc_send_cmd(unsigned int cmd, unsigned int arg,
166                                 unsigned int *response)
167 {
168         unsigned int mmc_stat;
169
170         while ((readl(&mmc_base->pstate) & DATI_MASK) == DATI_CMDDIS);
171
172         writel(BLEN_512BYTESLEN | NBLK_STPCNT, &mmc_base->blk);
173         writel(0xFFFFFFFF, &mmc_base->stat);
174         writel(arg, &mmc_base->arg);
175         writel(cmd | CMD_TYPE_NORMAL | CICE_NOCHECK | CCCE_NOCHECK |
176                 MSBS_SGLEBLK | ACEN_DISABLE | BCE_DISABLE | DE_DISABLE,
177                 &mmc_base->cmd);
178
179         while (1) {
180                 do {
181                         mmc_stat = readl(&mmc_base->stat);
182                 } while (mmc_stat == 0);
183
184                 if ((mmc_stat & ERRI_MASK) != 0)
185                         return (unsigned char) mmc_stat;
186
187                 if (mmc_stat & CC_MASK) {
188                         writel(CC_MASK, &mmc_base->stat);
189                         response[0] = readl(&mmc_base->rsp10);
190                         if ((cmd & RSP_TYPE_MASK) == RSP_TYPE_LGHT136) {
191                                 response[1] = readl(&mmc_base->rsp32);
192                                 response[2] = readl(&mmc_base->rsp54);
193                                 response[3] = readl(&mmc_base->rsp76);
194                         }
195                         break;
196                 }
197         }
198         return 1;
199 }
200
201 unsigned char mmc_read_data(unsigned int *output_buf)
202 {
203         unsigned int mmc_stat;
204         unsigned int read_count = 0;
205
206         /*
207          * Start Polled Read
208          */
209         while (1) {
210                 do {
211                         mmc_stat = readl(&mmc_base->stat);
212                 } while (mmc_stat == 0);
213
214                 if ((mmc_stat & ERRI_MASK) != 0)
215                         return (unsigned char) mmc_stat;
216
217                 if (mmc_stat & BRR_MASK) {
218                         unsigned int k;
219
220                         writel(readl(&mmc_base->stat) | BRR_MASK,
221                                 &mmc_base->stat);
222                         for (k = 0; k < MMCSD_SECTOR_SIZE / 4; k++) {
223                                 *output_buf = readl(&mmc_base->data);
224                                 output_buf++;
225                                 read_count += 4;
226                         }
227                 }
228
229                 if (mmc_stat & BWR_MASK)
230                         writel(readl(&mmc_base->stat) | BWR_MASK,
231                                 &mmc_base->stat);
232
233                 if (mmc_stat & TC_MASK) {
234                         writel(readl(&mmc_base->stat) | TC_MASK,
235                                 &mmc_base->stat);
236                         break;
237                 }
238         }
239         return 1;
240 }
241
242 unsigned char mmc_detect_card(mmc_card_data *mmc_card_cur)
243 {
244         unsigned char err;
245         unsigned int argument = 0;
246         unsigned int ocr_value, ocr_recvd, ret_cmd41, hcs_val;
247         unsigned int resp[4];
248         unsigned short retry_cnt = 2000;
249
250         /* Set to Initialization Clock */
251         err = mmc_clock_config(CLK_400KHZ, 0);
252         if (err != 1)
253                 return err;
254
255         mmc_card_cur->RCA = MMC_RELATIVE_CARD_ADDRESS;
256         argument = 0x00000000;
257
258         ocr_value = (0x1FF << 15);
259         err = mmc_send_cmd(MMC_CMD0, argument, resp);
260         if (err != 1)
261                 return err;
262
263         argument = SD_CMD8_CHECK_PATTERN | SD_CMD8_2_7_3_6_V_RANGE;
264         err = mmc_send_cmd(MMC_SDCMD8, argument, resp);
265         hcs_val = (err == 1) ?
266                 MMC_OCR_REG_HOST_CAPACITY_SUPPORT_SECTOR :
267                 MMC_OCR_REG_HOST_CAPACITY_SUPPORT_BYTE;
268
269         argument = 0x0000 << 16;
270         err = mmc_send_cmd(MMC_CMD55, argument, resp);
271         if (err == 1) {
272                 mmc_card_cur->card_type = SD_CARD;
273                 ocr_value |= hcs_val;
274                 ret_cmd41 = MMC_ACMD41;
275         } else {
276                 mmc_card_cur->card_type = MMC_CARD;
277                 ocr_value |= MMC_OCR_REG_ACCESS_MODE_SECTOR;
278                 ret_cmd41 = MMC_CMD1;
279                 writel(readl(&mmc_base->con) & ~OD, &mmc_base->con);
280                 writel(readl(&mmc_base->con) | OPENDRAIN, &mmc_base->con);
281         }
282
283         argument = ocr_value;
284         err = mmc_send_cmd(ret_cmd41, argument, resp);
285         if (err != 1)
286                 return err;
287
288         ocr_recvd = ((mmc_resp_r3 *) resp)->ocr;
289
290         while (!(ocr_recvd & (0x1 << 31)) && (retry_cnt > 0)) {
291                 retry_cnt--;
292                 if (mmc_card_cur->card_type == SD_CARD) {
293                         argument = 0x0000 << 16;
294                         err = mmc_send_cmd(MMC_CMD55, argument, resp);
295                 }
296
297                 argument = ocr_value;
298                 err = mmc_send_cmd(ret_cmd41, argument, resp);
299                 if (err != 1)
300                         return err;
301                 ocr_recvd = ((mmc_resp_r3 *) resp)->ocr;
302         }
303
304         if (!(ocr_recvd & (0x1 << 31)))
305                 return 0;
306
307         if (mmc_card_cur->card_type == MMC_CARD) {
308                 if ((ocr_recvd & MMC_OCR_REG_ACCESS_MODE_MASK) ==
309                         MMC_OCR_REG_ACCESS_MODE_SECTOR) {
310                         mmc_card_cur->mode = SECTOR_MODE;
311                 } else {
312                         mmc_card_cur->mode = BYTE_MODE;
313                 }
314
315                 ocr_recvd &= ~MMC_OCR_REG_ACCESS_MODE_MASK;
316         } else {
317                 if ((ocr_recvd & MMC_OCR_REG_HOST_CAPACITY_SUPPORT_MASK)
318                         == MMC_OCR_REG_HOST_CAPACITY_SUPPORT_SECTOR) {
319                         mmc_card_cur->mode = SECTOR_MODE;
320                 } else {
321                         mmc_card_cur->mode = BYTE_MODE;
322                 }
323                 ocr_recvd &= ~MMC_OCR_REG_HOST_CAPACITY_SUPPORT_MASK;
324         }
325
326         ocr_recvd &= ~(0x1 << 31);
327         if (!(ocr_recvd & ocr_value))
328                 return 0;
329
330         err = mmc_send_cmd(MMC_CMD2, argument, resp);
331         if (err != 1)
332                 return err;
333
334         if (mmc_card_cur->card_type == MMC_CARD) {
335                 argument = mmc_card_cur->RCA << 16;
336                 err = mmc_send_cmd(MMC_CMD3, argument, resp);
337                 if (err != 1)
338                         return err;
339         } else {
340                 argument = 0x00000000;
341                 err = mmc_send_cmd(MMC_SDCMD3, argument, resp);
342                 if (err != 1)
343                         return err;
344
345                 mmc_card_cur->RCA = ((mmc_resp_r6 *) resp)->newpublishedrca;
346         }
347
348         writel(readl(&mmc_base->con) & ~OD, &mmc_base->con);
349         writel(readl(&mmc_base->con) | NOOPENDRAIN, &mmc_base->con);
350         return 1;
351 }
352
353 unsigned char mmc_read_cardsize(mmc_card_data *mmc_dev_data,
354                                 mmc_csd_reg_t *cur_csd)
355 {
356         mmc_extended_csd_reg_t ext_csd;
357         unsigned int size, count, blk_len, blk_no, card_size, argument;
358         unsigned char err;
359         unsigned int resp[4];
360
361         if (mmc_dev_data->mode == SECTOR_MODE) {
362                 if (mmc_dev_data->card_type == SD_CARD) {
363                         card_size =
364                                 (((mmc_sd2_csd_reg_t *) cur_csd)->
365                                 c_size_lsb & MMC_SD2_CSD_C_SIZE_LSB_MASK) |
366                                 ((((mmc_sd2_csd_reg_t *) cur_csd)->
367                                 c_size_msb & MMC_SD2_CSD_C_SIZE_MSB_MASK)
368                                 << MMC_SD2_CSD_C_SIZE_MSB_OFFSET);
369                         mmc_dev_data->size = card_size * 1024;
370                         if (mmc_dev_data->size == 0)
371                                 return 0;
372                 } else {
373                         argument = 0x00000000;
374                         err = mmc_send_cmd(MMC_CMD8, argument, resp);
375                         if (err != 1)
376                                 return err;
377                         err = mmc_read_data((unsigned int *) &ext_csd);
378                         if (err != 1)
379                                 return err;
380                         mmc_dev_data->size = ext_csd.sectorcount;
381
382                         if (mmc_dev_data->size == 0)
383                                 mmc_dev_data->size = 8388608;
384                 }
385         } else {
386                 if (cur_csd->c_size_mult >= 8)
387                         return 0;
388
389                 if (cur_csd->read_bl_len >= 12)
390                         return 0;
391
392                 /* Compute size */
393                 count = 1 << (cur_csd->c_size_mult + 2);
394                 card_size = (cur_csd->c_size_lsb & MMC_CSD_C_SIZE_LSB_MASK) |
395                         ((cur_csd->c_size_msb & MMC_CSD_C_SIZE_MSB_MASK)
396                         << MMC_CSD_C_SIZE_MSB_OFFSET);
397                 blk_no = (card_size + 1) * count;
398                 blk_len = 1 << cur_csd->read_bl_len;
399                 size = blk_no * blk_len;
400                 mmc_dev_data->size = size / MMCSD_SECTOR_SIZE;
401                 if (mmc_dev_data->size == 0)
402                         return 0;
403         }
404         return 1;
405 }
406
407 unsigned char omap_mmc_read_sect(unsigned int start_sec, unsigned int num_bytes,
408                                  mmc_card_data *mmc_c,
409                                  unsigned long *output_buf)
410 {
411         unsigned char err;
412         unsigned int argument;
413         unsigned int resp[4];
414         unsigned int num_sec_val =
415                 (num_bytes + (MMCSD_SECTOR_SIZE - 1)) / MMCSD_SECTOR_SIZE;
416         unsigned int sec_inc_val;
417
418         if (num_sec_val == 0)
419                 return 1;
420
421         if (mmc_c->mode == SECTOR_MODE) {
422                 argument = start_sec;
423                 sec_inc_val = 1;
424         } else {
425                 argument = start_sec * MMCSD_SECTOR_SIZE;
426                 sec_inc_val = MMCSD_SECTOR_SIZE;
427         }
428
429         while (num_sec_val) {
430                 err = mmc_send_cmd(MMC_CMD17, argument, resp);
431                 if (err != 1)
432                         return err;
433
434                 err = mmc_read_data((unsigned int *) output_buf);
435                 if (err != 1)
436                         return err;
437
438                 output_buf += (MMCSD_SECTOR_SIZE / 4);
439                 argument += sec_inc_val;
440                 num_sec_val--;
441         }
442         return 1;
443 }
444
445 unsigned char configure_mmc(mmc_card_data *mmc_card_cur)
446 {
447         unsigned char ret_val;
448         unsigned int argument;
449         unsigned int resp[4];
450         unsigned int trans_clk, trans_fact, trans_unit, retries = 2;
451         mmc_csd_reg_t Card_CSD;
452         unsigned char trans_speed;
453
454         ret_val = mmc_init_setup();
455
456         if (ret_val != 1)
457                 return ret_val;
458
459         do {
460                 ret_val = mmc_detect_card(mmc_card_cur);
461                 retries--;
462         } while ((retries > 0) && (ret_val != 1));
463
464         argument = mmc_card_cur->RCA << 16;
465         ret_val = mmc_send_cmd(MMC_CMD9, argument, resp);
466         if (ret_val != 1)
467                 return ret_val;
468
469         ((unsigned int *) &Card_CSD)[3] = resp[3];
470         ((unsigned int *) &Card_CSD)[2] = resp[2];
471         ((unsigned int *) &Card_CSD)[1] = resp[1];
472         ((unsigned int *) &Card_CSD)[0] = resp[0];
473
474         if (mmc_card_cur->card_type == MMC_CARD)
475                 mmc_card_cur->version = Card_CSD.spec_vers;
476
477         trans_speed = Card_CSD.tran_speed;
478
479         ret_val = mmc_send_cmd(MMC_CMD4, MMC_DSR_DEFAULT << 16, resp);
480         if (ret_val != 1)
481                 return ret_val;
482
483         trans_unit = trans_speed & MMC_CSD_TRAN_SPEED_UNIT_MASK;
484         trans_fact = trans_speed & MMC_CSD_TRAN_SPEED_FACTOR_MASK;
485
486         if (trans_unit > MMC_CSD_TRAN_SPEED_UNIT_100MHZ)
487                 return 0;
488
489         if ((trans_fact < MMC_CSD_TRAN_SPEED_FACTOR_1_0) ||
490                 (trans_fact > MMC_CSD_TRAN_SPEED_FACTOR_8_0))
491                 return 0;
492
493         trans_unit >>= 0;
494         trans_fact >>= 3;
495
496         trans_clk = mmc_transspeed_val[trans_fact - 1][trans_unit] * 2;
497         ret_val = mmc_clock_config(CLK_MISC, trans_clk);
498
499         if (ret_val != 1)
500                 return ret_val;
501
502         argument = mmc_card_cur->RCA << 16;
503         ret_val = mmc_send_cmd(MMC_CMD7_SELECT, argument, resp);
504         if (ret_val != 1)
505                 return ret_val;
506
507         /* Configure the block length to 512 bytes */
508         argument = MMCSD_SECTOR_SIZE;
509         ret_val = mmc_send_cmd(MMC_CMD16, argument, resp);
510         if (ret_val != 1)
511                 return ret_val;
512
513         /* get the card size in sectors */
514         ret_val = mmc_read_cardsize(mmc_card_cur, &Card_CSD);
515         if (ret_val != 1)
516                 return ret_val;
517
518         return 1;
519 }
520 unsigned long mmc_bread(int dev_num, unsigned long blknr, lbaint_t blkcnt,
521                         void *dst)
522 {
523         omap_mmc_read_sect(blknr, (blkcnt * MMCSD_SECTOR_SIZE), &cur_card_data,
524                                 (unsigned long *) dst);
525         return 1;
526 }
527
528 int mmc_legacy_init(int verbose)
529 {
530         if (configure_mmc(&cur_card_data) != 1)
531                 return 1;
532
533         mmc_blk_dev.if_type = IF_TYPE_MMC;
534         mmc_blk_dev.part_type = PART_TYPE_DOS;
535         mmc_blk_dev.dev = 0;
536         mmc_blk_dev.lun = 0;
537         mmc_blk_dev.type = 0;
538
539         /* FIXME fill in the correct size (is set to 32MByte) */
540         mmc_blk_dev.blksz = MMCSD_SECTOR_SIZE;
541         mmc_blk_dev.lba = 0x10000;
542         mmc_blk_dev.removable = 0;
543         mmc_blk_dev.block_read = mmc_bread;
544
545         fat_register_device(&mmc_blk_dev, 1);
546         return 0;
547 }