blob: 52bfaecd3d904bf559f3a6ff662eb394831dc865 [file] [log] [blame]
Shaunak Saha9dffbdd2017-03-08 19:27:17 -08001/*
2 * This file is part of the coreboot project.
3 *
4 * Copyright (C) 2017 Intel Corporation.
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; version 2 of the License.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 */
15
Shaunak Sahaf0738722017-10-02 15:01:33 -070016#include <arch/early_variables.h>
Shaunak Saha9dffbdd2017-03-08 19:27:17 -080017#include <arch/io.h>
18#include <cbmem.h>
Aaron Durbin64031672018-04-21 14:45:32 -060019#include <compiler.h>
Shaunak Saha9dffbdd2017-03-08 19:27:17 -080020#include <console/console.h>
21#include <halt.h>
22#include <intelblocks/pmclib.h>
23#include <intelblocks/gpio.h>
24#include <soc/pm.h>
Shaunak Sahaf0738722017-10-02 15:01:33 -070025#include <string.h>
Shaunak Saha9dffbdd2017-03-08 19:27:17 -080026#include <timer.h>
Philipp Deppenwiesefea24292017-10-17 17:02:29 +020027#include <security/vboot/vboot_common.h>
Shaunak Saha9dffbdd2017-03-08 19:27:17 -080028
Shaunak Sahaf0738722017-10-02 15:01:33 -070029static struct chipset_power_state power_state CAR_GLOBAL;
30
31struct chipset_power_state *pmc_get_power_state(void)
32{
33 struct chipset_power_state *ptr = NULL;
34
35 if (cbmem_possibly_online())
36 ptr = cbmem_find(CBMEM_ID_POWER_STATE);
37
38 /* cbmem is online but ptr is not populated yet */
39 if (ptr == NULL && !(ENV_RAMSTAGE || ENV_POSTCAR))
40 return car_get_var_ptr(&power_state);
41
42 return ptr;
43}
44
45static void migrate_power_state(int is_recovery)
46{
47 struct chipset_power_state *ps_cbmem;
48 struct chipset_power_state *ps_car;
49
50 ps_car = car_get_var_ptr(&power_state);
51 ps_cbmem = cbmem_add(CBMEM_ID_POWER_STATE, sizeof(*ps_cbmem));
52
53 if (ps_cbmem == NULL) {
54 printk(BIOS_DEBUG, "Not adding power state to cbmem!\n");
55 return;
56 }
57 memcpy(ps_cbmem, ps_car, sizeof(*ps_cbmem));
58}
59ROMSTAGE_CBMEM_INIT_HOOK(migrate_power_state)
60
Shaunak Saha9dffbdd2017-03-08 19:27:17 -080061static void print_num_status_bits(int num_bits, uint32_t status,
62 const char *const bit_names[])
63{
64 int i;
65
66 if (!status)
67 return;
68
69 for (i = num_bits - 1; i >= 0; i--) {
70 if (status & (1 << i)) {
71 if (bit_names[i])
72 printk(BIOS_DEBUG, "%s ", bit_names[i]);
73 else
74 printk(BIOS_DEBUG, "BIT%d ", i);
75 }
76 }
77}
78
Aaron Durbin64031672018-04-21 14:45:32 -060079__weak uint32_t soc_get_smi_status(uint32_t generic_sts)
Shaunak Saha9dffbdd2017-03-08 19:27:17 -080080{
81 return generic_sts;
82}
83
Subrata Banik9b98feb2017-12-13 11:02:43 +053084/*
85 * Set PMC register to know which state system should be after
86 * power reapplied
87 */
Aaron Durbin64031672018-04-21 14:45:32 -060088__weak void pmc_soc_restore_power_failure(void)
Subrata Banik9b98feb2017-12-13 11:02:43 +053089{
90 /*
91 * SoC code should set PMC config register in order to set
92 * MAINBOARD_POWER_ON bit as per EDS.
93 */
94}
95
Shaunak Saha9dffbdd2017-03-08 19:27:17 -080096static uint32_t pmc_reset_smi_status(void)
97{
98 uint32_t smi_sts = inl(ACPI_BASE_ADDRESS + SMI_STS);
99 outl(smi_sts, ACPI_BASE_ADDRESS + SMI_STS);
100
101 return soc_get_smi_status(smi_sts);
102}
103
104static uint32_t print_smi_status(uint32_t smi_sts)
105{
106 size_t array_size;
107 const char *const *smi_arr;
108
109 if (!smi_sts)
110 return 0;
111
112 printk(BIOS_DEBUG, "SMI_STS: ");
113
114 smi_arr = soc_smi_sts_array(&array_size);
115
116 print_num_status_bits(array_size, smi_sts, smi_arr);
117 printk(BIOS_DEBUG, "\n");
118
119 return smi_sts;
120}
121
Shaunak Saha25cc76f2017-09-28 15:13:05 -0700122/*
123 * Update supplied events in PM1_EN register. This does not disable any already
124 * set events.
125 */
126void pmc_update_pm1_enable(u16 events)
127{
128 u16 pm1_en = pmc_read_pm1_enable();
129 pm1_en |= events;
130 pmc_enable_pm1(pm1_en);
131}
132
133/* Read events set in PM1_EN register. */
134uint16_t pmc_read_pm1_enable(void)
135{
136 return inw(ACPI_BASE_ADDRESS + PM1_EN);
137}
138
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800139uint32_t pmc_clear_smi_status(void)
140{
141 uint32_t sts = pmc_reset_smi_status();
142
143 return print_smi_status(sts);
144}
145
146uint32_t pmc_get_smi_en(void)
147{
148 return inl(ACPI_BASE_ADDRESS + SMI_EN);
149}
150
151void pmc_enable_smi(uint32_t mask)
152{
153 uint32_t smi_en = inl(ACPI_BASE_ADDRESS + SMI_EN);
154 smi_en |= mask;
155 outl(smi_en, ACPI_BASE_ADDRESS + SMI_EN);
156}
157
158void pmc_disable_smi(uint32_t mask)
159{
160 uint32_t smi_en = inl(ACPI_BASE_ADDRESS + SMI_EN);
161 smi_en &= ~mask;
162 outl(smi_en, ACPI_BASE_ADDRESS + SMI_EN);
163}
164
165/* PM1 */
166void pmc_enable_pm1(uint16_t events)
167{
168 outw(events, ACPI_BASE_ADDRESS + PM1_EN);
169}
170
Furquan Shaikhab620182017-10-16 22:19:13 -0700171uint32_t pmc_read_pm1_control(void)
172{
173 return inl(ACPI_BASE_ADDRESS + PM1_CNT);
174}
175
176void pmc_write_pm1_control(uint32_t pm1_cnt)
177{
178 outl(pm1_cnt, ACPI_BASE_ADDRESS + PM1_CNT);
179}
180
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800181void pmc_enable_pm1_control(uint32_t mask)
182{
Furquan Shaikhab620182017-10-16 22:19:13 -0700183 uint32_t pm1_cnt = pmc_read_pm1_control();
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800184 pm1_cnt |= mask;
Furquan Shaikhab620182017-10-16 22:19:13 -0700185 pmc_write_pm1_control(pm1_cnt);
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800186}
187
188void pmc_disable_pm1_control(uint32_t mask)
189{
Furquan Shaikhab620182017-10-16 22:19:13 -0700190 uint32_t pm1_cnt = pmc_read_pm1_control();
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800191 pm1_cnt &= ~mask;
Furquan Shaikhab620182017-10-16 22:19:13 -0700192 pmc_write_pm1_control(pm1_cnt);
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800193}
194
195static uint16_t reset_pm1_status(void)
196{
197 uint16_t pm1_sts = inw(ACPI_BASE_ADDRESS + PM1_STS);
198 outw(pm1_sts, ACPI_BASE_ADDRESS + PM1_STS);
199 return pm1_sts;
200}
201
202static uint16_t print_pm1_status(uint16_t pm1_sts)
203{
204 static const char *const pm1_sts_bits[] = {
205 [0] = "TMROF",
206 [5] = "GBL",
207 [8] = "PWRBTN",
208 [10] = "RTC",
209 [11] = "PRBTNOR",
210 [13] = "USB",
211 [14] = "PCIEXPWAK",
212 [15] = "WAK",
213 };
214
215 if (!pm1_sts)
216 return 0;
217
218 printk(BIOS_SPEW, "PM1_STS: ");
219 print_num_status_bits(ARRAY_SIZE(pm1_sts_bits), pm1_sts, pm1_sts_bits);
220 printk(BIOS_SPEW, "\n");
221
222 return pm1_sts;
223}
224
225uint16_t pmc_clear_pm1_status(void)
226{
227 return print_pm1_status(reset_pm1_status());
228}
229
230/* TCO */
231
232static uint32_t print_tco_status(uint32_t tco_sts)
233{
234 size_t array_size;
235 const char *const *tco_arr;
236
237 if (!tco_sts)
238 return 0;
239
240 printk(BIOS_DEBUG, "TCO_STS: ");
241
242 tco_arr = soc_tco_sts_array(&array_size);
243
244 print_num_status_bits(array_size, tco_sts, tco_arr);
245 printk(BIOS_DEBUG, "\n");
246
247 return tco_sts;
248}
249
250uint32_t pmc_clear_tco_status(void)
251{
252 return print_tco_status(soc_reset_tco_status());
253}
254
255/* GPE */
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700256static void pmc_enable_gpe(int gpe, uint32_t mask)
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800257{
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700258 uint32_t gpe0_en = inl(ACPI_BASE_ADDRESS + GPE0_EN(gpe));
259 gpe0_en |= mask;
260 outl(gpe0_en, ACPI_BASE_ADDRESS + GPE0_EN(gpe));
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800261}
262
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700263static void pmc_disable_gpe(int gpe, uint32_t mask)
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800264{
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700265 uint32_t gpe0_en = inl(ACPI_BASE_ADDRESS + GPE0_EN(gpe));
266 gpe0_en &= ~mask;
267 outl(gpe0_en, ACPI_BASE_ADDRESS + GPE0_EN(gpe));
268}
269
270void pmc_enable_std_gpe(uint32_t mask)
271{
272 pmc_enable_gpe(GPE_STD, mask);
273}
274
275void pmc_disable_std_gpe(uint32_t mask)
276{
277 pmc_disable_gpe(GPE_STD, mask);
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800278}
279
280void pmc_disable_all_gpe(void)
281{
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700282 int i;
283 for (i = 0; i < GPE0_REG_MAX; i++)
284 pmc_disable_gpe(i, ~0);
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800285}
286
287/* Clear the gpio gpe0 status bits in ACPI registers */
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700288static void pmc_clear_gpi_gpe_status(void)
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800289{
290 int i;
291
292 for (i = 0; i < GPE0_REG_MAX; i++) {
293 /* This is reserved GPE block and specific to chipset */
294 if (i == GPE_STD)
295 continue;
296 uint32_t gpe_sts = inl(ACPI_BASE_ADDRESS + GPE0_STS(i));
297 outl(gpe_sts, ACPI_BASE_ADDRESS + GPE0_STS(i));
298 }
299}
300
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700301static uint32_t reset_std_gpe_status(void)
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800302{
303 uint32_t gpe_sts = inl(ACPI_BASE_ADDRESS + GPE0_STS(GPE_STD));
304 outl(gpe_sts, ACPI_BASE_ADDRESS + GPE0_STS(GPE_STD));
305 return gpe_sts;
306}
307
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700308static uint32_t print_std_gpe_sts(uint32_t gpe_sts)
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800309{
310 size_t array_size;
311 const char *const *sts_arr;
312
313 if (!gpe_sts)
314 return gpe_sts;
315
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700316 printk(BIOS_DEBUG, "GPE0 STD STS: ");
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800317
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700318 sts_arr = soc_std_gpe_sts_array(&array_size);
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800319 print_num_status_bits(array_size, gpe_sts, sts_arr);
320 printk(BIOS_DEBUG, "\n");
321
322 return gpe_sts;
323}
324
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700325static void pmc_clear_std_gpe_status(void)
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800326{
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700327 print_std_gpe_sts(reset_std_gpe_status());
328}
329
330void pmc_clear_all_gpe_status(void)
331{
332 pmc_clear_std_gpe_status();
333 pmc_clear_gpi_gpe_status();
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800334}
335
Aaron Durbin64031672018-04-21 14:45:32 -0600336__weak
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800337void soc_clear_pm_registers(uintptr_t pmc_bar)
338{
339}
340
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700341void pmc_clear_prsts(void)
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800342{
343 uint32_t prsts;
344 uintptr_t pmc_bar;
345
346 /* Read PMC base address from soc */
347 pmc_bar = soc_read_pmc_base();
348
349 prsts = read32((void *)(pmc_bar + PRSTS));
350 write32((void *)(pmc_bar + PRSTS), prsts);
351
352 soc_clear_pm_registers(pmc_bar);
353}
354
Aaron Durbin64031672018-04-21 14:45:32 -0600355__weak
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800356int soc_prev_sleep_state(const struct chipset_power_state *ps,
357 int prev_sleep_state)
358{
359 return prev_sleep_state;
360}
361
362/*
363 * Returns prev_sleep_state and also prints all power management registers.
Jonathan Neuschäfer5268b762018-02-12 12:24:25 +0100364 * Calls soc_prev_sleep_state which may be implemented by SOC.
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800365 */
366static int pmc_prev_sleep_state(const struct chipset_power_state *ps)
367{
368 /* Default to S0. */
369 int prev_sleep_state = ACPI_S0;
370
371 if (ps->pm1_sts & WAK_STS) {
372 switch (acpi_sleep_from_pm1(ps->pm1_cnt)) {
373 case ACPI_S3:
374 if (IS_ENABLED(CONFIG_HAVE_ACPI_RESUME))
375 prev_sleep_state = ACPI_S3;
376 break;
377 case ACPI_S5:
378 prev_sleep_state = ACPI_S5;
379 break;
380 }
381
382 /* Clear SLP_TYP. */
Furquan Shaikhab620182017-10-16 22:19:13 -0700383 pmc_write_pm1_control(ps->pm1_cnt & ~(SLP_TYP));
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800384 }
385 return soc_prev_sleep_state(ps, prev_sleep_state);
386}
387
Furquan Shaikhe48fb542017-10-17 16:00:10 -0700388void pmc_fill_pm_reg_info(struct chipset_power_state *ps)
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800389{
390 int i;
391
Furquan Shaikhe48fb542017-10-17 16:00:10 -0700392 memset(ps, 0, sizeof(*ps));
393
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800394 ps->pm1_sts = inw(ACPI_BASE_ADDRESS + PM1_STS);
395 ps->pm1_en = inw(ACPI_BASE_ADDRESS + PM1_EN);
Furquan Shaikhab620182017-10-16 22:19:13 -0700396 ps->pm1_cnt = pmc_read_pm1_control();
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800397
398 printk(BIOS_DEBUG, "pm1_sts: %04x pm1_en: %04x pm1_cnt: %08x\n",
399 ps->pm1_sts, ps->pm1_en, ps->pm1_cnt);
400
401 for (i = 0; i < GPE0_REG_MAX; i++) {
402 ps->gpe0_sts[i] = inl(ACPI_BASE_ADDRESS + GPE0_STS(i));
403 ps->gpe0_en[i] = inl(ACPI_BASE_ADDRESS + GPE0_EN(i));
404 printk(BIOS_DEBUG, "gpe0_sts[%d]: %08x gpe0_en[%d]: %08x\n",
405 i, ps->gpe0_sts[i], i, ps->gpe0_en[i]);
406 }
407
408 soc_fill_power_state(ps);
Furquan Shaikhe48fb542017-10-17 16:00:10 -0700409}
410
411/* Reads and prints ACPI specific PM registers */
412int pmc_fill_power_state(struct chipset_power_state *ps)
413{
414 pmc_fill_pm_reg_info(ps);
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800415
416 ps->prev_sleep_state = pmc_prev_sleep_state(ps);
417 printk(BIOS_DEBUG, "prev_sleep_state %d\n", ps->prev_sleep_state);
418
419 return ps->prev_sleep_state;
420}
421
Julien Viard de Galbert2912e8e2018-08-14 16:15:26 +0200422#if IS_ENABLED(CONFIG_PMC_GLOBAL_RESET_ENABLE_LOCK)
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800423/*
424 * If possible, lock 0xcf9. Once the register is locked, it can't be changed.
425 * This lock is reset on cold boot, hard reset, soft reset and Sx.
426 */
427void pmc_global_reset_lock(void)
428{
429 /* Read PMC base address from soc */
430 uintptr_t etr = soc_read_pmc_base() + ETR;
431 uint32_t reg;
432
433 reg = read32((void *)etr);
434 if (reg & CF9_LOCK)
435 return;
436 reg |= CF9_LOCK;
437 write32((void *)etr, reg);
438}
439
440/*
441 * Enable or disable global reset. If global reset is enabled, hard reset and
442 * soft reset will trigger global reset, where both host and TXE are reset.
443 * This is cleared on cold boot, hard reset, soft reset and Sx.
444 */
445void pmc_global_reset_enable(bool enable)
446{
447 /* Read PMC base address from soc */
448 uintptr_t etr = soc_read_pmc_base() + ETR;
449 uint32_t reg;
450
451 reg = read32((void *)etr);
452 reg = enable ? reg | CF9_GLB_RST : reg & ~CF9_GLB_RST;
453 write32((void *)etr, reg);
454}
Julien Viard de Galbert2912e8e2018-08-14 16:15:26 +0200455#endif // CONFIG_PMC_GLOBAL_RESET_ENABLE_LOCK
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800456
457int vboot_platform_is_resuming(void)
458{
459 if (!(inw(ACPI_BASE_ADDRESS + PM1_STS) & WAK_STS))
460 return 0;
461
Furquan Shaikhab620182017-10-16 22:19:13 -0700462 return acpi_sleep_from_pm1(pmc_read_pm1_control()) == ACPI_S3;
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800463}
464
465/* Read and clear GPE status (defined in arch/acpi.h) */
466int acpi_get_gpe(int gpe)
467{
468 int bank;
469 uint32_t mask, sts;
470 struct stopwatch sw;
471 int rc = 0;
472
473 if (gpe < 0 || gpe > GPE_MAX)
474 return -1;
475
476 bank = gpe / 32;
477 mask = 1 << (gpe % 32);
478
479 /* Wait up to 1ms for GPE status to clear */
480 stopwatch_init_msecs_expire(&sw, 1);
481 do {
482 if (stopwatch_expired(&sw))
483 return rc;
484
485 sts = inl(ACPI_BASE_ADDRESS + GPE0_STS(bank));
486 if (sts & mask) {
487 outl(mask, ACPI_BASE_ADDRESS + GPE0_STS(bank));
488 rc = 1;
489 }
490 } while (sts & mask);
491
492 return rc;
493}
494
495/*
496 * The PM1 control is set to S5 when vboot requests a reboot because the power
497 * state code above may not have collected its data yet. Therefore, set it to
498 * S5 when vboot requests a reboot. That's necessary if vboot fails in the
499 * resume path and requests a reboot. This prevents a reboot loop where the
500 * error is continually hit on the failing vboot resume path.
501 */
502void vboot_platform_prepare_reboot(void)
503{
Furquan Shaikhab620182017-10-16 22:19:13 -0700504 uint32_t pm1_cnt;
505 pm1_cnt = (pmc_read_pm1_control() & ~(SLP_TYP)) |
506 (SLP_TYP_S5 << SLP_TYP_SHIFT);
507 pmc_write_pm1_control(pm1_cnt);
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800508}
509
510void poweroff(void)
511{
512 pmc_enable_pm1_control(SLP_EN | (SLP_TYP_S5 << SLP_TYP_SHIFT));
513
514 /*
515 * Setting SLP_TYP_S5 in PM1 triggers SLP_SMI, which is handled by SMM
516 * to transition to S5 state. If halt is called in SMM, then it prevents
517 * the SMI handler from being triggered and system never enters S5.
518 */
519 if (!ENV_SMM)
520 halt();
521}
522
523void pmc_gpe_init(void)
524{
525 uint32_t gpio_cfg = 0;
526 uint32_t gpio_cfg_reg;
527 uint8_t dw0, dw1, dw2;
528
529 /* Read PMC base address from soc. This is implemented in soc */
530 uintptr_t pmc_bar = soc_read_pmc_base();
531
532 /*
533 * Get the dwX values for pmc gpe settings.
534 */
Furquan Shaikhc4e652f2017-10-11 14:44:29 -0700535 soc_get_gpi_gpe_configs(&dw0, &dw1, &dw2);
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800536
537 const uint32_t gpio_cfg_mask =
538 (GPE0_DWX_MASK << GPE0_DW_SHIFT(0)) |
539 (GPE0_DWX_MASK << GPE0_DW_SHIFT(1)) |
540 (GPE0_DWX_MASK << GPE0_DW_SHIFT(2));
541
542 /* Making sure that bad values don't bleed into the other fields */
543 dw0 &= GPE0_DWX_MASK;
544 dw1 &= GPE0_DWX_MASK;
545 dw2 &= GPE0_DWX_MASK;
546
547 /*
548 * Route the GPIOs to the GPE0 block. Determine that all values
549 * are different, and if they aren't use the reset values.
550 */
551 if (dw0 == dw1 || dw1 == dw2) {
552 printk(BIOS_INFO, "PMC: Using default GPE route.\n");
553 gpio_cfg = read32((void *)pmc_bar + GPIO_GPE_CFG);
554
555 dw0 = (gpio_cfg >> GPE0_DW_SHIFT(0)) & GPE0_DWX_MASK;
556 dw1 = (gpio_cfg >> GPE0_DW_SHIFT(1)) & GPE0_DWX_MASK;
557 dw2 = (gpio_cfg >> GPE0_DW_SHIFT(2)) & GPE0_DWX_MASK;
558 } else {
559 gpio_cfg |= (uint32_t) dw0 << GPE0_DW_SHIFT(0);
560 gpio_cfg |= (uint32_t) dw1 << GPE0_DW_SHIFT(1);
561 gpio_cfg |= (uint32_t) dw2 << GPE0_DW_SHIFT(2);
562 }
563
564 gpio_cfg_reg = read32((void *)pmc_bar + GPIO_GPE_CFG) & ~gpio_cfg_mask;
565 gpio_cfg_reg |= gpio_cfg & gpio_cfg_mask;
566
567 write32((void *)pmc_bar + GPIO_GPE_CFG, gpio_cfg_reg);
568
569 /* Set the routes in the GPIO communities as well. */
570 gpio_route_gpe(dw0, dw1, dw2);
Shaunak Saha9dffbdd2017-03-08 19:27:17 -0800571}
Subrata Banik9b98feb2017-12-13 11:02:43 +0530572
573/*
574 * Determines what state to go to when power is reapplied
575 * after a power failure (G3 State)
576 */
577int pmc_get_mainboard_power_failure_state_choice(void)
578{
579 if (IS_ENABLED(CONFIG_POWER_STATE_PREVIOUS_AFTER_FAILURE))
580 return MAINBOARD_POWER_STATE_PREVIOUS;
581 else if (IS_ENABLED(CONFIG_POWER_STATE_ON_AFTER_FAILURE))
582 return MAINBOARD_POWER_STATE_ON;
583
584 return MAINBOARD_POWER_STATE_OFF;
585}