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Enforce full include path for includes. Deprecate old paths. The following folders inside include/lib have been left unchanged: - include/lib/cpus/${ARCH} - include/lib/el3_runtime/${ARCH} The reason for this change is that having a global namespace for includes isn't a good idea. It defeats one of the advantages of having folders and it introduces problems that are sometimes subtle (because you may not know the header you are actually including if there are two of them). For example, this patch had to be created because two headers were called the same way:e0ea0928d5
("Fix gpio includes of mt8173 platform to avoid collision."). More recently, this patch has had similar problems:46f9b2c3a2
("drivers: add tzc380 support"). This problem was introduced in commit4ecca33988
("Move include and source files to logical locations"). At that time, there weren't too many headers so it wasn't a real issue. However, time has shown that this creates problems. Platforms that want to preserve the way they include headers may add the removed paths to PLAT_INCLUDES, but this is discouraged. Change-Id: I39dc53ed98f9e297a5966e723d1936d6ccf2fc8f Signed-off-by: Antonio Nino Diaz <antonio.ninodiaz@arm.com>
224 lines
7.8 KiB
C
224 lines
7.8 KiB
C
/*
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* Copyright (c) 2013-2017, ARM Limited and Contributors. All rights reserved.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#include <assert.h>
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#include <arch_helpers.h>
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#include <common/bl_common.h>
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#include <common/debug.h>
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#include <lib/el3_runtime/context_mgmt.h>
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#include <plat/common/platform.h>
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#include "opteed_private.h"
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/*******************************************************************************
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* The target cpu is being turned on. Allow the OPTEED/OPTEE to perform any
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* actions needed. Nothing at the moment.
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******************************************************************************/
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static void opteed_cpu_on_handler(u_register_t target_cpu)
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{
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}
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/*******************************************************************************
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* This cpu is being turned off. Allow the OPTEED/OPTEE to perform any actions
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* needed
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******************************************************************************/
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static int32_t opteed_cpu_off_handler(u_register_t unused)
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{
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int32_t rc = 0;
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uint32_t linear_id = plat_my_core_pos();
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optee_context_t *optee_ctx = &opteed_sp_context[linear_id];
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assert(optee_vector_table);
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assert(get_optee_pstate(optee_ctx->state) == OPTEE_PSTATE_ON);
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/* Program the entry point and enter OPTEE */
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cm_set_elr_el3(SECURE, (uint64_t) &optee_vector_table->cpu_off_entry);
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rc = opteed_synchronous_sp_entry(optee_ctx);
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/*
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* Read the response from OPTEE. A non-zero return means that
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* something went wrong while communicating with OPTEE.
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*/
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if (rc != 0)
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panic();
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/*
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* Reset OPTEE's context for a fresh start when this cpu is turned on
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* subsequently.
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*/
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set_optee_pstate(optee_ctx->state, OPTEE_PSTATE_OFF);
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return 0;
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}
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/*******************************************************************************
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* This cpu is being suspended. S-EL1 state must have been saved in the
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* resident cpu (mpidr format) if it is a UP/UP migratable OPTEE.
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******************************************************************************/
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static void opteed_cpu_suspend_handler(u_register_t max_off_pwrlvl)
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{
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int32_t rc = 0;
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uint32_t linear_id = plat_my_core_pos();
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optee_context_t *optee_ctx = &opteed_sp_context[linear_id];
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assert(optee_vector_table);
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assert(get_optee_pstate(optee_ctx->state) == OPTEE_PSTATE_ON);
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write_ctx_reg(get_gpregs_ctx(&optee_ctx->cpu_ctx), CTX_GPREG_X0,
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max_off_pwrlvl);
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/* Program the entry point and enter OPTEE */
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cm_set_elr_el3(SECURE, (uint64_t) &optee_vector_table->cpu_suspend_entry);
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rc = opteed_synchronous_sp_entry(optee_ctx);
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/*
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* Read the response from OPTEE. A non-zero return means that
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* something went wrong while communicating with OPTEE.
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*/
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if (rc != 0)
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panic();
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/* Update its context to reflect the state OPTEE is in */
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set_optee_pstate(optee_ctx->state, OPTEE_PSTATE_SUSPEND);
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}
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/*******************************************************************************
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* This cpu has been turned on. Enter OPTEE to initialise S-EL1 and other bits
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* before passing control back to the Secure Monitor. Entry in S-El1 is done
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* after initialising minimal architectural state that guarantees safe
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* execution.
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******************************************************************************/
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static void opteed_cpu_on_finish_handler(u_register_t unused)
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{
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int32_t rc = 0;
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uint32_t linear_id = plat_my_core_pos();
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optee_context_t *optee_ctx = &opteed_sp_context[linear_id];
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entry_point_info_t optee_on_entrypoint;
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assert(optee_vector_table);
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assert(get_optee_pstate(optee_ctx->state) == OPTEE_PSTATE_OFF);
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opteed_init_optee_ep_state(&optee_on_entrypoint, opteed_rw,
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(uint64_t)&optee_vector_table->cpu_on_entry,
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0, 0, 0, optee_ctx);
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/* Initialise this cpu's secure context */
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cm_init_my_context(&optee_on_entrypoint);
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/* Enter OPTEE */
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rc = opteed_synchronous_sp_entry(optee_ctx);
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/*
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* Read the response from OPTEE. A non-zero return means that
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* something went wrong while communicating with OPTEE.
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*/
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if (rc != 0)
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panic();
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/* Update its context to reflect the state OPTEE is in */
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set_optee_pstate(optee_ctx->state, OPTEE_PSTATE_ON);
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}
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/*******************************************************************************
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* This cpu has resumed from suspend. The OPTEED saved the OPTEE context when it
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* completed the preceding suspend call. Use that context to program an entry
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* into OPTEE to allow it to do any remaining book keeping
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******************************************************************************/
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static void opteed_cpu_suspend_finish_handler(u_register_t max_off_pwrlvl)
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{
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int32_t rc = 0;
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uint32_t linear_id = plat_my_core_pos();
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optee_context_t *optee_ctx = &opteed_sp_context[linear_id];
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assert(optee_vector_table);
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assert(get_optee_pstate(optee_ctx->state) == OPTEE_PSTATE_SUSPEND);
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/* Program the entry point, max_off_pwrlvl and enter the SP */
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write_ctx_reg(get_gpregs_ctx(&optee_ctx->cpu_ctx),
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CTX_GPREG_X0,
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max_off_pwrlvl);
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cm_set_elr_el3(SECURE, (uint64_t) &optee_vector_table->cpu_resume_entry);
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rc = opteed_synchronous_sp_entry(optee_ctx);
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/*
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* Read the response from OPTEE. A non-zero return means that
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* something went wrong while communicating with OPTEE.
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*/
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if (rc != 0)
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panic();
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/* Update its context to reflect the state OPTEE is in */
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set_optee_pstate(optee_ctx->state, OPTEE_PSTATE_ON);
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}
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/*******************************************************************************
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* Return the type of OPTEE the OPTEED is dealing with. Report the current
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* resident cpu (mpidr format) if it is a UP/UP migratable OPTEE.
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******************************************************************************/
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static int32_t opteed_cpu_migrate_info(u_register_t *resident_cpu)
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{
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return OPTEE_MIGRATE_INFO;
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}
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/*******************************************************************************
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* System is about to be switched off. Allow the OPTEED/OPTEE to perform
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* any actions needed.
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******************************************************************************/
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static void opteed_system_off(void)
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{
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uint32_t linear_id = plat_my_core_pos();
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optee_context_t *optee_ctx = &opteed_sp_context[linear_id];
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assert(optee_vector_table);
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assert(get_optee_pstate(optee_ctx->state) == OPTEE_PSTATE_ON);
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/* Program the entry point */
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cm_set_elr_el3(SECURE, (uint64_t) &optee_vector_table->system_off_entry);
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/* Enter OPTEE. We do not care about the return value because we
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* must continue the shutdown anyway */
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opteed_synchronous_sp_entry(optee_ctx);
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}
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/*******************************************************************************
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* System is about to be reset. Allow the OPTEED/OPTEE to perform
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* any actions needed.
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******************************************************************************/
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static void opteed_system_reset(void)
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{
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uint32_t linear_id = plat_my_core_pos();
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optee_context_t *optee_ctx = &opteed_sp_context[linear_id];
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assert(optee_vector_table);
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assert(get_optee_pstate(optee_ctx->state) == OPTEE_PSTATE_ON);
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/* Program the entry point */
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cm_set_elr_el3(SECURE, (uint64_t) &optee_vector_table->system_reset_entry);
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/* Enter OPTEE. We do not care about the return value because we
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* must continue the reset anyway */
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opteed_synchronous_sp_entry(optee_ctx);
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}
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/*******************************************************************************
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* Structure populated by the OPTEE Dispatcher to be given a chance to
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* perform any OPTEE bookkeeping before PSCI executes a power mgmt.
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* operation.
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******************************************************************************/
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const spd_pm_ops_t opteed_pm = {
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.svc_on = opteed_cpu_on_handler,
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.svc_off = opteed_cpu_off_handler,
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.svc_suspend = opteed_cpu_suspend_handler,
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.svc_on_finish = opteed_cpu_on_finish_handler,
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.svc_suspend_finish = opteed_cpu_suspend_finish_handler,
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.svc_migrate = NULL,
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.svc_migrate_info = opteed_cpu_migrate_info,
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.svc_system_off = opteed_system_off,
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.svc_system_reset = opteed_system_reset,
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};
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