blob: f9e5773bb3fd0b43be2c8f5dfb3b655ac3b27bb9 [file] [log] [blame]
Soby Mathewb4c6df42022-11-09 11:13:29 +00001/*
2 * SPDX-License-Identifier: BSD-3-Clause
3 *
4 * SPDX-FileCopyrightText: Copyright TF-RMM Contributors.
5 */
6
7#ifndef SMC_RMI_H
8#define SMC_RMI_H
9
Soby Mathewb4c6df42022-11-09 11:13:29 +000010#include <smc.h>
11
12/*
13 * This file describes the Realm Management Interface (RMI) Application Binary
14 * Interface (ABI) for SMC calls made from Non-secure state to the RMM and
15 * serviced by the RMM.
Soby Mathewb4c6df42022-11-09 11:13:29 +000016 */
17
18/*
19 * The major version number of the RMI implementation. Increase this whenever
20 * the binary format or semantics of the SMC calls change.
21 */
Soby Mathewc9b6ecd2023-01-17 03:40:44 +000022#define RMI_ABI_VERSION_MAJOR U(56)
Soby Mathewb4c6df42022-11-09 11:13:29 +000023
24/*
25 * The minor version number of the RMI implementation. Increase this when
26 * a bug is fixed, or a feature is added without breaking binary compatibility.
27 */
Soby Mathewc9b6ecd2023-01-17 03:40:44 +000028#define RMI_ABI_VERSION_MINOR U(0)
Soby Mathewb4c6df42022-11-09 11:13:29 +000029
Soby Mathewc9b6ecd2023-01-17 03:40:44 +000030#define RMI_ABI_VERSION ((RMI_ABI_VERSION_MAJOR << U(16)) | \
Soby Mathewb4c6df42022-11-09 11:13:29 +000031 RMI_ABI_VERSION_MINOR)
32
Soby Mathewc9b6ecd2023-01-17 03:40:44 +000033#define RMI_ABI_VERSION_GET_MAJOR(_version) ((_version) >> U(16))
34#define RMI_ABI_VERSION_GET_MINOR(_version) ((_version) & U(0xFFFF))
Soby Mathewb4c6df42022-11-09 11:13:29 +000035
36#define SMC64_RMI_FID(_offset) SMC64_STD_FID(RMI, _offset)
37
38#define IS_SMC64_RMI_FID(_fid) IS_SMC64_STD_FAST_IN_RANGE(RMI, _fid)
39
Yousuf A0ec040d2022-10-31 12:30:57 +000040/* Command completed successfully. index is zero. */
41#define RMI_SUCCESS U(0)
42
43/*
44 * The value of a command input value caused the command to fail.
45 * Index is zero.
46 */
47#define RMI_ERROR_INPUT U(1)
48
49/*
50 * An attribute of a Realm does not match the expected value.
51 * index varies between usages.
52 */
53#define RMI_ERROR_REALM U(2)
54
55/*
56 * An attribute of a REC does not match the expected value.
57 * Index is zero.
58 */
59#define RMI_ERROR_REC U(3)
60
61/*
62 * An RTT walk terminated before reaching the target RTT level, or reached
63 * an RTTE with an unexpected value. index: RTT level at which the walk
64 * terminated
65 */
66#define RMI_ERROR_RTT U(4)
67
68/*
Yousuf A0ec040d2022-10-31 12:30:57 +000069 * Number of RMI Status Errors.
70 */
AlexeiFedorov892abce2023-04-06 16:32:12 +010071#define RMI_ERROR_COUNT U(5)
Yousuf A0ec040d2022-10-31 12:30:57 +000072
Soby Mathewb4c6df42022-11-09 11:13:29 +000073/*
74 * The number of GPRs (starting from X0) that are
75 * configured by the host when a REC is created.
76 */
Soby Mathewc9b6ecd2023-01-17 03:40:44 +000077#define REC_CREATE_NR_GPRS U(8)
Soby Mathewb4c6df42022-11-09 11:13:29 +000078
Soby Mathewc9b6ecd2023-01-17 03:40:44 +000079#define REC_PARAMS_FLAG_RUNNABLE (UL(1) << 0)
Soby Mathewb4c6df42022-11-09 11:13:29 +000080
81/*
82 * The number of GPRs (starting from X0) per voluntary exit context.
83 * Per SMCCC.
84 */
Soby Mathewc9b6ecd2023-01-17 03:40:44 +000085#define REC_EXIT_NR_GPRS U(31)
Soby Mathewb4c6df42022-11-09 11:13:29 +000086
87/* RmiHashAlgorithm type */
Soby Mathew3f56a4c2023-01-17 02:35:10 +000088#define RMI_HASH_ALGO_SHA256 0
89#define RMI_HASH_ALGO_SHA512 1
Soby Mathewb4c6df42022-11-09 11:13:29 +000090
91/* Maximum number of Interrupt Controller List Registers */
Soby Mathewc9b6ecd2023-01-17 03:40:44 +000092#define REC_GIC_NUM_LRS U(16)
Soby Mathewb4c6df42022-11-09 11:13:29 +000093
94/* Maximum number of auxiliary granules required for a REC */
Soby Mathewc9b6ecd2023-01-17 03:40:44 +000095#define MAX_REC_AUX_GRANULES U(16)
Soby Mathewb4c6df42022-11-09 11:13:29 +000096
Soby Mathewc9b6ecd2023-01-17 03:40:44 +000097#define REC_ENTRY_FLAG_EMUL_MMIO (UL(1) << 0)
98#define REC_ENTRY_FLAG_INJECT_SEA (UL(1) << 1)
Soby Mathewb4c6df42022-11-09 11:13:29 +000099
100/* Flags to specify if WFI/WFE should be trapped to host */
Soby Mathewc9b6ecd2023-01-17 03:40:44 +0000101#define REC_ENTRY_FLAG_TRAP_WFI (UL(1) << 2)
102#define REC_ENTRY_FLAG_TRAP_WFE (UL(1) << 3)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000103
104/*
105 * RmiRecExitReason represents the reason for a REC exit.
106 * This is returned to NS hosts via RMI_REC_ENTER::run_ptr.
107 */
Soby Mathewc9b6ecd2023-01-17 03:40:44 +0000108#define RMI_EXIT_SYNC U(0)
109#define RMI_EXIT_IRQ U(1)
110#define RMI_EXIT_FIQ U(2)
111#define RMI_EXIT_PSCI U(3)
112#define RMI_EXIT_RIPAS_CHANGE U(4)
113#define RMI_EXIT_HOST_CALL U(5)
114#define RMI_EXIT_SERROR U(6)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000115
116/* RmiRttEntryState represents the state of an RTTE */
Soby Mathewc9b6ecd2023-01-17 03:40:44 +0000117#define RMI_UNASSIGNED U(0)
118#define RMI_DESTROYED U(1)
119#define RMI_ASSIGNED U(2)
120#define RMI_TABLE U(3)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000121
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000122/* RmiFeature enumerations */
AlexeiFedorovc09b1652023-04-04 15:41:37 +0100123#define RMI_FEATURE_FALSE UL(0)
124#define RMI_FEATURE_TRUE UL(1)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000125
Yousuf Aa297b9b2022-10-13 13:54:21 +0100126/* RmiFeatureRegister0 format */
127#define RMM_FEATURE_REGISTER_0_INDEX UL(0)
128
129#define RMM_FEATURE_REGISTER_0_S2SZ_SHIFT UL(0)
130#define RMM_FEATURE_REGISTER_0_S2SZ_WIDTH UL(8)
131
132#define RMM_FEATURE_REGISTER_0_LPA2_SHIFT UL(8)
133#define RMM_FEATURE_REGISTER_0_LPA2_WIDTH UL(1)
Yousuf Aa297b9b2022-10-13 13:54:21 +0100134
AlexeiFedorov18002922023-04-06 10:19:51 +0100135#define RMM_FEATURE_REGISTER_0_SVE_EN_SHIFT UL(9)
136#define RMM_FEATURE_REGISTER_0_SVE_EN_WIDTH UL(1)
Yousuf Aa297b9b2022-10-13 13:54:21 +0100137
AlexeiFedorov18002922023-04-06 10:19:51 +0100138#define RMM_FEATURE_REGISTER_0_SVE_VL_SHIFT UL(10)
139#define RMM_FEATURE_REGISTER_0_SVE_VL_WIDTH UL(4)
Yousuf Aa297b9b2022-10-13 13:54:21 +0100140
AlexeiFedorov18002922023-04-06 10:19:51 +0100141#define RMM_FEATURE_REGISTER_0_NUM_BPS_SHIFT UL(14)
142#define RMM_FEATURE_REGISTER_0_NUM_BPS_WIDTH UL(4)
143
144#define RMM_FEATURE_REGISTER_0_NUM_WPS_SHIFT UL(18)
145#define RMM_FEATURE_REGISTER_0_NUM_WPS_WIDTH UL(4)
146
147#define RMM_FEATURE_REGISTER_0_PMU_EN_SHIFT UL(22)
148#define RMM_FEATURE_REGISTER_0_PMU_EN_WIDTH UL(1)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000149
150#define RMM_FEATURE_REGISTER_0_PMU_NUM_CTRS_SHIFT UL(23)
151#define RMM_FEATURE_REGISTER_0_PMU_NUM_CTRS_WIDTH UL(5)
152
AlexeiFedorov18002922023-04-06 10:19:51 +0100153#define RMM_FEATURE_REGISTER_0_HASH_SHA_256_SHIFT UL(28)
154#define RMM_FEATURE_REGISTER_0_HASH_SHA_256_WIDTH UL(1)
155
156#define RMM_FEATURE_REGISTER_0_HASH_SHA_512_SHIFT UL(29)
157#define RMM_FEATURE_REGISTER_0_HASH_SHA_512_WIDTH UL(1)
Arunachalam Ganapathyf6491212023-02-23 16:04:34 +0000158
Yousuf A62808152022-10-31 10:35:42 +0000159/* The RmmRipas enumeration representing realm IPA state */
AlexeiFedorov20afb5c2023-04-18 11:44:19 +0100160#define RMI_EMPTY U(0)
161#define RMI_RAM U(1)
162#define RMI_UNDEFINED U(2)
Yousuf A62808152022-10-31 10:35:42 +0000163
Soby Mathewb4c6df42022-11-09 11:13:29 +0000164/* no parameters */
165#define SMC_RMM_VERSION SMC64_RMI_FID(U(0x0))
166
167/*
168 * arg0 == target granule address
169 */
170#define SMC_RMM_GRANULE_DELEGATE SMC64_RMI_FID(U(0x1))
171
172/*
173 * arg0 == target granule address
174 */
175#define SMC_RMM_GRANULE_UNDELEGATE SMC64_RMI_FID(U(0x2))
176
177/* RmiDataMeasureContent type */
178#define RMI_NO_MEASURE_CONTENT 0
179#define RMI_MEASURE_CONTENT 1
180
181/*
AlexeiFedorovac923c82023-04-06 15:12:04 +0100182 * arg0 == RD address
183 * arg1 == data address
Soby Mathewb4c6df42022-11-09 11:13:29 +0000184 * arg2 == map address
185 * arg3 == SRC address
186 * arg4 == flags
187 */
188#define SMC_RMM_DATA_CREATE SMC64_RMI_FID(U(0x3))
189
190/*
AlexeiFedorovac923c82023-04-06 15:12:04 +0100191 * arg0 == RD address
192 * arg1 == data address
Soby Mathewb4c6df42022-11-09 11:13:29 +0000193 * arg2 == map address
194 */
195#define SMC_RMM_DATA_CREATE_UNKNOWN SMC64_RMI_FID(U(0x4))
196
197/*
198 * arg0 == RD address
199 * arg1 == map address
AlexeiFedorove2002be2023-04-19 17:20:12 +0100200 *
201 * ret1 == Address(PA) of the DATA granule, if ret0 == RMI_SUCCESS.
202 * Otherwise, undefined.
203 * ret2 == Top of the non-live address region. Only valid
AlexeiFedorov697445b2023-04-25 15:27:57 +0100204 * if ret0 == RMI_SUCCESS or ret0 == (RMI_ERROR_RTT, x)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000205 */
206#define SMC_RMM_DATA_DESTROY SMC64_RMI_FID(U(0x5))
207
208/*
209 * arg0 == RD address
210 */
211#define SMC_RMM_REALM_ACTIVATE SMC64_RMI_FID(U(0x7))
212
213/*
214 * arg0 == RD address
AlexeiFedorovac923c82023-04-06 15:12:04 +0100215 * arg1 == struct rmi_realm_params address
Soby Mathewb4c6df42022-11-09 11:13:29 +0000216 */
217#define SMC_RMM_REALM_CREATE SMC64_RMI_FID(U(0x8))
218
219/*
220 * arg0 == RD address
221 */
222#define SMC_RMM_REALM_DESTROY SMC64_RMI_FID(U(0x9))
223
224/*
AlexeiFedorovac923c82023-04-06 15:12:04 +0100225 * arg0 == RD address
226 * arg1 == REC address
Soby Mathewb4c6df42022-11-09 11:13:29 +0000227 * arg2 == struct rmm_rec address
228 */
229#define SMC_RMM_REC_CREATE SMC64_RMI_FID(U(0xA))
230
231/*
232 * arg0 == REC address
233 */
234#define SMC_RMM_REC_DESTROY SMC64_RMI_FID(U(0xB))
235
236/*
237 * arg0 == rec address
AlexeiFedorovac923c82023-04-06 15:12:04 +0100238 * arg1 == struct rec_run address
Soby Mathewb4c6df42022-11-09 11:13:29 +0000239 */
240#define SMC_RMM_REC_ENTER SMC64_RMI_FID(U(0xC))
241
242/*
AlexeiFedorovac923c82023-04-06 15:12:04 +0100243 * arg0 == RD address
244 * arg1 == RTT address
Soby Mathewb4c6df42022-11-09 11:13:29 +0000245 * arg2 == map address
246 * arg3 == level
247 */
248#define SMC_RMM_RTT_CREATE SMC64_RMI_FID(U(0xD))
249
250/*
AlexeiFedorove2002be2023-04-19 17:20:12 +0100251 * arg0 == RD address
252 * arg1 == map address
253 * arg2 == level
254 *
255 * ret1 == Address (PA) of the RTT, if ret0 == RMI_SUCCESS
256 * Otherwise, undefined.
257 * ret2 == Top of the non-live address region. Only valid
AlexeiFedorov697445b2023-04-25 15:27:57 +0100258 * if ret0 == RMI_SUCCESS or ret0 == (RMI_ERROR_RTT, x)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000259 */
260#define SMC_RMM_RTT_DESTROY SMC64_RMI_FID(U(0xE))
261
262/*
263 * arg0 == RD address
264 * arg1 == map address
265 * arg2 == level
266 * arg3 == s2tte
267 */
268#define SMC_RMM_RTT_MAP_UNPROTECTED SMC64_RMI_FID(U(0xF))
269
270/*
271 * arg0 == RD address
272 * arg1 == map address
273 * arg2 == level
AlexeiFedorov697445b2023-04-25 15:27:57 +0100274 *
Soby Mathewb4c6df42022-11-09 11:13:29 +0000275 * ret1 == level
276 * ret2 == s2tte type
277 * ret3 == s2tte
278 * ret4 == ripas
AlexeiFedorov697445b2023-04-25 15:27:57 +0100279 * if ret0 == RMI_SUCCESS, otherwise, undefined.
Soby Mathewb4c6df42022-11-09 11:13:29 +0000280 */
281#define SMC_RMM_RTT_READ_ENTRY SMC64_RMI_FID(U(0x11))
282
283/*
284 * arg0 == RD address
285 * arg1 == map address
286 * arg2 == level
287 */
288#define SMC_RMM_RTT_UNMAP_UNPROTECTED SMC64_RMI_FID(U(0x12))
289
290/*
291 * arg0 == calling rec address
292 * arg1 == target rec address
293 */
294#define SMC_RMM_PSCI_COMPLETE SMC64_RMI_FID(U(0x14))
295
296/*
297 * arg0 == Feature register index
298 */
299#define SMC_RMM_FEATURES SMC64_RMI_FID(U(0x15))
300
301/*
AlexeiFedorove2002be2023-04-19 17:20:12 +0100302 * arg0 == RD address
303 * arg1 == map address
304 * arg2 == level
305 *
306 * ret1 == Address(PA) of the RTT folded, if ret0 == RMI_SUCCESS
Soby Mathewb4c6df42022-11-09 11:13:29 +0000307 */
308#define SMC_RMM_RTT_FOLD SMC64_RMI_FID(U(0x16))
309
310/*
311 * arg0 == RD address
312 */
313#define SMC_RMM_REC_AUX_COUNT SMC64_RMI_FID(U(0x17))
314
315/*
AlexeiFedorovac923c82023-04-06 15:12:04 +0100316 * arg0 == RD address
AlexeiFedorov960d1612023-04-25 13:23:39 +0100317 * arg1 == start address
318 * arg2 == end address
319 *
320 * ret1 == Top of the address range where the RIPAS was updated,
321 * if ret0 == RMI_SUCCESS
Soby Mathewb4c6df42022-11-09 11:13:29 +0000322 */
323#define SMC_RMM_RTT_INIT_RIPAS SMC64_RMI_FID(U(0x18))
324
325/*
326 * arg0 == RD address
327 * arg1 == REC address
AlexeiFedorov5cf35ba2023-04-25 10:02:20 +0100328 * arg2 == start address
329 * arg3 == end address
330 *
331 * ret1 == Top of the address range where the RIPAS was updated,
332 * if ret0 == RMI_SUCCESS
Soby Mathewb4c6df42022-11-09 11:13:29 +0000333 */
334#define SMC_RMM_RTT_SET_RIPAS SMC64_RMI_FID(U(0x19))
335
336/* Size of Realm Personalization Value */
337#define RPV_SIZE 64
338
AlexeiFedorov18002922023-04-06 10:19:51 +0100339/* RmiRealmFlags format */
340#define RMI_REALM_FLAGS_LPA2_SHIFT UL(0)
341#define RMI_REALM_FLAGS_LPA2_WIDTH UL(1)
342
343#define RMI_REALM_FLAGS_SVE_SHIFT UL(1)
344#define RMI_REALM_FLAGS_SVE_WIDTH UL(1)
345
346#define RMI_REALM_FLAGS_PMU_SHIFT UL(2)
347#define RMI_REALM_FLAGS_PMU_WIDTH UL(1)
348
Soby Mathewc9b6ecd2023-01-17 03:40:44 +0000349#ifndef __ASSEMBLER__
Soby Mathewb4c6df42022-11-09 11:13:29 +0000350/*
Soby Mathewc414f2a2023-01-17 02:50:17 +0000351 * Defines member of structure and reserves space
352 * for the next member with specified offset.
353 */
354#define SET_MEMBER_RMI SET_MEMBER
355
356/*
Soby Mathewb4c6df42022-11-09 11:13:29 +0000357 * The Realm attribute parameters are shared by the Host via
358 * RMI_REALM_CREATE::params_ptr. The values can be observed or modified
359 * either by the Host or by the Realm.
360 */
361struct rmi_realm_params {
AlexeiFedorov18002922023-04-06 10:19:51 +0100362 /* Flags */
363 SET_MEMBER_RMI(unsigned long flags, 0, 0x8); /* Offset 0 */
364 /* Requested IPA width */
365 SET_MEMBER_RMI(unsigned int s2sz, 0x8, 0x10); /* 0x8 */
366 /* Requested SVE vector length */
367 SET_MEMBER_RMI(unsigned int sve_vl, 0x10, 0x18); /* 0x10 */
368 /* Requested number of breakpoints */
369 SET_MEMBER_RMI(unsigned int num_bps, 0x18, 0x20); /* 0x18 */
370 /* Requested number of watchpoints */
371 SET_MEMBER_RMI(unsigned int num_wps, 0x20, 0x28); /* 0x20 */
372 /* Requested number of PMU counters */
373 SET_MEMBER_RMI(unsigned int pmu_num_ctrs, 0x28, 0x30); /* 0x28 */
Soby Mathewb4c6df42022-11-09 11:13:29 +0000374 /* Measurement algorithm */
AlexeiFedorov18002922023-04-06 10:19:51 +0100375 SET_MEMBER_RMI(unsigned char hash_algo, 0x30, 0x400); /* 0x30 */
Soby Mathewb4c6df42022-11-09 11:13:29 +0000376 /* Realm Personalization Value */
AlexeiFedorov18002922023-04-06 10:19:51 +0100377 SET_MEMBER_RMI(unsigned char rpv[RPV_SIZE], 0x400, 0x800); /* 0x400 */
Soby Mathewc414f2a2023-01-17 02:50:17 +0000378 SET_MEMBER_RMI(struct {
Soby Mathewb4c6df42022-11-09 11:13:29 +0000379 /* Virtual Machine Identifier */
380 unsigned short vmid; /* 0x800 */
381 /* Realm Translation Table base */
382 unsigned long rtt_base; /* 0x808 */
383 /* RTT starting level */
384 long rtt_level_start; /* 0x810 */
385 /* Number of starting level RTTs */
386 unsigned int rtt_num_start; /* 0x818 */
387 }, 0x800, 0x1000);
388};
389
Soby Mathewb4c6df42022-11-09 11:13:29 +0000390/*
391 * The REC attribute parameters are shared by the Host via
392 * MI_REC_CREATE::params_ptr. The values can be observed or modified
393 * either by the Host or by the Realm which owns the REC.
394 */
395struct rmi_rec_params {
396 /* Flags */
Soby Mathewc414f2a2023-01-17 02:50:17 +0000397 SET_MEMBER_RMI(unsigned long flags, 0, 0x100); /* Offset 0 */
Soby Mathewb4c6df42022-11-09 11:13:29 +0000398 /* MPIDR of the REC */
Soby Mathewc414f2a2023-01-17 02:50:17 +0000399 SET_MEMBER_RMI(unsigned long mpidr, 0x100, 0x200); /* 0x100 */
Soby Mathewb4c6df42022-11-09 11:13:29 +0000400 /* Program counter */
Soby Mathewc414f2a2023-01-17 02:50:17 +0000401 SET_MEMBER_RMI(unsigned long pc, 0x200, 0x300); /* 0x200 */
Soby Mathewb4c6df42022-11-09 11:13:29 +0000402 /* General-purpose registers */
Soby Mathewc414f2a2023-01-17 02:50:17 +0000403 SET_MEMBER_RMI(unsigned long gprs[REC_CREATE_NR_GPRS], 0x300, 0x800); /* 0x300 */
404 SET_MEMBER_RMI(struct {
Soby Mathewb4c6df42022-11-09 11:13:29 +0000405 /* Number of auxiliary Granules */
406 unsigned long num_aux; /* 0x800 */
407 /* Addresses of auxiliary Granules */
408 unsigned long aux[MAX_REC_AUX_GRANULES];/* 0x808 */
409 }, 0x800, 0x1000);
410};
411
Soby Mathewb4c6df42022-11-09 11:13:29 +0000412/*
413 * Structure contains data passed from the Host to the RMM on REC entry
414 */
415struct rmi_rec_entry {
416 /* Flags */
Soby Mathewc414f2a2023-01-17 02:50:17 +0000417 SET_MEMBER_RMI(unsigned long flags, 0, 0x200); /* Offset 0 */
Soby Mathewb4c6df42022-11-09 11:13:29 +0000418 /* General-purpose registers */
Soby Mathewc414f2a2023-01-17 02:50:17 +0000419 SET_MEMBER_RMI(unsigned long gprs[REC_EXIT_NR_GPRS], 0x200, 0x300); /* 0x200 */
420 SET_MEMBER_RMI(struct {
Soby Mathewb4c6df42022-11-09 11:13:29 +0000421 /* GICv3 Hypervisor Control Register */
422 unsigned long gicv3_hcr; /* 0x300 */
423 /* GICv3 List Registers */
424 unsigned long gicv3_lrs[REC_GIC_NUM_LRS]; /* 0x308 */
425 }, 0x300, 0x800);
426};
427
Soby Mathewb4c6df42022-11-09 11:13:29 +0000428/*
429 * Structure contains data passed from the RMM to the Host on REC exit
430 */
431struct rmi_rec_exit {
432 /* Exit reason */
Soby Mathewc414f2a2023-01-17 02:50:17 +0000433 SET_MEMBER_RMI(unsigned long exit_reason, 0, 0x100);/* Offset 0 */
434 SET_MEMBER_RMI(struct {
Soby Mathewb4c6df42022-11-09 11:13:29 +0000435 /* Exception Syndrome Register */
436 unsigned long esr; /* 0x100 */
437 /* Fault Address Register */
438 unsigned long far; /* 0x108 */
439 /* Hypervisor IPA Fault Address register */
440 unsigned long hpfar; /* 0x110 */
441 }, 0x100, 0x200);
442 /* General-purpose registers */
Soby Mathewc414f2a2023-01-17 02:50:17 +0000443 SET_MEMBER_RMI(unsigned long gprs[REC_EXIT_NR_GPRS], 0x200, 0x300); /* 0x200 */
444 SET_MEMBER_RMI(struct {
Soby Mathewb4c6df42022-11-09 11:13:29 +0000445 /* GICv3 Hypervisor Control Register */
446 unsigned long gicv3_hcr; /* 0x300 */
447 /* GICv3 List Registers */
448 unsigned long gicv3_lrs[REC_GIC_NUM_LRS]; /* 0x308 */
449 /* GICv3 Maintenance Interrupt State Register */
450 unsigned long gicv3_misr; /* 0x388 */
451 /* GICv3 Virtual Machine Control Register */
452 unsigned long gicv3_vmcr; /* 0x390 */
453 }, 0x300, 0x400);
Soby Mathewc414f2a2023-01-17 02:50:17 +0000454 SET_MEMBER_RMI(struct {
Soby Mathewb4c6df42022-11-09 11:13:29 +0000455 /* Counter-timer Physical Timer Control Register */
456 unsigned long cntp_ctl; /* 0x400 */
457 /* Counter-timer Physical Timer CompareValue Register */
458 unsigned long cntp_cval; /* 0x408 */
459 /* Counter-timer Virtual Timer Control Register */
460 unsigned long cntv_ctl; /* 0x410 */
461 /* Counter-timer Virtual Timer CompareValue Register */
462 unsigned long cntv_cval; /* 0x418 */
463 }, 0x400, 0x500);
Soby Mathewc414f2a2023-01-17 02:50:17 +0000464 SET_MEMBER_RMI(struct {
Soby Mathewb4c6df42022-11-09 11:13:29 +0000465 /* Base address of pending RIPAS change */
466 unsigned long ripas_base; /* 0x500 */
467 /* Size of pending RIPAS change */
468 unsigned long ripas_size; /* 0x508 */
469 /* RIPAS value of pending RIPAS change */
470 unsigned char ripas_value; /* 0x510 */
471 }, 0x500, 0x600);
472 /* Host call immediate value */
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000473 SET_MEMBER_RMI(unsigned int imm, 0x600, 0x700); /* 0x600 */
474
475 /* PMU overflow */
476 SET_MEMBER_RMI(unsigned long pmu_ovf, 0x700, 0x708); /* 0x700 */
477
478 /* PMU interrupt enable */
479 SET_MEMBER_RMI(unsigned long pmu_intr_en, 0x708, 0x710); /* 0x708 */
480
481 /* PMU counter enable */
482 SET_MEMBER_RMI(unsigned long pmu_cntr_en, 0x710, 0x800); /* 0x710 */
Soby Mathewb4c6df42022-11-09 11:13:29 +0000483};
484
Soby Mathewb4c6df42022-11-09 11:13:29 +0000485/*
486 * Structure contains shared information between RMM and Host
487 * during REC entry and REC exit.
488 */
489struct rmi_rec_run {
490 /* Entry information */
Soby Mathewc414f2a2023-01-17 02:50:17 +0000491 SET_MEMBER_RMI(struct rmi_rec_entry entry, 0, 0x800); /* Offset 0 */
Soby Mathewb4c6df42022-11-09 11:13:29 +0000492 /* Exit information */
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000493 SET_MEMBER_RMI(struct rmi_rec_exit exit, 0x800, 0x1000);/* 0x800 */
Soby Mathewb4c6df42022-11-09 11:13:29 +0000494};
495
Soby Mathewc9b6ecd2023-01-17 03:40:44 +0000496#endif /* __ASSEMBLER__ */
497
Soby Mathewb4c6df42022-11-09 11:13:29 +0000498#endif /* SMC_RMI_H */