xref: /linux/tools/testing/selftests/kvm/lib/loongarch/processor.c (revision 43db1111073049220381944af4a3b8a5400eda71)
1*2ebf31d5SBibo Mao // SPDX-License-Identifier: GPL-2.0
2*2ebf31d5SBibo Mao 
3*2ebf31d5SBibo Mao #include <assert.h>
4*2ebf31d5SBibo Mao #include <linux/compiler.h>
5*2ebf31d5SBibo Mao 
6*2ebf31d5SBibo Mao #include "kvm_util.h"
7*2ebf31d5SBibo Mao #include "processor.h"
8*2ebf31d5SBibo Mao #include "ucall_common.h"
9*2ebf31d5SBibo Mao 
10*2ebf31d5SBibo Mao #define LOONGARCH_PAGE_TABLE_PHYS_MIN		0x200000
11*2ebf31d5SBibo Mao #define LOONGARCH_GUEST_STACK_VADDR_MIN		0x200000
12*2ebf31d5SBibo Mao 
13*2ebf31d5SBibo Mao static vm_paddr_t invalid_pgtable[4];
14*2ebf31d5SBibo Mao 
virt_pte_index(struct kvm_vm * vm,vm_vaddr_t gva,int level)15*2ebf31d5SBibo Mao static uint64_t virt_pte_index(struct kvm_vm *vm, vm_vaddr_t gva, int level)
16*2ebf31d5SBibo Mao {
17*2ebf31d5SBibo Mao 	unsigned int shift;
18*2ebf31d5SBibo Mao 	uint64_t mask;
19*2ebf31d5SBibo Mao 
20*2ebf31d5SBibo Mao 	shift = level * (vm->page_shift - 3) + vm->page_shift;
21*2ebf31d5SBibo Mao 	mask = (1UL << (vm->page_shift - 3)) - 1;
22*2ebf31d5SBibo Mao 	return (gva >> shift) & mask;
23*2ebf31d5SBibo Mao }
24*2ebf31d5SBibo Mao 
pte_addr(struct kvm_vm * vm,uint64_t entry)25*2ebf31d5SBibo Mao static uint64_t pte_addr(struct kvm_vm *vm, uint64_t entry)
26*2ebf31d5SBibo Mao {
27*2ebf31d5SBibo Mao 	return entry &  ~((0x1UL << vm->page_shift) - 1);
28*2ebf31d5SBibo Mao }
29*2ebf31d5SBibo Mao 
ptrs_per_pte(struct kvm_vm * vm)30*2ebf31d5SBibo Mao static uint64_t ptrs_per_pte(struct kvm_vm *vm)
31*2ebf31d5SBibo Mao {
32*2ebf31d5SBibo Mao 	return 1 << (vm->page_shift - 3);
33*2ebf31d5SBibo Mao }
34*2ebf31d5SBibo Mao 
virt_set_pgtable(struct kvm_vm * vm,vm_paddr_t table,vm_paddr_t child)35*2ebf31d5SBibo Mao static void virt_set_pgtable(struct kvm_vm *vm, vm_paddr_t table, vm_paddr_t child)
36*2ebf31d5SBibo Mao {
37*2ebf31d5SBibo Mao 	uint64_t *ptep;
38*2ebf31d5SBibo Mao 	int i, ptrs_per_pte;
39*2ebf31d5SBibo Mao 
40*2ebf31d5SBibo Mao 	ptep = addr_gpa2hva(vm, table);
41*2ebf31d5SBibo Mao 	ptrs_per_pte = 1 << (vm->page_shift - 3);
42*2ebf31d5SBibo Mao 	for (i = 0; i < ptrs_per_pte; i++)
43*2ebf31d5SBibo Mao 		WRITE_ONCE(*(ptep + i), child);
44*2ebf31d5SBibo Mao }
45*2ebf31d5SBibo Mao 
virt_arch_pgd_alloc(struct kvm_vm * vm)46*2ebf31d5SBibo Mao void virt_arch_pgd_alloc(struct kvm_vm *vm)
47*2ebf31d5SBibo Mao {
48*2ebf31d5SBibo Mao 	int i;
49*2ebf31d5SBibo Mao 	vm_paddr_t child, table;
50*2ebf31d5SBibo Mao 
51*2ebf31d5SBibo Mao 	if (vm->pgd_created)
52*2ebf31d5SBibo Mao 		return;
53*2ebf31d5SBibo Mao 
54*2ebf31d5SBibo Mao 	child = table = 0;
55*2ebf31d5SBibo Mao 	for (i = 0; i < vm->pgtable_levels; i++) {
56*2ebf31d5SBibo Mao 		invalid_pgtable[i] = child;
57*2ebf31d5SBibo Mao 		table = vm_phy_page_alloc(vm, LOONGARCH_PAGE_TABLE_PHYS_MIN,
58*2ebf31d5SBibo Mao 				vm->memslots[MEM_REGION_PT]);
59*2ebf31d5SBibo Mao 		TEST_ASSERT(table, "Fail to allocate page tale at level %d\n", i);
60*2ebf31d5SBibo Mao 		virt_set_pgtable(vm, table, child);
61*2ebf31d5SBibo Mao 		child = table;
62*2ebf31d5SBibo Mao 	}
63*2ebf31d5SBibo Mao 	vm->pgd = table;
64*2ebf31d5SBibo Mao 	vm->pgd_created = true;
65*2ebf31d5SBibo Mao }
66*2ebf31d5SBibo Mao 
virt_pte_none(uint64_t * ptep,int level)67*2ebf31d5SBibo Mao static int virt_pte_none(uint64_t *ptep, int level)
68*2ebf31d5SBibo Mao {
69*2ebf31d5SBibo Mao 	return *ptep == invalid_pgtable[level];
70*2ebf31d5SBibo Mao }
71*2ebf31d5SBibo Mao 
virt_populate_pte(struct kvm_vm * vm,vm_vaddr_t gva,int alloc)72*2ebf31d5SBibo Mao static uint64_t *virt_populate_pte(struct kvm_vm *vm, vm_vaddr_t gva, int alloc)
73*2ebf31d5SBibo Mao {
74*2ebf31d5SBibo Mao 	int level;
75*2ebf31d5SBibo Mao 	uint64_t *ptep;
76*2ebf31d5SBibo Mao 	vm_paddr_t child;
77*2ebf31d5SBibo Mao 
78*2ebf31d5SBibo Mao 	if (!vm->pgd_created)
79*2ebf31d5SBibo Mao 		goto unmapped_gva;
80*2ebf31d5SBibo Mao 
81*2ebf31d5SBibo Mao 	child = vm->pgd;
82*2ebf31d5SBibo Mao 	level = vm->pgtable_levels - 1;
83*2ebf31d5SBibo Mao 	while (level > 0) {
84*2ebf31d5SBibo Mao 		ptep = addr_gpa2hva(vm, child) + virt_pte_index(vm, gva, level) * 8;
85*2ebf31d5SBibo Mao 		if (virt_pte_none(ptep, level)) {
86*2ebf31d5SBibo Mao 			if (alloc) {
87*2ebf31d5SBibo Mao 				child = vm_alloc_page_table(vm);
88*2ebf31d5SBibo Mao 				virt_set_pgtable(vm, child, invalid_pgtable[level - 1]);
89*2ebf31d5SBibo Mao 				WRITE_ONCE(*ptep, child);
90*2ebf31d5SBibo Mao 			} else
91*2ebf31d5SBibo Mao 				goto unmapped_gva;
92*2ebf31d5SBibo Mao 
93*2ebf31d5SBibo Mao 		} else
94*2ebf31d5SBibo Mao 			child = pte_addr(vm, *ptep);
95*2ebf31d5SBibo Mao 		level--;
96*2ebf31d5SBibo Mao 	}
97*2ebf31d5SBibo Mao 
98*2ebf31d5SBibo Mao 	ptep = addr_gpa2hva(vm, child) + virt_pte_index(vm, gva, level) * 8;
99*2ebf31d5SBibo Mao 	return ptep;
100*2ebf31d5SBibo Mao 
101*2ebf31d5SBibo Mao unmapped_gva:
102*2ebf31d5SBibo Mao 	TEST_FAIL("No mapping for vm virtual address, gva: 0x%lx", gva);
103*2ebf31d5SBibo Mao 	exit(EXIT_FAILURE);
104*2ebf31d5SBibo Mao }
105*2ebf31d5SBibo Mao 
addr_arch_gva2gpa(struct kvm_vm * vm,vm_vaddr_t gva)106*2ebf31d5SBibo Mao vm_paddr_t addr_arch_gva2gpa(struct kvm_vm *vm, vm_vaddr_t gva)
107*2ebf31d5SBibo Mao {
108*2ebf31d5SBibo Mao 	uint64_t *ptep;
109*2ebf31d5SBibo Mao 
110*2ebf31d5SBibo Mao 	ptep = virt_populate_pte(vm, gva, 0);
111*2ebf31d5SBibo Mao 	TEST_ASSERT(*ptep != 0, "Virtual address vaddr: 0x%lx not mapped\n", gva);
112*2ebf31d5SBibo Mao 
113*2ebf31d5SBibo Mao 	return pte_addr(vm, *ptep) + (gva & (vm->page_size - 1));
114*2ebf31d5SBibo Mao }
115*2ebf31d5SBibo Mao 
virt_arch_pg_map(struct kvm_vm * vm,uint64_t vaddr,uint64_t paddr)116*2ebf31d5SBibo Mao void virt_arch_pg_map(struct kvm_vm *vm, uint64_t vaddr, uint64_t paddr)
117*2ebf31d5SBibo Mao {
118*2ebf31d5SBibo Mao 	uint32_t prot_bits;
119*2ebf31d5SBibo Mao 	uint64_t *ptep;
120*2ebf31d5SBibo Mao 
121*2ebf31d5SBibo Mao 	TEST_ASSERT((vaddr % vm->page_size) == 0,
122*2ebf31d5SBibo Mao 			"Virtual address not on page boundary,\n"
123*2ebf31d5SBibo Mao 			"vaddr: 0x%lx vm->page_size: 0x%x", vaddr, vm->page_size);
124*2ebf31d5SBibo Mao 	TEST_ASSERT(sparsebit_is_set(vm->vpages_valid,
125*2ebf31d5SBibo Mao 			(vaddr >> vm->page_shift)),
126*2ebf31d5SBibo Mao 			"Invalid virtual address, vaddr: 0x%lx", vaddr);
127*2ebf31d5SBibo Mao 	TEST_ASSERT((paddr % vm->page_size) == 0,
128*2ebf31d5SBibo Mao 			"Physical address not on page boundary,\n"
129*2ebf31d5SBibo Mao 			"paddr: 0x%lx vm->page_size: 0x%x", paddr, vm->page_size);
130*2ebf31d5SBibo Mao 	TEST_ASSERT((paddr >> vm->page_shift) <= vm->max_gfn,
131*2ebf31d5SBibo Mao 			"Physical address beyond maximum supported,\n"
132*2ebf31d5SBibo Mao 			"paddr: 0x%lx vm->max_gfn: 0x%lx vm->page_size: 0x%x",
133*2ebf31d5SBibo Mao 			paddr, vm->max_gfn, vm->page_size);
134*2ebf31d5SBibo Mao 
135*2ebf31d5SBibo Mao 	ptep = virt_populate_pte(vm, vaddr, 1);
136*2ebf31d5SBibo Mao 	prot_bits = _PAGE_PRESENT | __READABLE | __WRITEABLE | _CACHE_CC | _PAGE_USER;
137*2ebf31d5SBibo Mao 	WRITE_ONCE(*ptep, paddr | prot_bits);
138*2ebf31d5SBibo Mao }
139*2ebf31d5SBibo Mao 
pte_dump(FILE * stream,struct kvm_vm * vm,uint8_t indent,uint64_t page,int level)140*2ebf31d5SBibo Mao static void pte_dump(FILE *stream, struct kvm_vm *vm, uint8_t indent, uint64_t page, int level)
141*2ebf31d5SBibo Mao {
142*2ebf31d5SBibo Mao 	uint64_t pte, *ptep;
143*2ebf31d5SBibo Mao 	static const char * const type[] = { "pte", "pmd", "pud", "pgd"};
144*2ebf31d5SBibo Mao 
145*2ebf31d5SBibo Mao 	if (level < 0)
146*2ebf31d5SBibo Mao 		return;
147*2ebf31d5SBibo Mao 
148*2ebf31d5SBibo Mao 	for (pte = page; pte < page + ptrs_per_pte(vm) * 8; pte += 8) {
149*2ebf31d5SBibo Mao 		ptep = addr_gpa2hva(vm, pte);
150*2ebf31d5SBibo Mao 		if (virt_pte_none(ptep, level))
151*2ebf31d5SBibo Mao 			continue;
152*2ebf31d5SBibo Mao 		fprintf(stream, "%*s%s: %lx: %lx at %p\n",
153*2ebf31d5SBibo Mao 				indent, "", type[level], pte, *ptep, ptep);
154*2ebf31d5SBibo Mao 		pte_dump(stream, vm, indent + 1, pte_addr(vm, *ptep), level--);
155*2ebf31d5SBibo Mao 	}
156*2ebf31d5SBibo Mao }
157*2ebf31d5SBibo Mao 
virt_arch_dump(FILE * stream,struct kvm_vm * vm,uint8_t indent)158*2ebf31d5SBibo Mao void virt_arch_dump(FILE *stream, struct kvm_vm *vm, uint8_t indent)
159*2ebf31d5SBibo Mao {
160*2ebf31d5SBibo Mao 	int level;
161*2ebf31d5SBibo Mao 
162*2ebf31d5SBibo Mao 	if (!vm->pgd_created)
163*2ebf31d5SBibo Mao 		return;
164*2ebf31d5SBibo Mao 
165*2ebf31d5SBibo Mao 	level = vm->pgtable_levels - 1;
166*2ebf31d5SBibo Mao 	pte_dump(stream, vm, indent, vm->pgd, level);
167*2ebf31d5SBibo Mao }
168*2ebf31d5SBibo Mao 
vcpu_arch_dump(FILE * stream,struct kvm_vcpu * vcpu,uint8_t indent)169*2ebf31d5SBibo Mao void vcpu_arch_dump(FILE *stream, struct kvm_vcpu *vcpu, uint8_t indent)
170*2ebf31d5SBibo Mao {
171*2ebf31d5SBibo Mao }
172*2ebf31d5SBibo Mao 
assert_on_unhandled_exception(struct kvm_vcpu * vcpu)173*2ebf31d5SBibo Mao void assert_on_unhandled_exception(struct kvm_vcpu *vcpu)
174*2ebf31d5SBibo Mao {
175*2ebf31d5SBibo Mao 	struct ucall uc;
176*2ebf31d5SBibo Mao 
177*2ebf31d5SBibo Mao 	if (get_ucall(vcpu, &uc) != UCALL_UNHANDLED)
178*2ebf31d5SBibo Mao 		return;
179*2ebf31d5SBibo Mao 
180*2ebf31d5SBibo Mao 	TEST_FAIL("Unexpected exception (pc:0x%lx, estat:0x%lx, badv:0x%lx)",
181*2ebf31d5SBibo Mao 			uc.args[0], uc.args[1], uc.args[2]);
182*2ebf31d5SBibo Mao }
183*2ebf31d5SBibo Mao 
route_exception(struct ex_regs * regs)184*2ebf31d5SBibo Mao void route_exception(struct ex_regs *regs)
185*2ebf31d5SBibo Mao {
186*2ebf31d5SBibo Mao 	unsigned long pc, estat, badv;
187*2ebf31d5SBibo Mao 
188*2ebf31d5SBibo Mao 	pc = regs->pc;
189*2ebf31d5SBibo Mao 	badv  = regs->badv;
190*2ebf31d5SBibo Mao 	estat = regs->estat;
191*2ebf31d5SBibo Mao 	ucall(UCALL_UNHANDLED, 3, pc, estat, badv);
192*2ebf31d5SBibo Mao 	while (1) ;
193*2ebf31d5SBibo Mao }
194*2ebf31d5SBibo Mao 
vcpu_args_set(struct kvm_vcpu * vcpu,unsigned int num,...)195*2ebf31d5SBibo Mao void vcpu_args_set(struct kvm_vcpu *vcpu, unsigned int num, ...)
196*2ebf31d5SBibo Mao {
197*2ebf31d5SBibo Mao 	int i;
198*2ebf31d5SBibo Mao 	va_list ap;
199*2ebf31d5SBibo Mao 	struct kvm_regs regs;
200*2ebf31d5SBibo Mao 
201*2ebf31d5SBibo Mao 	TEST_ASSERT(num >= 1 && num <= 8, "Unsupported number of args,\n"
202*2ebf31d5SBibo Mao 		    "num: %u\n", num);
203*2ebf31d5SBibo Mao 
204*2ebf31d5SBibo Mao 	vcpu_regs_get(vcpu, &regs);
205*2ebf31d5SBibo Mao 
206*2ebf31d5SBibo Mao 	va_start(ap, num);
207*2ebf31d5SBibo Mao 	for (i = 0; i < num; i++)
208*2ebf31d5SBibo Mao 		regs.gpr[i + 4] = va_arg(ap, uint64_t);
209*2ebf31d5SBibo Mao 	va_end(ap);
210*2ebf31d5SBibo Mao 
211*2ebf31d5SBibo Mao 	vcpu_regs_set(vcpu, &regs);
212*2ebf31d5SBibo Mao }
213*2ebf31d5SBibo Mao 
loongarch_get_csr(struct kvm_vcpu * vcpu,uint64_t id,void * addr)214*2ebf31d5SBibo Mao static void loongarch_get_csr(struct kvm_vcpu *vcpu, uint64_t id, void *addr)
215*2ebf31d5SBibo Mao {
216*2ebf31d5SBibo Mao 	uint64_t csrid;
217*2ebf31d5SBibo Mao 
218*2ebf31d5SBibo Mao 	csrid = KVM_REG_LOONGARCH_CSR | KVM_REG_SIZE_U64 | 8 * id;
219*2ebf31d5SBibo Mao 	__vcpu_get_reg(vcpu, csrid, addr);
220*2ebf31d5SBibo Mao }
221*2ebf31d5SBibo Mao 
loongarch_set_csr(struct kvm_vcpu * vcpu,uint64_t id,uint64_t val)222*2ebf31d5SBibo Mao static void loongarch_set_csr(struct kvm_vcpu *vcpu, uint64_t id, uint64_t val)
223*2ebf31d5SBibo Mao {
224*2ebf31d5SBibo Mao 	uint64_t csrid;
225*2ebf31d5SBibo Mao 
226*2ebf31d5SBibo Mao 	csrid = KVM_REG_LOONGARCH_CSR | KVM_REG_SIZE_U64 | 8 * id;
227*2ebf31d5SBibo Mao 	__vcpu_set_reg(vcpu, csrid, val);
228*2ebf31d5SBibo Mao }
229*2ebf31d5SBibo Mao 
loongarch_vcpu_setup(struct kvm_vcpu * vcpu)230*2ebf31d5SBibo Mao static void loongarch_vcpu_setup(struct kvm_vcpu *vcpu)
231*2ebf31d5SBibo Mao {
232*2ebf31d5SBibo Mao 	int width;
233*2ebf31d5SBibo Mao 	unsigned long val;
234*2ebf31d5SBibo Mao 	struct kvm_vm *vm = vcpu->vm;
235*2ebf31d5SBibo Mao 
236*2ebf31d5SBibo Mao 	switch (vm->mode) {
237*2ebf31d5SBibo Mao 	case VM_MODE_P36V47_16K:
238*2ebf31d5SBibo Mao 	case VM_MODE_P47V47_16K:
239*2ebf31d5SBibo Mao 		break;
240*2ebf31d5SBibo Mao 
241*2ebf31d5SBibo Mao 	default:
242*2ebf31d5SBibo Mao 		TEST_FAIL("Unknown guest mode, mode: 0x%x", vm->mode);
243*2ebf31d5SBibo Mao 	}
244*2ebf31d5SBibo Mao 
245*2ebf31d5SBibo Mao 	/* user mode and page enable mode */
246*2ebf31d5SBibo Mao 	val = PLV_USER | CSR_CRMD_PG;
247*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_CRMD, val);
248*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_PRMD, val);
249*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_EUEN, 1);
250*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_ECFG, 0);
251*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_TCFG, 0);
252*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_ASID, 1);
253*2ebf31d5SBibo Mao 
254*2ebf31d5SBibo Mao 	val = 0;
255*2ebf31d5SBibo Mao 	width = vm->page_shift - 3;
256*2ebf31d5SBibo Mao 
257*2ebf31d5SBibo Mao 	switch (vm->pgtable_levels) {
258*2ebf31d5SBibo Mao 	case 4:
259*2ebf31d5SBibo Mao 		/* pud page shift and width */
260*2ebf31d5SBibo Mao 		val = (vm->page_shift + width * 2) << 20 | (width << 25);
261*2ebf31d5SBibo Mao 		/* fall throuth */
262*2ebf31d5SBibo Mao 	case 3:
263*2ebf31d5SBibo Mao 		/* pmd page shift and width */
264*2ebf31d5SBibo Mao 		val |= (vm->page_shift + width) << 10 | (width << 15);
265*2ebf31d5SBibo Mao 		/* pte page shift and width */
266*2ebf31d5SBibo Mao 		val |= vm->page_shift | width << 5;
267*2ebf31d5SBibo Mao 		break;
268*2ebf31d5SBibo Mao 	default:
269*2ebf31d5SBibo Mao 		TEST_FAIL("Got %u page table levels, expected 3 or 4", vm->pgtable_levels);
270*2ebf31d5SBibo Mao 	}
271*2ebf31d5SBibo Mao 
272*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_PWCTL0, val);
273*2ebf31d5SBibo Mao 
274*2ebf31d5SBibo Mao 	/* PGD page shift and width */
275*2ebf31d5SBibo Mao 	val = (vm->page_shift + width * (vm->pgtable_levels - 1)) | width << 6;
276*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_PWCTL1, val);
277*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_PGDL, vm->pgd);
278*2ebf31d5SBibo Mao 
279*2ebf31d5SBibo Mao 	/*
280*2ebf31d5SBibo Mao 	 * Refill exception runs on real mode
281*2ebf31d5SBibo Mao 	 * Entry address should be physical address
282*2ebf31d5SBibo Mao 	 */
283*2ebf31d5SBibo Mao 	val = addr_gva2gpa(vm, (unsigned long)handle_tlb_refill);
284*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_TLBRENTRY, val);
285*2ebf31d5SBibo Mao 
286*2ebf31d5SBibo Mao 	/*
287*2ebf31d5SBibo Mao 	 * General exception runs on page-enabled mode
288*2ebf31d5SBibo Mao 	 * Entry address should be virtual address
289*2ebf31d5SBibo Mao 	 */
290*2ebf31d5SBibo Mao 	val = (unsigned long)handle_exception;
291*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_EENTRY, val);
292*2ebf31d5SBibo Mao 
293*2ebf31d5SBibo Mao 	loongarch_get_csr(vcpu, LOONGARCH_CSR_TLBIDX, &val);
294*2ebf31d5SBibo Mao 	val &= ~CSR_TLBIDX_SIZEM;
295*2ebf31d5SBibo Mao 	val |= PS_DEFAULT_SIZE << CSR_TLBIDX_SIZE;
296*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_TLBIDX, val);
297*2ebf31d5SBibo Mao 
298*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_STLBPGSIZE, PS_DEFAULT_SIZE);
299*2ebf31d5SBibo Mao 
300*2ebf31d5SBibo Mao 	/* LOONGARCH_CSR_KS1 is used for exception stack */
301*2ebf31d5SBibo Mao 	val = __vm_vaddr_alloc(vm, vm->page_size,
302*2ebf31d5SBibo Mao 			LOONGARCH_GUEST_STACK_VADDR_MIN, MEM_REGION_DATA);
303*2ebf31d5SBibo Mao 	TEST_ASSERT(val != 0,  "No memory for exception stack");
304*2ebf31d5SBibo Mao 	val = val + vm->page_size;
305*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_KS1, val);
306*2ebf31d5SBibo Mao 
307*2ebf31d5SBibo Mao 	loongarch_get_csr(vcpu, LOONGARCH_CSR_TLBREHI, &val);
308*2ebf31d5SBibo Mao 	val &= ~CSR_TLBREHI_PS;
309*2ebf31d5SBibo Mao 	val |= PS_DEFAULT_SIZE << CSR_TLBREHI_PS_SHIFT;
310*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_TLBREHI, val);
311*2ebf31d5SBibo Mao 
312*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_CPUID, vcpu->id);
313*2ebf31d5SBibo Mao 	loongarch_set_csr(vcpu, LOONGARCH_CSR_TMID,  vcpu->id);
314*2ebf31d5SBibo Mao }
315*2ebf31d5SBibo Mao 
vm_arch_vcpu_add(struct kvm_vm * vm,uint32_t vcpu_id)316*2ebf31d5SBibo Mao struct kvm_vcpu *vm_arch_vcpu_add(struct kvm_vm *vm, uint32_t vcpu_id)
317*2ebf31d5SBibo Mao {
318*2ebf31d5SBibo Mao 	size_t stack_size;
319*2ebf31d5SBibo Mao 	uint64_t stack_vaddr;
320*2ebf31d5SBibo Mao 	struct kvm_regs regs;
321*2ebf31d5SBibo Mao 	struct kvm_vcpu *vcpu;
322*2ebf31d5SBibo Mao 
323*2ebf31d5SBibo Mao 	vcpu = __vm_vcpu_add(vm, vcpu_id);
324*2ebf31d5SBibo Mao 	stack_size = vm->page_size;
325*2ebf31d5SBibo Mao 	stack_vaddr = __vm_vaddr_alloc(vm, stack_size,
326*2ebf31d5SBibo Mao 			LOONGARCH_GUEST_STACK_VADDR_MIN, MEM_REGION_DATA);
327*2ebf31d5SBibo Mao 	TEST_ASSERT(stack_vaddr != 0,  "No memory for vm stack");
328*2ebf31d5SBibo Mao 
329*2ebf31d5SBibo Mao 	loongarch_vcpu_setup(vcpu);
330*2ebf31d5SBibo Mao 	/* Setup guest general purpose registers */
331*2ebf31d5SBibo Mao 	vcpu_regs_get(vcpu, &regs);
332*2ebf31d5SBibo Mao 	regs.gpr[3] = stack_vaddr + stack_size;
333*2ebf31d5SBibo Mao 	vcpu_regs_set(vcpu, &regs);
334*2ebf31d5SBibo Mao 
335*2ebf31d5SBibo Mao 	return vcpu;
336*2ebf31d5SBibo Mao }
337*2ebf31d5SBibo Mao 
vcpu_arch_set_entry_point(struct kvm_vcpu * vcpu,void * guest_code)338*2ebf31d5SBibo Mao void vcpu_arch_set_entry_point(struct kvm_vcpu *vcpu, void *guest_code)
339*2ebf31d5SBibo Mao {
340*2ebf31d5SBibo Mao 	struct kvm_regs regs;
341*2ebf31d5SBibo Mao 
342*2ebf31d5SBibo Mao 	/* Setup guest PC register */
343*2ebf31d5SBibo Mao 	vcpu_regs_get(vcpu, &regs);
344*2ebf31d5SBibo Mao 	regs.pc = (uint64_t)guest_code;
345*2ebf31d5SBibo Mao 	vcpu_regs_set(vcpu, &regs);
346*2ebf31d5SBibo Mao }
347