1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Copied from arch/arm64/kernel/cpufeature.c
4 *
5 * Copyright (C) 2015 ARM Ltd.
6 * Copyright (C) 2017 SiFive
7 */
8
9 #include <linux/acpi.h>
10 #include <linux/bitmap.h>
11 #include <linux/cpu.h>
12 #include <linux/cpuhotplug.h>
13 #include <linux/ctype.h>
14 #include <linux/log2.h>
15 #include <linux/memory.h>
16 #include <linux/module.h>
17 #include <linux/of.h>
18 #include <asm/acpi.h>
19 #include <asm/alternative.h>
20 #include <asm/bugs.h>
21 #include <asm/cacheflush.h>
22 #include <asm/cpufeature.h>
23 #include <asm/hwcap.h>
24 #include <asm/text-patching.h>
25 #include <asm/hwprobe.h>
26 #include <asm/processor.h>
27 #include <asm/sbi.h>
28 #include <asm/vector.h>
29 #include <asm/vendor_extensions.h>
30 #include <asm/vendor_extensions/thead.h>
31 #include <asm/usercfi.h>
32
33 #define NUM_ALPHA_EXTS ('z' - 'a' + 1)
34
35 static bool any_cpu_has_zicboz;
36 static bool any_cpu_has_zicbop;
37 static bool any_cpu_has_zicbom;
38
39 unsigned long elf_hwcap __read_mostly;
40
41 /* Host ISA bitmap */
42 static DECLARE_BITMAP(riscv_isa, RISCV_ISA_EXT_MAX) __read_mostly;
43
44 /* Per-cpu ISA extensions. */
45 struct riscv_isainfo hart_isa[NR_CPUS];
46
47 u32 thead_vlenb_of;
48
49 /**
50 * riscv_isa_extension_base() - Get base extension word
51 *
52 * @isa_bitmap: ISA bitmap to use
53 * Return: base extension word as unsigned long value
54 *
55 * NOTE: If isa_bitmap is NULL then Host ISA bitmap will be used.
56 */
riscv_isa_extension_base(const unsigned long * isa_bitmap)57 unsigned long riscv_isa_extension_base(const unsigned long *isa_bitmap)
58 {
59 return !isa_bitmap ? riscv_isa[0] : isa_bitmap[0];
60 }
61 EXPORT_SYMBOL_GPL(riscv_isa_extension_base);
62
63 /**
64 * __riscv_isa_extension_available() - Check whether given extension
65 * is available or not
66 *
67 * @isa_bitmap: ISA bitmap to use
68 * @bit: bit position of the desired extension
69 * Return: true or false
70 *
71 * NOTE: If isa_bitmap is NULL then Host ISA bitmap will be used.
72 */
__riscv_isa_extension_available(const unsigned long * isa_bitmap,unsigned int bit)73 bool __riscv_isa_extension_available(const unsigned long *isa_bitmap, unsigned int bit)
74 {
75 const unsigned long *bmap = (isa_bitmap) ? isa_bitmap : riscv_isa;
76
77 if (bit >= RISCV_ISA_EXT_MAX)
78 return false;
79
80 return test_bit(bit, bmap);
81 }
82 EXPORT_SYMBOL_GPL(__riscv_isa_extension_available);
83
riscv_ext_f_depends(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)84 static int riscv_ext_f_depends(const struct riscv_isa_ext_data *data,
85 const unsigned long *isa_bitmap)
86 {
87 if (__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_F))
88 return 0;
89
90 return -EPROBE_DEFER;
91 }
92
riscv_ext_zicbom_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)93 static int riscv_ext_zicbom_validate(const struct riscv_isa_ext_data *data,
94 const unsigned long *isa_bitmap)
95 {
96 if (!riscv_cbom_block_size) {
97 pr_err("Zicbom detected in ISA string, disabling as no cbom-block-size found\n");
98 return -EINVAL;
99 }
100 if (!is_power_of_2(riscv_cbom_block_size)) {
101 pr_err("Zicbom disabled as cbom-block-size present, but is not a power-of-2\n");
102 return -EINVAL;
103 }
104
105 any_cpu_has_zicbom = true;
106 return 0;
107 }
108
riscv_ext_zicboz_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)109 static int riscv_ext_zicboz_validate(const struct riscv_isa_ext_data *data,
110 const unsigned long *isa_bitmap)
111 {
112 if (!riscv_cboz_block_size) {
113 pr_err("Zicboz detected in ISA string, disabling as no cboz-block-size found\n");
114 return -EINVAL;
115 }
116 if (!is_power_of_2(riscv_cboz_block_size)) {
117 pr_err("Zicboz disabled as cboz-block-size present, but is not a power-of-2\n");
118 return -EINVAL;
119 }
120 any_cpu_has_zicboz = true;
121 return 0;
122 }
123
riscv_ext_zicbop_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)124 static int riscv_ext_zicbop_validate(const struct riscv_isa_ext_data *data,
125 const unsigned long *isa_bitmap)
126 {
127 if (!riscv_cbop_block_size) {
128 pr_err("Zicbop detected in ISA string, disabling as no cbop-block-size found\n");
129 return -EINVAL;
130 }
131 if (!is_power_of_2(riscv_cbop_block_size)) {
132 pr_err("Zicbop disabled as cbop-block-size present, but is not a power-of-2\n");
133 return -EINVAL;
134 }
135 any_cpu_has_zicbop = true;
136 return 0;
137 }
138
riscv_ext_f_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)139 static int riscv_ext_f_validate(const struct riscv_isa_ext_data *data,
140 const unsigned long *isa_bitmap)
141 {
142 if (!IS_ENABLED(CONFIG_FPU))
143 return -EINVAL;
144
145 /*
146 * Due to extension ordering, d is checked before f, so no deferral
147 * is required.
148 */
149 if (!__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_D)) {
150 pr_warn_once("This kernel does not support systems with F but not D\n");
151 return -EINVAL;
152 }
153
154 return 0;
155 }
156
riscv_ext_d_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)157 static int riscv_ext_d_validate(const struct riscv_isa_ext_data *data,
158 const unsigned long *isa_bitmap)
159 {
160 if (!IS_ENABLED(CONFIG_FPU))
161 return -EINVAL;
162
163 return 0;
164 }
165
riscv_ext_vector_x_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)166 static int riscv_ext_vector_x_validate(const struct riscv_isa_ext_data *data,
167 const unsigned long *isa_bitmap)
168 {
169 if (!IS_ENABLED(CONFIG_RISCV_ISA_V))
170 return -EINVAL;
171
172 return 0;
173 }
174
riscv_ext_vector_float_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)175 static int riscv_ext_vector_float_validate(const struct riscv_isa_ext_data *data,
176 const unsigned long *isa_bitmap)
177 {
178 if (!IS_ENABLED(CONFIG_RISCV_ISA_V))
179 return -EINVAL;
180
181 if (!IS_ENABLED(CONFIG_FPU))
182 return -EINVAL;
183
184 /*
185 * The kernel doesn't support systems that don't implement both of
186 * F and D, so if any of the vector extensions that do floating point
187 * are to be usable, both floating point extensions need to be usable.
188 *
189 * Since this function validates vector only, and v/Zve* are probed
190 * after f/d, there's no need for a deferral here.
191 */
192 if (!__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_D))
193 return -EINVAL;
194
195 return 0;
196 }
197
riscv_ext_vector_crypto_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)198 static int riscv_ext_vector_crypto_validate(const struct riscv_isa_ext_data *data,
199 const unsigned long *isa_bitmap)
200 {
201 if (!IS_ENABLED(CONFIG_RISCV_ISA_V))
202 return -EINVAL;
203
204 /*
205 * It isn't the kernel's job to check that the binding is correct, so
206 * it should be enough to check that any of the vector extensions are
207 * enabled, which in-turn means that vector is usable in this kernel
208 */
209 if (!__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZVE32X))
210 return -EPROBE_DEFER;
211
212 return 0;
213 }
214
riscv_ext_zca_depends(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)215 static int riscv_ext_zca_depends(const struct riscv_isa_ext_data *data,
216 const unsigned long *isa_bitmap)
217 {
218 if (__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZCA))
219 return 0;
220
221 return -EPROBE_DEFER;
222 }
riscv_ext_zcd_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)223 static int riscv_ext_zcd_validate(const struct riscv_isa_ext_data *data,
224 const unsigned long *isa_bitmap)
225 {
226 if (__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZCA) &&
227 __riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_D))
228 return 0;
229
230 return -EPROBE_DEFER;
231 }
232
riscv_ext_zcf_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)233 static int riscv_ext_zcf_validate(const struct riscv_isa_ext_data *data,
234 const unsigned long *isa_bitmap)
235 {
236 if (IS_ENABLED(CONFIG_64BIT))
237 return -EINVAL;
238
239 if (__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZCA) &&
240 __riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_F))
241 return 0;
242
243 return -EPROBE_DEFER;
244 }
245
riscv_ext_zilsd_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)246 static int riscv_ext_zilsd_validate(const struct riscv_isa_ext_data *data,
247 const unsigned long *isa_bitmap)
248 {
249 if (IS_ENABLED(CONFIG_64BIT))
250 return -EINVAL;
251
252 return 0;
253 }
254
riscv_ext_zclsd_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)255 static int riscv_ext_zclsd_validate(const struct riscv_isa_ext_data *data,
256 const unsigned long *isa_bitmap)
257 {
258 if (IS_ENABLED(CONFIG_64BIT))
259 return -EINVAL;
260
261 if (__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZILSD) &&
262 __riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZCA))
263 return 0;
264
265 return -EPROBE_DEFER;
266 }
267
riscv_vector_f_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)268 static int riscv_vector_f_validate(const struct riscv_isa_ext_data *data,
269 const unsigned long *isa_bitmap)
270 {
271 if (!IS_ENABLED(CONFIG_RISCV_ISA_V))
272 return -EINVAL;
273
274 if (__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZVE32F))
275 return 0;
276
277 return -EPROBE_DEFER;
278 }
279
riscv_ext_zvfbfwma_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)280 static int riscv_ext_zvfbfwma_validate(const struct riscv_isa_ext_data *data,
281 const unsigned long *isa_bitmap)
282 {
283 if (__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZFBFMIN) &&
284 __riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZVFBFMIN))
285 return 0;
286
287 return -EPROBE_DEFER;
288 }
289
riscv_ext_svadu_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)290 static int riscv_ext_svadu_validate(const struct riscv_isa_ext_data *data,
291 const unsigned long *isa_bitmap)
292 {
293 /* SVADE has already been detected, use SVADE only */
294 if (__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_SVADE))
295 return -EOPNOTSUPP;
296
297 return 0;
298 }
299
riscv_cfilp_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)300 static int riscv_cfilp_validate(const struct riscv_isa_ext_data *data,
301 const unsigned long *isa_bitmap)
302 {
303 if (!IS_ENABLED(CONFIG_RISCV_USER_CFI) ||
304 (riscv_nousercfi & CMDLINE_DISABLE_RISCV_USERCFI_FCFI))
305 return -EINVAL;
306
307 return 0;
308 }
309
riscv_cfiss_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)310 static int riscv_cfiss_validate(const struct riscv_isa_ext_data *data,
311 const unsigned long *isa_bitmap)
312 {
313 if (!IS_ENABLED(CONFIG_RISCV_USER_CFI) ||
314 (riscv_nousercfi & CMDLINE_DISABLE_RISCV_USERCFI_BCFI))
315 return -EINVAL;
316
317 return 0;
318 }
319
320 static const unsigned int riscv_a_exts[] = {
321 RISCV_ISA_EXT_ZAAMO,
322 RISCV_ISA_EXT_ZALRSC,
323 };
324
325 #define RISCV_ISA_EXT_ZKN \
326 RISCV_ISA_EXT_ZBKB, \
327 RISCV_ISA_EXT_ZBKC, \
328 RISCV_ISA_EXT_ZBKX, \
329 RISCV_ISA_EXT_ZKND, \
330 RISCV_ISA_EXT_ZKNE, \
331 RISCV_ISA_EXT_ZKNH
332
riscv_ext_smcdeleg_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)333 static int riscv_ext_smcdeleg_validate(const struct riscv_isa_ext_data *data,
334 const unsigned long *isa_bitmap)
335 {
336 if (__riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_SSCSRIND) &&
337 __riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZIHPM) &&
338 __riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_ZICNTR))
339 return 0;
340
341 return -EPROBE_DEFER;
342 }
343
riscv_ext_ssccfg_validate(const struct riscv_isa_ext_data * data,const unsigned long * isa_bitmap)344 static int riscv_ext_ssccfg_validate(const struct riscv_isa_ext_data *data,
345 const unsigned long *isa_bitmap)
346 {
347 if (!riscv_ext_smcdeleg_validate(data, isa_bitmap) &&
348 __riscv_isa_extension_available(isa_bitmap, RISCV_ISA_EXT_SMCDELEG))
349 return 0;
350
351 return -EPROBE_DEFER;
352 }
353
354 static const unsigned int riscv_zk_bundled_exts[] = {
355 RISCV_ISA_EXT_ZKN,
356 RISCV_ISA_EXT_ZKR,
357 RISCV_ISA_EXT_ZKT
358 };
359
360 static const unsigned int riscv_zkn_bundled_exts[] = {
361 RISCV_ISA_EXT_ZKN
362 };
363
364 static const unsigned int riscv_zks_bundled_exts[] = {
365 RISCV_ISA_EXT_ZBKB,
366 RISCV_ISA_EXT_ZBKC,
367 RISCV_ISA_EXT_ZKSED,
368 RISCV_ISA_EXT_ZKSH
369 };
370
371 #define RISCV_ISA_EXT_ZVKN \
372 RISCV_ISA_EXT_ZVKNED, \
373 RISCV_ISA_EXT_ZVKNHB, \
374 RISCV_ISA_EXT_ZVKB, \
375 RISCV_ISA_EXT_ZVKT
376
377 static const unsigned int riscv_zvkn_bundled_exts[] = {
378 RISCV_ISA_EXT_ZVKN
379 };
380
381 static const unsigned int riscv_zvknc_bundled_exts[] = {
382 RISCV_ISA_EXT_ZVKN,
383 RISCV_ISA_EXT_ZVBC
384 };
385
386 static const unsigned int riscv_zvkng_bundled_exts[] = {
387 RISCV_ISA_EXT_ZVKN,
388 RISCV_ISA_EXT_ZVKG
389 };
390
391 #define RISCV_ISA_EXT_ZVKS \
392 RISCV_ISA_EXT_ZVKSED, \
393 RISCV_ISA_EXT_ZVKSH, \
394 RISCV_ISA_EXT_ZVKB, \
395 RISCV_ISA_EXT_ZVKT
396
397 static const unsigned int riscv_zvks_bundled_exts[] = {
398 RISCV_ISA_EXT_ZVKS
399 };
400
401 static const unsigned int riscv_zvksc_bundled_exts[] = {
402 RISCV_ISA_EXT_ZVKS,
403 RISCV_ISA_EXT_ZVBC
404 };
405
406 static const unsigned int riscv_zvksg_bundled_exts[] = {
407 RISCV_ISA_EXT_ZVKS,
408 RISCV_ISA_EXT_ZVKG
409 };
410
411 static const unsigned int riscv_zvbb_exts[] = {
412 RISCV_ISA_EXT_ZVKB
413 };
414
415 #define RISCV_ISA_EXT_ZVE64F_IMPLY_LIST \
416 RISCV_ISA_EXT_ZVE64X, \
417 RISCV_ISA_EXT_ZVE32F, \
418 RISCV_ISA_EXT_ZVE32X
419
420 #define RISCV_ISA_EXT_ZVE64D_IMPLY_LIST \
421 RISCV_ISA_EXT_ZVE64F, \
422 RISCV_ISA_EXT_ZVE64F_IMPLY_LIST
423
424 #define RISCV_ISA_EXT_V_IMPLY_LIST \
425 RISCV_ISA_EXT_ZVE64D, \
426 RISCV_ISA_EXT_ZVE64D_IMPLY_LIST
427
428 static const unsigned int riscv_zve32f_exts[] = {
429 RISCV_ISA_EXT_ZVE32X
430 };
431
432 static const unsigned int riscv_zve64f_exts[] = {
433 RISCV_ISA_EXT_ZVE64F_IMPLY_LIST
434 };
435
436 static const unsigned int riscv_zve64d_exts[] = {
437 RISCV_ISA_EXT_ZVE64D_IMPLY_LIST
438 };
439
440 static const unsigned int riscv_v_exts[] = {
441 RISCV_ISA_EXT_V_IMPLY_LIST
442 };
443
444 static const unsigned int riscv_zve64x_exts[] = {
445 RISCV_ISA_EXT_ZVE32X,
446 RISCV_ISA_EXT_ZVE64X
447 };
448
449 /*
450 * While the [ms]envcfg CSRs were not defined until version 1.12 of the RISC-V
451 * privileged ISA, the existence of the CSRs is implied by any extension which
452 * specifies [ms]envcfg bit(s). Hence, we define a custom ISA extension for the
453 * existence of the CSR, and treat it as a subset of those other extensions.
454 */
455 static const unsigned int riscv_xlinuxenvcfg_exts[] = {
456 RISCV_ISA_EXT_XLINUXENVCFG
457 };
458
459 /*
460 * Zc* spec states that:
461 * - C always implies Zca
462 * - C+F implies Zcf (RV32 only)
463 * - C+D implies Zcd
464 *
465 * These extensions will be enabled and then validated depending on the
466 * availability of F/D RV32.
467 */
468 static const unsigned int riscv_c_exts[] = {
469 RISCV_ISA_EXT_ZCA,
470 RISCV_ISA_EXT_ZCF,
471 RISCV_ISA_EXT_ZCD,
472 };
473
474 /*
475 * The canonical order of ISA extension names in the ISA string is defined in
476 * Chapter 27 of the RISC-V Instruction Set Manual Volume I Unprivileged ISA
477 * (Document Version 20191213).
478 *
479 * Ordinarily, for in-kernel data structures, this order is unimportant but
480 * isa_ext_arr defines the order of the ISA string in /proc/cpuinfo.
481 *
482 * The specification uses vague wording, such as should, when it comes to
483 * ordering, so for our purposes the following rules apply:
484 *
485 * 1. All multi-letter extensions must be separated from other extensions by an
486 * underscore.
487 *
488 * 2. Additional standard extensions (starting with 'Z') must be sorted after
489 * single-letter extensions and before any higher-privileged extensions.
490 *
491 * 3. The first letter following the 'Z' conventionally indicates the most
492 * closely related alphabetical extension category, IMAFDQLCBKJTPVH.
493 * If multiple 'Z' extensions are named, they must be ordered first by
494 * category, then alphabetically within a category.
495 *
496 * 3. Standard supervisor-level extensions (starting with 'S') must be listed
497 * after standard unprivileged extensions. If multiple supervisor-level
498 * extensions are listed, they must be ordered alphabetically.
499 *
500 * 4. Standard machine-level extensions (starting with 'Zxm') must be listed
501 * after any lower-privileged, standard extensions. If multiple
502 * machine-level extensions are listed, they must be ordered
503 * alphabetically.
504 *
505 * 5. Non-standard extensions (starting with 'X') must be listed after all
506 * standard extensions. If multiple non-standard extensions are listed, they
507 * must be ordered alphabetically.
508 *
509 * An example string following the order is:
510 * rv64imadc_zifoo_zigoo_zafoo_sbar_scar_zxmbaz_xqux_xrux
511 *
512 * New entries to this struct should follow the ordering rules described above.
513 */
514 const struct riscv_isa_ext_data riscv_isa_ext[] = {
515 __RISCV_ISA_EXT_DATA(i, RISCV_ISA_EXT_I),
516 __RISCV_ISA_EXT_DATA(m, RISCV_ISA_EXT_M),
517 __RISCV_ISA_EXT_SUPERSET(a, RISCV_ISA_EXT_A, riscv_a_exts),
518 __RISCV_ISA_EXT_DATA_VALIDATE(f, RISCV_ISA_EXT_F, riscv_ext_f_validate),
519 __RISCV_ISA_EXT_DATA_VALIDATE(d, RISCV_ISA_EXT_D, riscv_ext_d_validate),
520 __RISCV_ISA_EXT_DATA(q, RISCV_ISA_EXT_Q),
521 __RISCV_ISA_EXT_SUPERSET(c, RISCV_ISA_EXT_C, riscv_c_exts),
522 __RISCV_ISA_EXT_SUPERSET_VALIDATE(v, RISCV_ISA_EXT_V, riscv_v_exts,
523 riscv_ext_vector_float_validate),
524 __RISCV_ISA_EXT_DATA(h, RISCV_ISA_EXT_H),
525 __RISCV_ISA_EXT_SUPERSET_VALIDATE(zicbom, RISCV_ISA_EXT_ZICBOM, riscv_xlinuxenvcfg_exts, riscv_ext_zicbom_validate),
526 __RISCV_ISA_EXT_DATA_VALIDATE(zicbop, RISCV_ISA_EXT_ZICBOP, riscv_ext_zicbop_validate),
527 __RISCV_ISA_EXT_SUPERSET_VALIDATE(zicboz, RISCV_ISA_EXT_ZICBOZ, riscv_xlinuxenvcfg_exts, riscv_ext_zicboz_validate),
528 __RISCV_ISA_EXT_DATA(ziccamoa, RISCV_ISA_EXT_ZICCAMOA),
529 __RISCV_ISA_EXT_DATA(ziccif, RISCV_ISA_EXT_ZICCIF),
530 __RISCV_ISA_EXT_DATA(zicclsm, RISCV_ISA_EXT_ZICCLSM),
531 __RISCV_ISA_EXT_DATA(ziccrse, RISCV_ISA_EXT_ZICCRSE),
532 __RISCV_ISA_EXT_SUPERSET_VALIDATE(zicfilp, RISCV_ISA_EXT_ZICFILP, riscv_xlinuxenvcfg_exts,
533 riscv_cfilp_validate),
534 __RISCV_ISA_EXT_SUPERSET_VALIDATE(zicfiss, RISCV_ISA_EXT_ZICFISS, riscv_xlinuxenvcfg_exts,
535 riscv_cfiss_validate),
536 __RISCV_ISA_EXT_DATA(zicntr, RISCV_ISA_EXT_ZICNTR),
537 __RISCV_ISA_EXT_DATA(zicond, RISCV_ISA_EXT_ZICOND),
538 __RISCV_ISA_EXT_DATA(zicsr, RISCV_ISA_EXT_ZICSR),
539 __RISCV_ISA_EXT_DATA(zifencei, RISCV_ISA_EXT_ZIFENCEI),
540 __RISCV_ISA_EXT_DATA(zihintntl, RISCV_ISA_EXT_ZIHINTNTL),
541 __RISCV_ISA_EXT_DATA(zihintpause, RISCV_ISA_EXT_ZIHINTPAUSE),
542 __RISCV_ISA_EXT_DATA(zihpm, RISCV_ISA_EXT_ZIHPM),
543 __RISCV_ISA_EXT_DATA(zimop, RISCV_ISA_EXT_ZIMOP),
544 __RISCV_ISA_EXT_DATA(za64rs, RISCV_ISA_EXT_ZA64RS),
545 __RISCV_ISA_EXT_DATA(zaamo, RISCV_ISA_EXT_ZAAMO),
546 __RISCV_ISA_EXT_DATA(zabha, RISCV_ISA_EXT_ZABHA),
547 __RISCV_ISA_EXT_DATA(zacas, RISCV_ISA_EXT_ZACAS),
548 __RISCV_ISA_EXT_DATA(zalasr, RISCV_ISA_EXT_ZALASR),
549 __RISCV_ISA_EXT_DATA(zalrsc, RISCV_ISA_EXT_ZALRSC),
550 __RISCV_ISA_EXT_DATA(zawrs, RISCV_ISA_EXT_ZAWRS),
551 __RISCV_ISA_EXT_DATA_VALIDATE(zfa, RISCV_ISA_EXT_ZFA, riscv_ext_f_depends),
552 __RISCV_ISA_EXT_DATA_VALIDATE(zfbfmin, RISCV_ISA_EXT_ZFBFMIN, riscv_ext_f_depends),
553 __RISCV_ISA_EXT_DATA_VALIDATE(zfh, RISCV_ISA_EXT_ZFH, riscv_ext_f_depends),
554 __RISCV_ISA_EXT_DATA_VALIDATE(zfhmin, RISCV_ISA_EXT_ZFHMIN, riscv_ext_f_depends),
555 __RISCV_ISA_EXT_DATA(zca, RISCV_ISA_EXT_ZCA),
556 __RISCV_ISA_EXT_DATA_VALIDATE(zcb, RISCV_ISA_EXT_ZCB, riscv_ext_zca_depends),
557 __RISCV_ISA_EXT_DATA_VALIDATE(zcd, RISCV_ISA_EXT_ZCD, riscv_ext_zcd_validate),
558 __RISCV_ISA_EXT_DATA_VALIDATE(zcf, RISCV_ISA_EXT_ZCF, riscv_ext_zcf_validate),
559 __RISCV_ISA_EXT_DATA_VALIDATE(zcmop, RISCV_ISA_EXT_ZCMOP, riscv_ext_zca_depends),
560 __RISCV_ISA_EXT_DATA_VALIDATE(zclsd, RISCV_ISA_EXT_ZCLSD, riscv_ext_zclsd_validate),
561 __RISCV_ISA_EXT_DATA_VALIDATE(zilsd, RISCV_ISA_EXT_ZILSD, riscv_ext_zilsd_validate),
562 __RISCV_ISA_EXT_DATA(zba, RISCV_ISA_EXT_ZBA),
563 __RISCV_ISA_EXT_DATA(zbb, RISCV_ISA_EXT_ZBB),
564 __RISCV_ISA_EXT_DATA(zbc, RISCV_ISA_EXT_ZBC),
565 __RISCV_ISA_EXT_DATA(zbkb, RISCV_ISA_EXT_ZBKB),
566 __RISCV_ISA_EXT_DATA(zbkc, RISCV_ISA_EXT_ZBKC),
567 __RISCV_ISA_EXT_DATA(zbkx, RISCV_ISA_EXT_ZBKX),
568 __RISCV_ISA_EXT_DATA(zbs, RISCV_ISA_EXT_ZBS),
569 __RISCV_ISA_EXT_BUNDLE(zk, riscv_zk_bundled_exts),
570 __RISCV_ISA_EXT_BUNDLE(zkn, riscv_zkn_bundled_exts),
571 __RISCV_ISA_EXT_DATA(zknd, RISCV_ISA_EXT_ZKND),
572 __RISCV_ISA_EXT_DATA(zkne, RISCV_ISA_EXT_ZKNE),
573 __RISCV_ISA_EXT_DATA(zknh, RISCV_ISA_EXT_ZKNH),
574 __RISCV_ISA_EXT_DATA(zkr, RISCV_ISA_EXT_ZKR),
575 __RISCV_ISA_EXT_BUNDLE(zks, riscv_zks_bundled_exts),
576 __RISCV_ISA_EXT_DATA(zkt, RISCV_ISA_EXT_ZKT),
577 __RISCV_ISA_EXT_DATA(zksed, RISCV_ISA_EXT_ZKSED),
578 __RISCV_ISA_EXT_DATA(zksh, RISCV_ISA_EXT_ZKSH),
579 __RISCV_ISA_EXT_DATA(ztso, RISCV_ISA_EXT_ZTSO),
580 __RISCV_ISA_EXT_SUPERSET_VALIDATE(zvbb, RISCV_ISA_EXT_ZVBB, riscv_zvbb_exts, riscv_ext_vector_crypto_validate),
581 __RISCV_ISA_EXT_DATA_VALIDATE(zvbc, RISCV_ISA_EXT_ZVBC, riscv_ext_vector_crypto_validate),
582 __RISCV_ISA_EXT_SUPERSET_VALIDATE(zve32f, RISCV_ISA_EXT_ZVE32F, riscv_zve32f_exts, riscv_ext_vector_float_validate),
583 __RISCV_ISA_EXT_DATA_VALIDATE(zve32x, RISCV_ISA_EXT_ZVE32X, riscv_ext_vector_x_validate),
584 __RISCV_ISA_EXT_SUPERSET_VALIDATE(zve64d, RISCV_ISA_EXT_ZVE64D, riscv_zve64d_exts, riscv_ext_vector_float_validate),
585 __RISCV_ISA_EXT_SUPERSET_VALIDATE(zve64f, RISCV_ISA_EXT_ZVE64F, riscv_zve64f_exts, riscv_ext_vector_float_validate),
586 __RISCV_ISA_EXT_SUPERSET_VALIDATE(zve64x, RISCV_ISA_EXT_ZVE64X, riscv_zve64x_exts, riscv_ext_vector_x_validate),
587 __RISCV_ISA_EXT_DATA_VALIDATE(zvfbfmin, RISCV_ISA_EXT_ZVFBFMIN, riscv_vector_f_validate),
588 __RISCV_ISA_EXT_DATA_VALIDATE(zvfbfwma, RISCV_ISA_EXT_ZVFBFWMA, riscv_ext_zvfbfwma_validate),
589 __RISCV_ISA_EXT_DATA(zvfh, RISCV_ISA_EXT_ZVFH),
590 __RISCV_ISA_EXT_DATA(zvfhmin, RISCV_ISA_EXT_ZVFHMIN),
591 __RISCV_ISA_EXT_DATA_VALIDATE(zvkb, RISCV_ISA_EXT_ZVKB, riscv_ext_vector_crypto_validate),
592 __RISCV_ISA_EXT_DATA_VALIDATE(zvkg, RISCV_ISA_EXT_ZVKG, riscv_ext_vector_crypto_validate),
593 __RISCV_ISA_EXT_BUNDLE_VALIDATE(zvkn, riscv_zvkn_bundled_exts, riscv_ext_vector_crypto_validate),
594 __RISCV_ISA_EXT_BUNDLE_VALIDATE(zvknc, riscv_zvknc_bundled_exts, riscv_ext_vector_crypto_validate),
595 __RISCV_ISA_EXT_DATA_VALIDATE(zvkned, RISCV_ISA_EXT_ZVKNED, riscv_ext_vector_crypto_validate),
596 __RISCV_ISA_EXT_BUNDLE_VALIDATE(zvkng, riscv_zvkng_bundled_exts, riscv_ext_vector_crypto_validate),
597 __RISCV_ISA_EXT_DATA_VALIDATE(zvknha, RISCV_ISA_EXT_ZVKNHA, riscv_ext_vector_crypto_validate),
598 __RISCV_ISA_EXT_DATA_VALIDATE(zvknhb, RISCV_ISA_EXT_ZVKNHB, riscv_ext_vector_crypto_validate),
599 __RISCV_ISA_EXT_BUNDLE_VALIDATE(zvks, riscv_zvks_bundled_exts, riscv_ext_vector_crypto_validate),
600 __RISCV_ISA_EXT_BUNDLE_VALIDATE(zvksc, riscv_zvksc_bundled_exts, riscv_ext_vector_crypto_validate),
601 __RISCV_ISA_EXT_DATA_VALIDATE(zvksed, RISCV_ISA_EXT_ZVKSED, riscv_ext_vector_crypto_validate),
602 __RISCV_ISA_EXT_DATA_VALIDATE(zvksh, RISCV_ISA_EXT_ZVKSH, riscv_ext_vector_crypto_validate),
603 __RISCV_ISA_EXT_BUNDLE_VALIDATE(zvksg, riscv_zvksg_bundled_exts, riscv_ext_vector_crypto_validate),
604 __RISCV_ISA_EXT_DATA_VALIDATE(zvkt, RISCV_ISA_EXT_ZVKT, riscv_ext_vector_crypto_validate),
605 __RISCV_ISA_EXT_DATA(smaia, RISCV_ISA_EXT_SMAIA),
606 __RISCV_ISA_EXT_DATA_VALIDATE(smcdeleg, RISCV_ISA_EXT_SMCDELEG,
607 riscv_ext_smcdeleg_validate),
608 __RISCV_ISA_EXT_DATA(smcntrpmf, RISCV_ISA_EXT_SMCNTRPMF),
609 __RISCV_ISA_EXT_DATA(smcsrind, RISCV_ISA_EXT_SMCSRIND),
610 __RISCV_ISA_EXT_DATA(smmpm, RISCV_ISA_EXT_SMMPM),
611 __RISCV_ISA_EXT_SUPERSET(smnpm, RISCV_ISA_EXT_SMNPM, riscv_xlinuxenvcfg_exts),
612 __RISCV_ISA_EXT_DATA(smstateen, RISCV_ISA_EXT_SMSTATEEN),
613 __RISCV_ISA_EXT_DATA(ssaia, RISCV_ISA_EXT_SSAIA),
614 __RISCV_ISA_EXT_DATA_VALIDATE(ssccfg, RISCV_ISA_EXT_SSCCFG, riscv_ext_ssccfg_validate),
615 __RISCV_ISA_EXT_DATA(sscofpmf, RISCV_ISA_EXT_SSCOFPMF),
616 __RISCV_ISA_EXT_DATA(sscsrind, RISCV_ISA_EXT_SSCSRIND),
617 __RISCV_ISA_EXT_SUPERSET(ssnpm, RISCV_ISA_EXT_SSNPM, riscv_xlinuxenvcfg_exts),
618 __RISCV_ISA_EXT_DATA(ssqosid, RISCV_ISA_EXT_SSQOSID),
619 __RISCV_ISA_EXT_DATA(sstc, RISCV_ISA_EXT_SSTC),
620 __RISCV_ISA_EXT_DATA(svade, RISCV_ISA_EXT_SVADE),
621 __RISCV_ISA_EXT_DATA_VALIDATE(svadu, RISCV_ISA_EXT_SVADU, riscv_ext_svadu_validate),
622 __RISCV_ISA_EXT_DATA(svinval, RISCV_ISA_EXT_SVINVAL),
623 __RISCV_ISA_EXT_DATA(svnapot, RISCV_ISA_EXT_SVNAPOT),
624 __RISCV_ISA_EXT_DATA(svpbmt, RISCV_ISA_EXT_SVPBMT),
625 __RISCV_ISA_EXT_DATA(svrsw60t59b, RISCV_ISA_EXT_SVRSW60T59B),
626 __RISCV_ISA_EXT_DATA(svvptc, RISCV_ISA_EXT_SVVPTC),
627 };
628
629 const size_t riscv_isa_ext_count = ARRAY_SIZE(riscv_isa_ext);
630
riscv_isa_set_ext(const struct riscv_isa_ext_data * ext,unsigned long * bitmap)631 static void riscv_isa_set_ext(const struct riscv_isa_ext_data *ext, unsigned long *bitmap)
632 {
633 if (ext->id != RISCV_ISA_EXT_INVALID)
634 set_bit(ext->id, bitmap);
635
636 for (int i = 0; i < ext->subset_ext_size; i++) {
637 if (ext->subset_ext_ids[i] != RISCV_ISA_EXT_INVALID)
638 set_bit(ext->subset_ext_ids[i], bitmap);
639 }
640 }
641
riscv_get_isa_ext_data(unsigned int ext_id)642 static const struct riscv_isa_ext_data *riscv_get_isa_ext_data(unsigned int ext_id)
643 {
644 for (int i = 0; i < riscv_isa_ext_count; i++) {
645 if (riscv_isa_ext[i].id == ext_id)
646 return &riscv_isa_ext[i];
647 }
648
649 return NULL;
650 }
651
652 /*
653 * "Resolve" a source ISA bitmap into one that matches kernel configuration as
654 * well as correct extension dependencies. Some extensions depends on specific
655 * kernel configuration to be usable (V needs CONFIG_RISCV_ISA_V for instance)
656 * and this function will actually validate all the extensions provided in
657 * source_isa into the resolved_isa based on extensions validate() callbacks.
658 */
riscv_resolve_isa(unsigned long * source_isa,unsigned long * resolved_isa,unsigned long * this_hwcap,unsigned long * isa2hwcap)659 static void __init riscv_resolve_isa(unsigned long *source_isa,
660 unsigned long *resolved_isa, unsigned long *this_hwcap,
661 unsigned long *isa2hwcap)
662 {
663 bool loop;
664 const struct riscv_isa_ext_data *ext;
665 DECLARE_BITMAP(prev_resolved_isa, RISCV_ISA_EXT_MAX);
666 int max_loop_count = riscv_isa_ext_count, ret;
667 unsigned int bit;
668
669 do {
670 loop = false;
671 if (max_loop_count-- < 0) {
672 pr_err("Failed to reach a stable ISA state\n");
673 return;
674 }
675 bitmap_copy(prev_resolved_isa, resolved_isa, RISCV_ISA_EXT_MAX);
676 for_each_set_bit(bit, source_isa, RISCV_ISA_EXT_MAX) {
677 ext = riscv_get_isa_ext_data(bit);
678
679 if (ext && ext->validate) {
680 ret = ext->validate(ext, resolved_isa);
681 if (ret == -EPROBE_DEFER) {
682 loop = true;
683 continue;
684 } else if (ret) {
685 /* Disable the extension entirely */
686 clear_bit(bit, source_isa);
687 continue;
688 }
689 }
690
691 set_bit(bit, resolved_isa);
692 /* No need to keep it in source isa now that it is enabled */
693 clear_bit(bit, source_isa);
694
695 /* Single letter extensions get set in hwcap */
696 if (bit < RISCV_ISA_EXT_BASE)
697 *this_hwcap |= isa2hwcap[bit];
698 }
699 } while (loop && !bitmap_equal(prev_resolved_isa, resolved_isa, RISCV_ISA_EXT_MAX));
700 }
701
match_isa_ext(const char * name,const char * name_end,unsigned long * bitmap)702 static void __init match_isa_ext(const char *name, const char *name_end, unsigned long *bitmap)
703 {
704 for (int i = 0; i < riscv_isa_ext_count; i++) {
705 const struct riscv_isa_ext_data *ext = &riscv_isa_ext[i];
706
707 if ((name_end - name == strlen(ext->name)) &&
708 !strncasecmp(name, ext->name, name_end - name)) {
709 riscv_isa_set_ext(ext, bitmap);
710 break;
711 }
712 }
713 }
714
riscv_parse_isa_string(const char * isa,unsigned long * bitmap)715 static void __init riscv_parse_isa_string(const char *isa, unsigned long *bitmap)
716 {
717 /*
718 * For all possible cpus, we have already validated in
719 * the boot process that they at least contain "rv" and
720 * whichever of "32"/"64" this kernel supports, and so this
721 * section can be skipped.
722 */
723 isa += 4;
724
725 while (*isa) {
726 const char *ext = isa++;
727 const char *ext_end = isa;
728 bool ext_err = false;
729
730 switch (*ext) {
731 case 'x':
732 case 'X':
733 if (acpi_disabled)
734 pr_warn_once("Vendor extensions are ignored in riscv,isa. Use riscv,isa-extensions instead.");
735 /*
736 * To skip an extension, we find its end.
737 * As multi-letter extensions must be split from other multi-letter
738 * extensions with an "_", the end of a multi-letter extension will
739 * either be the null character or the "_" at the start of the next
740 * multi-letter extension.
741 */
742 for (; *isa && *isa != '_'; ++isa)
743 ;
744 ext_err = true;
745 break;
746 case 's':
747 /*
748 * Workaround for invalid single-letter 's' & 'u' (QEMU).
749 * No need to set the bit in riscv_isa as 's' & 'u' are
750 * not valid ISA extensions. It works unless the first
751 * multi-letter extension in the ISA string begins with
752 * "Su" and is not prefixed with an underscore.
753 */
754 if (ext[-1] != '_' && ext[1] == 'u') {
755 ++isa;
756 ext_err = true;
757 break;
758 }
759 fallthrough;
760 case 'S':
761 case 'z':
762 case 'Z':
763 /*
764 * Before attempting to parse the extension itself, we find its end.
765 * As multi-letter extensions must be split from other multi-letter
766 * extensions with an "_", the end of a multi-letter extension will
767 * either be the null character or the "_" at the start of the next
768 * multi-letter extension.
769 *
770 * Next, as the extensions version is currently ignored, we
771 * eliminate that portion. This is done by parsing backwards from
772 * the end of the extension, removing any numbers. This may be a
773 * major or minor number however, so the process is repeated if a
774 * minor number was found.
775 *
776 * ext_end is intended to represent the first character *after* the
777 * name portion of an extension, but will be decremented to the last
778 * character itself while eliminating the extensions version number.
779 * A simple re-increment solves this problem.
780 */
781 for (; *isa && *isa != '_'; ++isa)
782 if (unlikely(!isalnum(*isa)))
783 ext_err = true;
784
785 ext_end = isa;
786 if (unlikely(ext_err))
787 break;
788
789 if (!isdigit(ext_end[-1]))
790 break;
791
792 while (isdigit(*--ext_end))
793 ;
794
795 if (tolower(ext_end[0]) != 'p' || !isdigit(ext_end[-1])) {
796 ++ext_end;
797 break;
798 }
799
800 while (isdigit(*--ext_end))
801 ;
802
803 ++ext_end;
804 break;
805 default:
806 /*
807 * Things are a little easier for single-letter extensions, as they
808 * are parsed forwards.
809 *
810 * After checking that our starting position is valid, we need to
811 * ensure that, when isa was incremented at the start of the loop,
812 * that it arrived at the start of the next extension.
813 *
814 * If we are already on a non-digit, there is nothing to do. Either
815 * we have a multi-letter extension's _, or the start of an
816 * extension.
817 *
818 * Otherwise we have found the current extension's major version
819 * number. Parse past it, and a subsequent p/minor version number
820 * if present. The `p` extension must not appear immediately after
821 * a number, so there is no fear of missing it.
822 *
823 */
824 if (unlikely(!isalpha(*ext))) {
825 ext_err = true;
826 break;
827 }
828
829 if (!isdigit(*isa))
830 break;
831
832 while (isdigit(*++isa))
833 ;
834
835 if (tolower(*isa) != 'p')
836 break;
837
838 if (!isdigit(*++isa)) {
839 --isa;
840 break;
841 }
842
843 while (isdigit(*++isa))
844 ;
845
846 break;
847 }
848
849 /*
850 * The parser expects that at the start of an iteration isa points to the
851 * first character of the next extension. As we stop parsing an extension
852 * on meeting a non-alphanumeric character, an extra increment is needed
853 * where the succeeding extension is a multi-letter prefixed with an "_".
854 */
855 if (*isa == '_')
856 ++isa;
857
858 if (unlikely(ext_err))
859 continue;
860
861 match_isa_ext(ext, ext_end, bitmap);
862 }
863 }
864
riscv_fill_hwcap_from_isa_string(unsigned long * isa2hwcap)865 static void __init riscv_fill_hwcap_from_isa_string(unsigned long *isa2hwcap)
866 {
867 struct device_node *node;
868 const char *isa;
869 int rc;
870 struct acpi_table_header *rhct;
871 acpi_status status;
872 unsigned int cpu;
873 u64 boot_vendorid;
874 u64 boot_archid;
875
876 if (!acpi_disabled) {
877 status = acpi_get_table(ACPI_SIG_RHCT, 0, &rhct);
878 if (ACPI_FAILURE(status))
879 return;
880 }
881
882 boot_vendorid = riscv_get_mvendorid();
883 boot_archid = riscv_get_marchid();
884
885 for_each_possible_cpu(cpu) {
886 struct riscv_isainfo *isainfo = &hart_isa[cpu];
887 unsigned long this_hwcap = 0;
888 DECLARE_BITMAP(source_isa, RISCV_ISA_EXT_MAX) = { 0 };
889
890 if (acpi_disabled) {
891 node = of_cpu_device_node_get(cpu);
892 if (!node) {
893 pr_warn("Unable to find cpu node\n");
894 continue;
895 }
896
897 rc = of_property_read_string(node, "riscv,isa", &isa);
898 of_node_put(node);
899 if (rc) {
900 pr_warn("Unable to find \"riscv,isa\" devicetree entry\n");
901 continue;
902 }
903 } else {
904 rc = acpi_get_riscv_isa(rhct, cpu, &isa);
905 if (rc < 0) {
906 pr_warn("Unable to get ISA for the hart - %d\n", cpu);
907 continue;
908 }
909 }
910
911 riscv_parse_isa_string(isa, source_isa);
912
913 /*
914 * These ones were as they were part of the base ISA when the
915 * port & dt-bindings were upstreamed, and so can be set
916 * unconditionally where `i` is in riscv,isa on DT systems.
917 */
918 if (acpi_disabled) {
919 set_bit(RISCV_ISA_EXT_ZICSR, source_isa);
920 set_bit(RISCV_ISA_EXT_ZIFENCEI, source_isa);
921 set_bit(RISCV_ISA_EXT_ZICNTR, source_isa);
922 set_bit(RISCV_ISA_EXT_ZIHPM, source_isa);
923 }
924
925 /*
926 * "V" in ISA strings is ambiguous in practice: it should mean
927 * just the standard V-1.0 but vendors aren't well behaved.
928 * Many vendors with T-Head CPU cores which implement the 0.7.1
929 * version of the vector specification put "v" into their DTs.
930 * CPU cores with the ratified spec will contain non-zero
931 * marchid.
932 */
933 if (acpi_disabled && boot_vendorid == THEAD_VENDOR_ID && boot_archid == 0x0)
934 clear_bit(RISCV_ISA_EXT_V, source_isa);
935
936 riscv_resolve_isa(source_isa, isainfo->isa, &this_hwcap, isa2hwcap);
937
938 /*
939 * All "okay" hart should have same isa. Set HWCAP based on
940 * common capabilities of every "okay" hart, in case they don't
941 * have.
942 */
943 if (elf_hwcap)
944 elf_hwcap &= this_hwcap;
945 else
946 elf_hwcap = this_hwcap;
947
948 if (bitmap_empty(riscv_isa, RISCV_ISA_EXT_MAX))
949 bitmap_copy(riscv_isa, isainfo->isa, RISCV_ISA_EXT_MAX);
950 else
951 bitmap_and(riscv_isa, riscv_isa, isainfo->isa, RISCV_ISA_EXT_MAX);
952 }
953
954 if (!acpi_disabled && rhct)
955 acpi_put_table((struct acpi_table_header *)rhct);
956 }
957
riscv_fill_cpu_vendor_ext(struct device_node * cpu_node,int cpu)958 static void __init riscv_fill_cpu_vendor_ext(struct device_node *cpu_node, int cpu)
959 {
960 if (!IS_ENABLED(CONFIG_RISCV_ISA_VENDOR_EXT))
961 return;
962
963 for (int i = 0; i < riscv_isa_vendor_ext_list_size; i++) {
964 struct riscv_isa_vendor_ext_data_list *ext_list = riscv_isa_vendor_ext_list[i];
965
966 for (int j = 0; j < ext_list->ext_data_count; j++) {
967 const struct riscv_isa_ext_data ext = ext_list->ext_data[j];
968 struct riscv_isavendorinfo *isavendorinfo = &ext_list->per_hart_isa_bitmap[cpu];
969
970 if (of_property_match_string(cpu_node, "riscv,isa-extensions",
971 ext.property) < 0)
972 continue;
973
974 /*
975 * Assume that subset extensions are all members of the
976 * same vendor.
977 */
978 if (ext.subset_ext_size)
979 for (int k = 0; k < ext.subset_ext_size; k++)
980 set_bit(ext.subset_ext_ids[k], isavendorinfo->isa);
981
982 set_bit(ext.id, isavendorinfo->isa);
983 }
984 }
985 }
986
987 /*
988 * Populate all_harts_isa_bitmap for each vendor with all of the extensions that
989 * are shared across CPUs for that vendor.
990 */
riscv_fill_vendor_ext_list(int cpu)991 static void __init riscv_fill_vendor_ext_list(int cpu)
992 {
993 if (!IS_ENABLED(CONFIG_RISCV_ISA_VENDOR_EXT))
994 return;
995
996 for (int i = 0; i < riscv_isa_vendor_ext_list_size; i++) {
997 struct riscv_isa_vendor_ext_data_list *ext_list = riscv_isa_vendor_ext_list[i];
998
999 if (!ext_list->is_initialized) {
1000 bitmap_copy(ext_list->all_harts_isa_bitmap.isa,
1001 ext_list->per_hart_isa_bitmap[cpu].isa,
1002 RISCV_ISA_VENDOR_EXT_MAX);
1003 ext_list->is_initialized = true;
1004 } else {
1005 bitmap_and(ext_list->all_harts_isa_bitmap.isa,
1006 ext_list->all_harts_isa_bitmap.isa,
1007 ext_list->per_hart_isa_bitmap[cpu].isa,
1008 RISCV_ISA_VENDOR_EXT_MAX);
1009 }
1010 }
1011 }
1012
has_thead_homogeneous_vlenb(void)1013 static int has_thead_homogeneous_vlenb(void)
1014 {
1015 int cpu;
1016 u32 prev_vlenb = 0;
1017 u32 vlenb = 0;
1018
1019 /* Ignore thead,vlenb property if xtheadvector is not enabled in the kernel */
1020 if (!IS_ENABLED(CONFIG_RISCV_ISA_XTHEADVECTOR))
1021 return 0;
1022
1023 for_each_possible_cpu(cpu) {
1024 struct device_node *cpu_node;
1025
1026 cpu_node = of_cpu_device_node_get(cpu);
1027 if (!cpu_node) {
1028 pr_warn("Unable to find cpu node\n");
1029 return -ENOENT;
1030 }
1031
1032 if (of_property_read_u32(cpu_node, "thead,vlenb", &vlenb)) {
1033 of_node_put(cpu_node);
1034
1035 if (prev_vlenb)
1036 return -ENOENT;
1037 continue;
1038 }
1039
1040 if (prev_vlenb && vlenb != prev_vlenb) {
1041 of_node_put(cpu_node);
1042 return -ENOENT;
1043 }
1044
1045 prev_vlenb = vlenb;
1046 of_node_put(cpu_node);
1047 }
1048
1049 thead_vlenb_of = vlenb;
1050 return 0;
1051 }
1052
riscv_fill_hwcap_from_ext_list(unsigned long * isa2hwcap)1053 static int __init riscv_fill_hwcap_from_ext_list(unsigned long *isa2hwcap)
1054 {
1055 unsigned int cpu;
1056 bool mitigated;
1057
1058 for_each_possible_cpu(cpu) {
1059 unsigned long this_hwcap = 0;
1060 struct device_node *cpu_node;
1061 struct riscv_isainfo *isainfo = &hart_isa[cpu];
1062 DECLARE_BITMAP(source_isa, RISCV_ISA_EXT_MAX) = { 0 };
1063
1064 cpu_node = of_cpu_device_node_get(cpu);
1065 if (!cpu_node) {
1066 pr_warn("Unable to find cpu node\n");
1067 continue;
1068 }
1069
1070 if (!of_property_present(cpu_node, "riscv,isa-extensions")) {
1071 of_node_put(cpu_node);
1072 continue;
1073 }
1074
1075 for (int i = 0; i < riscv_isa_ext_count; i++) {
1076 const struct riscv_isa_ext_data *ext = &riscv_isa_ext[i];
1077
1078 if (of_property_match_string(cpu_node, "riscv,isa-extensions",
1079 ext->property) < 0)
1080 continue;
1081
1082 riscv_isa_set_ext(ext, source_isa);
1083 }
1084
1085 riscv_resolve_isa(source_isa, isainfo->isa, &this_hwcap, isa2hwcap);
1086 riscv_fill_cpu_vendor_ext(cpu_node, cpu);
1087
1088 of_node_put(cpu_node);
1089
1090 /*
1091 * All "okay" harts should have same isa. Set HWCAP based on
1092 * common capabilities of every "okay" hart, in case they don't.
1093 */
1094 if (elf_hwcap)
1095 elf_hwcap &= this_hwcap;
1096 else
1097 elf_hwcap = this_hwcap;
1098
1099 if (bitmap_empty(riscv_isa, RISCV_ISA_EXT_MAX))
1100 bitmap_copy(riscv_isa, isainfo->isa, RISCV_ISA_EXT_MAX);
1101 else
1102 bitmap_and(riscv_isa, riscv_isa, isainfo->isa, RISCV_ISA_EXT_MAX);
1103
1104 riscv_fill_vendor_ext_list(cpu);
1105 }
1106
1107 /*
1108 * Execute ghostwrite mitigation immediately after detecting extensions
1109 * to disable xtheadvector if necessary.
1110 */
1111 mitigated = ghostwrite_enable_mitigation();
1112
1113 if (!mitigated && has_xtheadvector_no_alternatives() && has_thead_homogeneous_vlenb() < 0) {
1114 pr_warn("Unsupported heterogeneous vlenb detected, vector extension disabled.\n");
1115 disable_xtheadvector();
1116 }
1117
1118 if (bitmap_empty(riscv_isa, RISCV_ISA_EXT_MAX))
1119 return -ENOENT;
1120
1121 return 0;
1122 }
1123
1124 #ifdef CONFIG_RISCV_ISA_FALLBACK
1125 bool __initdata riscv_isa_fallback = true;
1126 #else
1127 bool __initdata riscv_isa_fallback;
riscv_isa_fallback_setup(char * __unused)1128 static int __init riscv_isa_fallback_setup(char *__unused)
1129 {
1130 riscv_isa_fallback = true;
1131 return 1;
1132 }
1133 early_param("riscv_isa_fallback", riscv_isa_fallback_setup);
1134 #endif
1135
riscv_fill_hwcap(void)1136 void __init riscv_fill_hwcap(void)
1137 {
1138 char print_str[NUM_ALPHA_EXTS + 1];
1139 unsigned long isa2hwcap[RISCV_ISA_EXT_BASE] = {0};
1140 int i, j;
1141
1142 isa2hwcap[RISCV_ISA_EXT_I] = COMPAT_HWCAP_ISA_I;
1143 isa2hwcap[RISCV_ISA_EXT_M] = COMPAT_HWCAP_ISA_M;
1144 isa2hwcap[RISCV_ISA_EXT_A] = COMPAT_HWCAP_ISA_A;
1145 isa2hwcap[RISCV_ISA_EXT_F] = COMPAT_HWCAP_ISA_F;
1146 isa2hwcap[RISCV_ISA_EXT_D] = COMPAT_HWCAP_ISA_D;
1147 isa2hwcap[RISCV_ISA_EXT_C] = COMPAT_HWCAP_ISA_C;
1148 isa2hwcap[RISCV_ISA_EXT_V] = COMPAT_HWCAP_ISA_V;
1149
1150 if (!acpi_disabled) {
1151 riscv_fill_hwcap_from_isa_string(isa2hwcap);
1152 } else {
1153 int ret = riscv_fill_hwcap_from_ext_list(isa2hwcap);
1154
1155 if (ret && riscv_isa_fallback) {
1156 pr_info("Falling back to deprecated \"riscv,isa\"\n");
1157 riscv_fill_hwcap_from_isa_string(isa2hwcap);
1158 }
1159 }
1160
1161 /*
1162 * We don't support systems with F but without D, so mask those out
1163 * here.
1164 */
1165 if ((elf_hwcap & COMPAT_HWCAP_ISA_F) && !(elf_hwcap & COMPAT_HWCAP_ISA_D)) {
1166 pr_info("This kernel does not support systems with F but not D\n");
1167 elf_hwcap &= ~COMPAT_HWCAP_ISA_F;
1168 }
1169
1170 if (__riscv_isa_extension_available(NULL, RISCV_ISA_EXT_ZVE32X) ||
1171 has_xtheadvector_no_alternatives()) {
1172 /*
1173 * This cannot fail when called on the boot hart
1174 */
1175 riscv_v_setup_vsize();
1176 }
1177
1178 memset(print_str, 0, sizeof(print_str));
1179 for (i = 0, j = 0; i < NUM_ALPHA_EXTS; i++)
1180 if (riscv_isa[0] & BIT_MASK(i))
1181 print_str[j++] = (char)('a' + i);
1182 pr_info("riscv: base ISA extensions %s\n", print_str);
1183
1184 memset(print_str, 0, sizeof(print_str));
1185 for (i = 0, j = 0; i < NUM_ALPHA_EXTS; i++)
1186 if (elf_hwcap & BIT_MASK(i))
1187 print_str[j++] = (char)('a' + i);
1188 pr_info("riscv: ELF capabilities %s\n", print_str);
1189 }
1190
riscv_get_elf_hwcap(void)1191 unsigned long riscv_get_elf_hwcap(void)
1192 {
1193 unsigned long hwcap;
1194
1195 hwcap = (elf_hwcap & ((1UL << RISCV_ISA_EXT_BASE) - 1));
1196
1197 if (!riscv_v_vstate_ctrl_user_allowed())
1198 hwcap &= ~COMPAT_HWCAP_ISA_V;
1199
1200 return hwcap;
1201 }
1202
riscv_user_isa_enable(void)1203 void __init riscv_user_isa_enable(void)
1204 {
1205 if (riscv_has_extension_unlikely(RISCV_ISA_EXT_ZICBOZ))
1206 current->thread.envcfg |= ENVCFG_CBZE;
1207 else if (any_cpu_has_zicboz)
1208 pr_warn("Zicboz disabled as it is unavailable on some harts\n");
1209
1210 if (riscv_has_extension_unlikely(RISCV_ISA_EXT_ZICBOM))
1211 current->thread.envcfg |= ENVCFG_CBCFE;
1212 else if (any_cpu_has_zicbom)
1213 pr_warn("Zicbom disabled as it is unavailable on some harts\n");
1214
1215 if (!riscv_has_extension_unlikely(RISCV_ISA_EXT_ZICBOP) &&
1216 any_cpu_has_zicbop)
1217 pr_warn("Zicbop disabled as it is unavailable on some harts\n");
1218 }
1219
1220 #ifdef CONFIG_RISCV_ALTERNATIVE
1221 /*
1222 * Alternative patch sites consider 48 bits when determining when to patch
1223 * the old instruction sequence with the new. These bits are broken into a
1224 * 16-bit vendor ID and a 32-bit patch ID. A non-zero vendor ID means the
1225 * patch site is for an erratum, identified by the 32-bit patch ID. When
1226 * the vendor ID is zero, the patch site is for a cpufeature. cpufeatures
1227 * further break down patch ID into two 16-bit numbers. The lower 16 bits
1228 * are the cpufeature ID and the upper 16 bits are used for a value specific
1229 * to the cpufeature and patch site. If the upper 16 bits are zero, then it
1230 * implies no specific value is specified. cpufeatures that want to control
1231 * patching on a per-site basis will provide non-zero values and implement
1232 * checks here. The checks return true when patching should be done, and
1233 * false otherwise.
1234 */
riscv_cpufeature_patch_check(u16 id,u16 value)1235 static bool riscv_cpufeature_patch_check(u16 id, u16 value)
1236 {
1237 if (!value)
1238 return true;
1239
1240 switch (id) {
1241 case RISCV_ISA_EXT_ZICBOZ:
1242 /*
1243 * Zicboz alternative applications provide the maximum
1244 * supported block size order, or zero when it doesn't
1245 * matter. If the current block size exceeds the maximum,
1246 * then the alternative cannot be applied.
1247 */
1248 return riscv_cboz_block_size <= (1U << value);
1249 }
1250
1251 return false;
1252 }
1253
riscv_cpufeature_patch_func(struct alt_entry * begin,struct alt_entry * end,unsigned int stage)1254 void __init_or_module riscv_cpufeature_patch_func(struct alt_entry *begin,
1255 struct alt_entry *end,
1256 unsigned int stage)
1257 {
1258 struct alt_entry *alt;
1259 void *oldptr, *altptr;
1260 u16 id, value, vendor;
1261
1262 if (stage == RISCV_ALTERNATIVES_EARLY_BOOT)
1263 return;
1264
1265 for (alt = begin; alt < end; alt++) {
1266 id = PATCH_ID_CPUFEATURE_ID(alt->patch_id);
1267 vendor = PATCH_ID_CPUFEATURE_ID(alt->vendor_id);
1268
1269 /*
1270 * Any alternative with a patch_id that is less than
1271 * RISCV_ISA_EXT_MAX is interpreted as a standard extension.
1272 *
1273 * Any alternative with patch_id that is greater than or equal
1274 * to RISCV_VENDOR_EXT_ALTERNATIVES_BASE is interpreted as a
1275 * vendor extension.
1276 */
1277 if (id < RISCV_ISA_EXT_MAX) {
1278 /*
1279 * This patch should be treated as errata so skip
1280 * processing here.
1281 */
1282 if (alt->vendor_id != 0)
1283 continue;
1284
1285 if (!__riscv_isa_extension_available(NULL, id))
1286 continue;
1287
1288 value = PATCH_ID_CPUFEATURE_VALUE(alt->patch_id);
1289 if (!riscv_cpufeature_patch_check(id, value))
1290 continue;
1291 } else if (id >= RISCV_VENDOR_EXT_ALTERNATIVES_BASE) {
1292 if (!__riscv_isa_vendor_extension_available(VENDOR_EXT_ALL_CPUS, vendor,
1293 id - RISCV_VENDOR_EXT_ALTERNATIVES_BASE))
1294 continue;
1295 } else {
1296 WARN(1, "This extension id:%d is not in ISA extension list", id);
1297 continue;
1298 }
1299
1300 oldptr = ALT_OLD_PTR(alt);
1301 altptr = ALT_ALT_PTR(alt);
1302
1303 mutex_lock(&text_mutex);
1304 patch_text_nosync(oldptr, altptr, alt->alt_len);
1305 riscv_alternative_fix_offsets(oldptr, alt->alt_len, oldptr - altptr);
1306 mutex_unlock(&text_mutex);
1307 }
1308 }
1309 #endif
1310