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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * cpu.h: Values of the PRId register used to match up
Ralf Baechle70342282013-01-22 12:59:30 +01003 * various MIPS cpu types.
Linus Torvalds1da177e2005-04-16 15:20:36 -07004 *
Justin P. Mattock79add622011-04-04 14:15:29 -07005 * Copyright (C) 1996 David S. Miller (davem@davemloft.net)
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01006 * Copyright (C) 2004, 2013 Maciej W. Rozycki
Linus Torvalds1da177e2005-04-16 15:20:36 -07007 */
8#ifndef _ASM_CPU_H
9#define _ASM_CPU_H
10
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +010011/*
12 As of the MIPS32 and MIPS64 specs from MTI, the PRId register (CP0
13 register 15, select 0) is defined in this (backwards compatible) way:
Linus Torvalds1da177e2005-04-16 15:20:36 -070014
15 +----------------+----------------+----------------+----------------+
Ralf Baechle70342282013-01-22 12:59:30 +010016 | Company Options| Company ID | Processor ID | Revision |
Linus Torvalds1da177e2005-04-16 15:20:36 -070017 +----------------+----------------+----------------+----------------+
Ralf Baechle70342282013-01-22 12:59:30 +010018 31 24 23 16 15 8 7
Linus Torvalds1da177e2005-04-16 15:20:36 -070019
20 I don't have docs for all the previous processors, but my impression is
21 that bits 16-23 have been 0 for all MIPS processors before the MIPS32/64
22 spec.
23*/
24
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +010025#define PRID_OPT_MASK 0xff000000
26
27/*
28 * Assigned Company values for bits 23:16 of the PRId register.
29 */
30
31#define PRID_COMP_MASK 0xff0000
32
Ralf Baechle55a6feb2005-02-07 21:52:35 +000033#define PRID_COMP_LEGACY 0x000000
34#define PRID_COMP_MIPS 0x010000
35#define PRID_COMP_BROADCOM 0x020000
36#define PRID_COMP_ALCHEMY 0x030000
37#define PRID_COMP_SIBYTE 0x040000
38#define PRID_COMP_SANDCRAFT 0x050000
Ralf Baechle70342282013-01-22 12:59:30 +010039#define PRID_COMP_NXP 0x060000
Ralf Baechle55a6feb2005-02-07 21:52:35 +000040#define PRID_COMP_TOSHIBA 0x070000
41#define PRID_COMP_LSI 0x080000
42#define PRID_COMP_LEXRA 0x0b0000
Jayachandran Ca7117c62011-05-11 12:04:58 +053043#define PRID_COMP_NETLOGIC 0x0c0000
David Daney0dd47812008-12-11 15:33:26 -080044#define PRID_COMP_CAVIUM 0x0d0000
Lars-Peter Clausen83ccf692010-07-17 11:07:51 +000045#define PRID_COMP_INGENIC 0xd00000
Linus Torvalds1da177e2005-04-16 15:20:36 -070046
47/*
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +010048 * Assigned Processor ID (implementation) values for bits 15:8 of the PRId
49 * register. In order to detect a certain CPU type exactly eventually
50 * additional registers may need to be examined.
Linus Torvalds1da177e2005-04-16 15:20:36 -070051 */
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +010052
53#define PRID_IMP_MASK 0xff00
54
55/*
56 * These are valid when 23:16 == PRID_COMP_LEGACY
57 */
58
Linus Torvalds1da177e2005-04-16 15:20:36 -070059#define PRID_IMP_R2000 0x0100
60#define PRID_IMP_AU1_REV1 0x0100
61#define PRID_IMP_AU1_REV2 0x0200
62#define PRID_IMP_R3000 0x0200 /* Same as R2000A */
63#define PRID_IMP_R6000 0x0300 /* Same as R3000A */
64#define PRID_IMP_R4000 0x0400
65#define PRID_IMP_R6000A 0x0600
66#define PRID_IMP_R10000 0x0900
67#define PRID_IMP_R4300 0x0b00
68#define PRID_IMP_VR41XX 0x0c00
69#define PRID_IMP_R12000 0x0e00
Kumba44d921b2006-05-16 22:23:59 -040070#define PRID_IMP_R14000 0x0f00
Linus Torvalds1da177e2005-04-16 15:20:36 -070071#define PRID_IMP_R8000 0x1000
Pete Popovbdf21b12005-07-14 17:47:57 +000072#define PRID_IMP_PR4450 0x1200
Linus Torvalds1da177e2005-04-16 15:20:36 -070073#define PRID_IMP_R4600 0x2000
74#define PRID_IMP_R4700 0x2100
75#define PRID_IMP_TX39 0x2200
76#define PRID_IMP_R4640 0x2200
77#define PRID_IMP_R4650 0x2200 /* Same as R4640 */
78#define PRID_IMP_R5000 0x2300
79#define PRID_IMP_TX49 0x2d00
80#define PRID_IMP_SONIC 0x2400
81#define PRID_IMP_MAGIC 0x2500
82#define PRID_IMP_RM7000 0x2700
83#define PRID_IMP_NEVADA 0x2800 /* RM5260 ??? */
84#define PRID_IMP_RM9000 0x3400
Chen, Huacai2954c022008-06-10 09:05:08 +080085#define PRID_IMP_LOONGSON1 0x4200
Linus Torvalds1da177e2005-04-16 15:20:36 -070086#define PRID_IMP_R5432 0x5400
87#define PRID_IMP_R5500 0x5500
Chen, Huacai2954c022008-06-10 09:05:08 +080088#define PRID_IMP_LOONGSON2 0x6300
Maciej W. Rozycki98e316d2005-09-05 10:31:27 +000089
90#define PRID_IMP_UNKNOWN 0xff00
91
92/*
93 * These are the PRID's for when 23:16 == PRID_COMP_MIPS
94 */
95
Linus Torvalds1da177e2005-04-16 15:20:36 -070096#define PRID_IMP_4KC 0x8000
97#define PRID_IMP_5KC 0x8100
98#define PRID_IMP_20KC 0x8200
99#define PRID_IMP_4KEC 0x8400
100#define PRID_IMP_4KSC 0x8600
101#define PRID_IMP_25KF 0x8800
102#define PRID_IMP_5KE 0x8900
103#define PRID_IMP_4KECR2 0x9000
104#define PRID_IMP_4KEMPR2 0x9100
105#define PRID_IMP_4KSD 0x9200
106#define PRID_IMP_24K 0x9300
Ralf Baechlebbc7f222005-07-12 16:12:05 +0000107#define PRID_IMP_34K 0x9500
Ralf Baechlee50c0a82005-05-31 11:49:19 +0000108#define PRID_IMP_24KE 0x9600
Chris Dearmanc6209532006-05-02 14:08:46 +0100109#define PRID_IMP_74K 0x9700
Ralf Baechle39b8d522008-04-28 17:14:26 +0100110#define PRID_IMP_1004K 0x9900
Steven J. Hill006a8512012-06-26 04:11:03 +0000111#define PRID_IMP_1074K 0x9a00
Steven J. Hill113c62d2012-07-06 23:56:00 +0200112#define PRID_IMP_M14KC 0x9c00
Steven J. Hillf8fa4812012-12-07 03:51:35 +0000113#define PRID_IMP_M14KEC 0x9e00
Leonid Yegoshin76f59e32013-11-14 16:12:26 +0000114#define PRID_IMP_PROAPTIV_UP 0xa200
115#define PRID_IMP_PROAPTIV_MP 0xa300
Linus Torvalds1da177e2005-04-16 15:20:36 -0700116
Linus Torvalds1da177e2005-04-16 15:20:36 -0700117/*
118 * These are the PRID's for when 23:16 == PRID_COMP_SIBYTE
119 */
120
Ralf Baechle70342282013-01-22 12:59:30 +0100121#define PRID_IMP_SB1 0x0100
122#define PRID_IMP_SB1A 0x1100
Linus Torvalds1da177e2005-04-16 15:20:36 -0700123
124/*
125 * These are the PRID's for when 23:16 == PRID_COMP_SANDCRAFT
126 */
127
Ralf Baechle70342282013-01-22 12:59:30 +0100128#define PRID_IMP_SR71000 0x0400
Linus Torvalds1da177e2005-04-16 15:20:36 -0700129
130/*
Aurelien Jarno1c0c13e2007-09-25 15:40:12 +0200131 * These are the PRID's for when 23:16 == PRID_COMP_BROADCOM
132 */
133
Kevin Cernekee190fca32010-11-23 10:26:45 -0800134#define PRID_IMP_BMIPS32_REV4 0x4000
135#define PRID_IMP_BMIPS32_REV8 0x8000
Kevin Cernekee602977b2010-10-16 14:22:30 -0700136#define PRID_IMP_BMIPS3300 0x9000
137#define PRID_IMP_BMIPS3300_ALT 0x9100
138#define PRID_IMP_BMIPS3300_BUG 0x0000
139#define PRID_IMP_BMIPS43XX 0xa000
140#define PRID_IMP_BMIPS5000 0x5a00
141
142#define PRID_REV_BMIPS4380_LO 0x0040
143#define PRID_REV_BMIPS4380_HI 0x006f
Aurelien Jarno1c0c13e2007-09-25 15:40:12 +0200144
145/*
David Daney0dd47812008-12-11 15:33:26 -0800146 * These are the PRID's for when 23:16 == PRID_COMP_CAVIUM
147 */
148
149#define PRID_IMP_CAVIUM_CN38XX 0x0000
150#define PRID_IMP_CAVIUM_CN31XX 0x0100
151#define PRID_IMP_CAVIUM_CN30XX 0x0200
152#define PRID_IMP_CAVIUM_CN58XX 0x0300
153#define PRID_IMP_CAVIUM_CN56XX 0x0400
154#define PRID_IMP_CAVIUM_CN50XX 0x0600
155#define PRID_IMP_CAVIUM_CN52XX 0x0700
David Daney1584d7f2010-10-07 16:03:43 -0700156#define PRID_IMP_CAVIUM_CN63XX 0x9000
David Daney074ef0d2011-09-24 02:29:54 +0200157#define PRID_IMP_CAVIUM_CN68XX 0x9100
158#define PRID_IMP_CAVIUM_CN66XX 0x9200
159#define PRID_IMP_CAVIUM_CN61XX 0x9300
David Daney71a8b7d2013-07-29 15:07:00 -0700160#define PRID_IMP_CAVIUM_CNF71XX 0x9400
161#define PRID_IMP_CAVIUM_CN78XX 0x9500
162#define PRID_IMP_CAVIUM_CN70XX 0x9600
David Daney0dd47812008-12-11 15:33:26 -0800163
164/*
Lars-Peter Clausen83ccf692010-07-17 11:07:51 +0000165 * These are the PRID's for when 23:16 == PRID_COMP_INGENIC
166 */
167
Ralf Baechle70342282013-01-22 12:59:30 +0100168#define PRID_IMP_JZRISC 0x0200
Lars-Peter Clausen83ccf692010-07-17 11:07:51 +0000169
170/*
Jayachandran Ca7117c62011-05-11 12:04:58 +0530171 * These are the PRID's for when 23:16 == PRID_COMP_NETLOGIC
172 */
173#define PRID_IMP_NETLOGIC_XLR732 0x0000
174#define PRID_IMP_NETLOGIC_XLR716 0x0200
175#define PRID_IMP_NETLOGIC_XLR532 0x0900
176#define PRID_IMP_NETLOGIC_XLR308 0x0600
177#define PRID_IMP_NETLOGIC_XLR532C 0x0800
178#define PRID_IMP_NETLOGIC_XLR516C 0x0a00
179#define PRID_IMP_NETLOGIC_XLR508C 0x0b00
180#define PRID_IMP_NETLOGIC_XLR308C 0x0f00
181#define PRID_IMP_NETLOGIC_XLS608 0x8000
182#define PRID_IMP_NETLOGIC_XLS408 0x8800
183#define PRID_IMP_NETLOGIC_XLS404 0x8c00
184#define PRID_IMP_NETLOGIC_XLS208 0x8e00
185#define PRID_IMP_NETLOGIC_XLS204 0x8f00
186#define PRID_IMP_NETLOGIC_XLS108 0xce00
187#define PRID_IMP_NETLOGIC_XLS104 0xcf00
188#define PRID_IMP_NETLOGIC_XLS616B 0x4000
189#define PRID_IMP_NETLOGIC_XLS608B 0x4a00
190#define PRID_IMP_NETLOGIC_XLS416B 0x4400
191#define PRID_IMP_NETLOGIC_XLS412B 0x4c00
192#define PRID_IMP_NETLOGIC_XLS408B 0x4e00
193#define PRID_IMP_NETLOGIC_XLS404B 0x4f00
Manuel Lauss809f36c2011-11-01 20:03:30 +0100194#define PRID_IMP_NETLOGIC_AU13XX 0x8000
Jayachandran Ca7117c62011-05-11 12:04:58 +0530195
Jayachandran C2aa54b22011-11-16 00:21:29 +0000196#define PRID_IMP_NETLOGIC_XLP8XX 0x1000
197#define PRID_IMP_NETLOGIC_XLP3XX 0x1100
Jayachandran C4ca86a22013-08-11 14:43:54 +0530198#define PRID_IMP_NETLOGIC_XLP2XX 0x1200
Jayachandran Ca7117c62011-05-11 12:04:58 +0530199
200/*
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +0100201 * Particular Revision values for bits 7:0 of the PRId register.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700202 */
203
Marc St-Jean9267a302007-06-14 15:55:31 -0600204#define PRID_REV_MASK 0x00ff
Linus Torvalds1da177e2005-04-16 15:20:36 -0700205
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +0100206/*
207 * Definitions for 7:0 on legacy processors
208 */
209
Linus Torvalds1da177e2005-04-16 15:20:36 -0700210#define PRID_REV_TX4927 0x0022
211#define PRID_REV_TX4937 0x0030
212#define PRID_REV_R4400 0x0040
213#define PRID_REV_R3000A 0x0030
214#define PRID_REV_R3000 0x0020
215#define PRID_REV_R2000A 0x0010
Ralf Baechle70342282013-01-22 12:59:30 +0100216#define PRID_REV_TX3912 0x0010
217#define PRID_REV_TX3922 0x0030
218#define PRID_REV_TX3927 0x0040
Linus Torvalds1da177e2005-04-16 15:20:36 -0700219#define PRID_REV_VR4111 0x0050
220#define PRID_REV_VR4181 0x0050 /* Same as VR4111 */
221#define PRID_REV_VR4121 0x0060
222#define PRID_REV_VR4122 0x0070
223#define PRID_REV_VR4181A 0x0070 /* Same as VR4122 */
224#define PRID_REV_VR4130 0x0080
Marc St-Jean9267a302007-06-14 15:55:31 -0600225#define PRID_REV_34K_V1_0_2 0x0022
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100226#define PRID_REV_LOONGSON1B 0x0020
Wu Zhangjinf8ede0f2009-11-17 01:32:59 +0800227#define PRID_REV_LOONGSON2E 0x0002
228#define PRID_REV_LOONGSON2F 0x0003
Linus Torvalds1da177e2005-04-16 15:20:36 -0700229
230/*
Ralf Baechlefde97822007-07-06 14:40:05 +0100231 * Older processors used to encode processor version and revision in two
232 * 4-bit bitfields, the 4K seems to simply count up and even newer MTI cores
233 * have switched to use the 8-bits as 3:3:2 bitfield with the last field as
234 * the patch number. *ARGH*
235 */
236#define PRID_REV_ENCODE_44(ver, rev) \
237 ((ver) << 4 | (rev))
238#define PRID_REV_ENCODE_332(ver, rev, patch) \
239 ((ver) << 5 | (rev) << 2 | (patch))
240
241/*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700242 * FPU implementation/revision register (CP1 control register 0).
243 *
244 * +---------------------------------+----------------+----------------+
Ralf Baechle70342282013-01-22 12:59:30 +0100245 * | 0 | Implementation | Revision |
Linus Torvalds1da177e2005-04-16 15:20:36 -0700246 * +---------------------------------+----------------+----------------+
Ralf Baechle70342282013-01-22 12:59:30 +0100247 * 31 16 15 8 7 0
Linus Torvalds1da177e2005-04-16 15:20:36 -0700248 */
249
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +0100250#define FPIR_IMP_MASK 0xff00
251
Linus Torvalds1da177e2005-04-16 15:20:36 -0700252#define FPIR_IMP_NONE 0x0000
253
Jonas Gorski68248d02013-12-18 14:12:00 +0100254#if !defined(__ASSEMBLY__)
255
Ralf Baechle36cfbaa2007-10-11 23:46:16 +0100256enum cpu_type_enum {
257 CPU_UNKNOWN,
258
259 /*
260 * R2000 class processors
261 */
262 CPU_R2000, CPU_R3000, CPU_R3000A, CPU_R3041, CPU_R3051, CPU_R3052,
263 CPU_R3081, CPU_R3081E,
264
265 /*
266 * R6000 class processors
267 */
268 CPU_R6000, CPU_R6000A,
269
270 /*
271 * R4000 class processors
272 */
273 CPU_R4000PC, CPU_R4000SC, CPU_R4000MC, CPU_R4200, CPU_R4300, CPU_R4310,
274 CPU_R4400PC, CPU_R4400SC, CPU_R4400MC, CPU_R4600, CPU_R4640, CPU_R4650,
Ralf Baechlefb2b1db2012-10-16 22:14:48 +0200275 CPU_R4700, CPU_R5000, CPU_R5500, CPU_NEVADA, CPU_R5432, CPU_R10000,
276 CPU_R12000, CPU_R14000, CPU_VR41XX, CPU_VR4111, CPU_VR4121, CPU_VR4122,
277 CPU_VR4131, CPU_VR4133, CPU_VR4181, CPU_VR4181A, CPU_RM7000,
Ralf Baechle36cfbaa2007-10-11 23:46:16 +0100278 CPU_SR71000, CPU_RM9000, CPU_TX49XX,
279
280 /*
281 * R8000 class processors
282 */
283 CPU_R8000,
284
285 /*
286 * TX3900 class processors
287 */
288 CPU_TX3912, CPU_TX3922, CPU_TX3927,
289
290 /*
291 * MIPS32 class processors
292 */
Ralf Baechle39b8d522008-04-28 17:14:26 +0100293 CPU_4KC, CPU_4KEC, CPU_4KSC, CPU_24K, CPU_34K, CPU_1004K, CPU_74K,
Kevin Cernekee602977b2010-10-16 14:22:30 -0700294 CPU_ALCHEMY, CPU_PR4450, CPU_BMIPS32, CPU_BMIPS3300, CPU_BMIPS4350,
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100295 CPU_BMIPS4380, CPU_BMIPS5000, CPU_JZRISC, CPU_LOONGSON1, CPU_M14KC,
Steven J. Hillf8fa4812012-12-07 03:51:35 +0000296 CPU_M14KEC,
Ralf Baechle36cfbaa2007-10-11 23:46:16 +0100297
298 /*
299 * MIPS64 class processors
300 */
Leonid Yegoshin78d48032012-07-06 21:56:01 +0200301 CPU_5KC, CPU_5KE, CPU_20KC, CPU_25KF, CPU_SB1, CPU_SB1A, CPU_LOONGSON2,
David Daney1584d7f2010-10-07 16:03:43 -0700302 CPU_CAVIUM_OCTEON, CPU_CAVIUM_OCTEON_PLUS, CPU_CAVIUM_OCTEON2,
David Daney71a8b7d2013-07-29 15:07:00 -0700303 CPU_CAVIUM_OCTEON3, CPU_XLR, CPU_XLP,
Ralf Baechle36cfbaa2007-10-11 23:46:16 +0100304
305 CPU_LAST
306};
307
Jonas Gorski68248d02013-12-18 14:12:00 +0100308#endif /* !__ASSEMBLY */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700309
310/*
311 * ISA Level encodings
312 *
313 */
Ralf Baechle1990e542013-06-26 17:06:34 +0200314#define MIPS_CPU_ISA_II 0x00000001
315#define MIPS_CPU_ISA_III 0x00000002
316#define MIPS_CPU_ISA_IV 0x00000004
317#define MIPS_CPU_ISA_V 0x00000008
318#define MIPS_CPU_ISA_M32R1 0x00000010
319#define MIPS_CPU_ISA_M32R2 0x00000020
320#define MIPS_CPU_ISA_M64R1 0x00000040
321#define MIPS_CPU_ISA_M64R2 0x00000080
Ralf Baechle04015722005-12-09 12:20:49 +0000322
Ralf Baechle1990e542013-06-26 17:06:34 +0200323#define MIPS_CPU_ISA_32BIT (MIPS_CPU_ISA_II | MIPS_CPU_ISA_M32R1 | \
324 MIPS_CPU_ISA_M32R2)
Ralf Baechle04015722005-12-09 12:20:49 +0000325#define MIPS_CPU_ISA_64BIT (MIPS_CPU_ISA_III | MIPS_CPU_ISA_IV | \
326 MIPS_CPU_ISA_V | MIPS_CPU_ISA_M64R1 | MIPS_CPU_ISA_M64R2)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700327
328/*
329 * CPU Option encodings
330 */
331#define MIPS_CPU_TLB 0x00000001 /* CPU has TLB */
Ralf Baechle02cf2112005-10-01 13:06:32 +0100332#define MIPS_CPU_4KEX 0x00000002 /* "R4K" exception model */
333#define MIPS_CPU_3K_CACHE 0x00000004 /* R3000-style caches */
334#define MIPS_CPU_4K_CACHE 0x00000008 /* R4000-style caches */
335#define MIPS_CPU_TX39_CACHE 0x00000010 /* TX3900-style caches */
Ralf Baechle641e97f2007-10-11 23:46:05 +0100336#define MIPS_CPU_FPU 0x00000020 /* CPU has FPU */
337#define MIPS_CPU_32FPR 0x00000040 /* 32 dbl. prec. FP registers */
338#define MIPS_CPU_COUNTER 0x00000080 /* Cycle count/compare */
339#define MIPS_CPU_WATCH 0x00000100 /* watchpoint registers */
340#define MIPS_CPU_DIVEC 0x00000200 /* dedicated interrupt vector */
341#define MIPS_CPU_VCE 0x00000400 /* virt. coherence conflict possible */
342#define MIPS_CPU_CACHE_CDEX_P 0x00000800 /* Create_Dirty_Exclusive CACHE op */
343#define MIPS_CPU_CACHE_CDEX_S 0x00001000 /* ... same for seconary cache ... */
344#define MIPS_CPU_MCHECK 0x00002000 /* Machine check exception */
345#define MIPS_CPU_EJTAG 0x00004000 /* EJTAG exception */
346#define MIPS_CPU_NOFPUEX 0x00008000 /* no FPU exception */
347#define MIPS_CPU_LLSC 0x00010000 /* CPU has ll/sc instructions */
348#define MIPS_CPU_INCLUSIVE_CACHES 0x00020000 /* P-cache subset enforced */
349#define MIPS_CPU_PREFETCH 0x00040000 /* CPU has usable prefetch */
350#define MIPS_CPU_VINT 0x00080000 /* CPU supports MIPSR2 vectored interrupts */
351#define MIPS_CPU_VEIC 0x00100000 /* CPU supports MIPSR2 external interrupt controller mode */
352#define MIPS_CPU_ULRI 0x00200000 /* CPU has ULRI feature */
Al Cooperda4b62c2012-07-13 16:44:51 -0400353#define MIPS_CPU_PCI 0x00400000 /* CPU has Perf Ctr Int indicator */
354#define MIPS_CPU_RIXI 0x00800000 /* CPU has TLB Read/eXec Inhibit */
Steven J. Hillf8fa4812012-12-07 03:51:35 +0000355#define MIPS_CPU_MICROMIPS 0x01000000 /* CPU has microMIPS capability */
Leonid Yegoshin1745c1e2013-11-14 16:12:23 +0000356#define MIPS_CPU_TLBINV 0x02000000 /* CPU supports TLBINV/F */
Steven J. Hill4a0156f2013-11-14 16:12:24 +0000357#define MIPS_CPU_SEGMENTS 0x04000000 /* CPU supports Segmentation Control registers */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700358
Ralf Baechle41943182005-05-05 16:45:59 +0000359/*
360 * CPU ASE encodings
361 */
362#define MIPS_ASE_MIPS16 0x00000001 /* code compression */
363#define MIPS_ASE_MDMX 0x00000002 /* MIPS digital media extension */
364#define MIPS_ASE_MIPS3D 0x00000004 /* MIPS-3D */
365#define MIPS_ASE_SMARTMIPS 0x00000008 /* SmartMIPS */
Ralf Baechlee50c0a82005-05-31 11:49:19 +0000366#define MIPS_ASE_DSP 0x00000010 /* Signal Processing ASE */
Ralf Baechle8f406112005-07-14 07:34:18 +0000367#define MIPS_ASE_MIPSMT 0x00000020 /* CPU supports MIPS MT */
Steven J. Hillee80f7c72012-08-03 10:26:04 -0500368#define MIPS_ASE_DSP2P 0x00000040 /* Signal Processing ASE Rev 2 */
David Daney1e7decd2013-02-16 23:42:43 +0100369#define MIPS_ASE_VZ 0x00000080 /* Virtualization ASE */
Ralf Baechle41943182005-05-05 16:45:59 +0000370
Linus Torvalds1da177e2005-04-16 15:20:36 -0700371#endif /* _ASM_CPU_H */