xref: /rk3399_rockchip-uboot/arch/arm/mach-uniphier/micro-support-card.c (revision d38de7cb03adf88e18c05d840c2528b7a5af2f9b)
1d7728aa4SMasahiro Yamada /*
2499c8679SMasahiro Yamada  * Copyright (C) 2012-2015 Panasonic Corporation
3499c8679SMasahiro Yamada  * Copyright (C) 2015-2016 Socionext Inc.
4499c8679SMasahiro Yamada  *   Author: Masahiro Yamada <yamada.masahiro@socionext.com>
5d7728aa4SMasahiro Yamada  *
6d7728aa4SMasahiro Yamada  * SPDX-License-Identifier:	GPL-2.0+
7d7728aa4SMasahiro Yamada  */
8d7728aa4SMasahiro Yamada 
9d7728aa4SMasahiro Yamada #include <common.h>
10d7728aa4SMasahiro Yamada #include <linux/ctype.h>
11d7728aa4SMasahiro Yamada #include <linux/io.h>
12107b3fb4SMasahiro Yamada 
13107b3fb4SMasahiro Yamada #include "micro-support-card.h"
14d7728aa4SMasahiro Yamada 
15d7728aa4SMasahiro Yamada #define MICRO_SUPPORT_CARD_BASE		0x43f00000
16d7728aa4SMasahiro Yamada #define SMC911X_BASE			((MICRO_SUPPORT_CARD_BASE) + 0x00000)
17d7728aa4SMasahiro Yamada #define LED_BASE			((MICRO_SUPPORT_CARD_BASE) + 0x90000)
18d7728aa4SMasahiro Yamada #define NS16550A_BASE			((MICRO_SUPPORT_CARD_BASE) + 0xb0000)
19d7728aa4SMasahiro Yamada #define MICRO_SUPPORT_CARD_RESET	((MICRO_SUPPORT_CARD_BASE) + 0xd0034)
20d7728aa4SMasahiro Yamada #define MICRO_SUPPORT_CARD_REVISION	((MICRO_SUPPORT_CARD_BASE) + 0xd00E0)
21d7728aa4SMasahiro Yamada 
22d7728aa4SMasahiro Yamada /*
23d7728aa4SMasahiro Yamada  * 0: reset deassert, 1: reset
24d7728aa4SMasahiro Yamada  *
25d7728aa4SMasahiro Yamada  * bit[0]: LAN, I2C, LED
26d7728aa4SMasahiro Yamada  * bit[1]: UART
27d7728aa4SMasahiro Yamada  */
support_card_reset_deassert(void)28ef07a99bSMasahiro Yamada static void support_card_reset_deassert(void)
29d7728aa4SMasahiro Yamada {
3036223f5dSMasahiro Yamada 	writel(0x00010000, MICRO_SUPPORT_CARD_RESET);
31d7728aa4SMasahiro Yamada }
32d7728aa4SMasahiro Yamada 
support_card_reset(void)33ef07a99bSMasahiro Yamada static void support_card_reset(void)
34d7728aa4SMasahiro Yamada {
3536223f5dSMasahiro Yamada 	writel(0x00020003, MICRO_SUPPORT_CARD_RESET);
36d7728aa4SMasahiro Yamada }
37d7728aa4SMasahiro Yamada 
support_card_show_revision(void)38d7728aa4SMasahiro Yamada static int support_card_show_revision(void)
39d7728aa4SMasahiro Yamada {
40d7728aa4SMasahiro Yamada 	u32 revision;
41d7728aa4SMasahiro Yamada 
42d7728aa4SMasahiro Yamada 	revision = readl(MICRO_SUPPORT_CARD_REVISION);
43499c8679SMasahiro Yamada 	revision &= 0xff;
44499c8679SMasahiro Yamada 
45499c8679SMasahiro Yamada 	/* revision 3.6.x card changed the revision format */
46*6fc84914SMasahiro Yamada 	printf("SC:    Micro Support Card (CPLD version %s%d.%d)\n",
47*6fc84914SMasahiro Yamada 	       revision >> 4 == 6 ? "3." : "",
48499c8679SMasahiro Yamada 	       revision >> 4, revision & 0xf);
49499c8679SMasahiro Yamada 
50d7728aa4SMasahiro Yamada 	return 0;
51d7728aa4SMasahiro Yamada }
52d7728aa4SMasahiro Yamada 
support_card_init(void)53d7728aa4SMasahiro Yamada void support_card_init(void)
54d7728aa4SMasahiro Yamada {
55ef07a99bSMasahiro Yamada 	support_card_reset();
56d7728aa4SMasahiro Yamada 	/*
57d7728aa4SMasahiro Yamada 	 * After power on, we need to keep the LAN controller in reset state
58d7728aa4SMasahiro Yamada 	 * for a while. (200 usec)
59d7728aa4SMasahiro Yamada 	 */
6066e3efebSMasahiro Yamada 	udelay(200);
61d7728aa4SMasahiro Yamada 	support_card_reset_deassert();
62*6fc84914SMasahiro Yamada 
63*6fc84914SMasahiro Yamada 	support_card_show_revision();
64d7728aa4SMasahiro Yamada }
65d7728aa4SMasahiro Yamada 
66d7728aa4SMasahiro Yamada #if defined(CONFIG_SMC911X)
67d7728aa4SMasahiro Yamada #include <netdev.h>
68d7728aa4SMasahiro Yamada 
board_eth_init(bd_t * bis)69d7728aa4SMasahiro Yamada int board_eth_init(bd_t *bis)
70d7728aa4SMasahiro Yamada {
71d7728aa4SMasahiro Yamada 	return smc911x_initialize(0, SMC911X_BASE);
72d7728aa4SMasahiro Yamada }
73d7728aa4SMasahiro Yamada #endif
74d7728aa4SMasahiro Yamada 
75e856bdcfSMasahiro Yamada #if defined(CONFIG_MTD_NOR_FLASH)
76d7728aa4SMasahiro Yamada 
77d7728aa4SMasahiro Yamada #include <mtd/cfi_flash.h>
78d7728aa4SMasahiro Yamada 
79d7728aa4SMasahiro Yamada struct memory_bank {
80d7728aa4SMasahiro Yamada 	phys_addr_t base;
81d7728aa4SMasahiro Yamada 	unsigned long size;
82d7728aa4SMasahiro Yamada };
83d7728aa4SMasahiro Yamada 
mem_is_flash(const struct memory_bank * mem)84d7728aa4SMasahiro Yamada static int mem_is_flash(const struct memory_bank *mem)
85d7728aa4SMasahiro Yamada {
86d7728aa4SMasahiro Yamada 	const int loop = 128;
87d7728aa4SMasahiro Yamada 	u32 *scratch_addr;
88d7728aa4SMasahiro Yamada 	u32 saved_value;
89d7728aa4SMasahiro Yamada 	int ret = 1;
90d7728aa4SMasahiro Yamada 	int i;
91d7728aa4SMasahiro Yamada 
92d7728aa4SMasahiro Yamada 	/* just in case, use the tail of the memory bank */
93d7728aa4SMasahiro Yamada 	scratch_addr = map_physmem(mem->base + mem->size - sizeof(u32) * loop,
94d7728aa4SMasahiro Yamada 				   sizeof(u32) * loop, MAP_NOCACHE);
95d7728aa4SMasahiro Yamada 
96d7728aa4SMasahiro Yamada 	for (i = 0; i < loop; i++, scratch_addr++) {
97d7728aa4SMasahiro Yamada 		saved_value = readl(scratch_addr);
98d7728aa4SMasahiro Yamada 		writel(~saved_value, scratch_addr);
99d7728aa4SMasahiro Yamada 		if (readl(scratch_addr) != saved_value) {
100d7728aa4SMasahiro Yamada 			/* We assume no memory or SRAM here. */
101d7728aa4SMasahiro Yamada 			writel(saved_value, scratch_addr);
102d7728aa4SMasahiro Yamada 			ret = 0;
103d7728aa4SMasahiro Yamada 			break;
104d7728aa4SMasahiro Yamada 		}
105d7728aa4SMasahiro Yamada 	}
106d7728aa4SMasahiro Yamada 
107d7728aa4SMasahiro Yamada 	unmap_physmem(scratch_addr, MAP_NOCACHE);
108d7728aa4SMasahiro Yamada 
109d7728aa4SMasahiro Yamada 	return ret;
110d7728aa4SMasahiro Yamada }
111d7728aa4SMasahiro Yamada 
112d7728aa4SMasahiro Yamada /* {address, size} */
113d7728aa4SMasahiro Yamada static const struct memory_bank memory_banks[] = {
114d7728aa4SMasahiro Yamada 	{0x42000000, 0x01f00000},
115d7728aa4SMasahiro Yamada };
116d7728aa4SMasahiro Yamada 
117d7728aa4SMasahiro Yamada static const struct memory_bank
118d7728aa4SMasahiro Yamada *flash_banks_list[CONFIG_SYS_MAX_FLASH_BANKS_DETECT];
119d7728aa4SMasahiro Yamada 
cfi_flash_bank_addr(int i)120d7728aa4SMasahiro Yamada phys_addr_t cfi_flash_bank_addr(int i)
121d7728aa4SMasahiro Yamada {
122d7728aa4SMasahiro Yamada 	return flash_banks_list[i]->base;
123d7728aa4SMasahiro Yamada }
124d7728aa4SMasahiro Yamada 
cfi_flash_bank_size(int i)125d7728aa4SMasahiro Yamada unsigned long cfi_flash_bank_size(int i)
126d7728aa4SMasahiro Yamada {
127d7728aa4SMasahiro Yamada 	return flash_banks_list[i]->size;
128d7728aa4SMasahiro Yamada }
129d7728aa4SMasahiro Yamada 
detect_num_flash_banks(void)130d7728aa4SMasahiro Yamada static void detect_num_flash_banks(void)
131d7728aa4SMasahiro Yamada {
132d7728aa4SMasahiro Yamada 	const struct memory_bank *memory_bank, *end;
133d7728aa4SMasahiro Yamada 
134d7728aa4SMasahiro Yamada 	cfi_flash_num_flash_banks = 0;
135d7728aa4SMasahiro Yamada 
136d7728aa4SMasahiro Yamada 	memory_bank = memory_banks;
137d7728aa4SMasahiro Yamada 	end = memory_bank + ARRAY_SIZE(memory_banks);
138d7728aa4SMasahiro Yamada 
139d7728aa4SMasahiro Yamada 	for (; memory_bank < end; memory_bank++) {
140d7728aa4SMasahiro Yamada 		if (cfi_flash_num_flash_banks >=
141d7728aa4SMasahiro Yamada 		    CONFIG_SYS_MAX_FLASH_BANKS_DETECT)
142d7728aa4SMasahiro Yamada 			break;
143d7728aa4SMasahiro Yamada 
144d7728aa4SMasahiro Yamada 		if (mem_is_flash(memory_bank)) {
145d7728aa4SMasahiro Yamada 			flash_banks_list[cfi_flash_num_flash_banks] =
146d7728aa4SMasahiro Yamada 								memory_bank;
147d7728aa4SMasahiro Yamada 
148d7728aa4SMasahiro Yamada 			debug("flash bank found: base = 0x%lx, size = 0x%lx\n",
14911d3ede4SMasahiro Yamada 			      (unsigned long)memory_bank->base,
15011d3ede4SMasahiro Yamada 			      (unsigned long)memory_bank->size);
151d7728aa4SMasahiro Yamada 			cfi_flash_num_flash_banks++;
152d7728aa4SMasahiro Yamada 		}
153d7728aa4SMasahiro Yamada 	}
154d7728aa4SMasahiro Yamada 
155d7728aa4SMasahiro Yamada 	debug("number of flash banks: %d\n", cfi_flash_num_flash_banks);
156d7728aa4SMasahiro Yamada }
157e856bdcfSMasahiro Yamada #else /* CONFIG_MTD_NOR_FLASH */
detect_num_flash_banks(void)158ef07a99bSMasahiro Yamada static void detect_num_flash_banks(void)
159d7728aa4SMasahiro Yamada {
160d7728aa4SMasahiro Yamada };
161e856bdcfSMasahiro Yamada #endif /* CONFIG_MTD_NOR_FLASH */
162d7728aa4SMasahiro Yamada 
support_card_late_init(void)163d7728aa4SMasahiro Yamada void support_card_late_init(void)
164d7728aa4SMasahiro Yamada {
165d7728aa4SMasahiro Yamada 	detect_num_flash_banks();
166d7728aa4SMasahiro Yamada }
167d7728aa4SMasahiro Yamada 
168d7728aa4SMasahiro Yamada static const u8 ledval_num[] = {
169d7728aa4SMasahiro Yamada 	0x7e, /* 0 */
170d7728aa4SMasahiro Yamada 	0x0c, /* 1 */
171d7728aa4SMasahiro Yamada 	0xb6, /* 2 */
172d7728aa4SMasahiro Yamada 	0x9e, /* 3 */
173d7728aa4SMasahiro Yamada 	0xcc, /* 4 */
174d7728aa4SMasahiro Yamada 	0xda, /* 5 */
175d7728aa4SMasahiro Yamada 	0xfa, /* 6 */
176d7728aa4SMasahiro Yamada 	0x4e, /* 7 */
177d7728aa4SMasahiro Yamada 	0xfe, /* 8 */
178d7728aa4SMasahiro Yamada 	0xde, /* 9 */
179d7728aa4SMasahiro Yamada };
180d7728aa4SMasahiro Yamada 
181d7728aa4SMasahiro Yamada static const u8 ledval_alpha[] = {
182d7728aa4SMasahiro Yamada 	0xee, /* A */
183d7728aa4SMasahiro Yamada 	0xf8, /* B */
184d7728aa4SMasahiro Yamada 	0x72, /* C */
185d7728aa4SMasahiro Yamada 	0xbc, /* D */
186d7728aa4SMasahiro Yamada 	0xf2, /* E */
187d7728aa4SMasahiro Yamada 	0xe2, /* F */
188d7728aa4SMasahiro Yamada 	0x7a, /* G */
189d7728aa4SMasahiro Yamada 	0xe8, /* H */
190d7728aa4SMasahiro Yamada 	0x08, /* I */
191d7728aa4SMasahiro Yamada 	0x3c, /* J */
192d7728aa4SMasahiro Yamada 	0xea, /* K */
193d7728aa4SMasahiro Yamada 	0x70, /* L */
194d7728aa4SMasahiro Yamada 	0x6e, /* M */
195d7728aa4SMasahiro Yamada 	0xa8, /* N */
196d7728aa4SMasahiro Yamada 	0xb8, /* O */
197d7728aa4SMasahiro Yamada 	0xe6, /* P */
198d7728aa4SMasahiro Yamada 	0xce, /* Q */
199d7728aa4SMasahiro Yamada 	0xa0, /* R */
200d7728aa4SMasahiro Yamada 	0xc8, /* S */
201d7728aa4SMasahiro Yamada 	0x8c, /* T */
202d7728aa4SMasahiro Yamada 	0x7c, /* U */
203d7728aa4SMasahiro Yamada 	0x54, /* V */
204d7728aa4SMasahiro Yamada 	0xfc, /* W */
205d7728aa4SMasahiro Yamada 	0xec, /* X */
206d7728aa4SMasahiro Yamada 	0xdc, /* Y */
207d7728aa4SMasahiro Yamada 	0xa4, /* Z */
208d7728aa4SMasahiro Yamada };
209d7728aa4SMasahiro Yamada 
char2ledval(char c)210d7728aa4SMasahiro Yamada static u8 char2ledval(char c)
211d7728aa4SMasahiro Yamada {
212d7728aa4SMasahiro Yamada 	if (isdigit(c))
213d7728aa4SMasahiro Yamada 		return ledval_num[c - '0'];
214d7728aa4SMasahiro Yamada 	else if (isalpha(c))
215d7728aa4SMasahiro Yamada 		return ledval_alpha[toupper(c) - 'A'];
216d7728aa4SMasahiro Yamada 
217d7728aa4SMasahiro Yamada 	return 0;
218d7728aa4SMasahiro Yamada }
219d7728aa4SMasahiro Yamada 
led_puts(const char * s)220d7728aa4SMasahiro Yamada void led_puts(const char *s)
221d7728aa4SMasahiro Yamada {
222d7728aa4SMasahiro Yamada 	int i;
223d7728aa4SMasahiro Yamada 	u32 val = 0;
224d7728aa4SMasahiro Yamada 
225d7728aa4SMasahiro Yamada 	if (!s)
226d7728aa4SMasahiro Yamada 		return;
227d7728aa4SMasahiro Yamada 
228d7728aa4SMasahiro Yamada 	for (i = 0; i < 4; i++) {
229d7728aa4SMasahiro Yamada 		val <<= 8;
230d7728aa4SMasahiro Yamada 		val |= char2ledval(*s);
231d7728aa4SMasahiro Yamada 		if (*s != '\0')
232d7728aa4SMasahiro Yamada 			s++;
233d7728aa4SMasahiro Yamada 	}
234d7728aa4SMasahiro Yamada 
235d7728aa4SMasahiro Yamada 	writel(~val, LED_BASE);
236d7728aa4SMasahiro Yamada }
237