spm_private.h 3.74 KB
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/*
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 * Copyright (c) 2017-2018, ARM Limited and Contributors. All rights reserved.
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 *
 * SPDX-License-Identifier: BSD-3-Clause
 */

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#ifndef SPM_PRIVATE_H
#define SPM_PRIVATE_H
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#include <context.h>

/*******************************************************************************
 * Constants that allow assembler code to preserve callee-saved registers of the
 * C runtime context while performing a security state switch.
 ******************************************************************************/
#define SP_C_RT_CTX_X19		0x0
#define SP_C_RT_CTX_X20		0x8
#define SP_C_RT_CTX_X21		0x10
#define SP_C_RT_CTX_X22		0x18
#define SP_C_RT_CTX_X23		0x20
#define SP_C_RT_CTX_X24		0x28
#define SP_C_RT_CTX_X25		0x30
#define SP_C_RT_CTX_X26		0x38
#define SP_C_RT_CTX_X27		0x40
#define SP_C_RT_CTX_X28		0x48
#define SP_C_RT_CTX_X29		0x50
#define SP_C_RT_CTX_X30		0x58

#define SP_C_RT_CTX_SIZE	0x60
#define SP_C_RT_CTX_ENTRIES	(SP_C_RT_CTX_SIZE >> DWORD_SHIFT)

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/* Value returned by spm_sp_synchronous_entry() when a partition is preempted */
#define SPM_SECURE_PARTITION_PREEMPTED	U(0x1234)

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#ifndef __ASSEMBLY__

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#include <spinlock.h>
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#include <sp_res_desc.h>
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#include <stdint.h>
#include <xlat_tables_v2.h>

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typedef enum sp_state {
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	SP_STATE_RESET = 0,
	SP_STATE_IDLE,
	SP_STATE_BUSY
} sp_state_t;

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typedef struct sp_context {
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	/* 1 if the partition is present, 0 otherwise */
	int is_present;

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	/* Location of the image in physical memory */
	unsigned long long image_base;
	size_t image_size;

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	uint64_t c_rt_ctx;
	cpu_context_t cpu_ctx;
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	xlat_ctx_t *xlat_ctx_handle;
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	struct sp_res_desc rd;
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	sp_state_t state;
	spinlock_t state_lock;
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	unsigned int request_count;
	spinlock_t request_count_lock;

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	/* Base and size of the shared SPM<->SP buffer */
	uintptr_t spm_sp_buffer_base;
	size_t spm_sp_buffer_size;
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	spinlock_t spm_sp_buffer_lock;
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} sp_context_t;
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/* Functions used to enter/exit a Secure Partition synchronously */
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uint64_t spm_sp_synchronous_entry(sp_context_t *sp_ctx, int can_preempt);
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__dead2 void spm_sp_synchronous_exit(uint64_t rc);

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/* Assembly helpers */
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uint64_t spm_secure_partition_enter(uint64_t *c_rt_ctx);
void __dead2 spm_secure_partition_exit(uint64_t c_rt_ctx, uint64_t ret);
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/* Secure Partition setup */
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void spm_sp_setup(sp_context_t *sp_ctx);
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/* Secure Partition state management helpers */
void sp_state_set(sp_context_t *sp_ptr, sp_state_t state);
void sp_state_wait_switch(sp_context_t *sp_ptr, sp_state_t from, sp_state_t to);
int sp_state_try_switch(sp_context_t *sp_ptr, sp_state_t from, sp_state_t to);

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/* Functions to keep track of the number of active requests per SP */
void spm_sp_request_increase(sp_context_t *sp_ctx);
void spm_sp_request_decrease(sp_context_t *sp_ctx);
int spm_sp_request_increase_if_zero(sp_context_t *sp_ctx);

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/* Functions related to the translation tables management */
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xlat_ctx_t *spm_sp_xlat_context_alloc(void);
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void sp_map_memory_regions(sp_context_t *sp_ctx);
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int32_t spm_memory_attributes_get_smc_handler(sp_context_t *sp_ctx,
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					      uintptr_t base_va);
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int spm_memory_attributes_set_smc_handler(sp_context_t *sp_ctx,
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					  u_register_t page_address,
					  u_register_t pages_count,
					  u_register_t smc_attributes);

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/* Functions to handle Secure Partition contexts */
void spm_cpu_set_sp_ctx(unsigned int linear_id, sp_context_t *sp_ctx);
sp_context_t *spm_cpu_get_sp_ctx(unsigned int linear_id);
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sp_context_t *spm_sp_get_by_uuid(const uint32_t (*svc_uuid)[4]);
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/* Functions to manipulate response and requests buffers */
int spm_response_add(uint16_t client_id, uint16_t handle, uint32_t token,
		     u_register_t x1, u_register_t x2, u_register_t x3);
int spm_response_get(uint16_t client_id, uint16_t handle, uint32_t token,
		     u_register_t *x1, u_register_t *x2, u_register_t *x3);

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#endif /* __ASSEMBLY__ */

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#endif /* SPM_PRIVATE_H */