blob: c75bc6f8557042e7dc0e24e442735a4479f675fe [file] [log] [blame]
Tim Harvey256dba02021-03-02 14:00:21 -08001// SPDX-License-Identifier: GPL-2.0+
2/*
3 * Copyright 2021 Gateworks Corporation
4 */
5
6#include <common.h>
7#include <command.h>
8#include <hang.h>
9#include <hexdump.h>
10#include <i2c.h>
11#include <linux/delay.h>
12#include <dm/uclass.h>
13
14#include "gsc.h"
15
16DECLARE_GLOBAL_DATA_PTR;
17
18struct venice_board_info som_info;
19struct venice_board_info base_info;
20char venice_model[32];
21
22/* return a mac address from EEPROM info */
23int gsc_getmac(int index, uint8_t *address)
24{
25 int i, j;
26 u32 maclow, machigh;
27 u64 mac;
28
29 j = 0;
30 if (som_info.macno) {
31 maclow = som_info.mac[5];
32 maclow |= som_info.mac[4] << 8;
33 maclow |= som_info.mac[3] << 16;
34 maclow |= som_info.mac[2] << 24;
35 machigh = som_info.mac[1];
36 machigh |= som_info.mac[0] << 8;
37 mac = machigh;
38 mac <<= 32;
39 mac |= maclow;
40 for (i = 0; i < som_info.macno; i++, j++) {
41 if (index == j)
42 goto out;
43 }
44 }
45
46 maclow = base_info.mac[5];
47 maclow |= base_info.mac[4] << 8;
48 maclow |= base_info.mac[3] << 16;
49 maclow |= base_info.mac[2] << 24;
50 machigh = base_info.mac[1];
51 machigh |= base_info.mac[0] << 8;
52 mac = machigh;
53 mac <<= 32;
54 mac |= maclow;
55 for (i = 0; i < base_info.macno; i++, j++) {
56 if (index == j)
57 goto out;
58 }
59
60 return -EINVAL;
61
62out:
63 mac += i;
64 address[0] = (mac >> 40) & 0xff;
65 address[1] = (mac >> 32) & 0xff;
66 address[2] = (mac >> 24) & 0xff;
67 address[3] = (mac >> 16) & 0xff;
68 address[4] = (mac >> 8) & 0xff;
69 address[5] = (mac >> 0) & 0xff;
70
71 return 0;
72}
73
74/* System Controller registers */
75enum {
76 GSC_SC_CTRL0 = 0,
77 GSC_SC_CTRL1 = 1,
78 GSC_SC_STATUS = 10,
79 GSC_SC_FWCRC = 12,
80 GSC_SC_FWVER = 14,
81 GSC_SC_WP = 15,
82 GSC_SC_RST_CAUSE = 16,
83 GSC_SC_THERM_PROTECT = 19,
84};
85
86/* System Controller Control1 bits */
87enum {
88 GSC_SC_CTRL1_WDTIME = 4, /* 1 = 60s timeout, 0 = 30s timeout */
89 GSC_SC_CTRL1_WDEN = 5, /* 1 = enable, 0 = disable */
90 GSC_SC_CTRL1_BOOT_CHK = 6, /* 1 = enable alt boot check */
91 GSC_SC_CTRL1_WDDIS = 7, /* 1 = disable boot watchdog */
92};
93
94/* System Controller Interrupt bits */
95enum {
96 GSC_SC_IRQ_PB = 0, /* Pushbutton switch */
97 GSC_SC_IRQ_SECURE = 1, /* Secure Key erase operation complete */
98 GSC_SC_IRQ_EEPROM_WP = 2, /* EEPROM write violation */
99 GSC_SC_IRQ_GPIO = 4, /* GPIO change */
100 GSC_SC_IRQ_TAMPER = 5, /* Tamper detect */
101 GSC_SC_IRQ_WATCHDOG = 6, /* Watchdog trip */
102 GSC_SC_IRQ_PBLONG = 7, /* Pushbutton long hold */
103};
104
105/* System Controller WP bits */
106enum {
107 GSC_SC_WP_ALL = 0, /* Write Protect All EEPROM regions */
108 GSC_SC_WP_BOARDINFO = 1, /* Write Protect Board Info region */
109};
110
111/* System Controller Reset Cause */
112enum {
113 GSC_SC_RST_CAUSE_VIN = 0,
114 GSC_SC_RST_CAUSE_PB = 1,
115 GSC_SC_RST_CAUSE_WDT = 2,
116 GSC_SC_RST_CAUSE_CPU = 3,
117 GSC_SC_RST_CAUSE_TEMP_LOCAL = 4,
118 GSC_SC_RST_CAUSE_TEMP_REMOTE = 5,
119 GSC_SC_RST_CAUSE_SLEEP = 6,
120 GSC_SC_RST_CAUSE_BOOT_WDT = 7,
121 GSC_SC_RST_CAUSE_BOOT_WDT_MAN = 8,
122 GSC_SC_RST_CAUSE_SOFT_PWR = 9,
123 GSC_SC_RST_CAUSE_MAX = 10,
124};
125
126static struct udevice *gsc_get_dev(int busno, int slave)
127{
Tim Harvey7ae30ce2021-03-08 13:52:35 -0800128 static const char * const i2c[] = { "i2c@30a20000", "i2c@30a30000" };
129 struct udevice *dev, *bus;
Tim Harvey256dba02021-03-02 14:00:21 -0800130 int ret;
131
Tim Harvey7ae30ce2021-03-08 13:52:35 -0800132 ret = uclass_get_device_by_name(UCLASS_I2C, i2c[busno - 1], &bus);
Tim Harvey256dba02021-03-02 14:00:21 -0800133 if (ret) {
Tim Harvey7ae30ce2021-03-08 13:52:35 -0800134 printf("GSC : failed I2C%d probe: %d\n", busno, ret);
Tim Harvey256dba02021-03-02 14:00:21 -0800135 return NULL;
136 }
Tim Harvey7ae30ce2021-03-08 13:52:35 -0800137 ret = dm_i2c_probe(bus, slave, 0, &dev);
138 if (ret)
Tim Harvey256dba02021-03-02 14:00:21 -0800139 return NULL;
Tim Harvey256dba02021-03-02 14:00:21 -0800140
141 return dev;
142}
143
144static int gsc_read_eeprom(int bus, int slave, int alen, struct venice_board_info *info)
145{
146 int i;
147 int chksum;
148 unsigned char *buf = (unsigned char *)info;
149 struct udevice *dev;
150 int ret;
151
152 /* probe device */
153 dev = gsc_get_dev(bus, slave);
154 if (!dev) {
155 if (slave == GSC_EEPROM_ADDR)
156 puts("ERROR: Failed to probe EEPROM\n");
157 return -ENODEV;
158 }
159
160 /* read eeprom config section */
161 memset(info, 0, sizeof(*info));
162 ret = i2c_set_chip_offset_len(dev, alen);
163 if (ret) {
164 puts("EEPROM: Failed to set alen\n");
165 return ret;
166 }
167 ret = dm_i2c_read(dev, 0x00, buf, sizeof(*info));
168 if (ret) {
169 if (slave == GSC_EEPROM_ADDR)
170 printf("EEPROM: Failed to read EEPROM\n");
171 return ret;
172 }
173
174 /* validate checksum */
175 for (chksum = 0, i = 0; i < (int)sizeof(*info) - 2; i++)
176 chksum += buf[i];
177 if ((info->chksum[0] != chksum >> 8) ||
178 (info->chksum[1] != (chksum & 0xff))) {
Tim Harvey18a1f6d2021-06-30 17:07:38 -0700179 printf("EEPROM: I2C%d@0x%02x: Invalid Checksum\n", bus, slave);
Tim Harvey256dba02021-03-02 14:00:21 -0800180 print_hex_dump_bytes("", DUMP_PREFIX_NONE, buf, sizeof(*info));
181 memset(info, 0, sizeof(*info));
182 return -EINVAL;
183 }
184
185 /* sanity check valid model */
186 if (info->model[0] != 'G' || info->model[1] != 'W') {
187 printf("EEPROM: I2C%d@0x%02x: Invalid Model in EEPROM\n", bus, slave);
188 print_hex_dump_bytes("", DUMP_PREFIX_NONE, buf, sizeof(*info));
189 memset(info, 0, sizeof(*info));
190 return -EINVAL;
191 }
192
193 return 0;
194}
195
196static const char *gsc_get_rst_cause(struct udevice *dev)
197{
198 static char str[64];
199 static const char * const names[] = {
200 "VIN",
201 "PB",
202 "WDT",
203 "CPU",
204 "TEMP_L",
205 "TEMP_R",
206 "SLEEP",
207 "BOOT_WDT1",
208 "BOOT_WDT2",
209 "SOFT_PWR",
210 };
211 unsigned char reg;
212
213 /* reset cause */
214 str[0] = 0;
215 if (!dm_i2c_read(dev, GSC_SC_RST_CAUSE, &reg, 1)) {
216 if (reg < ARRAY_SIZE(names))
217 sprintf(str, "%s", names[reg]);
218 else
219 sprintf(str, "0x%02x", reg);
220 }
221
222 /* thermal protection */
223 if (!dm_i2c_read(dev, GSC_SC_THERM_PROTECT, &reg, 1)) {
Tim Harvey1110cd52021-06-30 17:07:42 -0700224 strcat(str, " Thermal Protection ");
225 if (reg & BIT(0))
226 strcat(str, "Enabled");
227 else
228 strcat(str, "Disabled");
Tim Harvey256dba02021-03-02 14:00:21 -0800229 }
230
231 return str;
232}
233
234/* display hardware monitor ADC channels */
235int gsc_hwmon(void)
236{
237 const void *fdt = gd->fdt_blob;
238 struct udevice *dev;
239 int node, reg, mode, len, val, offset;
240 const char *label;
241 u8 buf[2];
242 int ret;
243
244 node = fdt_node_offset_by_compatible(fdt, -1, "gw,gsc-adc");
245 if (node <= 0)
246 return node;
247
248 /* probe device */
249 dev = gsc_get_dev(1, GSC_HWMON_ADDR);
250 if (!dev) {
251 puts("ERROR: Failed to probe GSC HWMON\n");
252 return -ENODEV;
253 }
254
255 /* iterate over hwmon nodes */
256 node = fdt_first_subnode(fdt, node);
257 while (node > 0) {
258 reg = fdtdec_get_int(fdt, node, "reg", -1);
259 mode = fdtdec_get_int(fdt, node, "gw,mode", -1);
260 offset = fdtdec_get_int(fdt, node, "gw,voltage-offset-microvolt", 0);
261 label = fdt_stringlist_get(fdt, node, "label", 0, NULL);
262
263 if ((reg == -1) || (mode == -1) || !label)
264 printf("invalid dt:%s\n", fdt_get_name(fdt, node, NULL));
265
266 memset(buf, 0, sizeof(buf));
267 ret = dm_i2c_read(dev, reg, buf, sizeof(buf));
268 if (ret) {
269 printf("i2c error: %d\n", ret);
270 continue;
271 }
272 val = buf[0] | buf[1] << 8;
273 if (val >= 0) {
274 const u32 *div;
275 int r[2];
276
277 switch (mode) {
278 case 0: /* temperature (C*10) */
279 if (val > 0x8000)
280 val -= 0xffff;
281 printf("%-8s: %d.%ldC\n", label, val / 10, abs(val % 10));
282 break;
283 case 1: /* prescaled voltage */
284 if (val != 0xffff)
285 printf("%-8s: %d.%03dV\n", label, val / 1000, val % 1000);
286 break;
287 case 2: /* scaled based on ref volt and resolution */
288 val *= 2500;
289 val /= 1 << 12;
290
291 /* apply pre-scaler voltage divider */
292 div = fdt_getprop(fdt, node, "gw,voltage-divider-ohms", &len);
293 if (div && (len == sizeof(uint32_t) * 2)) {
294 r[0] = fdt32_to_cpu(div[0]);
295 r[1] = fdt32_to_cpu(div[1]);
296 if (r[0] && r[1]) {
297 val *= (r[0] + r[1]);
298 val /= r[1];
299 }
300 }
301
302 /* adjust by offset */
Tim Harvey274db322021-06-30 17:07:39 -0700303 val += (offset / 1000);
Tim Harvey256dba02021-03-02 14:00:21 -0800304
305 printf("%-8s: %d.%03dV\n", label, val / 1000, val % 1000);
306 break;
307 }
308 }
309 node = fdt_next_subnode(fdt, node);
310 }
311
312 return 0;
313}
314
315/* determine BOM revision from model */
316int get_bom_rev(const char *str)
317{
318 int rev_bom = 0;
319 int i;
320
321 for (i = strlen(str) - 1; i > 0; i--) {
322 if (str[i] == '-')
323 break;
324 if (str[i] >= '1' && str[i] <= '9') {
325 rev_bom = str[i] - '0';
326 break;
327 }
328 }
329 return rev_bom;
330}
331
332/* determine PCB revision from model */
333char get_pcb_rev(const char *str)
334{
335 char rev_pcb = 'A';
336 int i;
337
338 for (i = strlen(str) - 1; i > 0; i--) {
339 if (str[i] == '-')
340 break;
341 if (str[i] >= 'A') {
342 rev_pcb = str[i];
343 break;
344 }
345 }
346 return rev_pcb;
347}
348
349/*
350 * get dt name based on model and detail level:
351 *
352 * For boards that are a combination of a SoM plus a Baseboard:
353 * Venice SoM part numbers are GW70xx where xx is:
354 * 7000-7019: same PCB with som dt of '0x'
355 * 7020-7039: same PCB with som dt of '2x'
356 * 7040-7059: same PCB with som dt of '4x'
357 * 7060-7079: same PCB with som dt of '6x'
358 * 7080-7099: same PCB with som dt of '8x'
359 * Venice Baseboard part numbers are GW7xxx where xxx is:
360 * 7100-7199: same PCB with base dt of '71xx'
361 * 7200-7299: same PCB with base dt of '72xx'
362 * 7300-7399: same PCB with base dt of '73xx'
363 * 7400-7499: same PCB with base dt of '74xx'
364 * 7500-7599: same PCB with base dt of '75xx'
365 * 7600-7699: same PCB with base dt of '76xx'
366 * 7700-7799: same PCB with base dt of '77xx'
367 * 7800-7899: same PCB with base dt of '78xx'
368 * DT name is comprised of:
369 * gw<base dt>-<som dt>-[base-pcb-rev][base-bom-rev][som-pcb-rev][som-bom-rev]
370 *
371 * For board models from 7900-7999 each PCB is unique with its own dt:
372 * DT name is comprised:
373 * gw<model>-[pcb-rev][bom-rev]
374 *
375 */
376#define snprintfcat(dest, sz, fmt, ...) \
377 snprintf((dest) + strlen(dest), (sz) - strlen(dest), fmt, ##__VA_ARGS__)
378const char *gsc_get_dtb_name(int level, char *buf, int sz)
379{
380 const char *pre = "imx8mm-venice-gw";
381 int model, rev_pcb, rev_bom;
382
383 model = ((som_info.model[2] - '0') * 1000)
384 + ((som_info.model[3] - '0') * 100)
385 + ((som_info.model[4] - '0') * 10)
386 + (som_info.model[5] - '0');
387 rev_pcb = tolower(get_pcb_rev(som_info.model));
388 rev_bom = get_bom_rev(som_info.model);
389
390 /* som + baseboard*/
391 if (base_info.model[0]) {
392 /* baseboard id: 7100-7199->71; 7200-7299->72; etc */
393 int base = ((base_info.model[2] - '0') * 10) + (base_info.model[3] - '0');
394 /* som id: 7000-7019->1; 7020-7039->2; etc */
395 int som = ((model % 100) / 20) * 2;
396 int rev_base_pcb = tolower(get_pcb_rev(base_info.model));
397 int rev_base_bom = get_bom_rev(base_info.model);
398
399 snprintf(buf, sz, "%s%2dxx-%dx", pre, base, som);
400 switch (level) {
401 case 0: /* full model (ie gw73xx-0x-a1a1) */
402 if (rev_base_bom)
403 snprintfcat(buf, sz, "-%c%d", rev_base_pcb, rev_base_bom);
404 else
405 snprintfcat(buf, sz, "-%c", rev_base_pcb);
406 if (rev_bom)
407 snprintfcat(buf, sz, "%c%d", rev_pcb, rev_bom);
408 else
409 snprintfcat(buf, sz, "%c", rev_pcb);
410 break;
411 case 1: /* don't care about SoM revision */
412 if (rev_base_bom)
413 snprintfcat(buf, sz, "-%c%d", rev_base_pcb, rev_base_bom);
414 else
415 snprintfcat(buf, sz, "-%c", rev_base_pcb);
416 snprintfcat(buf, sz, "xx");
417 break;
418 case 2: /* don't care about baseboard revision */
419 snprintfcat(buf, sz, "-xx");
420 if (rev_bom)
421 snprintfcat(buf, sz, "%c%d", rev_pcb, rev_bom);
422 else
423 snprintfcat(buf, sz, "%c", rev_pcb);
424 break;
425 case 3: /* don't care about SoM/baseboard revision */
426 break;
427 default:
428 return NULL;
429 }
430 } else {
431 snprintf(buf, sz, "%s%04d", pre, model);
432 switch (level) {
433 case 0: /* full model wth PCB and BOM revision first (ie gw7901-a1) */
434 if (rev_bom)
435 snprintfcat(buf, sz, "-%c%d", rev_pcb, rev_bom);
436 else
437 snprintfcat(buf, sz, "-%c", rev_pcb);
438 break;
439 case 1: /* don't care about BOM revision */
440 snprintfcat(buf, sz, "-%c", rev_pcb);
441 break;
442 case 2: /* don't care about PCB or BOM revision */
443 break;
444 default:
445 return NULL;
446 }
447 }
448
449 return buf;
450}
451
452static int gsc_read(void)
453{
454 int ret;
455
456 ret = gsc_read_eeprom(1, GSC_EEPROM_ADDR, 1, &som_info);
457 if (ret) {
458 memset(&som_info, 0, sizeof(som_info));
459 return ret;
460 }
461
462 /* read optional baseboard EEPROM */
463 return gsc_read_eeprom(2, 0x52, 2, &base_info);
464}
465
466static int gsc_info(int verbose)
467{
468 struct udevice *dev;
469 unsigned char buf[16];
470 char rev_pcb;
471 int rev_bom;
472
473 if (!base_info.model[0]) {
474 strcpy(venice_model, som_info.model);
475 printf("Model : %s\n", som_info.model);
476 printf("Serial : %d\n", som_info.serial);
477 printf("MFGDate : %02x-%02x-%02x%02x\n",
478 som_info.mfgdate[0], som_info.mfgdate[1],
479 som_info.mfgdate[2], som_info.mfgdate[3]);
480 } else {
481 sprintf(venice_model, "GW%c%c%c%c-%c%c-",
482 som_info.model[2], /* family */
483 base_info.model[3], /* baseboard */
484 base_info.model[4], base_info.model[5], /* subload of baseboard */
485 som_info.model[4], som_info.model[5]); /* last 2digits of SOM */
486
487 /* baseboard revision */
488 rev_pcb = get_pcb_rev(base_info.model);
489 rev_bom = get_bom_rev(base_info.model);
490 if (rev_bom)
491 sprintf(venice_model + strlen(venice_model), "%c%d", rev_pcb, rev_bom);
492 else
493 sprintf(venice_model + strlen(venice_model), "%c", rev_pcb);
494 /* som revision */
495 rev_pcb = get_pcb_rev(som_info.model);
496 rev_bom = get_bom_rev(som_info.model);
497 if (rev_bom)
498 sprintf(venice_model + strlen(venice_model), "%c%d", rev_pcb, rev_bom);
499 else
500 sprintf(venice_model + strlen(venice_model), "%c", rev_pcb);
501
502 if (verbose > 1) {
503 printf("SOM : %s %d %02x-%02x-%02x%02x\n",
504 som_info.model, som_info.serial,
505 som_info.mfgdate[0], som_info.mfgdate[1],
506 som_info.mfgdate[2], som_info.mfgdate[3]);
507 printf("BASE : %s %d %02x-%02x-%02x%02x\n",
508 base_info.model, base_info.serial,
509 base_info.mfgdate[0], base_info.mfgdate[1],
510 base_info.mfgdate[2], base_info.mfgdate[3]);
511 }
512 printf("Model : %s\n", venice_model);
513 printf("Serial : %d\n", som_info.serial);
514 printf("MFGDate : %02x-%02x-%02x%02x\n",
515 som_info.mfgdate[0], som_info.mfgdate[1],
516 som_info.mfgdate[2], som_info.mfgdate[3]);
517 }
518
519 /* Display RTC */
520 puts("RTC : ");
521 dev = gsc_get_dev(1, GSC_RTC_ADDR);
522 if (!dev) {
523 puts("Failed to probe GSC RTC\n");
524 } else {
525 dm_i2c_read(dev, 0, buf, 6);
526 printf("%d\n", buf[0] | buf[1] << 8 | buf[2] << 16 | buf[3] << 24);
527 }
528
529 return 0;
530}
531
532int gsc_init(int quiet)
533{
534 unsigned char buf[16];
535 struct udevice *dev;
536 int ret;
537
538 /*
539 * On a board with a missing/depleted backup battery for GSC, the
540 * board may be ready to probe the GSC before its firmware is
541 * running. We will wait here indefinately for the GSC/EEPROM.
542 */
543 while (1) {
544 /* probe device */
545 dev = gsc_get_dev(1, GSC_SC_ADDR);
546 if (dev)
547 break;
548 mdelay(1);
549 }
550
551 ret = dm_i2c_read(dev, 0, buf, sizeof(buf));
552 if (ret) {
553 puts("ERROR: Failed reading GSC\n");
554 return ret;
555 }
556 gsc_read();
557
558 /* banner */
559 if (!quiet) {
560 printf("GSC : v%d 0x%04x", buf[GSC_SC_FWVER],
561 buf[GSC_SC_FWCRC] | buf[GSC_SC_FWCRC + 1] << 8);
562 printf(" RST:%s", gsc_get_rst_cause(dev));
563 printf("\n");
564 gsc_info(1);
565 }
566
567 if (ret)
568 hang();
569
570 return ((16 << som_info.sdram_size) / 1024);
571}
572
573const char *gsc_get_model(void)
574{
575 return venice_model;
576}
577
578#if !(IS_ENABLED(CONFIG_SPL_BUILD))
579static int gsc_sleep(unsigned long secs)
580{
581 unsigned char reg;
582 struct udevice *dev;
583 int ret;
584
585 /* probe device */
586 dev = gsc_get_dev(1, GSC_SC_ADDR);
587 if (!dev)
588 return -ENODEV;
589
590 printf("GSC Sleeping for %ld seconds\n", secs);
591 reg = (secs >> 24) & 0xff;
592 ret = dm_i2c_write(dev, 9, &reg, 1);
593 if (ret)
594 goto err;
595 reg = (secs >> 16) & 0xff;
596 ret = dm_i2c_write(dev, 8, &reg, 1);
597 if (ret)
598 goto err;
599 reg = (secs >> 8) & 0xff;
600 ret = dm_i2c_write(dev, 7, &reg, 1);
601 if (ret)
602 goto err;
603 reg = secs & 0xff;
604 ret = dm_i2c_write(dev, 6, &reg, 1);
605 if (ret)
606 goto err;
607 ret = dm_i2c_read(dev, GSC_SC_CTRL1, &reg, 1);
608 if (ret)
609 goto err;
610 reg |= (1 << 2);
611 ret = dm_i2c_write(dev, GSC_SC_CTRL1, &reg, 1);
612 if (ret)
613 goto err;
614 reg &= ~(1 << 2);
615 reg |= 0x3;
616 ret = dm_i2c_write(dev, GSC_SC_CTRL1, &reg, 1);
617 if (ret)
618 goto err;
619
620 return 0;
621
622err:
623 printf("i2c error\n");
624 return ret;
625}
626
627static int gsc_boot_wd_disable(void)
628{
629 u8 reg;
630 struct udevice *dev;
631 int ret;
632
633 /* probe device */
634 dev = gsc_get_dev(1, GSC_SC_ADDR);
635 if (!dev)
636 return -ENODEV;
637
638 ret = dm_i2c_read(dev, GSC_SC_CTRL1, &reg, 1);
639 if (ret)
640 goto err;
641 reg |= (1 << GSC_SC_CTRL1_WDDIS);
642 reg &= ~(1 << GSC_SC_CTRL1_BOOT_CHK);
643 ret = dm_i2c_write(dev, GSC_SC_CTRL1, &reg, 1);
644 if (ret)
645 goto err;
646 puts("GSC : boot watchdog disabled\n");
647
648 return 0;
649
650err:
651 printf("i2c error");
652 return ret;
653}
654
655static int do_gsc(struct cmd_tbl *cmdtp, int flag, int argc, char * const argv[])
656{
657 if (argc < 2)
658 return gsc_info(2);
659
660 if (strcasecmp(argv[1], "sleep") == 0) {
661 if (argc < 3)
662 return CMD_RET_USAGE;
663 if (!gsc_sleep(simple_strtoul(argv[2], NULL, 10)))
664 return CMD_RET_SUCCESS;
665 } else if (strcasecmp(argv[1], "hwmon") == 0) {
666 if (!gsc_hwmon())
667 return CMD_RET_SUCCESS;
668 } else if (strcasecmp(argv[1], "wd-disable") == 0) {
669 if (!gsc_boot_wd_disable())
670 return CMD_RET_SUCCESS;
671 }
672
673 return CMD_RET_USAGE;
674}
675
676U_BOOT_CMD(gsc, 4, 1, do_gsc, "Gateworks System Controller",
677 "[sleep <secs>]|[hwmon]|[wd-disable]\n");
678#endif