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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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757cc3e9ff
Adds AMD-TEE driver. * targets AMD APUs which has AMD Secure Processor with software-based Trusted Execution Environment (TEE) support * registers with TEE subsystem * defines tee_driver_ops function callbacks * kernel allocated memory is used as shared memory between normal world and secure world. * acts as REE (Rich Execution Environment) communication agent, which uses the services of AMD Secure Processor driver to submit commands for processing in TEE environment Cc: Ard Biesheuvel <ard.biesheuvel@linaro.org> Cc: Tom Lendacky <thomas.lendacky@amd.com> Acked-by: Jens Wiklander <jens.wiklander@linaro.org> Co-developed-by: Devaraj Rangasamy <Devaraj.Rangasamy@amd.com> Signed-off-by: Devaraj Rangasamy <Devaraj.Rangasamy@amd.com> Signed-off-by: Rijo Thomas <Rijo-john.Thomas@amd.com> Reviewed-by: Gary R Hook <gary.hook@amd.com> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
184 lines
4.9 KiB
C
184 lines
4.9 KiB
C
/* SPDX-License-Identifier: MIT */
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/*
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* Copyright 2019 Advanced Micro Devices, Inc.
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*/
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/*
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* This file has definitions related to Host and AMD-TEE Trusted OS interface.
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* These definitions must match the definitions on the TEE side.
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*/
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#ifndef AMDTEE_IF_H
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#define AMDTEE_IF_H
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#include <linux/types.h>
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/*****************************************************************************
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** TEE Param
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******************************************************************************/
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#define TEE_MAX_PARAMS 4
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/**
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* struct memref - memory reference structure
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* @buf_id: buffer ID of the buffer mapped by TEE_CMD_ID_MAP_SHARED_MEM
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* @offset: offset in bytes from beginning of the buffer
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* @size: data size in bytes
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*/
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struct memref {
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u32 buf_id;
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u32 offset;
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u32 size;
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};
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struct value {
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u32 a;
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u32 b;
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};
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/*
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* Parameters passed to open_session or invoke_command
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*/
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union tee_op_param {
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struct memref mref;
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struct value val;
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};
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struct tee_operation {
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u32 param_types;
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union tee_op_param params[TEE_MAX_PARAMS];
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};
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/* Must be same as in GP TEE specification */
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#define TEE_OP_PARAM_TYPE_NONE 0
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#define TEE_OP_PARAM_TYPE_VALUE_INPUT 1
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#define TEE_OP_PARAM_TYPE_VALUE_OUTPUT 2
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#define TEE_OP_PARAM_TYPE_VALUE_INOUT 3
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#define TEE_OP_PARAM_TYPE_INVALID 4
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#define TEE_OP_PARAM_TYPE_MEMREF_INPUT 5
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#define TEE_OP_PARAM_TYPE_MEMREF_OUTPUT 6
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#define TEE_OP_PARAM_TYPE_MEMREF_INOUT 7
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#define TEE_PARAM_TYPE_GET(t, i) (((t) >> ((i) * 4)) & 0xF)
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#define TEE_PARAM_TYPES(t0, t1, t2, t3) \
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((t0) | ((t1) << 4) | ((t2) << 8) | ((t3) << 12))
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/*****************************************************************************
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** TEE Commands
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*****************************************************************************/
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/*
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* The shared memory between rich world and secure world may be physically
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* non-contiguous. Below structures are meant to describe a shared memory region
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* via scatter/gather (sg) list
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*/
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/**
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* struct tee_sg_desc - sg descriptor for a physically contiguous buffer
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* @low_addr: [in] bits[31:0] of buffer's physical address. Must be 4KB aligned
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* @hi_addr: [in] bits[63:32] of the buffer's physical address
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* @size: [in] size in bytes (must be multiple of 4KB)
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*/
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struct tee_sg_desc {
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u32 low_addr;
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u32 hi_addr;
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u32 size;
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};
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/**
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* struct tee_sg_list - structure describing a scatter/gather list
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* @count: [in] number of sg descriptors
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* @size: [in] total size of all buffers in the list. Must be multiple of 4KB
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* @buf: [in] list of sg buffer descriptors
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*/
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#define TEE_MAX_SG_DESC 64
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struct tee_sg_list {
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u32 count;
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u32 size;
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struct tee_sg_desc buf[TEE_MAX_SG_DESC];
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};
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/**
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* struct tee_cmd_map_shared_mem - command to map shared memory
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* @buf_id: [out] return buffer ID value
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* @sg_list: [in] list describing memory to be mapped
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*/
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struct tee_cmd_map_shared_mem {
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u32 buf_id;
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struct tee_sg_list sg_list;
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};
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/**
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* struct tee_cmd_unmap_shared_mem - command to unmap shared memory
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* @buf_id: [in] buffer ID of memory to be unmapped
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*/
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struct tee_cmd_unmap_shared_mem {
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u32 buf_id;
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};
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/**
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* struct tee_cmd_load_ta - load Trusted Application (TA) binary into TEE
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* @low_addr: [in] bits [31:0] of the physical address of the TA binary
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* @hi_addr: [in] bits [63:32] of the physical address of the TA binary
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* @size: [in] size of TA binary in bytes
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* @ta_handle: [out] return handle of the loaded TA
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*/
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struct tee_cmd_load_ta {
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u32 low_addr;
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u32 hi_addr;
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u32 size;
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u32 ta_handle;
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};
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/**
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* struct tee_cmd_unload_ta - command to unload TA binary from TEE environment
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* @ta_handle: [in] handle of the loaded TA to be unloaded
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*/
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struct tee_cmd_unload_ta {
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u32 ta_handle;
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};
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/**
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* struct tee_cmd_open_session - command to call TA_OpenSessionEntryPoint in TA
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* @ta_handle: [in] handle of the loaded TA
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* @session_info: [out] pointer to TA allocated session data
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* @op: [in/out] operation parameters
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* @return_origin: [out] origin of return code after TEE processing
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*/
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struct tee_cmd_open_session {
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u32 ta_handle;
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u32 session_info;
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struct tee_operation op;
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u32 return_origin;
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};
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/**
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* struct tee_cmd_close_session - command to call TA_CloseSessionEntryPoint()
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* in TA
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* @ta_handle: [in] handle of the loaded TA
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* @session_info: [in] pointer to TA allocated session data
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*/
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struct tee_cmd_close_session {
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u32 ta_handle;
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u32 session_info;
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};
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/**
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* struct tee_cmd_invoke_cmd - command to call TA_InvokeCommandEntryPoint() in
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* TA
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* @ta_handle: [in] handle of the loaded TA
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* @cmd_id: [in] TA command ID
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* @session_info: [in] pointer to TA allocated session data
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* @op: [in/out] operation parameters
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* @return_origin: [out] origin of return code after TEE processing
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*/
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struct tee_cmd_invoke_cmd {
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u32 ta_handle;
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u32 cmd_id;
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u32 session_info;
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struct tee_operation op;
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u32 return_origin;
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};
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#endif /*AMDTEE_IF_H*/
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