xref: /openbmc/linux/arch/arm64/kvm/hyp/nvhe/pkvm.c (revision 840d9a813c8eaa5c55d86525e374a97ca5023b53)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Copyright (C) 2021 Google LLC
4  * Author: Fuad Tabba <tabba@google.com>
5  */
6 
7 #include <linux/kvm_host.h>
8 #include <linux/mm.h>
9 #include <nvhe/fixed_config.h>
10 #include <nvhe/mem_protect.h>
11 #include <nvhe/memory.h>
12 #include <nvhe/pkvm.h>
13 #include <nvhe/trap_handler.h>
14 
15 /* Used by icache_is_vpipt(). */
16 unsigned long __icache_flags;
17 
18 /* Used by kvm_get_vttbr(). */
19 unsigned int kvm_arm_vmid_bits;
20 
21 unsigned int kvm_host_sve_max_vl;
22 
23 /*
24  * Set trap register values based on features in ID_AA64PFR0.
25  */
pvm_init_traps_aa64pfr0(struct kvm_vcpu * vcpu)26 static void pvm_init_traps_aa64pfr0(struct kvm_vcpu *vcpu)
27 {
28 	const u64 feature_ids = pvm_read_id_reg(vcpu, SYS_ID_AA64PFR0_EL1);
29 	u64 hcr_set = HCR_RW;
30 	u64 hcr_clear = 0;
31 
32 	/* Protected KVM does not support AArch32 guests. */
33 	BUILD_BUG_ON(FIELD_GET(ARM64_FEATURE_MASK(ID_AA64PFR0_EL1_EL0),
34 		PVM_ID_AA64PFR0_RESTRICT_UNSIGNED) != ID_AA64PFR0_EL1_ELx_64BIT_ONLY);
35 	BUILD_BUG_ON(FIELD_GET(ARM64_FEATURE_MASK(ID_AA64PFR0_EL1_EL1),
36 		PVM_ID_AA64PFR0_RESTRICT_UNSIGNED) != ID_AA64PFR0_EL1_ELx_64BIT_ONLY);
37 
38 	/*
39 	 * Linux guests assume support for floating-point and Advanced SIMD. Do
40 	 * not change the trapping behavior for these from the KVM default.
41 	 */
42 	BUILD_BUG_ON(!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64PFR0_EL1_FP),
43 				PVM_ID_AA64PFR0_ALLOW));
44 	BUILD_BUG_ON(!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64PFR0_EL1_AdvSIMD),
45 				PVM_ID_AA64PFR0_ALLOW));
46 
47 	if (has_hvhe())
48 		hcr_set |= HCR_E2H;
49 
50 	/* Trap RAS unless all current versions are supported */
51 	if (FIELD_GET(ARM64_FEATURE_MASK(ID_AA64PFR0_EL1_RAS), feature_ids) <
52 	    ID_AA64PFR0_EL1_RAS_V1P1) {
53 		hcr_set |= HCR_TERR | HCR_TEA;
54 		hcr_clear |= HCR_FIEN;
55 	}
56 
57 	/* Trap AMU */
58 	if (!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64PFR0_EL1_AMU), feature_ids)) {
59 		hcr_clear |= HCR_AMVOFFEN;
60 	}
61 
62 	vcpu->arch.hcr_el2 |= hcr_set;
63 	vcpu->arch.hcr_el2 &= ~hcr_clear;
64 }
65 
66 /*
67  * Set trap register values based on features in ID_AA64PFR1.
68  */
pvm_init_traps_aa64pfr1(struct kvm_vcpu * vcpu)69 static void pvm_init_traps_aa64pfr1(struct kvm_vcpu *vcpu)
70 {
71 	const u64 feature_ids = pvm_read_id_reg(vcpu, SYS_ID_AA64PFR1_EL1);
72 	u64 hcr_set = 0;
73 	u64 hcr_clear = 0;
74 
75 	/* Memory Tagging: Trap and Treat as Untagged if not supported. */
76 	if (!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64PFR1_EL1_MTE), feature_ids)) {
77 		hcr_set |= HCR_TID5;
78 		hcr_clear |= HCR_DCT | HCR_ATA;
79 	}
80 
81 	vcpu->arch.hcr_el2 |= hcr_set;
82 	vcpu->arch.hcr_el2 &= ~hcr_clear;
83 }
84 
85 /*
86  * Set trap register values based on features in ID_AA64DFR0.
87  */
pvm_init_traps_aa64dfr0(struct kvm_vcpu * vcpu)88 static void pvm_init_traps_aa64dfr0(struct kvm_vcpu *vcpu)
89 {
90 	const u64 feature_ids = pvm_read_id_reg(vcpu, SYS_ID_AA64DFR0_EL1);
91 	u64 mdcr_set = 0;
92 	u64 mdcr_clear = 0;
93 
94 	/* Trap/constrain PMU */
95 	if (!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64DFR0_EL1_PMUVer), feature_ids)) {
96 		mdcr_set |= MDCR_EL2_TPM | MDCR_EL2_TPMCR;
97 		mdcr_clear |= MDCR_EL2_HPME | MDCR_EL2_MTPME |
98 			      MDCR_EL2_HPMN_MASK;
99 	}
100 
101 	/* Trap Debug */
102 	if (!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64DFR0_EL1_DebugVer), feature_ids))
103 		mdcr_set |= MDCR_EL2_TDRA | MDCR_EL2_TDA | MDCR_EL2_TDE;
104 
105 	/* Trap OS Double Lock */
106 	if (!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64DFR0_EL1_DoubleLock), feature_ids))
107 		mdcr_set |= MDCR_EL2_TDOSA;
108 
109 	/* Trap SPE */
110 	if (!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64DFR0_EL1_PMSVer), feature_ids)) {
111 		mdcr_set |= MDCR_EL2_TPMS;
112 		mdcr_clear |= MDCR_EL2_E2PB_MASK << MDCR_EL2_E2PB_SHIFT;
113 	}
114 
115 	/* Trap Trace Filter */
116 	if (!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64DFR0_EL1_TraceFilt), feature_ids))
117 		mdcr_set |= MDCR_EL2_TTRF;
118 
119 	vcpu->arch.mdcr_el2 |= mdcr_set;
120 	vcpu->arch.mdcr_el2 &= ~mdcr_clear;
121 }
122 
123 /*
124  * Set trap register values based on features in ID_AA64MMFR0.
125  */
pvm_init_traps_aa64mmfr0(struct kvm_vcpu * vcpu)126 static void pvm_init_traps_aa64mmfr0(struct kvm_vcpu *vcpu)
127 {
128 	const u64 feature_ids = pvm_read_id_reg(vcpu, SYS_ID_AA64MMFR0_EL1);
129 	u64 mdcr_set = 0;
130 
131 	/* Trap Debug Communications Channel registers */
132 	if (!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64MMFR0_EL1_FGT), feature_ids))
133 		mdcr_set |= MDCR_EL2_TDCC;
134 
135 	vcpu->arch.mdcr_el2 |= mdcr_set;
136 }
137 
138 /*
139  * Set trap register values based on features in ID_AA64MMFR1.
140  */
pvm_init_traps_aa64mmfr1(struct kvm_vcpu * vcpu)141 static void pvm_init_traps_aa64mmfr1(struct kvm_vcpu *vcpu)
142 {
143 	const u64 feature_ids = pvm_read_id_reg(vcpu, SYS_ID_AA64MMFR1_EL1);
144 	u64 hcr_set = 0;
145 
146 	/* Trap LOR */
147 	if (!FIELD_GET(ARM64_FEATURE_MASK(ID_AA64MMFR1_EL1_LO), feature_ids))
148 		hcr_set |= HCR_TLOR;
149 
150 	vcpu->arch.hcr_el2 |= hcr_set;
151 }
152 
153 /*
154  * Set baseline trap register values.
155  */
pvm_init_trap_regs(struct kvm_vcpu * vcpu)156 static void pvm_init_trap_regs(struct kvm_vcpu *vcpu)
157 {
158 	const u64 hcr_trap_feat_regs = HCR_TID3;
159 	const u64 hcr_trap_impdef = HCR_TACR | HCR_TIDCP | HCR_TID1;
160 
161 	/*
162 	 * Always trap:
163 	 * - Feature id registers: to control features exposed to guests
164 	 * - Implementation-defined features
165 	 */
166 	vcpu->arch.hcr_el2 |= hcr_trap_feat_regs | hcr_trap_impdef;
167 
168 	/* Clear res0 and set res1 bits to trap potential new features. */
169 	vcpu->arch.hcr_el2 &= ~(HCR_RES0);
170 	vcpu->arch.mdcr_el2 &= ~(MDCR_EL2_RES0);
171 }
172 
173 /*
174  * Initialize trap register values for protected VMs.
175  */
__pkvm_vcpu_init_traps(struct kvm_vcpu * vcpu)176 void __pkvm_vcpu_init_traps(struct kvm_vcpu *vcpu)
177 {
178 	pvm_init_trap_regs(vcpu);
179 	pvm_init_traps_aa64pfr0(vcpu);
180 	pvm_init_traps_aa64pfr1(vcpu);
181 	pvm_init_traps_aa64dfr0(vcpu);
182 	pvm_init_traps_aa64mmfr0(vcpu);
183 	pvm_init_traps_aa64mmfr1(vcpu);
184 }
185 
186 /*
187  * Start the VM table handle at the offset defined instead of at 0.
188  * Mainly for sanity checking and debugging.
189  */
190 #define HANDLE_OFFSET 0x1000
191 
vm_handle_to_idx(pkvm_handle_t handle)192 static unsigned int vm_handle_to_idx(pkvm_handle_t handle)
193 {
194 	return handle - HANDLE_OFFSET;
195 }
196 
idx_to_vm_handle(unsigned int idx)197 static pkvm_handle_t idx_to_vm_handle(unsigned int idx)
198 {
199 	return idx + HANDLE_OFFSET;
200 }
201 
202 /*
203  * Spinlock for protecting state related to the VM table. Protects writes
204  * to 'vm_table' and 'nr_table_entries' as well as reads and writes to
205  * 'last_hyp_vcpu_lookup'.
206  */
207 static DEFINE_HYP_SPINLOCK(vm_table_lock);
208 
209 /*
210  * The table of VM entries for protected VMs in hyp.
211  * Allocated at hyp initialization and setup.
212  */
213 static struct pkvm_hyp_vm **vm_table;
214 
pkvm_hyp_vm_table_init(void * tbl)215 void pkvm_hyp_vm_table_init(void *tbl)
216 {
217 	WARN_ON(vm_table);
218 	vm_table = tbl;
219 }
220 
221 /*
222  * Return the hyp vm structure corresponding to the handle.
223  */
get_vm_by_handle(pkvm_handle_t handle)224 static struct pkvm_hyp_vm *get_vm_by_handle(pkvm_handle_t handle)
225 {
226 	unsigned int idx = vm_handle_to_idx(handle);
227 
228 	if (unlikely(idx >= KVM_MAX_PVMS))
229 		return NULL;
230 
231 	return vm_table[idx];
232 }
233 
pkvm_load_hyp_vcpu(pkvm_handle_t handle,unsigned int vcpu_idx)234 struct pkvm_hyp_vcpu *pkvm_load_hyp_vcpu(pkvm_handle_t handle,
235 					 unsigned int vcpu_idx)
236 {
237 	struct pkvm_hyp_vcpu *hyp_vcpu = NULL;
238 	struct pkvm_hyp_vm *hyp_vm;
239 
240 	hyp_spin_lock(&vm_table_lock);
241 	hyp_vm = get_vm_by_handle(handle);
242 	if (!hyp_vm || hyp_vm->nr_vcpus <= vcpu_idx)
243 		goto unlock;
244 
245 	hyp_vcpu = hyp_vm->vcpus[vcpu_idx];
246 	hyp_page_ref_inc(hyp_virt_to_page(hyp_vm));
247 unlock:
248 	hyp_spin_unlock(&vm_table_lock);
249 	return hyp_vcpu;
250 }
251 
pkvm_put_hyp_vcpu(struct pkvm_hyp_vcpu * hyp_vcpu)252 void pkvm_put_hyp_vcpu(struct pkvm_hyp_vcpu *hyp_vcpu)
253 {
254 	struct pkvm_hyp_vm *hyp_vm = pkvm_hyp_vcpu_to_hyp_vm(hyp_vcpu);
255 
256 	hyp_spin_lock(&vm_table_lock);
257 	hyp_page_ref_dec(hyp_virt_to_page(hyp_vm));
258 	hyp_spin_unlock(&vm_table_lock);
259 }
260 
unpin_host_vcpu(struct kvm_vcpu * host_vcpu)261 static void unpin_host_vcpu(struct kvm_vcpu *host_vcpu)
262 {
263 	if (host_vcpu)
264 		hyp_unpin_shared_mem(host_vcpu, host_vcpu + 1);
265 }
266 
unpin_host_vcpus(struct pkvm_hyp_vcpu * hyp_vcpus[],unsigned int nr_vcpus)267 static void unpin_host_vcpus(struct pkvm_hyp_vcpu *hyp_vcpus[],
268 			     unsigned int nr_vcpus)
269 {
270 	int i;
271 
272 	for (i = 0; i < nr_vcpus; i++)
273 		unpin_host_vcpu(hyp_vcpus[i]->host_vcpu);
274 }
275 
init_pkvm_hyp_vm(struct kvm * host_kvm,struct pkvm_hyp_vm * hyp_vm,unsigned int nr_vcpus)276 static void init_pkvm_hyp_vm(struct kvm *host_kvm, struct pkvm_hyp_vm *hyp_vm,
277 			     unsigned int nr_vcpus)
278 {
279 	hyp_vm->host_kvm = host_kvm;
280 	hyp_vm->kvm.created_vcpus = nr_vcpus;
281 	hyp_vm->kvm.arch.vtcr = host_mmu.arch.vtcr;
282 }
283 
init_pkvm_hyp_vcpu(struct pkvm_hyp_vcpu * hyp_vcpu,struct pkvm_hyp_vm * hyp_vm,struct kvm_vcpu * host_vcpu,unsigned int vcpu_idx)284 static int init_pkvm_hyp_vcpu(struct pkvm_hyp_vcpu *hyp_vcpu,
285 			      struct pkvm_hyp_vm *hyp_vm,
286 			      struct kvm_vcpu *host_vcpu,
287 			      unsigned int vcpu_idx)
288 {
289 	int ret = 0;
290 
291 	if (hyp_pin_shared_mem(host_vcpu, host_vcpu + 1))
292 		return -EBUSY;
293 
294 	if (host_vcpu->vcpu_idx != vcpu_idx) {
295 		ret = -EINVAL;
296 		goto done;
297 	}
298 
299 	hyp_vcpu->host_vcpu = host_vcpu;
300 
301 	hyp_vcpu->vcpu.kvm = &hyp_vm->kvm;
302 	hyp_vcpu->vcpu.vcpu_id = READ_ONCE(host_vcpu->vcpu_id);
303 	hyp_vcpu->vcpu.vcpu_idx = vcpu_idx;
304 
305 	hyp_vcpu->vcpu.arch.hw_mmu = &hyp_vm->kvm.arch.mmu;
306 	hyp_vcpu->vcpu.arch.cflags = READ_ONCE(host_vcpu->arch.cflags);
307 done:
308 	if (ret)
309 		unpin_host_vcpu(host_vcpu);
310 	return ret;
311 }
312 
find_free_vm_table_entry(struct kvm * host_kvm)313 static int find_free_vm_table_entry(struct kvm *host_kvm)
314 {
315 	int i;
316 
317 	for (i = 0; i < KVM_MAX_PVMS; ++i) {
318 		if (!vm_table[i])
319 			return i;
320 	}
321 
322 	return -ENOMEM;
323 }
324 
325 /*
326  * Allocate a VM table entry and insert a pointer to the new vm.
327  *
328  * Return a unique handle to the protected VM on success,
329  * negative error code on failure.
330  */
insert_vm_table_entry(struct kvm * host_kvm,struct pkvm_hyp_vm * hyp_vm)331 static pkvm_handle_t insert_vm_table_entry(struct kvm *host_kvm,
332 					   struct pkvm_hyp_vm *hyp_vm)
333 {
334 	struct kvm_s2_mmu *mmu = &hyp_vm->kvm.arch.mmu;
335 	int idx;
336 
337 	hyp_assert_lock_held(&vm_table_lock);
338 
339 	/*
340 	 * Initializing protected state might have failed, yet a malicious
341 	 * host could trigger this function. Thus, ensure that 'vm_table'
342 	 * exists.
343 	 */
344 	if (unlikely(!vm_table))
345 		return -EINVAL;
346 
347 	idx = find_free_vm_table_entry(host_kvm);
348 	if (idx < 0)
349 		return idx;
350 
351 	hyp_vm->kvm.arch.pkvm.handle = idx_to_vm_handle(idx);
352 
353 	/* VMID 0 is reserved for the host */
354 	atomic64_set(&mmu->vmid.id, idx + 1);
355 
356 	mmu->arch = &hyp_vm->kvm.arch;
357 	mmu->pgt = &hyp_vm->pgt;
358 
359 	vm_table[idx] = hyp_vm;
360 	return hyp_vm->kvm.arch.pkvm.handle;
361 }
362 
363 /*
364  * Deallocate and remove the VM table entry corresponding to the handle.
365  */
remove_vm_table_entry(pkvm_handle_t handle)366 static void remove_vm_table_entry(pkvm_handle_t handle)
367 {
368 	hyp_assert_lock_held(&vm_table_lock);
369 	vm_table[vm_handle_to_idx(handle)] = NULL;
370 }
371 
pkvm_get_hyp_vm_size(unsigned int nr_vcpus)372 static size_t pkvm_get_hyp_vm_size(unsigned int nr_vcpus)
373 {
374 	return size_add(sizeof(struct pkvm_hyp_vm),
375 		size_mul(sizeof(struct pkvm_hyp_vcpu *), nr_vcpus));
376 }
377 
map_donated_memory_noclear(unsigned long host_va,size_t size)378 static void *map_donated_memory_noclear(unsigned long host_va, size_t size)
379 {
380 	void *va = (void *)kern_hyp_va(host_va);
381 
382 	if (!PAGE_ALIGNED(va))
383 		return NULL;
384 
385 	if (__pkvm_host_donate_hyp(hyp_virt_to_pfn(va),
386 				   PAGE_ALIGN(size) >> PAGE_SHIFT))
387 		return NULL;
388 
389 	return va;
390 }
391 
map_donated_memory(unsigned long host_va,size_t size)392 static void *map_donated_memory(unsigned long host_va, size_t size)
393 {
394 	void *va = map_donated_memory_noclear(host_va, size);
395 
396 	if (va)
397 		memset(va, 0, size);
398 
399 	return va;
400 }
401 
__unmap_donated_memory(void * va,size_t size)402 static void __unmap_donated_memory(void *va, size_t size)
403 {
404 	WARN_ON(__pkvm_hyp_donate_host(hyp_virt_to_pfn(va),
405 				       PAGE_ALIGN(size) >> PAGE_SHIFT));
406 }
407 
unmap_donated_memory(void * va,size_t size)408 static void unmap_donated_memory(void *va, size_t size)
409 {
410 	if (!va)
411 		return;
412 
413 	memset(va, 0, size);
414 	__unmap_donated_memory(va, size);
415 }
416 
unmap_donated_memory_noclear(void * va,size_t size)417 static void unmap_donated_memory_noclear(void *va, size_t size)
418 {
419 	if (!va)
420 		return;
421 
422 	__unmap_donated_memory(va, size);
423 }
424 
425 /*
426  * Initialize the hypervisor copy of the protected VM state using the
427  * memory donated by the host.
428  *
429  * Unmaps the donated memory from the host at stage 2.
430  *
431  * host_kvm: A pointer to the host's struct kvm.
432  * vm_hva: The host va of the area being donated for the VM state.
433  *	   Must be page aligned.
434  * pgd_hva: The host va of the area being donated for the stage-2 PGD for
435  *	    the VM. Must be page aligned. Its size is implied by the VM's
436  *	    VTCR.
437  *
438  * Return a unique handle to the protected VM on success,
439  * negative error code on failure.
440  */
__pkvm_init_vm(struct kvm * host_kvm,unsigned long vm_hva,unsigned long pgd_hva)441 int __pkvm_init_vm(struct kvm *host_kvm, unsigned long vm_hva,
442 		   unsigned long pgd_hva)
443 {
444 	struct pkvm_hyp_vm *hyp_vm = NULL;
445 	size_t vm_size, pgd_size;
446 	unsigned int nr_vcpus;
447 	void *pgd = NULL;
448 	int ret;
449 
450 	ret = hyp_pin_shared_mem(host_kvm, host_kvm + 1);
451 	if (ret)
452 		return ret;
453 
454 	nr_vcpus = READ_ONCE(host_kvm->created_vcpus);
455 	if (nr_vcpus < 1) {
456 		ret = -EINVAL;
457 		goto err_unpin_kvm;
458 	}
459 
460 	vm_size = pkvm_get_hyp_vm_size(nr_vcpus);
461 	pgd_size = kvm_pgtable_stage2_pgd_size(host_mmu.arch.vtcr);
462 
463 	ret = -ENOMEM;
464 
465 	hyp_vm = map_donated_memory(vm_hva, vm_size);
466 	if (!hyp_vm)
467 		goto err_remove_mappings;
468 
469 	pgd = map_donated_memory_noclear(pgd_hva, pgd_size);
470 	if (!pgd)
471 		goto err_remove_mappings;
472 
473 	init_pkvm_hyp_vm(host_kvm, hyp_vm, nr_vcpus);
474 
475 	hyp_spin_lock(&vm_table_lock);
476 	ret = insert_vm_table_entry(host_kvm, hyp_vm);
477 	if (ret < 0)
478 		goto err_unlock;
479 
480 	ret = kvm_guest_prepare_stage2(hyp_vm, pgd);
481 	if (ret)
482 		goto err_remove_vm_table_entry;
483 	hyp_spin_unlock(&vm_table_lock);
484 
485 	return hyp_vm->kvm.arch.pkvm.handle;
486 
487 err_remove_vm_table_entry:
488 	remove_vm_table_entry(hyp_vm->kvm.arch.pkvm.handle);
489 err_unlock:
490 	hyp_spin_unlock(&vm_table_lock);
491 err_remove_mappings:
492 	unmap_donated_memory(hyp_vm, vm_size);
493 	unmap_donated_memory(pgd, pgd_size);
494 err_unpin_kvm:
495 	hyp_unpin_shared_mem(host_kvm, host_kvm + 1);
496 	return ret;
497 }
498 
499 /*
500  * Initialize the hypervisor copy of the protected vCPU state using the
501  * memory donated by the host.
502  *
503  * handle: The handle for the protected vm.
504  * host_vcpu: A pointer to the corresponding host vcpu.
505  * vcpu_hva: The host va of the area being donated for the vcpu state.
506  *	     Must be page aligned. The size of the area must be equal to
507  *	     the page-aligned size of 'struct pkvm_hyp_vcpu'.
508  * Return 0 on success, negative error code on failure.
509  */
__pkvm_init_vcpu(pkvm_handle_t handle,struct kvm_vcpu * host_vcpu,unsigned long vcpu_hva)510 int __pkvm_init_vcpu(pkvm_handle_t handle, struct kvm_vcpu *host_vcpu,
511 		     unsigned long vcpu_hva)
512 {
513 	struct pkvm_hyp_vcpu *hyp_vcpu;
514 	struct pkvm_hyp_vm *hyp_vm;
515 	unsigned int idx;
516 	int ret;
517 
518 	hyp_vcpu = map_donated_memory(vcpu_hva, sizeof(*hyp_vcpu));
519 	if (!hyp_vcpu)
520 		return -ENOMEM;
521 
522 	hyp_spin_lock(&vm_table_lock);
523 
524 	hyp_vm = get_vm_by_handle(handle);
525 	if (!hyp_vm) {
526 		ret = -ENOENT;
527 		goto unlock;
528 	}
529 
530 	idx = hyp_vm->nr_vcpus;
531 	if (idx >= hyp_vm->kvm.created_vcpus) {
532 		ret = -EINVAL;
533 		goto unlock;
534 	}
535 
536 	ret = init_pkvm_hyp_vcpu(hyp_vcpu, hyp_vm, host_vcpu, idx);
537 	if (ret)
538 		goto unlock;
539 
540 	hyp_vm->vcpus[idx] = hyp_vcpu;
541 	hyp_vm->nr_vcpus++;
542 unlock:
543 	hyp_spin_unlock(&vm_table_lock);
544 
545 	if (ret)
546 		unmap_donated_memory(hyp_vcpu, sizeof(*hyp_vcpu));
547 
548 	return ret;
549 }
550 
551 static void
teardown_donated_memory(struct kvm_hyp_memcache * mc,void * addr,size_t size)552 teardown_donated_memory(struct kvm_hyp_memcache *mc, void *addr, size_t size)
553 {
554 	size = PAGE_ALIGN(size);
555 	memset(addr, 0, size);
556 
557 	for (void *start = addr; start < addr + size; start += PAGE_SIZE)
558 		push_hyp_memcache(mc, start, hyp_virt_to_phys);
559 
560 	unmap_donated_memory_noclear(addr, size);
561 }
562 
__pkvm_teardown_vm(pkvm_handle_t handle)563 int __pkvm_teardown_vm(pkvm_handle_t handle)
564 {
565 	struct kvm_hyp_memcache *mc;
566 	struct pkvm_hyp_vm *hyp_vm;
567 	struct kvm *host_kvm;
568 	unsigned int idx;
569 	size_t vm_size;
570 	int err;
571 
572 	hyp_spin_lock(&vm_table_lock);
573 	hyp_vm = get_vm_by_handle(handle);
574 	if (!hyp_vm) {
575 		err = -ENOENT;
576 		goto err_unlock;
577 	}
578 
579 	if (WARN_ON(hyp_page_count(hyp_vm))) {
580 		err = -EBUSY;
581 		goto err_unlock;
582 	}
583 
584 	host_kvm = hyp_vm->host_kvm;
585 
586 	/* Ensure the VMID is clean before it can be reallocated */
587 	__kvm_tlb_flush_vmid(&hyp_vm->kvm.arch.mmu);
588 	remove_vm_table_entry(handle);
589 	hyp_spin_unlock(&vm_table_lock);
590 
591 	/* Reclaim guest pages (including page-table pages) */
592 	mc = &host_kvm->arch.pkvm.teardown_mc;
593 	reclaim_guest_pages(hyp_vm, mc);
594 	unpin_host_vcpus(hyp_vm->vcpus, hyp_vm->nr_vcpus);
595 
596 	/* Push the metadata pages to the teardown memcache */
597 	for (idx = 0; idx < hyp_vm->nr_vcpus; ++idx) {
598 		struct pkvm_hyp_vcpu *hyp_vcpu = hyp_vm->vcpus[idx];
599 
600 		teardown_donated_memory(mc, hyp_vcpu, sizeof(*hyp_vcpu));
601 	}
602 
603 	vm_size = pkvm_get_hyp_vm_size(hyp_vm->kvm.created_vcpus);
604 	teardown_donated_memory(mc, hyp_vm, vm_size);
605 	hyp_unpin_shared_mem(host_kvm, host_kvm + 1);
606 	return 0;
607 
608 err_unlock:
609 	hyp_spin_unlock(&vm_table_lock);
610 	return err;
611 }
612