xref: /rk3399_ARM-atf/plat/renesas/rcar/bl2_plat_setup.c (revision ddf2ca03979ea9fad305b1bc59beb6e27f0e1c02)
1 /*
2  * Copyright (c) 2018-2020, Renesas Electronics Corporation. All rights reserved.
3  *
4  * SPDX-License-Identifier: BSD-3-Clause
5  */
6 
7 #include <string.h>
8 
9 #include <libfdt.h>
10 
11 #include <platform_def.h>
12 
13 #include <arch_helpers.h>
14 #include <bl1/bl1.h>
15 #include <common/bl_common.h>
16 #include <common/debug.h>
17 #include <common/desc_image_load.h>
18 #include <common/image_decompress.h>
19 #include <drivers/console.h>
20 #include <drivers/io/io_driver.h>
21 #include <drivers/io/io_storage.h>
22 #include <lib/mmio.h>
23 #include <lib/xlat_tables/xlat_tables_defs.h>
24 #include <plat/common/platform.h>
25 #if RCAR_GEN3_BL33_GZIP == 1
26 #include <tf_gunzip.h>
27 #endif
28 
29 #include "avs_driver.h"
30 #include "boot_init_dram.h"
31 #include "cpg_registers.h"
32 #include "board.h"
33 #include "emmc_def.h"
34 #include "emmc_hal.h"
35 #include "emmc_std.h"
36 
37 #if PMIC_ROHM_BD9571 && RCAR_SYSTEM_RESET_KEEPON_DDR
38 #include "iic_dvfs.h"
39 #endif
40 
41 #include "io_common.h"
42 #include "io_rcar.h"
43 #include "qos_init.h"
44 #include "rcar_def.h"
45 #include "rcar_private.h"
46 #include "rcar_version.h"
47 #include "rom_api.h"
48 
49 #if RCAR_BL2_DCACHE == 1
50 /*
51  * Following symbols are only used during plat_arch_setup() only
52  * when RCAR_BL2_DCACHE is enabled.
53  */
54 static const uint64_t BL2_RO_BASE		= BL_CODE_BASE;
55 static const uint64_t BL2_RO_LIMIT		= BL_CODE_END;
56 
57 #if USE_COHERENT_MEM
58 static const uint64_t BL2_COHERENT_RAM_BASE	= BL_COHERENT_RAM_BASE;
59 static const uint64_t BL2_COHERENT_RAM_LIMIT	= BL_COHERENT_RAM_END;
60 #endif
61 
62 #endif
63 
64 extern void plat_rcar_gic_driver_init(void);
65 extern void plat_rcar_gic_init(void);
66 extern void bl2_enter_bl31(const struct entry_point_info *bl_ep_info);
67 extern void bl2_system_cpg_init(void);
68 extern void bl2_secure_setting(void);
69 extern void bl2_cpg_init(void);
70 extern void rcar_io_emmc_setup(void);
71 extern void rcar_io_setup(void);
72 extern void rcar_swdt_release(void);
73 extern void rcar_swdt_init(void);
74 extern void rcar_rpc_init(void);
75 extern void rcar_pfc_init(void);
76 extern void rcar_dma_init(void);
77 
78 static void bl2_init_generic_timer(void);
79 
80 /* R-Car Gen3 product check */
81 #if (RCAR_LSI == RCAR_H3) || (RCAR_LSI == RCAR_H3N)
82 #define TARGET_PRODUCT			PRR_PRODUCT_H3
83 #define TARGET_NAME			"R-Car H3"
84 #elif RCAR_LSI == RCAR_M3
85 #define TARGET_PRODUCT			PRR_PRODUCT_M3
86 #define TARGET_NAME			"R-Car M3"
87 #elif RCAR_LSI == RCAR_M3N
88 #define TARGET_PRODUCT			PRR_PRODUCT_M3N
89 #define TARGET_NAME			"R-Car M3N"
90 #elif RCAR_LSI == RCAR_V3M
91 #define TARGET_PRODUCT			PRR_PRODUCT_V3M
92 #define TARGET_NAME			"R-Car V3M"
93 #elif RCAR_LSI == RCAR_E3
94 #define TARGET_PRODUCT			PRR_PRODUCT_E3
95 #define TARGET_NAME			"R-Car E3"
96 #elif RCAR_LSI == RCAR_D3
97 #define TARGET_PRODUCT			PRR_PRODUCT_D3
98 #define TARGET_NAME			"R-Car D3"
99 #elif RCAR_LSI == RCAR_AUTO
100 #define TARGET_NAME			"R-Car H3/M3/M3N/V3M"
101 #endif
102 
103 #if (RCAR_LSI == RCAR_E3)
104 #define GPIO_INDT			(GPIO_INDT6)
105 #define GPIO_BKUP_TRG_SHIFT		((uint32_t)1U<<13U)
106 #else
107 #define GPIO_INDT			(GPIO_INDT1)
108 #define GPIO_BKUP_TRG_SHIFT		((uint32_t)1U<<8U)
109 #endif
110 
111 CASSERT((PARAMS_BASE + sizeof(bl2_to_bl31_params_mem_t) + 0x100)
112 	 < (RCAR_SHARED_MEM_BASE + RCAR_SHARED_MEM_SIZE),
113 	assert_bl31_params_do_not_fit_in_shared_memory);
114 
115 static meminfo_t bl2_tzram_layout __aligned(CACHE_WRITEBACK_GRANULE);
116 
117 /* FDT with DRAM configuration */
118 uint64_t fdt_blob[PAGE_SIZE_4KB / sizeof(uint64_t)];
119 static void *fdt = (void *)fdt_blob;
120 
121 static void unsigned_num_print(unsigned long long int unum, unsigned int radix,
122 				char *string)
123 {
124 	/* Just need enough space to store 64 bit decimal integer */
125 	char num_buf[20];
126 	int i = 0;
127 	unsigned int rem;
128 
129 	do {
130 		rem = unum % radix;
131 		if (rem < 0xa)
132 			num_buf[i] = '0' + rem;
133 		else
134 			num_buf[i] = 'a' + (rem - 0xa);
135 		i++;
136 		unum /= radix;
137 	} while (unum > 0U);
138 
139 	while (--i >= 0)
140 		*string++ = num_buf[i];
141 	*string = 0;
142 }
143 
144 #if (RCAR_LOSSY_ENABLE == 1)
145 typedef struct bl2_lossy_info {
146 	uint32_t magic;
147 	uint32_t a0;
148 	uint32_t b0;
149 } bl2_lossy_info_t;
150 
151 static void bl2_lossy_gen_fdt(uint32_t no, uint64_t start_addr,
152 			      uint64_t end_addr, uint32_t format,
153 			      uint32_t enable, int fcnlnode)
154 {
155 	const uint64_t fcnlsize = cpu_to_fdt64(end_addr - start_addr);
156 	char nodename[40] = { 0 };
157 	int ret, node;
158 
159 	/* Ignore undefined addresses */
160 	if (start_addr == 0 && end_addr == 0)
161 		return;
162 
163 	snprintf(nodename, sizeof(nodename), "lossy-decompression@");
164 	unsigned_num_print(start_addr, 16, nodename + strlen(nodename));
165 
166 	node = ret = fdt_add_subnode(fdt, fcnlnode, nodename);
167 	if (ret < 0) {
168 		NOTICE("BL2: Cannot create FCNL node (ret=%i)\n", ret);
169 		panic();
170 	}
171 
172 	ret = fdt_setprop_string(fdt, node, "compatible",
173 				 "renesas,lossy-decompression");
174 	if (ret < 0) {
175 		NOTICE("BL2: Cannot add FCNL compat string (ret=%i)\n", ret);
176 		panic();
177 	}
178 
179 	ret = fdt_appendprop_string(fdt, node, "compatible",
180 				    "shared-dma-pool");
181 	if (ret < 0) {
182 		NOTICE("BL2: Cannot append FCNL compat string (ret=%i)\n", ret);
183 		panic();
184 	}
185 
186 	ret = fdt_setprop_u64(fdt, node, "reg", start_addr);
187 	if (ret < 0) {
188 		NOTICE("BL2: Cannot add FCNL reg prop (ret=%i)\n", ret);
189 		panic();
190 	}
191 
192 	ret = fdt_appendprop(fdt, node, "reg", &fcnlsize, sizeof(fcnlsize));
193 	if (ret < 0) {
194 		NOTICE("BL2: Cannot append FCNL reg size prop (ret=%i)\n", ret);
195 		panic();
196 	}
197 
198 	ret = fdt_setprop(fdt, node, "no-map", NULL, 0);
199 	if (ret < 0) {
200 		NOTICE("BL2: Cannot add FCNL no-map prop (ret=%i)\n", ret);
201 		panic();
202 	}
203 
204 	ret = fdt_setprop_u32(fdt, node, "renesas,formats", format);
205 	if (ret < 0) {
206 		NOTICE("BL2: Cannot add FCNL formats prop (ret=%i)\n", ret);
207 		panic();
208 	}
209 }
210 
211 static void bl2_lossy_setting(uint32_t no, uint64_t start_addr,
212 			      uint64_t end_addr, uint32_t format,
213 			      uint32_t enable, int fcnlnode)
214 {
215 	bl2_lossy_info_t info;
216 	uint32_t reg;
217 
218 	bl2_lossy_gen_fdt(no, start_addr, end_addr, format, enable, fcnlnode);
219 
220 	reg = format | (start_addr >> 20);
221 	mmio_write_32(AXI_DCMPAREACRA0 + 0x8 * no, reg);
222 	mmio_write_32(AXI_DCMPAREACRB0 + 0x8 * no, end_addr >> 20);
223 	mmio_write_32(AXI_DCMPAREACRA0 + 0x8 * no, reg | enable);
224 
225 	info.magic = 0x12345678U;
226 	info.a0 = mmio_read_32(AXI_DCMPAREACRA0 + 0x8 * no);
227 	info.b0 = mmio_read_32(AXI_DCMPAREACRB0 + 0x8 * no);
228 
229 	mmio_write_32(LOSSY_PARAMS_BASE + sizeof(info) * no, info.magic);
230 	mmio_write_32(LOSSY_PARAMS_BASE + sizeof(info) * no + 0x4, info.a0);
231 	mmio_write_32(LOSSY_PARAMS_BASE + sizeof(info) * no + 0x8, info.b0);
232 
233 	NOTICE("     Entry %d: DCMPAREACRAx:0x%x DCMPAREACRBx:0x%x\n", no,
234 	       mmio_read_32(AXI_DCMPAREACRA0 + 0x8 * no),
235 	       mmio_read_32(AXI_DCMPAREACRB0 + 0x8 * no));
236 }
237 #endif
238 
239 void bl2_plat_flush_bl31_params(void)
240 {
241 	uint32_t product_cut, product, cut;
242 	uint32_t boot_dev, boot_cpu;
243 	uint32_t lcs, reg, val;
244 
245 	reg = mmio_read_32(RCAR_MODEMR);
246 	boot_dev = reg & MODEMR_BOOT_DEV_MASK;
247 
248 	if (boot_dev == MODEMR_BOOT_DEV_EMMC_25X1 ||
249 	    boot_dev == MODEMR_BOOT_DEV_EMMC_50X8)
250 		emmc_terminate();
251 
252 	if ((reg & MODEMR_BOOT_CPU_MASK) != MODEMR_BOOT_CPU_CR7)
253 		bl2_secure_setting();
254 
255 	reg = mmio_read_32(RCAR_PRR);
256 	product_cut = reg & (PRR_PRODUCT_MASK | PRR_CUT_MASK);
257 	product = reg & PRR_PRODUCT_MASK;
258 	cut = reg & PRR_CUT_MASK;
259 
260 	if (product == PRR_PRODUCT_M3 && PRR_PRODUCT_30 > cut)
261 		goto tlb;
262 
263 	if (product == PRR_PRODUCT_H3 && PRR_PRODUCT_20 > cut)
264 		goto tlb;
265 
266 	if (product == PRR_PRODUCT_D3)
267 		goto tlb;
268 
269 	/* Disable MFIS write protection */
270 	mmio_write_32(MFISWPCNTR, MFISWPCNTR_PASSWORD | 1);
271 
272 tlb:
273 	reg = mmio_read_32(RCAR_MODEMR);
274 	boot_cpu = reg & MODEMR_BOOT_CPU_MASK;
275 	if (boot_cpu != MODEMR_BOOT_CPU_CA57 &&
276 	    boot_cpu != MODEMR_BOOT_CPU_CA53)
277 		goto mmu;
278 
279 	if (product_cut == PRR_PRODUCT_H3_CUT20) {
280 		mmio_write_32(IPMMUVI0_IMSCTLR, IMSCTLR_DISCACHE);
281 		mmio_write_32(IPMMUVI1_IMSCTLR, IMSCTLR_DISCACHE);
282 		mmio_write_32(IPMMUPV0_IMSCTLR, IMSCTLR_DISCACHE);
283 		mmio_write_32(IPMMUPV1_IMSCTLR, IMSCTLR_DISCACHE);
284 		mmio_write_32(IPMMUPV2_IMSCTLR, IMSCTLR_DISCACHE);
285 		mmio_write_32(IPMMUPV3_IMSCTLR, IMSCTLR_DISCACHE);
286 	} else if (product_cut == (PRR_PRODUCT_M3N | PRR_PRODUCT_10) ||
287 		   product_cut == (PRR_PRODUCT_M3N | PRR_PRODUCT_11)) {
288 		mmio_write_32(IPMMUVI0_IMSCTLR, IMSCTLR_DISCACHE);
289 		mmio_write_32(IPMMUPV0_IMSCTLR, IMSCTLR_DISCACHE);
290 	} else if ((product_cut == (PRR_PRODUCT_E3 | PRR_PRODUCT_10)) ||
291 		   (product_cut == (PRR_PRODUCT_E3 | PRR_PRODUCT_11))) {
292 		mmio_write_32(IPMMUVI0_IMSCTLR, IMSCTLR_DISCACHE);
293 		mmio_write_32(IPMMUVP0_IMSCTLR, IMSCTLR_DISCACHE);
294 		mmio_write_32(IPMMUPV0_IMSCTLR, IMSCTLR_DISCACHE);
295 	}
296 
297 	if (product_cut == (PRR_PRODUCT_H3_CUT20) ||
298 	    product_cut == (PRR_PRODUCT_M3N | PRR_PRODUCT_10) ||
299 	    product_cut == (PRR_PRODUCT_M3N | PRR_PRODUCT_11) ||
300 	    product_cut == (PRR_PRODUCT_E3 | PRR_PRODUCT_10)) {
301 		mmio_write_32(IPMMUHC_IMSCTLR, IMSCTLR_DISCACHE);
302 		mmio_write_32(IPMMURT_IMSCTLR, IMSCTLR_DISCACHE);
303 		mmio_write_32(IPMMUMP_IMSCTLR, IMSCTLR_DISCACHE);
304 
305 		mmio_write_32(IPMMUDS0_IMSCTLR, IMSCTLR_DISCACHE);
306 		mmio_write_32(IPMMUDS1_IMSCTLR, IMSCTLR_DISCACHE);
307 	}
308 
309 mmu:
310 	mmio_write_32(IPMMUMM_IMSCTLR, IPMMUMM_IMSCTLR_ENABLE);
311 	mmio_write_32(IPMMUMM_IMAUXCTLR, IPMMUMM_IMAUXCTLR_NMERGE40_BIT);
312 
313 	val = rcar_rom_get_lcs(&lcs);
314 	if (val) {
315 		ERROR("BL2: Failed to get the LCS. (%d)\n", val);
316 		panic();
317 	}
318 
319 	if (lcs == LCS_SE)
320 		mmio_clrbits_32(P_ARMREG_SEC_CTRL, P_ARMREG_SEC_CTRL_PROT);
321 
322 	rcar_swdt_release();
323 	bl2_system_cpg_init();
324 
325 #if RCAR_BL2_DCACHE == 1
326 	/* Disable data cache (clean and invalidate) */
327 	disable_mmu_el3();
328 #endif
329 }
330 
331 static uint32_t is_ddr_backup_mode(void)
332 {
333 #if RCAR_SYSTEM_SUSPEND
334 	static uint32_t reason = RCAR_COLD_BOOT;
335 	static uint32_t once;
336 
337 #if PMIC_ROHM_BD9571 && RCAR_SYSTEM_RESET_KEEPON_DDR
338 	uint8_t data;
339 #endif
340 	if (once)
341 		return reason;
342 
343 	once = 1;
344 	if ((mmio_read_32(GPIO_INDT) & GPIO_BKUP_TRG_SHIFT) == 0)
345 		return reason;
346 
347 #if PMIC_ROHM_BD9571 && RCAR_SYSTEM_RESET_KEEPON_DDR
348 	if (rcar_iic_dvfs_receive(PMIC, REG_KEEP10, &data)) {
349 		ERROR("BL2: REG Keep10 READ ERROR.\n");
350 		panic();
351 	}
352 
353 	if (KEEP10_MAGIC != data)
354 		reason = RCAR_WARM_BOOT;
355 #else
356 	reason = RCAR_WARM_BOOT;
357 #endif
358 	return reason;
359 #else
360 	return RCAR_COLD_BOOT;
361 #endif
362 }
363 
364 #if RCAR_GEN3_BL33_GZIP == 1
365 void bl2_plat_preload_setup(void)
366 {
367 	image_decompress_init(BL33_COMP_BASE, BL33_COMP_SIZE, gunzip);
368 }
369 #endif
370 
371 int bl2_plat_handle_pre_image_load(unsigned int image_id)
372 {
373 	u_register_t *boot_kind = (void *) BOOT_KIND_BASE;
374 	bl_mem_params_node_t *bl_mem_params;
375 
376 	bl_mem_params = get_bl_mem_params_node(image_id);
377 
378 #if RCAR_GEN3_BL33_GZIP == 1
379 	if (image_id == BL33_IMAGE_ID) {
380 		image_decompress_prepare(&bl_mem_params->image_info);
381 	}
382 #endif
383 
384 	if (image_id != BL31_IMAGE_ID)
385 		return 0;
386 
387 	if (is_ddr_backup_mode() == RCAR_COLD_BOOT)
388 		goto cold_boot;
389 
390 	*boot_kind  = RCAR_WARM_BOOT;
391 	flush_dcache_range(BOOT_KIND_BASE, sizeof(*boot_kind));
392 
393 	console_flush();
394 	bl2_plat_flush_bl31_params();
395 
396 	/* will not return */
397 	bl2_enter_bl31(&bl_mem_params->ep_info);
398 
399 cold_boot:
400 	*boot_kind  = RCAR_COLD_BOOT;
401 	flush_dcache_range(BOOT_KIND_BASE, sizeof(*boot_kind));
402 
403 	return 0;
404 }
405 
406 static uint64_t rcar_get_dest_addr_from_cert(uint32_t certid, uintptr_t *dest)
407 {
408 	uint32_t cert, len;
409 	int ret;
410 
411 	ret = rcar_get_certificate(certid, &cert);
412 	if (ret) {
413 		ERROR("%s : cert file load error", __func__);
414 		return 1;
415 	}
416 
417 	rcar_read_certificate((uint64_t) cert, &len, dest);
418 
419 	return 0;
420 }
421 
422 int bl2_plat_handle_post_image_load(unsigned int image_id)
423 {
424 	static bl2_to_bl31_params_mem_t *params;
425 	bl_mem_params_node_t *bl_mem_params;
426 	uintptr_t dest;
427 	int ret;
428 
429 	if (!params) {
430 		params = (bl2_to_bl31_params_mem_t *) PARAMS_BASE;
431 		memset((void *)PARAMS_BASE, 0, sizeof(*params));
432 	}
433 
434 	bl_mem_params = get_bl_mem_params_node(image_id);
435 
436 	switch (image_id) {
437 	case BL31_IMAGE_ID:
438 		ret = rcar_get_dest_addr_from_cert(SOC_FW_CONTENT_CERT_ID,
439 						   &dest);
440 		if (!ret)
441 			bl_mem_params->image_info.image_base = dest;
442 		break;
443 	case BL32_IMAGE_ID:
444 		ret = rcar_get_dest_addr_from_cert(TRUSTED_OS_FW_CONTENT_CERT_ID,
445 						   &dest);
446 		if (!ret)
447 			bl_mem_params->image_info.image_base = dest;
448 
449 		memcpy(&params->bl32_ep_info, &bl_mem_params->ep_info,
450 			sizeof(entry_point_info_t));
451 		break;
452 	case BL33_IMAGE_ID:
453 #if RCAR_GEN3_BL33_GZIP == 1
454 		if ((mmio_read_32(BL33_COMP_BASE) & 0xffff) == 0x8b1f) {
455 			/* decompress gzip-compressed image */
456 			ret = image_decompress(&bl_mem_params->image_info);
457 			if (ret != 0) {
458 				return ret;
459 			}
460 		} else {
461 			/* plain image, copy it in place */
462 			memcpy((void *)BL33_BASE, (void *)BL33_COMP_BASE,
463 				bl_mem_params->image_info.image_size);
464 		}
465 #endif
466 		memcpy(&params->bl33_ep_info, &bl_mem_params->ep_info,
467 			sizeof(entry_point_info_t));
468 		break;
469 	}
470 
471 	return 0;
472 }
473 
474 struct meminfo *bl2_plat_sec_mem_layout(void)
475 {
476 	return &bl2_tzram_layout;
477 }
478 
479 static void bl2_populate_compatible_string(void *dt)
480 {
481 	uint32_t board_type;
482 	uint32_t board_rev;
483 	uint32_t reg;
484 	int ret;
485 
486 	fdt_setprop_u32(dt, 0, "#address-cells", 2);
487 	fdt_setprop_u32(dt, 0, "#size-cells", 2);
488 
489 	/* Populate compatible string */
490 	rcar_get_board_type(&board_type, &board_rev);
491 	switch (board_type) {
492 	case BOARD_SALVATOR_X:
493 		ret = fdt_setprop_string(dt, 0, "compatible",
494 					 "renesas,salvator-x");
495 		break;
496 	case BOARD_SALVATOR_XS:
497 		ret = fdt_setprop_string(dt, 0, "compatible",
498 					 "renesas,salvator-xs");
499 		break;
500 	case BOARD_STARTER_KIT:
501 		ret = fdt_setprop_string(dt, 0, "compatible",
502 					 "renesas,m3ulcb");
503 		break;
504 	case BOARD_STARTER_KIT_PRE:
505 		ret = fdt_setprop_string(dt, 0, "compatible",
506 					 "renesas,h3ulcb");
507 		break;
508 	case BOARD_EAGLE:
509 		ret = fdt_setprop_string(dt, 0, "compatible",
510 					 "renesas,eagle");
511 		break;
512 	case BOARD_EBISU:
513 	case BOARD_EBISU_4D:
514 		ret = fdt_setprop_string(dt, 0, "compatible",
515 					 "renesas,ebisu");
516 		break;
517 	case BOARD_DRAAK:
518 		ret = fdt_setprop_string(dt, 0, "compatible",
519 					 "renesas,draak");
520 		break;
521 	default:
522 		NOTICE("BL2: Cannot set compatible string, board unsupported\n");
523 		panic();
524 	}
525 
526 	if (ret < 0) {
527 		NOTICE("BL2: Cannot set compatible string (ret=%i)\n", ret);
528 		panic();
529 	}
530 
531 	reg = mmio_read_32(RCAR_PRR);
532 	switch (reg & PRR_PRODUCT_MASK) {
533 	case PRR_PRODUCT_H3:
534 		ret = fdt_appendprop_string(dt, 0, "compatible",
535 					    "renesas,r8a7795");
536 		break;
537 	case PRR_PRODUCT_M3:
538 		ret = fdt_appendprop_string(dt, 0, "compatible",
539 					    "renesas,r8a7796");
540 		break;
541 	case PRR_PRODUCT_M3N:
542 		ret = fdt_appendprop_string(dt, 0, "compatible",
543 					    "renesas,r8a77965");
544 		break;
545 	case PRR_PRODUCT_V3M:
546 		ret = fdt_appendprop_string(dt, 0, "compatible",
547 					    "renesas,r8a77970");
548 		break;
549 	case PRR_PRODUCT_E3:
550 		ret = fdt_appendprop_string(dt, 0, "compatible",
551 					    "renesas,r8a77990");
552 		break;
553 	case PRR_PRODUCT_D3:
554 		ret = fdt_appendprop_string(dt, 0, "compatible",
555 					    "renesas,r8a77995");
556 		break;
557 	default:
558 		NOTICE("BL2: Cannot set compatible string, SoC unsupported\n");
559 		panic();
560 	}
561 
562 	if (ret < 0) {
563 		NOTICE("BL2: Cannot set compatible string (ret=%i)\n", ret);
564 		panic();
565 	}
566 }
567 
568 static void bl2_advertise_dram_entries(uint64_t dram_config[8])
569 {
570 	char nodename[32] = { 0 };
571 	uint64_t start, size;
572 	uint64_t fdtsize;
573 	int ret, node, chan;
574 
575 	for (chan = 0; chan < 4; chan++) {
576 		start = dram_config[2 * chan];
577 		size = dram_config[2 * chan + 1];
578 		if (!size)
579 			continue;
580 
581 		NOTICE("BL2: CH%d: %llx - %llx, %lld %siB\n",
582 			chan, start, start + size - 1,
583 			(size >> 30) ? : size >> 20,
584 			(size >> 30) ? "G" : "M");
585 	}
586 
587 	/*
588 	 * We add the DT nodes in reverse order here. The fdt_add_subnode()
589 	 * adds the DT node before the first existing DT node, so we have
590 	 * to add them in reverse order to get nodes sorted by address in
591 	 * the resulting DT.
592 	 */
593 	for (chan = 3; chan >= 0; chan--) {
594 		start = dram_config[2 * chan];
595 		size = dram_config[2 * chan + 1];
596 		if (!size)
597 			continue;
598 
599 		/*
600 		 * Channel 0 is mapped in 32bit space and the first
601 		 * 128 MiB are reserved
602 		 */
603 		if (chan == 0) {
604 			start = 0x48000000;
605 			size -= 0x8000000;
606 		}
607 
608 		fdtsize = cpu_to_fdt64(size);
609 
610 		snprintf(nodename, sizeof(nodename), "memory@");
611 		unsigned_num_print(start, 16, nodename + strlen(nodename));
612 		node = ret = fdt_add_subnode(fdt, 0, nodename);
613 		if (ret < 0)
614 			goto err;
615 
616 		ret = fdt_setprop_string(fdt, node, "device_type", "memory");
617 		if (ret < 0)
618 			goto err;
619 
620 		ret = fdt_setprop_u64(fdt, node, "reg", start);
621 		if (ret < 0)
622 			goto err;
623 
624 		ret = fdt_appendprop(fdt, node, "reg", &fdtsize,
625 				     sizeof(fdtsize));
626 		if (ret < 0)
627 			goto err;
628 	}
629 
630 	return;
631 err:
632 	NOTICE("BL2: Cannot add memory node to FDT (ret=%i)\n", ret);
633 	panic();
634 }
635 
636 static void bl2_advertise_dram_size(uint32_t product)
637 {
638 	uint64_t dram_config[8] = {
639 		[0] = 0x400000000ULL,
640 		[2] = 0x500000000ULL,
641 		[4] = 0x600000000ULL,
642 		[6] = 0x700000000ULL,
643 	};
644 
645 	switch (product) {
646 	case PRR_PRODUCT_H3:
647 #if (RCAR_DRAM_LPDDR4_MEMCONF == 0)
648 		/* 4GB(1GBx4) */
649 		dram_config[1] = 0x40000000ULL;
650 		dram_config[3] = 0x40000000ULL;
651 		dram_config[5] = 0x40000000ULL;
652 		dram_config[7] = 0x40000000ULL;
653 #elif (RCAR_DRAM_LPDDR4_MEMCONF == 1) && \
654       (RCAR_DRAM_CHANNEL        == 5) && \
655       (RCAR_DRAM_SPLIT          == 2)
656 		/* 4GB(2GBx2 2ch split) */
657 		dram_config[1] = 0x80000000ULL;
658 		dram_config[3] = 0x80000000ULL;
659 #elif (RCAR_DRAM_LPDDR4_MEMCONF == 1) && (RCAR_DRAM_CHANNEL == 15)
660 		/* 8GB(2GBx4: default) */
661 		dram_config[1] = 0x80000000ULL;
662 		dram_config[3] = 0x80000000ULL;
663 		dram_config[5] = 0x80000000ULL;
664 		dram_config[7] = 0x80000000ULL;
665 #endif /* RCAR_DRAM_LPDDR4_MEMCONF == 0 */
666 		break;
667 
668 	case PRR_PRODUCT_M3:
669 #if (RCAR_GEN3_ULCB == 1)
670 		/* 2GB(1GBx2 2ch split) */
671 		dram_config[1] = 0x40000000ULL;
672 		dram_config[5] = 0x40000000ULL;
673 #else
674 		/* 4GB(2GBx2 2ch split) */
675 		dram_config[1] = 0x80000000ULL;
676 		dram_config[5] = 0x80000000ULL;
677 #endif
678 		break;
679 
680 	case PRR_PRODUCT_M3N:
681 		/* 2GB(1GBx2) */
682 		dram_config[1] = 0x80000000ULL;
683 		break;
684 
685 	case PRR_PRODUCT_V3M:
686 		/* 1GB(512MBx2) */
687 		dram_config[1] = 0x40000000ULL;
688 		break;
689 
690 	case PRR_PRODUCT_E3:
691 #if (RCAR_DRAM_DDR3L_MEMCONF == 0)
692 		/* 1GB(512MBx2) */
693 		dram_config[1] = 0x40000000ULL;
694 #elif (RCAR_DRAM_DDR3L_MEMCONF == 1)
695 		/* 2GB(512MBx4) */
696 		dram_config[1] = 0x80000000ULL;
697 #elif (RCAR_DRAM_DDR3L_MEMCONF == 2)
698 		/* 4GB(1GBx4) */
699 		dram_config[1] = 0x100000000ULL;
700 #endif /* RCAR_DRAM_DDR3L_MEMCONF == 0 */
701 		break;
702 
703 	case PRR_PRODUCT_D3:
704 		/* 512MB */
705 		dram_config[1] = 0x20000000ULL;
706 		break;
707 	}
708 
709 	bl2_advertise_dram_entries(dram_config);
710 }
711 
712 void bl2_el3_early_platform_setup(u_register_t arg1, u_register_t arg2,
713 				  u_register_t arg3, u_register_t arg4)
714 {
715 	uint32_t reg, midr, lcs, boot_dev, boot_cpu, sscg, type, rev;
716 	uint32_t product, product_cut, major, minor;
717 	int32_t ret;
718 	const char *str;
719 	const char *unknown = "unknown";
720 	const char *cpu_ca57 = "CA57";
721 	const char *cpu_ca53 = "CA53";
722 	const char *product_m3n = "M3N";
723 	const char *product_h3 = "H3";
724 	const char *product_m3 = "M3";
725 	const char *product_e3 = "E3";
726 	const char *product_d3 = "D3";
727 	const char *product_v3m = "V3M";
728 	const char *lcs_secure = "SE";
729 	const char *lcs_cm = "CM";
730 	const char *lcs_dm = "DM";
731 	const char *lcs_sd = "SD";
732 	const char *lcs_fa = "FA";
733 	const char *sscg_off = "PLL1 nonSSCG Clock select";
734 	const char *sscg_on = "PLL1 SSCG Clock select";
735 	const char *boot_hyper80 = "HyperFlash(80MHz)";
736 	const char *boot_qspi40 = "QSPI Flash(40MHz)";
737 	const char *boot_qspi80 = "QSPI Flash(80MHz)";
738 	const char *boot_emmc25x1 = "eMMC(25MHz x1)";
739 	const char *boot_emmc50x8 = "eMMC(50MHz x8)";
740 #if (RCAR_LSI == RCAR_E3) || (RCAR_LSI == RCAR_D3)
741 	const char *boot_hyper160 = "HyperFlash(150MHz)";
742 #else
743 	const char *boot_hyper160 = "HyperFlash(160MHz)";
744 #endif
745 #if (RCAR_LOSSY_ENABLE == 1)
746 	int fcnlnode;
747 #endif
748 
749 	bl2_init_generic_timer();
750 
751 	reg = mmio_read_32(RCAR_MODEMR);
752 	boot_dev = reg & MODEMR_BOOT_DEV_MASK;
753 	boot_cpu = reg & MODEMR_BOOT_CPU_MASK;
754 
755 	bl2_cpg_init();
756 
757 	if (boot_cpu == MODEMR_BOOT_CPU_CA57 ||
758 	    boot_cpu == MODEMR_BOOT_CPU_CA53) {
759 		rcar_pfc_init();
760 		rcar_console_boot_init();
761 	}
762 
763 	plat_rcar_gic_driver_init();
764 	plat_rcar_gic_init();
765 	rcar_swdt_init();
766 
767 	/* FIQ interrupts are taken to EL3 */
768 	write_scr_el3(read_scr_el3() | SCR_FIQ_BIT);
769 
770 	write_daifclr(DAIF_FIQ_BIT);
771 
772 	reg = read_midr();
773 	midr = reg & (MIDR_PN_MASK << MIDR_PN_SHIFT);
774 	switch (midr) {
775 	case MIDR_CA57:
776 		str = cpu_ca57;
777 		break;
778 	case MIDR_CA53:
779 		str = cpu_ca53;
780 		break;
781 	default:
782 		str = unknown;
783 		break;
784 	}
785 
786 	NOTICE("BL2: R-Car Gen3 Initial Program Loader(%s) Rev.%s\n", str,
787 	       version_of_renesas);
788 
789 	reg = mmio_read_32(RCAR_PRR);
790 	product_cut = reg & (PRR_PRODUCT_MASK | PRR_CUT_MASK);
791 	product = reg & PRR_PRODUCT_MASK;
792 
793 	switch (product) {
794 	case PRR_PRODUCT_H3:
795 		str = product_h3;
796 		break;
797 	case PRR_PRODUCT_M3:
798 		str = product_m3;
799 		break;
800 	case PRR_PRODUCT_M3N:
801 		str = product_m3n;
802 		break;
803 	case PRR_PRODUCT_V3M:
804 		str = product_v3m;
805 		break;
806 	case PRR_PRODUCT_E3:
807 		str = product_e3;
808 		break;
809 	case PRR_PRODUCT_D3:
810 		str = product_d3;
811 		break;
812 	default:
813 		str = unknown;
814 		break;
815 	}
816 
817 	if ((PRR_PRODUCT_M3 == product) &&
818 	    (PRR_PRODUCT_20 == (reg & RCAR_MAJOR_MASK))) {
819 		if (RCAR_M3_CUT_VER11 == (reg & PRR_CUT_MASK)) {
820 			/* M3 Ver.1.1 or Ver.1.2 */
821 			NOTICE("BL2: PRR is R-Car %s Ver.1.1 / Ver.1.2\n",
822 				str);
823 		} else {
824 			NOTICE("BL2: PRR is R-Car %s Ver.1.%d\n",
825 				str,
826 				(reg & RCAR_MINOR_MASK) + RCAR_M3_MINOR_OFFSET);
827 		}
828 	} else {
829 		major = (reg & RCAR_MAJOR_MASK) >> RCAR_MAJOR_SHIFT;
830 		major = major + RCAR_MAJOR_OFFSET;
831 		minor = reg & RCAR_MINOR_MASK;
832 		NOTICE("BL2: PRR is R-Car %s Ver.%d.%d\n", str, major, minor);
833 	}
834 
835 	if (product == PRR_PRODUCT_E3) {
836 		reg = mmio_read_32(RCAR_MODEMR);
837 		sscg = reg & RCAR_SSCG_MASK;
838 		str = sscg == RCAR_SSCG_ENABLE ? sscg_on : sscg_off;
839 		NOTICE("BL2: %s\n", str);
840 	}
841 
842 	rcar_get_board_type(&type, &rev);
843 
844 	switch (type) {
845 	case BOARD_SALVATOR_X:
846 	case BOARD_KRIEK:
847 	case BOARD_STARTER_KIT:
848 	case BOARD_SALVATOR_XS:
849 	case BOARD_EBISU:
850 	case BOARD_STARTER_KIT_PRE:
851 	case BOARD_EBISU_4D:
852 	case BOARD_DRAAK:
853 	case BOARD_EAGLE:
854 		break;
855 	default:
856 		type = BOARD_UNKNOWN;
857 		break;
858 	}
859 
860 	if (type == BOARD_UNKNOWN || rev == BOARD_REV_UNKNOWN)
861 		NOTICE("BL2: Board is %s Rev.---\n", GET_BOARD_NAME(type));
862 	else {
863 		NOTICE("BL2: Board is %s Rev.%d.%d\n",
864 		       GET_BOARD_NAME(type),
865 		       GET_BOARD_MAJOR(rev), GET_BOARD_MINOR(rev));
866 	}
867 
868 #if RCAR_LSI != RCAR_AUTO
869 	if (product != TARGET_PRODUCT) {
870 		ERROR("BL2: IPL was been built for the %s.\n", TARGET_NAME);
871 		ERROR("BL2: Please write the correct IPL to flash memory.\n");
872 		panic();
873 	}
874 #endif
875 	rcar_avs_init();
876 	rcar_avs_setting();
877 
878 	switch (boot_dev) {
879 	case MODEMR_BOOT_DEV_HYPERFLASH160:
880 		str = boot_hyper160;
881 		break;
882 	case MODEMR_BOOT_DEV_HYPERFLASH80:
883 		str = boot_hyper80;
884 		break;
885 	case MODEMR_BOOT_DEV_QSPI_FLASH40:
886 		str = boot_qspi40;
887 		break;
888 	case MODEMR_BOOT_DEV_QSPI_FLASH80:
889 		str = boot_qspi80;
890 		break;
891 	case MODEMR_BOOT_DEV_EMMC_25X1:
892 #if RCAR_LSI == RCAR_D3
893 		ERROR("BL2: Failed to Initialize. eMMC is not supported.\n");
894 		panic();
895 #endif
896 		str = boot_emmc25x1;
897 		break;
898 	case MODEMR_BOOT_DEV_EMMC_50X8:
899 #if RCAR_LSI == RCAR_D3
900 		ERROR("BL2: Failed to Initialize. eMMC is not supported.\n");
901 		panic();
902 #endif
903 		str = boot_emmc50x8;
904 		break;
905 	default:
906 		str = unknown;
907 		break;
908 	}
909 	NOTICE("BL2: Boot device is %s\n", str);
910 
911 	rcar_avs_setting();
912 	reg = rcar_rom_get_lcs(&lcs);
913 	if (reg) {
914 		str = unknown;
915 		goto lcm_state;
916 	}
917 
918 	switch (lcs) {
919 	case LCS_CM:
920 		str = lcs_cm;
921 		break;
922 	case LCS_DM:
923 		str = lcs_dm;
924 		break;
925 	case LCS_SD:
926 		str = lcs_sd;
927 		break;
928 	case LCS_SE:
929 		str = lcs_secure;
930 		break;
931 	case LCS_FA:
932 		str = lcs_fa;
933 		break;
934 	default:
935 		str = unknown;
936 		break;
937 	}
938 
939 lcm_state:
940 	NOTICE("BL2: LCM state is %s\n", str);
941 
942 	rcar_avs_end();
943 	is_ddr_backup_mode();
944 
945 	bl2_tzram_layout.total_base = BL31_BASE;
946 	bl2_tzram_layout.total_size = BL31_LIMIT - BL31_BASE;
947 
948 	if (boot_cpu == MODEMR_BOOT_CPU_CA57 ||
949 	    boot_cpu == MODEMR_BOOT_CPU_CA53) {
950 		ret = rcar_dram_init();
951 		if (ret) {
952 			NOTICE("BL2: Failed to DRAM initialize (%d).\n", ret);
953 			panic();
954 		}
955 		rcar_qos_init();
956 	}
957 
958 	/* Set up FDT */
959 	ret = fdt_create_empty_tree(fdt, sizeof(fdt_blob));
960 	if (ret) {
961 		NOTICE("BL2: Cannot allocate FDT for U-Boot (ret=%i)\n", ret);
962 		panic();
963 	}
964 
965 	/* Add platform compatible string */
966 	bl2_populate_compatible_string(fdt);
967 
968 	/* Print DRAM layout */
969 	bl2_advertise_dram_size(product);
970 
971 	if (boot_dev == MODEMR_BOOT_DEV_EMMC_25X1 ||
972 	    boot_dev == MODEMR_BOOT_DEV_EMMC_50X8) {
973 		if (rcar_emmc_init() != EMMC_SUCCESS) {
974 			NOTICE("BL2: Failed to eMMC driver initialize.\n");
975 			panic();
976 		}
977 		rcar_emmc_memcard_power(EMMC_POWER_ON);
978 		if (rcar_emmc_mount() != EMMC_SUCCESS) {
979 			NOTICE("BL2: Failed to eMMC mount operation.\n");
980 			panic();
981 		}
982 	} else {
983 		rcar_rpc_init();
984 		rcar_dma_init();
985 	}
986 
987 	reg = mmio_read_32(RST_WDTRSTCR);
988 	reg &= ~WDTRSTCR_RWDT_RSTMSK;
989 	reg |= WDTRSTCR_PASSWORD;
990 	mmio_write_32(RST_WDTRSTCR, reg);
991 
992 	mmio_write_32(CPG_CPGWPR, CPGWPR_PASSWORD);
993 	mmio_write_32(CPG_CPGWPCR, CPGWPCR_PASSWORD);
994 
995 	reg = mmio_read_32(RCAR_PRR);
996 	if ((reg & RCAR_CPU_MASK_CA57) == RCAR_CPU_HAVE_CA57)
997 		mmio_write_32(CPG_CA57DBGRCR,
998 			      DBGCPUPREN | mmio_read_32(CPG_CA57DBGRCR));
999 
1000 	if ((reg & RCAR_CPU_MASK_CA53) == RCAR_CPU_HAVE_CA53)
1001 		mmio_write_32(CPG_CA53DBGRCR,
1002 			      DBGCPUPREN | mmio_read_32(CPG_CA53DBGRCR));
1003 
1004 	if (product_cut == PRR_PRODUCT_H3_CUT10) {
1005 		reg = mmio_read_32(CPG_PLL2CR);
1006 		reg &= ~((uint32_t) 1 << 5);
1007 		mmio_write_32(CPG_PLL2CR, reg);
1008 
1009 		reg = mmio_read_32(CPG_PLL4CR);
1010 		reg &= ~((uint32_t) 1 << 5);
1011 		mmio_write_32(CPG_PLL4CR, reg);
1012 
1013 		reg = mmio_read_32(CPG_PLL0CR);
1014 		reg &= ~((uint32_t) 1 << 12);
1015 		mmio_write_32(CPG_PLL0CR, reg);
1016 	}
1017 #if (RCAR_LOSSY_ENABLE == 1)
1018 	NOTICE("BL2: Lossy Decomp areas\n");
1019 
1020 	fcnlnode = fdt_add_subnode(fdt, 0, "reserved-memory");
1021 	if (fcnlnode < 0) {
1022 		NOTICE("BL2: Cannot create reserved mem node (ret=%i)\n",
1023 			fcnlnode);
1024 		panic();
1025 	}
1026 
1027 	bl2_lossy_setting(0, LOSSY_ST_ADDR0, LOSSY_END_ADDR0,
1028 			  LOSSY_FMT0, LOSSY_ENA_DIS0, fcnlnode);
1029 	bl2_lossy_setting(1, LOSSY_ST_ADDR1, LOSSY_END_ADDR1,
1030 			  LOSSY_FMT1, LOSSY_ENA_DIS1, fcnlnode);
1031 	bl2_lossy_setting(2, LOSSY_ST_ADDR2, LOSSY_END_ADDR2,
1032 			  LOSSY_FMT2, LOSSY_ENA_DIS2, fcnlnode);
1033 #endif
1034 
1035 	fdt_pack(fdt);
1036 	NOTICE("BL2: FDT at %p\n", fdt);
1037 
1038 	if (boot_dev == MODEMR_BOOT_DEV_EMMC_25X1 ||
1039 	    boot_dev == MODEMR_BOOT_DEV_EMMC_50X8)
1040 		rcar_io_emmc_setup();
1041 	else
1042 		rcar_io_setup();
1043 }
1044 
1045 void bl2_el3_plat_arch_setup(void)
1046 {
1047 #if RCAR_BL2_DCACHE == 1
1048 	NOTICE("BL2: D-Cache enable\n");
1049 	rcar_configure_mmu_el3(BL2_BASE,
1050 			       BL2_END - BL2_BASE,
1051 			       BL2_RO_BASE, BL2_RO_LIMIT
1052 #if USE_COHERENT_MEM
1053 			       , BL2_COHERENT_RAM_BASE, BL2_COHERENT_RAM_LIMIT
1054 #endif
1055 	    );
1056 #endif
1057 }
1058 
1059 void bl2_platform_setup(void)
1060 {
1061 
1062 }
1063 
1064 static void bl2_init_generic_timer(void)
1065 {
1066 /* FIXME: V3M 16.666 MHz ? */
1067 #if RCAR_LSI == RCAR_D3
1068 	uint32_t reg_cntfid = EXTAL_DRAAK;
1069 #elif RCAR_LSI == RCAR_E3
1070 	uint32_t reg_cntfid = EXTAL_EBISU;
1071 #else /* RCAR_LSI == RCAR_E3 */
1072 	uint32_t reg;
1073 	uint32_t reg_cntfid;
1074 	uint32_t modemr;
1075 	uint32_t modemr_pll;
1076 	uint32_t board_type;
1077 	uint32_t board_rev;
1078 	uint32_t pll_table[] = {
1079 		EXTAL_MD14_MD13_TYPE_0,	/* MD14/MD13 : 0b00 */
1080 		EXTAL_MD14_MD13_TYPE_1,	/* MD14/MD13 : 0b01 */
1081 		EXTAL_MD14_MD13_TYPE_2,	/* MD14/MD13 : 0b10 */
1082 		EXTAL_MD14_MD13_TYPE_3	/* MD14/MD13 : 0b11 */
1083 	};
1084 
1085 	modemr = mmio_read_32(RCAR_MODEMR);
1086 	modemr_pll = (modemr & MODEMR_BOOT_PLL_MASK);
1087 
1088 	/* Set frequency data in CNTFID0 */
1089 	reg_cntfid = pll_table[modemr_pll >> MODEMR_BOOT_PLL_SHIFT];
1090 	reg = mmio_read_32(RCAR_PRR) & (PRR_PRODUCT_MASK | PRR_CUT_MASK);
1091 	switch (modemr_pll) {
1092 	case MD14_MD13_TYPE_0:
1093 		rcar_get_board_type(&board_type, &board_rev);
1094 		if (BOARD_SALVATOR_XS == board_type) {
1095 			reg_cntfid = EXTAL_SALVATOR_XS;
1096 		}
1097 		break;
1098 	case MD14_MD13_TYPE_3:
1099 		if (PRR_PRODUCT_H3_CUT10 == reg) {
1100 			reg_cntfid = reg_cntfid >> 1U;
1101 		}
1102 		break;
1103 	default:
1104 		/* none */
1105 		break;
1106 	}
1107 #endif /* RCAR_LSI == RCAR_E3 */
1108 	/* Update memory mapped and register based freqency */
1109 	write_cntfrq_el0((u_register_t )reg_cntfid);
1110 	mmio_write_32(ARM_SYS_CNTCTL_BASE + (uintptr_t)CNTFID_OFF, reg_cntfid);
1111 	/* Enable counter */
1112 	mmio_setbits_32(RCAR_CNTC_BASE + (uintptr_t)CNTCR_OFF,
1113 			(uint32_t)CNTCR_EN);
1114 }
1115