c3385070d6
Change-Id: Ic1fcbf4b54b7d0b5cda04ca9f7fc145050c867b8 Signed-off-by: Elyes HAOUAS <ehaouas@noos.fr> Reviewed-on: https://review.coreboot.org/c/coreboot/+/32014 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Nico Huber <nico.h@gmx.de>
249 lines
6.3 KiB
C
249 lines
6.3 KiB
C
/*
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* This file is part of the coreboot project.
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*
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* Copyright (C) 2018 Intel Corp.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; version 2 of the License.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*/
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#include <arch/acpi.h>
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#include <arch/acpigen.h>
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#include <device/mmio.h>
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#include <arch/smp/mpspec.h>
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#include <cbmem.h>
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#include <ec/google/chromeec/ec.h>
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#include <intelblocks/cpulib.h>
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#include <intelblocks/pmclib.h>
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#include <intelblocks/acpi.h>
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#include <soc/cpu.h>
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#include <soc/iomap.h>
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#include <soc/nvs.h>
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#include <soc/pci_devs.h>
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#include <soc/pm.h>
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#include <string.h>
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#include <vendorcode/google/chromeos/gnvs.h>
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#include <wrdd.h>
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#include "chip.h"
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/*
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* List of supported C-states in this processor.
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*/
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enum {
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C_STATE_C0, /* 0 */
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C_STATE_C1, /* 1 */
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C_STATE_C1E, /* 2 */
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C_STATE_C6_SHORT_LAT, /* 3 */
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C_STATE_C6_LONG_LAT, /* 4 */
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C_STATE_C7_SHORT_LAT, /* 5 */
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C_STATE_C7_LONG_LAT, /* 6 */
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C_STATE_C7S_SHORT_LAT, /* 7 */
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C_STATE_C7S_LONG_LAT, /* 8 */
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C_STATE_C8, /* 9 */
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C_STATE_C9, /* 10 */
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C_STATE_C10, /* 11 */
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NUM_C_STATES
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};
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#define MWAIT_RES(state, sub_state) \
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{ \
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.addrl = (((state) << 4) | (sub_state)), \
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.space_id = ACPI_ADDRESS_SPACE_FIXED, \
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.bit_width = ACPI_FFIXEDHW_VENDOR_INTEL, \
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.bit_offset = ACPI_FFIXEDHW_CLASS_MWAIT, \
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.access_size = ACPI_FFIXEDHW_FLAG_HW_COORD, \
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}
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static const acpi_cstate_t cstate_map[NUM_C_STATES] = {
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[C_STATE_C0] = {},
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[C_STATE_C1] = {
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.latency = 0,
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.power = C1_POWER,
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.resource = MWAIT_RES(0, 0),
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},
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[C_STATE_C1E] = {
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.latency = 0,
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.power = C1_POWER,
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.resource = MWAIT_RES(0, 1),
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},
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[C_STATE_C6_SHORT_LAT] = {
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.latency = C_STATE_LATENCY_FROM_LAT_REG(0),
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.power = C6_POWER,
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.resource = MWAIT_RES(2, 0),
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},
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[C_STATE_C6_LONG_LAT] = {
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.latency = C_STATE_LATENCY_FROM_LAT_REG(0),
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.power = C6_POWER,
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.resource = MWAIT_RES(2, 1),
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},
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[C_STATE_C7_SHORT_LAT] = {
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.latency = C_STATE_LATENCY_FROM_LAT_REG(0),
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.power = C7_POWER,
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.resource = MWAIT_RES(3, 0),
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},
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[C_STATE_C7_LONG_LAT] = {
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.latency = C_STATE_LATENCY_FROM_LAT_REG(0),
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.power = C7_POWER,
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.resource = MWAIT_RES(3, 1),
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},
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[C_STATE_C7S_SHORT_LAT] = {
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.latency = C_STATE_LATENCY_FROM_LAT_REG(0),
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.power = C7_POWER,
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.resource = MWAIT_RES(3, 2),
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},
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[C_STATE_C7S_LONG_LAT] = {
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.latency = C_STATE_LATENCY_FROM_LAT_REG(0),
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.power = C7_POWER,
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.resource = MWAIT_RES(3, 3),
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},
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[C_STATE_C8] = {
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.latency = C_STATE_LATENCY_FROM_LAT_REG(0),
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.power = C8_POWER,
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.resource = MWAIT_RES(4, 0),
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},
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[C_STATE_C9] = {
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.latency = C_STATE_LATENCY_FROM_LAT_REG(0),
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.power = C9_POWER,
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.resource = MWAIT_RES(5, 0),
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},
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[C_STATE_C10] = {
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.latency = C_STATE_LATENCY_FROM_LAT_REG(0),
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.power = C10_POWER,
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.resource = MWAIT_RES(6, 0),
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},
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};
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static int cstate_set_non_s0ix[] = {
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C_STATE_C1E,
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C_STATE_C6_LONG_LAT,
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C_STATE_C7S_LONG_LAT
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};
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static int cstate_set_s0ix[] = {
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C_STATE_C1E,
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C_STATE_C7S_LONG_LAT,
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C_STATE_C10
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};
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acpi_cstate_t *soc_get_cstate_map(size_t *entries)
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{
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static acpi_cstate_t map[MAX(ARRAY_SIZE(cstate_set_s0ix),
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ARRAY_SIZE(cstate_set_non_s0ix))];
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int *set;
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int i;
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struct device *dev = SA_DEV_ROOT;
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config_t *config = dev->chip_info;
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int is_s0ix_enable = config->s0ix_enable;
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if (is_s0ix_enable) {
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*entries = ARRAY_SIZE(cstate_set_s0ix);
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set = cstate_set_s0ix;
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} else {
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*entries = ARRAY_SIZE(cstate_set_non_s0ix);
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set = cstate_set_non_s0ix;
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}
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for (i = 0; i < *entries; i++) {
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memcpy(&map[i], &cstate_map[set[i]], sizeof(acpi_cstate_t));
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map[i].ctype = i + 1;
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}
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return map;
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}
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void soc_power_states_generation(int core_id, int cores_per_package)
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{
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struct device *dev = SA_DEV_ROOT;
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config_t *config = dev->chip_info;
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if (config->eist_enable)
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/* Generate P-state tables */
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generate_p_state_entries(core_id, cores_per_package);
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}
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void soc_fill_fadt(acpi_fadt_t *fadt)
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{
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const uint16_t pmbase = ACPI_BASE_ADDRESS;
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const struct device *dev = PCH_DEV_LPC;
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const struct soc_intel_icelake_config *config = dev->chip_info;
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if (!config->PmTimerDisabled) {
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fadt->pm_tmr_blk = pmbase + PM1_TMR;
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fadt->pm_tmr_len = 4;
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fadt->x_pm_tmr_blk.space_id = 1;
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fadt->x_pm_tmr_blk.bit_width = fadt->pm_tmr_len * 8;
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fadt->x_pm_tmr_blk.bit_offset = 0;
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fadt->x_pm_tmr_blk.access_size = 0;
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fadt->x_pm_tmr_blk.addrl = pmbase + PM1_TMR;
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fadt->x_pm_tmr_blk.addrh = 0x0;
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}
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if (config->s0ix_enable)
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fadt->flags |= ACPI_FADT_LOW_PWR_IDLE_S0;
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}
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uint32_t soc_read_sci_irq_select(void)
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{
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uintptr_t pmc_bar = soc_read_pmc_base();
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return read32((void *)pmc_bar + IRQ_REG);
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}
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void acpi_create_gnvs(struct global_nvs_t *gnvs)
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{
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const struct device *dev = PCH_DEV_LPC;
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const struct soc_intel_icelake_config *config = dev->chip_info;
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/* Set unknown wake source */
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gnvs->pm1i = -1;
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/* CPU core count */
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gnvs->pcnt = dev_count_cpu();
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if (CONFIG(CONSOLE_CBMEM))
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/* Update the mem console pointer. */
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gnvs->cbmc = (uintptr_t)cbmem_find(CBMEM_ID_CONSOLE);
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if (CONFIG(CHROMEOS)) {
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/* Initialize Verified Boot data */
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chromeos_init_chromeos_acpi(&(gnvs->chromeos));
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if (CONFIG(EC_GOOGLE_CHROMEEC)) {
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gnvs->chromeos.vbt2 = google_ec_running_ro() ?
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ACTIVE_ECFW_RO : ACTIVE_ECFW_RW;
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} else
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gnvs->chromeos.vbt2 = ACTIVE_ECFW_RO;
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}
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/* Enable DPTF based on mainboard configuration */
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gnvs->dpte = config->dptf_enable;
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/* Fill in the Wifi Region id */
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gnvs->cid1 = wifi_regulatory_domain();
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/* Set USB2/USB3 wake enable bitmaps. */
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gnvs->u2we = config->usb2_wake_enable_bitmap;
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gnvs->u3we = config->usb3_wake_enable_bitmap;
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}
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uint32_t acpi_fill_soc_wake(uint32_t generic_pm1_en,
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const struct chipset_power_state *ps)
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{
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/*
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* WAK_STS bit is set when the system is in one of the sleep states
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* (via the SLP_EN bit) and an enabled wake event occurs. Upon setting
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* this bit, the PMC will transition the system to the ON state and
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* can only be set by hardware and can only be cleared by writing a one
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* to this bit position.
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*/
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generic_pm1_en |= WAK_STS | RTC_EN | PWRBTN_EN;
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return generic_pm1_en;
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}
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int soc_madt_sci_irq_polarity(int sci)
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{
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return MP_IRQ_POLARITY_HIGH;
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}
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