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Marc Zyngier37c43752012-12-10 15:35:24 +00001/*
2 * Copyright (C) 2012,2013 - ARM Ltd
3 * Author: Marc Zyngier <marc.zyngier@arm.com>
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License version 2 as
7 * published by the Free Software Foundation.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License
15 * along with this program. If not, see <http://www.gnu.org/licenses/>.
16 */
17
18#ifndef __ARM64_KVM_MMU_H__
19#define __ARM64_KVM_MMU_H__
20
21#include <asm/page.h>
22#include <asm/memory.h>
Vladimir Murzin20475f72015-11-16 11:28:18 +000023#include <asm/cpufeature.h>
Marc Zyngier37c43752012-12-10 15:35:24 +000024
25/*
Marc Zyngiercedbb8b72015-01-29 13:50:34 +000026 * As ARMv8.0 only has the TTBR0_EL2 register, we cannot express
Marc Zyngier37c43752012-12-10 15:35:24 +000027 * "negative" addresses. This makes it impossible to directly share
28 * mappings with the kernel.
29 *
30 * Instead, give the HYP mode its own VA region at a fixed offset from
31 * the kernel by just masking the top bits (which are all ones for a
Marc Zyngier82a81bf2016-06-30 18:40:34 +010032 * kernel address). We need to find out how many bits to mask.
Marc Zyngiercedbb8b72015-01-29 13:50:34 +000033 *
Marc Zyngier82a81bf2016-06-30 18:40:34 +010034 * We want to build a set of page tables that cover both parts of the
35 * idmap (the trampoline page used to initialize EL2), and our normal
36 * runtime VA space, at the same time.
37 *
38 * Given that the kernel uses VA_BITS for its entire address space,
39 * and that half of that space (VA_BITS - 1) is used for the linear
40 * mapping, we can also limit the EL2 space to (VA_BITS - 1).
41 *
42 * The main question is "Within the VA_BITS space, does EL2 use the
43 * top or the bottom half of that space to shadow the kernel's linear
44 * mapping?". As we need to idmap the trampoline page, this is
45 * determined by the range in which this page lives.
46 *
47 * If the page is in the bottom half, we have to use the top half. If
48 * the page is in the top half, we have to use the bottom half:
49 *
50 * T = __virt_to_phys(__hyp_idmap_text_start)
51 * if (T & BIT(VA_BITS - 1))
52 * HYP_VA_MIN = 0 //idmap in upper half
53 * else
54 * HYP_VA_MIN = 1 << (VA_BITS - 1)
55 * HYP_VA_MAX = HYP_VA_MIN + (1 << (VA_BITS - 1)) - 1
56 *
57 * This of course assumes that the trampoline page exists within the
58 * VA_BITS range. If it doesn't, then it means we're in the odd case
59 * where the kernel idmap (as well as HYP) uses more levels than the
60 * kernel runtime page tables (as seen when the kernel is configured
61 * for 4k pages, 39bits VA, and yet memory lives just above that
62 * limit, forcing the idmap to use 4 levels of page tables while the
63 * kernel itself only uses 3). In this particular case, it doesn't
64 * matter which side of VA_BITS we use, as we're guaranteed not to
65 * conflict with anything.
66 *
67 * When using VHE, there are no separate hyp mappings and all KVM
68 * functionality is already mapped as part of the main kernel
69 * mappings, and none of this applies in that case.
Marc Zyngier37c43752012-12-10 15:35:24 +000070 */
Marc Zyngierd53d9bc62016-06-30 18:40:39 +010071
72#define HYP_PAGE_OFFSET_HIGH_MASK ((UL(1) << VA_BITS) - 1)
73#define HYP_PAGE_OFFSET_LOW_MASK ((UL(1) << (VA_BITS - 1)) - 1)
74
75/* Temporary compat define */
76#define HYP_PAGE_OFFSET_MASK HYP_PAGE_OFFSET_HIGH_MASK
Marc Zyngier37c43752012-12-10 15:35:24 +000077
78/*
79 * Our virtual mapping for the idmap-ed MMU-enable code. Must be
80 * shared across all the page-tables. Conveniently, we use the last
81 * possible page, where no kernel mapping will ever exist.
82 */
83#define TRAMPOLINE_VA (HYP_PAGE_OFFSET_MASK & PAGE_MASK)
84
85#ifdef __ASSEMBLY__
86
Marc Zyngiercedbb8b72015-01-29 13:50:34 +000087#include <asm/alternative.h>
88#include <asm/cpufeature.h>
89
Marc Zyngier37c43752012-12-10 15:35:24 +000090/*
91 * Convert a kernel VA into a HYP VA.
92 * reg: VA to be converted.
93 */
94.macro kern_hyp_va reg
Marc Zyngiercedbb8b72015-01-29 13:50:34 +000095alternative_if_not ARM64_HAS_VIRT_HOST_EXTN
Marc Zyngier37c43752012-12-10 15:35:24 +000096 and \reg, \reg, #HYP_PAGE_OFFSET_MASK
Marc Zyngiercedbb8b72015-01-29 13:50:34 +000097alternative_else
98 nop
99alternative_endif
Marc Zyngier37c43752012-12-10 15:35:24 +0000100.endm
101
102#else
103
Christoffer Dall38f791a2014-10-10 12:14:28 +0200104#include <asm/pgalloc.h>
Marc Zyngier37c43752012-12-10 15:35:24 +0000105#include <asm/cachetype.h>
106#include <asm/cacheflush.h>
Ard Biesheuvele4c5a682015-03-19 16:42:28 +0000107#include <asm/mmu_context.h>
108#include <asm/pgtable.h>
Marc Zyngier37c43752012-12-10 15:35:24 +0000109
Marc Zyngierfd16fe62016-06-30 18:40:37 +0100110#define KERN_TO_HYP(kva) ((unsigned long)kva & HYP_PAGE_OFFSET_MASK)
Marc Zyngier37c43752012-12-10 15:35:24 +0000111
112/*
Joel Schoppdbff1242014-07-09 11:17:04 -0500113 * We currently only support a 40bit IPA.
Marc Zyngier37c43752012-12-10 15:35:24 +0000114 */
Joel Schoppdbff1242014-07-09 11:17:04 -0500115#define KVM_PHYS_SHIFT (40)
Marc Zyngier37c43752012-12-10 15:35:24 +0000116#define KVM_PHYS_SIZE (1UL << KVM_PHYS_SHIFT)
117#define KVM_PHYS_MASK (KVM_PHYS_SIZE - 1UL)
118
Suzuki K Poulosec0ef6322016-03-22 14:16:52 +0000119#include <asm/stage2_pgtable.h>
120
Marc Zyngierc8dddec2016-06-13 15:00:45 +0100121int create_hyp_mappings(void *from, void *to, pgprot_t prot);
Marc Zyngier37c43752012-12-10 15:35:24 +0000122int create_hyp_io_mappings(void *from, void *to, phys_addr_t);
123void free_boot_hyp_pgd(void);
124void free_hyp_pgds(void);
125
Christoffer Dall957db102014-11-27 10:35:03 +0100126void stage2_unmap_vm(struct kvm *kvm);
Marc Zyngier37c43752012-12-10 15:35:24 +0000127int kvm_alloc_stage2_pgd(struct kvm *kvm);
128void kvm_free_stage2_pgd(struct kvm *kvm);
129int kvm_phys_addr_ioremap(struct kvm *kvm, phys_addr_t guest_ipa,
Ard Biesheuvelc40f2f82014-09-17 14:56:18 -0700130 phys_addr_t pa, unsigned long size, bool writable);
Marc Zyngier37c43752012-12-10 15:35:24 +0000131
132int kvm_handle_guest_abort(struct kvm_vcpu *vcpu, struct kvm_run *run);
133
134void kvm_mmu_free_memory_caches(struct kvm_vcpu *vcpu);
135
136phys_addr_t kvm_mmu_get_httbr(void);
137phys_addr_t kvm_mmu_get_boot_httbr(void);
138phys_addr_t kvm_get_idmap_vector(void);
AKASHI Takahiro67f69192016-04-27 17:47:05 +0100139phys_addr_t kvm_get_idmap_start(void);
Marc Zyngier37c43752012-12-10 15:35:24 +0000140int kvm_mmu_init(void);
141void kvm_clear_hyp_idmap(void);
142
143#define kvm_set_pte(ptep, pte) set_pte(ptep, pte)
Christoffer Dallad361f02012-11-01 17:14:45 +0100144#define kvm_set_pmd(pmdp, pmd) set_pmd(pmdp, pmd)
Marc Zyngier37c43752012-12-10 15:35:24 +0000145
Marc Zyngier37c43752012-12-10 15:35:24 +0000146static inline void kvm_clean_pgd(pgd_t *pgd) {}
Christoffer Dall38f791a2014-10-10 12:14:28 +0200147static inline void kvm_clean_pmd(pmd_t *pmd) {}
Marc Zyngier37c43752012-12-10 15:35:24 +0000148static inline void kvm_clean_pmd_entry(pmd_t *pmd) {}
149static inline void kvm_clean_pte(pte_t *pte) {}
150static inline void kvm_clean_pte_entry(pte_t *pte) {}
151
Catalin Marinas06485052016-04-13 17:57:37 +0100152static inline pte_t kvm_s2pte_mkwrite(pte_t pte)
Marc Zyngier37c43752012-12-10 15:35:24 +0000153{
Catalin Marinas06485052016-04-13 17:57:37 +0100154 pte_val(pte) |= PTE_S2_RDWR;
155 return pte;
Marc Zyngier37c43752012-12-10 15:35:24 +0000156}
157
Catalin Marinas06485052016-04-13 17:57:37 +0100158static inline pmd_t kvm_s2pmd_mkwrite(pmd_t pmd)
Christoffer Dallad361f02012-11-01 17:14:45 +0100159{
Catalin Marinas06485052016-04-13 17:57:37 +0100160 pmd_val(pmd) |= PMD_S2_RDWR;
161 return pmd;
Christoffer Dallad361f02012-11-01 17:14:45 +0100162}
163
Mario Smarduch8199ed02015-01-15 15:58:59 -0800164static inline void kvm_set_s2pte_readonly(pte_t *pte)
165{
Catalin Marinas06485052016-04-13 17:57:37 +0100166 pteval_t pteval;
167 unsigned long tmp;
168
169 asm volatile("// kvm_set_s2pte_readonly\n"
170 " prfm pstl1strm, %2\n"
171 "1: ldxr %0, %2\n"
172 " and %0, %0, %3 // clear PTE_S2_RDWR\n"
173 " orr %0, %0, %4 // set PTE_S2_RDONLY\n"
174 " stxr %w1, %0, %2\n"
175 " cbnz %w1, 1b\n"
176 : "=&r" (pteval), "=&r" (tmp), "+Q" (pte_val(*pte))
177 : "L" (~PTE_S2_RDWR), "L" (PTE_S2_RDONLY));
Mario Smarduch8199ed02015-01-15 15:58:59 -0800178}
179
180static inline bool kvm_s2pte_readonly(pte_t *pte)
181{
182 return (pte_val(*pte) & PTE_S2_RDWR) == PTE_S2_RDONLY;
183}
184
185static inline void kvm_set_s2pmd_readonly(pmd_t *pmd)
186{
Catalin Marinas06485052016-04-13 17:57:37 +0100187 kvm_set_s2pte_readonly((pte_t *)pmd);
Mario Smarduch8199ed02015-01-15 15:58:59 -0800188}
189
190static inline bool kvm_s2pmd_readonly(pmd_t *pmd)
191{
Catalin Marinas06485052016-04-13 17:57:37 +0100192 return kvm_s2pte_readonly((pte_t *)pmd);
Christoffer Dall38f791a2014-10-10 12:14:28 +0200193}
194
Christoffer Dall4f853a72014-05-09 23:31:31 +0200195static inline bool kvm_page_empty(void *ptr)
196{
197 struct page *ptr_page = virt_to_page(ptr);
198 return page_count(ptr_page) == 1;
199}
200
Suzuki K Poulose66f877f2016-03-22 17:20:28 +0000201#define hyp_pte_table_empty(ptep) kvm_page_empty(ptep)
Christoffer Dall38f791a2014-10-10 12:14:28 +0200202
203#ifdef __PAGETABLE_PMD_FOLDED
Suzuki K Poulose66f877f2016-03-22 17:20:28 +0000204#define hyp_pmd_table_empty(pmdp) (0)
Christoffer Dall4f853a72014-05-09 23:31:31 +0200205#else
Suzuki K Poulose66f877f2016-03-22 17:20:28 +0000206#define hyp_pmd_table_empty(pmdp) kvm_page_empty(pmdp)
Christoffer Dall4f853a72014-05-09 23:31:31 +0200207#endif
Christoffer Dall38f791a2014-10-10 12:14:28 +0200208
209#ifdef __PAGETABLE_PUD_FOLDED
Suzuki K Poulose66f877f2016-03-22 17:20:28 +0000210#define hyp_pud_table_empty(pudp) (0)
Christoffer Dall38f791a2014-10-10 12:14:28 +0200211#else
Suzuki K Poulose66f877f2016-03-22 17:20:28 +0000212#define hyp_pud_table_empty(pudp) kvm_page_empty(pudp)
Christoffer Dall38f791a2014-10-10 12:14:28 +0200213#endif
Christoffer Dall4f853a72014-05-09 23:31:31 +0200214
Marc Zyngier37c43752012-12-10 15:35:24 +0000215struct kvm;
216
Marc Zyngier2d58b732014-01-14 19:13:10 +0000217#define kvm_flush_dcache_to_poc(a,l) __flush_dcache_area((a), (l))
218
219static inline bool vcpu_has_cache_enabled(struct kvm_vcpu *vcpu)
Marc Zyngier37c43752012-12-10 15:35:24 +0000220{
Marc Zyngier2d58b732014-01-14 19:13:10 +0000221 return (vcpu_sys_reg(vcpu, SCTLR_EL1) & 0b101) == 0b101;
222}
223
Dan Williamsba049e92016-01-15 16:56:11 -0800224static inline void __coherent_cache_guest_page(struct kvm_vcpu *vcpu,
225 kvm_pfn_t pfn,
Marc Zyngier0d3e4d42015-01-05 21:13:24 +0000226 unsigned long size,
227 bool ipa_uncached)
Marc Zyngier2d58b732014-01-14 19:13:10 +0000228{
Marc Zyngier0d3e4d42015-01-05 21:13:24 +0000229 void *va = page_address(pfn_to_page(pfn));
230
Laszlo Ersek840f4bf2014-11-17 14:58:52 +0000231 if (!vcpu_has_cache_enabled(vcpu) || ipa_uncached)
Marc Zyngier0d3e4d42015-01-05 21:13:24 +0000232 kvm_flush_dcache_to_poc(va, size);
Marc Zyngier2d58b732014-01-14 19:13:10 +0000233
Marc Zyngier37c43752012-12-10 15:35:24 +0000234 if (!icache_is_aliasing()) { /* PIPT */
Marc Zyngier0d3e4d42015-01-05 21:13:24 +0000235 flush_icache_range((unsigned long)va,
236 (unsigned long)va + size);
Marc Zyngier37c43752012-12-10 15:35:24 +0000237 } else if (!icache_is_aivivt()) { /* non ASID-tagged VIVT */
238 /* any kind of VIPT cache */
239 __flush_icache_all();
240 }
241}
242
Marc Zyngier363ef892014-12-19 16:48:06 +0000243static inline void __kvm_flush_dcache_pte(pte_t pte)
244{
245 struct page *page = pte_page(pte);
246 kvm_flush_dcache_to_poc(page_address(page), PAGE_SIZE);
247}
248
249static inline void __kvm_flush_dcache_pmd(pmd_t pmd)
250{
251 struct page *page = pmd_page(pmd);
252 kvm_flush_dcache_to_poc(page_address(page), PMD_SIZE);
253}
254
255static inline void __kvm_flush_dcache_pud(pud_t pud)
256{
257 struct page *page = pud_page(pud);
258 kvm_flush_dcache_to_poc(page_address(page), PUD_SIZE);
259}
260
Santosh Shilimkar4fda3422013-11-19 14:59:12 -0500261#define kvm_virt_to_phys(x) __virt_to_phys((unsigned long)(x))
Marc Zyngier37c43752012-12-10 15:35:24 +0000262
Marc Zyngier3c1e7162014-12-19 16:05:31 +0000263void kvm_set_way_flush(struct kvm_vcpu *vcpu);
264void kvm_toggle_cache(struct kvm_vcpu *vcpu, bool was_enabled);
Marc Zyngier9d218a12014-01-15 12:50:23 +0000265
Ard Biesheuvele4c5a682015-03-19 16:42:28 +0000266static inline bool __kvm_cpu_uses_extended_idmap(void)
267{
268 return __cpu_uses_extended_idmap();
269}
270
271static inline void __kvm_extend_hypmap(pgd_t *boot_hyp_pgd,
272 pgd_t *hyp_pgd,
273 pgd_t *merged_hyp_pgd,
274 unsigned long hyp_idmap_start)
275{
276 int idmap_idx;
277
278 /*
279 * Use the first entry to access the HYP mappings. It is
280 * guaranteed to be free, otherwise we wouldn't use an
281 * extended idmap.
282 */
283 VM_BUG_ON(pgd_val(merged_hyp_pgd[0]));
284 merged_hyp_pgd[0] = __pgd(__pa(hyp_pgd) | PMD_TYPE_TABLE);
285
286 /*
287 * Create another extended level entry that points to the boot HYP map,
288 * which contains an ID mapping of the HYP init code. We essentially
289 * merge the boot and runtime HYP maps by doing so, but they don't
290 * overlap anyway, so this is fine.
291 */
292 idmap_idx = hyp_idmap_start >> VA_BITS;
293 VM_BUG_ON(pgd_val(merged_hyp_pgd[idmap_idx]));
294 merged_hyp_pgd[idmap_idx] = __pgd(__pa(boot_hyp_pgd) | PMD_TYPE_TABLE);
295}
296
Vladimir Murzin20475f72015-11-16 11:28:18 +0000297static inline unsigned int kvm_get_vmid_bits(void)
298{
299 int reg = read_system_reg(SYS_ID_AA64MMFR1_EL1);
300
Suzuki K Poulose28c5dcb2016-01-26 10:58:16 +0000301 return (cpuid_feature_extract_unsigned_field(reg, ID_AA64MMFR1_VMIDBITS_SHIFT) == 2) ? 16 : 8;
Vladimir Murzin20475f72015-11-16 11:28:18 +0000302}
303
Marc Zyngier37c43752012-12-10 15:35:24 +0000304#endif /* __ASSEMBLY__ */
305#endif /* __ARM64_KVM_MMU_H__ */