1caab277bSThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
2359b7064SMarc Zyngier /*
3359b7064SMarc Zyngier * Contains CPU feature definitions
4359b7064SMarc Zyngier *
5359b7064SMarc Zyngier * Copyright (C) 2015 ARM Ltd.
6a2a69963SWill Deacon *
7a2a69963SWill Deacon * A note for the weary kernel hacker: the code here is confusing and hard to
8a2a69963SWill Deacon * follow! That's partly because it's solving a nasty problem, but also because
9a2a69963SWill Deacon * there's a little bit of over-abstraction that tends to obscure what's going
10a2a69963SWill Deacon * on behind a maze of helper functions and macros.
11a2a69963SWill Deacon *
12a2a69963SWill Deacon * The basic problem is that hardware folks have started gluing together CPUs
13a2a69963SWill Deacon * with distinct architectural features; in some cases even creating SoCs where
14a2a69963SWill Deacon * user-visible instructions are available only on a subset of the available
15a2a69963SWill Deacon * cores. We try to address this by snapshotting the feature registers of the
16a2a69963SWill Deacon * boot CPU and comparing these with the feature registers of each secondary
17a2a69963SWill Deacon * CPU when bringing them up. If there is a mismatch, then we update the
18a2a69963SWill Deacon * snapshot state to indicate the lowest-common denominator of the feature,
19a2a69963SWill Deacon * known as the "safe" value. This snapshot state can be queried to view the
20a2a69963SWill Deacon * "sanitised" value of a feature register.
21a2a69963SWill Deacon *
22a2a69963SWill Deacon * The sanitised register values are used to decide which capabilities we
23a2a69963SWill Deacon * have in the system. These may be in the form of traditional "hwcaps"
24a2a69963SWill Deacon * advertised to userspace or internal "cpucaps" which are used to configure
25a2a69963SWill Deacon * things like alternative patching and static keys. While a feature mismatch
26a2a69963SWill Deacon * may result in a TAINT_CPU_OUT_OF_SPEC kernel taint, a capability mismatch
27a2a69963SWill Deacon * may prevent a CPU from being onlined at all.
28a2a69963SWill Deacon *
29a2a69963SWill Deacon * Some implementation details worth remembering:
30a2a69963SWill Deacon *
31a2a69963SWill Deacon * - Mismatched features are *always* sanitised to a "safe" value, which
32a2a69963SWill Deacon * usually indicates that the feature is not supported.
33a2a69963SWill Deacon *
34a2a69963SWill Deacon * - A mismatched feature marked with FTR_STRICT will cause a "SANITY CHECK"
35a2a69963SWill Deacon * warning when onlining an offending CPU and the kernel will be tainted
36a2a69963SWill Deacon * with TAINT_CPU_OUT_OF_SPEC.
37a2a69963SWill Deacon *
38a2a69963SWill Deacon * - Features marked as FTR_VISIBLE have their sanitised value visible to
39a2a69963SWill Deacon * userspace. FTR_VISIBLE features in registers that are only visible
40a2a69963SWill Deacon * to EL0 by trapping *must* have a corresponding HWCAP so that late
41a2a69963SWill Deacon * onlining of CPUs cannot lead to features disappearing at runtime.
42a2a69963SWill Deacon *
43a2a69963SWill Deacon * - A "feature" is typically a 4-bit register field. A "capability" is the
44a2a69963SWill Deacon * high-level description derived from the sanitised field value.
45a2a69963SWill Deacon *
46a2a69963SWill Deacon * - Read the Arm ARM (DDI 0487F.a) section D13.1.3 ("Principles of the ID
47a2a69963SWill Deacon * scheme for fields in ID registers") to understand when feature fields
48a2a69963SWill Deacon * may be signed or unsigned (FTR_SIGNED and FTR_UNSIGNED accordingly).
49a2a69963SWill Deacon *
50a2a69963SWill Deacon * - KVM exposes its own view of the feature registers to guest operating
51a2a69963SWill Deacon * systems regardless of FTR_VISIBLE. This is typically driven from the
52a2a69963SWill Deacon * sanitised register values to allow virtual CPUs to be migrated between
53a2a69963SWill Deacon * arbitrary physical CPUs, but some features not present on the host are
54a2a69963SWill Deacon * also advertised and emulated. Look at sys_reg_descs[] for the gory
55a2a69963SWill Deacon * details.
56433022b5SWill Deacon *
57433022b5SWill Deacon * - If the arm64_ftr_bits[] for a register has a missing field, then this
58433022b5SWill Deacon * field is treated as STRICT RES0, including for read_sanitised_ftr_reg().
59433022b5SWill Deacon * This is stronger than FTR_HIDDEN and can be used to hide features from
60433022b5SWill Deacon * KVM guests.
61359b7064SMarc Zyngier */
62359b7064SMarc Zyngier
639cdf8ec4SSuzuki K. Poulose #define pr_fmt(fmt) "CPU features: " fmt
64359b7064SMarc Zyngier
653c739b57SSuzuki K. Poulose #include <linux/bsearch.h>
662a6dcb2bSJames Morse #include <linux/cpumask.h>
675ffdfaedSVladimir Murzin #include <linux/crash_dump.h>
681a920c92SChristophe JAILLET #include <linux/kstrtox.h>
693c739b57SSuzuki K. Poulose #include <linux/sort.h>
702a6dcb2bSJames Morse #include <linux/stop_machine.h>
717af33504SWill Deacon #include <linux/sysfs.h>
72359b7064SMarc Zyngier #include <linux/types.h>
73f6334b17Skernel test robot #include <linux/minmax.h>
742077be67SLaura Abbott #include <linux/mm.h>
75a111b7c0SJosh Poimboeuf #include <linux/cpu.h>
762e903b91SAndrey Konovalov #include <linux/kasan.h>
77bd09128dSJames Morse #include <linux/percpu.h>
78bd09128dSJames Morse
79359b7064SMarc Zyngier #include <asm/cpu.h>
80359b7064SMarc Zyngier #include <asm/cpufeature.h>
81dbb4e152SSuzuki K. Poulose #include <asm/cpu_ops.h>
822e0f2478SDave Martin #include <asm/fpsimd.h>
8344b3834bSJames Morse #include <asm/hwcap.h>
843e00e39dSMark Rutland #include <asm/insn.h>
853eb681fbSDavid Brazdil #include <asm/kvm_host.h>
8613f417f3SSuzuki K Poulose #include <asm/mmu_context.h>
8734bfeea4SCatalin Marinas #include <asm/mte.h>
88338d4f49SJames Morse #include <asm/processor.h>
89e62e0748SCarlos Bilbao #include <asm/smp.h>
90cdcf817bSSuzuki K. Poulose #include <asm/sysreg.h>
9177c97b4eSSuzuki K Poulose #include <asm/traps.h>
92bd09128dSJames Morse #include <asm/vectors.h>
93d88701beSMarc Zyngier #include <asm/virt.h>
94359b7064SMarc Zyngier
95aec0bff7SAndrew Murray /* Kernel representation of AT_HWCAP and AT_HWCAP2 */
9660c868efSMark Brown static DECLARE_BITMAP(elf_hwcap, MAX_CPU_FEATURES) __read_mostly;
979cdf8ec4SSuzuki K. Poulose
989cdf8ec4SSuzuki K. Poulose #ifdef CONFIG_COMPAT
999cdf8ec4SSuzuki K. Poulose #define COMPAT_ELF_HWCAP_DEFAULT \
1009cdf8ec4SSuzuki K. Poulose (COMPAT_HWCAP_HALF|COMPAT_HWCAP_THUMB|\
1019cdf8ec4SSuzuki K. Poulose COMPAT_HWCAP_FAST_MULT|COMPAT_HWCAP_EDSP|\
1027559950aSSuzuki K Poulose COMPAT_HWCAP_TLS|COMPAT_HWCAP_IDIV|\
1039cdf8ec4SSuzuki K. Poulose COMPAT_HWCAP_LPAE)
1049cdf8ec4SSuzuki K. Poulose unsigned int compat_elf_hwcap __read_mostly = COMPAT_ELF_HWCAP_DEFAULT;
1059cdf8ec4SSuzuki K. Poulose unsigned int compat_elf_hwcap2 __read_mostly;
1069cdf8ec4SSuzuki K. Poulose #endif
1079cdf8ec4SSuzuki K. Poulose
1087f242982SMark Rutland DECLARE_BITMAP(system_cpucaps, ARM64_NCAPS);
1097f242982SMark Rutland EXPORT_SYMBOL(system_cpucaps);
1101c8ae429SMark Rutland static struct arm64_cpu_capabilities const __ro_after_init *cpucap_ptrs[ARM64_NCAPS];
1119cdf8ec4SSuzuki K. Poulose
1127f242982SMark Rutland DECLARE_BITMAP(boot_cpucaps, ARM64_NCAPS);
1130ceb0d56SDaniel Thompson
11409e3c22aSMark Brown bool arm64_use_ng_mappings = false;
11509e3c22aSMark Brown EXPORT_SYMBOL(arm64_use_ng_mappings);
11609e3c22aSMark Brown
117bd09128dSJames Morse DEFINE_PER_CPU_READ_MOSTLY(const char *, this_cpu_vector) = vectors;
118bd09128dSJames Morse
1198f1eec57SDave Martin /*
1202122a833SWill Deacon * Permit PER_LINUX32 and execve() of 32-bit binaries even if not all CPUs
1212122a833SWill Deacon * support it?
1222122a833SWill Deacon */
1232122a833SWill Deacon static bool __read_mostly allow_mismatched_32bit_el0;
1242122a833SWill Deacon
1252122a833SWill Deacon /*
1262122a833SWill Deacon * Static branch enabled only if allow_mismatched_32bit_el0 is set and we have
1272122a833SWill Deacon * seen at least one CPU capable of 32-bit EL0.
1282122a833SWill Deacon */
1292122a833SWill Deacon DEFINE_STATIC_KEY_FALSE(arm64_mismatched_32bit_el0);
1302122a833SWill Deacon
1312122a833SWill Deacon /*
1322122a833SWill Deacon * Mask of CPUs supporting 32-bit EL0.
1332122a833SWill Deacon * Only valid if arm64_mismatched_32bit_el0 is enabled.
1342122a833SWill Deacon */
1352122a833SWill Deacon static cpumask_var_t cpu_32bit_el0_mask __cpumask_var_read_mostly;
1362122a833SWill Deacon
dump_cpu_features(void)137638d5031SAnshuman Khandual void dump_cpu_features(void)
1388effeaafSMark Rutland {
1398effeaafSMark Rutland /* file-wide pr_fmt adds "CPU features: " prefix */
1407f242982SMark Rutland pr_emerg("0x%*pb\n", ARM64_NCAPS, &system_cpucaps);
1418effeaafSMark Rutland }
1428effeaafSMark Rutland
143876e3c8eSMark Brown #define ARM64_CPUID_FIELDS(reg, field, min_value) \
144876e3c8eSMark Brown .sys_reg = SYS_##reg, \
145876e3c8eSMark Brown .field_pos = reg##_##field##_SHIFT, \
146876e3c8eSMark Brown .field_width = reg##_##field##_WIDTH, \
147876e3c8eSMark Brown .sign = reg##_##field##_SIGNED, \
148876e3c8eSMark Brown .min_field_value = reg##_##field##_##min_value,
149876e3c8eSMark Brown
150fe4fbdbcSSuzuki K Poulose #define __ARM64_FTR_BITS(SIGNED, VISIBLE, STRICT, TYPE, SHIFT, WIDTH, SAFE_VAL) \
1513c739b57SSuzuki K. Poulose { \
1524f0a606bSSuzuki K. Poulose .sign = SIGNED, \
153fe4fbdbcSSuzuki K Poulose .visible = VISIBLE, \
1543c739b57SSuzuki K. Poulose .strict = STRICT, \
1553c739b57SSuzuki K. Poulose .type = TYPE, \
1563c739b57SSuzuki K. Poulose .shift = SHIFT, \
1573c739b57SSuzuki K. Poulose .width = WIDTH, \
1583c739b57SSuzuki K. Poulose .safe_val = SAFE_VAL, \
1593c739b57SSuzuki K. Poulose }
1603c739b57SSuzuki K. Poulose
1610710cfdbSSuzuki K Poulose /* Define a feature with unsigned values */
162fe4fbdbcSSuzuki K Poulose #define ARM64_FTR_BITS(VISIBLE, STRICT, TYPE, SHIFT, WIDTH, SAFE_VAL) \
163fe4fbdbcSSuzuki K Poulose __ARM64_FTR_BITS(FTR_UNSIGNED, VISIBLE, STRICT, TYPE, SHIFT, WIDTH, SAFE_VAL)
1644f0a606bSSuzuki K. Poulose
1650710cfdbSSuzuki K Poulose /* Define a feature with a signed value */
166fe4fbdbcSSuzuki K Poulose #define S_ARM64_FTR_BITS(VISIBLE, STRICT, TYPE, SHIFT, WIDTH, SAFE_VAL) \
167fe4fbdbcSSuzuki K Poulose __ARM64_FTR_BITS(FTR_SIGNED, VISIBLE, STRICT, TYPE, SHIFT, WIDTH, SAFE_VAL)
1680710cfdbSSuzuki K Poulose
1693c739b57SSuzuki K. Poulose #define ARM64_FTR_END \
1703c739b57SSuzuki K. Poulose { \
1713c739b57SSuzuki K. Poulose .width = 0, \
1723c739b57SSuzuki K. Poulose }
1733c739b57SSuzuki K. Poulose
1745ffdfaedSVladimir Murzin static void cpu_enable_cnp(struct arm64_cpu_capabilities const *cap);
17570544196SJames Morse
1763ff047f6SAmit Daniel Kachhap static bool __system_matches_cap(unsigned int n);
1773ff047f6SAmit Daniel Kachhap
1784aa8a472SSuzuki K Poulose /*
1794aa8a472SSuzuki K Poulose * NOTE: Any changes to the visibility of features should be kept in
1804aa8a472SSuzuki K Poulose * sync with the documentation of the CPU feature register ABI.
1814aa8a472SSuzuki K Poulose */
1825e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_aa64isar0[] = {
1830eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_RNDR_SHIFT, 4, 0),
1840eda2ec4SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_TLB_SHIFT, 4, 0),
1850eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_TS_SHIFT, 4, 0),
1860eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_FHM_SHIFT, 4, 0),
1870eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_DP_SHIFT, 4, 0),
1880eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_SM4_SHIFT, 4, 0),
1890eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_SM3_SHIFT, 4, 0),
1900eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_SHA3_SHIFT, 4, 0),
1910eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_RDM_SHIFT, 4, 0),
1920eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_ATOMIC_SHIFT, 4, 0),
1930eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_CRC32_SHIFT, 4, 0),
1940eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_SHA2_SHIFT, 4, 0),
1950eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_SHA1_SHIFT, 4, 0),
1960eda2ec4SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR0_EL1_AES_SHIFT, 4, 0),
1973c739b57SSuzuki K. Poulose ARM64_FTR_END,
1983c739b57SSuzuki K. Poulose };
1993c739b57SSuzuki K. Poulose
200c8c3798dSSuzuki K Poulose static const struct arm64_ftr_bits ftr_id_aa64isar1[] = {
201aa50479bSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_I8MM_SHIFT, 4, 0),
202aa50479bSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_DGH_SHIFT, 4, 0),
203aa50479bSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_BF16_SHIFT, 4, 0),
204aa50479bSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_SPECRES_SHIFT, 4, 0),
205aa50479bSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_SB_SHIFT, 4, 0),
206aa50479bSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_FRINTTS_SHIFT, 4, 0),
2076984eb47SMark Rutland ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_PTR_AUTH),
208aa50479bSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_GPI_SHIFT, 4, 0),
2096984eb47SMark Rutland ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_PTR_AUTH),
210aa50479bSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_GPA_SHIFT, 4, 0),
211aa50479bSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_LRCPC_SHIFT, 4, 0),
212aa50479bSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_FCMA_SHIFT, 4, 0),
213aa50479bSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_JSCVT_SHIFT, 4, 0),
2146984eb47SMark Rutland ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_PTR_AUTH),
215aa50479bSMark Brown FTR_STRICT, FTR_EXACT, ID_AA64ISAR1_EL1_API_SHIFT, 4, 0),
2166984eb47SMark Rutland ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_PTR_AUTH),
217aa50479bSMark Brown FTR_STRICT, FTR_EXACT, ID_AA64ISAR1_EL1_APA_SHIFT, 4, 0),
218aa50479bSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR1_EL1_DPB_SHIFT, 4, 0),
219c8c3798dSSuzuki K Poulose ARM64_FTR_END,
220c8c3798dSSuzuki K Poulose };
221c8c3798dSSuzuki K Poulose
2229e45365fSJoey Gouly static const struct arm64_ftr_bits ftr_id_aa64isar2[] = {
22395aa6860SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64ISAR2_EL1_CSSC_SHIFT, 4, 0),
224939e4649SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64ISAR2_EL1_RPRFM_SHIFT, 4, 0),
225479965a2SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR2_EL1_CLRBHB_SHIFT, 4, 0),
226479965a2SKristina Martsenko ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR2_EL1_BC_SHIFT, 4, 0),
227b7564127SKristina Martsenko ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR2_EL1_MOPS_SHIFT, 4, 0),
228def8c222SVladimir Murzin ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_PTR_AUTH),
229b2d71f27SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64ISAR2_EL1_APA3_SHIFT, 4, 0),
230def8c222SVladimir Murzin ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_PTR_AUTH),
231b2d71f27SMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ISAR2_EL1_GPA3_SHIFT, 4, 0),
232b2d71f27SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64ISAR2_EL1_RPRES_SHIFT, 4, 0),
233b2d71f27SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64ISAR2_EL1_WFxT_SHIFT, 4, 0),
2349e45365fSJoey Gouly ARM64_FTR_END,
2359e45365fSJoey Gouly };
2369e45365fSJoey Gouly
2375e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_aa64pfr0[] = {
23855adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_CSV3_SHIFT, 4, 0),
23955adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_CSV2_SHIFT, 4, 0),
24055adc08dSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_DIT_SHIFT, 4, 0),
24155adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_AMU_SHIFT, 4, 0),
24255adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_MPAM_SHIFT, 4, 0),
24355adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_SEL2_SHIFT, 4, 0),
2443fab3999SDave Martin ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SVE),
24555adc08dSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_SVE_SHIFT, 4, 0),
24655adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_RAS_SHIFT, 4, 0),
24755adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_GIC_SHIFT, 4, 0),
2485620b4b0SMark Brown S_ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_AdvSIMD_SHIFT, 4, ID_AA64PFR0_EL1_AdvSIMD_NI),
24955adc08dSMark Brown S_ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_FP_SHIFT, 4, ID_AA64PFR0_EL1_FP_NI),
25055adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_EL3_SHIFT, 4, 0),
25155adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_EL2_SHIFT, 4, 0),
25255adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_EL1_SHIFT, 4, ID_AA64PFR0_EL1_ELx_64BIT_ONLY),
25355adc08dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64PFR0_EL1_EL0_SHIFT, 4, ID_AA64PFR0_EL1_ELx_64BIT_ONLY),
2543c739b57SSuzuki K. Poulose ARM64_FTR_END,
2553c739b57SSuzuki K. Poulose };
2563c739b57SSuzuki K. Poulose
257d71be2b6SWill Deacon static const struct arm64_ftr_bits ftr_id_aa64pfr1[] = {
2585e64b862SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
2596ca2b9caSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR1_EL1_SME_SHIFT, 4, 0),
260cf7fdbbeSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR1_EL1_MPAM_frac_SHIFT, 4, 0),
261cf7fdbbeSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR1_EL1_RAS_frac_SHIFT, 4, 0),
2623b714d24SVincenzo Frascino ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_MTE),
2636ca2b9caSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR1_EL1_MTE_SHIFT, 4, ID_AA64PFR1_EL1_MTE_NI),
26453275da8SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64PFR1_EL1_SSBS_SHIFT, 4, ID_AA64PFR1_EL1_SSBS_NI),
2658ef8f360SDave Martin ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_BTI),
2666ca2b9caSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64PFR1_EL1_BT_SHIFT, 4, 0),
267d71be2b6SWill Deacon ARM64_FTR_END,
268d71be2b6SWill Deacon };
269d71be2b6SWill Deacon
27006a916feSDave Martin static const struct arm64_ftr_bits ftr_id_aa64zfr0[] = {
271ec52c713SJulien Grall ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SVE),
2728d8feb0eSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ZFR0_EL1_F64MM_SHIFT, 4, 0),
273d4209d8bSSteven Price ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SVE),
2748d8feb0eSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ZFR0_EL1_F32MM_SHIFT, 4, 0),
275d4209d8bSSteven Price ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SVE),
2768d8feb0eSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ZFR0_EL1_I8MM_SHIFT, 4, 0),
277d4209d8bSSteven Price ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SVE),
2788d8feb0eSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ZFR0_EL1_SM4_SHIFT, 4, 0),
279ec52c713SJulien Grall ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SVE),
2808d8feb0eSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ZFR0_EL1_SHA3_SHIFT, 4, 0),
281ec52c713SJulien Grall ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SVE),
2828d8feb0eSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ZFR0_EL1_BF16_SHIFT, 4, 0),
283d4209d8bSSteven Price ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SVE),
2848d8feb0eSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ZFR0_EL1_BitPerm_SHIFT, 4, 0),
285ec52c713SJulien Grall ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SVE),
2868d8feb0eSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ZFR0_EL1_AES_SHIFT, 4, 0),
287ec52c713SJulien Grall ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SVE),
2888d8feb0eSMark Brown FTR_STRICT, FTR_LOWER_SAFE, ID_AA64ZFR0_EL1_SVEver_SHIFT, 4, 0),
28906a916feSDave Martin ARM64_FTR_END,
29006a916feSDave Martin };
29106a916feSDave Martin
2925e64b862SMark Brown static const struct arm64_ftr_bits ftr_id_aa64smfr0[] = {
2935e64b862SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
294f13d5469SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_FA64_SHIFT, 1, 0),
2955e64b862SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
296d4913eeeSMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_SMEver_SHIFT, 4, 0),
297d4913eeeSMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
298f13d5469SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_I16I64_SHIFT, 4, 0),
2995e64b862SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
300f13d5469SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_F64F64_SHIFT, 1, 0),
3015e64b862SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
3027d5d8601SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_I16I32_SHIFT, 4, 0),
3037d5d8601SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
3047d5d8601SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_B16B16_SHIFT, 1, 0),
3057d5d8601SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
3067d5d8601SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_F16F16_SHIFT, 1, 0),
3077d5d8601SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
308f13d5469SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_I8I32_SHIFT, 4, 0),
3095e64b862SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
310f13d5469SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_F16F32_SHIFT, 1, 0),
3115e64b862SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
312f13d5469SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_B16F32_SHIFT, 1, 0),
3135e64b862SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
3147d5d8601SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_BI32I32_SHIFT, 1, 0),
3157d5d8601SMark Brown ARM64_FTR_BITS(FTR_VISIBLE_IF_IS_ENABLED(CONFIG_ARM64_SME),
316f13d5469SMark Brown FTR_STRICT, FTR_EXACT, ID_AA64SMFR0_EL1_F32F32_SHIFT, 1, 0),
3175e64b862SMark Brown ARM64_FTR_END,
3185e64b862SMark Brown };
3195e64b862SMark Brown
3205e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_aa64mmfr0[] = {
3212d987e64SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_ECV_SHIFT, 4, 0),
3222d987e64SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_FGT_SHIFT, 4, 0),
3232d987e64SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_EXS_SHIFT, 4, 0),
3245717fe5aSWill Deacon /*
325b130a8f7SMarc Zyngier * Page size not being supported at Stage-2 is not fatal. You
326b130a8f7SMarc Zyngier * just give up KVM if PAGE_SIZE isn't supported there. Go fix
327b130a8f7SMarc Zyngier * your favourite nesting hypervisor.
328b130a8f7SMarc Zyngier *
329b130a8f7SMarc Zyngier * There is a small corner case where the hypervisor explicitly
330b130a8f7SMarc Zyngier * advertises a given granule size at Stage-2 (value 2) on some
331b130a8f7SMarc Zyngier * vCPUs, and uses the fallback to Stage-1 (value 0) for other
332b130a8f7SMarc Zyngier * vCPUs. Although this is not forbidden by the architecture, it
333b130a8f7SMarc Zyngier * indicates that the hypervisor is being silly (or buggy).
334b130a8f7SMarc Zyngier *
335b130a8f7SMarc Zyngier * We make no effort to cope with this and pretend that if these
336b130a8f7SMarc Zyngier * fields are inconsistent across vCPUs, then it isn't worth
337b130a8f7SMarc Zyngier * trying to bring KVM up.
338b130a8f7SMarc Zyngier */
3392d987e64SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_EXACT, ID_AA64MMFR0_EL1_TGRAN4_2_SHIFT, 4, 1),
3402d987e64SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_EXACT, ID_AA64MMFR0_EL1_TGRAN64_2_SHIFT, 4, 1),
3412d987e64SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_EXACT, ID_AA64MMFR0_EL1_TGRAN16_2_SHIFT, 4, 1),
342b130a8f7SMarc Zyngier /*
3435717fe5aSWill Deacon * We already refuse to boot CPUs that don't support our configured
3445717fe5aSWill Deacon * page size, so we can only detect mismatches for a page size other
3455717fe5aSWill Deacon * than the one we're currently using. Unfortunately, SoCs like this
3465717fe5aSWill Deacon * exist in the wild so, even though we don't like it, we'll have to go
3475717fe5aSWill Deacon * along with it and treat them as non-strict.
3485717fe5aSWill Deacon */
3492d987e64SMark Brown S_ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_TGRAN4_SHIFT, 4, ID_AA64MMFR0_EL1_TGRAN4_NI),
3502d987e64SMark Brown S_ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_TGRAN64_SHIFT, 4, ID_AA64MMFR0_EL1_TGRAN64_NI),
3512d987e64SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_TGRAN16_SHIFT, 4, ID_AA64MMFR0_EL1_TGRAN16_NI),
3525717fe5aSWill Deacon
3532d987e64SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_BIGENDEL0_SHIFT, 4, 0),
3543c739b57SSuzuki K. Poulose /* Linux shouldn't care about secure memory */
3552d987e64SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_SNSMEM_SHIFT, 4, 0),
356ed7c138dSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_BIGEND_SHIFT, 4, 0),
35707d7d848SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_ASIDBITS_SHIFT, 4, 0),
3583c739b57SSuzuki K. Poulose /*
3593c739b57SSuzuki K. Poulose * Differing PARange is fine as long as all peripherals and memory are mapped
3603c739b57SSuzuki K. Poulose * within the minimum PARange of all CPUs
3613c739b57SSuzuki K. Poulose */
3622d987e64SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64MMFR0_EL1_PARANGE_SHIFT, 4, 0),
3633c739b57SSuzuki K. Poulose ARM64_FTR_END,
3643c739b57SSuzuki K. Poulose };
3653c739b57SSuzuki K. Poulose
3665e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_aa64mmfr1[] = {
3676fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_TIDCP1_SHIFT, 4, 0),
3686fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_AFP_SHIFT, 4, 0),
369b0c756feSKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_HCX_SHIFT, 4, 0),
3706fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_ETS_SHIFT, 4, 0),
3716fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_TWED_SHIFT, 4, 0),
3726fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_XNX_SHIFT, 4, 0),
3736fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_HIGHER_SAFE, ID_AA64MMFR1_EL1_SpecSEI_SHIFT, 4, 0),
3746fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_PAN_SHIFT, 4, 0),
3756fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_LO_SHIFT, 4, 0),
3766fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_HPDS_SHIFT, 4, 0),
3776fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_VH_SHIFT, 4, 0),
3786fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_VMIDBits_SHIFT, 4, 0),
3796fcd0193SKristina Martsenko ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR1_EL1_HAFDBS_SHIFT, 4, 0),
3803c739b57SSuzuki K. Poulose ARM64_FTR_END,
3813c739b57SSuzuki K. Poulose };
3823c739b57SSuzuki K. Poulose
3835e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_aa64mmfr2[] = {
384a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_E0PD_SHIFT, 4, 0),
385a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_EVT_SHIFT, 4, 0),
386a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_BBM_SHIFT, 4, 0),
387a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_TTL_SHIFT, 4, 0),
388a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_FWB_SHIFT, 4, 0),
389a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_IDS_SHIFT, 4, 0),
390a957c6beSMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_AT_SHIFT, 4, 0),
391a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_ST_SHIFT, 4, 0),
392a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_NV_SHIFT, 4, 0),
393a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_CCIDX_SHIFT, 4, 0),
3948f40badeSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_VARange_SHIFT, 4, 0),
395a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_IESB_SHIFT, 4, 0),
396a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_LSM_SHIFT, 4, 0),
397a957c6beSMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_UAO_SHIFT, 4, 0),
398ca951862SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64MMFR2_EL1_CnP_SHIFT, 4, 0),
399406e3087SJames Morse ARM64_FTR_END,
400406e3087SJames Morse };
401406e3087SJames Morse
402edc25898SJoey Gouly static const struct arm64_ftr_bits ftr_id_aa64mmfr3[] = {
403edc25898SJoey Gouly ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64MMFR3_EL1_S1PIE_SHIFT, 4, 0),
404edc25898SJoey Gouly ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64MMFR3_EL1_TCRX_SHIFT, 4, 0),
405edc25898SJoey Gouly ARM64_FTR_END,
406edc25898SJoey Gouly };
407edc25898SJoey Gouly
4085e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_ctr[] = {
409be68a8aaSWill Deacon ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_EXACT, 31, 1, 1), /* RES1 */
4105b345e39SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, CTR_EL0_DIC_SHIFT, 1, 1),
4115b345e39SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, CTR_EL0_IDC_SHIFT, 1, 1),
4125b345e39SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_HIGHER_OR_ZERO_SAFE, CTR_EL0_CWG_SHIFT, 4, 0),
4135b345e39SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_HIGHER_OR_ZERO_SAFE, CTR_EL0_ERG_SHIFT, 4, 0),
4145b345e39SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, CTR_EL0_DminLine_SHIFT, 4, 1),
4153c739b57SSuzuki K. Poulose /*
4163c739b57SSuzuki K. Poulose * Linux can handle differing I-cache policies. Userspace JITs will
417ee7bc638SSuzuki K Poulose * make use of *minLine.
418155433cbSWill Deacon * If we have differing I-cache policies, report it as the weakest - VIPT.
4193c739b57SSuzuki K. Poulose */
4205b345e39SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_NONSTRICT, FTR_EXACT, CTR_EL0_L1Ip_SHIFT, 2, CTR_EL0_L1Ip_VIPT), /* L1Ip */
4215b345e39SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, CTR_EL0_IminLine_SHIFT, 4, 0),
4223c739b57SSuzuki K. Poulose ARM64_FTR_END,
4233c739b57SSuzuki K. Poulose };
4243c739b57SSuzuki K. Poulose
4258f266a5dSMarc Zyngier static struct arm64_ftr_override __ro_after_init no_override = { };
4268f266a5dSMarc Zyngier
427675b0563SArd Biesheuvel struct arm64_ftr_reg arm64_ftr_reg_ctrel0 = {
428675b0563SArd Biesheuvel .name = "SYS_CTR_EL0",
4298f266a5dSMarc Zyngier .ftr_bits = ftr_ctr,
4308f266a5dSMarc Zyngier .override = &no_override,
431675b0563SArd Biesheuvel };
432675b0563SArd Biesheuvel
4335e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_mmfr0[] = {
43437622baeSJames Morse S_ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR0_EL1_InnerShr_SHIFT, 4, 0xf),
43537622baeSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR0_EL1_FCSE_SHIFT, 4, 0),
43637622baeSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_MMFR0_EL1_AuxReg_SHIFT, 4, 0),
43737622baeSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR0_EL1_TCM_SHIFT, 4, 0),
43837622baeSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR0_EL1_ShareLvl_SHIFT, 4, 0),
43937622baeSJames Morse S_ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR0_EL1_OuterShr_SHIFT, 4, 0xf),
44037622baeSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR0_EL1_PMSA_SHIFT, 4, 0),
44137622baeSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR0_EL1_VMSA_SHIFT, 4, 0),
4423c739b57SSuzuki K. Poulose ARM64_FTR_END,
4433c739b57SSuzuki K. Poulose };
4443c739b57SSuzuki K. Poulose
4455e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_aa64dfr0[] = {
446fcf37b38SMark Brown S_ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64DFR0_EL1_DoubleLock_SHIFT, 4, 0),
447fcf37b38SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_AA64DFR0_EL1_PMSVer_SHIFT, 4, 0),
448fcf37b38SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64DFR0_EL1_CTX_CMPs_SHIFT, 4, 0),
449fcf37b38SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64DFR0_EL1_WRPs_SHIFT, 4, 0),
450fcf37b38SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_AA64DFR0_EL1_BRPs_SHIFT, 4, 0),
451b20d1ba3SWill Deacon /*
452b20d1ba3SWill Deacon * We can instantiate multiple PMU instances with different levels
453b20d1ba3SWill Deacon * of support.
454fe4fbdbcSSuzuki K Poulose */
455fcf37b38SMark Brown S_ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_EXACT, ID_AA64DFR0_EL1_PMUVer_SHIFT, 4, 0),
456fcf37b38SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_EXACT, ID_AA64DFR0_EL1_DebugVer_SHIFT, 4, 0x6),
4573c739b57SSuzuki K. Poulose ARM64_FTR_END,
4583c739b57SSuzuki K. Poulose };
4593c739b57SSuzuki K. Poulose
46085f15063SAmit Daniel Kachhap static const struct arm64_ftr_bits ftr_mvfr0[] = {
461a3aab948SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR0_EL1_FPRound_SHIFT, 4, 0),
462a3aab948SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR0_EL1_FPShVec_SHIFT, 4, 0),
463a3aab948SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR0_EL1_FPSqrt_SHIFT, 4, 0),
464a3aab948SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR0_EL1_FPDivide_SHIFT, 4, 0),
465a3aab948SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR0_EL1_FPTrap_SHIFT, 4, 0),
466a3aab948SJames Morse ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, MVFR0_EL1_FPDP_SHIFT, 4, 0),
467a3aab948SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR0_EL1_FPSP_SHIFT, 4, 0),
468a3aab948SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR0_EL1_SIMDReg_SHIFT, 4, 0),
46985f15063SAmit Daniel Kachhap ARM64_FTR_END,
47085f15063SAmit Daniel Kachhap };
47185f15063SAmit Daniel Kachhap
47285f15063SAmit Daniel Kachhap static const struct arm64_ftr_bits ftr_mvfr1[] = {
473d3e1aa85SJames Morse ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, MVFR1_EL1_SIMDFMAC_SHIFT, 4, 0),
474846b73a4SAmit Daniel Kachhap ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, MVFR1_EL1_FPHP_SHIFT, 4, 0),
475846b73a4SAmit Daniel Kachhap ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, MVFR1_EL1_SIMDHP_SHIFT, 4, 0),
476d3e1aa85SJames Morse ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, MVFR1_EL1_SIMDSP_SHIFT, 4, 0),
477d3e1aa85SJames Morse ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, MVFR1_EL1_SIMDInt_SHIFT, 4, 0),
478d3e1aa85SJames Morse ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, MVFR1_EL1_SIMDLS_SHIFT, 4, 0),
479d3e1aa85SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR1_EL1_FPDNaN_SHIFT, 4, 0),
480d3e1aa85SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR1_EL1_FPFtZ_SHIFT, 4, 0),
48185f15063SAmit Daniel Kachhap ARM64_FTR_END,
48285f15063SAmit Daniel Kachhap };
48385f15063SAmit Daniel Kachhap
4845e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_mvfr2[] = {
485c6e155e8SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR2_EL1_FPMisc_SHIFT, 4, 0),
486c6e155e8SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, MVFR2_EL1_SIMDMisc_SHIFT, 4, 0),
4873c739b57SSuzuki K. Poulose ARM64_FTR_END,
4883c739b57SSuzuki K. Poulose };
4893c739b57SSuzuki K. Poulose
4905e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_dczid[] = {
491bacf3085SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_EXACT, DCZID_EL0_DZP_SHIFT, 1, 1),
492bacf3085SMark Brown ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, DCZID_EL0_BS_SHIFT, 4, 0),
4933c739b57SSuzuki K. Poulose ARM64_FTR_END,
4943c739b57SSuzuki K. Poulose };
4953c739b57SSuzuki K. Poulose
49621047e91SCatalin Marinas static const struct arm64_ftr_bits ftr_gmid[] = {
497e9757553SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, GMID_EL1_BS_SHIFT, 4, 0),
49821047e91SCatalin Marinas ARM64_FTR_END,
49921047e91SCatalin Marinas };
50021047e91SCatalin Marinas
5012a5bc6c4SAnshuman Khandual static const struct arm64_ftr_bits ftr_id_isar0[] = {
50252b3dc55SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR0_EL1_Divide_SHIFT, 4, 0),
50352b3dc55SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR0_EL1_Debug_SHIFT, 4, 0),
50452b3dc55SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR0_EL1_Coproc_SHIFT, 4, 0),
50552b3dc55SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR0_EL1_CmpBranch_SHIFT, 4, 0),
50652b3dc55SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR0_EL1_BitField_SHIFT, 4, 0),
50752b3dc55SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR0_EL1_BitCount_SHIFT, 4, 0),
50852b3dc55SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR0_EL1_Swap_SHIFT, 4, 0),
5092a5bc6c4SAnshuman Khandual ARM64_FTR_END,
5102a5bc6c4SAnshuman Khandual };
5113c739b57SSuzuki K. Poulose
5125e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_isar5[] = {
513816c8638SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR5_EL1_RDM_SHIFT, 4, 0),
514816c8638SJames Morse ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR5_EL1_CRC32_SHIFT, 4, 0),
515816c8638SJames Morse ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR5_EL1_SHA2_SHIFT, 4, 0),
516816c8638SJames Morse ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR5_EL1_SHA1_SHIFT, 4, 0),
517816c8638SJames Morse ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR5_EL1_AES_SHIFT, 4, 0),
518816c8638SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR5_EL1_SEVL_SHIFT, 4, 0),
5193c739b57SSuzuki K. Poulose ARM64_FTR_END,
5203c739b57SSuzuki K. Poulose };
5213c739b57SSuzuki K. Poulose
5225e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_mmfr4[] = {
5235ea1534eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR4_EL1_EVT_SHIFT, 4, 0),
5245ea1534eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR4_EL1_CCIDX_SHIFT, 4, 0),
5255ea1534eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR4_EL1_LSM_SHIFT, 4, 0),
5265ea1534eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR4_EL1_HPDS_SHIFT, 4, 0),
5275ea1534eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR4_EL1_CnP_SHIFT, 4, 0),
5285ea1534eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR4_EL1_XNX_SHIFT, 4, 0),
5295ea1534eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR4_EL1_AC2_SHIFT, 4, 0),
5308d3154afSAnshuman Khandual
531fcd65353SAnshuman Khandual /*
532fcd65353SAnshuman Khandual * SpecSEI = 1 indicates that the PE might generate an SError on an
533fcd65353SAnshuman Khandual * external abort on speculative read. It is safe to assume that an
534fcd65353SAnshuman Khandual * SError might be generated than it will not be. Hence it has been
535fcd65353SAnshuman Khandual * classified as FTR_HIGHER_SAFE.
536fcd65353SAnshuman Khandual */
5375ea1534eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_HIGHER_SAFE, ID_MMFR4_EL1_SpecSEI_SHIFT, 4, 0),
5383c739b57SSuzuki K. Poulose ARM64_FTR_END,
5393c739b57SSuzuki K. Poulose };
5403c739b57SSuzuki K. Poulose
5410113340eSWill Deacon static const struct arm64_ftr_bits ftr_id_isar4[] = {
5423f08e378SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR4_EL1_SWP_frac_SHIFT, 4, 0),
5433f08e378SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR4_EL1_PSR_M_SHIFT, 4, 0),
5443f08e378SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR4_EL1_SynchPrim_frac_SHIFT, 4, 0),
5453f08e378SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR4_EL1_Barrier_SHIFT, 4, 0),
5463f08e378SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR4_EL1_SMC_SHIFT, 4, 0),
5473f08e378SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR4_EL1_Writeback_SHIFT, 4, 0),
5483f08e378SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR4_EL1_WithShifts_SHIFT, 4, 0),
5493f08e378SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR4_EL1_Unpriv_SHIFT, 4, 0),
5500113340eSWill Deacon ARM64_FTR_END,
5510113340eSWill Deacon };
5520113340eSWill Deacon
553152accf8SAnshuman Khandual static const struct arm64_ftr_bits ftr_id_mmfr5[] = {
5547b24177cSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_MMFR5_EL1_ETS_SHIFT, 4, 0),
555152accf8SAnshuman Khandual ARM64_FTR_END,
556152accf8SAnshuman Khandual };
557152accf8SAnshuman Khandual
5588e3747beSAnshuman Khandual static const struct arm64_ftr_bits ftr_id_isar6[] = {
5590864d1e4SAmit Daniel Kachhap ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR6_EL1_I8MM_SHIFT, 4, 0),
560f64234faSAmit Daniel Kachhap ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR6_EL1_BF16_SHIFT, 4, 0),
561eef4344fSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR6_EL1_SPECRES_SHIFT, 4, 0),
5622d602aa9SAmit Daniel Kachhap ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR6_EL1_SB_SHIFT, 4, 0),
5634a87be25SAmit Daniel Kachhap ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR6_EL1_FHM_SHIFT, 4, 0),
56427addd40SAmit Daniel Kachhap ARM64_FTR_BITS(FTR_VISIBLE, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR6_EL1_DP_SHIFT, 4, 0),
565eef4344fSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_ISAR6_EL1_JSCVT_SHIFT, 4, 0),
5668e3747beSAnshuman Khandual ARM64_FTR_END,
5678e3747beSAnshuman Khandual };
5688e3747beSAnshuman Khandual
5695e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_pfr0[] = {
570e0bf98feSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR0_EL1_DIT_SHIFT, 4, 0),
571e0bf98feSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_PFR0_EL1_CSV2_SHIFT, 4, 0),
572e0bf98feSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR0_EL1_State3_SHIFT, 4, 0),
573e0bf98feSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR0_EL1_State2_SHIFT, 4, 0),
574e0bf98feSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR0_EL1_State1_SHIFT, 4, 0),
575e0bf98feSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR0_EL1_State0_SHIFT, 4, 0),
5763c739b57SSuzuki K. Poulose ARM64_FTR_END,
5773c739b57SSuzuki K. Poulose };
5783c739b57SSuzuki K. Poulose
5790113340eSWill Deacon static const struct arm64_ftr_bits ftr_id_pfr1[] = {
5800a648056SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR1_EL1_GIC_SHIFT, 4, 0),
5810a648056SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR1_EL1_Virt_frac_SHIFT, 4, 0),
5820a648056SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR1_EL1_Sec_frac_SHIFT, 4, 0),
5830a648056SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR1_EL1_GenTimer_SHIFT, 4, 0),
5840a648056SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR1_EL1_Virtualization_SHIFT, 4, 0),
5850a648056SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR1_EL1_MProgMod_SHIFT, 4, 0),
5860a648056SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR1_EL1_Security_SHIFT, 4, 0),
5870a648056SJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_PFR1_EL1_ProgMod_SHIFT, 4, 0),
5880113340eSWill Deacon ARM64_FTR_END,
5890113340eSWill Deacon };
5900113340eSWill Deacon
59116824085SAnshuman Khandual static const struct arm64_ftr_bits ftr_id_pfr2[] = {
5924f2c9bf1SAmit Daniel Kachhap ARM64_FTR_BITS(FTR_VISIBLE, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_PFR2_EL1_SSBS_SHIFT, 4, 0),
5931ecf3dcbSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE, ID_PFR2_EL1_CSV3_SHIFT, 4, 0),
59416824085SAnshuman Khandual ARM64_FTR_END,
59516824085SAnshuman Khandual };
59616824085SAnshuman Khandual
5975e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_id_dfr0[] = {
5981ed1b90aSAnshuman Khandual /* [31:28] TraceFilt */
599f4f5969eSJames Morse S_ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_EXACT, ID_DFR0_EL1_PerfMon_SHIFT, 4, 0),
600f4f5969eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_DFR0_EL1_MProfDbg_SHIFT, 4, 0),
601f4f5969eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_DFR0_EL1_MMapTrc_SHIFT, 4, 0),
602f4f5969eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_DFR0_EL1_CopTrc_SHIFT, 4, 0),
603f4f5969eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_DFR0_EL1_MMapDbg_SHIFT, 4, 0),
604f4f5969eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_DFR0_EL1_CopSDbg_SHIFT, 4, 0),
605f4f5969eSJames Morse ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_DFR0_EL1_CopDbg_SHIFT, 4, 0),
606e5343503SSuzuki K Poulose ARM64_FTR_END,
607e5343503SSuzuki K Poulose };
608e5343503SSuzuki K Poulose
609dd35ec07SAnshuman Khandual static const struct arm64_ftr_bits ftr_id_dfr1[] = {
610d092106dSJames Morse S_ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, ID_DFR1_EL1_MTPMU_SHIFT, 4, 0),
611dd35ec07SAnshuman Khandual ARM64_FTR_END,
612dd35ec07SAnshuman Khandual };
613dd35ec07SAnshuman Khandual
6142e0f2478SDave Martin static const struct arm64_ftr_bits ftr_zcr[] = {
6152e0f2478SDave Martin ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE,
6165b06dcfdSMark Brown ZCR_ELx_LEN_SHIFT, ZCR_ELx_LEN_WIDTH, 0), /* LEN */
6172e0f2478SDave Martin ARM64_FTR_END,
6182e0f2478SDave Martin };
6192e0f2478SDave Martin
620b42990d3SMark Brown static const struct arm64_ftr_bits ftr_smcr[] = {
621b42990d3SMark Brown ARM64_FTR_BITS(FTR_HIDDEN, FTR_NONSTRICT, FTR_LOWER_SAFE,
6225b06dcfdSMark Brown SMCR_ELx_LEN_SHIFT, SMCR_ELx_LEN_WIDTH, 0), /* LEN */
6233c739b57SSuzuki K. Poulose ARM64_FTR_END,
6243c739b57SSuzuki K. Poulose };
6253c739b57SSuzuki K. Poulose
6263c739b57SSuzuki K. Poulose /*
6273c739b57SSuzuki K. Poulose * Common ftr bits for a 32bit register with all hidden, strict
6283c739b57SSuzuki K. Poulose * attributes, with 4bit feature fields and a default safe value of
6293c739b57SSuzuki K. Poulose * 0. Covers the following 32bit registers:
63085f15063SAmit Daniel Kachhap * id_isar[1-3], id_mmfr[1-3]
6313c739b57SSuzuki K. Poulose */
6325e49d73cSArd Biesheuvel static const struct arm64_ftr_bits ftr_generic_32bits[] = {
633fe4fbdbcSSuzuki K Poulose ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, 28, 4, 0),
634fe4fbdbcSSuzuki K Poulose ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, 24, 4, 0),
635fe4fbdbcSSuzuki K Poulose ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, 20, 4, 0),
636fe4fbdbcSSuzuki K Poulose ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, 16, 4, 0),
637fe4fbdbcSSuzuki K Poulose ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, 12, 4, 0),
638fe4fbdbcSSuzuki K Poulose ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, 8, 4, 0),
639fe4fbdbcSSuzuki K Poulose ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, 4, 4, 0),
640fe4fbdbcSSuzuki K Poulose ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_LOWER_SAFE, 0, 4, 0),
6413c739b57SSuzuki K. Poulose ARM64_FTR_END,
6423c739b57SSuzuki K. Poulose };
6433c739b57SSuzuki K. Poulose
644eab43e88SSuzuki K Poulose /* Table for a single 32bit feature value */
645eab43e88SSuzuki K Poulose static const struct arm64_ftr_bits ftr_single32[] = {
646fe4fbdbcSSuzuki K Poulose ARM64_FTR_BITS(FTR_HIDDEN, FTR_STRICT, FTR_EXACT, 0, 32, 0),
6473c739b57SSuzuki K. Poulose ARM64_FTR_END,
6483c739b57SSuzuki K. Poulose };
6493c739b57SSuzuki K. Poulose
650eab43e88SSuzuki K Poulose static const struct arm64_ftr_bits ftr_raz[] = {
6513c739b57SSuzuki K. Poulose ARM64_FTR_END,
6523c739b57SSuzuki K. Poulose };
6533c739b57SSuzuki K. Poulose
6549dc232a8SReiji Watanabe #define __ARM64_FTR_REG_OVERRIDE(id_str, id, table, ovr) { \
6553c739b57SSuzuki K. Poulose .sys_id = id, \
6566f2b7eefSArd Biesheuvel .reg = &(struct arm64_ftr_reg){ \
6579dc232a8SReiji Watanabe .name = id_str, \
6588f266a5dSMarc Zyngier .override = (ovr), \
6593c739b57SSuzuki K. Poulose .ftr_bits = &((table)[0]), \
6606f2b7eefSArd Biesheuvel }}
6613c739b57SSuzuki K. Poulose
6629dc232a8SReiji Watanabe #define ARM64_FTR_REG_OVERRIDE(id, table, ovr) \
6639dc232a8SReiji Watanabe __ARM64_FTR_REG_OVERRIDE(#id, id, table, ovr)
6649dc232a8SReiji Watanabe
6659dc232a8SReiji Watanabe #define ARM64_FTR_REG(id, table) \
6669dc232a8SReiji Watanabe __ARM64_FTR_REG_OVERRIDE(#id, id, table, &no_override)
6678f266a5dSMarc Zyngier
668361db0fcSMarc Zyngier struct arm64_ftr_override __ro_after_init id_aa64mmfr1_override;
669504ee236SMarc Zyngier struct arm64_ftr_override __ro_after_init id_aa64pfr0_override;
67093ad55b7SMarc Zyngier struct arm64_ftr_override __ro_after_init id_aa64pfr1_override;
671504ee236SMarc Zyngier struct arm64_ftr_override __ro_after_init id_aa64zfr0_override;
672b3000e21SMarc Zyngier struct arm64_ftr_override __ro_after_init id_aa64smfr0_override;
673f8da5752SMarc Zyngier struct arm64_ftr_override __ro_after_init id_aa64isar1_override;
674def8c222SVladimir Murzin struct arm64_ftr_override __ro_after_init id_aa64isar2_override;
675361db0fcSMarc Zyngier
6760ddc312bSMarc Zyngier struct arm64_ftr_override arm64_sw_feature_override;
6770ddc312bSMarc Zyngier
6786f2b7eefSArd Biesheuvel static const struct __ftr_reg_entry {
6796f2b7eefSArd Biesheuvel u32 sys_id;
6806f2b7eefSArd Biesheuvel struct arm64_ftr_reg *reg;
6816f2b7eefSArd Biesheuvel } arm64_ftr_regs[] = {
6823c739b57SSuzuki K. Poulose
6833c739b57SSuzuki K. Poulose /* Op1 = 0, CRn = 0, CRm = 1 */
6843c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_PFR0_EL1, ftr_id_pfr0),
6850113340eSWill Deacon ARM64_FTR_REG(SYS_ID_PFR1_EL1, ftr_id_pfr1),
686e5343503SSuzuki K Poulose ARM64_FTR_REG(SYS_ID_DFR0_EL1, ftr_id_dfr0),
6873c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_MMFR0_EL1, ftr_id_mmfr0),
6883c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_MMFR1_EL1, ftr_generic_32bits),
6893c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_MMFR2_EL1, ftr_generic_32bits),
6903c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_MMFR3_EL1, ftr_generic_32bits),
6913c739b57SSuzuki K. Poulose
6923c739b57SSuzuki K. Poulose /* Op1 = 0, CRn = 0, CRm = 2 */
6932a5bc6c4SAnshuman Khandual ARM64_FTR_REG(SYS_ID_ISAR0_EL1, ftr_id_isar0),
6943c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_ISAR1_EL1, ftr_generic_32bits),
6953c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_ISAR2_EL1, ftr_generic_32bits),
6963c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_ISAR3_EL1, ftr_generic_32bits),
6970113340eSWill Deacon ARM64_FTR_REG(SYS_ID_ISAR4_EL1, ftr_id_isar4),
6983c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_ISAR5_EL1, ftr_id_isar5),
6993c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_MMFR4_EL1, ftr_id_mmfr4),
7008e3747beSAnshuman Khandual ARM64_FTR_REG(SYS_ID_ISAR6_EL1, ftr_id_isar6),
7013c739b57SSuzuki K. Poulose
7023c739b57SSuzuki K. Poulose /* Op1 = 0, CRn = 0, CRm = 3 */
70385f15063SAmit Daniel Kachhap ARM64_FTR_REG(SYS_MVFR0_EL1, ftr_mvfr0),
70485f15063SAmit Daniel Kachhap ARM64_FTR_REG(SYS_MVFR1_EL1, ftr_mvfr1),
7053c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_MVFR2_EL1, ftr_mvfr2),
70616824085SAnshuman Khandual ARM64_FTR_REG(SYS_ID_PFR2_EL1, ftr_id_pfr2),
707dd35ec07SAnshuman Khandual ARM64_FTR_REG(SYS_ID_DFR1_EL1, ftr_id_dfr1),
708152accf8SAnshuman Khandual ARM64_FTR_REG(SYS_ID_MMFR5_EL1, ftr_id_mmfr5),
7093c739b57SSuzuki K. Poulose
7103c739b57SSuzuki K. Poulose /* Op1 = 0, CRn = 0, CRm = 4 */
711504ee236SMarc Zyngier ARM64_FTR_REG_OVERRIDE(SYS_ID_AA64PFR0_EL1, ftr_id_aa64pfr0,
712504ee236SMarc Zyngier &id_aa64pfr0_override),
71393ad55b7SMarc Zyngier ARM64_FTR_REG_OVERRIDE(SYS_ID_AA64PFR1_EL1, ftr_id_aa64pfr1,
71493ad55b7SMarc Zyngier &id_aa64pfr1_override),
715504ee236SMarc Zyngier ARM64_FTR_REG_OVERRIDE(SYS_ID_AA64ZFR0_EL1, ftr_id_aa64zfr0,
716504ee236SMarc Zyngier &id_aa64zfr0_override),
717b3000e21SMarc Zyngier ARM64_FTR_REG_OVERRIDE(SYS_ID_AA64SMFR0_EL1, ftr_id_aa64smfr0,
718b3000e21SMarc Zyngier &id_aa64smfr0_override),
7193c739b57SSuzuki K. Poulose
7203c739b57SSuzuki K. Poulose /* Op1 = 0, CRn = 0, CRm = 5 */
7213c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_AA64DFR0_EL1, ftr_id_aa64dfr0),
722eab43e88SSuzuki K Poulose ARM64_FTR_REG(SYS_ID_AA64DFR1_EL1, ftr_raz),
7233c739b57SSuzuki K. Poulose
7243c739b57SSuzuki K. Poulose /* Op1 = 0, CRn = 0, CRm = 6 */
7253c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_AA64ISAR0_EL1, ftr_id_aa64isar0),
726f8da5752SMarc Zyngier ARM64_FTR_REG_OVERRIDE(SYS_ID_AA64ISAR1_EL1, ftr_id_aa64isar1,
727f8da5752SMarc Zyngier &id_aa64isar1_override),
728def8c222SVladimir Murzin ARM64_FTR_REG_OVERRIDE(SYS_ID_AA64ISAR2_EL1, ftr_id_aa64isar2,
729def8c222SVladimir Murzin &id_aa64isar2_override),
7303c739b57SSuzuki K. Poulose
7313c739b57SSuzuki K. Poulose /* Op1 = 0, CRn = 0, CRm = 7 */
7323c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_ID_AA64MMFR0_EL1, ftr_id_aa64mmfr0),
733361db0fcSMarc Zyngier ARM64_FTR_REG_OVERRIDE(SYS_ID_AA64MMFR1_EL1, ftr_id_aa64mmfr1,
734361db0fcSMarc Zyngier &id_aa64mmfr1_override),
735406e3087SJames Morse ARM64_FTR_REG(SYS_ID_AA64MMFR2_EL1, ftr_id_aa64mmfr2),
736edc25898SJoey Gouly ARM64_FTR_REG(SYS_ID_AA64MMFR3_EL1, ftr_id_aa64mmfr3),
7373c739b57SSuzuki K. Poulose
7382e0f2478SDave Martin /* Op1 = 0, CRn = 1, CRm = 2 */
7392e0f2478SDave Martin ARM64_FTR_REG(SYS_ZCR_EL1, ftr_zcr),
740b42990d3SMark Brown ARM64_FTR_REG(SYS_SMCR_EL1, ftr_smcr),
7412e0f2478SDave Martin
74221047e91SCatalin Marinas /* Op1 = 1, CRn = 0, CRm = 0 */
74321047e91SCatalin Marinas ARM64_FTR_REG(SYS_GMID_EL1, ftr_gmid),
74421047e91SCatalin Marinas
7453c739b57SSuzuki K. Poulose /* Op1 = 3, CRn = 0, CRm = 0 */
746675b0563SArd Biesheuvel { SYS_CTR_EL0, &arm64_ftr_reg_ctrel0 },
7473c739b57SSuzuki K. Poulose ARM64_FTR_REG(SYS_DCZID_EL0, ftr_dczid),
7483c739b57SSuzuki K. Poulose
7493c739b57SSuzuki K. Poulose /* Op1 = 3, CRn = 14, CRm = 0 */
750eab43e88SSuzuki K Poulose ARM64_FTR_REG(SYS_CNTFRQ_EL0, ftr_single32),
7513c739b57SSuzuki K. Poulose };
7523c739b57SSuzuki K. Poulose
search_cmp_ftr_reg(const void * id,const void * regp)7533c739b57SSuzuki K. Poulose static int search_cmp_ftr_reg(const void *id, const void *regp)
7543c739b57SSuzuki K. Poulose {
7556f2b7eefSArd Biesheuvel return (int)(unsigned long)id - (int)((const struct __ftr_reg_entry *)regp)->sys_id;
7563c739b57SSuzuki K. Poulose }
7573c739b57SSuzuki K. Poulose
7583c739b57SSuzuki K. Poulose /*
7593577dd37SAnshuman Khandual * get_arm64_ftr_reg_nowarn - Looks up a feature register entry using
7603577dd37SAnshuman Khandual * its sys_reg() encoding. With the array arm64_ftr_regs sorted in the
7613c739b57SSuzuki K. Poulose * ascending order of sys_id, we use binary search to find a matching
7623c739b57SSuzuki K. Poulose * entry.
7633c739b57SSuzuki K. Poulose *
7643c739b57SSuzuki K. Poulose * returns - Upon success, matching ftr_reg entry for id.
7653c739b57SSuzuki K. Poulose * - NULL on failure. It is upto the caller to decide
7663c739b57SSuzuki K. Poulose * the impact of a failure.
7673c739b57SSuzuki K. Poulose */
get_arm64_ftr_reg_nowarn(u32 sys_id)7683577dd37SAnshuman Khandual static struct arm64_ftr_reg *get_arm64_ftr_reg_nowarn(u32 sys_id)
7693c739b57SSuzuki K. Poulose {
7706f2b7eefSArd Biesheuvel const struct __ftr_reg_entry *ret;
7716f2b7eefSArd Biesheuvel
7726f2b7eefSArd Biesheuvel ret = bsearch((const void *)(unsigned long)sys_id,
7733c739b57SSuzuki K. Poulose arm64_ftr_regs,
7743c739b57SSuzuki K. Poulose ARRAY_SIZE(arm64_ftr_regs),
7753c739b57SSuzuki K. Poulose sizeof(arm64_ftr_regs[0]),
7763c739b57SSuzuki K. Poulose search_cmp_ftr_reg);
7776f2b7eefSArd Biesheuvel if (ret)
7786f2b7eefSArd Biesheuvel return ret->reg;
7796f2b7eefSArd Biesheuvel return NULL;
7803c739b57SSuzuki K. Poulose }
7813c739b57SSuzuki K. Poulose
7823577dd37SAnshuman Khandual /*
7833577dd37SAnshuman Khandual * get_arm64_ftr_reg - Looks up a feature register entry using
7843577dd37SAnshuman Khandual * its sys_reg() encoding. This calls get_arm64_ftr_reg_nowarn().
7853577dd37SAnshuman Khandual *
7863577dd37SAnshuman Khandual * returns - Upon success, matching ftr_reg entry for id.
7873577dd37SAnshuman Khandual * - NULL on failure but with an WARN_ON().
7883577dd37SAnshuman Khandual */
get_arm64_ftr_reg(u32 sys_id)789445c953eSJames Morse struct arm64_ftr_reg *get_arm64_ftr_reg(u32 sys_id)
7903577dd37SAnshuman Khandual {
7913577dd37SAnshuman Khandual struct arm64_ftr_reg *reg;
7923577dd37SAnshuman Khandual
7933577dd37SAnshuman Khandual reg = get_arm64_ftr_reg_nowarn(sys_id);
7943577dd37SAnshuman Khandual
7953577dd37SAnshuman Khandual /*
7963577dd37SAnshuman Khandual * Requesting a non-existent register search is an error. Warn
7973577dd37SAnshuman Khandual * and let the caller handle it.
7983577dd37SAnshuman Khandual */
7993577dd37SAnshuman Khandual WARN_ON(!reg);
8003577dd37SAnshuman Khandual return reg;
8013577dd37SAnshuman Khandual }
8023577dd37SAnshuman Khandual
arm64_ftr_set_value(const struct arm64_ftr_bits * ftrp,s64 reg,s64 ftr_val)8035e49d73cSArd Biesheuvel static u64 arm64_ftr_set_value(const struct arm64_ftr_bits *ftrp, s64 reg,
8045e49d73cSArd Biesheuvel s64 ftr_val)
8053c739b57SSuzuki K. Poulose {
8063c739b57SSuzuki K. Poulose u64 mask = arm64_ftr_mask(ftrp);
8073c739b57SSuzuki K. Poulose
8083c739b57SSuzuki K. Poulose reg &= ~mask;
8093c739b57SSuzuki K. Poulose reg |= (ftr_val << ftrp->shift) & mask;
8103c739b57SSuzuki K. Poulose return reg;
8113c739b57SSuzuki K. Poulose }
8123c739b57SSuzuki K. Poulose
arm64_ftr_safe_value(const struct arm64_ftr_bits * ftrp,s64 new,s64 cur)8132e8bf0cbSJing Zhang s64 arm64_ftr_safe_value(const struct arm64_ftr_bits *ftrp, s64 new,
8145e49d73cSArd Biesheuvel s64 cur)
8153c739b57SSuzuki K. Poulose {
8163c739b57SSuzuki K. Poulose s64 ret = 0;
8173c739b57SSuzuki K. Poulose
8183c739b57SSuzuki K. Poulose switch (ftrp->type) {
8193c739b57SSuzuki K. Poulose case FTR_EXACT:
8203c739b57SSuzuki K. Poulose ret = ftrp->safe_val;
8213c739b57SSuzuki K. Poulose break;
8223c739b57SSuzuki K. Poulose case FTR_LOWER_SAFE:
823f6334b17Skernel test robot ret = min(new, cur);
8243c739b57SSuzuki K. Poulose break;
825147b9635SWill Deacon case FTR_HIGHER_OR_ZERO_SAFE:
826147b9635SWill Deacon if (!cur || !new)
827147b9635SWill Deacon break;
828df561f66SGustavo A. R. Silva fallthrough;
8293c739b57SSuzuki K. Poulose case FTR_HIGHER_SAFE:
830f6334b17Skernel test robot ret = max(new, cur);
8313c739b57SSuzuki K. Poulose break;
8323c739b57SSuzuki K. Poulose default:
8333c739b57SSuzuki K. Poulose BUG();
8343c739b57SSuzuki K. Poulose }
8353c739b57SSuzuki K. Poulose
8363c739b57SSuzuki K. Poulose return ret;
8373c739b57SSuzuki K. Poulose }
8383c739b57SSuzuki K. Poulose
sort_ftr_regs(void)8393c739b57SSuzuki K. Poulose static void __init sort_ftr_regs(void)
8403c739b57SSuzuki K. Poulose {
841c6c83d75SAnshuman Khandual unsigned int i;
8426f2b7eefSArd Biesheuvel
843c6c83d75SAnshuman Khandual for (i = 0; i < ARRAY_SIZE(arm64_ftr_regs); i++) {
844c6c83d75SAnshuman Khandual const struct arm64_ftr_reg *ftr_reg = arm64_ftr_regs[i].reg;
845c6c83d75SAnshuman Khandual const struct arm64_ftr_bits *ftr_bits = ftr_reg->ftr_bits;
846c6c83d75SAnshuman Khandual unsigned int j = 0;
847c6c83d75SAnshuman Khandual
848c6c83d75SAnshuman Khandual /*
849c6c83d75SAnshuman Khandual * Features here must be sorted in descending order with respect
850c6c83d75SAnshuman Khandual * to their shift values and should not overlap with each other.
851c6c83d75SAnshuman Khandual */
852c6c83d75SAnshuman Khandual for (; ftr_bits->width != 0; ftr_bits++, j++) {
853c6c83d75SAnshuman Khandual unsigned int width = ftr_reg->ftr_bits[j].width;
854c6c83d75SAnshuman Khandual unsigned int shift = ftr_reg->ftr_bits[j].shift;
855c6c83d75SAnshuman Khandual unsigned int prev_shift;
856c6c83d75SAnshuman Khandual
857c6c83d75SAnshuman Khandual WARN((shift + width) > 64,
858c6c83d75SAnshuman Khandual "%s has invalid feature at shift %d\n",
859c6c83d75SAnshuman Khandual ftr_reg->name, shift);
860c6c83d75SAnshuman Khandual
861c6c83d75SAnshuman Khandual /*
862c6c83d75SAnshuman Khandual * Skip the first feature. There is nothing to
863c6c83d75SAnshuman Khandual * compare against for now.
864c6c83d75SAnshuman Khandual */
865c6c83d75SAnshuman Khandual if (j == 0)
866c6c83d75SAnshuman Khandual continue;
867c6c83d75SAnshuman Khandual
868c6c83d75SAnshuman Khandual prev_shift = ftr_reg->ftr_bits[j - 1].shift;
869c6c83d75SAnshuman Khandual WARN((shift + width) > prev_shift,
870c6c83d75SAnshuman Khandual "%s has feature overlap at shift %d\n",
871c6c83d75SAnshuman Khandual ftr_reg->name, shift);
872c6c83d75SAnshuman Khandual }
873c6c83d75SAnshuman Khandual
874c6c83d75SAnshuman Khandual /*
875c6c83d75SAnshuman Khandual * Skip the first register. There is nothing to
876c6c83d75SAnshuman Khandual * compare against for now.
877c6c83d75SAnshuman Khandual */
878c6c83d75SAnshuman Khandual if (i == 0)
879c6c83d75SAnshuman Khandual continue;
880c6c83d75SAnshuman Khandual /*
881c6c83d75SAnshuman Khandual * Registers here must be sorted in ascending order with respect
882c6c83d75SAnshuman Khandual * to sys_id for subsequent binary search in get_arm64_ftr_reg()
883c6c83d75SAnshuman Khandual * to work correctly.
884c6c83d75SAnshuman Khandual */
8852de7689cSKristina Martsenko BUG_ON(arm64_ftr_regs[i].sys_id <= arm64_ftr_regs[i - 1].sys_id);
8863c739b57SSuzuki K. Poulose }
887c6c83d75SAnshuman Khandual }
8883c739b57SSuzuki K. Poulose
8893c739b57SSuzuki K. Poulose /*
8903c739b57SSuzuki K. Poulose * Initialise the CPU feature register from Boot CPU values.
8913c739b57SSuzuki K. Poulose * Also initiliases the strict_mask for the register.
892b389d799SMark Rutland * Any bits that are not covered by an arm64_ftr_bits entry are considered
893b389d799SMark Rutland * RES0 for the system-wide value, and must strictly match.
8943c739b57SSuzuki K. Poulose */
init_cpu_ftr_reg(u32 sys_reg,u64 new)8952122a833SWill Deacon static void init_cpu_ftr_reg(u32 sys_reg, u64 new)
8963c739b57SSuzuki K. Poulose {
8973c739b57SSuzuki K. Poulose u64 val = 0;
8983c739b57SSuzuki K. Poulose u64 strict_mask = ~0x0ULL;
899fe4fbdbcSSuzuki K Poulose u64 user_mask = 0;
900b389d799SMark Rutland u64 valid_mask = 0;
901b389d799SMark Rutland
9025e49d73cSArd Biesheuvel const struct arm64_ftr_bits *ftrp;
9033c739b57SSuzuki K. Poulose struct arm64_ftr_reg *reg = get_arm64_ftr_reg(sys_reg);
9043c739b57SSuzuki K. Poulose
9053577dd37SAnshuman Khandual if (!reg)
9063577dd37SAnshuman Khandual return;
9073c739b57SSuzuki K. Poulose
9083c739b57SSuzuki K. Poulose for (ftrp = reg->ftr_bits; ftrp->width; ftrp++) {
909b389d799SMark Rutland u64 ftr_mask = arm64_ftr_mask(ftrp);
9103c739b57SSuzuki K. Poulose s64 ftr_new = arm64_ftr_value(ftrp, new);
9118f266a5dSMarc Zyngier s64 ftr_ovr = arm64_ftr_value(ftrp, reg->override->val);
9128f266a5dSMarc Zyngier
9138f266a5dSMarc Zyngier if ((ftr_mask & reg->override->mask) == ftr_mask) {
9148f266a5dSMarc Zyngier s64 tmp = arm64_ftr_safe_value(ftrp, ftr_ovr, ftr_new);
9158f266a5dSMarc Zyngier char *str = NULL;
9168f266a5dSMarc Zyngier
9178f266a5dSMarc Zyngier if (ftr_ovr != tmp) {
9188f266a5dSMarc Zyngier /* Unsafe, remove the override */
9198f266a5dSMarc Zyngier reg->override->mask &= ~ftr_mask;
9208f266a5dSMarc Zyngier reg->override->val &= ~ftr_mask;
9218f266a5dSMarc Zyngier tmp = ftr_ovr;
9228f266a5dSMarc Zyngier str = "ignoring override";
9238f266a5dSMarc Zyngier } else if (ftr_new != tmp) {
9248f266a5dSMarc Zyngier /* Override was valid */
9258f266a5dSMarc Zyngier ftr_new = tmp;
9268f266a5dSMarc Zyngier str = "forced";
9278f266a5dSMarc Zyngier } else if (ftr_ovr == tmp) {
9288f266a5dSMarc Zyngier /* Override was the safe value */
9298f266a5dSMarc Zyngier str = "already set";
9308f266a5dSMarc Zyngier }
9318f266a5dSMarc Zyngier
9328f266a5dSMarc Zyngier if (str)
9338f266a5dSMarc Zyngier pr_warn("%s[%d:%d]: %s to %llx\n",
9348f266a5dSMarc Zyngier reg->name,
9358f266a5dSMarc Zyngier ftrp->shift + ftrp->width - 1,
9368f266a5dSMarc Zyngier ftrp->shift, str, tmp);
937cac642c1SMarc Zyngier } else if ((ftr_mask & reg->override->val) == ftr_mask) {
938cac642c1SMarc Zyngier reg->override->val &= ~ftr_mask;
939cac642c1SMarc Zyngier pr_warn("%s[%d:%d]: impossible override, ignored\n",
940cac642c1SMarc Zyngier reg->name,
941cac642c1SMarc Zyngier ftrp->shift + ftrp->width - 1,
942cac642c1SMarc Zyngier ftrp->shift);
9438f266a5dSMarc Zyngier }
9443c739b57SSuzuki K. Poulose
9453c739b57SSuzuki K. Poulose val = arm64_ftr_set_value(ftrp, val, ftr_new);
946b389d799SMark Rutland
947b389d799SMark Rutland valid_mask |= ftr_mask;
9483c739b57SSuzuki K. Poulose if (!ftrp->strict)
949b389d799SMark Rutland strict_mask &= ~ftr_mask;
950fe4fbdbcSSuzuki K Poulose if (ftrp->visible)
951fe4fbdbcSSuzuki K Poulose user_mask |= ftr_mask;
952fe4fbdbcSSuzuki K Poulose else
953fe4fbdbcSSuzuki K Poulose reg->user_val = arm64_ftr_set_value(ftrp,
954fe4fbdbcSSuzuki K Poulose reg->user_val,
955fe4fbdbcSSuzuki K Poulose ftrp->safe_val);
9563c739b57SSuzuki K. Poulose }
957b389d799SMark Rutland
958b389d799SMark Rutland val &= valid_mask;
959b389d799SMark Rutland
9603c739b57SSuzuki K. Poulose reg->sys_val = val;
9613c739b57SSuzuki K. Poulose reg->strict_mask = strict_mask;
962fe4fbdbcSSuzuki K Poulose reg->user_mask = user_mask;
9633c739b57SSuzuki K. Poulose }
9643c739b57SSuzuki K. Poulose
9651e89baedSSuzuki K Poulose extern const struct arm64_cpu_capabilities arm64_errata[];
96682a3a21bSSuzuki K Poulose static const struct arm64_cpu_capabilities arm64_features[];
96782a3a21bSSuzuki K Poulose
96882a3a21bSSuzuki K Poulose static void __init
init_cpucap_indirect_list_from_array(const struct arm64_cpu_capabilities * caps)9691c8ae429SMark Rutland init_cpucap_indirect_list_from_array(const struct arm64_cpu_capabilities *caps)
97082a3a21bSSuzuki K Poulose {
97182a3a21bSSuzuki K Poulose for (; caps->matches; caps++) {
97282a3a21bSSuzuki K Poulose if (WARN(caps->capability >= ARM64_NCAPS,
97382a3a21bSSuzuki K Poulose "Invalid capability %d\n", caps->capability))
97482a3a21bSSuzuki K Poulose continue;
9751c8ae429SMark Rutland if (WARN(cpucap_ptrs[caps->capability],
97682a3a21bSSuzuki K Poulose "Duplicate entry for capability %d\n",
97782a3a21bSSuzuki K Poulose caps->capability))
97882a3a21bSSuzuki K Poulose continue;
9791c8ae429SMark Rutland cpucap_ptrs[caps->capability] = caps;
98082a3a21bSSuzuki K Poulose }
98182a3a21bSSuzuki K Poulose }
98282a3a21bSSuzuki K Poulose
init_cpucap_indirect_list(void)9831c8ae429SMark Rutland static void __init init_cpucap_indirect_list(void)
98482a3a21bSSuzuki K Poulose {
9851c8ae429SMark Rutland init_cpucap_indirect_list_from_array(arm64_features);
9861c8ae429SMark Rutland init_cpucap_indirect_list_from_array(arm64_errata);
98782a3a21bSSuzuki K Poulose }
98882a3a21bSSuzuki K Poulose
989fd9d63daSSuzuki K Poulose static void __init setup_boot_cpu_capabilities(void);
9901e89baedSSuzuki K Poulose
init_32bit_cpu_features(struct cpuinfo_32bit * info)9912122a833SWill Deacon static void init_32bit_cpu_features(struct cpuinfo_32bit *info)
9923c739b57SSuzuki K. Poulose {
9933c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_DFR0_EL1, info->reg_id_dfr0);
994dd35ec07SAnshuman Khandual init_cpu_ftr_reg(SYS_ID_DFR1_EL1, info->reg_id_dfr1);
9953c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_ISAR0_EL1, info->reg_id_isar0);
9963c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_ISAR1_EL1, info->reg_id_isar1);
9973c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_ISAR2_EL1, info->reg_id_isar2);
9983c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_ISAR3_EL1, info->reg_id_isar3);
9993c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_ISAR4_EL1, info->reg_id_isar4);
10003c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_ISAR5_EL1, info->reg_id_isar5);
10018e3747beSAnshuman Khandual init_cpu_ftr_reg(SYS_ID_ISAR6_EL1, info->reg_id_isar6);
10023c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_MMFR0_EL1, info->reg_id_mmfr0);
10033c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_MMFR1_EL1, info->reg_id_mmfr1);
10043c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_MMFR2_EL1, info->reg_id_mmfr2);
10053c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_MMFR3_EL1, info->reg_id_mmfr3);
1006858b8a80SAnshuman Khandual init_cpu_ftr_reg(SYS_ID_MMFR4_EL1, info->reg_id_mmfr4);
1007152accf8SAnshuman Khandual init_cpu_ftr_reg(SYS_ID_MMFR5_EL1, info->reg_id_mmfr5);
10083c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_PFR0_EL1, info->reg_id_pfr0);
10093c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_ID_PFR1_EL1, info->reg_id_pfr1);
101016824085SAnshuman Khandual init_cpu_ftr_reg(SYS_ID_PFR2_EL1, info->reg_id_pfr2);
10113c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_MVFR0_EL1, info->reg_mvfr0);
10123c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_MVFR1_EL1, info->reg_mvfr1);
10133c739b57SSuzuki K. Poulose init_cpu_ftr_reg(SYS_MVFR2_EL1, info->reg_mvfr2);
10143c739b57SSuzuki K. Poulose }
10153c739b57SSuzuki K. Poulose
init_cpu_features(struct cpuinfo_arm64 * info)1016930a58b4SWill Deacon void __init init_cpu_features(struct cpuinfo_arm64 *info)
1017930a58b4SWill Deacon {
1018930a58b4SWill Deacon /* Before we start using the tables, make sure it is sorted */
1019930a58b4SWill Deacon sort_ftr_regs();
1020930a58b4SWill Deacon
1021930a58b4SWill Deacon init_cpu_ftr_reg(SYS_CTR_EL0, info->reg_ctr);
1022930a58b4SWill Deacon init_cpu_ftr_reg(SYS_DCZID_EL0, info->reg_dczid);
1023930a58b4SWill Deacon init_cpu_ftr_reg(SYS_CNTFRQ_EL0, info->reg_cntfrq);
1024930a58b4SWill Deacon init_cpu_ftr_reg(SYS_ID_AA64DFR0_EL1, info->reg_id_aa64dfr0);
1025930a58b4SWill Deacon init_cpu_ftr_reg(SYS_ID_AA64DFR1_EL1, info->reg_id_aa64dfr1);
1026930a58b4SWill Deacon init_cpu_ftr_reg(SYS_ID_AA64ISAR0_EL1, info->reg_id_aa64isar0);
1027930a58b4SWill Deacon init_cpu_ftr_reg(SYS_ID_AA64ISAR1_EL1, info->reg_id_aa64isar1);
10289e45365fSJoey Gouly init_cpu_ftr_reg(SYS_ID_AA64ISAR2_EL1, info->reg_id_aa64isar2);
1029930a58b4SWill Deacon init_cpu_ftr_reg(SYS_ID_AA64MMFR0_EL1, info->reg_id_aa64mmfr0);
1030930a58b4SWill Deacon init_cpu_ftr_reg(SYS_ID_AA64MMFR1_EL1, info->reg_id_aa64mmfr1);
1031930a58b4SWill Deacon init_cpu_ftr_reg(SYS_ID_AA64MMFR2_EL1, info->reg_id_aa64mmfr2);
1032edc25898SJoey Gouly init_cpu_ftr_reg(SYS_ID_AA64MMFR3_EL1, info->reg_id_aa64mmfr3);
1033930a58b4SWill Deacon init_cpu_ftr_reg(SYS_ID_AA64PFR0_EL1, info->reg_id_aa64pfr0);
1034930a58b4SWill Deacon init_cpu_ftr_reg(SYS_ID_AA64PFR1_EL1, info->reg_id_aa64pfr1);
1035930a58b4SWill Deacon init_cpu_ftr_reg(SYS_ID_AA64ZFR0_EL1, info->reg_id_aa64zfr0);
10365e64b862SMark Brown init_cpu_ftr_reg(SYS_ID_AA64SMFR0_EL1, info->reg_id_aa64smfr0);
1037930a58b4SWill Deacon
1038930a58b4SWill Deacon if (id_aa64pfr0_32bit_el0(info->reg_id_aa64pfr0))
1039930a58b4SWill Deacon init_32bit_cpu_features(&info->aarch32);
1040930a58b4SWill Deacon
1041892f7237SMarc Zyngier if (IS_ENABLED(CONFIG_ARM64_SVE) &&
1042892f7237SMarc Zyngier id_aa64pfr0_sve(read_sanitised_ftr_reg(SYS_ID_AA64PFR0_EL1))) {
1043892f7237SMarc Zyngier info->reg_zcr = read_zcr_features();
10442e0f2478SDave Martin init_cpu_ftr_reg(SYS_ZCR_EL1, info->reg_zcr);
1045b5bc00ffSMark Brown vec_init_vq_map(ARM64_VEC_SVE);
10462e0f2478SDave Martin }
10475e91107bSSuzuki K Poulose
1048892f7237SMarc Zyngier if (IS_ENABLED(CONFIG_ARM64_SME) &&
1049892f7237SMarc Zyngier id_aa64pfr1_sme(read_sanitised_ftr_reg(SYS_ID_AA64PFR1_EL1))) {
1050892f7237SMarc Zyngier info->reg_smcr = read_smcr_features();
1051892f7237SMarc Zyngier /*
1052892f7237SMarc Zyngier * We mask out SMPS since even if the hardware
1053892f7237SMarc Zyngier * supports priorities the kernel does not at present
1054892f7237SMarc Zyngier * and we block access to them.
1055892f7237SMarc Zyngier */
1056892f7237SMarc Zyngier info->reg_smidr = read_cpuid(SMIDR_EL1) & ~SMIDR_EL1_SMPS;
1057b42990d3SMark Brown init_cpu_ftr_reg(SYS_SMCR_EL1, info->reg_smcr);
1058b42990d3SMark Brown vec_init_vq_map(ARM64_VEC_SME);
1059b42990d3SMark Brown }
1060b42990d3SMark Brown
106121047e91SCatalin Marinas if (id_aa64pfr1_mte(info->reg_id_aa64pfr1))
106221047e91SCatalin Marinas init_cpu_ftr_reg(SYS_GMID_EL1, info->reg_gmid);
106321047e91SCatalin Marinas
10645e91107bSSuzuki K Poulose /*
10651c8ae429SMark Rutland * Initialize the indirect array of CPU capabilities pointers before we
10661c8ae429SMark Rutland * handle the boot CPU below.
106782a3a21bSSuzuki K Poulose */
10681c8ae429SMark Rutland init_cpucap_indirect_list();
106982a3a21bSSuzuki K Poulose
107082a3a21bSSuzuki K Poulose /*
1071fd9d63daSSuzuki K Poulose * Detect and enable early CPU capabilities based on the boot CPU,
1072fd9d63daSSuzuki K Poulose * after we have initialised the CPU feature infrastructure.
10735e91107bSSuzuki K Poulose */
1074fd9d63daSSuzuki K Poulose setup_boot_cpu_capabilities();
1075a6dc3cd7SSuzuki K Poulose }
1076a6dc3cd7SSuzuki K Poulose
update_cpu_ftr_reg(struct arm64_ftr_reg * reg,u64 new)10773086d391SSuzuki K. Poulose static void update_cpu_ftr_reg(struct arm64_ftr_reg *reg, u64 new)
10783c739b57SSuzuki K. Poulose {
10795e49d73cSArd Biesheuvel const struct arm64_ftr_bits *ftrp;
10803c739b57SSuzuki K. Poulose
10813c739b57SSuzuki K. Poulose for (ftrp = reg->ftr_bits; ftrp->width; ftrp++) {
10823c739b57SSuzuki K. Poulose s64 ftr_cur = arm64_ftr_value(ftrp, reg->sys_val);
10833c739b57SSuzuki K. Poulose s64 ftr_new = arm64_ftr_value(ftrp, new);
10843c739b57SSuzuki K. Poulose
10853c739b57SSuzuki K. Poulose if (ftr_cur == ftr_new)
10863c739b57SSuzuki K. Poulose continue;
10873c739b57SSuzuki K. Poulose /* Find a safe value */
10883c739b57SSuzuki K. Poulose ftr_new = arm64_ftr_safe_value(ftrp, ftr_new, ftr_cur);
10893c739b57SSuzuki K. Poulose reg->sys_val = arm64_ftr_set_value(ftrp, reg->sys_val, ftr_new);
10903c739b57SSuzuki K. Poulose }
10913c739b57SSuzuki K. Poulose
10923c739b57SSuzuki K. Poulose }
10933c739b57SSuzuki K. Poulose
check_update_ftr_reg(u32 sys_id,int cpu,u64 val,u64 boot)10943086d391SSuzuki K. Poulose static int check_update_ftr_reg(u32 sys_id, int cpu, u64 val, u64 boot)
1095cdcf817bSSuzuki K. Poulose {
10963086d391SSuzuki K. Poulose struct arm64_ftr_reg *regp = get_arm64_ftr_reg(sys_id);
10973086d391SSuzuki K. Poulose
10983577dd37SAnshuman Khandual if (!regp)
10993577dd37SAnshuman Khandual return 0;
11003577dd37SAnshuman Khandual
11013086d391SSuzuki K. Poulose update_cpu_ftr_reg(regp, val);
11023086d391SSuzuki K. Poulose if ((boot & regp->strict_mask) == (val & regp->strict_mask))
11033086d391SSuzuki K. Poulose return 0;
11043086d391SSuzuki K. Poulose pr_warn("SANITY CHECK: Unexpected variation in %s. Boot CPU: %#016llx, CPU%d: %#016llx\n",
11053086d391SSuzuki K. Poulose regp->name, boot, cpu, val);
11063086d391SSuzuki K. Poulose return 1;
11073086d391SSuzuki K. Poulose }
11083086d391SSuzuki K. Poulose
relax_cpu_ftr_reg(u32 sys_id,int field)1109eab2f926SWill Deacon static void relax_cpu_ftr_reg(u32 sys_id, int field)
1110eab2f926SWill Deacon {
1111eab2f926SWill Deacon const struct arm64_ftr_bits *ftrp;
1112eab2f926SWill Deacon struct arm64_ftr_reg *regp = get_arm64_ftr_reg(sys_id);
1113eab2f926SWill Deacon
11143577dd37SAnshuman Khandual if (!regp)
1115eab2f926SWill Deacon return;
1116eab2f926SWill Deacon
1117eab2f926SWill Deacon for (ftrp = regp->ftr_bits; ftrp->width; ftrp++) {
1118eab2f926SWill Deacon if (ftrp->shift == field) {
1119eab2f926SWill Deacon regp->strict_mask &= ~arm64_ftr_mask(ftrp);
1120eab2f926SWill Deacon break;
1121eab2f926SWill Deacon }
1122eab2f926SWill Deacon }
1123eab2f926SWill Deacon
1124eab2f926SWill Deacon /* Bogus field? */
1125eab2f926SWill Deacon WARN_ON(!ftrp->width);
1126eab2f926SWill Deacon }
1127eab2f926SWill Deacon
lazy_init_32bit_cpu_features(struct cpuinfo_arm64 * info,struct cpuinfo_arm64 * boot)11282122a833SWill Deacon static void lazy_init_32bit_cpu_features(struct cpuinfo_arm64 *info,
11292122a833SWill Deacon struct cpuinfo_arm64 *boot)
11302122a833SWill Deacon {
11312122a833SWill Deacon static bool boot_cpu_32bit_regs_overridden = false;
11322122a833SWill Deacon
11332122a833SWill Deacon if (!allow_mismatched_32bit_el0 || boot_cpu_32bit_regs_overridden)
11342122a833SWill Deacon return;
11352122a833SWill Deacon
11362122a833SWill Deacon if (id_aa64pfr0_32bit_el0(boot->reg_id_aa64pfr0))
11372122a833SWill Deacon return;
11382122a833SWill Deacon
11392122a833SWill Deacon boot->aarch32 = info->aarch32;
11402122a833SWill Deacon init_32bit_cpu_features(&boot->aarch32);
11412122a833SWill Deacon boot_cpu_32bit_regs_overridden = true;
11422122a833SWill Deacon }
11432122a833SWill Deacon
update_32bit_cpu_features(int cpu,struct cpuinfo_32bit * info,struct cpuinfo_32bit * boot)1144930a58b4SWill Deacon static int update_32bit_cpu_features(int cpu, struct cpuinfo_32bit *info,
1145930a58b4SWill Deacon struct cpuinfo_32bit *boot)
11461efcfe79SWill Deacon {
11471efcfe79SWill Deacon int taint = 0;
11481efcfe79SWill Deacon u64 pfr0 = read_sanitised_ftr_reg(SYS_ID_AA64PFR0_EL1);
11491efcfe79SWill Deacon
11501efcfe79SWill Deacon /*
1151eab2f926SWill Deacon * If we don't have AArch32 at EL1, then relax the strictness of
1152eab2f926SWill Deacon * EL1-dependent register fields to avoid spurious sanity check fails.
1153eab2f926SWill Deacon */
1154eab2f926SWill Deacon if (!id_aa64pfr0_32bit_el1(pfr0)) {
11553f08e378SJames Morse relax_cpu_ftr_reg(SYS_ID_ISAR4_EL1, ID_ISAR4_EL1_SMC_SHIFT);
11560a648056SJames Morse relax_cpu_ftr_reg(SYS_ID_PFR1_EL1, ID_PFR1_EL1_Virt_frac_SHIFT);
11570a648056SJames Morse relax_cpu_ftr_reg(SYS_ID_PFR1_EL1, ID_PFR1_EL1_Sec_frac_SHIFT);
11580a648056SJames Morse relax_cpu_ftr_reg(SYS_ID_PFR1_EL1, ID_PFR1_EL1_Virtualization_SHIFT);
11590a648056SJames Morse relax_cpu_ftr_reg(SYS_ID_PFR1_EL1, ID_PFR1_EL1_Security_SHIFT);
11600a648056SJames Morse relax_cpu_ftr_reg(SYS_ID_PFR1_EL1, ID_PFR1_EL1_ProgMod_SHIFT);
1161eab2f926SWill Deacon }
1162eab2f926SWill Deacon
11631efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_DFR0_EL1, cpu,
11641efcfe79SWill Deacon info->reg_id_dfr0, boot->reg_id_dfr0);
1165dd35ec07SAnshuman Khandual taint |= check_update_ftr_reg(SYS_ID_DFR1_EL1, cpu,
1166dd35ec07SAnshuman Khandual info->reg_id_dfr1, boot->reg_id_dfr1);
11671efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_ISAR0_EL1, cpu,
11681efcfe79SWill Deacon info->reg_id_isar0, boot->reg_id_isar0);
11691efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_ISAR1_EL1, cpu,
11701efcfe79SWill Deacon info->reg_id_isar1, boot->reg_id_isar1);
11711efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_ISAR2_EL1, cpu,
11721efcfe79SWill Deacon info->reg_id_isar2, boot->reg_id_isar2);
11731efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_ISAR3_EL1, cpu,
11741efcfe79SWill Deacon info->reg_id_isar3, boot->reg_id_isar3);
11751efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_ISAR4_EL1, cpu,
11761efcfe79SWill Deacon info->reg_id_isar4, boot->reg_id_isar4);
11771efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_ISAR5_EL1, cpu,
11781efcfe79SWill Deacon info->reg_id_isar5, boot->reg_id_isar5);
11791efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_ISAR6_EL1, cpu,
11801efcfe79SWill Deacon info->reg_id_isar6, boot->reg_id_isar6);
11811efcfe79SWill Deacon
11821efcfe79SWill Deacon /*
11831efcfe79SWill Deacon * Regardless of the value of the AuxReg field, the AIFSR, ADFSR, and
11841efcfe79SWill Deacon * ACTLR formats could differ across CPUs and therefore would have to
11851efcfe79SWill Deacon * be trapped for virtualization anyway.
11861efcfe79SWill Deacon */
11871efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_MMFR0_EL1, cpu,
11881efcfe79SWill Deacon info->reg_id_mmfr0, boot->reg_id_mmfr0);
11891efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_MMFR1_EL1, cpu,
11901efcfe79SWill Deacon info->reg_id_mmfr1, boot->reg_id_mmfr1);
11911efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_MMFR2_EL1, cpu,
11921efcfe79SWill Deacon info->reg_id_mmfr2, boot->reg_id_mmfr2);
11931efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_MMFR3_EL1, cpu,
11941efcfe79SWill Deacon info->reg_id_mmfr3, boot->reg_id_mmfr3);
1195858b8a80SAnshuman Khandual taint |= check_update_ftr_reg(SYS_ID_MMFR4_EL1, cpu,
1196858b8a80SAnshuman Khandual info->reg_id_mmfr4, boot->reg_id_mmfr4);
1197152accf8SAnshuman Khandual taint |= check_update_ftr_reg(SYS_ID_MMFR5_EL1, cpu,
1198152accf8SAnshuman Khandual info->reg_id_mmfr5, boot->reg_id_mmfr5);
11991efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_PFR0_EL1, cpu,
12001efcfe79SWill Deacon info->reg_id_pfr0, boot->reg_id_pfr0);
12011efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_ID_PFR1_EL1, cpu,
12021efcfe79SWill Deacon info->reg_id_pfr1, boot->reg_id_pfr1);
120316824085SAnshuman Khandual taint |= check_update_ftr_reg(SYS_ID_PFR2_EL1, cpu,
120416824085SAnshuman Khandual info->reg_id_pfr2, boot->reg_id_pfr2);
12051efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_MVFR0_EL1, cpu,
12061efcfe79SWill Deacon info->reg_mvfr0, boot->reg_mvfr0);
12071efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_MVFR1_EL1, cpu,
12081efcfe79SWill Deacon info->reg_mvfr1, boot->reg_mvfr1);
12091efcfe79SWill Deacon taint |= check_update_ftr_reg(SYS_MVFR2_EL1, cpu,
12101efcfe79SWill Deacon info->reg_mvfr2, boot->reg_mvfr2);
12111efcfe79SWill Deacon
12121efcfe79SWill Deacon return taint;
12131efcfe79SWill Deacon }
12141efcfe79SWill Deacon
12153086d391SSuzuki K. Poulose /*
12163086d391SSuzuki K. Poulose * Update system wide CPU feature registers with the values from a
12173086d391SSuzuki K. Poulose * non-boot CPU. Also performs SANITY checks to make sure that there
12183086d391SSuzuki K. Poulose * aren't any insane variations from that of the boot CPU.
12193086d391SSuzuki K. Poulose */
update_cpu_features(int cpu,struct cpuinfo_arm64 * info,struct cpuinfo_arm64 * boot)12203086d391SSuzuki K. Poulose void update_cpu_features(int cpu,
12213086d391SSuzuki K. Poulose struct cpuinfo_arm64 *info,
12223086d391SSuzuki K. Poulose struct cpuinfo_arm64 *boot)
12233086d391SSuzuki K. Poulose {
12243086d391SSuzuki K. Poulose int taint = 0;
12253086d391SSuzuki K. Poulose
12263086d391SSuzuki K. Poulose /*
12273086d391SSuzuki K. Poulose * The kernel can handle differing I-cache policies, but otherwise
12283086d391SSuzuki K. Poulose * caches should look identical. Userspace JITs will make use of
12293086d391SSuzuki K. Poulose * *minLine.
12303086d391SSuzuki K. Poulose */
12313086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_CTR_EL0, cpu,
12323086d391SSuzuki K. Poulose info->reg_ctr, boot->reg_ctr);
12333086d391SSuzuki K. Poulose
12343086d391SSuzuki K. Poulose /*
12353086d391SSuzuki K. Poulose * Userspace may perform DC ZVA instructions. Mismatched block sizes
12363086d391SSuzuki K. Poulose * could result in too much or too little memory being zeroed if a
12373086d391SSuzuki K. Poulose * process is preempted and migrated between CPUs.
12383086d391SSuzuki K. Poulose */
12393086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_DCZID_EL0, cpu,
12403086d391SSuzuki K. Poulose info->reg_dczid, boot->reg_dczid);
12413086d391SSuzuki K. Poulose
12423086d391SSuzuki K. Poulose /* If different, timekeeping will be broken (especially with KVM) */
12433086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_CNTFRQ_EL0, cpu,
12443086d391SSuzuki K. Poulose info->reg_cntfrq, boot->reg_cntfrq);
12453086d391SSuzuki K. Poulose
12463086d391SSuzuki K. Poulose /*
12473086d391SSuzuki K. Poulose * The kernel uses self-hosted debug features and expects CPUs to
12483086d391SSuzuki K. Poulose * support identical debug features. We presently need CTX_CMPs, WRPs,
12493086d391SSuzuki K. Poulose * and BRPs to be identical.
12503086d391SSuzuki K. Poulose * ID_AA64DFR1 is currently RES0.
12513086d391SSuzuki K. Poulose */
12523086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_ID_AA64DFR0_EL1, cpu,
12533086d391SSuzuki K. Poulose info->reg_id_aa64dfr0, boot->reg_id_aa64dfr0);
12543086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_ID_AA64DFR1_EL1, cpu,
12553086d391SSuzuki K. Poulose info->reg_id_aa64dfr1, boot->reg_id_aa64dfr1);
12563086d391SSuzuki K. Poulose /*
12573086d391SSuzuki K. Poulose * Even in big.LITTLE, processors should be identical instruction-set
12583086d391SSuzuki K. Poulose * wise.
12593086d391SSuzuki K. Poulose */
12603086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_ID_AA64ISAR0_EL1, cpu,
12613086d391SSuzuki K. Poulose info->reg_id_aa64isar0, boot->reg_id_aa64isar0);
12623086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_ID_AA64ISAR1_EL1, cpu,
12633086d391SSuzuki K. Poulose info->reg_id_aa64isar1, boot->reg_id_aa64isar1);
12649e45365fSJoey Gouly taint |= check_update_ftr_reg(SYS_ID_AA64ISAR2_EL1, cpu,
12659e45365fSJoey Gouly info->reg_id_aa64isar2, boot->reg_id_aa64isar2);
12663086d391SSuzuki K. Poulose
12673086d391SSuzuki K. Poulose /*
12683086d391SSuzuki K. Poulose * Differing PARange support is fine as long as all peripherals and
12693086d391SSuzuki K. Poulose * memory are mapped within the minimum PARange of all CPUs.
12703086d391SSuzuki K. Poulose * Linux should not care about secure memory.
12713086d391SSuzuki K. Poulose */
12723086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_ID_AA64MMFR0_EL1, cpu,
12733086d391SSuzuki K. Poulose info->reg_id_aa64mmfr0, boot->reg_id_aa64mmfr0);
12743086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_ID_AA64MMFR1_EL1, cpu,
12753086d391SSuzuki K. Poulose info->reg_id_aa64mmfr1, boot->reg_id_aa64mmfr1);
1276406e3087SJames Morse taint |= check_update_ftr_reg(SYS_ID_AA64MMFR2_EL1, cpu,
1277406e3087SJames Morse info->reg_id_aa64mmfr2, boot->reg_id_aa64mmfr2);
1278edc25898SJoey Gouly taint |= check_update_ftr_reg(SYS_ID_AA64MMFR3_EL1, cpu,
1279edc25898SJoey Gouly info->reg_id_aa64mmfr3, boot->reg_id_aa64mmfr3);
12803086d391SSuzuki K. Poulose
12813086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_ID_AA64PFR0_EL1, cpu,
12823086d391SSuzuki K. Poulose info->reg_id_aa64pfr0, boot->reg_id_aa64pfr0);
12833086d391SSuzuki K. Poulose taint |= check_update_ftr_reg(SYS_ID_AA64PFR1_EL1, cpu,
12843086d391SSuzuki K. Poulose info->reg_id_aa64pfr1, boot->reg_id_aa64pfr1);
12853086d391SSuzuki K. Poulose
12862e0f2478SDave Martin taint |= check_update_ftr_reg(SYS_ID_AA64ZFR0_EL1, cpu,
12872e0f2478SDave Martin info->reg_id_aa64zfr0, boot->reg_id_aa64zfr0);
12882e0f2478SDave Martin
1289b42990d3SMark Brown taint |= check_update_ftr_reg(SYS_ID_AA64SMFR0_EL1, cpu,
1290b42990d3SMark Brown info->reg_id_aa64smfr0, boot->reg_id_aa64smfr0);
1291b42990d3SMark Brown
1292892f7237SMarc Zyngier if (IS_ENABLED(CONFIG_ARM64_SVE) &&
1293892f7237SMarc Zyngier id_aa64pfr0_sve(read_sanitised_ftr_reg(SYS_ID_AA64PFR0_EL1))) {
1294892f7237SMarc Zyngier info->reg_zcr = read_zcr_features();
12952e0f2478SDave Martin taint |= check_update_ftr_reg(SYS_ZCR_EL1, cpu,
12962e0f2478SDave Martin info->reg_zcr, boot->reg_zcr);
12972e0f2478SDave Martin
1298892f7237SMarc Zyngier /* Probe vector lengths */
1299892f7237SMarc Zyngier if (!system_capabilities_finalized())
1300b5bc00ffSMark Brown vec_update_vq_map(ARM64_VEC_SVE);
13012e0f2478SDave Martin }
13022e0f2478SDave Martin
1303892f7237SMarc Zyngier if (IS_ENABLED(CONFIG_ARM64_SME) &&
1304892f7237SMarc Zyngier id_aa64pfr1_sme(read_sanitised_ftr_reg(SYS_ID_AA64PFR1_EL1))) {
1305892f7237SMarc Zyngier info->reg_smcr = read_smcr_features();
1306892f7237SMarc Zyngier /*
1307892f7237SMarc Zyngier * We mask out SMPS since even if the hardware
1308892f7237SMarc Zyngier * supports priorities the kernel does not at present
1309892f7237SMarc Zyngier * and we block access to them.
1310892f7237SMarc Zyngier */
1311892f7237SMarc Zyngier info->reg_smidr = read_cpuid(SMIDR_EL1) & ~SMIDR_EL1_SMPS;
1312b42990d3SMark Brown taint |= check_update_ftr_reg(SYS_SMCR_EL1, cpu,
1313b42990d3SMark Brown info->reg_smcr, boot->reg_smcr);
1314b42990d3SMark Brown
1315892f7237SMarc Zyngier /* Probe vector lengths */
1316892f7237SMarc Zyngier if (!system_capabilities_finalized())
1317b42990d3SMark Brown vec_update_vq_map(ARM64_VEC_SME);
1318b42990d3SMark Brown }
1319b42990d3SMark Brown
13203086d391SSuzuki K. Poulose /*
132121047e91SCatalin Marinas * The kernel uses the LDGM/STGM instructions and the number of tags
132221047e91SCatalin Marinas * they read/write depends on the GMID_EL1.BS field. Check that the
132321047e91SCatalin Marinas * value is the same on all CPUs.
132421047e91SCatalin Marinas */
132521047e91SCatalin Marinas if (IS_ENABLED(CONFIG_ARM64_MTE) &&
1326930a58b4SWill Deacon id_aa64pfr1_mte(info->reg_id_aa64pfr1)) {
132721047e91SCatalin Marinas taint |= check_update_ftr_reg(SYS_GMID_EL1, cpu,
132821047e91SCatalin Marinas info->reg_gmid, boot->reg_gmid);
1329930a58b4SWill Deacon }
133021047e91SCatalin Marinas
133121047e91SCatalin Marinas /*
1332930a58b4SWill Deacon * If we don't have AArch32 at all then skip the checks entirely
1333930a58b4SWill Deacon * as the register values may be UNKNOWN and we're not going to be
1334930a58b4SWill Deacon * using them for anything.
1335930a58b4SWill Deacon *
13361efcfe79SWill Deacon * This relies on a sanitised view of the AArch64 ID registers
13371efcfe79SWill Deacon * (e.g. SYS_ID_AA64PFR0_EL1), so we call it last.
13381efcfe79SWill Deacon */
1339930a58b4SWill Deacon if (id_aa64pfr0_32bit_el0(info->reg_id_aa64pfr0)) {
13402122a833SWill Deacon lazy_init_32bit_cpu_features(info, boot);
1341930a58b4SWill Deacon taint |= update_32bit_cpu_features(cpu, &info->aarch32,
1342930a58b4SWill Deacon &boot->aarch32);
1343930a58b4SWill Deacon }
13441efcfe79SWill Deacon
13451efcfe79SWill Deacon /*
13463086d391SSuzuki K. Poulose * Mismatched CPU features are a recipe for disaster. Don't even
13473086d391SSuzuki K. Poulose * pretend to support them.
13483086d391SSuzuki K. Poulose */
13498dd0ee65SWill Deacon if (taint) {
13503fde2999SWill Deacon pr_warn_once("Unsupported CPU feature variation detected.\n");
13513fde2999SWill Deacon add_taint(TAINT_CPU_OUT_OF_SPEC, LOCKDEP_STILL_OK);
1352cdcf817bSSuzuki K. Poulose }
13538dd0ee65SWill Deacon }
1354cdcf817bSSuzuki K. Poulose
read_sanitised_ftr_reg(u32 id)135546823dd1SDave Martin u64 read_sanitised_ftr_reg(u32 id)
1356b3f15378SSuzuki K. Poulose {
1357b3f15378SSuzuki K. Poulose struct arm64_ftr_reg *regp = get_arm64_ftr_reg(id);
1358b3f15378SSuzuki K. Poulose
13593577dd37SAnshuman Khandual if (!regp)
13603577dd37SAnshuman Khandual return 0;
1361b3f15378SSuzuki K. Poulose return regp->sys_val;
1362b3f15378SSuzuki K. Poulose }
13636f3c4afaSJean-Philippe Brucker EXPORT_SYMBOL_GPL(read_sanitised_ftr_reg);
1364359b7064SMarc Zyngier
1365965861d6SMark Rutland #define read_sysreg_case(r) \
1366b3341ae0SMarc Zyngier case r: val = read_sysreg_s(r); break;
1367965861d6SMark Rutland
136892406f0cSSuzuki K Poulose /*
136946823dd1SDave Martin * __read_sysreg_by_encoding() - Used by a STARTING cpu before cpuinfo is populated.
137092406f0cSSuzuki K Poulose * Read the system register on the current CPU
137192406f0cSSuzuki K Poulose */
__read_sysreg_by_encoding(u32 sys_id)1372b3341ae0SMarc Zyngier u64 __read_sysreg_by_encoding(u32 sys_id)
137392406f0cSSuzuki K Poulose {
1374b3341ae0SMarc Zyngier struct arm64_ftr_reg *regp;
1375b3341ae0SMarc Zyngier u64 val;
1376b3341ae0SMarc Zyngier
137792406f0cSSuzuki K Poulose switch (sys_id) {
1378965861d6SMark Rutland read_sysreg_case(SYS_ID_PFR0_EL1);
1379965861d6SMark Rutland read_sysreg_case(SYS_ID_PFR1_EL1);
138016824085SAnshuman Khandual read_sysreg_case(SYS_ID_PFR2_EL1);
1381965861d6SMark Rutland read_sysreg_case(SYS_ID_DFR0_EL1);
1382dd35ec07SAnshuman Khandual read_sysreg_case(SYS_ID_DFR1_EL1);
1383965861d6SMark Rutland read_sysreg_case(SYS_ID_MMFR0_EL1);
1384965861d6SMark Rutland read_sysreg_case(SYS_ID_MMFR1_EL1);
1385965861d6SMark Rutland read_sysreg_case(SYS_ID_MMFR2_EL1);
1386965861d6SMark Rutland read_sysreg_case(SYS_ID_MMFR3_EL1);
1387858b8a80SAnshuman Khandual read_sysreg_case(SYS_ID_MMFR4_EL1);
1388152accf8SAnshuman Khandual read_sysreg_case(SYS_ID_MMFR5_EL1);
1389965861d6SMark Rutland read_sysreg_case(SYS_ID_ISAR0_EL1);
1390965861d6SMark Rutland read_sysreg_case(SYS_ID_ISAR1_EL1);
1391965861d6SMark Rutland read_sysreg_case(SYS_ID_ISAR2_EL1);
1392965861d6SMark Rutland read_sysreg_case(SYS_ID_ISAR3_EL1);
1393965861d6SMark Rutland read_sysreg_case(SYS_ID_ISAR4_EL1);
1394965861d6SMark Rutland read_sysreg_case(SYS_ID_ISAR5_EL1);
13958e3747beSAnshuman Khandual read_sysreg_case(SYS_ID_ISAR6_EL1);
1396965861d6SMark Rutland read_sysreg_case(SYS_MVFR0_EL1);
1397965861d6SMark Rutland read_sysreg_case(SYS_MVFR1_EL1);
1398965861d6SMark Rutland read_sysreg_case(SYS_MVFR2_EL1);
139992406f0cSSuzuki K Poulose
1400965861d6SMark Rutland read_sysreg_case(SYS_ID_AA64PFR0_EL1);
1401965861d6SMark Rutland read_sysreg_case(SYS_ID_AA64PFR1_EL1);
140278ed70bfSDave Martin read_sysreg_case(SYS_ID_AA64ZFR0_EL1);
14038a58bcd0SMark Brown read_sysreg_case(SYS_ID_AA64SMFR0_EL1);
1404965861d6SMark Rutland read_sysreg_case(SYS_ID_AA64DFR0_EL1);
1405965861d6SMark Rutland read_sysreg_case(SYS_ID_AA64DFR1_EL1);
1406965861d6SMark Rutland read_sysreg_case(SYS_ID_AA64MMFR0_EL1);
1407965861d6SMark Rutland read_sysreg_case(SYS_ID_AA64MMFR1_EL1);
1408965861d6SMark Rutland read_sysreg_case(SYS_ID_AA64MMFR2_EL1);
1409edc25898SJoey Gouly read_sysreg_case(SYS_ID_AA64MMFR3_EL1);
1410965861d6SMark Rutland read_sysreg_case(SYS_ID_AA64ISAR0_EL1);
1411965861d6SMark Rutland read_sysreg_case(SYS_ID_AA64ISAR1_EL1);
14129e45365fSJoey Gouly read_sysreg_case(SYS_ID_AA64ISAR2_EL1);
141392406f0cSSuzuki K Poulose
1414965861d6SMark Rutland read_sysreg_case(SYS_CNTFRQ_EL0);
1415965861d6SMark Rutland read_sysreg_case(SYS_CTR_EL0);
1416965861d6SMark Rutland read_sysreg_case(SYS_DCZID_EL0);
1417965861d6SMark Rutland
141892406f0cSSuzuki K Poulose default:
141992406f0cSSuzuki K Poulose BUG();
142092406f0cSSuzuki K Poulose return 0;
142192406f0cSSuzuki K Poulose }
1422b3341ae0SMarc Zyngier
1423b3341ae0SMarc Zyngier regp = get_arm64_ftr_reg(sys_id);
1424b3341ae0SMarc Zyngier if (regp) {
1425b3341ae0SMarc Zyngier val &= ~regp->override->mask;
1426b3341ae0SMarc Zyngier val |= (regp->override->val & regp->override->mask);
1427b3341ae0SMarc Zyngier }
1428b3341ae0SMarc Zyngier
1429b3341ae0SMarc Zyngier return val;
143092406f0cSSuzuki K Poulose }
143192406f0cSSuzuki K Poulose
1432963fcd40SMarc Zyngier #include <linux/irqchip/arm-gic-v3.h>
1433963fcd40SMarc Zyngier
143494a9e04aSMarc Zyngier static bool
has_always(const struct arm64_cpu_capabilities * entry,int scope)14354c0bd995SMark Rutland has_always(const struct arm64_cpu_capabilities *entry, int scope)
14364c0bd995SMark Rutland {
14374c0bd995SMark Rutland return true;
14384c0bd995SMark Rutland }
14394c0bd995SMark Rutland
14404c0bd995SMark Rutland static bool
feature_matches(u64 reg,const struct arm64_cpu_capabilities * entry)144118ffa046SJames Morse feature_matches(u64 reg, const struct arm64_cpu_capabilities *entry)
144218ffa046SJames Morse {
14430a2eec83SMark Brown int val = cpuid_feature_extract_field_width(reg, entry->field_pos,
14440a2eec83SMark Brown entry->field_width,
14450a2eec83SMark Brown entry->sign);
144618ffa046SJames Morse
144718ffa046SJames Morse return val >= entry->min_field_value;
144818ffa046SJames Morse }
144918ffa046SJames Morse
1450237405ebSJames Morse static u64
read_scoped_sysreg(const struct arm64_cpu_capabilities * entry,int scope)1451237405ebSJames Morse read_scoped_sysreg(const struct arm64_cpu_capabilities *entry, int scope)
1452237405ebSJames Morse {
1453237405ebSJames Morse WARN_ON(scope == SCOPE_LOCAL_CPU && preemptible());
1454237405ebSJames Morse if (scope == SCOPE_SYSTEM)
1455237405ebSJames Morse return read_sanitised_ftr_reg(entry->sys_reg);
1456237405ebSJames Morse else
1457237405ebSJames Morse return __read_sysreg_by_encoding(entry->sys_reg);
1458237405ebSJames Morse }
1459237405ebSJames Morse
1460237405ebSJames Morse static bool
has_user_cpuid_feature(const struct arm64_cpu_capabilities * entry,int scope)1461237405ebSJames Morse has_user_cpuid_feature(const struct arm64_cpu_capabilities *entry, int scope)
1462237405ebSJames Morse {
1463237405ebSJames Morse int mask;
1464237405ebSJames Morse struct arm64_ftr_reg *regp;
1465237405ebSJames Morse u64 val = read_scoped_sysreg(entry, scope);
1466237405ebSJames Morse
1467237405ebSJames Morse regp = get_arm64_ftr_reg(entry->sys_reg);
1468237405ebSJames Morse if (!regp)
1469237405ebSJames Morse return false;
1470237405ebSJames Morse
1471237405ebSJames Morse mask = cpuid_feature_extract_unsigned_field_width(regp->user_mask,
1472237405ebSJames Morse entry->field_pos,
1473237405ebSJames Morse entry->field_width);
1474237405ebSJames Morse if (!mask)
1475237405ebSJames Morse return false;
1476237405ebSJames Morse
1477237405ebSJames Morse return feature_matches(val, entry);
1478237405ebSJames Morse }
1479237405ebSJames Morse
1480da8d02d1SSuzuki K. Poulose static bool
has_cpuid_feature(const struct arm64_cpu_capabilities * entry,int scope)148192406f0cSSuzuki K Poulose has_cpuid_feature(const struct arm64_cpu_capabilities *entry, int scope)
1482da8d02d1SSuzuki K. Poulose {
1483237405ebSJames Morse u64 val = read_scoped_sysreg(entry, scope);
1484da8d02d1SSuzuki K. Poulose return feature_matches(val, entry);
1485da8d02d1SSuzuki K. Poulose }
1486338d4f49SJames Morse
system_32bit_el0_cpumask(void)14872122a833SWill Deacon const struct cpumask *system_32bit_el0_cpumask(void)
14882122a833SWill Deacon {
14892122a833SWill Deacon if (!system_supports_32bit_el0())
14902122a833SWill Deacon return cpu_none_mask;
14912122a833SWill Deacon
14922122a833SWill Deacon if (static_branch_unlikely(&arm64_mismatched_32bit_el0))
14932122a833SWill Deacon return cpu_32bit_el0_mask;
14942122a833SWill Deacon
14952122a833SWill Deacon return cpu_possible_mask;
14962122a833SWill Deacon }
14972122a833SWill Deacon
parse_32bit_el0_param(char * str)1498ead7de46SWill Deacon static int __init parse_32bit_el0_param(char *str)
1499ead7de46SWill Deacon {
1500ead7de46SWill Deacon allow_mismatched_32bit_el0 = true;
1501ead7de46SWill Deacon return 0;
1502ead7de46SWill Deacon }
1503ead7de46SWill Deacon early_param("allow_mismatched_32bit_el0", parse_32bit_el0_param);
1504ead7de46SWill Deacon
aarch32_el0_show(struct device * dev,struct device_attribute * attr,char * buf)15057af33504SWill Deacon static ssize_t aarch32_el0_show(struct device *dev,
15067af33504SWill Deacon struct device_attribute *attr, char *buf)
15077af33504SWill Deacon {
15087af33504SWill Deacon const struct cpumask *mask = system_32bit_el0_cpumask();
15097af33504SWill Deacon
15107af33504SWill Deacon return sysfs_emit(buf, "%*pbl\n", cpumask_pr_args(mask));
15117af33504SWill Deacon }
15127af33504SWill Deacon static const DEVICE_ATTR_RO(aarch32_el0);
15137af33504SWill Deacon
aarch32_el0_sysfs_init(void)15147af33504SWill Deacon static int __init aarch32_el0_sysfs_init(void)
15157af33504SWill Deacon {
1516cb6b0cbaSGreg Kroah-Hartman struct device *dev_root;
1517cb6b0cbaSGreg Kroah-Hartman int ret = 0;
1518cb6b0cbaSGreg Kroah-Hartman
15197af33504SWill Deacon if (!allow_mismatched_32bit_el0)
15207af33504SWill Deacon return 0;
15217af33504SWill Deacon
1522cb6b0cbaSGreg Kroah-Hartman dev_root = bus_get_dev_root(&cpu_subsys);
1523cb6b0cbaSGreg Kroah-Hartman if (dev_root) {
1524cb6b0cbaSGreg Kroah-Hartman ret = device_create_file(dev_root, &dev_attr_aarch32_el0);
1525cb6b0cbaSGreg Kroah-Hartman put_device(dev_root);
1526cb6b0cbaSGreg Kroah-Hartman }
1527cb6b0cbaSGreg Kroah-Hartman return ret;
15287af33504SWill Deacon }
15297af33504SWill Deacon device_initcall(aarch32_el0_sysfs_init);
15307af33504SWill Deacon
has_32bit_el0(const struct arm64_cpu_capabilities * entry,int scope)15312122a833SWill Deacon static bool has_32bit_el0(const struct arm64_cpu_capabilities *entry, int scope)
15322122a833SWill Deacon {
15332122a833SWill Deacon if (!has_cpuid_feature(entry, scope))
15342122a833SWill Deacon return allow_mismatched_32bit_el0;
15352122a833SWill Deacon
15362122a833SWill Deacon if (scope == SCOPE_SYSTEM)
15372122a833SWill Deacon pr_info("detected: 32-bit EL0 Support\n");
15382122a833SWill Deacon
15392122a833SWill Deacon return true;
15402122a833SWill Deacon }
15412122a833SWill Deacon
has_useable_gicv3_cpuif(const struct arm64_cpu_capabilities * entry,int scope)154292406f0cSSuzuki K Poulose static bool has_useable_gicv3_cpuif(const struct arm64_cpu_capabilities *entry, int scope)
1543963fcd40SMarc Zyngier {
1544963fcd40SMarc Zyngier bool has_sre;
1545963fcd40SMarc Zyngier
154692406f0cSSuzuki K Poulose if (!has_cpuid_feature(entry, scope))
1547963fcd40SMarc Zyngier return false;
1548963fcd40SMarc Zyngier
1549963fcd40SMarc Zyngier has_sre = gic_enable_sre();
1550963fcd40SMarc Zyngier if (!has_sre)
1551963fcd40SMarc Zyngier pr_warn_once("%s present but disabled by higher exception level\n",
1552963fcd40SMarc Zyngier entry->desc);
1553963fcd40SMarc Zyngier
1554963fcd40SMarc Zyngier return has_sre;
1555963fcd40SMarc Zyngier }
1556963fcd40SMarc Zyngier
has_no_hw_prefetch(const struct arm64_cpu_capabilities * entry,int __unused)155792406f0cSSuzuki K Poulose static bool has_no_hw_prefetch(const struct arm64_cpu_capabilities *entry, int __unused)
1558d5370f75SWill Deacon {
1559d5370f75SWill Deacon u32 midr = read_cpuid_id();
1560d5370f75SWill Deacon
1561d5370f75SWill Deacon /* Cavium ThunderX pass 1.x and 2.x */
1562b99286b0SQian Cai return midr_is_cpu_model_range(midr, MIDR_THUNDERX,
1563fa5ce3d1SRobert Richter MIDR_CPU_VAR_REV(0, 0),
1564fa5ce3d1SRobert Richter MIDR_CPU_VAR_REV(1, MIDR_REVISION_MASK));
1565d5370f75SWill Deacon }
1566d5370f75SWill Deacon
has_no_fpsimd(const struct arm64_cpu_capabilities * entry,int __unused)156782e0191aSSuzuki K Poulose static bool has_no_fpsimd(const struct arm64_cpu_capabilities *entry, int __unused)
156882e0191aSSuzuki K Poulose {
156946823dd1SDave Martin u64 pfr0 = read_sanitised_ftr_reg(SYS_ID_AA64PFR0_EL1);
157082e0191aSSuzuki K Poulose
157182e0191aSSuzuki K Poulose return cpuid_feature_extract_signed_field(pfr0,
157255adc08dSMark Brown ID_AA64PFR0_EL1_FP_SHIFT) < 0;
157382e0191aSSuzuki K Poulose }
157482e0191aSSuzuki K Poulose
has_cache_idc(const struct arm64_cpu_capabilities * entry,int scope)15756ae4b6e0SShanker Donthineni static bool has_cache_idc(const struct arm64_cpu_capabilities *entry,
15768ab66cbeSSuzuki K Poulose int scope)
15776ae4b6e0SShanker Donthineni {
15788ab66cbeSSuzuki K Poulose u64 ctr;
15798ab66cbeSSuzuki K Poulose
15808ab66cbeSSuzuki K Poulose if (scope == SCOPE_SYSTEM)
15818ab66cbeSSuzuki K Poulose ctr = arm64_ftr_reg_ctrel0.sys_val;
15828ab66cbeSSuzuki K Poulose else
15831602df02SSuzuki K Poulose ctr = read_cpuid_effective_cachetype();
15848ab66cbeSSuzuki K Poulose
15855b345e39SMark Brown return ctr & BIT(CTR_EL0_IDC_SHIFT);
15866ae4b6e0SShanker Donthineni }
15876ae4b6e0SShanker Donthineni
cpu_emulate_effective_ctr(const struct arm64_cpu_capabilities * __unused)15881602df02SSuzuki K Poulose static void cpu_emulate_effective_ctr(const struct arm64_cpu_capabilities *__unused)
15891602df02SSuzuki K Poulose {
15901602df02SSuzuki K Poulose /*
15911602df02SSuzuki K Poulose * If the CPU exposes raw CTR_EL0.IDC = 0, while effectively
15921602df02SSuzuki K Poulose * CTR_EL0.IDC = 1 (from CLIDR values), we need to trap accesses
15931602df02SSuzuki K Poulose * to the CTR_EL0 on this CPU and emulate it with the real/safe
15941602df02SSuzuki K Poulose * value.
15951602df02SSuzuki K Poulose */
15965b345e39SMark Brown if (!(read_cpuid_cachetype() & BIT(CTR_EL0_IDC_SHIFT)))
15971602df02SSuzuki K Poulose sysreg_clear_set(sctlr_el1, SCTLR_EL1_UCT, 0);
15981602df02SSuzuki K Poulose }
15991602df02SSuzuki K Poulose
has_cache_dic(const struct arm64_cpu_capabilities * entry,int scope)16006ae4b6e0SShanker Donthineni static bool has_cache_dic(const struct arm64_cpu_capabilities *entry,
16018ab66cbeSSuzuki K Poulose int scope)
16026ae4b6e0SShanker Donthineni {
16038ab66cbeSSuzuki K Poulose u64 ctr;
16048ab66cbeSSuzuki K Poulose
16058ab66cbeSSuzuki K Poulose if (scope == SCOPE_SYSTEM)
16068ab66cbeSSuzuki K Poulose ctr = arm64_ftr_reg_ctrel0.sys_val;
16078ab66cbeSSuzuki K Poulose else
16088ab66cbeSSuzuki K Poulose ctr = read_cpuid_cachetype();
16098ab66cbeSSuzuki K Poulose
16105b345e39SMark Brown return ctr & BIT(CTR_EL0_DIC_SHIFT);
16116ae4b6e0SShanker Donthineni }
16126ae4b6e0SShanker Donthineni
16135ffdfaedSVladimir Murzin static bool __maybe_unused
has_useable_cnp(const struct arm64_cpu_capabilities * entry,int scope)16145ffdfaedSVladimir Murzin has_useable_cnp(const struct arm64_cpu_capabilities *entry, int scope)
16155ffdfaedSVladimir Murzin {
16165ffdfaedSVladimir Murzin /*
16175ffdfaedSVladimir Murzin * Kdump isn't guaranteed to power-off all secondary CPUs, CNP
16185ffdfaedSVladimir Murzin * may share TLB entries with a CPU stuck in the crashed
16195ffdfaedSVladimir Murzin * kernel.
16205ffdfaedSVladimir Murzin */
16215ffdfaedSVladimir Murzin if (is_kdump_kernel())
162220109a85SRich Wiley return false;
162320109a85SRich Wiley
162420109a85SRich Wiley if (cpus_have_const_cap(ARM64_WORKAROUND_NVIDIA_CARMEL_CNP))
16255ffdfaedSVladimir Murzin return false;
16265ffdfaedSVladimir Murzin
16275ffdfaedSVladimir Murzin return has_cpuid_feature(entry, scope);
16285ffdfaedSVladimir Murzin }
16295ffdfaedSVladimir Murzin
163009e3c22aSMark Brown /*
163109e3c22aSMark Brown * This check is triggered during the early boot before the cpufeature
163209e3c22aSMark Brown * is initialised. Checking the status on the local CPU allows the boot
163309e3c22aSMark Brown * CPU to detect the need for non-global mappings and thus avoiding a
163409e3c22aSMark Brown * pagetable re-write after all the CPUs are booted. This check will be
163509e3c22aSMark Brown * anyway run on individual CPUs, allowing us to get the consistent
163609e3c22aSMark Brown * state once the SMP CPUs are up and thus make the switch to non-global
163709e3c22aSMark Brown * mappings if required.
163809e3c22aSMark Brown */
kaslr_requires_kpti(void)163909e3c22aSMark Brown bool kaslr_requires_kpti(void)
164009e3c22aSMark Brown {
164109e3c22aSMark Brown if (!IS_ENABLED(CONFIG_RANDOMIZE_BASE))
164209e3c22aSMark Brown return false;
164309e3c22aSMark Brown
164409e3c22aSMark Brown /*
164509e3c22aSMark Brown * E0PD does a similar job to KPTI so can be used instead
164609e3c22aSMark Brown * where available.
164709e3c22aSMark Brown */
164809e3c22aSMark Brown if (IS_ENABLED(CONFIG_ARM64_E0PD)) {
1649a569f5f3SWill Deacon u64 mmfr2 = read_sysreg_s(SYS_ID_AA64MMFR2_EL1);
1650a569f5f3SWill Deacon if (cpuid_feature_extract_unsigned_field(mmfr2,
1651a957c6beSMark Brown ID_AA64MMFR2_EL1_E0PD_SHIFT))
165209e3c22aSMark Brown return false;
165309e3c22aSMark Brown }
165409e3c22aSMark Brown
165509e3c22aSMark Brown /*
165609e3c22aSMark Brown * Systems affected by Cavium erratum 24756 are incompatible
165709e3c22aSMark Brown * with KPTI.
165809e3c22aSMark Brown */
1659ebac96edSWill Deacon if (IS_ENABLED(CONFIG_CAVIUM_ERRATUM_27456)) {
166009e3c22aSMark Brown extern const struct midr_range cavium_erratum_27456_cpus[];
166109e3c22aSMark Brown
1662ebac96edSWill Deacon if (is_midr_in_range_list(read_cpuid_id(),
1663ebac96edSWill Deacon cavium_erratum_27456_cpus))
166409e3c22aSMark Brown return false;
1665ebac96edSWill Deacon }
166609e3c22aSMark Brown
1667010338d7SArd Biesheuvel return kaslr_enabled();
166809e3c22aSMark Brown }
166909e3c22aSMark Brown
16701b3ccf4bSJeremy Linton static bool __meltdown_safe = true;
1671ea1e3de8SWill Deacon static int __kpti_forced; /* 0: not forced, >0: forced on, <0: forced off */
1672ea1e3de8SWill Deacon
unmap_kernel_at_el0(const struct arm64_cpu_capabilities * entry,int scope)1673ea1e3de8SWill Deacon static bool unmap_kernel_at_el0(const struct arm64_cpu_capabilities *entry,
1674d3aec8a2SSuzuki K Poulose int scope)
1675ea1e3de8SWill Deacon {
1676be5b2998SSuzuki K Poulose /* List of CPUs that are not vulnerable and don't need KPTI */
1677be5b2998SSuzuki K Poulose static const struct midr_range kpti_safe_list[] = {
1678be5b2998SSuzuki K Poulose MIDR_ALL_VERSIONS(MIDR_CAVIUM_THUNDERX2),
1679be5b2998SSuzuki K Poulose MIDR_ALL_VERSIONS(MIDR_BRCM_VULCAN),
168031d868c4SFlorian Fainelli MIDR_ALL_VERSIONS(MIDR_BRAHMA_B53),
16812a355ec2SWill Deacon MIDR_ALL_VERSIONS(MIDR_CORTEX_A35),
16822a355ec2SWill Deacon MIDR_ALL_VERSIONS(MIDR_CORTEX_A53),
16832a355ec2SWill Deacon MIDR_ALL_VERSIONS(MIDR_CORTEX_A55),
16842a355ec2SWill Deacon MIDR_ALL_VERSIONS(MIDR_CORTEX_A57),
16852a355ec2SWill Deacon MIDR_ALL_VERSIONS(MIDR_CORTEX_A72),
16862a355ec2SWill Deacon MIDR_ALL_VERSIONS(MIDR_CORTEX_A73),
16870ecc471aSHanjun Guo MIDR_ALL_VERSIONS(MIDR_HISI_TSV110),
1688918e1946SRich Wiley MIDR_ALL_VERSIONS(MIDR_NVIDIA_CARMEL),
1689e3dd11a9SKonrad Dybcio MIDR_ALL_VERSIONS(MIDR_QCOM_KRYO_2XX_GOLD),
1690e3dd11a9SKonrad Dybcio MIDR_ALL_VERSIONS(MIDR_QCOM_KRYO_2XX_SILVER),
1691f4617be3SSai Prakash Ranjan MIDR_ALL_VERSIONS(MIDR_QCOM_KRYO_3XX_SILVER),
1692f4617be3SSai Prakash Ranjan MIDR_ALL_VERSIONS(MIDR_QCOM_KRYO_4XX_SILVER),
169371c751f2SMark Rutland { /* sentinel */ }
1694be5b2998SSuzuki K Poulose };
1695a111b7c0SJosh Poimboeuf char const *str = "kpti command line option";
16961b3ccf4bSJeremy Linton bool meltdown_safe;
16971b3ccf4bSJeremy Linton
16981b3ccf4bSJeremy Linton meltdown_safe = is_midr_in_range_list(read_cpuid_id(), kpti_safe_list);
16991b3ccf4bSJeremy Linton
17001b3ccf4bSJeremy Linton /* Defer to CPU feature registers */
17011b3ccf4bSJeremy Linton if (has_cpuid_feature(entry, scope))
17021b3ccf4bSJeremy Linton meltdown_safe = true;
17031b3ccf4bSJeremy Linton
17041b3ccf4bSJeremy Linton if (!meltdown_safe)
17051b3ccf4bSJeremy Linton __meltdown_safe = false;
1706179a56f6SWill Deacon
17076dc52b15SMarc Zyngier /*
17086dc52b15SMarc Zyngier * For reasons that aren't entirely clear, enabling KPTI on Cavium
17096dc52b15SMarc Zyngier * ThunderX leads to apparent I-cache corruption of kernel text, which
171022b70e6fSdann frazier * ends as well as you might imagine. Don't even try. We cannot rely
171122b70e6fSdann frazier * on the cpus_have_*cap() helpers here to detect the CPU erratum
171222b70e6fSdann frazier * because cpucap detection order may change. However, since we know
171322b70e6fSdann frazier * affected CPUs are always in a homogeneous configuration, it is
171422b70e6fSdann frazier * safe to rely on this_cpu_has_cap() here.
17156dc52b15SMarc Zyngier */
171622b70e6fSdann frazier if (this_cpu_has_cap(ARM64_WORKAROUND_CAVIUM_27456)) {
17176dc52b15SMarc Zyngier str = "ARM64_WORKAROUND_CAVIUM_27456";
17186dc52b15SMarc Zyngier __kpti_forced = -1;
17196dc52b15SMarc Zyngier }
17206dc52b15SMarc Zyngier
17211b3ccf4bSJeremy Linton /* Useful for KASLR robustness */
1722c2d92353SMark Brown if (kaslr_requires_kpti()) {
17231b3ccf4bSJeremy Linton if (!__kpti_forced) {
17241b3ccf4bSJeremy Linton str = "KASLR";
17251b3ccf4bSJeremy Linton __kpti_forced = 1;
17261b3ccf4bSJeremy Linton }
17271b3ccf4bSJeremy Linton }
17281b3ccf4bSJeremy Linton
1729a111b7c0SJosh Poimboeuf if (cpu_mitigations_off() && !__kpti_forced) {
1730a111b7c0SJosh Poimboeuf str = "mitigations=off";
1731a111b7c0SJosh Poimboeuf __kpti_forced = -1;
1732a111b7c0SJosh Poimboeuf }
1733a111b7c0SJosh Poimboeuf
17341b3ccf4bSJeremy Linton if (!IS_ENABLED(CONFIG_UNMAP_KERNEL_AT_EL0)) {
17351b3ccf4bSJeremy Linton pr_info_once("kernel page table isolation disabled by kernel configuration\n");
17361b3ccf4bSJeremy Linton return false;
17371b3ccf4bSJeremy Linton }
17381b3ccf4bSJeremy Linton
17396dc52b15SMarc Zyngier /* Forced? */
1740ea1e3de8SWill Deacon if (__kpti_forced) {
17416dc52b15SMarc Zyngier pr_info_once("kernel page table isolation forced %s by %s\n",
17426dc52b15SMarc Zyngier __kpti_forced > 0 ? "ON" : "OFF", str);
1743ea1e3de8SWill Deacon return __kpti_forced > 0;
1744ea1e3de8SWill Deacon }
1745ea1e3de8SWill Deacon
17461b3ccf4bSJeremy Linton return !meltdown_safe;
1747ea1e3de8SWill Deacon }
1748ea1e3de8SWill Deacon
17491b3ccf4bSJeremy Linton #ifdef CONFIG_UNMAP_KERNEL_AT_EL0
175047546a19SArd Biesheuvel #define KPTI_NG_TEMP_VA (-(1UL << PMD_SHIFT))
175147546a19SArd Biesheuvel
175247546a19SArd Biesheuvel extern
175347546a19SArd Biesheuvel void create_kpti_ng_temp_pgd(pgd_t *pgdir, phys_addr_t phys, unsigned long virt,
175447546a19SArd Biesheuvel phys_addr_t size, pgprot_t prot,
175547546a19SArd Biesheuvel phys_addr_t (*pgtable_alloc)(int), int flags);
175647546a19SArd Biesheuvel
175747546a19SArd Biesheuvel static phys_addr_t kpti_ng_temp_alloc;
175847546a19SArd Biesheuvel
kpti_ng_pgd_alloc(int shift)175947546a19SArd Biesheuvel static phys_addr_t kpti_ng_pgd_alloc(int shift)
176047546a19SArd Biesheuvel {
176147546a19SArd Biesheuvel kpti_ng_temp_alloc -= PAGE_SIZE;
176247546a19SArd Biesheuvel return kpti_ng_temp_alloc;
176347546a19SArd Biesheuvel }
176447546a19SArd Biesheuvel
17655f20997cSSami Tolvanen static void
kpti_install_ng_mappings(const struct arm64_cpu_capabilities * __unused)1766c0cda3b8SDave Martin kpti_install_ng_mappings(const struct arm64_cpu_capabilities *__unused)
1767f992b4dfSWill Deacon {
176847546a19SArd Biesheuvel typedef void (kpti_remap_fn)(int, int, phys_addr_t, unsigned long);
1769f992b4dfSWill Deacon extern kpti_remap_fn idmap_kpti_install_ng_mappings;
1770f992b4dfSWill Deacon kpti_remap_fn *remap_fn;
1771f992b4dfSWill Deacon
1772f992b4dfSWill Deacon int cpu = smp_processor_id();
177347546a19SArd Biesheuvel int levels = CONFIG_PGTABLE_LEVELS;
177447546a19SArd Biesheuvel int order = order_base_2(levels);
177547546a19SArd Biesheuvel u64 kpti_ng_temp_pgd_pa = 0;
177647546a19SArd Biesheuvel pgd_t *kpti_ng_temp_pgd;
177747546a19SArd Biesheuvel u64 alloc = 0;
1778f992b4dfSWill Deacon
1779bd09128dSJames Morse if (__this_cpu_read(this_cpu_vector) == vectors) {
1780bd09128dSJames Morse const char *v = arm64_get_bp_hardening_vector(EL1_VECTOR_KPTI);
1781bd09128dSJames Morse
1782bd09128dSJames Morse __this_cpu_write(this_cpu_vector, v);
1783bd09128dSJames Morse }
1784bd09128dSJames Morse
1785b89d82efSWill Deacon /*
1786b89d82efSWill Deacon * We don't need to rewrite the page-tables if either we've done
1787b89d82efSWill Deacon * it already or we have KASLR enabled and therefore have not
1788b89d82efSWill Deacon * created any global mappings at all.
1789b89d82efSWill Deacon */
179009e3c22aSMark Brown if (arm64_use_ng_mappings)
1791c0cda3b8SDave Martin return;
1792f992b4dfSWill Deacon
1793607289a7SSami Tolvanen remap_fn = (void *)__pa_symbol(idmap_kpti_install_ng_mappings);
1794f992b4dfSWill Deacon
179547546a19SArd Biesheuvel if (!cpu) {
179647546a19SArd Biesheuvel alloc = __get_free_pages(GFP_ATOMIC | __GFP_ZERO, order);
179747546a19SArd Biesheuvel kpti_ng_temp_pgd = (pgd_t *)(alloc + (levels - 1) * PAGE_SIZE);
179847546a19SArd Biesheuvel kpti_ng_temp_alloc = kpti_ng_temp_pgd_pa = __pa(kpti_ng_temp_pgd);
179947546a19SArd Biesheuvel
180047546a19SArd Biesheuvel //
180147546a19SArd Biesheuvel // Create a minimal page table hierarchy that permits us to map
180247546a19SArd Biesheuvel // the swapper page tables temporarily as we traverse them.
180347546a19SArd Biesheuvel //
180447546a19SArd Biesheuvel // The physical pages are laid out as follows:
180547546a19SArd Biesheuvel //
180647546a19SArd Biesheuvel // +--------+-/-------+-/------ +-\\--------+
180747546a19SArd Biesheuvel // : PTE[] : | PMD[] : | PUD[] : || PGD[] :
180847546a19SArd Biesheuvel // +--------+-\-------+-\------ +-//--------+
180947546a19SArd Biesheuvel // ^
181047546a19SArd Biesheuvel // The first page is mapped into this hierarchy at a PMD_SHIFT
181147546a19SArd Biesheuvel // aligned virtual address, so that we can manipulate the PTE
181247546a19SArd Biesheuvel // level entries while the mapping is active. The first entry
181347546a19SArd Biesheuvel // covers the PTE[] page itself, the remaining entries are free
181447546a19SArd Biesheuvel // to be used as a ad-hoc fixmap.
181547546a19SArd Biesheuvel //
181647546a19SArd Biesheuvel create_kpti_ng_temp_pgd(kpti_ng_temp_pgd, __pa(alloc),
181747546a19SArd Biesheuvel KPTI_NG_TEMP_VA, PAGE_SIZE, PAGE_KERNEL,
181847546a19SArd Biesheuvel kpti_ng_pgd_alloc, 0);
181947546a19SArd Biesheuvel }
182047546a19SArd Biesheuvel
1821f992b4dfSWill Deacon cpu_install_idmap();
182247546a19SArd Biesheuvel remap_fn(cpu, num_online_cpus(), kpti_ng_temp_pgd_pa, KPTI_NG_TEMP_VA);
1823f992b4dfSWill Deacon cpu_uninstall_idmap();
1824f992b4dfSWill Deacon
182547546a19SArd Biesheuvel if (!cpu) {
182647546a19SArd Biesheuvel free_pages(alloc, order);
182709e3c22aSMark Brown arm64_use_ng_mappings = true;
1828f992b4dfSWill Deacon }
182947546a19SArd Biesheuvel }
18301b3ccf4bSJeremy Linton #else
18311b3ccf4bSJeremy Linton static void
kpti_install_ng_mappings(const struct arm64_cpu_capabilities * __unused)18321b3ccf4bSJeremy Linton kpti_install_ng_mappings(const struct arm64_cpu_capabilities *__unused)
18331b3ccf4bSJeremy Linton {
18341b3ccf4bSJeremy Linton }
18351b3ccf4bSJeremy Linton #endif /* CONFIG_UNMAP_KERNEL_AT_EL0 */
1836f992b4dfSWill Deacon
parse_kpti(char * str)1837ea1e3de8SWill Deacon static int __init parse_kpti(char *str)
1838ea1e3de8SWill Deacon {
1839ea1e3de8SWill Deacon bool enabled;
18401a920c92SChristophe JAILLET int ret = kstrtobool(str, &enabled);
1841ea1e3de8SWill Deacon
1842ea1e3de8SWill Deacon if (ret)
1843ea1e3de8SWill Deacon return ret;
1844ea1e3de8SWill Deacon
1845ea1e3de8SWill Deacon __kpti_forced = enabled ? 1 : -1;
1846ea1e3de8SWill Deacon return 0;
1847ea1e3de8SWill Deacon }
1848b5b7dd64SWill Deacon early_param("kpti", parse_kpti);
1849ea1e3de8SWill Deacon
185005abb595SSuzuki K Poulose #ifdef CONFIG_ARM64_HW_AFDBM
__cpu_enable_hw_dbm(void)185105abb595SSuzuki K Poulose static inline void __cpu_enable_hw_dbm(void)
185205abb595SSuzuki K Poulose {
185305abb595SSuzuki K Poulose u64 tcr = read_sysreg(tcr_el1) | TCR_HD;
185405abb595SSuzuki K Poulose
185505abb595SSuzuki K Poulose write_sysreg(tcr, tcr_el1);
185605abb595SSuzuki K Poulose isb();
185780d6b466SWill Deacon local_flush_tlb_all();
185805abb595SSuzuki K Poulose }
185905abb595SSuzuki K Poulose
cpu_has_broken_dbm(void)1860ece1397cSSuzuki K Poulose static bool cpu_has_broken_dbm(void)
1861ece1397cSSuzuki K Poulose {
1862ece1397cSSuzuki K Poulose /* List of CPUs which have broken DBM support. */
1863ece1397cSSuzuki K Poulose static const struct midr_range cpus[] = {
1864ece1397cSSuzuki K Poulose #ifdef CONFIG_ARM64_ERRATUM_1024718
1865c0b15c25SSuzuki K Poulose MIDR_ALL_VERSIONS(MIDR_CORTEX_A55),
18669b23d95cSSai Prakash Ranjan /* Kryo4xx Silver (rdpe => r1p0) */
18679b23d95cSSai Prakash Ranjan MIDR_REV(MIDR_QCOM_KRYO_4XX_SILVER, 0xd, 0xe),
1868ece1397cSSuzuki K Poulose #endif
1869297ae1ebSJames Morse #ifdef CONFIG_ARM64_ERRATUM_2051678
1870297ae1ebSJames Morse MIDR_REV_RANGE(MIDR_CORTEX_A510, 0, 0, 2),
1871297ae1ebSJames Morse #endif
1872ece1397cSSuzuki K Poulose {},
1873ece1397cSSuzuki K Poulose };
1874ece1397cSSuzuki K Poulose
1875ece1397cSSuzuki K Poulose return is_midr_in_range_list(read_cpuid_id(), cpus);
1876ece1397cSSuzuki K Poulose }
1877ece1397cSSuzuki K Poulose
cpu_can_use_dbm(const struct arm64_cpu_capabilities * cap)187805abb595SSuzuki K Poulose static bool cpu_can_use_dbm(const struct arm64_cpu_capabilities *cap)
187905abb595SSuzuki K Poulose {
1880ece1397cSSuzuki K Poulose return has_cpuid_feature(cap, SCOPE_LOCAL_CPU) &&
1881ece1397cSSuzuki K Poulose !cpu_has_broken_dbm();
188205abb595SSuzuki K Poulose }
188305abb595SSuzuki K Poulose
cpu_enable_hw_dbm(struct arm64_cpu_capabilities const * cap)188405abb595SSuzuki K Poulose static void cpu_enable_hw_dbm(struct arm64_cpu_capabilities const *cap)
188505abb595SSuzuki K Poulose {
188605abb595SSuzuki K Poulose if (cpu_can_use_dbm(cap))
188705abb595SSuzuki K Poulose __cpu_enable_hw_dbm();
188805abb595SSuzuki K Poulose }
188905abb595SSuzuki K Poulose
has_hw_dbm(const struct arm64_cpu_capabilities * cap,int __unused)189005abb595SSuzuki K Poulose static bool has_hw_dbm(const struct arm64_cpu_capabilities *cap,
189105abb595SSuzuki K Poulose int __unused)
189205abb595SSuzuki K Poulose {
189305abb595SSuzuki K Poulose static bool detected = false;
189405abb595SSuzuki K Poulose /*
189505abb595SSuzuki K Poulose * DBM is a non-conflicting feature. i.e, the kernel can safely
189605abb595SSuzuki K Poulose * run a mix of CPUs with and without the feature. So, we
189705abb595SSuzuki K Poulose * unconditionally enable the capability to allow any late CPU
189805abb595SSuzuki K Poulose * to use the feature. We only enable the control bits on the
189905abb595SSuzuki K Poulose * CPU, if it actually supports.
190005abb595SSuzuki K Poulose *
190105abb595SSuzuki K Poulose * We have to make sure we print the "feature" detection only
190205abb595SSuzuki K Poulose * when at least one CPU actually uses it. So check if this CPU
190305abb595SSuzuki K Poulose * can actually use it and print the message exactly once.
190405abb595SSuzuki K Poulose *
190505abb595SSuzuki K Poulose * This is safe as all CPUs (including secondary CPUs - due to the
190605abb595SSuzuki K Poulose * LOCAL_CPU scope - and the hotplugged CPUs - via verification)
190705abb595SSuzuki K Poulose * goes through the "matches" check exactly once. Also if a CPU
190805abb595SSuzuki K Poulose * matches the criteria, it is guaranteed that the CPU will turn
190905abb595SSuzuki K Poulose * the DBM on, as the capability is unconditionally enabled.
191005abb595SSuzuki K Poulose */
191105abb595SSuzuki K Poulose if (!detected && cpu_can_use_dbm(cap)) {
191205abb595SSuzuki K Poulose detected = true;
191305abb595SSuzuki K Poulose pr_info("detected: Hardware dirty bit management\n");
191405abb595SSuzuki K Poulose }
191505abb595SSuzuki K Poulose
191605abb595SSuzuki K Poulose return true;
191705abb595SSuzuki K Poulose }
191805abb595SSuzuki K Poulose
191905abb595SSuzuki K Poulose #endif
192005abb595SSuzuki K Poulose
19212c9d45b4SIonela Voinescu #ifdef CONFIG_ARM64_AMU_EXTN
19222c9d45b4SIonela Voinescu
19232c9d45b4SIonela Voinescu /*
19242c9d45b4SIonela Voinescu * The "amu_cpus" cpumask only signals that the CPU implementation for the
19252c9d45b4SIonela Voinescu * flagged CPUs supports the Activity Monitors Unit (AMU) but does not provide
19262c9d45b4SIonela Voinescu * information regarding all the events that it supports. When a CPU bit is
19272c9d45b4SIonela Voinescu * set in the cpumask, the user of this feature can only rely on the presence
19282c9d45b4SIonela Voinescu * of the 4 fixed counters for that CPU. But this does not guarantee that the
19292c9d45b4SIonela Voinescu * counters are enabled or access to these counters is enabled by code
19302c9d45b4SIonela Voinescu * executed at higher exception levels (firmware).
19312c9d45b4SIonela Voinescu */
19322c9d45b4SIonela Voinescu static struct cpumask amu_cpus __read_mostly;
19332c9d45b4SIonela Voinescu
cpu_has_amu_feat(int cpu)19342c9d45b4SIonela Voinescu bool cpu_has_amu_feat(int cpu)
19352c9d45b4SIonela Voinescu {
19362c9d45b4SIonela Voinescu return cpumask_test_cpu(cpu, &amu_cpus);
19372c9d45b4SIonela Voinescu }
19382c9d45b4SIonela Voinescu
get_cpu_with_amu_feat(void)193968c5debcSIonela Voinescu int get_cpu_with_amu_feat(void)
194068c5debcSIonela Voinescu {
194168c5debcSIonela Voinescu return cpumask_any(&amu_cpus);
194268c5debcSIonela Voinescu }
1943cd0ed03aSIonela Voinescu
cpu_amu_enable(struct arm64_cpu_capabilities const * cap)19442c9d45b4SIonela Voinescu static void cpu_amu_enable(struct arm64_cpu_capabilities const *cap)
19452c9d45b4SIonela Voinescu {
19462c9d45b4SIonela Voinescu if (has_cpuid_feature(cap, SCOPE_LOCAL_CPU)) {
19472c9d45b4SIonela Voinescu pr_info("detected CPU%d: Activity Monitors Unit (AMU)\n",
19482c9d45b4SIonela Voinescu smp_processor_id());
19492c9d45b4SIonela Voinescu cpumask_set_cpu(smp_processor_id(), &amu_cpus);
1950e89d120cSIonela Voinescu
1951e89d120cSIonela Voinescu /* 0 reference values signal broken/disabled counters */
1952e89d120cSIonela Voinescu if (!this_cpu_has_cap(ARM64_WORKAROUND_2457168))
19534b9cf23cSIonela Voinescu update_freq_counters_refs();
19542c9d45b4SIonela Voinescu }
19552c9d45b4SIonela Voinescu }
19562c9d45b4SIonela Voinescu
has_amu(const struct arm64_cpu_capabilities * cap,int __unused)19572c9d45b4SIonela Voinescu static bool has_amu(const struct arm64_cpu_capabilities *cap,
19582c9d45b4SIonela Voinescu int __unused)
19592c9d45b4SIonela Voinescu {
19602c9d45b4SIonela Voinescu /*
19612c9d45b4SIonela Voinescu * The AMU extension is a non-conflicting feature: the kernel can
19622c9d45b4SIonela Voinescu * safely run a mix of CPUs with and without support for the
19632c9d45b4SIonela Voinescu * activity monitors extension. Therefore, unconditionally enable
19642c9d45b4SIonela Voinescu * the capability to allow any late CPU to use the feature.
19652c9d45b4SIonela Voinescu *
19662c9d45b4SIonela Voinescu * With this feature unconditionally enabled, the cpu_enable
19672c9d45b4SIonela Voinescu * function will be called for all CPUs that match the criteria,
19682c9d45b4SIonela Voinescu * including secondary and hotplugged, marking this feature as
19692c9d45b4SIonela Voinescu * present on that respective CPU. The enable function will also
19702c9d45b4SIonela Voinescu * print a detection message.
19712c9d45b4SIonela Voinescu */
19722c9d45b4SIonela Voinescu
19732c9d45b4SIonela Voinescu return true;
19742c9d45b4SIonela Voinescu }
197568c5debcSIonela Voinescu #else
get_cpu_with_amu_feat(void)197668c5debcSIonela Voinescu int get_cpu_with_amu_feat(void)
197768c5debcSIonela Voinescu {
197868c5debcSIonela Voinescu return nr_cpu_ids;
197968c5debcSIonela Voinescu }
19802c9d45b4SIonela Voinescu #endif
19812c9d45b4SIonela Voinescu
runs_at_el2(const struct arm64_cpu_capabilities * entry,int __unused)198212eb3691SWill Deacon static bool runs_at_el2(const struct arm64_cpu_capabilities *entry, int __unused)
198312eb3691SWill Deacon {
198412eb3691SWill Deacon return is_kernel_in_hyp_mode();
198512eb3691SWill Deacon }
198612eb3691SWill Deacon
cpu_copy_el2regs(const struct arm64_cpu_capabilities * __unused)1987c0cda3b8SDave Martin static void cpu_copy_el2regs(const struct arm64_cpu_capabilities *__unused)
19886d99b689SJames Morse {
19896d99b689SJames Morse /*
19906d99b689SJames Morse * Copy register values that aren't redirected by hardware.
19916d99b689SJames Morse *
19926d99b689SJames Morse * Before code patching, we only set tpidr_el1, all CPUs need to copy
19936d99b689SJames Morse * this value to tpidr_el2 before we patch the code. Once we've done
19946d99b689SJames Morse * that, freshly-onlined CPUs will set tpidr_el2, so we don't need to
19956d99b689SJames Morse * do anything here.
19966d99b689SJames Morse */
1997e9ab7a2eSJulien Thierry if (!alternative_is_applied(ARM64_HAS_VIRT_HOST_EXTN))
19986d99b689SJames Morse write_sysreg(read_sysreg(tpidr_el1), tpidr_el2);
19996d99b689SJames Morse }
20006d99b689SJames Morse
has_nested_virt_support(const struct arm64_cpu_capabilities * cap,int scope)2001675cabc8SJintack Lim static bool has_nested_virt_support(const struct arm64_cpu_capabilities *cap,
2002675cabc8SJintack Lim int scope)
2003675cabc8SJintack Lim {
2004675cabc8SJintack Lim if (kvm_get_mode() != KVM_MODE_NV)
2005675cabc8SJintack Lim return false;
2006675cabc8SJintack Lim
2007675cabc8SJintack Lim if (!has_cpuid_feature(cap, scope)) {
2008675cabc8SJintack Lim pr_warn("unavailable: %s\n", cap->desc);
2009675cabc8SJintack Lim return false;
2010675cabc8SJintack Lim }
2011675cabc8SJintack Lim
2012675cabc8SJintack Lim return true;
2013675cabc8SJintack Lim }
2014675cabc8SJintack Lim
hvhe_possible(const struct arm64_cpu_capabilities * entry,int __unused)2015e2d6c906SMarc Zyngier static bool hvhe_possible(const struct arm64_cpu_capabilities *entry,
2016e2d6c906SMarc Zyngier int __unused)
2017e2d6c906SMarc Zyngier {
2018e2d6c906SMarc Zyngier u64 val;
2019e2d6c906SMarc Zyngier
2020e2d6c906SMarc Zyngier val = read_sysreg(id_aa64mmfr1_el1);
2021e2d6c906SMarc Zyngier if (!cpuid_feature_extract_unsigned_field(val, ID_AA64MMFR1_EL1_VH_SHIFT))
2022e2d6c906SMarc Zyngier return false;
2023e2d6c906SMarc Zyngier
2024e2d6c906SMarc Zyngier val = arm64_sw_feature_override.val & arm64_sw_feature_override.mask;
2025e2d6c906SMarc Zyngier return cpuid_feature_extract_unsigned_field(val, ARM64_SW_FEATURE_OVERRIDE_HVHE);
2026e2d6c906SMarc Zyngier }
2027e2d6c906SMarc Zyngier
2028b8925ee2SWill Deacon #ifdef CONFIG_ARM64_PAN
cpu_enable_pan(const struct arm64_cpu_capabilities * __unused)2029b8925ee2SWill Deacon static void cpu_enable_pan(const struct arm64_cpu_capabilities *__unused)
2030b8925ee2SWill Deacon {
2031b8925ee2SWill Deacon /*
2032b8925ee2SWill Deacon * We modify PSTATE. This won't work from irq context as the PSTATE
2033b8925ee2SWill Deacon * is discarded once we return from the exception.
2034b8925ee2SWill Deacon */
2035b8925ee2SWill Deacon WARN_ON_ONCE(in_interrupt());
2036b8925ee2SWill Deacon
2037b8925ee2SWill Deacon sysreg_clear_set(sctlr_el1, SCTLR_EL1_SPAN, 0);
2038515d5c8aSMark Rutland set_pstate_pan(1);
2039b8925ee2SWill Deacon }
2040b8925ee2SWill Deacon #endif /* CONFIG_ARM64_PAN */
2041b8925ee2SWill Deacon
2042b8925ee2SWill Deacon #ifdef CONFIG_ARM64_RAS_EXTN
cpu_clear_disr(const struct arm64_cpu_capabilities * __unused)2043b8925ee2SWill Deacon static void cpu_clear_disr(const struct arm64_cpu_capabilities *__unused)
2044b8925ee2SWill Deacon {
2045b8925ee2SWill Deacon /* Firmware may have left a deferred SError in this register. */
2046b8925ee2SWill Deacon write_sysreg_s(0, SYS_DISR_EL1);
2047b8925ee2SWill Deacon }
2048b8925ee2SWill Deacon #endif /* CONFIG_ARM64_RAS_EXTN */
2049b8925ee2SWill Deacon
20506984eb47SMark Rutland #ifdef CONFIG_ARM64_PTR_AUTH
has_address_auth_cpucap(const struct arm64_cpu_capabilities * entry,int scope)2051ba9d1d3eSAmit Daniel Kachhap static bool has_address_auth_cpucap(const struct arm64_cpu_capabilities *entry, int scope)
205275031975SMark Rutland {
2053ba9d1d3eSAmit Daniel Kachhap int boot_val, sec_val;
2054ba9d1d3eSAmit Daniel Kachhap
2055ba9d1d3eSAmit Daniel Kachhap /* We don't expect to be called with SCOPE_SYSTEM */
2056ba9d1d3eSAmit Daniel Kachhap WARN_ON(scope == SCOPE_SYSTEM);
2057ba9d1d3eSAmit Daniel Kachhap /*
2058ba9d1d3eSAmit Daniel Kachhap * The ptr-auth feature levels are not intercompatible with lower
2059ba9d1d3eSAmit Daniel Kachhap * levels. Hence we must match ptr-auth feature level of the secondary
2060ba9d1d3eSAmit Daniel Kachhap * CPUs with that of the boot CPU. The level of boot cpu is fetched
2061ba9d1d3eSAmit Daniel Kachhap * from the sanitised register whereas direct register read is done for
2062ba9d1d3eSAmit Daniel Kachhap * the secondary CPUs.
2063ba9d1d3eSAmit Daniel Kachhap * The sanitised feature state is guaranteed to match that of the
2064ba9d1d3eSAmit Daniel Kachhap * boot CPU as a mismatched secondary CPU is parked before it gets
2065ba9d1d3eSAmit Daniel Kachhap * a chance to update the state, with the capability.
2066ba9d1d3eSAmit Daniel Kachhap */
2067ba9d1d3eSAmit Daniel Kachhap boot_val = cpuid_feature_extract_field(read_sanitised_ftr_reg(entry->sys_reg),
2068ba9d1d3eSAmit Daniel Kachhap entry->field_pos, entry->sign);
2069ba9d1d3eSAmit Daniel Kachhap if (scope & SCOPE_BOOT_CPU)
2070ba9d1d3eSAmit Daniel Kachhap return boot_val >= entry->min_field_value;
2071ba9d1d3eSAmit Daniel Kachhap /* Now check for the secondary CPUs with SCOPE_LOCAL_CPU scope */
2072ba9d1d3eSAmit Daniel Kachhap sec_val = cpuid_feature_extract_field(__read_sysreg_by_encoding(entry->sys_reg),
2073ba9d1d3eSAmit Daniel Kachhap entry->field_pos, entry->sign);
2074da844bebSVladimir Murzin return (sec_val >= entry->min_field_value) && (sec_val == boot_val);
2075ba9d1d3eSAmit Daniel Kachhap }
2076ba9d1d3eSAmit Daniel Kachhap
has_address_auth_metacap(const struct arm64_cpu_capabilities * entry,int scope)2077ba9d1d3eSAmit Daniel Kachhap static bool has_address_auth_metacap(const struct arm64_cpu_capabilities *entry,
2078ba9d1d3eSAmit Daniel Kachhap int scope)
2079ba9d1d3eSAmit Daniel Kachhap {
20801c8ae429SMark Rutland bool api = has_address_auth_cpucap(cpucap_ptrs[ARM64_HAS_ADDRESS_AUTH_IMP_DEF], scope);
20811c8ae429SMark Rutland bool apa = has_address_auth_cpucap(cpucap_ptrs[ARM64_HAS_ADDRESS_AUTH_ARCH_QARMA5], scope);
20821c8ae429SMark Rutland bool apa3 = has_address_auth_cpucap(cpucap_ptrs[ARM64_HAS_ADDRESS_AUTH_ARCH_QARMA3], scope);
2083be3256a0SVladimir Murzin
2084def8c222SVladimir Murzin return apa || apa3 || api;
2085cfef06bdSKristina Martsenko }
2086cfef06bdSKristina Martsenko
has_generic_auth(const struct arm64_cpu_capabilities * entry,int __unused)2087cfef06bdSKristina Martsenko static bool has_generic_auth(const struct arm64_cpu_capabilities *entry,
2088cfef06bdSKristina Martsenko int __unused)
2089cfef06bdSKristina Martsenko {
2090be3256a0SVladimir Murzin bool gpi = __system_matches_cap(ARM64_HAS_GENERIC_AUTH_IMP_DEF);
2091be3256a0SVladimir Murzin bool gpa = __system_matches_cap(ARM64_HAS_GENERIC_AUTH_ARCH_QARMA5);
2092def8c222SVladimir Murzin bool gpa3 = __system_matches_cap(ARM64_HAS_GENERIC_AUTH_ARCH_QARMA3);
2093be3256a0SVladimir Murzin
2094def8c222SVladimir Murzin return gpa || gpa3 || gpi;
209575031975SMark Rutland }
20966984eb47SMark Rutland #endif /* CONFIG_ARM64_PTR_AUTH */
20976984eb47SMark Rutland
20983e6c69a0SMark Brown #ifdef CONFIG_ARM64_E0PD
cpu_enable_e0pd(struct arm64_cpu_capabilities const * cap)20993e6c69a0SMark Brown static void cpu_enable_e0pd(struct arm64_cpu_capabilities const *cap)
21003e6c69a0SMark Brown {
21013e6c69a0SMark Brown if (this_cpu_has_cap(ARM64_HAS_E0PD))
21023e6c69a0SMark Brown sysreg_clear_set(tcr_el1, 0, TCR_E0PD1);
21033e6c69a0SMark Brown }
21043e6c69a0SMark Brown #endif /* CONFIG_ARM64_E0PD */
21053e6c69a0SMark Brown
2106b90d2b22SJulien Thierry #ifdef CONFIG_ARM64_PSEUDO_NMI
2107bc3c03ccSJulien Thierry static bool enable_pseudo_nmi;
2108bc3c03ccSJulien Thierry
early_enable_pseudo_nmi(char * p)2109bc3c03ccSJulien Thierry static int __init early_enable_pseudo_nmi(char *p)
2110bc3c03ccSJulien Thierry {
21111a920c92SChristophe JAILLET return kstrtobool(p, &enable_pseudo_nmi);
2112bc3c03ccSJulien Thierry }
2113bc3c03ccSJulien Thierry early_param("irqchip.gicv3_pseudo_nmi", early_enable_pseudo_nmi);
2114bc3c03ccSJulien Thierry
can_use_gic_priorities(const struct arm64_cpu_capabilities * entry,int scope)2115b90d2b22SJulien Thierry static bool can_use_gic_priorities(const struct arm64_cpu_capabilities *entry,
2116b90d2b22SJulien Thierry int scope)
2117b90d2b22SJulien Thierry {
21184b43f1cdSMark Rutland /*
21194b43f1cdSMark Rutland * ARM64_HAS_GIC_CPUIF_SYSREGS has a lower index, and is a boot CPU
21204b43f1cdSMark Rutland * feature, so will be detected earlier.
21214b43f1cdSMark Rutland */
21224b43f1cdSMark Rutland BUILD_BUG_ON(ARM64_HAS_GIC_PRIO_MASKING <= ARM64_HAS_GIC_CPUIF_SYSREGS);
21234b43f1cdSMark Rutland if (!cpus_have_cap(ARM64_HAS_GIC_CPUIF_SYSREGS))
21244b43f1cdSMark Rutland return false;
21254b43f1cdSMark Rutland
21264b43f1cdSMark Rutland return enable_pseudo_nmi;
2127b90d2b22SJulien Thierry }
21288bf0a804SMark Rutland
has_gic_prio_relaxed_sync(const struct arm64_cpu_capabilities * entry,int scope)21298bf0a804SMark Rutland static bool has_gic_prio_relaxed_sync(const struct arm64_cpu_capabilities *entry,
21308bf0a804SMark Rutland int scope)
21318bf0a804SMark Rutland {
21328bf0a804SMark Rutland /*
21338bf0a804SMark Rutland * If we're not using priority masking then we won't be poking PMR_EL1,
21348bf0a804SMark Rutland * and there's no need to relax synchronization of writes to it, and
21358bf0a804SMark Rutland * ICC_CTLR_EL1 might not be accessible and we must avoid reads from
21368bf0a804SMark Rutland * that.
21378bf0a804SMark Rutland *
21388bf0a804SMark Rutland * ARM64_HAS_GIC_PRIO_MASKING has a lower index, and is a boot CPU
21398bf0a804SMark Rutland * feature, so will be detected earlier.
21408bf0a804SMark Rutland */
21418bf0a804SMark Rutland BUILD_BUG_ON(ARM64_HAS_GIC_PRIO_RELAXED_SYNC <= ARM64_HAS_GIC_PRIO_MASKING);
21428bf0a804SMark Rutland if (!cpus_have_cap(ARM64_HAS_GIC_PRIO_MASKING))
21438bf0a804SMark Rutland return false;
21448bf0a804SMark Rutland
21458bf0a804SMark Rutland /*
21468bf0a804SMark Rutland * When Priority Mask Hint Enable (PMHE) == 0b0, PMR is not used as a
21478bf0a804SMark Rutland * hint for interrupt distribution, a DSB is not necessary when
21488bf0a804SMark Rutland * unmasking IRQs via PMR, and we can relax the barrier to a NOP.
21498bf0a804SMark Rutland *
21508bf0a804SMark Rutland * Linux itself doesn't use 1:N distribution, so has no need to
21518bf0a804SMark Rutland * set PMHE. The only reason to have it set is if EL3 requires it
21528bf0a804SMark Rutland * (and we can't change it).
21538bf0a804SMark Rutland */
21548bf0a804SMark Rutland return (gic_read_ctlr() & ICC_CTLR_EL1_PMHE_MASK) == 0;
2155b90d2b22SJulien Thierry }
2156b90d2b22SJulien Thierry #endif
2157b90d2b22SJulien Thierry
21588ef8f360SDave Martin #ifdef CONFIG_ARM64_BTI
bti_enable(const struct arm64_cpu_capabilities * __unused)21598ef8f360SDave Martin static void bti_enable(const struct arm64_cpu_capabilities *__unused)
21608ef8f360SDave Martin {
21618ef8f360SDave Martin /*
21628ef8f360SDave Martin * Use of X16/X17 for tail-calls and trampolines that jump to
21638ef8f360SDave Martin * function entry points using BR is a requirement for
21648ef8f360SDave Martin * marking binaries with GNU_PROPERTY_AARCH64_FEATURE_1_BTI.
21658ef8f360SDave Martin * So, be strict and forbid other BRs using other registers to
21668ef8f360SDave Martin * jump onto a PACIxSP instruction:
21678ef8f360SDave Martin */
21688ef8f360SDave Martin sysreg_clear_set(sctlr_el1, 0, SCTLR_EL1_BT0 | SCTLR_EL1_BT1);
21698ef8f360SDave Martin isb();
21708ef8f360SDave Martin }
21718ef8f360SDave Martin #endif /* CONFIG_ARM64_BTI */
21728ef8f360SDave Martin
217334bfeea4SCatalin Marinas #ifdef CONFIG_ARM64_MTE
cpu_enable_mte(struct arm64_cpu_capabilities const * cap)217434bfeea4SCatalin Marinas static void cpu_enable_mte(struct arm64_cpu_capabilities const *cap)
217534bfeea4SCatalin Marinas {
21767a062ce3SYee Lee sysreg_clear_set(sctlr_el1, 0, SCTLR_ELx_ATA | SCTLR_EL1_ATA0);
2177973b9e37SPeter Collingbourne
2178973b9e37SPeter Collingbourne mte_cpu_setup();
21797a062ce3SYee Lee
218034bfeea4SCatalin Marinas /*
218134bfeea4SCatalin Marinas * Clear the tags in the zero page. This needs to be done via the
218234bfeea4SCatalin Marinas * linear map which has the Tagged attribute.
218334bfeea4SCatalin Marinas */
2184d77e59a8SCatalin Marinas if (try_page_mte_tagging(ZERO_PAGE(0))) {
218534bfeea4SCatalin Marinas mte_clear_page_tags(lm_alias(empty_zero_page));
2186e059853dSCatalin Marinas set_page_mte_tagged(ZERO_PAGE(0));
2187e059853dSCatalin Marinas }
21882e903b91SAndrey Konovalov
21892e903b91SAndrey Konovalov kasan_init_hw_tags_cpu();
219034bfeea4SCatalin Marinas }
219134bfeea4SCatalin Marinas #endif /* CONFIG_ARM64_MTE */
219234bfeea4SCatalin Marinas
user_feature_fixup(void)219393696d8fSMark Rutland static void user_feature_fixup(void)
219493696d8fSMark Rutland {
219593696d8fSMark Rutland if (cpus_have_cap(ARM64_WORKAROUND_SPECULATIVE_SSBS)) {
219693696d8fSMark Rutland struct arm64_ftr_reg *regp;
219793696d8fSMark Rutland
219893696d8fSMark Rutland regp = get_arm64_ftr_reg(SYS_ID_AA64PFR1_EL1);
219993696d8fSMark Rutland if (regp)
220093696d8fSMark Rutland regp->user_mask &= ~ID_AA64PFR1_EL1_SSBS_MASK;
220193696d8fSMark Rutland }
220293696d8fSMark Rutland }
220393696d8fSMark Rutland
elf_hwcap_fixup(void)220444b3834bSJames Morse static void elf_hwcap_fixup(void)
220544b3834bSJames Morse {
220644b3834bSJames Morse #ifdef CONFIG_ARM64_ERRATUM_1742098
220744b3834bSJames Morse if (cpus_have_const_cap(ARM64_WORKAROUND_1742098))
220844b3834bSJames Morse compat_elf_hwcap2 &= ~COMPAT_HWCAP2_AES;
220944b3834bSJames Morse #endif /* ARM64_ERRATUM_1742098 */
221044b3834bSJames Morse }
221144b3834bSJames Morse
22123eb681fbSDavid Brazdil #ifdef CONFIG_KVM
is_kvm_protected_mode(const struct arm64_cpu_capabilities * entry,int __unused)22133eb681fbSDavid Brazdil static bool is_kvm_protected_mode(const struct arm64_cpu_capabilities *entry, int __unused)
22143eb681fbSDavid Brazdil {
2215cde5042aSWill Deacon return kvm_get_mode() == KVM_MODE_PROTECTED;
22163eb681fbSDavid Brazdil }
22173eb681fbSDavid Brazdil #endif /* CONFIG_KVM */
22183eb681fbSDavid Brazdil
cpu_trap_el0_impdef(const struct arm64_cpu_capabilities * __unused)22193a46b352SKristina Martsenko static void cpu_trap_el0_impdef(const struct arm64_cpu_capabilities *__unused)
22203a46b352SKristina Martsenko {
22213a46b352SKristina Martsenko sysreg_clear_set(sctlr_el1, 0, SCTLR_EL1_TIDCP);
22223a46b352SKristina Martsenko }
22233a46b352SKristina Martsenko
cpu_enable_dit(const struct arm64_cpu_capabilities * __unused)222401ab991fSArd Biesheuvel static void cpu_enable_dit(const struct arm64_cpu_capabilities *__unused)
222501ab991fSArd Biesheuvel {
222601ab991fSArd Biesheuvel set_pstate_dit(1);
222701ab991fSArd Biesheuvel }
222801ab991fSArd Biesheuvel
cpu_enable_mops(const struct arm64_cpu_capabilities * __unused)2229b7564127SKristina Martsenko static void cpu_enable_mops(const struct arm64_cpu_capabilities *__unused)
2230b7564127SKristina Martsenko {
2231b7564127SKristina Martsenko sysreg_clear_set(sctlr_el1, 0, SCTLR_EL1_MSCEn);
2232b7564127SKristina Martsenko }
2233b7564127SKristina Martsenko
22348c176e16SAmit Daniel Kachhap /* Internal helper functions to match cpu capability type */
22358c176e16SAmit Daniel Kachhap static bool
cpucap_late_cpu_optional(const struct arm64_cpu_capabilities * cap)22368c176e16SAmit Daniel Kachhap cpucap_late_cpu_optional(const struct arm64_cpu_capabilities *cap)
22378c176e16SAmit Daniel Kachhap {
22388c176e16SAmit Daniel Kachhap return !!(cap->type & ARM64_CPUCAP_OPTIONAL_FOR_LATE_CPU);
22398c176e16SAmit Daniel Kachhap }
22408c176e16SAmit Daniel Kachhap
22418c176e16SAmit Daniel Kachhap static bool
cpucap_late_cpu_permitted(const struct arm64_cpu_capabilities * cap)22428c176e16SAmit Daniel Kachhap cpucap_late_cpu_permitted(const struct arm64_cpu_capabilities *cap)
22438c176e16SAmit Daniel Kachhap {
22448c176e16SAmit Daniel Kachhap return !!(cap->type & ARM64_CPUCAP_PERMITTED_FOR_LATE_CPU);
22458c176e16SAmit Daniel Kachhap }
22468c176e16SAmit Daniel Kachhap
2247deeaac51SKristina Martsenko static bool
cpucap_panic_on_conflict(const struct arm64_cpu_capabilities * cap)2248deeaac51SKristina Martsenko cpucap_panic_on_conflict(const struct arm64_cpu_capabilities *cap)
2249deeaac51SKristina Martsenko {
2250deeaac51SKristina Martsenko return !!(cap->type & ARM64_CPUCAP_PANIC_ON_CONFLICT);
2251deeaac51SKristina Martsenko }
2252deeaac51SKristina Martsenko
2253359b7064SMarc Zyngier static const struct arm64_cpu_capabilities arm64_features[] = {
225494a9e04aSMarc Zyngier {
22554c0bd995SMark Rutland .capability = ARM64_ALWAYS_BOOT,
22564c0bd995SMark Rutland .type = ARM64_CPUCAP_BOOT_CPU_FEATURE,
22574c0bd995SMark Rutland .matches = has_always,
22584c0bd995SMark Rutland },
22594c0bd995SMark Rutland {
22604c0bd995SMark Rutland .capability = ARM64_ALWAYS_SYSTEM,
22614c0bd995SMark Rutland .type = ARM64_CPUCAP_SYSTEM_FEATURE,
22624c0bd995SMark Rutland .matches = has_always,
22634c0bd995SMark Rutland },
22644c0bd995SMark Rutland {
226594a9e04aSMarc Zyngier .desc = "GIC system register CPU interface",
22660e62ccb9SMark Rutland .capability = ARM64_HAS_GIC_CPUIF_SYSREGS,
2267c9bfdf73SJulien Thierry .type = ARM64_CPUCAP_STRICT_BOOT_CPU_FEATURE,
2268963fcd40SMarc Zyngier .matches = has_useable_gicv3_cpuif,
2269863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR0_EL1, GIC, IMP)
227094a9e04aSMarc Zyngier },
2271fdf86598SMarc Zyngier {
2272fdf86598SMarc Zyngier .desc = "Enhanced Counter Virtualization",
2273fdf86598SMarc Zyngier .capability = ARM64_HAS_ECV,
2274fdf86598SMarc Zyngier .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2275fdf86598SMarc Zyngier .matches = has_cpuid_feature,
2276863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR0_EL1, ECV, IMP)
2277fdf86598SMarc Zyngier },
227832634994SMarc Zyngier {
227932634994SMarc Zyngier .desc = "Enhanced Counter Virtualization (CNTPOFF)",
228032634994SMarc Zyngier .capability = ARM64_HAS_ECV_CNTPOFF,
228132634994SMarc Zyngier .type = ARM64_CPUCAP_SYSTEM_FEATURE,
228232634994SMarc Zyngier .matches = has_cpuid_feature,
2283e34f78b9SMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR0_EL1, ECV, CNTPOFF)
228432634994SMarc Zyngier },
2285338d4f49SJames Morse #ifdef CONFIG_ARM64_PAN
2286338d4f49SJames Morse {
2287338d4f49SJames Morse .desc = "Privileged Access Never",
2288338d4f49SJames Morse .capability = ARM64_HAS_PAN,
22895b4747c5SSuzuki K Poulose .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2290da8d02d1SSuzuki K. Poulose .matches = has_cpuid_feature,
2291c0cda3b8SDave Martin .cpu_enable = cpu_enable_pan,
2292863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR1_EL1, PAN, IMP)
2293338d4f49SJames Morse },
2294338d4f49SJames Morse #endif /* CONFIG_ARM64_PAN */
229518107f8aSVladimir Murzin #ifdef CONFIG_ARM64_EPAN
229618107f8aSVladimir Murzin {
229718107f8aSVladimir Murzin .desc = "Enhanced Privileged Access Never",
229818107f8aSVladimir Murzin .capability = ARM64_HAS_EPAN,
229918107f8aSVladimir Murzin .type = ARM64_CPUCAP_SYSTEM_FEATURE,
230018107f8aSVladimir Murzin .matches = has_cpuid_feature,
2301863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR1_EL1, PAN, PAN3)
230218107f8aSVladimir Murzin },
230318107f8aSVladimir Murzin #endif /* CONFIG_ARM64_EPAN */
2304395af861SCatalin Marinas #ifdef CONFIG_ARM64_LSE_ATOMICS
23052e94da13SWill Deacon {
23062e94da13SWill Deacon .desc = "LSE atomic instructions",
23072e94da13SWill Deacon .capability = ARM64_HAS_LSE_ATOMICS,
23085b4747c5SSuzuki K Poulose .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2309da8d02d1SSuzuki K. Poulose .matches = has_cpuid_feature,
2310863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR0_EL1, ATOMIC, IMP)
23112e94da13SWill Deacon },
2312395af861SCatalin Marinas #endif /* CONFIG_ARM64_LSE_ATOMICS */
2313d88701beSMarc Zyngier {
2314d5370f75SWill Deacon .desc = "Software prefetching using PRFM",
2315d5370f75SWill Deacon .capability = ARM64_HAS_NO_HW_PREFETCH,
23165c137714SSuzuki K Poulose .type = ARM64_CPUCAP_WEAK_LOCAL_CPU_FEATURE,
2317d5370f75SWill Deacon .matches = has_no_hw_prefetch,
2318d5370f75SWill Deacon },
2319588ab3f9SLinus Torvalds {
2320d88701beSMarc Zyngier .desc = "Virtualization Host Extensions",
2321d88701beSMarc Zyngier .capability = ARM64_HAS_VIRT_HOST_EXTN,
2322830dcc9fSSuzuki K Poulose .type = ARM64_CPUCAP_STRICT_BOOT_CPU_FEATURE,
2323d88701beSMarc Zyngier .matches = runs_at_el2,
2324c0cda3b8SDave Martin .cpu_enable = cpu_copy_el2regs,
2325d88701beSMarc Zyngier },
2326042446a3SSuzuki K Poulose {
2327675cabc8SJintack Lim .desc = "Nested Virtualization Support",
2328675cabc8SJintack Lim .capability = ARM64_HAS_NESTED_VIRT,
2329675cabc8SJintack Lim .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2330675cabc8SJintack Lim .matches = has_nested_virt_support,
2331863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR2_EL1, NV, IMP)
2332675cabc8SJintack Lim },
2333675cabc8SJintack Lim {
23342122a833SWill Deacon .capability = ARM64_HAS_32BIT_EL0_DO_NOT_USE,
23355b4747c5SSuzuki K Poulose .type = ARM64_CPUCAP_SYSTEM_FEATURE,
23362122a833SWill Deacon .matches = has_32bit_el0,
2337863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR0_EL1, EL0, AARCH32)
2338042446a3SSuzuki K Poulose },
2339540f76d1SWill Deacon #ifdef CONFIG_KVM
2340540f76d1SWill Deacon {
2341540f76d1SWill Deacon .desc = "32-bit EL1 Support",
2342540f76d1SWill Deacon .capability = ARM64_HAS_32BIT_EL1,
2343540f76d1SWill Deacon .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2344540f76d1SWill Deacon .matches = has_cpuid_feature,
2345863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR0_EL1, EL1, AARCH32)
2346540f76d1SWill Deacon },
23473eb681fbSDavid Brazdil {
23483eb681fbSDavid Brazdil .desc = "Protected KVM",
23493eb681fbSDavid Brazdil .capability = ARM64_KVM_PROTECTED_MODE,
23503eb681fbSDavid Brazdil .type = ARM64_CPUCAP_SYSTEM_FEATURE,
23513eb681fbSDavid Brazdil .matches = is_kvm_protected_mode,
23523eb681fbSDavid Brazdil },
2353b0c756feSKristina Martsenko {
2354b0c756feSKristina Martsenko .desc = "HCRX_EL2 register",
2355b0c756feSKristina Martsenko .capability = ARM64_HAS_HCX,
2356b0c756feSKristina Martsenko .type = ARM64_CPUCAP_STRICT_BOOT_CPU_FEATURE,
2357b0c756feSKristina Martsenko .matches = has_cpuid_feature,
2358b0c756feSKristina Martsenko ARM64_CPUID_FIELDS(ID_AA64MMFR1_EL1, HCX, IMP)
2359b0c756feSKristina Martsenko },
2360540f76d1SWill Deacon #endif
2361ea1e3de8SWill Deacon {
2362179a56f6SWill Deacon .desc = "Kernel page table isolation (KPTI)",
2363ea1e3de8SWill Deacon .capability = ARM64_UNMAP_KERNEL_AT_EL0,
2364d3aec8a2SSuzuki K Poulose .type = ARM64_CPUCAP_BOOT_RESTRICTED_CPU_LOCAL_FEATURE,
2365863da0bdSMark Brown .cpu_enable = kpti_install_ng_mappings,
2366863da0bdSMark Brown .matches = unmap_kernel_at_el0,
2367d3aec8a2SSuzuki K Poulose /*
2368d3aec8a2SSuzuki K Poulose * The ID feature fields below are used to indicate that
2369d3aec8a2SSuzuki K Poulose * the CPU doesn't need KPTI. See unmap_kernel_at_el0 for
2370d3aec8a2SSuzuki K Poulose * more details.
2371d3aec8a2SSuzuki K Poulose */
2372863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR0_EL1, CSV3, IMP)
2373ea1e3de8SWill Deacon },
237482e0191aSSuzuki K Poulose {
237582e0191aSSuzuki K Poulose /* FP/SIMD is not implemented */
237682e0191aSSuzuki K Poulose .capability = ARM64_HAS_NO_FPSIMD,
2377449443c0SSuzuki K Poulose .type = ARM64_CPUCAP_BOOT_RESTRICTED_CPU_LOCAL_FEATURE,
237882e0191aSSuzuki K Poulose .min_field_value = 0,
237982e0191aSSuzuki K Poulose .matches = has_no_fpsimd,
238082e0191aSSuzuki K Poulose },
2381d50e071fSRobin Murphy #ifdef CONFIG_ARM64_PMEM
2382d50e071fSRobin Murphy {
2383d50e071fSRobin Murphy .desc = "Data cache clean to Point of Persistence",
2384d50e071fSRobin Murphy .capability = ARM64_HAS_DCPOP,
23855b4747c5SSuzuki K Poulose .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2386d50e071fSRobin Murphy .matches = has_cpuid_feature,
2387863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR1_EL1, DPB, IMP)
2388d50e071fSRobin Murphy },
2389b9585f53SAndrew Murray {
2390b9585f53SAndrew Murray .desc = "Data cache clean to Point of Deep Persistence",
2391b9585f53SAndrew Murray .capability = ARM64_HAS_DCPODP,
2392b9585f53SAndrew Murray .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2393b9585f53SAndrew Murray .matches = has_cpuid_feature,
2394863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR1_EL1, DPB, DPB2)
2395b9585f53SAndrew Murray },
2396d50e071fSRobin Murphy #endif
239743994d82SDave Martin #ifdef CONFIG_ARM64_SVE
239843994d82SDave Martin {
239943994d82SDave Martin .desc = "Scalable Vector Extension",
24005b4747c5SSuzuki K Poulose .type = ARM64_CPUCAP_SYSTEM_FEATURE,
240143994d82SDave Martin .capability = ARM64_SVE,
2402c0cda3b8SDave Martin .cpu_enable = sve_kernel_enable,
2403863da0bdSMark Brown .matches = has_cpuid_feature,
2404863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR0_EL1, SVE, IMP)
240543994d82SDave Martin },
240643994d82SDave Martin #endif /* CONFIG_ARM64_SVE */
240764c02720SXie XiuQi #ifdef CONFIG_ARM64_RAS_EXTN
240864c02720SXie XiuQi {
240964c02720SXie XiuQi .desc = "RAS Extension Support",
241064c02720SXie XiuQi .capability = ARM64_HAS_RAS_EXTN,
24115b4747c5SSuzuki K Poulose .type = ARM64_CPUCAP_SYSTEM_FEATURE,
241264c02720SXie XiuQi .matches = has_cpuid_feature,
2413c0cda3b8SDave Martin .cpu_enable = cpu_clear_disr,
2414863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR0_EL1, RAS, IMP)
241564c02720SXie XiuQi },
241664c02720SXie XiuQi #endif /* CONFIG_ARM64_RAS_EXTN */
24172c9d45b4SIonela Voinescu #ifdef CONFIG_ARM64_AMU_EXTN
24182c9d45b4SIonela Voinescu {
24192c9d45b4SIonela Voinescu /*
24202c9d45b4SIonela Voinescu * The feature is enabled by default if CONFIG_ARM64_AMU_EXTN=y.
24212c9d45b4SIonela Voinescu * Therefore, don't provide .desc as we don't want the detection
24222c9d45b4SIonela Voinescu * message to be shown until at least one CPU is detected to
24232c9d45b4SIonela Voinescu * support the feature.
24242c9d45b4SIonela Voinescu */
24252c9d45b4SIonela Voinescu .capability = ARM64_HAS_AMU_EXTN,
24262c9d45b4SIonela Voinescu .type = ARM64_CPUCAP_WEAK_LOCAL_CPU_FEATURE,
24272c9d45b4SIonela Voinescu .matches = has_amu,
24282c9d45b4SIonela Voinescu .cpu_enable = cpu_amu_enable,
2429863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR0_EL1, AMU, IMP)
24302c9d45b4SIonela Voinescu },
24312c9d45b4SIonela Voinescu #endif /* CONFIG_ARM64_AMU_EXTN */
24326ae4b6e0SShanker Donthineni {
24336ae4b6e0SShanker Donthineni .desc = "Data cache clean to the PoU not required for I/D coherence",
24346ae4b6e0SShanker Donthineni .capability = ARM64_HAS_CACHE_IDC,
24355b4747c5SSuzuki K Poulose .type = ARM64_CPUCAP_SYSTEM_FEATURE,
24366ae4b6e0SShanker Donthineni .matches = has_cache_idc,
24371602df02SSuzuki K Poulose .cpu_enable = cpu_emulate_effective_ctr,
24386ae4b6e0SShanker Donthineni },
24396ae4b6e0SShanker Donthineni {
24406ae4b6e0SShanker Donthineni .desc = "Instruction cache invalidation not required for I/D coherence",
24416ae4b6e0SShanker Donthineni .capability = ARM64_HAS_CACHE_DIC,
24425b4747c5SSuzuki K Poulose .type = ARM64_CPUCAP_SYSTEM_FEATURE,
24436ae4b6e0SShanker Donthineni .matches = has_cache_dic,
24446ae4b6e0SShanker Donthineni },
2445e48d53a9SMarc Zyngier {
2446e48d53a9SMarc Zyngier .desc = "Stage-2 Force Write-Back",
2447e48d53a9SMarc Zyngier .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2448e48d53a9SMarc Zyngier .capability = ARM64_HAS_STAGE2_FWB,
2449e48d53a9SMarc Zyngier .matches = has_cpuid_feature,
2450863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR2_EL1, FWB, IMP)
2451e48d53a9SMarc Zyngier },
2452552ae76fSMarc Zyngier {
2453552ae76fSMarc Zyngier .desc = "ARMv8.4 Translation Table Level",
2454552ae76fSMarc Zyngier .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2455552ae76fSMarc Zyngier .capability = ARM64_HAS_ARMv8_4_TTL,
2456552ae76fSMarc Zyngier .matches = has_cpuid_feature,
2457863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR2_EL1, TTL, IMP)
2458552ae76fSMarc Zyngier },
2459b620ba54SZhenyu Ye {
2460b620ba54SZhenyu Ye .desc = "TLB range maintenance instructions",
2461b620ba54SZhenyu Ye .capability = ARM64_HAS_TLB_RANGE,
2462b620ba54SZhenyu Ye .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2463b620ba54SZhenyu Ye .matches = has_cpuid_feature,
2464863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR0_EL1, TLB, RANGE)
2465b620ba54SZhenyu Ye },
246605abb595SSuzuki K Poulose #ifdef CONFIG_ARM64_HW_AFDBM
246705abb595SSuzuki K Poulose {
246805abb595SSuzuki K Poulose /*
246905abb595SSuzuki K Poulose * Since we turn this on always, we don't want the user to
247005abb595SSuzuki K Poulose * think that the feature is available when it may not be.
247105abb595SSuzuki K Poulose * So hide the description.
247205abb595SSuzuki K Poulose *
247305abb595SSuzuki K Poulose * .desc = "Hardware pagetable Dirty Bit Management",
247405abb595SSuzuki K Poulose *
247505abb595SSuzuki K Poulose */
247605abb595SSuzuki K Poulose .type = ARM64_CPUCAP_WEAK_LOCAL_CPU_FEATURE,
247705abb595SSuzuki K Poulose .capability = ARM64_HW_DBM,
247805abb595SSuzuki K Poulose .matches = has_hw_dbm,
247905abb595SSuzuki K Poulose .cpu_enable = cpu_enable_hw_dbm,
2480863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR1_EL1, HAFDBS, DBM)
248105abb595SSuzuki K Poulose },
248205abb595SSuzuki K Poulose #endif
248386d0dd34SArd Biesheuvel {
248486d0dd34SArd Biesheuvel .desc = "CRC32 instructions",
248586d0dd34SArd Biesheuvel .capability = ARM64_HAS_CRC32,
248686d0dd34SArd Biesheuvel .type = ARM64_CPUCAP_SYSTEM_FEATURE,
248786d0dd34SArd Biesheuvel .matches = has_cpuid_feature,
2488863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR0_EL1, CRC32, IMP)
248986d0dd34SArd Biesheuvel },
2490d71be2b6SWill Deacon {
2491d71be2b6SWill Deacon .desc = "Speculative Store Bypassing Safe (SSBS)",
2492d71be2b6SWill Deacon .capability = ARM64_SSBS,
2493532d5815SWill Deacon .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2494d71be2b6SWill Deacon .matches = has_cpuid_feature,
2495863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR1_EL1, SSBS, IMP)
2496d71be2b6SWill Deacon },
24975ffdfaedSVladimir Murzin #ifdef CONFIG_ARM64_CNP
24985ffdfaedSVladimir Murzin {
24995ffdfaedSVladimir Murzin .desc = "Common not Private translations",
25005ffdfaedSVladimir Murzin .capability = ARM64_HAS_CNP,
25015ffdfaedSVladimir Murzin .type = ARM64_CPUCAP_SYSTEM_FEATURE,
25025ffdfaedSVladimir Murzin .matches = has_useable_cnp,
25035ffdfaedSVladimir Murzin .cpu_enable = cpu_enable_cnp,
2504863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR2_EL1, CnP, IMP)
25055ffdfaedSVladimir Murzin },
25065ffdfaedSVladimir Murzin #endif
2507bd4fb6d2SWill Deacon {
2508bd4fb6d2SWill Deacon .desc = "Speculation barrier (SB)",
2509bd4fb6d2SWill Deacon .capability = ARM64_HAS_SB,
2510bd4fb6d2SWill Deacon .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2511bd4fb6d2SWill Deacon .matches = has_cpuid_feature,
2512863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR1_EL1, SB, IMP)
2513bd4fb6d2SWill Deacon },
25146984eb47SMark Rutland #ifdef CONFIG_ARM64_PTR_AUTH
25156984eb47SMark Rutland {
2516be3256a0SVladimir Murzin .desc = "Address authentication (architected QARMA5 algorithm)",
2517be3256a0SVladimir Murzin .capability = ARM64_HAS_ADDRESS_AUTH_ARCH_QARMA5,
25186982934eSKristina Martsenko .type = ARM64_CPUCAP_BOOT_CPU_FEATURE,
2519ba9d1d3eSAmit Daniel Kachhap .matches = has_address_auth_cpucap,
2520863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR1_EL1, APA, PAuth)
25216984eb47SMark Rutland },
25226984eb47SMark Rutland {
2523def8c222SVladimir Murzin .desc = "Address authentication (architected QARMA3 algorithm)",
2524def8c222SVladimir Murzin .capability = ARM64_HAS_ADDRESS_AUTH_ARCH_QARMA3,
2525def8c222SVladimir Murzin .type = ARM64_CPUCAP_BOOT_CPU_FEATURE,
2526def8c222SVladimir Murzin .matches = has_address_auth_cpucap,
2527863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR2_EL1, APA3, PAuth)
2528def8c222SVladimir Murzin },
2529def8c222SVladimir Murzin {
25306984eb47SMark Rutland .desc = "Address authentication (IMP DEF algorithm)",
25316984eb47SMark Rutland .capability = ARM64_HAS_ADDRESS_AUTH_IMP_DEF,
25326982934eSKristina Martsenko .type = ARM64_CPUCAP_BOOT_CPU_FEATURE,
2533ba9d1d3eSAmit Daniel Kachhap .matches = has_address_auth_cpucap,
2534863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR1_EL1, API, PAuth)
2535cfef06bdSKristina Martsenko },
2536cfef06bdSKristina Martsenko {
2537cfef06bdSKristina Martsenko .capability = ARM64_HAS_ADDRESS_AUTH,
25386982934eSKristina Martsenko .type = ARM64_CPUCAP_BOOT_CPU_FEATURE,
2539ba9d1d3eSAmit Daniel Kachhap .matches = has_address_auth_metacap,
25406984eb47SMark Rutland },
25416984eb47SMark Rutland {
2542be3256a0SVladimir Murzin .desc = "Generic authentication (architected QARMA5 algorithm)",
2543be3256a0SVladimir Murzin .capability = ARM64_HAS_GENERIC_AUTH_ARCH_QARMA5,
25446984eb47SMark Rutland .type = ARM64_CPUCAP_SYSTEM_FEATURE,
25456984eb47SMark Rutland .matches = has_cpuid_feature,
2546863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR1_EL1, GPA, IMP)
25476984eb47SMark Rutland },
25486984eb47SMark Rutland {
2549def8c222SVladimir Murzin .desc = "Generic authentication (architected QARMA3 algorithm)",
2550def8c222SVladimir Murzin .capability = ARM64_HAS_GENERIC_AUTH_ARCH_QARMA3,
2551def8c222SVladimir Murzin .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2552def8c222SVladimir Murzin .matches = has_cpuid_feature,
2553863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR2_EL1, GPA3, IMP)
2554def8c222SVladimir Murzin },
2555def8c222SVladimir Murzin {
25566984eb47SMark Rutland .desc = "Generic authentication (IMP DEF algorithm)",
25576984eb47SMark Rutland .capability = ARM64_HAS_GENERIC_AUTH_IMP_DEF,
25586984eb47SMark Rutland .type = ARM64_CPUCAP_SYSTEM_FEATURE,
25596984eb47SMark Rutland .matches = has_cpuid_feature,
2560863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR1_EL1, GPI, IMP)
25616984eb47SMark Rutland },
2562cfef06bdSKristina Martsenko {
2563cfef06bdSKristina Martsenko .capability = ARM64_HAS_GENERIC_AUTH,
2564cfef06bdSKristina Martsenko .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2565cfef06bdSKristina Martsenko .matches = has_generic_auth,
2566cfef06bdSKristina Martsenko },
25676984eb47SMark Rutland #endif /* CONFIG_ARM64_PTR_AUTH */
2568b90d2b22SJulien Thierry #ifdef CONFIG_ARM64_PSEUDO_NMI
2569b90d2b22SJulien Thierry {
2570b90d2b22SJulien Thierry /*
2571b90d2b22SJulien Thierry * Depends on having GICv3
2572b90d2b22SJulien Thierry */
2573b90d2b22SJulien Thierry .desc = "IRQ priority masking",
2574c888b7bdSMark Rutland .capability = ARM64_HAS_GIC_PRIO_MASKING,
2575b90d2b22SJulien Thierry .type = ARM64_CPUCAP_STRICT_BOOT_CPU_FEATURE,
2576b90d2b22SJulien Thierry .matches = can_use_gic_priorities,
2577b90d2b22SJulien Thierry },
25788bf0a804SMark Rutland {
25798bf0a804SMark Rutland /*
25808bf0a804SMark Rutland * Depends on ARM64_HAS_GIC_PRIO_MASKING
25818bf0a804SMark Rutland */
25828bf0a804SMark Rutland .capability = ARM64_HAS_GIC_PRIO_RELAXED_SYNC,
25838bf0a804SMark Rutland .type = ARM64_CPUCAP_STRICT_BOOT_CPU_FEATURE,
25848bf0a804SMark Rutland .matches = has_gic_prio_relaxed_sync,
2585b90d2b22SJulien Thierry },
2586b90d2b22SJulien Thierry #endif
25873e6c69a0SMark Brown #ifdef CONFIG_ARM64_E0PD
25883e6c69a0SMark Brown {
25893e6c69a0SMark Brown .desc = "E0PD",
25903e6c69a0SMark Brown .capability = ARM64_HAS_E0PD,
25913e6c69a0SMark Brown .type = ARM64_CPUCAP_SYSTEM_FEATURE,
25923e6c69a0SMark Brown .cpu_enable = cpu_enable_e0pd,
2593863da0bdSMark Brown .matches = has_cpuid_feature,
2594863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR2_EL1, E0PD, IMP)
25953e6c69a0SMark Brown },
25963e6c69a0SMark Brown #endif
25971a50ec0bSRichard Henderson {
25981a50ec0bSRichard Henderson .desc = "Random Number Generator",
25991a50ec0bSRichard Henderson .capability = ARM64_HAS_RNG,
26001a50ec0bSRichard Henderson .type = ARM64_CPUCAP_SYSTEM_FEATURE,
26011a50ec0bSRichard Henderson .matches = has_cpuid_feature,
2602863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR0_EL1, RNDR, IMP)
26031a50ec0bSRichard Henderson },
26048ef8f360SDave Martin #ifdef CONFIG_ARM64_BTI
26058ef8f360SDave Martin {
26068ef8f360SDave Martin .desc = "Branch Target Identification",
26078ef8f360SDave Martin .capability = ARM64_BTI,
2608c8027285SMark Brown #ifdef CONFIG_ARM64_BTI_KERNEL
2609c8027285SMark Brown .type = ARM64_CPUCAP_STRICT_BOOT_CPU_FEATURE,
2610c8027285SMark Brown #else
26118ef8f360SDave Martin .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2612c8027285SMark Brown #endif
26138ef8f360SDave Martin .matches = has_cpuid_feature,
26148ef8f360SDave Martin .cpu_enable = bti_enable,
2615863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR1_EL1, BT, IMP)
26168ef8f360SDave Martin },
26178ef8f360SDave Martin #endif
26183b714d24SVincenzo Frascino #ifdef CONFIG_ARM64_MTE
26193b714d24SVincenzo Frascino {
26203b714d24SVincenzo Frascino .desc = "Memory Tagging Extension",
26213b714d24SVincenzo Frascino .capability = ARM64_MTE,
26223b714d24SVincenzo Frascino .type = ARM64_CPUCAP_STRICT_BOOT_CPU_FEATURE,
26233b714d24SVincenzo Frascino .matches = has_cpuid_feature,
262434bfeea4SCatalin Marinas .cpu_enable = cpu_enable_mte,
2625863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR1_EL1, MTE, MTE2)
26263b714d24SVincenzo Frascino },
2627d73c162eSVincenzo Frascino {
2628d73c162eSVincenzo Frascino .desc = "Asymmetric MTE Tag Check Fault",
2629d73c162eSVincenzo Frascino .capability = ARM64_MTE_ASYMM,
2630d73c162eSVincenzo Frascino .type = ARM64_CPUCAP_BOOT_CPU_FEATURE,
2631d73c162eSVincenzo Frascino .matches = has_cpuid_feature,
2632863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR1_EL1, MTE, MTE3)
2633d73c162eSVincenzo Frascino },
26343b714d24SVincenzo Frascino #endif /* CONFIG_ARM64_MTE */
2635364a5a8aSWill Deacon {
2636364a5a8aSWill Deacon .desc = "RCpc load-acquire (LDAPR)",
2637364a5a8aSWill Deacon .capability = ARM64_HAS_LDAPR,
2638364a5a8aSWill Deacon .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2639364a5a8aSWill Deacon .matches = has_cpuid_feature,
2640863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR1_EL1, LRCPC, IMP)
2641364a5a8aSWill Deacon },
2642b206a708SMark Brown {
2643b206a708SMark Brown .desc = "Fine Grained Traps",
2644b206a708SMark Brown .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2645b206a708SMark Brown .capability = ARM64_HAS_FGT,
2646b206a708SMark Brown .matches = has_cpuid_feature,
2647b206a708SMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR0_EL1, FGT, IMP)
2648b206a708SMark Brown },
26495e64b862SMark Brown #ifdef CONFIG_ARM64_SME
26505e64b862SMark Brown {
26515e64b862SMark Brown .desc = "Scalable Matrix Extension",
26525e64b862SMark Brown .type = ARM64_CPUCAP_SYSTEM_FEATURE,
26535e64b862SMark Brown .capability = ARM64_SME,
26545e64b862SMark Brown .matches = has_cpuid_feature,
26555e64b862SMark Brown .cpu_enable = sme_kernel_enable,
2656863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR1_EL1, SME, IMP)
26575e64b862SMark Brown },
26585e64b862SMark Brown /* FA64 should be sorted after the base SME capability */
26595e64b862SMark Brown {
26605e64b862SMark Brown .desc = "FA64",
26615e64b862SMark Brown .type = ARM64_CPUCAP_SYSTEM_FEATURE,
26625e64b862SMark Brown .capability = ARM64_SME_FA64,
26635e64b862SMark Brown .matches = has_cpuid_feature,
26645e64b862SMark Brown .cpu_enable = fa64_kernel_enable,
2665863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64SMFR0_EL1, FA64, IMP)
26665e64b862SMark Brown },
2667d4913eeeSMark Brown {
2668d4913eeeSMark Brown .desc = "SME2",
2669d4913eeeSMark Brown .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2670d4913eeeSMark Brown .capability = ARM64_SME2,
2671d4913eeeSMark Brown .matches = has_cpuid_feature,
2672d4913eeeSMark Brown .cpu_enable = sme2_kernel_enable,
2673863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR1_EL1, SME, SME2)
2674d4913eeeSMark Brown },
26755e64b862SMark Brown #endif /* CONFIG_ARM64_SME */
267606e0b802SMarc Zyngier {
267706e0b802SMarc Zyngier .desc = "WFx with timeout",
267806e0b802SMarc Zyngier .capability = ARM64_HAS_WFXT,
267906e0b802SMarc Zyngier .type = ARM64_CPUCAP_SYSTEM_FEATURE,
268006e0b802SMarc Zyngier .matches = has_cpuid_feature,
2681863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64ISAR2_EL1, WFxT, IMP)
268206e0b802SMarc Zyngier },
26833a46b352SKristina Martsenko {
26843a46b352SKristina Martsenko .desc = "Trap EL0 IMPLEMENTATION DEFINED functionality",
26853a46b352SKristina Martsenko .capability = ARM64_HAS_TIDCP1,
26863a46b352SKristina Martsenko .type = ARM64_CPUCAP_SYSTEM_FEATURE,
26873a46b352SKristina Martsenko .matches = has_cpuid_feature,
26883a46b352SKristina Martsenko .cpu_enable = cpu_trap_el0_impdef,
2689863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR1_EL1, TIDCP1, IMP)
26903a46b352SKristina Martsenko },
269101ab991fSArd Biesheuvel {
269201ab991fSArd Biesheuvel .desc = "Data independent timing control (DIT)",
269301ab991fSArd Biesheuvel .capability = ARM64_HAS_DIT,
269401ab991fSArd Biesheuvel .type = ARM64_CPUCAP_SYSTEM_FEATURE,
269501ab991fSArd Biesheuvel .matches = has_cpuid_feature,
269601ab991fSArd Biesheuvel .cpu_enable = cpu_enable_dit,
2697863da0bdSMark Brown ARM64_CPUID_FIELDS(ID_AA64PFR0_EL1, DIT, IMP)
269801ab991fSArd Biesheuvel },
2699b7564127SKristina Martsenko {
2700b7564127SKristina Martsenko .desc = "Memory Copy and Memory Set instructions",
2701b7564127SKristina Martsenko .capability = ARM64_HAS_MOPS,
2702b7564127SKristina Martsenko .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2703b7564127SKristina Martsenko .matches = has_cpuid_feature,
2704b7564127SKristina Martsenko .cpu_enable = cpu_enable_mops,
2705b7564127SKristina Martsenko ARM64_CPUID_FIELDS(ID_AA64ISAR2_EL1, MOPS, IMP)
2706b7564127SKristina Martsenko },
27072b760046SJoey Gouly {
27082b760046SJoey Gouly .capability = ARM64_HAS_TCR2,
27092b760046SJoey Gouly .type = ARM64_CPUCAP_SYSTEM_FEATURE,
27102b760046SJoey Gouly .matches = has_cpuid_feature,
27112b760046SJoey Gouly ARM64_CPUID_FIELDS(ID_AA64MMFR3_EL1, TCRX, IMP)
27122b760046SJoey Gouly },
2713e43454c4SJoey Gouly {
2714e43454c4SJoey Gouly .desc = "Stage-1 Permission Indirection Extension (S1PIE)",
2715e43454c4SJoey Gouly .capability = ARM64_HAS_S1PIE,
2716e43454c4SJoey Gouly .type = ARM64_CPUCAP_BOOT_CPU_FEATURE,
2717e43454c4SJoey Gouly .matches = has_cpuid_feature,
2718e43454c4SJoey Gouly ARM64_CPUID_FIELDS(ID_AA64MMFR3_EL1, S1PIE, IMP)
2719e43454c4SJoey Gouly },
2720e8069f5aSLinus Torvalds {
2721e2d6c906SMarc Zyngier .desc = "VHE for hypervisor only",
2722e2d6c906SMarc Zyngier .capability = ARM64_KVM_HVHE,
2723e2d6c906SMarc Zyngier .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2724e2d6c906SMarc Zyngier .matches = hvhe_possible,
2725e2d6c906SMarc Zyngier },
2726e1e315c4SOliver Upton {
2727c876c3f1SMarc Zyngier .desc = "Enhanced Virtualization Traps",
2728c876c3f1SMarc Zyngier .capability = ARM64_HAS_EVT,
2729c876c3f1SMarc Zyngier .type = ARM64_CPUCAP_SYSTEM_FEATURE,
2730c876c3f1SMarc Zyngier .matches = has_cpuid_feature,
2731ce33cea5SMark Brown ARM64_CPUID_FIELDS(ID_AA64MMFR2_EL1, EVT, IMP)
2732c876c3f1SMarc Zyngier },
2733359b7064SMarc Zyngier {},
2734359b7064SMarc Zyngier };
2735359b7064SMarc Zyngier
2736bfffd469SMark Brown #define HWCAP_CPUID_MATCH(reg, field, min_value) \
2737237405ebSJames Morse .matches = has_user_cpuid_feature, \
2738876e3c8eSMark Brown ARM64_CPUID_FIELDS(reg, field, min_value)
27391e013d06SWill Deacon
27401e013d06SWill Deacon #define __HWCAP_CAP(name, cap_type, cap) \
27411e013d06SWill Deacon .desc = name, \
27421e013d06SWill Deacon .type = ARM64_CPUCAP_SYSTEM_FEATURE, \
2743143ba05dSSuzuki K Poulose .hwcap_type = cap_type, \
274437b01d53SSuzuki K. Poulose .hwcap = cap, \
27451e013d06SWill Deacon
2746bfffd469SMark Brown #define HWCAP_CAP(reg, field, min_value, cap_type, cap) \
27471e013d06SWill Deacon { \
27481e013d06SWill Deacon __HWCAP_CAP(#cap, cap_type, cap) \
2749bfffd469SMark Brown HWCAP_CPUID_MATCH(reg, field, min_value) \
275037b01d53SSuzuki K. Poulose }
275137b01d53SSuzuki K. Poulose
27521e013d06SWill Deacon #define HWCAP_MULTI_CAP(list, cap_type, cap) \
27531e013d06SWill Deacon { \
27541e013d06SWill Deacon __HWCAP_CAP(#cap, cap_type, cap) \
27551e013d06SWill Deacon .matches = cpucap_multi_entry_cap_matches, \
27561e013d06SWill Deacon .match_list = list, \
27571e013d06SWill Deacon }
27581e013d06SWill Deacon
27597559950aSSuzuki K Poulose #define HWCAP_CAP_MATCH(match, cap_type, cap) \
27607559950aSSuzuki K Poulose { \
27617559950aSSuzuki K Poulose __HWCAP_CAP(#cap, cap_type, cap) \
27627559950aSSuzuki K Poulose .matches = match, \
27637559950aSSuzuki K Poulose }
27647559950aSSuzuki K Poulose
2765*cad0406aSMarc Zyngier #define HWCAP_CAP_MATCH_ID(match, reg, field, min_value, cap_type, cap) \
2766*cad0406aSMarc Zyngier { \
2767*cad0406aSMarc Zyngier __HWCAP_CAP(#cap, cap_type, cap) \
2768*cad0406aSMarc Zyngier HWCAP_CPUID_MATCH(reg, field, min_value) \
2769*cad0406aSMarc Zyngier .matches = match, \
2770*cad0406aSMarc Zyngier }
2771*cad0406aSMarc Zyngier
27721e013d06SWill Deacon #ifdef CONFIG_ARM64_PTR_AUTH
27731e013d06SWill Deacon static const struct arm64_cpu_capabilities ptr_auth_hwcap_addr_matches[] = {
27741e013d06SWill Deacon {
2775eda081d2SKristina Martsenko HWCAP_CPUID_MATCH(ID_AA64ISAR1_EL1, APA, PAuth)
27761e013d06SWill Deacon },
27771e013d06SWill Deacon {
2778eda081d2SKristina Martsenko HWCAP_CPUID_MATCH(ID_AA64ISAR2_EL1, APA3, PAuth)
2779def8c222SVladimir Murzin },
2780def8c222SVladimir Murzin {
2781eda081d2SKristina Martsenko HWCAP_CPUID_MATCH(ID_AA64ISAR1_EL1, API, PAuth)
27821e013d06SWill Deacon },
27831e013d06SWill Deacon {},
27841e013d06SWill Deacon };
27851e013d06SWill Deacon
27861e013d06SWill Deacon static const struct arm64_cpu_capabilities ptr_auth_hwcap_gen_matches[] = {
27871e013d06SWill Deacon {
2788eda081d2SKristina Martsenko HWCAP_CPUID_MATCH(ID_AA64ISAR1_EL1, GPA, IMP)
27891e013d06SWill Deacon },
27901e013d06SWill Deacon {
2791eda081d2SKristina Martsenko HWCAP_CPUID_MATCH(ID_AA64ISAR2_EL1, GPA3, IMP)
2792def8c222SVladimir Murzin },
2793def8c222SVladimir Murzin {
2794eda081d2SKristina Martsenko HWCAP_CPUID_MATCH(ID_AA64ISAR1_EL1, GPI, IMP)
27951e013d06SWill Deacon },
27961e013d06SWill Deacon {},
27971e013d06SWill Deacon };
27981e013d06SWill Deacon #endif
27991e013d06SWill Deacon
2800*cad0406aSMarc Zyngier #ifdef CONFIG_ARM64_SVE
has_sve_feature(const struct arm64_cpu_capabilities * cap,int scope)2801*cad0406aSMarc Zyngier static bool has_sve_feature(const struct arm64_cpu_capabilities *cap, int scope)
2802*cad0406aSMarc Zyngier {
2803*cad0406aSMarc Zyngier return system_supports_sve() && has_user_cpuid_feature(cap, scope);
2804*cad0406aSMarc Zyngier }
2805*cad0406aSMarc Zyngier #endif
2806*cad0406aSMarc Zyngier
2807f3efb675SSuzuki K Poulose static const struct arm64_cpu_capabilities arm64_elf_hwcaps[] = {
2808bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, AES, PMULL, CAP_HWCAP, KERNEL_HWCAP_PMULL),
2809bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, AES, AES, CAP_HWCAP, KERNEL_HWCAP_AES),
2810bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, SHA1, IMP, CAP_HWCAP, KERNEL_HWCAP_SHA1),
2811bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, SHA2, SHA256, CAP_HWCAP, KERNEL_HWCAP_SHA2),
2812bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, SHA2, SHA512, CAP_HWCAP, KERNEL_HWCAP_SHA512),
2813bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, CRC32, IMP, CAP_HWCAP, KERNEL_HWCAP_CRC32),
2814bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, ATOMIC, IMP, CAP_HWCAP, KERNEL_HWCAP_ATOMICS),
2815bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, RDM, IMP, CAP_HWCAP, KERNEL_HWCAP_ASIMDRDM),
2816bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, SHA3, IMP, CAP_HWCAP, KERNEL_HWCAP_SHA3),
2817bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, SM3, IMP, CAP_HWCAP, KERNEL_HWCAP_SM3),
2818bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, SM4, IMP, CAP_HWCAP, KERNEL_HWCAP_SM4),
2819bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, DP, IMP, CAP_HWCAP, KERNEL_HWCAP_ASIMDDP),
2820bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, FHM, IMP, CAP_HWCAP, KERNEL_HWCAP_ASIMDFHM),
2821bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, TS, FLAGM, CAP_HWCAP, KERNEL_HWCAP_FLAGM),
2822bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, TS, FLAGM2, CAP_HWCAP, KERNEL_HWCAP_FLAGM2),
2823bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR0_EL1, RNDR, IMP, CAP_HWCAP, KERNEL_HWCAP_RNG),
2824bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR0_EL1, FP, IMP, CAP_HWCAP, KERNEL_HWCAP_FP),
2825bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR0_EL1, FP, FP16, CAP_HWCAP, KERNEL_HWCAP_FPHP),
2826bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR0_EL1, AdvSIMD, IMP, CAP_HWCAP, KERNEL_HWCAP_ASIMD),
2827bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR0_EL1, AdvSIMD, FP16, CAP_HWCAP, KERNEL_HWCAP_ASIMDHP),
2828bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR0_EL1, DIT, IMP, CAP_HWCAP, KERNEL_HWCAP_DIT),
2829bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, DPB, IMP, CAP_HWCAP, KERNEL_HWCAP_DCPOP),
2830bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, DPB, DPB2, CAP_HWCAP, KERNEL_HWCAP_DCPODP),
2831bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, JSCVT, IMP, CAP_HWCAP, KERNEL_HWCAP_JSCVT),
2832bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, FCMA, IMP, CAP_HWCAP, KERNEL_HWCAP_FCMA),
2833bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, LRCPC, IMP, CAP_HWCAP, KERNEL_HWCAP_LRCPC),
2834bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, LRCPC, LRCPC2, CAP_HWCAP, KERNEL_HWCAP_ILRCPC),
2835bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, FRINTTS, IMP, CAP_HWCAP, KERNEL_HWCAP_FRINT),
2836bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, SB, IMP, CAP_HWCAP, KERNEL_HWCAP_SB),
2837bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, BF16, IMP, CAP_HWCAP, KERNEL_HWCAP_BF16),
2838bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, BF16, EBF16, CAP_HWCAP, KERNEL_HWCAP_EBF16),
2839bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, DGH, IMP, CAP_HWCAP, KERNEL_HWCAP_DGH),
2840bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR1_EL1, I8MM, IMP, CAP_HWCAP, KERNEL_HWCAP_I8MM),
2841bfffd469SMark Brown HWCAP_CAP(ID_AA64MMFR2_EL1, AT, IMP, CAP_HWCAP, KERNEL_HWCAP_USCAT),
284243994d82SDave Martin #ifdef CONFIG_ARM64_SVE
2843bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR0_EL1, SVE, IMP, CAP_HWCAP, KERNEL_HWCAP_SVE),
2844*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, SVEver, SVE2p1, CAP_HWCAP, KERNEL_HWCAP_SVE2P1),
2845*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, SVEver, SVE2, CAP_HWCAP, KERNEL_HWCAP_SVE2),
2846*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, AES, IMP, CAP_HWCAP, KERNEL_HWCAP_SVEAES),
2847*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, AES, PMULL128, CAP_HWCAP, KERNEL_HWCAP_SVEPMULL),
2848*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, BitPerm, IMP, CAP_HWCAP, KERNEL_HWCAP_SVEBITPERM),
2849*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, BF16, IMP, CAP_HWCAP, KERNEL_HWCAP_SVEBF16),
2850*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, BF16, EBF16, CAP_HWCAP, KERNEL_HWCAP_SVE_EBF16),
2851*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, SHA3, IMP, CAP_HWCAP, KERNEL_HWCAP_SVESHA3),
2852*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, SM4, IMP, CAP_HWCAP, KERNEL_HWCAP_SVESM4),
2853*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, I8MM, IMP, CAP_HWCAP, KERNEL_HWCAP_SVEI8MM),
2854*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, F32MM, IMP, CAP_HWCAP, KERNEL_HWCAP_SVEF32MM),
2855*cad0406aSMarc Zyngier HWCAP_CAP_MATCH_ID(has_sve_feature, ID_AA64ZFR0_EL1, F64MM, IMP, CAP_HWCAP, KERNEL_HWCAP_SVEF64MM),
285643994d82SDave Martin #endif
2857bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR1_EL1, SSBS, SSBS2, CAP_HWCAP, KERNEL_HWCAP_SSBS),
28588ef8f360SDave Martin #ifdef CONFIG_ARM64_BTI
2859bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR1_EL1, BT, IMP, CAP_HWCAP, KERNEL_HWCAP_BTI),
28608ef8f360SDave Martin #endif
286175031975SMark Rutland #ifdef CONFIG_ARM64_PTR_AUTH
2862aaba098fSAndrew Murray HWCAP_MULTI_CAP(ptr_auth_hwcap_addr_matches, CAP_HWCAP, KERNEL_HWCAP_PACA),
2863aaba098fSAndrew Murray HWCAP_MULTI_CAP(ptr_auth_hwcap_gen_matches, CAP_HWCAP, KERNEL_HWCAP_PACG),
286475031975SMark Rutland #endif
28653b714d24SVincenzo Frascino #ifdef CONFIG_ARM64_MTE
2866bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR1_EL1, MTE, MTE2, CAP_HWCAP, KERNEL_HWCAP_MTE),
2867bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR1_EL1, MTE, MTE3, CAP_HWCAP, KERNEL_HWCAP_MTE3),
28683b714d24SVincenzo Frascino #endif /* CONFIG_ARM64_MTE */
2869bfffd469SMark Brown HWCAP_CAP(ID_AA64MMFR0_EL1, ECV, IMP, CAP_HWCAP, KERNEL_HWCAP_ECV),
2870bfffd469SMark Brown HWCAP_CAP(ID_AA64MMFR1_EL1, AFP, IMP, CAP_HWCAP, KERNEL_HWCAP_AFP),
2871bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR2_EL1, CSSC, IMP, CAP_HWCAP, KERNEL_HWCAP_CSSC),
2872bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR2_EL1, RPRFM, IMP, CAP_HWCAP, KERNEL_HWCAP_RPRFM),
2873bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR2_EL1, RPRES, IMP, CAP_HWCAP, KERNEL_HWCAP_RPRES),
2874bfffd469SMark Brown HWCAP_CAP(ID_AA64ISAR2_EL1, WFxT, IMP, CAP_HWCAP, KERNEL_HWCAP_WFXT),
2875b7564127SKristina Martsenko HWCAP_CAP(ID_AA64ISAR2_EL1, MOPS, IMP, CAP_HWCAP, KERNEL_HWCAP_MOPS),
28767f86d128SJoey Gouly HWCAP_CAP(ID_AA64ISAR2_EL1, BC, IMP, CAP_HWCAP, KERNEL_HWCAP_HBC),
28775e64b862SMark Brown #ifdef CONFIG_ARM64_SME
2878bfffd469SMark Brown HWCAP_CAP(ID_AA64PFR1_EL1, SME, IMP, CAP_HWCAP, KERNEL_HWCAP_SME),
2879bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, FA64, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_FA64),
2880bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, SMEver, SME2p1, CAP_HWCAP, KERNEL_HWCAP_SME2P1),
2881bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, SMEver, SME2, CAP_HWCAP, KERNEL_HWCAP_SME2),
2882bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, I16I64, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_I16I64),
2883bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, F64F64, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_F64F64),
2884bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, I16I32, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_I16I32),
2885bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, B16B16, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_B16B16),
2886bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, F16F16, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_F16F16),
2887bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, I8I32, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_I8I32),
2888bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, F16F32, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_F16F32),
2889bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, B16F32, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_B16F32),
2890bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, BI32I32, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_BI32I32),
2891bfffd469SMark Brown HWCAP_CAP(ID_AA64SMFR0_EL1, F32F32, IMP, CAP_HWCAP, KERNEL_HWCAP_SME_F32F32),
28925e64b862SMark Brown #endif /* CONFIG_ARM64_SME */
289375283501SSuzuki K Poulose {},
289475283501SSuzuki K Poulose };
289575283501SSuzuki K Poulose
28967559950aSSuzuki K Poulose #ifdef CONFIG_COMPAT
compat_has_neon(const struct arm64_cpu_capabilities * cap,int scope)28977559950aSSuzuki K Poulose static bool compat_has_neon(const struct arm64_cpu_capabilities *cap, int scope)
28987559950aSSuzuki K Poulose {
28997559950aSSuzuki K Poulose /*
29007559950aSSuzuki K Poulose * Check that all of MVFR1_EL1.{SIMDSP, SIMDInt, SIMDLS} are available,
29017559950aSSuzuki K Poulose * in line with that of arm32 as in vfp_init(). We make sure that the
29027559950aSSuzuki K Poulose * check is future proof, by making sure value is non-zero.
29037559950aSSuzuki K Poulose */
29047559950aSSuzuki K Poulose u32 mvfr1;
29057559950aSSuzuki K Poulose
29067559950aSSuzuki K Poulose WARN_ON(scope == SCOPE_LOCAL_CPU && preemptible());
29077559950aSSuzuki K Poulose if (scope == SCOPE_SYSTEM)
29087559950aSSuzuki K Poulose mvfr1 = read_sanitised_ftr_reg(SYS_MVFR1_EL1);
29097559950aSSuzuki K Poulose else
29107559950aSSuzuki K Poulose mvfr1 = read_sysreg_s(SYS_MVFR1_EL1);
29117559950aSSuzuki K Poulose
2912d3e1aa85SJames Morse return cpuid_feature_extract_unsigned_field(mvfr1, MVFR1_EL1_SIMDSP_SHIFT) &&
2913d3e1aa85SJames Morse cpuid_feature_extract_unsigned_field(mvfr1, MVFR1_EL1_SIMDInt_SHIFT) &&
2914d3e1aa85SJames Morse cpuid_feature_extract_unsigned_field(mvfr1, MVFR1_EL1_SIMDLS_SHIFT);
29157559950aSSuzuki K Poulose }
29167559950aSSuzuki K Poulose #endif
29177559950aSSuzuki K Poulose
291875283501SSuzuki K Poulose static const struct arm64_cpu_capabilities compat_elf_hwcaps[] = {
291937b01d53SSuzuki K. Poulose #ifdef CONFIG_COMPAT
29207559950aSSuzuki K Poulose HWCAP_CAP_MATCH(compat_has_neon, CAP_COMPAT_HWCAP, COMPAT_HWCAP_NEON),
2921bfffd469SMark Brown HWCAP_CAP(MVFR1_EL1, SIMDFMAC, IMP, CAP_COMPAT_HWCAP, COMPAT_HWCAP_VFPv4),
29227559950aSSuzuki K Poulose /* Arm v8 mandates MVFR0.FPDP == {0, 2}. So, piggy back on this for the presence of VFP support */
2923bfffd469SMark Brown HWCAP_CAP(MVFR0_EL1, FPDP, VFPv3, CAP_COMPAT_HWCAP, COMPAT_HWCAP_VFP),
2924bfffd469SMark Brown HWCAP_CAP(MVFR0_EL1, FPDP, VFPv3, CAP_COMPAT_HWCAP, COMPAT_HWCAP_VFPv3),
2925bfffd469SMark Brown HWCAP_CAP(MVFR1_EL1, FPHP, FP16, CAP_COMPAT_HWCAP, COMPAT_HWCAP_FPHP),
2926bfffd469SMark Brown HWCAP_CAP(MVFR1_EL1, SIMDHP, SIMDHP_FLOAT, CAP_COMPAT_HWCAP, COMPAT_HWCAP_ASIMDHP),
2927bfffd469SMark Brown HWCAP_CAP(ID_ISAR5_EL1, AES, VMULL, CAP_COMPAT_HWCAP2, COMPAT_HWCAP2_PMULL),
2928bfffd469SMark Brown HWCAP_CAP(ID_ISAR5_EL1, AES, IMP, CAP_COMPAT_HWCAP2, COMPAT_HWCAP2_AES),
2929bfffd469SMark Brown HWCAP_CAP(ID_ISAR5_EL1, SHA1, IMP, CAP_COMPAT_HWCAP2, COMPAT_HWCAP2_SHA1),
2930bfffd469SMark Brown HWCAP_CAP(ID_ISAR5_EL1, SHA2, IMP, CAP_COMPAT_HWCAP2, COMPAT_HWCAP2_SHA2),
2931bfffd469SMark Brown HWCAP_CAP(ID_ISAR5_EL1, CRC32, IMP, CAP_COMPAT_HWCAP2, COMPAT_HWCAP2_CRC32),
2932bfffd469SMark Brown HWCAP_CAP(ID_ISAR6_EL1, DP, IMP, CAP_COMPAT_HWCAP, COMPAT_HWCAP_ASIMDDP),
2933bfffd469SMark Brown HWCAP_CAP(ID_ISAR6_EL1, FHM, IMP, CAP_COMPAT_HWCAP, COMPAT_HWCAP_ASIMDFHM),
2934bfffd469SMark Brown HWCAP_CAP(ID_ISAR6_EL1, SB, IMP, CAP_COMPAT_HWCAP2, COMPAT_HWCAP2_SB),
2935bfffd469SMark Brown HWCAP_CAP(ID_ISAR6_EL1, BF16, IMP, CAP_COMPAT_HWCAP, COMPAT_HWCAP_ASIMDBF16),
2936bfffd469SMark Brown HWCAP_CAP(ID_ISAR6_EL1, I8MM, IMP, CAP_COMPAT_HWCAP, COMPAT_HWCAP_I8MM),
2937bfffd469SMark Brown HWCAP_CAP(ID_PFR2_EL1, SSBS, IMP, CAP_COMPAT_HWCAP2, COMPAT_HWCAP2_SSBS),
293837b01d53SSuzuki K. Poulose #endif
293937b01d53SSuzuki K. Poulose {},
294037b01d53SSuzuki K. Poulose };
294137b01d53SSuzuki K. Poulose
cap_set_elf_hwcap(const struct arm64_cpu_capabilities * cap)29422122a833SWill Deacon static void cap_set_elf_hwcap(const struct arm64_cpu_capabilities *cap)
294337b01d53SSuzuki K. Poulose {
294437b01d53SSuzuki K. Poulose switch (cap->hwcap_type) {
294537b01d53SSuzuki K. Poulose case CAP_HWCAP:
2946aaba098fSAndrew Murray cpu_set_feature(cap->hwcap);
294737b01d53SSuzuki K. Poulose break;
294837b01d53SSuzuki K. Poulose #ifdef CONFIG_COMPAT
294937b01d53SSuzuki K. Poulose case CAP_COMPAT_HWCAP:
295037b01d53SSuzuki K. Poulose compat_elf_hwcap |= (u32)cap->hwcap;
295137b01d53SSuzuki K. Poulose break;
295237b01d53SSuzuki K. Poulose case CAP_COMPAT_HWCAP2:
295337b01d53SSuzuki K. Poulose compat_elf_hwcap2 |= (u32)cap->hwcap;
295437b01d53SSuzuki K. Poulose break;
295537b01d53SSuzuki K. Poulose #endif
295637b01d53SSuzuki K. Poulose default:
295737b01d53SSuzuki K. Poulose WARN_ON(1);
295837b01d53SSuzuki K. Poulose break;
295937b01d53SSuzuki K. Poulose }
296037b01d53SSuzuki K. Poulose }
296137b01d53SSuzuki K. Poulose
296237b01d53SSuzuki K. Poulose /* Check if we have a particular HWCAP enabled */
cpus_have_elf_hwcap(const struct arm64_cpu_capabilities * cap)2963f3efb675SSuzuki K Poulose static bool cpus_have_elf_hwcap(const struct arm64_cpu_capabilities *cap)
296437b01d53SSuzuki K. Poulose {
296537b01d53SSuzuki K. Poulose bool rc;
296637b01d53SSuzuki K. Poulose
296737b01d53SSuzuki K. Poulose switch (cap->hwcap_type) {
296837b01d53SSuzuki K. Poulose case CAP_HWCAP:
2969aaba098fSAndrew Murray rc = cpu_have_feature(cap->hwcap);
297037b01d53SSuzuki K. Poulose break;
297137b01d53SSuzuki K. Poulose #ifdef CONFIG_COMPAT
297237b01d53SSuzuki K. Poulose case CAP_COMPAT_HWCAP:
297337b01d53SSuzuki K. Poulose rc = (compat_elf_hwcap & (u32)cap->hwcap) != 0;
297437b01d53SSuzuki K. Poulose break;
297537b01d53SSuzuki K. Poulose case CAP_COMPAT_HWCAP2:
297637b01d53SSuzuki K. Poulose rc = (compat_elf_hwcap2 & (u32)cap->hwcap) != 0;
297737b01d53SSuzuki K. Poulose break;
297837b01d53SSuzuki K. Poulose #endif
297937b01d53SSuzuki K. Poulose default:
298037b01d53SSuzuki K. Poulose WARN_ON(1);
298137b01d53SSuzuki K. Poulose rc = false;
298237b01d53SSuzuki K. Poulose }
298337b01d53SSuzuki K. Poulose
298437b01d53SSuzuki K. Poulose return rc;
298537b01d53SSuzuki K. Poulose }
298637b01d53SSuzuki K. Poulose
setup_elf_hwcaps(const struct arm64_cpu_capabilities * hwcaps)29872122a833SWill Deacon static void setup_elf_hwcaps(const struct arm64_cpu_capabilities *hwcaps)
298837b01d53SSuzuki K. Poulose {
298977c97b4eSSuzuki K Poulose /* We support emulation of accesses to CPU ID feature registers */
2990aaba098fSAndrew Murray cpu_set_named_feature(CPUID);
299175283501SSuzuki K Poulose for (; hwcaps->matches; hwcaps++)
2992143ba05dSSuzuki K Poulose if (hwcaps->matches(hwcaps, cpucap_default_scope(hwcaps)))
299375283501SSuzuki K Poulose cap_set_elf_hwcap(hwcaps);
299437b01d53SSuzuki K. Poulose }
299537b01d53SSuzuki K. Poulose
update_cpu_capabilities(u16 scope_mask)2996606f8e7bSSuzuki K Poulose static void update_cpu_capabilities(u16 scope_mask)
299767948af4SSuzuki K Poulose {
2998606f8e7bSSuzuki K Poulose int i;
299967948af4SSuzuki K Poulose const struct arm64_cpu_capabilities *caps;
300067948af4SSuzuki K Poulose
3001cce360b5SSuzuki K Poulose scope_mask &= ARM64_CPUCAP_SCOPE_MASK;
3002606f8e7bSSuzuki K Poulose for (i = 0; i < ARM64_NCAPS; i++) {
30031c8ae429SMark Rutland caps = cpucap_ptrs[i];
3004606f8e7bSSuzuki K Poulose if (!caps || !(caps->type & scope_mask) ||
3005606f8e7bSSuzuki K Poulose cpus_have_cap(caps->capability) ||
3006cce360b5SSuzuki K Poulose !caps->matches(caps, cpucap_default_scope(caps)))
3007359b7064SMarc Zyngier continue;
3008359b7064SMarc Zyngier
3009606f8e7bSSuzuki K Poulose if (caps->desc)
3010606f8e7bSSuzuki K Poulose pr_info("detected: %s\n", caps->desc);
30117dae5f08SMark Rutland
30127dae5f08SMark Rutland __set_bit(caps->capability, system_cpucaps);
30130ceb0d56SDaniel Thompson
30140ceb0d56SDaniel Thompson if ((scope_mask & SCOPE_BOOT_CPU) && (caps->type & SCOPE_BOOT_CPU))
30157f242982SMark Rutland set_bit(caps->capability, boot_cpucaps);
3016359b7064SMarc Zyngier }
3017359b7064SMarc Zyngier }
3018359b7064SMarc Zyngier
30190b587c84SSuzuki K Poulose /*
30200b587c84SSuzuki K Poulose * Enable all the available capabilities on this CPU. The capabilities
30210b587c84SSuzuki K Poulose * with BOOT_CPU scope are handled separately and hence skipped here.
30220b587c84SSuzuki K Poulose */
cpu_enable_non_boot_scope_capabilities(void * __unused)30230b587c84SSuzuki K Poulose static int cpu_enable_non_boot_scope_capabilities(void *__unused)
3024ed478b3fSSuzuki K Poulose {
30250b587c84SSuzuki K Poulose int i;
30260b587c84SSuzuki K Poulose u16 non_boot_scope = SCOPE_ALL & ~SCOPE_BOOT_CPU;
3027ed478b3fSSuzuki K Poulose
30280b587c84SSuzuki K Poulose for_each_available_cap(i) {
30291c8ae429SMark Rutland const struct arm64_cpu_capabilities *cap = cpucap_ptrs[i];
3030c0cda3b8SDave Martin
30310b587c84SSuzuki K Poulose if (WARN_ON(!cap))
30320b587c84SSuzuki K Poulose continue;
30330b587c84SSuzuki K Poulose
30340b587c84SSuzuki K Poulose if (!(cap->type & non_boot_scope))
30350b587c84SSuzuki K Poulose continue;
30360b587c84SSuzuki K Poulose
30370b587c84SSuzuki K Poulose if (cap->cpu_enable)
3038c0cda3b8SDave Martin cap->cpu_enable(cap);
30390b587c84SSuzuki K Poulose }
3040c0cda3b8SDave Martin return 0;
3041c0cda3b8SDave Martin }
3042c0cda3b8SDave Martin
3043ce8b602cSSuzuki K. Poulose /*
3044dbb4e152SSuzuki K. Poulose * Run through the enabled capabilities and enable() it on all active
3045dbb4e152SSuzuki K. Poulose * CPUs
3046ce8b602cSSuzuki K. Poulose */
enable_cpu_capabilities(u16 scope_mask)30470b587c84SSuzuki K Poulose static void __init enable_cpu_capabilities(u16 scope_mask)
3048359b7064SMarc Zyngier {
30490b587c84SSuzuki K Poulose int i;
30500b587c84SSuzuki K Poulose const struct arm64_cpu_capabilities *caps;
30510b587c84SSuzuki K Poulose bool boot_scope;
305263a1e1c9SMark Rutland
30530b587c84SSuzuki K Poulose scope_mask &= ARM64_CPUCAP_SCOPE_MASK;
30540b587c84SSuzuki K Poulose boot_scope = !!(scope_mask & SCOPE_BOOT_CPU);
30550b587c84SSuzuki K Poulose
30560b587c84SSuzuki K Poulose for (i = 0; i < ARM64_NCAPS; i++) {
30570b587c84SSuzuki K Poulose unsigned int num;
30580b587c84SSuzuki K Poulose
30591c8ae429SMark Rutland caps = cpucap_ptrs[i];
30600b587c84SSuzuki K Poulose if (!caps || !(caps->type & scope_mask))
30610b587c84SSuzuki K Poulose continue;
30620b587c84SSuzuki K Poulose num = caps->capability;
30630b587c84SSuzuki K Poulose if (!cpus_have_cap(num))
306463a1e1c9SMark Rutland continue;
306563a1e1c9SMark Rutland
30660b587c84SSuzuki K Poulose if (boot_scope && caps->cpu_enable)
30672a6dcb2bSJames Morse /*
3068fd9d63daSSuzuki K Poulose * Capabilities with SCOPE_BOOT_CPU scope are finalised
3069fd9d63daSSuzuki K Poulose * before any secondary CPU boots. Thus, each secondary
3070fd9d63daSSuzuki K Poulose * will enable the capability as appropriate via
3071fd9d63daSSuzuki K Poulose * check_local_cpu_capabilities(). The only exception is
3072fd9d63daSSuzuki K Poulose * the boot CPU, for which the capability must be
3073fd9d63daSSuzuki K Poulose * enabled here. This approach avoids costly
3074fd9d63daSSuzuki K Poulose * stop_machine() calls for this case.
30752a6dcb2bSJames Morse */
3076fd9d63daSSuzuki K Poulose caps->cpu_enable(caps);
307763a1e1c9SMark Rutland }
3078dbb4e152SSuzuki K. Poulose
30790b587c84SSuzuki K Poulose /*
30800b587c84SSuzuki K Poulose * For all non-boot scope capabilities, use stop_machine()
30810b587c84SSuzuki K Poulose * as it schedules the work allowing us to modify PSTATE,
30820b587c84SSuzuki K Poulose * instead of on_each_cpu() which uses an IPI, giving us a
30830b587c84SSuzuki K Poulose * PSTATE that disappears when we return.
30840b587c84SSuzuki K Poulose */
30850b587c84SSuzuki K Poulose if (!boot_scope)
30860b587c84SSuzuki K Poulose stop_machine(cpu_enable_non_boot_scope_capabilities,
30870b587c84SSuzuki K Poulose NULL, cpu_online_mask);
3088ed478b3fSSuzuki K Poulose }
3089ed478b3fSSuzuki K Poulose
3090dbb4e152SSuzuki K. Poulose /*
3091eaac4d83SSuzuki K Poulose * Run through the list of capabilities to check for conflicts.
3092eaac4d83SSuzuki K Poulose * If the system has already detected a capability, take necessary
3093eaac4d83SSuzuki K Poulose * action on this CPU.
3094eaac4d83SSuzuki K Poulose */
verify_local_cpu_caps(u16 scope_mask)3095deeaac51SKristina Martsenko static void verify_local_cpu_caps(u16 scope_mask)
3096eaac4d83SSuzuki K Poulose {
3097606f8e7bSSuzuki K Poulose int i;
3098eaac4d83SSuzuki K Poulose bool cpu_has_cap, system_has_cap;
3099606f8e7bSSuzuki K Poulose const struct arm64_cpu_capabilities *caps;
3100eaac4d83SSuzuki K Poulose
3101cce360b5SSuzuki K Poulose scope_mask &= ARM64_CPUCAP_SCOPE_MASK;
3102cce360b5SSuzuki K Poulose
3103606f8e7bSSuzuki K Poulose for (i = 0; i < ARM64_NCAPS; i++) {
31041c8ae429SMark Rutland caps = cpucap_ptrs[i];
3105606f8e7bSSuzuki K Poulose if (!caps || !(caps->type & scope_mask))
3106cce360b5SSuzuki K Poulose continue;
3107cce360b5SSuzuki K Poulose
3108ba7d9233SSuzuki K Poulose cpu_has_cap = caps->matches(caps, SCOPE_LOCAL_CPU);
3109eaac4d83SSuzuki K Poulose system_has_cap = cpus_have_cap(caps->capability);
3110eaac4d83SSuzuki K Poulose
3111eaac4d83SSuzuki K Poulose if (system_has_cap) {
3112eaac4d83SSuzuki K Poulose /*
3113eaac4d83SSuzuki K Poulose * Check if the new CPU misses an advertised feature,
3114eaac4d83SSuzuki K Poulose * which is not safe to miss.
3115eaac4d83SSuzuki K Poulose */
3116eaac4d83SSuzuki K Poulose if (!cpu_has_cap && !cpucap_late_cpu_optional(caps))
3117eaac4d83SSuzuki K Poulose break;
3118eaac4d83SSuzuki K Poulose /*
3119eaac4d83SSuzuki K Poulose * We have to issue cpu_enable() irrespective of
3120eaac4d83SSuzuki K Poulose * whether the CPU has it or not, as it is enabeld
3121eaac4d83SSuzuki K Poulose * system wide. It is upto the call back to take
3122eaac4d83SSuzuki K Poulose * appropriate action on this CPU.
3123eaac4d83SSuzuki K Poulose */
3124eaac4d83SSuzuki K Poulose if (caps->cpu_enable)
3125eaac4d83SSuzuki K Poulose caps->cpu_enable(caps);
3126eaac4d83SSuzuki K Poulose } else {
3127eaac4d83SSuzuki K Poulose /*
3128eaac4d83SSuzuki K Poulose * Check if the CPU has this capability if it isn't
3129eaac4d83SSuzuki K Poulose * safe to have when the system doesn't.
3130eaac4d83SSuzuki K Poulose */
3131eaac4d83SSuzuki K Poulose if (cpu_has_cap && !cpucap_late_cpu_permitted(caps))
3132eaac4d83SSuzuki K Poulose break;
3133eaac4d83SSuzuki K Poulose }
3134eaac4d83SSuzuki K Poulose }
3135eaac4d83SSuzuki K Poulose
3136606f8e7bSSuzuki K Poulose if (i < ARM64_NCAPS) {
3137eaac4d83SSuzuki K Poulose pr_crit("CPU%d: Detected conflict for capability %d (%s), System: %d, CPU: %d\n",
3138eaac4d83SSuzuki K Poulose smp_processor_id(), caps->capability,
3139eaac4d83SSuzuki K Poulose caps->desc, system_has_cap, cpu_has_cap);
3140eaac4d83SSuzuki K Poulose
3141deeaac51SKristina Martsenko if (cpucap_panic_on_conflict(caps))
3142deeaac51SKristina Martsenko cpu_panic_kernel();
3143deeaac51SKristina Martsenko else
3144deeaac51SKristina Martsenko cpu_die_early();
3145deeaac51SKristina Martsenko }
3146eaac4d83SSuzuki K Poulose }
3147eaac4d83SSuzuki K Poulose
3148eaac4d83SSuzuki K Poulose /*
314913f417f3SSuzuki K Poulose * Check for CPU features that are used in early boot
315013f417f3SSuzuki K Poulose * based on the Boot CPU value.
3151dbb4e152SSuzuki K. Poulose */
check_early_cpu_features(void)315213f417f3SSuzuki K Poulose static void check_early_cpu_features(void)
3153dbb4e152SSuzuki K. Poulose {
315413f417f3SSuzuki K Poulose verify_cpu_asid_bits();
3155deeaac51SKristina Martsenko
3156deeaac51SKristina Martsenko verify_local_cpu_caps(SCOPE_BOOT_CPU);
3157dbb4e152SSuzuki K. Poulose }
3158dbb4e152SSuzuki K. Poulose
315975283501SSuzuki K Poulose static void
__verify_local_elf_hwcaps(const struct arm64_cpu_capabilities * caps)31602122a833SWill Deacon __verify_local_elf_hwcaps(const struct arm64_cpu_capabilities *caps)
316175283501SSuzuki K Poulose {
316275283501SSuzuki K Poulose
316392406f0cSSuzuki K Poulose for (; caps->matches; caps++)
316492406f0cSSuzuki K Poulose if (cpus_have_elf_hwcap(caps) && !caps->matches(caps, SCOPE_LOCAL_CPU)) {
316575283501SSuzuki K Poulose pr_crit("CPU%d: missing HWCAP: %s\n",
316675283501SSuzuki K Poulose smp_processor_id(), caps->desc);
316775283501SSuzuki K Poulose cpu_die_early();
316875283501SSuzuki K Poulose }
316975283501SSuzuki K Poulose }
317075283501SSuzuki K Poulose
verify_local_elf_hwcaps(void)31712122a833SWill Deacon static void verify_local_elf_hwcaps(void)
31722122a833SWill Deacon {
31732122a833SWill Deacon __verify_local_elf_hwcaps(arm64_elf_hwcaps);
31742122a833SWill Deacon
31752122a833SWill Deacon if (id_aa64pfr0_32bit_el0(read_cpuid(ID_AA64PFR0_EL1)))
31762122a833SWill Deacon __verify_local_elf_hwcaps(compat_elf_hwcaps);
31772122a833SWill Deacon }
31782122a833SWill Deacon
verify_sve_features(void)31792e0f2478SDave Martin static void verify_sve_features(void)
31802e0f2478SDave Martin {
31812e0f2478SDave Martin u64 safe_zcr = read_sanitised_ftr_reg(SYS_ZCR_EL1);
31822e0f2478SDave Martin u64 zcr = read_zcr_features();
31832e0f2478SDave Martin
31842e0f2478SDave Martin unsigned int safe_len = safe_zcr & ZCR_ELx_LEN_MASK;
31852e0f2478SDave Martin unsigned int len = zcr & ZCR_ELx_LEN_MASK;
31862e0f2478SDave Martin
3187b5bc00ffSMark Brown if (len < safe_len || vec_verify_vq_map(ARM64_VEC_SVE)) {
3188d06b76beSDave Martin pr_crit("CPU%d: SVE: vector length support mismatch\n",
31892e0f2478SDave Martin smp_processor_id());
31902e0f2478SDave Martin cpu_die_early();
31912e0f2478SDave Martin }
31922e0f2478SDave Martin
31932e0f2478SDave Martin /* Add checks on other ZCR bits here if necessary */
31942e0f2478SDave Martin }
31952e0f2478SDave Martin
verify_sme_features(void)3196b42990d3SMark Brown static void verify_sme_features(void)
3197b42990d3SMark Brown {
3198b42990d3SMark Brown u64 safe_smcr = read_sanitised_ftr_reg(SYS_SMCR_EL1);
3199b42990d3SMark Brown u64 smcr = read_smcr_features();
3200b42990d3SMark Brown
3201b42990d3SMark Brown unsigned int safe_len = safe_smcr & SMCR_ELx_LEN_MASK;
3202b42990d3SMark Brown unsigned int len = smcr & SMCR_ELx_LEN_MASK;
3203b42990d3SMark Brown
3204b42990d3SMark Brown if (len < safe_len || vec_verify_vq_map(ARM64_VEC_SME)) {
3205b42990d3SMark Brown pr_crit("CPU%d: SME: vector length support mismatch\n",
3206b42990d3SMark Brown smp_processor_id());
3207b42990d3SMark Brown cpu_die_early();
3208b42990d3SMark Brown }
3209b42990d3SMark Brown
3210b42990d3SMark Brown /* Add checks on other SMCR bits here if necessary */
3211b42990d3SMark Brown }
3212b42990d3SMark Brown
verify_hyp_capabilities(void)3213c73433fcSAnshuman Khandual static void verify_hyp_capabilities(void)
3214c73433fcSAnshuman Khandual {
3215c73433fcSAnshuman Khandual u64 safe_mmfr1, mmfr0, mmfr1;
3216c73433fcSAnshuman Khandual int parange, ipa_max;
3217c73433fcSAnshuman Khandual unsigned int safe_vmid_bits, vmid_bits;
3218c73433fcSAnshuman Khandual
321945ba7b19SShannon Zhao if (!IS_ENABLED(CONFIG_KVM))
3220c73433fcSAnshuman Khandual return;
3221c73433fcSAnshuman Khandual
3222c73433fcSAnshuman Khandual safe_mmfr1 = read_sanitised_ftr_reg(SYS_ID_AA64MMFR1_EL1);
3223c73433fcSAnshuman Khandual mmfr0 = read_cpuid(ID_AA64MMFR0_EL1);
3224c73433fcSAnshuman Khandual mmfr1 = read_cpuid(ID_AA64MMFR1_EL1);
3225c73433fcSAnshuman Khandual
3226c73433fcSAnshuman Khandual /* Verify VMID bits */
3227c73433fcSAnshuman Khandual safe_vmid_bits = get_vmid_bits(safe_mmfr1);
3228c73433fcSAnshuman Khandual vmid_bits = get_vmid_bits(mmfr1);
3229c73433fcSAnshuman Khandual if (vmid_bits < safe_vmid_bits) {
3230c73433fcSAnshuman Khandual pr_crit("CPU%d: VMID width mismatch\n", smp_processor_id());
3231c73433fcSAnshuman Khandual cpu_die_early();
3232c73433fcSAnshuman Khandual }
3233c73433fcSAnshuman Khandual
3234c73433fcSAnshuman Khandual /* Verify IPA range */
3235f73531f0SAnshuman Khandual parange = cpuid_feature_extract_unsigned_field(mmfr0,
32362d987e64SMark Brown ID_AA64MMFR0_EL1_PARANGE_SHIFT);
3237c73433fcSAnshuman Khandual ipa_max = id_aa64mmfr0_parange_to_phys_shift(parange);
3238c73433fcSAnshuman Khandual if (ipa_max < get_kvm_ipa_limit()) {
3239c73433fcSAnshuman Khandual pr_crit("CPU%d: IPA range mismatch\n", smp_processor_id());
3240c73433fcSAnshuman Khandual cpu_die_early();
3241c73433fcSAnshuman Khandual }
3242c73433fcSAnshuman Khandual }
32431e89baedSSuzuki K Poulose
32441e89baedSSuzuki K Poulose /*
3245dbb4e152SSuzuki K. Poulose * Run through the enabled system capabilities and enable() it on this CPU.
3246dbb4e152SSuzuki K. Poulose * The capabilities were decided based on the available CPUs at the boot time.
3247dbb4e152SSuzuki K. Poulose * Any new CPU should match the system wide status of the capability. If the
3248dbb4e152SSuzuki K. Poulose * new CPU doesn't have a capability which the system now has enabled, we
3249dbb4e152SSuzuki K. Poulose * cannot do anything to fix it up and could cause unexpected failures. So
3250dbb4e152SSuzuki K. Poulose * we park the CPU.
3251dbb4e152SSuzuki K. Poulose */
verify_local_cpu_capabilities(void)3252c47a1900SSuzuki K Poulose static void verify_local_cpu_capabilities(void)
3253dbb4e152SSuzuki K. Poulose {
3254fd9d63daSSuzuki K Poulose /*
3255fd9d63daSSuzuki K Poulose * The capabilities with SCOPE_BOOT_CPU are checked from
3256fd9d63daSSuzuki K Poulose * check_early_cpu_features(), as they need to be verified
3257fd9d63daSSuzuki K Poulose * on all secondary CPUs.
3258fd9d63daSSuzuki K Poulose */
3259deeaac51SKristina Martsenko verify_local_cpu_caps(SCOPE_ALL & ~SCOPE_BOOT_CPU);
32602122a833SWill Deacon verify_local_elf_hwcaps();
32612e0f2478SDave Martin
32622e0f2478SDave Martin if (system_supports_sve())
32632e0f2478SDave Martin verify_sve_features();
3264c73433fcSAnshuman Khandual
3265b42990d3SMark Brown if (system_supports_sme())
3266b42990d3SMark Brown verify_sme_features();
3267b42990d3SMark Brown
3268c73433fcSAnshuman Khandual if (is_hyp_mode_available())
3269c73433fcSAnshuman Khandual verify_hyp_capabilities();
3270dbb4e152SSuzuki K. Poulose }
3271dbb4e152SSuzuki K. Poulose
check_local_cpu_capabilities(void)3272c47a1900SSuzuki K Poulose void check_local_cpu_capabilities(void)
3273c47a1900SSuzuki K Poulose {
3274c47a1900SSuzuki K Poulose /*
3275c47a1900SSuzuki K Poulose * All secondary CPUs should conform to the early CPU features
3276c47a1900SSuzuki K Poulose * in use by the kernel based on boot CPU.
3277c47a1900SSuzuki K Poulose */
3278c47a1900SSuzuki K Poulose check_early_cpu_features();
3279c47a1900SSuzuki K Poulose
3280c47a1900SSuzuki K Poulose /*
3281c47a1900SSuzuki K Poulose * If we haven't finalised the system capabilities, this CPU gets
3282fbd890b9SSuzuki K Poulose * a chance to update the errata work arounds and local features.
3283c47a1900SSuzuki K Poulose * Otherwise, this CPU should verify that it has all the system
3284c47a1900SSuzuki K Poulose * advertised capabilities.
3285c47a1900SSuzuki K Poulose */
3286b51c6ac2SSuzuki K Poulose if (!system_capabilities_finalized())
3287ed478b3fSSuzuki K Poulose update_cpu_capabilities(SCOPE_LOCAL_CPU);
3288ed478b3fSSuzuki K Poulose else
3289c47a1900SSuzuki K Poulose verify_local_cpu_capabilities();
3290c47a1900SSuzuki K Poulose }
3291c47a1900SSuzuki K Poulose
setup_boot_cpu_capabilities(void)3292fd9d63daSSuzuki K Poulose static void __init setup_boot_cpu_capabilities(void)
3293fd9d63daSSuzuki K Poulose {
3294fd9d63daSSuzuki K Poulose /* Detect capabilities with either SCOPE_BOOT_CPU or SCOPE_LOCAL_CPU */
3295fd9d63daSSuzuki K Poulose update_cpu_capabilities(SCOPE_BOOT_CPU | SCOPE_LOCAL_CPU);
3296fd9d63daSSuzuki K Poulose /* Enable the SCOPE_BOOT_CPU capabilities alone right away */
3297fd9d63daSSuzuki K Poulose enable_cpu_capabilities(SCOPE_BOOT_CPU);
3298fd9d63daSSuzuki K Poulose }
3299fd9d63daSSuzuki K Poulose
this_cpu_has_cap(unsigned int n)3300f7bfc14aSSuzuki K Poulose bool this_cpu_has_cap(unsigned int n)
33018f413758SMarc Zyngier {
3302f7bfc14aSSuzuki K Poulose if (!WARN_ON(preemptible()) && n < ARM64_NCAPS) {
33031c8ae429SMark Rutland const struct arm64_cpu_capabilities *cap = cpucap_ptrs[n];
3304f7bfc14aSSuzuki K Poulose
3305f7bfc14aSSuzuki K Poulose if (cap)
3306f7bfc14aSSuzuki K Poulose return cap->matches(cap, SCOPE_LOCAL_CPU);
3307f7bfc14aSSuzuki K Poulose }
3308f7bfc14aSSuzuki K Poulose
3309f7bfc14aSSuzuki K Poulose return false;
33108f413758SMarc Zyngier }
331120b02fe3SArnd Bergmann EXPORT_SYMBOL_GPL(this_cpu_has_cap);
33128f413758SMarc Zyngier
33133ff047f6SAmit Daniel Kachhap /*
33143ff047f6SAmit Daniel Kachhap * This helper function is used in a narrow window when,
33153ff047f6SAmit Daniel Kachhap * - The system wide safe registers are set with all the SMP CPUs and,
33167f242982SMark Rutland * - The SYSTEM_FEATURE system_cpucaps may not have been set.
33173ff047f6SAmit Daniel Kachhap * In all other cases cpus_have_{const_}cap() should be used.
33183ff047f6SAmit Daniel Kachhap */
__system_matches_cap(unsigned int n)3319701f4906SMark Rutland static bool __maybe_unused __system_matches_cap(unsigned int n)
33203ff047f6SAmit Daniel Kachhap {
33213ff047f6SAmit Daniel Kachhap if (n < ARM64_NCAPS) {
33221c8ae429SMark Rutland const struct arm64_cpu_capabilities *cap = cpucap_ptrs[n];
33233ff047f6SAmit Daniel Kachhap
33243ff047f6SAmit Daniel Kachhap if (cap)
33253ff047f6SAmit Daniel Kachhap return cap->matches(cap, SCOPE_SYSTEM);
33263ff047f6SAmit Daniel Kachhap }
33273ff047f6SAmit Daniel Kachhap return false;
33283ff047f6SAmit Daniel Kachhap }
33293ff047f6SAmit Daniel Kachhap
cpu_set_feature(unsigned int num)3330aec0bff7SAndrew Murray void cpu_set_feature(unsigned int num)
3331aec0bff7SAndrew Murray {
333260c868efSMark Brown set_bit(num, elf_hwcap);
3333aec0bff7SAndrew Murray }
3334aec0bff7SAndrew Murray
cpu_have_feature(unsigned int num)3335aec0bff7SAndrew Murray bool cpu_have_feature(unsigned int num)
3336aec0bff7SAndrew Murray {
333760c868efSMark Brown return test_bit(num, elf_hwcap);
3338aec0bff7SAndrew Murray }
3339aec0bff7SAndrew Murray EXPORT_SYMBOL_GPL(cpu_have_feature);
3340aec0bff7SAndrew Murray
cpu_get_elf_hwcap(void)3341aec0bff7SAndrew Murray unsigned long cpu_get_elf_hwcap(void)
3342aec0bff7SAndrew Murray {
3343aec0bff7SAndrew Murray /*
3344aec0bff7SAndrew Murray * We currently only populate the first 32 bits of AT_HWCAP. Please
3345aec0bff7SAndrew Murray * note that for userspace compatibility we guarantee that bits 62
3346aec0bff7SAndrew Murray * and 63 will always be returned as 0.
3347aec0bff7SAndrew Murray */
334860c868efSMark Brown return elf_hwcap[0];
3349aec0bff7SAndrew Murray }
3350aec0bff7SAndrew Murray
cpu_get_elf_hwcap2(void)3351aec0bff7SAndrew Murray unsigned long cpu_get_elf_hwcap2(void)
3352aec0bff7SAndrew Murray {
335360c868efSMark Brown return elf_hwcap[1];
3354aec0bff7SAndrew Murray }
3355aec0bff7SAndrew Murray
setup_system_capabilities(void)3356ed478b3fSSuzuki K Poulose static void __init setup_system_capabilities(void)
3357ed478b3fSSuzuki K Poulose {
3358ed478b3fSSuzuki K Poulose /*
3359ed478b3fSSuzuki K Poulose * We have finalised the system-wide safe feature
3360ed478b3fSSuzuki K Poulose * registers, finalise the capabilities that depend
3361fd9d63daSSuzuki K Poulose * on it. Also enable all the available capabilities,
3362fd9d63daSSuzuki K Poulose * that are not enabled already.
3363ed478b3fSSuzuki K Poulose */
3364ed478b3fSSuzuki K Poulose update_cpu_capabilities(SCOPE_SYSTEM);
3365fd9d63daSSuzuki K Poulose enable_cpu_capabilities(SCOPE_ALL & ~SCOPE_BOOT_CPU);
3366ed478b3fSSuzuki K Poulose }
3367ed478b3fSSuzuki K Poulose
setup_cpu_features(void)33689cdf8ec4SSuzuki K. Poulose void __init setup_cpu_features(void)
33699cdf8ec4SSuzuki K. Poulose {
33709cdf8ec4SSuzuki K. Poulose u32 cwg;
33719cdf8ec4SSuzuki K. Poulose
3372ed478b3fSSuzuki K Poulose setup_system_capabilities();
337393696d8fSMark Rutland user_feature_fixup();
337475283501SSuzuki K Poulose setup_elf_hwcaps(arm64_elf_hwcaps);
3375643d703dSSuzuki K Poulose
337644b3834bSJames Morse if (system_supports_32bit_el0()) {
337775283501SSuzuki K Poulose setup_elf_hwcaps(compat_elf_hwcaps);
337844b3834bSJames Morse elf_hwcap_fixup();
337944b3834bSJames Morse }
3380dbb4e152SSuzuki K. Poulose
33812e6f549fSKees Cook if (system_uses_ttbr0_pan())
33822e6f549fSKees Cook pr_info("emulated: Privileged Access Never (PAN) using TTBR0_EL1 switching\n");
33832e6f549fSKees Cook
33842e0f2478SDave Martin sve_setup();
3385b42990d3SMark Brown sme_setup();
338694b07c1fSDave Martin minsigstksz_setup();
33872e0f2478SDave Martin
33889cdf8ec4SSuzuki K. Poulose /*
33899cdf8ec4SSuzuki K. Poulose * Check for sane CTR_EL0.CWG value.
33909cdf8ec4SSuzuki K. Poulose */
33919cdf8ec4SSuzuki K. Poulose cwg = cache_type_cwg();
33929cdf8ec4SSuzuki K. Poulose if (!cwg)
3393ebc7e21eSCatalin Marinas pr_warn("No Cache Writeback Granule information, assuming %d\n",
3394ebc7e21eSCatalin Marinas ARCH_DMA_MINALIGN);
3395359b7064SMarc Zyngier }
339670544196SJames Morse
enable_mismatched_32bit_el0(unsigned int cpu)33972122a833SWill Deacon static int enable_mismatched_32bit_el0(unsigned int cpu)
33982122a833SWill Deacon {
3399df950811SWill Deacon /*
3400df950811SWill Deacon * The first 32-bit-capable CPU we detected and so can no longer
3401df950811SWill Deacon * be offlined by userspace. -1 indicates we haven't yet onlined
3402df950811SWill Deacon * a 32-bit-capable CPU.
3403df950811SWill Deacon */
3404df950811SWill Deacon static int lucky_winner = -1;
3405df950811SWill Deacon
34062122a833SWill Deacon struct cpuinfo_arm64 *info = &per_cpu(cpu_data, cpu);
34072122a833SWill Deacon bool cpu_32bit = id_aa64pfr0_32bit_el0(info->reg_id_aa64pfr0);
34082122a833SWill Deacon
34092122a833SWill Deacon if (cpu_32bit) {
34102122a833SWill Deacon cpumask_set_cpu(cpu, cpu_32bit_el0_mask);
34112122a833SWill Deacon static_branch_enable_cpuslocked(&arm64_mismatched_32bit_el0);
34122122a833SWill Deacon }
34132122a833SWill Deacon
3414df950811SWill Deacon if (cpumask_test_cpu(0, cpu_32bit_el0_mask) == cpu_32bit)
3415df950811SWill Deacon return 0;
3416df950811SWill Deacon
3417df950811SWill Deacon if (lucky_winner >= 0)
3418df950811SWill Deacon return 0;
3419df950811SWill Deacon
3420df950811SWill Deacon /*
3421df950811SWill Deacon * We've detected a mismatch. We need to keep one of our CPUs with
3422df950811SWill Deacon * 32-bit EL0 online so that is_cpu_allowed() doesn't end up rejecting
3423df950811SWill Deacon * every CPU in the system for a 32-bit task.
3424df950811SWill Deacon */
3425df950811SWill Deacon lucky_winner = cpu_32bit ? cpu : cpumask_any_and(cpu_32bit_el0_mask,
3426df950811SWill Deacon cpu_active_mask);
3427df950811SWill Deacon get_cpu_device(lucky_winner)->offline_disabled = true;
3428df950811SWill Deacon setup_elf_hwcaps(compat_elf_hwcaps);
342944b3834bSJames Morse elf_hwcap_fixup();
3430df950811SWill Deacon pr_info("Asymmetric 32-bit EL0 support detected on CPU %u; CPU hot-unplug disabled on CPU %u\n",
3431df950811SWill Deacon cpu, lucky_winner);
34322122a833SWill Deacon return 0;
34332122a833SWill Deacon }
34342122a833SWill Deacon
init_32bit_el0_mask(void)34352122a833SWill Deacon static int __init init_32bit_el0_mask(void)
34362122a833SWill Deacon {
34372122a833SWill Deacon if (!allow_mismatched_32bit_el0)
34382122a833SWill Deacon return 0;
34392122a833SWill Deacon
34402122a833SWill Deacon if (!zalloc_cpumask_var(&cpu_32bit_el0_mask, GFP_KERNEL))
34412122a833SWill Deacon return -ENOMEM;
34422122a833SWill Deacon
34432122a833SWill Deacon return cpuhp_setup_state(CPUHP_AP_ONLINE_DYN,
34442122a833SWill Deacon "arm64/mismatched_32bit_el0:online",
34452122a833SWill Deacon enable_mismatched_32bit_el0, NULL);
34462122a833SWill Deacon }
34472122a833SWill Deacon subsys_initcall_sync(init_32bit_el0_mask);
34482122a833SWill Deacon
cpu_enable_cnp(struct arm64_cpu_capabilities const * cap)34495ffdfaedSVladimir Murzin static void __maybe_unused cpu_enable_cnp(struct arm64_cpu_capabilities const *cap)
34505ffdfaedSVladimir Murzin {
34511682c45bSArd Biesheuvel cpu_replace_ttbr1(lm_alias(swapper_pg_dir), idmap_pg_dir);
34525ffdfaedSVladimir Murzin }
34535ffdfaedSVladimir Murzin
345477c97b4eSSuzuki K Poulose /*
345577c97b4eSSuzuki K Poulose * We emulate only the following system register space.
345685f15063SAmit Daniel Kachhap * Op0 = 0x3, CRn = 0x0, Op1 = 0x0, CRm = [0, 2 - 7]
345777c97b4eSSuzuki K Poulose * See Table C5-6 System instruction encodings for System register accesses,
345877c97b4eSSuzuki K Poulose * ARMv8 ARM(ARM DDI 0487A.f) for more details.
345977c97b4eSSuzuki K Poulose */
is_emulated(u32 id)346077c97b4eSSuzuki K Poulose static inline bool __attribute_const__ is_emulated(u32 id)
346177c97b4eSSuzuki K Poulose {
346277c97b4eSSuzuki K Poulose return (sys_reg_Op0(id) == 0x3 &&
346377c97b4eSSuzuki K Poulose sys_reg_CRn(id) == 0x0 &&
346477c97b4eSSuzuki K Poulose sys_reg_Op1(id) == 0x0 &&
346577c97b4eSSuzuki K Poulose (sys_reg_CRm(id) == 0 ||
346685f15063SAmit Daniel Kachhap ((sys_reg_CRm(id) >= 2) && (sys_reg_CRm(id) <= 7))));
346777c97b4eSSuzuki K Poulose }
346877c97b4eSSuzuki K Poulose
346977c97b4eSSuzuki K Poulose /*
347077c97b4eSSuzuki K Poulose * With CRm == 0, reg should be one of :
347177c97b4eSSuzuki K Poulose * MIDR_EL1, MPIDR_EL1 or REVIDR_EL1.
347277c97b4eSSuzuki K Poulose */
emulate_id_reg(u32 id,u64 * valp)347377c97b4eSSuzuki K Poulose static inline int emulate_id_reg(u32 id, u64 *valp)
347477c97b4eSSuzuki K Poulose {
347577c97b4eSSuzuki K Poulose switch (id) {
347677c97b4eSSuzuki K Poulose case SYS_MIDR_EL1:
347777c97b4eSSuzuki K Poulose *valp = read_cpuid_id();
347877c97b4eSSuzuki K Poulose break;
347977c97b4eSSuzuki K Poulose case SYS_MPIDR_EL1:
348077c97b4eSSuzuki K Poulose *valp = SYS_MPIDR_SAFE_VAL;
348177c97b4eSSuzuki K Poulose break;
348277c97b4eSSuzuki K Poulose case SYS_REVIDR_EL1:
348377c97b4eSSuzuki K Poulose /* IMPLEMENTATION DEFINED values are emulated with 0 */
348477c97b4eSSuzuki K Poulose *valp = 0;
348577c97b4eSSuzuki K Poulose break;
348677c97b4eSSuzuki K Poulose default:
348777c97b4eSSuzuki K Poulose return -EINVAL;
348877c97b4eSSuzuki K Poulose }
348977c97b4eSSuzuki K Poulose
349077c97b4eSSuzuki K Poulose return 0;
349177c97b4eSSuzuki K Poulose }
349277c97b4eSSuzuki K Poulose
emulate_sys_reg(u32 id,u64 * valp)349377c97b4eSSuzuki K Poulose static int emulate_sys_reg(u32 id, u64 *valp)
349477c97b4eSSuzuki K Poulose {
349577c97b4eSSuzuki K Poulose struct arm64_ftr_reg *regp;
349677c97b4eSSuzuki K Poulose
349777c97b4eSSuzuki K Poulose if (!is_emulated(id))
349877c97b4eSSuzuki K Poulose return -EINVAL;
349977c97b4eSSuzuki K Poulose
350077c97b4eSSuzuki K Poulose if (sys_reg_CRm(id) == 0)
350177c97b4eSSuzuki K Poulose return emulate_id_reg(id, valp);
350277c97b4eSSuzuki K Poulose
35033577dd37SAnshuman Khandual regp = get_arm64_ftr_reg_nowarn(id);
350477c97b4eSSuzuki K Poulose if (regp)
350577c97b4eSSuzuki K Poulose *valp = arm64_ftr_reg_user_value(regp);
350677c97b4eSSuzuki K Poulose else
350777c97b4eSSuzuki K Poulose /*
350877c97b4eSSuzuki K Poulose * The untracked registers are either IMPLEMENTATION DEFINED
350977c97b4eSSuzuki K Poulose * (e.g, ID_AFR0_EL1) or reserved RAZ.
351077c97b4eSSuzuki K Poulose */
351177c97b4eSSuzuki K Poulose *valp = 0;
351277c97b4eSSuzuki K Poulose return 0;
351377c97b4eSSuzuki K Poulose }
351477c97b4eSSuzuki K Poulose
do_emulate_mrs(struct pt_regs * regs,u32 sys_reg,u32 rt)3515520ad988SAnshuman Khandual int do_emulate_mrs(struct pt_regs *regs, u32 sys_reg, u32 rt)
351677c97b4eSSuzuki K Poulose {
351777c97b4eSSuzuki K Poulose int rc;
351877c97b4eSSuzuki K Poulose u64 val;
351977c97b4eSSuzuki K Poulose
3520520ad988SAnshuman Khandual rc = emulate_sys_reg(sys_reg, &val);
3521520ad988SAnshuman Khandual if (!rc) {
3522520ad988SAnshuman Khandual pt_regs_write_reg(regs, rt, val);
3523520ad988SAnshuman Khandual arm64_skip_faulting_instruction(regs, AARCH64_INSN_SIZE);
3524520ad988SAnshuman Khandual }
3525520ad988SAnshuman Khandual return rc;
3526520ad988SAnshuman Khandual }
3527520ad988SAnshuman Khandual
try_emulate_mrs(struct pt_regs * regs,u32 insn)3528f5962addSMark Rutland bool try_emulate_mrs(struct pt_regs *regs, u32 insn)
3529520ad988SAnshuman Khandual {
3530520ad988SAnshuman Khandual u32 sys_reg, rt;
3531520ad988SAnshuman Khandual
3532f5962addSMark Rutland if (compat_user_mode(regs) || !aarch64_insn_is_mrs(insn))
3533f5962addSMark Rutland return false;
3534f5962addSMark Rutland
353577c97b4eSSuzuki K Poulose /*
353677c97b4eSSuzuki K Poulose * sys_reg values are defined as used in mrs/msr instruction.
353777c97b4eSSuzuki K Poulose * shift the imm value to get the encoding.
353877c97b4eSSuzuki K Poulose */
353977c97b4eSSuzuki K Poulose sys_reg = (u32)aarch64_insn_decode_immediate(AARCH64_INSN_IMM_16, insn) << 5;
3540520ad988SAnshuman Khandual rt = aarch64_insn_decode_register(AARCH64_INSN_REGTYPE_RT, insn);
3541f5962addSMark Rutland return do_emulate_mrs(regs, sys_reg, rt) == 0;
354277c97b4eSSuzuki K Poulose }
354377c97b4eSSuzuki K Poulose
arm64_get_meltdown_state(void)35447f43c201SMarc Zyngier enum mitigation_state arm64_get_meltdown_state(void)
35457f43c201SMarc Zyngier {
35467f43c201SMarc Zyngier if (__meltdown_safe)
35477f43c201SMarc Zyngier return SPECTRE_UNAFFECTED;
35487f43c201SMarc Zyngier
35497f43c201SMarc Zyngier if (arm64_kernel_unmapped_at_el0())
35507f43c201SMarc Zyngier return SPECTRE_MITIGATED;
35517f43c201SMarc Zyngier
35527f43c201SMarc Zyngier return SPECTRE_VULNERABLE;
35537f43c201SMarc Zyngier }
35547f43c201SMarc Zyngier
cpu_show_meltdown(struct device * dev,struct device_attribute * attr,char * buf)35551b3ccf4bSJeremy Linton ssize_t cpu_show_meltdown(struct device *dev, struct device_attribute *attr,
35561b3ccf4bSJeremy Linton char *buf)
35571b3ccf4bSJeremy Linton {
35587f43c201SMarc Zyngier switch (arm64_get_meltdown_state()) {
35597f43c201SMarc Zyngier case SPECTRE_UNAFFECTED:
35601b3ccf4bSJeremy Linton return sprintf(buf, "Not affected\n");
35611b3ccf4bSJeremy Linton
35627f43c201SMarc Zyngier case SPECTRE_MITIGATED:
35631b3ccf4bSJeremy Linton return sprintf(buf, "Mitigation: PTI\n");
35641b3ccf4bSJeremy Linton
35657f43c201SMarc Zyngier default:
35661b3ccf4bSJeremy Linton return sprintf(buf, "Vulnerable\n");
35671b3ccf4bSJeremy Linton }
35687f43c201SMarc Zyngier }
3569