1 // SPDX-License-Identifier: GPL-2.0+
3 * Copyright (c) 2016-2020 Toradex
7 #include <asm/global_data.h>
8 #include "tdx-cfg-block.h"
9 #include "tdx-eeprom.h"
12 #include <asm/cache.h>
17 #ifdef CONFIG_TDX_CFG_BLOCK_IS_IN_NOR
23 #include <asm/mach-types.h>
25 DECLARE_GLOBAL_DATA_PTR;
27 #define TAG_VALID 0xcf01
28 #define TAG_MAC 0x0000
29 #define TAG_CAR_SERIAL 0x0021
31 #define TAG_INVALID 0xffff
33 #define TAG_FLAG_VALID 0x1
35 #define TDX_EEPROM_ID_MODULE 0
36 #define TDX_EEPROM_ID_CARRIER 1
38 #if defined(CONFIG_TDX_CFG_BLOCK_IS_IN_MMC)
39 #define TDX_CFG_BLOCK_MAX_SIZE 512
40 #elif defined(CONFIG_TDX_CFG_BLOCK_IS_IN_NAND)
41 #define TDX_CFG_BLOCK_MAX_SIZE 64
42 #elif defined(CONFIG_TDX_CFG_BLOCK_IS_IN_NOR)
43 #define TDX_CFG_BLOCK_MAX_SIZE 64
44 #elif defined(CONFIG_TDX_CFG_BLOCK_IS_IN_EEPROM)
45 #define TDX_CFG_BLOCK_MAX_SIZE 64
47 #error Toradex config block location not set
50 #ifdef CONFIG_TDX_CFG_BLOCK_EXTRA
51 #define TDX_CFG_BLOCK_EXTRA_MAX_SIZE 64
61 struct toradex_hw tdx_hw_tag;
62 struct toradex_eth_addr tdx_eth_addr;
64 #ifdef CONFIG_TDX_CFG_BLOCK_EXTRA
66 bool valid_cfgblock_carrier;
67 struct toradex_hw tdx_car_hw_tag;
70 #define TARGET_IS_ENABLED(x) IS_ENABLED(CONFIG_TARGET_ ## x)
72 const struct toradex_som toradex_modules[] = {
73 [0] = { "UNKNOWN MODULE", 0 },
74 [1] = { "Colibri PXA270 312MHz", 0 },
75 [2] = { "Colibri PXA270 520MHz", 0 },
76 [3] = { "Colibri PXA320 806MHz", 0 },
77 [4] = { "Colibri PXA300 208MHz", 0 },
78 [5] = { "Colibri PXA310 624MHz", 0 },
79 [6] = { "Colibri PXA320IT 806MHz", 0 },
80 [7] = { "Colibri PXA300 208MHz XT", 0 },
81 [8] = { "Colibri PXA270 312MHz", 0 },
82 [9] = { "Colibri PXA270 520MHz", 0 },
83 [10] = { "Colibri VF50 128MB", TARGET_IS_ENABLED(COLIBRI_VF) },
84 [11] = { "Colibri VF61 256MB", TARGET_IS_ENABLED(COLIBRI_VF) },
85 [12] = { "Colibri VF61 256MB IT", TARGET_IS_ENABLED(COLIBRI_VF) },
86 [13] = { "Colibri VF50 128MB IT", TARGET_IS_ENABLED(COLIBRI_VF) },
87 [14] = { "Colibri iMX6S 256MB", TARGET_IS_ENABLED(COLIBRI_IMX6) },
88 [15] = { "Colibri iMX6DL 512MB", TARGET_IS_ENABLED(COLIBRI_IMX6) },
89 [16] = { "Colibri iMX6S 256MB IT", TARGET_IS_ENABLED(COLIBRI_IMX6) },
90 [17] = { "Colibri iMX6DL 512MB IT", TARGET_IS_ENABLED(COLIBRI_IMX6) },
91 [18] = { "UNKNOWN MODULE", 0 },
92 [19] = { "UNKNOWN MODULE", 0 },
93 [20] = { "Colibri T20 256MB", TARGET_IS_ENABLED(COLIBRI_T20) },
94 [21] = { "Colibri T20 512MB", TARGET_IS_ENABLED(COLIBRI_T20) },
95 [22] = { "Colibri T20 512MB IT", TARGET_IS_ENABLED(COLIBRI_T20) },
96 [23] = { "Colibri T30 1GB", TARGET_IS_ENABLED(COLIBRI_T30) },
97 [24] = { "Colibri T20 256MB IT", TARGET_IS_ENABLED(COLIBRI_T20) },
98 [25] = { "Apalis T30 2GB", TARGET_IS_ENABLED(APALIS_T30) },
99 [26] = { "Apalis T30 1GB", TARGET_IS_ENABLED(APALIS_T30) },
100 [27] = { "Apalis iMX6Q 1GB", TARGET_IS_ENABLED(APALIS_IMX6) },
101 [28] = { "Apalis iMX6Q 2GB IT", TARGET_IS_ENABLED(APALIS_IMX6) },
102 [29] = { "Apalis iMX6D 512MB", TARGET_IS_ENABLED(APALIS_IMX6) },
103 [30] = { "Colibri T30 1GB IT", TARGET_IS_ENABLED(COLIBRI_T30) },
104 [31] = { "Apalis T30 1GB IT", TARGET_IS_ENABLED(APALIS_T30) },
105 [32] = { "Colibri iMX7S 256MB", TARGET_IS_ENABLED(COLIBRI_IMX7) },
106 [33] = { "Colibri iMX7D 512MB", TARGET_IS_ENABLED(COLIBRI_IMX7) },
107 [34] = { "Apalis TK1 2GB", TARGET_IS_ENABLED(APALIS_TK1) },
108 [35] = { "Apalis iMX6D 1GB IT", TARGET_IS_ENABLED(APALIS_IMX6) },
109 [36] = { "Colibri iMX6ULL 256MB", TARGET_IS_ENABLED(COLIBRI_IMX6ULL) },
110 [37] = { "Apalis iMX8QM 4GB WB IT", TARGET_IS_ENABLED(APALIS_IMX8) },
111 [38] = { "Colibri iMX8QXP 2GB WB IT", TARGET_IS_ENABLED(COLIBRI_IMX8X) },
112 [39] = { "Colibri iMX7D 1GB", TARGET_IS_ENABLED(COLIBRI_IMX7) },
113 [40] = { "Colibri iMX6ULL 512MB WB IT", TARGET_IS_ENABLED(COLIBRI_IMX6ULL) },
114 [41] = { "Colibri iMX7D 512MB EPDC", TARGET_IS_ENABLED(COLIBRI_IMX7) },
115 [42] = { "Apalis TK1 4GB", TARGET_IS_ENABLED(APALIS_TK1) },
116 [43] = { "Colibri T20 512MB IT SETEK", TARGET_IS_ENABLED(COLIBRI_T20) },
117 [44] = { "Colibri iMX6ULL 512MB IT", TARGET_IS_ENABLED(COLIBRI_IMX6ULL) },
118 [45] = { "Colibri iMX6ULL 512MB WB", TARGET_IS_ENABLED(COLIBRI_IMX6ULL) },
119 [46] = { "Apalis iMX8QXP 2GB WB IT", 0 },
120 [47] = { "Apalis iMX8QM 4GB IT", TARGET_IS_ENABLED(APALIS_IMX8) },
121 [48] = { "Apalis iMX8QP 2GB WB", TARGET_IS_ENABLED(APALIS_IMX8) },
122 [49] = { "Apalis iMX8QP 2GB", TARGET_IS_ENABLED(APALIS_IMX8) },
123 [50] = { "Colibri iMX8QXP 2GB IT", TARGET_IS_ENABLED(COLIBRI_IMX8X) },
124 [51] = { "Colibri iMX8DX 1GB WB", TARGET_IS_ENABLED(COLIBRI_IMX8X) },
125 [52] = { "Colibri iMX8DX 1GB", TARGET_IS_ENABLED(COLIBRI_IMX8X) },
126 [53] = { "Apalis iMX8QXP 2GB ECC IT", 0 },
127 [54] = { "Apalis iMX8DXP 1GB", TARGET_IS_ENABLED(APALIS_IMX8) },
128 [55] = { "Verdin iMX8M Mini Quad 2GB WB IT", TARGET_IS_ENABLED(VERDIN_IMX8MM) },
129 [56] = { "Verdin iMX8M Nano Quad 1GB WB", 0 },
130 [57] = { "Verdin iMX8M Mini DualLite 1GB", TARGET_IS_ENABLED(VERDIN_IMX8MM) },
131 [58] = { "Verdin iMX8M Plus Quad 4GB WB IT", TARGET_IS_ENABLED(VERDIN_IMX8MP) },
132 [59] = { "Verdin iMX8M Mini Quad 2GB IT", TARGET_IS_ENABLED(VERDIN_IMX8MM) },
133 [60] = { "Verdin iMX8M Mini DualLite 1GB WB IT", TARGET_IS_ENABLED(VERDIN_IMX8MM) },
134 [61] = { "Verdin iMX8M Plus Quad 2GB", TARGET_IS_ENABLED(VERDIN_IMX8MP) },
135 [62] = { "Colibri iMX6ULL 1GB IT", TARGET_IS_ENABLED(COLIBRI_IMX6ULL) },
136 [63] = { "Verdin iMX8M Plus Quad 4GB IT", TARGET_IS_ENABLED(VERDIN_IMX8MP) },
137 [64] = { "Verdin iMX8M Plus Quad 2GB WB IT", TARGET_IS_ENABLED(VERDIN_IMX8MP) },
138 [65] = { "Verdin iMX8M Plus QuadLite 1GB IT", TARGET_IS_ENABLED(VERDIN_IMX8MP) },
139 [66] = { "Verdin iMX8M Plus Quad 8GB WB", TARGET_IS_ENABLED(VERDIN_IMX8MP) },
140 [67] = { "Apalis iMX8QM 8GB WB IT", TARGET_IS_ENABLED(APALIS_IMX8) },
141 [68] = { "Verdin iMX8M Mini Quad 2GB WB IT", TARGET_IS_ENABLED(VERDIN_IMX8MM) },
142 [69] = { "Verdin AM62 Quad 1GB WB IT", TARGET_IS_ENABLED(VERDIN_AM62_A53) },
143 [70] = { "Verdin iMX8M Plus Quad 8GB WB IT", TARGET_IS_ENABLED(VERDIN_IMX8MP) },
144 [71] = { "Verdin AM62 Solo 512MB", TARGET_IS_ENABLED(VERDIN_AM62_A53) },
145 [72] = { "Verdin AM62 Solo 512MB WB IT", TARGET_IS_ENABLED(VERDIN_AM62_A53) },
146 [73] = { "Verdin AM62 Dual 1GB ET", TARGET_IS_ENABLED(VERDIN_AM62_A53) },
147 [74] = { "Verdin AM62 Dual 1GB IT", TARGET_IS_ENABLED(VERDIN_AM62_A53) },
148 [75] = { "Verdin AM62 Dual 1GB WB IT", TARGET_IS_ENABLED(VERDIN_AM62_A53) },
149 [76] = { "Verdin AM62 Quad 2GB WB IT", TARGET_IS_ENABLED(VERDIN_AM62_A53) },
157 const struct pid4list toradex_carrier_boards[] = {
158 /* the code assumes unknown at index 0 */
159 {0, "UNKNOWN CARRIER BOARD"},
161 {VERDIN_DEVELOPMENT_BOARD, "Verdin Development Board"},
165 const struct pid4list toradex_display_adapters[] = {
166 /* the code assumes unknown at index 0 */
167 {0, "UNKNOWN DISPLAY ADAPTER"},
168 {VERDIN_DSI_TO_HDMI_ADAPTER, "Verdin DSI to HDMI Adapter"},
169 {VERDIN_DSI_TO_LVDS_ADAPTER, "Verdin DSI to LVDS Adapter"},
172 const u32 toradex_ouis[] = {
177 const char * const get_toradex_carrier_boards(int pid4)
181 for (i = 1; i < ARRAY_SIZE(toradex_carrier_boards); i++) {
182 if (pid4 == toradex_carrier_boards[i].pid4) {
187 return toradex_carrier_boards[index].name;
190 const char * const get_toradex_display_adapters(int pid4)
194 for (i = 1; i < ARRAY_SIZE(toradex_display_adapters); i++) {
195 if (pid4 == toradex_display_adapters[i].pid4) {
200 return toradex_display_adapters[index].name;
203 static u32 get_serial_from_mac(struct toradex_eth_addr *eth_addr)
206 u32 oui = ntohl(eth_addr->oui) >> 8;
207 u32 nic = ntohl(eth_addr->nic) >> 8;
209 for (i = 0; i < ARRAY_SIZE(toradex_ouis); i++) {
210 if (toradex_ouis[i] == oui)
214 return (u32)((i << 24) + nic);
217 void get_mac_from_serial(u32 tdx_serial, struct toradex_eth_addr *eth_addr)
219 u8 oui_index = tdx_serial >> 24;
220 u32 nic = tdx_serial & GENMASK(23, 0);
223 if (oui_index >= ARRAY_SIZE(toradex_ouis)) {
224 puts("Can't find OUI for this serial#\n");
228 oui = toradex_ouis[oui_index];
230 eth_addr->oui = htonl(oui << 8);
231 eth_addr->nic = htonl(nic << 8);
234 #ifdef CONFIG_TDX_CFG_BLOCK_IS_IN_MMC
235 static int tdx_cfg_block_mmc_storage(u8 *config_block, int write)
238 int dev = CONFIG_TDX_CFG_BLOCK_DEV;
239 int offset = CONFIG_TDX_CFG_BLOCK_OFFSET;
240 uint part = CONFIG_TDX_CFG_BLOCK_PART;
244 /* Read production parameter config block from eMMC */
245 mmc = find_mmc_device(dev);
247 puts("No MMC card found\n");
252 puts("MMC init failed\n");
255 if (part != mmc_get_blk_desc(mmc)->hwpart) {
256 if (blk_select_hwpart_devnum(UCLASS_MMC, dev, part)) {
257 puts("MMC partition switch failed\n");
263 offset += mmc->capacity;
264 blk_start = ALIGN(offset, mmc->write_bl_len) / mmc->write_bl_len;
267 /* Careful reads a whole block of 512 bytes into config_block */
268 if (blk_dread(mmc_get_blk_desc(mmc), blk_start, 1,
269 (unsigned char *)config_block) != 1) {
274 /* Just writing one 512 byte block */
275 if (blk_dwrite(mmc_get_blk_desc(mmc), blk_start, 1,
276 (unsigned char *)config_block) != 1) {
283 /* Switch back to regular eMMC user partition */
284 blk_select_hwpart_devnum(UCLASS_MMC, 0, 0);
290 #ifdef CONFIG_TDX_CFG_BLOCK_IS_IN_NAND
291 static int read_tdx_cfg_block_from_nand(unsigned char *config_block)
293 size_t size = TDX_CFG_BLOCK_MAX_SIZE;
294 struct mtd_info *mtd = get_nand_dev_by_index(0);
299 /* Read production parameter config block from NAND page */
300 return nand_read_skip_bad(mtd, CONFIG_TDX_CFG_BLOCK_OFFSET,
301 &size, NULL, TDX_CFG_BLOCK_MAX_SIZE,
305 static int write_tdx_cfg_block_to_nand(unsigned char *config_block)
307 size_t size = TDX_CFG_BLOCK_MAX_SIZE;
309 /* Write production parameter config block to NAND page */
310 return nand_write_skip_bad(get_nand_dev_by_index(0),
311 CONFIG_TDX_CFG_BLOCK_OFFSET,
312 &size, NULL, TDX_CFG_BLOCK_MAX_SIZE,
313 config_block, WITH_WR_VERIFY);
317 #ifdef CONFIG_TDX_CFG_BLOCK_IS_IN_NOR
318 static int read_tdx_cfg_block_from_nor(unsigned char *config_block)
320 /* Read production parameter config block from NOR flash */
321 memcpy(config_block, (void *)CONFIG_TDX_CFG_BLOCK_OFFSET,
322 TDX_CFG_BLOCK_MAX_SIZE);
326 static int write_tdx_cfg_block_to_nor(unsigned char *config_block)
328 /* Write production parameter config block to NOR flash */
329 return flash_write((void *)config_block, CONFIG_TDX_CFG_BLOCK_OFFSET,
330 TDX_CFG_BLOCK_MAX_SIZE);
334 #ifdef CONFIG_TDX_CFG_BLOCK_IS_IN_EEPROM
335 static int read_tdx_cfg_block_from_eeprom(unsigned char *config_block)
337 return read_tdx_eeprom_data(TDX_EEPROM_ID_MODULE, 0x0, config_block,
338 TDX_CFG_BLOCK_MAX_SIZE);
341 static int write_tdx_cfg_block_to_eeprom(unsigned char *config_block)
343 return write_tdx_eeprom_data(TDX_EEPROM_ID_MODULE, 0x0, config_block,
344 TDX_CFG_BLOCK_MAX_SIZE);
348 int read_tdx_cfg_block(void)
351 u8 *config_block = NULL;
352 struct toradex_tag *tag;
353 size_t size = TDX_CFG_BLOCK_MAX_SIZE;
356 /* Allocate RAM area for config block */
357 config_block = memalign(ARCH_DMA_MINALIGN, size);
359 printf("Not enough malloc space available!\n");
363 memset(config_block, 0, size);
365 #if defined(CONFIG_TDX_CFG_BLOCK_IS_IN_MMC)
366 ret = tdx_cfg_block_mmc_storage(config_block, 0);
367 #elif defined(CONFIG_TDX_CFG_BLOCK_IS_IN_NAND)
368 ret = read_tdx_cfg_block_from_nand(config_block);
369 #elif defined(CONFIG_TDX_CFG_BLOCK_IS_IN_NOR)
370 ret = read_tdx_cfg_block_from_nor(config_block);
371 #elif defined(CONFIG_TDX_CFG_BLOCK_IS_IN_EEPROM)
372 ret = read_tdx_cfg_block_from_eeprom(config_block);
379 /* Expect a valid tag first */
380 tag = (struct toradex_tag *)config_block;
381 if (tag->flags != TAG_FLAG_VALID || tag->id != TAG_VALID) {
382 valid_cfgblock = false;
386 valid_cfgblock = true;
390 * check if there is enough space for storing tag and value of the
393 while (offset + sizeof(struct toradex_tag) +
394 sizeof(struct toradex_hw) < TDX_CFG_BLOCK_MAX_SIZE) {
395 tag = (struct toradex_tag *)(config_block + offset);
397 if (tag->id == TAG_INVALID)
400 if (tag->flags == TAG_FLAG_VALID) {
403 memcpy(&tdx_eth_addr, config_block + offset,
406 tdx_serial = get_serial_from_mac(&tdx_eth_addr);
409 memcpy(&tdx_hw_tag, config_block + offset, 8);
414 /* Get to next tag according to current tags length */
415 offset += tag->len * 4;
418 /* Cap product id to avoid issues with a yet unknown one */
419 if (tdx_hw_tag.prodid >= ARRAY_SIZE(toradex_modules))
420 tdx_hw_tag.prodid = 0;
427 static int parse_assembly_string(char *string_to_parse, u16 *assembly)
429 if (string_to_parse[3] >= 'A' && string_to_parse[3] <= 'Z')
430 *assembly = string_to_parse[3] - 'A';
431 else if (string_to_parse[3] == '#')
432 *assembly = dectoul(&string_to_parse[4], NULL);
439 static int get_cfgblock_interactive(void)
441 char message[CONFIG_SYS_CBSIZE];
447 printf("Enabled modules:\n");
448 for (i = 0; i < ARRAY_SIZE(toradex_modules); i++) {
449 if (toradex_modules[i].is_enabled)
450 printf(" %04d %s\n", i, toradex_modules[i].name);
453 sprintf(message, "Enter the module ID: ");
454 len = cli_readline(message);
456 prodid = dectoul(console_buffer, NULL);
457 if (prodid >= ARRAY_SIZE(toradex_modules) || !toradex_modules[prodid].is_enabled) {
458 printf("Parsing module id failed\n");
461 tdx_hw_tag.prodid = prodid;
465 sprintf(message, "Enter the module version (e.g. V1.1B or V1.1#26): V");
466 len = cli_readline(message);
469 tdx_hw_tag.ver_major = console_buffer[0] - '0';
470 tdx_hw_tag.ver_minor = console_buffer[2] - '0';
472 ret = parse_assembly_string(console_buffer, &tdx_hw_tag.ver_assembly);
474 printf("Parsing module version failed\n");
479 sprintf(message, "Enter module serial number: ");
480 len = cli_readline(message);
483 tdx_serial = dectoul(console_buffer, NULL);
488 static int get_cfgblock_barcode(char *barcode, struct toradex_hw *tag,
491 char revision[3] = {barcode[6], barcode[7], '\0'};
493 if (strlen(barcode) < 16) {
494 printf("Argument too short, barcode is 16 chars long\n");
498 /* Get hardware information from the first 8 digits */
499 tag->ver_major = barcode[4] - '0';
500 tag->ver_minor = barcode[5] - '0';
501 tag->ver_assembly = dectoul(revision, NULL);
504 tag->prodid = dectoul(barcode, NULL);
506 /* Parse second part of the barcode (serial number */
508 *serial = dectoul(barcode, NULL);
513 static int write_tag(u8 *config_block, int *offset, int tag_id,
514 u8 *tag_data, size_t tag_data_size)
516 struct toradex_tag *tag;
518 if (!offset || !config_block)
521 tag = (struct toradex_tag *)(config_block + *offset);
523 tag->flags = TAG_FLAG_VALID;
524 /* len is provided as number of 32bit values after the tag */
525 tag->len = (tag_data_size + sizeof(u32) - 1) / sizeof(u32);
526 *offset += sizeof(struct toradex_tag);
527 if (tag_data && tag_data_size) {
528 memcpy(config_block + *offset, tag_data,
530 *offset += tag_data_size;
536 #ifdef CONFIG_TDX_CFG_BLOCK_EXTRA
537 int read_tdx_cfg_block_carrier(void)
540 u8 *config_block = NULL;
541 struct toradex_tag *tag;
542 size_t size = TDX_CFG_BLOCK_EXTRA_MAX_SIZE;
545 /* Allocate RAM area for carrier config block */
546 config_block = memalign(ARCH_DMA_MINALIGN, size);
548 printf("Not enough malloc space available!\n");
552 memset(config_block, 0, size);
554 ret = read_tdx_eeprom_data(TDX_EEPROM_ID_CARRIER, 0x0, config_block,
559 /* Expect a valid tag first */
560 tag = (struct toradex_tag *)config_block;
561 if (tag->flags != TAG_FLAG_VALID || tag->id != TAG_VALID) {
562 valid_cfgblock_carrier = false;
566 valid_cfgblock_carrier = true;
569 while (offset + sizeof(struct toradex_tag) +
570 sizeof(struct toradex_hw) < TDX_CFG_BLOCK_MAX_SIZE) {
571 tag = (struct toradex_tag *)(config_block + offset);
573 if (tag->id == TAG_INVALID)
576 if (tag->flags == TAG_FLAG_VALID) {
579 memcpy(&tdx_car_serial, config_block + offset,
580 sizeof(tdx_car_serial));
583 memcpy(&tdx_car_hw_tag, config_block +
589 /* Get to next tag according to current tags length */
590 offset += tag->len * 4;
597 int check_pid8_sanity(char *pid8)
599 char s_carrierid_verdin_dev[5];
600 char s_carrierid_dahlia[5];
602 sprintf(s_carrierid_verdin_dev, "0%d", VERDIN_DEVELOPMENT_BOARD);
603 sprintf(s_carrierid_dahlia, "0%d", DAHLIA);
605 /* sane value check, first 4 chars which represent carrier id */
606 if (!strncmp(pid8, s_carrierid_verdin_dev, 4))
609 if (!strncmp(pid8, s_carrierid_dahlia, 4))
615 int try_migrate_tdx_cfg_block_carrier(void)
619 int ret = CMD_RET_SUCCESS;
620 size_t size = TDX_CFG_BLOCK_EXTRA_MAX_SIZE;
623 memset(pid8, 0x0, 8);
624 ret = read_tdx_eeprom_data(TDX_EEPROM_ID_CARRIER, 0x0, (u8 *)pid8, 8);
628 if (check_pid8_sanity(pid8))
631 /* Allocate RAM area for config block */
632 config_block = memalign(ARCH_DMA_MINALIGN, size);
634 printf("Not enough malloc space available!\n");
635 return CMD_RET_FAILURE;
638 memset(config_block, 0xff, size);
639 /* we try parse PID8 concatenating zeroed serial number */
640 tdx_car_hw_tag.ver_major = pid8[4] - '0';
641 tdx_car_hw_tag.ver_minor = pid8[5] - '0';
642 tdx_car_hw_tag.ver_assembly = pid8[7] - '0';
645 tdx_car_hw_tag.prodid = dectoul(pid8, NULL);
648 write_tag(config_block, &offset, TAG_VALID, NULL, 0);
651 write_tag(config_block, &offset, TAG_HW, (u8 *)&tdx_car_hw_tag,
652 sizeof(tdx_car_hw_tag));
655 write_tag(config_block, &offset, TAG_CAR_SERIAL, (u8 *)&tdx_car_serial,
656 sizeof(tdx_car_serial));
658 memset(config_block + offset, 0, 32 - offset);
659 ret = write_tdx_eeprom_data(TDX_EEPROM_ID_CARRIER, 0x0, config_block,
662 printf("Failed to write Toradex Extra config block: %d\n",
664 ret = CMD_RET_FAILURE;
668 printf("Successfully migrated to Toradex Config Block from PID8\n");
675 static int get_cfgblock_carrier_interactive(void)
677 char message[CONFIG_SYS_CBSIZE];
681 printf("Supported carrier boards:\n");
682 printf("%30s\t[ID]\n", "CARRIER BOARD NAME");
683 for (int i = 0; i < ARRAY_SIZE(toradex_carrier_boards); i++)
684 printf("%30s\t[%d]\n",
685 toradex_carrier_boards[i].name,
686 toradex_carrier_boards[i].pid4);
688 sprintf(message, "Choose your carrier board (provide ID): ");
689 len = cli_readline(message);
690 tdx_car_hw_tag.prodid = dectoul(console_buffer, NULL);
693 sprintf(message, "Enter carrier board version (e.g. V1.1B or V1.1#26): V");
694 len = cli_readline(message);
697 tdx_car_hw_tag.ver_major = console_buffer[0] - '0';
698 tdx_car_hw_tag.ver_minor = console_buffer[2] - '0';
700 ret = parse_assembly_string(console_buffer, &tdx_car_hw_tag.ver_assembly);
702 printf("Parsing module version failed\n");
707 sprintf(message, "Enter carrier board serial number: ");
708 len = cli_readline(message);
711 tdx_car_serial = dectoul(console_buffer, NULL);
716 static int do_cfgblock_carrier_create(struct cmd_tbl *cmdtp, int flag, int argc,
720 size_t size = TDX_CFG_BLOCK_EXTRA_MAX_SIZE;
722 int ret = CMD_RET_SUCCESS;
724 int force_overwrite = 0;
727 if (argv[2][0] == '-' && argv[2][1] == 'y')
731 /* Allocate RAM area for config block */
732 config_block = memalign(ARCH_DMA_MINALIGN, size);
734 printf("Not enough malloc space available!\n");
735 return CMD_RET_FAILURE;
738 memset(config_block, 0xff, size);
739 read_tdx_cfg_block_carrier();
740 if (valid_cfgblock_carrier && !force_overwrite) {
741 char message[CONFIG_SYS_CBSIZE];
743 sprintf(message, "A valid Toradex Carrier config block is present, still recreate? [y/N] ");
745 if (!cli_readline(message))
748 if (console_buffer[0] != 'y' &&
749 console_buffer[0] != 'Y')
753 if (argc < 3 || (force_overwrite && argc < 4)) {
754 err = get_cfgblock_carrier_interactive();
757 err = get_cfgblock_barcode(argv[3], &tdx_car_hw_tag,
760 err = get_cfgblock_barcode(argv[2], &tdx_car_hw_tag,
765 ret = CMD_RET_FAILURE;
770 write_tag(config_block, &offset, TAG_VALID, NULL, 0);
773 write_tag(config_block, &offset, TAG_HW, (u8 *)&tdx_car_hw_tag,
774 sizeof(tdx_car_hw_tag));
777 write_tag(config_block, &offset, TAG_CAR_SERIAL, (u8 *)&tdx_car_serial,
778 sizeof(tdx_car_serial));
780 memset(config_block + offset, 0, 32 - offset);
781 err = write_tdx_eeprom_data(TDX_EEPROM_ID_CARRIER, 0x0, config_block,
784 printf("Failed to write Toradex Extra config block: %d\n",
786 ret = CMD_RET_FAILURE;
790 printf("Toradex Extra config block successfully written\n");
797 #endif /* CONFIG_TDX_CFG_BLOCK_EXTRA */
799 static int do_cfgblock_create(struct cmd_tbl *cmdtp, int flag, int argc,
803 size_t size = TDX_CFG_BLOCK_MAX_SIZE;
805 int ret = CMD_RET_SUCCESS;
807 int force_overwrite = 0;
810 #ifdef CONFIG_TDX_CFG_BLOCK_EXTRA
811 if (!strcmp(argv[2], "carrier"))
812 return do_cfgblock_carrier_create(cmdtp, flag,
814 #endif /* CONFIG_TDX_CFG_BLOCK_EXTRA */
815 if (argv[2][0] == '-' && argv[2][1] == 'y')
819 /* Allocate RAM area for config block */
820 config_block = memalign(ARCH_DMA_MINALIGN, size);
822 printf("Not enough malloc space available!\n");
823 return CMD_RET_FAILURE;
826 memset(config_block, 0xff, size);
828 read_tdx_cfg_block();
829 if (valid_cfgblock) {
830 #if defined(CONFIG_TDX_CFG_BLOCK_IS_IN_NAND)
832 * On NAND devices, recreation is only allowed if the page is
833 * empty (config block invalid...)
835 printf("NAND erase block %d need to be erased before creating a Toradex config block\n",
836 CONFIG_TDX_CFG_BLOCK_OFFSET /
837 get_nand_dev_by_index(0)->erasesize);
839 #elif defined(CONFIG_TDX_CFG_BLOCK_IS_IN_NOR)
841 * On NOR devices, recreation is only allowed if the sector is
842 * empty and write protection is off (config block invalid...)
844 printf("NOR sector at offset 0x%02x need to be erased and unprotected before creating a Toradex config block\n",
845 CONFIG_TDX_CFG_BLOCK_OFFSET);
848 if (!force_overwrite) {
849 char message[CONFIG_SYS_CBSIZE];
852 "A valid Toradex config block is present, still recreate? [y/N] ");
854 if (!cli_readline(message))
857 if (console_buffer[0] != 'y' &&
858 console_buffer[0] != 'Y')
864 /* Parse new Toradex config block data... */
865 if (argc < 3 || (force_overwrite && argc < 4)) {
866 err = get_cfgblock_interactive();
869 err = get_cfgblock_barcode(argv[3], &tdx_hw_tag,
872 err = get_cfgblock_barcode(argv[2], &tdx_hw_tag,
876 ret = CMD_RET_FAILURE;
880 /* Convert serial number to MAC address (the storage format) */
881 get_mac_from_serial(tdx_serial, &tdx_eth_addr);
884 write_tag(config_block, &offset, TAG_VALID, NULL, 0);
887 write_tag(config_block, &offset, TAG_HW, (u8 *)&tdx_hw_tag,
891 write_tag(config_block, &offset, TAG_MAC, (u8 *)&tdx_eth_addr,
892 sizeof(tdx_eth_addr));
894 memset(config_block + offset, 0, 32 - offset);
895 #if defined(CONFIG_TDX_CFG_BLOCK_IS_IN_MMC)
896 err = tdx_cfg_block_mmc_storage(config_block, 1);
897 #elif defined(CONFIG_TDX_CFG_BLOCK_IS_IN_NAND)
898 err = write_tdx_cfg_block_to_nand(config_block);
899 #elif defined(CONFIG_TDX_CFG_BLOCK_IS_IN_NOR)
900 err = write_tdx_cfg_block_to_nor(config_block);
901 #elif defined(CONFIG_TDX_CFG_BLOCK_IS_IN_EEPROM)
902 err = write_tdx_cfg_block_to_eeprom(config_block);
907 printf("Failed to write Toradex config block: %d\n", ret);
908 ret = CMD_RET_FAILURE;
912 printf("Toradex config block successfully written\n");
919 static int do_cfgblock(struct cmd_tbl *cmdtp, int flag, int argc,
925 return CMD_RET_USAGE;
927 if (!strcmp(argv[1], "create")) {
928 return do_cfgblock_create(cmdtp, flag, argc, argv);
929 } else if (!strcmp(argv[1], "reload")) {
930 ret = read_tdx_cfg_block();
932 printf("Failed to reload Toradex config block: %d\n",
934 return CMD_RET_FAILURE;
936 return CMD_RET_SUCCESS;
939 return CMD_RET_USAGE;
943 cfgblock, 5, 0, do_cfgblock,
944 "Toradex config block handling commands",
945 "create [-y] [barcode] - (Re-)create Toradex config block\n"
946 "create carrier [-y] [barcode] - (Re-)create Toradex Carrier config block\n"
947 "cfgblock reload - Reload Toradex config block from flash"