xref: /rk3399_ARM-atf/drivers/st/mmc/stm32_sdmmc2.c (revision 4156d4daa8c4f5de7e71d5c497cb466cf4cb83e6)
1 /*
2  * Copyright (c) 2018-2019, STMicroelectronics - All Rights Reserved
3  *
4  * SPDX-License-Identifier: BSD-3-Clause
5  */
6 
7 #include <assert.h>
8 #include <errno.h>
9 #include <string.h>
10 
11 #include <libfdt.h>
12 
13 #include <platform_def.h>
14 
15 #include <arch.h>
16 #include <arch_helpers.h>
17 #include <common/debug.h>
18 #include <drivers/delay_timer.h>
19 #include <drivers/mmc.h>
20 #include <drivers/st/stm32_sdmmc2.h>
21 #include <drivers/st/stm32mp1_clk.h>
22 #include <drivers/st/stm32mp1_rcc.h>
23 #include <drivers/st/stm32mp1_reset.h>
24 #include <dt-bindings/clock/stm32mp1-clks.h>
25 #include <dt-bindings/reset/stm32mp1-resets.h>
26 #include <lib/mmio.h>
27 #include <lib/utils.h>
28 #include <plat/common/platform.h>
29 
30 /* Registers offsets */
31 #define SDMMC_POWER			0x00U
32 #define SDMMC_CLKCR			0x04U
33 #define SDMMC_ARGR			0x08U
34 #define SDMMC_CMDR			0x0CU
35 #define SDMMC_RESPCMDR			0x10U
36 #define SDMMC_RESP1R			0x14U
37 #define SDMMC_RESP2R			0x18U
38 #define SDMMC_RESP3R			0x1CU
39 #define SDMMC_RESP4R			0x20U
40 #define SDMMC_DTIMER			0x24U
41 #define SDMMC_DLENR			0x28U
42 #define SDMMC_DCTRLR			0x2CU
43 #define SDMMC_DCNTR			0x30U
44 #define SDMMC_STAR			0x34U
45 #define SDMMC_ICR			0x38U
46 #define SDMMC_MASKR			0x3CU
47 #define SDMMC_ACKTIMER			0x40U
48 #define SDMMC_IDMACTRLR			0x50U
49 #define SDMMC_IDMABSIZER		0x54U
50 #define SDMMC_IDMABASE0R		0x58U
51 #define SDMMC_IDMABASE1R		0x5CU
52 #define SDMMC_FIFOR			0x80U
53 
54 /* SDMMC power control register */
55 #define SDMMC_POWER_PWRCTRL		GENMASK(1, 0)
56 #define SDMMC_POWER_DIRPOL		BIT(4)
57 
58 /* SDMMC clock control register */
59 #define SDMMC_CLKCR_WIDBUS_4		BIT(14)
60 #define SDMMC_CLKCR_WIDBUS_8		BIT(15)
61 #define SDMMC_CLKCR_NEGEDGE		BIT(16)
62 #define SDMMC_CLKCR_HWFC_EN		BIT(17)
63 #define SDMMC_CLKCR_SELCLKRX_0		BIT(20)
64 
65 /* SDMMC command register */
66 #define SDMMC_CMDR_CMDTRANS		BIT(6)
67 #define SDMMC_CMDR_CMDSTOP		BIT(7)
68 #define SDMMC_CMDR_WAITRESP		GENMASK(9, 8)
69 #define SDMMC_CMDR_WAITRESP_SHORT	BIT(8)
70 #define SDMMC_CMDR_WAITRESP_SHORT_NOCRC	BIT(9)
71 #define SDMMC_CMDR_CPSMEN		BIT(12)
72 
73 /* SDMMC data control register */
74 #define SDMMC_DCTRLR_DTEN		BIT(0)
75 #define SDMMC_DCTRLR_DTDIR		BIT(1)
76 #define SDMMC_DCTRLR_DTMODE		GENMASK(3, 2)
77 #define SDMMC_DCTRLR_DBLOCKSIZE_0	BIT(4)
78 #define SDMMC_DCTRLR_DBLOCKSIZE_1	BIT(5)
79 #define SDMMC_DCTRLR_DBLOCKSIZE_3	BIT(7)
80 #define SDMMC_DCTRLR_DBLOCKSIZE		GENMASK(7, 4)
81 #define SDMMC_DCTRLR_FIFORST		BIT(13)
82 
83 #define SDMMC_DCTRLR_CLEAR_MASK		(SDMMC_DCTRLR_DTEN | \
84 					 SDMMC_DCTRLR_DTDIR | \
85 					 SDMMC_DCTRLR_DTMODE | \
86 					 SDMMC_DCTRLR_DBLOCKSIZE)
87 #define SDMMC_DBLOCKSIZE_8		(SDMMC_DCTRLR_DBLOCKSIZE_0 | \
88 					 SDMMC_DCTRLR_DBLOCKSIZE_1)
89 #define SDMMC_DBLOCKSIZE_512		(SDMMC_DCTRLR_DBLOCKSIZE_0 | \
90 					 SDMMC_DCTRLR_DBLOCKSIZE_3)
91 
92 /* SDMMC status register */
93 #define SDMMC_STAR_CCRCFAIL		BIT(0)
94 #define SDMMC_STAR_DCRCFAIL		BIT(1)
95 #define SDMMC_STAR_CTIMEOUT		BIT(2)
96 #define SDMMC_STAR_DTIMEOUT		BIT(3)
97 #define SDMMC_STAR_TXUNDERR		BIT(4)
98 #define SDMMC_STAR_RXOVERR		BIT(5)
99 #define SDMMC_STAR_CMDREND		BIT(6)
100 #define SDMMC_STAR_CMDSENT		BIT(7)
101 #define SDMMC_STAR_DATAEND		BIT(8)
102 #define SDMMC_STAR_DBCKEND		BIT(10)
103 #define SDMMC_STAR_DPSMACT		BIT(12)
104 #define SDMMC_STAR_RXFIFOHF		BIT(15)
105 #define SDMMC_STAR_RXFIFOE		BIT(19)
106 #define SDMMC_STAR_IDMATE		BIT(27)
107 #define SDMMC_STAR_IDMABTC		BIT(28)
108 
109 /* SDMMC DMA control register */
110 #define SDMMC_IDMACTRLR_IDMAEN		BIT(0)
111 
112 #define SDMMC_STATIC_FLAGS		(SDMMC_STAR_CCRCFAIL | \
113 					 SDMMC_STAR_DCRCFAIL | \
114 					 SDMMC_STAR_CTIMEOUT | \
115 					 SDMMC_STAR_DTIMEOUT | \
116 					 SDMMC_STAR_TXUNDERR | \
117 					 SDMMC_STAR_RXOVERR  | \
118 					 SDMMC_STAR_CMDREND  | \
119 					 SDMMC_STAR_CMDSENT  | \
120 					 SDMMC_STAR_DATAEND  | \
121 					 SDMMC_STAR_DBCKEND  | \
122 					 SDMMC_STAR_IDMATE   | \
123 					 SDMMC_STAR_IDMABTC)
124 
125 #define TIMEOUT_10_MS			(plat_get_syscnt_freq2() / 100U)
126 #define TIMEOUT_1_S			plat_get_syscnt_freq2()
127 
128 #define DT_SDMMC2_COMPAT		"st,stm32-sdmmc2"
129 
130 static void stm32_sdmmc2_init(void);
131 static int stm32_sdmmc2_send_cmd_req(struct mmc_cmd *cmd);
132 static int stm32_sdmmc2_send_cmd(struct mmc_cmd *cmd);
133 static int stm32_sdmmc2_set_ios(unsigned int clk, unsigned int width);
134 static int stm32_sdmmc2_prepare(int lba, uintptr_t buf, size_t size);
135 static int stm32_sdmmc2_read(int lba, uintptr_t buf, size_t size);
136 static int stm32_sdmmc2_write(int lba, uintptr_t buf, size_t size);
137 
138 static const struct mmc_ops stm32_sdmmc2_ops = {
139 	.init		= stm32_sdmmc2_init,
140 	.send_cmd	= stm32_sdmmc2_send_cmd,
141 	.set_ios	= stm32_sdmmc2_set_ios,
142 	.prepare	= stm32_sdmmc2_prepare,
143 	.read		= stm32_sdmmc2_read,
144 	.write		= stm32_sdmmc2_write,
145 };
146 
147 static struct stm32_sdmmc2_params sdmmc2_params;
148 
149 #pragma weak plat_sdmmc2_use_dma
150 bool plat_sdmmc2_use_dma(unsigned int instance, unsigned int memory)
151 {
152 	return false;
153 }
154 
155 static void stm32_sdmmc2_init(void)
156 {
157 	uint32_t clock_div;
158 	uintptr_t base = sdmmc2_params.reg_base;
159 
160 	clock_div = div_round_up(sdmmc2_params.clk_rate,
161 				 STM32MP1_MMC_INIT_FREQ * 2);
162 
163 	mmio_write_32(base + SDMMC_CLKCR, SDMMC_CLKCR_HWFC_EN | clock_div |
164 		      sdmmc2_params.negedge |
165 		      sdmmc2_params.pin_ckin);
166 
167 	mmio_write_32(base + SDMMC_POWER,
168 		      SDMMC_POWER_PWRCTRL | sdmmc2_params.dirpol);
169 
170 	mdelay(1);
171 }
172 
173 static int stm32_sdmmc2_stop_transfer(void)
174 {
175 	struct mmc_cmd cmd_stop;
176 
177 	zeromem(&cmd_stop, sizeof(struct mmc_cmd));
178 
179 	cmd_stop.cmd_idx = MMC_CMD(12);
180 	cmd_stop.resp_type = MMC_RESPONSE_R1B;
181 
182 	return stm32_sdmmc2_send_cmd(&cmd_stop);
183 }
184 
185 static int stm32_sdmmc2_send_cmd_req(struct mmc_cmd *cmd)
186 {
187 	uint32_t flags_cmd, status;
188 	uint32_t flags_data = 0;
189 	int err = 0;
190 	uintptr_t base = sdmmc2_params.reg_base;
191 	unsigned int cmd_reg, arg_reg, start;
192 
193 	if (cmd == NULL) {
194 		return -EINVAL;
195 	}
196 
197 	flags_cmd = SDMMC_STAR_CTIMEOUT;
198 	arg_reg = cmd->cmd_arg;
199 
200 	if ((mmio_read_32(base + SDMMC_CMDR) & SDMMC_CMDR_CPSMEN) != 0U) {
201 		mmio_write_32(base + SDMMC_CMDR, 0);
202 	}
203 
204 	cmd_reg = cmd->cmd_idx | SDMMC_CMDR_CPSMEN;
205 
206 	if (cmd->resp_type == 0U) {
207 		flags_cmd |= SDMMC_STAR_CMDSENT;
208 	}
209 
210 	if ((cmd->resp_type & MMC_RSP_48) != 0U) {
211 		if ((cmd->resp_type & MMC_RSP_136) != 0U) {
212 			flags_cmd |= SDMMC_STAR_CMDREND;
213 			cmd_reg |= SDMMC_CMDR_WAITRESP;
214 		} else if ((cmd->resp_type & MMC_RSP_CRC) != 0U) {
215 			flags_cmd |= SDMMC_STAR_CMDREND | SDMMC_STAR_CCRCFAIL;
216 			cmd_reg |= SDMMC_CMDR_WAITRESP_SHORT;
217 		} else {
218 			flags_cmd |= SDMMC_STAR_CMDREND;
219 			cmd_reg |= SDMMC_CMDR_WAITRESP_SHORT_NOCRC;
220 		}
221 	}
222 
223 	switch (cmd->cmd_idx) {
224 	case MMC_CMD(1):
225 		arg_reg |= OCR_POWERUP;
226 		break;
227 	case MMC_CMD(8):
228 		if (sdmmc2_params.device_info->mmc_dev_type == MMC_IS_EMMC) {
229 			cmd_reg |= SDMMC_CMDR_CMDTRANS;
230 		}
231 		break;
232 	case MMC_CMD(12):
233 		cmd_reg |= SDMMC_CMDR_CMDSTOP;
234 		break;
235 	case MMC_CMD(17):
236 	case MMC_CMD(18):
237 		cmd_reg |= SDMMC_CMDR_CMDTRANS;
238 		if (sdmmc2_params.use_dma) {
239 			flags_data |= SDMMC_STAR_DCRCFAIL |
240 				      SDMMC_STAR_DTIMEOUT |
241 				      SDMMC_STAR_DATAEND |
242 				      SDMMC_STAR_RXOVERR |
243 				      SDMMC_STAR_IDMATE;
244 		}
245 		break;
246 	case MMC_ACMD(41):
247 		arg_reg |= OCR_3_2_3_3 | OCR_3_3_3_4;
248 		break;
249 	case MMC_ACMD(51):
250 		cmd_reg |= SDMMC_CMDR_CMDTRANS;
251 		if (sdmmc2_params.use_dma) {
252 			flags_data |= SDMMC_STAR_DCRCFAIL |
253 				      SDMMC_STAR_DTIMEOUT |
254 				      SDMMC_STAR_DATAEND |
255 				      SDMMC_STAR_RXOVERR |
256 				      SDMMC_STAR_IDMATE |
257 				      SDMMC_STAR_DBCKEND;
258 		}
259 		break;
260 	default:
261 		break;
262 	}
263 
264 	if ((cmd->resp_type & MMC_RSP_BUSY) != 0U) {
265 		mmio_write_32(base + SDMMC_DTIMER, UINT32_MAX);
266 	}
267 
268 	mmio_write_32(base + SDMMC_ARGR, arg_reg);
269 
270 	mmio_write_32(base + SDMMC_CMDR, cmd_reg);
271 
272 	status = mmio_read_32(base + SDMMC_STAR);
273 
274 	start = get_timer(0);
275 
276 	while ((status & flags_cmd) == 0U) {
277 		if (get_timer(start) > TIMEOUT_10_MS) {
278 			err = -ETIMEDOUT;
279 			ERROR("%s: timeout 10ms (cmd = %d,status = %x)\n",
280 			      __func__, cmd->cmd_idx, status);
281 			goto err_exit;
282 		}
283 
284 		status = mmio_read_32(base + SDMMC_STAR);
285 	}
286 
287 	if ((status & (SDMMC_STAR_CTIMEOUT | SDMMC_STAR_CCRCFAIL)) != 0U) {
288 		if ((status & SDMMC_STAR_CTIMEOUT) != 0U) {
289 			err = -ETIMEDOUT;
290 			/*
291 			 * Those timeouts can occur, and framework will handle
292 			 * the retries. CMD8 is expected to return this timeout
293 			 * for eMMC
294 			 */
295 			if (!((cmd->cmd_idx == MMC_CMD(1)) ||
296 			      (cmd->cmd_idx == MMC_CMD(13)) ||
297 			      ((cmd->cmd_idx == MMC_CMD(8)) &&
298 			       (cmd->resp_type == MMC_RESPONSE_R7)))) {
299 				ERROR("%s: CTIMEOUT (cmd = %d,status = %x)\n",
300 				      __func__, cmd->cmd_idx, status);
301 			}
302 		} else {
303 			err = -EIO;
304 			ERROR("%s: CRCFAIL (cmd = %d,status = %x)\n",
305 			      __func__, cmd->cmd_idx, status);
306 		}
307 
308 		goto err_exit;
309 	}
310 
311 	if ((cmd_reg & SDMMC_CMDR_WAITRESP) != 0U) {
312 		if ((cmd->cmd_idx == MMC_CMD(9)) &&
313 		    ((cmd_reg & SDMMC_CMDR_WAITRESP) == SDMMC_CMDR_WAITRESP)) {
314 			/* Need to invert response to match CSD structure */
315 			cmd->resp_data[0] = mmio_read_32(base + SDMMC_RESP4R);
316 			cmd->resp_data[1] = mmio_read_32(base + SDMMC_RESP3R);
317 			cmd->resp_data[2] = mmio_read_32(base + SDMMC_RESP2R);
318 			cmd->resp_data[3] = mmio_read_32(base + SDMMC_RESP1R);
319 		} else {
320 			cmd->resp_data[0] = mmio_read_32(base + SDMMC_RESP1R);
321 			if ((cmd_reg & SDMMC_CMDR_WAITRESP) ==
322 			    SDMMC_CMDR_WAITRESP) {
323 				cmd->resp_data[1] = mmio_read_32(base +
324 								 SDMMC_RESP2R);
325 				cmd->resp_data[2] = mmio_read_32(base +
326 								 SDMMC_RESP3R);
327 				cmd->resp_data[3] = mmio_read_32(base +
328 								 SDMMC_RESP4R);
329 			}
330 		}
331 	}
332 
333 	if (flags_data == 0U) {
334 		mmio_write_32(base + SDMMC_ICR, SDMMC_STATIC_FLAGS);
335 
336 		return 0;
337 	}
338 
339 	status = mmio_read_32(base + SDMMC_STAR);
340 
341 	start = get_timer(0);
342 
343 	while ((status & flags_data) == 0U) {
344 		if (get_timer(start) > TIMEOUT_10_MS) {
345 			ERROR("%s: timeout 10ms (cmd = %d,status = %x)\n",
346 			      __func__, cmd->cmd_idx, status);
347 			err = -ETIMEDOUT;
348 			goto err_exit;
349 		}
350 
351 		status = mmio_read_32(base + SDMMC_STAR);
352 	};
353 
354 	if ((status & (SDMMC_STAR_DTIMEOUT | SDMMC_STAR_DCRCFAIL |
355 		       SDMMC_STAR_TXUNDERR | SDMMC_STAR_RXOVERR |
356 		       SDMMC_STAR_IDMATE)) != 0U) {
357 		ERROR("%s: Error flag (cmd = %d,status = %x)\n", __func__,
358 		      cmd->cmd_idx, status);
359 		err = -EIO;
360 	}
361 
362 err_exit:
363 	mmio_write_32(base + SDMMC_ICR, SDMMC_STATIC_FLAGS);
364 	mmio_clrbits_32(base + SDMMC_CMDR, SDMMC_CMDR_CMDTRANS);
365 
366 	if (err != 0) {
367 		int ret_stop = stm32_sdmmc2_stop_transfer();
368 
369 		if (ret_stop != 0) {
370 			return ret_stop;
371 		}
372 	}
373 
374 	return err;
375 }
376 
377 static int stm32_sdmmc2_send_cmd(struct mmc_cmd *cmd)
378 {
379 	int8_t retry;
380 	int err = 0;
381 
382 	assert(cmd != NULL);
383 
384 	for (retry = 0; retry <= 3; retry++) {
385 		err = stm32_sdmmc2_send_cmd_req(cmd);
386 		if (err == 0) {
387 			return err;
388 		}
389 
390 		if ((cmd->cmd_idx == MMC_CMD(1)) ||
391 		    (cmd->cmd_idx == MMC_CMD(13))) {
392 			return 0; /* Retry managed by framework */
393 		}
394 
395 		/* Command 8 is expected to fail for eMMC */
396 		if (!(cmd->cmd_idx == MMC_CMD(8))) {
397 			WARN(" CMD%d, Retry: %d, Error: %d\n",
398 			     cmd->cmd_idx, retry, err);
399 		}
400 
401 		udelay(10);
402 	}
403 
404 	return err;
405 }
406 
407 static int stm32_sdmmc2_set_ios(unsigned int clk, unsigned int width)
408 {
409 	uintptr_t base = sdmmc2_params.reg_base;
410 	uint32_t bus_cfg = 0;
411 	uint32_t clock_div, max_freq;
412 	uint32_t clk_rate = sdmmc2_params.clk_rate;
413 	uint32_t max_bus_freq = sdmmc2_params.device_info->max_bus_freq;
414 
415 	switch (width) {
416 	case MMC_BUS_WIDTH_1:
417 		break;
418 	case MMC_BUS_WIDTH_4:
419 		bus_cfg |= SDMMC_CLKCR_WIDBUS_4;
420 		break;
421 	case MMC_BUS_WIDTH_8:
422 		bus_cfg |= SDMMC_CLKCR_WIDBUS_8;
423 		break;
424 	default:
425 		panic();
426 		break;
427 	}
428 
429 	if (sdmmc2_params.device_info->mmc_dev_type == MMC_IS_EMMC) {
430 		if (max_bus_freq >= 52000000U) {
431 			max_freq = STM32MP1_EMMC_HIGH_SPEED_MAX_FREQ;
432 		} else {
433 			max_freq = STM32MP1_EMMC_NORMAL_SPEED_MAX_FREQ;
434 		}
435 	} else {
436 		if (max_bus_freq >= 50000000U) {
437 			max_freq = STM32MP1_SD_HIGH_SPEED_MAX_FREQ;
438 		} else {
439 			max_freq = STM32MP1_SD_NORMAL_SPEED_MAX_FREQ;
440 		}
441 	}
442 
443 	clock_div = div_round_up(clk_rate, max_freq * 2);
444 
445 	mmio_write_32(base + SDMMC_CLKCR,
446 		      SDMMC_CLKCR_HWFC_EN | clock_div | bus_cfg |
447 		      sdmmc2_params.negedge |
448 		      sdmmc2_params.pin_ckin);
449 
450 	return 0;
451 }
452 
453 static int stm32_sdmmc2_prepare(int lba, uintptr_t buf, size_t size)
454 {
455 	struct mmc_cmd cmd;
456 	int ret;
457 	uintptr_t base = sdmmc2_params.reg_base;
458 	uint32_t data_ctrl = SDMMC_DCTRLR_DTDIR;
459 
460 	if (size == 8U) {
461 		data_ctrl |= SDMMC_DBLOCKSIZE_8;
462 	} else {
463 		data_ctrl |= SDMMC_DBLOCKSIZE_512;
464 	}
465 
466 	sdmmc2_params.use_dma = plat_sdmmc2_use_dma(base, buf);
467 
468 	if (sdmmc2_params.use_dma) {
469 		inv_dcache_range(buf, size);
470 	}
471 
472 	/* Prepare CMD 16*/
473 	mmio_write_32(base + SDMMC_DTIMER, 0);
474 
475 	mmio_write_32(base + SDMMC_DLENR, 0);
476 
477 	mmio_write_32(base + SDMMC_DCTRLR, 0);
478 
479 	zeromem(&cmd, sizeof(struct mmc_cmd));
480 
481 	cmd.cmd_idx = MMC_CMD(16);
482 	if (size > MMC_BLOCK_SIZE) {
483 		cmd.cmd_arg = MMC_BLOCK_SIZE;
484 	} else {
485 		cmd.cmd_arg = size;
486 	}
487 
488 	cmd.resp_type = MMC_RESPONSE_R1;
489 
490 	ret = stm32_sdmmc2_send_cmd(&cmd);
491 	if (ret != 0) {
492 		ERROR("CMD16 failed\n");
493 		return ret;
494 	}
495 
496 	/* Prepare data command */
497 	mmio_write_32(base + SDMMC_DTIMER, UINT32_MAX);
498 
499 	mmio_write_32(base + SDMMC_DLENR, size);
500 
501 	if (sdmmc2_params.use_dma) {
502 		mmio_write_32(base + SDMMC_IDMACTRLR,
503 			      SDMMC_IDMACTRLR_IDMAEN);
504 		mmio_write_32(base + SDMMC_IDMABASE0R, buf);
505 
506 		flush_dcache_range(buf, size);
507 	}
508 
509 	mmio_clrsetbits_32(base + SDMMC_DCTRLR,
510 			   SDMMC_DCTRLR_CLEAR_MASK,
511 			   data_ctrl);
512 
513 	return 0;
514 }
515 
516 static int stm32_sdmmc2_read(int lba, uintptr_t buf, size_t size)
517 {
518 	uint32_t error_flags = SDMMC_STAR_RXOVERR | SDMMC_STAR_DCRCFAIL |
519 			       SDMMC_STAR_DTIMEOUT;
520 	uint32_t flags = error_flags | SDMMC_STAR_DATAEND;
521 	uint32_t status;
522 	uint32_t *buffer;
523 	uintptr_t base = sdmmc2_params.reg_base;
524 	uintptr_t fifo_reg = base + SDMMC_FIFOR;
525 	unsigned int start;
526 	int ret;
527 
528 	/* Assert buf is 4 bytes aligned */
529 	assert((buf & GENMASK(1, 0)) == 0U);
530 
531 	buffer = (uint32_t *)buf;
532 
533 	if (sdmmc2_params.use_dma) {
534 		inv_dcache_range(buf, size);
535 
536 		return 0;
537 	}
538 
539 	if (size <= MMC_BLOCK_SIZE) {
540 		flags |= SDMMC_STAR_DBCKEND;
541 	}
542 
543 	start = get_timer(0);
544 
545 	do {
546 		status = mmio_read_32(base + SDMMC_STAR);
547 
548 		if ((status & error_flags) != 0U) {
549 			ERROR("%s: Read error (status = %x)\n", __func__,
550 			      status);
551 			mmio_write_32(base + SDMMC_DCTRLR,
552 				      SDMMC_DCTRLR_FIFORST);
553 
554 			mmio_write_32(base + SDMMC_ICR,
555 				      SDMMC_STATIC_FLAGS);
556 
557 			ret = stm32_sdmmc2_stop_transfer();
558 			if (ret != 0) {
559 				return ret;
560 			}
561 
562 			return -EIO;
563 		}
564 
565 		if (get_timer(start) > TIMEOUT_1_S) {
566 			ERROR("%s: timeout 1s (status = %x)\n",
567 			      __func__, status);
568 			mmio_write_32(base + SDMMC_ICR,
569 				      SDMMC_STATIC_FLAGS);
570 
571 			ret = stm32_sdmmc2_stop_transfer();
572 			if (ret != 0) {
573 				return ret;
574 			}
575 
576 			return -ETIMEDOUT;
577 		}
578 
579 		if (size < (8U * sizeof(uint32_t))) {
580 			if ((mmio_read_32(base + SDMMC_DCNTR) > 0U) &&
581 			    ((status & SDMMC_STAR_RXFIFOE) == 0U)) {
582 				*buffer = mmio_read_32(fifo_reg);
583 				buffer++;
584 			}
585 		} else if ((status & SDMMC_STAR_RXFIFOHF) != 0U) {
586 			uint32_t count;
587 
588 			/* Read data from SDMMC Rx FIFO */
589 			for (count = 0; count < 8U; count++) {
590 				*buffer = mmio_read_32(fifo_reg);
591 				buffer++;
592 			}
593 		}
594 	} while ((status & flags) == 0U);
595 
596 	mmio_write_32(base + SDMMC_ICR, SDMMC_STATIC_FLAGS);
597 
598 	if ((status & SDMMC_STAR_DPSMACT) != 0U) {
599 		WARN("%s: DPSMACT=1, send stop\n", __func__);
600 		return stm32_sdmmc2_stop_transfer();
601 	}
602 
603 	return 0;
604 }
605 
606 static int stm32_sdmmc2_write(int lba, uintptr_t buf, size_t size)
607 {
608 	return 0;
609 }
610 
611 static int stm32_sdmmc2_dt_get_config(void)
612 {
613 	int sdmmc_node;
614 	void *fdt = NULL;
615 	const fdt32_t *cuint;
616 
617 	if (fdt_get_address(&fdt) == 0) {
618 		return -FDT_ERR_NOTFOUND;
619 	}
620 
621 	if (fdt == NULL) {
622 		return -FDT_ERR_NOTFOUND;
623 	}
624 
625 	sdmmc_node = fdt_node_offset_by_compatible(fdt, -1, DT_SDMMC2_COMPAT);
626 
627 	while (sdmmc_node != -FDT_ERR_NOTFOUND) {
628 		cuint = fdt_getprop(fdt, sdmmc_node, "reg", NULL);
629 		if (cuint == NULL) {
630 			continue;
631 		}
632 
633 		if (fdt32_to_cpu(*cuint) == sdmmc2_params.reg_base) {
634 			break;
635 		}
636 
637 		sdmmc_node = fdt_node_offset_by_compatible(fdt, sdmmc_node,
638 							   DT_SDMMC2_COMPAT);
639 	}
640 
641 	if (sdmmc_node == -FDT_ERR_NOTFOUND) {
642 		return -FDT_ERR_NOTFOUND;
643 	}
644 
645 	if (fdt_check_status(sdmmc_node) == 0) {
646 		return -FDT_ERR_NOTFOUND;
647 	}
648 
649 	if (dt_set_pinctrl_config(sdmmc_node) != 0) {
650 		return -FDT_ERR_BADVALUE;
651 	}
652 
653 	cuint = fdt_getprop(fdt, sdmmc_node, "clocks", NULL);
654 	if (cuint == NULL) {
655 		return -FDT_ERR_NOTFOUND;
656 	}
657 
658 	cuint++;
659 	sdmmc2_params.clock_id = fdt32_to_cpu(*cuint);
660 
661 	cuint = fdt_getprop(fdt, sdmmc_node, "resets", NULL);
662 	if (cuint == NULL) {
663 		return -FDT_ERR_NOTFOUND;
664 	}
665 
666 	cuint++;
667 	sdmmc2_params.reset_id = fdt32_to_cpu(*cuint);
668 
669 	if ((fdt_getprop(fdt, sdmmc_node, "st,use-ckin", NULL)) != NULL) {
670 		sdmmc2_params.pin_ckin = SDMMC_CLKCR_SELCLKRX_0;
671 	}
672 
673 	if ((fdt_getprop(fdt, sdmmc_node, "st,sig-dir", NULL)) != NULL) {
674 		sdmmc2_params.dirpol = SDMMC_POWER_DIRPOL;
675 	}
676 
677 	if ((fdt_getprop(fdt, sdmmc_node, "st,neg-edge", NULL)) != NULL) {
678 		sdmmc2_params.negedge = SDMMC_CLKCR_NEGEDGE;
679 	}
680 
681 	cuint = fdt_getprop(fdt, sdmmc_node, "bus-width", NULL);
682 	if (cuint != NULL) {
683 		switch (fdt32_to_cpu(*cuint)) {
684 		case 4:
685 			sdmmc2_params.bus_width = MMC_BUS_WIDTH_4;
686 			break;
687 
688 		case 8:
689 			sdmmc2_params.bus_width = MMC_BUS_WIDTH_8;
690 			break;
691 
692 		default:
693 			break;
694 		}
695 	}
696 
697 	return 0;
698 }
699 
700 unsigned long long stm32_sdmmc2_mmc_get_device_size(void)
701 {
702 	return sdmmc2_params.device_info->device_size;
703 }
704 
705 int stm32_sdmmc2_mmc_init(struct stm32_sdmmc2_params *params)
706 {
707 	int ret;
708 
709 	assert((params != NULL) &&
710 	       ((params->reg_base & MMC_BLOCK_MASK) == 0U) &&
711 	       ((params->bus_width == MMC_BUS_WIDTH_1) ||
712 		(params->bus_width == MMC_BUS_WIDTH_4) ||
713 		(params->bus_width == MMC_BUS_WIDTH_8)));
714 
715 	memcpy(&sdmmc2_params, params, sizeof(struct stm32_sdmmc2_params));
716 
717 	if (stm32_sdmmc2_dt_get_config() != 0) {
718 		ERROR("%s: DT error\n", __func__);
719 		return -ENOMEM;
720 	}
721 
722 	ret = stm32mp1_clk_enable(sdmmc2_params.clock_id);
723 	if (ret != 0) {
724 		ERROR("%s: clock %d failed\n", __func__,
725 		      sdmmc2_params.clock_id);
726 		return ret;
727 	}
728 
729 	stm32mp1_reset_assert(sdmmc2_params.reset_id);
730 	udelay(2);
731 	stm32mp1_reset_deassert(sdmmc2_params.reset_id);
732 	mdelay(1);
733 
734 	sdmmc2_params.clk_rate = stm32mp1_clk_get_rate(sdmmc2_params.clock_id);
735 
736 	return mmc_init(&stm32_sdmmc2_ops, sdmmc2_params.clk_rate,
737 			sdmmc2_params.bus_width, sdmmc2_params.flags,
738 			sdmmc2_params.device_info);
739 }
740