mmc: Fix handling of bus widths and DDR card capabilities
[platform/kernel/u-boot.git] / drivers / mmc / mmc.c
1 /*
2  * Copyright 2008, Freescale Semiconductor, Inc
3  * Andy Fleming
4  *
5  * Based vaguely on the Linux code
6  *
7  * SPDX-License-Identifier:     GPL-2.0+
8  */
9
10 #include <config.h>
11 #include <common.h>
12 #include <command.h>
13 #include <errno.h>
14 #include <mmc.h>
15 #include <part.h>
16 #include <malloc.h>
17 #include <linux/list.h>
18 #include <div64.h>
19 #include "mmc_private.h"
20
21 static struct list_head mmc_devices;
22 static int cur_dev_num = -1;
23
24 __weak int board_mmc_getwp(struct mmc *mmc)
25 {
26         return -1;
27 }
28
29 int mmc_getwp(struct mmc *mmc)
30 {
31         int wp;
32
33         wp = board_mmc_getwp(mmc);
34
35         if (wp < 0) {
36                 if (mmc->cfg->ops->getwp)
37                         wp = mmc->cfg->ops->getwp(mmc);
38                 else
39                         wp = 0;
40         }
41
42         return wp;
43 }
44
45 __weak int board_mmc_getcd(struct mmc *mmc)
46 {
47         return -1;
48 }
49
50 int mmc_send_cmd(struct mmc *mmc, struct mmc_cmd *cmd, struct mmc_data *data)
51 {
52         int ret;
53
54 #ifdef CONFIG_MMC_TRACE
55         int i;
56         u8 *ptr;
57
58         printf("CMD_SEND:%d\n", cmd->cmdidx);
59         printf("\t\tARG\t\t\t 0x%08X\n", cmd->cmdarg);
60         ret = mmc->cfg->ops->send_cmd(mmc, cmd, data);
61         switch (cmd->resp_type) {
62                 case MMC_RSP_NONE:
63                         printf("\t\tMMC_RSP_NONE\n");
64                         break;
65                 case MMC_RSP_R1:
66                         printf("\t\tMMC_RSP_R1,5,6,7 \t 0x%08X \n",
67                                 cmd->response[0]);
68                         break;
69                 case MMC_RSP_R1b:
70                         printf("\t\tMMC_RSP_R1b\t\t 0x%08X \n",
71                                 cmd->response[0]);
72                         break;
73                 case MMC_RSP_R2:
74                         printf("\t\tMMC_RSP_R2\t\t 0x%08X \n",
75                                 cmd->response[0]);
76                         printf("\t\t          \t\t 0x%08X \n",
77                                 cmd->response[1]);
78                         printf("\t\t          \t\t 0x%08X \n",
79                                 cmd->response[2]);
80                         printf("\t\t          \t\t 0x%08X \n",
81                                 cmd->response[3]);
82                         printf("\n");
83                         printf("\t\t\t\t\tDUMPING DATA\n");
84                         for (i = 0; i < 4; i++) {
85                                 int j;
86                                 printf("\t\t\t\t\t%03d - ", i*4);
87                                 ptr = (u8 *)&cmd->response[i];
88                                 ptr += 3;
89                                 for (j = 0; j < 4; j++)
90                                         printf("%02X ", *ptr--);
91                                 printf("\n");
92                         }
93                         break;
94                 case MMC_RSP_R3:
95                         printf("\t\tMMC_RSP_R3,4\t\t 0x%08X \n",
96                                 cmd->response[0]);
97                         break;
98                 default:
99                         printf("\t\tERROR MMC rsp not supported\n");
100                         break;
101         }
102 #else
103         ret = mmc->cfg->ops->send_cmd(mmc, cmd, data);
104 #endif
105         return ret;
106 }
107
108 int mmc_send_status(struct mmc *mmc, int timeout)
109 {
110         struct mmc_cmd cmd;
111         int err, retries = 5;
112 #ifdef CONFIG_MMC_TRACE
113         int status;
114 #endif
115
116         cmd.cmdidx = MMC_CMD_SEND_STATUS;
117         cmd.resp_type = MMC_RSP_R1;
118         if (!mmc_host_is_spi(mmc))
119                 cmd.cmdarg = mmc->rca << 16;
120
121         do {
122                 err = mmc_send_cmd(mmc, &cmd, NULL);
123                 if (!err) {
124                         if ((cmd.response[0] & MMC_STATUS_RDY_FOR_DATA) &&
125                             (cmd.response[0] & MMC_STATUS_CURR_STATE) !=
126                              MMC_STATE_PRG)
127                                 break;
128                         else if (cmd.response[0] & MMC_STATUS_MASK) {
129 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBCOMMON_SUPPORT)
130                                 printf("Status Error: 0x%08X\n",
131                                         cmd.response[0]);
132 #endif
133                                 return COMM_ERR;
134                         }
135                 } else if (--retries < 0)
136                         return err;
137
138                 udelay(1000);
139
140         } while (timeout--);
141
142 #ifdef CONFIG_MMC_TRACE
143         status = (cmd.response[0] & MMC_STATUS_CURR_STATE) >> 9;
144         printf("CURR STATE:%d\n", status);
145 #endif
146         if (timeout <= 0) {
147 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBCOMMON_SUPPORT)
148                 printf("Timeout waiting card ready\n");
149 #endif
150                 return TIMEOUT;
151         }
152         if (cmd.response[0] & MMC_STATUS_SWITCH_ERROR)
153                 return SWITCH_ERR;
154
155         return 0;
156 }
157
158 int mmc_set_blocklen(struct mmc *mmc, int len)
159 {
160         struct mmc_cmd cmd;
161
162         if (mmc->ddr_mode)
163                 return 0;
164
165         cmd.cmdidx = MMC_CMD_SET_BLOCKLEN;
166         cmd.resp_type = MMC_RSP_R1;
167         cmd.cmdarg = len;
168
169         return mmc_send_cmd(mmc, &cmd, NULL);
170 }
171
172 struct mmc *find_mmc_device(int dev_num)
173 {
174         struct mmc *m;
175         struct list_head *entry;
176
177         list_for_each(entry, &mmc_devices) {
178                 m = list_entry(entry, struct mmc, link);
179
180                 if (m->block_dev.dev == dev_num)
181                         return m;
182         }
183
184 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBCOMMON_SUPPORT)
185         printf("MMC Device %d not found\n", dev_num);
186 #endif
187
188         return NULL;
189 }
190
191 static int mmc_read_blocks(struct mmc *mmc, void *dst, lbaint_t start,
192                            lbaint_t blkcnt)
193 {
194         struct mmc_cmd cmd;
195         struct mmc_data data;
196
197         if (blkcnt > 1)
198                 cmd.cmdidx = MMC_CMD_READ_MULTIPLE_BLOCK;
199         else
200                 cmd.cmdidx = MMC_CMD_READ_SINGLE_BLOCK;
201
202         if (mmc->high_capacity)
203                 cmd.cmdarg = start;
204         else
205                 cmd.cmdarg = start * mmc->read_bl_len;
206
207         cmd.resp_type = MMC_RSP_R1;
208
209         data.dest = dst;
210         data.blocks = blkcnt;
211         data.blocksize = mmc->read_bl_len;
212         data.flags = MMC_DATA_READ;
213
214         if (mmc_send_cmd(mmc, &cmd, &data))
215                 return 0;
216
217         if (blkcnt > 1) {
218                 cmd.cmdidx = MMC_CMD_STOP_TRANSMISSION;
219                 cmd.cmdarg = 0;
220                 cmd.resp_type = MMC_RSP_R1b;
221                 if (mmc_send_cmd(mmc, &cmd, NULL)) {
222 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBCOMMON_SUPPORT)
223                         printf("mmc fail to send stop cmd\n");
224 #endif
225                         return 0;
226                 }
227         }
228
229         return blkcnt;
230 }
231
232 static ulong mmc_bread(int dev_num, lbaint_t start, lbaint_t blkcnt, void *dst)
233 {
234         lbaint_t cur, blocks_todo = blkcnt;
235
236         if (blkcnt == 0)
237                 return 0;
238
239         struct mmc *mmc = find_mmc_device(dev_num);
240         if (!mmc)
241                 return 0;
242
243         if ((start + blkcnt) > mmc->block_dev.lba) {
244 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBCOMMON_SUPPORT)
245                 printf("MMC: block number 0x" LBAF " exceeds max(0x" LBAF ")\n",
246                         start + blkcnt, mmc->block_dev.lba);
247 #endif
248                 return 0;
249         }
250
251         if (mmc_set_blocklen(mmc, mmc->read_bl_len))
252                 return 0;
253
254         do {
255                 cur = (blocks_todo > mmc->cfg->b_max) ?
256                         mmc->cfg->b_max : blocks_todo;
257                 if(mmc_read_blocks(mmc, dst, start, cur) != cur)
258                         return 0;
259                 blocks_todo -= cur;
260                 start += cur;
261                 dst += cur * mmc->read_bl_len;
262         } while (blocks_todo > 0);
263
264         return blkcnt;
265 }
266
267 static int mmc_go_idle(struct mmc *mmc)
268 {
269         struct mmc_cmd cmd;
270         int err;
271
272         udelay(1000);
273
274         cmd.cmdidx = MMC_CMD_GO_IDLE_STATE;
275         cmd.cmdarg = 0;
276         cmd.resp_type = MMC_RSP_NONE;
277
278         err = mmc_send_cmd(mmc, &cmd, NULL);
279
280         if (err)
281                 return err;
282
283         udelay(2000);
284
285         return 0;
286 }
287
288 static int sd_send_op_cond(struct mmc *mmc)
289 {
290         int timeout = 1000;
291         int err;
292         struct mmc_cmd cmd;
293
294         do {
295                 cmd.cmdidx = MMC_CMD_APP_CMD;
296                 cmd.resp_type = MMC_RSP_R1;
297                 cmd.cmdarg = 0;
298
299                 err = mmc_send_cmd(mmc, &cmd, NULL);
300
301                 if (err)
302                         return err;
303
304                 cmd.cmdidx = SD_CMD_APP_SEND_OP_COND;
305                 cmd.resp_type = MMC_RSP_R3;
306
307                 /*
308                  * Most cards do not answer if some reserved bits
309                  * in the ocr are set. However, Some controller
310                  * can set bit 7 (reserved for low voltages), but
311                  * how to manage low voltages SD card is not yet
312                  * specified.
313                  */
314                 cmd.cmdarg = mmc_host_is_spi(mmc) ? 0 :
315                         (mmc->cfg->voltages & 0xff8000);
316
317                 if (mmc->version == SD_VERSION_2)
318                         cmd.cmdarg |= OCR_HCS;
319
320                 err = mmc_send_cmd(mmc, &cmd, NULL);
321
322                 if (err)
323                         return err;
324
325                 udelay(1000);
326         } while ((!(cmd.response[0] & OCR_BUSY)) && timeout--);
327
328         if (timeout <= 0)
329                 return UNUSABLE_ERR;
330
331         if (mmc->version != SD_VERSION_2)
332                 mmc->version = SD_VERSION_1_0;
333
334         if (mmc_host_is_spi(mmc)) { /* read OCR for spi */
335                 cmd.cmdidx = MMC_CMD_SPI_READ_OCR;
336                 cmd.resp_type = MMC_RSP_R3;
337                 cmd.cmdarg = 0;
338
339                 err = mmc_send_cmd(mmc, &cmd, NULL);
340
341                 if (err)
342                         return err;
343         }
344
345         mmc->ocr = cmd.response[0];
346
347         mmc->high_capacity = ((mmc->ocr & OCR_HCS) == OCR_HCS);
348         mmc->rca = 0;
349
350         return 0;
351 }
352
353 /* We pass in the cmd since otherwise the init seems to fail */
354 static int mmc_send_op_cond_iter(struct mmc *mmc, struct mmc_cmd *cmd,
355                 int use_arg)
356 {
357         int err;
358
359         cmd->cmdidx = MMC_CMD_SEND_OP_COND;
360         cmd->resp_type = MMC_RSP_R3;
361         cmd->cmdarg = 0;
362         if (use_arg && !mmc_host_is_spi(mmc)) {
363                 cmd->cmdarg =
364                         (mmc->cfg->voltages &
365                         (mmc->op_cond_response & OCR_VOLTAGE_MASK)) |
366                         (mmc->op_cond_response & OCR_ACCESS_MODE);
367
368                 if (mmc->cfg->host_caps & MMC_MODE_HC)
369                         cmd->cmdarg |= OCR_HCS;
370         }
371         err = mmc_send_cmd(mmc, cmd, NULL);
372         if (err)
373                 return err;
374         mmc->op_cond_response = cmd->response[0];
375         return 0;
376 }
377
378 static int mmc_send_op_cond(struct mmc *mmc)
379 {
380         struct mmc_cmd cmd;
381         int err, i;
382
383         /* Some cards seem to need this */
384         mmc_go_idle(mmc);
385
386         /* Asking to the card its capabilities */
387         mmc->op_cond_pending = 1;
388         for (i = 0; i < 2; i++) {
389                 err = mmc_send_op_cond_iter(mmc, &cmd, i != 0);
390                 if (err)
391                         return err;
392
393                 /* exit if not busy (flag seems to be inverted) */
394                 if (mmc->op_cond_response & OCR_BUSY)
395                         return 0;
396         }
397         return IN_PROGRESS;
398 }
399
400 static int mmc_complete_op_cond(struct mmc *mmc)
401 {
402         struct mmc_cmd cmd;
403         int timeout = 1000;
404         uint start;
405         int err;
406
407         mmc->op_cond_pending = 0;
408         start = get_timer(0);
409         do {
410                 err = mmc_send_op_cond_iter(mmc, &cmd, 1);
411                 if (err)
412                         return err;
413                 if (get_timer(start) > timeout)
414                         return UNUSABLE_ERR;
415                 udelay(100);
416         } while (!(mmc->op_cond_response & OCR_BUSY));
417
418         if (mmc_host_is_spi(mmc)) { /* read OCR for spi */
419                 cmd.cmdidx = MMC_CMD_SPI_READ_OCR;
420                 cmd.resp_type = MMC_RSP_R3;
421                 cmd.cmdarg = 0;
422
423                 err = mmc_send_cmd(mmc, &cmd, NULL);
424
425                 if (err)
426                         return err;
427         }
428
429         mmc->version = MMC_VERSION_UNKNOWN;
430         mmc->ocr = cmd.response[0];
431
432         mmc->high_capacity = ((mmc->ocr & OCR_HCS) == OCR_HCS);
433         mmc->rca = 1;
434
435         return 0;
436 }
437
438
439 static int mmc_send_ext_csd(struct mmc *mmc, u8 *ext_csd)
440 {
441         struct mmc_cmd cmd;
442         struct mmc_data data;
443         int err;
444
445         /* Get the Card Status Register */
446         cmd.cmdidx = MMC_CMD_SEND_EXT_CSD;
447         cmd.resp_type = MMC_RSP_R1;
448         cmd.cmdarg = 0;
449
450         data.dest = (char *)ext_csd;
451         data.blocks = 1;
452         data.blocksize = MMC_MAX_BLOCK_LEN;
453         data.flags = MMC_DATA_READ;
454
455         err = mmc_send_cmd(mmc, &cmd, &data);
456
457         return err;
458 }
459
460
461 static int mmc_switch(struct mmc *mmc, u8 set, u8 index, u8 value)
462 {
463         struct mmc_cmd cmd;
464         int timeout = 1000;
465         int ret;
466
467         cmd.cmdidx = MMC_CMD_SWITCH;
468         cmd.resp_type = MMC_RSP_R1b;
469         cmd.cmdarg = (MMC_SWITCH_MODE_WRITE_BYTE << 24) |
470                                  (index << 16) |
471                                  (value << 8);
472
473         ret = mmc_send_cmd(mmc, &cmd, NULL);
474
475         /* Waiting for the ready status */
476         if (!ret)
477                 ret = mmc_send_status(mmc, timeout);
478
479         return ret;
480
481 }
482
483 static int mmc_change_freq(struct mmc *mmc)
484 {
485         ALLOC_CACHE_ALIGN_BUFFER(u8, ext_csd, MMC_MAX_BLOCK_LEN);
486         char cardtype;
487         int err;
488
489         mmc->card_caps = MMC_MODE_4BIT | MMC_MODE_8BIT;
490
491         if (mmc_host_is_spi(mmc))
492                 return 0;
493
494         /* Only version 4 supports high-speed */
495         if (mmc->version < MMC_VERSION_4)
496                 return 0;
497
498         err = mmc_send_ext_csd(mmc, ext_csd);
499
500         if (err)
501                 return err;
502
503         cardtype = ext_csd[EXT_CSD_CARD_TYPE] & 0xf;
504
505         err = mmc_switch(mmc, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_HS_TIMING, 1);
506
507         if (err)
508                 return err == SWITCH_ERR ? 0 : err;
509
510         /* Now check to see that it worked */
511         err = mmc_send_ext_csd(mmc, ext_csd);
512
513         if (err)
514                 return err;
515
516         /* No high-speed support */
517         if (!ext_csd[EXT_CSD_HS_TIMING])
518                 return 0;
519
520         /* High Speed is set, there are two types: 52MHz and 26MHz */
521         if (cardtype & EXT_CSD_CARD_TYPE_52) {
522                 if (cardtype & EXT_CSD_CARD_TYPE_DDR_52)
523                         mmc->card_caps |= MMC_MODE_DDR_52MHz;
524                 mmc->card_caps |= MMC_MODE_HS_52MHz | MMC_MODE_HS;
525         } else {
526                 mmc->card_caps |= MMC_MODE_HS;
527         }
528
529         return 0;
530 }
531
532 static int mmc_set_capacity(struct mmc *mmc, int part_num)
533 {
534         switch (part_num) {
535         case 0:
536                 mmc->capacity = mmc->capacity_user;
537                 break;
538         case 1:
539         case 2:
540                 mmc->capacity = mmc->capacity_boot;
541                 break;
542         case 3:
543                 mmc->capacity = mmc->capacity_rpmb;
544                 break;
545         case 4:
546         case 5:
547         case 6:
548         case 7:
549                 mmc->capacity = mmc->capacity_gp[part_num - 4];
550                 break;
551         default:
552                 return -1;
553         }
554
555         mmc->block_dev.lba = lldiv(mmc->capacity, mmc->read_bl_len);
556
557         return 0;
558 }
559
560 int mmc_select_hwpart(int dev_num, int hwpart)
561 {
562         struct mmc *mmc = find_mmc_device(dev_num);
563         int ret;
564
565         if (!mmc)
566                 return -ENODEV;
567
568         if (mmc->part_num == hwpart)
569                 return 0;
570
571         if (mmc->part_config == MMCPART_NOAVAILABLE) {
572                 printf("Card doesn't support part_switch\n");
573                 return -EMEDIUMTYPE;
574         }
575
576         ret = mmc_switch_part(dev_num, hwpart);
577         if (ret)
578                 return ret;
579
580         mmc->part_num = hwpart;
581
582         return 0;
583 }
584
585
586 int mmc_switch_part(int dev_num, unsigned int part_num)
587 {
588         struct mmc *mmc = find_mmc_device(dev_num);
589         int ret;
590
591         if (!mmc)
592                 return -1;
593
594         ret = mmc_switch(mmc, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_PART_CONF,
595                          (mmc->part_config & ~PART_ACCESS_MASK)
596                          | (part_num & PART_ACCESS_MASK));
597
598         /*
599          * Set the capacity if the switch succeeded or was intended
600          * to return to representing the raw device.
601          */
602         if ((ret == 0) || ((ret == -ENODEV) && (part_num == 0)))
603                 ret = mmc_set_capacity(mmc, part_num);
604
605         return ret;
606 }
607
608 int mmc_getcd(struct mmc *mmc)
609 {
610         int cd;
611
612         cd = board_mmc_getcd(mmc);
613
614         if (cd < 0) {
615                 if (mmc->cfg->ops->getcd)
616                         cd = mmc->cfg->ops->getcd(mmc);
617                 else
618                         cd = 1;
619         }
620
621         return cd;
622 }
623
624 static int sd_switch(struct mmc *mmc, int mode, int group, u8 value, u8 *resp)
625 {
626         struct mmc_cmd cmd;
627         struct mmc_data data;
628
629         /* Switch the frequency */
630         cmd.cmdidx = SD_CMD_SWITCH_FUNC;
631         cmd.resp_type = MMC_RSP_R1;
632         cmd.cmdarg = (mode << 31) | 0xffffff;
633         cmd.cmdarg &= ~(0xf << (group * 4));
634         cmd.cmdarg |= value << (group * 4);
635
636         data.dest = (char *)resp;
637         data.blocksize = 64;
638         data.blocks = 1;
639         data.flags = MMC_DATA_READ;
640
641         return mmc_send_cmd(mmc, &cmd, &data);
642 }
643
644
645 static int sd_change_freq(struct mmc *mmc)
646 {
647         int err;
648         struct mmc_cmd cmd;
649         ALLOC_CACHE_ALIGN_BUFFER(uint, scr, 2);
650         ALLOC_CACHE_ALIGN_BUFFER(uint, switch_status, 16);
651         struct mmc_data data;
652         int timeout;
653
654         mmc->card_caps = 0;
655
656         if (mmc_host_is_spi(mmc))
657                 return 0;
658
659         /* Read the SCR to find out if this card supports higher speeds */
660         cmd.cmdidx = MMC_CMD_APP_CMD;
661         cmd.resp_type = MMC_RSP_R1;
662         cmd.cmdarg = mmc->rca << 16;
663
664         err = mmc_send_cmd(mmc, &cmd, NULL);
665
666         if (err)
667                 return err;
668
669         cmd.cmdidx = SD_CMD_APP_SEND_SCR;
670         cmd.resp_type = MMC_RSP_R1;
671         cmd.cmdarg = 0;
672
673         timeout = 3;
674
675 retry_scr:
676         data.dest = (char *)scr;
677         data.blocksize = 8;
678         data.blocks = 1;
679         data.flags = MMC_DATA_READ;
680
681         err = mmc_send_cmd(mmc, &cmd, &data);
682
683         if (err) {
684                 if (timeout--)
685                         goto retry_scr;
686
687                 return err;
688         }
689
690         mmc->scr[0] = __be32_to_cpu(scr[0]);
691         mmc->scr[1] = __be32_to_cpu(scr[1]);
692
693         switch ((mmc->scr[0] >> 24) & 0xf) {
694                 case 0:
695                         mmc->version = SD_VERSION_1_0;
696                         break;
697                 case 1:
698                         mmc->version = SD_VERSION_1_10;
699                         break;
700                 case 2:
701                         mmc->version = SD_VERSION_2;
702                         if ((mmc->scr[0] >> 15) & 0x1)
703                                 mmc->version = SD_VERSION_3;
704                         break;
705                 default:
706                         mmc->version = SD_VERSION_1_0;
707                         break;
708         }
709
710         if (mmc->scr[0] & SD_DATA_4BIT)
711                 mmc->card_caps |= MMC_MODE_4BIT;
712
713         /* Version 1.0 doesn't support switching */
714         if (mmc->version == SD_VERSION_1_0)
715                 return 0;
716
717         timeout = 4;
718         while (timeout--) {
719                 err = sd_switch(mmc, SD_SWITCH_CHECK, 0, 1,
720                                 (u8 *)switch_status);
721
722                 if (err)
723                         return err;
724
725                 /* The high-speed function is busy.  Try again */
726                 if (!(__be32_to_cpu(switch_status[7]) & SD_HIGHSPEED_BUSY))
727                         break;
728         }
729
730         /* If high-speed isn't supported, we return */
731         if (!(__be32_to_cpu(switch_status[3]) & SD_HIGHSPEED_SUPPORTED))
732                 return 0;
733
734         /*
735          * If the host doesn't support SD_HIGHSPEED, do not switch card to
736          * HIGHSPEED mode even if the card support SD_HIGHSPPED.
737          * This can avoid furthur problem when the card runs in different
738          * mode between the host.
739          */
740         if (!((mmc->cfg->host_caps & MMC_MODE_HS_52MHz) &&
741                 (mmc->cfg->host_caps & MMC_MODE_HS)))
742                 return 0;
743
744         err = sd_switch(mmc, SD_SWITCH_SWITCH, 0, 1, (u8 *)switch_status);
745
746         if (err)
747                 return err;
748
749         if ((__be32_to_cpu(switch_status[4]) & 0x0f000000) == 0x01000000)
750                 mmc->card_caps |= MMC_MODE_HS;
751
752         return 0;
753 }
754
755 /* frequency bases */
756 /* divided by 10 to be nice to platforms without floating point */
757 static const int fbase[] = {
758         10000,
759         100000,
760         1000000,
761         10000000,
762 };
763
764 /* Multiplier values for TRAN_SPEED.  Multiplied by 10 to be nice
765  * to platforms without floating point.
766  */
767 static const int multipliers[] = {
768         0,      /* reserved */
769         10,
770         12,
771         13,
772         15,
773         20,
774         25,
775         30,
776         35,
777         40,
778         45,
779         50,
780         55,
781         60,
782         70,
783         80,
784 };
785
786 static void mmc_set_ios(struct mmc *mmc)
787 {
788         if (mmc->cfg->ops->set_ios)
789                 mmc->cfg->ops->set_ios(mmc);
790 }
791
792 void mmc_set_clock(struct mmc *mmc, uint clock)
793 {
794         if (clock > mmc->cfg->f_max)
795                 clock = mmc->cfg->f_max;
796
797         if (clock < mmc->cfg->f_min)
798                 clock = mmc->cfg->f_min;
799
800         mmc->clock = clock;
801
802         mmc_set_ios(mmc);
803 }
804
805 static void mmc_set_bus_width(struct mmc *mmc, uint width)
806 {
807         mmc->bus_width = width;
808
809         mmc_set_ios(mmc);
810 }
811
812 static int mmc_startup(struct mmc *mmc)
813 {
814         int err, i;
815         uint mult, freq;
816         u64 cmult, csize, capacity;
817         struct mmc_cmd cmd;
818         ALLOC_CACHE_ALIGN_BUFFER(u8, ext_csd, MMC_MAX_BLOCK_LEN);
819         ALLOC_CACHE_ALIGN_BUFFER(u8, test_csd, MMC_MAX_BLOCK_LEN);
820         int timeout = 1000;
821
822 #ifdef CONFIG_MMC_SPI_CRC_ON
823         if (mmc_host_is_spi(mmc)) { /* enable CRC check for spi */
824                 cmd.cmdidx = MMC_CMD_SPI_CRC_ON_OFF;
825                 cmd.resp_type = MMC_RSP_R1;
826                 cmd.cmdarg = 1;
827                 err = mmc_send_cmd(mmc, &cmd, NULL);
828
829                 if (err)
830                         return err;
831         }
832 #endif
833
834         /* Put the Card in Identify Mode */
835         cmd.cmdidx = mmc_host_is_spi(mmc) ? MMC_CMD_SEND_CID :
836                 MMC_CMD_ALL_SEND_CID; /* cmd not supported in spi */
837         cmd.resp_type = MMC_RSP_R2;
838         cmd.cmdarg = 0;
839
840         err = mmc_send_cmd(mmc, &cmd, NULL);
841
842         if (err)
843                 return err;
844
845         memcpy(mmc->cid, cmd.response, 16);
846
847         /*
848          * For MMC cards, set the Relative Address.
849          * For SD cards, get the Relatvie Address.
850          * This also puts the cards into Standby State
851          */
852         if (!mmc_host_is_spi(mmc)) { /* cmd not supported in spi */
853                 cmd.cmdidx = SD_CMD_SEND_RELATIVE_ADDR;
854                 cmd.cmdarg = mmc->rca << 16;
855                 cmd.resp_type = MMC_RSP_R6;
856
857                 err = mmc_send_cmd(mmc, &cmd, NULL);
858
859                 if (err)
860                         return err;
861
862                 if (IS_SD(mmc))
863                         mmc->rca = (cmd.response[0] >> 16) & 0xffff;
864         }
865
866         /* Get the Card-Specific Data */
867         cmd.cmdidx = MMC_CMD_SEND_CSD;
868         cmd.resp_type = MMC_RSP_R2;
869         cmd.cmdarg = mmc->rca << 16;
870
871         err = mmc_send_cmd(mmc, &cmd, NULL);
872
873         /* Waiting for the ready status */
874         mmc_send_status(mmc, timeout);
875
876         if (err)
877                 return err;
878
879         mmc->csd[0] = cmd.response[0];
880         mmc->csd[1] = cmd.response[1];
881         mmc->csd[2] = cmd.response[2];
882         mmc->csd[3] = cmd.response[3];
883
884         if (mmc->version == MMC_VERSION_UNKNOWN) {
885                 int version = (cmd.response[0] >> 26) & 0xf;
886
887                 switch (version) {
888                         case 0:
889                                 mmc->version = MMC_VERSION_1_2;
890                                 break;
891                         case 1:
892                                 mmc->version = MMC_VERSION_1_4;
893                                 break;
894                         case 2:
895                                 mmc->version = MMC_VERSION_2_2;
896                                 break;
897                         case 3:
898                                 mmc->version = MMC_VERSION_3;
899                                 break;
900                         case 4:
901                                 mmc->version = MMC_VERSION_4;
902                                 break;
903                         default:
904                                 mmc->version = MMC_VERSION_1_2;
905                                 break;
906                 }
907         }
908
909         /* divide frequency by 10, since the mults are 10x bigger */
910         freq = fbase[(cmd.response[0] & 0x7)];
911         mult = multipliers[((cmd.response[0] >> 3) & 0xf)];
912
913         mmc->tran_speed = freq * mult;
914
915         mmc->dsr_imp = ((cmd.response[1] >> 12) & 0x1);
916         mmc->read_bl_len = 1 << ((cmd.response[1] >> 16) & 0xf);
917
918         if (IS_SD(mmc))
919                 mmc->write_bl_len = mmc->read_bl_len;
920         else
921                 mmc->write_bl_len = 1 << ((cmd.response[3] >> 22) & 0xf);
922
923         if (mmc->high_capacity) {
924                 csize = (mmc->csd[1] & 0x3f) << 16
925                         | (mmc->csd[2] & 0xffff0000) >> 16;
926                 cmult = 8;
927         } else {
928                 csize = (mmc->csd[1] & 0x3ff) << 2
929                         | (mmc->csd[2] & 0xc0000000) >> 30;
930                 cmult = (mmc->csd[2] & 0x00038000) >> 15;
931         }
932
933         mmc->capacity_user = (csize + 1) << (cmult + 2);
934         mmc->capacity_user *= mmc->read_bl_len;
935         mmc->capacity_boot = 0;
936         mmc->capacity_rpmb = 0;
937         for (i = 0; i < 4; i++)
938                 mmc->capacity_gp[i] = 0;
939
940         if (mmc->read_bl_len > MMC_MAX_BLOCK_LEN)
941                 mmc->read_bl_len = MMC_MAX_BLOCK_LEN;
942
943         if (mmc->write_bl_len > MMC_MAX_BLOCK_LEN)
944                 mmc->write_bl_len = MMC_MAX_BLOCK_LEN;
945
946         if ((mmc->dsr_imp) && (0xffffffff != mmc->dsr)) {
947                 cmd.cmdidx = MMC_CMD_SET_DSR;
948                 cmd.cmdarg = (mmc->dsr & 0xffff) << 16;
949                 cmd.resp_type = MMC_RSP_NONE;
950                 if (mmc_send_cmd(mmc, &cmd, NULL))
951                         printf("MMC: SET_DSR failed\n");
952         }
953
954         /* Select the card, and put it into Transfer Mode */
955         if (!mmc_host_is_spi(mmc)) { /* cmd not supported in spi */
956                 cmd.cmdidx = MMC_CMD_SELECT_CARD;
957                 cmd.resp_type = MMC_RSP_R1;
958                 cmd.cmdarg = mmc->rca << 16;
959                 err = mmc_send_cmd(mmc, &cmd, NULL);
960
961                 if (err)
962                         return err;
963         }
964
965         /*
966          * For SD, its erase group is always one sector
967          */
968         mmc->erase_grp_size = 1;
969         mmc->part_config = MMCPART_NOAVAILABLE;
970         if (!IS_SD(mmc) && (mmc->version >= MMC_VERSION_4)) {
971                 /* check  ext_csd version and capacity */
972                 err = mmc_send_ext_csd(mmc, ext_csd);
973                 if (!err && (ext_csd[EXT_CSD_REV] >= 2)) {
974                         /*
975                          * According to the JEDEC Standard, the value of
976                          * ext_csd's capacity is valid if the value is more
977                          * than 2GB
978                          */
979                         capacity = ext_csd[EXT_CSD_SEC_CNT] << 0
980                                         | ext_csd[EXT_CSD_SEC_CNT + 1] << 8
981                                         | ext_csd[EXT_CSD_SEC_CNT + 2] << 16
982                                         | ext_csd[EXT_CSD_SEC_CNT + 3] << 24;
983                         capacity *= MMC_MAX_BLOCK_LEN;
984                         if ((capacity >> 20) > 2 * 1024)
985                                 mmc->capacity_user = capacity;
986                 }
987
988                 switch (ext_csd[EXT_CSD_REV]) {
989                 case 1:
990                         mmc->version = MMC_VERSION_4_1;
991                         break;
992                 case 2:
993                         mmc->version = MMC_VERSION_4_2;
994                         break;
995                 case 3:
996                         mmc->version = MMC_VERSION_4_3;
997                         break;
998                 case 5:
999                         mmc->version = MMC_VERSION_4_41;
1000                         break;
1001                 case 6:
1002                         mmc->version = MMC_VERSION_4_5;
1003                         break;
1004                 case 7:
1005                         mmc->version = MMC_VERSION_5_0;
1006                         break;
1007                 }
1008
1009                 /*
1010                  * Host needs to enable ERASE_GRP_DEF bit if device is
1011                  * partitioned. This bit will be lost every time after a reset
1012                  * or power off. This will affect erase size.
1013                  */
1014                 if ((ext_csd[EXT_CSD_PARTITIONING_SUPPORT] & PART_SUPPORT) &&
1015                     (ext_csd[EXT_CSD_PARTITIONS_ATTRIBUTE] & PART_ENH_ATTRIB)) {
1016                         err = mmc_switch(mmc, EXT_CSD_CMD_SET_NORMAL,
1017                                 EXT_CSD_ERASE_GROUP_DEF, 1);
1018
1019                         if (err)
1020                                 return err;
1021                         else
1022                                 ext_csd[EXT_CSD_ERASE_GROUP_DEF] = 1;
1023
1024                         /* Read out group size from ext_csd */
1025                         mmc->erase_grp_size =
1026                                 ext_csd[EXT_CSD_HC_ERASE_GRP_SIZE] *
1027                                         MMC_MAX_BLOCK_LEN * 1024;
1028                         /*
1029                          * if high capacity and partition setting completed
1030                          * SEC_COUNT is valid even if it is smaller than 2 GiB
1031                          * JEDEC Standard JESD84-B45, 6.2.4
1032                          */
1033                         if (mmc->high_capacity &&
1034                             (ext_csd[EXT_CSD_PARTITION_SETTING] &
1035                              EXT_CSD_PARTITION_SETTING_COMPLETED)) {
1036                                 capacity = (ext_csd[EXT_CSD_SEC_CNT]) |
1037                                         (ext_csd[EXT_CSD_SEC_CNT + 1] << 8) |
1038                                         (ext_csd[EXT_CSD_SEC_CNT + 2] << 16) |
1039                                         (ext_csd[EXT_CSD_SEC_CNT + 3] << 24);
1040                                 capacity *= MMC_MAX_BLOCK_LEN;
1041                                 mmc->capacity_user = capacity;
1042                         }
1043                 } else {
1044                         /* Calculate the group size from the csd value. */
1045                         int erase_gsz, erase_gmul;
1046                         erase_gsz = (mmc->csd[2] & 0x00007c00) >> 10;
1047                         erase_gmul = (mmc->csd[2] & 0x000003e0) >> 5;
1048                         mmc->erase_grp_size = (erase_gsz + 1)
1049                                 * (erase_gmul + 1);
1050                 }
1051
1052                 /* store the partition info of emmc */
1053                 if ((ext_csd[EXT_CSD_PARTITIONING_SUPPORT] & PART_SUPPORT) ||
1054                     ext_csd[EXT_CSD_BOOT_MULT])
1055                         mmc->part_config = ext_csd[EXT_CSD_PART_CONF];
1056
1057                 mmc->capacity_boot = ext_csd[EXT_CSD_BOOT_MULT] << 17;
1058
1059                 mmc->capacity_rpmb = ext_csd[EXT_CSD_RPMB_MULT] << 17;
1060
1061                 for (i = 0; i < 4; i++) {
1062                         int idx = EXT_CSD_GP_SIZE_MULT + i * 3;
1063                         mmc->capacity_gp[i] = (ext_csd[idx + 2] << 16) +
1064                                 (ext_csd[idx + 1] << 8) + ext_csd[idx];
1065                         mmc->capacity_gp[i] *=
1066                                 ext_csd[EXT_CSD_HC_ERASE_GRP_SIZE];
1067                         mmc->capacity_gp[i] *= ext_csd[EXT_CSD_HC_WP_GRP_SIZE];
1068                 }
1069         }
1070
1071         err = mmc_set_capacity(mmc, mmc->part_num);
1072         if (err)
1073                 return err;
1074
1075         if (IS_SD(mmc))
1076                 err = sd_change_freq(mmc);
1077         else
1078                 err = mmc_change_freq(mmc);
1079
1080         if (err)
1081                 return err;
1082
1083         /* Restrict card's capabilities by what the host can do */
1084         mmc->card_caps &= mmc->cfg->host_caps;
1085
1086         if (IS_SD(mmc)) {
1087                 if (mmc->card_caps & MMC_MODE_4BIT) {
1088                         cmd.cmdidx = MMC_CMD_APP_CMD;
1089                         cmd.resp_type = MMC_RSP_R1;
1090                         cmd.cmdarg = mmc->rca << 16;
1091
1092                         err = mmc_send_cmd(mmc, &cmd, NULL);
1093                         if (err)
1094                                 return err;
1095
1096                         cmd.cmdidx = SD_CMD_APP_SET_BUS_WIDTH;
1097                         cmd.resp_type = MMC_RSP_R1;
1098                         cmd.cmdarg = 2;
1099                         err = mmc_send_cmd(mmc, &cmd, NULL);
1100                         if (err)
1101                                 return err;
1102
1103                         mmc_set_bus_width(mmc, 4);
1104                 }
1105
1106                 if (mmc->card_caps & MMC_MODE_HS)
1107                         mmc->tran_speed = 50000000;
1108                 else
1109                         mmc->tran_speed = 25000000;
1110         } else {
1111                 int idx;
1112
1113                 /* An array of possible bus widths in order of preference */
1114                 static unsigned ext_csd_bits[] = {
1115                         EXT_CSD_DDR_BUS_WIDTH_8,
1116                         EXT_CSD_DDR_BUS_WIDTH_4,
1117                         EXT_CSD_BUS_WIDTH_8,
1118                         EXT_CSD_BUS_WIDTH_4,
1119                         EXT_CSD_BUS_WIDTH_1,
1120                 };
1121
1122                 /* An array to map CSD bus widths to host cap bits */
1123                 static unsigned ext_to_hostcaps[] = {
1124                         [EXT_CSD_DDR_BUS_WIDTH_4] =
1125                                 MMC_MODE_DDR_52MHz | MMC_MODE_4BIT,
1126                         [EXT_CSD_DDR_BUS_WIDTH_8] =
1127                                 MMC_MODE_DDR_52MHz | MMC_MODE_8BIT,
1128                         [EXT_CSD_BUS_WIDTH_4] = MMC_MODE_4BIT,
1129                         [EXT_CSD_BUS_WIDTH_8] = MMC_MODE_8BIT,
1130                 };
1131
1132                 /* An array to map chosen bus width to an integer */
1133                 static unsigned widths[] = {
1134                         8, 4, 8, 4, 1,
1135                 };
1136
1137                 for (idx=0; idx < ARRAY_SIZE(ext_csd_bits); idx++) {
1138                         unsigned int extw = ext_csd_bits[idx];
1139                         unsigned int caps = ext_to_hostcaps[extw];
1140
1141                         /*
1142                          * Check to make sure the card and controller support
1143                          * these capabilities
1144                          */
1145                         if ((mmc->card_caps & caps) != caps)
1146                                 continue;
1147
1148                         err = mmc_switch(mmc, EXT_CSD_CMD_SET_NORMAL,
1149                                         EXT_CSD_BUS_WIDTH, extw);
1150
1151                         if (err)
1152                                 continue;
1153
1154                         mmc->ddr_mode = (caps & MMC_MODE_DDR_52MHz) ? 1 : 0;
1155                         mmc_set_bus_width(mmc, widths[idx]);
1156
1157                         err = mmc_send_ext_csd(mmc, test_csd);
1158
1159                         if (err)
1160                                 continue;
1161
1162                         /* Only compare read only fields */
1163                         if (ext_csd[EXT_CSD_PARTITIONING_SUPPORT]
1164                                 == test_csd[EXT_CSD_PARTITIONING_SUPPORT] &&
1165                             ext_csd[EXT_CSD_HC_WP_GRP_SIZE]
1166                                 == test_csd[EXT_CSD_HC_WP_GRP_SIZE] &&
1167                             ext_csd[EXT_CSD_REV]
1168                                 == test_csd[EXT_CSD_REV] &&
1169                             ext_csd[EXT_CSD_HC_ERASE_GRP_SIZE]
1170                                 == test_csd[EXT_CSD_HC_ERASE_GRP_SIZE] &&
1171                             memcmp(&ext_csd[EXT_CSD_SEC_CNT],
1172                                    &test_csd[EXT_CSD_SEC_CNT], 4) == 0)
1173                                 break;
1174                         else
1175                                 err = SWITCH_ERR;
1176                 }
1177
1178                 if (err)
1179                         return err;
1180
1181                 if (mmc->card_caps & MMC_MODE_HS) {
1182                         if (mmc->card_caps & MMC_MODE_HS_52MHz)
1183                                 mmc->tran_speed = 52000000;
1184                         else
1185                                 mmc->tran_speed = 26000000;
1186                 }
1187         }
1188
1189         mmc_set_clock(mmc, mmc->tran_speed);
1190
1191         /* fill in device description */
1192         mmc->block_dev.lun = 0;
1193         mmc->block_dev.type = 0;
1194         mmc->block_dev.blksz = mmc->read_bl_len;
1195         mmc->block_dev.log2blksz = LOG2(mmc->block_dev.blksz);
1196         mmc->block_dev.lba = lldiv(mmc->capacity, mmc->read_bl_len);
1197 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBCOMMON_SUPPORT)
1198         sprintf(mmc->block_dev.vendor, "Man %06x Snr %04x%04x",
1199                 mmc->cid[0] >> 24, (mmc->cid[2] & 0xffff),
1200                 (mmc->cid[3] >> 16) & 0xffff);
1201         sprintf(mmc->block_dev.product, "%c%c%c%c%c%c", mmc->cid[0] & 0xff,
1202                 (mmc->cid[1] >> 24), (mmc->cid[1] >> 16) & 0xff,
1203                 (mmc->cid[1] >> 8) & 0xff, mmc->cid[1] & 0xff,
1204                 (mmc->cid[2] >> 24) & 0xff);
1205         sprintf(mmc->block_dev.revision, "%d.%d", (mmc->cid[2] >> 20) & 0xf,
1206                 (mmc->cid[2] >> 16) & 0xf);
1207 #else
1208         mmc->block_dev.vendor[0] = 0;
1209         mmc->block_dev.product[0] = 0;
1210         mmc->block_dev.revision[0] = 0;
1211 #endif
1212 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBDISK_SUPPORT)
1213         init_part(&mmc->block_dev);
1214 #endif
1215
1216         return 0;
1217 }
1218
1219 static int mmc_send_if_cond(struct mmc *mmc)
1220 {
1221         struct mmc_cmd cmd;
1222         int err;
1223
1224         cmd.cmdidx = SD_CMD_SEND_IF_COND;
1225         /* We set the bit if the host supports voltages between 2.7 and 3.6 V */
1226         cmd.cmdarg = ((mmc->cfg->voltages & 0xff8000) != 0) << 8 | 0xaa;
1227         cmd.resp_type = MMC_RSP_R7;
1228
1229         err = mmc_send_cmd(mmc, &cmd, NULL);
1230
1231         if (err)
1232                 return err;
1233
1234         if ((cmd.response[0] & 0xff) != 0xaa)
1235                 return UNUSABLE_ERR;
1236         else
1237                 mmc->version = SD_VERSION_2;
1238
1239         return 0;
1240 }
1241
1242 /* not used any more */
1243 int __deprecated mmc_register(struct mmc *mmc)
1244 {
1245 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBCOMMON_SUPPORT)
1246         printf("%s is deprecated! use mmc_create() instead.\n", __func__);
1247 #endif
1248         return -1;
1249 }
1250
1251 struct mmc *mmc_create(const struct mmc_config *cfg, void *priv)
1252 {
1253         struct mmc *mmc;
1254
1255         /* quick validation */
1256         if (cfg == NULL || cfg->ops == NULL || cfg->ops->send_cmd == NULL ||
1257                         cfg->f_min == 0 || cfg->f_max == 0 || cfg->b_max == 0)
1258                 return NULL;
1259
1260         mmc = calloc(1, sizeof(*mmc));
1261         if (mmc == NULL)
1262                 return NULL;
1263
1264         mmc->cfg = cfg;
1265         mmc->priv = priv;
1266
1267         /* the following chunk was mmc_register() */
1268
1269         /* Setup dsr related values */
1270         mmc->dsr_imp = 0;
1271         mmc->dsr = 0xffffffff;
1272         /* Setup the universal parts of the block interface just once */
1273         mmc->block_dev.if_type = IF_TYPE_MMC;
1274         mmc->block_dev.dev = cur_dev_num++;
1275         mmc->block_dev.removable = 1;
1276         mmc->block_dev.block_read = mmc_bread;
1277         mmc->block_dev.block_write = mmc_bwrite;
1278         mmc->block_dev.block_erase = mmc_berase;
1279
1280         /* setup initial part type */
1281         mmc->block_dev.part_type = mmc->cfg->part_type;
1282
1283         INIT_LIST_HEAD(&mmc->link);
1284
1285         list_add_tail(&mmc->link, &mmc_devices);
1286
1287         return mmc;
1288 }
1289
1290 void mmc_destroy(struct mmc *mmc)
1291 {
1292         /* only freeing memory for now */
1293         free(mmc);
1294 }
1295
1296 #ifdef CONFIG_PARTITIONS
1297 block_dev_desc_t *mmc_get_dev(int dev)
1298 {
1299         struct mmc *mmc = find_mmc_device(dev);
1300         if (!mmc || mmc_init(mmc))
1301                 return NULL;
1302
1303         return &mmc->block_dev;
1304 }
1305 #endif
1306
1307 /* board-specific MMC power initializations. */
1308 __weak void board_mmc_power_init(void)
1309 {
1310 }
1311
1312 int mmc_start_init(struct mmc *mmc)
1313 {
1314         int err;
1315
1316         /* we pretend there's no card when init is NULL */
1317         if (mmc_getcd(mmc) == 0 || mmc->cfg->ops->init == NULL) {
1318                 mmc->has_init = 0;
1319 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBCOMMON_SUPPORT)
1320                 printf("MMC: no card present\n");
1321 #endif
1322                 return NO_CARD_ERR;
1323         }
1324
1325         if (mmc->has_init)
1326                 return 0;
1327
1328         board_mmc_power_init();
1329
1330         /* made sure it's not NULL earlier */
1331         err = mmc->cfg->ops->init(mmc);
1332
1333         if (err)
1334                 return err;
1335
1336         mmc->ddr_mode = 0;
1337         mmc_set_bus_width(mmc, 1);
1338         mmc_set_clock(mmc, 1);
1339
1340         /* Reset the Card */
1341         err = mmc_go_idle(mmc);
1342
1343         if (err)
1344                 return err;
1345
1346         /* The internal partition reset to user partition(0) at every CMD0*/
1347         mmc->part_num = 0;
1348
1349         /* Test for SD version 2 */
1350         err = mmc_send_if_cond(mmc);
1351
1352         /* Now try to get the SD card's operating condition */
1353         err = sd_send_op_cond(mmc);
1354
1355         /* If the command timed out, we check for an MMC card */
1356         if (err == TIMEOUT) {
1357                 err = mmc_send_op_cond(mmc);
1358
1359                 if (err && err != IN_PROGRESS) {
1360 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBCOMMON_SUPPORT)
1361                         printf("Card did not respond to voltage select!\n");
1362 #endif
1363                         return UNUSABLE_ERR;
1364                 }
1365         }
1366
1367         if (err == IN_PROGRESS)
1368                 mmc->init_in_progress = 1;
1369
1370         return err;
1371 }
1372
1373 static int mmc_complete_init(struct mmc *mmc)
1374 {
1375         int err = 0;
1376
1377         if (mmc->op_cond_pending)
1378                 err = mmc_complete_op_cond(mmc);
1379
1380         if (!err)
1381                 err = mmc_startup(mmc);
1382         if (err)
1383                 mmc->has_init = 0;
1384         else
1385                 mmc->has_init = 1;
1386         mmc->init_in_progress = 0;
1387         return err;
1388 }
1389
1390 int mmc_init(struct mmc *mmc)
1391 {
1392         int err = IN_PROGRESS;
1393         unsigned start;
1394
1395         if (mmc->has_init)
1396                 return 0;
1397
1398         start = get_timer(0);
1399
1400         if (!mmc->init_in_progress)
1401                 err = mmc_start_init(mmc);
1402
1403         if (!err || err == IN_PROGRESS)
1404                 err = mmc_complete_init(mmc);
1405         debug("%s: %d, time %lu\n", __func__, err, get_timer(start));
1406         return err;
1407 }
1408
1409 int mmc_set_dsr(struct mmc *mmc, u16 val)
1410 {
1411         mmc->dsr = val;
1412         return 0;
1413 }
1414
1415 /* CPU-specific MMC initializations */
1416 __weak int cpu_mmc_init(bd_t *bis)
1417 {
1418         return -1;
1419 }
1420
1421 /* board-specific MMC initializations. */
1422 __weak int board_mmc_init(bd_t *bis)
1423 {
1424         return -1;
1425 }
1426
1427 #if !defined(CONFIG_SPL_BUILD) || defined(CONFIG_SPL_LIBCOMMON_SUPPORT)
1428
1429 void print_mmc_devices(char separator)
1430 {
1431         struct mmc *m;
1432         struct list_head *entry;
1433
1434         list_for_each(entry, &mmc_devices) {
1435                 m = list_entry(entry, struct mmc, link);
1436
1437                 printf("%s: %d", m->cfg->name, m->block_dev.dev);
1438
1439                 if (entry->next != &mmc_devices) {
1440                         printf("%c", separator);
1441                         if (separator != '\n')
1442                                 puts (" ");
1443                 }
1444         }
1445
1446         printf("\n");
1447 }
1448
1449 #else
1450 void print_mmc_devices(char separator) { }
1451 #endif
1452
1453 int get_mmc_num(void)
1454 {
1455         return cur_dev_num;
1456 }
1457
1458 void mmc_set_preinit(struct mmc *mmc, int preinit)
1459 {
1460         mmc->preinit = preinit;
1461 }
1462
1463 static void do_preinit(void)
1464 {
1465         struct mmc *m;
1466         struct list_head *entry;
1467
1468         list_for_each(entry, &mmc_devices) {
1469                 m = list_entry(entry, struct mmc, link);
1470
1471                 if (m->preinit)
1472                         mmc_start_init(m);
1473         }
1474 }
1475
1476
1477 int mmc_initialize(bd_t *bis)
1478 {
1479         INIT_LIST_HEAD (&mmc_devices);
1480         cur_dev_num = 0;
1481
1482         if (board_mmc_init(bis) < 0)
1483                 cpu_mmc_init(bis);
1484
1485 #ifndef CONFIG_SPL_BUILD
1486         print_mmc_devices(',');
1487 #endif
1488
1489         do_preinit();
1490         return 0;
1491 }
1492
1493 #ifdef CONFIG_SUPPORT_EMMC_BOOT
1494 /*
1495  * This function changes the size of boot partition and the size of rpmb
1496  * partition present on EMMC devices.
1497  *
1498  * Input Parameters:
1499  * struct *mmc: pointer for the mmc device strcuture
1500  * bootsize: size of boot partition
1501  * rpmbsize: size of rpmb partition
1502  *
1503  * Returns 0 on success.
1504  */
1505
1506 int mmc_boot_partition_size_change(struct mmc *mmc, unsigned long bootsize,
1507                                 unsigned long rpmbsize)
1508 {
1509         int err;
1510         struct mmc_cmd cmd;
1511
1512         /* Only use this command for raw EMMC moviNAND. Enter backdoor mode */
1513         cmd.cmdidx = MMC_CMD_RES_MAN;
1514         cmd.resp_type = MMC_RSP_R1b;
1515         cmd.cmdarg = MMC_CMD62_ARG1;
1516
1517         err = mmc_send_cmd(mmc, &cmd, NULL);
1518         if (err) {
1519                 debug("mmc_boot_partition_size_change: Error1 = %d\n", err);
1520                 return err;
1521         }
1522
1523         /* Boot partition changing mode */
1524         cmd.cmdidx = MMC_CMD_RES_MAN;
1525         cmd.resp_type = MMC_RSP_R1b;
1526         cmd.cmdarg = MMC_CMD62_ARG2;
1527
1528         err = mmc_send_cmd(mmc, &cmd, NULL);
1529         if (err) {
1530                 debug("mmc_boot_partition_size_change: Error2 = %d\n", err);
1531                 return err;
1532         }
1533         /* boot partition size is multiple of 128KB */
1534         bootsize = (bootsize * 1024) / 128;
1535
1536         /* Arg: boot partition size */
1537         cmd.cmdidx = MMC_CMD_RES_MAN;
1538         cmd.resp_type = MMC_RSP_R1b;
1539         cmd.cmdarg = bootsize;
1540
1541         err = mmc_send_cmd(mmc, &cmd, NULL);
1542         if (err) {
1543                 debug("mmc_boot_partition_size_change: Error3 = %d\n", err);
1544                 return err;
1545         }
1546         /* RPMB partition size is multiple of 128KB */
1547         rpmbsize = (rpmbsize * 1024) / 128;
1548         /* Arg: RPMB partition size */
1549         cmd.cmdidx = MMC_CMD_RES_MAN;
1550         cmd.resp_type = MMC_RSP_R1b;
1551         cmd.cmdarg = rpmbsize;
1552
1553         err = mmc_send_cmd(mmc, &cmd, NULL);
1554         if (err) {
1555                 debug("mmc_boot_partition_size_change: Error4 = %d\n", err);
1556                 return err;
1557         }
1558         return 0;
1559 }
1560
1561 /*
1562  * Modify EXT_CSD[177] which is BOOT_BUS_WIDTH
1563  * based on the passed in values for BOOT_BUS_WIDTH, RESET_BOOT_BUS_WIDTH
1564  * and BOOT_MODE.
1565  *
1566  * Returns 0 on success.
1567  */
1568 int mmc_set_boot_bus_width(struct mmc *mmc, u8 width, u8 reset, u8 mode)
1569 {
1570         int err;
1571
1572         err = mmc_switch(mmc, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_BOOT_BUS_WIDTH,
1573                          EXT_CSD_BOOT_BUS_WIDTH_MODE(mode) |
1574                          EXT_CSD_BOOT_BUS_WIDTH_RESET(reset) |
1575                          EXT_CSD_BOOT_BUS_WIDTH_WIDTH(width));
1576
1577         if (err)
1578                 return err;
1579         return 0;
1580 }
1581
1582 /*
1583  * Modify EXT_CSD[179] which is PARTITION_CONFIG (formerly BOOT_CONFIG)
1584  * based on the passed in values for BOOT_ACK, BOOT_PARTITION_ENABLE and
1585  * PARTITION_ACCESS.
1586  *
1587  * Returns 0 on success.
1588  */
1589 int mmc_set_part_conf(struct mmc *mmc, u8 ack, u8 part_num, u8 access)
1590 {
1591         int err;
1592
1593         err = mmc_switch(mmc, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_PART_CONF,
1594                          EXT_CSD_BOOT_ACK(ack) |
1595                          EXT_CSD_BOOT_PART_NUM(part_num) |
1596                          EXT_CSD_PARTITION_ACCESS(access));
1597
1598         if (err)
1599                 return err;
1600         return 0;
1601 }
1602
1603 /*
1604  * Modify EXT_CSD[162] which is RST_n_FUNCTION based on the given value
1605  * for enable.  Note that this is a write-once field for non-zero values.
1606  *
1607  * Returns 0 on success.
1608  */
1609 int mmc_set_rst_n_function(struct mmc *mmc, u8 enable)
1610 {
1611         return mmc_switch(mmc, EXT_CSD_CMD_SET_NORMAL, EXT_CSD_RST_N_FUNCTION,
1612                           enable);
1613 }
1614 #endif