blob: 64752d193ea05063e1b3519c783355849bf61bc6 [file] [log] [blame]
Soby Mathewb4c6df42022-11-09 11:13:29 +00001/*
2 * SPDX-License-Identifier: BSD-3-Clause
3 * SPDX-FileCopyrightText: Copyright TF-RMM Contributors.
4 */
5
6#ifndef ARCH_H
7#define ARCH_H
8
9#include <utils_def.h>
10
11/* Cache line size */
12#define CACHE_WRITEBACK_GRANULE UL(64)
13
14/* Timer interrupt IDs defined by the Server Base System Architecture */
15#define EL1_VIRT_TIMER_PPI UL(27)
16#define EL1_PHYS_TIMER_PPI UL(30)
17
18/* Counter-timer Physical Offset register */
19#define CNTPOFF_EL2 S3_4_C14_C0_6
20
21/* MPAM0 Register */
22#define MPAM0_EL1 S3_0_C10_C5_1
23
24/* Interrupt Controller registers */
25#define ICC_HPPIR1_EL1 S3_0_C12_C12_2
26#define ICC_SRE_EL2 S3_4_C12_C9_5
27
28/* Interrupt Controller Control Register */
AlexeiFedorov537bee02023-02-02 13:38:23 +000029#define ICC_CTLR_EL1 S3_0_C12_C12_4
Soby Mathewb4c6df42022-11-09 11:13:29 +000030
AlexeiFedorov537bee02023-02-02 13:38:23 +000031#define ICC_CTLR_EL1_EXT_RANGE_BIT (UL(1) << 19)
Soby Mathewb4c6df42022-11-09 11:13:29 +000032
33/* Virtual GIC registers */
34#define ICH_AP0R0_EL2 S3_4_C12_C8_0
35#define ICH_AP0R1_EL2 S3_4_C12_C8_1
36#define ICH_AP0R2_EL2 S3_4_C12_C8_2
37#define ICH_AP0R3_EL2 S3_4_C12_C8_3
38#define ICH_AP1R0_EL2 S3_4_C12_C9_0
39#define ICH_AP1R1_EL2 S3_4_C12_C9_1
40#define ICH_AP1R2_EL2 S3_4_C12_C9_2
41#define ICH_AP1R3_EL2 S3_4_C12_C9_3
42
43#define ICH_LR0_EL2 S3_4_C12_C12_0
44#define ICH_LR1_EL2 S3_4_C12_C12_1
45#define ICH_LR2_EL2 S3_4_C12_C12_2
46#define ICH_LR3_EL2 S3_4_C12_C12_3
47#define ICH_LR4_EL2 S3_4_C12_C12_4
48#define ICH_LR5_EL2 S3_4_C12_C12_5
49#define ICH_LR6_EL2 S3_4_C12_C12_6
50#define ICH_LR7_EL2 S3_4_C12_C12_7
51#define ICH_LR8_EL2 S3_4_C12_C13_0
52#define ICH_LR9_EL2 S3_4_C12_C13_1
53#define ICH_LR10_EL2 S3_4_C12_C13_2
54#define ICH_LR11_EL2 S3_4_C12_C13_3
55#define ICH_LR12_EL2 S3_4_C12_C13_4
56#define ICH_LR13_EL2 S3_4_C12_C13_5
57#define ICH_LR14_EL2 S3_4_C12_C13_6
58#define ICH_LR15_EL2 S3_4_C12_C13_7
59
60#define ICH_HCR_EL2 S3_4_C12_C11_0
61#define ICH_VTR_EL2 S3_4_C12_C11_1
62#define ICH_MISR_EL2 S3_4_C12_C11_2
63#define ICH_VMCR_EL2 S3_4_C12_C11_7
64
65/* RNDR definition */
66#define RNDR S3_3_C2_C4_0
67
68/* CLIDR definitions */
69#define LOC_SHIFT U(24)
70#define CTYPE_SHIFT(n) U(3 * ((n) - 1))
71#define CLIDR_FIELD_WIDTH U(3)
72
73/* CSSELR definitions */
74#define LEVEL_SHIFT U(1)
75
76/* Data cache set/way op type defines */
77#define DCISW U(0x0)
78#define DCCISW U(0x1)
79#define DCCSW U(0x2)
80
81#define TCR_EL2_T0SZ_SHIFT UL(0)
82#define TCR_EL2_T0SZ_WIDTH UL(6)
Soby Mathewb4c6df42022-11-09 11:13:29 +000083
84#define TCR_EL2_T1SZ_SHIFT UL(16)
85#define TCR_EL2_T1SZ_WIDTH UL(6)
Soby Mathewb4c6df42022-11-09 11:13:29 +000086
AlexeiFedorov537bee02023-02-02 13:38:23 +000087#define TCR_EL2_EPD0_BIT (UL(1) << 7)
Soby Mathewb4c6df42022-11-09 11:13:29 +000088
89#define TCR_EL2_IRGN0_SHIFT UL(8)
90#define TCR_EL2_IRGN0_WIDTH UL(2)
91#define TCR_EL2_IRGN0_WBWA INPLACE(TCR_EL2_IRGN0, UL(1))
92
93#define TCR_EL2_ORGN0_SHIFT UL(10)
94#define TCR_EL2_ORGN0_WIDTH UL(2)
95#define TCR_EL2_ORGN0_WBWA INPLACE(TCR_EL2_ORGN0, UL(1))
96
97#define TCR_EL2_IRGN1_SHIFT UL(24)
98#define TCR_EL2_IRGN1_WIDTH UL(2)
99#define TCR_EL2_IRGN1_WBWA INPLACE(TCR_EL2_IRGN1, UL(1))
100
101#define TCR_EL2_ORGN1_SHIFT UL(26)
102#define TCR_EL2_ORGN1_WIDTH UL(2)
103#define TCR_EL2_ORGN1_WBWA INPLACE(TCR_EL2_ORGN1, UL(1))
104
105#define TCR_EL2_SH0_SHIFT UL(12)
106#define TCR_EL2_SH0_WIDTH UL(2)
107#define TCR_EL2_SH0_IS INPLACE(TCR_EL2_SH0, UL(3))
108
109#define TCR_EL2_SH1_SHIFT UL(28)
110#define TCR_EL2_SH1_WIDTH UL(2)
111#define TCR_EL2_SH1_IS INPLACE(TCR_EL2_SH1, UL(3))
112
113#define TCR_EL2_TG0_SHIFT UL(14)
114#define TCR_EL2_TG0_WIDTH UL(2)
115#define TCR_EL2_TG0_4K INPLACE(TCR_EL2_TG0, UL(0))
116
117#define TCR_EL2_TG1_SHIFT UL(30)
118#define TCR_EL2_TG1_WIDTH UL(2)
Javier Almansa Sobrino70194902023-02-28 10:27:02 +0000119#define TCR_EL2_TG1_4K INPLACE(TCR_EL2_TG1, UL(2))
Soby Mathewb4c6df42022-11-09 11:13:29 +0000120
121#define TCR_EL2_IPS_SHIFT UL(32)
122#define TCR_EL2_IPS_WIDTH UL(3)
123#define TCR_PS_BITS_4GB INPLACE(TCR_EL2_IPS, UL(0))
124#define TCR_PS_BITS_64GB INPLACE(TCR_EL2_IPS, UL(1))
125#define TCR_PS_BITS_1TB INPLACE(TCR_EL2_IPS, UL(2))
126#define TCR_PS_BITS_4TB INPLACE(TCR_EL2_IPS, UL(3))
127#define TCR_PS_BITS_16TB INPLACE(TCR_EL2_IPS, UL(4))
128#define TCR_PS_BITS_256TB INPLACE(TCR_EL2_IPS, UL(5))
Javier Almansa Sobrino765a3162023-04-27 17:42:58 +0100129#define TCR_PS_BITS_4PB INPLACE(TCR_EL2_IPS, UL(6))
Soby Mathewb4c6df42022-11-09 11:13:29 +0000130
Javier Almansa Sobrino765a3162023-04-27 17:42:58 +0100131#define TCR_EL2_DS_SHIFT UL(59)
132#define TCR_EL2_DS_WIDTH UL(1)
133#define TCR_EL2_DS_LPA2_EN INPLACE(TCR_EL2_DS, UL(1))
Soby Mathewb4c6df42022-11-09 11:13:29 +0000134
135#define TCR_EL2_AS (UL(1) << 36)
136#define TCR_EL2_HPD0 (UL(1) << 41)
137#define TCR_EL2_HPD1 (UL(1) << 42)
138#define TCR_EL2_E0PD1 (UL(1) << 56) /* TODO: ARMv8.5-E0PD, otherwise RES0 */
139
140#define TCR_TxSZ_MIN UL(16)
Javier Almansa Sobrino765a3162023-04-27 17:42:58 +0100141#define TCR_TxSZ_MIN_LPA2 UL(12)
Javier Almansa Sobrinoed932592023-01-24 12:50:41 +0000142#define TCR_TxSZ_MAX UL(48)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000143
144/* HCR definitions */
145#define HCR_FWB (UL(1) << 46)
146#define HCR_TEA (UL(1) << 37)
147#define HCR_API (UL(1) << 41)
148#define HCR_APK (UL(1) << 40)
149#define HCR_TERR (UL(1) << 36)
150#define HCR_TLOR (UL(1) << 35)
151#define HCR_E2H (UL(1) << 34)
152#define HCR_RW (UL(1) << 31)
153#define HCR_TGE (UL(1) << 27)
154#define HCR_TSW (UL(1) << 22)
155#define HCR_TACR (UL(1) << 21)
156#define HCR_TIDCP (UL(1) << 20)
157#define HCR_TSC (UL(1) << 19)
158#define HCR_TID3 (UL(1) << 18)
159#define HCR_TWE (UL(1) << 14)
160#define HCR_TWI (UL(1) << 13)
161#define HCR_VSE (UL(1) << 8)
162
163#define HCR_BSU_SHIFT 10
164#define HCR_BSU_WIDTH 2
165#define HCR_BSU_IS INPLACE(HCR_BSU, 1) /* Barriers are promoted to IS */
166
167#define HCR_FB (UL(1) << 9)
168#define HCR_VI (UL(1) << 7)
169#define HCR_AMO (UL(1) << 5)
170#define HCR_IMO (UL(1) << 4)
171#define HCR_FMO (UL(1) << 3)
172#define HCR_PTW (UL(1) << 2)
173#define HCR_SWIO (UL(1) << 1)
174#define HCR_VM (UL(1) << 0)
175
Soby Mathewb4c6df42022-11-09 11:13:29 +0000176#define HCR_FLAGS (HCR_FWB | HCR_E2H | HCR_RW | HCR_TSC | HCR_AMO | \
177 HCR_BSU_IS | HCR_IMO | HCR_FMO | HCR_PTW | HCR_SWIO | HCR_VM | \
Arvind Ram Prakashbd36a1b2022-12-15 12:16:36 -0600178 HCR_TID3 | HCR_TEA | HCR_API | HCR_APK)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000179
180#define HCR_EL2_INIT (HCR_TGE | HCR_E2H | HCR_TEA)
181
182#define MAIR_ELx_ATTR0_SHIFT 0
183#define MAIR_ELx_ATTR0_WIDTH 8
Soby Mathewb4c6df42022-11-09 11:13:29 +0000184
185/*******************************************************************************
186 * Definitions of MAIR encodings for device and normal memory
187 ******************************************************************************/
188/*
189 * MAIR encodings for device memory attributes.
190 */
191#define MAIR_DEV_NGNRNE UL(0x0) /* Device nGnRnE */
192#define MAIR_DEV_NGNRNE_IDX 0x1
193
194#define MAIR_DEV_NGNRE UL(0x4)
195
196#define MAIR_NIOWBNTRW 0xff
197#define MAIR_NIOWBNTRW_IDX 0x0
198
199/*
200 * MAIR encodings for normal memory attributes.
201 *
202 * Cache Policy
203 * WT: Write Through
204 * WB: Write Back
205 * NC: Non-Cacheable
206 *
207 * Transient Hint
208 * NTR: Non-Transient
209 * TR: Transient
210 *
211 * Allocation Policy
212 * RA: Read Allocate
213 * WA: Write Allocate
214 * RWA: Read and Write Allocate
215 * NA: No Allocation
216 */
217#define MAIR_NORM_WT_TR_WA UL(0x1)
218#define MAIR_NORM_WT_TR_RA UL(0x2)
219#define MAIR_NORM_WT_TR_RWA UL(0x3)
220#define MAIR_NORM_NC UL(0x4)
221#define MAIR_NORM_WB_TR_WA UL(0x5)
222#define MAIR_NORM_WB_TR_RA UL(0x6)
223#define MAIR_NORM_WB_TR_RWA UL(0x7)
224#define MAIR_NORM_WT_NTR_NA UL(0x8)
225#define MAIR_NORM_WT_NTR_WA UL(0x9)
226#define MAIR_NORM_WT_NTR_RA UL(0xa)
227#define MAIR_NORM_WT_NTR_RWA UL(0xb)
228#define MAIR_NORM_WB_NTR_NA UL(0xc)
229#define MAIR_NORM_WB_NTR_WA UL(0xd)
230#define MAIR_NORM_WB_NTR_RA UL(0xe)
231#define MAIR_NORM_WB_NTR_RWA UL(0xf)
232
233#define MAIR_NORM_OUTER_SHIFT U(4)
234
235#define MAKE_MAIR_NORMAL_MEMORY(inner, outer) \
236 ((inner) | ((outer) << MAIR_NORM_OUTER_SHIFT))
237
238#define MAKE_MAIR_NORMAL_MEMORY_IO(_mair) \
239 MAKE_MAIR_NORMAL_MEMORY(_mair, _mair)
240
241/*
242 * TTBR Definitions
243 */
AlexeiFedorov537bee02023-02-02 13:38:23 +0000244#define TTBR_CNP_BIT UL(1)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000245
246#define TTBRx_EL2_CnP_SHIFT 0
247#define TTBRx_EL2_CnP_WIDTH 1
248
249#define TTBRx_EL2_BADDR_SHIFT 1
250#define TTBRx_EL2_BADDR_WIDTH 47
251
252#define TTBRx_EL2_ASID_SHIFT 48
253#define TTBRx_EL2_ASID_WIDTH 16
254
255/*
256 * VTTBR Definitions
257 */
258#define VTTBR_EL2_VMID_SHIFT 48
259#define VTTBR_EL2_VMID_WIDTH 16
260
261/*
262 * ESR Definitions
263 */
264#define ESR_EL2_EC_SHIFT 26
265#define ESR_EL2_EC_WIDTH 6
Soby Mathewb4c6df42022-11-09 11:13:29 +0000266
267#define ESR_EL2_IL_SHIFT 25
268#define ESR_EL2_IL_WIDTH 1
Soby Mathewb4c6df42022-11-09 11:13:29 +0000269
270#define ESR_EL2_ISS_SHIFT 0
271#define ESR_EL2_ISS_WIDTH 25
Soby Mathewb4c6df42022-11-09 11:13:29 +0000272
273#define ESR_EL2_EC_UNKNOWN INPLACE(ESR_EL2_EC, 0)
274#define ESR_EL2_EC_WFX INPLACE(ESR_EL2_EC, 1)
275#define ESR_EL2_EC_FPU INPLACE(ESR_EL2_EC, 7)
276#define ESR_EL2_EC_SVC INPLACE(ESR_EL2_EC, 21)
277#define ESR_EL2_EC_HVC INPLACE(ESR_EL2_EC, 22)
278#define ESR_EL2_EC_SMC INPLACE(ESR_EL2_EC, 23)
279#define ESR_EL2_EC_SYSREG INPLACE(ESR_EL2_EC, 24)
280#define ESR_EL2_EC_SVE INPLACE(ESR_EL2_EC, 25)
281#define ESR_EL2_EC_INST_ABORT INPLACE(ESR_EL2_EC, 32)
282#define ESR_EL2_EC_INST_ABORT_SEL INPLACE(ESR_EL2_EC, 33)
283#define ESR_EL2_EC_DATA_ABORT INPLACE(ESR_EL2_EC, 36)
284#define ESR_EL2_EC_DATA_ABORT_SEL INPLACE(ESR_EL2_EC, 37)
285#define ESR_EL2_EC_SERROR INPLACE(ESR_EL2_EC, 47)
286
287/* Data/Instruction Abort ESR fields */
AlexeiFedorov537bee02023-02-02 13:38:23 +0000288#define ESR_EL2_ABORT_ISV_BIT (UL(1) << 24)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000289
290#define ESR_EL2_ABORT_SAS_SHIFT 22
291#define ESR_EL2_ABORT_SAS_WIDTH 2
Soby Mathewb4c6df42022-11-09 11:13:29 +0000292
293#define ESR_EL2_ABORT_SAS_BYTE_VAL 0
294#define ESR_EL2_ABORT_SAS_HWORD_VAL 1
295#define ESR_EL2_ABORT_SAS_WORD_VAL 2
296#define ESR_EL2_ABORT_SAS_DWORD_VAL 3
297
AlexeiFedorov537bee02023-02-02 13:38:23 +0000298#define ESR_EL2_ABORT_SSE_BIT (UL(1) << 21)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000299
300#define ESR_EL2_ABORT_SRT_SHIFT 16
301#define ESR_EL2_ABORT_SRT_WIDTH 5
Soby Mathewb4c6df42022-11-09 11:13:29 +0000302
303#define ESR_EL2_ABORT_SET_SHIFT 11
304#define ESR_EL2_ABORT_SET_WIDTH 2
Soby Mathewb4c6df42022-11-09 11:13:29 +0000305#define ESR_EL2_ABORT_SET_UER INPLACE(ESR_EL2_ABORT_SET, 0)
306#define ESR_EL2_ABORT_SET_UC INPLACE(ESR_EL2_ABORT_SET, 2)
307#define ESR_EL2_ABORT_SET_UEO INPLACE(ESR_EL2_ABORT_SET, 3)
308
AlexeiFedorov537bee02023-02-02 13:38:23 +0000309#define ESR_EL2_ABORT_SF_BIT (UL(1) << 15)
310#define ESR_EL2_ABORT_FNV_BIT (UL(1) << 10)
311#define ESR_EL2_ABORT_EA_BIT (UL(1) << 9)
312#define ESR_EL2_ABORT_S1PTW_BIT (UL(1) << 7)
313#define ESR_EL2_ABORT_WNR_BIT (UL(1) << 6)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000314#define ESR_EL2_ABORT_FSC_SHIFT 0
315#define ESR_EL2_ABORT_FSC_WIDTH 6
Soby Mathewb4c6df42022-11-09 11:13:29 +0000316
317#define ESR_EL2_ABORT_FSC_TRANSLATION_FAULT 0x04
318#define ESR_EL2_ABORT_FSC_PERMISSION_FAULT 0x0c
319#define ESR_EL2_ABORT_FSC_TRANSLATION_FAULT_L0 0x04
320#define ESR_EL2_ABORT_FSC_SEA 0x10
321#define ESR_EL2_ABORT_FSC_SEA_TTW_START 0x13
322#define ESR_EL2_ABORT_FSC_SEA_TTW_END 0x17
323#define ESR_EL2_ABORT_FSC_GPF 0x28
324#define ESR_EL2_ABORT_FSC_LEVEL_SHIFT 0
325#define ESR_EL2_ABORT_FSC_LEVEL_WIDTH 2
Soby Mathewb4c6df42022-11-09 11:13:29 +0000326
327/* The ESR fields that are reported to the host on Instr./Data Synchronous Abort */
AlexeiFedorov537bee02023-02-02 13:38:23 +0000328#define ESR_NONEMULATED_ABORT_MASK ( \
329 MASK(ESR_EL2_EC) | \
330 MASK(ESR_EL2_ABORT_SET) | \
331 ESR_EL2_ABORT_FNV_BIT | \
332 ESR_EL2_ABORT_EA_BIT | \
333 MASK(ESR_EL2_ABORT_FSC))
Soby Mathewb4c6df42022-11-09 11:13:29 +0000334
AlexeiFedorov537bee02023-02-02 13:38:23 +0000335#define ESR_EMULATED_ABORT_MASK ( \
Soby Mathewb4c6df42022-11-09 11:13:29 +0000336 ESR_NONEMULATED_ABORT_MASK | \
AlexeiFedorov537bee02023-02-02 13:38:23 +0000337 ESR_EL2_ABORT_ISV_BIT | \
338 MASK(ESR_EL2_ABORT_SAS) | \
339 ESR_EL2_ABORT_SF_BIT | \
Soby Mathewb4c6df42022-11-09 11:13:29 +0000340 ESR_EL2_ABORT_WNR_BIT)
341
342#define ESR_EL2_SERROR_DFSC_SHIFT 0
343#define ESR_EL2_SERROR_DFSC_WIDTH 6
Soby Mathewb4c6df42022-11-09 11:13:29 +0000344#define ESR_EL2_SERROR_DFSC_UNCAT INPLACE(ESR_EL2_SERROR_DFSC, 0)
345#define ESR_EL2_SERROR_DFSC_ASYNC INPLACE(ESR_EL2_SERROR_DFSC, 1)
346
AlexeiFedorov537bee02023-02-02 13:38:23 +0000347#define ESR_EL2_SERROR_EA_BIT (UL(1) << 9)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000348
349#define ESR_EL2_SERROR_AET_SHIFT 10
350#define ESR_EL2_SERROR_AET_WIDTH 3
Soby Mathewb4c6df42022-11-09 11:13:29 +0000351#define ESR_EL2_SERROR_AET_UC INPLACE(ESR_EL2_SERROR_AET, 0)
352#define ESR_EL2_SERROR_AET_UEU INPLACE(ESR_EL2_SERROR_AET, 1)
353#define ESR_EL2_SERROR_AET_UEO INPLACE(ESR_EL2_SERROR_AET, 2)
354#define ESR_EL2_SERROR_AET_UER INPLACE(ESR_EL2_SERROR_AET, 3)
355#define ESR_EL2_SERROR_AET_CE INPLACE(ESR_EL2_SERROR_AET, 6)
356
AlexeiFedorov537bee02023-02-02 13:38:23 +0000357#define ESR_EL2_SERROR_IESB_BIT (UL(1) << 13)
358#define ESR_EL2_SERROR_IDS_BIT (UL(1) << 24)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000359
360/* The ESR fields that are reported to the host on SError */
AlexeiFedorov537bee02023-02-02 13:38:23 +0000361#define ESR_SERROR_MASK ( \
362 ESR_EL2_SERROR_IDS_BIT | \
363 MASK(ESR_EL2_SERROR_AET) | \
364 ESR_EL2_SERROR_EA_BIT | \
365 MASK(ESR_EL2_SERROR_DFSC))
Soby Mathewb4c6df42022-11-09 11:13:29 +0000366
367#define ESR_EL2_SYSREG_TRAP_OP0_SHIFT 20
368#define ESR_EL2_SYSREG_TRAP_OP0_WIDTH 2
Soby Mathewb4c6df42022-11-09 11:13:29 +0000369
370#define ESR_EL2_SYSREG_TRAP_OP2_SHIFT 17
371#define ESR_EL2_SYSREG_TRAP_OP2_WIDTH 3
Soby Mathewb4c6df42022-11-09 11:13:29 +0000372
373#define ESR_EL2_SYSREG_TRAP_OP1_SHIFT 14
374#define ESR_EL2_SYSREG_TRAP_OP1_WIDTH 3
Soby Mathewb4c6df42022-11-09 11:13:29 +0000375
376#define ESR_EL2_SYSREG_TRAP_CRN_SHIFT 10
377#define ESR_EL2_SYSREG_TRAP_CRN_WIDTH 4
Soby Mathewb4c6df42022-11-09 11:13:29 +0000378
379#define ESR_EL2_SYSREG_TRAP_RT_SHIFT 5
380#define ESR_EL2_SYSREG_TRAP_RT_WIDTH 5
Soby Mathewb4c6df42022-11-09 11:13:29 +0000381
382#define ESR_EL2_SYSREG_TRAP_CRM_SHIFT 1
383#define ESR_EL2_SYSREG_TRAP_CRM_WIDTH 4
Soby Mathewb4c6df42022-11-09 11:13:29 +0000384
385/* WFx ESR fields */
AlexeiFedorov537bee02023-02-02 13:38:23 +0000386#define ESR_EL2_WFx_TI_BIT (UL(1) << 0)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000387
388/* xVC ESR fields */
389#define ESR_EL2_xVC_IMM_SHIFT 0
390#define ESR_EL2_xVC_IMM_WIDTH 16
Soby Mathewb4c6df42022-11-09 11:13:29 +0000391
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000392/* ID_AA64DFR0_EL1 definitions */
393#define ID_AA64DFR0_EL1_HPMN0_SHIFT UL(60)
394#define ID_AA64DFR0_EL1_HPMN0_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000395
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000396#define ID_AA64DFR0_EL1_ExtTrcBuff_SHIFT UL(56)
397#define ID_AA64DFR0_EL1_ExtTrcBuff_WIDTH UL(4)
398
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000399#define ID_AA64DFR0_EL1_BRBE_SHIFT UL(52)
400#define ID_AA64DFR0_EL1_BRBE_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000401
402#define ID_AA64DFR0_EL1_MTPMU_SHIFT UL(48)
403#define ID_AA64DFR0_EL1_MTPMU_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000404
405#define ID_AA64DFR0_EL1_TraceBuffer_SHIFT UL(44)
406#define ID_AA64DFR0_EL1_TraceBuffer_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000407
408#define ID_AA64DFR0_EL1_TraceFilt_SHIFT UL(40)
409#define ID_AA64DFR0_EL1_TraceFilt_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000410
411#define ID_AA64DFR0_EL1_DoubleLock_SHIFT UL(36)
412#define ID_AA64DFR0_EL1_DoubleLock_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000413
414#define ID_AA64DFR0_EL1_PMSVer_SHIFT UL(32)
415#define ID_AA64DFR0_EL1_PMSVer_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000416
417#define ID_AA64DFR0_EL1_CTX_CMPS_SHIFT UL(28)
418#define ID_AA64DFR0_EL1_CTX_CMPS_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000419
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000420#define ID_AA64DFR0_EL1_SEBEP_SHIFT UL(24)
421#define ID_AA64DFR0_EL1_SEBEP_WIDTH UL(4)
422
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000423#define ID_AA64DFR0_EL1_WRPs_SHIFT UL(20)
424#define ID_AA64DFR0_EL1_WRPs_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000425
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000426#define ID_AA64DFR0_EL1_PMSS_SHIFT UL(16)
427#define ID_AA64DFR0_EL1_PMSS_WIDTH UL(4)
428
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000429#define ID_AA64DFR0_EL1_BRPs_SHIFT UL(12)
430#define ID_AA64DFR0_EL1_BRPs_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000431
432#define ID_AA64DFR0_EL1_PMUVer_SHIFT UL(8)
433#define ID_AA64DFR0_EL1_PMUVer_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000434
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000435/* Performance Monitors Extension version */
436#define ID_AA64DFR0_EL1_PMUv3p7 UL(7)
437#define ID_AA64DFR0_EL1_PMUv3p8 UL(8)
438#define ID_AA64DFR0_EL1_PMUv3p9 UL(9)
439
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000440#define ID_AA64DFR0_EL1_TraceVer_SHIFT UL(4)
441#define ID_AA64DFR0_EL1_TraceVer_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000442
443#define ID_AA64DFR0_EL1_DebugVer_SHIFT UL(0)
444#define ID_AA64DFR0_EL1_DebugVer_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000445
446/* Debug architecture version */
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000447#define ID_AA64DFR0_EL1_Debugv8 UL(6)
448#define ID_AA64DFR0_EL1_DebugVHE UL(7)
449#define ID_AA64DFR0_EL1_Debugv8p2 UL(8)
450#define ID_AA64DFR0_EL1_Debugv8p4 UL(9)
451#define ID_AA64DFR0_EL1_Debugv8p8 UL(10)
452
453/* ID_AA64DFR1_EL1 definitions */
454#define ID_AA64DFR1_EL1_EBEP_SHIFT UL(48)
455#define ID_AA64DFR1_EL1_EBEP_WIDTH UL(4)
456
457#define ID_AA64DFR1_EL1_ICNTR_SHIFT UL(36)
458#define ID_AA64DFR1_EL1_ICNTR_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000459
Soby Mathewb4c6df42022-11-09 11:13:29 +0000460/* ID_AA64PFR0_EL1 definitions */
461#define ID_AA64PFR0_EL1_SVE_SHIFT UL(32)
462#define ID_AA64PFR0_EL1_SVE_WIDTH UL(4)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000463
464#define ID_AA64PFR0_EL1_AMU_SHIFT UL(44)
465#define ID_AA64PFR0_EL1_AMU_WIDTH 4
466
Arunachalam Ganapathya27de372023-03-06 11:13:49 +0000467/* ID_AA64PFR1_EL1 definitions */
468#define ID_AA64PFR1_EL1_MTE_SHIFT UL(8)
469#define ID_AA64PFR1_EL1_MTE_WIDTH UL(4)
470
Soby Mathewb4c6df42022-11-09 11:13:29 +0000471/* ID_AA64MMFR0_EL1 definitions */
472#define ID_AA64MMFR0_EL1_PARANGE_SHIFT U(0)
AlexeiFedorov537bee02023-02-02 13:38:23 +0000473#define ID_AA64MMFR0_EL1_PARANGE_WIDTH UL(4)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000474
475#define PARANGE_0000_WIDTH U(32)
476#define PARANGE_0001_WIDTH U(36)
477#define PARANGE_0010_WIDTH U(40)
478#define PARANGE_0011_WIDTH U(42)
479#define PARANGE_0100_WIDTH U(44)
480#define PARANGE_0101_WIDTH U(48)
481#define PARANGE_0110_WIDTH U(52)
482
AlexeiFedorov537bee02023-02-02 13:38:23 +0000483#define ID_AA64MMFR0_EL1_ECV_SHIFT UL(60)
484#define ID_AA64MMFR0_EL1_ECV_WIDTH UL(4)
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000485#define ID_AA64MMFR0_EL1_ECV_NOT_SUPPORTED UL(0x0)
486#define ID_AA64MMFR0_EL1_ECV_SUPPORTED UL(0x1)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000487#define ID_AA64MMFR0_EL1_ECV_SELF_SYNCH ULL(0x2)
488
AlexeiFedorov537bee02023-02-02 13:38:23 +0000489#define ID_AA64MMFR0_EL1_FGT_SHIFT UL(56)
490#define ID_AA64MMFR0_EL1_FGT_WIDTH UL(4)
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000491#define ID_AA64MMFR0_EL1_FGT_NOT_SUPPORTED UL(0x0)
492#define ID_AA64MMFR0_EL1_FGT_SUPPORTED UL(0x1)
493#define ID_AA64MMFR0_EL1_FGT2_SUPPORTED UL(0x2)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000494
495#define ID_AA64MMFR0_EL1_TGRAN4_2_SHIFT U(40)
AlexeiFedorov537bee02023-02-02 13:38:23 +0000496#define ID_AA64MMFR0_EL1_TGRAN4_2_WIDTH U(4)
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000497#define ID_AA64MMFR0_EL1_TGRAN4_2_TGRAN4 UL(0x0)
498#define ID_AA64MMFR0_EL1_TGRAN4_2_NOT_SUPPORTED UL(0x1)
499#define ID_AA64MMFR0_EL1_TGRAN4_2_SUPPORTED UL(0x2)
500#define ID_AA64MMFR0_EL1_TGRAN4_2_LPA2 UL(0x3)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000501
AlexeiFedorov537bee02023-02-02 13:38:23 +0000502#define ID_AA64MMFR0_EL1_TGRAN16_2_SHIFT UL(32)
503#define ID_AA64MMFR0_EL1_TGRAN16_2_WIDTH UL(4)
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000504#define ID_AA64MMFR0_EL1_TGRAN16_2_TGRAN16 UL(0x0)
505#define ID_AA64MMFR0_EL1_TGRAN16_2_NOT_SUPPORTED UL(0x1)
506#define ID_AA64MMFR0_EL1_TGRAN16_2_SUPPORTED UL(0x2)
507#define ID_AA64MMFR0_EL1_TGRAN16_2_LPA2 UL(0x3)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000508
AlexeiFedorov537bee02023-02-02 13:38:23 +0000509#define ID_AA64MMFR0_EL1_TGRAN4_SHIFT UL(28)
510#define ID_AA64MMFR0_EL1_TGRAN4_WIDTH UL(4)
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000511#define ID_AA64MMFR0_EL1_TGRAN4_SUPPORTED UL(0x0)
512#define ID_AA64MMFR0_EL1_TGRAN4_LPA2 UL(0x1)
513#define ID_AA64MMFR0_EL1_TGRAN4_NOT_SUPPORTED UL(0xf)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000514
515#define ID_AA64MMFR0_EL1_TGRAN64_SHIFT UL(24)
AlexeiFedorov537bee02023-02-02 13:38:23 +0000516#define ID_AA64MMFR0_EL1_TGRAN64_WIDTH UL(4)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000517#define ID_AA64MMFR0_EL1_TGRAN64_SUPPORTED UL(0x0)
518#define ID_AA64MMFR0_EL1_TGRAN64_NOT_SUPPORTED UL(0xf)
519
520#define ID_AA64MMFR0_EL1_TGRAN16_SHIFT UL(20)
AlexeiFedorov537bee02023-02-02 13:38:23 +0000521#define ID_AA64MMFR0_EL1_TGRAN16_WIDTH UL(4)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000522#define ID_AA64MMFR0_EL1_TGRAN16_NOT_SUPPORTED UL(0x0)
523#define ID_AA64MMFR0_EL1_TGRAN16_SUPPORTED UL(0x1)
524#define ID_AA64MMFR0_EL1_TGRAN16_LPA2 UL(0x2)
525
526/* RNDR definitions */
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000527#define ID_AA64ISAR0_EL1_RNDR_SHIFT UL(60)
528#define ID_AA64ISAR0_EL1_RNDR_WIDTH UL(4)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000529
530/* ID_AA64MMFR1_EL1 definitions */
531#define ID_AA64MMFR1_EL1_VMIDBits_SHIFT UL(4)
AlexeiFedorov537bee02023-02-02 13:38:23 +0000532#define ID_AA64MMFR1_EL1_VMIDBits_WIDTH UL(4)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000533#define ID_AA64MMFR1_EL1_VMIDBits_8 UL(0)
534#define ID_AA64MMFR1_EL1_VMIDBits_16 UL(2)
535
Arunachalam Ganapathyf6491212023-02-23 16:04:34 +0000536/* SVE Feature ID register 0 */
537#define ID_AA64ZFR0_EL1 S3_0_C0_C4_4
538
Soby Mathewb4c6df42022-11-09 11:13:29 +0000539/* HPFAR_EL2 definitions */
540#define HPFAR_EL2_FIPA_SHIFT 4
541#define HPFAR_EL2_FIPA_WIDTH 40
Soby Mathewb4c6df42022-11-09 11:13:29 +0000542#define HPFAR_EL2_FIPA_OFFSET 8
543
544/* SPSR definitions */
545#define SPSR_EL2_MODE_SHIFT 0
546#define SPSR_EL2_MODE_WIDTH 4
547#define SPSR_EL2_MODE_EL0t INPLACE(SPSR_EL2_MODE, 0)
548
549#define SPSR_EL2_MODE_SHIFT 0
550#define SPSR_EL2_MODE_WIDTH 4
551#define SPSR_EL2_MODE_EL1h INPLACE(SPSR_EL2_MODE, 5)
552#define SPSR_EL2_MODE_EL1t INPLACE(SPSR_EL2_MODE, 4)
553
554/* FIXME: DAIF definitions are redundant here. Might need unification. */
555#define SPSR_EL2_nRW_SHIFT 4
556#define SPSR_EL2_nRW_WIDTH 1
557#define SPSR_EL2_nRW_AARCH64 INPLACE(SPSR_EL2_nRW, 0)
558#define SPSR_EL2_nRW_AARCH32 INPLACE(SPSR_EL2_nRW, 1)
559
AlexeiFedorov537bee02023-02-02 13:38:23 +0000560#define SPSR_EL2_DAIF_SHIFT 6
561#define SPSR_EL2_AIF_SHIFT 6
Soby Mathewb4c6df42022-11-09 11:13:29 +0000562
AlexeiFedorov537bee02023-02-02 13:38:23 +0000563#define DAIF_FIQ_BIT (UL(1) << 0)
564#define DAIF_IRQ_BIT (UL(1) << 1)
565#define DAIF_ABT_BIT (UL(1) << 2)
566#define DAIF_DBG_BIT (UL(1) << 3)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000567
AlexeiFedorov537bee02023-02-02 13:38:23 +0000568#define SPSR_EL2_F_BIT (UL(1) << 6)
569#define SPSR_EL2_I_BIT (UL(1) << 7)
570#define SPSR_EL2_A_BIT (UL(1) << 8)
571#define SPSR_EL2_D_BIT (UL(1) << 9)
572#define SPSR_EL2_SSBS_BIT (UL(1) << 12)
573#define SPSR_EL2_ALLINT_BIT (UL(1) << 13)
574#define SPSR_EL2_IL_BIT (UL(1) << 20)
575#define SPSR_EL2_SS_BIT (UL(1) << 21)
576#define SPSR_EL2_PAN_BIT (UL(1) << 22)
577#define SPSR_EL2_UAO_BIT (UL(1) << 23)
578#define SPSR_EL2_DIT_BIT (UL(1) << 24)
579#define SPSR_EL2_TCO_BIT (UL(1) << 25)
580#define SPSR_EL2_V_BIT (UL(1) << 28)
581#define SPSR_EL2_C_BIT (UL(1) << 29)
582#define SPSR_EL2_Z_BIT (UL(1) << 30)
583#define SPSR_EL2_N_BIT (UL(1) << 31)
584#define SPSR_EL2_PM_BIT (UL(1) << 32)
585#define SPSR_EL2_PPEND_BIT (UL(1) << 33)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000586
Arunachalam Ganapathyf6491212023-02-23 16:04:34 +0000587/* SVE Control Register */
588#define ZCR_EL2 S3_4_C1_C2_0
Arunachalam Ganapathy2b456582023-05-19 11:56:44 +0100589#define ZCR_EL2_LEN_SHIFT UL(0)
590#define ZCR_EL2_LEN_WIDTH UL(4)
Arunachalam Ganapathyf6491212023-02-23 16:04:34 +0000591
Soby Mathewb4c6df42022-11-09 11:13:29 +0000592/* VTCR definitions */
593#define VTCR_T0SZ_SHIFT 0
594#define VTCR_T0SZ_WIDTH 6
595
596#define VTCR_SL0_SHIFT 6
597#define VTCR_SL0_WIDTH 2
598
599#define VTCR_SL0_4K_L2 INPLACE(VTCR_SL0, 0)
600#define VTCR_SL0_4K_L1 INPLACE(VTCR_SL0, 1)
601#define VTCR_SL0_4K_L0 INPLACE(VTCR_SL0, 2)
602#define VTCR_SL0_4K_L3 INPLACE(VTCR_SL0, 3)
603
604#define VTCR_IRGN0_SHIFT 8
605#define VTCR_IRGN0_WIDTH 2
606#define VTCR_IRGN0_WBRAWA INPLACE(VTCR_IRGN0, 1)
607
608#define VTCR_ORGN0_SHIFT 10
609#define VTCR_ORGN0_WIDTH 2
610#define VTCR_ORGN0_WBRAWA INPLACE(VTCR_ORGN0, 1)
611
612#define VTCR_SH0_SHIFT 12
613#define VTCR_SH0_WIDTH 2
614#define VTCR_SH0_IS INPLACE(VTCR_SH0, 3)
615
616#define VTCR_TG0_SHIFT 14
617#define VTCR_TG0_WIDTH 2
618#define VTCR_TG0_4K INPLACE(VTCR_TG0, 0)
619
620#define VTCR_PS_SHIFT 16
621#define VTCR_PS_WIDTH 3
622#define VTCR_PS_40 INPLACE(VTCR_PS, 2)
623
624#define VTCR_VS (UL(1) << 19)
625#define VTCR_NSA (UL(1) << 30)
626#define VTCR_RES1 (UL(1) << 31)
627
628#define VTCR_FLAGS ( \
629 VTCR_IRGN0_WBRAWA | /* PTW inner cache attr. is WB RAWA*/ \
630 VTCR_ORGN0_WBRAWA | /* PTW outer cache attr. is WB RAWA*/ \
631 VTCR_SH0_IS | /* PTW shareability attr. is Outer Sharable*/\
632 VTCR_TG0_4K | /* 4K granule size in non-secure PT*/ \
633 VTCR_PS_40 | /* size(PA) = 40 */ \
634 /* VS = 0 size(VMID) = 8 */ \
635 /* NSW = 0 non-secure s2 is made of secure pages*/ \
636 VTCR_NSA | /* non-secure IPA maps to non-secure PA */ \
637 VTCR_RES1 \
638 )
639
640
Soby Mathewb4c6df42022-11-09 11:13:29 +0000641/* PMCR_EL0 Definitions */
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000642#define PMCR_EL0_N_SHIFT 11
643#define PMCR_EL0_N_WIDTH 5
644#define PMCR_EL0_LC_BIT (UL(1) << 6)
645#define PMCR_EL0_DP_BIT (UL(1) << 5)
646#define PMCR_EL0_C_BIT (UL(1) << 2)
647#define PMCR_EL0_P_BIT (UL(1) << 1)
648#define PMCR_EL0_E_BIT (UL(1) << 0)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000649
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000650#define PMCR_EL0_INIT (PMCR_EL0_LC_BIT | PMCR_EL0_DP_BIT)
651#define PMCR_EL0_INIT_RESET (PMCR_EL0_INIT | PMCR_EL0_C_BIT | \
652 PMCR_EL0_P_BIT)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000653
654/* MDSCR_EL1 Definitions */
AlexeiFedorov537bee02023-02-02 13:38:23 +0000655#define MDSCR_EL1_TDCC_BIT (UL(1) << 12)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000656
657/* SCTLR register definitions */
Arvind Ram Prakashbd36a1b2022-12-15 12:16:36 -0600658#define SCTLR_ELx_RES1_BIT ((UL(1) << 22) /* TODO: ARMv8.5-CSEH, otherwise RES1 */ | \
659 (UL(1) << 11) /* TODO: ARMv8.5-CSEH, otherwise RES1 */)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000660
Arvind Ram Prakashbd36a1b2022-12-15 12:16:36 -0600661#define SCTLR_ELx_M_BIT (UL(1) << 0)
662#define SCTLR_ELx_C_BIT (UL(1) << 2)
663#define SCTLR_ELx_SA_BIT (UL(1) << 3)
664#define SCTLR_ELx_SA0_BIT (UL(1) << 4)
665#define SCTLR_ELx_CP15BEN_BIT (UL(1) << 5)
666#define SCTLR_ELx_nAA_BIT (UL(1) << 6)
667#define SCTLR_ELx_SED_BIT (UL(1) << 8)
668#define SCTLR_ELx_EOS_BIT (UL(1) << 11)
669#define SCTLR_ELx_I_BIT (UL(1) << 12)
670#define SCTLR_ELx_DZE_BIT (UL(1) << 14)
671#define SCTLR_ELx_UCT_BIT (UL(1) << 15)
672#define SCTLR_ELx_nTWI_BIT (UL(1) << 16)
673#define SCTLR_ELx_nTWE_BIT (UL(1) << 18)
674#define SCTLR_ELx_WXN_BIT (UL(1) << 19)
675#define SCTLR_ELx_TSCXT_BIT (UL(1) << 20)
676#define SCTLR_ELx_EIS_BIT (UL(1) << 22)
677#define SCTLR_ELx_SPAN_BIT (UL(1) << 23)
678#define SCTLR_ELx_EE_BIT (UL(1) << 25)
679#define SCTLR_ELx_UCI_BIT (UL(1) << 26)
680#define SCTLR_ELx_nTLSMD_BIT (UL(1) << 28)
681#define SCTLR_ELx_LSMAOE_BIT (UL(1) << 29)
682#define SCTLR_ELx_EnIA_BIT (UL(1) << 31)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000683
Arvind Ram Prakashbd36a1b2022-12-15 12:16:36 -0600684#define SCTLR_EL1_FLAGS (SCTLR_ELx_SPAN_BIT | SCTLR_ELx_EIS_BIT | SCTLR_ELx_nTWE_BIT | \
685 SCTLR_ELx_nTWI_BIT | SCTLR_ELx_EOS_BIT | SCTLR_ELx_nAA_BIT | \
686 SCTLR_ELx_CP15BEN_BIT | SCTLR_ELx_SA0_BIT | SCTLR_ELx_SA_BIT)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000687
Arvind Ram Prakashbd36a1b2022-12-15 12:16:36 -0600688#define SCTLR_EL2_INIT (SCTLR_ELx_C_BIT /* Data accesses are cacheable
689 * as per translation tables */ | \
690 /* SCTLR_EL2_M = 0 (MMU disabled) */ \
691 /* SCTLR_EL2_A = 0
692 * (No alignment checks) */ \
693 SCTLR_ELx_SA_BIT /* SP aligned at EL2 */ | \
694 SCTLR_ELx_SA0_BIT /* SP Alignment check enable for EL0 */ \
695 /* SCTLR_EL2_CP15BEN = 0 (EL0 using AArch32:
696 * EL0 execution of the CP15DMB, CP15DSB,
697 * and CP15ISB instructions is
698 * UNDEFINED. */ \
699 /* SCTLR_EL2_NAA = 0 (unaligned MA fault
700 * at EL2 and EL0) */ \
701 /* SCTLR_EL2_ITD = 0 (A32 Only) */ | \
702 SCTLR_ELx_SED_BIT /* A32 Only, RES1 for non-A32 systems */ \
703 /* SCTLR_EL2_EOS TODO: ARMv8.5-CSEH,
704 * otherwise RES1 */ | \
705 SCTLR_ELx_I_BIT /* I$ is ON for EL2 and EL0 */ | \
706 SCTLR_ELx_DZE_BIT /* Do not trap DC ZVA */ | \
707 SCTLR_ELx_UCT_BIT /* Allow EL0 access to CTR_EL0 */ | \
708 SCTLR_ELx_nTWI_BIT /* Don't trap WFI from EL0 to EL2 */ | \
709 SCTLR_ELx_nTWE_BIT /* Don't trap WFE from EL0 to EL2 */ | \
710 SCTLR_ELx_WXN_BIT /* W implies XN */ | \
711 SCTLR_ELx_TSCXT_BIT /* Trap EL0 accesss to SCXTNUM_EL0 */ | \
712 /* SCTLR_EL2_EIS EL2 exception is context
713 * synchronizing
714 */ \
715 SCTLR_ELx_RES1_BIT | \
716 /* SCTLR_EL2_SPAN = 0 (Set PSTATE.PAN = 1 on
717 * exceptions to EL2)) */ \
718 SCTLR_ELx_UCI_BIT /* Allow cache maintenance
719 * instructions at EL0 */ | \
720 SCTLR_ELx_nTLSMD_BIT /* A32/T32 only */ | \
721 SCTLR_ELx_LSMAOE_BIT /* A32/T32 only */)
722
723#define SCTLR_EL2_RUNTIME (SCTLR_EL2_INIT | \
724 SCTLR_ELx_M_BIT /* MMU enabled */)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000725
726/* CPTR_EL2 definitions */
727#define CPTR_EL2_RES1 ((UL(1) << 13) | (UL(1) << 12) | (UL(1) << 9) | 0xff)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000728#define CPTR_EL2_TTA (UL(1) << 28)
729#define CPTR_EL2_TAM (UL(1) << 30)
AlexeiFedorov537bee02023-02-02 13:38:23 +0000730#define CPTR_EL2_FPEN_SHIFT UL(20)
731#define CPTR_EL2_FPEN_WIDTH UL(2)
732#define CPTR_EL2_FPEN_TRAP_ALL_00 0x0
733#define CPTR_EL2_FPEN_TRAP_TGE_01 0x1
Soby Mathewb4c6df42022-11-09 11:13:29 +0000734#define CPTR_EL2_FPEN_TRAP_ALL_10 0x2
AlexeiFedorov537bee02023-02-02 13:38:23 +0000735#define CPTR_EL2_FPEN_NO_TRAP_11 0x3
Soby Mathewb4c6df42022-11-09 11:13:29 +0000736#define CPTR_EL2_ZEN_SHIFT UL(16)
AlexeiFedorov537bee02023-02-02 13:38:23 +0000737#define CPTR_EL2_ZEN_WIDTH UL(2)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000738#define CPTR_EL2_ZEN_TRAP_ALL_00 UL(0x0)
739#define CPTR_EL2_ZEN_NO_TRAP_11 UL(0x3)
740 /* Trap all FPU/SVE accesses */
741#define CPTR_EL2_INIT ((CPTR_EL2_ZEN_TRAP_ALL_00 << \
AlexeiFedorov537bee02023-02-02 13:38:23 +0000742 CPTR_EL2_ZEN_SHIFT) | \
743 (CPTR_EL2_FPEN_TRAP_ALL_00 << \
744 CPTR_EL2_FPEN_SHIFT) | \
745 CPTR_EL2_TTA /* trap trace access */ | \
746 CPTR_EL2_TAM /* trap AMU access */ | \
Soby Mathewb4c6df42022-11-09 11:13:29 +0000747 CPTR_EL2_RES1)
748
749/* MDCR_EL2 definitions */
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000750#define MDCR_EL2_HPMFZS (UL(1) << 36)
751#define MDCR_EL2_HPMFZO (UL(1) << 29)
752#define MDCR_EL2_MTPME (UL(1) << 28)
753#define MDCR_EL2_TDCC (UL(1) << 27)
AlexeiFedorov537bee02023-02-02 13:38:23 +0000754#define MDCR_EL2_HLP (UL(1) << 26)
755#define MDCR_EL2_HCCD (UL(1) << 23)
756#define MDCR_EL2_TTRF (UL(1) << 19)
757#define MDCR_EL2_HPMD (UL(1) << 17)
758#define MDCR_EL2_TPMS (UL(1) << 14)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000759#define MDCR_EL2_E2PB(x) ((x) << 12)
AlexeiFedorov537bee02023-02-02 13:38:23 +0000760#define MDCR_EL2_E2PB_EL1 UL(3)
761#define MDCR_EL2_TDRA_BIT (UL(1) << 11)
762#define MDCR_EL2_TDOSA_BIT (UL(1) << 10)
763#define MDCR_EL2_TDA_BIT (UL(1) << 9)
764#define MDCR_EL2_TDE_BIT (UL(1) << 8)
765#define MDCR_EL2_HPME_BIT (UL(1) << 7)
766#define MDCR_EL2_TPM_BIT (UL(1) << 6)
767#define MDCR_EL2_TPMCR_BIT (UL(1) << 5)
AlexeiFedoroveaec0c42023-02-01 18:13:32 +0000768
769#define MDCR_EL2_HPMN_SHIFT UL(0)
770#define MDCR_EL2_HPMN_WIDTH UL(5)
771
772#define MDCR_EL2_INIT (MDCR_EL2_MTPME | \
773 MDCR_EL2_HCCD | \
774 MDCR_EL2_HPMD | \
775 MDCR_EL2_TDA_BIT | \
776 MDCR_EL2_TPM_BIT | \
777 MDCR_EL2_TPMCR_BIT)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000778
Arvind Ram Prakashbd36a1b2022-12-15 12:16:36 -0600779/* Armv8.3 Pointer Authentication Registers */
780#define APIAKeyLo_EL1 S3_0_C2_C1_0
781#define APIAKeyHi_EL1 S3_0_C2_C1_1
782#define APIBKeyLo_EL1 S3_0_C2_C1_2
783#define APIBKeyHi_EL1 S3_0_C2_C1_3
784#define APDAKeyLo_EL1 S3_0_C2_C2_0
785#define APDAKeyHi_EL1 S3_0_C2_C2_1
786#define APDBKeyLo_EL1 S3_0_C2_C2_2
787#define APDBKeyHi_EL1 S3_0_C2_C2_3
788#define APGAKeyLo_EL1 S3_0_C2_C3_0
789#define APGAKeyHi_EL1 S3_0_C2_C3_1
790
Soby Mathewb4c6df42022-11-09 11:13:29 +0000791/* MPIDR definitions */
792#define MPIDR_EL1_AFF_MASK 0xFF
793#define MPIDR_EL1_AFF0_SHIFT 0
794#define MPIDR_EL1_AFF1_SHIFT 8
795#define MPIDR_EL1_AFF2_SHIFT 16
796#define MPIDR_EL1_AFF3_SHIFT 32
797#define MPIDR_EL1_MT_MASK (UL(1) << 24)
798#define MPIDR_EL1_AFFINITY_BITS 8
799
800#define MPIDR_EL1_AFF0 INPLACE(MPIDR_EL1_AFF0, MPIDR_EL1_AFF_MASK)
801#define MPIDR_EL1_AFF1 INPLACE(MPIDR_EL1_AFF1, MPIDR_EL1_AFF_MASK)
802#define MPIDR_EL1_AFF2 INPLACE(MPIDR_EL1_AFF2, MPIDR_EL1_AFF_MASK)
803#define MPIDR_EL1_AFF3 INPLACE(MPIDR_EL1_AFF3, MPIDR_EL1_AFF_MASK)
804
805/*
806 * RmiRecMpidr type definitions.
807 *
808 * 'MPIDR_EL2_AFF<n>_VAL_SHIFT' constants specify the right shift
809 * for affinity field <n> that gives the field's actual value.
810 *
811 * Aff0[3:0] - Affinity level 0
812 * For compatibility with GICv3 only Aff0[3:0] field is used,
813 * and Aff0[7:4] of a REC MPIDR value is RES0.
814 */
815#define MPIDR_EL2_AFF0_SHIFT 0
816#define MPIDR_EL2_AFF0_WIDTH 4
817#define MPIDR_EL2_AFF0_VAL_SHIFT 0
818
819/* Aff1[15:8] - Affinity level 1 */
820#define MPIDR_EL2_AFF1_SHIFT 8
821#define MPIDR_EL2_AFF1_WIDTH 8
822#define MPIDR_EL2_AFF1_VAL_SHIFT 4
823
824/* Aff2[23:16] - Affinity level 2 */
825#define MPIDR_EL2_AFF2_SHIFT 16
826#define MPIDR_EL2_AFF2_WIDTH 8
827#define MPIDR_EL2_AFF2_VAL_SHIFT 4
828
829/* Aff3[39:32] - Affinity level 3 */
830#define MPIDR_EL2_AFF3_SHIFT 32
831#define MPIDR_EL2_AFF3_WIDTH 8
832#define MPIDR_EL2_AFF3_VAL_SHIFT 12
833
834/*
835 * Extract the value of Aff<n> register field shifted right
836 * so it can be evaluated directly.
837 */
AlexeiFedorov537bee02023-02-02 13:38:23 +0000838#define MPIDR_EL2_AFF(n, reg) \
Soby Mathewb4c6df42022-11-09 11:13:29 +0000839 (((reg) & MASK(MPIDR_EL2_AFF##n)) >> MPIDR_EL2_AFF##n##_VAL_SHIFT)
840
841/* VMPIDR_EL2 bit [31] = RES1 */
842#define VMPIDR_EL2_RES1 (UL(1) << 31)
843
844/* ICC_SRE_EL2 defintions */
845#define ICC_SRE_EL2_ENABLE (UL(1) << 3) /* Enable lower EL access to ICC_SRE_EL1 */
846#define ICC_SRE_EL2_DIB (UL(1) << 2) /* Disable IRQ bypass */
847#define ICC_SRE_EL2_DFB (UL(1) << 1) /* Disable FIQ bypass */
848#define ICC_SRE_EL2_SRE (UL(1) << 0) /* Enable sysreg access */
849
AlexeiFedorov537bee02023-02-02 13:38:23 +0000850#define ICC_SRE_EL2_INIT (ICC_SRE_EL2_ENABLE | ICC_SRE_EL2_DIB | \
Soby Mathewb4c6df42022-11-09 11:13:29 +0000851 ICC_SRE_EL2_DFB | ICC_SRE_EL2_SRE)
852
853/* MPAM definitions */
854#define MPAM2_EL2_INIT 0x0
855#define MPAMHCR_EL2_INIT 0x0
856
857#define PMSCR_EL2_INIT 0x0
858
859#define SYSREG_ESR(op0, op1, crn, crm, op2) \
860 (((op0) << ESR_EL2_SYSREG_TRAP_OP0_SHIFT) | \
861 ((op1) << ESR_EL2_SYSREG_TRAP_OP1_SHIFT) | \
862 ((crn) << ESR_EL2_SYSREG_TRAP_CRN_SHIFT) | \
863 ((crm) << ESR_EL2_SYSREG_TRAP_CRM_SHIFT) | \
864 ((op2) << ESR_EL2_SYSREG_TRAP_OP2_SHIFT))
865
866#define ESR_EL2_SYSREG_MASK SYSREG_ESR(3, 7, 15, 15, 7)
867
868#define ESR_EL2_SYSREG_ID_MASK SYSREG_ESR(3, 7, 15, 0, 0)
869#define ESR_EL2_SYSREG_ID SYSREG_ESR(3, 0, 0, 0, 0)
870
871#define ESR_EL2_SYSREG_ID_AA64PFR0_EL1 SYSREG_ESR(3, 0, 0, 4, 0)
872#define ESR_EL2_SYSREG_ID_AA64PFR1_EL1 SYSREG_ESR(3, 0, 0, 4, 1)
873#define ESR_EL2_SYSREG_ID_AA64ZFR0_EL1 SYSREG_ESR(3, 0, 0, 4, 4)
874
875#define ESR_EL2_SYSREG_ID_AA64DFR0_EL1 SYSREG_ESR(3, 0, 0, 5, 0)
876#define ESR_EL2_SYSREG_ID_AA64DFR1_EL1 SYSREG_ESR(3, 0, 0, 5, 1)
877
878#define ESR_EL2_SYSREG_ID_AA64AFR0_EL1 SYSREG_ESR(3, 0, 0, 5, 4)
879#define ESR_EL2_SYSREG_ID_AA64AFR1_EL1 SYSREG_ESR(3, 0, 0, 5, 5)
880
881#define ESR_EL2_SYSREG_ID_AA64ISAR0_EL1 SYSREG_ESR(3, 0, 0, 6, 0)
882#define ESR_EL2_SYSREG_ID_AA64ISAR1_EL1 SYSREG_ESR(3, 0, 0, 6, 1)
883
884#define ESR_EL2_SYSREG_ID_AA64MMFR0_EL1 SYSREG_ESR(3, 0, 0, 7, 0)
885#define ESR_EL2_SYSREG_ID_AA64MMFR1_EL1 SYSREG_ESR(3, 0, 0, 7, 1)
886#define ESR_EL2_SYSREG_ID_AA64MMFR2_EL1 SYSREG_ESR(3, 0, 0, 7, 2)
887
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000888/* ID_AA64ISAR1_EL1 definitions */
889#define ID_AA64ISAR1_EL1_GPI_SHIFT UL(28)
890#define ID_AA64ISAR1_EL1_GPI_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000891
892#define ID_AA64ISAR1_EL1_GPA_SHIFT UL(24)
893#define ID_AA64ISAR1_EL1_GPA_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000894
895#define ID_AA64ISAR1_EL1_API_SHIFT UL(8)
896#define ID_AA64ISAR1_EL1_API_WIDTH UL(4)
AlexeiFedorov7bb7a702023-01-17 17:04:14 +0000897
898#define ID_AA64ISAR1_EL1_APA_SHIFT UL(4)
899#define ID_AA64ISAR1_EL1_APA_WIDTH UL(4)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000900
901#define ESR_EL2_SYSREG_TIMERS_MASK SYSREG_ESR(3, 3, 15, 12, 0)
902#define ESR_EL2_SYSREG_TIMERS SYSREG_ESR(3, 3, 14, 0, 0)
903
904#define ESR_EL2_SYSREG_TIMER_CNTP_TVAL_EL0 SYSREG_ESR(3, 3, 14, 2, 0)
905#define ESR_EL2_SYSREG_TIMER_CNTP_CTL_EL0 SYSREG_ESR(3, 3, 14, 2, 1)
906#define ESR_EL2_SYSREG_TIMER_CNTP_CVAL_EL0 SYSREG_ESR(3, 3, 14, 2, 2)
907#define ESR_EL2_SYSREG_TIMER_CNTV_TVAL_EL0 SYSREG_ESR(3, 3, 14, 3, 0)
908#define ESR_EL2_SYSREG_TIMER_CNTV_CTL_EL0 SYSREG_ESR(3, 3, 14, 3, 1)
909#define ESR_EL2_SYSREG_TIMER_CNTV_CVAL_EL0 SYSREG_ESR(3, 3, 14, 3, 2)
910
911#define ESR_EL2_SYSREG_ICC_PMR_EL1 SYSREG_ESR(3, 0, 4, 6, 0)
912
913/*
914 * GIC system registers encoding mask for registers from
915 * ICC_IAR0_EL1(3, 0, 12, 8, 0) to ICC_IGRPEN1_EL1(3, 0, 12, 12, 7).
916 */
917#define ESR_EL2_SYSREG_ICC_EL1_MASK SYSREG_ESR(3, 3, 15, 8, 0)
918#define ESR_EL2_SYSREG_ICC_EL1 SYSREG_ESR(3, 0, 12, 8, 0)
919
920#define ESR_EL2_SYSREG_ICC_DIR SYSREG_ESR(3, 0, 12, 11, 1)
921#define ESR_EL2_SYSREG_ICC_SGI1R_EL1 SYSREG_ESR(3, 0, 12, 11, 5)
922#define ESR_EL2_SYSREG_ICC_SGI0R_EL1 SYSREG_ESR(3, 0, 12, 11, 7)
923
924#define ESR_EL2_SYSREG_DIRECTION (UL(1) << 0)
925#define ESR_EL2_SYSREG_IS_WRITE(esr) (!((esr) & ESR_EL2_SYSREG_DIRECTION))
926
AlexeiFedorov537bee02023-02-02 13:38:23 +0000927#define ESR_IL(esr) ((esr) & MASK(ESR_EL2_IL))
Soby Mathewb4c6df42022-11-09 11:13:29 +0000928
AlexeiFedorovfeaef162022-12-23 16:59:51 +0000929#define ESR_EL2_SYSREG_ISS_RT(esr) EXTRACT(ESR_EL2_SYSREG_TRAP_RT, esr)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000930
931#define ICC_HPPIR1_EL1_INTID_SHIFT 0
932#define ICC_HPPIR1_EL1_INTID_WIDTH 24
Soby Mathewb4c6df42022-11-09 11:13:29 +0000933
934#define CNTHCTL_EL2_EL0PCTEN (UL(1) << UL(0))
935#define CNTHCTL_EL2_EL0VCTEN (UL(1) << UL(1))
936#define CNTHCTL_EL2_EL1PCTEN (UL(1) << 10)
937#define CNTHCTL_EL2_EL1PTEN (UL(1) << 11)
938#define CNTHCTL_EL2_EL1TVT (UL(1) << 13)
939#define CNTHCTL_EL2_EL1TVCT (UL(1) << 14)
940#define CNTHCTL_EL2_CNTVMASK (UL(1) << 18)
941#define CNTHCTL_EL2_CNTPMASK (UL(1) << 19)
942
943#define CNTHCTL_EL2_INIT (CNTHCTL_EL2_EL0VCTEN | CNTHCTL_EL2_EL0PCTEN)
944
945#define CNTHCTL_EL2_NO_TRAPS (CNTHCTL_EL2_EL1PCTEN | \
946 CNTHCTL_EL2_EL1PTEN)
947
948#define CNTx_CTL_ENABLE (UL(1) << 0)
949#define CNTx_CTL_IMASK (UL(1) << 1)
950#define CNTx_CTL_ISTATUS (UL(1) << 2)
951
952/*******************************************************************************
953 * Definitions of register offsets, fields and macros for CPU system
954 * instructions.
955 ******************************************************************************/
956
957#define TLBI_ADDR_SHIFT U(12)
958#define TLBI_ADDR_MASK U(0x0FFFFFFFFFFF)
959#define TLBI_ADDR(x) (((x) >> TLBI_ADDR_SHIFT) & TLBI_ADDR_MASK)
960
961/* ID_AA64MMFR2_EL1 definitions */
AlexeiFedorov537bee02023-02-02 13:38:23 +0000962#define ID_AA64MMFR2_EL1_ST_SHIFT UL(28)
963#define ID_AA64MMFR2_EL1_ST_WIDTH UL(4)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000964
AlexeiFedorov537bee02023-02-02 13:38:23 +0000965#define ID_AA64MMFR2_EL1_CNP_SHIFT UL(0)
966#define ID_AA64MMFR2_EL1_CNP_WIDTH UL(4)
Soby Mathewb4c6df42022-11-09 11:13:29 +0000967
968/* Custom defined values to indicate the vector offset to exception handlers */
969#define ARM_EXCEPTION_SYNC_LEL 0
970#define ARM_EXCEPTION_IRQ_LEL 1
971#define ARM_EXCEPTION_FIQ_LEL 2
972#define ARM_EXCEPTION_SERROR_LEL 3
973
AlexeiFedorov537bee02023-02-02 13:38:23 +0000974#define VBAR_CEL_SP_EL0_OFFSET 0x0
975#define VBAR_CEL_SP_ELx_OFFSET 0x200
976#define VBAR_LEL_AA64_OFFSET 0x400
977#define VBAR_LEL_AA32_OFFSET 0x600
Soby Mathewb4c6df42022-11-09 11:13:29 +0000978
979#endif /* ARCH_H */