blob: 0915d0b4c5cbc90d84dd7fc80f41c4079e1cc976 [file] [log] [blame]
Marc Bonnici8e1a7552021-12-01 17:57:04 +00001/*
2 * Copyright (c) 2022, ARM Limited and Contributors. All rights reserved.
3 *
4 * SPDX-License-Identifier: BSD-3-Clause
5 */
6
7#ifndef SPMC_H
8#define SPMC_H
9
10#include <stdint.h>
11
12#include <lib/psci/psci.h>
13#include <lib/spinlock.h>
Marc Bonnici9a297042022-02-14 17:06:09 +000014#include <services/el3_spmc_logical_sp.h>
Marc Bonnici8e1a7552021-12-01 17:57:04 +000015#include "spm_common.h"
16
17/*
18 * Ranges of FF-A IDs for Normal world and Secure world components. The
19 * convention matches that used by other SPMCs i.e. Hafnium and OP-TEE.
20 */
21#define FFA_NWD_ID_BASE 0x0
22#define FFA_NWD_ID_LIMIT 0x7FFF
23#define FFA_SWD_ID_BASE 0x8000
24#define FFA_SWD_ID_LIMIT SPMD_DIRECT_MSG_ENDPOINT_ID - 1
25#define FFA_SWD_ID_MASK 0x8000
26
Marc Bonnici8eb15202021-11-29 17:05:33 +000027/* ID 0 is reserved for the normal world entity, (Hypervisor or OS Kernel). */
28#define FFA_NWD_ID U(0)
Marc Bonnici8e1a7552021-12-01 17:57:04 +000029/* First ID is reserved for the SPMC */
30#define FFA_SPMC_ID U(FFA_SWD_ID_BASE)
31/* SP IDs are allocated after the SPMC ID */
32#define FFA_SP_ID_BASE (FFA_SPMC_ID + 1)
33/* Align with Hafnium implementation */
34#define INV_SP_ID 0x7FFF
35
36/* FF-A warm boot types. */
37#define FFA_WB_TYPE_S2RAM 0
38#define FFA_WB_TYPE_NOTS2RAM 1
39
40/*
41 * Runtime states of an execution context as per the FF-A v1.1 specification.
42 */
43enum sp_runtime_states {
44 RT_STATE_WAITING,
45 RT_STATE_RUNNING,
46 RT_STATE_PREEMPTED,
47 RT_STATE_BLOCKED
48};
49
50/*
51 * Runtime model of an execution context as per the FF-A v1.1 specification. Its
52 * value is valid only if the execution context is not in the waiting state.
53 */
54enum sp_runtime_model {
55 RT_MODEL_DIR_REQ,
56 RT_MODEL_RUN,
57 RT_MODEL_INIT,
58 RT_MODEL_INTR
59};
60
61enum sp_runtime_el {
62 EL1 = 0,
63 S_EL0,
64 S_EL1
65};
66
67enum sp_execution_state {
68 SP_STATE_AARCH64 = 0,
69 SP_STATE_AARCH32
70};
71
Marc Bonniciecc460a2021-09-02 13:18:41 +010072enum mailbox_state {
73 /* There is no message in the mailbox. */
74 MAILBOX_STATE_EMPTY,
75
76 /* There is a message that has been populated in the mailbox. */
77 MAILBOX_STATE_FULL,
78};
79
80struct mailbox {
81 enum mailbox_state state;
82
83 /* RX/TX Buffers. */
84 void *rx_buffer;
85 const void *tx_buffer;
86
87 /* Size of RX/TX Buffer. */
88 uint32_t rxtx_page_count;
89
90 /* Lock access to mailbox. */
91 spinlock_t lock;
92};
93
Marc Bonnici8e1a7552021-12-01 17:57:04 +000094/*
95 * Execution context members for an SP. This is a bit like struct
96 * vcpu in a hypervisor.
97 */
98struct sp_exec_ctx {
99 /*
100 * Store the stack address to restore C runtime context from after
101 * returning from a synchronous entry into the SP.
102 */
103 uint64_t c_rt_ctx;
104
105 /* Space to maintain the architectural state of an SP. */
106 cpu_context_t cpu_ctx;
107
108 /* Track the current runtime state of the SP. */
109 enum sp_runtime_states rt_state;
110
111 /* Track the current runtime model of the SP. */
112 enum sp_runtime_model rt_model;
113};
114
115/*
116 * Structure to describe the cumulative properties of an SP.
117 */
118struct secure_partition_desc {
119 /*
120 * Execution contexts allocated to this endpoint. Ideally,
121 * we need as many contexts as there are physical cpus only
122 * for a S-EL1 SP which is MP-pinned.
123 */
124 struct sp_exec_ctx ec[PLATFORM_CORE_COUNT];
125
126 /* ID of the Secure Partition. */
127 uint16_t sp_id;
128
129 /* Runtime EL. */
130 enum sp_runtime_el runtime_el;
131
132 /* Partition UUID. */
133 uint32_t uuid[4];
134
135 /* Partition Properties. */
136 uint32_t properties;
137
138 /* Supported FF-A Version. */
139 uint32_t ffa_version;
140
141 /* Execution State. */
142 enum sp_execution_state execution_state;
143
Marc Bonniciecc460a2021-09-02 13:18:41 +0100144 /* Mailbox tracking. */
145 struct mailbox mailbox;
146
Marc Bonnici8e1a7552021-12-01 17:57:04 +0000147 /* Secondary entrypoint. Only valid for a S-EL1 SP. */
148 uintptr_t secondary_ep;
149};
150
151/*
152 * This define identifies the only SP that will be initialised and participate
153 * in FF-A communication. The implementation leaves the door open for more SPs
154 * to be managed in future but for now it is reasonable to assume that either a
155 * single S-EL0 or a single S-EL1 SP will be supported. This define will be used
156 * to identify which SP descriptor to initialise and manage during SP runtime.
157 */
158#define ACTIVE_SP_DESC_INDEX 0
159
160/*
161 * Structure to describe the cumulative properties of the Hypervisor and
162 * NS-Endpoints.
163 */
164struct ns_endpoint_desc {
165 /*
166 * ID of the NS-Endpoint or Hypervisor.
167 */
168 uint16_t ns_ep_id;
169
170 /*
Marc Bonniciecc460a2021-09-02 13:18:41 +0100171 * Mailbox tracking.
172 */
173 struct mailbox mailbox;
174
175 /*
176 * Supported FF-A Version
Marc Bonnici8e1a7552021-12-01 17:57:04 +0000177 */
178 uint32_t ffa_version;
179};
180
181/* Setup Function for different SP types. */
182void spmc_sp_common_setup(struct secure_partition_desc *sp,
183 entry_point_info_t *ep_info);
184void spmc_el1_sp_setup(struct secure_partition_desc *sp,
185 entry_point_info_t *ep_info);
186void spmc_sp_common_ep_commit(struct secure_partition_desc *sp,
187 entry_point_info_t *ep_info);
188
189/*
190 * Helper function to perform a synchronous entry into a SP.
191 */
192uint64_t spmc_sp_synchronous_entry(struct sp_exec_ctx *ec);
193
194/*
195 * Helper function to obtain the descriptor of the current SP on a physical cpu.
196 */
197struct secure_partition_desc *spmc_get_current_sp_ctx(void);
198
199/*
200 * Helper function to obtain the execution context of an SP on a
201 * physical cpu.
202 */
203struct sp_exec_ctx *spmc_get_sp_ec(struct secure_partition_desc *sp);
204
205/*
206 * Helper function to obtain the index of the execution context of an SP on a
207 * physical cpu.
208 */
209unsigned int get_ec_index(struct secure_partition_desc *sp);
210
211uint64_t spmc_ffa_error_return(void *handle, int error_code);
212
213/*
214 * Ensure a partition ID does not clash and follows the secure world convention.
215 */
216bool is_ffa_secure_id_valid(uint16_t partition_id);
217
Marc Bonnici9a297042022-02-14 17:06:09 +0000218/*
219 * Helper function to obtain the array storing the EL3
220 * Logical Partition descriptors.
221 */
222struct el3_lp_desc *get_el3_lp_array(void);
223
Marc Bonnici8e1a7552021-12-01 17:57:04 +0000224#endif /* SPMC_H */