1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * Hyper-V HvCallSendSyntheticClusterIpi{,Ex} tests 4 * 5 * Copyright (C) 2022, Red Hat, Inc. 6 * 7 */ 8 #include <pthread.h> 9 #include <inttypes.h> 10 11 #include "kvm_util.h" 12 #include "hyperv.h" 13 #include "test_util.h" 14 #include "vmx.h" 15 16 #define RECEIVER_VCPU_ID_1 2 17 #define RECEIVER_VCPU_ID_2 65 18 19 #define IPI_VECTOR 0xfe 20 21 static volatile u64 ipis_rcvd[RECEIVER_VCPU_ID_2 + 1]; 22 23 struct hv_vpset { 24 u64 format; 25 u64 valid_bank_mask; 26 u64 bank_contents[2]; 27 }; 28 29 enum HV_GENERIC_SET_FORMAT { 30 HV_GENERIC_SET_SPARSE_4K, 31 HV_GENERIC_SET_ALL, 32 }; 33 34 /* HvCallSendSyntheticClusterIpi hypercall */ 35 struct hv_send_ipi { 36 u32 vector; 37 u32 reserved; 38 u64 cpu_mask; 39 }; 40 41 /* HvCallSendSyntheticClusterIpiEx hypercall */ 42 struct hv_send_ipi_ex { 43 u32 vector; 44 u32 reserved; 45 struct hv_vpset vp_set; 46 }; 47 48 static inline void hv_init(gpa_t pgs_gpa) 49 { 50 wrmsr(HV_X64_MSR_GUEST_OS_ID, HYPERV_LINUX_OS_ID); 51 wrmsr(HV_X64_MSR_HYPERCALL, pgs_gpa); 52 } 53 54 static void receiver_code(void *hcall_page, gpa_t pgs_gpa) 55 { 56 u32 vcpu_id; 57 58 x2apic_enable(); 59 hv_init(pgs_gpa); 60 61 vcpu_id = rdmsr(HV_X64_MSR_VP_INDEX); 62 63 /* Signal sender vCPU we're ready */ 64 ipis_rcvd[vcpu_id] = (u64)-1; 65 66 for (;;) { 67 safe_halt(); 68 cli(); 69 } 70 } 71 72 static void guest_ipi_handler(struct ex_regs *regs) 73 { 74 u32 vcpu_id = rdmsr(HV_X64_MSR_VP_INDEX); 75 76 ipis_rcvd[vcpu_id]++; 77 wrmsr(HV_X64_MSR_EOI, 1); 78 } 79 80 static inline void nop_loop(void) 81 { 82 int i; 83 84 for (i = 0; i < 100000000; i++) 85 asm volatile("nop"); 86 } 87 88 static void sender_guest_code(void *hcall_page, gpa_t pgs_gpa) 89 { 90 struct hv_send_ipi *ipi = (struct hv_send_ipi *)hcall_page; 91 struct hv_send_ipi_ex *ipi_ex = (struct hv_send_ipi_ex *)hcall_page; 92 int stage = 1, ipis_expected[2] = {0}; 93 94 hv_init(pgs_gpa); 95 GUEST_SYNC(stage++); 96 97 /* Wait for receiver vCPUs to come up */ 98 while (!ipis_rcvd[RECEIVER_VCPU_ID_1] || !ipis_rcvd[RECEIVER_VCPU_ID_2]) 99 nop_loop(); 100 ipis_rcvd[RECEIVER_VCPU_ID_1] = ipis_rcvd[RECEIVER_VCPU_ID_2] = 0; 101 102 /* 'Slow' HvCallSendSyntheticClusterIpi to RECEIVER_VCPU_ID_1 */ 103 ipi->vector = IPI_VECTOR; 104 ipi->cpu_mask = 1 << RECEIVER_VCPU_ID_1; 105 hyperv_hypercall(HVCALL_SEND_IPI, pgs_gpa, pgs_gpa + PAGE_SIZE); 106 nop_loop(); 107 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_1] == ++ipis_expected[0]); 108 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_2] == ipis_expected[1]); 109 GUEST_SYNC(stage++); 110 /* 'Fast' HvCallSendSyntheticClusterIpi to RECEIVER_VCPU_ID_1 */ 111 hyperv_hypercall(HVCALL_SEND_IPI | HV_HYPERCALL_FAST_BIT, 112 IPI_VECTOR, 1 << RECEIVER_VCPU_ID_1); 113 nop_loop(); 114 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_1] == ++ipis_expected[0]); 115 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_2] == ipis_expected[1]); 116 GUEST_SYNC(stage++); 117 118 /* 'Slow' HvCallSendSyntheticClusterIpiEx to RECEIVER_VCPU_ID_1 */ 119 memset(hcall_page, 0, PAGE_SIZE); 120 ipi_ex->vector = IPI_VECTOR; 121 ipi_ex->vp_set.format = HV_GENERIC_SET_SPARSE_4K; 122 ipi_ex->vp_set.valid_bank_mask = 1 << 0; 123 ipi_ex->vp_set.bank_contents[0] = BIT(RECEIVER_VCPU_ID_1); 124 hyperv_hypercall(HVCALL_SEND_IPI_EX | (1 << HV_HYPERCALL_VARHEAD_OFFSET), 125 pgs_gpa, pgs_gpa + PAGE_SIZE); 126 nop_loop(); 127 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_1] == ++ipis_expected[0]); 128 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_2] == ipis_expected[1]); 129 GUEST_SYNC(stage++); 130 /* 'XMM Fast' HvCallSendSyntheticClusterIpiEx to RECEIVER_VCPU_ID_1 */ 131 hyperv_write_xmm_input(&ipi_ex->vp_set.valid_bank_mask, 1); 132 hyperv_hypercall(HVCALL_SEND_IPI_EX | HV_HYPERCALL_FAST_BIT | 133 (1 << HV_HYPERCALL_VARHEAD_OFFSET), 134 IPI_VECTOR, HV_GENERIC_SET_SPARSE_4K); 135 nop_loop(); 136 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_1] == ++ipis_expected[0]); 137 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_2] == ipis_expected[1]); 138 GUEST_SYNC(stage++); 139 140 /* 'Slow' HvCallSendSyntheticClusterIpiEx to RECEIVER_VCPU_ID_2 */ 141 memset(hcall_page, 0, PAGE_SIZE); 142 ipi_ex->vector = IPI_VECTOR; 143 ipi_ex->vp_set.format = HV_GENERIC_SET_SPARSE_4K; 144 ipi_ex->vp_set.valid_bank_mask = 1 << 1; 145 ipi_ex->vp_set.bank_contents[0] = BIT(RECEIVER_VCPU_ID_2 - 64); 146 hyperv_hypercall(HVCALL_SEND_IPI_EX | (1 << HV_HYPERCALL_VARHEAD_OFFSET), 147 pgs_gpa, pgs_gpa + PAGE_SIZE); 148 nop_loop(); 149 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_1] == ipis_expected[0]); 150 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_2] == ++ipis_expected[1]); 151 GUEST_SYNC(stage++); 152 /* 'XMM Fast' HvCallSendSyntheticClusterIpiEx to RECEIVER_VCPU_ID_2 */ 153 hyperv_write_xmm_input(&ipi_ex->vp_set.valid_bank_mask, 1); 154 hyperv_hypercall(HVCALL_SEND_IPI_EX | HV_HYPERCALL_FAST_BIT | 155 (1 << HV_HYPERCALL_VARHEAD_OFFSET), 156 IPI_VECTOR, HV_GENERIC_SET_SPARSE_4K); 157 nop_loop(); 158 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_1] == ipis_expected[0]); 159 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_2] == ++ipis_expected[1]); 160 GUEST_SYNC(stage++); 161 162 /* 'Slow' HvCallSendSyntheticClusterIpiEx to both RECEIVER_VCPU_ID_{1,2} */ 163 memset(hcall_page, 0, PAGE_SIZE); 164 ipi_ex->vector = IPI_VECTOR; 165 ipi_ex->vp_set.format = HV_GENERIC_SET_SPARSE_4K; 166 ipi_ex->vp_set.valid_bank_mask = 1 << 1 | 1; 167 ipi_ex->vp_set.bank_contents[0] = BIT(RECEIVER_VCPU_ID_1); 168 ipi_ex->vp_set.bank_contents[1] = BIT(RECEIVER_VCPU_ID_2 - 64); 169 hyperv_hypercall(HVCALL_SEND_IPI_EX | (2 << HV_HYPERCALL_VARHEAD_OFFSET), 170 pgs_gpa, pgs_gpa + PAGE_SIZE); 171 nop_loop(); 172 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_1] == ++ipis_expected[0]); 173 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_2] == ++ipis_expected[1]); 174 GUEST_SYNC(stage++); 175 /* 'XMM Fast' HvCallSendSyntheticClusterIpiEx to both RECEIVER_VCPU_ID_{1, 2} */ 176 hyperv_write_xmm_input(&ipi_ex->vp_set.valid_bank_mask, 2); 177 hyperv_hypercall(HVCALL_SEND_IPI_EX | HV_HYPERCALL_FAST_BIT | 178 (2 << HV_HYPERCALL_VARHEAD_OFFSET), 179 IPI_VECTOR, HV_GENERIC_SET_SPARSE_4K); 180 nop_loop(); 181 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_1] == ++ipis_expected[0]); 182 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_2] == ++ipis_expected[1]); 183 GUEST_SYNC(stage++); 184 185 /* 'Slow' HvCallSendSyntheticClusterIpiEx to HV_GENERIC_SET_ALL */ 186 memset(hcall_page, 0, PAGE_SIZE); 187 ipi_ex->vector = IPI_VECTOR; 188 ipi_ex->vp_set.format = HV_GENERIC_SET_ALL; 189 hyperv_hypercall(HVCALL_SEND_IPI_EX, pgs_gpa, pgs_gpa + PAGE_SIZE); 190 nop_loop(); 191 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_1] == ++ipis_expected[0]); 192 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_2] == ++ipis_expected[1]); 193 GUEST_SYNC(stage++); 194 /* 195 * 'XMM Fast' HvCallSendSyntheticClusterIpiEx to HV_GENERIC_SET_ALL. 196 */ 197 ipi_ex->vp_set.valid_bank_mask = 0; 198 hyperv_write_xmm_input(&ipi_ex->vp_set.valid_bank_mask, 2); 199 hyperv_hypercall(HVCALL_SEND_IPI_EX | HV_HYPERCALL_FAST_BIT, 200 IPI_VECTOR, HV_GENERIC_SET_ALL); 201 nop_loop(); 202 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_1] == ++ipis_expected[0]); 203 GUEST_ASSERT(ipis_rcvd[RECEIVER_VCPU_ID_2] == ++ipis_expected[1]); 204 GUEST_SYNC(stage++); 205 206 GUEST_DONE(); 207 } 208 209 static void *vcpu_thread(void *arg) 210 { 211 struct kvm_vcpu *vcpu = (struct kvm_vcpu *)arg; 212 int old, r; 213 214 r = pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, &old); 215 TEST_ASSERT(!r, "pthread_setcanceltype failed on vcpu_id=%u with errno=%d", 216 vcpu->id, r); 217 218 vcpu_run(vcpu); 219 220 TEST_FAIL("vCPU %u exited unexpectedly", vcpu->id); 221 222 return NULL; 223 } 224 225 int main(int argc, char *argv[]) 226 { 227 struct kvm_vm *vm; 228 struct kvm_vcpu *vcpu[3]; 229 gva_t hcall_page; 230 pthread_t threads[2]; 231 int stage = 1; 232 struct ucall uc; 233 234 TEST_REQUIRE(kvm_has_cap(KVM_CAP_HYPERV_SEND_IPI)); 235 236 vm = vm_create_with_one_vcpu(&vcpu[0], sender_guest_code); 237 238 /* Hypercall input/output */ 239 hcall_page = vm_alloc_pages(vm, 2); 240 memset(addr_gva2hva(vm, hcall_page), 0x0, 2 * getpagesize()); 241 242 243 vcpu[1] = vm_vcpu_add(vm, RECEIVER_VCPU_ID_1, receiver_code); 244 vcpu_args_set(vcpu[1], 2, hcall_page, addr_gva2gpa(vm, hcall_page)); 245 vcpu_set_msr(vcpu[1], HV_X64_MSR_VP_INDEX, RECEIVER_VCPU_ID_1); 246 vcpu_set_hv_cpuid(vcpu[1]); 247 248 vcpu[2] = vm_vcpu_add(vm, RECEIVER_VCPU_ID_2, receiver_code); 249 vcpu_args_set(vcpu[2], 2, hcall_page, addr_gva2gpa(vm, hcall_page)); 250 vcpu_set_msr(vcpu[2], HV_X64_MSR_VP_INDEX, RECEIVER_VCPU_ID_2); 251 vcpu_set_hv_cpuid(vcpu[2]); 252 253 vm_install_exception_handler(vm, IPI_VECTOR, guest_ipi_handler); 254 255 vcpu_args_set(vcpu[0], 2, hcall_page, addr_gva2gpa(vm, hcall_page)); 256 vcpu_set_hv_cpuid(vcpu[0]); 257 258 kvm_pthread_create(&threads[0], NULL, vcpu_thread, vcpu[1]); 259 kvm_pthread_create(&threads[1], NULL, vcpu_thread, vcpu[2]); 260 261 while (true) { 262 vcpu_run(vcpu[0]); 263 264 TEST_ASSERT_KVM_EXIT_REASON(vcpu[0], KVM_EXIT_IO); 265 266 switch (get_ucall(vcpu[0], &uc)) { 267 case UCALL_SYNC: 268 TEST_ASSERT(uc.args[1] == stage, 269 "Unexpected stage: %ld (%d expected)", 270 uc.args[1], stage); 271 break; 272 case UCALL_DONE: 273 goto done; 274 case UCALL_ABORT: 275 REPORT_GUEST_ASSERT(uc); 276 /* NOT REACHED */ 277 default: 278 TEST_FAIL("Unknown ucall %lu", uc.cmd); 279 } 280 281 stage++; 282 } 283 284 done: 285 kvm_pthread_cancel_join_async(threads[0]); 286 kvm_pthread_cancel_join_async(threads[1]); 287 kvm_vm_free(vm); 288 289 return 0; 290 } 291