uniphier_psci.c 3.27 KB
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/*
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 * Copyright (c) 2017-2019, ARM Limited and Contributors. All rights reserved.
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 *
 * SPDX-License-Identifier: BSD-3-Clause
 */

#include <arch_helpers.h>
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#include <common/debug.h>
#include <lib/mmio.h>
#include <lib/psci/psci.h>
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#include "uniphier.h"

#define UNIPHIER_ROM_RSV0		0x59801200

#define UNIPHIER_SLFRSTSEL		0x61843010
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#define   UNIPHIER_SLFRSTSEL_MASK		GENMASK(1, 0)
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#define UNIPHIER_SLFRSTCTL		0x61843014
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#define   UNIPHIER_SLFRSTCTL_RST		BIT(0)
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#define MPIDR_AFFINITY_INVALID		((u_register_t)-1)

uintptr_t uniphier_sec_entrypoint;

void uniphier_warmboot_entrypoint(void);
void __dead2 uniphier_fake_pwr_down(void);
u_register_t uniphier_holding_pen_release;
static int uniphier_psci_scp_mode;

static int uniphier_psci_pwr_domain_on(u_register_t mpidr)
{
	uniphier_holding_pen_release = mpidr;
	flush_dcache_range((uint64_t)&uniphier_holding_pen_release,
			   sizeof(uniphier_holding_pen_release));

	mmio_write_64(UNIPHIER_ROM_RSV0,
		      (uint64_t)&uniphier_warmboot_entrypoint);
	sev();

	return PSCI_E_SUCCESS;
}

static void uniphier_psci_pwr_domain_off(const psci_power_state_t *target_state)
{
	uniphier_gic_cpuif_disable();
}

static void uniphier_psci_pwr_domain_on_finish(
					const psci_power_state_t *target_state)
{
	uniphier_gic_pcpu_init();
	uniphier_gic_cpuif_enable();

	uniphier_cci_enable();
}

static void __dead2 uniphier_psci_pwr_domain_pwr_down_wfi(
					const psci_power_state_t *target_state)
{
	/*
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	 * The Boot ROM cannot distinguish warm and cold resets.
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	 * Instead of the CPU reset, fake it.
	 */
	uniphier_holding_pen_release = MPIDR_AFFINITY_INVALID;
	flush_dcache_range((uint64_t)&uniphier_holding_pen_release,
			   sizeof(uniphier_holding_pen_release));

	uniphier_fake_pwr_down();
}

static void uniphier_self_system_reset(void)
{
	mmio_clrbits_32(UNIPHIER_SLFRSTSEL, UNIPHIER_SLFRSTSEL_MASK);
	mmio_setbits_32(UNIPHIER_SLFRSTCTL, UNIPHIER_SLFRSTCTL_RST);
}

static void __dead2 uniphier_psci_system_off(void)
{
	if (uniphier_psci_scp_mode) {
		uniphier_scp_system_off();
	} else {
		NOTICE("SCP is disabled; can't shutdown the system.\n");
		NOTICE("Resetting the system instead.\n");
		uniphier_self_system_reset();
	}

	wfi();
	ERROR("UniPhier System Off: operation not handled.\n");
	panic();
}

static void __dead2 uniphier_psci_system_reset(void)
{
	if (uniphier_psci_scp_mode)
		uniphier_scp_system_reset();
	else
		uniphier_self_system_reset();

	wfi();
	ERROR("UniPhier System Reset: operation not handled.\n");
	panic();
}

static const struct plat_psci_ops uniphier_psci_ops = {
	.pwr_domain_on = uniphier_psci_pwr_domain_on,
	.pwr_domain_off = uniphier_psci_pwr_domain_off,
	.pwr_domain_on_finish = uniphier_psci_pwr_domain_on_finish,
	.pwr_domain_pwr_down_wfi = uniphier_psci_pwr_domain_pwr_down_wfi,
	.system_off = uniphier_psci_system_off,
	.system_reset = uniphier_psci_system_reset,
};

int plat_setup_psci_ops(uintptr_t sec_entrypoint,
			const struct plat_psci_ops **psci_ops)
{
	uniphier_sec_entrypoint = sec_entrypoint;
	flush_dcache_range((uint64_t)&uniphier_sec_entrypoint,
			   sizeof(uniphier_sec_entrypoint));

	uniphier_psci_scp_mode = uniphier_scp_is_running();
	flush_dcache_range((uint64_t)&uniphier_psci_scp_mode,
			   sizeof(uniphier_psci_scp_mode));

	if (uniphier_psci_scp_mode)
		uniphier_scp_open_com();

	*psci_ops = &uniphier_psci_ops;

	return 0;
}