17ada359dSArthur Chunqi Li /* 27ada359dSArthur Chunqi Li * x86/vmx.c : Framework for testing nested virtualization 37ada359dSArthur Chunqi Li * This is a framework to test nested VMX for KVM, which 47ada359dSArthur Chunqi Li * started as a project of GSoC 2013. All test cases should 57ada359dSArthur Chunqi Li * be located in x86/vmx_tests.c and framework related 67ada359dSArthur Chunqi Li * functions should be in this file. 77ada359dSArthur Chunqi Li * 87ada359dSArthur Chunqi Li * How to write test cases? 97ada359dSArthur Chunqi Li * Add callbacks of test suite in variant "vmx_tests". You can 107ada359dSArthur Chunqi Li * write: 117ada359dSArthur Chunqi Li * 1. init function used for initializing test suite 127ada359dSArthur Chunqi Li * 2. main function for codes running in L2 guest, 137ada359dSArthur Chunqi Li * 3. exit_handler to handle vmexit of L2 to L1 147ada359dSArthur Chunqi Li * 4. syscall handler to handle L2 syscall vmexit 157ada359dSArthur Chunqi Li * 5. vmenter fail handler to handle direct failure of vmenter 167ada359dSArthur Chunqi Li * 6. guest_regs is loaded when vmenter and saved when 177ada359dSArthur Chunqi Li * vmexit, you can read and set it in exit_handler 187ada359dSArthur Chunqi Li * If no special function is needed for a test suite, use 197ada359dSArthur Chunqi Li * coressponding basic_* functions as callback. More handlers 207ada359dSArthur Chunqi Li * can be added to "vmx_tests", see details of "struct vmx_test" 217ada359dSArthur Chunqi Li * and function test_run(). 227ada359dSArthur Chunqi Li * 237ada359dSArthur Chunqi Li * Currently, vmx test framework only set up one VCPU and one 247ada359dSArthur Chunqi Li * concurrent guest test environment with same paging for L2 and 257ada359dSArthur Chunqi Li * L1. For usage of EPT, only 1:1 mapped paging is used from VFN 267ada359dSArthur Chunqi Li * to PFN. 277ada359dSArthur Chunqi Li * 287ada359dSArthur Chunqi Li * Author : Arthur Chunqi Li <yzt356@gmail.com> 297ada359dSArthur Chunqi Li */ 307ada359dSArthur Chunqi Li 319d7eaa29SArthur Chunqi Li #include "libcflat.h" 329d7eaa29SArthur Chunqi Li #include "processor.h" 335aca024eSPaolo Bonzini #include "alloc_page.h" 349d7eaa29SArthur Chunqi Li #include "vm.h" 359d7eaa29SArthur Chunqi Li #include "desc.h" 369d7eaa29SArthur Chunqi Li #include "vmx.h" 379d7eaa29SArthur Chunqi Li #include "msr.h" 389d7eaa29SArthur Chunqi Li #include "smp.h" 397371c622SVitaly Kuznetsov #include "apic.h" 409d7eaa29SArthur Chunqi Li 41c937d495SLiran Alon u64 *bsp_vmxon_region; 429d7eaa29SArthur Chunqi Li struct vmcs *vmcs_root; 439d7eaa29SArthur Chunqi Li u32 vpid_cnt; 449d7eaa29SArthur Chunqi Li void *guest_stack, *guest_syscall_stack; 459d7eaa29SArthur Chunqi Li u32 ctrl_pin, ctrl_enter, ctrl_exit, ctrl_cpu[2]; 469d7eaa29SArthur Chunqi Li struct regs regs; 47794c67a9SPeter Feiner 489d7eaa29SArthur Chunqi Li struct vmx_test *current; 49794c67a9SPeter Feiner 50794c67a9SPeter Feiner #define MAX_TEST_TEARDOWN_STEPS 10 51794c67a9SPeter Feiner 52794c67a9SPeter Feiner struct test_teardown_step { 53794c67a9SPeter Feiner test_teardown_func func; 54794c67a9SPeter Feiner void *data; 55794c67a9SPeter Feiner }; 56794c67a9SPeter Feiner 57794c67a9SPeter Feiner static int teardown_count; 58794c67a9SPeter Feiner static struct test_teardown_step teardown_steps[MAX_TEST_TEARDOWN_STEPS]; 59794c67a9SPeter Feiner 60794c67a9SPeter Feiner static test_guest_func v2_guest_main; 61794c67a9SPeter Feiner 623ee34093SArthur Chunqi Li u64 hypercall_field; 639d7eaa29SArthur Chunqi Li bool launched; 64c04259ffSDavid Matlack static int matched; 65794c67a9SPeter Feiner static int guest_finished; 66794c67a9SPeter Feiner static int in_guest; 679d7eaa29SArthur Chunqi Li 683ee34093SArthur Chunqi Li union vmx_basic basic; 695f18e779SJan Kiszka union vmx_ctrl_msr ctrl_pin_rev; 705f18e779SJan Kiszka union vmx_ctrl_msr ctrl_cpu_rev[2]; 715f18e779SJan Kiszka union vmx_ctrl_msr ctrl_exit_rev; 725f18e779SJan Kiszka union vmx_ctrl_msr ctrl_enter_rev; 733ee34093SArthur Chunqi Li union vmx_ept_vpid ept_vpid; 743ee34093SArthur Chunqi Li 75337166aaSJan Kiszka extern struct descriptor_table_ptr gdt64_desc; 76337166aaSJan Kiszka extern struct descriptor_table_ptr idt_descr; 77337166aaSJan Kiszka extern struct descriptor_table_ptr tss_descr; 789d7eaa29SArthur Chunqi Li extern void *vmx_return; 799d7eaa29SArthur Chunqi Li extern void *entry_sysenter; 809d7eaa29SArthur Chunqi Li extern void *guest_entry; 819d7eaa29SArthur Chunqi Li 82ffb1a9e0SJan Kiszka static volatile u32 stage; 83ffb1a9e0SJan Kiszka 84794c67a9SPeter Feiner static jmp_buf abort_target; 85794c67a9SPeter Feiner 86ecd5b431SDavid Matlack struct vmcs_field { 87ecd5b431SDavid Matlack u64 mask; 88ecd5b431SDavid Matlack u64 encoding; 89ecd5b431SDavid Matlack }; 90ecd5b431SDavid Matlack 91ecd5b431SDavid Matlack #define MASK(_bits) GENMASK_ULL((_bits) - 1, 0) 92ecd5b431SDavid Matlack #define MASK_NATURAL MASK(sizeof(unsigned long) * 8) 93ecd5b431SDavid Matlack 94ecd5b431SDavid Matlack static struct vmcs_field vmcs_fields[] = { 95ecd5b431SDavid Matlack { MASK(16), VPID }, 96ecd5b431SDavid Matlack { MASK(16), PINV }, 97ecd5b431SDavid Matlack { MASK(16), EPTP_IDX }, 98ecd5b431SDavid Matlack 99ecd5b431SDavid Matlack { MASK(16), GUEST_SEL_ES }, 100ecd5b431SDavid Matlack { MASK(16), GUEST_SEL_CS }, 101ecd5b431SDavid Matlack { MASK(16), GUEST_SEL_SS }, 102ecd5b431SDavid Matlack { MASK(16), GUEST_SEL_DS }, 103ecd5b431SDavid Matlack { MASK(16), GUEST_SEL_FS }, 104ecd5b431SDavid Matlack { MASK(16), GUEST_SEL_GS }, 105ecd5b431SDavid Matlack { MASK(16), GUEST_SEL_LDTR }, 106ecd5b431SDavid Matlack { MASK(16), GUEST_SEL_TR }, 107ecd5b431SDavid Matlack { MASK(16), GUEST_INT_STATUS }, 108ecd5b431SDavid Matlack 109ecd5b431SDavid Matlack { MASK(16), HOST_SEL_ES }, 110ecd5b431SDavid Matlack { MASK(16), HOST_SEL_CS }, 111ecd5b431SDavid Matlack { MASK(16), HOST_SEL_SS }, 112ecd5b431SDavid Matlack { MASK(16), HOST_SEL_DS }, 113ecd5b431SDavid Matlack { MASK(16), HOST_SEL_FS }, 114ecd5b431SDavid Matlack { MASK(16), HOST_SEL_GS }, 115ecd5b431SDavid Matlack { MASK(16), HOST_SEL_TR }, 116ecd5b431SDavid Matlack 117ecd5b431SDavid Matlack { MASK(64), IO_BITMAP_A }, 118ecd5b431SDavid Matlack { MASK(64), IO_BITMAP_B }, 119ecd5b431SDavid Matlack { MASK(64), MSR_BITMAP }, 120ecd5b431SDavid Matlack { MASK(64), EXIT_MSR_ST_ADDR }, 121ecd5b431SDavid Matlack { MASK(64), EXIT_MSR_LD_ADDR }, 122ecd5b431SDavid Matlack { MASK(64), ENTER_MSR_LD_ADDR }, 123ecd5b431SDavid Matlack { MASK(64), VMCS_EXEC_PTR }, 124ecd5b431SDavid Matlack { MASK(64), TSC_OFFSET }, 125ecd5b431SDavid Matlack { MASK(64), APIC_VIRT_ADDR }, 126ecd5b431SDavid Matlack { MASK(64), APIC_ACCS_ADDR }, 127ecd5b431SDavid Matlack { MASK(64), EPTP }, 128ecd5b431SDavid Matlack 129faea4fc6SLiran Alon { MASK(64), INFO_PHYS_ADDR }, 130ecd5b431SDavid Matlack 131ecd5b431SDavid Matlack { MASK(64), VMCS_LINK_PTR }, 132ecd5b431SDavid Matlack { MASK(64), GUEST_DEBUGCTL }, 133ecd5b431SDavid Matlack { MASK(64), GUEST_EFER }, 134ecd5b431SDavid Matlack { MASK(64), GUEST_PAT }, 135ecd5b431SDavid Matlack { MASK(64), GUEST_PERF_GLOBAL_CTRL }, 136ecd5b431SDavid Matlack { MASK(64), GUEST_PDPTE }, 137ecd5b431SDavid Matlack 138ecd5b431SDavid Matlack { MASK(64), HOST_PAT }, 139ecd5b431SDavid Matlack { MASK(64), HOST_EFER }, 140ecd5b431SDavid Matlack { MASK(64), HOST_PERF_GLOBAL_CTRL }, 141ecd5b431SDavid Matlack 142ecd5b431SDavid Matlack { MASK(32), PIN_CONTROLS }, 143ecd5b431SDavid Matlack { MASK(32), CPU_EXEC_CTRL0 }, 144ecd5b431SDavid Matlack { MASK(32), EXC_BITMAP }, 145ecd5b431SDavid Matlack { MASK(32), PF_ERROR_MASK }, 146ecd5b431SDavid Matlack { MASK(32), PF_ERROR_MATCH }, 147ecd5b431SDavid Matlack { MASK(32), CR3_TARGET_COUNT }, 148ecd5b431SDavid Matlack { MASK(32), EXI_CONTROLS }, 149ecd5b431SDavid Matlack { MASK(32), EXI_MSR_ST_CNT }, 150ecd5b431SDavid Matlack { MASK(32), EXI_MSR_LD_CNT }, 151ecd5b431SDavid Matlack { MASK(32), ENT_CONTROLS }, 152ecd5b431SDavid Matlack { MASK(32), ENT_MSR_LD_CNT }, 153ecd5b431SDavid Matlack { MASK(32), ENT_INTR_INFO }, 154ecd5b431SDavid Matlack { MASK(32), ENT_INTR_ERROR }, 155ecd5b431SDavid Matlack { MASK(32), ENT_INST_LEN }, 156ecd5b431SDavid Matlack { MASK(32), TPR_THRESHOLD }, 157ecd5b431SDavid Matlack { MASK(32), CPU_EXEC_CTRL1 }, 158ecd5b431SDavid Matlack 159faea4fc6SLiran Alon { MASK(32), VMX_INST_ERROR }, 160faea4fc6SLiran Alon { MASK(32), EXI_REASON }, 161faea4fc6SLiran Alon { MASK(32), EXI_INTR_INFO }, 162faea4fc6SLiran Alon { MASK(32), EXI_INTR_ERROR }, 163faea4fc6SLiran Alon { MASK(32), IDT_VECT_INFO }, 164faea4fc6SLiran Alon { MASK(32), IDT_VECT_ERROR }, 165faea4fc6SLiran Alon { MASK(32), EXI_INST_LEN }, 166faea4fc6SLiran Alon { MASK(32), EXI_INST_INFO }, 167ecd5b431SDavid Matlack 168ecd5b431SDavid Matlack { MASK(32), GUEST_LIMIT_ES }, 169ecd5b431SDavid Matlack { MASK(32), GUEST_LIMIT_CS }, 170ecd5b431SDavid Matlack { MASK(32), GUEST_LIMIT_SS }, 171ecd5b431SDavid Matlack { MASK(32), GUEST_LIMIT_DS }, 172ecd5b431SDavid Matlack { MASK(32), GUEST_LIMIT_FS }, 173ecd5b431SDavid Matlack { MASK(32), GUEST_LIMIT_GS }, 174ecd5b431SDavid Matlack { MASK(32), GUEST_LIMIT_LDTR }, 175ecd5b431SDavid Matlack { MASK(32), GUEST_LIMIT_TR }, 176ecd5b431SDavid Matlack { MASK(32), GUEST_LIMIT_GDTR }, 177ecd5b431SDavid Matlack { MASK(32), GUEST_LIMIT_IDTR }, 178ecd5b431SDavid Matlack { 0x1d0ff, GUEST_AR_ES }, 179ecd5b431SDavid Matlack { 0x1f0ff, GUEST_AR_CS }, 180ecd5b431SDavid Matlack { 0x1d0ff, GUEST_AR_SS }, 181ecd5b431SDavid Matlack { 0x1d0ff, GUEST_AR_DS }, 182ecd5b431SDavid Matlack { 0x1d0ff, GUEST_AR_FS }, 183ecd5b431SDavid Matlack { 0x1d0ff, GUEST_AR_GS }, 184ecd5b431SDavid Matlack { 0x1d0ff, GUEST_AR_LDTR }, 185ecd5b431SDavid Matlack { 0x1d0ff, GUEST_AR_TR }, 186ecd5b431SDavid Matlack { MASK(32), GUEST_INTR_STATE }, 187ecd5b431SDavid Matlack { MASK(32), GUEST_ACTV_STATE }, 188ecd5b431SDavid Matlack { MASK(32), GUEST_SMBASE }, 189ecd5b431SDavid Matlack { MASK(32), GUEST_SYSENTER_CS }, 190ecd5b431SDavid Matlack { MASK(32), PREEMPT_TIMER_VALUE }, 191ecd5b431SDavid Matlack 192ecd5b431SDavid Matlack { MASK(32), HOST_SYSENTER_CS }, 193ecd5b431SDavid Matlack 194ecd5b431SDavid Matlack { MASK_NATURAL, CR0_MASK }, 195ecd5b431SDavid Matlack { MASK_NATURAL, CR4_MASK }, 196ecd5b431SDavid Matlack { MASK_NATURAL, CR0_READ_SHADOW }, 197ecd5b431SDavid Matlack { MASK_NATURAL, CR4_READ_SHADOW }, 198ecd5b431SDavid Matlack { MASK_NATURAL, CR3_TARGET_0 }, 199ecd5b431SDavid Matlack { MASK_NATURAL, CR3_TARGET_1 }, 200ecd5b431SDavid Matlack { MASK_NATURAL, CR3_TARGET_2 }, 201ecd5b431SDavid Matlack { MASK_NATURAL, CR3_TARGET_3 }, 202ecd5b431SDavid Matlack 203faea4fc6SLiran Alon { MASK_NATURAL, EXI_QUALIFICATION }, 204faea4fc6SLiran Alon { MASK_NATURAL, IO_RCX }, 205faea4fc6SLiran Alon { MASK_NATURAL, IO_RSI }, 206faea4fc6SLiran Alon { MASK_NATURAL, IO_RDI }, 207faea4fc6SLiran Alon { MASK_NATURAL, IO_RIP }, 208faea4fc6SLiran Alon { MASK_NATURAL, GUEST_LINEAR_ADDRESS }, 209ecd5b431SDavid Matlack 210ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_CR0 }, 211ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_CR3 }, 212ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_CR4 }, 213ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_BASE_ES }, 214ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_BASE_CS }, 215ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_BASE_SS }, 216ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_BASE_DS }, 217ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_BASE_FS }, 218ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_BASE_GS }, 219ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_BASE_LDTR }, 220ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_BASE_TR }, 221ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_BASE_GDTR }, 222ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_BASE_IDTR }, 223ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_DR7 }, 224ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_RSP }, 225ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_RIP }, 226ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_RFLAGS }, 227ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_PENDING_DEBUG }, 228ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_SYSENTER_ESP }, 229ecd5b431SDavid Matlack { MASK_NATURAL, GUEST_SYSENTER_EIP }, 230ecd5b431SDavid Matlack 231ecd5b431SDavid Matlack { MASK_NATURAL, HOST_CR0 }, 232ecd5b431SDavid Matlack { MASK_NATURAL, HOST_CR3 }, 233ecd5b431SDavid Matlack { MASK_NATURAL, HOST_CR4 }, 234ecd5b431SDavid Matlack { MASK_NATURAL, HOST_BASE_FS }, 235ecd5b431SDavid Matlack { MASK_NATURAL, HOST_BASE_GS }, 236ecd5b431SDavid Matlack { MASK_NATURAL, HOST_BASE_TR }, 237ecd5b431SDavid Matlack { MASK_NATURAL, HOST_BASE_GDTR }, 238ecd5b431SDavid Matlack { MASK_NATURAL, HOST_BASE_IDTR }, 239ecd5b431SDavid Matlack { MASK_NATURAL, HOST_SYSENTER_ESP }, 240ecd5b431SDavid Matlack { MASK_NATURAL, HOST_SYSENTER_EIP }, 241ecd5b431SDavid Matlack { MASK_NATURAL, HOST_RSP }, 242ecd5b431SDavid Matlack { MASK_NATURAL, HOST_RIP }, 243ecd5b431SDavid Matlack }; 244ecd5b431SDavid Matlack 245faea4fc6SLiran Alon enum vmcs_field_type { 246faea4fc6SLiran Alon VMCS_FIELD_TYPE_CONTROL = 0, 247faea4fc6SLiran Alon VMCS_FIELD_TYPE_READ_ONLY_DATA = 1, 248faea4fc6SLiran Alon VMCS_FIELD_TYPE_GUEST = 2, 249faea4fc6SLiran Alon VMCS_FIELD_TYPE_HOST = 3, 250faea4fc6SLiran Alon VMCS_FIELD_TYPES, 251faea4fc6SLiran Alon }; 252faea4fc6SLiran Alon 253faea4fc6SLiran Alon static inline int vmcs_field_type(struct vmcs_field *f) 254faea4fc6SLiran Alon { 255faea4fc6SLiran Alon return (f->encoding >> VMCS_FIELD_TYPE_SHIFT) & 0x3; 256faea4fc6SLiran Alon } 257faea4fc6SLiran Alon 258faea4fc6SLiran Alon static int vmcs_field_readonly(struct vmcs_field *f) 259faea4fc6SLiran Alon { 260faea4fc6SLiran Alon u64 ia32_vmx_misc; 261faea4fc6SLiran Alon 262faea4fc6SLiran Alon ia32_vmx_misc = rdmsr(MSR_IA32_VMX_MISC); 263faea4fc6SLiran Alon return !(ia32_vmx_misc & MSR_IA32_VMX_MISC_VMWRITE_SHADOW_RO_FIELDS) && 264faea4fc6SLiran Alon (vmcs_field_type(f) == VMCS_FIELD_TYPE_READ_ONLY_DATA); 265faea4fc6SLiran Alon } 266faea4fc6SLiran Alon 267ecd5b431SDavid Matlack static inline u64 vmcs_field_value(struct vmcs_field *f, u8 cookie) 268ecd5b431SDavid Matlack { 269ecd5b431SDavid Matlack u64 value; 270ecd5b431SDavid Matlack 271ecd5b431SDavid Matlack /* Incorporate the cookie and the field encoding into the value. */ 272ecd5b431SDavid Matlack value = cookie; 273ecd5b431SDavid Matlack value |= (f->encoding << 8); 274ecd5b431SDavid Matlack value |= 0xdeadbeefull << 32; 275ecd5b431SDavid Matlack 276ecd5b431SDavid Matlack return value & f->mask; 277ecd5b431SDavid Matlack } 278ecd5b431SDavid Matlack 279ecd5b431SDavid Matlack static void set_vmcs_field(struct vmcs_field *f, u8 cookie) 280ecd5b431SDavid Matlack { 281ecd5b431SDavid Matlack vmcs_write(f->encoding, vmcs_field_value(f, cookie)); 282ecd5b431SDavid Matlack } 283ecd5b431SDavid Matlack 28485cd1cf9SSean Christopherson static bool check_vmcs_field(struct vmcs_field *f, u8 cookie, u32 *max_index) 285ecd5b431SDavid Matlack { 286ecd5b431SDavid Matlack u64 expected; 287ecd5b431SDavid Matlack u64 actual; 28885cd1cf9SSean Christopherson u32 index; 289ecd5b431SDavid Matlack int ret; 290ecd5b431SDavid Matlack 291faea4fc6SLiran Alon if (f->encoding == VMX_INST_ERROR) { 292faea4fc6SLiran Alon printf("Skipping volatile field %lx\n", f->encoding); 293faea4fc6SLiran Alon return true; 294faea4fc6SLiran Alon } 295faea4fc6SLiran Alon 296ecd5b431SDavid Matlack ret = vmcs_read_checking(f->encoding, &actual); 297ecd5b431SDavid Matlack assert(!(ret & X86_EFLAGS_CF)); 298ecd5b431SDavid Matlack /* Skip VMCS fields that aren't recognized by the CPU */ 299ecd5b431SDavid Matlack if (ret & X86_EFLAGS_ZF) 300ecd5b431SDavid Matlack return true; 301ecd5b431SDavid Matlack 30285cd1cf9SSean Christopherson if (max_index) { 30385cd1cf9SSean Christopherson index = f->encoding & VMCS_FIELD_INDEX_MASK; 30485cd1cf9SSean Christopherson if (index > *max_index) 30585cd1cf9SSean Christopherson *max_index = index; 30685cd1cf9SSean Christopherson } 30785cd1cf9SSean Christopherson 30885cd1cf9SSean Christopherson if (vmcs_field_readonly(f)) { 30985cd1cf9SSean Christopherson printf("Skipping read-only field %lx\n", f->encoding); 31085cd1cf9SSean Christopherson return true; 31185cd1cf9SSean Christopherson } 31285cd1cf9SSean Christopherson 313ecd5b431SDavid Matlack expected = vmcs_field_value(f, cookie); 314ecd5b431SDavid Matlack actual &= f->mask; 315ecd5b431SDavid Matlack 316ecd5b431SDavid Matlack if (expected == actual) 317ecd5b431SDavid Matlack return true; 318ecd5b431SDavid Matlack 319d4ab68adSDavid Matlack printf("FAIL: VMWRITE/VMREAD %lx (expected: %lx, actual: %lx)\n", 320ecd5b431SDavid Matlack f->encoding, (unsigned long) expected, (unsigned long) actual); 321ecd5b431SDavid Matlack 322ecd5b431SDavid Matlack return false; 323ecd5b431SDavid Matlack } 324ecd5b431SDavid Matlack 325ecd5b431SDavid Matlack static void set_all_vmcs_fields(u8 cookie) 326ecd5b431SDavid Matlack { 327ecd5b431SDavid Matlack int i; 328ecd5b431SDavid Matlack 329ecd5b431SDavid Matlack for (i = 0; i < ARRAY_SIZE(vmcs_fields); i++) 330ecd5b431SDavid Matlack set_vmcs_field(&vmcs_fields[i], cookie); 331ecd5b431SDavid Matlack } 332ecd5b431SDavid Matlack 33385cd1cf9SSean Christopherson static bool __check_all_vmcs_fields(u8 cookie, u32 *max_index) 334ecd5b431SDavid Matlack { 335ecd5b431SDavid Matlack bool pass = true; 336ecd5b431SDavid Matlack int i; 337ecd5b431SDavid Matlack 338ecd5b431SDavid Matlack for (i = 0; i < ARRAY_SIZE(vmcs_fields); i++) { 33985cd1cf9SSean Christopherson if (!check_vmcs_field(&vmcs_fields[i], cookie, max_index)) 340ecd5b431SDavid Matlack pass = false; 341ecd5b431SDavid Matlack } 342ecd5b431SDavid Matlack 343ecd5b431SDavid Matlack return pass; 344ecd5b431SDavid Matlack } 345ecd5b431SDavid Matlack 34685cd1cf9SSean Christopherson static bool check_all_vmcs_fields(u8 cookie) 34785cd1cf9SSean Christopherson { 34885cd1cf9SSean Christopherson return __check_all_vmcs_fields(cookie, NULL); 34985cd1cf9SSean Christopherson } 35085cd1cf9SSean Christopherson 351b29804b8SThomas Huth static void test_vmwrite_vmread(void) 352ecd5b431SDavid Matlack { 353ecd5b431SDavid Matlack struct vmcs *vmcs = alloc_page(); 35485cd1cf9SSean Christopherson u32 vmcs_enum_max, max_index = 0; 355ecd5b431SDavid Matlack 3566c0ba6e7SLiran Alon vmcs->hdr.revision_id = basic.revision; 357ecd5b431SDavid Matlack assert(!vmcs_clear(vmcs)); 358ecd5b431SDavid Matlack assert(!make_vmcs_current(vmcs)); 359ecd5b431SDavid Matlack 360ecd5b431SDavid Matlack set_all_vmcs_fields(0x42); 361*a299895bSThomas Huth report(__check_all_vmcs_fields(0x42, &max_index), "VMWRITE/VMREAD"); 36285cd1cf9SSean Christopherson 36385cd1cf9SSean Christopherson vmcs_enum_max = rdmsr(MSR_IA32_VMX_VMCS_ENUM) & VMCS_FIELD_INDEX_MASK; 364*a299895bSThomas Huth report(vmcs_enum_max >= max_index, 365*a299895bSThomas Huth "VMX_VMCS_ENUM.MAX_INDEX expected at least: %x, actual: %x", 366*a299895bSThomas Huth max_index, vmcs_enum_max); 367ecd5b431SDavid Matlack 368ecd5b431SDavid Matlack assert(!vmcs_clear(vmcs)); 369ecd5b431SDavid Matlack free_page(vmcs); 370ecd5b431SDavid Matlack } 371ecd5b431SDavid Matlack 372b29804b8SThomas Huth static void test_vmcs_high(void) 37359161cfaSJim Mattson { 37459161cfaSJim Mattson struct vmcs *vmcs = alloc_page(); 37559161cfaSJim Mattson 3766c0ba6e7SLiran Alon vmcs->hdr.revision_id = basic.revision; 37759161cfaSJim Mattson assert(!vmcs_clear(vmcs)); 37859161cfaSJim Mattson assert(!make_vmcs_current(vmcs)); 37959161cfaSJim Mattson 38059161cfaSJim Mattson vmcs_write(TSC_OFFSET, 0x0123456789ABCDEFull); 381*a299895bSThomas Huth report(vmcs_read(TSC_OFFSET) == 0x0123456789ABCDEFull, 382*a299895bSThomas Huth "VMREAD TSC_OFFSET after VMWRITE TSC_OFFSET"); 383*a299895bSThomas Huth report(vmcs_read(TSC_OFFSET_HI) == 0x01234567ull, 384*a299895bSThomas Huth "VMREAD TSC_OFFSET_HI after VMWRITE TSC_OFFSET"); 38559161cfaSJim Mattson vmcs_write(TSC_OFFSET_HI, 0x76543210ul); 386*a299895bSThomas Huth report(vmcs_read(TSC_OFFSET_HI) == 0x76543210ul, 387*a299895bSThomas Huth "VMREAD TSC_OFFSET_HI after VMWRITE TSC_OFFSET_HI"); 388*a299895bSThomas Huth report(vmcs_read(TSC_OFFSET) == 0x7654321089ABCDEFull, 389*a299895bSThomas Huth "VMREAD TSC_OFFSET after VMWRITE TSC_OFFSET_HI"); 39059161cfaSJim Mattson 39159161cfaSJim Mattson assert(!vmcs_clear(vmcs)); 39259161cfaSJim Mattson free_page(vmcs); 39359161cfaSJim Mattson } 39459161cfaSJim Mattson 395b29804b8SThomas Huth static void test_vmcs_lifecycle(void) 3966b72cf76SDavid Matlack { 3976b72cf76SDavid Matlack struct vmcs *vmcs[2] = {}; 3986b72cf76SDavid Matlack int i; 3996b72cf76SDavid Matlack 4006b72cf76SDavid Matlack for (i = 0; i < ARRAY_SIZE(vmcs); i++) { 4016b72cf76SDavid Matlack vmcs[i] = alloc_page(); 4026c0ba6e7SLiran Alon vmcs[i]->hdr.revision_id = basic.revision; 4036b72cf76SDavid Matlack } 4046b72cf76SDavid Matlack 4056b72cf76SDavid Matlack #define VMPTRLD(_i) do { \ 4066b72cf76SDavid Matlack assert(_i < ARRAY_SIZE(vmcs)); \ 4076b72cf76SDavid Matlack assert(!make_vmcs_current(vmcs[_i])); \ 4086b72cf76SDavid Matlack printf("VMPTRLD VMCS%d\n", (_i)); \ 4096b72cf76SDavid Matlack } while (0) 4106b72cf76SDavid Matlack 4116b72cf76SDavid Matlack #define VMCLEAR(_i) do { \ 4126b72cf76SDavid Matlack assert(_i < ARRAY_SIZE(vmcs)); \ 4136b72cf76SDavid Matlack assert(!vmcs_clear(vmcs[_i])); \ 4146b72cf76SDavid Matlack printf("VMCLEAR VMCS%d\n", (_i)); \ 4156b72cf76SDavid Matlack } while (0) 4166b72cf76SDavid Matlack 4176b72cf76SDavid Matlack VMCLEAR(0); 4186b72cf76SDavid Matlack VMPTRLD(0); 4196b72cf76SDavid Matlack set_all_vmcs_fields(0); 420*a299895bSThomas Huth report(check_all_vmcs_fields(0), "current:VMCS0 active:[VMCS0]"); 4216b72cf76SDavid Matlack 4226b72cf76SDavid Matlack VMCLEAR(0); 4236b72cf76SDavid Matlack VMPTRLD(0); 424*a299895bSThomas Huth report(check_all_vmcs_fields(0), "current:VMCS0 active:[VMCS0]"); 4256b72cf76SDavid Matlack 4266b72cf76SDavid Matlack VMCLEAR(1); 427*a299895bSThomas Huth report(check_all_vmcs_fields(0), "current:VMCS0 active:[VMCS0]"); 4286b72cf76SDavid Matlack 4296b72cf76SDavid Matlack VMPTRLD(1); 4306b72cf76SDavid Matlack set_all_vmcs_fields(1); 431*a299895bSThomas Huth report(check_all_vmcs_fields(1), "current:VMCS1 active:[VMCS0,VCMS1]"); 4326b72cf76SDavid Matlack 4336b72cf76SDavid Matlack VMPTRLD(0); 434*a299895bSThomas Huth report(check_all_vmcs_fields(0), "current:VMCS0 active:[VMCS0,VCMS1]"); 4356b72cf76SDavid Matlack VMPTRLD(1); 436*a299895bSThomas Huth report(check_all_vmcs_fields(1), "current:VMCS1 active:[VMCS0,VCMS1]"); 4376b72cf76SDavid Matlack VMPTRLD(1); 438*a299895bSThomas Huth report(check_all_vmcs_fields(1), "current:VMCS1 active:[VMCS0,VCMS1]"); 4396b72cf76SDavid Matlack 4406b72cf76SDavid Matlack VMCLEAR(0); 441*a299895bSThomas Huth report(check_all_vmcs_fields(1), "current:VMCS1 active:[VCMS1]"); 4426b72cf76SDavid Matlack 443d4ab68adSDavid Matlack /* VMPTRLD should not erase VMWRITEs to the current VMCS */ 444d4ab68adSDavid Matlack set_all_vmcs_fields(2); 445d4ab68adSDavid Matlack VMPTRLD(1); 446*a299895bSThomas Huth report(check_all_vmcs_fields(2), "current:VMCS1 active:[VCMS1]"); 447d4ab68adSDavid Matlack 4486b72cf76SDavid Matlack for (i = 0; i < ARRAY_SIZE(vmcs); i++) { 4496b72cf76SDavid Matlack VMCLEAR(i); 4506b72cf76SDavid Matlack free_page(vmcs[i]); 4516b72cf76SDavid Matlack } 4526b72cf76SDavid Matlack 4536b72cf76SDavid Matlack #undef VMPTRLD 4546b72cf76SDavid Matlack #undef VMCLEAR 4556b72cf76SDavid Matlack } 4566b72cf76SDavid Matlack 457ffb1a9e0SJan Kiszka void vmx_set_test_stage(u32 s) 458ffb1a9e0SJan Kiszka { 459ffb1a9e0SJan Kiszka barrier(); 460ffb1a9e0SJan Kiszka stage = s; 461ffb1a9e0SJan Kiszka barrier(); 462ffb1a9e0SJan Kiszka } 463ffb1a9e0SJan Kiszka 464ffb1a9e0SJan Kiszka u32 vmx_get_test_stage(void) 465ffb1a9e0SJan Kiszka { 466ffb1a9e0SJan Kiszka u32 s; 467ffb1a9e0SJan Kiszka 468ffb1a9e0SJan Kiszka barrier(); 469ffb1a9e0SJan Kiszka s = stage; 470ffb1a9e0SJan Kiszka barrier(); 471ffb1a9e0SJan Kiszka return s; 472ffb1a9e0SJan Kiszka } 473ffb1a9e0SJan Kiszka 474ffb1a9e0SJan Kiszka void vmx_inc_test_stage(void) 475ffb1a9e0SJan Kiszka { 476ffb1a9e0SJan Kiszka barrier(); 477ffb1a9e0SJan Kiszka stage++; 478ffb1a9e0SJan Kiszka barrier(); 479ffb1a9e0SJan Kiszka } 480ffb1a9e0SJan Kiszka 4819d7eaa29SArthur Chunqi Li /* entry_sysenter */ 4829d7eaa29SArthur Chunqi Li asm( 4839d7eaa29SArthur Chunqi Li ".align 4, 0x90\n\t" 4849d7eaa29SArthur Chunqi Li ".globl entry_sysenter\n\t" 4859d7eaa29SArthur Chunqi Li "entry_sysenter:\n\t" 4869d7eaa29SArthur Chunqi Li SAVE_GPR 4879d7eaa29SArthur Chunqi Li " and $0xf, %rax\n\t" 4889d7eaa29SArthur Chunqi Li " mov %rax, %rdi\n\t" 4899d7eaa29SArthur Chunqi Li " call syscall_handler\n\t" 4909d7eaa29SArthur Chunqi Li LOAD_GPR 4919d7eaa29SArthur Chunqi Li " vmresume\n\t" 4929d7eaa29SArthur Chunqi Li ); 4939d7eaa29SArthur Chunqi Li 4949d7eaa29SArthur Chunqi Li static void __attribute__((__used__)) syscall_handler(u64 syscall_no) 4959d7eaa29SArthur Chunqi Li { 496d5315e3dSJan Kiszka if (current->syscall_handler) 4979d7eaa29SArthur Chunqi Li current->syscall_handler(syscall_no); 4989d7eaa29SArthur Chunqi Li } 4999d7eaa29SArthur Chunqi Li 5007e207ec1SPeter Feiner static const char * const exit_reason_descriptions[] = { 5017e207ec1SPeter Feiner [VMX_EXC_NMI] = "VMX_EXC_NMI", 5027e207ec1SPeter Feiner [VMX_EXTINT] = "VMX_EXTINT", 5037e207ec1SPeter Feiner [VMX_TRIPLE_FAULT] = "VMX_TRIPLE_FAULT", 5047e207ec1SPeter Feiner [VMX_INIT] = "VMX_INIT", 5057e207ec1SPeter Feiner [VMX_SIPI] = "VMX_SIPI", 5067e207ec1SPeter Feiner [VMX_SMI_IO] = "VMX_SMI_IO", 5077e207ec1SPeter Feiner [VMX_SMI_OTHER] = "VMX_SMI_OTHER", 5087e207ec1SPeter Feiner [VMX_INTR_WINDOW] = "VMX_INTR_WINDOW", 5097e207ec1SPeter Feiner [VMX_NMI_WINDOW] = "VMX_NMI_WINDOW", 5107e207ec1SPeter Feiner [VMX_TASK_SWITCH] = "VMX_TASK_SWITCH", 5117e207ec1SPeter Feiner [VMX_CPUID] = "VMX_CPUID", 5127e207ec1SPeter Feiner [VMX_GETSEC] = "VMX_GETSEC", 5137e207ec1SPeter Feiner [VMX_HLT] = "VMX_HLT", 5147e207ec1SPeter Feiner [VMX_INVD] = "VMX_INVD", 5157e207ec1SPeter Feiner [VMX_INVLPG] = "VMX_INVLPG", 5167e207ec1SPeter Feiner [VMX_RDPMC] = "VMX_RDPMC", 5177e207ec1SPeter Feiner [VMX_RDTSC] = "VMX_RDTSC", 5187e207ec1SPeter Feiner [VMX_RSM] = "VMX_RSM", 5197e207ec1SPeter Feiner [VMX_VMCALL] = "VMX_VMCALL", 5207e207ec1SPeter Feiner [VMX_VMCLEAR] = "VMX_VMCLEAR", 5217e207ec1SPeter Feiner [VMX_VMLAUNCH] = "VMX_VMLAUNCH", 5227e207ec1SPeter Feiner [VMX_VMPTRLD] = "VMX_VMPTRLD", 5237e207ec1SPeter Feiner [VMX_VMPTRST] = "VMX_VMPTRST", 5247e207ec1SPeter Feiner [VMX_VMREAD] = "VMX_VMREAD", 5257e207ec1SPeter Feiner [VMX_VMRESUME] = "VMX_VMRESUME", 5267e207ec1SPeter Feiner [VMX_VMWRITE] = "VMX_VMWRITE", 5277e207ec1SPeter Feiner [VMX_VMXOFF] = "VMX_VMXOFF", 5287e207ec1SPeter Feiner [VMX_VMXON] = "VMX_VMXON", 5297e207ec1SPeter Feiner [VMX_CR] = "VMX_CR", 5307e207ec1SPeter Feiner [VMX_DR] = "VMX_DR", 5317e207ec1SPeter Feiner [VMX_IO] = "VMX_IO", 5327e207ec1SPeter Feiner [VMX_RDMSR] = "VMX_RDMSR", 5337e207ec1SPeter Feiner [VMX_WRMSR] = "VMX_WRMSR", 5347e207ec1SPeter Feiner [VMX_FAIL_STATE] = "VMX_FAIL_STATE", 5357e207ec1SPeter Feiner [VMX_FAIL_MSR] = "VMX_FAIL_MSR", 5367e207ec1SPeter Feiner [VMX_MWAIT] = "VMX_MWAIT", 5377e207ec1SPeter Feiner [VMX_MTF] = "VMX_MTF", 5387e207ec1SPeter Feiner [VMX_MONITOR] = "VMX_MONITOR", 5397e207ec1SPeter Feiner [VMX_PAUSE] = "VMX_PAUSE", 5407e207ec1SPeter Feiner [VMX_FAIL_MCHECK] = "VMX_FAIL_MCHECK", 5417e207ec1SPeter Feiner [VMX_TPR_THRESHOLD] = "VMX_TPR_THRESHOLD", 5427e207ec1SPeter Feiner [VMX_APIC_ACCESS] = "VMX_APIC_ACCESS", 54367fdc49eSArbel Moshe [VMX_EOI_INDUCED] = "VMX_EOI_INDUCED", 5447e207ec1SPeter Feiner [VMX_GDTR_IDTR] = "VMX_GDTR_IDTR", 5457e207ec1SPeter Feiner [VMX_LDTR_TR] = "VMX_LDTR_TR", 5467e207ec1SPeter Feiner [VMX_EPT_VIOLATION] = "VMX_EPT_VIOLATION", 5477e207ec1SPeter Feiner [VMX_EPT_MISCONFIG] = "VMX_EPT_MISCONFIG", 5487e207ec1SPeter Feiner [VMX_INVEPT] = "VMX_INVEPT", 5497e207ec1SPeter Feiner [VMX_PREEMPT] = "VMX_PREEMPT", 5507e207ec1SPeter Feiner [VMX_INVVPID] = "VMX_INVVPID", 5517e207ec1SPeter Feiner [VMX_WBINVD] = "VMX_WBINVD", 5527e207ec1SPeter Feiner [VMX_XSETBV] = "VMX_XSETBV", 5537e207ec1SPeter Feiner [VMX_APIC_WRITE] = "VMX_APIC_WRITE", 5547e207ec1SPeter Feiner [VMX_RDRAND] = "VMX_RDRAND", 5557e207ec1SPeter Feiner [VMX_INVPCID] = "VMX_INVPCID", 5567e207ec1SPeter Feiner [VMX_VMFUNC] = "VMX_VMFUNC", 5577e207ec1SPeter Feiner [VMX_RDSEED] = "VMX_RDSEED", 5587e207ec1SPeter Feiner [VMX_PML_FULL] = "VMX_PML_FULL", 5597e207ec1SPeter Feiner [VMX_XSAVES] = "VMX_XSAVES", 5607e207ec1SPeter Feiner [VMX_XRSTORS] = "VMX_XRSTORS", 5617e207ec1SPeter Feiner }; 5627e207ec1SPeter Feiner 5637e207ec1SPeter Feiner const char *exit_reason_description(u64 reason) 5647e207ec1SPeter Feiner { 5657e207ec1SPeter Feiner if (reason >= ARRAY_SIZE(exit_reason_descriptions)) 5667e207ec1SPeter Feiner return "(unknown)"; 5677e207ec1SPeter Feiner return exit_reason_descriptions[reason] ? : "(unused)"; 5687e207ec1SPeter Feiner } 5697e207ec1SPeter Feiner 5703ee34093SArthur Chunqi Li void print_vmexit_info() 5719d7eaa29SArthur Chunqi Li { 5729d7eaa29SArthur Chunqi Li u64 guest_rip, guest_rsp; 5739d7eaa29SArthur Chunqi Li ulong reason = vmcs_read(EXI_REASON) & 0xff; 5749d7eaa29SArthur Chunqi Li ulong exit_qual = vmcs_read(EXI_QUALIFICATION); 5759d7eaa29SArthur Chunqi Li guest_rip = vmcs_read(GUEST_RIP); 5769d7eaa29SArthur Chunqi Li guest_rsp = vmcs_read(GUEST_RSP); 5779d7eaa29SArthur Chunqi Li printf("VMEXIT info:\n"); 578b006d7ebSAndrew Jones printf("\tvmexit reason = %ld\n", reason); 579fd6aada0SRadim Krčmář printf("\texit qualification = %#lx\n", exit_qual); 580b006d7ebSAndrew Jones printf("\tBit 31 of reason = %lx\n", (vmcs_read(EXI_REASON) >> 31) & 1); 581fd6aada0SRadim Krčmář printf("\tguest_rip = %#lx\n", guest_rip); 582fd6aada0SRadim Krčmář printf("\tRAX=%#lx RBX=%#lx RCX=%#lx RDX=%#lx\n", 5839d7eaa29SArthur Chunqi Li regs.rax, regs.rbx, regs.rcx, regs.rdx); 584fd6aada0SRadim Krčmář printf("\tRSP=%#lx RBP=%#lx RSI=%#lx RDI=%#lx\n", 5859d7eaa29SArthur Chunqi Li guest_rsp, regs.rbp, regs.rsi, regs.rdi); 586fd6aada0SRadim Krčmář printf("\tR8 =%#lx R9 =%#lx R10=%#lx R11=%#lx\n", 5879d7eaa29SArthur Chunqi Li regs.r8, regs.r9, regs.r10, regs.r11); 588fd6aada0SRadim Krčmář printf("\tR12=%#lx R13=%#lx R14=%#lx R15=%#lx\n", 5899d7eaa29SArthur Chunqi Li regs.r12, regs.r13, regs.r14, regs.r15); 5909d7eaa29SArthur Chunqi Li } 5919d7eaa29SArthur Chunqi Li 5923b50efe3SPeter Feiner void 5933b50efe3SPeter Feiner print_vmentry_failure_info(struct vmentry_failure *failure) { 5943b50efe3SPeter Feiner if (failure->early) { 5953b50efe3SPeter Feiner printf("Early %s failure: ", failure->instr); 5963b50efe3SPeter Feiner switch (failure->flags & VMX_ENTRY_FLAGS) { 597ce154ba8SPaolo Bonzini case X86_EFLAGS_CF: 5983b50efe3SPeter Feiner printf("current-VMCS pointer is not valid.\n"); 5993b50efe3SPeter Feiner break; 600ce154ba8SPaolo Bonzini case X86_EFLAGS_ZF: 6013b50efe3SPeter Feiner printf("error number is %ld. See Intel 30.4.\n", 6023b50efe3SPeter Feiner vmcs_read(VMX_INST_ERROR)); 6033b50efe3SPeter Feiner break; 6043b50efe3SPeter Feiner default: 6053b50efe3SPeter Feiner printf("unexpected flags %lx!\n", failure->flags); 6063b50efe3SPeter Feiner } 6073b50efe3SPeter Feiner } else { 6083b50efe3SPeter Feiner u64 reason = vmcs_read(EXI_REASON); 6093b50efe3SPeter Feiner u64 qual = vmcs_read(EXI_QUALIFICATION); 6103b50efe3SPeter Feiner 611fd6aada0SRadim Krčmář printf("Non-early %s failure (reason=%#lx, qual=%#lx): ", 6123b50efe3SPeter Feiner failure->instr, reason, qual); 6133b50efe3SPeter Feiner 6143b50efe3SPeter Feiner switch (reason & 0xff) { 6153b50efe3SPeter Feiner case VMX_FAIL_STATE: 6163b50efe3SPeter Feiner printf("invalid guest state\n"); 6173b50efe3SPeter Feiner break; 6183b50efe3SPeter Feiner case VMX_FAIL_MSR: 6193b50efe3SPeter Feiner printf("MSR loading\n"); 6203b50efe3SPeter Feiner break; 6213b50efe3SPeter Feiner case VMX_FAIL_MCHECK: 6223b50efe3SPeter Feiner printf("machine-check event\n"); 6233b50efe3SPeter Feiner break; 6243b50efe3SPeter Feiner default: 6253b50efe3SPeter Feiner printf("unexpected basic exit reason %ld\n", 6263b50efe3SPeter Feiner reason & 0xff); 6273b50efe3SPeter Feiner } 6283b50efe3SPeter Feiner 6293b50efe3SPeter Feiner if (!(reason & VMX_ENTRY_FAILURE)) 6303b50efe3SPeter Feiner printf("\tVMX_ENTRY_FAILURE BIT NOT SET!\n"); 6313b50efe3SPeter Feiner 6323b50efe3SPeter Feiner if (reason & 0x7fff0000) 6333b50efe3SPeter Feiner printf("\tRESERVED BITS SET!\n"); 6343b50efe3SPeter Feiner } 6353b50efe3SPeter Feiner } 6363b50efe3SPeter Feiner 6372f6828d7SDavid Matlack /* 6382f6828d7SDavid Matlack * VMCLEAR should ensures all VMCS state is flushed to the VMCS 6392f6828d7SDavid Matlack * region in memory. 6402f6828d7SDavid Matlack */ 6412f6828d7SDavid Matlack static void test_vmclear_flushing(void) 6422f6828d7SDavid Matlack { 6432f6828d7SDavid Matlack struct vmcs *vmcs[3] = {}; 6442f6828d7SDavid Matlack int i; 6452f6828d7SDavid Matlack 6462f6828d7SDavid Matlack for (i = 0; i < ARRAY_SIZE(vmcs); i++) { 6472f6828d7SDavid Matlack vmcs[i] = alloc_page(); 6482f6828d7SDavid Matlack } 6492f6828d7SDavid Matlack 6506c0ba6e7SLiran Alon vmcs[0]->hdr.revision_id = basic.revision; 6512f6828d7SDavid Matlack assert(!vmcs_clear(vmcs[0])); 6522f6828d7SDavid Matlack assert(!make_vmcs_current(vmcs[0])); 6532f6828d7SDavid Matlack set_all_vmcs_fields(0x86); 6542f6828d7SDavid Matlack 6552f6828d7SDavid Matlack assert(!vmcs_clear(vmcs[0])); 6562f6828d7SDavid Matlack memcpy(vmcs[1], vmcs[0], basic.size); 6572f6828d7SDavid Matlack assert(!make_vmcs_current(vmcs[1])); 658*a299895bSThomas Huth report(check_all_vmcs_fields(0x86), 659*a299895bSThomas Huth "test vmclear flush (current VMCS)"); 6602f6828d7SDavid Matlack 6612f6828d7SDavid Matlack set_all_vmcs_fields(0x87); 6622f6828d7SDavid Matlack assert(!make_vmcs_current(vmcs[0])); 6632f6828d7SDavid Matlack assert(!vmcs_clear(vmcs[1])); 6642f6828d7SDavid Matlack memcpy(vmcs[2], vmcs[1], basic.size); 6652f6828d7SDavid Matlack assert(!make_vmcs_current(vmcs[2])); 666*a299895bSThomas Huth report(check_all_vmcs_fields(0x87), 667*a299895bSThomas Huth "test vmclear flush (!current VMCS)"); 6682f6828d7SDavid Matlack 6692f6828d7SDavid Matlack for (i = 0; i < ARRAY_SIZE(vmcs); i++) { 6702f6828d7SDavid Matlack assert(!vmcs_clear(vmcs[i])); 6712f6828d7SDavid Matlack free_page(vmcs[i]); 6722f6828d7SDavid Matlack } 6732f6828d7SDavid Matlack } 6743b50efe3SPeter Feiner 6759d7eaa29SArthur Chunqi Li static void test_vmclear(void) 6769d7eaa29SArthur Chunqi Li { 677daeec979SBandan Das struct vmcs *tmp_root; 678e2cf1c9dSEduardo Habkost int width = cpuid_maxphyaddr(); 679daeec979SBandan Das 680daeec979SBandan Das /* 681daeec979SBandan Das * Note- The tests below do not necessarily have a 682daeec979SBandan Das * valid VMCS, but that's ok since the invalid vmcs 683daeec979SBandan Das * is only used for a specific test and is discarded 684daeec979SBandan Das * without touching its contents 685daeec979SBandan Das */ 686daeec979SBandan Das 687daeec979SBandan Das /* Unaligned page access */ 688daeec979SBandan Das tmp_root = (struct vmcs *)((intptr_t)vmcs_root + 1); 689*a299895bSThomas Huth report(vmcs_clear(tmp_root) == 1, "test vmclear with unaligned vmcs"); 690daeec979SBandan Das 691daeec979SBandan Das /* gpa bits beyond physical address width are set*/ 692daeec979SBandan Das tmp_root = (struct vmcs *)((intptr_t)vmcs_root | 693daeec979SBandan Das ((u64)1 << (width+1))); 694*a299895bSThomas Huth report(vmcs_clear(tmp_root) == 1, 695*a299895bSThomas Huth "test vmclear with vmcs address bits set beyond physical address width"); 696daeec979SBandan Das 697daeec979SBandan Das /* Pass VMXON region */ 698c937d495SLiran Alon tmp_root = (struct vmcs *)bsp_vmxon_region; 699*a299895bSThomas Huth report(vmcs_clear(tmp_root) == 1, "test vmclear with vmxon region"); 700daeec979SBandan Das 701daeec979SBandan Das /* Valid VMCS */ 702*a299895bSThomas Huth report(vmcs_clear(vmcs_root) == 0, 703*a299895bSThomas Huth "test vmclear with valid vmcs region"); 704daeec979SBandan Das 7052f6828d7SDavid Matlack test_vmclear_flushing(); 7069d7eaa29SArthur Chunqi Li } 7079d7eaa29SArthur Chunqi Li 7089d7eaa29SArthur Chunqi Li static void __attribute__((__used__)) guest_main(void) 7099d7eaa29SArthur Chunqi Li { 710794c67a9SPeter Feiner if (current->v2) 711794c67a9SPeter Feiner v2_guest_main(); 712794c67a9SPeter Feiner else 7139d7eaa29SArthur Chunqi Li current->guest_main(); 7149d7eaa29SArthur Chunqi Li } 7159d7eaa29SArthur Chunqi Li 7169d7eaa29SArthur Chunqi Li /* guest_entry */ 7179d7eaa29SArthur Chunqi Li asm( 7189d7eaa29SArthur Chunqi Li ".align 4, 0x90\n\t" 7199d7eaa29SArthur Chunqi Li ".globl entry_guest\n\t" 7209d7eaa29SArthur Chunqi Li "guest_entry:\n\t" 7219d7eaa29SArthur Chunqi Li " call guest_main\n\t" 7229d7eaa29SArthur Chunqi Li " mov $1, %edi\n\t" 7239d7eaa29SArthur Chunqi Li " call hypercall\n\t" 7249d7eaa29SArthur Chunqi Li ); 7259d7eaa29SArthur Chunqi Li 7266884af61SArthur Chunqi Li /* EPT paging structure related functions */ 72769c531c8SPeter Feiner /* split_large_ept_entry: Split a 2M/1G large page into 512 smaller PTEs. 72869c531c8SPeter Feiner @ptep : large page table entry to split 72969c531c8SPeter Feiner @level : level of ptep (2 or 3) 73069c531c8SPeter Feiner */ 73169c531c8SPeter Feiner static void split_large_ept_entry(unsigned long *ptep, int level) 73269c531c8SPeter Feiner { 73369c531c8SPeter Feiner unsigned long *new_pt; 73469c531c8SPeter Feiner unsigned long gpa; 73569c531c8SPeter Feiner unsigned long pte; 73669c531c8SPeter Feiner unsigned long prototype; 73769c531c8SPeter Feiner int i; 73869c531c8SPeter Feiner 73969c531c8SPeter Feiner pte = *ptep; 74069c531c8SPeter Feiner assert(pte & EPT_PRESENT); 74169c531c8SPeter Feiner assert(pte & EPT_LARGE_PAGE); 74269c531c8SPeter Feiner assert(level == 2 || level == 3); 74369c531c8SPeter Feiner 74469c531c8SPeter Feiner new_pt = alloc_page(); 74569c531c8SPeter Feiner assert(new_pt); 74669c531c8SPeter Feiner 74769c531c8SPeter Feiner prototype = pte & ~EPT_ADDR_MASK; 74869c531c8SPeter Feiner if (level == 2) 74969c531c8SPeter Feiner prototype &= ~EPT_LARGE_PAGE; 75069c531c8SPeter Feiner 75169c531c8SPeter Feiner gpa = pte & EPT_ADDR_MASK; 75269c531c8SPeter Feiner for (i = 0; i < EPT_PGDIR_ENTRIES; i++) { 75369c531c8SPeter Feiner new_pt[i] = prototype | gpa; 75469c531c8SPeter Feiner gpa += 1ul << EPT_LEVEL_SHIFT(level - 1); 75569c531c8SPeter Feiner } 75669c531c8SPeter Feiner 75769c531c8SPeter Feiner pte &= ~EPT_LARGE_PAGE; 75869c531c8SPeter Feiner pte &= ~EPT_ADDR_MASK; 75969c531c8SPeter Feiner pte |= virt_to_phys(new_pt); 76069c531c8SPeter Feiner 76169c531c8SPeter Feiner *ptep = pte; 76269c531c8SPeter Feiner } 76369c531c8SPeter Feiner 7646884af61SArthur Chunqi Li /* install_ept_entry : Install a page to a given level in EPT 7656884af61SArthur Chunqi Li @pml4 : addr of pml4 table 7666884af61SArthur Chunqi Li @pte_level : level of PTE to set 7676884af61SArthur Chunqi Li @guest_addr : physical address of guest 7686884af61SArthur Chunqi Li @pte : pte value to set 7696884af61SArthur Chunqi Li @pt_page : address of page table, NULL for a new page 7706884af61SArthur Chunqi Li */ 7716884af61SArthur Chunqi Li void install_ept_entry(unsigned long *pml4, 7726884af61SArthur Chunqi Li int pte_level, 7736884af61SArthur Chunqi Li unsigned long guest_addr, 7746884af61SArthur Chunqi Li unsigned long pte, 7756884af61SArthur Chunqi Li unsigned long *pt_page) 7766884af61SArthur Chunqi Li { 7776884af61SArthur Chunqi Li int level; 7786884af61SArthur Chunqi Li unsigned long *pt = pml4; 7796884af61SArthur Chunqi Li unsigned offset; 7806884af61SArthur Chunqi Li 781dff740c0SPeter Feiner /* EPT only uses 48 bits of GPA. */ 782dff740c0SPeter Feiner assert(guest_addr < (1ul << 48)); 783dff740c0SPeter Feiner 7846884af61SArthur Chunqi Li for (level = EPT_PAGE_LEVEL; level > pte_level; --level) { 785a969e087SPeter Feiner offset = (guest_addr >> EPT_LEVEL_SHIFT(level)) 7866884af61SArthur Chunqi Li & EPT_PGDIR_MASK; 7876884af61SArthur Chunqi Li if (!(pt[offset] & (EPT_PRESENT))) { 7886884af61SArthur Chunqi Li unsigned long *new_pt = pt_page; 7896884af61SArthur Chunqi Li if (!new_pt) 7906884af61SArthur Chunqi Li new_pt = alloc_page(); 7916884af61SArthur Chunqi Li else 7926884af61SArthur Chunqi Li pt_page = 0; 7936884af61SArthur Chunqi Li memset(new_pt, 0, PAGE_SIZE); 7946884af61SArthur Chunqi Li pt[offset] = virt_to_phys(new_pt) 7956884af61SArthur Chunqi Li | EPT_RA | EPT_WA | EPT_EA; 79669c531c8SPeter Feiner } else if (pt[offset] & EPT_LARGE_PAGE) 79769c531c8SPeter Feiner split_large_ept_entry(&pt[offset], level); 79800b5c590SPeter Feiner pt = phys_to_virt(pt[offset] & EPT_ADDR_MASK); 7996884af61SArthur Chunqi Li } 800a969e087SPeter Feiner offset = (guest_addr >> EPT_LEVEL_SHIFT(level)) & EPT_PGDIR_MASK; 8016884af61SArthur Chunqi Li pt[offset] = pte; 8026884af61SArthur Chunqi Li } 8036884af61SArthur Chunqi Li 8046884af61SArthur Chunqi Li /* Map a page, @perm is the permission of the page */ 8056884af61SArthur Chunqi Li void install_ept(unsigned long *pml4, 8066884af61SArthur Chunqi Li unsigned long phys, 8076884af61SArthur Chunqi Li unsigned long guest_addr, 8086884af61SArthur Chunqi Li u64 perm) 8096884af61SArthur Chunqi Li { 8106884af61SArthur Chunqi Li install_ept_entry(pml4, 1, guest_addr, (phys & PAGE_MASK) | perm, 0); 8116884af61SArthur Chunqi Li } 8126884af61SArthur Chunqi Li 8136884af61SArthur Chunqi Li /* Map a 1G-size page */ 8146884af61SArthur Chunqi Li void install_1g_ept(unsigned long *pml4, 8156884af61SArthur Chunqi Li unsigned long phys, 8166884af61SArthur Chunqi Li unsigned long guest_addr, 8176884af61SArthur Chunqi Li u64 perm) 8186884af61SArthur Chunqi Li { 8196884af61SArthur Chunqi Li install_ept_entry(pml4, 3, guest_addr, 8206884af61SArthur Chunqi Li (phys & PAGE_MASK) | perm | EPT_LARGE_PAGE, 0); 8216884af61SArthur Chunqi Li } 8226884af61SArthur Chunqi Li 8236884af61SArthur Chunqi Li /* Map a 2M-size page */ 8246884af61SArthur Chunqi Li void install_2m_ept(unsigned long *pml4, 8256884af61SArthur Chunqi Li unsigned long phys, 8266884af61SArthur Chunqi Li unsigned long guest_addr, 8276884af61SArthur Chunqi Li u64 perm) 8286884af61SArthur Chunqi Li { 8296884af61SArthur Chunqi Li install_ept_entry(pml4, 2, guest_addr, 8306884af61SArthur Chunqi Li (phys & PAGE_MASK) | perm | EPT_LARGE_PAGE, 0); 8316884af61SArthur Chunqi Li } 8326884af61SArthur Chunqi Li 8336884af61SArthur Chunqi Li /* setup_ept_range : Setup a range of 1:1 mapped page to EPT paging structure. 8346884af61SArthur Chunqi Li @start : start address of guest page 8356884af61SArthur Chunqi Li @len : length of address to be mapped 8366884af61SArthur Chunqi Li @map_1g : whether 1G page map is used 8376884af61SArthur Chunqi Li @map_2m : whether 2M page map is used 8386884af61SArthur Chunqi Li @perm : permission for every page 8396884af61SArthur Chunqi Li */ 840b947e241SJan Kiszka void setup_ept_range(unsigned long *pml4, unsigned long start, 8416884af61SArthur Chunqi Li unsigned long len, int map_1g, int map_2m, u64 perm) 8426884af61SArthur Chunqi Li { 8436884af61SArthur Chunqi Li u64 phys = start; 8446884af61SArthur Chunqi Li u64 max = (u64)len + (u64)start; 8456884af61SArthur Chunqi Li 8466884af61SArthur Chunqi Li if (map_1g) { 8476884af61SArthur Chunqi Li while (phys + PAGE_SIZE_1G <= max) { 8486884af61SArthur Chunqi Li install_1g_ept(pml4, phys, phys, perm); 8496884af61SArthur Chunqi Li phys += PAGE_SIZE_1G; 8506884af61SArthur Chunqi Li } 8516884af61SArthur Chunqi Li } 8526884af61SArthur Chunqi Li if (map_2m) { 8536884af61SArthur Chunqi Li while (phys + PAGE_SIZE_2M <= max) { 8546884af61SArthur Chunqi Li install_2m_ept(pml4, phys, phys, perm); 8556884af61SArthur Chunqi Li phys += PAGE_SIZE_2M; 8566884af61SArthur Chunqi Li } 8576884af61SArthur Chunqi Li } 8586884af61SArthur Chunqi Li while (phys + PAGE_SIZE <= max) { 8596884af61SArthur Chunqi Li install_ept(pml4, phys, phys, perm); 8606884af61SArthur Chunqi Li phys += PAGE_SIZE; 8616884af61SArthur Chunqi Li } 8626884af61SArthur Chunqi Li } 8636884af61SArthur Chunqi Li 8646884af61SArthur Chunqi Li /* get_ept_pte : Get the PTE of a given level in EPT, 8656884af61SArthur Chunqi Li @level == 1 means get the latest level*/ 866b4a405c3SRadim Krčmář bool get_ept_pte(unsigned long *pml4, unsigned long guest_addr, int level, 867b4a405c3SRadim Krčmář unsigned long *pte) 8686884af61SArthur Chunqi Li { 8696884af61SArthur Chunqi Li int l; 870b4a405c3SRadim Krčmář unsigned long *pt = pml4, iter_pte; 8716884af61SArthur Chunqi Li unsigned offset; 8726884af61SArthur Chunqi Li 873dff740c0SPeter Feiner assert(level >= 1 && level <= 4); 874dff740c0SPeter Feiner 8752ca6f1f3SPaolo Bonzini for (l = EPT_PAGE_LEVEL; ; --l) { 876a969e087SPeter Feiner offset = (guest_addr >> EPT_LEVEL_SHIFT(l)) & EPT_PGDIR_MASK; 877b4a405c3SRadim Krčmář iter_pte = pt[offset]; 8786884af61SArthur Chunqi Li if (l == level) 8792ca6f1f3SPaolo Bonzini break; 880b4a405c3SRadim Krčmář if (l < 4 && (iter_pte & EPT_LARGE_PAGE)) 881b4a405c3SRadim Krčmář return false; 8828922f1fbSRadim Krčmář if (!(iter_pte & (EPT_PRESENT))) 8838922f1fbSRadim Krčmář return false; 884b4a405c3SRadim Krčmář pt = (unsigned long *)(iter_pte & EPT_ADDR_MASK); 8856884af61SArthur Chunqi Li } 886a969e087SPeter Feiner offset = (guest_addr >> EPT_LEVEL_SHIFT(l)) & EPT_PGDIR_MASK; 887b4a405c3SRadim Krčmář if (pte) 888b4a405c3SRadim Krčmář *pte = pt[offset]; 889b4a405c3SRadim Krčmář return true; 8906884af61SArthur Chunqi Li } 8916884af61SArthur Chunqi Li 892521820dbSPaolo Bonzini static void clear_ept_ad_pte(unsigned long *pml4, unsigned long guest_addr) 893521820dbSPaolo Bonzini { 894521820dbSPaolo Bonzini int l; 895521820dbSPaolo Bonzini unsigned long *pt = pml4; 896521820dbSPaolo Bonzini u64 pte; 897521820dbSPaolo Bonzini unsigned offset; 898521820dbSPaolo Bonzini 899521820dbSPaolo Bonzini for (l = EPT_PAGE_LEVEL; ; --l) { 900521820dbSPaolo Bonzini offset = (guest_addr >> EPT_LEVEL_SHIFT(l)) & EPT_PGDIR_MASK; 901521820dbSPaolo Bonzini pt[offset] &= ~(EPT_ACCESS_FLAG|EPT_DIRTY_FLAG); 902521820dbSPaolo Bonzini pte = pt[offset]; 903521820dbSPaolo Bonzini if (l == 1 || (l < 4 && (pte & EPT_LARGE_PAGE))) 904521820dbSPaolo Bonzini break; 905521820dbSPaolo Bonzini pt = (unsigned long *)(pte & EPT_ADDR_MASK); 906521820dbSPaolo Bonzini } 907521820dbSPaolo Bonzini } 908521820dbSPaolo Bonzini 909521820dbSPaolo Bonzini /* clear_ept_ad : Clear EPT A/D bits for the page table walk and the 910521820dbSPaolo Bonzini final GPA of a guest address. */ 911521820dbSPaolo Bonzini void clear_ept_ad(unsigned long *pml4, u64 guest_cr3, 912521820dbSPaolo Bonzini unsigned long guest_addr) 913521820dbSPaolo Bonzini { 914521820dbSPaolo Bonzini int l; 915521820dbSPaolo Bonzini unsigned long *pt = (unsigned long *)guest_cr3, gpa; 916521820dbSPaolo Bonzini u64 pte, offset_in_page; 917521820dbSPaolo Bonzini unsigned offset; 918521820dbSPaolo Bonzini 919521820dbSPaolo Bonzini for (l = EPT_PAGE_LEVEL; ; --l) { 920521820dbSPaolo Bonzini offset = (guest_addr >> EPT_LEVEL_SHIFT(l)) & EPT_PGDIR_MASK; 921521820dbSPaolo Bonzini 922521820dbSPaolo Bonzini clear_ept_ad_pte(pml4, (u64) &pt[offset]); 923521820dbSPaolo Bonzini pte = pt[offset]; 924521820dbSPaolo Bonzini if (l == 1 || (l < 4 && (pte & PT_PAGE_SIZE_MASK))) 925521820dbSPaolo Bonzini break; 926521820dbSPaolo Bonzini if (!(pte & PT_PRESENT_MASK)) 927521820dbSPaolo Bonzini return; 928521820dbSPaolo Bonzini pt = (unsigned long *)(pte & PT_ADDR_MASK); 929521820dbSPaolo Bonzini } 930521820dbSPaolo Bonzini 931521820dbSPaolo Bonzini offset = (guest_addr >> EPT_LEVEL_SHIFT(l)) & EPT_PGDIR_MASK; 932521820dbSPaolo Bonzini offset_in_page = guest_addr & ((1 << EPT_LEVEL_SHIFT(l)) - 1); 933521820dbSPaolo Bonzini gpa = (pt[offset] & PT_ADDR_MASK) | (guest_addr & offset_in_page); 934521820dbSPaolo Bonzini clear_ept_ad_pte(pml4, gpa); 935521820dbSPaolo Bonzini } 936521820dbSPaolo Bonzini 937521820dbSPaolo Bonzini /* check_ept_ad : Check the content of EPT A/D bits for the page table 938521820dbSPaolo Bonzini walk and the final GPA of a guest address. */ 939521820dbSPaolo Bonzini void check_ept_ad(unsigned long *pml4, u64 guest_cr3, 940521820dbSPaolo Bonzini unsigned long guest_addr, int expected_gpa_ad, 941521820dbSPaolo Bonzini int expected_pt_ad) 942521820dbSPaolo Bonzini { 943521820dbSPaolo Bonzini int l; 944521820dbSPaolo Bonzini unsigned long *pt = (unsigned long *)guest_cr3, gpa; 945521820dbSPaolo Bonzini u64 ept_pte, pte, offset_in_page; 946521820dbSPaolo Bonzini unsigned offset; 947521820dbSPaolo Bonzini bool bad_pt_ad = false; 948521820dbSPaolo Bonzini 949521820dbSPaolo Bonzini for (l = EPT_PAGE_LEVEL; ; --l) { 950521820dbSPaolo Bonzini offset = (guest_addr >> EPT_LEVEL_SHIFT(l)) & EPT_PGDIR_MASK; 951521820dbSPaolo Bonzini 952b4a405c3SRadim Krčmář if (!get_ept_pte(pml4, (u64) &pt[offset], 1, &ept_pte)) { 953b4a405c3SRadim Krčmář printf("EPT - guest level %d page table is not mapped.\n", l); 954521820dbSPaolo Bonzini return; 955b4a405c3SRadim Krčmář } 956521820dbSPaolo Bonzini 957521820dbSPaolo Bonzini if (!bad_pt_ad) { 958521820dbSPaolo Bonzini bad_pt_ad |= (ept_pte & (EPT_ACCESS_FLAG|EPT_DIRTY_FLAG)) != expected_pt_ad; 959521820dbSPaolo Bonzini if (bad_pt_ad) 960*a299895bSThomas Huth report(false, 961*a299895bSThomas Huth "EPT - guest level %d page table A=%d/D=%d", 962*a299895bSThomas Huth l, 963521820dbSPaolo Bonzini !!(expected_pt_ad & EPT_ACCESS_FLAG), 964521820dbSPaolo Bonzini !!(expected_pt_ad & EPT_DIRTY_FLAG)); 965521820dbSPaolo Bonzini } 966521820dbSPaolo Bonzini 967521820dbSPaolo Bonzini pte = pt[offset]; 968521820dbSPaolo Bonzini if (l == 1 || (l < 4 && (pte & PT_PAGE_SIZE_MASK))) 969521820dbSPaolo Bonzini break; 970521820dbSPaolo Bonzini if (!(pte & PT_PRESENT_MASK)) 971521820dbSPaolo Bonzini return; 972521820dbSPaolo Bonzini pt = (unsigned long *)(pte & PT_ADDR_MASK); 973521820dbSPaolo Bonzini } 974521820dbSPaolo Bonzini 975521820dbSPaolo Bonzini if (!bad_pt_ad) 976*a299895bSThomas Huth report(true, "EPT - guest page table structures A=%d/D=%d", 977521820dbSPaolo Bonzini !!(expected_pt_ad & EPT_ACCESS_FLAG), 978521820dbSPaolo Bonzini !!(expected_pt_ad & EPT_DIRTY_FLAG)); 979521820dbSPaolo Bonzini 980521820dbSPaolo Bonzini offset = (guest_addr >> EPT_LEVEL_SHIFT(l)) & EPT_PGDIR_MASK; 981521820dbSPaolo Bonzini offset_in_page = guest_addr & ((1 << EPT_LEVEL_SHIFT(l)) - 1); 982521820dbSPaolo Bonzini gpa = (pt[offset] & PT_ADDR_MASK) | (guest_addr & offset_in_page); 983521820dbSPaolo Bonzini 984b4a405c3SRadim Krčmář if (!get_ept_pte(pml4, gpa, 1, &ept_pte)) { 985*a299895bSThomas Huth report(false, "EPT - guest physical address is not mapped"); 986b4a405c3SRadim Krčmář return; 987b4a405c3SRadim Krčmář } 988*a299895bSThomas Huth report((ept_pte & (EPT_ACCESS_FLAG | EPT_DIRTY_FLAG)) == expected_gpa_ad, 989*a299895bSThomas Huth "EPT - guest physical address A=%d/D=%d", 990521820dbSPaolo Bonzini !!(expected_gpa_ad & EPT_ACCESS_FLAG), 991521820dbSPaolo Bonzini !!(expected_gpa_ad & EPT_DIRTY_FLAG)); 992521820dbSPaolo Bonzini } 993521820dbSPaolo Bonzini 994521820dbSPaolo Bonzini 9952f888fccSBandan Das void ept_sync(int type, u64 eptp) 9962f888fccSBandan Das { 9972f888fccSBandan Das switch (type) { 9982f888fccSBandan Das case INVEPT_SINGLE: 9992f888fccSBandan Das if (ept_vpid.val & EPT_CAP_INVEPT_SINGLE) { 10002f888fccSBandan Das invept(INVEPT_SINGLE, eptp); 10012f888fccSBandan Das break; 10022f888fccSBandan Das } 10032f888fccSBandan Das /* else fall through */ 10042f888fccSBandan Das case INVEPT_GLOBAL: 10052f888fccSBandan Das if (ept_vpid.val & EPT_CAP_INVEPT_ALL) { 10062f888fccSBandan Das invept(INVEPT_GLOBAL, eptp); 10072f888fccSBandan Das break; 10082f888fccSBandan Das } 10092f888fccSBandan Das /* else fall through */ 10102f888fccSBandan Das default: 10112f888fccSBandan Das printf("WARNING: invept is not supported!\n"); 10122f888fccSBandan Das } 10132f888fccSBandan Das } 10142f888fccSBandan Das 1015dff740c0SPeter Feiner void set_ept_pte(unsigned long *pml4, unsigned long guest_addr, 10166884af61SArthur Chunqi Li int level, u64 pte_val) 10176884af61SArthur Chunqi Li { 10186884af61SArthur Chunqi Li int l; 10196884af61SArthur Chunqi Li unsigned long *pt = pml4; 10206884af61SArthur Chunqi Li unsigned offset; 10216884af61SArthur Chunqi Li 1022dff740c0SPeter Feiner assert(level >= 1 && level <= 4); 1023dff740c0SPeter Feiner 10242ca6f1f3SPaolo Bonzini for (l = EPT_PAGE_LEVEL; ; --l) { 1025a969e087SPeter Feiner offset = (guest_addr >> EPT_LEVEL_SHIFT(l)) & EPT_PGDIR_MASK; 10262ca6f1f3SPaolo Bonzini if (l == level) 10272ca6f1f3SPaolo Bonzini break; 1028dff740c0SPeter Feiner assert(pt[offset] & EPT_PRESENT); 102900b5c590SPeter Feiner pt = (unsigned long *)(pt[offset] & EPT_ADDR_MASK); 10306884af61SArthur Chunqi Li } 1031a969e087SPeter Feiner offset = (guest_addr >> EPT_LEVEL_SHIFT(l)) & EPT_PGDIR_MASK; 10326884af61SArthur Chunqi Li pt[offset] = pte_val; 10336884af61SArthur Chunqi Li } 10346884af61SArthur Chunqi Li 10358ab53b95SPeter Feiner bool ept_2m_supported(void) 10368ab53b95SPeter Feiner { 10378ab53b95SPeter Feiner return ept_vpid.val & EPT_CAP_2M_PAGE; 10388ab53b95SPeter Feiner } 10398ab53b95SPeter Feiner 10408ab53b95SPeter Feiner bool ept_1g_supported(void) 10418ab53b95SPeter Feiner { 10428ab53b95SPeter Feiner return ept_vpid.val & EPT_CAP_1G_PAGE; 10438ab53b95SPeter Feiner } 10448ab53b95SPeter Feiner 10458ab53b95SPeter Feiner bool ept_huge_pages_supported(int level) 10468ab53b95SPeter Feiner { 10478ab53b95SPeter Feiner if (level == 2) 10488ab53b95SPeter Feiner return ept_2m_supported(); 10498ab53b95SPeter Feiner else if (level == 3) 10508ab53b95SPeter Feiner return ept_1g_supported(); 10518ab53b95SPeter Feiner else 10528ab53b95SPeter Feiner return false; 10538ab53b95SPeter Feiner } 10548ab53b95SPeter Feiner 10558ab53b95SPeter Feiner bool ept_execute_only_supported(void) 10568ab53b95SPeter Feiner { 10578ab53b95SPeter Feiner return ept_vpid.val & EPT_CAP_WT; 10588ab53b95SPeter Feiner } 10598ab53b95SPeter Feiner 10608ab53b95SPeter Feiner bool ept_ad_bits_supported(void) 10618ab53b95SPeter Feiner { 10628ab53b95SPeter Feiner return ept_vpid.val & EPT_CAP_AD_FLAG; 10638ab53b95SPeter Feiner } 10648ab53b95SPeter Feiner 1065b093c6ceSWanpeng Li void vpid_sync(int type, u16 vpid) 1066b093c6ceSWanpeng Li { 1067b093c6ceSWanpeng Li switch(type) { 1068aedfd771SJim Mattson case INVVPID_CONTEXT_GLOBAL: 1069aedfd771SJim Mattson if (ept_vpid.val & VPID_CAP_INVVPID_CXTGLB) { 1070aedfd771SJim Mattson invvpid(INVVPID_CONTEXT_GLOBAL, vpid, 0); 1071b093c6ceSWanpeng Li break; 1072b093c6ceSWanpeng Li } 1073b093c6ceSWanpeng Li case INVVPID_ALL: 1074b093c6ceSWanpeng Li if (ept_vpid.val & VPID_CAP_INVVPID_ALL) { 1075b093c6ceSWanpeng Li invvpid(INVVPID_ALL, vpid, 0); 1076b093c6ceSWanpeng Li break; 1077b093c6ceSWanpeng Li } 1078b093c6ceSWanpeng Li default: 1079b093c6ceSWanpeng Li printf("WARNING: invvpid is not supported\n"); 1080b093c6ceSWanpeng Li } 1081b093c6ceSWanpeng Li } 10826884af61SArthur Chunqi Li 10839d7eaa29SArthur Chunqi Li static void init_vmcs_ctrl(void) 10849d7eaa29SArthur Chunqi Li { 10859d7eaa29SArthur Chunqi Li /* 26.2 CHECKS ON VMX CONTROLS AND HOST-STATE AREA */ 10869d7eaa29SArthur Chunqi Li /* 26.2.1.1 */ 10879d7eaa29SArthur Chunqi Li vmcs_write(PIN_CONTROLS, ctrl_pin); 10889d7eaa29SArthur Chunqi Li /* Disable VMEXIT of IO instruction */ 10899d7eaa29SArthur Chunqi Li vmcs_write(CPU_EXEC_CTRL0, ctrl_cpu[0]); 10909d7eaa29SArthur Chunqi Li if (ctrl_cpu_rev[0].set & CPU_SECONDARY) { 10916884af61SArthur Chunqi Li ctrl_cpu[1] = (ctrl_cpu[1] | ctrl_cpu_rev[1].set) & 10926884af61SArthur Chunqi Li ctrl_cpu_rev[1].clr; 10939d7eaa29SArthur Chunqi Li vmcs_write(CPU_EXEC_CTRL1, ctrl_cpu[1]); 10949d7eaa29SArthur Chunqi Li } 10959d7eaa29SArthur Chunqi Li vmcs_write(CR3_TARGET_COUNT, 0); 10969d7eaa29SArthur Chunqi Li vmcs_write(VPID, ++vpid_cnt); 10979d7eaa29SArthur Chunqi Li } 10989d7eaa29SArthur Chunqi Li 10999d7eaa29SArthur Chunqi Li static void init_vmcs_host(void) 11009d7eaa29SArthur Chunqi Li { 11019d7eaa29SArthur Chunqi Li /* 26.2 CHECKS ON VMX CONTROLS AND HOST-STATE AREA */ 11029d7eaa29SArthur Chunqi Li /* 26.2.1.2 */ 11039d7eaa29SArthur Chunqi Li vmcs_write(HOST_EFER, rdmsr(MSR_EFER)); 11049d7eaa29SArthur Chunqi Li 11059d7eaa29SArthur Chunqi Li /* 26.2.1.3 */ 11069d7eaa29SArthur Chunqi Li vmcs_write(ENT_CONTROLS, ctrl_enter); 11079d7eaa29SArthur Chunqi Li vmcs_write(EXI_CONTROLS, ctrl_exit); 11089d7eaa29SArthur Chunqi Li 11099d7eaa29SArthur Chunqi Li /* 26.2.2 */ 11109d7eaa29SArthur Chunqi Li vmcs_write(HOST_CR0, read_cr0()); 11119d7eaa29SArthur Chunqi Li vmcs_write(HOST_CR3, read_cr3()); 11129d7eaa29SArthur Chunqi Li vmcs_write(HOST_CR4, read_cr4()); 11139d7eaa29SArthur Chunqi Li vmcs_write(HOST_SYSENTER_EIP, (u64)(&entry_sysenter)); 111469d8fe0eSPaolo Bonzini vmcs_write(HOST_SYSENTER_CS, KERNEL_CS); 11159d7eaa29SArthur Chunqi Li 11169d7eaa29SArthur Chunqi Li /* 26.2.3 */ 111769d8fe0eSPaolo Bonzini vmcs_write(HOST_SEL_CS, KERNEL_CS); 111869d8fe0eSPaolo Bonzini vmcs_write(HOST_SEL_SS, KERNEL_DS); 111969d8fe0eSPaolo Bonzini vmcs_write(HOST_SEL_DS, KERNEL_DS); 112069d8fe0eSPaolo Bonzini vmcs_write(HOST_SEL_ES, KERNEL_DS); 112169d8fe0eSPaolo Bonzini vmcs_write(HOST_SEL_FS, KERNEL_DS); 112269d8fe0eSPaolo Bonzini vmcs_write(HOST_SEL_GS, KERNEL_DS); 112369d8fe0eSPaolo Bonzini vmcs_write(HOST_SEL_TR, TSS_MAIN); 1124337166aaSJan Kiszka vmcs_write(HOST_BASE_TR, tss_descr.base); 1125337166aaSJan Kiszka vmcs_write(HOST_BASE_GDTR, gdt64_desc.base); 1126337166aaSJan Kiszka vmcs_write(HOST_BASE_IDTR, idt_descr.base); 11279d7eaa29SArthur Chunqi Li vmcs_write(HOST_BASE_FS, 0); 11289d7eaa29SArthur Chunqi Li vmcs_write(HOST_BASE_GS, 0); 11299d7eaa29SArthur Chunqi Li 11309d7eaa29SArthur Chunqi Li /* Set other vmcs area */ 11319d7eaa29SArthur Chunqi Li vmcs_write(PF_ERROR_MASK, 0); 11329d7eaa29SArthur Chunqi Li vmcs_write(PF_ERROR_MATCH, 0); 11339d7eaa29SArthur Chunqi Li vmcs_write(VMCS_LINK_PTR, ~0ul); 11349d7eaa29SArthur Chunqi Li vmcs_write(VMCS_LINK_PTR_HI, ~0ul); 11359d7eaa29SArthur Chunqi Li vmcs_write(HOST_RIP, (u64)(&vmx_return)); 11369d7eaa29SArthur Chunqi Li } 11379d7eaa29SArthur Chunqi Li 11389d7eaa29SArthur Chunqi Li static void init_vmcs_guest(void) 11399d7eaa29SArthur Chunqi Li { 11409d7eaa29SArthur Chunqi Li /* 26.3 CHECKING AND LOADING GUEST STATE */ 11419d7eaa29SArthur Chunqi Li ulong guest_cr0, guest_cr4, guest_cr3; 11429d7eaa29SArthur Chunqi Li /* 26.3.1.1 */ 11439d7eaa29SArthur Chunqi Li guest_cr0 = read_cr0(); 11449d7eaa29SArthur Chunqi Li guest_cr4 = read_cr4(); 11459d7eaa29SArthur Chunqi Li guest_cr3 = read_cr3(); 11469d7eaa29SArthur Chunqi Li if (ctrl_enter & ENT_GUEST_64) { 11479d7eaa29SArthur Chunqi Li guest_cr0 |= X86_CR0_PG; 11489d7eaa29SArthur Chunqi Li guest_cr4 |= X86_CR4_PAE; 11499d7eaa29SArthur Chunqi Li } 11509d7eaa29SArthur Chunqi Li if ((ctrl_enter & ENT_GUEST_64) == 0) 11519d7eaa29SArthur Chunqi Li guest_cr4 &= (~X86_CR4_PCIDE); 11529d7eaa29SArthur Chunqi Li if (guest_cr0 & X86_CR0_PG) 11539d7eaa29SArthur Chunqi Li guest_cr0 |= X86_CR0_PE; 11549d7eaa29SArthur Chunqi Li vmcs_write(GUEST_CR0, guest_cr0); 11559d7eaa29SArthur Chunqi Li vmcs_write(GUEST_CR3, guest_cr3); 11569d7eaa29SArthur Chunqi Li vmcs_write(GUEST_CR4, guest_cr4); 115769d8fe0eSPaolo Bonzini vmcs_write(GUEST_SYSENTER_CS, KERNEL_CS); 11589d7eaa29SArthur Chunqi Li vmcs_write(GUEST_SYSENTER_ESP, 11599d7eaa29SArthur Chunqi Li (u64)(guest_syscall_stack + PAGE_SIZE - 1)); 11609d7eaa29SArthur Chunqi Li vmcs_write(GUEST_SYSENTER_EIP, (u64)(&entry_sysenter)); 11619d7eaa29SArthur Chunqi Li vmcs_write(GUEST_DR7, 0); 11629d7eaa29SArthur Chunqi Li vmcs_write(GUEST_EFER, rdmsr(MSR_EFER)); 11639d7eaa29SArthur Chunqi Li 11649d7eaa29SArthur Chunqi Li /* 26.3.1.2 */ 116569d8fe0eSPaolo Bonzini vmcs_write(GUEST_SEL_CS, KERNEL_CS); 116669d8fe0eSPaolo Bonzini vmcs_write(GUEST_SEL_SS, KERNEL_DS); 116769d8fe0eSPaolo Bonzini vmcs_write(GUEST_SEL_DS, KERNEL_DS); 116869d8fe0eSPaolo Bonzini vmcs_write(GUEST_SEL_ES, KERNEL_DS); 116969d8fe0eSPaolo Bonzini vmcs_write(GUEST_SEL_FS, KERNEL_DS); 117069d8fe0eSPaolo Bonzini vmcs_write(GUEST_SEL_GS, KERNEL_DS); 117169d8fe0eSPaolo Bonzini vmcs_write(GUEST_SEL_TR, TSS_MAIN); 11729d7eaa29SArthur Chunqi Li vmcs_write(GUEST_SEL_LDTR, 0); 11739d7eaa29SArthur Chunqi Li 11749d7eaa29SArthur Chunqi Li vmcs_write(GUEST_BASE_CS, 0); 11759d7eaa29SArthur Chunqi Li vmcs_write(GUEST_BASE_ES, 0); 11769d7eaa29SArthur Chunqi Li vmcs_write(GUEST_BASE_SS, 0); 11779d7eaa29SArthur Chunqi Li vmcs_write(GUEST_BASE_DS, 0); 11789d7eaa29SArthur Chunqi Li vmcs_write(GUEST_BASE_FS, 0); 11799d7eaa29SArthur Chunqi Li vmcs_write(GUEST_BASE_GS, 0); 1180337166aaSJan Kiszka vmcs_write(GUEST_BASE_TR, tss_descr.base); 11819d7eaa29SArthur Chunqi Li vmcs_write(GUEST_BASE_LDTR, 0); 11829d7eaa29SArthur Chunqi Li 11839d7eaa29SArthur Chunqi Li vmcs_write(GUEST_LIMIT_CS, 0xFFFFFFFF); 11849d7eaa29SArthur Chunqi Li vmcs_write(GUEST_LIMIT_DS, 0xFFFFFFFF); 11859d7eaa29SArthur Chunqi Li vmcs_write(GUEST_LIMIT_ES, 0xFFFFFFFF); 11869d7eaa29SArthur Chunqi Li vmcs_write(GUEST_LIMIT_SS, 0xFFFFFFFF); 11879d7eaa29SArthur Chunqi Li vmcs_write(GUEST_LIMIT_FS, 0xFFFFFFFF); 11889d7eaa29SArthur Chunqi Li vmcs_write(GUEST_LIMIT_GS, 0xFFFFFFFF); 11899d7eaa29SArthur Chunqi Li vmcs_write(GUEST_LIMIT_LDTR, 0xffff); 1190337166aaSJan Kiszka vmcs_write(GUEST_LIMIT_TR, tss_descr.limit); 11919d7eaa29SArthur Chunqi Li 11929d7eaa29SArthur Chunqi Li vmcs_write(GUEST_AR_CS, 0xa09b); 11939d7eaa29SArthur Chunqi Li vmcs_write(GUEST_AR_DS, 0xc093); 11949d7eaa29SArthur Chunqi Li vmcs_write(GUEST_AR_ES, 0xc093); 11959d7eaa29SArthur Chunqi Li vmcs_write(GUEST_AR_FS, 0xc093); 11969d7eaa29SArthur Chunqi Li vmcs_write(GUEST_AR_GS, 0xc093); 11979d7eaa29SArthur Chunqi Li vmcs_write(GUEST_AR_SS, 0xc093); 11989d7eaa29SArthur Chunqi Li vmcs_write(GUEST_AR_LDTR, 0x82); 11999d7eaa29SArthur Chunqi Li vmcs_write(GUEST_AR_TR, 0x8b); 12009d7eaa29SArthur Chunqi Li 12019d7eaa29SArthur Chunqi Li /* 26.3.1.3 */ 1202337166aaSJan Kiszka vmcs_write(GUEST_BASE_GDTR, gdt64_desc.base); 1203337166aaSJan Kiszka vmcs_write(GUEST_BASE_IDTR, idt_descr.base); 1204337166aaSJan Kiszka vmcs_write(GUEST_LIMIT_GDTR, gdt64_desc.limit); 1205337166aaSJan Kiszka vmcs_write(GUEST_LIMIT_IDTR, idt_descr.limit); 12069d7eaa29SArthur Chunqi Li 12079d7eaa29SArthur Chunqi Li /* 26.3.1.4 */ 12089d7eaa29SArthur Chunqi Li vmcs_write(GUEST_RIP, (u64)(&guest_entry)); 12099d7eaa29SArthur Chunqi Li vmcs_write(GUEST_RSP, (u64)(guest_stack + PAGE_SIZE - 1)); 12109d7eaa29SArthur Chunqi Li vmcs_write(GUEST_RFLAGS, 0x2); 12119d7eaa29SArthur Chunqi Li 12129d7eaa29SArthur Chunqi Li /* 26.3.1.5 */ 121317ba0dd0SJan Kiszka vmcs_write(GUEST_ACTV_STATE, ACTV_ACTIVE); 12149d7eaa29SArthur Chunqi Li vmcs_write(GUEST_INTR_STATE, 0); 12159d7eaa29SArthur Chunqi Li } 12169d7eaa29SArthur Chunqi Li 12179d7eaa29SArthur Chunqi Li static int init_vmcs(struct vmcs **vmcs) 12189d7eaa29SArthur Chunqi Li { 12199d7eaa29SArthur Chunqi Li *vmcs = alloc_page(); 12206c0ba6e7SLiran Alon (*vmcs)->hdr.revision_id = basic.revision; 12219d7eaa29SArthur Chunqi Li /* vmclear first to init vmcs */ 12229d7eaa29SArthur Chunqi Li if (vmcs_clear(*vmcs)) { 12239d7eaa29SArthur Chunqi Li printf("%s : vmcs_clear error\n", __func__); 12249d7eaa29SArthur Chunqi Li return 1; 12259d7eaa29SArthur Chunqi Li } 12269d7eaa29SArthur Chunqi Li 12279d7eaa29SArthur Chunqi Li if (make_vmcs_current(*vmcs)) { 12289d7eaa29SArthur Chunqi Li printf("%s : make_vmcs_current error\n", __func__); 12299d7eaa29SArthur Chunqi Li return 1; 12309d7eaa29SArthur Chunqi Li } 12319d7eaa29SArthur Chunqi Li 12329d7eaa29SArthur Chunqi Li /* All settings to pin/exit/enter/cpu 12339d7eaa29SArthur Chunqi Li control fields should be placed here */ 12349d7eaa29SArthur Chunqi Li ctrl_pin |= PIN_EXTINT | PIN_NMI | PIN_VIRT_NMI; 12359d7eaa29SArthur Chunqi Li ctrl_exit = EXI_LOAD_EFER | EXI_HOST_64; 12369d7eaa29SArthur Chunqi Li ctrl_enter = (ENT_LOAD_EFER | ENT_GUEST_64); 12379d7eaa29SArthur Chunqi Li /* DIsable IO instruction VMEXIT now */ 12389d7eaa29SArthur Chunqi Li ctrl_cpu[0] &= (~(CPU_IO | CPU_IO_BITMAP)); 12399d7eaa29SArthur Chunqi Li ctrl_cpu[1] = 0; 12409d7eaa29SArthur Chunqi Li 12419d7eaa29SArthur Chunqi Li ctrl_pin = (ctrl_pin | ctrl_pin_rev.set) & ctrl_pin_rev.clr; 12429d7eaa29SArthur Chunqi Li ctrl_enter = (ctrl_enter | ctrl_enter_rev.set) & ctrl_enter_rev.clr; 12439d7eaa29SArthur Chunqi Li ctrl_exit = (ctrl_exit | ctrl_exit_rev.set) & ctrl_exit_rev.clr; 12449d7eaa29SArthur Chunqi Li ctrl_cpu[0] = (ctrl_cpu[0] | ctrl_cpu_rev[0].set) & ctrl_cpu_rev[0].clr; 12459d7eaa29SArthur Chunqi Li 12469d7eaa29SArthur Chunqi Li init_vmcs_ctrl(); 12479d7eaa29SArthur Chunqi Li init_vmcs_host(); 12489d7eaa29SArthur Chunqi Li init_vmcs_guest(); 12499d7eaa29SArthur Chunqi Li return 0; 12509d7eaa29SArthur Chunqi Li } 12519d7eaa29SArthur Chunqi Li 1252883f3fccSLiran Alon void enable_vmx(void) 1253883f3fccSLiran Alon { 1254883f3fccSLiran Alon bool vmx_enabled = 1255883f3fccSLiran Alon rdmsr(MSR_IA32_FEATURE_CONTROL) & 1256883f3fccSLiran Alon FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX; 1257883f3fccSLiran Alon 1258883f3fccSLiran Alon if (!vmx_enabled) { 1259883f3fccSLiran Alon wrmsr(MSR_IA32_FEATURE_CONTROL, 1260883f3fccSLiran Alon FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX | 1261883f3fccSLiran Alon FEATURE_CONTROL_LOCKED); 1262883f3fccSLiran Alon } 1263883f3fccSLiran Alon } 1264883f3fccSLiran Alon 1265e836e27cSLiran Alon static void init_vmx_caps(void) 12669d7eaa29SArthur Chunqi Li { 12679d7eaa29SArthur Chunqi Li basic.val = rdmsr(MSR_IA32_VMX_BASIC); 12689d7eaa29SArthur Chunqi Li ctrl_pin_rev.val = rdmsr(basic.ctrl ? MSR_IA32_VMX_TRUE_PIN 12699d7eaa29SArthur Chunqi Li : MSR_IA32_VMX_PINBASED_CTLS); 12709d7eaa29SArthur Chunqi Li ctrl_exit_rev.val = rdmsr(basic.ctrl ? MSR_IA32_VMX_TRUE_EXIT 12719d7eaa29SArthur Chunqi Li : MSR_IA32_VMX_EXIT_CTLS); 12729d7eaa29SArthur Chunqi Li ctrl_enter_rev.val = rdmsr(basic.ctrl ? MSR_IA32_VMX_TRUE_ENTRY 12739d7eaa29SArthur Chunqi Li : MSR_IA32_VMX_ENTRY_CTLS); 12749d7eaa29SArthur Chunqi Li ctrl_cpu_rev[0].val = rdmsr(basic.ctrl ? MSR_IA32_VMX_TRUE_PROC 12759d7eaa29SArthur Chunqi Li : MSR_IA32_VMX_PROCBASED_CTLS); 12766884af61SArthur Chunqi Li if ((ctrl_cpu_rev[0].clr & CPU_SECONDARY) != 0) 12779d7eaa29SArthur Chunqi Li ctrl_cpu_rev[1].val = rdmsr(MSR_IA32_VMX_PROCBASED_CTLS2); 12786884af61SArthur Chunqi Li else 12796884af61SArthur Chunqi Li ctrl_cpu_rev[1].val = 0; 12806884af61SArthur Chunqi Li if ((ctrl_cpu_rev[1].clr & (CPU_EPT | CPU_VPID)) != 0) 12819d7eaa29SArthur Chunqi Li ept_vpid.val = rdmsr(MSR_IA32_VMX_EPT_VPID_CAP); 12826884af61SArthur Chunqi Li else 12836884af61SArthur Chunqi Li ept_vpid.val = 0; 1284e836e27cSLiran Alon } 1285e836e27cSLiran Alon 12864f18f5deSLiran Alon void init_vmx(u64 *vmxon_region) 1287e836e27cSLiran Alon { 1288e836e27cSLiran Alon ulong fix_cr0_set, fix_cr0_clr; 1289e836e27cSLiran Alon ulong fix_cr4_set, fix_cr4_clr; 1290e836e27cSLiran Alon 1291e836e27cSLiran Alon fix_cr0_set = rdmsr(MSR_IA32_VMX_CR0_FIXED0); 1292e836e27cSLiran Alon fix_cr0_clr = rdmsr(MSR_IA32_VMX_CR0_FIXED1); 1293e836e27cSLiran Alon fix_cr4_set = rdmsr(MSR_IA32_VMX_CR4_FIXED0); 1294e836e27cSLiran Alon fix_cr4_clr = rdmsr(MSR_IA32_VMX_CR4_FIXED1); 1295e836e27cSLiran Alon 12969d7eaa29SArthur Chunqi Li write_cr0((read_cr0() & fix_cr0_clr) | fix_cr0_set); 12979d7eaa29SArthur Chunqi Li write_cr4((read_cr4() & fix_cr4_clr) | fix_cr4_set | X86_CR4_VMXE); 12989d7eaa29SArthur Chunqi Li 12999d7eaa29SArthur Chunqi Li *vmxon_region = basic.revision; 130093f10d6fSLiran Alon } 13019d7eaa29SArthur Chunqi Li 130293f10d6fSLiran Alon static void alloc_bsp_vmx_pages(void) 130393f10d6fSLiran Alon { 1304c937d495SLiran Alon bsp_vmxon_region = alloc_page(); 13059d7eaa29SArthur Chunqi Li guest_stack = alloc_page(); 13069d7eaa29SArthur Chunqi Li guest_syscall_stack = alloc_page(); 130793f10d6fSLiran Alon vmcs_root = alloc_page(); 130893f10d6fSLiran Alon } 130993f10d6fSLiran Alon 131093f10d6fSLiran Alon static void init_bsp_vmx(void) 131193f10d6fSLiran Alon { 131293f10d6fSLiran Alon init_vmx_caps(); 131393f10d6fSLiran Alon alloc_bsp_vmx_pages(); 1314c937d495SLiran Alon init_vmx(bsp_vmxon_region); 13159d7eaa29SArthur Chunqi Li } 13169d7eaa29SArthur Chunqi Li 1317e3f363c4SJan Kiszka static void do_vmxon_off(void *data) 13189d7eaa29SArthur Chunqi Li { 13193b127446SJan Kiszka vmx_on(); 13203b127446SJan Kiszka vmx_off(); 132103f37ef2SPaolo Bonzini } 13223b127446SJan Kiszka 1323e3f363c4SJan Kiszka static void do_write_feature_control(void *data) 13243b127446SJan Kiszka { 13253b127446SJan Kiszka wrmsr(MSR_IA32_FEATURE_CONTROL, 0); 132603f37ef2SPaolo Bonzini } 13273b127446SJan Kiszka 13283b127446SJan Kiszka static int test_vmx_feature_control(void) 13293b127446SJan Kiszka { 13303b127446SJan Kiszka u64 ia32_feature_control; 13313b127446SJan Kiszka bool vmx_enabled; 13324e38e9dfSLiran Alon bool feature_control_locked; 13333b127446SJan Kiszka 13343b127446SJan Kiszka ia32_feature_control = rdmsr(MSR_IA32_FEATURE_CONTROL); 13354e38e9dfSLiran Alon vmx_enabled = 13364e38e9dfSLiran Alon ia32_feature_control & FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX; 13374e38e9dfSLiran Alon feature_control_locked = 13384e38e9dfSLiran Alon ia32_feature_control & FEATURE_CONTROL_LOCKED; 13394e38e9dfSLiran Alon 13404e38e9dfSLiran Alon if (vmx_enabled && feature_control_locked) { 13413b127446SJan Kiszka printf("VMX enabled and locked by BIOS\n"); 13423b127446SJan Kiszka return 0; 13434e38e9dfSLiran Alon } else if (feature_control_locked) { 13443b127446SJan Kiszka printf("ERROR: VMX locked out by BIOS!?\n"); 13453b127446SJan Kiszka return 1; 13463b127446SJan Kiszka } 13473b127446SJan Kiszka 13483b127446SJan Kiszka wrmsr(MSR_IA32_FEATURE_CONTROL, 0); 1349*a299895bSThomas Huth report(test_for_exception(GP_VECTOR, &do_vmxon_off, NULL), 1350*a299895bSThomas Huth "test vmxon with FEATURE_CONTROL cleared"); 13513b127446SJan Kiszka 13524e38e9dfSLiran Alon wrmsr(MSR_IA32_FEATURE_CONTROL, FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX); 1353*a299895bSThomas Huth report(test_for_exception(GP_VECTOR, &do_vmxon_off, NULL), 1354*a299895bSThomas Huth "test vmxon without FEATURE_CONTROL lock"); 13553b127446SJan Kiszka 13564e38e9dfSLiran Alon wrmsr(MSR_IA32_FEATURE_CONTROL, 13574e38e9dfSLiran Alon FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX | 13584e38e9dfSLiran Alon FEATURE_CONTROL_LOCKED); 13594e38e9dfSLiran Alon 13604e38e9dfSLiran Alon ia32_feature_control = rdmsr(MSR_IA32_FEATURE_CONTROL); 13614e38e9dfSLiran Alon vmx_enabled = 13624e38e9dfSLiran Alon ia32_feature_control & FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX; 1363*a299895bSThomas Huth report(vmx_enabled, "test enable VMX in FEATURE_CONTROL"); 13643b127446SJan Kiszka 1365*a299895bSThomas Huth report(test_for_exception(GP_VECTOR, &do_write_feature_control, NULL), 1366*a299895bSThomas Huth "test FEATURE_CONTROL lock bit"); 13673b127446SJan Kiszka 13683b127446SJan Kiszka return !vmx_enabled; 13699d7eaa29SArthur Chunqi Li } 13709d7eaa29SArthur Chunqi Li 13719d7eaa29SArthur Chunqi Li static int test_vmxon(void) 13729d7eaa29SArthur Chunqi Li { 1373ce21d809SBandan Das int ret, ret1; 1374c937d495SLiran Alon u64 *vmxon_region; 1375e2cf1c9dSEduardo Habkost int width = cpuid_maxphyaddr(); 13769d7eaa29SArthur Chunqi Li 1377ce21d809SBandan Das /* Unaligned page access */ 1378c937d495SLiran Alon vmxon_region = (u64 *)((intptr_t)bsp_vmxon_region + 1); 1379c937d495SLiran Alon ret1 = _vmx_on(vmxon_region); 1380*a299895bSThomas Huth report(ret1, "test vmxon with unaligned vmxon region"); 1381ce21d809SBandan Das if (!ret1) { 1382ce21d809SBandan Das ret = 1; 1383ce21d809SBandan Das goto out; 1384ce21d809SBandan Das } 1385ce21d809SBandan Das 1386ce21d809SBandan Das /* gpa bits beyond physical address width are set*/ 1387c937d495SLiran Alon vmxon_region = (u64 *)((intptr_t)bsp_vmxon_region | ((u64)1 << (width+1))); 1388c937d495SLiran Alon ret1 = _vmx_on(vmxon_region); 1389*a299895bSThomas Huth report(ret1, "test vmxon with bits set beyond physical address width"); 1390ce21d809SBandan Das if (!ret1) { 1391ce21d809SBandan Das ret = 1; 1392ce21d809SBandan Das goto out; 1393ce21d809SBandan Das } 1394ce21d809SBandan Das 1395ce21d809SBandan Das /* invalid revision indentifier */ 1396c937d495SLiran Alon *bsp_vmxon_region = 0xba9da9; 1397ce21d809SBandan Das ret1 = vmx_on(); 1398*a299895bSThomas Huth report(ret1, "test vmxon with invalid revision identifier"); 1399ce21d809SBandan Das if (!ret1) { 1400ce21d809SBandan Das ret = 1; 1401ce21d809SBandan Das goto out; 1402ce21d809SBandan Das } 1403ce21d809SBandan Das 1404ce21d809SBandan Das /* and finally a valid region */ 1405c937d495SLiran Alon *bsp_vmxon_region = basic.revision; 14069d7eaa29SArthur Chunqi Li ret = vmx_on(); 1407*a299895bSThomas Huth report(!ret, "test vmxon with valid vmxon region"); 1408ce21d809SBandan Das 1409ce21d809SBandan Das out: 14109d7eaa29SArthur Chunqi Li return ret; 14119d7eaa29SArthur Chunqi Li } 14129d7eaa29SArthur Chunqi Li 14139d7eaa29SArthur Chunqi Li static void test_vmptrld(void) 14149d7eaa29SArthur Chunqi Li { 1415daeec979SBandan Das struct vmcs *vmcs, *tmp_root; 1416e2cf1c9dSEduardo Habkost int width = cpuid_maxphyaddr(); 14179d7eaa29SArthur Chunqi Li 14189d7eaa29SArthur Chunqi Li vmcs = alloc_page(); 14196c0ba6e7SLiran Alon vmcs->hdr.revision_id = basic.revision; 1420daeec979SBandan Das 1421daeec979SBandan Das /* Unaligned page access */ 1422daeec979SBandan Das tmp_root = (struct vmcs *)((intptr_t)vmcs + 1); 1423*a299895bSThomas Huth report(make_vmcs_current(tmp_root) == 1, 1424*a299895bSThomas Huth "test vmptrld with unaligned vmcs"); 1425daeec979SBandan Das 1426daeec979SBandan Das /* gpa bits beyond physical address width are set*/ 1427daeec979SBandan Das tmp_root = (struct vmcs *)((intptr_t)vmcs | 1428daeec979SBandan Das ((u64)1 << (width+1))); 1429*a299895bSThomas Huth report(make_vmcs_current(tmp_root) == 1, 1430*a299895bSThomas Huth "test vmptrld with vmcs address bits set beyond physical address width"); 1431daeec979SBandan Das 1432daeec979SBandan Das /* Pass VMXON region */ 14331c90aec0SJim Mattson assert(!vmcs_clear(vmcs)); 14341c90aec0SJim Mattson assert(!make_vmcs_current(vmcs)); 1435c937d495SLiran Alon tmp_root = (struct vmcs *)bsp_vmxon_region; 1436*a299895bSThomas Huth report(make_vmcs_current(tmp_root) == 1, 1437*a299895bSThomas Huth "test vmptrld with vmxon region"); 1438*a299895bSThomas Huth report(vmcs_read(VMX_INST_ERROR) == VMXERR_VMPTRLD_VMXON_POINTER, 1439*a299895bSThomas Huth "test vmptrld with vmxon region vm-instruction error"); 1440daeec979SBandan Das 1441*a299895bSThomas Huth report(make_vmcs_current(vmcs) == 0, 1442*a299895bSThomas Huth "test vmptrld with valid vmcs region"); 14439d7eaa29SArthur Chunqi Li } 14449d7eaa29SArthur Chunqi Li 14459d7eaa29SArthur Chunqi Li static void test_vmptrst(void) 14469d7eaa29SArthur Chunqi Li { 14479d7eaa29SArthur Chunqi Li int ret; 14489d7eaa29SArthur Chunqi Li struct vmcs *vmcs1, *vmcs2; 14499d7eaa29SArthur Chunqi Li 14509d7eaa29SArthur Chunqi Li vmcs1 = alloc_page(); 14519d7eaa29SArthur Chunqi Li init_vmcs(&vmcs1); 14529d7eaa29SArthur Chunqi Li ret = vmcs_save(&vmcs2); 1453*a299895bSThomas Huth report((!ret) && (vmcs1 == vmcs2), "test vmptrst"); 14549d7eaa29SArthur Chunqi Li } 14559d7eaa29SArthur Chunqi Li 145669c8d31cSJan Kiszka struct vmx_ctl_msr { 145769c8d31cSJan Kiszka const char *name; 145869c8d31cSJan Kiszka u32 index, true_index; 145969c8d31cSJan Kiszka u32 default1; 146069c8d31cSJan Kiszka } vmx_ctl_msr[] = { 146169c8d31cSJan Kiszka { "MSR_IA32_VMX_PINBASED_CTLS", MSR_IA32_VMX_PINBASED_CTLS, 146269c8d31cSJan Kiszka MSR_IA32_VMX_TRUE_PIN, 0x16 }, 146369c8d31cSJan Kiszka { "MSR_IA32_VMX_PROCBASED_CTLS", MSR_IA32_VMX_PROCBASED_CTLS, 146469c8d31cSJan Kiszka MSR_IA32_VMX_TRUE_PROC, 0x401e172 }, 146569c8d31cSJan Kiszka { "MSR_IA32_VMX_PROCBASED_CTLS2", MSR_IA32_VMX_PROCBASED_CTLS2, 146669c8d31cSJan Kiszka MSR_IA32_VMX_PROCBASED_CTLS2, 0 }, 146769c8d31cSJan Kiszka { "MSR_IA32_VMX_EXIT_CTLS", MSR_IA32_VMX_EXIT_CTLS, 146869c8d31cSJan Kiszka MSR_IA32_VMX_TRUE_EXIT, 0x36dff }, 146969c8d31cSJan Kiszka { "MSR_IA32_VMX_ENTRY_CTLS", MSR_IA32_VMX_ENTRY_CTLS, 147069c8d31cSJan Kiszka MSR_IA32_VMX_TRUE_ENTRY, 0x11ff }, 147169c8d31cSJan Kiszka }; 147269c8d31cSJan Kiszka 147369c8d31cSJan Kiszka static void test_vmx_caps(void) 147469c8d31cSJan Kiszka { 147569c8d31cSJan Kiszka u64 val, default1, fixed0, fixed1; 147669c8d31cSJan Kiszka union vmx_ctrl_msr ctrl, true_ctrl; 147769c8d31cSJan Kiszka unsigned int n; 147869c8d31cSJan Kiszka bool ok; 147969c8d31cSJan Kiszka 148069c8d31cSJan Kiszka printf("\nTest suite: VMX capability reporting\n"); 148169c8d31cSJan Kiszka 1482*a299895bSThomas Huth report((basic.revision & (1ul << 31)) == 0 && 148369c8d31cSJan Kiszka basic.size > 0 && basic.size <= 4096 && 148469c8d31cSJan Kiszka (basic.type == 0 || basic.type == 6) && 1485*a299895bSThomas Huth basic.reserved1 == 0 && basic.reserved2 == 0, 1486*a299895bSThomas Huth "MSR_IA32_VMX_BASIC"); 148769c8d31cSJan Kiszka 148869c8d31cSJan Kiszka val = rdmsr(MSR_IA32_VMX_MISC); 1489*a299895bSThomas Huth report((!(ctrl_cpu_rev[1].clr & CPU_URG) || val & (1ul << 5)) && 149069c8d31cSJan Kiszka ((val >> 16) & 0x1ff) <= 256 && 1491*a299895bSThomas Huth (val & 0x80007e00) == 0, 1492*a299895bSThomas Huth "MSR_IA32_VMX_MISC"); 149369c8d31cSJan Kiszka 149469c8d31cSJan Kiszka for (n = 0; n < ARRAY_SIZE(vmx_ctl_msr); n++) { 149569c8d31cSJan Kiszka ctrl.val = rdmsr(vmx_ctl_msr[n].index); 149669c8d31cSJan Kiszka default1 = vmx_ctl_msr[n].default1; 149769c8d31cSJan Kiszka ok = (ctrl.set & default1) == default1; 149869c8d31cSJan Kiszka ok = ok && (ctrl.set & ~ctrl.clr) == 0; 149969c8d31cSJan Kiszka if (ok && basic.ctrl) { 150069c8d31cSJan Kiszka true_ctrl.val = rdmsr(vmx_ctl_msr[n].true_index); 150169c8d31cSJan Kiszka ok = ctrl.clr == true_ctrl.clr; 150269c8d31cSJan Kiszka ok = ok && ctrl.set == (true_ctrl.set | default1); 150369c8d31cSJan Kiszka } 1504*a299895bSThomas Huth report(ok, "%s", vmx_ctl_msr[n].name); 150569c8d31cSJan Kiszka } 150669c8d31cSJan Kiszka 150769c8d31cSJan Kiszka fixed0 = rdmsr(MSR_IA32_VMX_CR0_FIXED0); 150869c8d31cSJan Kiszka fixed1 = rdmsr(MSR_IA32_VMX_CR0_FIXED1); 1509*a299895bSThomas Huth report(((fixed0 ^ fixed1) & ~fixed1) == 0, 1510*a299895bSThomas Huth "MSR_IA32_VMX_IA32_VMX_CR0_FIXED0/1"); 151169c8d31cSJan Kiszka 151269c8d31cSJan Kiszka fixed0 = rdmsr(MSR_IA32_VMX_CR4_FIXED0); 151369c8d31cSJan Kiszka fixed1 = rdmsr(MSR_IA32_VMX_CR4_FIXED1); 1514*a299895bSThomas Huth report(((fixed0 ^ fixed1) & ~fixed1) == 0, 1515*a299895bSThomas Huth "MSR_IA32_VMX_IA32_VMX_CR4_FIXED0/1"); 151669c8d31cSJan Kiszka 151769c8d31cSJan Kiszka val = rdmsr(MSR_IA32_VMX_VMCS_ENUM); 1518*a299895bSThomas Huth report((val & VMCS_FIELD_INDEX_MASK) >= 0x2a && 1519*a299895bSThomas Huth (val & 0xfffffffffffffc01Ull) == 0, 1520*a299895bSThomas Huth "MSR_IA32_VMX_VMCS_ENUM"); 152169c8d31cSJan Kiszka 152269c8d31cSJan Kiszka val = rdmsr(MSR_IA32_VMX_EPT_VPID_CAP); 1523*a299895bSThomas Huth report((val & 0xfffff07ef98cbebeUll) == 0, 1524*a299895bSThomas Huth "MSR_IA32_VMX_EPT_VPID_CAP"); 152569c8d31cSJan Kiszka } 152669c8d31cSJan Kiszka 15279d7eaa29SArthur Chunqi Li /* This function can only be called in guest */ 15289d7eaa29SArthur Chunqi Li static void __attribute__((__used__)) hypercall(u32 hypercall_no) 15299d7eaa29SArthur Chunqi Li { 15309d7eaa29SArthur Chunqi Li u64 val = 0; 15319d7eaa29SArthur Chunqi Li val = (hypercall_no & HYPERCALL_MASK) | HYPERCALL_BIT; 15329d7eaa29SArthur Chunqi Li hypercall_field = val; 15339d7eaa29SArthur Chunqi Li asm volatile("vmcall\n\t"); 15349d7eaa29SArthur Chunqi Li } 15359d7eaa29SArthur Chunqi Li 15367db17e21SThomas Huth static bool is_hypercall(void) 15379d7eaa29SArthur Chunqi Li { 15389d7eaa29SArthur Chunqi Li ulong reason, hyper_bit; 15399d7eaa29SArthur Chunqi Li 15409d7eaa29SArthur Chunqi Li reason = vmcs_read(EXI_REASON) & 0xff; 15419d7eaa29SArthur Chunqi Li hyper_bit = hypercall_field & HYPERCALL_BIT; 15429d7eaa29SArthur Chunqi Li if (reason == VMX_VMCALL && hyper_bit) 15439d7eaa29SArthur Chunqi Li return true; 15449d7eaa29SArthur Chunqi Li return false; 15459d7eaa29SArthur Chunqi Li } 15469d7eaa29SArthur Chunqi Li 15477db17e21SThomas Huth static int handle_hypercall(void) 15489d7eaa29SArthur Chunqi Li { 15499d7eaa29SArthur Chunqi Li ulong hypercall_no; 15509d7eaa29SArthur Chunqi Li 15519d7eaa29SArthur Chunqi Li hypercall_no = hypercall_field & HYPERCALL_MASK; 15529d7eaa29SArthur Chunqi Li hypercall_field = 0; 15539d7eaa29SArthur Chunqi Li switch (hypercall_no) { 15549d7eaa29SArthur Chunqi Li case HYPERCALL_VMEXIT: 15559d7eaa29SArthur Chunqi Li return VMX_TEST_VMEXIT; 1556794c67a9SPeter Feiner case HYPERCALL_VMABORT: 1557794c67a9SPeter Feiner return VMX_TEST_VMABORT; 1558794c67a9SPeter Feiner case HYPERCALL_VMSKIP: 1559794c67a9SPeter Feiner return VMX_TEST_VMSKIP; 15609d7eaa29SArthur Chunqi Li default: 1561b006d7ebSAndrew Jones printf("ERROR : Invalid hypercall number : %ld\n", hypercall_no); 15629d7eaa29SArthur Chunqi Li } 15639d7eaa29SArthur Chunqi Li return VMX_TEST_EXIT; 15649d7eaa29SArthur Chunqi Li } 15659d7eaa29SArthur Chunqi Li 1566794c67a9SPeter Feiner static void continue_abort(void) 1567794c67a9SPeter Feiner { 1568794c67a9SPeter Feiner assert(!in_guest); 1569794c67a9SPeter Feiner printf("Host was here when guest aborted:\n"); 1570794c67a9SPeter Feiner dump_stack(); 1571794c67a9SPeter Feiner longjmp(abort_target, 1); 1572794c67a9SPeter Feiner abort(); 1573794c67a9SPeter Feiner } 1574794c67a9SPeter Feiner 1575794c67a9SPeter Feiner void __abort_test(void) 1576794c67a9SPeter Feiner { 1577794c67a9SPeter Feiner if (in_guest) 1578794c67a9SPeter Feiner hypercall(HYPERCALL_VMABORT); 1579794c67a9SPeter Feiner else 1580794c67a9SPeter Feiner longjmp(abort_target, 1); 1581794c67a9SPeter Feiner abort(); 1582794c67a9SPeter Feiner } 1583794c67a9SPeter Feiner 1584794c67a9SPeter Feiner static void continue_skip(void) 1585794c67a9SPeter Feiner { 1586794c67a9SPeter Feiner assert(!in_guest); 1587794c67a9SPeter Feiner longjmp(abort_target, 1); 1588794c67a9SPeter Feiner abort(); 1589794c67a9SPeter Feiner } 1590794c67a9SPeter Feiner 1591794c67a9SPeter Feiner void test_skip(const char *msg) 1592794c67a9SPeter Feiner { 1593794c67a9SPeter Feiner printf("%s skipping test: %s\n", in_guest ? "Guest" : "Host", msg); 1594794c67a9SPeter Feiner if (in_guest) 1595794c67a9SPeter Feiner hypercall(HYPERCALL_VMABORT); 1596794c67a9SPeter Feiner else 1597794c67a9SPeter Feiner longjmp(abort_target, 1); 1598794c67a9SPeter Feiner abort(); 1599794c67a9SPeter Feiner } 1600794c67a9SPeter Feiner 16017db17e21SThomas Huth static int exit_handler(void) 16029d7eaa29SArthur Chunqi Li { 16039d7eaa29SArthur Chunqi Li int ret; 16049d7eaa29SArthur Chunqi Li 16059d7eaa29SArthur Chunqi Li current->exits++; 16061d9284d0SArthur Chunqi Li regs.rflags = vmcs_read(GUEST_RFLAGS); 16079d7eaa29SArthur Chunqi Li if (is_hypercall()) 16089d7eaa29SArthur Chunqi Li ret = handle_hypercall(); 16099d7eaa29SArthur Chunqi Li else 16109d7eaa29SArthur Chunqi Li ret = current->exit_handler(); 16111d9284d0SArthur Chunqi Li vmcs_write(GUEST_RFLAGS, regs.rflags); 16123b50efe3SPeter Feiner 16139d7eaa29SArthur Chunqi Li return ret; 16149d7eaa29SArthur Chunqi Li } 16153b50efe3SPeter Feiner 16163b50efe3SPeter Feiner /* 16173b50efe3SPeter Feiner * Called if vmlaunch or vmresume fails. 16183b50efe3SPeter Feiner * @early - failure due to "VMX controls and host-state area" (26.2) 16193b50efe3SPeter Feiner * @vmlaunch - was this a vmlaunch or vmresume 16203b50efe3SPeter Feiner * @rflags - host rflags 16213b50efe3SPeter Feiner */ 16223b50efe3SPeter Feiner static int 16233b50efe3SPeter Feiner entry_failure_handler(struct vmentry_failure *failure) 16243b50efe3SPeter Feiner { 16253b50efe3SPeter Feiner if (current->entry_failure_handler) 16263b50efe3SPeter Feiner return current->entry_failure_handler(failure); 16273b50efe3SPeter Feiner else 16283b50efe3SPeter Feiner return VMX_TEST_EXIT; 16299d7eaa29SArthur Chunqi Li } 16309d7eaa29SArthur Chunqi Li 1631c76ddf06SPeter Feiner /* 163274f7e9b2SKrish Sadhukhan * Tries to enter the guest. Returns true if entry succeeded. Otherwise, 1633c76ddf06SPeter Feiner * populates @failure. 1634c76ddf06SPeter Feiner */ 163574f7e9b2SKrish Sadhukhan static void vmx_enter_guest(struct vmentry_failure *failure) 16369d7eaa29SArthur Chunqi Li { 1637c76ddf06SPeter Feiner failure->early = 0; 16384e809db5SPeter Feiner 1639794c67a9SPeter Feiner in_guest = 1; 16409d7eaa29SArthur Chunqi Li asm volatile ( 1641897d8365SPeter Feiner "mov %[HOST_RSP], %%rdi\n\t" 1642897d8365SPeter Feiner "vmwrite %%rsp, %%rdi\n\t" 16439d7eaa29SArthur Chunqi Li LOAD_GPR_C 164444417388SPaolo Bonzini "cmpb $0, %[launched]\n\t" 16459d7eaa29SArthur Chunqi Li "jne 1f\n\t" 16469d7eaa29SArthur Chunqi Li "vmlaunch\n\t" 16479d7eaa29SArthur Chunqi Li "jmp 2f\n\t" 16489d7eaa29SArthur Chunqi Li "1: " 16499d7eaa29SArthur Chunqi Li "vmresume\n\t" 16509d7eaa29SArthur Chunqi Li "2: " 1651f37cf4e2SPeter Feiner SAVE_GPR_C 1652897d8365SPeter Feiner "pushf\n\t" 1653897d8365SPeter Feiner "pop %%rdi\n\t" 1654c76ddf06SPeter Feiner "mov %%rdi, %[failure_flags]\n\t" 1655e5adf54bSPaolo Bonzini "movl $1, %[failure_early]\n\t" 1656f37cf4e2SPeter Feiner "jmp 3f\n\t" 16579d7eaa29SArthur Chunqi Li "vmx_return:\n\t" 16589d7eaa29SArthur Chunqi Li SAVE_GPR_C 1659f37cf4e2SPeter Feiner "3: \n\t" 1660c76ddf06SPeter Feiner : [failure_early]"+m"(failure->early), 1661c76ddf06SPeter Feiner [failure_flags]"=m"(failure->flags) 1662897d8365SPeter Feiner : [launched]"m"(launched), [HOST_RSP]"i"(HOST_RSP) 1663897d8365SPeter Feiner : "rdi", "memory", "cc" 16649d7eaa29SArthur Chunqi Li ); 1665794c67a9SPeter Feiner in_guest = 0; 16663b50efe3SPeter Feiner 1667c76ddf06SPeter Feiner failure->vmlaunch = !launched; 1668c76ddf06SPeter Feiner failure->instr = launched ? "vmresume" : "vmlaunch"; 1669c76ddf06SPeter Feiner } 1670c76ddf06SPeter Feiner 16717db17e21SThomas Huth static int vmx_run(void) 1672c76ddf06SPeter Feiner { 1673c76ddf06SPeter Feiner while (1) { 1674c76ddf06SPeter Feiner u32 ret; 1675c76ddf06SPeter Feiner bool entered; 1676c76ddf06SPeter Feiner struct vmentry_failure failure; 1677c76ddf06SPeter Feiner 167874f7e9b2SKrish Sadhukhan vmx_enter_guest(&failure); 167974f7e9b2SKrish Sadhukhan entered = !failure.early && 168074f7e9b2SKrish Sadhukhan !(vmcs_read(EXI_REASON) & VMX_ENTRY_FAILURE); 16813b50efe3SPeter Feiner 16823b50efe3SPeter Feiner if (entered) { 16833b50efe3SPeter Feiner /* 16843b50efe3SPeter Feiner * VMCS isn't in "launched" state if there's been any 16853b50efe3SPeter Feiner * entry failure (early or otherwise). 16863b50efe3SPeter Feiner */ 16879d7eaa29SArthur Chunqi Li launched = 1; 16889d7eaa29SArthur Chunqi Li ret = exit_handler(); 16893b50efe3SPeter Feiner } else { 16903b50efe3SPeter Feiner ret = entry_failure_handler(&failure); 16919d7eaa29SArthur Chunqi Li } 16923b50efe3SPeter Feiner 16939d7eaa29SArthur Chunqi Li switch (ret) { 16943b50efe3SPeter Feiner case VMX_TEST_RESUME: 16953b50efe3SPeter Feiner continue; 16969d7eaa29SArthur Chunqi Li case VMX_TEST_VMEXIT: 1697794c67a9SPeter Feiner guest_finished = 1; 16989d7eaa29SArthur Chunqi Li return 0; 16993b50efe3SPeter Feiner case VMX_TEST_EXIT: 17009d7eaa29SArthur Chunqi Li break; 17019d7eaa29SArthur Chunqi Li default: 17023b50efe3SPeter Feiner printf("ERROR : Invalid %s_handler return val %d.\n", 17033b50efe3SPeter Feiner entered ? "exit" : "entry_failure", 17043b50efe3SPeter Feiner ret); 17059d7eaa29SArthur Chunqi Li break; 17069d7eaa29SArthur Chunqi Li } 17073b50efe3SPeter Feiner 17083b50efe3SPeter Feiner if (entered) 17093b50efe3SPeter Feiner print_vmexit_info(); 17103b50efe3SPeter Feiner else 17113b50efe3SPeter Feiner print_vmentry_failure_info(&failure); 17123b50efe3SPeter Feiner abort(); 17133b50efe3SPeter Feiner } 17149d7eaa29SArthur Chunqi Li } 17159d7eaa29SArthur Chunqi Li 1716794c67a9SPeter Feiner static void run_teardown_step(struct test_teardown_step *step) 1717794c67a9SPeter Feiner { 1718794c67a9SPeter Feiner step->func(step->data); 1719794c67a9SPeter Feiner } 1720794c67a9SPeter Feiner 17219d7eaa29SArthur Chunqi Li static int test_run(struct vmx_test *test) 17229d7eaa29SArthur Chunqi Li { 1723794c67a9SPeter Feiner int r; 1724794c67a9SPeter Feiner 1725794c67a9SPeter Feiner /* Validate V2 interface. */ 1726794c67a9SPeter Feiner if (test->v2) { 1727794c67a9SPeter Feiner int ret = 0; 1728794c67a9SPeter Feiner if (test->init || test->guest_main || test->exit_handler || 1729794c67a9SPeter Feiner test->syscall_handler) { 1730*a299895bSThomas Huth report(0, "V2 test cannot specify V1 callbacks."); 1731794c67a9SPeter Feiner ret = 1; 1732794c67a9SPeter Feiner } 1733794c67a9SPeter Feiner if (ret) 1734794c67a9SPeter Feiner return ret; 1735794c67a9SPeter Feiner } 1736794c67a9SPeter Feiner 17379d7eaa29SArthur Chunqi Li if (test->name == NULL) 17389d7eaa29SArthur Chunqi Li test->name = "(no name)"; 17399d7eaa29SArthur Chunqi Li if (vmx_on()) { 17409d7eaa29SArthur Chunqi Li printf("%s : vmxon failed.\n", __func__); 17419d7eaa29SArthur Chunqi Li return 1; 17429d7eaa29SArthur Chunqi Li } 1743794c67a9SPeter Feiner 17449d7eaa29SArthur Chunqi Li init_vmcs(&(test->vmcs)); 17459d7eaa29SArthur Chunqi Li /* Directly call test->init is ok here, init_vmcs has done 17469d7eaa29SArthur Chunqi Li vmcs init, vmclear and vmptrld*/ 1747c592c151SJan Kiszka if (test->init && test->init(test->vmcs) != VMX_TEST_START) 1748a0e30e71SPaolo Bonzini goto out; 1749794c67a9SPeter Feiner teardown_count = 0; 1750794c67a9SPeter Feiner v2_guest_main = NULL; 17519d7eaa29SArthur Chunqi Li test->exits = 0; 17529d7eaa29SArthur Chunqi Li current = test; 17539d7eaa29SArthur Chunqi Li regs = test->guest_regs; 17549d7eaa29SArthur Chunqi Li vmcs_write(GUEST_RFLAGS, regs.rflags | 0x2); 17559d7eaa29SArthur Chunqi Li launched = 0; 1756794c67a9SPeter Feiner guest_finished = 0; 17579d7eaa29SArthur Chunqi Li printf("\nTest suite: %s\n", test->name); 1758794c67a9SPeter Feiner 1759794c67a9SPeter Feiner r = setjmp(abort_target); 1760794c67a9SPeter Feiner if (r) { 1761794c67a9SPeter Feiner assert(!in_guest); 1762794c67a9SPeter Feiner goto out; 1763794c67a9SPeter Feiner } 1764794c67a9SPeter Feiner 1765794c67a9SPeter Feiner 1766794c67a9SPeter Feiner if (test->v2) 1767794c67a9SPeter Feiner test->v2(); 1768794c67a9SPeter Feiner else 17699d7eaa29SArthur Chunqi Li vmx_run(); 1770794c67a9SPeter Feiner 1771794c67a9SPeter Feiner while (teardown_count > 0) 1772794c67a9SPeter Feiner run_teardown_step(&teardown_steps[--teardown_count]); 1773794c67a9SPeter Feiner 1774794c67a9SPeter Feiner if (launched && !guest_finished) 1775*a299895bSThomas Huth report(0, "Guest didn't run to completion."); 1776794c67a9SPeter Feiner 1777a0e30e71SPaolo Bonzini out: 17789d7eaa29SArthur Chunqi Li if (vmx_off()) { 17799d7eaa29SArthur Chunqi Li printf("%s : vmxoff failed.\n", __func__); 17809d7eaa29SArthur Chunqi Li return 1; 17819d7eaa29SArthur Chunqi Li } 17829d7eaa29SArthur Chunqi Li return 0; 17839d7eaa29SArthur Chunqi Li } 17849d7eaa29SArthur Chunqi Li 1785794c67a9SPeter Feiner /* 1786794c67a9SPeter Feiner * Add a teardown step. Executed after the test's main function returns. 1787794c67a9SPeter Feiner * Teardown steps executed in reverse order. 1788794c67a9SPeter Feiner */ 1789794c67a9SPeter Feiner void test_add_teardown(test_teardown_func func, void *data) 1790794c67a9SPeter Feiner { 1791794c67a9SPeter Feiner struct test_teardown_step *step; 1792794c67a9SPeter Feiner 1793794c67a9SPeter Feiner TEST_ASSERT_MSG(teardown_count < MAX_TEST_TEARDOWN_STEPS, 1794794c67a9SPeter Feiner "There are already %d teardown steps.", 1795794c67a9SPeter Feiner teardown_count); 1796794c67a9SPeter Feiner step = &teardown_steps[teardown_count++]; 1797794c67a9SPeter Feiner step->func = func; 1798794c67a9SPeter Feiner step->data = data; 1799794c67a9SPeter Feiner } 1800794c67a9SPeter Feiner 1801794c67a9SPeter Feiner /* 1802794c67a9SPeter Feiner * Set the target of the first enter_guest call. Can only be called once per 1803794c67a9SPeter Feiner * test. Must be called before first enter_guest call. 1804794c67a9SPeter Feiner */ 1805794c67a9SPeter Feiner void test_set_guest(test_guest_func func) 1806794c67a9SPeter Feiner { 1807794c67a9SPeter Feiner assert(current->v2); 1808794c67a9SPeter Feiner TEST_ASSERT_MSG(!v2_guest_main, "Already set guest func."); 1809794c67a9SPeter Feiner v2_guest_main = func; 1810794c67a9SPeter Feiner } 1811794c67a9SPeter Feiner 18124ce739beSMarc Orr static void check_for_guest_termination(void) 18134ce739beSMarc Orr { 18144ce739beSMarc Orr if (is_hypercall()) { 18154ce739beSMarc Orr int ret; 18164ce739beSMarc Orr 18174ce739beSMarc Orr ret = handle_hypercall(); 18184ce739beSMarc Orr switch (ret) { 18194ce739beSMarc Orr case VMX_TEST_VMEXIT: 18204ce739beSMarc Orr guest_finished = 1; 18214ce739beSMarc Orr break; 18224ce739beSMarc Orr case VMX_TEST_VMABORT: 18234ce739beSMarc Orr continue_abort(); 18244ce739beSMarc Orr break; 18254ce739beSMarc Orr case VMX_TEST_VMSKIP: 18264ce739beSMarc Orr continue_skip(); 18274ce739beSMarc Orr break; 18284ce739beSMarc Orr default: 18294ce739beSMarc Orr printf("ERROR : Invalid handle_hypercall return %d.\n", 18304ce739beSMarc Orr ret); 18314ce739beSMarc Orr abort(); 18324ce739beSMarc Orr } 18334ce739beSMarc Orr } 18344ce739beSMarc Orr } 18354ce739beSMarc Orr 183674f7e9b2SKrish Sadhukhan #define ABORT_ON_EARLY_VMENTRY_FAIL 0x1 183774f7e9b2SKrish Sadhukhan #define ABORT_ON_INVALID_GUEST_STATE 0x2 183874f7e9b2SKrish Sadhukhan 1839794c67a9SPeter Feiner /* 1840794c67a9SPeter Feiner * Enters the guest (or launches it for the first time). Error to call once the 184174f7e9b2SKrish Sadhukhan * guest has returned (i.e., run past the end of its guest() function). 1842794c67a9SPeter Feiner */ 184374f7e9b2SKrish Sadhukhan static void __enter_guest(u8 abort_flag, struct vmentry_failure *failure) 1844794c67a9SPeter Feiner { 1845794c67a9SPeter Feiner TEST_ASSERT_MSG(v2_guest_main, 1846794c67a9SPeter Feiner "Never called test_set_guest_func!"); 1847794c67a9SPeter Feiner 1848794c67a9SPeter Feiner TEST_ASSERT_MSG(!guest_finished, 1849794c67a9SPeter Feiner "Called enter_guest() after guest returned."); 1850794c67a9SPeter Feiner 185174f7e9b2SKrish Sadhukhan vmx_enter_guest(failure); 185274f7e9b2SKrish Sadhukhan if ((abort_flag & ABORT_ON_EARLY_VMENTRY_FAIL && failure->early) || 185374f7e9b2SKrish Sadhukhan (abort_flag & ABORT_ON_INVALID_GUEST_STATE && 185474f7e9b2SKrish Sadhukhan vmcs_read(EXI_REASON) & VMX_ENTRY_FAILURE)) { 185574f7e9b2SKrish Sadhukhan 185674f7e9b2SKrish Sadhukhan print_vmentry_failure_info(failure); 1857794c67a9SPeter Feiner abort(); 1858794c67a9SPeter Feiner } 1859794c67a9SPeter Feiner 1860e9554497SMarc Orr if (!failure->early && !(vmcs_read(EXI_REASON) & VMX_ENTRY_FAILURE)) { 1861794c67a9SPeter Feiner launched = 1; 18624ce739beSMarc Orr check_for_guest_termination(); 18634ce739beSMarc Orr } 186474f7e9b2SKrish Sadhukhan } 1865794c67a9SPeter Feiner 18664ce739beSMarc Orr void enter_guest_with_bad_controls(void) 18674ce739beSMarc Orr { 186874f7e9b2SKrish Sadhukhan struct vmentry_failure failure = {0}; 18694ce739beSMarc Orr 18704ce739beSMarc Orr TEST_ASSERT_MSG(v2_guest_main, 18714ce739beSMarc Orr "Never called test_set_guest_func!"); 18724ce739beSMarc Orr 18734ce739beSMarc Orr TEST_ASSERT_MSG(!guest_finished, 18744ce739beSMarc Orr "Called enter_guest() after guest returned."); 18754ce739beSMarc Orr 187674f7e9b2SKrish Sadhukhan __enter_guest(ABORT_ON_INVALID_GUEST_STATE, &failure); 1877*a299895bSThomas Huth report(failure.early, "failure occurred early"); 1878*a299895bSThomas Huth report((failure.flags & VMX_ENTRY_FLAGS) == X86_EFLAGS_ZF, 1879*a299895bSThomas Huth "FLAGS set correctly"); 1880*a299895bSThomas Huth report(vmcs_read(VMX_INST_ERROR) == VMXERR_ENTRY_INVALID_CONTROL_FIELD, 1881*a299895bSThomas Huth "VM-Inst Error # is %d (VM entry with invalid control field(s))", 18824ce739beSMarc Orr VMXERR_ENTRY_INVALID_CONTROL_FIELD); 18834ce739beSMarc Orr 18844ce739beSMarc Orr /* 18854ce739beSMarc Orr * This if statement shouldn't fire, as the entire premise of this 18864ce739beSMarc Orr * function is that VM entry is expected to fail, rather than succeed 18874ce739beSMarc Orr * and execute to termination. However, if the VM entry does 18884ce739beSMarc Orr * unexpectedly succeed, it's nice to check whether the guest has 18894ce739beSMarc Orr * terminated, to reduce the number of error messages. 18904ce739beSMarc Orr */ 189174f7e9b2SKrish Sadhukhan if (!failure.early) 18924ce739beSMarc Orr check_for_guest_termination(); 1893794c67a9SPeter Feiner } 1894794c67a9SPeter Feiner 189574f7e9b2SKrish Sadhukhan void enter_guest(void) 189674f7e9b2SKrish Sadhukhan { 189774f7e9b2SKrish Sadhukhan struct vmentry_failure failure = {0}; 189874f7e9b2SKrish Sadhukhan 189974f7e9b2SKrish Sadhukhan __enter_guest(ABORT_ON_EARLY_VMENTRY_FAIL | 190074f7e9b2SKrish Sadhukhan ABORT_ON_INVALID_GUEST_STATE, &failure); 190174f7e9b2SKrish Sadhukhan } 190274f7e9b2SKrish Sadhukhan 190374f7e9b2SKrish Sadhukhan void enter_guest_with_invalid_guest_state(void) 190474f7e9b2SKrish Sadhukhan { 190574f7e9b2SKrish Sadhukhan struct vmentry_failure failure = {0}; 190674f7e9b2SKrish Sadhukhan 190774f7e9b2SKrish Sadhukhan __enter_guest(ABORT_ON_EARLY_VMENTRY_FAIL, &failure); 190874f7e9b2SKrish Sadhukhan } 190974f7e9b2SKrish Sadhukhan 19103ee34093SArthur Chunqi Li extern struct vmx_test vmx_tests[]; 19119d7eaa29SArthur Chunqi Li 1912875b97b3SPeter Feiner static bool 1913875b97b3SPeter Feiner test_wanted(const char *name, const char *filters[], int filter_count) 19148029cac7SPeter Feiner { 1915875b97b3SPeter Feiner int i; 1916875b97b3SPeter Feiner bool positive = false; 1917875b97b3SPeter Feiner bool match = false; 1918875b97b3SPeter Feiner char clean_name[strlen(name) + 1]; 1919875b97b3SPeter Feiner char *c; 19208029cac7SPeter Feiner const char *n; 19218029cac7SPeter Feiner 1922875b97b3SPeter Feiner /* Replace spaces with underscores. */ 1923875b97b3SPeter Feiner n = name; 1924875b97b3SPeter Feiner c = &clean_name[0]; 1925875b97b3SPeter Feiner do *c++ = (*n == ' ') ? '_' : *n; 1926875b97b3SPeter Feiner while (*n++); 1927875b97b3SPeter Feiner 1928875b97b3SPeter Feiner for (i = 0; i < filter_count; i++) { 1929875b97b3SPeter Feiner const char *filter = filters[i]; 1930875b97b3SPeter Feiner 1931875b97b3SPeter Feiner if (filter[0] == '-') { 1932875b97b3SPeter Feiner if (simple_glob(clean_name, filter + 1)) 1933875b97b3SPeter Feiner return false; 1934875b97b3SPeter Feiner } else { 1935875b97b3SPeter Feiner positive = true; 1936875b97b3SPeter Feiner match |= simple_glob(clean_name, filter); 1937875b97b3SPeter Feiner } 1938875b97b3SPeter Feiner } 1939875b97b3SPeter Feiner 1940875b97b3SPeter Feiner if (!positive || match) { 1941875b97b3SPeter Feiner matched++; 1942875b97b3SPeter Feiner return true; 1943875b97b3SPeter Feiner } else { 19448029cac7SPeter Feiner return false; 19458029cac7SPeter Feiner } 19468029cac7SPeter Feiner } 19478029cac7SPeter Feiner 1948875b97b3SPeter Feiner int main(int argc, const char *argv[]) 19499d7eaa29SArthur Chunqi Li { 19503ee34093SArthur Chunqi Li int i = 0; 19519d7eaa29SArthur Chunqi Li 19529d7eaa29SArthur Chunqi Li setup_vm(); 1953706cad23SArbel Moshe smp_init(); 19543ee34093SArthur Chunqi Li hypercall_field = 0; 19559d7eaa29SArthur Chunqi Li 19567371c622SVitaly Kuznetsov /* We want xAPIC mode to test MMIO passthrough from L1 (us) to L2. */ 19577371c622SVitaly Kuznetsov reset_apic(); 19587371c622SVitaly Kuznetsov 1959c04259ffSDavid Matlack argv++; 1960c04259ffSDavid Matlack argc--; 1961c04259ffSDavid Matlack 1962badc98caSKrish Sadhukhan if (!this_cpu_has(X86_FEATURE_VMX)) { 19633b127446SJan Kiszka printf("WARNING: vmx not supported, add '-cpu host'\n"); 19649d7eaa29SArthur Chunqi Li goto exit; 19659d7eaa29SArthur Chunqi Li } 196693f10d6fSLiran Alon init_bsp_vmx(); 1967c04259ffSDavid Matlack if (test_wanted("test_vmx_feature_control", argv, argc)) { 1968c04259ffSDavid Matlack /* Sets MSR_IA32_FEATURE_CONTROL to 0x5 */ 19693b127446SJan Kiszka if (test_vmx_feature_control() != 0) 19703b127446SJan Kiszka goto exit; 1971c04259ffSDavid Matlack } else { 1972883f3fccSLiran Alon enable_vmx(); 1973c04259ffSDavid Matlack } 1974c04259ffSDavid Matlack 1975c04259ffSDavid Matlack if (test_wanted("test_vmxon", argv, argc)) { 1976c04259ffSDavid Matlack /* Enables VMX */ 19779d7eaa29SArthur Chunqi Li if (test_vmxon() != 0) 19789d7eaa29SArthur Chunqi Li goto exit; 1979c04259ffSDavid Matlack } else { 1980c04259ffSDavid Matlack if (vmx_on()) { 1981*a299895bSThomas Huth report(0, "vmxon"); 1982c04259ffSDavid Matlack goto exit; 1983c04259ffSDavid Matlack } 1984c04259ffSDavid Matlack } 1985c04259ffSDavid Matlack 1986c04259ffSDavid Matlack if (test_wanted("test_vmptrld", argv, argc)) 19879d7eaa29SArthur Chunqi Li test_vmptrld(); 1988c04259ffSDavid Matlack if (test_wanted("test_vmclear", argv, argc)) 19899d7eaa29SArthur Chunqi Li test_vmclear(); 1990c04259ffSDavid Matlack if (test_wanted("test_vmptrst", argv, argc)) 19919d7eaa29SArthur Chunqi Li test_vmptrst(); 1992ecd5b431SDavid Matlack if (test_wanted("test_vmwrite_vmread", argv, argc)) 1993ecd5b431SDavid Matlack test_vmwrite_vmread(); 199459161cfaSJim Mattson if (test_wanted("test_vmcs_high", argv, argc)) 199559161cfaSJim Mattson test_vmcs_high(); 19966b72cf76SDavid Matlack if (test_wanted("test_vmcs_lifecycle", argv, argc)) 19976b72cf76SDavid Matlack test_vmcs_lifecycle(); 1998c04259ffSDavid Matlack if (test_wanted("test_vmx_caps", argv, argc)) 199969c8d31cSJan Kiszka test_vmx_caps(); 20009d7eaa29SArthur Chunqi Li 200134439b1aSPeter Feiner /* Balance vmxon from test_vmxon. */ 200234439b1aSPeter Feiner vmx_off(); 200334439b1aSPeter Feiner 200434439b1aSPeter Feiner for (; vmx_tests[i].name != NULL; i++) { 2005c04259ffSDavid Matlack if (!test_wanted(vmx_tests[i].name, argv, argc)) 20068029cac7SPeter Feiner continue; 20079d7eaa29SArthur Chunqi Li if (test_run(&vmx_tests[i])) 20089d7eaa29SArthur Chunqi Li goto exit; 20098029cac7SPeter Feiner } 20108029cac7SPeter Feiner 20118029cac7SPeter Feiner if (!matched) 2012*a299895bSThomas Huth report(matched, "command line didn't match any tests!"); 20139d7eaa29SArthur Chunqi Li 20149d7eaa29SArthur Chunqi Li exit: 2015f3cdd159SJan Kiszka return report_summary(); 20169d7eaa29SArthur Chunqi Li } 2017