xref: /openbmc/linux/arch/arm64/include/asm/kvm_mmu.h (revision dc2e4633ff39c9fb5ef3a5443721f0e3499b36ed)
137c43753SMarc Zyngier /*
237c43753SMarc Zyngier  * Copyright (C) 2012,2013 - ARM Ltd
337c43753SMarc Zyngier  * Author: Marc Zyngier <marc.zyngier@arm.com>
437c43753SMarc Zyngier  *
537c43753SMarc Zyngier  * This program is free software; you can redistribute it and/or modify
637c43753SMarc Zyngier  * it under the terms of the GNU General Public License version 2 as
737c43753SMarc Zyngier  * published by the Free Software Foundation.
837c43753SMarc Zyngier  *
937c43753SMarc Zyngier  * This program is distributed in the hope that it will be useful,
1037c43753SMarc Zyngier  * but WITHOUT ANY WARRANTY; without even the implied warranty of
1137c43753SMarc Zyngier  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
1237c43753SMarc Zyngier  * GNU General Public License for more details.
1337c43753SMarc Zyngier  *
1437c43753SMarc Zyngier  * You should have received a copy of the GNU General Public License
1537c43753SMarc Zyngier  * along with this program.  If not, see <http://www.gnu.org/licenses/>.
1637c43753SMarc Zyngier  */
1737c43753SMarc Zyngier 
1837c43753SMarc Zyngier #ifndef __ARM64_KVM_MMU_H__
1937c43753SMarc Zyngier #define __ARM64_KVM_MMU_H__
2037c43753SMarc Zyngier 
2137c43753SMarc Zyngier #include <asm/page.h>
2237c43753SMarc Zyngier #include <asm/memory.h>
2320475f78SVladimir Murzin #include <asm/cpufeature.h>
2437c43753SMarc Zyngier 
2537c43753SMarc Zyngier /*
26cedbb8b7SMarc Zyngier  * As ARMv8.0 only has the TTBR0_EL2 register, we cannot express
2737c43753SMarc Zyngier  * "negative" addresses. This makes it impossible to directly share
2837c43753SMarc Zyngier  * mappings with the kernel.
2937c43753SMarc Zyngier  *
3037c43753SMarc Zyngier  * Instead, give the HYP mode its own VA region at a fixed offset from
3137c43753SMarc Zyngier  * the kernel by just masking the top bits (which are all ones for a
3282a81bffSMarc Zyngier  * kernel address). We need to find out how many bits to mask.
33cedbb8b7SMarc Zyngier  *
3482a81bffSMarc Zyngier  * We want to build a set of page tables that cover both parts of the
3582a81bffSMarc Zyngier  * idmap (the trampoline page used to initialize EL2), and our normal
3682a81bffSMarc Zyngier  * runtime VA space, at the same time.
3782a81bffSMarc Zyngier  *
3882a81bffSMarc Zyngier  * Given that the kernel uses VA_BITS for its entire address space,
3982a81bffSMarc Zyngier  * and that half of that space (VA_BITS - 1) is used for the linear
4082a81bffSMarc Zyngier  * mapping, we can also limit the EL2 space to (VA_BITS - 1).
4182a81bffSMarc Zyngier  *
4282a81bffSMarc Zyngier  * The main question is "Within the VA_BITS space, does EL2 use the
4382a81bffSMarc Zyngier  * top or the bottom half of that space to shadow the kernel's linear
4482a81bffSMarc Zyngier  * mapping?". As we need to idmap the trampoline page, this is
4582a81bffSMarc Zyngier  * determined by the range in which this page lives.
4682a81bffSMarc Zyngier  *
4782a81bffSMarc Zyngier  * If the page is in the bottom half, we have to use the top half. If
4882a81bffSMarc Zyngier  * the page is in the top half, we have to use the bottom half:
4982a81bffSMarc Zyngier  *
502077be67SLaura Abbott  * T = __pa_symbol(__hyp_idmap_text_start)
5182a81bffSMarc Zyngier  * if (T & BIT(VA_BITS - 1))
5282a81bffSMarc Zyngier  *	HYP_VA_MIN = 0  //idmap in upper half
5382a81bffSMarc Zyngier  * else
5482a81bffSMarc Zyngier  *	HYP_VA_MIN = 1 << (VA_BITS - 1)
5582a81bffSMarc Zyngier  * HYP_VA_MAX = HYP_VA_MIN + (1 << (VA_BITS - 1)) - 1
5682a81bffSMarc Zyngier  *
5782a81bffSMarc Zyngier  * This of course assumes that the trampoline page exists within the
5882a81bffSMarc Zyngier  * VA_BITS range. If it doesn't, then it means we're in the odd case
5982a81bffSMarc Zyngier  * where the kernel idmap (as well as HYP) uses more levels than the
6082a81bffSMarc Zyngier  * kernel runtime page tables (as seen when the kernel is configured
6182a81bffSMarc Zyngier  * for 4k pages, 39bits VA, and yet memory lives just above that
6282a81bffSMarc Zyngier  * limit, forcing the idmap to use 4 levels of page tables while the
6382a81bffSMarc Zyngier  * kernel itself only uses 3). In this particular case, it doesn't
6482a81bffSMarc Zyngier  * matter which side of VA_BITS we use, as we're guaranteed not to
6582a81bffSMarc Zyngier  * conflict with anything.
6682a81bffSMarc Zyngier  *
6782a81bffSMarc Zyngier  * When using VHE, there are no separate hyp mappings and all KVM
6882a81bffSMarc Zyngier  * functionality is already mapped as part of the main kernel
6982a81bffSMarc Zyngier  * mappings, and none of this applies in that case.
7037c43753SMarc Zyngier  */
71d53d9bc6SMarc Zyngier 
7237c43753SMarc Zyngier #ifdef __ASSEMBLY__
7337c43753SMarc Zyngier 
74cedbb8b7SMarc Zyngier #include <asm/alternative.h>
75cedbb8b7SMarc Zyngier #include <asm/cpufeature.h>
76cedbb8b7SMarc Zyngier 
7737c43753SMarc Zyngier /*
7837c43753SMarc Zyngier  * Convert a kernel VA into a HYP VA.
7937c43753SMarc Zyngier  * reg: VA to be converted.
80fd81e6bfSMarc Zyngier  *
812b4d1606SMarc Zyngier  * The actual code generation takes place in kvm_update_va_mask, and
822b4d1606SMarc Zyngier  * the instructions below are only there to reserve the space and
832b4d1606SMarc Zyngier  * perform the register allocation (kvm_update_va_mask uses the
842b4d1606SMarc Zyngier  * specific registers encoded in the instructions).
8537c43753SMarc Zyngier  */
8637c43753SMarc Zyngier .macro kern_hyp_va	reg
872b4d1606SMarc Zyngier alternative_cb kvm_update_va_mask
88ed57cac8SMarc Zyngier 	and     \reg, \reg, #1		/* mask with va_mask */
89ed57cac8SMarc Zyngier 	ror	\reg, \reg, #1		/* rotate to the first tag bit */
90ed57cac8SMarc Zyngier 	add	\reg, \reg, #0		/* insert the low 12 bits of the tag */
91ed57cac8SMarc Zyngier 	add	\reg, \reg, #0, lsl 12	/* insert the top 12 bits of the tag */
92ed57cac8SMarc Zyngier 	ror	\reg, \reg, #63		/* rotate back */
932b4d1606SMarc Zyngier alternative_cb_end
9437c43753SMarc Zyngier .endm
9537c43753SMarc Zyngier 
9637c43753SMarc Zyngier #else
9737c43753SMarc Zyngier 
9838f791a4SChristoffer Dall #include <asm/pgalloc.h>
9902f7760eSWill Deacon #include <asm/cache.h>
10037c43753SMarc Zyngier #include <asm/cacheflush.h>
101e4c5a685SArd Biesheuvel #include <asm/mmu_context.h>
102e4c5a685SArd Biesheuvel #include <asm/pgtable.h>
10337c43753SMarc Zyngier 
1042b4d1606SMarc Zyngier void kvm_update_va_mask(struct alt_instr *alt,
1052b4d1606SMarc Zyngier 			__le32 *origptr, __le32 *updptr, int nr_inst);
1062b4d1606SMarc Zyngier 
107fd81e6bfSMarc Zyngier static inline unsigned long __kern_hyp_va(unsigned long v)
108fd81e6bfSMarc Zyngier {
109ed57cac8SMarc Zyngier 	asm volatile(ALTERNATIVE_CB("and %0, %0, #1\n"
110ed57cac8SMarc Zyngier 				    "ror %0, %0, #1\n"
111ed57cac8SMarc Zyngier 				    "add %0, %0, #0\n"
112ed57cac8SMarc Zyngier 				    "add %0, %0, #0, lsl 12\n"
113ed57cac8SMarc Zyngier 				    "ror %0, %0, #63\n",
1142b4d1606SMarc Zyngier 				    kvm_update_va_mask)
1152b4d1606SMarc Zyngier 		     : "+r" (v));
116fd81e6bfSMarc Zyngier 	return v;
117fd81e6bfSMarc Zyngier }
118fd81e6bfSMarc Zyngier 
11994d0e598SMarc Zyngier #define kern_hyp_va(v) 	((typeof(v))(__kern_hyp_va((unsigned long)(v))))
12037c43753SMarc Zyngier 
12137c43753SMarc Zyngier /*
12244a497abSMarc Zyngier  * Obtain the PC-relative address of a kernel symbol
12344a497abSMarc Zyngier  * s: symbol
12444a497abSMarc Zyngier  *
12544a497abSMarc Zyngier  * The goal of this macro is to return a symbol's address based on a
12644a497abSMarc Zyngier  * PC-relative computation, as opposed to a loading the VA from a
12744a497abSMarc Zyngier  * constant pool or something similar. This works well for HYP, as an
12844a497abSMarc Zyngier  * absolute VA is guaranteed to be wrong. Only use this if trying to
12944a497abSMarc Zyngier  * obtain the address of a symbol (i.e. not something you obtained by
13044a497abSMarc Zyngier  * following a pointer).
13144a497abSMarc Zyngier  */
13244a497abSMarc Zyngier #define hyp_symbol_addr(s)						\
13344a497abSMarc Zyngier 	({								\
13444a497abSMarc Zyngier 		typeof(s) *addr;					\
13544a497abSMarc Zyngier 		asm("adrp	%0, %1\n"				\
13644a497abSMarc Zyngier 		    "add	%0, %0, :lo12:%1\n"			\
13744a497abSMarc Zyngier 		    : "=r" (addr) : "S" (&s));				\
13844a497abSMarc Zyngier 		addr;							\
13944a497abSMarc Zyngier 	})
14044a497abSMarc Zyngier 
14144a497abSMarc Zyngier /*
142dbff124eSJoel Schopp  * We currently only support a 40bit IPA.
14337c43753SMarc Zyngier  */
144dbff124eSJoel Schopp #define KVM_PHYS_SHIFT	(40)
14537c43753SMarc Zyngier #define KVM_PHYS_SIZE	(1UL << KVM_PHYS_SHIFT)
14637c43753SMarc Zyngier #define KVM_PHYS_MASK	(KVM_PHYS_SIZE - 1UL)
14737c43753SMarc Zyngier 
148c0ef6326SSuzuki K Poulose #include <asm/stage2_pgtable.h>
149c0ef6326SSuzuki K Poulose 
150c8dddecdSMarc Zyngier int create_hyp_mappings(void *from, void *to, pgprot_t prot);
151807a3784SMarc Zyngier int create_hyp_io_mappings(phys_addr_t phys_addr, size_t size,
1521bb32a44SMarc Zyngier 			   void __iomem **kaddr,
1531bb32a44SMarc Zyngier 			   void __iomem **haddr);
154*dc2e4633SMarc Zyngier int create_hyp_exec_mappings(phys_addr_t phys_addr, size_t size,
155*dc2e4633SMarc Zyngier 			     void **haddr);
15637c43753SMarc Zyngier void free_hyp_pgds(void);
15737c43753SMarc Zyngier 
158957db105SChristoffer Dall void stage2_unmap_vm(struct kvm *kvm);
15937c43753SMarc Zyngier int kvm_alloc_stage2_pgd(struct kvm *kvm);
16037c43753SMarc Zyngier void kvm_free_stage2_pgd(struct kvm *kvm);
16137c43753SMarc Zyngier int kvm_phys_addr_ioremap(struct kvm *kvm, phys_addr_t guest_ipa,
162c40f2f8fSArd Biesheuvel 			  phys_addr_t pa, unsigned long size, bool writable);
16337c43753SMarc Zyngier 
16437c43753SMarc Zyngier int kvm_handle_guest_abort(struct kvm_vcpu *vcpu, struct kvm_run *run);
16537c43753SMarc Zyngier 
16637c43753SMarc Zyngier void kvm_mmu_free_memory_caches(struct kvm_vcpu *vcpu);
16737c43753SMarc Zyngier 
16837c43753SMarc Zyngier phys_addr_t kvm_mmu_get_httbr(void);
16937c43753SMarc Zyngier phys_addr_t kvm_get_idmap_vector(void);
17037c43753SMarc Zyngier int kvm_mmu_init(void);
17137c43753SMarc Zyngier void kvm_clear_hyp_idmap(void);
17237c43753SMarc Zyngier 
17337c43753SMarc Zyngier #define	kvm_set_pte(ptep, pte)		set_pte(ptep, pte)
174ad361f09SChristoffer Dall #define	kvm_set_pmd(pmdp, pmd)		set_pmd(pmdp, pmd)
17537c43753SMarc Zyngier 
17606485053SCatalin Marinas static inline pte_t kvm_s2pte_mkwrite(pte_t pte)
17737c43753SMarc Zyngier {
17806485053SCatalin Marinas 	pte_val(pte) |= PTE_S2_RDWR;
17906485053SCatalin Marinas 	return pte;
18037c43753SMarc Zyngier }
18137c43753SMarc Zyngier 
18206485053SCatalin Marinas static inline pmd_t kvm_s2pmd_mkwrite(pmd_t pmd)
183ad361f09SChristoffer Dall {
18406485053SCatalin Marinas 	pmd_val(pmd) |= PMD_S2_RDWR;
18506485053SCatalin Marinas 	return pmd;
186ad361f09SChristoffer Dall }
187ad361f09SChristoffer Dall 
188d0e22b4aSMarc Zyngier static inline pte_t kvm_s2pte_mkexec(pte_t pte)
189d0e22b4aSMarc Zyngier {
190d0e22b4aSMarc Zyngier 	pte_val(pte) &= ~PTE_S2_XN;
191d0e22b4aSMarc Zyngier 	return pte;
192d0e22b4aSMarc Zyngier }
193d0e22b4aSMarc Zyngier 
194d0e22b4aSMarc Zyngier static inline pmd_t kvm_s2pmd_mkexec(pmd_t pmd)
195d0e22b4aSMarc Zyngier {
196d0e22b4aSMarc Zyngier 	pmd_val(pmd) &= ~PMD_S2_XN;
197d0e22b4aSMarc Zyngier 	return pmd;
198d0e22b4aSMarc Zyngier }
199d0e22b4aSMarc Zyngier 
20020a004e7SWill Deacon static inline void kvm_set_s2pte_readonly(pte_t *ptep)
2018199ed0eSMario Smarduch {
2020966253dSCatalin Marinas 	pteval_t old_pteval, pteval;
20306485053SCatalin Marinas 
20420a004e7SWill Deacon 	pteval = READ_ONCE(pte_val(*ptep));
2050966253dSCatalin Marinas 	do {
2060966253dSCatalin Marinas 		old_pteval = pteval;
2070966253dSCatalin Marinas 		pteval &= ~PTE_S2_RDWR;
2080966253dSCatalin Marinas 		pteval |= PTE_S2_RDONLY;
20920a004e7SWill Deacon 		pteval = cmpxchg_relaxed(&pte_val(*ptep), old_pteval, pteval);
2100966253dSCatalin Marinas 	} while (pteval != old_pteval);
2118199ed0eSMario Smarduch }
2128199ed0eSMario Smarduch 
21320a004e7SWill Deacon static inline bool kvm_s2pte_readonly(pte_t *ptep)
2148199ed0eSMario Smarduch {
21520a004e7SWill Deacon 	return (READ_ONCE(pte_val(*ptep)) & PTE_S2_RDWR) == PTE_S2_RDONLY;
2168199ed0eSMario Smarduch }
2178199ed0eSMario Smarduch 
21820a004e7SWill Deacon static inline bool kvm_s2pte_exec(pte_t *ptep)
2197a3796d2SMarc Zyngier {
22020a004e7SWill Deacon 	return !(READ_ONCE(pte_val(*ptep)) & PTE_S2_XN);
2217a3796d2SMarc Zyngier }
2227a3796d2SMarc Zyngier 
22320a004e7SWill Deacon static inline void kvm_set_s2pmd_readonly(pmd_t *pmdp)
2248199ed0eSMario Smarduch {
22520a004e7SWill Deacon 	kvm_set_s2pte_readonly((pte_t *)pmdp);
2268199ed0eSMario Smarduch }
2278199ed0eSMario Smarduch 
22820a004e7SWill Deacon static inline bool kvm_s2pmd_readonly(pmd_t *pmdp)
2298199ed0eSMario Smarduch {
23020a004e7SWill Deacon 	return kvm_s2pte_readonly((pte_t *)pmdp);
23138f791a4SChristoffer Dall }
23238f791a4SChristoffer Dall 
23320a004e7SWill Deacon static inline bool kvm_s2pmd_exec(pmd_t *pmdp)
2347a3796d2SMarc Zyngier {
23520a004e7SWill Deacon 	return !(READ_ONCE(pmd_val(*pmdp)) & PMD_S2_XN);
2367a3796d2SMarc Zyngier }
2377a3796d2SMarc Zyngier 
2384f853a71SChristoffer Dall static inline bool kvm_page_empty(void *ptr)
2394f853a71SChristoffer Dall {
2404f853a71SChristoffer Dall 	struct page *ptr_page = virt_to_page(ptr);
2414f853a71SChristoffer Dall 	return page_count(ptr_page) == 1;
2424f853a71SChristoffer Dall }
2434f853a71SChristoffer Dall 
24466f877faSSuzuki K Poulose #define hyp_pte_table_empty(ptep) kvm_page_empty(ptep)
24538f791a4SChristoffer Dall 
24638f791a4SChristoffer Dall #ifdef __PAGETABLE_PMD_FOLDED
24766f877faSSuzuki K Poulose #define hyp_pmd_table_empty(pmdp) (0)
2484f853a71SChristoffer Dall #else
24966f877faSSuzuki K Poulose #define hyp_pmd_table_empty(pmdp) kvm_page_empty(pmdp)
2504f853a71SChristoffer Dall #endif
25138f791a4SChristoffer Dall 
25238f791a4SChristoffer Dall #ifdef __PAGETABLE_PUD_FOLDED
25366f877faSSuzuki K Poulose #define hyp_pud_table_empty(pudp) (0)
25438f791a4SChristoffer Dall #else
25566f877faSSuzuki K Poulose #define hyp_pud_table_empty(pudp) kvm_page_empty(pudp)
25638f791a4SChristoffer Dall #endif
2574f853a71SChristoffer Dall 
25837c43753SMarc Zyngier struct kvm;
25937c43753SMarc Zyngier 
2602d58b733SMarc Zyngier #define kvm_flush_dcache_to_poc(a,l)	__flush_dcache_area((a), (l))
2612d58b733SMarc Zyngier 
2622d58b733SMarc Zyngier static inline bool vcpu_has_cache_enabled(struct kvm_vcpu *vcpu)
2632d58b733SMarc Zyngier {
2648d404c4cSChristoffer Dall 	return (vcpu_read_sys_reg(vcpu, SCTLR_EL1) & 0b101) == 0b101;
2652d58b733SMarc Zyngier }
2662d58b733SMarc Zyngier 
26717ab9d57SMarc Zyngier static inline void __clean_dcache_guest_page(kvm_pfn_t pfn, unsigned long size)
26837c43753SMarc Zyngier {
2690d3e4d4fSMarc Zyngier 	void *va = page_address(pfn_to_page(pfn));
2700d3e4d4fSMarc Zyngier 
2710d3e4d4fSMarc Zyngier 	kvm_flush_dcache_to_poc(va, size);
272a15f6939SMarc Zyngier }
2732d58b733SMarc Zyngier 
27417ab9d57SMarc Zyngier static inline void __invalidate_icache_guest_page(kvm_pfn_t pfn,
275a15f6939SMarc Zyngier 						  unsigned long size)
276a15f6939SMarc Zyngier {
27787da236eSWill Deacon 	if (icache_is_aliasing()) {
27837c43753SMarc Zyngier 		/* any kind of VIPT cache */
27937c43753SMarc Zyngier 		__flush_icache_all();
28087da236eSWill Deacon 	} else if (is_kernel_in_hyp_mode() || !icache_is_vpipt()) {
28187da236eSWill Deacon 		/* PIPT or VPIPT at EL2 (see comment in __kvm_tlb_flush_vmid_ipa) */
282a15f6939SMarc Zyngier 		void *va = page_address(pfn_to_page(pfn));
283a15f6939SMarc Zyngier 
2844fee9473SMarc Zyngier 		invalidate_icache_range((unsigned long)va,
28587da236eSWill Deacon 					(unsigned long)va + size);
28637c43753SMarc Zyngier 	}
28737c43753SMarc Zyngier }
28837c43753SMarc Zyngier 
289363ef89fSMarc Zyngier static inline void __kvm_flush_dcache_pte(pte_t pte)
290363ef89fSMarc Zyngier {
291363ef89fSMarc Zyngier 	struct page *page = pte_page(pte);
292363ef89fSMarc Zyngier 	kvm_flush_dcache_to_poc(page_address(page), PAGE_SIZE);
293363ef89fSMarc Zyngier }
294363ef89fSMarc Zyngier 
295363ef89fSMarc Zyngier static inline void __kvm_flush_dcache_pmd(pmd_t pmd)
296363ef89fSMarc Zyngier {
297363ef89fSMarc Zyngier 	struct page *page = pmd_page(pmd);
298363ef89fSMarc Zyngier 	kvm_flush_dcache_to_poc(page_address(page), PMD_SIZE);
299363ef89fSMarc Zyngier }
300363ef89fSMarc Zyngier 
301363ef89fSMarc Zyngier static inline void __kvm_flush_dcache_pud(pud_t pud)
302363ef89fSMarc Zyngier {
303363ef89fSMarc Zyngier 	struct page *page = pud_page(pud);
304363ef89fSMarc Zyngier 	kvm_flush_dcache_to_poc(page_address(page), PUD_SIZE);
305363ef89fSMarc Zyngier }
306363ef89fSMarc Zyngier 
3072077be67SLaura Abbott #define kvm_virt_to_phys(x)		__pa_symbol(x)
30837c43753SMarc Zyngier 
3093c1e7165SMarc Zyngier void kvm_set_way_flush(struct kvm_vcpu *vcpu);
3103c1e7165SMarc Zyngier void kvm_toggle_cache(struct kvm_vcpu *vcpu, bool was_enabled);
3119d218a1fSMarc Zyngier 
312e4c5a685SArd Biesheuvel static inline bool __kvm_cpu_uses_extended_idmap(void)
313e4c5a685SArd Biesheuvel {
314fa2a8445SKristina Martsenko 	return __cpu_uses_extended_idmap_level();
315fa2a8445SKristina Martsenko }
316fa2a8445SKristina Martsenko 
317fa2a8445SKristina Martsenko static inline unsigned long __kvm_idmap_ptrs_per_pgd(void)
318fa2a8445SKristina Martsenko {
319fa2a8445SKristina Martsenko 	return idmap_ptrs_per_pgd;
320e4c5a685SArd Biesheuvel }
321e4c5a685SArd Biesheuvel 
32219338304SKristina Martsenko /*
32319338304SKristina Martsenko  * Can't use pgd_populate here, because the extended idmap adds an extra level
32419338304SKristina Martsenko  * above CONFIG_PGTABLE_LEVELS (which is 2 or 3 if we're using the extended
32519338304SKristina Martsenko  * idmap), and pgd_populate is only available if CONFIG_PGTABLE_LEVELS = 4.
32619338304SKristina Martsenko  */
327e4c5a685SArd Biesheuvel static inline void __kvm_extend_hypmap(pgd_t *boot_hyp_pgd,
328e4c5a685SArd Biesheuvel 				       pgd_t *hyp_pgd,
329e4c5a685SArd Biesheuvel 				       pgd_t *merged_hyp_pgd,
330e4c5a685SArd Biesheuvel 				       unsigned long hyp_idmap_start)
331e4c5a685SArd Biesheuvel {
332e4c5a685SArd Biesheuvel 	int idmap_idx;
33375387b92SKristina Martsenko 	u64 pgd_addr;
334e4c5a685SArd Biesheuvel 
335e4c5a685SArd Biesheuvel 	/*
336e4c5a685SArd Biesheuvel 	 * Use the first entry to access the HYP mappings. It is
337e4c5a685SArd Biesheuvel 	 * guaranteed to be free, otherwise we wouldn't use an
338e4c5a685SArd Biesheuvel 	 * extended idmap.
339e4c5a685SArd Biesheuvel 	 */
340e4c5a685SArd Biesheuvel 	VM_BUG_ON(pgd_val(merged_hyp_pgd[0]));
34175387b92SKristina Martsenko 	pgd_addr = __phys_to_pgd_val(__pa(hyp_pgd));
34275387b92SKristina Martsenko 	merged_hyp_pgd[0] = __pgd(pgd_addr | PMD_TYPE_TABLE);
343e4c5a685SArd Biesheuvel 
344e4c5a685SArd Biesheuvel 	/*
345e4c5a685SArd Biesheuvel 	 * Create another extended level entry that points to the boot HYP map,
346e4c5a685SArd Biesheuvel 	 * which contains an ID mapping of the HYP init code. We essentially
347e4c5a685SArd Biesheuvel 	 * merge the boot and runtime HYP maps by doing so, but they don't
348e4c5a685SArd Biesheuvel 	 * overlap anyway, so this is fine.
349e4c5a685SArd Biesheuvel 	 */
350e4c5a685SArd Biesheuvel 	idmap_idx = hyp_idmap_start >> VA_BITS;
351e4c5a685SArd Biesheuvel 	VM_BUG_ON(pgd_val(merged_hyp_pgd[idmap_idx]));
35275387b92SKristina Martsenko 	pgd_addr = __phys_to_pgd_val(__pa(boot_hyp_pgd));
35375387b92SKristina Martsenko 	merged_hyp_pgd[idmap_idx] = __pgd(pgd_addr | PMD_TYPE_TABLE);
354e4c5a685SArd Biesheuvel }
355e4c5a685SArd Biesheuvel 
35620475f78SVladimir Murzin static inline unsigned int kvm_get_vmid_bits(void)
35720475f78SVladimir Murzin {
35846823dd1SDave Martin 	int reg = read_sanitised_ftr_reg(SYS_ID_AA64MMFR1_EL1);
35920475f78SVladimir Murzin 
36028c5dcb2SSuzuki K Poulose 	return (cpuid_feature_extract_unsigned_field(reg, ID_AA64MMFR1_VMIDBITS_SHIFT) == 2) ? 16 : 8;
36120475f78SVladimir Murzin }
36220475f78SVladimir Murzin 
3636840bdd7SMarc Zyngier #ifdef CONFIG_HARDEN_BRANCH_PREDICTOR
3646840bdd7SMarc Zyngier #include <asm/mmu.h>
3656840bdd7SMarc Zyngier 
3666840bdd7SMarc Zyngier static inline void *kvm_get_hyp_vector(void)
3676840bdd7SMarc Zyngier {
3686840bdd7SMarc Zyngier 	struct bp_hardening_data *data = arm64_get_bp_hardening_data();
3696840bdd7SMarc Zyngier 	void *vect = kvm_ksym_ref(__kvm_hyp_vector);
3706840bdd7SMarc Zyngier 
3716840bdd7SMarc Zyngier 	if (data->fn) {
3726840bdd7SMarc Zyngier 		vect = __bp_harden_hyp_vecs_start +
3736840bdd7SMarc Zyngier 		       data->hyp_vectors_slot * SZ_2K;
3746840bdd7SMarc Zyngier 
3756840bdd7SMarc Zyngier 		if (!has_vhe())
3766840bdd7SMarc Zyngier 			vect = lm_alias(vect);
3776840bdd7SMarc Zyngier 	}
3786840bdd7SMarc Zyngier 
3793c5e8123SMarc Zyngier 	vect = kern_hyp_va(vect);
3806840bdd7SMarc Zyngier 	return vect;
3816840bdd7SMarc Zyngier }
3826840bdd7SMarc Zyngier 
3836840bdd7SMarc Zyngier static inline int kvm_map_vectors(void)
3846840bdd7SMarc Zyngier {
3854340ba80SMarc Zyngier 	return 0;
3866840bdd7SMarc Zyngier }
3876840bdd7SMarc Zyngier 
3886840bdd7SMarc Zyngier #else
3896840bdd7SMarc Zyngier static inline void *kvm_get_hyp_vector(void)
3906840bdd7SMarc Zyngier {
3913c5e8123SMarc Zyngier 	return kern_hyp_va(kvm_ksym_ref(__kvm_hyp_vector));
3926840bdd7SMarc Zyngier }
3936840bdd7SMarc Zyngier 
3946840bdd7SMarc Zyngier static inline int kvm_map_vectors(void)
3956840bdd7SMarc Zyngier {
3966840bdd7SMarc Zyngier 	return 0;
3976840bdd7SMarc Zyngier }
3986840bdd7SMarc Zyngier #endif
3996840bdd7SMarc Zyngier 
400529c4b05SKristina Martsenko #define kvm_phys_to_vttbr(addr)		phys_to_ttbr(addr)
401529c4b05SKristina Martsenko 
40237c43753SMarc Zyngier #endif /* __ASSEMBLY__ */
40337c43753SMarc Zyngier #endif /* __ARM64_KVM_MMU_H__ */
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