blob: df5c8ebba43191c885a27adfb519e5e53e055e8c [file] [log] [blame]
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001/*
J-Alves13318e32021-02-22 17:21:00 +00002 * Copyright 2021 The Hafnium Authors.
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01003 *
Andrew Walbrane959ec12020-06-17 15:01:09 +01004 * Use of this source code is governed by a BSD-style
5 * license that can be found in the LICENSE file or at
6 * https://opensource.org/licenses/BSD-3-Clause.
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01007 */
8
9#pragma once
10
11#include "hf/types.h"
12
Karl Meakin0e617d92024-04-05 12:55:22 +010013/**
14 * The version number of a Firmware Framework implementation is a 31-bit
15 * unsigned integer, with the upper 15 bits denoting the major revision,
16 * and the lower 16 bits denoting the minor revision.
17 *
18 * See FF-A specification v1.2 ALP1, section 13.2.1.
19 */
20enum ffa_version {
21 FFA_VERSION_1_0 = 0x10000,
22 FFA_VERSION_1_1 = 0x10001,
23 FFA_VERSION_1_2 = 0x10002,
24 FFA_VERSION_COMPILED = FFA_VERSION_1_2,
25};
Daniel Boulby6e32c612021-02-17 15:09:41 +000026
Karl Meakin0e617d92024-04-05 12:55:22 +010027#define FFA_VERSION_MBZ_BIT (1U << 31U)
28#define FFA_VERSION_MAJOR_SHIFT (16U)
29#define FFA_VERSION_MAJOR_MASK (0x7FFFU)
30#define FFA_VERSION_MINOR_SHIFT (0U)
31#define FFA_VERSION_MINOR_MASK (0xFFFFU)
32
33/** Return true if the version is valid (i.e. bit 31 is 0). */
34static inline bool ffa_version_is_valid(uint32_t version)
35{
36 return (version & FFA_VERSION_MBZ_BIT) == 0;
37}
38
39/** Construct a version from a pair of major and minor components. */
40static inline enum ffa_version make_ffa_version(uint16_t major, uint16_t minor)
41{
42 return (enum ffa_version)((major << FFA_VERSION_MAJOR_SHIFT) |
43 (minor << FFA_VERSION_MINOR_SHIFT));
44}
45
46/** Get the major component of the version. */
47static inline uint16_t ffa_version_get_major(enum ffa_version version)
48{
49 return (version >> FFA_VERSION_MAJOR_SHIFT) & FFA_VERSION_MAJOR_MASK;
50}
51
52/** Get the minor component of the version. */
53static inline uint16_t ffa_version_get_minor(enum ffa_version version)
54{
55 return (version >> FFA_VERSION_MINOR_SHIFT) & FFA_VERSION_MINOR_MASK;
56}
Olivier Deprez62d99e32020-01-09 15:58:07 +010057
Daniel Boulbyc7dc9322023-10-27 15:12:07 +010058/**
59 * Check major versions are equal and the minor version of the caller is
60 * less than or equal to the minor version of the callee.
61 */
Karl Meakin0e617d92024-04-05 12:55:22 +010062static inline bool ffa_versions_are_compatible(enum ffa_version caller,
63 enum ffa_version callee)
64{
65 return ffa_version_get_major(caller) == ffa_version_get_major(callee) &&
66 ffa_version_get_minor(caller) <= ffa_version_get_minor(callee);
67}
Daniel Boulbyc7dc9322023-10-27 15:12:07 +010068
Andrew Walbranb5ab43c2020-04-30 11:32:54 +010069/* clang-format off */
70
71#define FFA_LOW_32_ID 0x84000060
72#define FFA_HIGH_32_ID 0x8400007F
73#define FFA_LOW_64_ID 0xC4000060
Fuad Tabbada72d142020-07-30 09:17:05 +010074#define FFA_HIGH_64_ID 0xC400007F
Andrew Walbranb5ab43c2020-04-30 11:32:54 +010075
Karl Meakinf51a35f2023-08-07 17:53:52 +010076/**
77 * FF-A function identifiers.
78 * Don't forget to update `ffa_func_name` if you add a new one.
79 */
J-Alves3829fc02021-03-18 12:49:18 +000080#define FFA_ERROR_32 0x84000060
81#define FFA_SUCCESS_32 0x84000061
82#define FFA_SUCCESS_64 0xC4000061
83#define FFA_INTERRUPT_32 0x84000062
84#define FFA_VERSION_32 0x84000063
85#define FFA_FEATURES_32 0x84000064
86#define FFA_RX_RELEASE_32 0x84000065
87#define FFA_RXTX_MAP_32 0x84000066
88#define FFA_RXTX_MAP_64 0xC4000066
89#define FFA_RXTX_UNMAP_32 0x84000067
90#define FFA_PARTITION_INFO_GET_32 0x84000068
91#define FFA_ID_GET_32 0x84000069
92#define FFA_MSG_POLL_32 0x8400006A /* Legacy FF-A v1.0 */
93#define FFA_MSG_WAIT_32 0x8400006B
94#define FFA_YIELD_32 0x8400006C
95#define FFA_RUN_32 0x8400006D
96#define FFA_MSG_SEND_32 0x8400006E /* Legacy FF-A v1.0 */
97#define FFA_MSG_SEND_DIRECT_REQ_32 0x8400006F
98#define FFA_MSG_SEND_DIRECT_REQ_64 0xC400006F
99#define FFA_MSG_SEND_DIRECT_RESP_32 0x84000070
100#define FFA_MSG_SEND_DIRECT_RESP_64 0xC4000070
101#define FFA_MEM_DONATE_32 0x84000071
J-Alves95fbb312024-03-20 15:19:16 +0000102#define FFA_MEM_DONATE_64 0xC4000071
J-Alves3829fc02021-03-18 12:49:18 +0000103#define FFA_MEM_LEND_32 0x84000072
J-Alves95fbb312024-03-20 15:19:16 +0000104#define FFA_MEM_LEND_64 0xC4000072
J-Alves3829fc02021-03-18 12:49:18 +0000105#define FFA_MEM_SHARE_32 0x84000073
J-Alves95fbb312024-03-20 15:19:16 +0000106#define FFA_MEM_SHARE_64 0xC4000073
J-Alves3829fc02021-03-18 12:49:18 +0000107#define FFA_MEM_RETRIEVE_REQ_32 0x84000074
J-Alves95fbb312024-03-20 15:19:16 +0000108#define FFA_MEM_RETRIEVE_REQ_64 0xC4000074
J-Alves3829fc02021-03-18 12:49:18 +0000109#define FFA_MEM_RETRIEVE_RESP_32 0x84000075
110#define FFA_MEM_RELINQUISH_32 0x84000076
111#define FFA_MEM_RECLAIM_32 0x84000077
112#define FFA_MEM_FRAG_RX_32 0x8400007A
113#define FFA_MEM_FRAG_TX_32 0x8400007B
114#define FFA_NORMAL_WORLD_RESUME 0x8400007C
115
116/* FF-A v1.1 */
117#define FFA_NOTIFICATION_BITMAP_CREATE_32 0x8400007D
118#define FFA_NOTIFICATION_BITMAP_DESTROY_32 0x8400007E
119#define FFA_NOTIFICATION_BIND_32 0x8400007F
120#define FFA_NOTIFICATION_UNBIND_32 0x84000080
121#define FFA_NOTIFICATION_SET_32 0x84000081
122#define FFA_NOTIFICATION_GET_32 0x84000082
123#define FFA_NOTIFICATION_INFO_GET_64 0xC4000083
124#define FFA_RX_ACQUIRE_32 0x84000084
125#define FFA_SPM_ID_GET_32 0x84000085
126#define FFA_MSG_SEND2_32 0x84000086
127#define FFA_SECONDARY_EP_REGISTER_64 0xC4000087
128#define FFA_MEM_PERM_GET_32 0x84000088
129#define FFA_MEM_PERM_SET_32 0x84000089
Raghu Krishnamurthyea6d25f2021-09-14 15:27:06 -0700130#define FFA_MEM_PERM_GET_64 0xC4000088
131#define FFA_MEM_PERM_SET_64 0xC4000089
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100132
Kathleen Capellae4fe2962023-09-01 17:08:47 -0400133/* FF-A v1.2 */
Maksims Svecovs71b76702022-05-20 15:32:58 +0100134#define FFA_CONSOLE_LOG_32 0x8400008A
135#define FFA_CONSOLE_LOG_64 0xC400008A
Raghu Krishnamurthy7592bcb2022-12-25 13:09:00 -0800136#define FFA_PARTITION_INFO_GET_REGS_64 0xC400008B
Madhukar Pappireddy77d3bcd2023-03-01 17:26:22 -0600137#define FFA_EL3_INTR_HANDLE_32 0x8400008C
Kathleen Capella41fea932023-06-23 17:39:28 -0400138#define FFA_MSG_SEND_DIRECT_REQ2_64 0xC400008D
Kathleen Capella087e5022023-09-07 18:04:15 -0400139#define FFA_MSG_SEND_DIRECT_RESP2_64 0xC400008E
Maksims Svecovs71b76702022-05-20 15:32:58 +0100140
Karl Meakinf51a35f2023-08-07 17:53:52 +0100141/**
142 * FF-A error codes.
143 * Don't forget to update `ffa_error_name` if you add a new one.
144 */
Karl Meakindc759f52024-05-07 16:08:02 +0100145enum ffa_error {
146 FFA_NOT_SUPPORTED = -1,
147 FFA_INVALID_PARAMETERS = -2,
148 FFA_NO_MEMORY = -3,
149 FFA_BUSY = -4,
150 FFA_INTERRUPTED = -5,
151 FFA_DENIED = -6,
152 FFA_RETRY = -7,
153 FFA_ABORTED = -8,
154 FFA_NO_DATA = -9,
155 FFA_NOT_READY = -10,
156};
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100157
158/* clang-format on */
159
Karl Meakinf51a35f2023-08-07 17:53:52 +0100160/* Return the name of the function identifier. */
161static inline const char *ffa_func_name(uint32_t func)
162{
163 switch (func) {
164 case FFA_ERROR_32:
165 return "FFA_ERROR_32";
166 case FFA_SUCCESS_32:
167 return "FFA_SUCCESS_32";
168 case FFA_SUCCESS_64:
169 return "FFA_SUCCESS_64";
170 case FFA_INTERRUPT_32:
171 return "FFA_INTERRUPT_32";
172 case FFA_VERSION_32:
173 return "FFA_VERSION_32";
174 case FFA_FEATURES_32:
175 return "FFA_FEATURES_32";
176 case FFA_RX_RELEASE_32:
177 return "FFA_RX_RELEASE_32";
178 case FFA_RXTX_MAP_32:
179 return "FFA_RXTX_MAP_32";
180 case FFA_RXTX_MAP_64:
181 return "FFA_RXTX_MAP_64";
182 case FFA_RXTX_UNMAP_32:
183 return "FFA_RXTX_UNMAP_32";
184 case FFA_PARTITION_INFO_GET_32:
185 return "FFA_PARTITION_INFO_GET_32";
186 case FFA_ID_GET_32:
187 return "FFA_ID_GET_32";
188 case FFA_MSG_POLL_32:
189 return "FFA_MSG_POLL_32";
190 case FFA_MSG_WAIT_32:
191 return "FFA_MSG_WAIT_32";
192 case FFA_YIELD_32:
193 return "FFA_YIELD_32";
194 case FFA_RUN_32:
195 return "FFA_RUN_32";
196 case FFA_MSG_SEND_32:
197 return "FFA_MSG_SEND_32";
198 case FFA_MSG_SEND_DIRECT_REQ_32:
199 return "FFA_MSG_SEND_DIRECT_REQ_32";
200 case FFA_MSG_SEND_DIRECT_REQ_64:
201 return "FFA_MSG_SEND_DIRECT_REQ_64";
202 case FFA_MSG_SEND_DIRECT_RESP_32:
203 return "FFA_MSG_SEND_DIRECT_RESP_32";
204 case FFA_MSG_SEND_DIRECT_RESP_64:
205 return "FFA_MSG_SEND_DIRECT_RESP_64";
206 case FFA_MEM_DONATE_32:
207 return "FFA_MEM_DONATE_32";
208 case FFA_MEM_LEND_32:
209 return "FFA_MEM_LEND_32";
210 case FFA_MEM_SHARE_32:
211 return "FFA_MEM_SHARE_32";
212 case FFA_MEM_RETRIEVE_REQ_32:
213 return "FFA_MEM_RETRIEVE_REQ_32";
J-Alves95fbb312024-03-20 15:19:16 +0000214 case FFA_MEM_DONATE_64:
215 return "FFA_MEM_DONATE_64";
216 case FFA_MEM_LEND_64:
217 return "FFA_MEM_LEND_64";
218 case FFA_MEM_SHARE_64:
219 return "FFA_MEM_SHARE_64";
220 case FFA_MEM_RETRIEVE_REQ_64:
221 return "FFA_MEM_RETRIEVE_REQ_64";
Karl Meakinf51a35f2023-08-07 17:53:52 +0100222 case FFA_MEM_RETRIEVE_RESP_32:
223 return "FFA_MEM_RETRIEVE_RESP_32";
224 case FFA_MEM_RELINQUISH_32:
225 return "FFA_MEM_RELINQUISH_32";
226 case FFA_MEM_RECLAIM_32:
227 return "FFA_MEM_RECLAIM_32";
228 case FFA_MEM_FRAG_RX_32:
229 return "FFA_MEM_FRAG_RX_32";
230 case FFA_MEM_FRAG_TX_32:
231 return "FFA_MEM_FRAG_TX_32";
232 case FFA_NORMAL_WORLD_RESUME:
233 return "FFA_NORMAL_WORLD_RESUME";
234
235 /* FF-A v1.1 */
236 case FFA_NOTIFICATION_BITMAP_CREATE_32:
237 return "FFA_NOTIFICATION_BITMAP_CREATE_32";
238 case FFA_NOTIFICATION_BITMAP_DESTROY_32:
239 return "FFA_NOTIFICATION_BITMAP_DESTROY_32";
240 case FFA_NOTIFICATION_BIND_32:
241 return "FFA_NOTIFICATION_BIND_32";
242 case FFA_NOTIFICATION_UNBIND_32:
243 return "FFA_NOTIFICATION_UNBIND_32";
244 case FFA_NOTIFICATION_SET_32:
245 return "FFA_NOTIFICATION_SET_32";
246 case FFA_NOTIFICATION_GET_32:
247 return "FFA_NOTIFICATION_GET_32";
248 case FFA_NOTIFICATION_INFO_GET_64:
249 return "FFA_NOTIFICATION_INFO_GET_64";
250 case FFA_RX_ACQUIRE_32:
251 return "FFA_RX_ACQUIRE_32";
252 case FFA_SPM_ID_GET_32:
253 return "FFA_SPM_ID_GET_32";
254 case FFA_MSG_SEND2_32:
255 return "FFA_MSG_SEND2_32";
256 case FFA_SECONDARY_EP_REGISTER_64:
257 return "FFA_SECONDARY_EP_REGISTER_64";
258 case FFA_MEM_PERM_GET_32:
259 return "FFA_MEM_PERM_GET_32";
260 case FFA_MEM_PERM_SET_32:
261 return "FFA_MEM_PERM_SET_32";
262 case FFA_MEM_PERM_GET_64:
263 return "FFA_MEM_PERM_GET_64";
264 case FFA_MEM_PERM_SET_64:
265 return "FFA_MEM_PERM_SET_64";
266
267 /* Implementation-defined ABIs. */
268 case FFA_CONSOLE_LOG_32:
269 return "FFA_CONSOLE_LOG_32";
270 case FFA_CONSOLE_LOG_64:
271 return "FFA_CONSOLE_LOG_64";
272 case FFA_PARTITION_INFO_GET_REGS_64:
273 return "FFA_PARTITION_INFO_GET_REGS_64";
274 case FFA_EL3_INTR_HANDLE_32:
275 return "FFA_EL3_INTR_HANDLE_32";
276
277 default:
278 return "UNKNOWN";
279 }
280}
281
282/* Return the name of the error code. */
Karl Meakindc759f52024-05-07 16:08:02 +0100283static inline const char *ffa_error_name(enum ffa_error error)
Karl Meakinf51a35f2023-08-07 17:53:52 +0100284{
285 switch (error) {
286 case FFA_NOT_SUPPORTED:
287 return "FFA_NOT_SUPPORTED";
288 case FFA_INVALID_PARAMETERS:
289 return "FFA_INVALID_PARAMETERS";
290 case FFA_NO_MEMORY:
291 return "FFA_NO_MEMORY";
292 case FFA_BUSY:
293 return "FFA_BUSY";
294 case FFA_INTERRUPTED:
295 return "FFA_INTERRUPTED";
296 case FFA_DENIED:
297 return "FFA_DENIED";
298 case FFA_RETRY:
299 return "FFA_RETRY";
300 case FFA_ABORTED:
301 return "FFA_ABORTED";
302 case FFA_NO_DATA:
303 return "FFA_NO_DATA";
Karl Meakindc759f52024-05-07 16:08:02 +0100304 case FFA_NOT_READY:
305 return "FFA_NOT_READY";
Karl Meakinf51a35f2023-08-07 17:53:52 +0100306 }
Karl Meakindc759f52024-05-07 16:08:02 +0100307 return "UNKNOWN";
Karl Meakinf51a35f2023-08-07 17:53:52 +0100308}
309
J-Alves6f72ca82021-11-01 12:34:58 +0000310/**
Karl Meakin49ec1e42024-05-10 13:08:24 +0100311 * Defined in Table 3.1 in the FF-A v.1.2 memory management supplement.
312 * Input properties:
313 * - Bits[31:2] and Bit[0] are reserved (SBZ).
314 * Output properties:
315 * - Bit[0]: dynamically allocated buffer support.
316 * - Bit[1]: NS bit handling.
317 * - Bit[2]: support for retrieval by hypervisor.
318 * - Bits[31:3] are reserved (MBZ).
J-Alves6f72ca82021-11-01 12:34:58 +0000319 */
Karl Meakin49ec1e42024-05-10 13:08:24 +0100320#define FFA_FEATURES_MEM_RETRIEVE_REQ_BUFFER_SUPPORT (0U << 0U)
321#define FFA_FEATURES_MEM_RETRIEVE_REQ_NS_SUPPORT (1U << 1U)
322#define FFA_FEATURES_MEM_RETRIEVE_REQ_HYPERVISOR_SUPPORT (1U << 2U)
J-Alves6f72ca82021-11-01 12:34:58 +0000323
Karl Meakin49ec1e42024-05-10 13:08:24 +0100324#define FFA_FEATURES_MEM_RETRIEVE_REQ_MBZ_HI_BIT (31U)
325#define FFA_FEATURES_MEM_RETRIEVE_REQ_MBZ_LO_BIT (2U)
326#define FFA_FEATURES_MEM_RETRIEVE_REQ_MBZ_BIT (0U)
J-Alves6f72ca82021-11-01 12:34:58 +0000327
Karl Meakin49ec1e42024-05-10 13:08:24 +0100328enum ffa_feature_id {
329 /* Query interrupt ID of Notification Pending Interrupt. */
330 FFA_FEATURE_NPI = 1,
Karl Meakin34b8ae92023-01-13 13:33:07 +0000331
Karl Meakin49ec1e42024-05-10 13:08:24 +0100332 /* Query interrupt ID of Schedule Receiver Interrupt. */
333 FFA_FEATURE_SRI = 2,
J-Alves6f72ca82021-11-01 12:34:58 +0000334
Karl Meakin49ec1e42024-05-10 13:08:24 +0100335 /* Query interrupt ID of the Managed Exit Interrupt. */
336 FFA_FEATURE_MEI = 3,
337};
J-Alves6f72ca82021-11-01 12:34:58 +0000338
Karl Meakin49ec1e42024-05-10 13:08:24 +0100339/** Constants for bitmasks used in FFA_FEATURES. */
340#define FFA_FEATURES_FEATURE_BIT (31U)
341#define FFA_FEATURES_FEATURE_MBZ_HI_BIT (30U)
342#define FFA_FEATURES_FEATURE_MBZ_LO_BIT (8U)
343
344#define FFA_FEATURES_NS_SUPPORT_BIT (1U)
J-Alves6f72ca82021-11-01 12:34:58 +0000345
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100346/* FF-A function specific constants. */
347#define FFA_MSG_RECV_BLOCK 0x1
348#define FFA_MSG_RECV_BLOCK_MASK 0x1
349
350#define FFA_MSG_SEND_NOTIFY 0x1
351#define FFA_MSG_SEND_NOTIFY_MASK 0x1
352
353#define FFA_MEM_RECLAIM_CLEAR 0x1
354
355#define FFA_SLEEP_INDEFINITE 0
356
Raghu Krishnamurthyea6d25f2021-09-14 15:27:06 -0700357#define FFA_MEM_PERM_RO UINT32_C(0x7)
358#define FFA_MEM_PERM_RW UINT32_C(0x5)
359#define FFA_MEM_PERM_RX UINT32_C(0x3)
360
Kathleen Capella7253bd52024-08-14 17:36:09 -0400361#define FFA_MSG_WAIT_FLAG_RETAIN_RX UINT32_C(0x1)
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000362/*
Olivier Deprez013f4d62022-11-21 15:46:20 +0100363 * Defined in Table 13.34 in the FF-A v1.1 EAC0 specification.
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000364 * The Partition count flag is used by FFA_PARTITION_INFO_GET to specify
365 * if partition info descriptors should be returned or just the count.
366 */
Olivier Deprez013f4d62022-11-21 15:46:20 +0100367#define FFA_PARTITION_COUNT_FLAG UINT32_C(0x1)
368#define FFA_PARTITION_COUNT_FLAG_MASK (UINT32_C(0x1) << 0)
Daniel Boulbyb46cad12021-12-13 17:47:21 +0000369
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100370/**
371 * For use where the FF-A specification refers explicitly to '4K pages'. Not to
372 * be confused with PAGE_SIZE, which is the translation granule Hafnium is
373 * configured to use.
374 */
J-Alves715d6232023-02-16 16:33:28 +0000375#define FFA_PAGE_SIZE ((size_t)4096)
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100376
Federico Recanatifc0295e2022-02-08 19:37:39 +0100377/** The ID of a VM. These are assigned sequentially starting with an offset. */
J-Alves19e20cf2023-08-02 12:48:55 +0100378typedef uint16_t ffa_id_t;
Federico Recanatifc0295e2022-02-08 19:37:39 +0100379
380/**
J-Alves661e1b72023-08-02 13:39:40 +0100381 * The FF-A v1.2 ALP0, section 6.1 defines that partition IDs are split into two
382 * parts:
383 * - Bit15 -> partition type identifier.
384 * - b'0 -> ID relates to a VM ID.
385 * - b'1 -> ID relates to an SP ID.
386 */
387#define FFA_ID_MASK ((ffa_id_t)0x8000)
388#define FFA_VM_ID_MASK ((ffa_id_t)0x0000)
389
390/**
391 * Helper to check if FF-A ID is a VM ID, managed by the hypervisor.
392 */
393static inline bool ffa_is_vm_id(ffa_id_t id)
394{
395 return (FFA_ID_MASK & id) == FFA_VM_ID_MASK;
396}
397
398/**
Federico Recanatifc0295e2022-02-08 19:37:39 +0100399 * Partition message header as specified by table 6.2 from FF-A v1.1 EAC0
400 * specification.
401 */
402struct ffa_partition_rxtx_header {
403 uint32_t flags; /* MBZ */
404 uint32_t reserved;
405 /* Offset from the beginning of the buffer to the message payload. */
406 uint32_t offset;
407 /* Sender(Bits[31:16]) and Receiver(Bits[15:0]) endpoint IDs. */
408 uint32_t sender_receiver;
409 /* Size of message in buffer. */
410 uint32_t size;
411};
412
413#define FFA_RXTX_HEADER_SIZE sizeof(struct ffa_partition_rxtx_header)
414#define FFA_RXTX_SENDER_SHIFT (0x10U)
J-Alves70079932022-12-07 17:32:20 +0000415#define FFA_RXTX_ALLOCATOR_SHIFT 16
Federico Recanatifc0295e2022-02-08 19:37:39 +0100416
417static inline void ffa_rxtx_header_init(
J-Alves19e20cf2023-08-02 12:48:55 +0100418 ffa_id_t sender, ffa_id_t receiver, uint32_t size,
Federico Recanatifc0295e2022-02-08 19:37:39 +0100419 struct ffa_partition_rxtx_header *header)
420{
421 header->flags = 0;
422 header->reserved = 0;
423 header->offset = FFA_RXTX_HEADER_SIZE;
424 header->sender_receiver =
425 (uint32_t)(receiver | (sender << FFA_RXTX_SENDER_SHIFT));
426 header->size = size;
427}
428
J-Alves19e20cf2023-08-02 12:48:55 +0100429static inline ffa_id_t ffa_rxtx_header_sender(
Federico Recanatifc0295e2022-02-08 19:37:39 +0100430 const struct ffa_partition_rxtx_header *h)
431{
J-Alves19e20cf2023-08-02 12:48:55 +0100432 return (ffa_id_t)(h->sender_receiver >> FFA_RXTX_SENDER_SHIFT);
Federico Recanatifc0295e2022-02-08 19:37:39 +0100433}
434
J-Alves19e20cf2023-08-02 12:48:55 +0100435static inline ffa_id_t ffa_rxtx_header_receiver(
Federico Recanatifc0295e2022-02-08 19:37:39 +0100436 const struct ffa_partition_rxtx_header *h)
437{
J-Alves19e20cf2023-08-02 12:48:55 +0100438 return (ffa_id_t)(h->sender_receiver);
Federico Recanatifc0295e2022-02-08 19:37:39 +0100439}
440
441/* The maximum length possible for a single message. */
442#define FFA_PARTITION_MSG_PAYLOAD_MAX (HF_MAILBOX_SIZE - FFA_RXTX_HEADER_SIZE)
443
444struct ffa_partition_msg {
445 struct ffa_partition_rxtx_header header;
446 char payload[FFA_PARTITION_MSG_PAYLOAD_MAX];
447};
448
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100449/* The maximum length possible for a single message. */
450#define FFA_MSG_PAYLOAD_MAX HF_MAILBOX_SIZE
451
452enum ffa_data_access {
453 FFA_DATA_ACCESS_NOT_SPECIFIED,
454 FFA_DATA_ACCESS_RO,
455 FFA_DATA_ACCESS_RW,
456 FFA_DATA_ACCESS_RESERVED,
457};
458
Karl Meakinf98b2aa2023-10-12 16:09:59 +0100459static inline const char *ffa_data_access_name(enum ffa_data_access data_access)
460{
461 switch (data_access) {
462 case FFA_DATA_ACCESS_NOT_SPECIFIED:
463 return "FFA_DATA_ACCESS_NOT_SPECIFIED";
464 case FFA_DATA_ACCESS_RO:
465 return "FFA_DATA_ACCESS_RO";
466 case FFA_DATA_ACCESS_RW:
467 return "FFA_DATA_ACCESS_RW";
468 case FFA_DATA_ACCESS_RESERVED:
469 return "FFA_DATA_ACCESS_RESERVED";
470 }
471}
472
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100473enum ffa_instruction_access {
474 FFA_INSTRUCTION_ACCESS_NOT_SPECIFIED,
475 FFA_INSTRUCTION_ACCESS_NX,
476 FFA_INSTRUCTION_ACCESS_X,
477 FFA_INSTRUCTION_ACCESS_RESERVED,
478};
479
Karl Meakinf98b2aa2023-10-12 16:09:59 +0100480static inline const char *ffa_instruction_access_name(
481 enum ffa_instruction_access instruction_access)
482{
483 switch (instruction_access) {
484 case FFA_INSTRUCTION_ACCESS_NOT_SPECIFIED:
485 return "FFA_INSTRUCTION_ACCESS_NOT_SPECIFIED";
486 case FFA_INSTRUCTION_ACCESS_NX:
487 return "FFA_INSTRUCTION_ACCESS_NX";
488 case FFA_INSTRUCTION_ACCESS_X:
489 return "FFA_INSTRUCTION_ACCESS_X";
490 case FFA_INSTRUCTION_ACCESS_RESERVED:
491 return "FFA_INSTRUCTION_ACCESS_RESERVED";
492 }
493}
494
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100495enum ffa_memory_type {
496 FFA_MEMORY_NOT_SPECIFIED_MEM,
497 FFA_MEMORY_DEVICE_MEM,
498 FFA_MEMORY_NORMAL_MEM,
499};
500
Karl Meakinf98b2aa2023-10-12 16:09:59 +0100501static inline const char *ffa_memory_type_name(enum ffa_memory_type type)
502{
503 switch (type) {
504 case FFA_MEMORY_NOT_SPECIFIED_MEM:
505 return "FFA_MEMORY_NOT_SPECIFIED_MEM";
506 case FFA_MEMORY_DEVICE_MEM:
507 return "FFA_MEMORY_DEVICE_MEM";
508 case FFA_MEMORY_NORMAL_MEM:
509 return "FFA_MEMORY_NORMAL_MEM";
510 }
511}
512
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100513enum ffa_memory_cacheability {
514 FFA_MEMORY_CACHE_RESERVED = 0x0,
515 FFA_MEMORY_CACHE_NON_CACHEABLE = 0x1,
516 FFA_MEMORY_CACHE_RESERVED_1 = 0x2,
517 FFA_MEMORY_CACHE_WRITE_BACK = 0x3,
518 FFA_MEMORY_DEV_NGNRNE = 0x0,
519 FFA_MEMORY_DEV_NGNRE = 0x1,
520 FFA_MEMORY_DEV_NGRE = 0x2,
521 FFA_MEMORY_DEV_GRE = 0x3,
522};
523
Karl Meakinf98b2aa2023-10-12 16:09:59 +0100524static inline const char *ffa_memory_cacheability_name(
525 enum ffa_memory_cacheability cacheability)
526{
527 switch (cacheability) {
528 case FFA_MEMORY_CACHE_RESERVED:
529 return "FFA_MEMORY_CACHE_RESERVED";
530 case FFA_MEMORY_CACHE_NON_CACHEABLE:
531 return "FFA_MEMORY_CACHE_NON_CACHEABLE";
532 case FFA_MEMORY_CACHE_RESERVED_1:
533 return "FFA_MEMORY_CACHE_RESERVED_1";
534 case FFA_MEMORY_CACHE_WRITE_BACK:
535 return "FFA_MEMORY_CACHE_WRITE_BACK";
536 }
537}
538
Daniel Boulby9764ff62024-01-30 17:47:39 +0000539static inline const char *ffa_device_memory_cacheability_name(
540 enum ffa_memory_cacheability cacheability)
541{
542 switch (cacheability) {
543 case FFA_MEMORY_DEV_NGNRNE:
544 return "FFA_MEMORY_DEV_NGNRNE";
545 case FFA_MEMORY_DEV_NGNRE:
546 return "FFA_MEMORY_DEV_NGNRE";
547 case FFA_MEMORY_DEV_NGRE:
548 return "FFA_MEMORY_DEV_NGRE";
549 case FFA_MEMORY_DEV_GRE:
550 return "FFA_MEMORY_DEV_GRE";
551 }
552}
553
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100554enum ffa_memory_shareability {
555 FFA_MEMORY_SHARE_NON_SHAREABLE,
556 FFA_MEMORY_SHARE_RESERVED,
557 FFA_MEMORY_OUTER_SHAREABLE,
558 FFA_MEMORY_INNER_SHAREABLE,
559};
560
Karl Meakinf98b2aa2023-10-12 16:09:59 +0100561static inline const char *ffa_memory_shareability_name(
562 enum ffa_memory_shareability shareability)
563{
564 switch (shareability) {
565 case FFA_MEMORY_SHARE_NON_SHAREABLE:
566 return "FFA_MEMORY_SHARE_NON_SHAREABLE";
567 case FFA_MEMORY_SHARE_RESERVED:
568 return "FFA_MEMORY_SHARE_RESERVED";
569 case FFA_MEMORY_OUTER_SHAREABLE:
570 return "FFA_MEMORY_OUTER_SHAREABLE";
571 case FFA_MEMORY_INNER_SHAREABLE:
572 return "FFA_MEMORY_INNER_SHAREABLE";
573 }
574}
575
Olivier Deprez4342a3c2022-02-28 09:37:25 +0100576/**
577 * FF-A v1.1 REL0 Table 10.18 memory region attributes descriptor NS Bit 6.
578 * Per section 10.10.4.1, NS bit is reserved for FFA_MEM_DONATE/LEND/SHARE
579 * and FFA_MEM_RETRIEVE_REQUEST.
580 */
581enum ffa_memory_security {
582 FFA_MEMORY_SECURITY_UNSPECIFIED = 0,
583 FFA_MEMORY_SECURITY_SECURE = 0,
584 FFA_MEMORY_SECURITY_NON_SECURE,
585};
586
Karl Meakinf98b2aa2023-10-12 16:09:59 +0100587static inline const char *ffa_memory_security_name(
588 enum ffa_memory_security security)
589{
590 switch (security) {
591 case FFA_MEMORY_SECURITY_UNSPECIFIED:
592 return "FFA_MEMORY_SECURITY_UNSPECIFIED";
593 case FFA_MEMORY_SECURITY_NON_SECURE:
594 return "FFA_MEMORY_SECURITY_NON_SECURE";
595 }
596}
597
Karl Meakin84710f32023-10-12 15:14:49 +0100598typedef struct {
599 uint8_t data_access : 2;
600 uint8_t instruction_access : 2;
601} ffa_memory_access_permissions_t;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100602
603/**
J-Alves0b6653d2022-04-22 13:17:38 +0100604 * This corresponds to table 10.18 of the FF-A v1.1 EAC0 specification, "Memory
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100605 * region attributes descriptor".
606 */
Karl Meakin84710f32023-10-12 15:14:49 +0100607typedef struct {
608 uint8_t shareability : 2;
609 uint8_t cacheability : 2;
610 uint8_t type : 2;
611 uint8_t security : 2;
612 uint8_t : 8;
613} ffa_memory_attributes_t;
J-Alves0b6653d2022-04-22 13:17:38 +0100614
615/* FF-A v1.1 EAC0 states bit [15:7] Must Be Zero. */
616#define FFA_MEMORY_ATTRIBUTES_MBZ_MASK 0xFF80U
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100617
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100618/**
619 * A globally-unique ID assigned by the hypervisor for a region of memory being
620 * sent between VMs.
621 */
622typedef uint64_t ffa_memory_handle_t;
623
J-Alves917d2f22020-10-30 18:39:30 +0000624#define FFA_MEMORY_HANDLE_ALLOCATOR_MASK \
625 ((ffa_memory_handle_t)(UINT64_C(1) << 63))
626#define FFA_MEMORY_HANDLE_ALLOCATOR_HYPERVISOR \
627 ((ffa_memory_handle_t)(UINT64_C(1) << 63))
628
629#define FFA_MEMORY_HANDLE_ALLOCATOR_SPMC (UINT64_C(0) << 63)
630#define FFA_MEMORY_HANDLE_INVALID (~UINT64_C(0))
631
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100632/**
633 * A count of VMs. This has the same range as the VM IDs but we give it a
634 * different name to make the different semantics clear.
635 */
J-Alves19e20cf2023-08-02 12:48:55 +0100636typedef ffa_id_t ffa_vm_count_t;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100637
638/** The index of a vCPU within a particular VM. */
639typedef uint16_t ffa_vcpu_index_t;
640
641/**
642 * A count of vCPUs. This has the same range as the vCPU indices but we give it
643 * a different name to make the different semantics clear.
644 */
645typedef ffa_vcpu_index_t ffa_vcpu_count_t;
646
647/** Parameter and return type of FF-A functions. */
648struct ffa_value {
649 uint64_t func;
650 uint64_t arg1;
651 uint64_t arg2;
652 uint64_t arg3;
653 uint64_t arg4;
654 uint64_t arg5;
655 uint64_t arg6;
656 uint64_t arg7;
Raghu Krishnamurthy567068e2022-12-26 07:46:38 -0800657
658 struct {
659 uint64_t arg8;
660 uint64_t arg9;
661 uint64_t arg10;
662 uint64_t arg11;
663 uint64_t arg12;
664 uint64_t arg13;
665 uint64_t arg14;
666 uint64_t arg15;
667 uint64_t arg16;
668 uint64_t arg17;
669 bool valid;
670 } extended_val;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100671};
672
Olivier Depreze562e542020-06-11 17:31:54 +0200673static inline uint32_t ffa_func_id(struct ffa_value args)
674{
675 return args.func;
676}
677
Karl Meakindc759f52024-05-07 16:08:02 +0100678static inline enum ffa_error ffa_error_code(struct ffa_value val)
J-Alves13318e32021-02-22 17:21:00 +0000679{
Karl Meakin66a38bd2024-05-28 16:00:56 +0100680 /* NOLINTNEXTLINE(EnumCastOutOfRange) */
Karl Meakindc759f52024-05-07 16:08:02 +0100681 return (enum ffa_error)val.arg2;
J-Alves13318e32021-02-22 17:21:00 +0000682}
683
J-Alves19e20cf2023-08-02 12:48:55 +0100684static inline ffa_id_t ffa_sender(struct ffa_value args)
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100685{
686 return (args.arg1 >> 16) & 0xffff;
687}
688
J-Alves19e20cf2023-08-02 12:48:55 +0100689static inline ffa_id_t ffa_receiver(struct ffa_value args)
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100690{
691 return args.arg1 & 0xffff;
692}
693
694static inline uint32_t ffa_msg_send_size(struct ffa_value args)
695{
696 return args.arg3;
697}
698
Federico Recanati25053ee2022-03-14 15:01:53 +0100699static inline uint32_t ffa_msg_send2_flags(struct ffa_value args)
700{
701 return args.arg2;
702}
703
Olivier Depreze562e542020-06-11 17:31:54 +0200704static inline uint32_t ffa_partition_info_get_count(struct ffa_value args)
705{
706 return args.arg2;
707}
708
Raghu Krishnamurthy2957b922022-12-27 10:29:12 -0800709static inline uint16_t ffa_partition_info_regs_get_last_idx(
710 struct ffa_value args)
711{
712 return args.arg2 & 0xFFFF;
713}
714
715static inline uint16_t ffa_partition_info_regs_get_curr_idx(
716 struct ffa_value args)
717{
718 return (args.arg2 >> 16) & 0xFFFF;
719}
720
721static inline uint16_t ffa_partition_info_regs_get_tag(struct ffa_value args)
722{
723 return (args.arg2 >> 32) & 0xFFFF;
724}
725
726static inline uint16_t ffa_partition_info_regs_get_desc_size(
727 struct ffa_value args)
728{
729 return (args.arg2 >> 48);
730}
731
Andrew Walbran1bbe9402020-04-30 16:47:13 +0100732static inline ffa_memory_handle_t ffa_assemble_handle(uint32_t a1, uint32_t a2)
733{
734 return (uint64_t)a1 | (uint64_t)a2 << 32;
735}
736
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100737static inline ffa_memory_handle_t ffa_mem_success_handle(struct ffa_value args)
738{
Andrew Walbran1bbe9402020-04-30 16:47:13 +0100739 return ffa_assemble_handle(args.arg2, args.arg3);
740}
741
Andrew Walbranca808b12020-05-15 17:22:28 +0100742static inline ffa_memory_handle_t ffa_frag_handle(struct ffa_value args)
743{
744 return ffa_assemble_handle(args.arg1, args.arg2);
745}
746
Andrew Walbran1bbe9402020-04-30 16:47:13 +0100747static inline struct ffa_value ffa_mem_success(ffa_memory_handle_t handle)
748{
749 return (struct ffa_value){.func = FFA_SUCCESS_32,
750 .arg2 = (uint32_t)handle,
751 .arg3 = (uint32_t)(handle >> 32)};
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100752}
753
J-Alves19e20cf2023-08-02 12:48:55 +0100754static inline ffa_id_t ffa_vm_id(struct ffa_value args)
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100755{
756 return (args.arg1 >> 16) & 0xffff;
757}
758
759static inline ffa_vcpu_index_t ffa_vcpu_index(struct ffa_value args)
760{
761 return args.arg1 & 0xffff;
762}
763
J-Alves19e20cf2023-08-02 12:48:55 +0100764static inline uint64_t ffa_vm_vcpu(ffa_id_t vm_id, ffa_vcpu_index_t vcpu_index)
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100765{
766 return ((uint32_t)vm_id << 16) | vcpu_index;
767}
768
J-Alves19e20cf2023-08-02 12:48:55 +0100769static inline ffa_id_t ffa_frag_sender(struct ffa_value args)
Andrew Walbranca808b12020-05-15 17:22:28 +0100770{
771 return (args.arg4 >> 16) & 0xffff;
772}
773
J-Alves6f72ca82021-11-01 12:34:58 +0000774static inline uint32_t ffa_feature_intid(struct ffa_value args)
775{
776 return (uint32_t)args.arg2;
777}
778
Daniel Boulbyefa381f2022-01-18 14:49:40 +0000779static inline uint32_t ffa_fwk_msg(struct ffa_value args)
780{
781 return (uint32_t)args.arg2;
782}
783
Andrew Walbranb5ab43c2020-04-30 11:32:54 +0100784/**
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100785 * Holds the UUID in a struct that is mappable directly to the SMCC calling
786 * convention, which is used for FF-A calls.
787 *
788 * Refer to table 84 of the FF-A 1.0 EAC specification as well as section 5.3
789 * of the SMCC Spec 1.2.
790 */
791struct ffa_uuid {
792 uint32_t uuid[4];
793};
794
795static inline void ffa_uuid_init(uint32_t w0, uint32_t w1, uint32_t w2,
796 uint32_t w3, struct ffa_uuid *uuid)
797{
798 uuid->uuid[0] = w0;
799 uuid->uuid[1] = w1;
800 uuid->uuid[2] = w2;
801 uuid->uuid[3] = w3;
802}
803
804static inline bool ffa_uuid_equal(const struct ffa_uuid *uuid1,
805 const struct ffa_uuid *uuid2)
806{
807 return (uuid1->uuid[0] == uuid2->uuid[0]) &&
808 (uuid1->uuid[1] == uuid2->uuid[1]) &&
809 (uuid1->uuid[2] == uuid2->uuid[2]) &&
810 (uuid1->uuid[3] == uuid2->uuid[3]);
811}
812
813static inline bool ffa_uuid_is_null(const struct ffa_uuid *uuid)
814{
Karl Meakin60532972024-08-02 16:11:21 +0100815 struct ffa_uuid null = {0};
816
817 return ffa_uuid_equal(uuid, &null);
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100818}
819
Kathleen Capella41fea932023-06-23 17:39:28 -0400820static inline void ffa_uuid_unpack_from_uint64(uint64_t uuid_lo,
821 uint64_t uuid_hi,
822 struct ffa_uuid *uuid)
823{
824 ffa_uuid_init((uint32_t)(uuid_lo & 0xFFFFFFFFU),
825 (uint32_t)(uuid_lo >> 32),
826 (uint32_t)(uuid_hi & 0xFFFFFFFFU),
827 (uint32_t)(uuid_hi >> 32), uuid);
828}
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100829/**
830 * Flags to determine the partition properties, as required by
831 * FFA_PARTITION_INFO_GET.
832 *
Kathleen Capellaf71dee42023-08-08 16:24:14 -0400833 * The values of the flags are specified in table 6.2 of DEN0077A FF-A 1.2 ALP0
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100834 * specification, "Partition information descriptor, partition properties".
835 */
836typedef uint32_t ffa_partition_properties_t;
837
Kathleen Capellaf71dee42023-08-08 16:24:14 -0400838/**
839 * Partition property: partition supports receipt of direct requests via the
840 * FFA_MSG_SEND_DIRECT_REQ ABI.
841 */
Kathleen Capella402fa852022-11-09 16:16:51 -0500842#define FFA_PARTITION_DIRECT_REQ_RECV (UINT32_C(1) << 0)
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100843
Kathleen Capellaf71dee42023-08-08 16:24:14 -0400844/**
845 * Partition property: partition can send direct requests via the
846 * FFA_MSG_SEND_DIRECT_REQ ABI.
847 */
Kathleen Capella402fa852022-11-09 16:16:51 -0500848#define FFA_PARTITION_DIRECT_REQ_SEND (UINT32_C(1) << 1)
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100849
850/** Partition property: partition can send and receive indirect messages. */
Kathleen Capella402fa852022-11-09 16:16:51 -0500851#define FFA_PARTITION_INDIRECT_MSG (UINT32_C(1) << 2)
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100852
J-Alves09ff9d82021-11-02 11:55:20 +0000853/** Partition property: partition can receive notifications. */
Kathleen Capella402fa852022-11-09 16:16:51 -0500854#define FFA_PARTITION_NOTIFICATION (UINT32_C(1) << 3)
855
856/** Partition property: partition runs in the AArch64 execution state. */
857#define FFA_PARTITION_AARCH64_EXEC (UINT32_C(1) << 8)
J-Alves09ff9d82021-11-02 11:55:20 +0000858
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100859/**
Kathleen Capellaf71dee42023-08-08 16:24:14 -0400860 * Partition property: partition supports receipt of direct requests via the
861 * FFA_MSG_SEND_DIRECT_REQ2 ABI.
862 */
863#define FFA_PARTITION_DIRECT_REQ2_RECV (UINT32_C(1) << 9)
864
865/**
866 * Partition property: partition can send direct requests via the
867 * FFA_MSG_SEND_DIRECT_REQ2 ABI.
868 */
869#define FFA_PARTITION_DIRECT_REQ2_SEND (UINT32_C(1) << 10)
870
871/**
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100872 * Holds information returned for each partition by the FFA_PARTITION_INFO_GET
873 * interface.
Kathleen Capella402fa852022-11-09 16:16:51 -0500874 * This corresponds to table 13.37 "Partition information descriptor"
875 * in FF-A 1.1 EAC0 specification.
Daniel Boulby1ddb3d72021-12-16 18:16:50 +0000876 */
877struct ffa_partition_info {
J-Alves19e20cf2023-08-02 12:48:55 +0100878 ffa_id_t vm_id;
Daniel Boulby1ddb3d72021-12-16 18:16:50 +0000879 ffa_vcpu_count_t vcpu_count;
880 ffa_partition_properties_t properties;
881 struct ffa_uuid uuid;
882};
883
J-Alvesdd1ad572022-01-25 17:58:26 +0000884/** Length in bytes of the name in boot information descriptor. */
885#define FFA_BOOT_INFO_NAME_LEN 16
886
J-Alves240d84c2022-04-22 12:19:34 +0100887/**
888 * The FF-A boot info descriptor, as defined in table 5.8 of section 5.4.1, of
889 * the FF-A v1.1 EAC0 specification.
890 */
J-Alvesdd1ad572022-01-25 17:58:26 +0000891struct ffa_boot_info_desc {
892 char name[FFA_BOOT_INFO_NAME_LEN];
893 uint8_t type;
894 uint8_t reserved;
895 uint16_t flags;
896 uint32_t size;
897 uint64_t content;
898};
899
900/** FF-A boot information type mask. */
901#define FFA_BOOT_INFO_TYPE_SHIFT 7
902#define FFA_BOOT_INFO_TYPE_MASK (0x1U << FFA_BOOT_INFO_TYPE_SHIFT)
903#define FFA_BOOT_INFO_TYPE_STD 0U
904#define FFA_BOOT_INFO_TYPE_IMPDEF 1U
905
906/** Standard boot info type IDs. */
907#define FFA_BOOT_INFO_TYPE_ID_MASK 0x7FU
908#define FFA_BOOT_INFO_TYPE_ID_FDT 0U
909#define FFA_BOOT_INFO_TYPE_ID_HOB 1U
910
911/** FF-A Boot Info descriptors flags. */
912#define FFA_BOOT_INFO_FLAG_MBZ_MASK 0xFFF0U
913
914/** Bits [1:0] encode the format of the name field in ffa_boot_info_desc. */
915#define FFA_BOOT_INFO_FLAG_NAME_FORMAT_SHIFT 0U
916#define FFA_BOOT_INFO_FLAG_NAME_FORMAT_MASK \
917 (0x3U << FFA_BOOT_INFO_FLAG_NAME_FORMAT_SHIFT)
918#define FFA_BOOT_INFO_FLAG_NAME_FORMAT_STRING 0x0U
919#define FFA_BOOT_INFO_FLAG_NAME_FORMAT_UUID 0x1U
920
921/** Bits [3:2] encode the format of the content field in ffa_boot_info_desc. */
922#define FFA_BOOT_INFO_FLAG_CONTENT_FORMAT_SHIFT 2
923#define FFA_BOOT_INFO_FLAG_CONTENT_FORMAT_MASK \
924 (0x3U << FFA_BOOT_INFO_FLAG_CONTENT_FORMAT_SHIFT)
925#define FFA_BOOT_INFO_FLAG_CONTENT_FORMAT_VALUE 0x1U
926#define FFA_BOOT_INFO_FLAG_CONTENT_FORMAT_ADDR 0x0U
927
928static inline uint16_t ffa_boot_info_content_format(
929 struct ffa_boot_info_desc *desc)
930{
931 return (desc->flags & FFA_BOOT_INFO_FLAG_CONTENT_FORMAT_MASK) >>
932 FFA_BOOT_INFO_FLAG_CONTENT_FORMAT_SHIFT;
933}
934
935static inline uint16_t ffa_boot_info_name_format(
936 struct ffa_boot_info_desc *desc)
937{
938 return (desc->flags & FFA_BOOT_INFO_FLAG_NAME_FORMAT_MASK) >>
939 FFA_BOOT_INFO_FLAG_NAME_FORMAT_SHIFT;
940}
941
942static inline uint8_t ffa_boot_info_type_id(struct ffa_boot_info_desc *desc)
943{
944 return desc->type & FFA_BOOT_INFO_TYPE_ID_MASK;
945}
946
947static inline uint8_t ffa_boot_info_type(struct ffa_boot_info_desc *desc)
948{
949 return (desc->type & FFA_BOOT_INFO_TYPE_MASK) >>
950 FFA_BOOT_INFO_TYPE_SHIFT;
951}
952
953/** Length in bytes of the signature in the boot descriptor. */
954#define FFA_BOOT_INFO_HEADER_SIGNATURE_LEN 4
955
J-Alves240d84c2022-04-22 12:19:34 +0100956/**
957 * The FF-A boot information header, as defined in table 5.9 of section 5.4.2,
958 * of the FF-A v1.1 EAC0 specification.
959 */
J-Alvesdd1ad572022-01-25 17:58:26 +0000960struct ffa_boot_info_header {
961 uint32_t signature;
962 uint32_t version;
963 uint32_t info_blob_size;
964 uint32_t desc_size;
965 uint32_t desc_count;
966 uint32_t desc_offset;
967 uint64_t reserved;
968 struct ffa_boot_info_desc boot_info[];
969};
970
Fuad Tabbae4efcc32020-07-16 15:37:27 +0100971/**
J-Alves980d1992021-03-18 12:49:18 +0000972 * FF-A v1.1 specification restricts the number of notifications to a maximum
973 * of 64. Following all possible bitmaps.
974 */
Karl Meakin2ad6b662024-07-29 20:45:40 +0100975#define FFA_NOTIFICATION_MASK(ID) (UINT64_C(1) << (ID))
J-Alves980d1992021-03-18 12:49:18 +0000976
977typedef uint64_t ffa_notifications_bitmap_t;
978
979#define MAX_FFA_NOTIFICATIONS 64U
980
981/**
J-Alvesc003a7a2021-03-18 13:06:53 +0000982 * Flag for notification bind and set, to specify call is about per-vCPU
983 * notifications.
984 */
Olivier Deprezb76307d2022-06-09 17:17:45 +0200985#define FFA_NOTIFICATION_FLAG_PER_VCPU (UINT32_C(1) << 0)
J-Alvesc003a7a2021-03-18 13:06:53 +0000986
Federico Recanatie73d2832022-04-20 11:10:52 +0200987#define FFA_NOTIFICATION_SPM_BUFFER_FULL_MASK FFA_NOTIFICATION_MASK(0)
988#define FFA_NOTIFICATION_HYP_BUFFER_FULL_MASK FFA_NOTIFICATION_MASK(32)
989
990/**
991 * Helper functions to check for buffer full notification.
992 */
993static inline bool is_ffa_hyp_buffer_full_notification(
994 ffa_notifications_bitmap_t framework)
995{
996 return (framework & FFA_NOTIFICATION_HYP_BUFFER_FULL_MASK) != 0;
997}
998
999static inline bool is_ffa_spm_buffer_full_notification(
1000 ffa_notifications_bitmap_t framework)
1001{
1002 return (framework & FFA_NOTIFICATION_SPM_BUFFER_FULL_MASK) != 0;
1003}
1004
J-Alvesc003a7a2021-03-18 13:06:53 +00001005/**
J-Alves980d1992021-03-18 12:49:18 +00001006 * Helper function to assemble a 64-bit sized bitmap, from the 32-bit sized lo
1007 * and hi.
1008 * Helpful as FF-A specification defines that the notifications interfaces
1009 * arguments are 32-bit registers.
1010 */
1011static inline ffa_notifications_bitmap_t ffa_notifications_bitmap(uint32_t lo,
1012 uint32_t hi)
1013{
1014 return (ffa_notifications_bitmap_t)hi << 32U | lo;
1015}
1016
J-Alves98ff9562021-09-09 14:39:41 +01001017static inline ffa_notifications_bitmap_t ffa_notification_get_from_sp(
1018 struct ffa_value val)
1019{
1020 return ffa_notifications_bitmap((uint32_t)val.arg2, (uint32_t)val.arg3);
1021}
1022
1023static inline ffa_notifications_bitmap_t ffa_notification_get_from_vm(
1024 struct ffa_value val)
1025{
1026 return ffa_notifications_bitmap((uint32_t)val.arg4, (uint32_t)val.arg5);
1027}
1028
Federico Recanatie73d2832022-04-20 11:10:52 +02001029static inline ffa_notifications_bitmap_t ffa_notification_get_from_framework(
1030 struct ffa_value val)
1031{
1032 return ffa_notifications_bitmap((uint32_t)val.arg6, (uint32_t)val.arg7);
1033}
1034
J-Alves980d1992021-03-18 12:49:18 +00001035/**
J-Alvesaa79c012021-07-09 14:29:45 +01001036 * Flags used in calls to FFA_NOTIFICATION_GET interface.
1037 */
Olivier Deprezb76307d2022-06-09 17:17:45 +02001038#define FFA_NOTIFICATION_FLAG_BITMAP_SP (UINT32_C(1) << 0)
1039#define FFA_NOTIFICATION_FLAG_BITMAP_VM (UINT32_C(1) << 1)
1040#define FFA_NOTIFICATION_FLAG_BITMAP_SPM (UINT32_C(1) << 2)
1041#define FFA_NOTIFICATION_FLAG_BITMAP_HYP (UINT32_C(1) << 3)
J-Alvesaa79c012021-07-09 14:29:45 +01001042
J-Alvesa3755072021-11-26 16:01:08 +00001043/* Flag to configure notification as being per vCPU. */
Olivier Deprezb76307d2022-06-09 17:17:45 +02001044#define FFA_NOTIFICATIONS_FLAG_PER_VCPU (UINT32_C(1) << 0)
J-Alvesa3755072021-11-26 16:01:08 +00001045
J-Alves13394022021-06-30 13:48:49 +01001046/** Flag for FFA_NOTIFICATION_SET to delay Schedule Receiver Interrupt */
Olivier Deprezb76307d2022-06-09 17:17:45 +02001047#define FFA_NOTIFICATIONS_FLAG_DELAY_SRI (UINT32_C(1) << 1)
1048
1049#define FFA_NOTIFICATIONS_FLAGS_VCPU_ID(id) \
1050 ((((uint32_t)(id)) & UINT32_C(0xffff)) << 16)
J-Alves13394022021-06-30 13:48:49 +01001051
J-Alvesbe6e3032021-11-30 14:54:12 +00001052static inline ffa_vcpu_index_t ffa_notifications_get_vcpu(struct ffa_value args)
J-Alvesaa79c012021-07-09 14:29:45 +01001053{
J-Alvesbe6e3032021-11-30 14:54:12 +00001054 return (ffa_vcpu_index_t)(args.arg1 >> 16 & 0xffffU);
J-Alvesaa79c012021-07-09 14:29:45 +01001055}
1056
1057/**
J-Alvesc8e8a222021-06-08 17:33:52 +01001058 * The max number of IDs for return of FFA_NOTIFICATION_INFO_GET.
1059 */
1060#define FFA_NOTIFICATIONS_INFO_GET_MAX_IDS 20U
1061
1062/**
1063 * Number of registers to use in successfull return of interface
1064 * FFA_NOTIFICATION_INFO_GET.
1065 */
1066#define FFA_NOTIFICATIONS_INFO_GET_REGS_RET 5U
1067
1068#define FFA_NOTIFICATIONS_INFO_GET_FLAG_MORE_PENDING 0x1U
1069
1070/**
1071 * Helper macros for return parameter encoding as described in section 17.7.1
1072 * of the FF-A v1.1 Beta0 specification.
1073 */
1074#define FFA_NOTIFICATIONS_LISTS_COUNT_SHIFT 0x7U
1075#define FFA_NOTIFICATIONS_LISTS_COUNT_MASK 0x1fU
Karl Meakin2ad6b662024-07-29 20:45:40 +01001076#define FFA_NOTIFICATIONS_LIST_SHIFT(l) (2 * ((l) - 1) + 12)
J-Alvesc8e8a222021-06-08 17:33:52 +01001077#define FFA_NOTIFICATIONS_LIST_SIZE_MASK 0x3U
1078
1079static inline uint32_t ffa_notification_info_get_lists_count(
1080 struct ffa_value args)
1081{
1082 return (uint32_t)(args.arg2 >> FFA_NOTIFICATIONS_LISTS_COUNT_SHIFT) &
1083 FFA_NOTIFICATIONS_LISTS_COUNT_MASK;
1084}
1085
1086static inline uint32_t ffa_notification_info_get_list_size(
1087 struct ffa_value args, unsigned int list_idx)
1088{
1089 return ((uint32_t)args.arg2 >> FFA_NOTIFICATIONS_LIST_SHIFT(list_idx)) &
1090 FFA_NOTIFICATIONS_LIST_SIZE_MASK;
1091}
1092
1093static inline bool ffa_notification_info_get_more_pending(struct ffa_value args)
1094{
1095 return (args.arg2 & FFA_NOTIFICATIONS_INFO_GET_FLAG_MORE_PENDING) != 0U;
1096}
1097
1098/**
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001099 * A set of contiguous pages which is part of a memory region. This corresponds
J-Alves0b6653d2022-04-22 13:17:38 +01001100 * to table 10.14 of the FF-A v1.1 EAC0 specification, "Constituent memory
1101 * region descriptor".
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001102 */
1103struct ffa_memory_region_constituent {
1104 /**
1105 * The base IPA of the constituent memory region, aligned to 4 kiB page
1106 * size granularity.
1107 */
1108 uint64_t address;
1109 /** The number of 4 kiB pages in the constituent memory region. */
1110 uint32_t page_count;
1111 /** Reserved field, must be 0. */
1112 uint32_t reserved;
1113};
1114
1115/**
J-Alves0b6653d2022-04-22 13:17:38 +01001116 * A set of pages comprising a memory region. This corresponds to table 10.13 of
1117 * the FF-A v1.1 EAC0 specification, "Composite memory region descriptor".
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001118 */
1119struct ffa_composite_memory_region {
1120 /**
1121 * The total number of 4 kiB pages included in this memory region. This
1122 * must be equal to the sum of page counts specified in each
1123 * `ffa_memory_region_constituent`.
1124 */
1125 uint32_t page_count;
1126 /**
1127 * The number of constituents (`ffa_memory_region_constituent`)
1128 * included in this memory region range.
1129 */
1130 uint32_t constituent_count;
1131 /** Reserved field, must be 0. */
1132 uint64_t reserved_0;
1133 /** An array of `constituent_count` memory region constituents. */
1134 struct ffa_memory_region_constituent constituents[];
1135};
1136
1137/** Flags to indicate properties of receivers during memory region retrieval. */
1138typedef uint8_t ffa_memory_receiver_flags_t;
1139
1140/**
J-Alves0b6653d2022-04-22 13:17:38 +01001141 * This corresponds to table 10.15 of the FF-A v1.1 EAC0 specification, "Memory
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001142 * access permissions descriptor".
1143 */
1144struct ffa_memory_region_attributes {
1145 /** The ID of the VM to which the memory is being given or shared. */
J-Alves19e20cf2023-08-02 12:48:55 +01001146 ffa_id_t receiver;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001147 /**
1148 * The permissions with which the memory region should be mapped in the
1149 * receiver's page table.
1150 */
1151 ffa_memory_access_permissions_t permissions;
1152 /**
1153 * Flags used during FFA_MEM_RETRIEVE_REQ and FFA_MEM_RETRIEVE_RESP
1154 * for memory regions with multiple borrowers.
1155 */
1156 ffa_memory_receiver_flags_t flags;
1157};
1158
1159/** Flags to control the behaviour of a memory sharing transaction. */
1160typedef uint32_t ffa_memory_region_flags_t;
1161
1162/**
1163 * Clear memory region contents after unmapping it from the sender and before
1164 * mapping it for any receiver.
1165 */
1166#define FFA_MEMORY_REGION_FLAG_CLEAR 0x1
1167
1168/**
1169 * Whether the hypervisor may time slice the memory sharing or retrieval
1170 * operation.
1171 */
1172#define FFA_MEMORY_REGION_FLAG_TIME_SLICE 0x2
1173
1174/**
1175 * Whether the hypervisor should clear the memory region after the receiver
1176 * relinquishes it or is aborted.
1177 */
1178#define FFA_MEMORY_REGION_FLAG_CLEAR_RELINQUISH 0x4
1179
J-Alves3456e032023-07-20 12:20:05 +01001180/**
1181 * On retrieve request, bypass the multi-borrower check.
1182 */
1183#define FFA_MEMORY_REGION_FLAG_BYPASS_BORROWERS_CHECK (0x1U << 10)
1184
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001185#define FFA_MEMORY_REGION_TRANSACTION_TYPE_MASK ((0x3U) << 3)
1186#define FFA_MEMORY_REGION_TRANSACTION_TYPE_UNSPECIFIED ((0x0U) << 3)
1187#define FFA_MEMORY_REGION_TRANSACTION_TYPE_SHARE ((0x1U) << 3)
1188#define FFA_MEMORY_REGION_TRANSACTION_TYPE_LEND ((0x2U) << 3)
1189#define FFA_MEMORY_REGION_TRANSACTION_TYPE_DONATE ((0x3U) << 3)
1190
Federico Recanati85090c42021-12-15 13:17:54 +01001191#define FFA_MEMORY_REGION_ADDRESS_RANGE_HINT_VALID ((0x1U) << 9)
1192#define FFA_MEMORY_REGION_ADDRESS_RANGE_HINT_MASK ((0xFU) << 5)
1193
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001194/**
Daniel Boulbyde974ca2023-12-12 13:53:31 +00001195 * Struct to store the impdef value seen in Table 11.16 of the
1196 * FF-A v1.2 ALP0 specification "Endpoint memory access descriptor".
1197 */
1198struct ffa_memory_access_impdef {
1199 uint64_t val[2];
1200};
1201
Daniel Boulbye0ca9a02024-03-05 18:40:59 +00001202static inline struct ffa_memory_access_impdef ffa_memory_access_impdef_init(
1203 uint64_t impdef_hi, uint64_t impdef_lo)
1204{
1205 return (struct ffa_memory_access_impdef){{impdef_hi, impdef_lo}};
1206}
1207
Daniel Boulbyde974ca2023-12-12 13:53:31 +00001208/**
J-Alves0b6653d2022-04-22 13:17:38 +01001209 * This corresponds to table 10.16 of the FF-A v1.1 EAC0 specification,
1210 * "Endpoint memory access descriptor".
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001211 */
1212struct ffa_memory_access {
1213 struct ffa_memory_region_attributes receiver_permissions;
1214 /**
1215 * Offset in bytes from the start of the outer `ffa_memory_region` to
1216 * an `ffa_composite_memory_region` struct.
1217 */
1218 uint32_t composite_memory_region_offset;
Daniel Boulbyde974ca2023-12-12 13:53:31 +00001219 struct ffa_memory_access_impdef impdef;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001220 uint64_t reserved_0;
1221};
1222
J-Alves363f5722022-04-25 17:37:37 +01001223/** The maximum number of recipients a memory region may be sent to. */
J-Alvesba0e6172022-04-25 17:41:40 +01001224#define MAX_MEM_SHARE_RECIPIENTS UINT32_C(2)
J-Alves363f5722022-04-25 17:37:37 +01001225
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001226/**
1227 * Information about a set of pages which are being shared. This corresponds to
J-Alves0b6653d2022-04-22 13:17:38 +01001228 * table 10.20 of the FF-A v1.1 EAC0 specification, "Lend, donate or share
1229 * memory transaction descriptor". Note that it is also used for retrieve
1230 * requests and responses.
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001231 */
1232struct ffa_memory_region {
1233 /**
1234 * The ID of the VM which originally sent the memory region, i.e. the
1235 * owner.
1236 */
J-Alves19e20cf2023-08-02 12:48:55 +01001237 ffa_id_t sender;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001238 ffa_memory_attributes_t attributes;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001239 /** Flags to control behaviour of the transaction. */
1240 ffa_memory_region_flags_t flags;
1241 ffa_memory_handle_t handle;
1242 /**
1243 * An implementation defined value associated with the receiver and the
1244 * memory region.
1245 */
1246 uint64_t tag;
J-Alves0b6653d2022-04-22 13:17:38 +01001247 /* Size of the memory access descriptor. */
1248 uint32_t memory_access_desc_size;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001249 /**
1250 * The number of `ffa_memory_access` entries included in this
1251 * transaction.
1252 */
1253 uint32_t receiver_count;
1254 /**
J-Alves0b6653d2022-04-22 13:17:38 +01001255 * Offset of the 'receivers' field, which relates to the memory access
1256 * descriptors.
1257 */
1258 uint32_t receivers_offset;
1259 /** Reserved field (12 bytes) must be 0. */
1260 uint32_t reserved[3];
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001261};
1262
1263/**
1264 * Descriptor used for FFA_MEM_RELINQUISH requests. This corresponds to table
J-Alves0b6653d2022-04-22 13:17:38 +01001265 * 16.25 of the FF-A v1.1 EAC0 specification, "Descriptor to relinquish a memory
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001266 * region".
1267 */
1268struct ffa_mem_relinquish {
1269 ffa_memory_handle_t handle;
1270 ffa_memory_region_flags_t flags;
1271 uint32_t endpoint_count;
J-Alves19e20cf2023-08-02 12:48:55 +01001272 ffa_id_t endpoints[];
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001273};
1274
1275/**
Daniel Boulby59ffee92023-11-02 18:26:26 +00001276 * Returns the first FF-A version that matches the memory access descriptor
1277 * size.
Daniel Boulbyde974ca2023-12-12 13:53:31 +00001278 */
Karl Meakin0e617d92024-04-05 12:55:22 +01001279enum ffa_version ffa_version_from_memory_access_desc_size(
Daniel Boulbyc7dc9322023-10-27 15:12:07 +01001280 uint32_t memory_access_desc_size);
1281
1282/**
Daniel Boulbyd5ae44b2023-12-12 12:18:11 +00001283 * To maintain forwards compatability we can't make assumptions about the size
1284 * of the endpoint memory access descriptor so provide a helper function
1285 * to get a receiver from the receiver array using the memory access descriptor
1286 * size field from the memory region descriptor struct.
1287 * Returns NULL if we cannot return the receiver.
1288 */
1289static inline struct ffa_memory_access *ffa_memory_region_get_receiver(
1290 struct ffa_memory_region *memory_region, uint32_t receiver_index)
1291{
1292 uint32_t memory_access_desc_size =
1293 memory_region->memory_access_desc_size;
1294
1295 if (receiver_index >= memory_region->receiver_count) {
1296 return NULL;
1297 }
1298
1299 /*
1300 * Memory access descriptor size cannot be greater than the size of
1301 * the memory access descriptor defined by the current FF-A version.
1302 */
1303 if (memory_access_desc_size > sizeof(struct ffa_memory_access)) {
1304 return NULL;
1305 }
1306
Daniel Boulby41ef8ba2023-10-13 17:01:22 +01001307 /* Check we cannot use receivers offset to cause overflow. */
1308 if (memory_region->receivers_offset !=
1309 sizeof(struct ffa_memory_region)) {
1310 return NULL;
1311 }
1312
Karl Meakin2ad6b662024-07-29 20:45:40 +01001313 return (struct ffa_memory_access
1314 *)((uint8_t *)memory_region +
1315 (size_t)memory_region->receivers_offset +
1316 (size_t)(receiver_index * memory_access_desc_size));
Daniel Boulbyd5ae44b2023-12-12 12:18:11 +00001317}
1318
1319/**
Daniel Boulby59ffee92023-11-02 18:26:26 +00001320 * Gets the receiver's access permissions from 'struct ffa_memory_region' and
1321 * returns its index in the receiver's array. If receiver's ID doesn't exist
1322 * in the array, return the region's 'receivers_count'.
1323 */
1324static inline uint32_t ffa_memory_region_get_receiver_index(
1325 struct ffa_memory_region *memory_region, ffa_id_t receiver_id)
1326{
1327 uint32_t i;
1328
1329 for (i = 0U; i < memory_region->receiver_count; i++) {
1330 struct ffa_memory_access *receiver =
1331 ffa_memory_region_get_receiver(memory_region, i);
1332 if (receiver->receiver_permissions.receiver == receiver_id) {
1333 break;
1334 }
1335 }
1336
1337 return i;
1338}
1339
1340/**
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001341 * Gets the `ffa_composite_memory_region` for the given receiver from an
1342 * `ffa_memory_region`, or NULL if it is not valid.
1343 */
1344static inline struct ffa_composite_memory_region *
1345ffa_memory_region_get_composite(struct ffa_memory_region *memory_region,
1346 uint32_t receiver_index)
1347{
Daniel Boulbyd5ae44b2023-12-12 12:18:11 +00001348 struct ffa_memory_access *receiver =
1349 ffa_memory_region_get_receiver(memory_region, receiver_index);
1350 uint32_t offset;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001351
Daniel Boulbyd5ae44b2023-12-12 12:18:11 +00001352 if (receiver == NULL) {
1353 return NULL;
1354 }
1355
1356 offset = receiver->composite_memory_region_offset;
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001357 if (offset == 0) {
1358 return NULL;
1359 }
1360
1361 return (struct ffa_composite_memory_region *)((uint8_t *)memory_region +
1362 offset);
1363}
1364
1365static inline uint32_t ffa_mem_relinquish_init(
1366 struct ffa_mem_relinquish *relinquish_request,
1367 ffa_memory_handle_t handle, ffa_memory_region_flags_t flags,
J-Alves19e20cf2023-08-02 12:48:55 +01001368 ffa_id_t sender)
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001369{
1370 relinquish_request->handle = handle;
1371 relinquish_request->flags = flags;
1372 relinquish_request->endpoint_count = 1;
1373 relinquish_request->endpoints[0] = sender;
J-Alves19e20cf2023-08-02 12:48:55 +01001374 return sizeof(struct ffa_mem_relinquish) + sizeof(ffa_id_t);
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001375}
1376
J-Alves126ab502022-09-29 11:37:33 +01001377void ffa_copy_memory_region_constituents(
1378 struct ffa_memory_region_constituent *dest,
1379 const struct ffa_memory_region_constituent *src);
1380
Karl Meakin0fd67292024-02-06 17:33:05 +00001381struct ffa_features_rxtx_map_params {
1382 /*
1383 * Bit[0:1]:
1384 * Minimum buffer size and alignment boundary:
1385 * 0b00: 4K
1386 * 0b01: 64K
1387 * 0b10: 16K
1388 * 0b11: Reserved
1389 */
1390 uint8_t min_buf_size : 2;
1391 /*
1392 * Bit[2:15]:
1393 * Reserved (MBZ)
1394 */
1395 uint16_t mbz : 14;
1396 /*
1397 * Bit[16:32]:
1398 * Maximum buffer size in number of pages
1399 * Only present on version 1.2 or later
1400 */
1401 uint16_t max_buf_size : 16;
1402};
1403
Karl Meakin49ec1e42024-05-10 13:08:24 +01001404enum ffa_features_rxtx_map_buf_size {
1405 FFA_RXTX_MAP_MIN_BUF_4K = 0,
1406 FFA_RXTX_MAP_MAX_BUF_PAGE_COUNT = 1,
1407};
Karl Meakin0fd67292024-02-06 17:33:05 +00001408
Karl Meakinf7861302024-02-20 14:39:33 +00001409static inline struct ffa_features_rxtx_map_params ffa_features_rxtx_map_params(
1410 struct ffa_value args)
1411{
1412 struct ffa_features_rxtx_map_params params;
1413 uint32_t arg2 = args.arg2;
1414
1415 params = *(struct ffa_features_rxtx_map_params *)(&arg2);
1416
1417 return params;
1418}
1419
Federico Recanati392be392022-02-08 20:53:03 +01001420/**
1421 * Endpoint RX/TX descriptor, as defined by Table 13.27 in FF-A v1.1 EAC0.
1422 * It's used by the Hypervisor to describe the RX/TX buffers mapped by a VM
1423 * to the SPMC, in order to allow indirect messaging.
1424 */
1425struct ffa_endpoint_rx_tx_descriptor {
J-Alves19e20cf2023-08-02 12:48:55 +01001426 ffa_id_t endpoint_id;
Federico Recanati392be392022-02-08 20:53:03 +01001427 uint16_t reserved;
1428
1429 /*
1430 * 8-byte aligned offset from the base address of this descriptor to the
1431 * `ffa_composite_memory_region` describing the RX buffer.
1432 */
1433 uint32_t rx_offset;
1434
1435 /*
1436 * 8-byte aligned offset from the base address of this descriptor to the
1437 * `ffa_composite_memory_region` describing the TX buffer.
1438 */
1439 uint32_t tx_offset;
1440
1441 /* Pad to align on 16-byte boundary. */
1442 uint32_t pad;
1443};
1444
1445static inline struct ffa_composite_memory_region *
Karl Meakinb9705e22024-04-05 13:58:28 +01001446ffa_endpoint_get_rx_memory_region(struct ffa_endpoint_rx_tx_descriptor *desc)
Federico Recanati392be392022-02-08 20:53:03 +01001447{
Karl Meakin2ad6b662024-07-29 20:45:40 +01001448 return (struct ffa_composite_memory_region *)((char *)desc +
Federico Recanati392be392022-02-08 20:53:03 +01001449 desc->rx_offset);
1450}
1451
1452static inline struct ffa_composite_memory_region *
Karl Meakinb9705e22024-04-05 13:58:28 +01001453ffa_endpoint_get_tx_memory_region(struct ffa_endpoint_rx_tx_descriptor *desc)
Federico Recanati392be392022-02-08 20:53:03 +01001454{
Karl Meakin2ad6b662024-07-29 20:45:40 +01001455 return (struct ffa_composite_memory_region *)((char *)desc +
Federico Recanati392be392022-02-08 20:53:03 +01001456 desc->tx_offset);
1457}
1458
J-Alves2d8457f2022-10-05 11:06:41 +01001459void ffa_memory_region_init_header(struct ffa_memory_region *memory_region,
J-Alves19e20cf2023-08-02 12:48:55 +01001460 ffa_id_t sender,
J-Alves2d8457f2022-10-05 11:06:41 +01001461 ffa_memory_attributes_t attributes,
1462 ffa_memory_region_flags_t flags,
1463 ffa_memory_handle_t handle, uint32_t tag,
Daniel Boulbyd5ae44b2023-12-12 12:18:11 +00001464 uint32_t receiver_count,
1465 uint32_t receiver_desc_size);
Daniel Boulby59ffee92023-11-02 18:26:26 +00001466void ffa_memory_access_init(struct ffa_memory_access *receiver,
1467 ffa_id_t receiver_id,
1468 enum ffa_data_access data_access,
1469 enum ffa_instruction_access instruction_access,
1470 ffa_memory_receiver_flags_t flags,
1471 struct ffa_memory_access_impdef *impdef_val);
J-Alves45085432022-04-22 16:19:20 +01001472uint32_t ffa_memory_region_init_single_receiver(
Andrew Walbranca808b12020-05-15 17:22:28 +01001473 struct ffa_memory_region *memory_region, size_t memory_region_max_size,
J-Alves19e20cf2023-08-02 12:48:55 +01001474 ffa_id_t sender, ffa_id_t receiver,
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001475 const struct ffa_memory_region_constituent constituents[],
1476 uint32_t constituent_count, uint32_t tag,
1477 ffa_memory_region_flags_t flags, enum ffa_data_access data_access,
1478 enum ffa_instruction_access instruction_access,
1479 enum ffa_memory_type type, enum ffa_memory_cacheability cacheability,
Daniel Boulby59ffee92023-11-02 18:26:26 +00001480 enum ffa_memory_shareability shareability,
1481 struct ffa_memory_access_impdef *impdef_val, uint32_t *fragment_length,
Andrew Walbranca808b12020-05-15 17:22:28 +01001482 uint32_t *total_length);
J-Alvesf4eecf72022-07-20 16:05:34 +01001483uint32_t ffa_memory_region_init(
1484 struct ffa_memory_region *memory_region, size_t memory_region_max_size,
J-Alves19e20cf2023-08-02 12:48:55 +01001485 ffa_id_t sender, struct ffa_memory_access receivers[],
Daniel Boulbyd5ae44b2023-12-12 12:18:11 +00001486 uint32_t receiver_count, uint32_t receiver_desc_size,
J-Alvesf4eecf72022-07-20 16:05:34 +01001487 const struct ffa_memory_region_constituent constituents[],
1488 uint32_t constituent_count, uint32_t tag,
1489 ffa_memory_region_flags_t flags, enum ffa_memory_type type,
1490 enum ffa_memory_cacheability cacheability,
1491 enum ffa_memory_shareability shareability, uint32_t *fragment_length,
1492 uint32_t *total_length);
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001493uint32_t ffa_memory_retrieve_request_init(
1494 struct ffa_memory_region *memory_region, ffa_memory_handle_t handle,
J-Alves19e20cf2023-08-02 12:48:55 +01001495 ffa_id_t sender, struct ffa_memory_access receivers[],
Daniel Boulbyd5ae44b2023-12-12 12:18:11 +00001496 uint32_t receiver_count, uint32_t receiver_desc_size, uint32_t tag,
1497 ffa_memory_region_flags_t flags, enum ffa_memory_type type,
1498 enum ffa_memory_cacheability cacheability,
J-Alves9b24ed82022-08-04 13:12:45 +01001499 enum ffa_memory_shareability shareability);
1500uint32_t ffa_memory_retrieve_request_init_single_receiver(
1501 struct ffa_memory_region *memory_region, ffa_memory_handle_t handle,
J-Alves19e20cf2023-08-02 12:48:55 +01001502 ffa_id_t sender, ffa_id_t receiver, uint32_t tag,
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001503 ffa_memory_region_flags_t flags, enum ffa_data_access data_access,
1504 enum ffa_instruction_access instruction_access,
1505 enum ffa_memory_type type, enum ffa_memory_cacheability cacheability,
Daniel Boulby59ffee92023-11-02 18:26:26 +00001506 enum ffa_memory_shareability shareability,
1507 struct ffa_memory_access_impdef *impdef_val);
Andrew Walbranb5ab43c2020-04-30 11:32:54 +01001508uint32_t ffa_memory_lender_retrieve_request_init(
1509 struct ffa_memory_region *memory_region, ffa_memory_handle_t handle,
J-Alves19e20cf2023-08-02 12:48:55 +01001510 ffa_id_t sender);
Andrew Walbranca808b12020-05-15 17:22:28 +01001511uint32_t ffa_memory_fragment_init(
1512 struct ffa_memory_region_constituent *fragment,
1513 size_t fragment_max_size,
1514 const struct ffa_memory_region_constituent constituents[],
1515 uint32_t constituent_count, uint32_t *fragment_length);
Federico Recanati392be392022-02-08 20:53:03 +01001516void ffa_endpoint_rx_tx_descriptor_init(
J-Alves19e20cf2023-08-02 12:48:55 +01001517 struct ffa_endpoint_rx_tx_descriptor *desc, ffa_id_t endpoint_id,
Federico Recanati392be392022-02-08 20:53:03 +01001518 uint64_t rx_address, uint64_t tx_address);