blob: 48cf3091e99792db5365f6743467b5da077dd970 [file] [log] [blame]
Stefan Roese88dc4092018-08-16 15:27:31 +02001// SPDX-License-Identifier: GPL-2.0+
2/*
3 * Copyright (C) 2018 Stefan Roese <sr@denx.de>
4 */
5
6#include <common.h>
Simon Glass9fb625c2019-08-01 09:46:51 -06007#include <env.h>
Simon Glassf3998fd2019-08-02 09:44:25 -06008#include <env_internal.h>
Simon Glass52559322019-11-14 12:57:46 -07009#include <init.h>
Stefan Roeseb1f51fc2018-10-09 08:59:13 +020010#include <led.h>
Simon Glass336d4612020-02-03 07:36:16 -070011#include <malloc.h>
Stefan Roese7b3af032018-11-30 07:46:30 +010012#include <net.h>
13#include <spi.h>
14#include <spi_flash.h>
Simon Glass3db71102019-11-14 12:57:16 -070015#include <u-boot/crc.h>
Stefan Roese7b3af032018-11-30 07:46:30 +010016#include <uuid.h>
17#include <linux/ctype.h>
Stefan Roese48f8e152018-10-09 08:59:11 +020018#include <linux/io.h>
19
20#define MT76XX_AGPIO_CFG 0x1000003c
Stefan Roese88dc4092018-08-16 15:27:31 +020021
Stefan Roese7b3af032018-11-30 07:46:30 +010022#define FACTORY_DATA_OFFS 0xc0000
23#define FACTORY_DATA_SECT_SIZE 0x10000
Tom Rini3eee45d2019-11-18 20:02:06 -050024#if ((CONFIG_ENV_OFFSET_REDUND + CONFIG_ENV_SIZE) > FACTORY_DATA_OFFS)
Stefan Roese7b3af032018-11-30 07:46:30 +010025#error "U-Boot image with environment too big (overlapping with factory-data)!"
26#endif
27#define FACTORY_DATA_USER_OFFS 0x140
28#define FACTORY_DATA_SIZE 0x1f0
29#define FACTORY_DATA_CRC_LEN (FACTORY_DATA_SIZE - \
30 FACTORY_DATA_USER_OFFS - sizeof(u32))
31
32#define FACTORY_DATA_MAGIC 0xCAFEBABE
33
34struct factory_data_values {
35 u8 pad_1[4];
36 u8 wifi_mac[6]; /* offs: 0x004: binary value */
37 u8 pad_2[30];
38 u8 eth_mac[6]; /* offs: 0x028: binary value */
39 u8 pad_3[FACTORY_DATA_USER_OFFS - 4 - 6 - 30 - 6];
40 /* User values start here at offset 0x140 */
41 u32 crc;
42 u32 magic;
43 u32 version;
44 char ipr_id[UUID_STR_LEN]; /* UUID as string w/o ending \0 */
45 char hqv_id[UUID_STR_LEN]; /* UUID as string w/o ending \0 */
46 char unielec_id[UUID_STR_LEN]; /* UUID as string w/o ending \0 */
47};
48
Stefan Roese88dc4092018-08-16 15:27:31 +020049int board_early_init_f(void)
50{
Stefan Roese48f8e152018-10-09 08:59:11 +020051 void __iomem *gpio_mode;
52
53 /* Configure digital vs analog GPIOs */
54 gpio_mode = ioremap_nocache(MT76XX_AGPIO_CFG, 0x100);
55 iowrite32(0x00fe01ff, gpio_mode);
56
Stefan Roese88dc4092018-08-16 15:27:31 +020057 return 0;
58}
Stefan Roeseb1f51fc2018-10-09 08:59:13 +020059
Stefan Roese7b3af032018-11-30 07:46:30 +010060static bool prepare_uuid_var(const char *fd_ptr, const char *env_var_name,
61 char errorchar)
62{
63 char str[UUID_STR_LEN + 1] = { 0 }; /* Enough for UUID stuff */
64 bool env_updated = false;
65 char *env;
66 int i;
67
68 memcpy(str, fd_ptr, UUID_STR_LEN);
69
70 /* Convert non-ascii character to 'X' */
71 for (i = 0; i < UUID_STR_LEN; i++) {
72 if (!(isascii(str[i]) && isprint(str[i])))
73 str[i] = errorchar;
74 }
75
76 env = env_get(env_var_name);
77 if (strcmp(env, str)) {
78 env_set(env_var_name, str);
79 env_updated = true;
80 }
81
82 return env_updated;
83}
84
85static void factory_data_env_config(void)
86{
87 struct factory_data_values *fd;
88 struct spi_flash *sf;
89 int env_updated = 0;
90 char str[UUID_STR_LEN + 1]; /* Enough for UUID stuff */
91 char *env;
92 u8 *buf;
93 u32 crc;
94 int ret;
95 u8 *ptr;
96
97 buf = malloc(FACTORY_DATA_SIZE);
98 if (!buf) {
99 printf("F-Data:Unable to allocate buffer\n");
100 return;
101 }
102
103 /*
104 * Get values from factory-data area in SPI NOR
105 */
106 sf = spi_flash_probe(CONFIG_SF_DEFAULT_BUS,
107 CONFIG_SF_DEFAULT_CS,
108 CONFIG_SF_DEFAULT_SPEED,
109 CONFIG_SF_DEFAULT_MODE);
110 if (!sf) {
111 printf("F-Data:Unable to access SPI NOR flash\n");
112 goto err_free;
113 }
114
115 ret = spi_flash_read(sf, FACTORY_DATA_OFFS, FACTORY_DATA_SIZE,
116 (void *)buf);
117 if (ret) {
118 printf("F-Data:Unable to read factory-data from SPI NOR\n");
119 goto err_spi_flash;
120 }
121
122 fd = (struct factory_data_values *)buf;
123
124 if (fd->magic != FACTORY_DATA_MAGIC)
125 printf("F-Data:Magic value not correct\n");
126
127 crc = crc32(0, (u8 *)&fd->magic, FACTORY_DATA_CRC_LEN);
128 if (crc != fd->crc)
129 printf("F-Data:CRC not correct\n");
130 else
131 printf("F-Data:factory-data version %x detected\n",
132 fd->version);
133
134 /* Handle wifi_mac env variable */
135 ptr = fd->wifi_mac;
136 sprintf(str, "%pM", ptr);
137 if (!is_valid_ethaddr(ptr))
138 printf("F-Data:Invalid MAC addr: wifi_mac %s\n", str);
139
140 env = env_get("wifiaddr");
141 if (strcmp(env, str)) {
142 env_set("wifiaddr", str);
143 env_updated = 1;
144 }
145
146 /* Handle eth_mac env variable */
147 ptr = fd->eth_mac;
148 sprintf(str, "%pM", ptr);
149 if (!is_valid_ethaddr(ptr))
150 printf("F-Data:Invalid MAC addr: eth_mac %s\n", str);
151
152 env = env_get("ethaddr");
153 if (strcmp(env, str)) {
154 env_set("ethaddr", str);
155 env_updated = 1;
156 }
157
158 /* Handle UUID env variables */
159 env_updated |= prepare_uuid_var(fd->ipr_id, "linuxmoduleid", 'X');
160 env_updated |= prepare_uuid_var(fd->hqv_id, "linuxmodulehqvid", '\0');
161 env_updated |= prepare_uuid_var(fd->unielec_id,
162 "linuxmoduleunielecid", '\0');
163
164 /* Check if the environment was updated and needs to get stored */
165 if (env_updated != 0) {
166 printf("F-Data:Values don't match env values -> saving\n");
167 env_save();
168 } else {
169 debug("F-Data:Values match current env values\n");
170 }
171
172err_spi_flash:
173 spi_flash_free(sf);
174
175err_free:
176 free(buf);
177}
178
Stefan Roeseb1f51fc2018-10-09 08:59:13 +0200179int board_late_init(void)
180{
181 if (IS_ENABLED(CONFIG_LED))
182 led_default_state();
183
Stefan Roese7b3af032018-11-30 07:46:30 +0100184 factory_data_env_config();
185
Stefan Roeseb1f51fc2018-10-09 08:59:13 +0200186 return 0;
187}
Stefan Roese7b3af032018-11-30 07:46:30 +0100188
189static void copy_or_generate_uuid(char *fd_ptr, const char *env_var_name)
190{
191 char str[UUID_STR_LEN + 1] = { 0 }; /* Enough for UUID stuff */
192 char *env;
193
194 /* Don't use the UUID dest place, as the \0 char won't fit */
195 env = env_get(env_var_name);
196 if (env)
197 strncpy(str, env, UUID_STR_LEN);
198 else
199 gen_rand_uuid_str(str, UUID_STR_FORMAT_STD);
200
201 memcpy(fd_ptr, str, UUID_STR_LEN);
202}
203
204/*
205 * Helper function to provide some sane factory-data values for testing
206 * purpose, when these values are not programmed correctly
207 */
208int do_fd_write(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
209{
210 struct factory_data_values *fd;
211 struct spi_flash *sf;
212 u8 *buf;
213 int ret = CMD_RET_FAILURE;
214
215 buf = malloc(FACTORY_DATA_SECT_SIZE);
216 if (!buf) {
217 printf("F-Data:Unable to allocate buffer\n");
218 return CMD_RET_FAILURE;
219 }
220
221 sf = spi_flash_probe(CONFIG_SF_DEFAULT_BUS,
222 CONFIG_SF_DEFAULT_CS,
223 CONFIG_SF_DEFAULT_SPEED,
224 CONFIG_SF_DEFAULT_MODE);
225 if (!sf) {
226 printf("F-Data:Unable to access SPI NOR flash\n");
227 goto err_free;
228 }
229
230 /* Generate the factory-data struct */
231
232 /* Fist read complete sector into buffer */
233 ret = spi_flash_read(sf, FACTORY_DATA_OFFS, FACTORY_DATA_SECT_SIZE,
234 (void *)buf);
235 if (ret) {
236 printf("F-Data:spi_flash_read failed (%d)\n", ret);
237 goto err_spi_flash;
238 }
239
240 fd = (struct factory_data_values *)buf;
241 fd->magic = FACTORY_DATA_MAGIC;
242 fd->version = 0x1;
243
244 /* Use existing MAC and UUID values or generate some random ones */
245 if (!eth_env_get_enetaddr("wifiaddr", fd->wifi_mac)) {
246 net_random_ethaddr(fd->wifi_mac);
247 /* to get a different seed value for the MAC address */
248 mdelay(10);
249 }
250
251 if (!eth_env_get_enetaddr("ethaddr", fd->eth_mac))
252 net_random_ethaddr(fd->eth_mac);
253
254 copy_or_generate_uuid(fd->ipr_id, "linuxmoduleid");
255 copy_or_generate_uuid(fd->hqv_id, "linuxmodulehqvid");
256 copy_or_generate_uuid(fd->unielec_id, "linuxmoduleunielecid");
257
258 printf("New factory-data values:\n");
259 printf("wifiaddr=%pM\n", fd->wifi_mac);
260 printf("ethaddr=%pM\n", fd->eth_mac);
261
262 /*
263 * We don't have the \0 char at the end, so we need to specify the
264 * length in the printf format instead
265 */
266 printf("linuxmoduleid=%." __stringify(UUID_STR_LEN) "s\n", fd->ipr_id);
267 printf("linuxmodulehqvid=%." __stringify(UUID_STR_LEN) "s\n",
268 fd->hqv_id);
269 printf("linuxmoduleunielecid=%." __stringify(UUID_STR_LEN) "s\n",
270 fd->unielec_id);
271
272 fd->crc = crc32(0, (u8 *)&fd->magic, FACTORY_DATA_CRC_LEN);
273
274 ret = spi_flash_erase(sf, FACTORY_DATA_OFFS, FACTORY_DATA_SECT_SIZE);
275 if (ret) {
276 printf("F-Data:spi_flash_erase failed (%d)\n", ret);
277 goto err_spi_flash;
278 }
279
280 ret = spi_flash_write(sf, FACTORY_DATA_OFFS, FACTORY_DATA_SECT_SIZE,
281 buf);
282 if (ret) {
283 printf("F-Data:spi_flash_write failed (%d)\n", ret);
284 goto err_spi_flash;
285 }
286
287 printf("F-Data:factory-data values written to SPI NOR flash\n");
288
289err_spi_flash:
290 spi_flash_free(sf);
291
292err_free:
293 free(buf);
294
295 return ret;
296}
297
298U_BOOT_CMD(
299 fd_write, 1, 0, do_fd_write,
300 "Write test factory-data values to SPI NOR",
301 "\n"
302);