xref: /openbmc/linux/arch/arm64/kvm/hyp/pgtable.c (revision 1760371b277718062211fc7eb6f3042c5051c1a5)
1b1e57de6SWill Deacon // SPDX-License-Identifier: GPL-2.0-only
2b1e57de6SWill Deacon /*
3b1e57de6SWill Deacon  * Stand-alone page-table allocator for hyp stage-1 and guest stage-2.
4b1e57de6SWill Deacon  * No bombay mix was harmed in the writing of this file.
5b1e57de6SWill Deacon  *
6b1e57de6SWill Deacon  * Copyright (C) 2020 Google LLC
7b1e57de6SWill Deacon  * Author: Will Deacon <will@kernel.org>
8b1e57de6SWill Deacon  */
9b1e57de6SWill Deacon 
10b1e57de6SWill Deacon #include <linux/bitfield.h>
11b1e57de6SWill Deacon #include <asm/kvm_pgtable.h>
12bcb25a2bSQuentin Perret #include <asm/stage2_pgtable.h>
13b1e57de6SWill Deacon 
14b1e57de6SWill Deacon 
15b1e57de6SWill Deacon #define KVM_PTE_TYPE			BIT(1)
16b1e57de6SWill Deacon #define KVM_PTE_TYPE_BLOCK		0
17b1e57de6SWill Deacon #define KVM_PTE_TYPE_PAGE		1
18b1e57de6SWill Deacon #define KVM_PTE_TYPE_TABLE		1
19b1e57de6SWill Deacon 
20b1e57de6SWill Deacon #define KVM_PTE_LEAF_ATTR_LO		GENMASK(11, 2)
21b1e57de6SWill Deacon 
22bb0e92cbSWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S1_ATTRIDX	GENMASK(4, 2)
23bb0e92cbSWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S1_AP	GENMASK(7, 6)
246537565fSMarc Zyngier #define KVM_PTE_LEAF_ATTR_LO_S1_AP_RO		\
256537565fSMarc Zyngier 	({ cpus_have_final_cap(ARM64_KVM_HVHE) ? 2 : 3; })
266537565fSMarc Zyngier #define KVM_PTE_LEAF_ATTR_LO_S1_AP_RW		\
276537565fSMarc Zyngier 	({ cpus_have_final_cap(ARM64_KVM_HVHE) ? 0 : 1; })
28bb0e92cbSWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S1_SH	GENMASK(9, 8)
29bb0e92cbSWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S1_SH_IS	3
30bb0e92cbSWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S1_AF	BIT(10)
31bb0e92cbSWill Deacon 
326d9d2115SWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S2_MEMATTR	GENMASK(5, 2)
336d9d2115SWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S2_S2AP_R	BIT(6)
346d9d2115SWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S2_S2AP_W	BIT(7)
356d9d2115SWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S2_SH	GENMASK(9, 8)
366d9d2115SWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S2_SH_IS	3
376d9d2115SWill Deacon #define KVM_PTE_LEAF_ATTR_LO_S2_AF	BIT(10)
386d9d2115SWill Deacon 
39b53d4a27SMostafa Saleh #define KVM_PTE_LEAF_ATTR_HI		GENMASK(63, 50)
40b1e57de6SWill Deacon 
41178cac08SQuentin Perret #define KVM_PTE_LEAF_ATTR_HI_SW		GENMASK(58, 55)
42178cac08SQuentin Perret 
43bb0e92cbSWill Deacon #define KVM_PTE_LEAF_ATTR_HI_S1_XN	BIT(54)
44bb0e92cbSWill Deacon 
456d9d2115SWill Deacon #define KVM_PTE_LEAF_ATTR_HI_S2_XN	BIT(54)
466d9d2115SWill Deacon 
47b53d4a27SMostafa Saleh #define KVM_PTE_LEAF_ATTR_HI_S1_GP	BIT(50)
48b53d4a27SMostafa Saleh 
49694d071fSYanan Wang #define KVM_PTE_LEAF_ATTR_S2_PERMS	(KVM_PTE_LEAF_ATTR_LO_S2_S2AP_R | \
50694d071fSYanan Wang 					 KVM_PTE_LEAF_ATTR_LO_S2_S2AP_W | \
51694d071fSYanan Wang 					 KVM_PTE_LEAF_ATTR_HI_S2_XN)
52694d071fSYanan Wang 
538a0282c6SQuentin Perret #define KVM_INVALID_PTE_OWNER_MASK	GENMASK(9, 2)
54807923e0SQuentin Perret #define KVM_MAX_OWNER_ID		1
55807923e0SQuentin Perret 
560ab12f35SOliver Upton /*
570ab12f35SOliver Upton  * Used to indicate a pte for which a 'break-before-make' sequence is in
580ab12f35SOliver Upton  * progress.
590ab12f35SOliver Upton  */
600ab12f35SOliver Upton #define KVM_INVALID_PTE_LOCKED		BIT(10)
610ab12f35SOliver Upton 
62b1e57de6SWill Deacon struct kvm_pgtable_walk_data {
63b1e57de6SWill Deacon 	struct kvm_pgtable_walker	*walker;
64b1e57de6SWill Deacon 
651ea24415SMarc Zyngier 	const u64			start;
66b1e57de6SWill Deacon 	u64				addr;
671ea24415SMarc Zyngier 	const u64			end;
68b1e57de6SWill Deacon };
69b1e57de6SWill Deacon 
kvm_pgtable_walk_skip_bbm_tlbi(const struct kvm_pgtable_visit_ctx * ctx)7002f10845SRicardo Koller static bool kvm_pgtable_walk_skip_bbm_tlbi(const struct kvm_pgtable_visit_ctx *ctx)
7102f10845SRicardo Koller {
7202f10845SRicardo Koller 	return unlikely(ctx->flags & KVM_PGTABLE_WALK_SKIP_BBM_TLBI);
7302f10845SRicardo Koller }
7402f10845SRicardo Koller 
kvm_pgtable_walk_skip_cmo(const struct kvm_pgtable_visit_ctx * ctx)7502f10845SRicardo Koller static bool kvm_pgtable_walk_skip_cmo(const struct kvm_pgtable_visit_ctx *ctx)
7602f10845SRicardo Koller {
7702f10845SRicardo Koller 	return unlikely(ctx->flags & KVM_PGTABLE_WALK_SKIP_CMO);
7802f10845SRicardo Koller }
7902f10845SRicardo Koller 
kvm_phys_is_valid(u64 phys)80807923e0SQuentin Perret static bool kvm_phys_is_valid(u64 phys)
81807923e0SQuentin Perret {
822d987e64SMark Brown 	return phys < BIT(id_aa64mmfr0_parange_to_phys_shift(ID_AA64MMFR0_EL1_PARANGE_MAX));
83807923e0SQuentin Perret }
84807923e0SQuentin Perret 
kvm_block_mapping_supported(const struct kvm_pgtable_visit_ctx * ctx,u64 phys)85dfc7a776SOliver Upton static bool kvm_block_mapping_supported(const struct kvm_pgtable_visit_ctx *ctx, u64 phys)
862fcb3a59SQuentin Perret {
87dfc7a776SOliver Upton 	u64 granule = kvm_granule_size(ctx->level);
882fcb3a59SQuentin Perret 
89dfc7a776SOliver Upton 	if (!kvm_level_supports_block_mapping(ctx->level))
90b1e57de6SWill Deacon 		return false;
91b1e57de6SWill Deacon 
92dfc7a776SOliver Upton 	if (granule > (ctx->end - ctx->addr))
93b1e57de6SWill Deacon 		return false;
94b1e57de6SWill Deacon 
95807923e0SQuentin Perret 	if (kvm_phys_is_valid(phys) && !IS_ALIGNED(phys, granule))
96807923e0SQuentin Perret 		return false;
97807923e0SQuentin Perret 
98dfc7a776SOliver Upton 	return IS_ALIGNED(ctx->addr, granule);
99b1e57de6SWill Deacon }
100b1e57de6SWill Deacon 
kvm_pgtable_idx(struct kvm_pgtable_walk_data * data,u32 level)101b1e57de6SWill Deacon static u32 kvm_pgtable_idx(struct kvm_pgtable_walk_data *data, u32 level)
102b1e57de6SWill Deacon {
103b1e57de6SWill Deacon 	u64 shift = kvm_granule_shift(level);
104b1e57de6SWill Deacon 	u64 mask = BIT(PAGE_SHIFT - 3) - 1;
105b1e57de6SWill Deacon 
106b1e57de6SWill Deacon 	return (data->addr >> shift) & mask;
107b1e57de6SWill Deacon }
108b1e57de6SWill Deacon 
kvm_pgd_page_idx(struct kvm_pgtable * pgt,u64 addr)109fa002e8eSOliver Upton static u32 kvm_pgd_page_idx(struct kvm_pgtable *pgt, u64 addr)
110b1e57de6SWill Deacon {
111b1e57de6SWill Deacon 	u64 shift = kvm_granule_shift(pgt->start_level - 1); /* May underflow */
112b1e57de6SWill Deacon 	u64 mask = BIT(pgt->ia_bits) - 1;
113b1e57de6SWill Deacon 
114b1e57de6SWill Deacon 	return (addr & mask) >> shift;
115b1e57de6SWill Deacon }
116b1e57de6SWill Deacon 
kvm_pgd_pages(u32 ia_bits,u32 start_level)117b1e57de6SWill Deacon static u32 kvm_pgd_pages(u32 ia_bits, u32 start_level)
118b1e57de6SWill Deacon {
119b1e57de6SWill Deacon 	struct kvm_pgtable pgt = {
120b1e57de6SWill Deacon 		.ia_bits	= ia_bits,
121b1e57de6SWill Deacon 		.start_level	= start_level,
122b1e57de6SWill Deacon 	};
123b1e57de6SWill Deacon 
124fa002e8eSOliver Upton 	return kvm_pgd_page_idx(&pgt, -1ULL) + 1;
125b1e57de6SWill Deacon }
126b1e57de6SWill Deacon 
kvm_pte_table(kvm_pte_t pte,u32 level)127b1e57de6SWill Deacon static bool kvm_pte_table(kvm_pte_t pte, u32 level)
128b1e57de6SWill Deacon {
129b1e57de6SWill Deacon 	if (level == KVM_PGTABLE_MAX_LEVELS - 1)
130b1e57de6SWill Deacon 		return false;
131b1e57de6SWill Deacon 
132b1e57de6SWill Deacon 	if (!kvm_pte_valid(pte))
133b1e57de6SWill Deacon 		return false;
134b1e57de6SWill Deacon 
135b1e57de6SWill Deacon 	return FIELD_GET(KVM_PTE_TYPE, pte) == KVM_PTE_TYPE_TABLE;
136b1e57de6SWill Deacon }
137b1e57de6SWill Deacon 
kvm_pte_follow(kvm_pte_t pte,struct kvm_pgtable_mm_ops * mm_ops)1387aef0cbcSQuentin Perret static kvm_pte_t *kvm_pte_follow(kvm_pte_t pte, struct kvm_pgtable_mm_ops *mm_ops)
139b1e57de6SWill Deacon {
1407aef0cbcSQuentin Perret 	return mm_ops->phys_to_virt(kvm_pte_to_phys(pte));
141b1e57de6SWill Deacon }
142b1e57de6SWill Deacon 
kvm_clear_pte(kvm_pte_t * ptep)143f60ca2f9SQuentin Perret static void kvm_clear_pte(kvm_pte_t *ptep)
144b1e57de6SWill Deacon {
145f60ca2f9SQuentin Perret 	WRITE_ONCE(*ptep, 0);
146b1e57de6SWill Deacon }
147b1e57de6SWill Deacon 
kvm_init_table_pte(kvm_pte_t * childp,struct kvm_pgtable_mm_ops * mm_ops)148331aa3a0SOliver Upton static kvm_pte_t kvm_init_table_pte(kvm_pte_t *childp, struct kvm_pgtable_mm_ops *mm_ops)
149b1e57de6SWill Deacon {
150331aa3a0SOliver Upton 	kvm_pte_t pte = kvm_phys_to_pte(mm_ops->virt_to_phys(childp));
151b1e57de6SWill Deacon 
152b1e57de6SWill Deacon 	pte |= FIELD_PREP(KVM_PTE_TYPE, KVM_PTE_TYPE_TABLE);
153b1e57de6SWill Deacon 	pte |= KVM_PTE_VALID;
154331aa3a0SOliver Upton 	return pte;
155b1e57de6SWill Deacon }
156b1e57de6SWill Deacon 
kvm_init_valid_leaf_pte(u64 pa,kvm_pte_t attr,u32 level)1578ed80051SYanan Wang static kvm_pte_t kvm_init_valid_leaf_pte(u64 pa, kvm_pte_t attr, u32 level)
158b1e57de6SWill Deacon {
1598ed80051SYanan Wang 	kvm_pte_t pte = kvm_phys_to_pte(pa);
160b1e57de6SWill Deacon 	u64 type = (level == KVM_PGTABLE_MAX_LEVELS - 1) ? KVM_PTE_TYPE_PAGE :
161b1e57de6SWill Deacon 							   KVM_PTE_TYPE_BLOCK;
162b1e57de6SWill Deacon 
163b1e57de6SWill Deacon 	pte |= attr & (KVM_PTE_LEAF_ATTR_LO | KVM_PTE_LEAF_ATTR_HI);
164b1e57de6SWill Deacon 	pte |= FIELD_PREP(KVM_PTE_TYPE, type);
165b1e57de6SWill Deacon 	pte |= KVM_PTE_VALID;
166b1e57de6SWill Deacon 
1678ed80051SYanan Wang 	return pte;
168b1e57de6SWill Deacon }
169b1e57de6SWill Deacon 
kvm_init_invalid_leaf_owner(u8 owner_id)170807923e0SQuentin Perret static kvm_pte_t kvm_init_invalid_leaf_owner(u8 owner_id)
171807923e0SQuentin Perret {
172807923e0SQuentin Perret 	return FIELD_PREP(KVM_INVALID_PTE_OWNER_MASK, owner_id);
173807923e0SQuentin Perret }
174807923e0SQuentin Perret 
kvm_pgtable_visitor_cb(struct kvm_pgtable_walk_data * data,const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)175dfc7a776SOliver Upton static int kvm_pgtable_visitor_cb(struct kvm_pgtable_walk_data *data,
176dfc7a776SOliver Upton 				  const struct kvm_pgtable_visit_ctx *ctx,
177dfc7a776SOliver Upton 				  enum kvm_pgtable_walk_flags visit)
178b1e57de6SWill Deacon {
179b1e57de6SWill Deacon 	struct kvm_pgtable_walker *walker = data->walker;
180c3119ae4SOliver Upton 
181c3119ae4SOliver Upton 	/* Ensure the appropriate lock is held (e.g. RCU lock for stage-2 MMU) */
182c3119ae4SOliver Upton 	WARN_ON_ONCE(kvm_pgtable_walk_shared(ctx) && !kvm_pgtable_walk_lock_held());
183dfc7a776SOliver Upton 	return walker->cb(ctx, visit);
184b1e57de6SWill Deacon }
185b1e57de6SWill Deacon 
kvm_pgtable_walk_continue(const struct kvm_pgtable_walker * walker,int r)186ddcadb29SOliver Upton static bool kvm_pgtable_walk_continue(const struct kvm_pgtable_walker *walker,
187ddcadb29SOliver Upton 				      int r)
188ddcadb29SOliver Upton {
189ddcadb29SOliver Upton 	/*
190ddcadb29SOliver Upton 	 * Visitor callbacks return EAGAIN when the conditions that led to a
191ddcadb29SOliver Upton 	 * fault are no longer reflected in the page tables due to a race to
192ddcadb29SOliver Upton 	 * update a PTE. In the context of a fault handler this is interpreted
193ddcadb29SOliver Upton 	 * as a signal to retry guest execution.
194ddcadb29SOliver Upton 	 *
195ddcadb29SOliver Upton 	 * Ignore the return code altogether for walkers outside a fault handler
196ddcadb29SOliver Upton 	 * (e.g. write protecting a range of memory) and chug along with the
197ddcadb29SOliver Upton 	 * page table walk.
198ddcadb29SOliver Upton 	 */
199ddcadb29SOliver Upton 	if (r == -EAGAIN)
200ddcadb29SOliver Upton 		return !(walker->flags & KVM_PGTABLE_WALK_HANDLE_FAULT);
201ddcadb29SOliver Upton 
202ddcadb29SOliver Upton 	return !r;
203ddcadb29SOliver Upton }
204ddcadb29SOliver Upton 
205b1e57de6SWill Deacon static int __kvm_pgtable_walk(struct kvm_pgtable_walk_data *data,
2066b91b8f9SOliver Upton 			      struct kvm_pgtable_mm_ops *mm_ops, kvm_pteref_t pgtable, u32 level);
207b1e57de6SWill Deacon 
__kvm_pgtable_visit(struct kvm_pgtable_walk_data * data,struct kvm_pgtable_mm_ops * mm_ops,kvm_pteref_t pteref,u32 level)208b1e57de6SWill Deacon static inline int __kvm_pgtable_visit(struct kvm_pgtable_walk_data *data,
2092a611c7fSOliver Upton 				      struct kvm_pgtable_mm_ops *mm_ops,
2106b91b8f9SOliver Upton 				      kvm_pteref_t pteref, u32 level)
211b1e57de6SWill Deacon {
212dfc7a776SOliver Upton 	enum kvm_pgtable_walk_flags flags = data->walker->flags;
2133a5154c7SOliver Upton 	kvm_pte_t *ptep = kvm_dereference_pteref(data->walker, pteref);
214dfc7a776SOliver Upton 	struct kvm_pgtable_visit_ctx ctx = {
215dfc7a776SOliver Upton 		.ptep	= ptep,
21683844a23SOliver Upton 		.old	= READ_ONCE(*ptep),
217dfc7a776SOliver Upton 		.arg	= data->walker->arg,
2182a611c7fSOliver Upton 		.mm_ops	= mm_ops,
2191f0f4a2eSOliver Upton 		.start	= data->start,
220dfc7a776SOliver Upton 		.addr	= data->addr,
221dfc7a776SOliver Upton 		.end	= data->end,
222dfc7a776SOliver Upton 		.level	= level,
223dfc7a776SOliver Upton 		.flags	= flags,
224dfc7a776SOliver Upton 	};
225b1e57de6SWill Deacon 	int ret = 0;
226a9f0e3d5SFuad Tabba 	bool reload = false;
2276b91b8f9SOliver Upton 	kvm_pteref_t childp;
22883844a23SOliver Upton 	bool table = kvm_pte_table(ctx.old, level);
229b1e57de6SWill Deacon 
230a9f0e3d5SFuad Tabba 	if (table && (ctx.flags & KVM_PGTABLE_WALK_TABLE_PRE)) {
231dfc7a776SOliver Upton 		ret = kvm_pgtable_visitor_cb(data, &ctx, KVM_PGTABLE_WALK_TABLE_PRE);
232a9f0e3d5SFuad Tabba 		reload = true;
233a9f0e3d5SFuad Tabba 	}
234b1e57de6SWill Deacon 
235dfc7a776SOliver Upton 	if (!table && (ctx.flags & KVM_PGTABLE_WALK_LEAF)) {
236dfc7a776SOliver Upton 		ret = kvm_pgtable_visitor_cb(data, &ctx, KVM_PGTABLE_WALK_LEAF);
237a9f0e3d5SFuad Tabba 		reload = true;
238a9f0e3d5SFuad Tabba 	}
239a9f0e3d5SFuad Tabba 
240a9f0e3d5SFuad Tabba 	/*
241a9f0e3d5SFuad Tabba 	 * Reload the page table after invoking the walker callback for leaf
242a9f0e3d5SFuad Tabba 	 * entries or after pre-order traversal, to allow the walker to descend
243a9f0e3d5SFuad Tabba 	 * into a newly installed or replaced table.
244a9f0e3d5SFuad Tabba 	 */
245a9f0e3d5SFuad Tabba 	if (reload) {
24683844a23SOliver Upton 		ctx.old = READ_ONCE(*ptep);
24783844a23SOliver Upton 		table = kvm_pte_table(ctx.old, level);
248b1e57de6SWill Deacon 	}
249b1e57de6SWill Deacon 
250ddcadb29SOliver Upton 	if (!kvm_pgtable_walk_continue(data->walker, ret))
251b1e57de6SWill Deacon 		goto out;
252b1e57de6SWill Deacon 
253b1e57de6SWill Deacon 	if (!table) {
254357ad203SJia He 		data->addr = ALIGN_DOWN(data->addr, kvm_granule_size(level));
255b1e57de6SWill Deacon 		data->addr += kvm_granule_size(level);
256b1e57de6SWill Deacon 		goto out;
257b1e57de6SWill Deacon 	}
258b1e57de6SWill Deacon 
2596b91b8f9SOliver Upton 	childp = (kvm_pteref_t)kvm_pte_follow(ctx.old, mm_ops);
2602a611c7fSOliver Upton 	ret = __kvm_pgtable_walk(data, mm_ops, childp, level + 1);
261ddcadb29SOliver Upton 	if (!kvm_pgtable_walk_continue(data->walker, ret))
262b1e57de6SWill Deacon 		goto out;
263b1e57de6SWill Deacon 
264dfc7a776SOliver Upton 	if (ctx.flags & KVM_PGTABLE_WALK_TABLE_POST)
265dfc7a776SOliver Upton 		ret = kvm_pgtable_visitor_cb(data, &ctx, KVM_PGTABLE_WALK_TABLE_POST);
266b1e57de6SWill Deacon 
267b1e57de6SWill Deacon out:
268ddcadb29SOliver Upton 	if (kvm_pgtable_walk_continue(data->walker, ret))
269ddcadb29SOliver Upton 		return 0;
270ddcadb29SOliver Upton 
271b1e57de6SWill Deacon 	return ret;
272b1e57de6SWill Deacon }
273b1e57de6SWill Deacon 
__kvm_pgtable_walk(struct kvm_pgtable_walk_data * data,struct kvm_pgtable_mm_ops * mm_ops,kvm_pteref_t pgtable,u32 level)274b1e57de6SWill Deacon static int __kvm_pgtable_walk(struct kvm_pgtable_walk_data *data,
2756b91b8f9SOliver Upton 			      struct kvm_pgtable_mm_ops *mm_ops, kvm_pteref_t pgtable, u32 level)
276b1e57de6SWill Deacon {
277b1e57de6SWill Deacon 	u32 idx;
278b1e57de6SWill Deacon 	int ret = 0;
279b1e57de6SWill Deacon 
280b1e57de6SWill Deacon 	if (WARN_ON_ONCE(level >= KVM_PGTABLE_MAX_LEVELS))
281b1e57de6SWill Deacon 		return -EINVAL;
282b1e57de6SWill Deacon 
283b1e57de6SWill Deacon 	for (idx = kvm_pgtable_idx(data, level); idx < PTRS_PER_PTE; ++idx) {
2846b91b8f9SOliver Upton 		kvm_pteref_t pteref = &pgtable[idx];
285b1e57de6SWill Deacon 
286b1e57de6SWill Deacon 		if (data->addr >= data->end)
287b1e57de6SWill Deacon 			break;
288b1e57de6SWill Deacon 
2896b91b8f9SOliver Upton 		ret = __kvm_pgtable_visit(data, mm_ops, pteref, level);
290b1e57de6SWill Deacon 		if (ret)
291b1e57de6SWill Deacon 			break;
292b1e57de6SWill Deacon 	}
293b1e57de6SWill Deacon 
294b1e57de6SWill Deacon 	return ret;
295b1e57de6SWill Deacon }
296b1e57de6SWill Deacon 
_kvm_pgtable_walk(struct kvm_pgtable * pgt,struct kvm_pgtable_walk_data * data)297fa002e8eSOliver Upton static int _kvm_pgtable_walk(struct kvm_pgtable *pgt, struct kvm_pgtable_walk_data *data)
298b1e57de6SWill Deacon {
299b1e57de6SWill Deacon 	u32 idx;
300b1e57de6SWill Deacon 	int ret = 0;
301b1e57de6SWill Deacon 	u64 limit = BIT(pgt->ia_bits);
302b1e57de6SWill Deacon 
303b1e57de6SWill Deacon 	if (data->addr > limit || data->end > limit)
304b1e57de6SWill Deacon 		return -ERANGE;
305b1e57de6SWill Deacon 
306b1e57de6SWill Deacon 	if (!pgt->pgd)
307b1e57de6SWill Deacon 		return -EINVAL;
308b1e57de6SWill Deacon 
309fa002e8eSOliver Upton 	for (idx = kvm_pgd_page_idx(pgt, data->addr); data->addr < data->end; ++idx) {
3106b91b8f9SOliver Upton 		kvm_pteref_t pteref = &pgt->pgd[idx * PTRS_PER_PTE];
311b1e57de6SWill Deacon 
3126b91b8f9SOliver Upton 		ret = __kvm_pgtable_walk(data, pgt->mm_ops, pteref, pgt->start_level);
313b1e57de6SWill Deacon 		if (ret)
314b1e57de6SWill Deacon 			break;
315b1e57de6SWill Deacon 	}
316b1e57de6SWill Deacon 
317b1e57de6SWill Deacon 	return ret;
318b1e57de6SWill Deacon }
319b1e57de6SWill Deacon 
kvm_pgtable_walk(struct kvm_pgtable * pgt,u64 addr,u64 size,struct kvm_pgtable_walker * walker)320b1e57de6SWill Deacon int kvm_pgtable_walk(struct kvm_pgtable *pgt, u64 addr, u64 size,
321b1e57de6SWill Deacon 		     struct kvm_pgtable_walker *walker)
322b1e57de6SWill Deacon {
323b1e57de6SWill Deacon 	struct kvm_pgtable_walk_data walk_data = {
3241f0f4a2eSOliver Upton 		.start	= ALIGN_DOWN(addr, PAGE_SIZE),
325b1e57de6SWill Deacon 		.addr	= ALIGN_DOWN(addr, PAGE_SIZE),
326b1e57de6SWill Deacon 		.end	= PAGE_ALIGN(walk_data.addr + size),
327b1e57de6SWill Deacon 		.walker	= walker,
328b1e57de6SWill Deacon 	};
329c3119ae4SOliver Upton 	int r;
330b1e57de6SWill Deacon 
3315e806c58SOliver Upton 	r = kvm_pgtable_walk_begin(walker);
3325e806c58SOliver Upton 	if (r)
3335e806c58SOliver Upton 		return r;
3345e806c58SOliver Upton 
335c3119ae4SOliver Upton 	r = _kvm_pgtable_walk(pgt, &walk_data);
336b7833bf2SOliver Upton 	kvm_pgtable_walk_end(walker);
337c3119ae4SOliver Upton 
338c3119ae4SOliver Upton 	return r;
339b1e57de6SWill Deacon }
340bb0e92cbSWill Deacon 
34163db506eSMarc Zyngier struct leaf_walk_data {
34263db506eSMarc Zyngier 	kvm_pte_t	pte;
34363db506eSMarc Zyngier 	u32		level;
34463db506eSMarc Zyngier };
34563db506eSMarc Zyngier 
leaf_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)346dfc7a776SOliver Upton static int leaf_walker(const struct kvm_pgtable_visit_ctx *ctx,
347dfc7a776SOliver Upton 		       enum kvm_pgtable_walk_flags visit)
34863db506eSMarc Zyngier {
349dfc7a776SOliver Upton 	struct leaf_walk_data *data = ctx->arg;
35063db506eSMarc Zyngier 
35183844a23SOliver Upton 	data->pte   = ctx->old;
352dfc7a776SOliver Upton 	data->level = ctx->level;
35363db506eSMarc Zyngier 
35463db506eSMarc Zyngier 	return 0;
35563db506eSMarc Zyngier }
35663db506eSMarc Zyngier 
kvm_pgtable_get_leaf(struct kvm_pgtable * pgt,u64 addr,kvm_pte_t * ptep,u32 * level)35763db506eSMarc Zyngier int kvm_pgtable_get_leaf(struct kvm_pgtable *pgt, u64 addr,
35863db506eSMarc Zyngier 			 kvm_pte_t *ptep, u32 *level)
35963db506eSMarc Zyngier {
36063db506eSMarc Zyngier 	struct leaf_walk_data data;
36163db506eSMarc Zyngier 	struct kvm_pgtable_walker walker = {
36263db506eSMarc Zyngier 		.cb	= leaf_walker,
36363db506eSMarc Zyngier 		.flags	= KVM_PGTABLE_WALK_LEAF,
36463db506eSMarc Zyngier 		.arg	= &data,
36563db506eSMarc Zyngier 	};
36663db506eSMarc Zyngier 	int ret;
36763db506eSMarc Zyngier 
36863db506eSMarc Zyngier 	ret = kvm_pgtable_walk(pgt, ALIGN_DOWN(addr, PAGE_SIZE),
36963db506eSMarc Zyngier 			       PAGE_SIZE, &walker);
37063db506eSMarc Zyngier 	if (!ret) {
37163db506eSMarc Zyngier 		if (ptep)
37263db506eSMarc Zyngier 			*ptep  = data.pte;
37363db506eSMarc Zyngier 		if (level)
37463db506eSMarc Zyngier 			*level = data.level;
37563db506eSMarc Zyngier 	}
37663db506eSMarc Zyngier 
37763db506eSMarc Zyngier 	return ret;
37863db506eSMarc Zyngier }
37963db506eSMarc Zyngier 
380bb0e92cbSWill Deacon struct hyp_map_data {
3811ea24415SMarc Zyngier 	const u64			phys;
382bb0e92cbSWill Deacon 	kvm_pte_t			attr;
383bb0e92cbSWill Deacon };
384bb0e92cbSWill Deacon 
hyp_set_prot_attr(enum kvm_pgtable_prot prot,kvm_pte_t * ptep)3853fab8234SQuentin Perret static int hyp_set_prot_attr(enum kvm_pgtable_prot prot, kvm_pte_t *ptep)
386bb0e92cbSWill Deacon {
387bb0e92cbSWill Deacon 	bool device = prot & KVM_PGTABLE_PROT_DEVICE;
388bb0e92cbSWill Deacon 	u32 mtype = device ? MT_DEVICE_nGnRE : MT_NORMAL;
389bb0e92cbSWill Deacon 	kvm_pte_t attr = FIELD_PREP(KVM_PTE_LEAF_ATTR_LO_S1_ATTRIDX, mtype);
390bb0e92cbSWill Deacon 	u32 sh = KVM_PTE_LEAF_ATTR_LO_S1_SH_IS;
391bb0e92cbSWill Deacon 	u32 ap = (prot & KVM_PGTABLE_PROT_W) ? KVM_PTE_LEAF_ATTR_LO_S1_AP_RW :
392bb0e92cbSWill Deacon 					       KVM_PTE_LEAF_ATTR_LO_S1_AP_RO;
393bb0e92cbSWill Deacon 
394bb0e92cbSWill Deacon 	if (!(prot & KVM_PGTABLE_PROT_R))
395bb0e92cbSWill Deacon 		return -EINVAL;
396bb0e92cbSWill Deacon 
397bb0e92cbSWill Deacon 	if (prot & KVM_PGTABLE_PROT_X) {
398bb0e92cbSWill Deacon 		if (prot & KVM_PGTABLE_PROT_W)
399bb0e92cbSWill Deacon 			return -EINVAL;
400bb0e92cbSWill Deacon 
401bb0e92cbSWill Deacon 		if (device)
402bb0e92cbSWill Deacon 			return -EINVAL;
403b53d4a27SMostafa Saleh 
404b53d4a27SMostafa Saleh 		if (IS_ENABLED(CONFIG_ARM64_BTI_KERNEL) && system_supports_bti())
405b53d4a27SMostafa Saleh 			attr |= KVM_PTE_LEAF_ATTR_HI_S1_GP;
406bb0e92cbSWill Deacon 	} else {
407bb0e92cbSWill Deacon 		attr |= KVM_PTE_LEAF_ATTR_HI_S1_XN;
408bb0e92cbSWill Deacon 	}
409bb0e92cbSWill Deacon 
410bb0e92cbSWill Deacon 	attr |= FIELD_PREP(KVM_PTE_LEAF_ATTR_LO_S1_AP, ap);
411bb0e92cbSWill Deacon 	attr |= FIELD_PREP(KVM_PTE_LEAF_ATTR_LO_S1_SH, sh);
412bb0e92cbSWill Deacon 	attr |= KVM_PTE_LEAF_ATTR_LO_S1_AF;
4134505e9b6SQuentin Perret 	attr |= prot & KVM_PTE_LEAF_ATTR_HI_SW;
4143fab8234SQuentin Perret 	*ptep = attr;
4153fab8234SQuentin Perret 
416bb0e92cbSWill Deacon 	return 0;
417bb0e92cbSWill Deacon }
418bb0e92cbSWill Deacon 
kvm_pgtable_hyp_pte_prot(kvm_pte_t pte)4199024b3d0SQuentin Perret enum kvm_pgtable_prot kvm_pgtable_hyp_pte_prot(kvm_pte_t pte)
4209024b3d0SQuentin Perret {
4219024b3d0SQuentin Perret 	enum kvm_pgtable_prot prot = pte & KVM_PTE_LEAF_ATTR_HI_SW;
4229024b3d0SQuentin Perret 	u32 ap;
4239024b3d0SQuentin Perret 
4249024b3d0SQuentin Perret 	if (!kvm_pte_valid(pte))
4259024b3d0SQuentin Perret 		return prot;
4269024b3d0SQuentin Perret 
4279024b3d0SQuentin Perret 	if (!(pte & KVM_PTE_LEAF_ATTR_HI_S1_XN))
4289024b3d0SQuentin Perret 		prot |= KVM_PGTABLE_PROT_X;
4299024b3d0SQuentin Perret 
4309024b3d0SQuentin Perret 	ap = FIELD_GET(KVM_PTE_LEAF_ATTR_LO_S1_AP, pte);
4319024b3d0SQuentin Perret 	if (ap == KVM_PTE_LEAF_ATTR_LO_S1_AP_RO)
4329024b3d0SQuentin Perret 		prot |= KVM_PGTABLE_PROT_R;
4339024b3d0SQuentin Perret 	else if (ap == KVM_PTE_LEAF_ATTR_LO_S1_AP_RW)
4349024b3d0SQuentin Perret 		prot |= KVM_PGTABLE_PROT_RW;
4359024b3d0SQuentin Perret 
4369024b3d0SQuentin Perret 	return prot;
4379024b3d0SQuentin Perret }
4389024b3d0SQuentin Perret 
hyp_map_walker_try_leaf(const struct kvm_pgtable_visit_ctx * ctx,struct hyp_map_data * data)439dfc7a776SOliver Upton static bool hyp_map_walker_try_leaf(const struct kvm_pgtable_visit_ctx *ctx,
440dfc7a776SOliver Upton 				    struct hyp_map_data *data)
441bb0e92cbSWill Deacon {
44239bc95beSOliver Upton 	u64 phys = data->phys + (ctx->addr - ctx->start);
44383844a23SOliver Upton 	kvm_pte_t new;
444bb0e92cbSWill Deacon 
445dfc7a776SOliver Upton 	if (!kvm_block_mapping_supported(ctx, phys))
446bb0e92cbSWill Deacon 		return false;
447bb0e92cbSWill Deacon 
448dfc7a776SOliver Upton 	new = kvm_init_valid_leaf_pte(phys, data->attr, ctx->level);
44983844a23SOliver Upton 	if (ctx->old == new)
4502ea2ff91SQuentin Perret 		return true;
45183844a23SOliver Upton 	if (!kvm_pte_valid(ctx->old))
4522a611c7fSOliver Upton 		ctx->mm_ops->get_page(ctx->ptep);
45383844a23SOliver Upton 	else if (WARN_ON((ctx->old ^ new) & ~KVM_PTE_LEAF_ATTR_HI_SW))
4542ea2ff91SQuentin Perret 		return false;
4552ea2ff91SQuentin Perret 
456dfc7a776SOliver Upton 	smp_store_release(ctx->ptep, new);
457bb0e92cbSWill Deacon 	return true;
458bb0e92cbSWill Deacon }
459bb0e92cbSWill Deacon 
hyp_map_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)460dfc7a776SOliver Upton static int hyp_map_walker(const struct kvm_pgtable_visit_ctx *ctx,
461dfc7a776SOliver Upton 			  enum kvm_pgtable_walk_flags visit)
462bb0e92cbSWill Deacon {
463331aa3a0SOliver Upton 	kvm_pte_t *childp, new;
464dfc7a776SOliver Upton 	struct hyp_map_data *data = ctx->arg;
4652a611c7fSOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
466bb0e92cbSWill Deacon 
467dfc7a776SOliver Upton 	if (hyp_map_walker_try_leaf(ctx, data))
468bb0e92cbSWill Deacon 		return 0;
469bb0e92cbSWill Deacon 
470dfc7a776SOliver Upton 	if (WARN_ON(ctx->level == KVM_PGTABLE_MAX_LEVELS - 1))
471bb0e92cbSWill Deacon 		return -EINVAL;
472bb0e92cbSWill Deacon 
4737aef0cbcSQuentin Perret 	childp = (kvm_pte_t *)mm_ops->zalloc_page(NULL);
474bb0e92cbSWill Deacon 	if (!childp)
475bb0e92cbSWill Deacon 		return -ENOMEM;
476bb0e92cbSWill Deacon 
477331aa3a0SOliver Upton 	new = kvm_init_table_pte(childp, mm_ops);
478dfc7a776SOliver Upton 	mm_ops->get_page(ctx->ptep);
479331aa3a0SOliver Upton 	smp_store_release(ctx->ptep, new);
480331aa3a0SOliver Upton 
481bb0e92cbSWill Deacon 	return 0;
482bb0e92cbSWill Deacon }
483bb0e92cbSWill Deacon 
kvm_pgtable_hyp_map(struct kvm_pgtable * pgt,u64 addr,u64 size,u64 phys,enum kvm_pgtable_prot prot)484bb0e92cbSWill Deacon int kvm_pgtable_hyp_map(struct kvm_pgtable *pgt, u64 addr, u64 size, u64 phys,
485bb0e92cbSWill Deacon 			enum kvm_pgtable_prot prot)
486bb0e92cbSWill Deacon {
487bb0e92cbSWill Deacon 	int ret;
488bb0e92cbSWill Deacon 	struct hyp_map_data map_data = {
489bb0e92cbSWill Deacon 		.phys	= ALIGN_DOWN(phys, PAGE_SIZE),
490bb0e92cbSWill Deacon 	};
491bb0e92cbSWill Deacon 	struct kvm_pgtable_walker walker = {
492bb0e92cbSWill Deacon 		.cb	= hyp_map_walker,
493bb0e92cbSWill Deacon 		.flags	= KVM_PGTABLE_WALK_LEAF,
494bb0e92cbSWill Deacon 		.arg	= &map_data,
495bb0e92cbSWill Deacon 	};
496bb0e92cbSWill Deacon 
4973fab8234SQuentin Perret 	ret = hyp_set_prot_attr(prot, &map_data.attr);
498bb0e92cbSWill Deacon 	if (ret)
499bb0e92cbSWill Deacon 		return ret;
500bb0e92cbSWill Deacon 
501bb0e92cbSWill Deacon 	ret = kvm_pgtable_walk(pgt, addr, size, &walker);
502bb0e92cbSWill Deacon 	dsb(ishst);
503bb0e92cbSWill Deacon 	isb();
504bb0e92cbSWill Deacon 	return ret;
505bb0e92cbSWill Deacon }
506bb0e92cbSWill Deacon 
hyp_unmap_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)507dfc7a776SOliver Upton static int hyp_unmap_walker(const struct kvm_pgtable_visit_ctx *ctx,
508dfc7a776SOliver Upton 			    enum kvm_pgtable_walk_flags visit)
50982bb0244SWill Deacon {
51083844a23SOliver Upton 	kvm_pte_t *childp = NULL;
511dfc7a776SOliver Upton 	u64 granule = kvm_granule_size(ctx->level);
5122a611c7fSOliver Upton 	u64 *unmapped = ctx->arg;
5132a611c7fSOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
51482bb0244SWill Deacon 
51583844a23SOliver Upton 	if (!kvm_pte_valid(ctx->old))
51682bb0244SWill Deacon 		return -EINVAL;
51782bb0244SWill Deacon 
51883844a23SOliver Upton 	if (kvm_pte_table(ctx->old, ctx->level)) {
51983844a23SOliver Upton 		childp = kvm_pte_follow(ctx->old, mm_ops);
52082bb0244SWill Deacon 
52182bb0244SWill Deacon 		if (mm_ops->page_count(childp) != 1)
52282bb0244SWill Deacon 			return 0;
52382bb0244SWill Deacon 
524dfc7a776SOliver Upton 		kvm_clear_pte(ctx->ptep);
52582bb0244SWill Deacon 		dsb(ishst);
526*60d90e15SWill Deacon 		__tlbi_level(vae2is, __TLBI_VADDR(ctx->addr, 0), 0);
52782bb0244SWill Deacon 	} else {
528dfc7a776SOliver Upton 		if (ctx->end - ctx->addr < granule)
52982bb0244SWill Deacon 			return -EINVAL;
53082bb0244SWill Deacon 
531dfc7a776SOliver Upton 		kvm_clear_pte(ctx->ptep);
53282bb0244SWill Deacon 		dsb(ishst);
533dfc7a776SOliver Upton 		__tlbi_level(vale2is, __TLBI_VADDR(ctx->addr, 0), ctx->level);
5342a611c7fSOliver Upton 		*unmapped += granule;
53582bb0244SWill Deacon 	}
53682bb0244SWill Deacon 
53782bb0244SWill Deacon 	dsb(ish);
53882bb0244SWill Deacon 	isb();
539dfc7a776SOliver Upton 	mm_ops->put_page(ctx->ptep);
54082bb0244SWill Deacon 
54182bb0244SWill Deacon 	if (childp)
54282bb0244SWill Deacon 		mm_ops->put_page(childp);
54382bb0244SWill Deacon 
54482bb0244SWill Deacon 	return 0;
54582bb0244SWill Deacon }
54682bb0244SWill Deacon 
kvm_pgtable_hyp_unmap(struct kvm_pgtable * pgt,u64 addr,u64 size)54782bb0244SWill Deacon u64 kvm_pgtable_hyp_unmap(struct kvm_pgtable *pgt, u64 addr, u64 size)
54882bb0244SWill Deacon {
5492a611c7fSOliver Upton 	u64 unmapped = 0;
55082bb0244SWill Deacon 	struct kvm_pgtable_walker walker = {
55182bb0244SWill Deacon 		.cb	= hyp_unmap_walker,
5522a611c7fSOliver Upton 		.arg	= &unmapped,
55382bb0244SWill Deacon 		.flags	= KVM_PGTABLE_WALK_LEAF | KVM_PGTABLE_WALK_TABLE_POST,
55482bb0244SWill Deacon 	};
55582bb0244SWill Deacon 
55682bb0244SWill Deacon 	if (!pgt->mm_ops->page_count)
55782bb0244SWill Deacon 		return 0;
55882bb0244SWill Deacon 
55982bb0244SWill Deacon 	kvm_pgtable_walk(pgt, addr, size, &walker);
5602a611c7fSOliver Upton 	return unmapped;
56182bb0244SWill Deacon }
56282bb0244SWill Deacon 
kvm_pgtable_hyp_init(struct kvm_pgtable * pgt,u32 va_bits,struct kvm_pgtable_mm_ops * mm_ops)5637aef0cbcSQuentin Perret int kvm_pgtable_hyp_init(struct kvm_pgtable *pgt, u32 va_bits,
5647aef0cbcSQuentin Perret 			 struct kvm_pgtable_mm_ops *mm_ops)
565bb0e92cbSWill Deacon {
566bb0e92cbSWill Deacon 	u64 levels = ARM64_HW_PGTABLE_LEVELS(va_bits);
567bb0e92cbSWill Deacon 
5686b91b8f9SOliver Upton 	pgt->pgd = (kvm_pteref_t)mm_ops->zalloc_page(NULL);
569bb0e92cbSWill Deacon 	if (!pgt->pgd)
570bb0e92cbSWill Deacon 		return -ENOMEM;
571bb0e92cbSWill Deacon 
572bb0e92cbSWill Deacon 	pgt->ia_bits		= va_bits;
573bb0e92cbSWill Deacon 	pgt->start_level	= KVM_PGTABLE_MAX_LEVELS - levels;
5747aef0cbcSQuentin Perret 	pgt->mm_ops		= mm_ops;
575bb0e92cbSWill Deacon 	pgt->mmu		= NULL;
57656513119SQuentin Perret 	pgt->force_pte_cb	= NULL;
57756513119SQuentin Perret 
578bb0e92cbSWill Deacon 	return 0;
579bb0e92cbSWill Deacon }
580bb0e92cbSWill Deacon 
hyp_free_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)581dfc7a776SOliver Upton static int hyp_free_walker(const struct kvm_pgtable_visit_ctx *ctx,
582dfc7a776SOliver Upton 			   enum kvm_pgtable_walk_flags visit)
583bb0e92cbSWill Deacon {
5842a611c7fSOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
5857aef0cbcSQuentin Perret 
58683844a23SOliver Upton 	if (!kvm_pte_valid(ctx->old))
5872ea2ff91SQuentin Perret 		return 0;
5882ea2ff91SQuentin Perret 
589dfc7a776SOliver Upton 	mm_ops->put_page(ctx->ptep);
5902ea2ff91SQuentin Perret 
59183844a23SOliver Upton 	if (kvm_pte_table(ctx->old, ctx->level))
59283844a23SOliver Upton 		mm_ops->put_page(kvm_pte_follow(ctx->old, mm_ops));
5932ea2ff91SQuentin Perret 
594bb0e92cbSWill Deacon 	return 0;
595bb0e92cbSWill Deacon }
596bb0e92cbSWill Deacon 
kvm_pgtable_hyp_destroy(struct kvm_pgtable * pgt)597bb0e92cbSWill Deacon void kvm_pgtable_hyp_destroy(struct kvm_pgtable *pgt)
598bb0e92cbSWill Deacon {
599bb0e92cbSWill Deacon 	struct kvm_pgtable_walker walker = {
600bb0e92cbSWill Deacon 		.cb	= hyp_free_walker,
6012ea2ff91SQuentin Perret 		.flags	= KVM_PGTABLE_WALK_LEAF | KVM_PGTABLE_WALK_TABLE_POST,
602bb0e92cbSWill Deacon 	};
603bb0e92cbSWill Deacon 
604bb0e92cbSWill Deacon 	WARN_ON(kvm_pgtable_walk(pgt, 0, BIT(pgt->ia_bits), &walker));
6053a5154c7SOliver Upton 	pgt->mm_ops->put_page(kvm_dereference_pteref(&walker, pgt->pgd));
606bb0e92cbSWill Deacon 	pgt->pgd = NULL;
607bb0e92cbSWill Deacon }
60871233d05SWill Deacon 
6096d9d2115SWill Deacon struct stage2_map_data {
6101ea24415SMarc Zyngier 	const u64			phys;
6116d9d2115SWill Deacon 	kvm_pte_t			attr;
612807923e0SQuentin Perret 	u8				owner_id;
6136d9d2115SWill Deacon 
6146d9d2115SWill Deacon 	kvm_pte_t			*anchor;
615f60ca2f9SQuentin Perret 	kvm_pte_t			*childp;
6166d9d2115SWill Deacon 
6176d9d2115SWill Deacon 	struct kvm_s2_mmu		*mmu;
618e37f37a0SQuentin Perret 	void				*memcache;
6197aef0cbcSQuentin Perret 
62056513119SQuentin Perret 	/* Force mappings to page granularity */
62156513119SQuentin Perret 	bool				force_pte;
6226d9d2115SWill Deacon };
6236d9d2115SWill Deacon 
kvm_get_vtcr(u64 mmfr0,u64 mmfr1,u32 phys_shift)624bcb25a2bSQuentin Perret u64 kvm_get_vtcr(u64 mmfr0, u64 mmfr1, u32 phys_shift)
625bcb25a2bSQuentin Perret {
626bcb25a2bSQuentin Perret 	u64 vtcr = VTCR_EL2_FLAGS;
627bcb25a2bSQuentin Perret 	u8 lvls;
628bcb25a2bSQuentin Perret 
629bcb25a2bSQuentin Perret 	vtcr |= kvm_get_parange(mmfr0) << VTCR_EL2_PS_SHIFT;
630bcb25a2bSQuentin Perret 	vtcr |= VTCR_EL2_T0SZ(phys_shift);
631bcb25a2bSQuentin Perret 	/*
632bcb25a2bSQuentin Perret 	 * Use a minimum 2 level page table to prevent splitting
633bcb25a2bSQuentin Perret 	 * host PMD huge pages at stage2.
634bcb25a2bSQuentin Perret 	 */
635bcb25a2bSQuentin Perret 	lvls = stage2_pgtable_levels(phys_shift);
636bcb25a2bSQuentin Perret 	if (lvls < 2)
637bcb25a2bSQuentin Perret 		lvls = 2;
638bcb25a2bSQuentin Perret 	vtcr |= VTCR_EL2_LVLS_TO_SL0(lvls);
639bcb25a2bSQuentin Perret 
6401dfc3e90SOliver Upton #ifdef CONFIG_ARM64_HW_AFDBM
641bcb25a2bSQuentin Perret 	/*
642bcb25a2bSQuentin Perret 	 * Enable the Hardware Access Flag management, unconditionally
6436df696cdSOliver Upton 	 * on all CPUs. In systems that have asymmetric support for the feature
6446df696cdSOliver Upton 	 * this allows KVM to leverage hardware support on the subset of cores
6456df696cdSOliver Upton 	 * that implement the feature.
6466df696cdSOliver Upton 	 *
6476df696cdSOliver Upton 	 * The architecture requires VTCR_EL2.HA to be RES0 (thus ignored by
6486df696cdSOliver Upton 	 * hardware) on implementations that do not advertise support for the
6496df696cdSOliver Upton 	 * feature. As such, setting HA unconditionally is safe, unless you
6506df696cdSOliver Upton 	 * happen to be running on a design that has unadvertised support for
6516df696cdSOliver Upton 	 * HAFDBS. Here be dragons.
652bcb25a2bSQuentin Perret 	 */
6536df696cdSOliver Upton 	if (!cpus_have_final_cap(ARM64_WORKAROUND_AMPERE_AC03_CPU_38))
654bcb25a2bSQuentin Perret 		vtcr |= VTCR_EL2_HA;
6551dfc3e90SOliver Upton #endif /* CONFIG_ARM64_HW_AFDBM */
656bcb25a2bSQuentin Perret 
657bcb25a2bSQuentin Perret 	/* Set the vmid bits */
658bcb25a2bSQuentin Perret 	vtcr |= (get_vmid_bits(mmfr1) == 16) ?
659bcb25a2bSQuentin Perret 		VTCR_EL2_VS_16BIT :
660bcb25a2bSQuentin Perret 		VTCR_EL2_VS_8BIT;
661bcb25a2bSQuentin Perret 
662bcb25a2bSQuentin Perret 	return vtcr;
663bcb25a2bSQuentin Perret }
664bcb25a2bSQuentin Perret 
stage2_has_fwb(struct kvm_pgtable * pgt)665bc224df1SQuentin Perret static bool stage2_has_fwb(struct kvm_pgtable *pgt)
666bc224df1SQuentin Perret {
667bc224df1SQuentin Perret 	if (!cpus_have_const_cap(ARM64_HAS_STAGE2_FWB))
668bc224df1SQuentin Perret 		return false;
669bc224df1SQuentin Perret 
670bc224df1SQuentin Perret 	return !(pgt->flags & KVM_PGTABLE_S2_NOFWB);
671bc224df1SQuentin Perret }
672bc224df1SQuentin Perret 
kvm_tlb_flush_vmid_range(struct kvm_s2_mmu * mmu,phys_addr_t addr,size_t size)673117940aaSRaghavendra Rao Ananta void kvm_tlb_flush_vmid_range(struct kvm_s2_mmu *mmu,
674117940aaSRaghavendra Rao Ananta 				phys_addr_t addr, size_t size)
675117940aaSRaghavendra Rao Ananta {
676117940aaSRaghavendra Rao Ananta 	unsigned long pages, inval_pages;
677117940aaSRaghavendra Rao Ananta 
678117940aaSRaghavendra Rao Ananta 	if (!system_supports_tlb_range()) {
679117940aaSRaghavendra Rao Ananta 		kvm_call_hyp(__kvm_tlb_flush_vmid, mmu);
680117940aaSRaghavendra Rao Ananta 		return;
681117940aaSRaghavendra Rao Ananta 	}
682117940aaSRaghavendra Rao Ananta 
683117940aaSRaghavendra Rao Ananta 	pages = size >> PAGE_SHIFT;
684117940aaSRaghavendra Rao Ananta 	while (pages > 0) {
685117940aaSRaghavendra Rao Ananta 		inval_pages = min(pages, MAX_TLBI_RANGE_PAGES);
686117940aaSRaghavendra Rao Ananta 		kvm_call_hyp(__kvm_tlb_flush_vmid_range, mmu, addr, inval_pages);
687117940aaSRaghavendra Rao Ananta 
688117940aaSRaghavendra Rao Ananta 		addr += inval_pages << PAGE_SHIFT;
689117940aaSRaghavendra Rao Ananta 		pages -= inval_pages;
690117940aaSRaghavendra Rao Ananta 	}
691117940aaSRaghavendra Rao Ananta }
692117940aaSRaghavendra Rao Ananta 
693bc224df1SQuentin Perret #define KVM_S2_MEMATTR(pgt, attr) PAGE_S2_MEMATTR(attr, stage2_has_fwb(pgt))
694bc224df1SQuentin Perret 
stage2_set_prot_attr(struct kvm_pgtable * pgt,enum kvm_pgtable_prot prot,kvm_pte_t * ptep)695bc224df1SQuentin Perret static int stage2_set_prot_attr(struct kvm_pgtable *pgt, enum kvm_pgtable_prot prot,
696bc224df1SQuentin Perret 				kvm_pte_t *ptep)
6976d9d2115SWill Deacon {
6986d9d2115SWill Deacon 	bool device = prot & KVM_PGTABLE_PROT_DEVICE;
699bc224df1SQuentin Perret 	kvm_pte_t attr = device ? KVM_S2_MEMATTR(pgt, DEVICE_nGnRE) :
700bc224df1SQuentin Perret 			    KVM_S2_MEMATTR(pgt, NORMAL);
7016d9d2115SWill Deacon 	u32 sh = KVM_PTE_LEAF_ATTR_LO_S2_SH_IS;
7026d9d2115SWill Deacon 
7036d9d2115SWill Deacon 	if (!(prot & KVM_PGTABLE_PROT_X))
7046d9d2115SWill Deacon 		attr |= KVM_PTE_LEAF_ATTR_HI_S2_XN;
7056d9d2115SWill Deacon 	else if (device)
7066d9d2115SWill Deacon 		return -EINVAL;
7076d9d2115SWill Deacon 
7086d9d2115SWill Deacon 	if (prot & KVM_PGTABLE_PROT_R)
7096d9d2115SWill Deacon 		attr |= KVM_PTE_LEAF_ATTR_LO_S2_S2AP_R;
7106d9d2115SWill Deacon 
7116d9d2115SWill Deacon 	if (prot & KVM_PGTABLE_PROT_W)
7126d9d2115SWill Deacon 		attr |= KVM_PTE_LEAF_ATTR_LO_S2_S2AP_W;
7136d9d2115SWill Deacon 
7146d9d2115SWill Deacon 	attr |= FIELD_PREP(KVM_PTE_LEAF_ATTR_LO_S2_SH, sh);
7156d9d2115SWill Deacon 	attr |= KVM_PTE_LEAF_ATTR_LO_S2_AF;
7164505e9b6SQuentin Perret 	attr |= prot & KVM_PTE_LEAF_ATTR_HI_SW;
7173fab8234SQuentin Perret 	*ptep = attr;
7183fab8234SQuentin Perret 
7196d9d2115SWill Deacon 	return 0;
7206d9d2115SWill Deacon }
7216d9d2115SWill Deacon 
kvm_pgtable_stage2_pte_prot(kvm_pte_t pte)7229024b3d0SQuentin Perret enum kvm_pgtable_prot kvm_pgtable_stage2_pte_prot(kvm_pte_t pte)
7239024b3d0SQuentin Perret {
7249024b3d0SQuentin Perret 	enum kvm_pgtable_prot prot = pte & KVM_PTE_LEAF_ATTR_HI_SW;
7259024b3d0SQuentin Perret 
7269024b3d0SQuentin Perret 	if (!kvm_pte_valid(pte))
7279024b3d0SQuentin Perret 		return prot;
7289024b3d0SQuentin Perret 
7299024b3d0SQuentin Perret 	if (pte & KVM_PTE_LEAF_ATTR_LO_S2_S2AP_R)
7309024b3d0SQuentin Perret 		prot |= KVM_PGTABLE_PROT_R;
7319024b3d0SQuentin Perret 	if (pte & KVM_PTE_LEAF_ATTR_LO_S2_S2AP_W)
7329024b3d0SQuentin Perret 		prot |= KVM_PGTABLE_PROT_W;
7339024b3d0SQuentin Perret 	if (!(pte & KVM_PTE_LEAF_ATTR_HI_S2_XN))
7349024b3d0SQuentin Perret 		prot |= KVM_PGTABLE_PROT_X;
7359024b3d0SQuentin Perret 
7369024b3d0SQuentin Perret 	return prot;
7379024b3d0SQuentin Perret }
7389024b3d0SQuentin Perret 
stage2_pte_needs_update(kvm_pte_t old,kvm_pte_t new)739807923e0SQuentin Perret static bool stage2_pte_needs_update(kvm_pte_t old, kvm_pte_t new)
740807923e0SQuentin Perret {
741807923e0SQuentin Perret 	if (!kvm_pte_valid(old) || !kvm_pte_valid(new))
742807923e0SQuentin Perret 		return true;
743807923e0SQuentin Perret 
744807923e0SQuentin Perret 	return ((old ^ new) & (~KVM_PTE_LEAF_ATTR_S2_PERMS));
745807923e0SQuentin Perret }
746807923e0SQuentin Perret 
stage2_pte_is_counted(kvm_pte_t pte)747807923e0SQuentin Perret static bool stage2_pte_is_counted(kvm_pte_t pte)
748807923e0SQuentin Perret {
749807923e0SQuentin Perret 	/*
750807923e0SQuentin Perret 	 * The refcount tracks valid entries as well as invalid entries if they
751807923e0SQuentin Perret 	 * encode ownership of a page to another entity than the page-table
752807923e0SQuentin Perret 	 * owner, whose id is 0.
753807923e0SQuentin Perret 	 */
754807923e0SQuentin Perret 	return !!pte;
755807923e0SQuentin Perret }
756807923e0SQuentin Perret 
stage2_pte_is_locked(kvm_pte_t pte)7570ab12f35SOliver Upton static bool stage2_pte_is_locked(kvm_pte_t pte)
7580ab12f35SOliver Upton {
7590ab12f35SOliver Upton 	return !kvm_pte_valid(pte) && (pte & KVM_INVALID_PTE_LOCKED);
7600ab12f35SOliver Upton }
7610ab12f35SOliver Upton 
stage2_try_set_pte(const struct kvm_pgtable_visit_ctx * ctx,kvm_pte_t new)762ca5de244SOliver Upton static bool stage2_try_set_pte(const struct kvm_pgtable_visit_ctx *ctx, kvm_pte_t new)
763ca5de244SOliver Upton {
764ca5de244SOliver Upton 	if (!kvm_pgtable_walk_shared(ctx)) {
765ca5de244SOliver Upton 		WRITE_ONCE(*ctx->ptep, new);
766ca5de244SOliver Upton 		return true;
767ca5de244SOliver Upton 	}
768ca5de244SOliver Upton 
769ca5de244SOliver Upton 	return cmpxchg(ctx->ptep, ctx->old, new) == ctx->old;
770ca5de244SOliver Upton }
771ca5de244SOliver Upton 
7720ab12f35SOliver Upton /**
7730ab12f35SOliver Upton  * stage2_try_break_pte() - Invalidates a pte according to the
7740ab12f35SOliver Upton  *			    'break-before-make' requirements of the
7750ab12f35SOliver Upton  *			    architecture.
7760ab12f35SOliver Upton  *
7770ab12f35SOliver Upton  * @ctx: context of the visited pte.
7780ab12f35SOliver Upton  * @mmu: stage-2 mmu
7790ab12f35SOliver Upton  *
7800ab12f35SOliver Upton  * Returns: true if the pte was successfully broken.
7810ab12f35SOliver Upton  *
7820ab12f35SOliver Upton  * If the removed pte was valid, performs the necessary serialization and TLB
7830ab12f35SOliver Upton  * invalidation for the old value. For counted ptes, drops the reference count
7840ab12f35SOliver Upton  * on the containing table page.
7850ab12f35SOliver Upton  */
stage2_try_break_pte(const struct kvm_pgtable_visit_ctx * ctx,struct kvm_s2_mmu * mmu)7860ab12f35SOliver Upton static bool stage2_try_break_pte(const struct kvm_pgtable_visit_ctx *ctx,
7870ab12f35SOliver Upton 				 struct kvm_s2_mmu *mmu)
7880ab12f35SOliver Upton {
7890ab12f35SOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
7900ab12f35SOliver Upton 
7910ab12f35SOliver Upton 	if (stage2_pte_is_locked(ctx->old)) {
7920ab12f35SOliver Upton 		/*
7930ab12f35SOliver Upton 		 * Should never occur if this walker has exclusive access to the
7940ab12f35SOliver Upton 		 * page tables.
7950ab12f35SOliver Upton 		 */
7960ab12f35SOliver Upton 		WARN_ON(!kvm_pgtable_walk_shared(ctx));
7970ab12f35SOliver Upton 		return false;
7980ab12f35SOliver Upton 	}
7990ab12f35SOliver Upton 
8000ab12f35SOliver Upton 	if (!stage2_try_set_pte(ctx, KVM_INVALID_PTE_LOCKED))
8010ab12f35SOliver Upton 		return false;
8020ab12f35SOliver Upton 
80302f10845SRicardo Koller 	if (!kvm_pgtable_walk_skip_bbm_tlbi(ctx)) {
8040ab12f35SOliver Upton 		/*
80502f10845SRicardo Koller 		 * Perform the appropriate TLB invalidation based on the
80602f10845SRicardo Koller 		 * evicted pte value (if any).
8070ab12f35SOliver Upton 		 */
8083dcaf259SWill Deacon 		if (kvm_pte_table(ctx->old, ctx->level)) {
8093dcaf259SWill Deacon 			u64 size = kvm_granule_size(ctx->level);
8103dcaf259SWill Deacon 			u64 addr = ALIGN_DOWN(ctx->addr, size);
8113dcaf259SWill Deacon 
8123dcaf259SWill Deacon 			kvm_tlb_flush_vmid_range(mmu, addr, size);
8133dcaf259SWill Deacon 		} else if (kvm_pte_valid(ctx->old)) {
81402f10845SRicardo Koller 			kvm_call_hyp(__kvm_tlb_flush_vmid_ipa, mmu,
81502f10845SRicardo Koller 				     ctx->addr, ctx->level);
81602f10845SRicardo Koller 		}
8173dcaf259SWill Deacon 	}
8180ab12f35SOliver Upton 
8190ab12f35SOliver Upton 	if (stage2_pte_is_counted(ctx->old))
8200ab12f35SOliver Upton 		mm_ops->put_page(ctx->ptep);
8210ab12f35SOliver Upton 
8220ab12f35SOliver Upton 	return true;
8230ab12f35SOliver Upton }
8240ab12f35SOliver Upton 
stage2_make_pte(const struct kvm_pgtable_visit_ctx * ctx,kvm_pte_t new)8250ab12f35SOliver Upton static void stage2_make_pte(const struct kvm_pgtable_visit_ctx *ctx, kvm_pte_t new)
8260ab12f35SOliver Upton {
8270ab12f35SOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
8280ab12f35SOliver Upton 
8290ab12f35SOliver Upton 	WARN_ON(!stage2_pte_is_locked(*ctx->ptep));
8300ab12f35SOliver Upton 
8310ab12f35SOliver Upton 	if (stage2_pte_is_counted(new))
8320ab12f35SOliver Upton 		mm_ops->get_page(ctx->ptep);
8330ab12f35SOliver Upton 
8340ab12f35SOliver Upton 	smp_store_release(ctx->ptep, new);
8350ab12f35SOliver Upton }
8360ab12f35SOliver Upton 
stage2_unmap_defer_tlb_flush(struct kvm_pgtable * pgt)8377657ea92SRaghavendra Rao Ananta static bool stage2_unmap_defer_tlb_flush(struct kvm_pgtable *pgt)
838807923e0SQuentin Perret {
839807923e0SQuentin Perret 	/*
8407657ea92SRaghavendra Rao Ananta 	 * If FEAT_TLBIRANGE is implemented, defer the individual
8417657ea92SRaghavendra Rao Ananta 	 * TLB invalidations until the entire walk is finished, and
8427657ea92SRaghavendra Rao Ananta 	 * then use the range-based TLBI instructions to do the
8437657ea92SRaghavendra Rao Ananta 	 * invalidations. Condition deferred TLB invalidation on the
8447657ea92SRaghavendra Rao Ananta 	 * system supporting FWB as the optimization is entirely
8457657ea92SRaghavendra Rao Ananta 	 * pointless when the unmap walker needs to perform CMOs.
8467657ea92SRaghavendra Rao Ananta 	 */
8477657ea92SRaghavendra Rao Ananta 	return system_supports_tlb_range() && stage2_has_fwb(pgt);
8487657ea92SRaghavendra Rao Ananta }
8497657ea92SRaghavendra Rao Ananta 
stage2_unmap_put_pte(const struct kvm_pgtable_visit_ctx * ctx,struct kvm_s2_mmu * mmu,struct kvm_pgtable_mm_ops * mm_ops)8507657ea92SRaghavendra Rao Ananta static void stage2_unmap_put_pte(const struct kvm_pgtable_visit_ctx *ctx,
8517657ea92SRaghavendra Rao Ananta 				struct kvm_s2_mmu *mmu,
8527657ea92SRaghavendra Rao Ananta 				struct kvm_pgtable_mm_ops *mm_ops)
8537657ea92SRaghavendra Rao Ananta {
8547657ea92SRaghavendra Rao Ananta 	struct kvm_pgtable *pgt = ctx->arg;
8557657ea92SRaghavendra Rao Ananta 
8567657ea92SRaghavendra Rao Ananta 	/*
8577657ea92SRaghavendra Rao Ananta 	 * Clear the existing PTE, and perform break-before-make if it was
8587657ea92SRaghavendra Rao Ananta 	 * valid. Depending on the system support, defer the TLB maintenance
8597657ea92SRaghavendra Rao Ananta 	 * for the same until the entire unmap walk is completed.
860807923e0SQuentin Perret 	 */
86183844a23SOliver Upton 	if (kvm_pte_valid(ctx->old)) {
862dfc7a776SOliver Upton 		kvm_clear_pte(ctx->ptep);
8637657ea92SRaghavendra Rao Ananta 
864*60d90e15SWill Deacon 		if (kvm_pte_table(ctx->old, ctx->level)) {
865*60d90e15SWill Deacon 			kvm_call_hyp(__kvm_tlb_flush_vmid_ipa, mmu, ctx->addr,
866*60d90e15SWill Deacon 				     0);
867*60d90e15SWill Deacon 		} else if (!stage2_unmap_defer_tlb_flush(pgt)) {
868*60d90e15SWill Deacon 			kvm_call_hyp(__kvm_tlb_flush_vmid_ipa, mmu, ctx->addr,
869*60d90e15SWill Deacon 				     ctx->level);
870807923e0SQuentin Perret 		}
8712c770086SWill Deacon 	}
872807923e0SQuentin Perret 
873dfc7a776SOliver Upton 	mm_ops->put_page(ctx->ptep);
874807923e0SQuentin Perret }
875807923e0SQuentin Perret 
stage2_pte_cacheable(struct kvm_pgtable * pgt,kvm_pte_t pte)87625aa2869SYanan Wang static bool stage2_pte_cacheable(struct kvm_pgtable *pgt, kvm_pte_t pte)
87725aa2869SYanan Wang {
87825aa2869SYanan Wang 	u64 memattr = pte & KVM_PTE_LEAF_ATTR_LO_S2_MEMATTR;
87925aa2869SYanan Wang 	return memattr == KVM_S2_MEMATTR(pgt, NORMAL);
88025aa2869SYanan Wang }
88125aa2869SYanan Wang 
stage2_pte_executable(kvm_pte_t pte)88225aa2869SYanan Wang static bool stage2_pte_executable(kvm_pte_t pte)
88325aa2869SYanan Wang {
88425aa2869SYanan Wang 	return !(pte & KVM_PTE_LEAF_ATTR_HI_S2_XN);
88525aa2869SYanan Wang }
88625aa2869SYanan Wang 
stage2_map_walker_phys_addr(const struct kvm_pgtable_visit_ctx * ctx,const struct stage2_map_data * data)8871f0f4a2eSOliver Upton static u64 stage2_map_walker_phys_addr(const struct kvm_pgtable_visit_ctx *ctx,
8881f0f4a2eSOliver Upton 				       const struct stage2_map_data *data)
8891f0f4a2eSOliver Upton {
8901f0f4a2eSOliver Upton 	u64 phys = data->phys;
8911f0f4a2eSOliver Upton 
8921f0f4a2eSOliver Upton 	/*
8931f0f4a2eSOliver Upton 	 * Stage-2 walks to update ownership data are communicated to the map
8941f0f4a2eSOliver Upton 	 * walker using an invalid PA. Avoid offsetting an already invalid PA,
8951f0f4a2eSOliver Upton 	 * which could overflow and make the address valid again.
8961f0f4a2eSOliver Upton 	 */
8971f0f4a2eSOliver Upton 	if (!kvm_phys_is_valid(phys))
8981f0f4a2eSOliver Upton 		return phys;
8991f0f4a2eSOliver Upton 
9001f0f4a2eSOliver Upton 	/*
9011f0f4a2eSOliver Upton 	 * Otherwise, work out the correct PA based on how far the walk has
9021f0f4a2eSOliver Upton 	 * gotten.
9031f0f4a2eSOliver Upton 	 */
9041f0f4a2eSOliver Upton 	return phys + (ctx->addr - ctx->start);
9051f0f4a2eSOliver Upton }
9061f0f4a2eSOliver Upton 
stage2_leaf_mapping_allowed(const struct kvm_pgtable_visit_ctx * ctx,struct stage2_map_data * data)907dfc7a776SOliver Upton static bool stage2_leaf_mapping_allowed(const struct kvm_pgtable_visit_ctx *ctx,
90856513119SQuentin Perret 					struct stage2_map_data *data)
90956513119SQuentin Perret {
9101f0f4a2eSOliver Upton 	u64 phys = stage2_map_walker_phys_addr(ctx, data);
9111f0f4a2eSOliver Upton 
912dfc7a776SOliver Upton 	if (data->force_pte && (ctx->level < (KVM_PGTABLE_MAX_LEVELS - 1)))
91356513119SQuentin Perret 		return false;
91456513119SQuentin Perret 
9151f0f4a2eSOliver Upton 	return kvm_block_mapping_supported(ctx, phys);
91656513119SQuentin Perret }
91756513119SQuentin Perret 
stage2_map_walker_try_leaf(const struct kvm_pgtable_visit_ctx * ctx,struct stage2_map_data * data)918dfc7a776SOliver Upton static int stage2_map_walker_try_leaf(const struct kvm_pgtable_visit_ctx *ctx,
9196d9d2115SWill Deacon 				      struct stage2_map_data *data)
9206d9d2115SWill Deacon {
92183844a23SOliver Upton 	kvm_pte_t new;
9221f0f4a2eSOliver Upton 	u64 phys = stage2_map_walker_phys_addr(ctx, data);
9231f0f4a2eSOliver Upton 	u64 granule = kvm_granule_size(ctx->level);
92425aa2869SYanan Wang 	struct kvm_pgtable *pgt = data->mmu->pgt;
9252a611c7fSOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
9266d9d2115SWill Deacon 
927dfc7a776SOliver Upton 	if (!stage2_leaf_mapping_allowed(ctx, data))
928694d071fSYanan Wang 		return -E2BIG;
9296d9d2115SWill Deacon 
930807923e0SQuentin Perret 	if (kvm_phys_is_valid(phys))
931dfc7a776SOliver Upton 		new = kvm_init_valid_leaf_pte(phys, data->attr, ctx->level);
932807923e0SQuentin Perret 	else
933807923e0SQuentin Perret 		new = kvm_init_invalid_leaf_owner(data->owner_id);
934807923e0SQuentin Perret 
935694d071fSYanan Wang 	/*
936694d071fSYanan Wang 	 * Skip updating the PTE if we are trying to recreate the exact
937694d071fSYanan Wang 	 * same mapping or only change the access permissions. Instead,
938694d071fSYanan Wang 	 * the vCPU will exit one more time from guest if still needed
939694d071fSYanan Wang 	 * and then go through the path of relaxing permissions.
940694d071fSYanan Wang 	 */
94183844a23SOliver Upton 	if (!stage2_pte_needs_update(ctx->old, new))
942694d071fSYanan Wang 		return -EAGAIN;
9436d9d2115SWill Deacon 
944946fbfdfSOliver Upton 	if (!stage2_try_break_pte(ctx, data->mmu))
945946fbfdfSOliver Upton 		return -EAGAIN;
9468ed80051SYanan Wang 
94725aa2869SYanan Wang 	/* Perform CMOs before installation of the guest stage-2 PTE */
94802f10845SRicardo Koller 	if (!kvm_pgtable_walk_skip_cmo(ctx) && mm_ops->dcache_clean_inval_poc &&
94902f10845SRicardo Koller 	    stage2_pte_cacheable(pgt, new))
95025aa2869SYanan Wang 		mm_ops->dcache_clean_inval_poc(kvm_pte_follow(new, mm_ops),
95125aa2869SYanan Wang 					       granule);
95225aa2869SYanan Wang 
95302f10845SRicardo Koller 	if (!kvm_pgtable_walk_skip_cmo(ctx) && mm_ops->icache_inval_pou &&
95402f10845SRicardo Koller 	    stage2_pte_executable(new))
95525aa2869SYanan Wang 		mm_ops->icache_inval_pou(kvm_pte_follow(new, mm_ops), granule);
95625aa2869SYanan Wang 
957946fbfdfSOliver Upton 	stage2_make_pte(ctx, new);
958946fbfdfSOliver Upton 
959694d071fSYanan Wang 	return 0;
9606d9d2115SWill Deacon }
9616d9d2115SWill Deacon 
stage2_map_walk_table_pre(const struct kvm_pgtable_visit_ctx * ctx,struct stage2_map_data * data)962dfc7a776SOliver Upton static int stage2_map_walk_table_pre(const struct kvm_pgtable_visit_ctx *ctx,
9636d9d2115SWill Deacon 				     struct stage2_map_data *data)
9646d9d2115SWill Deacon {
9655c359ccaSOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
9665c359ccaSOliver Upton 	kvm_pte_t *childp = kvm_pte_follow(ctx->old, mm_ops);
9675c359ccaSOliver Upton 	int ret;
9686d9d2115SWill Deacon 
969dfc7a776SOliver Upton 	if (!stage2_leaf_mapping_allowed(ctx, data))
9706d9d2115SWill Deacon 		return 0;
9716d9d2115SWill Deacon 
9725c359ccaSOliver Upton 	ret = stage2_map_walker_try_leaf(ctx, data);
973af87fc03SOliver Upton 	if (ret)
9745c359ccaSOliver Upton 		return ret;
975af87fc03SOliver Upton 
976c14d08c5SRicardo Koller 	mm_ops->free_unlinked_table(childp, ctx->level);
977af87fc03SOliver Upton 	return 0;
9786d9d2115SWill Deacon }
9796d9d2115SWill Deacon 
stage2_map_walk_leaf(const struct kvm_pgtable_visit_ctx * ctx,struct stage2_map_data * data)980dfc7a776SOliver Upton static int stage2_map_walk_leaf(const struct kvm_pgtable_visit_ctx *ctx,
9816d9d2115SWill Deacon 				struct stage2_map_data *data)
9826d9d2115SWill Deacon {
9832a611c7fSOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
984331aa3a0SOliver Upton 	kvm_pte_t *childp, new;
9857aef0cbcSQuentin Perret 	int ret;
9866d9d2115SWill Deacon 
987dfc7a776SOliver Upton 	ret = stage2_map_walker_try_leaf(ctx, data);
988694d071fSYanan Wang 	if (ret != -E2BIG)
989694d071fSYanan Wang 		return ret;
9906d9d2115SWill Deacon 
991dfc7a776SOliver Upton 	if (WARN_ON(ctx->level == KVM_PGTABLE_MAX_LEVELS - 1))
9926d9d2115SWill Deacon 		return -EINVAL;
9936d9d2115SWill Deacon 
9946d9d2115SWill Deacon 	if (!data->memcache)
9956d9d2115SWill Deacon 		return -ENOMEM;
9966d9d2115SWill Deacon 
9977aef0cbcSQuentin Perret 	childp = mm_ops->zalloc_page(data->memcache);
9986d9d2115SWill Deacon 	if (!childp)
9996d9d2115SWill Deacon 		return -ENOMEM;
10006d9d2115SWill Deacon 
10010ab12f35SOliver Upton 	if (!stage2_try_break_pte(ctx, data->mmu)) {
10020ab12f35SOliver Upton 		mm_ops->put_page(childp);
10030ab12f35SOliver Upton 		return -EAGAIN;
10040ab12f35SOliver Upton 	}
10050ab12f35SOliver Upton 
10066d9d2115SWill Deacon 	/*
10076d9d2115SWill Deacon 	 * If we've run into an existing block mapping then replace it with
10086d9d2115SWill Deacon 	 * a table. Accesses beyond 'end' that fall within the new table
10096d9d2115SWill Deacon 	 * will be mapped lazily.
10106d9d2115SWill Deacon 	 */
1011331aa3a0SOliver Upton 	new = kvm_init_table_pte(childp, mm_ops);
10120ab12f35SOliver Upton 	stage2_make_pte(ctx, new);
10138ed80051SYanan Wang 
10146d9d2115SWill Deacon 	return 0;
10156d9d2115SWill Deacon }
10166d9d2115SWill Deacon 
10176d9d2115SWill Deacon /*
10185c359ccaSOliver Upton  * The TABLE_PRE callback runs for table entries on the way down, looking
10195c359ccaSOliver Upton  * for table entries which we could conceivably replace with a block entry
10205c359ccaSOliver Upton  * for this mapping. If it finds one it replaces the entry and calls
1021c14d08c5SRicardo Koller  * kvm_pgtable_mm_ops::free_unlinked_table() to tear down the detached table.
10226d9d2115SWill Deacon  *
10235c359ccaSOliver Upton  * Otherwise, the LEAF callback performs the mapping at the existing leaves
10245c359ccaSOliver Upton  * instead.
10256d9d2115SWill Deacon  */
stage2_map_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)1026dfc7a776SOliver Upton static int stage2_map_walker(const struct kvm_pgtable_visit_ctx *ctx,
1027dfc7a776SOliver Upton 			     enum kvm_pgtable_walk_flags visit)
10286d9d2115SWill Deacon {
1029dfc7a776SOliver Upton 	struct stage2_map_data *data = ctx->arg;
10306d9d2115SWill Deacon 
1031dfc7a776SOliver Upton 	switch (visit) {
10326d9d2115SWill Deacon 	case KVM_PGTABLE_WALK_TABLE_PRE:
1033dfc7a776SOliver Upton 		return stage2_map_walk_table_pre(ctx, data);
10346d9d2115SWill Deacon 	case KVM_PGTABLE_WALK_LEAF:
1035dfc7a776SOliver Upton 		return stage2_map_walk_leaf(ctx, data);
10365c359ccaSOliver Upton 	default:
10376d9d2115SWill Deacon 		return -EINVAL;
10386d9d2115SWill Deacon 	}
10395c359ccaSOliver Upton }
10406d9d2115SWill Deacon 
kvm_pgtable_stage2_map(struct kvm_pgtable * pgt,u64 addr,u64 size,u64 phys,enum kvm_pgtable_prot prot,void * mc,enum kvm_pgtable_walk_flags flags)10416d9d2115SWill Deacon int kvm_pgtable_stage2_map(struct kvm_pgtable *pgt, u64 addr, u64 size,
10426d9d2115SWill Deacon 			   u64 phys, enum kvm_pgtable_prot prot,
10431577cb58SOliver Upton 			   void *mc, enum kvm_pgtable_walk_flags flags)
10446d9d2115SWill Deacon {
10456d9d2115SWill Deacon 	int ret;
10466d9d2115SWill Deacon 	struct stage2_map_data map_data = {
10476d9d2115SWill Deacon 		.phys		= ALIGN_DOWN(phys, PAGE_SIZE),
10486d9d2115SWill Deacon 		.mmu		= pgt->mmu,
10496d9d2115SWill Deacon 		.memcache	= mc,
105056513119SQuentin Perret 		.force_pte	= pgt->force_pte_cb && pgt->force_pte_cb(addr, addr + size, prot),
10516d9d2115SWill Deacon 	};
10526d9d2115SWill Deacon 	struct kvm_pgtable_walker walker = {
10536d9d2115SWill Deacon 		.cb		= stage2_map_walker,
10541577cb58SOliver Upton 		.flags		= flags |
10551577cb58SOliver Upton 				  KVM_PGTABLE_WALK_TABLE_PRE |
10565c359ccaSOliver Upton 				  KVM_PGTABLE_WALK_LEAF,
10576d9d2115SWill Deacon 		.arg		= &map_data,
10586d9d2115SWill Deacon 	};
10596d9d2115SWill Deacon 
10608942a237SQuentin Perret 	if (WARN_ON((pgt->flags & KVM_PGTABLE_S2_IDMAP) && (addr != phys)))
10618942a237SQuentin Perret 		return -EINVAL;
10628942a237SQuentin Perret 
1063bc224df1SQuentin Perret 	ret = stage2_set_prot_attr(pgt, prot, &map_data.attr);
10646d9d2115SWill Deacon 	if (ret)
10656d9d2115SWill Deacon 		return ret;
10666d9d2115SWill Deacon 
10676d9d2115SWill Deacon 	ret = kvm_pgtable_walk(pgt, addr, size, &walker);
10686d9d2115SWill Deacon 	dsb(ishst);
10696d9d2115SWill Deacon 	return ret;
10706d9d2115SWill Deacon }
10716d9d2115SWill Deacon 
kvm_pgtable_stage2_set_owner(struct kvm_pgtable * pgt,u64 addr,u64 size,void * mc,u8 owner_id)1072807923e0SQuentin Perret int kvm_pgtable_stage2_set_owner(struct kvm_pgtable *pgt, u64 addr, u64 size,
1073807923e0SQuentin Perret 				 void *mc, u8 owner_id)
1074807923e0SQuentin Perret {
1075807923e0SQuentin Perret 	int ret;
1076807923e0SQuentin Perret 	struct stage2_map_data map_data = {
1077807923e0SQuentin Perret 		.phys		= KVM_PHYS_INVALID,
1078807923e0SQuentin Perret 		.mmu		= pgt->mmu,
1079807923e0SQuentin Perret 		.memcache	= mc,
1080807923e0SQuentin Perret 		.owner_id	= owner_id,
108156513119SQuentin Perret 		.force_pte	= true,
1082807923e0SQuentin Perret 	};
1083807923e0SQuentin Perret 	struct kvm_pgtable_walker walker = {
1084807923e0SQuentin Perret 		.cb		= stage2_map_walker,
1085807923e0SQuentin Perret 		.flags		= KVM_PGTABLE_WALK_TABLE_PRE |
10865c359ccaSOliver Upton 				  KVM_PGTABLE_WALK_LEAF,
1087807923e0SQuentin Perret 		.arg		= &map_data,
1088807923e0SQuentin Perret 	};
1089807923e0SQuentin Perret 
1090807923e0SQuentin Perret 	if (owner_id > KVM_MAX_OWNER_ID)
1091807923e0SQuentin Perret 		return -EINVAL;
1092807923e0SQuentin Perret 
1093807923e0SQuentin Perret 	ret = kvm_pgtable_walk(pgt, addr, size, &walker);
1094807923e0SQuentin Perret 	return ret;
1095807923e0SQuentin Perret }
1096807923e0SQuentin Perret 
stage2_unmap_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)1097dfc7a776SOliver Upton static int stage2_unmap_walker(const struct kvm_pgtable_visit_ctx *ctx,
1098dfc7a776SOliver Upton 			       enum kvm_pgtable_walk_flags visit)
10996d9d2115SWill Deacon {
1100dfc7a776SOliver Upton 	struct kvm_pgtable *pgt = ctx->arg;
11017aef0cbcSQuentin Perret 	struct kvm_s2_mmu *mmu = pgt->mmu;
11022a611c7fSOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
110383844a23SOliver Upton 	kvm_pte_t *childp = NULL;
11046d9d2115SWill Deacon 	bool need_flush = false;
11056d9d2115SWill Deacon 
110683844a23SOliver Upton 	if (!kvm_pte_valid(ctx->old)) {
110783844a23SOliver Upton 		if (stage2_pte_is_counted(ctx->old)) {
1108dfc7a776SOliver Upton 			kvm_clear_pte(ctx->ptep);
1109dfc7a776SOliver Upton 			mm_ops->put_page(ctx->ptep);
1110807923e0SQuentin Perret 		}
11116d9d2115SWill Deacon 		return 0;
1112807923e0SQuentin Perret 	}
11136d9d2115SWill Deacon 
111483844a23SOliver Upton 	if (kvm_pte_table(ctx->old, ctx->level)) {
111583844a23SOliver Upton 		childp = kvm_pte_follow(ctx->old, mm_ops);
11166d9d2115SWill Deacon 
11177aef0cbcSQuentin Perret 		if (mm_ops->page_count(childp) != 1)
11186d9d2115SWill Deacon 			return 0;
111983844a23SOliver Upton 	} else if (stage2_pte_cacheable(pgt, ctx->old)) {
1120bc224df1SQuentin Perret 		need_flush = !stage2_has_fwb(pgt);
11216d9d2115SWill Deacon 	}
11226d9d2115SWill Deacon 
11236d9d2115SWill Deacon 	/*
11246d9d2115SWill Deacon 	 * This is similar to the map() path in that we unmap the entire
11256d9d2115SWill Deacon 	 * block entry and rely on the remaining portions being faulted
11266d9d2115SWill Deacon 	 * back lazily.
11276d9d2115SWill Deacon 	 */
11287657ea92SRaghavendra Rao Ananta 	stage2_unmap_put_pte(ctx, mmu, mm_ops);
11296d9d2115SWill Deacon 
1130094d00f8SMarc Zyngier 	if (need_flush && mm_ops->dcache_clean_inval_poc)
113183844a23SOliver Upton 		mm_ops->dcache_clean_inval_poc(kvm_pte_follow(ctx->old, mm_ops),
1132dfc7a776SOliver Upton 					       kvm_granule_size(ctx->level));
11336d9d2115SWill Deacon 
11346d9d2115SWill Deacon 	if (childp)
11357aef0cbcSQuentin Perret 		mm_ops->put_page(childp);
11366d9d2115SWill Deacon 
11376d9d2115SWill Deacon 	return 0;
11386d9d2115SWill Deacon }
11396d9d2115SWill Deacon 
kvm_pgtable_stage2_unmap(struct kvm_pgtable * pgt,u64 addr,u64 size)11406d9d2115SWill Deacon int kvm_pgtable_stage2_unmap(struct kvm_pgtable *pgt, u64 addr, u64 size)
11416d9d2115SWill Deacon {
11427657ea92SRaghavendra Rao Ananta 	int ret;
11436d9d2115SWill Deacon 	struct kvm_pgtable_walker walker = {
11446d9d2115SWill Deacon 		.cb	= stage2_unmap_walker,
11457aef0cbcSQuentin Perret 		.arg	= pgt,
11466d9d2115SWill Deacon 		.flags	= KVM_PGTABLE_WALK_LEAF | KVM_PGTABLE_WALK_TABLE_POST,
11476d9d2115SWill Deacon 	};
11486d9d2115SWill Deacon 
11497657ea92SRaghavendra Rao Ananta 	ret = kvm_pgtable_walk(pgt, addr, size, &walker);
11507657ea92SRaghavendra Rao Ananta 	if (stage2_unmap_defer_tlb_flush(pgt))
11517657ea92SRaghavendra Rao Ananta 		/* Perform the deferred TLB invalidations */
11527657ea92SRaghavendra Rao Ananta 		kvm_tlb_flush_vmid_range(pgt->mmu, addr, size);
11537657ea92SRaghavendra Rao Ananta 
11547657ea92SRaghavendra Rao Ananta 	return ret;
11556d9d2115SWill Deacon }
11566d9d2115SWill Deacon 
1157e0e5a07fSWill Deacon struct stage2_attr_data {
1158e0e5a07fSWill Deacon 	kvm_pte_t			attr_set;
1159e0e5a07fSWill Deacon 	kvm_pte_t			attr_clr;
1160e0e5a07fSWill Deacon 	kvm_pte_t			pte;
1161b259d137SWill Deacon 	u32				level;
1162e0e5a07fSWill Deacon };
1163e0e5a07fSWill Deacon 
stage2_attr_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)1164dfc7a776SOliver Upton static int stage2_attr_walker(const struct kvm_pgtable_visit_ctx *ctx,
1165dfc7a776SOliver Upton 			      enum kvm_pgtable_walk_flags visit)
1166e0e5a07fSWill Deacon {
116783844a23SOliver Upton 	kvm_pte_t pte = ctx->old;
1168dfc7a776SOliver Upton 	struct stage2_attr_data *data = ctx->arg;
11692a611c7fSOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
1170e0e5a07fSWill Deacon 
117183844a23SOliver Upton 	if (!kvm_pte_valid(ctx->old))
117276259ccaSOliver Upton 		return -EAGAIN;
1173e0e5a07fSWill Deacon 
1174dfc7a776SOliver Upton 	data->level = ctx->level;
1175e0e5a07fSWill Deacon 	data->pte = pte;
1176e0e5a07fSWill Deacon 	pte &= ~data->attr_clr;
1177e0e5a07fSWill Deacon 	pte |= data->attr_set;
1178e0e5a07fSWill Deacon 
1179e0e5a07fSWill Deacon 	/*
1180e0e5a07fSWill Deacon 	 * We may race with the CPU trying to set the access flag here,
1181e0e5a07fSWill Deacon 	 * but worst-case the access flag update gets lost and will be
1182e0e5a07fSWill Deacon 	 * set on the next access instead.
1183e0e5a07fSWill Deacon 	 */
118425aa2869SYanan Wang 	if (data->pte != pte) {
118525aa2869SYanan Wang 		/*
118625aa2869SYanan Wang 		 * Invalidate instruction cache before updating the guest
118725aa2869SYanan Wang 		 * stage-2 PTE if we are going to add executable permission.
118825aa2869SYanan Wang 		 */
118925aa2869SYanan Wang 		if (mm_ops->icache_inval_pou &&
119083844a23SOliver Upton 		    stage2_pte_executable(pte) && !stage2_pte_executable(ctx->old))
119125aa2869SYanan Wang 			mm_ops->icache_inval_pou(kvm_pte_follow(pte, mm_ops),
1192dfc7a776SOliver Upton 						  kvm_granule_size(ctx->level));
1193ca5de244SOliver Upton 
1194ca5de244SOliver Upton 		if (!stage2_try_set_pte(ctx, pte))
1195ca5de244SOliver Upton 			return -EAGAIN;
119625aa2869SYanan Wang 	}
1197e0e5a07fSWill Deacon 
1198e0e5a07fSWill Deacon 	return 0;
1199e0e5a07fSWill Deacon }
1200e0e5a07fSWill Deacon 
stage2_update_leaf_attrs(struct kvm_pgtable * pgt,u64 addr,u64 size,kvm_pte_t attr_set,kvm_pte_t attr_clr,kvm_pte_t * orig_pte,u32 * level,enum kvm_pgtable_walk_flags flags)1201e0e5a07fSWill Deacon static int stage2_update_leaf_attrs(struct kvm_pgtable *pgt, u64 addr,
1202e0e5a07fSWill Deacon 				    u64 size, kvm_pte_t attr_set,
1203b259d137SWill Deacon 				    kvm_pte_t attr_clr, kvm_pte_t *orig_pte,
1204ca5de244SOliver Upton 				    u32 *level, enum kvm_pgtable_walk_flags flags)
1205e0e5a07fSWill Deacon {
1206e0e5a07fSWill Deacon 	int ret;
1207e0e5a07fSWill Deacon 	kvm_pte_t attr_mask = KVM_PTE_LEAF_ATTR_LO | KVM_PTE_LEAF_ATTR_HI;
1208e0e5a07fSWill Deacon 	struct stage2_attr_data data = {
1209e0e5a07fSWill Deacon 		.attr_set	= attr_set & attr_mask,
1210e0e5a07fSWill Deacon 		.attr_clr	= attr_clr & attr_mask,
1211e0e5a07fSWill Deacon 	};
1212e0e5a07fSWill Deacon 	struct kvm_pgtable_walker walker = {
1213e0e5a07fSWill Deacon 		.cb		= stage2_attr_walker,
1214e0e5a07fSWill Deacon 		.arg		= &data,
1215ca5de244SOliver Upton 		.flags		= flags | KVM_PGTABLE_WALK_LEAF,
1216e0e5a07fSWill Deacon 	};
1217e0e5a07fSWill Deacon 
1218e0e5a07fSWill Deacon 	ret = kvm_pgtable_walk(pgt, addr, size, &walker);
1219e0e5a07fSWill Deacon 	if (ret)
1220e0e5a07fSWill Deacon 		return ret;
1221e0e5a07fSWill Deacon 
1222e0e5a07fSWill Deacon 	if (orig_pte)
1223e0e5a07fSWill Deacon 		*orig_pte = data.pte;
1224b259d137SWill Deacon 
1225b259d137SWill Deacon 	if (level)
1226b259d137SWill Deacon 		*level = data.level;
1227e0e5a07fSWill Deacon 	return 0;
1228e0e5a07fSWill Deacon }
1229e0e5a07fSWill Deacon 
kvm_pgtable_stage2_wrprotect(struct kvm_pgtable * pgt,u64 addr,u64 size)123073d49df2SQuentin Perret int kvm_pgtable_stage2_wrprotect(struct kvm_pgtable *pgt, u64 addr, u64 size)
123173d49df2SQuentin Perret {
123273d49df2SQuentin Perret 	return stage2_update_leaf_attrs(pgt, addr, size, 0,
1233b259d137SWill Deacon 					KVM_PTE_LEAF_ATTR_LO_S2_S2AP_W,
1234ca5de244SOliver Upton 					NULL, NULL, 0);
123573d49df2SQuentin Perret }
123673d49df2SQuentin Perret 
kvm_pgtable_stage2_mkyoung(struct kvm_pgtable * pgt,u64 addr)1237e0e5a07fSWill Deacon kvm_pte_t kvm_pgtable_stage2_mkyoung(struct kvm_pgtable *pgt, u64 addr)
1238e0e5a07fSWill Deacon {
1239e0e5a07fSWill Deacon 	kvm_pte_t pte = 0;
12407d29a240SOliver Upton 	int ret;
12417d29a240SOliver Upton 
12427d29a240SOliver Upton 	ret = stage2_update_leaf_attrs(pgt, addr, 1, KVM_PTE_LEAF_ATTR_LO_S2_AF, 0,
1243ddcadb29SOliver Upton 				       &pte, NULL,
1244fc61f554SOliver Upton 				       KVM_PGTABLE_WALK_HANDLE_FAULT |
1245fc61f554SOliver Upton 				       KVM_PGTABLE_WALK_SHARED);
12467d29a240SOliver Upton 	if (!ret)
1247e0e5a07fSWill Deacon 		dsb(ishst);
12487d29a240SOliver Upton 
1249e0e5a07fSWill Deacon 	return pte;
1250e0e5a07fSWill Deacon }
1251e0e5a07fSWill Deacon 
1252df6556adSOliver Upton struct stage2_age_data {
1253df6556adSOliver Upton 	bool	mkold;
1254df6556adSOliver Upton 	bool	young;
1255df6556adSOliver Upton };
1256df6556adSOliver Upton 
stage2_age_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)1257df6556adSOliver Upton static int stage2_age_walker(const struct kvm_pgtable_visit_ctx *ctx,
1258df6556adSOliver Upton 			     enum kvm_pgtable_walk_flags visit)
1259e0e5a07fSWill Deacon {
1260df6556adSOliver Upton 	kvm_pte_t new = ctx->old & ~KVM_PTE_LEAF_ATTR_LO_S2_AF;
1261df6556adSOliver Upton 	struct stage2_age_data *data = ctx->arg;
1262df6556adSOliver Upton 
1263df6556adSOliver Upton 	if (!kvm_pte_valid(ctx->old) || new == ctx->old)
1264df6556adSOliver Upton 		return 0;
1265df6556adSOliver Upton 
1266df6556adSOliver Upton 	data->young = true;
1267df6556adSOliver Upton 
1268df6556adSOliver Upton 	/*
1269df6556adSOliver Upton 	 * stage2_age_walker() is always called while holding the MMU lock for
1270df6556adSOliver Upton 	 * write, so this will always succeed. Nonetheless, this deliberately
1271df6556adSOliver Upton 	 * follows the race detection pattern of the other stage-2 walkers in
1272df6556adSOliver Upton 	 * case the locking mechanics of the MMU notifiers is ever changed.
1273df6556adSOliver Upton 	 */
1274df6556adSOliver Upton 	if (data->mkold && !stage2_try_set_pte(ctx, new))
1275df6556adSOliver Upton 		return -EAGAIN;
1276df6556adSOliver Upton 
1277e0e5a07fSWill Deacon 	/*
1278e0e5a07fSWill Deacon 	 * "But where's the TLBI?!", you scream.
1279e0e5a07fSWill Deacon 	 * "Over in the core code", I sigh.
1280e0e5a07fSWill Deacon 	 *
1281e0e5a07fSWill Deacon 	 * See the '->clear_flush_young()' callback on the KVM mmu notifier.
1282e0e5a07fSWill Deacon 	 */
1283df6556adSOliver Upton 	return 0;
1284e0e5a07fSWill Deacon }
1285e0e5a07fSWill Deacon 
kvm_pgtable_stage2_test_clear_young(struct kvm_pgtable * pgt,u64 addr,u64 size,bool mkold)1286df6556adSOliver Upton bool kvm_pgtable_stage2_test_clear_young(struct kvm_pgtable *pgt, u64 addr,
1287df6556adSOliver Upton 					 u64 size, bool mkold)
1288e0e5a07fSWill Deacon {
1289df6556adSOliver Upton 	struct stage2_age_data data = {
1290df6556adSOliver Upton 		.mkold		= mkold,
1291df6556adSOliver Upton 	};
1292df6556adSOliver Upton 	struct kvm_pgtable_walker walker = {
1293df6556adSOliver Upton 		.cb		= stage2_age_walker,
1294df6556adSOliver Upton 		.arg		= &data,
1295df6556adSOliver Upton 		.flags		= KVM_PGTABLE_WALK_LEAF,
1296df6556adSOliver Upton 	};
1297df6556adSOliver Upton 
1298df6556adSOliver Upton 	WARN_ON(kvm_pgtable_walk(pgt, addr, size, &walker));
1299df6556adSOliver Upton 	return data.young;
1300e0e5a07fSWill Deacon }
1301e0e5a07fSWill Deacon 
kvm_pgtable_stage2_relax_perms(struct kvm_pgtable * pgt,u64 addr,enum kvm_pgtable_prot prot)1302adcd4e23SWill Deacon int kvm_pgtable_stage2_relax_perms(struct kvm_pgtable *pgt, u64 addr,
1303adcd4e23SWill Deacon 				   enum kvm_pgtable_prot prot)
1304adcd4e23SWill Deacon {
1305adcd4e23SWill Deacon 	int ret;
1306b259d137SWill Deacon 	u32 level;
1307adcd4e23SWill Deacon 	kvm_pte_t set = 0, clr = 0;
1308adcd4e23SWill Deacon 
13094505e9b6SQuentin Perret 	if (prot & KVM_PTE_LEAF_ATTR_HI_SW)
13104505e9b6SQuentin Perret 		return -EINVAL;
13114505e9b6SQuentin Perret 
1312adcd4e23SWill Deacon 	if (prot & KVM_PGTABLE_PROT_R)
1313adcd4e23SWill Deacon 		set |= KVM_PTE_LEAF_ATTR_LO_S2_S2AP_R;
1314adcd4e23SWill Deacon 
1315adcd4e23SWill Deacon 	if (prot & KVM_PGTABLE_PROT_W)
1316adcd4e23SWill Deacon 		set |= KVM_PTE_LEAF_ATTR_LO_S2_S2AP_W;
1317adcd4e23SWill Deacon 
1318adcd4e23SWill Deacon 	if (prot & KVM_PGTABLE_PROT_X)
1319adcd4e23SWill Deacon 		clr |= KVM_PTE_LEAF_ATTR_HI_S2_XN;
1320adcd4e23SWill Deacon 
1321ca5de244SOliver Upton 	ret = stage2_update_leaf_attrs(pgt, addr, 1, set, clr, NULL, &level,
1322ddcadb29SOliver Upton 				       KVM_PGTABLE_WALK_HANDLE_FAULT |
1323ca5de244SOliver Upton 				       KVM_PGTABLE_WALK_SHARED);
1324b259d137SWill Deacon 	if (!ret)
1325a12ab137SMarc Zyngier 		kvm_call_hyp(__kvm_tlb_flush_vmid_ipa_nsh, pgt->mmu, addr, level);
1326adcd4e23SWill Deacon 	return ret;
1327adcd4e23SWill Deacon }
1328adcd4e23SWill Deacon 
stage2_flush_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)1329dfc7a776SOliver Upton static int stage2_flush_walker(const struct kvm_pgtable_visit_ctx *ctx,
1330dfc7a776SOliver Upton 			       enum kvm_pgtable_walk_flags visit)
133193c66b40SQuentin Perret {
1332dfc7a776SOliver Upton 	struct kvm_pgtable *pgt = ctx->arg;
1333bc224df1SQuentin Perret 	struct kvm_pgtable_mm_ops *mm_ops = pgt->mm_ops;
133493c66b40SQuentin Perret 
133583844a23SOliver Upton 	if (!kvm_pte_valid(ctx->old) || !stage2_pte_cacheable(pgt, ctx->old))
133693c66b40SQuentin Perret 		return 0;
133793c66b40SQuentin Perret 
1338094d00f8SMarc Zyngier 	if (mm_ops->dcache_clean_inval_poc)
133983844a23SOliver Upton 		mm_ops->dcache_clean_inval_poc(kvm_pte_follow(ctx->old, mm_ops),
1340dfc7a776SOliver Upton 					       kvm_granule_size(ctx->level));
134193c66b40SQuentin Perret 	return 0;
134293c66b40SQuentin Perret }
134393c66b40SQuentin Perret 
kvm_pgtable_stage2_flush(struct kvm_pgtable * pgt,u64 addr,u64 size)134493c66b40SQuentin Perret int kvm_pgtable_stage2_flush(struct kvm_pgtable *pgt, u64 addr, u64 size)
134593c66b40SQuentin Perret {
134693c66b40SQuentin Perret 	struct kvm_pgtable_walker walker = {
134793c66b40SQuentin Perret 		.cb	= stage2_flush_walker,
134893c66b40SQuentin Perret 		.flags	= KVM_PGTABLE_WALK_LEAF,
1349bc224df1SQuentin Perret 		.arg	= pgt,
135093c66b40SQuentin Perret 	};
135193c66b40SQuentin Perret 
1352bc224df1SQuentin Perret 	if (stage2_has_fwb(pgt))
135393c66b40SQuentin Perret 		return 0;
135493c66b40SQuentin Perret 
135593c66b40SQuentin Perret 	return kvm_pgtable_walk(pgt, addr, size, &walker);
135693c66b40SQuentin Perret }
135793c66b40SQuentin Perret 
kvm_pgtable_stage2_create_unlinked(struct kvm_pgtable * pgt,u64 phys,u32 level,enum kvm_pgtable_prot prot,void * mc,bool force_pte)1358e7c05540SRicardo Koller kvm_pte_t *kvm_pgtable_stage2_create_unlinked(struct kvm_pgtable *pgt,
1359e7c05540SRicardo Koller 					      u64 phys, u32 level,
1360e7c05540SRicardo Koller 					      enum kvm_pgtable_prot prot,
1361e7c05540SRicardo Koller 					      void *mc, bool force_pte)
1362e7c05540SRicardo Koller {
1363e7c05540SRicardo Koller 	struct stage2_map_data map_data = {
1364e7c05540SRicardo Koller 		.phys		= phys,
1365e7c05540SRicardo Koller 		.mmu		= pgt->mmu,
1366e7c05540SRicardo Koller 		.memcache	= mc,
1367e7c05540SRicardo Koller 		.force_pte	= force_pte,
1368e7c05540SRicardo Koller 	};
1369e7c05540SRicardo Koller 	struct kvm_pgtable_walker walker = {
1370e7c05540SRicardo Koller 		.cb		= stage2_map_walker,
1371e7c05540SRicardo Koller 		.flags		= KVM_PGTABLE_WALK_LEAF |
1372e7c05540SRicardo Koller 				  KVM_PGTABLE_WALK_SKIP_BBM_TLBI |
1373e7c05540SRicardo Koller 				  KVM_PGTABLE_WALK_SKIP_CMO,
1374e7c05540SRicardo Koller 		.arg		= &map_data,
1375e7c05540SRicardo Koller 	};
1376e7c05540SRicardo Koller 	/*
1377e7c05540SRicardo Koller 	 * The input address (.addr) is irrelevant for walking an
1378e7c05540SRicardo Koller 	 * unlinked table. Construct an ambiguous IA range to map
1379e7c05540SRicardo Koller 	 * kvm_granule_size(level) worth of memory.
1380e7c05540SRicardo Koller 	 */
1381e7c05540SRicardo Koller 	struct kvm_pgtable_walk_data data = {
1382e7c05540SRicardo Koller 		.walker	= &walker,
1383e7c05540SRicardo Koller 		.addr	= 0,
1384e7c05540SRicardo Koller 		.end	= kvm_granule_size(level),
1385e7c05540SRicardo Koller 	};
1386e7c05540SRicardo Koller 	struct kvm_pgtable_mm_ops *mm_ops = pgt->mm_ops;
1387e7c05540SRicardo Koller 	kvm_pte_t *pgtable;
1388e7c05540SRicardo Koller 	int ret;
1389e7c05540SRicardo Koller 
1390e7c05540SRicardo Koller 	if (!IS_ALIGNED(phys, kvm_granule_size(level)))
1391e7c05540SRicardo Koller 		return ERR_PTR(-EINVAL);
1392e7c05540SRicardo Koller 
1393e7c05540SRicardo Koller 	ret = stage2_set_prot_attr(pgt, prot, &map_data.attr);
1394e7c05540SRicardo Koller 	if (ret)
1395e7c05540SRicardo Koller 		return ERR_PTR(ret);
1396e7c05540SRicardo Koller 
1397e7c05540SRicardo Koller 	pgtable = mm_ops->zalloc_page(mc);
1398e7c05540SRicardo Koller 	if (!pgtable)
1399e7c05540SRicardo Koller 		return ERR_PTR(-ENOMEM);
1400e7c05540SRicardo Koller 
1401e7c05540SRicardo Koller 	ret = __kvm_pgtable_walk(&data, mm_ops, (kvm_pteref_t)pgtable,
1402e7c05540SRicardo Koller 				 level + 1);
1403e7c05540SRicardo Koller 	if (ret) {
1404e7c05540SRicardo Koller 		kvm_pgtable_stage2_free_unlinked(mm_ops, pgtable, level);
1405e7c05540SRicardo Koller 		mm_ops->put_page(pgtable);
1406e7c05540SRicardo Koller 		return ERR_PTR(ret);
1407e7c05540SRicardo Koller 	}
1408e7c05540SRicardo Koller 
1409e7c05540SRicardo Koller 	return pgtable;
1410e7c05540SRicardo Koller }
141156513119SQuentin Perret 
14128f5a3eb7SRicardo Koller /*
14138f5a3eb7SRicardo Koller  * Get the number of page-tables needed to replace a block with a
14148f5a3eb7SRicardo Koller  * fully populated tree up to the PTE entries. Note that @level is
14158f5a3eb7SRicardo Koller  * interpreted as in "level @level entry".
14168f5a3eb7SRicardo Koller  */
stage2_block_get_nr_page_tables(u32 level)14178f5a3eb7SRicardo Koller static int stage2_block_get_nr_page_tables(u32 level)
14188f5a3eb7SRicardo Koller {
14198f5a3eb7SRicardo Koller 	switch (level) {
14208f5a3eb7SRicardo Koller 	case 1:
14218f5a3eb7SRicardo Koller 		return PTRS_PER_PTE + 1;
14228f5a3eb7SRicardo Koller 	case 2:
14238f5a3eb7SRicardo Koller 		return 1;
14248f5a3eb7SRicardo Koller 	case 3:
14258f5a3eb7SRicardo Koller 		return 0;
14268f5a3eb7SRicardo Koller 	default:
14278f5a3eb7SRicardo Koller 		WARN_ON_ONCE(level < KVM_PGTABLE_MIN_BLOCK_LEVEL ||
14288f5a3eb7SRicardo Koller 			     level >= KVM_PGTABLE_MAX_LEVELS);
14298f5a3eb7SRicardo Koller 		return -EINVAL;
14308f5a3eb7SRicardo Koller 	};
14318f5a3eb7SRicardo Koller }
14328f5a3eb7SRicardo Koller 
stage2_split_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)14338f5a3eb7SRicardo Koller static int stage2_split_walker(const struct kvm_pgtable_visit_ctx *ctx,
14348f5a3eb7SRicardo Koller 			       enum kvm_pgtable_walk_flags visit)
14358f5a3eb7SRicardo Koller {
14368f5a3eb7SRicardo Koller 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
14378f5a3eb7SRicardo Koller 	struct kvm_mmu_memory_cache *mc = ctx->arg;
14388f5a3eb7SRicardo Koller 	struct kvm_s2_mmu *mmu;
14398f5a3eb7SRicardo Koller 	kvm_pte_t pte = ctx->old, new, *childp;
14408f5a3eb7SRicardo Koller 	enum kvm_pgtable_prot prot;
14418f5a3eb7SRicardo Koller 	u32 level = ctx->level;
14428f5a3eb7SRicardo Koller 	bool force_pte;
14438f5a3eb7SRicardo Koller 	int nr_pages;
14448f5a3eb7SRicardo Koller 	u64 phys;
14458f5a3eb7SRicardo Koller 
14468f5a3eb7SRicardo Koller 	/* No huge-pages exist at the last level */
14478f5a3eb7SRicardo Koller 	if (level == KVM_PGTABLE_MAX_LEVELS - 1)
14488f5a3eb7SRicardo Koller 		return 0;
14498f5a3eb7SRicardo Koller 
14508f5a3eb7SRicardo Koller 	/* We only split valid block mappings */
14518f5a3eb7SRicardo Koller 	if (!kvm_pte_valid(pte))
14528f5a3eb7SRicardo Koller 		return 0;
14538f5a3eb7SRicardo Koller 
14548f5a3eb7SRicardo Koller 	nr_pages = stage2_block_get_nr_page_tables(level);
14558f5a3eb7SRicardo Koller 	if (nr_pages < 0)
14568f5a3eb7SRicardo Koller 		return nr_pages;
14578f5a3eb7SRicardo Koller 
14588f5a3eb7SRicardo Koller 	if (mc->nobjs >= nr_pages) {
14598f5a3eb7SRicardo Koller 		/* Build a tree mapped down to the PTE granularity. */
14608f5a3eb7SRicardo Koller 		force_pte = true;
14618f5a3eb7SRicardo Koller 	} else {
14628f5a3eb7SRicardo Koller 		/*
14638f5a3eb7SRicardo Koller 		 * Don't force PTEs, so create_unlinked() below does
14648f5a3eb7SRicardo Koller 		 * not populate the tree up to the PTE level. The
14658f5a3eb7SRicardo Koller 		 * consequence is that the call will require a single
14668f5a3eb7SRicardo Koller 		 * page of level 2 entries at level 1, or a single
14678f5a3eb7SRicardo Koller 		 * page of PTEs at level 2. If we are at level 1, the
14688f5a3eb7SRicardo Koller 		 * PTEs will be created recursively.
14698f5a3eb7SRicardo Koller 		 */
14708f5a3eb7SRicardo Koller 		force_pte = false;
14718f5a3eb7SRicardo Koller 		nr_pages = 1;
14728f5a3eb7SRicardo Koller 	}
14738f5a3eb7SRicardo Koller 
14748f5a3eb7SRicardo Koller 	if (mc->nobjs < nr_pages)
14758f5a3eb7SRicardo Koller 		return -ENOMEM;
14768f5a3eb7SRicardo Koller 
14778f5a3eb7SRicardo Koller 	mmu = container_of(mc, struct kvm_s2_mmu, split_page_cache);
14788f5a3eb7SRicardo Koller 	phys = kvm_pte_to_phys(pte);
14798f5a3eb7SRicardo Koller 	prot = kvm_pgtable_stage2_pte_prot(pte);
14808f5a3eb7SRicardo Koller 
14818f5a3eb7SRicardo Koller 	childp = kvm_pgtable_stage2_create_unlinked(mmu->pgt, phys,
14828f5a3eb7SRicardo Koller 						    level, prot, mc, force_pte);
14838f5a3eb7SRicardo Koller 	if (IS_ERR(childp))
14848f5a3eb7SRicardo Koller 		return PTR_ERR(childp);
14858f5a3eb7SRicardo Koller 
14868f5a3eb7SRicardo Koller 	if (!stage2_try_break_pte(ctx, mmu)) {
14878f5a3eb7SRicardo Koller 		kvm_pgtable_stage2_free_unlinked(mm_ops, childp, level);
14888f5a3eb7SRicardo Koller 		mm_ops->put_page(childp);
14898f5a3eb7SRicardo Koller 		return -EAGAIN;
14908f5a3eb7SRicardo Koller 	}
14918f5a3eb7SRicardo Koller 
14928f5a3eb7SRicardo Koller 	/*
14938f5a3eb7SRicardo Koller 	 * Note, the contents of the page table are guaranteed to be made
14948f5a3eb7SRicardo Koller 	 * visible before the new PTE is assigned because stage2_make_pte()
14958f5a3eb7SRicardo Koller 	 * writes the PTE using smp_store_release().
14968f5a3eb7SRicardo Koller 	 */
14978f5a3eb7SRicardo Koller 	new = kvm_init_table_pte(childp, mm_ops);
14988f5a3eb7SRicardo Koller 	stage2_make_pte(ctx, new);
14998f5a3eb7SRicardo Koller 	dsb(ishst);
15008f5a3eb7SRicardo Koller 	return 0;
15018f5a3eb7SRicardo Koller }
15028f5a3eb7SRicardo Koller 
kvm_pgtable_stage2_split(struct kvm_pgtable * pgt,u64 addr,u64 size,struct kvm_mmu_memory_cache * mc)15038f5a3eb7SRicardo Koller int kvm_pgtable_stage2_split(struct kvm_pgtable *pgt, u64 addr, u64 size,
15048f5a3eb7SRicardo Koller 			     struct kvm_mmu_memory_cache *mc)
15058f5a3eb7SRicardo Koller {
15068f5a3eb7SRicardo Koller 	struct kvm_pgtable_walker walker = {
15078f5a3eb7SRicardo Koller 		.cb	= stage2_split_walker,
15088f5a3eb7SRicardo Koller 		.flags	= KVM_PGTABLE_WALK_LEAF,
15098f5a3eb7SRicardo Koller 		.arg	= mc,
15108f5a3eb7SRicardo Koller 	};
15118f5a3eb7SRicardo Koller 
15128f5a3eb7SRicardo Koller 	return kvm_pgtable_walk(pgt, addr, size, &walker);
15138f5a3eb7SRicardo Koller }
151456513119SQuentin Perret 
__kvm_pgtable_stage2_init(struct kvm_pgtable * pgt,struct kvm_s2_mmu * mmu,struct kvm_pgtable_mm_ops * mm_ops,enum kvm_pgtable_stage2_flags flags,kvm_pgtable_force_pte_cb_t force_pte_cb)15159d8604b2SMarc Zyngier int __kvm_pgtable_stage2_init(struct kvm_pgtable *pgt, struct kvm_s2_mmu *mmu,
1516bc224df1SQuentin Perret 			      struct kvm_pgtable_mm_ops *mm_ops,
151756513119SQuentin Perret 			      enum kvm_pgtable_stage2_flags flags,
151856513119SQuentin Perret 			      kvm_pgtable_force_pte_cb_t force_pte_cb)
151971233d05SWill Deacon {
152071233d05SWill Deacon 	size_t pgd_sz;
15219d8604b2SMarc Zyngier 	u64 vtcr = mmu->arch->vtcr;
152271233d05SWill Deacon 	u32 ia_bits = VTCR_EL2_IPA(vtcr);
152371233d05SWill Deacon 	u32 sl0 = FIELD_GET(VTCR_EL2_SL0_MASK, vtcr);
152471233d05SWill Deacon 	u32 start_level = VTCR_EL2_TGRAN_SL0_BASE - sl0;
152571233d05SWill Deacon 
152671233d05SWill Deacon 	pgd_sz = kvm_pgd_pages(ia_bits, start_level) * PAGE_SIZE;
15276b91b8f9SOliver Upton 	pgt->pgd = (kvm_pteref_t)mm_ops->zalloc_pages_exact(pgd_sz);
152871233d05SWill Deacon 	if (!pgt->pgd)
152971233d05SWill Deacon 		return -ENOMEM;
153071233d05SWill Deacon 
153171233d05SWill Deacon 	pgt->ia_bits		= ia_bits;
153271233d05SWill Deacon 	pgt->start_level	= start_level;
15337aef0cbcSQuentin Perret 	pgt->mm_ops		= mm_ops;
15349d8604b2SMarc Zyngier 	pgt->mmu		= mmu;
1535bc224df1SQuentin Perret 	pgt->flags		= flags;
153656513119SQuentin Perret 	pgt->force_pte_cb	= force_pte_cb;
153771233d05SWill Deacon 
153871233d05SWill Deacon 	/* Ensure zeroed PGD pages are visible to the hardware walker */
153971233d05SWill Deacon 	dsb(ishst);
154071233d05SWill Deacon 	return 0;
154171233d05SWill Deacon }
154271233d05SWill Deacon 
kvm_pgtable_stage2_pgd_size(u64 vtcr)1543a1ec5c70SFuad Tabba size_t kvm_pgtable_stage2_pgd_size(u64 vtcr)
1544a1ec5c70SFuad Tabba {
1545a1ec5c70SFuad Tabba 	u32 ia_bits = VTCR_EL2_IPA(vtcr);
1546a1ec5c70SFuad Tabba 	u32 sl0 = FIELD_GET(VTCR_EL2_SL0_MASK, vtcr);
1547a1ec5c70SFuad Tabba 	u32 start_level = VTCR_EL2_TGRAN_SL0_BASE - sl0;
1548a1ec5c70SFuad Tabba 
1549a1ec5c70SFuad Tabba 	return kvm_pgd_pages(ia_bits, start_level) * PAGE_SIZE;
1550a1ec5c70SFuad Tabba }
1551a1ec5c70SFuad Tabba 
stage2_free_walker(const struct kvm_pgtable_visit_ctx * ctx,enum kvm_pgtable_walk_flags visit)1552dfc7a776SOliver Upton static int stage2_free_walker(const struct kvm_pgtable_visit_ctx *ctx,
1553dfc7a776SOliver Upton 			      enum kvm_pgtable_walk_flags visit)
155471233d05SWill Deacon {
15552a611c7fSOliver Upton 	struct kvm_pgtable_mm_ops *mm_ops = ctx->mm_ops;
155671233d05SWill Deacon 
155783844a23SOliver Upton 	if (!stage2_pte_is_counted(ctx->old))
155871233d05SWill Deacon 		return 0;
155971233d05SWill Deacon 
1560dfc7a776SOliver Upton 	mm_ops->put_page(ctx->ptep);
156171233d05SWill Deacon 
156283844a23SOliver Upton 	if (kvm_pte_table(ctx->old, ctx->level))
156383844a23SOliver Upton 		mm_ops->put_page(kvm_pte_follow(ctx->old, mm_ops));
156471233d05SWill Deacon 
156571233d05SWill Deacon 	return 0;
156671233d05SWill Deacon }
156771233d05SWill Deacon 
kvm_pgtable_stage2_destroy(struct kvm_pgtable * pgt)156871233d05SWill Deacon void kvm_pgtable_stage2_destroy(struct kvm_pgtable *pgt)
156971233d05SWill Deacon {
157071233d05SWill Deacon 	size_t pgd_sz;
157171233d05SWill Deacon 	struct kvm_pgtable_walker walker = {
157271233d05SWill Deacon 		.cb	= stage2_free_walker,
157371233d05SWill Deacon 		.flags	= KVM_PGTABLE_WALK_LEAF |
157471233d05SWill Deacon 			  KVM_PGTABLE_WALK_TABLE_POST,
157571233d05SWill Deacon 	};
157671233d05SWill Deacon 
157771233d05SWill Deacon 	WARN_ON(kvm_pgtable_walk(pgt, 0, BIT(pgt->ia_bits), &walker));
157871233d05SWill Deacon 	pgd_sz = kvm_pgd_pages(pgt->ia_bits, pgt->start_level) * PAGE_SIZE;
15793a5154c7SOliver Upton 	pgt->mm_ops->free_pages_exact(kvm_dereference_pteref(&walker, pgt->pgd), pgd_sz);
158071233d05SWill Deacon 	pgt->pgd = NULL;
158171233d05SWill Deacon }
15828e94e125SOliver Upton 
kvm_pgtable_stage2_free_unlinked(struct kvm_pgtable_mm_ops * mm_ops,void * pgtable,u32 level)1583c14d08c5SRicardo Koller void kvm_pgtable_stage2_free_unlinked(struct kvm_pgtable_mm_ops *mm_ops, void *pgtable, u32 level)
15848e94e125SOliver Upton {
15855c359ccaSOliver Upton 	kvm_pteref_t ptep = (kvm_pteref_t)pgtable;
15868e94e125SOliver Upton 	struct kvm_pgtable_walker walker = {
15878e94e125SOliver Upton 		.cb	= stage2_free_walker,
15888e94e125SOliver Upton 		.flags	= KVM_PGTABLE_WALK_LEAF |
15898e94e125SOliver Upton 			  KVM_PGTABLE_WALK_TABLE_POST,
15908e94e125SOliver Upton 	};
15918e94e125SOliver Upton 	struct kvm_pgtable_walk_data data = {
15928e94e125SOliver Upton 		.walker	= &walker,
15938e94e125SOliver Upton 
15948e94e125SOliver Upton 		/*
15958e94e125SOliver Upton 		 * At this point the IPA really doesn't matter, as the page
15968e94e125SOliver Upton 		 * table being traversed has already been removed from the stage
15978e94e125SOliver Upton 		 * 2. Set an appropriate range to cover the entire page table.
15988e94e125SOliver Upton 		 */
15998e94e125SOliver Upton 		.addr	= 0,
16008e94e125SOliver Upton 		.end	= kvm_granule_size(level),
16018e94e125SOliver Upton 	};
16028e94e125SOliver Upton 
16035c359ccaSOliver Upton 	WARN_ON(__kvm_pgtable_walk(&data, mm_ops, ptep, level + 1));
1604f6a27d6dSOliver Upton 
1605f6a27d6dSOliver Upton 	WARN_ON(mm_ops->page_count(pgtable) != 1);
1606f6a27d6dSOliver Upton 	mm_ops->put_page(pgtable);
16078e94e125SOliver Upton }
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