blob: 6b07b739f914d06ebb6fc8777e4b3fb2be914547 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * Processor capabilities determination functions.
3 *
4 * Copyright (C) xxxx the Anonymous
Ralf Baechle010b8532006-01-29 18:42:08 +00005 * Copyright (C) 1994 - 2006 Ralf Baechle
Ralf Baechle41943182005-05-05 16:45:59 +00006 * Copyright (C) 2003, 2004 Maciej W. Rozycki
Ralf Baechle70342282013-01-22 12:59:30 +01007 * Copyright (C) 2001, 2004, 2011, 2012 MIPS Technologies, Inc.
Linus Torvalds1da177e2005-04-16 15:20:36 -07008 *
9 * This program is free software; you can redistribute it and/or
10 * modify it under the terms of the GNU General Public License
11 * as published by the Free Software Foundation; either version
12 * 2 of the License, or (at your option) any later version.
13 */
Linus Torvalds1da177e2005-04-16 15:20:36 -070014#include <linux/init.h>
15#include <linux/kernel.h>
16#include <linux/ptrace.h>
Ralf Baechle631330f2009-06-19 14:05:26 +010017#include <linux/smp.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070018#include <linux/stddef.h>
Paul Gortmaker73bc2562011-07-23 16:30:40 -040019#include <linux/export.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070020
Ralf Baechle57599062007-02-18 19:07:31 +000021#include <asm/bugs.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070022#include <asm/cpu.h>
Maciej W. Rozyckif6843622015-04-03 23:27:26 +010023#include <asm/cpu-features.h>
Ralf Baechle69f24d12013-09-17 10:25:47 +020024#include <asm/cpu-type.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070025#include <asm/fpu.h>
26#include <asm/mipsregs.h>
Paul Burton30ee6152014-03-27 10:57:30 +000027#include <asm/mipsmtregs.h>
Paul Burtona5e9a692014-01-27 15:23:10 +000028#include <asm/msa.h>
David Daney654f57b2008-09-23 00:07:16 -070029#include <asm/watch.h>
Paul Gortmaker06372a62011-07-23 16:26:41 -040030#include <asm/elf.h>
Markos Chandras4f12b912014-07-18 10:51:32 +010031#include <asm/pgtable-bits.h>
Chris Dearmana074f0e2009-07-10 01:51:27 -070032#include <asm/spram.h>
Linus Torvalds7c0f6ba2016-12-24 11:46:01 -080033#include <linux/uaccess.h>
David Daney949e51b2010-10-14 11:32:33 -070034
Paul Burtone14f1db2015-07-27 12:58:23 -070035/* Hardware capabilities */
36unsigned int elf_hwcap __read_mostly;
Marcin Nowakowski05510f22017-03-07 14:19:56 +010037EXPORT_SYMBOL_GPL(elf_hwcap);
Paul Burtone14f1db2015-07-27 12:58:23 -070038
Maciej W. Rozyckif6843622015-04-03 23:27:26 +010039/*
Maciej W. Rozycki7aecd5ca2015-04-03 23:27:54 +010040 * Get the FPU Implementation/Revision.
41 */
42static inline unsigned long cpu_get_fpu_id(void)
43{
44 unsigned long tmp, fpu_id;
45
46 tmp = read_c0_status();
47 __enable_fpu(FPU_AS_IS);
48 fpu_id = read_32bit_cp1_register(CP1_REVISION);
49 write_c0_status(tmp);
50 return fpu_id;
51}
52
53/*
54 * Check if the CPU has an external FPU.
55 */
56static inline int __cpu_has_fpu(void)
57{
58 return (cpu_get_fpu_id() & FPIR_IMP_MASK) != FPIR_IMP_NONE;
59}
60
61static inline unsigned long cpu_get_msa_id(void)
62{
63 unsigned long status, msa_id;
64
65 status = read_c0_status();
66 __enable_fpu(FPU_64BIT);
67 enable_msa();
68 msa_id = read_msa_ir();
69 disable_msa();
70 write_c0_status(status);
71 return msa_id;
72}
73
74/*
Maciej W. Rozycki9b266162015-04-03 23:27:48 +010075 * Determine the FCSR mask for FPU hardware.
76 */
77static inline void cpu_set_fpu_fcsr_mask(struct cpuinfo_mips *c)
78{
79 unsigned long sr, mask, fcsr, fcsr0, fcsr1;
80
Maciej W. Rozycki90b712d2015-06-02 17:50:59 +010081 fcsr = c->fpu_csr31;
Maciej W. Rozycki9b266162015-04-03 23:27:48 +010082 mask = FPU_CSR_ALL_X | FPU_CSR_ALL_E | FPU_CSR_ALL_S | FPU_CSR_RM;
83
84 sr = read_c0_status();
85 __enable_fpu(FPU_AS_IS);
86
Maciej W. Rozycki9b266162015-04-03 23:27:48 +010087 fcsr0 = fcsr & mask;
88 write_32bit_cp1_register(CP1_STATUS, fcsr0);
89 fcsr0 = read_32bit_cp1_register(CP1_STATUS);
90
91 fcsr1 = fcsr | ~mask;
92 write_32bit_cp1_register(CP1_STATUS, fcsr1);
93 fcsr1 = read_32bit_cp1_register(CP1_STATUS);
94
95 write_32bit_cp1_register(CP1_STATUS, fcsr);
96
97 write_c0_status(sr);
98
99 c->fpu_msk31 = ~(fcsr0 ^ fcsr1) & ~mask;
100}
101
102/*
Maciej W. Rozycki93adeaf2015-11-13 00:48:15 +0000103 * Determine the IEEE 754 NaN encodings and ABS.fmt/NEG.fmt execution modes
104 * supported by FPU hardware.
105 */
106static void cpu_set_fpu_2008(struct cpuinfo_mips *c)
107{
108 if (c->isa_level & (MIPS_CPU_ISA_M32R1 | MIPS_CPU_ISA_M64R1 |
109 MIPS_CPU_ISA_M32R2 | MIPS_CPU_ISA_M64R2 |
110 MIPS_CPU_ISA_M32R6 | MIPS_CPU_ISA_M64R6)) {
111 unsigned long sr, fir, fcsr, fcsr0, fcsr1;
112
113 sr = read_c0_status();
114 __enable_fpu(FPU_AS_IS);
115
116 fir = read_32bit_cp1_register(CP1_REVISION);
117 if (fir & MIPS_FPIR_HAS2008) {
118 fcsr = read_32bit_cp1_register(CP1_STATUS);
119
120 fcsr0 = fcsr & ~(FPU_CSR_ABS2008 | FPU_CSR_NAN2008);
121 write_32bit_cp1_register(CP1_STATUS, fcsr0);
122 fcsr0 = read_32bit_cp1_register(CP1_STATUS);
123
124 fcsr1 = fcsr | FPU_CSR_ABS2008 | FPU_CSR_NAN2008;
125 write_32bit_cp1_register(CP1_STATUS, fcsr1);
126 fcsr1 = read_32bit_cp1_register(CP1_STATUS);
127
128 write_32bit_cp1_register(CP1_STATUS, fcsr);
129
130 if (!(fcsr0 & FPU_CSR_NAN2008))
131 c->options |= MIPS_CPU_NAN_LEGACY;
132 if (fcsr1 & FPU_CSR_NAN2008)
133 c->options |= MIPS_CPU_NAN_2008;
134
135 if ((fcsr0 ^ fcsr1) & FPU_CSR_ABS2008)
136 c->fpu_msk31 &= ~FPU_CSR_ABS2008;
137 else
138 c->fpu_csr31 |= fcsr & FPU_CSR_ABS2008;
139
140 if ((fcsr0 ^ fcsr1) & FPU_CSR_NAN2008)
141 c->fpu_msk31 &= ~FPU_CSR_NAN2008;
142 else
143 c->fpu_csr31 |= fcsr & FPU_CSR_NAN2008;
144 } else {
145 c->options |= MIPS_CPU_NAN_LEGACY;
146 }
147
148 write_c0_status(sr);
149 } else {
150 c->options |= MIPS_CPU_NAN_LEGACY;
151 }
152}
153
154/*
Maciej W. Rozycki503943e2015-11-13 00:48:29 +0000155 * IEEE 754 conformance mode to use. Affects the NaN encoding and the
156 * ABS.fmt/NEG.fmt execution mode.
157 */
158static enum { STRICT, LEGACY, STD2008, RELAXED } ieee754 = STRICT;
159
160/*
161 * Set the IEEE 754 NaN encodings and the ABS.fmt/NEG.fmt execution modes
162 * to support by the FPU emulator according to the IEEE 754 conformance
163 * mode selected. Note that "relaxed" straps the emulator so that it
164 * allows 2008-NaN binaries even for legacy processors.
Maciej W. Rozycki93adeaf2015-11-13 00:48:15 +0000165 */
166static void cpu_set_nofpu_2008(struct cpuinfo_mips *c)
167{
Maciej W. Rozycki503943e2015-11-13 00:48:29 +0000168 c->options &= ~(MIPS_CPU_NAN_2008 | MIPS_CPU_NAN_LEGACY);
Maciej W. Rozycki93adeaf2015-11-13 00:48:15 +0000169 c->fpu_csr31 &= ~(FPU_CSR_ABS2008 | FPU_CSR_NAN2008);
Maciej W. Rozycki503943e2015-11-13 00:48:29 +0000170 c->fpu_msk31 &= ~(FPU_CSR_ABS2008 | FPU_CSR_NAN2008);
171
172 switch (ieee754) {
173 case STRICT:
174 if (c->isa_level & (MIPS_CPU_ISA_M32R1 | MIPS_CPU_ISA_M64R1 |
175 MIPS_CPU_ISA_M32R2 | MIPS_CPU_ISA_M64R2 |
176 MIPS_CPU_ISA_M32R6 | MIPS_CPU_ISA_M64R6)) {
177 c->options |= MIPS_CPU_NAN_2008 | MIPS_CPU_NAN_LEGACY;
178 } else {
179 c->options |= MIPS_CPU_NAN_LEGACY;
180 c->fpu_msk31 |= FPU_CSR_ABS2008 | FPU_CSR_NAN2008;
181 }
182 break;
183 case LEGACY:
Maciej W. Rozycki93adeaf2015-11-13 00:48:15 +0000184 c->options |= MIPS_CPU_NAN_LEGACY;
185 c->fpu_msk31 |= FPU_CSR_ABS2008 | FPU_CSR_NAN2008;
Maciej W. Rozycki503943e2015-11-13 00:48:29 +0000186 break;
187 case STD2008:
188 c->options |= MIPS_CPU_NAN_2008;
189 c->fpu_csr31 |= FPU_CSR_ABS2008 | FPU_CSR_NAN2008;
190 c->fpu_msk31 |= FPU_CSR_ABS2008 | FPU_CSR_NAN2008;
191 break;
192 case RELAXED:
193 c->options |= MIPS_CPU_NAN_2008 | MIPS_CPU_NAN_LEGACY;
194 break;
Maciej W. Rozycki93adeaf2015-11-13 00:48:15 +0000195 }
196}
197
198/*
Maciej W. Rozycki503943e2015-11-13 00:48:29 +0000199 * Override the IEEE 754 NaN encoding and ABS.fmt/NEG.fmt execution mode
200 * according to the "ieee754=" parameter.
201 */
202static void cpu_set_nan_2008(struct cpuinfo_mips *c)
203{
204 switch (ieee754) {
205 case STRICT:
206 mips_use_nan_legacy = !!cpu_has_nan_legacy;
207 mips_use_nan_2008 = !!cpu_has_nan_2008;
208 break;
209 case LEGACY:
210 mips_use_nan_legacy = !!cpu_has_nan_legacy;
211 mips_use_nan_2008 = !cpu_has_nan_legacy;
212 break;
213 case STD2008:
214 mips_use_nan_legacy = !cpu_has_nan_2008;
215 mips_use_nan_2008 = !!cpu_has_nan_2008;
216 break;
217 case RELAXED:
218 mips_use_nan_legacy = true;
219 mips_use_nan_2008 = true;
220 break;
221 }
222}
223
224/*
225 * IEEE 754 NaN encoding and ABS.fmt/NEG.fmt execution mode override
226 * settings:
227 *
228 * strict: accept binaries that request a NaN encoding supported by the FPU
229 * legacy: only accept legacy-NaN binaries
230 * 2008: only accept 2008-NaN binaries
231 * relaxed: accept any binaries regardless of whether supported by the FPU
232 */
233static int __init ieee754_setup(char *s)
234{
235 if (!s)
236 return -1;
237 else if (!strcmp(s, "strict"))
238 ieee754 = STRICT;
239 else if (!strcmp(s, "legacy"))
240 ieee754 = LEGACY;
241 else if (!strcmp(s, "2008"))
242 ieee754 = STD2008;
243 else if (!strcmp(s, "relaxed"))
244 ieee754 = RELAXED;
245 else
246 return -1;
247
248 if (!(boot_cpu_data.options & MIPS_CPU_FPU))
249 cpu_set_nofpu_2008(&boot_cpu_data);
250 cpu_set_nan_2008(&boot_cpu_data);
251
252 return 0;
253}
254
255early_param("ieee754", ieee754_setup);
256
257/*
Maciej W. Rozyckif6843622015-04-03 23:27:26 +0100258 * Set the FIR feature flags for the FPU emulator.
259 */
260static void cpu_set_nofpu_id(struct cpuinfo_mips *c)
261{
262 u32 value;
263
264 value = 0;
265 if (c->isa_level & (MIPS_CPU_ISA_M32R1 | MIPS_CPU_ISA_M64R1 |
266 MIPS_CPU_ISA_M32R2 | MIPS_CPU_ISA_M64R2 |
267 MIPS_CPU_ISA_M32R6 | MIPS_CPU_ISA_M64R6))
268 value |= MIPS_FPIR_D | MIPS_FPIR_S;
269 if (c->isa_level & (MIPS_CPU_ISA_M32R2 | MIPS_CPU_ISA_M64R2 |
270 MIPS_CPU_ISA_M32R6 | MIPS_CPU_ISA_M64R6))
271 value |= MIPS_FPIR_F64 | MIPS_FPIR_L | MIPS_FPIR_W;
Maciej W. Rozycki90d53a92015-11-13 00:47:28 +0000272 if (c->options & MIPS_CPU_NAN_2008)
273 value |= MIPS_FPIR_HAS2008;
Maciej W. Rozyckif6843622015-04-03 23:27:26 +0100274 c->fpu_id = value;
275}
276
Maciej W. Rozycki9b266162015-04-03 23:27:48 +0100277/* Determined FPU emulator mask to use for the boot CPU with "nofpu". */
278static unsigned int mips_nofpu_msk31;
279
Maciej W. Rozycki7aecd5ca2015-04-03 23:27:54 +0100280/*
281 * Set options for FPU hardware.
282 */
283static void cpu_set_fpu_opts(struct cpuinfo_mips *c)
284{
285 c->fpu_id = cpu_get_fpu_id();
286 mips_nofpu_msk31 = c->fpu_msk31;
287
288 if (c->isa_level & (MIPS_CPU_ISA_M32R1 | MIPS_CPU_ISA_M64R1 |
289 MIPS_CPU_ISA_M32R2 | MIPS_CPU_ISA_M64R2 |
290 MIPS_CPU_ISA_M32R6 | MIPS_CPU_ISA_M64R6)) {
291 if (c->fpu_id & MIPS_FPIR_3D)
292 c->ases |= MIPS_ASE_MIPS3D;
James Hogan4e875802017-03-14 10:15:08 +0000293 if (c->fpu_id & MIPS_FPIR_UFRP)
294 c->options |= MIPS_CPU_UFR;
Maciej W. Rozycki7aecd5ca2015-04-03 23:27:54 +0100295 if (c->fpu_id & MIPS_FPIR_FREP)
296 c->options |= MIPS_CPU_FRE;
297 }
298
299 cpu_set_fpu_fcsr_mask(c);
Maciej W. Rozycki93adeaf2015-11-13 00:48:15 +0000300 cpu_set_fpu_2008(c);
Maciej W. Rozycki503943e2015-11-13 00:48:29 +0000301 cpu_set_nan_2008(c);
Maciej W. Rozycki7aecd5ca2015-04-03 23:27:54 +0100302}
303
304/*
305 * Set options for the FPU emulator.
306 */
307static void cpu_set_nofpu_opts(struct cpuinfo_mips *c)
308{
309 c->options &= ~MIPS_CPU_FPU;
310 c->fpu_msk31 = mips_nofpu_msk31;
311
Maciej W. Rozycki93adeaf2015-11-13 00:48:15 +0000312 cpu_set_nofpu_2008(c);
Maciej W. Rozycki503943e2015-11-13 00:48:29 +0000313 cpu_set_nan_2008(c);
Maciej W. Rozycki7aecd5ca2015-04-03 23:27:54 +0100314 cpu_set_nofpu_id(c);
315}
316
Paul Gortmaker078a55f2013-06-18 13:38:59 +0000317static int mips_fpu_disabled;
Kevin Cernekee0103d232010-05-02 14:43:52 -0700318
319static int __init fpu_disable(char *s)
320{
Maciej W. Rozycki7aecd5ca2015-04-03 23:27:54 +0100321 cpu_set_nofpu_opts(&boot_cpu_data);
Kevin Cernekee0103d232010-05-02 14:43:52 -0700322 mips_fpu_disabled = 1;
323
324 return 1;
325}
326
327__setup("nofpu", fpu_disable);
328
Paul Burtonb7fc2cc2017-08-23 11:17:54 -0700329static int mips_dsp_disabled;
Kevin Cernekee0103d232010-05-02 14:43:52 -0700330
331static int __init dsp_disable(char *s)
332{
Steven J. Hillee80f7c72012-08-03 10:26:04 -0500333 cpu_data[0].ases &= ~(MIPS_ASE_DSP | MIPS_ASE_DSP2P);
Kevin Cernekee0103d232010-05-02 14:43:52 -0700334 mips_dsp_disabled = 1;
335
336 return 1;
337}
338
339__setup("nodsp", dsp_disable);
340
Markos Chandras3d528b32014-07-14 12:46:13 +0100341static int mips_htw_disabled;
342
343static int __init htw_disable(char *s)
344{
345 mips_htw_disabled = 1;
346 cpu_data[0].options &= ~MIPS_CPU_HTW;
347 write_c0_pwctl(read_c0_pwctl() &
348 ~(1 << MIPS_PWCTL_PWEN_SHIFT));
349
350 return 1;
351}
352
353__setup("nohtw", htw_disable);
354
Markos Chandras97f4ad22014-08-29 09:37:26 +0100355static int mips_ftlb_disabled;
356static int mips_has_ftlb_configured;
357
Paul Burtonebd0e0f2016-08-19 18:18:27 +0100358enum ftlb_flags {
359 FTLB_EN = 1 << 0,
360 FTLB_SET_PROB = 1 << 1,
361};
362
363static int set_ftlb_enable(struct cpuinfo_mips *c, enum ftlb_flags flags);
Markos Chandras97f4ad22014-08-29 09:37:26 +0100364
365static int __init ftlb_disable(char *s)
366{
367 unsigned int config4, mmuextdef;
368
369 /*
370 * If the core hasn't done any FTLB configuration, there is nothing
371 * for us to do here.
372 */
373 if (!mips_has_ftlb_configured)
374 return 1;
375
376 /* Disable it in the boot cpu */
Markos Chandras912708c2015-07-09 10:40:51 +0100377 if (set_ftlb_enable(&cpu_data[0], 0)) {
378 pr_warn("Can't turn FTLB off\n");
379 return 1;
380 }
Markos Chandras97f4ad22014-08-29 09:37:26 +0100381
Markos Chandras97f4ad22014-08-29 09:37:26 +0100382 config4 = read_c0_config4();
383
384 /* Check that FTLB has been disabled */
385 mmuextdef = config4 & MIPS_CONF4_MMUEXTDEF;
386 /* MMUSIZEEXT == VTLB ON, FTLB OFF */
387 if (mmuextdef == MIPS_CONF4_MMUEXTDEF_FTLBSIZEEXT) {
388 /* This should never happen */
389 pr_warn("FTLB could not be disabled!\n");
390 return 1;
391 }
392
393 mips_ftlb_disabled = 1;
394 mips_has_ftlb_configured = 0;
395
396 /*
397 * noftlb is mainly used for debug purposes so print
398 * an informative message instead of using pr_debug()
399 */
400 pr_info("FTLB has been disabled\n");
401
402 /*
403 * Some of these bits are duplicated in the decode_config4.
404 * MIPS_CONF4_MMUEXTDEF_MMUSIZEEXT is the only possible case
405 * once FTLB has been disabled so undo what decode_config4 did.
406 */
407 cpu_data[0].tlbsize -= cpu_data[0].tlbsizeftlbways *
408 cpu_data[0].tlbsizeftlbsets;
409 cpu_data[0].tlbsizeftlbsets = 0;
410 cpu_data[0].tlbsizeftlbways = 0;
411
412 return 1;
413}
414
415__setup("noftlb", ftlb_disable);
416
417
Marc St-Jean9267a302007-06-14 15:55:31 -0600418static inline void check_errata(void)
419{
420 struct cpuinfo_mips *c = &current_cpu_data;
421
Ralf Baechle69f24d12013-09-17 10:25:47 +0200422 switch (current_cpu_type()) {
Marc St-Jean9267a302007-06-14 15:55:31 -0600423 case CPU_34K:
424 /*
425 * Erratum "RPS May Cause Incorrect Instruction Execution"
Ralf Baechleb6336482014-05-23 16:29:44 +0200426 * This code only handles VPE0, any SMP/RTOS code
Marc St-Jean9267a302007-06-14 15:55:31 -0600427 * making use of VPE1 will be responsable for that VPE.
428 */
429 if ((c->processor_id & PRID_REV_MASK) <= PRID_REV_34K_V1_0_2)
430 write_c0_config7(read_c0_config7() | MIPS_CONF7_RPS);
431 break;
432 default:
433 break;
434 }
435}
436
Linus Torvalds1da177e2005-04-16 15:20:36 -0700437void __init check_bugs32(void)
438{
Marc St-Jean9267a302007-06-14 15:55:31 -0600439 check_errata();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700440}
441
442/*
443 * Probe whether cpu has config register by trying to play with
444 * alternate cache bit and see whether it matters.
445 * It's used by cpu_probe to distinguish between R3000A and R3081.
446 */
447static inline int cpu_has_confreg(void)
448{
449#ifdef CONFIG_CPU_R3000
450 extern unsigned long r3k_cache_size(unsigned long);
451 unsigned long size1, size2;
452 unsigned long cfg = read_c0_conf();
453
454 size1 = r3k_cache_size(ST0_ISC);
455 write_c0_conf(cfg ^ R30XX_CONF_AC);
456 size2 = r3k_cache_size(ST0_ISC);
457 write_c0_conf(cfg);
458 return size1 != size2;
459#else
460 return 0;
461#endif
462}
463
Robert Millanc094c992011-04-18 11:37:55 -0700464static inline void set_elf_platform(int cpu, const char *plat)
465{
466 if (cpu == 0)
467 __elf_platform = plat;
468}
469
Guenter Roeck91dfc422010-02-02 08:52:20 -0800470static inline void cpu_probe_vmbits(struct cpuinfo_mips *c)
471{
472#ifdef __NEED_VMBITS_PROBE
David Daney5b7efa82010-02-08 12:27:00 -0800473 write_c0_entryhi(0x3fffffffffffe000ULL);
Guenter Roeck91dfc422010-02-02 08:52:20 -0800474 back_to_back_c0_hazard();
David Daney5b7efa82010-02-08 12:27:00 -0800475 c->vmbits = fls64(read_c0_entryhi() & 0x3fffffffffffe000ULL);
Guenter Roeck91dfc422010-02-02 08:52:20 -0800476#endif
477}
478
Paul Gortmaker078a55f2013-06-18 13:38:59 +0000479static void set_isa(struct cpuinfo_mips *c, unsigned int isa)
Steven J. Hilla96102b2012-12-07 04:31:36 +0000480{
481 switch (isa) {
482 case MIPS_CPU_ISA_M64R2:
483 c->isa_level |= MIPS_CPU_ISA_M32R2 | MIPS_CPU_ISA_M64R2;
484 case MIPS_CPU_ISA_M64R1:
485 c->isa_level |= MIPS_CPU_ISA_M32R1 | MIPS_CPU_ISA_M64R1;
486 case MIPS_CPU_ISA_V:
487 c->isa_level |= MIPS_CPU_ISA_V;
488 case MIPS_CPU_ISA_IV:
489 c->isa_level |= MIPS_CPU_ISA_IV;
490 case MIPS_CPU_ISA_III:
Ralf Baechle1990e542013-06-26 17:06:34 +0200491 c->isa_level |= MIPS_CPU_ISA_II | MIPS_CPU_ISA_III;
Steven J. Hilla96102b2012-12-07 04:31:36 +0000492 break;
493
Leonid Yegoshin8b8aa632014-11-13 13:51:51 +0000494 /* R6 incompatible with everything else */
495 case MIPS_CPU_ISA_M64R6:
496 c->isa_level |= MIPS_CPU_ISA_M32R6 | MIPS_CPU_ISA_M64R6;
497 case MIPS_CPU_ISA_M32R6:
498 c->isa_level |= MIPS_CPU_ISA_M32R6;
499 /* Break here so we don't add incompatible ISAs */
500 break;
Steven J. Hilla96102b2012-12-07 04:31:36 +0000501 case MIPS_CPU_ISA_M32R2:
502 c->isa_level |= MIPS_CPU_ISA_M32R2;
503 case MIPS_CPU_ISA_M32R1:
504 c->isa_level |= MIPS_CPU_ISA_M32R1;
505 case MIPS_CPU_ISA_II:
506 c->isa_level |= MIPS_CPU_ISA_II;
Steven J. Hilla96102b2012-12-07 04:31:36 +0000507 break;
508 }
509}
510
Paul Gortmaker078a55f2013-06-18 13:38:59 +0000511static char unknown_isa[] = KERN_ERR \
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100512 "Unsupported ISA type, c0.config0: %d.";
513
Markos Chandrascf0a8aa2014-11-10 12:25:34 +0000514static unsigned int calculate_ftlb_probability(struct cpuinfo_mips *c)
515{
516
517 unsigned int probability = c->tlbsize / c->tlbsizevtlb;
518
519 /*
520 * 0 = All TLBWR instructions go to FTLB
521 * 1 = 15:1: For every 16 TBLWR instructions, 15 go to the
522 * FTLB and 1 goes to the VTLB.
523 * 2 = 7:1: As above with 7:1 ratio.
524 * 3 = 3:1: As above with 3:1 ratio.
525 *
526 * Use the linear midpoint as the probability threshold.
527 */
528 if (probability >= 12)
529 return 1;
530 else if (probability >= 6)
531 return 2;
532 else
533 /*
534 * So FTLB is less than 4 times bigger than VTLB.
535 * A 3:1 ratio can still be useful though.
536 */
537 return 3;
538}
539
Paul Burtonebd0e0f2016-08-19 18:18:27 +0100540static int set_ftlb_enable(struct cpuinfo_mips *c, enum ftlb_flags flags)
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000541{
Markos Chandras20a7f7e2015-07-09 10:40:53 +0100542 unsigned int config;
James Hogand83b0e82014-01-22 16:19:40 +0000543
544 /* It's implementation dependent how the FTLB can be enabled */
545 switch (c->cputype) {
546 case CPU_PROAPTIV:
547 case CPU_P5600:
Paul Burton1091bfa2016-02-03 03:26:38 +0000548 case CPU_P6600:
James Hogand83b0e82014-01-22 16:19:40 +0000549 /* proAptiv & related cores use Config6 to enable the FTLB */
Markos Chandras20a7f7e2015-07-09 10:40:53 +0100550 config = read_c0_config6();
Paul Burtonebd0e0f2016-08-19 18:18:27 +0100551
552 if (flags & FTLB_EN)
553 config |= MIPS_CONF6_FTLBEN;
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000554 else
Paul Burtonebd0e0f2016-08-19 18:18:27 +0100555 config &= ~MIPS_CONF6_FTLBEN;
556
557 if (flags & FTLB_SET_PROB) {
558 config &= ~(3 << MIPS_CONF6_FTLBP_SHIFT);
559 config |= calculate_ftlb_probability(c)
560 << MIPS_CONF6_FTLBP_SHIFT;
561 }
562
563 write_c0_config6(config);
Paul Burton67acd8d2016-08-19 18:18:28 +0100564 back_to_back_c0_hazard();
Markos Chandras20a7f7e2015-07-09 10:40:53 +0100565 break;
566 case CPU_I6400:
Paul Burton859aeb12017-06-02 12:39:04 -0700567 case CPU_I6500:
Paul Burton72c70f02016-08-19 18:18:26 +0100568 /* There's no way to disable the FTLB */
Paul Burtonebd0e0f2016-08-19 18:18:27 +0100569 if (!(flags & FTLB_EN))
570 return 1;
571 return 0;
Huacai Chenb2edcfc2016-03-03 09:45:09 +0800572 case CPU_LOONGSON3:
Huacai Chen06e48142016-03-03 09:45:11 +0800573 /* Flush ITLB, DTLB, VTLB and FTLB */
574 write_c0_diag(LOONGSON_DIAG_ITLB | LOONGSON_DIAG_DTLB |
575 LOONGSON_DIAG_VTLB | LOONGSON_DIAG_FTLB);
Huacai Chenb2edcfc2016-03-03 09:45:09 +0800576 /* Loongson-3 cores use Config6 to enable the FTLB */
577 config = read_c0_config6();
Paul Burtonebd0e0f2016-08-19 18:18:27 +0100578 if (flags & FTLB_EN)
Huacai Chenb2edcfc2016-03-03 09:45:09 +0800579 /* Enable FTLB */
580 write_c0_config6(config & ~MIPS_CONF6_FTLBDIS);
581 else
582 /* Disable FTLB */
583 write_c0_config6(config | MIPS_CONF6_FTLBDIS);
584 break;
Markos Chandras912708c2015-07-09 10:40:51 +0100585 default:
586 return 1;
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000587 }
Markos Chandras912708c2015-07-09 10:40:51 +0100588
589 return 0;
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000590}
591
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100592static inline unsigned int decode_config0(struct cpuinfo_mips *c)
593{
594 unsigned int config0;
James Hogan2f6f3132015-09-17 17:49:20 +0100595 int isa, mt;
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100596
597 config0 = read_c0_config();
598
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000599 /*
600 * Look for Standard TLB or Dual VTLB and FTLB
601 */
James Hogan2f6f3132015-09-17 17:49:20 +0100602 mt = config0 & MIPS_CONF_MT;
603 if (mt == MIPS_CONF_MT_TLB)
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100604 c->options |= MIPS_CPU_TLB;
James Hogan2f6f3132015-09-17 17:49:20 +0100605 else if (mt == MIPS_CONF_MT_FTLB)
606 c->options |= MIPS_CPU_TLB | MIPS_CPU_FTLB;
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000607
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100608 isa = (config0 & MIPS_CONF_AT) >> 13;
609 switch (isa) {
610 case 0:
611 switch ((config0 & MIPS_CONF_AR) >> 10) {
612 case 0:
Steven J. Hilla96102b2012-12-07 04:31:36 +0000613 set_isa(c, MIPS_CPU_ISA_M32R1);
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100614 break;
615 case 1:
Steven J. Hilla96102b2012-12-07 04:31:36 +0000616 set_isa(c, MIPS_CPU_ISA_M32R2);
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100617 break;
Leonid Yegoshin8b8aa632014-11-13 13:51:51 +0000618 case 2:
619 set_isa(c, MIPS_CPU_ISA_M32R6);
620 break;
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100621 default:
622 goto unknown;
623 }
624 break;
625 case 2:
626 switch ((config0 & MIPS_CONF_AR) >> 10) {
627 case 0:
Steven J. Hilla96102b2012-12-07 04:31:36 +0000628 set_isa(c, MIPS_CPU_ISA_M64R1);
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100629 break;
630 case 1:
Steven J. Hilla96102b2012-12-07 04:31:36 +0000631 set_isa(c, MIPS_CPU_ISA_M64R2);
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100632 break;
Leonid Yegoshin8b8aa632014-11-13 13:51:51 +0000633 case 2:
634 set_isa(c, MIPS_CPU_ISA_M64R6);
635 break;
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100636 default:
637 goto unknown;
638 }
639 break;
640 default:
641 goto unknown;
642 }
643
644 return config0 & MIPS_CONF_M;
645
646unknown:
647 panic(unknown_isa, config0);
648}
649
650static inline unsigned int decode_config1(struct cpuinfo_mips *c)
651{
652 unsigned int config1;
653
654 config1 = read_c0_config1();
655
656 if (config1 & MIPS_CONF1_MD)
657 c->ases |= MIPS_ASE_MDMX;
James Hogan30228c42016-05-11 13:50:53 +0100658 if (config1 & MIPS_CONF1_PC)
659 c->options |= MIPS_CPU_PERF;
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100660 if (config1 & MIPS_CONF1_WR)
661 c->options |= MIPS_CPU_WATCH;
662 if (config1 & MIPS_CONF1_CA)
663 c->ases |= MIPS_ASE_MIPS16;
664 if (config1 & MIPS_CONF1_EP)
665 c->options |= MIPS_CPU_EJTAG;
666 if (config1 & MIPS_CONF1_FP) {
667 c->options |= MIPS_CPU_FPU;
668 c->options |= MIPS_CPU_32FPR;
669 }
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000670 if (cpu_has_tlb) {
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100671 c->tlbsize = ((config1 & MIPS_CONF1_TLBS) >> 25) + 1;
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000672 c->tlbsizevtlb = c->tlbsize;
673 c->tlbsizeftlbsets = 0;
674 }
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100675
676 return config1 & MIPS_CONF_M;
677}
678
679static inline unsigned int decode_config2(struct cpuinfo_mips *c)
680{
681 unsigned int config2;
682
683 config2 = read_c0_config2();
684
685 if (config2 & MIPS_CONF2_SL)
686 c->scache.flags &= ~MIPS_CACHE_NOT_PRESENT;
687
688 return config2 & MIPS_CONF_M;
689}
690
691static inline unsigned int decode_config3(struct cpuinfo_mips *c)
692{
693 unsigned int config3;
694
695 config3 = read_c0_config3();
696
Steven J. Hillb2ab4f02012-09-13 16:47:58 -0500697 if (config3 & MIPS_CONF3_SM) {
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100698 c->ases |= MIPS_ASE_SMARTMIPS;
James Hoganf18bdfa2016-05-11 13:50:52 +0100699 c->options |= MIPS_CPU_RIXI | MIPS_CPU_CTXTC;
Steven J. Hillb2ab4f02012-09-13 16:47:58 -0500700 }
701 if (config3 & MIPS_CONF3_RXI)
702 c->options |= MIPS_CPU_RIXI;
James Hoganf18bdfa2016-05-11 13:50:52 +0100703 if (config3 & MIPS_CONF3_CTXTC)
704 c->options |= MIPS_CPU_CTXTC;
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100705 if (config3 & MIPS_CONF3_DSP)
706 c->ases |= MIPS_ASE_DSP;
Zubair Lutfullah Kakakhelb5a64552016-03-29 15:50:25 +0100707 if (config3 & MIPS_CONF3_DSP2P) {
Steven J. Hillee80f7c72012-08-03 10:26:04 -0500708 c->ases |= MIPS_ASE_DSP2P;
Zubair Lutfullah Kakakhelb5a64552016-03-29 15:50:25 +0100709 if (cpu_has_mips_r6)
710 c->ases |= MIPS_ASE_DSP3;
711 }
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100712 if (config3 & MIPS_CONF3_VINT)
713 c->options |= MIPS_CPU_VINT;
714 if (config3 & MIPS_CONF3_VEIC)
715 c->options |= MIPS_CPU_VEIC;
James Hogan12822572016-04-19 09:24:59 +0100716 if (config3 & MIPS_CONF3_LPA)
717 c->options |= MIPS_CPU_LPA;
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100718 if (config3 & MIPS_CONF3_MT)
719 c->ases |= MIPS_ASE_MIPSMT;
720 if (config3 & MIPS_CONF3_ULRI)
721 c->options |= MIPS_CPU_ULRI;
Steven J. Hillf8fa4812012-12-07 03:51:35 +0000722 if (config3 & MIPS_CONF3_ISA)
723 c->options |= MIPS_CPU_MICROMIPS;
David Daney1e7decd2013-02-16 23:42:43 +0100724 if (config3 & MIPS_CONF3_VZ)
725 c->ases |= MIPS_ASE_VZ;
Steven J. Hill4a0156f2013-11-14 16:12:24 +0000726 if (config3 & MIPS_CONF3_SC)
727 c->options |= MIPS_CPU_SEGMENTS;
James Hogane06a1542016-05-11 13:50:51 +0100728 if (config3 & MIPS_CONF3_BI)
729 c->options |= MIPS_CPU_BADINSTR;
730 if (config3 & MIPS_CONF3_BP)
731 c->options |= MIPS_CPU_BADINSTRP;
Paul Burtona5e9a692014-01-27 15:23:10 +0000732 if (config3 & MIPS_CONF3_MSA)
733 c->ases |= MIPS_ASE_MSA;
Paul Burtoncab25bc2015-09-22 12:03:37 -0700734 if (config3 & MIPS_CONF3_PW) {
Markos Chandrased4cbc82015-01-26 13:04:33 +0000735 c->htw_seq = 0;
Markos Chandras3d528b32014-07-14 12:46:13 +0100736 c->options |= MIPS_CPU_HTW;
Markos Chandrased4cbc82015-01-26 13:04:33 +0000737 }
James Hogan9b3274b2015-02-02 11:45:08 +0000738 if (config3 & MIPS_CONF3_CDMM)
739 c->options |= MIPS_CPU_CDMM;
James Hoganaaa7be42015-07-15 16:17:44 +0100740 if (config3 & MIPS_CONF3_SP)
741 c->options |= MIPS_CPU_SP;
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100742
743 return config3 & MIPS_CONF_M;
744}
745
746static inline unsigned int decode_config4(struct cpuinfo_mips *c)
747{
748 unsigned int config4;
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000749 unsigned int newcf4;
750 unsigned int mmuextdef;
751 unsigned int ftlb_page = MIPS_CONF4_FTLBPAGESIZE;
Paul Burton2db003a2016-05-06 14:36:24 +0100752 unsigned long asid_mask;
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100753
754 config4 = read_c0_config4();
755
Leonid Yegoshin1745c1e2013-11-14 16:12:23 +0000756 if (cpu_has_tlb) {
757 if (((config4 & MIPS_CONF4_IE) >> 29) == 2)
758 c->options |= MIPS_CPU_TLBINV;
James Hogan43d104d2015-09-17 17:49:21 +0100759
Markos Chandrase87569c2015-07-09 10:40:52 +0100760 /*
James Hogan43d104d2015-09-17 17:49:21 +0100761 * R6 has dropped the MMUExtDef field from config4.
762 * On R6 the fields always describe the FTLB, and only if it is
763 * present according to Config.MT.
Markos Chandrase87569c2015-07-09 10:40:52 +0100764 */
James Hogan43d104d2015-09-17 17:49:21 +0100765 if (!cpu_has_mips_r6)
766 mmuextdef = config4 & MIPS_CONF4_MMUEXTDEF;
767 else if (cpu_has_ftlb)
Markos Chandrase87569c2015-07-09 10:40:52 +0100768 mmuextdef = MIPS_CONF4_MMUEXTDEF_VTLBSIZEEXT;
769 else
James Hogan43d104d2015-09-17 17:49:21 +0100770 mmuextdef = 0;
Markos Chandrase87569c2015-07-09 10:40:52 +0100771
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000772 switch (mmuextdef) {
773 case MIPS_CONF4_MMUEXTDEF_MMUSIZEEXT:
774 c->tlbsize += (config4 & MIPS_CONF4_MMUSIZEEXT) * 0x40;
775 c->tlbsizevtlb = c->tlbsize;
776 break;
777 case MIPS_CONF4_MMUEXTDEF_VTLBSIZEEXT:
778 c->tlbsizevtlb +=
779 ((config4 & MIPS_CONF4_VTLBSIZEEXT) >>
780 MIPS_CONF4_VTLBSIZEEXT_SHIFT) * 0x40;
781 c->tlbsize = c->tlbsizevtlb;
782 ftlb_page = MIPS_CONF4_VFTLBPAGESIZE;
783 /* fall through */
784 case MIPS_CONF4_MMUEXTDEF_FTLBSIZEEXT:
Markos Chandras97f4ad22014-08-29 09:37:26 +0100785 if (mips_ftlb_disabled)
786 break;
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000787 newcf4 = (config4 & ~ftlb_page) |
788 (page_size_ftlb(mmuextdef) <<
789 MIPS_CONF4_FTLBPAGESIZE_SHIFT);
790 write_c0_config4(newcf4);
791 back_to_back_c0_hazard();
792 config4 = read_c0_config4();
793 if (config4 != newcf4) {
794 pr_err("PAGE_SIZE 0x%lx is not supported by FTLB (config4=0x%x)\n",
795 PAGE_SIZE, config4);
796 /* Switch FTLB off */
797 set_ftlb_enable(c, 0);
Paul Burtonebd0e0f2016-08-19 18:18:27 +0100798 mips_ftlb_disabled = 1;
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000799 break;
800 }
801 c->tlbsizeftlbsets = 1 <<
802 ((config4 & MIPS_CONF4_FTLBSETS) >>
803 MIPS_CONF4_FTLBSETS_SHIFT);
804 c->tlbsizeftlbways = ((config4 & MIPS_CONF4_FTLBWAYS) >>
805 MIPS_CONF4_FTLBWAYS_SHIFT) + 2;
806 c->tlbsize += c->tlbsizeftlbways * c->tlbsizeftlbsets;
Markos Chandras97f4ad22014-08-29 09:37:26 +0100807 mips_has_ftlb_configured = 1;
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000808 break;
809 }
Leonid Yegoshin1745c1e2013-11-14 16:12:23 +0000810 }
811
James Hogan9e575f72016-05-11 15:50:27 +0100812 c->kscratch_mask = (config4 & MIPS_CONF4_KSCREXIST)
813 >> MIPS_CONF4_KSCREXIST_SHIFT;
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100814
Paul Burton2db003a2016-05-06 14:36:24 +0100815 asid_mask = MIPS_ENTRYHI_ASID;
816 if (config4 & MIPS_CONF4_AE)
817 asid_mask |= MIPS_ENTRYHI_ASIDX;
818 set_cpu_asid_mask(c, asid_mask);
819
820 /*
821 * Warn if the computed ASID mask doesn't match the mask the kernel
822 * is built for. This may indicate either a serious problem or an
823 * easy optimisation opportunity, but either way should be addressed.
824 */
825 WARN_ON(asid_mask != cpu_asid_mask(c));
826
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100827 return config4 & MIPS_CONF_M;
828}
829
Ralf Baechle8b8a76342013-09-19 11:15:49 +0200830static inline unsigned int decode_config5(struct cpuinfo_mips *c)
831{
832 unsigned int config5;
833
834 config5 = read_c0_config5();
Paul Burtond175ed22014-09-11 08:30:19 +0100835 config5 &= ~(MIPS_CONF5_UFR | MIPS_CONF5_UFE);
Ralf Baechle8b8a76342013-09-19 11:15:49 +0200836 write_c0_config5(config5);
837
Markos Chandras49016742014-01-09 16:04:51 +0000838 if (config5 & MIPS_CONF5_EVA)
839 c->options |= MIPS_CPU_EVA;
Paul Burton1f6c52f2014-07-14 10:32:14 +0100840 if (config5 & MIPS_CONF5_MRP)
841 c->options |= MIPS_CPU_MAAR;
Markos Chandras5aed9da2014-12-02 09:46:19 +0000842 if (config5 & MIPS_CONF5_LLB)
843 c->options |= MIPS_CPU_RW_LLB;
Steven J. Hillc5b36782015-02-26 18:16:38 -0600844 if (config5 & MIPS_CONF5_MVH)
James Hogan0f2d9882016-05-18 00:08:49 +0100845 c->options |= MIPS_CPU_MVH;
Paul Burtonf270d882016-02-03 03:15:21 +0000846 if (cpu_has_mips_r6 && (config5 & MIPS_CONF5_VP))
847 c->options |= MIPS_CPU_VP;
Maciej W. Rozycki8d1630f2017-05-23 13:37:05 +0100848 if (config5 & MIPS_CONF5_CA2)
849 c->ases |= MIPS_ASE_MIPS16E2;
Markos Chandras49016742014-01-09 16:04:51 +0000850
Marcin Nowakowski256211f2018-02-09 22:11:05 +0000851 if (config5 & MIPS_CONF5_CRCP)
852 elf_hwcap |= HWCAP_MIPS_CRC32;
853
Ralf Baechle8b8a76342013-09-19 11:15:49 +0200854 return config5 & MIPS_CONF_M;
855}
856
Paul Gortmaker078a55f2013-06-18 13:38:59 +0000857static void decode_configs(struct cpuinfo_mips *c)
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100858{
859 int ok;
860
861 /* MIPS32 or MIPS64 compliant CPU. */
862 c->options = MIPS_CPU_4KEX | MIPS_CPU_4K_CACHE | MIPS_CPU_COUNTER |
863 MIPS_CPU_DIVEC | MIPS_CPU_LLSC | MIPS_CPU_MCHECK;
864
865 c->scache.flags = MIPS_CACHE_NOT_PRESENT;
866
Markos Chandras97f4ad22014-08-29 09:37:26 +0100867 /* Enable FTLB if present and not disabled */
Paul Burtonebd0e0f2016-08-19 18:18:27 +0100868 set_ftlb_enable(c, mips_ftlb_disabled ? 0 : FTLB_EN);
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +0000869
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100870 ok = decode_config0(c); /* Read Config registers. */
Ralf Baechle70342282013-01-22 12:59:30 +0100871 BUG_ON(!ok); /* Arch spec violation! */
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100872 if (ok)
873 ok = decode_config1(c);
874 if (ok)
875 ok = decode_config2(c);
876 if (ok)
877 ok = decode_config3(c);
878 if (ok)
879 ok = decode_config4(c);
Ralf Baechle8b8a76342013-09-19 11:15:49 +0200880 if (ok)
881 ok = decode_config5(c);
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100882
James Hogan37fb60f2016-05-11 13:50:50 +0100883 /* Probe the EBase.WG bit */
884 if (cpu_has_mips_r2_r6) {
885 u64 ebase;
886 unsigned int status;
887
888 /* {read,write}_c0_ebase_64() may be UNDEFINED prior to r6 */
889 ebase = cpu_has_mips64r6 ? read_c0_ebase_64()
890 : (s32)read_c0_ebase();
891 if (ebase & MIPS_EBASE_WG) {
892 /* WG bit already set, we can avoid the clumsy probe */
893 c->options |= MIPS_CPU_EBASE_WG;
894 } else {
895 /* Its UNDEFINED to change EBase while BEV=0 */
896 status = read_c0_status();
897 write_c0_status(status | ST0_BEV);
898 irq_enable_hazard();
899 /*
900 * On pre-r6 cores, this may well clobber the upper bits
901 * of EBase. This is hard to avoid without potentially
902 * hitting UNDEFINED dm*c0 behaviour if EBase is 32-bit.
903 */
904 if (cpu_has_mips64r6)
905 write_c0_ebase_64(ebase | MIPS_EBASE_WG);
906 else
907 write_c0_ebase(ebase | MIPS_EBASE_WG);
908 back_to_back_c0_hazard();
909 /* Restore BEV */
910 write_c0_status(status);
911 if (read_c0_ebase() & MIPS_EBASE_WG) {
912 c->options |= MIPS_CPU_EBASE_WG;
913 write_c0_ebase(ebase);
914 }
915 }
916 }
917
Paul Burtonebd0e0f2016-08-19 18:18:27 +0100918 /* configure the FTLB write probability */
919 set_ftlb_enable(c, (mips_ftlb_disabled ? 0 : FTLB_EN) | FTLB_SET_PROB);
920
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100921 mips_probe_watch_registers(c);
922
Paul Burton0ee958e2014-01-15 10:31:53 +0000923#ifndef CONFIG_MIPS_CPS
Leonid Yegoshin8b8aa632014-11-13 13:51:51 +0000924 if (cpu_has_mips_r2_r6) {
Paul Burtonf875a8322017-08-12 19:49:35 -0700925 unsigned int core;
926
927 core = get_ebase_cpunum();
Paul Burton30ee6152014-03-27 10:57:30 +0000928 if (cpu_has_mipsmt)
Paul Burtonf875a8322017-08-12 19:49:35 -0700929 core >>= fls(core_nvpes()) - 1;
930 cpu_set_core(c, core);
Paul Burton30ee6152014-03-27 10:57:30 +0000931 }
Paul Burton0ee958e2014-01-15 10:31:53 +0000932#endif
Kelvin Cheung2fa36392012-06-20 20:05:32 +0100933}
934
James Hogan6ad816e2016-05-11 15:50:30 +0100935/*
936 * Probe for certain guest capabilities by writing config bits and reading back.
937 * Finally write back the original value.
938 */
939#define probe_gc0_config(name, maxconf, bits) \
940do { \
941 unsigned int tmp; \
942 tmp = read_gc0_##name(); \
943 write_gc0_##name(tmp | (bits)); \
944 back_to_back_c0_hazard(); \
945 maxconf = read_gc0_##name(); \
946 write_gc0_##name(tmp); \
947} while (0)
948
949/*
950 * Probe for dynamic guest capabilities by changing certain config bits and
951 * reading back to see if they change. Finally write back the original value.
952 */
953#define probe_gc0_config_dyn(name, maxconf, dynconf, bits) \
954do { \
955 maxconf = read_gc0_##name(); \
956 write_gc0_##name(maxconf ^ (bits)); \
957 back_to_back_c0_hazard(); \
958 dynconf = maxconf ^ read_gc0_##name(); \
959 write_gc0_##name(maxconf); \
960 maxconf |= dynconf; \
961} while (0)
962
963static inline unsigned int decode_guest_config0(struct cpuinfo_mips *c)
964{
965 unsigned int config0;
966
967 probe_gc0_config(config, config0, MIPS_CONF_M);
968
969 if (config0 & MIPS_CONF_M)
970 c->guest.conf |= BIT(1);
971 return config0 & MIPS_CONF_M;
972}
973
974static inline unsigned int decode_guest_config1(struct cpuinfo_mips *c)
975{
976 unsigned int config1, config1_dyn;
977
978 probe_gc0_config_dyn(config1, config1, config1_dyn,
979 MIPS_CONF_M | MIPS_CONF1_PC | MIPS_CONF1_WR |
980 MIPS_CONF1_FP);
981
982 if (config1 & MIPS_CONF1_FP)
983 c->guest.options |= MIPS_CPU_FPU;
984 if (config1_dyn & MIPS_CONF1_FP)
985 c->guest.options_dyn |= MIPS_CPU_FPU;
986
987 if (config1 & MIPS_CONF1_WR)
988 c->guest.options |= MIPS_CPU_WATCH;
989 if (config1_dyn & MIPS_CONF1_WR)
990 c->guest.options_dyn |= MIPS_CPU_WATCH;
991
992 if (config1 & MIPS_CONF1_PC)
993 c->guest.options |= MIPS_CPU_PERF;
994 if (config1_dyn & MIPS_CONF1_PC)
995 c->guest.options_dyn |= MIPS_CPU_PERF;
996
997 if (config1 & MIPS_CONF_M)
998 c->guest.conf |= BIT(2);
999 return config1 & MIPS_CONF_M;
1000}
1001
1002static inline unsigned int decode_guest_config2(struct cpuinfo_mips *c)
1003{
1004 unsigned int config2;
1005
1006 probe_gc0_config(config2, config2, MIPS_CONF_M);
1007
1008 if (config2 & MIPS_CONF_M)
1009 c->guest.conf |= BIT(3);
1010 return config2 & MIPS_CONF_M;
1011}
1012
1013static inline unsigned int decode_guest_config3(struct cpuinfo_mips *c)
1014{
1015 unsigned int config3, config3_dyn;
1016
1017 probe_gc0_config_dyn(config3, config3, config3_dyn,
James Hogana7c7ad62017-03-14 10:15:10 +00001018 MIPS_CONF_M | MIPS_CONF3_MSA | MIPS_CONF3_ULRI |
1019 MIPS_CONF3_CTXTC);
James Hogan6ad816e2016-05-11 15:50:30 +01001020
1021 if (config3 & MIPS_CONF3_CTXTC)
1022 c->guest.options |= MIPS_CPU_CTXTC;
1023 if (config3_dyn & MIPS_CONF3_CTXTC)
1024 c->guest.options_dyn |= MIPS_CPU_CTXTC;
1025
1026 if (config3 & MIPS_CONF3_PW)
1027 c->guest.options |= MIPS_CPU_HTW;
1028
James Hogana7c7ad62017-03-14 10:15:10 +00001029 if (config3 & MIPS_CONF3_ULRI)
1030 c->guest.options |= MIPS_CPU_ULRI;
1031
James Hogan6ad816e2016-05-11 15:50:30 +01001032 if (config3 & MIPS_CONF3_SC)
1033 c->guest.options |= MIPS_CPU_SEGMENTS;
1034
1035 if (config3 & MIPS_CONF3_BI)
1036 c->guest.options |= MIPS_CPU_BADINSTR;
1037 if (config3 & MIPS_CONF3_BP)
1038 c->guest.options |= MIPS_CPU_BADINSTRP;
1039
1040 if (config3 & MIPS_CONF3_MSA)
1041 c->guest.ases |= MIPS_ASE_MSA;
1042 if (config3_dyn & MIPS_CONF3_MSA)
1043 c->guest.ases_dyn |= MIPS_ASE_MSA;
1044
1045 if (config3 & MIPS_CONF_M)
1046 c->guest.conf |= BIT(4);
1047 return config3 & MIPS_CONF_M;
1048}
1049
1050static inline unsigned int decode_guest_config4(struct cpuinfo_mips *c)
1051{
1052 unsigned int config4;
1053
1054 probe_gc0_config(config4, config4,
1055 MIPS_CONF_M | MIPS_CONF4_KSCREXIST);
1056
1057 c->guest.kscratch_mask = (config4 & MIPS_CONF4_KSCREXIST)
1058 >> MIPS_CONF4_KSCREXIST_SHIFT;
1059
1060 if (config4 & MIPS_CONF_M)
1061 c->guest.conf |= BIT(5);
1062 return config4 & MIPS_CONF_M;
1063}
1064
1065static inline unsigned int decode_guest_config5(struct cpuinfo_mips *c)
1066{
1067 unsigned int config5, config5_dyn;
1068
1069 probe_gc0_config_dyn(config5, config5, config5_dyn,
James Hogana929bdc2017-03-14 10:15:11 +00001070 MIPS_CONF_M | MIPS_CONF5_MVH | MIPS_CONF5_MRP);
James Hogan6ad816e2016-05-11 15:50:30 +01001071
1072 if (config5 & MIPS_CONF5_MRP)
1073 c->guest.options |= MIPS_CPU_MAAR;
1074 if (config5_dyn & MIPS_CONF5_MRP)
1075 c->guest.options_dyn |= MIPS_CPU_MAAR;
1076
1077 if (config5 & MIPS_CONF5_LLB)
1078 c->guest.options |= MIPS_CPU_RW_LLB;
1079
James Hogana929bdc2017-03-14 10:15:11 +00001080 if (config5 & MIPS_CONF5_MVH)
1081 c->guest.options |= MIPS_CPU_MVH;
1082
James Hogan6ad816e2016-05-11 15:50:30 +01001083 if (config5 & MIPS_CONF_M)
1084 c->guest.conf |= BIT(6);
1085 return config5 & MIPS_CONF_M;
1086}
1087
1088static inline void decode_guest_configs(struct cpuinfo_mips *c)
1089{
1090 unsigned int ok;
1091
1092 ok = decode_guest_config0(c);
1093 if (ok)
1094 ok = decode_guest_config1(c);
1095 if (ok)
1096 ok = decode_guest_config2(c);
1097 if (ok)
1098 ok = decode_guest_config3(c);
1099 if (ok)
1100 ok = decode_guest_config4(c);
1101 if (ok)
1102 decode_guest_config5(c);
1103}
1104
1105static inline void cpu_probe_guestctl0(struct cpuinfo_mips *c)
1106{
1107 unsigned int guestctl0, temp;
1108
1109 guestctl0 = read_c0_guestctl0();
1110
1111 if (guestctl0 & MIPS_GCTL0_G0E)
1112 c->options |= MIPS_CPU_GUESTCTL0EXT;
1113 if (guestctl0 & MIPS_GCTL0_G1)
1114 c->options |= MIPS_CPU_GUESTCTL1;
1115 if (guestctl0 & MIPS_GCTL0_G2)
1116 c->options |= MIPS_CPU_GUESTCTL2;
1117 if (!(guestctl0 & MIPS_GCTL0_RAD)) {
1118 c->options |= MIPS_CPU_GUESTID;
1119
1120 /*
1121 * Probe for Direct Root to Guest (DRG). Set GuestCtl1.RID = 0
1122 * first, otherwise all data accesses will be fully virtualised
1123 * as if they were performed by guest mode.
1124 */
1125 write_c0_guestctl1(0);
1126 tlbw_use_hazard();
1127
1128 write_c0_guestctl0(guestctl0 | MIPS_GCTL0_DRG);
1129 back_to_back_c0_hazard();
1130 temp = read_c0_guestctl0();
1131
1132 if (temp & MIPS_GCTL0_DRG) {
1133 write_c0_guestctl0(guestctl0);
1134 c->options |= MIPS_CPU_DRG;
1135 }
1136 }
1137}
1138
1139static inline void cpu_probe_guestctl1(struct cpuinfo_mips *c)
1140{
1141 if (cpu_has_guestid) {
1142 /* determine the number of bits of GuestID available */
1143 write_c0_guestctl1(MIPS_GCTL1_ID);
1144 back_to_back_c0_hazard();
1145 c->guestid_mask = (read_c0_guestctl1() & MIPS_GCTL1_ID)
1146 >> MIPS_GCTL1_ID_SHIFT;
1147 write_c0_guestctl1(0);
1148 }
1149}
1150
1151static inline void cpu_probe_gtoffset(struct cpuinfo_mips *c)
1152{
1153 /* determine the number of bits of GTOffset available */
1154 write_c0_gtoffset(0xffffffff);
1155 back_to_back_c0_hazard();
1156 c->gtoffset_mask = read_c0_gtoffset();
1157 write_c0_gtoffset(0);
1158}
1159
1160static inline void cpu_probe_vz(struct cpuinfo_mips *c)
1161{
1162 cpu_probe_guestctl0(c);
1163 if (cpu_has_guestctl1)
1164 cpu_probe_guestctl1(c);
1165
1166 cpu_probe_gtoffset(c);
1167
1168 decode_guest_configs(c);
1169}
1170
Ralf Baechle02cf2112005-10-01 13:06:32 +01001171#define R4K_OPTS (MIPS_CPU_TLB | MIPS_CPU_4KEX | MIPS_CPU_4K_CACHE \
Linus Torvalds1da177e2005-04-16 15:20:36 -07001172 | MIPS_CPU_COUNTER)
1173
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001174static inline void cpu_probe_legacy(struct cpuinfo_mips *c, unsigned int cpu)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001175{
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001176 switch (c->processor_id & PRID_IMP_MASK) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001177 case PRID_IMP_R2000:
1178 c->cputype = CPU_R2000;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001179 __cpu_name[cpu] = "R2000";
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001180 c->fpu_msk31 |= FPU_CSR_CONDX | FPU_CSR_FS;
Ralf Baechle02cf2112005-10-01 13:06:32 +01001181 c->options = MIPS_CPU_TLB | MIPS_CPU_3K_CACHE |
Steven J. Hill03751e72012-05-10 23:21:18 -05001182 MIPS_CPU_NOFPUEX;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001183 if (__cpu_has_fpu())
1184 c->options |= MIPS_CPU_FPU;
1185 c->tlbsize = 64;
1186 break;
1187 case PRID_IMP_R3000:
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001188 if ((c->processor_id & PRID_REV_MASK) == PRID_REV_R3000A) {
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001189 if (cpu_has_confreg()) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001190 c->cputype = CPU_R3081E;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001191 __cpu_name[cpu] = "R3081";
1192 } else {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001193 c->cputype = CPU_R3000A;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001194 __cpu_name[cpu] = "R3000A";
1195 }
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001196 } else {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001197 c->cputype = CPU_R3000;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001198 __cpu_name[cpu] = "R3000";
1199 }
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001200 c->fpu_msk31 |= FPU_CSR_CONDX | FPU_CSR_FS;
Ralf Baechle02cf2112005-10-01 13:06:32 +01001201 c->options = MIPS_CPU_TLB | MIPS_CPU_3K_CACHE |
Steven J. Hill03751e72012-05-10 23:21:18 -05001202 MIPS_CPU_NOFPUEX;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001203 if (__cpu_has_fpu())
1204 c->options |= MIPS_CPU_FPU;
1205 c->tlbsize = 64;
1206 break;
1207 case PRID_IMP_R4000:
1208 if (read_c0_config() & CONF_SC) {
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001209 if ((c->processor_id & PRID_REV_MASK) >=
1210 PRID_REV_R4400) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001211 c->cputype = CPU_R4400PC;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001212 __cpu_name[cpu] = "R4400PC";
1213 } else {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001214 c->cputype = CPU_R4000PC;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001215 __cpu_name[cpu] = "R4000PC";
1216 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001217 } else {
Maciej W. Rozycki7f177a52013-09-23 14:01:53 +01001218 int cca = read_c0_config() & CONF_CM_CMASK;
1219 int mc;
1220
1221 /*
1222 * SC and MC versions can't be reliably told apart,
1223 * but only the latter support coherent caching
1224 * modes so assume the firmware has set the KSEG0
1225 * coherency attribute reasonably (if uncached, we
1226 * assume SC).
1227 */
1228 switch (cca) {
1229 case CONF_CM_CACHABLE_CE:
1230 case CONF_CM_CACHABLE_COW:
1231 case CONF_CM_CACHABLE_CUW:
1232 mc = 1;
1233 break;
1234 default:
1235 mc = 0;
1236 break;
1237 }
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001238 if ((c->processor_id & PRID_REV_MASK) >=
1239 PRID_REV_R4400) {
Maciej W. Rozycki7f177a52013-09-23 14:01:53 +01001240 c->cputype = mc ? CPU_R4400MC : CPU_R4400SC;
1241 __cpu_name[cpu] = mc ? "R4400MC" : "R4400SC";
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001242 } else {
Maciej W. Rozycki7f177a52013-09-23 14:01:53 +01001243 c->cputype = mc ? CPU_R4000MC : CPU_R4000SC;
1244 __cpu_name[cpu] = mc ? "R4000MC" : "R4000SC";
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001245 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001246 }
1247
Steven J. Hilla96102b2012-12-07 04:31:36 +00001248 set_isa(c, MIPS_CPU_ISA_III);
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001249 c->fpu_msk31 |= FPU_CSR_CONDX;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001250 c->options = R4K_OPTS | MIPS_CPU_FPU | MIPS_CPU_32FPR |
Steven J. Hill03751e72012-05-10 23:21:18 -05001251 MIPS_CPU_WATCH | MIPS_CPU_VCE |
1252 MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001253 c->tlbsize = 48;
1254 break;
1255 case PRID_IMP_VR41XX:
Yoichi Yuasa9f91e502013-02-21 15:38:19 +09001256 set_isa(c, MIPS_CPU_ISA_III);
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001257 c->fpu_msk31 |= FPU_CSR_CONDX;
Yoichi Yuasa9f91e502013-02-21 15:38:19 +09001258 c->options = R4K_OPTS;
1259 c->tlbsize = 32;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001260 switch (c->processor_id & 0xf0) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001261 case PRID_REV_VR4111:
1262 c->cputype = CPU_VR4111;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001263 __cpu_name[cpu] = "NEC VR4111";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001264 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001265 case PRID_REV_VR4121:
1266 c->cputype = CPU_VR4121;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001267 __cpu_name[cpu] = "NEC VR4121";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001268 break;
1269 case PRID_REV_VR4122:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001270 if ((c->processor_id & 0xf) < 0x3) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001271 c->cputype = CPU_VR4122;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001272 __cpu_name[cpu] = "NEC VR4122";
1273 } else {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001274 c->cputype = CPU_VR4181A;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001275 __cpu_name[cpu] = "NEC VR4181A";
1276 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001277 break;
1278 case PRID_REV_VR4130:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001279 if ((c->processor_id & 0xf) < 0x4) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001280 c->cputype = CPU_VR4131;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001281 __cpu_name[cpu] = "NEC VR4131";
1282 } else {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001283 c->cputype = CPU_VR4133;
Yoichi Yuasa9f91e502013-02-21 15:38:19 +09001284 c->options |= MIPS_CPU_LLSC;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001285 __cpu_name[cpu] = "NEC VR4133";
1286 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001287 break;
1288 default:
1289 printk(KERN_INFO "Unexpected CPU of NEC VR4100 series\n");
1290 c->cputype = CPU_VR41XX;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001291 __cpu_name[cpu] = "NEC Vr41xx";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001292 break;
1293 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001294 break;
1295 case PRID_IMP_R4300:
1296 c->cputype = CPU_R4300;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001297 __cpu_name[cpu] = "R4300";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001298 set_isa(c, MIPS_CPU_ISA_III);
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001299 c->fpu_msk31 |= FPU_CSR_CONDX;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001300 c->options = R4K_OPTS | MIPS_CPU_FPU | MIPS_CPU_32FPR |
Steven J. Hill03751e72012-05-10 23:21:18 -05001301 MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001302 c->tlbsize = 32;
1303 break;
1304 case PRID_IMP_R4600:
1305 c->cputype = CPU_R4600;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001306 __cpu_name[cpu] = "R4600";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001307 set_isa(c, MIPS_CPU_ISA_III);
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001308 c->fpu_msk31 |= FPU_CSR_CONDX;
Thiemo Seufer075e7502005-07-27 21:48:12 +00001309 c->options = R4K_OPTS | MIPS_CPU_FPU | MIPS_CPU_32FPR |
1310 MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001311 c->tlbsize = 48;
1312 break;
1313 #if 0
Steven J. Hill03751e72012-05-10 23:21:18 -05001314 case PRID_IMP_R4650:
Linus Torvalds1da177e2005-04-16 15:20:36 -07001315 /*
1316 * This processor doesn't have an MMU, so it's not
1317 * "real easy" to run Linux on it. It is left purely
1318 * for documentation. Commented out because it shares
1319 * it's c0_prid id number with the TX3900.
1320 */
Ralf Baechlea3dddd52006-03-11 08:18:41 +00001321 c->cputype = CPU_R4650;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001322 __cpu_name[cpu] = "R4650";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001323 set_isa(c, MIPS_CPU_ISA_III);
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001324 c->fpu_msk31 |= FPU_CSR_CONDX;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001325 c->options = R4K_OPTS | MIPS_CPU_FPU | MIPS_CPU_LLSC;
Steven J. Hill03751e72012-05-10 23:21:18 -05001326 c->tlbsize = 48;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001327 break;
1328 #endif
1329 case PRID_IMP_TX39:
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001330 c->fpu_msk31 |= FPU_CSR_CONDX | FPU_CSR_FS;
Ralf Baechle02cf2112005-10-01 13:06:32 +01001331 c->options = MIPS_CPU_TLB | MIPS_CPU_TX39_CACHE;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001332
1333 if ((c->processor_id & 0xf0) == (PRID_REV_TX3927 & 0xf0)) {
1334 c->cputype = CPU_TX3927;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001335 __cpu_name[cpu] = "TX3927";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001336 c->tlbsize = 64;
1337 } else {
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001338 switch (c->processor_id & PRID_REV_MASK) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001339 case PRID_REV_TX3912:
1340 c->cputype = CPU_TX3912;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001341 __cpu_name[cpu] = "TX3912";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001342 c->tlbsize = 32;
1343 break;
1344 case PRID_REV_TX3922:
1345 c->cputype = CPU_TX3922;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001346 __cpu_name[cpu] = "TX3922";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001347 c->tlbsize = 64;
1348 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001349 }
1350 }
1351 break;
1352 case PRID_IMP_R4700:
1353 c->cputype = CPU_R4700;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001354 __cpu_name[cpu] = "R4700";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001355 set_isa(c, MIPS_CPU_ISA_III);
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001356 c->fpu_msk31 |= FPU_CSR_CONDX;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001357 c->options = R4K_OPTS | MIPS_CPU_FPU | MIPS_CPU_32FPR |
Steven J. Hill03751e72012-05-10 23:21:18 -05001358 MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001359 c->tlbsize = 48;
1360 break;
1361 case PRID_IMP_TX49:
1362 c->cputype = CPU_TX49XX;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001363 __cpu_name[cpu] = "R49XX";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001364 set_isa(c, MIPS_CPU_ISA_III);
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001365 c->fpu_msk31 |= FPU_CSR_CONDX;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001366 c->options = R4K_OPTS | MIPS_CPU_LLSC;
1367 if (!(c->processor_id & 0x08))
1368 c->options |= MIPS_CPU_FPU | MIPS_CPU_32FPR;
1369 c->tlbsize = 48;
1370 break;
1371 case PRID_IMP_R5000:
1372 c->cputype = CPU_R5000;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001373 __cpu_name[cpu] = "R5000";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001374 set_isa(c, MIPS_CPU_ISA_IV);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001375 c->options = R4K_OPTS | MIPS_CPU_FPU | MIPS_CPU_32FPR |
Steven J. Hill03751e72012-05-10 23:21:18 -05001376 MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001377 c->tlbsize = 48;
1378 break;
1379 case PRID_IMP_R5432:
1380 c->cputype = CPU_R5432;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001381 __cpu_name[cpu] = "R5432";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001382 set_isa(c, MIPS_CPU_ISA_IV);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001383 c->options = R4K_OPTS | MIPS_CPU_FPU | MIPS_CPU_32FPR |
Steven J. Hill03751e72012-05-10 23:21:18 -05001384 MIPS_CPU_WATCH | MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001385 c->tlbsize = 48;
1386 break;
1387 case PRID_IMP_R5500:
1388 c->cputype = CPU_R5500;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001389 __cpu_name[cpu] = "R5500";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001390 set_isa(c, MIPS_CPU_ISA_IV);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001391 c->options = R4K_OPTS | MIPS_CPU_FPU | MIPS_CPU_32FPR |
Steven J. Hill03751e72012-05-10 23:21:18 -05001392 MIPS_CPU_WATCH | MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001393 c->tlbsize = 48;
1394 break;
1395 case PRID_IMP_NEVADA:
1396 c->cputype = CPU_NEVADA;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001397 __cpu_name[cpu] = "Nevada";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001398 set_isa(c, MIPS_CPU_ISA_IV);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001399 c->options = R4K_OPTS | MIPS_CPU_FPU | MIPS_CPU_32FPR |
Steven J. Hill03751e72012-05-10 23:21:18 -05001400 MIPS_CPU_DIVEC | MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001401 c->tlbsize = 48;
1402 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001403 case PRID_IMP_RM7000:
1404 c->cputype = CPU_RM7000;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001405 __cpu_name[cpu] = "RM7000";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001406 set_isa(c, MIPS_CPU_ISA_IV);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001407 c->options = R4K_OPTS | MIPS_CPU_FPU | MIPS_CPU_32FPR |
Steven J. Hill03751e72012-05-10 23:21:18 -05001408 MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001409 /*
Ralf Baechle70342282013-01-22 12:59:30 +01001410 * Undocumented RM7000: Bit 29 in the info register of
Linus Torvalds1da177e2005-04-16 15:20:36 -07001411 * the RM7000 v2.0 indicates if the TLB has 48 or 64
1412 * entries.
1413 *
Ralf Baechle70342282013-01-22 12:59:30 +01001414 * 29 1 => 64 entry JTLB
1415 * 0 => 48 entry JTLB
Linus Torvalds1da177e2005-04-16 15:20:36 -07001416 */
1417 c->tlbsize = (read_c0_info() & (1 << 29)) ? 64 : 48;
1418 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001419 case PRID_IMP_R8000:
1420 c->cputype = CPU_R8000;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001421 __cpu_name[cpu] = "RM8000";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001422 set_isa(c, MIPS_CPU_ISA_IV);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001423 c->options = MIPS_CPU_TLB | MIPS_CPU_4KEX |
Steven J. Hill03751e72012-05-10 23:21:18 -05001424 MIPS_CPU_FPU | MIPS_CPU_32FPR |
1425 MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001426 c->tlbsize = 384; /* has weird TLB: 3-way x 128 */
1427 break;
1428 case PRID_IMP_R10000:
1429 c->cputype = CPU_R10000;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001430 __cpu_name[cpu] = "R10000";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001431 set_isa(c, MIPS_CPU_ISA_IV);
Ralf Baechle8b366122005-11-22 17:53:59 +00001432 c->options = MIPS_CPU_TLB | MIPS_CPU_4K_CACHE | MIPS_CPU_4KEX |
Steven J. Hill03751e72012-05-10 23:21:18 -05001433 MIPS_CPU_FPU | MIPS_CPU_32FPR |
Linus Torvalds1da177e2005-04-16 15:20:36 -07001434 MIPS_CPU_COUNTER | MIPS_CPU_WATCH |
Steven J. Hill03751e72012-05-10 23:21:18 -05001435 MIPS_CPU_LLSC;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001436 c->tlbsize = 64;
1437 break;
1438 case PRID_IMP_R12000:
1439 c->cputype = CPU_R12000;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001440 __cpu_name[cpu] = "R12000";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001441 set_isa(c, MIPS_CPU_ISA_IV);
Ralf Baechle8b366122005-11-22 17:53:59 +00001442 c->options = MIPS_CPU_TLB | MIPS_CPU_4K_CACHE | MIPS_CPU_4KEX |
Steven J. Hill03751e72012-05-10 23:21:18 -05001443 MIPS_CPU_FPU | MIPS_CPU_32FPR |
Linus Torvalds1da177e2005-04-16 15:20:36 -07001444 MIPS_CPU_COUNTER | MIPS_CPU_WATCH |
Joshua Kinard8d5ded12015-06-02 18:21:33 -04001445 MIPS_CPU_LLSC | MIPS_CPU_BP_GHIST;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001446 c->tlbsize = 64;
1447 break;
Kumba44d921b2006-05-16 22:23:59 -04001448 case PRID_IMP_R14000:
Joshua Kinard30577392015-01-21 07:59:45 -05001449 if (((c->processor_id >> 4) & 0x0f) > 2) {
1450 c->cputype = CPU_R16000;
1451 __cpu_name[cpu] = "R16000";
1452 } else {
1453 c->cputype = CPU_R14000;
1454 __cpu_name[cpu] = "R14000";
1455 }
Steven J. Hilla96102b2012-12-07 04:31:36 +00001456 set_isa(c, MIPS_CPU_ISA_IV);
Kumba44d921b2006-05-16 22:23:59 -04001457 c->options = MIPS_CPU_TLB | MIPS_CPU_4K_CACHE | MIPS_CPU_4KEX |
Steven J. Hill03751e72012-05-10 23:21:18 -05001458 MIPS_CPU_FPU | MIPS_CPU_32FPR |
Kumba44d921b2006-05-16 22:23:59 -04001459 MIPS_CPU_COUNTER | MIPS_CPU_WATCH |
Joshua Kinard8d5ded12015-06-02 18:21:33 -04001460 MIPS_CPU_LLSC | MIPS_CPU_BP_GHIST;
Kumba44d921b2006-05-16 22:23:59 -04001461 c->tlbsize = 64;
1462 break;
Huacai Chen26859192014-02-16 16:01:18 +08001463 case PRID_IMP_LOONGSON_64: /* Loongson-2/3 */
Robert Millan5aac1e82011-04-16 11:29:29 -07001464 switch (c->processor_id & PRID_REV_MASK) {
1465 case PRID_REV_LOONGSON2E:
Huacai Chenc579d312014-03-21 18:44:00 +08001466 c->cputype = CPU_LOONGSON2;
1467 __cpu_name[cpu] = "ICT Loongson-2";
Robert Millan5aac1e82011-04-16 11:29:29 -07001468 set_elf_platform(cpu, "loongson2e");
Huacai Chen7352c8b2014-11-04 14:13:23 +08001469 set_isa(c, MIPS_CPU_ISA_III);
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001470 c->fpu_msk31 |= FPU_CSR_CONDX;
Robert Millan5aac1e82011-04-16 11:29:29 -07001471 break;
1472 case PRID_REV_LOONGSON2F:
Huacai Chenc579d312014-03-21 18:44:00 +08001473 c->cputype = CPU_LOONGSON2;
1474 __cpu_name[cpu] = "ICT Loongson-2";
Robert Millan5aac1e82011-04-16 11:29:29 -07001475 set_elf_platform(cpu, "loongson2f");
Huacai Chen7352c8b2014-11-04 14:13:23 +08001476 set_isa(c, MIPS_CPU_ISA_III);
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001477 c->fpu_msk31 |= FPU_CSR_CONDX;
Robert Millan5aac1e82011-04-16 11:29:29 -07001478 break;
Huacai Chenb2edcfc2016-03-03 09:45:09 +08001479 case PRID_REV_LOONGSON3A_R1:
Huacai Chenc579d312014-03-21 18:44:00 +08001480 c->cputype = CPU_LOONGSON3;
1481 __cpu_name[cpu] = "ICT Loongson-3";
1482 set_elf_platform(cpu, "loongson3a");
Huacai Chen7352c8b2014-11-04 14:13:23 +08001483 set_isa(c, MIPS_CPU_ISA_M64R1);
Huacai Chenc579d312014-03-21 18:44:00 +08001484 break;
Huacai Chene7841be2014-06-26 11:41:30 +08001485 case PRID_REV_LOONGSON3B_R1:
1486 case PRID_REV_LOONGSON3B_R2:
1487 c->cputype = CPU_LOONGSON3;
1488 __cpu_name[cpu] = "ICT Loongson-3";
1489 set_elf_platform(cpu, "loongson3b");
Huacai Chen7352c8b2014-11-04 14:13:23 +08001490 set_isa(c, MIPS_CPU_ISA_M64R1);
Huacai Chene7841be2014-06-26 11:41:30 +08001491 break;
Robert Millan5aac1e82011-04-16 11:29:29 -07001492 }
1493
Fuxin Zhang2a21c732007-06-06 14:52:43 +08001494 c->options = R4K_OPTS |
1495 MIPS_CPU_FPU | MIPS_CPU_LLSC |
1496 MIPS_CPU_32FPR;
1497 c->tlbsize = 64;
Huacai Chencc94ea32014-11-04 14:13:22 +08001498 c->writecombine = _CACHE_UNCACHED_ACCELERATED;
Fuxin Zhang2a21c732007-06-06 14:52:43 +08001499 break;
Huacai Chen26859192014-02-16 16:01:18 +08001500 case PRID_IMP_LOONGSON_32: /* Loongson-1 */
Kelvin Cheung2fa36392012-06-20 20:05:32 +01001501 decode_configs(c);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001502
Kelvin Cheung2fa36392012-06-20 20:05:32 +01001503 c->cputype = CPU_LOONGSON1;
Ralf Baechleb4672d32005-12-08 14:04:24 +00001504
Kelvin Cheung2fa36392012-06-20 20:05:32 +01001505 switch (c->processor_id & PRID_REV_MASK) {
1506 case PRID_REV_LOONGSON1B:
1507 __cpu_name[cpu] = "Loongson 1B";
Ralf Baechleb4672d32005-12-08 14:04:24 +00001508 break;
Ralf Baechleb4672d32005-12-08 14:04:24 +00001509 }
Kelvin Cheung2fa36392012-06-20 20:05:32 +01001510
Ralf Baechle41943182005-05-05 16:45:59 +00001511 break;
Ralf Baechle41943182005-05-05 16:45:59 +00001512 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001513}
1514
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001515static inline void cpu_probe_mips(struct cpuinfo_mips *c, unsigned int cpu)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001516{
Markos Chandras4f12b912014-07-18 10:51:32 +01001517 c->writecombine = _CACHE_UNCACHED_ACCELERATED;
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001518 switch (c->processor_id & PRID_IMP_MASK) {
Leonid Yegoshinb2498af2014-11-24 12:59:44 +00001519 case PRID_IMP_QEMU_GENERIC:
1520 c->writecombine = _CACHE_UNCACHED;
1521 c->cputype = CPU_QEMU_GENERIC;
1522 __cpu_name[cpu] = "MIPS GENERIC QEMU";
1523 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001524 case PRID_IMP_4KC:
1525 c->cputype = CPU_4KC;
Markos Chandras4f12b912014-07-18 10:51:32 +01001526 c->writecombine = _CACHE_UNCACHED;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001527 __cpu_name[cpu] = "MIPS 4Kc";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001528 break;
1529 case PRID_IMP_4KEC:
Ralf Baechle2b07bd02005-04-08 20:36:05 +00001530 case PRID_IMP_4KECR2:
1531 c->cputype = CPU_4KEC;
Markos Chandras4f12b912014-07-18 10:51:32 +01001532 c->writecombine = _CACHE_UNCACHED;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001533 __cpu_name[cpu] = "MIPS 4KEc";
Ralf Baechle2b07bd02005-04-08 20:36:05 +00001534 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001535 case PRID_IMP_4KSC:
Ralf Baechle8afcb5d2005-10-04 15:01:26 +01001536 case PRID_IMP_4KSD:
Linus Torvalds1da177e2005-04-16 15:20:36 -07001537 c->cputype = CPU_4KSC;
Markos Chandras4f12b912014-07-18 10:51:32 +01001538 c->writecombine = _CACHE_UNCACHED;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001539 __cpu_name[cpu] = "MIPS 4KSc";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001540 break;
1541 case PRID_IMP_5KC:
1542 c->cputype = CPU_5KC;
Markos Chandras4f12b912014-07-18 10:51:32 +01001543 c->writecombine = _CACHE_UNCACHED;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001544 __cpu_name[cpu] = "MIPS 5Kc";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001545 break;
Leonid Yegoshin78d48032012-07-06 21:56:01 +02001546 case PRID_IMP_5KE:
1547 c->cputype = CPU_5KE;
Markos Chandras4f12b912014-07-18 10:51:32 +01001548 c->writecombine = _CACHE_UNCACHED;
Leonid Yegoshin78d48032012-07-06 21:56:01 +02001549 __cpu_name[cpu] = "MIPS 5KE";
1550 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001551 case PRID_IMP_20KC:
1552 c->cputype = CPU_20KC;
Markos Chandras4f12b912014-07-18 10:51:32 +01001553 c->writecombine = _CACHE_UNCACHED;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001554 __cpu_name[cpu] = "MIPS 20Kc";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001555 break;
1556 case PRID_IMP_24K:
1557 c->cputype = CPU_24K;
Markos Chandras4f12b912014-07-18 10:51:32 +01001558 c->writecombine = _CACHE_UNCACHED;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001559 __cpu_name[cpu] = "MIPS 24Kc";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001560 break;
John Crispin42f3cae2013-01-11 22:44:10 +01001561 case PRID_IMP_24KE:
1562 c->cputype = CPU_24K;
Markos Chandras4f12b912014-07-18 10:51:32 +01001563 c->writecombine = _CACHE_UNCACHED;
John Crispin42f3cae2013-01-11 22:44:10 +01001564 __cpu_name[cpu] = "MIPS 24KEc";
1565 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001566 case PRID_IMP_25KF:
1567 c->cputype = CPU_25KF;
Markos Chandras4f12b912014-07-18 10:51:32 +01001568 c->writecombine = _CACHE_UNCACHED;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001569 __cpu_name[cpu] = "MIPS 25Kc";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001570 break;
Ralf Baechlebbc7f222005-07-12 16:12:05 +00001571 case PRID_IMP_34K:
1572 c->cputype = CPU_34K;
Markos Chandras4f12b912014-07-18 10:51:32 +01001573 c->writecombine = _CACHE_UNCACHED;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001574 __cpu_name[cpu] = "MIPS 34Kc";
Ralf Baechlebbc7f222005-07-12 16:12:05 +00001575 break;
Chris Dearmanc6209532006-05-02 14:08:46 +01001576 case PRID_IMP_74K:
1577 c->cputype = CPU_74K;
Markos Chandras4f12b912014-07-18 10:51:32 +01001578 c->writecombine = _CACHE_UNCACHED;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001579 __cpu_name[cpu] = "MIPS 74Kc";
Chris Dearmanc6209532006-05-02 14:08:46 +01001580 break;
Steven J. Hill113c62d2012-07-06 23:56:00 +02001581 case PRID_IMP_M14KC:
1582 c->cputype = CPU_M14KC;
Markos Chandras4f12b912014-07-18 10:51:32 +01001583 c->writecombine = _CACHE_UNCACHED;
Steven J. Hill113c62d2012-07-06 23:56:00 +02001584 __cpu_name[cpu] = "MIPS M14Kc";
1585 break;
Steven J. Hillf8fa4812012-12-07 03:51:35 +00001586 case PRID_IMP_M14KEC:
1587 c->cputype = CPU_M14KEC;
Markos Chandras4f12b912014-07-18 10:51:32 +01001588 c->writecombine = _CACHE_UNCACHED;
Steven J. Hillf8fa4812012-12-07 03:51:35 +00001589 __cpu_name[cpu] = "MIPS M14KEc";
1590 break;
Ralf Baechle39b8d522008-04-28 17:14:26 +01001591 case PRID_IMP_1004K:
1592 c->cputype = CPU_1004K;
Markos Chandras4f12b912014-07-18 10:51:32 +01001593 c->writecombine = _CACHE_UNCACHED;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001594 __cpu_name[cpu] = "MIPS 1004Kc";
Ralf Baechle39b8d522008-04-28 17:14:26 +01001595 break;
Steven J. Hill006a8512012-06-26 04:11:03 +00001596 case PRID_IMP_1074K:
Steven J. Hill442e14a2014-01-17 15:03:50 -06001597 c->cputype = CPU_1074K;
Markos Chandras4f12b912014-07-18 10:51:32 +01001598 c->writecombine = _CACHE_UNCACHED;
Steven J. Hill006a8512012-06-26 04:11:03 +00001599 __cpu_name[cpu] = "MIPS 1074Kc";
1600 break;
Leonid Yegoshinb5f065e2013-11-20 10:46:02 +00001601 case PRID_IMP_INTERAPTIV_UP:
1602 c->cputype = CPU_INTERAPTIV;
1603 __cpu_name[cpu] = "MIPS interAptiv";
1604 break;
1605 case PRID_IMP_INTERAPTIV_MP:
1606 c->cputype = CPU_INTERAPTIV;
1607 __cpu_name[cpu] = "MIPS interAptiv (multi)";
1608 break;
Leonid Yegoshinb0d4d302013-11-14 16:12:28 +00001609 case PRID_IMP_PROAPTIV_UP:
1610 c->cputype = CPU_PROAPTIV;
1611 __cpu_name[cpu] = "MIPS proAptiv";
1612 break;
1613 case PRID_IMP_PROAPTIV_MP:
1614 c->cputype = CPU_PROAPTIV;
1615 __cpu_name[cpu] = "MIPS proAptiv (multi)";
1616 break;
James Hogan829dcc02014-01-22 16:19:39 +00001617 case PRID_IMP_P5600:
1618 c->cputype = CPU_P5600;
1619 __cpu_name[cpu] = "MIPS P5600";
1620 break;
Paul Burtoneba20a3a2016-02-03 03:26:39 +00001621 case PRID_IMP_P6600:
1622 c->cputype = CPU_P6600;
1623 __cpu_name[cpu] = "MIPS P6600";
1624 break;
Markos Chandrase57f9a22015-07-09 10:40:37 +01001625 case PRID_IMP_I6400:
1626 c->cputype = CPU_I6400;
1627 __cpu_name[cpu] = "MIPS I6400";
1628 break;
Paul Burton859aeb12017-06-02 12:39:04 -07001629 case PRID_IMP_I6500:
1630 c->cputype = CPU_I6500;
1631 __cpu_name[cpu] = "MIPS I6500";
1632 break;
Leonid Yegoshin9943ed92014-03-04 13:34:44 +00001633 case PRID_IMP_M5150:
1634 c->cputype = CPU_M5150;
1635 __cpu_name[cpu] = "MIPS M5150";
1636 break;
Paul Burton43aff742016-02-03 16:17:30 +00001637 case PRID_IMP_M6250:
1638 c->cputype = CPU_M6250;
1639 __cpu_name[cpu] = "MIPS M6250";
1640 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001641 }
Chris Dearman0b6d4972007-09-13 12:32:02 +01001642
Leonid Yegoshin75b5b5e2013-11-14 16:12:31 +00001643 decode_configs(c);
1644
Chris Dearman0b6d4972007-09-13 12:32:02 +01001645 spram_config();
Paul Burtone7bc8552017-06-02 15:38:01 -07001646
1647 switch (__get_cpu_type(c->cputype)) {
1648 case CPU_I6500:
1649 c->options |= MIPS_CPU_SHARED_FTLB_ENTRIES;
1650 /* fall-through */
1651 case CPU_I6400:
1652 c->options |= MIPS_CPU_SHARED_FTLB_RAM;
1653 /* fall-through */
1654 default:
1655 break;
1656 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001657}
1658
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001659static inline void cpu_probe_alchemy(struct cpuinfo_mips *c, unsigned int cpu)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001660{
Ralf Baechle41943182005-05-05 16:45:59 +00001661 decode_configs(c);
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001662 switch (c->processor_id & PRID_IMP_MASK) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001663 case PRID_IMP_AU1_REV1:
1664 case PRID_IMP_AU1_REV2:
Manuel Lauss270717a2009-03-25 17:49:28 +01001665 c->cputype = CPU_ALCHEMY;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001666 switch ((c->processor_id >> 24) & 0xff) {
1667 case 0:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001668 __cpu_name[cpu] = "Au1000";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001669 break;
1670 case 1:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001671 __cpu_name[cpu] = "Au1500";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001672 break;
1673 case 2:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001674 __cpu_name[cpu] = "Au1100";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001675 break;
1676 case 3:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001677 __cpu_name[cpu] = "Au1550";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001678 break;
Pete Popove3ad1c22005-03-01 06:33:16 +00001679 case 4:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001680 __cpu_name[cpu] = "Au1200";
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001681 if ((c->processor_id & PRID_REV_MASK) == 2)
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001682 __cpu_name[cpu] = "Au1250";
Manuel Lauss237cfee2007-12-06 09:07:55 +01001683 break;
1684 case 5:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001685 __cpu_name[cpu] = "Au1210";
Pete Popove3ad1c22005-03-01 06:33:16 +00001686 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001687 default:
Manuel Lauss270717a2009-03-25 17:49:28 +01001688 __cpu_name[cpu] = "Au1xxx";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001689 break;
1690 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07001691 break;
1692 }
1693}
1694
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001695static inline void cpu_probe_sibyte(struct cpuinfo_mips *c, unsigned int cpu)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001696{
Ralf Baechle41943182005-05-05 16:45:59 +00001697 decode_configs(c);
Ralf Baechle02cf2112005-10-01 13:06:32 +01001698
Markos Chandras4f12b912014-07-18 10:51:32 +01001699 c->writecombine = _CACHE_UNCACHED_ACCELERATED;
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001700 switch (c->processor_id & PRID_IMP_MASK) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001701 case PRID_IMP_SB1:
1702 c->cputype = CPU_SB1;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001703 __cpu_name[cpu] = "SiByte SB1";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001704 /* FPU in pass1 is known to have issues. */
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001705 if ((c->processor_id & PRID_REV_MASK) < 0x02)
Ralf Baechle010b8532006-01-29 18:42:08 +00001706 c->options &= ~(MIPS_CPU_FPU | MIPS_CPU_32FPR);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001707 break;
Andrew Isaacson93ce2f522005-10-19 23:56:20 -07001708 case PRID_IMP_SB1A:
1709 c->cputype = CPU_SB1A;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001710 __cpu_name[cpu] = "SiByte SB1A";
Andrew Isaacson93ce2f522005-10-19 23:56:20 -07001711 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001712 }
1713}
1714
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001715static inline void cpu_probe_sandcraft(struct cpuinfo_mips *c, unsigned int cpu)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001716{
Ralf Baechle41943182005-05-05 16:45:59 +00001717 decode_configs(c);
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001718 switch (c->processor_id & PRID_IMP_MASK) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001719 case PRID_IMP_SR71000:
1720 c->cputype = CPU_SR71000;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001721 __cpu_name[cpu] = "Sandcraft SR71000";
Linus Torvalds1da177e2005-04-16 15:20:36 -07001722 c->scache.ways = 8;
1723 c->tlbsize = 64;
1724 break;
1725 }
1726}
1727
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001728static inline void cpu_probe_nxp(struct cpuinfo_mips *c, unsigned int cpu)
Pete Popovbdf21b12005-07-14 17:47:57 +00001729{
1730 decode_configs(c);
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001731 switch (c->processor_id & PRID_IMP_MASK) {
Pete Popovbdf21b12005-07-14 17:47:57 +00001732 case PRID_IMP_PR4450:
1733 c->cputype = CPU_PR4450;
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001734 __cpu_name[cpu] = "Philips PR4450";
Steven J. Hilla96102b2012-12-07 04:31:36 +00001735 set_isa(c, MIPS_CPU_ISA_M32R1);
Pete Popovbdf21b12005-07-14 17:47:57 +00001736 break;
Pete Popovbdf21b12005-07-14 17:47:57 +00001737 }
1738}
1739
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001740static inline void cpu_probe_broadcom(struct cpuinfo_mips *c, unsigned int cpu)
Aurelien Jarno1c0c13e2007-09-25 15:40:12 +02001741{
1742 decode_configs(c);
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001743 switch (c->processor_id & PRID_IMP_MASK) {
Kevin Cernekee190fca32010-11-23 10:26:45 -08001744 case PRID_IMP_BMIPS32_REV4:
1745 case PRID_IMP_BMIPS32_REV8:
Kevin Cernekee602977b2010-10-16 14:22:30 -07001746 c->cputype = CPU_BMIPS32;
1747 __cpu_name[cpu] = "Broadcom BMIPS32";
Kevin Cernekee06785df2011-04-16 11:29:28 -07001748 set_elf_platform(cpu, "bmips32");
Aurelien Jarno1c0c13e2007-09-25 15:40:12 +02001749 break;
Kevin Cernekee602977b2010-10-16 14:22:30 -07001750 case PRID_IMP_BMIPS3300:
1751 case PRID_IMP_BMIPS3300_ALT:
1752 case PRID_IMP_BMIPS3300_BUG:
1753 c->cputype = CPU_BMIPS3300;
1754 __cpu_name[cpu] = "Broadcom BMIPS3300";
Kevin Cernekee06785df2011-04-16 11:29:28 -07001755 set_elf_platform(cpu, "bmips3300");
Aurelien Jarno1c0c13e2007-09-25 15:40:12 +02001756 break;
Kevin Cernekee602977b2010-10-16 14:22:30 -07001757 case PRID_IMP_BMIPS43XX: {
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001758 int rev = c->processor_id & PRID_REV_MASK;
Kevin Cernekee602977b2010-10-16 14:22:30 -07001759
1760 if (rev >= PRID_REV_BMIPS4380_LO &&
1761 rev <= PRID_REV_BMIPS4380_HI) {
1762 c->cputype = CPU_BMIPS4380;
1763 __cpu_name[cpu] = "Broadcom BMIPS4380";
Kevin Cernekee06785df2011-04-16 11:29:28 -07001764 set_elf_platform(cpu, "bmips4380");
Florian Fainellib4720802016-02-09 12:55:53 -08001765 c->options |= MIPS_CPU_RIXI;
Kevin Cernekee602977b2010-10-16 14:22:30 -07001766 } else {
1767 c->cputype = CPU_BMIPS4350;
1768 __cpu_name[cpu] = "Broadcom BMIPS4350";
Kevin Cernekee06785df2011-04-16 11:29:28 -07001769 set_elf_platform(cpu, "bmips4350");
Maxime Bizon0de663e2009-08-18 13:23:37 +01001770 }
1771 break;
Aurelien Jarno1c0c13e2007-09-25 15:40:12 +02001772 }
Kevin Cernekee602977b2010-10-16 14:22:30 -07001773 case PRID_IMP_BMIPS5000:
Kevin Cernekee68e6a782014-10-20 21:28:01 -07001774 case PRID_IMP_BMIPS5200:
Kevin Cernekee602977b2010-10-16 14:22:30 -07001775 c->cputype = CPU_BMIPS5000;
Florian Fainelli37808d62016-04-04 10:55:38 -07001776 if ((c->processor_id & PRID_IMP_MASK) == PRID_IMP_BMIPS5200)
1777 __cpu_name[cpu] = "Broadcom BMIPS5200";
1778 else
1779 __cpu_name[cpu] = "Broadcom BMIPS5000";
Kevin Cernekee06785df2011-04-16 11:29:28 -07001780 set_elf_platform(cpu, "bmips5000");
Florian Fainellib4720802016-02-09 12:55:53 -08001781 c->options |= MIPS_CPU_ULRI | MIPS_CPU_RIXI;
Kevin Cernekee602977b2010-10-16 14:22:30 -07001782 break;
Kevin Cernekee602977b2010-10-16 14:22:30 -07001783 }
Aurelien Jarno1c0c13e2007-09-25 15:40:12 +02001784}
1785
David Daney0dd47812008-12-11 15:33:26 -08001786static inline void cpu_probe_cavium(struct cpuinfo_mips *c, unsigned int cpu)
1787{
1788 decode_configs(c);
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001789 switch (c->processor_id & PRID_IMP_MASK) {
David Daney0dd47812008-12-11 15:33:26 -08001790 case PRID_IMP_CAVIUM_CN38XX:
1791 case PRID_IMP_CAVIUM_CN31XX:
1792 case PRID_IMP_CAVIUM_CN30XX:
David Daney6f329462010-02-10 15:12:48 -08001793 c->cputype = CPU_CAVIUM_OCTEON;
1794 __cpu_name[cpu] = "Cavium Octeon";
1795 goto platform;
David Daney0dd47812008-12-11 15:33:26 -08001796 case PRID_IMP_CAVIUM_CN58XX:
1797 case PRID_IMP_CAVIUM_CN56XX:
1798 case PRID_IMP_CAVIUM_CN50XX:
1799 case PRID_IMP_CAVIUM_CN52XX:
David Daney6f329462010-02-10 15:12:48 -08001800 c->cputype = CPU_CAVIUM_OCTEON_PLUS;
1801 __cpu_name[cpu] = "Cavium Octeon+";
1802platform:
Robert Millanc094c992011-04-18 11:37:55 -07001803 set_elf_platform(cpu, "octeon");
David Daney0dd47812008-12-11 15:33:26 -08001804 break;
David Daneya1431b62011-09-24 02:29:54 +02001805 case PRID_IMP_CAVIUM_CN61XX:
David Daney0e56b382010-10-07 16:03:45 -07001806 case PRID_IMP_CAVIUM_CN63XX:
David Daneya1431b62011-09-24 02:29:54 +02001807 case PRID_IMP_CAVIUM_CN66XX:
1808 case PRID_IMP_CAVIUM_CN68XX:
David Daneyaf04bb82013-07-29 15:07:01 -07001809 case PRID_IMP_CAVIUM_CNF71XX:
David Daney0e56b382010-10-07 16:03:45 -07001810 c->cputype = CPU_CAVIUM_OCTEON2;
1811 __cpu_name[cpu] = "Cavium Octeon II";
Robert Millanc094c992011-04-18 11:37:55 -07001812 set_elf_platform(cpu, "octeon2");
David Daney0e56b382010-10-07 16:03:45 -07001813 break;
David Daneyaf04bb82013-07-29 15:07:01 -07001814 case PRID_IMP_CAVIUM_CN70XX:
David Daneyb8c8f662016-02-01 14:43:41 -08001815 case PRID_IMP_CAVIUM_CN73XX:
1816 case PRID_IMP_CAVIUM_CNF75XX:
David Daneyaf04bb82013-07-29 15:07:01 -07001817 case PRID_IMP_CAVIUM_CN78XX:
1818 c->cputype = CPU_CAVIUM_OCTEON3;
1819 __cpu_name[cpu] = "Cavium Octeon III";
1820 set_elf_platform(cpu, "octeon3");
1821 break;
David Daney0dd47812008-12-11 15:33:26 -08001822 default:
1823 printk(KERN_INFO "Unknown Octeon chip!\n");
1824 c->cputype = CPU_UNKNOWN;
1825 break;
1826 }
1827}
1828
Huacai Chenb2edcfc2016-03-03 09:45:09 +08001829static inline void cpu_probe_loongson(struct cpuinfo_mips *c, unsigned int cpu)
1830{
1831 switch (c->processor_id & PRID_IMP_MASK) {
1832 case PRID_IMP_LOONGSON_64: /* Loongson-2/3 */
1833 switch (c->processor_id & PRID_REV_MASK) {
1834 case PRID_REV_LOONGSON3A_R2:
1835 c->cputype = CPU_LOONGSON3;
1836 __cpu_name[cpu] = "ICT Loongson-3";
1837 set_elf_platform(cpu, "loongson3a");
1838 set_isa(c, MIPS_CPU_ISA_M64R2);
1839 break;
Huacai Chen0a000242017-06-22 23:06:48 +08001840 case PRID_REV_LOONGSON3A_R3:
1841 c->cputype = CPU_LOONGSON3;
1842 __cpu_name[cpu] = "ICT Loongson-3";
1843 set_elf_platform(cpu, "loongson3a");
1844 set_isa(c, MIPS_CPU_ISA_M64R2);
1845 break;
Huacai Chenb2edcfc2016-03-03 09:45:09 +08001846 }
1847
1848 decode_configs(c);
Huacai Chen033cffee2017-03-16 21:00:25 +08001849 c->options |= MIPS_CPU_FTLB | MIPS_CPU_TLBINV | MIPS_CPU_LDPTE;
Huacai Chenb2edcfc2016-03-03 09:45:09 +08001850 c->writecombine = _CACHE_UNCACHED_ACCELERATED;
1851 break;
1852 default:
1853 panic("Unknown Loongson Processor ID!");
1854 break;
1855 }
1856}
1857
Lars-Peter Clausen83ccf692010-07-17 11:07:51 +00001858static inline void cpu_probe_ingenic(struct cpuinfo_mips *c, unsigned int cpu)
1859{
1860 decode_configs(c);
1861 /* JZRISC does not implement the CP0 counter. */
1862 c->options &= ~MIPS_CPU_COUNTER;
Maciej W. Rozycki06947aa2014-04-06 21:31:29 +01001863 BUG_ON(!__builtin_constant_p(cpu_has_counter) || cpu_has_counter);
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001864 switch (c->processor_id & PRID_IMP_MASK) {
Lars-Peter Clausen83ccf692010-07-17 11:07:51 +00001865 case PRID_IMP_JZRISC:
1866 c->cputype = CPU_JZRISC;
Markos Chandras4f12b912014-07-18 10:51:32 +01001867 c->writecombine = _CACHE_UNCACHED_ACCELERATED;
Lars-Peter Clausen83ccf692010-07-17 11:07:51 +00001868 __cpu_name[cpu] = "Ingenic JZRISC";
1869 break;
1870 default:
1871 panic("Unknown Ingenic Processor ID!");
1872 break;
1873 }
1874}
1875
Jayachandran Ca7117c62011-05-11 12:04:58 +05301876static inline void cpu_probe_netlogic(struct cpuinfo_mips *c, int cpu)
1877{
1878 decode_configs(c);
1879
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001880 if ((c->processor_id & PRID_IMP_MASK) == PRID_IMP_NETLOGIC_AU13XX) {
Manuel Lauss809f36c2011-11-01 20:03:30 +01001881 c->cputype = CPU_ALCHEMY;
1882 __cpu_name[cpu] = "Au1300";
1883 /* following stuff is not for Alchemy */
1884 return;
1885 }
1886
Ralf Baechle70342282013-01-22 12:59:30 +01001887 c->options = (MIPS_CPU_TLB |
1888 MIPS_CPU_4KEX |
Jayachandran Ca7117c62011-05-11 12:04:58 +05301889 MIPS_CPU_COUNTER |
Ralf Baechle70342282013-01-22 12:59:30 +01001890 MIPS_CPU_DIVEC |
1891 MIPS_CPU_WATCH |
1892 MIPS_CPU_EJTAG |
Jayachandran Ca7117c62011-05-11 12:04:58 +05301893 MIPS_CPU_LLSC);
1894
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001895 switch (c->processor_id & PRID_IMP_MASK) {
Jayachandran C4ca86a22013-08-11 14:43:54 +05301896 case PRID_IMP_NETLOGIC_XLP2XX:
Jayachandran C8907c552013-12-21 16:52:20 +05301897 case PRID_IMP_NETLOGIC_XLP9XX:
Yonghong Song1c983982014-04-29 20:07:53 +05301898 case PRID_IMP_NETLOGIC_XLP5XX:
Jayachandran C4ca86a22013-08-11 14:43:54 +05301899 c->cputype = CPU_XLP;
1900 __cpu_name[cpu] = "Broadcom XLPII";
1901 break;
1902
Jayachandran C2aa54b22011-11-16 00:21:29 +00001903 case PRID_IMP_NETLOGIC_XLP8XX:
1904 case PRID_IMP_NETLOGIC_XLP3XX:
Jayachandran Ca3d4fb22011-11-16 00:21:20 +00001905 c->cputype = CPU_XLP;
1906 __cpu_name[cpu] = "Netlogic XLP";
1907 break;
1908
Jayachandran Ca7117c62011-05-11 12:04:58 +05301909 case PRID_IMP_NETLOGIC_XLR732:
1910 case PRID_IMP_NETLOGIC_XLR716:
1911 case PRID_IMP_NETLOGIC_XLR532:
1912 case PRID_IMP_NETLOGIC_XLR308:
1913 case PRID_IMP_NETLOGIC_XLR532C:
1914 case PRID_IMP_NETLOGIC_XLR516C:
1915 case PRID_IMP_NETLOGIC_XLR508C:
1916 case PRID_IMP_NETLOGIC_XLR308C:
1917 c->cputype = CPU_XLR;
1918 __cpu_name[cpu] = "Netlogic XLR";
1919 break;
1920
1921 case PRID_IMP_NETLOGIC_XLS608:
1922 case PRID_IMP_NETLOGIC_XLS408:
1923 case PRID_IMP_NETLOGIC_XLS404:
1924 case PRID_IMP_NETLOGIC_XLS208:
1925 case PRID_IMP_NETLOGIC_XLS204:
1926 case PRID_IMP_NETLOGIC_XLS108:
1927 case PRID_IMP_NETLOGIC_XLS104:
1928 case PRID_IMP_NETLOGIC_XLS616B:
1929 case PRID_IMP_NETLOGIC_XLS608B:
1930 case PRID_IMP_NETLOGIC_XLS416B:
1931 case PRID_IMP_NETLOGIC_XLS412B:
1932 case PRID_IMP_NETLOGIC_XLS408B:
1933 case PRID_IMP_NETLOGIC_XLS404B:
1934 c->cputype = CPU_XLR;
1935 __cpu_name[cpu] = "Netlogic XLS";
1936 break;
1937
1938 default:
Jayachandran Ca3d4fb22011-11-16 00:21:20 +00001939 pr_info("Unknown Netlogic chip id [%02x]!\n",
Jayachandran Ca7117c62011-05-11 12:04:58 +05301940 c->processor_id);
1941 c->cputype = CPU_XLR;
1942 break;
1943 }
1944
Jayachandran Ca3d4fb22011-11-16 00:21:20 +00001945 if (c->cputype == CPU_XLP) {
Steven J. Hilla96102b2012-12-07 04:31:36 +00001946 set_isa(c, MIPS_CPU_ISA_M64R2);
Jayachandran Ca3d4fb22011-11-16 00:21:20 +00001947 c->options |= (MIPS_CPU_FPU | MIPS_CPU_ULRI | MIPS_CPU_MCHECK);
1948 /* This will be updated again after all threads are woken up */
1949 c->tlbsize = ((read_c0_config6() >> 16) & 0xffff) + 1;
1950 } else {
Steven J. Hilla96102b2012-12-07 04:31:36 +00001951 set_isa(c, MIPS_CPU_ISA_M64R1);
Jayachandran Ca3d4fb22011-11-16 00:21:20 +00001952 c->tlbsize = ((read_c0_config1() >> 25) & 0x3f) + 1;
1953 }
Jayachandran C7777b932013-06-11 14:41:35 +00001954 c->kscratch_mask = 0xf;
Jayachandran Ca7117c62011-05-11 12:04:58 +05301955}
1956
David Daney949e51b2010-10-14 11:32:33 -07001957#ifdef CONFIG_64BIT
1958/* For use by uaccess.h */
1959u64 __ua_limit;
1960EXPORT_SYMBOL(__ua_limit);
1961#endif
1962
Ralf Baechle9966db252007-10-11 23:46:17 +01001963const char *__cpu_name[NR_CPUS];
David Daney874fd3b2010-01-28 16:52:12 -08001964const char *__elf_platform;
Ralf Baechle9966db252007-10-11 23:46:17 +01001965
Paul Gortmaker078a55f2013-06-18 13:38:59 +00001966void cpu_probe(void)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001967{
1968 struct cpuinfo_mips *c = &current_cpu_data;
Ralf Baechle9966db252007-10-11 23:46:17 +01001969 unsigned int cpu = smp_processor_id();
Linus Torvalds1da177e2005-04-16 15:20:36 -07001970
Marcin Nowakowski05510f22017-03-07 14:19:56 +01001971 /*
1972 * Set a default elf platform, cpu probe may later
1973 * overwrite it with a more precise value
1974 */
1975 set_elf_platform(cpu, "mips");
1976
Ralf Baechle70342282013-01-22 12:59:30 +01001977 c->processor_id = PRID_IMP_UNKNOWN;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001978 c->fpu_id = FPIR_IMP_NONE;
1979 c->cputype = CPU_UNKNOWN;
Markos Chandras4f12b912014-07-18 10:51:32 +01001980 c->writecombine = _CACHE_UNCACHED;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001981
Maciej W. Rozycki9b266162015-04-03 23:27:48 +01001982 c->fpu_csr31 = FPU_CSR_RN;
1983 c->fpu_msk31 = FPU_CSR_RSVD | FPU_CSR_ABS2008 | FPU_CSR_NAN2008;
1984
Linus Torvalds1da177e2005-04-16 15:20:36 -07001985 c->processor_id = read_c0_prid();
Maciej W. Rozycki8ff374b2013-09-17 16:58:10 +01001986 switch (c->processor_id & PRID_COMP_MASK) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001987 case PRID_COMP_LEGACY:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001988 cpu_probe_legacy(c, cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001989 break;
1990 case PRID_COMP_MIPS:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001991 cpu_probe_mips(c, cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001992 break;
1993 case PRID_COMP_ALCHEMY:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001994 cpu_probe_alchemy(c, cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001995 break;
1996 case PRID_COMP_SIBYTE:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00001997 cpu_probe_sibyte(c, cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -07001998 break;
Aurelien Jarno1c0c13e2007-09-25 15:40:12 +02001999 case PRID_COMP_BROADCOM:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00002000 cpu_probe_broadcom(c, cpu);
Aurelien Jarno1c0c13e2007-09-25 15:40:12 +02002001 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002002 case PRID_COMP_SANDCRAFT:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00002003 cpu_probe_sandcraft(c, cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002004 break;
Daniel Lairda92b0582008-03-06 09:07:18 +00002005 case PRID_COMP_NXP:
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00002006 cpu_probe_nxp(c, cpu);
Ralf Baechlea3dddd52006-03-11 08:18:41 +00002007 break;
David Daney0dd47812008-12-11 15:33:26 -08002008 case PRID_COMP_CAVIUM:
2009 cpu_probe_cavium(c, cpu);
2010 break;
Huacai Chenb2edcfc2016-03-03 09:45:09 +08002011 case PRID_COMP_LOONGSON:
2012 cpu_probe_loongson(c, cpu);
2013 break;
Paul Burton252617a2015-05-24 16:11:14 +01002014 case PRID_COMP_INGENIC_D0:
2015 case PRID_COMP_INGENIC_D1:
2016 case PRID_COMP_INGENIC_E1:
Lars-Peter Clausen83ccf692010-07-17 11:07:51 +00002017 cpu_probe_ingenic(c, cpu);
2018 break;
Jayachandran Ca7117c62011-05-11 12:04:58 +05302019 case PRID_COMP_NETLOGIC:
2020 cpu_probe_netlogic(c, cpu);
2021 break;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002022 }
Franck Bui-Huudec8b1c2007-10-08 16:11:51 +02002023
Ralf Baechlecea7e2d2008-10-30 13:38:45 +00002024 BUG_ON(!__cpu_name[cpu]);
2025 BUG_ON(c->cputype == CPU_UNKNOWN);
2026
Franck Bui-Huudec8b1c2007-10-08 16:11:51 +02002027 /*
2028 * Platform code can force the cpu type to optimize code
2029 * generation. In that case be sure the cpu type is correctly
2030 * manually setup otherwise it could trigger some nasty bugs.
2031 */
2032 BUG_ON(current_cpu_type() != c->cputype);
2033
Florian Fainelli2e274762016-02-09 12:55:52 -08002034 if (cpu_has_rixi) {
2035 /* Enable the RIXI exceptions */
2036 set_c0_pagegrain(PG_IEC);
2037 back_to_back_c0_hazard();
2038 /* Verify the IEC bit is set */
2039 if (read_c0_pagegrain() & PG_IEC)
2040 c->options |= MIPS_CPU_RIXIEX;
2041 }
2042
Kevin Cernekee0103d232010-05-02 14:43:52 -07002043 if (mips_fpu_disabled)
2044 c->options &= ~MIPS_CPU_FPU;
2045
2046 if (mips_dsp_disabled)
Steven J. Hillee80f7c72012-08-03 10:26:04 -05002047 c->ases &= ~(MIPS_ASE_DSP | MIPS_ASE_DSP2P);
Kevin Cernekee0103d232010-05-02 14:43:52 -07002048
Markos Chandras3d528b32014-07-14 12:46:13 +01002049 if (mips_htw_disabled) {
2050 c->options &= ~MIPS_CPU_HTW;
2051 write_c0_pwctl(read_c0_pwctl() &
2052 ~(1 << MIPS_PWCTL_PWEN_SHIFT));
2053 }
2054
Maciej W. Rozycki7aecd5ca2015-04-03 23:27:54 +01002055 if (c->options & MIPS_CPU_FPU)
2056 cpu_set_fpu_opts(c);
2057 else
2058 cpu_set_nofpu_opts(c);
Ralf Baechle9966db252007-10-11 23:46:17 +01002059
Joshua Kinard8d5ded12015-06-02 18:21:33 -04002060 if (cpu_has_bp_ghist)
2061 write_c0_r10k_diag(read_c0_r10k_diag() |
2062 R10K_DIAG_E_GHIST);
2063
Leonid Yegoshin8b8aa632014-11-13 13:51:51 +00002064 if (cpu_has_mips_r2_r6) {
Ralf Baechlef6771db2007-11-08 18:02:29 +00002065 c->srsets = ((read_c0_srsctl() >> 26) & 0x0f) + 1;
Al Cooperda4b62c2012-07-13 16:44:51 -04002066 /* R2 has Performance Counter Interrupt indicator */
2067 c->options |= MIPS_CPU_PCI;
2068 }
Ralf Baechlef6771db2007-11-08 18:02:29 +00002069 else
2070 c->srsets = 1;
Guenter Roeck91dfc422010-02-02 08:52:20 -08002071
Paul Burton4c063032015-07-27 12:58:24 -07002072 if (cpu_has_mips_r6)
2073 elf_hwcap |= HWCAP_MIPS_R6;
2074
Paul Burtona8ad1362014-01-28 14:28:43 +00002075 if (cpu_has_msa) {
Paul Burtona5e9a692014-01-27 15:23:10 +00002076 c->msa_id = cpu_get_msa_id();
Paul Burtona8ad1362014-01-28 14:28:43 +00002077 WARN(c->msa_id & MSA_IR_WRPF,
2078 "Vector register partitioning unimplemented!");
Paul Burton3cc9fa72015-07-27 12:58:25 -07002079 elf_hwcap |= HWCAP_MIPS_MSA;
Paul Burtona8ad1362014-01-28 14:28:43 +00002080 }
Paul Burtona5e9a692014-01-27 15:23:10 +00002081
James Hogan6ad816e2016-05-11 15:50:30 +01002082 if (cpu_has_vz)
2083 cpu_probe_vz(c);
2084
Guenter Roeck91dfc422010-02-02 08:52:20 -08002085 cpu_probe_vmbits(c);
David Daney949e51b2010-10-14 11:32:33 -07002086
2087#ifdef CONFIG_64BIT
2088 if (cpu == 0)
2089 __ua_limit = ~((1ull << cpu_vmbits) - 1);
2090#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -07002091}
2092
Paul Gortmaker078a55f2013-06-18 13:38:59 +00002093void cpu_report(void)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002094{
2095 struct cpuinfo_mips *c = &current_cpu_data;
2096
Leonid Yegoshind9f897c2013-10-07 10:43:32 +01002097 pr_info("CPU%d revision is: %08x (%s)\n",
2098 smp_processor_id(), c->processor_id, cpu_name_string());
Linus Torvalds1da177e2005-04-16 15:20:36 -07002099 if (c->options & MIPS_CPU_FPU)
Ralf Baechle9966db252007-10-11 23:46:17 +01002100 printk(KERN_INFO "FPU revision is: %08x\n", c->fpu_id);
Paul Burtona5e9a692014-01-27 15:23:10 +00002101 if (cpu_has_msa)
2102 pr_info("MSA revision is: %08x\n", c->msa_id);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002103}
Paul Burton856fbce2017-08-12 19:49:36 -07002104
Paul Burton56168972017-08-12 19:49:38 -07002105void cpu_set_cluster(struct cpuinfo_mips *cpuinfo, unsigned int cluster)
2106{
2107 /* Ensure the core number fits in the field */
2108 WARN_ON(cluster > (MIPS_GLOBALNUMBER_CLUSTER >>
2109 MIPS_GLOBALNUMBER_CLUSTER_SHF));
2110
2111 cpuinfo->globalnumber &= ~MIPS_GLOBALNUMBER_CLUSTER;
2112 cpuinfo->globalnumber |= cluster << MIPS_GLOBALNUMBER_CLUSTER_SHF;
2113}
2114
Paul Burton856fbce2017-08-12 19:49:36 -07002115void cpu_set_core(struct cpuinfo_mips *cpuinfo, unsigned int core)
2116{
2117 /* Ensure the core number fits in the field */
2118 WARN_ON(core > (MIPS_GLOBALNUMBER_CORE >> MIPS_GLOBALNUMBER_CORE_SHF));
2119
2120 cpuinfo->globalnumber &= ~MIPS_GLOBALNUMBER_CORE;
2121 cpuinfo->globalnumber |= core << MIPS_GLOBALNUMBER_CORE_SHF;
2122}
2123
2124void cpu_set_vpe_id(struct cpuinfo_mips *cpuinfo, unsigned int vpe)
2125{
2126 /* Ensure the VP(E) ID fits in the field */
2127 WARN_ON(vpe > (MIPS_GLOBALNUMBER_VP >> MIPS_GLOBALNUMBER_VP_SHF));
2128
2129 /* Ensure we're not using VP(E)s without support */
2130 WARN_ON(vpe && !IS_ENABLED(CONFIG_MIPS_MT_SMP) &&
2131 !IS_ENABLED(CONFIG_CPU_MIPSR6));
2132
2133 cpuinfo->globalnumber &= ~MIPS_GLOBALNUMBER_VP;
2134 cpuinfo->globalnumber |= vpe << MIPS_GLOBALNUMBER_VP_SHF;
2135}