xref: /kvm-unit-tests/x86/svm.c (revision 1500aca4ab7c15aeb6ad10cb9dd96455a024d150)
17d36db35SAvi Kivity #include "svm.h"
27d36db35SAvi Kivity #include "libcflat.h"
37d36db35SAvi Kivity #include "processor.h"
4b46094b4SPaolo Bonzini #include "desc.h"
57d36db35SAvi Kivity #include "msr.h"
67d36db35SAvi Kivity #include "vm.h"
77d36db35SAvi Kivity #include "smp.h"
87d36db35SAvi Kivity #include "types.h"
95aca024eSPaolo Bonzini #include "alloc_page.h"
107d36db35SAvi Kivity 
118c6286f1STambe, William #define SVM_EXIT_MAX_DR_INTERCEPT 0x3f
128c6286f1STambe, William 
131535bf0fSJoerg Roedel /* for the nested page table*/
141535bf0fSJoerg Roedel u64 *pml4e;
151535bf0fSJoerg Roedel u64 *pdpe;
161535bf0fSJoerg Roedel u64 *pde[4];
171535bf0fSJoerg Roedel u64 *pte[2048];
18c0a4e715SPaolo Bonzini void *scratch_page;
191535bf0fSJoerg Roedel 
2021c23154SJoerg Roedel #define LATENCY_RUNS 1000000
2121c23154SJoerg Roedel 
2221c23154SJoerg Roedel u64 tsc_start;
2321c23154SJoerg Roedel u64 tsc_end;
2421c23154SJoerg Roedel 
2521c23154SJoerg Roedel u64 vmrun_sum, vmexit_sum;
26ef101219SRoedel, Joerg u64 vmsave_sum, vmload_sum;
27ef101219SRoedel, Joerg u64 stgi_sum, clgi_sum;
2821c23154SJoerg Roedel u64 latvmrun_max;
2921c23154SJoerg Roedel u64 latvmrun_min;
3021c23154SJoerg Roedel u64 latvmexit_max;
3121c23154SJoerg Roedel u64 latvmexit_min;
32ef101219SRoedel, Joerg u64 latvmload_max;
33ef101219SRoedel, Joerg u64 latvmload_min;
34ef101219SRoedel, Joerg u64 latvmsave_max;
35ef101219SRoedel, Joerg u64 latvmsave_min;
36ef101219SRoedel, Joerg u64 latstgi_max;
37ef101219SRoedel, Joerg u64 latstgi_min;
38ef101219SRoedel, Joerg u64 latclgi_max;
39ef101219SRoedel, Joerg u64 latclgi_min;
4021c23154SJoerg Roedel u64 runs;
4121c23154SJoerg Roedel 
423d46571bSPaolo Bonzini u8 *io_bitmap;
433d46571bSPaolo Bonzini u8 io_bitmap_area[16384];
443d46571bSPaolo Bonzini 
4506a8c023STambe, William #define MSR_BITMAP_SIZE 8192
4606a8c023STambe, William 
4706a8c023STambe, William u8 *msr_bitmap;
4806a8c023STambe, William u8 msr_bitmap_area[MSR_BITMAP_SIZE + PAGE_SIZE];
4906a8c023STambe, William 
501535bf0fSJoerg Roedel static bool npt_supported(void)
511535bf0fSJoerg Roedel {
52badc98caSKrish Sadhukhan 	return this_cpu_has(X86_FEATURE_NPT);
531535bf0fSJoerg Roedel }
541535bf0fSJoerg Roedel 
557d36db35SAvi Kivity static void setup_svm(void)
567d36db35SAvi Kivity {
577d36db35SAvi Kivity     void *hsave = alloc_page();
581535bf0fSJoerg Roedel     u64 *page, address;
591535bf0fSJoerg Roedel     int i,j;
607d36db35SAvi Kivity 
617d36db35SAvi Kivity     wrmsr(MSR_VM_HSAVE_PA, virt_to_phys(hsave));
627d36db35SAvi Kivity     wrmsr(MSR_EFER, rdmsr(MSR_EFER) | EFER_SVME);
638594b943SJoerg Roedel     wrmsr(MSR_EFER, rdmsr(MSR_EFER) | EFER_NX);
641535bf0fSJoerg Roedel 
65ea975120SJoerg Roedel     scratch_page = alloc_page();
66ea975120SJoerg Roedel 
673d46571bSPaolo Bonzini     io_bitmap = (void *) (((ulong)io_bitmap_area + 4095) & ~4095);
683d46571bSPaolo Bonzini 
6906a8c023STambe, William     msr_bitmap = (void *) ALIGN((ulong)msr_bitmap_area, PAGE_SIZE);
7006a8c023STambe, William 
711535bf0fSJoerg Roedel     if (!npt_supported())
721535bf0fSJoerg Roedel         return;
731535bf0fSJoerg Roedel 
741535bf0fSJoerg Roedel     printf("NPT detected - running all tests with NPT enabled\n");
751535bf0fSJoerg Roedel 
761535bf0fSJoerg Roedel     /*
771535bf0fSJoerg Roedel      * Nested paging supported - Build a nested page table
781535bf0fSJoerg Roedel      * Build the page-table bottom-up and map everything with 4k pages
791535bf0fSJoerg Roedel      * to get enough granularity for the NPT unit-tests.
801535bf0fSJoerg Roedel      */
811535bf0fSJoerg Roedel 
821535bf0fSJoerg Roedel     address = 0;
831535bf0fSJoerg Roedel 
841535bf0fSJoerg Roedel     /* PTE level */
851535bf0fSJoerg Roedel     for (i = 0; i < 2048; ++i) {
861535bf0fSJoerg Roedel         page = alloc_page();
871535bf0fSJoerg Roedel 
881535bf0fSJoerg Roedel         for (j = 0; j < 512; ++j, address += 4096)
891535bf0fSJoerg Roedel             page[j] = address | 0x067ULL;
901535bf0fSJoerg Roedel 
911535bf0fSJoerg Roedel         pte[i] = page;
921535bf0fSJoerg Roedel     }
931535bf0fSJoerg Roedel 
941535bf0fSJoerg Roedel     /* PDE level */
951535bf0fSJoerg Roedel     for (i = 0; i < 4; ++i) {
961535bf0fSJoerg Roedel         page = alloc_page();
971535bf0fSJoerg Roedel 
981535bf0fSJoerg Roedel         for (j = 0; j < 512; ++j)
9993b05099SPaolo Bonzini             page[j] = (u64)pte[(i * 512) + j] | 0x027ULL;
1001535bf0fSJoerg Roedel 
1011535bf0fSJoerg Roedel         pde[i] = page;
1021535bf0fSJoerg Roedel     }
1031535bf0fSJoerg Roedel 
1041535bf0fSJoerg Roedel     /* PDPe level */
1051535bf0fSJoerg Roedel     pdpe   = alloc_page();
1061535bf0fSJoerg Roedel     for (i = 0; i < 4; ++i)
1071535bf0fSJoerg Roedel        pdpe[i] = ((u64)(pde[i])) | 0x27;
1081535bf0fSJoerg Roedel 
1091535bf0fSJoerg Roedel     /* PML4e level */
1101535bf0fSJoerg Roedel     pml4e    = alloc_page();
1111535bf0fSJoerg Roedel     pml4e[0] = ((u64)pdpe) | 0x27;
1127d36db35SAvi Kivity }
1137d36db35SAvi Kivity 
114f6a2ca45SPaolo Bonzini static u64 *npt_get_pde(u64 address)
115f6a2ca45SPaolo Bonzini {
116f6a2ca45SPaolo Bonzini     int i1, i2;
117f6a2ca45SPaolo Bonzini 
118f6a2ca45SPaolo Bonzini     address >>= 21;
119f6a2ca45SPaolo Bonzini     i1 = (address >> 9) & 0x3;
120f6a2ca45SPaolo Bonzini     i2 = address & 0x1ff;
121f6a2ca45SPaolo Bonzini 
122f6a2ca45SPaolo Bonzini     return &pde[i1][i2];
123f6a2ca45SPaolo Bonzini }
124f6a2ca45SPaolo Bonzini 
125726a1dd7SPaolo Bonzini static u64 *npt_get_pte(u64 address)
1268594b943SJoerg Roedel {
1278594b943SJoerg Roedel     int i1, i2;
1288594b943SJoerg Roedel 
1298594b943SJoerg Roedel     address >>= 12;
1308594b943SJoerg Roedel     i1 = (address >> 9) & 0x7ff;
1318594b943SJoerg Roedel     i2 = address & 0x1ff;
1328594b943SJoerg Roedel 
1338594b943SJoerg Roedel     return &pte[i1][i2];
1348594b943SJoerg Roedel }
1358594b943SJoerg Roedel 
1367d36db35SAvi Kivity static void vmcb_set_seg(struct vmcb_seg *seg, u16 selector,
1377d36db35SAvi Kivity                          u64 base, u32 limit, u32 attr)
1387d36db35SAvi Kivity {
1397d36db35SAvi Kivity     seg->selector = selector;
1407d36db35SAvi Kivity     seg->attrib = attr;
1417d36db35SAvi Kivity     seg->limit = limit;
1427d36db35SAvi Kivity     seg->base = base;
1437d36db35SAvi Kivity }
1447d36db35SAvi Kivity 
1457d36db35SAvi Kivity static void vmcb_ident(struct vmcb *vmcb)
1467d36db35SAvi Kivity {
1477d36db35SAvi Kivity     u64 vmcb_phys = virt_to_phys(vmcb);
1487d36db35SAvi Kivity     struct vmcb_save_area *save = &vmcb->save;
1497d36db35SAvi Kivity     struct vmcb_control_area *ctrl = &vmcb->control;
1507d36db35SAvi Kivity     u32 data_seg_attr = 3 | SVM_SELECTOR_S_MASK | SVM_SELECTOR_P_MASK
1517d36db35SAvi Kivity         | SVM_SELECTOR_DB_MASK | SVM_SELECTOR_G_MASK;
1527d36db35SAvi Kivity     u32 code_seg_attr = 9 | SVM_SELECTOR_S_MASK | SVM_SELECTOR_P_MASK
1537d36db35SAvi Kivity         | SVM_SELECTOR_L_MASK | SVM_SELECTOR_G_MASK;
1547d36db35SAvi Kivity     struct descriptor_table_ptr desc_table_ptr;
1557d36db35SAvi Kivity 
1567d36db35SAvi Kivity     memset(vmcb, 0, sizeof(*vmcb));
1577d36db35SAvi Kivity     asm volatile ("vmsave" : : "a"(vmcb_phys) : "memory");
1587d36db35SAvi Kivity     vmcb_set_seg(&save->es, read_es(), 0, -1U, data_seg_attr);
1597d36db35SAvi Kivity     vmcb_set_seg(&save->cs, read_cs(), 0, -1U, code_seg_attr);
1607d36db35SAvi Kivity     vmcb_set_seg(&save->ss, read_ss(), 0, -1U, data_seg_attr);
1617d36db35SAvi Kivity     vmcb_set_seg(&save->ds, read_ds(), 0, -1U, data_seg_attr);
1627d36db35SAvi Kivity     sgdt(&desc_table_ptr);
1637d36db35SAvi Kivity     vmcb_set_seg(&save->gdtr, 0, desc_table_ptr.base, desc_table_ptr.limit, 0);
1647d36db35SAvi Kivity     sidt(&desc_table_ptr);
1657d36db35SAvi Kivity     vmcb_set_seg(&save->idtr, 0, desc_table_ptr.base, desc_table_ptr.limit, 0);
1667d36db35SAvi Kivity     ctrl->asid = 1;
1677d36db35SAvi Kivity     save->cpl = 0;
1687d36db35SAvi Kivity     save->efer = rdmsr(MSR_EFER);
1697d36db35SAvi Kivity     save->cr4 = read_cr4();
1707d36db35SAvi Kivity     save->cr3 = read_cr3();
1717d36db35SAvi Kivity     save->cr0 = read_cr0();
1727d36db35SAvi Kivity     save->dr7 = read_dr7();
1737d36db35SAvi Kivity     save->dr6 = read_dr6();
1747d36db35SAvi Kivity     save->cr2 = read_cr2();
1757d36db35SAvi Kivity     save->g_pat = rdmsr(MSR_IA32_CR_PAT);
1767d36db35SAvi Kivity     save->dbgctl = rdmsr(MSR_IA32_DEBUGCTLMSR);
1777d36db35SAvi Kivity     ctrl->intercept = (1ULL << INTERCEPT_VMRUN) | (1ULL << INTERCEPT_VMMCALL);
1783d46571bSPaolo Bonzini     ctrl->iopm_base_pa = virt_to_phys(io_bitmap);
17906a8c023STambe, William     ctrl->msrpm_base_pa = virt_to_phys(msr_bitmap);
1801535bf0fSJoerg Roedel 
1811535bf0fSJoerg Roedel     if (npt_supported()) {
1821535bf0fSJoerg Roedel         ctrl->nested_ctl = 1;
1831535bf0fSJoerg Roedel         ctrl->nested_cr3 = (u64)pml4e;
1841535bf0fSJoerg Roedel     }
1857d36db35SAvi Kivity }
1867d36db35SAvi Kivity 
1877d36db35SAvi Kivity struct test {
1887d36db35SAvi Kivity     const char *name;
1897d36db35SAvi Kivity     bool (*supported)(void);
1907d36db35SAvi Kivity     void (*prepare)(struct test *test);
1917d36db35SAvi Kivity     void (*guest_func)(struct test *test);
1927d36db35SAvi Kivity     bool (*finished)(struct test *test);
1937d36db35SAvi Kivity     bool (*succeeded)(struct test *test);
1947d36db35SAvi Kivity     struct vmcb *vmcb;
1957d36db35SAvi Kivity     int exits;
1967d36db35SAvi Kivity     ulong scratch;
1977d36db35SAvi Kivity };
1987d36db35SAvi Kivity 
199e0b6541cSPaolo Bonzini static inline void vmmcall(void)
200e0b6541cSPaolo Bonzini {
201e0b6541cSPaolo Bonzini     asm volatile ("vmmcall" : : : "memory");
202e0b6541cSPaolo Bonzini }
203e0b6541cSPaolo Bonzini 
2047d36db35SAvi Kivity static void test_thunk(struct test *test)
2057d36db35SAvi Kivity {
2067d36db35SAvi Kivity     test->guest_func(test);
207e0b6541cSPaolo Bonzini     vmmcall();
2087d36db35SAvi Kivity }
2097d36db35SAvi Kivity 
210a43baea0SPaolo Bonzini struct regs {
211a43baea0SPaolo Bonzini         u64 rax;
212bc0c0f49STambe, William         u64 rbx;
213a43baea0SPaolo Bonzini         u64 rcx;
214a43baea0SPaolo Bonzini         u64 rdx;
215a43baea0SPaolo Bonzini         u64 cr2;
216a43baea0SPaolo Bonzini         u64 rbp;
217a43baea0SPaolo Bonzini         u64 rsi;
218a43baea0SPaolo Bonzini         u64 rdi;
219a43baea0SPaolo Bonzini         u64 r8;
220a43baea0SPaolo Bonzini         u64 r9;
221a43baea0SPaolo Bonzini         u64 r10;
222a43baea0SPaolo Bonzini         u64 r11;
223a43baea0SPaolo Bonzini         u64 r12;
224a43baea0SPaolo Bonzini         u64 r13;
225a43baea0SPaolo Bonzini         u64 r14;
226a43baea0SPaolo Bonzini         u64 r15;
227a43baea0SPaolo Bonzini         u64 rflags;
228a43baea0SPaolo Bonzini };
229a43baea0SPaolo Bonzini 
230a43baea0SPaolo Bonzini struct regs regs;
231a43baea0SPaolo Bonzini 
232a43baea0SPaolo Bonzini // rax handled specially below
233a43baea0SPaolo Bonzini 
234a43baea0SPaolo Bonzini #define SAVE_GPR_C                              \
235a43baea0SPaolo Bonzini         "xchg %%rbx, regs+0x8\n\t"              \
236a43baea0SPaolo Bonzini         "xchg %%rcx, regs+0x10\n\t"             \
237a43baea0SPaolo Bonzini         "xchg %%rdx, regs+0x18\n\t"             \
238a43baea0SPaolo Bonzini         "xchg %%rbp, regs+0x28\n\t"             \
239a43baea0SPaolo Bonzini         "xchg %%rsi, regs+0x30\n\t"             \
240a43baea0SPaolo Bonzini         "xchg %%rdi, regs+0x38\n\t"             \
241a43baea0SPaolo Bonzini         "xchg %%r8, regs+0x40\n\t"              \
242a43baea0SPaolo Bonzini         "xchg %%r9, regs+0x48\n\t"              \
243a43baea0SPaolo Bonzini         "xchg %%r10, regs+0x50\n\t"             \
244a43baea0SPaolo Bonzini         "xchg %%r11, regs+0x58\n\t"             \
245a43baea0SPaolo Bonzini         "xchg %%r12, regs+0x60\n\t"             \
246a43baea0SPaolo Bonzini         "xchg %%r13, regs+0x68\n\t"             \
247a43baea0SPaolo Bonzini         "xchg %%r14, regs+0x70\n\t"             \
248a43baea0SPaolo Bonzini         "xchg %%r15, regs+0x78\n\t"
249a43baea0SPaolo Bonzini 
250a43baea0SPaolo Bonzini #define LOAD_GPR_C      SAVE_GPR_C
251a43baea0SPaolo Bonzini 
252a43ed2acSAndrew Jones static void test_run(struct test *test, struct vmcb *vmcb)
2537d36db35SAvi Kivity {
2547d36db35SAvi Kivity     u64 vmcb_phys = virt_to_phys(vmcb);
2557d36db35SAvi Kivity     u64 guest_stack[10000];
2567d36db35SAvi Kivity 
257*1500aca4SPaolo Bonzini     irq_disable();
2587d36db35SAvi Kivity     test->vmcb = vmcb;
2597d36db35SAvi Kivity     test->prepare(test);
2607d36db35SAvi Kivity     vmcb->save.rip = (ulong)test_thunk;
2617d36db35SAvi Kivity     vmcb->save.rsp = (ulong)(guest_stack + ARRAY_SIZE(guest_stack));
262a43baea0SPaolo Bonzini     regs.rdi = (ulong)test;
2637d36db35SAvi Kivity     do {
26421c23154SJoerg Roedel         tsc_start = rdtsc();
2657d36db35SAvi Kivity         asm volatile (
2667d36db35SAvi Kivity             "clgi \n\t"
2677d36db35SAvi Kivity             "vmload \n\t"
268a43baea0SPaolo Bonzini             "mov regs+0x80, %%r15\n\t"  // rflags
269a43baea0SPaolo Bonzini             "mov %%r15, 0x170(%0)\n\t"
270a43baea0SPaolo Bonzini             "mov regs, %%r15\n\t"       // rax
271a43baea0SPaolo Bonzini             "mov %%r15, 0x1f8(%0)\n\t"
272a43baea0SPaolo Bonzini             LOAD_GPR_C
273*1500aca4SPaolo Bonzini             "sti \n\t"		// only used if V_INTR_MASKING=1
2747d36db35SAvi Kivity             "vmrun \n\t"
275*1500aca4SPaolo Bonzini             "cli \n\t"
276a43baea0SPaolo Bonzini             SAVE_GPR_C
277a43baea0SPaolo Bonzini             "mov 0x170(%0), %%r15\n\t"  // rflags
278a43baea0SPaolo Bonzini             "mov %%r15, regs+0x80\n\t"
279a43baea0SPaolo Bonzini             "mov 0x1f8(%0), %%r15\n\t"  // rax
280a43baea0SPaolo Bonzini             "mov %%r15, regs\n\t"
2817d36db35SAvi Kivity             "vmsave \n\t"
2827d36db35SAvi Kivity             "stgi"
283a43baea0SPaolo Bonzini             : : "a"(vmcb_phys)
2847d36db35SAvi Kivity             : "rbx", "rcx", "rdx", "rsi",
2857d36db35SAvi Kivity               "r8", "r9", "r10", "r11" , "r12", "r13", "r14", "r15",
2867d36db35SAvi Kivity               "memory");
28721c23154SJoerg Roedel 	tsc_end = rdtsc();
2887d36db35SAvi Kivity         ++test->exits;
2897d36db35SAvi Kivity     } while (!test->finished(test));
290*1500aca4SPaolo Bonzini     irq_enable();
2917d36db35SAvi Kivity 
292a43ed2acSAndrew Jones     report("%s", test->succeeded(test), test->name);
2937d36db35SAvi Kivity }
2947d36db35SAvi Kivity 
295095274b4SPrasad Joshi static bool smp_supported(void)
296095274b4SPrasad Joshi {
297095274b4SPrasad Joshi 	return cpu_count() > 1;
298095274b4SPrasad Joshi }
299095274b4SPrasad Joshi 
3007d36db35SAvi Kivity static bool default_supported(void)
3017d36db35SAvi Kivity {
3027d36db35SAvi Kivity     return true;
3037d36db35SAvi Kivity }
3047d36db35SAvi Kivity 
3057d36db35SAvi Kivity static void default_prepare(struct test *test)
3067d36db35SAvi Kivity {
3077d36db35SAvi Kivity     vmcb_ident(test->vmcb);
3087d36db35SAvi Kivity }
3097d36db35SAvi Kivity 
3107d36db35SAvi Kivity static bool default_finished(struct test *test)
3117d36db35SAvi Kivity {
3127d36db35SAvi Kivity     return true; /* one vmexit */
3137d36db35SAvi Kivity }
3147d36db35SAvi Kivity 
3157d36db35SAvi Kivity static void null_test(struct test *test)
3167d36db35SAvi Kivity {
3177d36db35SAvi Kivity }
3187d36db35SAvi Kivity 
3197d36db35SAvi Kivity static bool null_check(struct test *test)
3207d36db35SAvi Kivity {
3217d36db35SAvi Kivity     return test->vmcb->control.exit_code == SVM_EXIT_VMMCALL;
3227d36db35SAvi Kivity }
3237d36db35SAvi Kivity 
3247d36db35SAvi Kivity static void prepare_no_vmrun_int(struct test *test)
3257d36db35SAvi Kivity {
3267d36db35SAvi Kivity     test->vmcb->control.intercept &= ~(1ULL << INTERCEPT_VMRUN);
3277d36db35SAvi Kivity }
3287d36db35SAvi Kivity 
3297d36db35SAvi Kivity static bool check_no_vmrun_int(struct test *test)
3307d36db35SAvi Kivity {
3317d36db35SAvi Kivity     return test->vmcb->control.exit_code == SVM_EXIT_ERR;
3327d36db35SAvi Kivity }
3337d36db35SAvi Kivity 
3347d36db35SAvi Kivity static void test_vmrun(struct test *test)
3357d36db35SAvi Kivity {
3367d36db35SAvi Kivity     asm volatile ("vmrun" : : "a"(virt_to_phys(test->vmcb)));
3377d36db35SAvi Kivity }
3387d36db35SAvi Kivity 
3397d36db35SAvi Kivity static bool check_vmrun(struct test *test)
3407d36db35SAvi Kivity {
3417d36db35SAvi Kivity     return test->vmcb->control.exit_code == SVM_EXIT_VMRUN;
3427d36db35SAvi Kivity }
3437d36db35SAvi Kivity 
3447d36db35SAvi Kivity static void prepare_cr3_intercept(struct test *test)
3457d36db35SAvi Kivity {
3467d36db35SAvi Kivity     default_prepare(test);
3477d36db35SAvi Kivity     test->vmcb->control.intercept_cr_read |= 1 << 3;
3487d36db35SAvi Kivity }
3497d36db35SAvi Kivity 
3507d36db35SAvi Kivity static void test_cr3_intercept(struct test *test)
3517d36db35SAvi Kivity {
3527d36db35SAvi Kivity     asm volatile ("mov %%cr3, %0" : "=r"(test->scratch) : : "memory");
3537d36db35SAvi Kivity }
3547d36db35SAvi Kivity 
3557d36db35SAvi Kivity static bool check_cr3_intercept(struct test *test)
3567d36db35SAvi Kivity {
3577d36db35SAvi Kivity     return test->vmcb->control.exit_code == SVM_EXIT_READ_CR3;
3587d36db35SAvi Kivity }
3597d36db35SAvi Kivity 
3607d36db35SAvi Kivity static bool check_cr3_nointercept(struct test *test)
3617d36db35SAvi Kivity {
3627d36db35SAvi Kivity     return null_check(test) && test->scratch == read_cr3();
3637d36db35SAvi Kivity }
3647d36db35SAvi Kivity 
3657d36db35SAvi Kivity static void corrupt_cr3_intercept_bypass(void *_test)
3667d36db35SAvi Kivity {
3677d36db35SAvi Kivity     struct test *test = _test;
3687d36db35SAvi Kivity     extern volatile u32 mmio_insn;
3697d36db35SAvi Kivity 
3707d36db35SAvi Kivity     while (!__sync_bool_compare_and_swap(&test->scratch, 1, 2))
3717d36db35SAvi Kivity         pause();
3727d36db35SAvi Kivity     pause();
3737d36db35SAvi Kivity     pause();
3747d36db35SAvi Kivity     pause();
3757d36db35SAvi Kivity     mmio_insn = 0x90d8200f;  // mov %cr3, %rax; nop
3767d36db35SAvi Kivity }
3777d36db35SAvi Kivity 
3787d36db35SAvi Kivity static void prepare_cr3_intercept_bypass(struct test *test)
3797d36db35SAvi Kivity {
3807d36db35SAvi Kivity     default_prepare(test);
3817d36db35SAvi Kivity     test->vmcb->control.intercept_cr_read |= 1 << 3;
3827d36db35SAvi Kivity     on_cpu_async(1, corrupt_cr3_intercept_bypass, test);
3837d36db35SAvi Kivity }
3847d36db35SAvi Kivity 
3857d36db35SAvi Kivity static void test_cr3_intercept_bypass(struct test *test)
3867d36db35SAvi Kivity {
3877d36db35SAvi Kivity     ulong a = 0xa0000;
3887d36db35SAvi Kivity 
3897d36db35SAvi Kivity     test->scratch = 1;
3907d36db35SAvi Kivity     while (test->scratch != 2)
3917d36db35SAvi Kivity         barrier();
3927d36db35SAvi Kivity 
3937d36db35SAvi Kivity     asm volatile ("mmio_insn: mov %0, (%0); nop"
3947d36db35SAvi Kivity                   : "+a"(a) : : "memory");
3957d36db35SAvi Kivity     test->scratch = a;
3967d36db35SAvi Kivity }
3977d36db35SAvi Kivity 
3988c6286f1STambe, William static void prepare_dr_intercept(struct test *test)
3998c6286f1STambe, William {
4008c6286f1STambe, William     default_prepare(test);
4018c6286f1STambe, William     test->vmcb->control.intercept_dr_read = 0xff;
4028c6286f1STambe, William     test->vmcb->control.intercept_dr_write = 0xff;
4038c6286f1STambe, William }
4048c6286f1STambe, William 
4058c6286f1STambe, William static void test_dr_intercept(struct test *test)
4068c6286f1STambe, William {
4078c6286f1STambe, William     unsigned int i, failcnt = 0;
4088c6286f1STambe, William 
4098c6286f1STambe, William     /* Loop testing debug register reads */
4108c6286f1STambe, William     for (i = 0; i < 8; i++) {
4118c6286f1STambe, William 
4128c6286f1STambe, William         switch (i) {
4138c6286f1STambe, William         case 0:
4148c6286f1STambe, William             asm volatile ("mov %%dr0, %0" : "=r"(test->scratch) : : "memory");
4158c6286f1STambe, William             break;
4168c6286f1STambe, William         case 1:
4178c6286f1STambe, William             asm volatile ("mov %%dr1, %0" : "=r"(test->scratch) : : "memory");
4188c6286f1STambe, William             break;
4198c6286f1STambe, William         case 2:
4208c6286f1STambe, William             asm volatile ("mov %%dr2, %0" : "=r"(test->scratch) : : "memory");
4218c6286f1STambe, William             break;
4228c6286f1STambe, William         case 3:
4238c6286f1STambe, William             asm volatile ("mov %%dr3, %0" : "=r"(test->scratch) : : "memory");
4248c6286f1STambe, William             break;
4258c6286f1STambe, William         case 4:
4268c6286f1STambe, William             asm volatile ("mov %%dr4, %0" : "=r"(test->scratch) : : "memory");
4278c6286f1STambe, William             break;
4288c6286f1STambe, William         case 5:
4298c6286f1STambe, William             asm volatile ("mov %%dr5, %0" : "=r"(test->scratch) : : "memory");
4308c6286f1STambe, William             break;
4318c6286f1STambe, William         case 6:
4328c6286f1STambe, William             asm volatile ("mov %%dr6, %0" : "=r"(test->scratch) : : "memory");
4338c6286f1STambe, William             break;
4348c6286f1STambe, William         case 7:
4358c6286f1STambe, William             asm volatile ("mov %%dr7, %0" : "=r"(test->scratch) : : "memory");
4368c6286f1STambe, William             break;
4378c6286f1STambe, William         }
4388c6286f1STambe, William 
4398c6286f1STambe, William         if (test->scratch != i) {
4408c6286f1STambe, William             report("dr%u read intercept", false, i);
4418c6286f1STambe, William             failcnt++;
4428c6286f1STambe, William         }
4438c6286f1STambe, William     }
4448c6286f1STambe, William 
4458c6286f1STambe, William     /* Loop testing debug register writes */
4468c6286f1STambe, William     for (i = 0; i < 8; i++) {
4478c6286f1STambe, William 
4488c6286f1STambe, William         switch (i) {
4498c6286f1STambe, William         case 0:
4508c6286f1STambe, William             asm volatile ("mov %0, %%dr0" : : "r"(test->scratch) : "memory");
4518c6286f1STambe, William             break;
4528c6286f1STambe, William         case 1:
4538c6286f1STambe, William             asm volatile ("mov %0, %%dr1" : : "r"(test->scratch) : "memory");
4548c6286f1STambe, William             break;
4558c6286f1STambe, William         case 2:
4568c6286f1STambe, William             asm volatile ("mov %0, %%dr2" : : "r"(test->scratch) : "memory");
4578c6286f1STambe, William             break;
4588c6286f1STambe, William         case 3:
4598c6286f1STambe, William             asm volatile ("mov %0, %%dr3" : : "r"(test->scratch) : "memory");
4608c6286f1STambe, William             break;
4618c6286f1STambe, William         case 4:
4628c6286f1STambe, William             asm volatile ("mov %0, %%dr4" : : "r"(test->scratch) : "memory");
4638c6286f1STambe, William             break;
4648c6286f1STambe, William         case 5:
4658c6286f1STambe, William             asm volatile ("mov %0, %%dr5" : : "r"(test->scratch) : "memory");
4668c6286f1STambe, William             break;
4678c6286f1STambe, William         case 6:
4688c6286f1STambe, William             asm volatile ("mov %0, %%dr6" : : "r"(test->scratch) : "memory");
4698c6286f1STambe, William             break;
4708c6286f1STambe, William         case 7:
4718c6286f1STambe, William             asm volatile ("mov %0, %%dr7" : : "r"(test->scratch) : "memory");
4728c6286f1STambe, William             break;
4738c6286f1STambe, William         }
4748c6286f1STambe, William 
4758c6286f1STambe, William         if (test->scratch != i) {
4768c6286f1STambe, William             report("dr%u write intercept", false, i);
4778c6286f1STambe, William             failcnt++;
4788c6286f1STambe, William         }
4798c6286f1STambe, William     }
4808c6286f1STambe, William 
4818c6286f1STambe, William     test->scratch = failcnt;
4828c6286f1STambe, William }
4838c6286f1STambe, William 
4848c6286f1STambe, William static bool dr_intercept_finished(struct test *test)
4858c6286f1STambe, William {
4868c6286f1STambe, William     ulong n = (test->vmcb->control.exit_code - SVM_EXIT_READ_DR0);
4878c6286f1STambe, William 
4888c6286f1STambe, William     /* Only expect DR intercepts */
4898c6286f1STambe, William     if (n > (SVM_EXIT_MAX_DR_INTERCEPT - SVM_EXIT_READ_DR0))
4908c6286f1STambe, William         return true;
4918c6286f1STambe, William 
4928c6286f1STambe, William     /*
4938c6286f1STambe, William      * Compute debug register number.
4948c6286f1STambe, William      * Per Appendix C "SVM Intercept Exit Codes" of AMD64 Architecture
4958c6286f1STambe, William      * Programmer's Manual Volume 2 - System Programming:
4968c6286f1STambe, William      * http://support.amd.com/TechDocs/24593.pdf
4978c6286f1STambe, William      * there are 16 VMEXIT codes each for DR read and write.
4988c6286f1STambe, William      */
4998c6286f1STambe, William     test->scratch = (n % 16);
5008c6286f1STambe, William 
5018c6286f1STambe, William     /* Jump over MOV instruction */
5028c6286f1STambe, William     test->vmcb->save.rip += 3;
5038c6286f1STambe, William 
5048c6286f1STambe, William     return false;
5058c6286f1STambe, William }
5068c6286f1STambe, William 
5078c6286f1STambe, William static bool check_dr_intercept(struct test *test)
5088c6286f1STambe, William {
5098c6286f1STambe, William     return !test->scratch;
5108c6286f1STambe, William }
5118c6286f1STambe, William 
5127d36db35SAvi Kivity static bool next_rip_supported(void)
5137d36db35SAvi Kivity {
514badc98caSKrish Sadhukhan     return this_cpu_has(X86_FEATURE_NRIPS);
5157d36db35SAvi Kivity }
5167d36db35SAvi Kivity 
5177d36db35SAvi Kivity static void prepare_next_rip(struct test *test)
5187d36db35SAvi Kivity {
5197d36db35SAvi Kivity     test->vmcb->control.intercept |= (1ULL << INTERCEPT_RDTSC);
5207d36db35SAvi Kivity }
5217d36db35SAvi Kivity 
5227d36db35SAvi Kivity 
5237d36db35SAvi Kivity static void test_next_rip(struct test *test)
5247d36db35SAvi Kivity {
5257d36db35SAvi Kivity     asm volatile ("rdtsc\n\t"
5267d36db35SAvi Kivity                   ".globl exp_next_rip\n\t"
5277d36db35SAvi Kivity                   "exp_next_rip:\n\t" ::: "eax", "edx");
5287d36db35SAvi Kivity }
5297d36db35SAvi Kivity 
5307d36db35SAvi Kivity static bool check_next_rip(struct test *test)
5317d36db35SAvi Kivity {
5327d36db35SAvi Kivity     extern char exp_next_rip;
5337d36db35SAvi Kivity     unsigned long address = (unsigned long)&exp_next_rip;
5347d36db35SAvi Kivity 
5357d36db35SAvi Kivity     return address == test->vmcb->control.next_rip;
5367d36db35SAvi Kivity }
5377d36db35SAvi Kivity 
53806a8c023STambe, William static void prepare_msr_intercept(struct test *test)
53906a8c023STambe, William {
54006a8c023STambe, William     default_prepare(test);
54106a8c023STambe, William     test->vmcb->control.intercept |= (1ULL << INTERCEPT_MSR_PROT);
54206a8c023STambe, William     test->vmcb->control.intercept_exceptions |= (1ULL << GP_VECTOR);
54306a8c023STambe, William     memset(msr_bitmap, 0xff, MSR_BITMAP_SIZE);
54406a8c023STambe, William }
54506a8c023STambe, William 
54606a8c023STambe, William static void test_msr_intercept(struct test *test)
54706a8c023STambe, William {
54806a8c023STambe, William     unsigned long msr_value = 0xef8056791234abcd; /* Arbitrary value */
54906a8c023STambe, William     unsigned long msr_index;
55006a8c023STambe, William 
55106a8c023STambe, William     for (msr_index = 0; msr_index <= 0xc0011fff; msr_index++) {
55206a8c023STambe, William         if (msr_index == 0xC0010131 /* MSR_SEV_STATUS */) {
55306a8c023STambe, William             /*
55406a8c023STambe, William              * Per section 15.34.10 "SEV_STATUS MSR" of AMD64 Architecture
55506a8c023STambe, William              * Programmer's Manual volume 2 - System Programming:
55606a8c023STambe, William              * http://support.amd.com/TechDocs/24593.pdf
55706a8c023STambe, William              * SEV_STATUS MSR (C001_0131) is a non-interceptable MSR.
55806a8c023STambe, William              */
55906a8c023STambe, William             continue;
56006a8c023STambe, William         }
56106a8c023STambe, William 
56206a8c023STambe, William         /* Skips gaps between supported MSR ranges */
56306a8c023STambe, William         if (msr_index == 0x2000)
56406a8c023STambe, William             msr_index = 0xc0000000;
56506a8c023STambe, William         else if (msr_index == 0xc0002000)
56606a8c023STambe, William             msr_index = 0xc0010000;
56706a8c023STambe, William 
56806a8c023STambe, William         test->scratch = -1;
56906a8c023STambe, William 
57006a8c023STambe, William         rdmsr(msr_index);
57106a8c023STambe, William 
57206a8c023STambe, William         /* Check that a read intercept occurred for MSR at msr_index */
57306a8c023STambe, William         if (test->scratch != msr_index)
57406a8c023STambe, William             report("MSR 0x%lx read intercept", false, msr_index);
57506a8c023STambe, William 
57606a8c023STambe, William         /*
57706a8c023STambe, William          * Poor man approach to generate a value that
57806a8c023STambe, William          * seems arbitrary each time around the loop.
57906a8c023STambe, William          */
58006a8c023STambe, William         msr_value += (msr_value << 1);
58106a8c023STambe, William 
58206a8c023STambe, William         wrmsr(msr_index, msr_value);
58306a8c023STambe, William 
58406a8c023STambe, William         /* Check that a write intercept occurred for MSR with msr_value */
58506a8c023STambe, William         if (test->scratch != msr_value)
58606a8c023STambe, William             report("MSR 0x%lx write intercept", false, msr_index);
58706a8c023STambe, William     }
58806a8c023STambe, William 
58906a8c023STambe, William     test->scratch = -2;
59006a8c023STambe, William }
59106a8c023STambe, William 
59206a8c023STambe, William static bool msr_intercept_finished(struct test *test)
59306a8c023STambe, William {
59406a8c023STambe, William     u32 exit_code = test->vmcb->control.exit_code;
59506a8c023STambe, William     u64 exit_info_1;
59606a8c023STambe, William     u8 *opcode;
59706a8c023STambe, William 
59806a8c023STambe, William     if (exit_code == SVM_EXIT_MSR) {
59906a8c023STambe, William         exit_info_1 = test->vmcb->control.exit_info_1;
60006a8c023STambe, William     } else {
60106a8c023STambe, William         /*
60206a8c023STambe, William          * If #GP exception occurs instead, check that it was
60306a8c023STambe, William          * for RDMSR/WRMSR and set exit_info_1 accordingly.
60406a8c023STambe, William          */
60506a8c023STambe, William 
60606a8c023STambe, William         if (exit_code != (SVM_EXIT_EXCP_BASE + GP_VECTOR))
60706a8c023STambe, William             return true;
60806a8c023STambe, William 
60906a8c023STambe, William         opcode = (u8 *)test->vmcb->save.rip;
61006a8c023STambe, William         if (opcode[0] != 0x0f)
61106a8c023STambe, William             return true;
61206a8c023STambe, William 
61306a8c023STambe, William         switch (opcode[1]) {
61406a8c023STambe, William         case 0x30: /* WRMSR */
61506a8c023STambe, William             exit_info_1 = 1;
61606a8c023STambe, William             break;
61706a8c023STambe, William         case 0x32: /* RDMSR */
61806a8c023STambe, William             exit_info_1 = 0;
61906a8c023STambe, William             break;
62006a8c023STambe, William         default:
62106a8c023STambe, William             return true;
62206a8c023STambe, William         }
62306a8c023STambe, William 
62406a8c023STambe, William         /*
62506a8c023STambe, William          * Warn that #GP exception occured instead.
62606a8c023STambe, William          * RCX holds the MSR index.
62706a8c023STambe, William          */
62806a8c023STambe, William         printf("%s 0x%lx #GP exception\n",
62906a8c023STambe, William             exit_info_1 ? "WRMSR" : "RDMSR", regs.rcx);
63006a8c023STambe, William     }
63106a8c023STambe, William 
63206a8c023STambe, William     /* Jump over RDMSR/WRMSR instruction */
63306a8c023STambe, William     test->vmcb->save.rip += 2;
63406a8c023STambe, William 
63506a8c023STambe, William     /*
63606a8c023STambe, William      * Test whether the intercept was for RDMSR/WRMSR.
63706a8c023STambe, William      * For RDMSR, test->scratch is set to the MSR index;
63806a8c023STambe, William      *      RCX holds the MSR index.
63906a8c023STambe, William      * For WRMSR, test->scratch is set to the MSR value;
64006a8c023STambe, William      *      RDX holds the upper 32 bits of the MSR value,
64106a8c023STambe, William      *      while RAX hold its lower 32 bits.
64206a8c023STambe, William      */
64306a8c023STambe, William     if (exit_info_1)
64406a8c023STambe, William         test->scratch =
64506a8c023STambe, William             ((regs.rdx << 32) | (test->vmcb->save.rax & 0xffffffff));
64606a8c023STambe, William     else
64706a8c023STambe, William         test->scratch = regs.rcx;
64806a8c023STambe, William 
64906a8c023STambe, William     return false;
65006a8c023STambe, William }
65106a8c023STambe, William 
65206a8c023STambe, William static bool check_msr_intercept(struct test *test)
65306a8c023STambe, William {
65406a8c023STambe, William     memset(msr_bitmap, 0, MSR_BITMAP_SIZE);
65506a8c023STambe, William     return (test->scratch == -2);
65606a8c023STambe, William }
65706a8c023STambe, William 
6587d36db35SAvi Kivity static void prepare_mode_switch(struct test *test)
6597d36db35SAvi Kivity {
6607d36db35SAvi Kivity     test->vmcb->control.intercept_exceptions |= (1ULL << GP_VECTOR)
6617d36db35SAvi Kivity                                              |  (1ULL << UD_VECTOR)
6627d36db35SAvi Kivity                                              |  (1ULL << DF_VECTOR)
6637d36db35SAvi Kivity                                              |  (1ULL << PF_VECTOR);
6647d36db35SAvi Kivity     test->scratch = 0;
6657d36db35SAvi Kivity }
6667d36db35SAvi Kivity 
6677d36db35SAvi Kivity static void test_mode_switch(struct test *test)
6687d36db35SAvi Kivity {
6697d36db35SAvi Kivity     asm volatile("	cli\n"
6707d36db35SAvi Kivity 		 "	ljmp *1f\n" /* jump to 32-bit code segment */
6717d36db35SAvi Kivity 		 "1:\n"
6727d36db35SAvi Kivity 		 "	.long 2f\n"
673b46094b4SPaolo Bonzini 		 "	.long " xstr(KERNEL_CS32) "\n"
6747d36db35SAvi Kivity 		 ".code32\n"
6757d36db35SAvi Kivity 		 "2:\n"
6767d36db35SAvi Kivity 		 "	movl %%cr0, %%eax\n"
6777d36db35SAvi Kivity 		 "	btcl  $31, %%eax\n" /* clear PG */
6787d36db35SAvi Kivity 		 "	movl %%eax, %%cr0\n"
6797d36db35SAvi Kivity 		 "	movl $0xc0000080, %%ecx\n" /* EFER */
6807d36db35SAvi Kivity 		 "	rdmsr\n"
6817d36db35SAvi Kivity 		 "	btcl $8, %%eax\n" /* clear LME */
6827d36db35SAvi Kivity 		 "	wrmsr\n"
6837d36db35SAvi Kivity 		 "	movl %%cr4, %%eax\n"
6847d36db35SAvi Kivity 		 "	btcl $5, %%eax\n" /* clear PAE */
6857d36db35SAvi Kivity 		 "	movl %%eax, %%cr4\n"
686b46094b4SPaolo Bonzini 		 "	movw %[ds16], %%ax\n"
6877d36db35SAvi Kivity 		 "	movw %%ax, %%ds\n"
688b46094b4SPaolo Bonzini 		 "	ljmpl %[cs16], $3f\n" /* jump to 16 bit protected-mode */
6897d36db35SAvi Kivity 		 ".code16\n"
6907d36db35SAvi Kivity 		 "3:\n"
6917d36db35SAvi Kivity 		 "	movl %%cr0, %%eax\n"
6927d36db35SAvi Kivity 		 "	btcl $0, %%eax\n" /* clear PE  */
6937d36db35SAvi Kivity 		 "	movl %%eax, %%cr0\n"
6947d36db35SAvi Kivity 		 "	ljmpl $0, $4f\n"   /* jump to real-mode */
6957d36db35SAvi Kivity 		 "4:\n"
6967d36db35SAvi Kivity 		 "	vmmcall\n"
6977d36db35SAvi Kivity 		 "	movl %%cr0, %%eax\n"
6987d36db35SAvi Kivity 		 "	btsl $0, %%eax\n" /* set PE  */
6997d36db35SAvi Kivity 		 "	movl %%eax, %%cr0\n"
700b46094b4SPaolo Bonzini 		 "	ljmpl %[cs32], $5f\n" /* back to protected mode */
7017d36db35SAvi Kivity 		 ".code32\n"
7027d36db35SAvi Kivity 		 "5:\n"
7037d36db35SAvi Kivity 		 "	movl %%cr4, %%eax\n"
7047d36db35SAvi Kivity 		 "	btsl $5, %%eax\n" /* set PAE */
7057d36db35SAvi Kivity 		 "	movl %%eax, %%cr4\n"
7067d36db35SAvi Kivity 		 "	movl $0xc0000080, %%ecx\n" /* EFER */
7077d36db35SAvi Kivity 		 "	rdmsr\n"
7087d36db35SAvi Kivity 		 "	btsl $8, %%eax\n" /* set LME */
7097d36db35SAvi Kivity 		 "	wrmsr\n"
7107d36db35SAvi Kivity 		 "	movl %%cr0, %%eax\n"
7117d36db35SAvi Kivity 		 "	btsl  $31, %%eax\n" /* set PG */
7127d36db35SAvi Kivity 		 "	movl %%eax, %%cr0\n"
713b46094b4SPaolo Bonzini 		 "	ljmpl %[cs64], $6f\n"    /* back to long mode */
7147d36db35SAvi Kivity 		 ".code64\n\t"
7157d36db35SAvi Kivity 		 "6:\n"
7167d36db35SAvi Kivity 		 "	vmmcall\n"
717b46094b4SPaolo Bonzini 		 :: [cs16] "i"(KERNEL_CS16), [ds16] "i"(KERNEL_DS16),
718b46094b4SPaolo Bonzini 		    [cs32] "i"(KERNEL_CS32), [cs64] "i"(KERNEL_CS64)
719b46094b4SPaolo Bonzini 		 : "rax", "rbx", "rcx", "rdx", "memory");
7207d36db35SAvi Kivity }
7217d36db35SAvi Kivity 
7227d36db35SAvi Kivity static bool mode_switch_finished(struct test *test)
7237d36db35SAvi Kivity {
7247d36db35SAvi Kivity     u64 cr0, cr4, efer;
7257d36db35SAvi Kivity 
7267d36db35SAvi Kivity     cr0  = test->vmcb->save.cr0;
7277d36db35SAvi Kivity     cr4  = test->vmcb->save.cr4;
7287d36db35SAvi Kivity     efer = test->vmcb->save.efer;
7297d36db35SAvi Kivity 
7307d36db35SAvi Kivity     /* Only expect VMMCALL intercepts */
7317d36db35SAvi Kivity     if (test->vmcb->control.exit_code != SVM_EXIT_VMMCALL)
7327d36db35SAvi Kivity 	    return true;
7337d36db35SAvi Kivity 
7347d36db35SAvi Kivity     /* Jump over VMMCALL instruction */
7357d36db35SAvi Kivity     test->vmcb->save.rip += 3;
7367d36db35SAvi Kivity 
7377d36db35SAvi Kivity     /* Do sanity checks */
7387d36db35SAvi Kivity     switch (test->scratch) {
7397d36db35SAvi Kivity     case 0:
7407d36db35SAvi Kivity         /* Test should be in real mode now - check for this */
7417d36db35SAvi Kivity         if ((cr0  & 0x80000001) || /* CR0.PG, CR0.PE */
7427d36db35SAvi Kivity             (cr4  & 0x00000020) || /* CR4.PAE */
7437d36db35SAvi Kivity             (efer & 0x00000500))   /* EFER.LMA, EFER.LME */
7447d36db35SAvi Kivity                 return true;
7457d36db35SAvi Kivity         break;
7467d36db35SAvi Kivity     case 2:
7477d36db35SAvi Kivity         /* Test should be back in long-mode now - check for this */
7487d36db35SAvi Kivity         if (((cr0  & 0x80000001) != 0x80000001) || /* CR0.PG, CR0.PE */
7497d36db35SAvi Kivity             ((cr4  & 0x00000020) != 0x00000020) || /* CR4.PAE */
7507d36db35SAvi Kivity             ((efer & 0x00000500) != 0x00000500))   /* EFER.LMA, EFER.LME */
7517d36db35SAvi Kivity 		    return true;
7527d36db35SAvi Kivity 	break;
7537d36db35SAvi Kivity     }
7547d36db35SAvi Kivity 
7557d36db35SAvi Kivity     /* one step forward */
7567d36db35SAvi Kivity     test->scratch += 1;
7577d36db35SAvi Kivity 
7587d36db35SAvi Kivity     return test->scratch == 2;
7597d36db35SAvi Kivity }
7607d36db35SAvi Kivity 
7617d36db35SAvi Kivity static bool check_mode_switch(struct test *test)
7627d36db35SAvi Kivity {
7637d36db35SAvi Kivity 	return test->scratch == 2;
7647d36db35SAvi Kivity }
7657d36db35SAvi Kivity 
766bcd9774aSPaolo Bonzini static void prepare_ioio(struct test *test)
767bcd9774aSPaolo Bonzini {
768bcd9774aSPaolo Bonzini     test->vmcb->control.intercept |= (1ULL << INTERCEPT_IOIO_PROT);
769bcd9774aSPaolo Bonzini     test->scratch = 0;
770bcd9774aSPaolo Bonzini     memset(io_bitmap, 0, 8192);
771bcd9774aSPaolo Bonzini     io_bitmap[8192] = 0xFF;
772bcd9774aSPaolo Bonzini }
773bcd9774aSPaolo Bonzini 
774db4898e8SThomas Huth static int get_test_stage(struct test *test)
775bcd9774aSPaolo Bonzini {
776bcd9774aSPaolo Bonzini     barrier();
777bcd9774aSPaolo Bonzini     return test->scratch;
778bcd9774aSPaolo Bonzini }
779bcd9774aSPaolo Bonzini 
780db4898e8SThomas Huth static void inc_test_stage(struct test *test)
781bcd9774aSPaolo Bonzini {
782bcd9774aSPaolo Bonzini     barrier();
783bcd9774aSPaolo Bonzini     test->scratch++;
784bcd9774aSPaolo Bonzini     barrier();
785bcd9774aSPaolo Bonzini }
786bcd9774aSPaolo Bonzini 
787bcd9774aSPaolo Bonzini static void test_ioio(struct test *test)
788bcd9774aSPaolo Bonzini {
789bcd9774aSPaolo Bonzini     // stage 0, test IO pass
790bcd9774aSPaolo Bonzini     inb(0x5000);
791bcd9774aSPaolo Bonzini     outb(0x0, 0x5000);
792bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 0)
793bcd9774aSPaolo Bonzini         goto fail;
794bcd9774aSPaolo Bonzini 
795bcd9774aSPaolo Bonzini     // test IO width, in/out
796bcd9774aSPaolo Bonzini     io_bitmap[0] = 0xFF;
797bcd9774aSPaolo Bonzini     inc_test_stage(test);
798bcd9774aSPaolo Bonzini     inb(0x0);
799bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 2)
800bcd9774aSPaolo Bonzini         goto fail;
801bcd9774aSPaolo Bonzini 
802bcd9774aSPaolo Bonzini     outw(0x0, 0x0);
803bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 3)
804bcd9774aSPaolo Bonzini         goto fail;
805bcd9774aSPaolo Bonzini 
806bcd9774aSPaolo Bonzini     inl(0x0);
807bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 4)
808bcd9774aSPaolo Bonzini         goto fail;
809bcd9774aSPaolo Bonzini 
810bcd9774aSPaolo Bonzini     // test low/high IO port
811bcd9774aSPaolo Bonzini     io_bitmap[0x5000 / 8] = (1 << (0x5000 % 8));
812bcd9774aSPaolo Bonzini     inb(0x5000);
813bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 5)
814bcd9774aSPaolo Bonzini         goto fail;
815bcd9774aSPaolo Bonzini 
816bcd9774aSPaolo Bonzini     io_bitmap[0x9000 / 8] = (1 << (0x9000 % 8));
817bcd9774aSPaolo Bonzini     inw(0x9000);
818bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 6)
819bcd9774aSPaolo Bonzini         goto fail;
820bcd9774aSPaolo Bonzini 
821bcd9774aSPaolo Bonzini     // test partial pass
822bcd9774aSPaolo Bonzini     io_bitmap[0x5000 / 8] = (1 << (0x5000 % 8));
823bcd9774aSPaolo Bonzini     inl(0x4FFF);
824bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 7)
825bcd9774aSPaolo Bonzini         goto fail;
826bcd9774aSPaolo Bonzini 
827bcd9774aSPaolo Bonzini     // test across pages
828bcd9774aSPaolo Bonzini     inc_test_stage(test);
829bcd9774aSPaolo Bonzini     inl(0x7FFF);
830bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 8)
831bcd9774aSPaolo Bonzini         goto fail;
832bcd9774aSPaolo Bonzini 
833bcd9774aSPaolo Bonzini     inc_test_stage(test);
834bcd9774aSPaolo Bonzini     io_bitmap[0x8000 / 8] = 1 << (0x8000 % 8);
835bcd9774aSPaolo Bonzini     inl(0x7FFF);
836bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 10)
837bcd9774aSPaolo Bonzini         goto fail;
838bcd9774aSPaolo Bonzini 
839bcd9774aSPaolo Bonzini     io_bitmap[0] = 0;
840bcd9774aSPaolo Bonzini     inl(0xFFFF);
841bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 11)
842bcd9774aSPaolo Bonzini         goto fail;
843bcd9774aSPaolo Bonzini 
844bcd9774aSPaolo Bonzini     io_bitmap[0] = 0xFF;
845bcd9774aSPaolo Bonzini     io_bitmap[8192] = 0;
846bcd9774aSPaolo Bonzini     inl(0xFFFF);
847bcd9774aSPaolo Bonzini     inc_test_stage(test);
848bcd9774aSPaolo Bonzini     if (get_test_stage(test) != 12)
849bcd9774aSPaolo Bonzini         goto fail;
850bcd9774aSPaolo Bonzini 
851bcd9774aSPaolo Bonzini     return;
852bcd9774aSPaolo Bonzini 
853bcd9774aSPaolo Bonzini fail:
854d637cb11SAndrew Jones     report("stage %d", false, get_test_stage(test));
855bcd9774aSPaolo Bonzini     test->scratch = -1;
856bcd9774aSPaolo Bonzini }
857bcd9774aSPaolo Bonzini 
858bcd9774aSPaolo Bonzini static bool ioio_finished(struct test *test)
859bcd9774aSPaolo Bonzini {
860bcd9774aSPaolo Bonzini     unsigned port, size;
861bcd9774aSPaolo Bonzini 
862bcd9774aSPaolo Bonzini     /* Only expect IOIO intercepts */
863bcd9774aSPaolo Bonzini     if (test->vmcb->control.exit_code == SVM_EXIT_VMMCALL)
864bcd9774aSPaolo Bonzini         return true;
865bcd9774aSPaolo Bonzini 
866bcd9774aSPaolo Bonzini     if (test->vmcb->control.exit_code != SVM_EXIT_IOIO)
867bcd9774aSPaolo Bonzini         return true;
868bcd9774aSPaolo Bonzini 
869bcd9774aSPaolo Bonzini     /* one step forward */
870bcd9774aSPaolo Bonzini     test->scratch += 1;
871bcd9774aSPaolo Bonzini 
872bcd9774aSPaolo Bonzini     port = test->vmcb->control.exit_info_1 >> 16;
873bcd9774aSPaolo Bonzini     size = (test->vmcb->control.exit_info_1 >> SVM_IOIO_SIZE_SHIFT) & 7;
874bcd9774aSPaolo Bonzini 
875bcd9774aSPaolo Bonzini     while (size--) {
876bcd9774aSPaolo Bonzini         io_bitmap[port / 8] &= ~(1 << (port & 7));
877bcd9774aSPaolo Bonzini         port++;
878bcd9774aSPaolo Bonzini     }
879bcd9774aSPaolo Bonzini 
880bcd9774aSPaolo Bonzini     return false;
881bcd9774aSPaolo Bonzini }
882bcd9774aSPaolo Bonzini 
883bcd9774aSPaolo Bonzini static bool check_ioio(struct test *test)
884bcd9774aSPaolo Bonzini {
885bcd9774aSPaolo Bonzini     memset(io_bitmap, 0, 8193);
886bcd9774aSPaolo Bonzini     return test->scratch != -1;
887bcd9774aSPaolo Bonzini }
888bcd9774aSPaolo Bonzini 
8897d36db35SAvi Kivity static void prepare_asid_zero(struct test *test)
8907d36db35SAvi Kivity {
8917d36db35SAvi Kivity     test->vmcb->control.asid = 0;
8927d36db35SAvi Kivity }
8937d36db35SAvi Kivity 
8947d36db35SAvi Kivity static void test_asid_zero(struct test *test)
8957d36db35SAvi Kivity {
8967d36db35SAvi Kivity     asm volatile ("vmmcall\n\t");
8977d36db35SAvi Kivity }
8987d36db35SAvi Kivity 
8997d36db35SAvi Kivity static bool check_asid_zero(struct test *test)
9007d36db35SAvi Kivity {
9017d36db35SAvi Kivity     return test->vmcb->control.exit_code == SVM_EXIT_ERR;
9027d36db35SAvi Kivity }
9037d36db35SAvi Kivity 
9044c8eb156SJoerg Roedel static void sel_cr0_bug_prepare(struct test *test)
9054c8eb156SJoerg Roedel {
9064c8eb156SJoerg Roedel     vmcb_ident(test->vmcb);
9074c8eb156SJoerg Roedel     test->vmcb->control.intercept |= (1ULL << INTERCEPT_SELECTIVE_CR0);
9084c8eb156SJoerg Roedel }
9094c8eb156SJoerg Roedel 
9104c8eb156SJoerg Roedel static bool sel_cr0_bug_finished(struct test *test)
9114c8eb156SJoerg Roedel {
9124c8eb156SJoerg Roedel 	return true;
9134c8eb156SJoerg Roedel }
9144c8eb156SJoerg Roedel 
9154c8eb156SJoerg Roedel static void sel_cr0_bug_test(struct test *test)
9164c8eb156SJoerg Roedel {
9174c8eb156SJoerg Roedel     unsigned long cr0;
9184c8eb156SJoerg Roedel 
9194c8eb156SJoerg Roedel     /* read cr0, clear CD, and write back */
9204c8eb156SJoerg Roedel     cr0  = read_cr0();
9214c8eb156SJoerg Roedel     cr0 |= (1UL << 30);
9224c8eb156SJoerg Roedel     write_cr0(cr0);
9234c8eb156SJoerg Roedel 
9244c8eb156SJoerg Roedel     /*
9254c8eb156SJoerg Roedel      * If we are here the test failed, not sure what to do now because we
9264c8eb156SJoerg Roedel      * are not in guest-mode anymore so we can't trigger an intercept.
9274c8eb156SJoerg Roedel      * Trigger a tripple-fault for now.
9284c8eb156SJoerg Roedel      */
929d637cb11SAndrew Jones     report("sel_cr0 test. Can not recover from this - exiting", false);
930a43ed2acSAndrew Jones     exit(report_summary());
9314c8eb156SJoerg Roedel }
9324c8eb156SJoerg Roedel 
9334c8eb156SJoerg Roedel static bool sel_cr0_bug_check(struct test *test)
9344c8eb156SJoerg Roedel {
9354c8eb156SJoerg Roedel     return test->vmcb->control.exit_code == SVM_EXIT_CR0_SEL_WRITE;
9364c8eb156SJoerg Roedel }
9374c8eb156SJoerg Roedel 
9388594b943SJoerg Roedel static void npt_nx_prepare(struct test *test)
9398594b943SJoerg Roedel {
9408594b943SJoerg Roedel 
9418594b943SJoerg Roedel     u64 *pte;
9428594b943SJoerg Roedel 
9438594b943SJoerg Roedel     vmcb_ident(test->vmcb);
944726a1dd7SPaolo Bonzini     pte = npt_get_pte((u64)null_test);
9458594b943SJoerg Roedel 
9468594b943SJoerg Roedel     *pte |= (1ULL << 63);
9478594b943SJoerg Roedel }
9488594b943SJoerg Roedel 
9498594b943SJoerg Roedel static bool npt_nx_check(struct test *test)
9508594b943SJoerg Roedel {
951726a1dd7SPaolo Bonzini     u64 *pte = npt_get_pte((u64)null_test);
9528594b943SJoerg Roedel 
9538594b943SJoerg Roedel     *pte &= ~(1ULL << 63);
9548594b943SJoerg Roedel 
9558594b943SJoerg Roedel     test->vmcb->save.efer |= (1 << 11);
9568594b943SJoerg Roedel 
9578594b943SJoerg Roedel     return (test->vmcb->control.exit_code == SVM_EXIT_NPF)
958e8b10c1fSPaolo Bonzini            && (test->vmcb->control.exit_info_1 == 0x100000015ULL);
9598594b943SJoerg Roedel }
9608594b943SJoerg Roedel 
961ea975120SJoerg Roedel static void npt_us_prepare(struct test *test)
962ea975120SJoerg Roedel {
963ea975120SJoerg Roedel     u64 *pte;
964ea975120SJoerg Roedel 
965ea975120SJoerg Roedel     vmcb_ident(test->vmcb);
966726a1dd7SPaolo Bonzini     pte = npt_get_pte((u64)scratch_page);
967ea975120SJoerg Roedel 
968ea975120SJoerg Roedel     *pte &= ~(1ULL << 2);
969ea975120SJoerg Roedel }
970ea975120SJoerg Roedel 
971ea975120SJoerg Roedel static void npt_us_test(struct test *test)
972ea975120SJoerg Roedel {
973c0a4e715SPaolo Bonzini     (void) *(volatile u64 *)scratch_page;
974ea975120SJoerg Roedel }
975ea975120SJoerg Roedel 
976ea975120SJoerg Roedel static bool npt_us_check(struct test *test)
977ea975120SJoerg Roedel {
978726a1dd7SPaolo Bonzini     u64 *pte = npt_get_pte((u64)scratch_page);
979ea975120SJoerg Roedel 
980ea975120SJoerg Roedel     *pte |= (1ULL << 2);
981ea975120SJoerg Roedel 
982ea975120SJoerg Roedel     return (test->vmcb->control.exit_code == SVM_EXIT_NPF)
983e8b10c1fSPaolo Bonzini            && (test->vmcb->control.exit_info_1 == 0x100000005ULL);
984ea975120SJoerg Roedel }
985ea975120SJoerg Roedel 
986f6a2ca45SPaolo Bonzini u64 save_pde;
987f6a2ca45SPaolo Bonzini 
988dd6ef43cSJoerg Roedel static void npt_rsvd_prepare(struct test *test)
989dd6ef43cSJoerg Roedel {
990f6a2ca45SPaolo Bonzini     u64 *pde;
991dd6ef43cSJoerg Roedel 
992dd6ef43cSJoerg Roedel     vmcb_ident(test->vmcb);
993f6a2ca45SPaolo Bonzini     pde = npt_get_pde((u64) null_test);
994dd6ef43cSJoerg Roedel 
995f6a2ca45SPaolo Bonzini     save_pde = *pde;
996f6a2ca45SPaolo Bonzini     *pde = (1ULL << 19) | (1ULL << 7) | 0x27;
997dd6ef43cSJoerg Roedel }
998dd6ef43cSJoerg Roedel 
999dd6ef43cSJoerg Roedel static bool npt_rsvd_check(struct test *test)
1000dd6ef43cSJoerg Roedel {
1001f6a2ca45SPaolo Bonzini     u64 *pde = npt_get_pde((u64) null_test);
1002f6a2ca45SPaolo Bonzini 
1003f6a2ca45SPaolo Bonzini     *pde = save_pde;
1004dd6ef43cSJoerg Roedel 
1005dd6ef43cSJoerg Roedel     return (test->vmcb->control.exit_code == SVM_EXIT_NPF)
1006f6a2ca45SPaolo Bonzini             && (test->vmcb->control.exit_info_1 == 0x10000001dULL);
1007dd6ef43cSJoerg Roedel }
1008dd6ef43cSJoerg Roedel 
10095ebf82edSJoerg Roedel static void npt_rw_prepare(struct test *test)
10105ebf82edSJoerg Roedel {
10115ebf82edSJoerg Roedel 
10125ebf82edSJoerg Roedel     u64 *pte;
10135ebf82edSJoerg Roedel 
10145ebf82edSJoerg Roedel     vmcb_ident(test->vmcb);
1015726a1dd7SPaolo Bonzini     pte = npt_get_pte(0x80000);
10165ebf82edSJoerg Roedel 
10175ebf82edSJoerg Roedel     *pte &= ~(1ULL << 1);
10185ebf82edSJoerg Roedel }
10195ebf82edSJoerg Roedel 
10205ebf82edSJoerg Roedel static void npt_rw_test(struct test *test)
10215ebf82edSJoerg Roedel {
10225ebf82edSJoerg Roedel     u64 *data = (void*)(0x80000);
10235ebf82edSJoerg Roedel 
10245ebf82edSJoerg Roedel     *data = 0;
10255ebf82edSJoerg Roedel }
10265ebf82edSJoerg Roedel 
10275ebf82edSJoerg Roedel static bool npt_rw_check(struct test *test)
10285ebf82edSJoerg Roedel {
1029726a1dd7SPaolo Bonzini     u64 *pte = npt_get_pte(0x80000);
10305ebf82edSJoerg Roedel 
10315ebf82edSJoerg Roedel     *pte |= (1ULL << 1);
10325ebf82edSJoerg Roedel 
10335ebf82edSJoerg Roedel     return (test->vmcb->control.exit_code == SVM_EXIT_NPF)
1034e8b10c1fSPaolo Bonzini            && (test->vmcb->control.exit_info_1 == 0x100000007ULL);
10355ebf82edSJoerg Roedel }
10365ebf82edSJoerg Roedel 
1037f6a2ca45SPaolo Bonzini static void npt_rw_pfwalk_prepare(struct test *test)
1038590040ffSJoerg Roedel {
1039590040ffSJoerg Roedel 
1040590040ffSJoerg Roedel     u64 *pte;
1041590040ffSJoerg Roedel 
1042590040ffSJoerg Roedel     vmcb_ident(test->vmcb);
1043726a1dd7SPaolo Bonzini     pte = npt_get_pte(read_cr3());
1044590040ffSJoerg Roedel 
1045590040ffSJoerg Roedel     *pte &= ~(1ULL << 1);
1046590040ffSJoerg Roedel }
1047590040ffSJoerg Roedel 
1048f6a2ca45SPaolo Bonzini static bool npt_rw_pfwalk_check(struct test *test)
1049590040ffSJoerg Roedel {
1050726a1dd7SPaolo Bonzini     u64 *pte = npt_get_pte(read_cr3());
1051590040ffSJoerg Roedel 
1052590040ffSJoerg Roedel     *pte |= (1ULL << 1);
1053590040ffSJoerg Roedel 
1054590040ffSJoerg Roedel     return (test->vmcb->control.exit_code == SVM_EXIT_NPF)
1055e8b10c1fSPaolo Bonzini            && (test->vmcb->control.exit_info_1 == 0x200000006ULL)
1056590040ffSJoerg Roedel 	   && (test->vmcb->control.exit_info_2 == read_cr3());
1057590040ffSJoerg Roedel }
1058590040ffSJoerg Roedel 
1059f6a2ca45SPaolo Bonzini static void npt_rsvd_pfwalk_prepare(struct test *test)
1060f6a2ca45SPaolo Bonzini {
1061f6a2ca45SPaolo Bonzini 
1062f6a2ca45SPaolo Bonzini     vmcb_ident(test->vmcb);
1063f6a2ca45SPaolo Bonzini 
1064f6a2ca45SPaolo Bonzini     pdpe[0] |= (1ULL << 8);
1065f6a2ca45SPaolo Bonzini }
1066f6a2ca45SPaolo Bonzini 
1067f6a2ca45SPaolo Bonzini static bool npt_rsvd_pfwalk_check(struct test *test)
1068f6a2ca45SPaolo Bonzini {
1069f6a2ca45SPaolo Bonzini     pdpe[0] &= ~(1ULL << 8);
1070f6a2ca45SPaolo Bonzini 
1071f6a2ca45SPaolo Bonzini     return (test->vmcb->control.exit_code == SVM_EXIT_NPF)
10723fc91a19SCathy Avery             && (test->vmcb->control.exit_info_1 == 0x20000000eULL);
1073f6a2ca45SPaolo Bonzini }
1074f6a2ca45SPaolo Bonzini 
1075a2ab7740SPaolo Bonzini static void npt_l1mmio_prepare(struct test *test)
1076a2ab7740SPaolo Bonzini {
1077a2ab7740SPaolo Bonzini     vmcb_ident(test->vmcb);
1078a2ab7740SPaolo Bonzini }
1079a2ab7740SPaolo Bonzini 
10801e699ecbSPaolo Bonzini u32 nested_apic_version1;
10811e699ecbSPaolo Bonzini u32 nested_apic_version2;
1082a2ab7740SPaolo Bonzini 
1083a2ab7740SPaolo Bonzini static void npt_l1mmio_test(struct test *test)
1084a2ab7740SPaolo Bonzini {
10851e699ecbSPaolo Bonzini     volatile u32 *data = (volatile void*)(0xfee00030UL);
1086a2ab7740SPaolo Bonzini 
10871e699ecbSPaolo Bonzini     nested_apic_version1 = *data;
10881e699ecbSPaolo Bonzini     nested_apic_version2 = *data;
1089a2ab7740SPaolo Bonzini }
1090a2ab7740SPaolo Bonzini 
1091a2ab7740SPaolo Bonzini static bool npt_l1mmio_check(struct test *test)
1092a2ab7740SPaolo Bonzini {
10931e699ecbSPaolo Bonzini     volatile u32 *data = (volatile void*)(0xfee00030);
10941e699ecbSPaolo Bonzini     u32 lvr = *data;
1095a2ab7740SPaolo Bonzini 
10961e699ecbSPaolo Bonzini     return nested_apic_version1 == lvr && nested_apic_version2 == lvr;
1097a2ab7740SPaolo Bonzini }
1098a2ab7740SPaolo Bonzini 
109969dd444aSPaolo Bonzini static void npt_rw_l1mmio_prepare(struct test *test)
110069dd444aSPaolo Bonzini {
110169dd444aSPaolo Bonzini 
110269dd444aSPaolo Bonzini     u64 *pte;
110369dd444aSPaolo Bonzini 
110469dd444aSPaolo Bonzini     vmcb_ident(test->vmcb);
110569dd444aSPaolo Bonzini     pte = npt_get_pte(0xfee00080);
110669dd444aSPaolo Bonzini 
110769dd444aSPaolo Bonzini     *pte &= ~(1ULL << 1);
110869dd444aSPaolo Bonzini }
110969dd444aSPaolo Bonzini 
111069dd444aSPaolo Bonzini static void npt_rw_l1mmio_test(struct test *test)
111169dd444aSPaolo Bonzini {
111269dd444aSPaolo Bonzini     volatile u32 *data = (volatile void*)(0xfee00080);
111369dd444aSPaolo Bonzini 
111469dd444aSPaolo Bonzini     *data = *data;
111569dd444aSPaolo Bonzini }
111669dd444aSPaolo Bonzini 
111769dd444aSPaolo Bonzini static bool npt_rw_l1mmio_check(struct test *test)
111869dd444aSPaolo Bonzini {
111969dd444aSPaolo Bonzini     u64 *pte = npt_get_pte(0xfee00080);
112069dd444aSPaolo Bonzini 
112169dd444aSPaolo Bonzini     *pte |= (1ULL << 1);
112269dd444aSPaolo Bonzini 
112369dd444aSPaolo Bonzini     return (test->vmcb->control.exit_code == SVM_EXIT_NPF)
112469dd444aSPaolo Bonzini            && (test->vmcb->control.exit_info_1 == 0x100000007ULL);
112569dd444aSPaolo Bonzini }
112669dd444aSPaolo Bonzini 
112736a7018aSPaolo Bonzini #define TSC_ADJUST_VALUE    (1ll << 32)
112836a7018aSPaolo Bonzini #define TSC_OFFSET_VALUE    (-1ll << 48)
112936a7018aSPaolo Bonzini static bool ok;
113036a7018aSPaolo Bonzini 
113136a7018aSPaolo Bonzini static void tsc_adjust_prepare(struct test *test)
113236a7018aSPaolo Bonzini {
113336a7018aSPaolo Bonzini     default_prepare(test);
113436a7018aSPaolo Bonzini     test->vmcb->control.tsc_offset = TSC_OFFSET_VALUE;
113536a7018aSPaolo Bonzini 
113636a7018aSPaolo Bonzini     wrmsr(MSR_IA32_TSC_ADJUST, -TSC_ADJUST_VALUE);
113736a7018aSPaolo Bonzini     int64_t adjust = rdmsr(MSR_IA32_TSC_ADJUST);
113836a7018aSPaolo Bonzini     ok = adjust == -TSC_ADJUST_VALUE;
113936a7018aSPaolo Bonzini }
114036a7018aSPaolo Bonzini 
114136a7018aSPaolo Bonzini static void tsc_adjust_test(struct test *test)
114236a7018aSPaolo Bonzini {
114336a7018aSPaolo Bonzini     int64_t adjust = rdmsr(MSR_IA32_TSC_ADJUST);
114436a7018aSPaolo Bonzini     ok &= adjust == -TSC_ADJUST_VALUE;
114536a7018aSPaolo Bonzini 
114636a7018aSPaolo Bonzini     uint64_t l1_tsc = rdtsc() - TSC_OFFSET_VALUE;
114736a7018aSPaolo Bonzini     wrmsr(MSR_IA32_TSC, l1_tsc - TSC_ADJUST_VALUE);
114836a7018aSPaolo Bonzini 
114936a7018aSPaolo Bonzini     adjust = rdmsr(MSR_IA32_TSC_ADJUST);
115036a7018aSPaolo Bonzini     ok &= adjust <= -2 * TSC_ADJUST_VALUE;
115136a7018aSPaolo Bonzini 
115236a7018aSPaolo Bonzini     uint64_t l1_tsc_end = rdtsc() - TSC_OFFSET_VALUE;
115336a7018aSPaolo Bonzini     ok &= (l1_tsc_end + TSC_ADJUST_VALUE - l1_tsc) < TSC_ADJUST_VALUE;
115436a7018aSPaolo Bonzini 
115536a7018aSPaolo Bonzini     uint64_t l1_tsc_msr = rdmsr(MSR_IA32_TSC) - TSC_OFFSET_VALUE;
115636a7018aSPaolo Bonzini     ok &= (l1_tsc_msr + TSC_ADJUST_VALUE - l1_tsc) < TSC_ADJUST_VALUE;
115736a7018aSPaolo Bonzini }
115836a7018aSPaolo Bonzini 
115936a7018aSPaolo Bonzini static bool tsc_adjust_check(struct test *test)
116036a7018aSPaolo Bonzini {
116136a7018aSPaolo Bonzini     int64_t adjust = rdmsr(MSR_IA32_TSC_ADJUST);
116236a7018aSPaolo Bonzini 
116336a7018aSPaolo Bonzini     wrmsr(MSR_IA32_TSC_ADJUST, 0);
116436a7018aSPaolo Bonzini     return ok && adjust <= -2 * TSC_ADJUST_VALUE;
116536a7018aSPaolo Bonzini }
116636a7018aSPaolo Bonzini 
116721c23154SJoerg Roedel static void latency_prepare(struct test *test)
116821c23154SJoerg Roedel {
116921c23154SJoerg Roedel     default_prepare(test);
117021c23154SJoerg Roedel     runs = LATENCY_RUNS;
117121c23154SJoerg Roedel     latvmrun_min = latvmexit_min = -1ULL;
117221c23154SJoerg Roedel     latvmrun_max = latvmexit_max = 0;
117321c23154SJoerg Roedel     vmrun_sum = vmexit_sum = 0;
117421c23154SJoerg Roedel }
117521c23154SJoerg Roedel 
117621c23154SJoerg Roedel static void latency_test(struct test *test)
117721c23154SJoerg Roedel {
117821c23154SJoerg Roedel     u64 cycles;
117921c23154SJoerg Roedel 
118021c23154SJoerg Roedel start:
118121c23154SJoerg Roedel     tsc_end = rdtsc();
118221c23154SJoerg Roedel 
118321c23154SJoerg Roedel     cycles = tsc_end - tsc_start;
118421c23154SJoerg Roedel 
118521c23154SJoerg Roedel     if (cycles > latvmrun_max)
118621c23154SJoerg Roedel         latvmrun_max = cycles;
118721c23154SJoerg Roedel 
118821c23154SJoerg Roedel     if (cycles < latvmrun_min)
118921c23154SJoerg Roedel         latvmrun_min = cycles;
119021c23154SJoerg Roedel 
119121c23154SJoerg Roedel     vmrun_sum += cycles;
119221c23154SJoerg Roedel 
119321c23154SJoerg Roedel     tsc_start = rdtsc();
119421c23154SJoerg Roedel 
119521c23154SJoerg Roedel     asm volatile ("vmmcall" : : : "memory");
119621c23154SJoerg Roedel     goto start;
119721c23154SJoerg Roedel }
119821c23154SJoerg Roedel 
119921c23154SJoerg Roedel static bool latency_finished(struct test *test)
120021c23154SJoerg Roedel {
120121c23154SJoerg Roedel     u64 cycles;
120221c23154SJoerg Roedel 
120321c23154SJoerg Roedel     tsc_end = rdtsc();
120421c23154SJoerg Roedel 
120521c23154SJoerg Roedel     cycles = tsc_end - tsc_start;
120621c23154SJoerg Roedel 
120721c23154SJoerg Roedel     if (cycles > latvmexit_max)
120821c23154SJoerg Roedel         latvmexit_max = cycles;
120921c23154SJoerg Roedel 
121021c23154SJoerg Roedel     if (cycles < latvmexit_min)
121121c23154SJoerg Roedel         latvmexit_min = cycles;
121221c23154SJoerg Roedel 
121321c23154SJoerg Roedel     vmexit_sum += cycles;
121421c23154SJoerg Roedel 
121521c23154SJoerg Roedel     test->vmcb->save.rip += 3;
121621c23154SJoerg Roedel 
121721c23154SJoerg Roedel     runs -= 1;
121821c23154SJoerg Roedel 
121921c23154SJoerg Roedel     return runs == 0;
122021c23154SJoerg Roedel }
122121c23154SJoerg Roedel 
122221c23154SJoerg Roedel static bool latency_check(struct test *test)
122321c23154SJoerg Roedel {
1224b006d7ebSAndrew Jones     printf("    Latency VMRUN : max: %ld min: %ld avg: %ld\n", latvmrun_max,
122521c23154SJoerg Roedel             latvmrun_min, vmrun_sum / LATENCY_RUNS);
1226b006d7ebSAndrew Jones     printf("    Latency VMEXIT: max: %ld min: %ld avg: %ld\n", latvmexit_max,
122721c23154SJoerg Roedel             latvmexit_min, vmexit_sum / LATENCY_RUNS);
122821c23154SJoerg Roedel     return true;
122921c23154SJoerg Roedel }
123021c23154SJoerg Roedel 
1231ef101219SRoedel, Joerg static void lat_svm_insn_prepare(struct test *test)
1232ef101219SRoedel, Joerg {
1233ef101219SRoedel, Joerg     default_prepare(test);
1234ef101219SRoedel, Joerg     runs = LATENCY_RUNS;
1235ef101219SRoedel, Joerg     latvmload_min = latvmsave_min = latstgi_min = latclgi_min = -1ULL;
1236ef101219SRoedel, Joerg     latvmload_max = latvmsave_max = latstgi_max = latclgi_max = 0;
1237ef101219SRoedel, Joerg     vmload_sum = vmsave_sum = stgi_sum = clgi_sum;
1238ef101219SRoedel, Joerg }
1239ef101219SRoedel, Joerg 
1240ef101219SRoedel, Joerg static bool lat_svm_insn_finished(struct test *test)
1241ef101219SRoedel, Joerg {
1242ef101219SRoedel, Joerg     u64 vmcb_phys = virt_to_phys(test->vmcb);
1243ef101219SRoedel, Joerg     u64 cycles;
1244ef101219SRoedel, Joerg 
1245ef101219SRoedel, Joerg     for ( ; runs != 0; runs--) {
1246ef101219SRoedel, Joerg         tsc_start = rdtsc();
1247ef101219SRoedel, Joerg         asm volatile("vmload\n\t" : : "a"(vmcb_phys) : "memory");
1248ef101219SRoedel, Joerg         cycles = rdtsc() - tsc_start;
1249ef101219SRoedel, Joerg         if (cycles > latvmload_max)
1250ef101219SRoedel, Joerg             latvmload_max = cycles;
1251ef101219SRoedel, Joerg         if (cycles < latvmload_min)
1252ef101219SRoedel, Joerg             latvmload_min = cycles;
1253ef101219SRoedel, Joerg         vmload_sum += cycles;
1254ef101219SRoedel, Joerg 
1255ef101219SRoedel, Joerg         tsc_start = rdtsc();
1256ef101219SRoedel, Joerg         asm volatile("vmsave\n\t" : : "a"(vmcb_phys) : "memory");
1257ef101219SRoedel, Joerg         cycles = rdtsc() - tsc_start;
1258ef101219SRoedel, Joerg         if (cycles > latvmsave_max)
1259ef101219SRoedel, Joerg             latvmsave_max = cycles;
1260ef101219SRoedel, Joerg         if (cycles < latvmsave_min)
1261ef101219SRoedel, Joerg             latvmsave_min = cycles;
1262ef101219SRoedel, Joerg         vmsave_sum += cycles;
1263ef101219SRoedel, Joerg 
1264ef101219SRoedel, Joerg         tsc_start = rdtsc();
1265ef101219SRoedel, Joerg         asm volatile("stgi\n\t");
1266ef101219SRoedel, Joerg         cycles = rdtsc() - tsc_start;
1267ef101219SRoedel, Joerg         if (cycles > latstgi_max)
1268ef101219SRoedel, Joerg             latstgi_max = cycles;
1269ef101219SRoedel, Joerg         if (cycles < latstgi_min)
1270ef101219SRoedel, Joerg             latstgi_min = cycles;
1271ef101219SRoedel, Joerg         stgi_sum += cycles;
1272ef101219SRoedel, Joerg 
1273ef101219SRoedel, Joerg         tsc_start = rdtsc();
1274ef101219SRoedel, Joerg         asm volatile("clgi\n\t");
1275ef101219SRoedel, Joerg         cycles = rdtsc() - tsc_start;
1276ef101219SRoedel, Joerg         if (cycles > latclgi_max)
1277ef101219SRoedel, Joerg             latclgi_max = cycles;
1278ef101219SRoedel, Joerg         if (cycles < latclgi_min)
1279ef101219SRoedel, Joerg             latclgi_min = cycles;
1280ef101219SRoedel, Joerg         clgi_sum += cycles;
1281ef101219SRoedel, Joerg     }
1282ef101219SRoedel, Joerg 
1283ef101219SRoedel, Joerg     return true;
1284ef101219SRoedel, Joerg }
1285ef101219SRoedel, Joerg 
1286ef101219SRoedel, Joerg static bool lat_svm_insn_check(struct test *test)
1287ef101219SRoedel, Joerg {
1288b006d7ebSAndrew Jones     printf("    Latency VMLOAD: max: %ld min: %ld avg: %ld\n", latvmload_max,
1289ef101219SRoedel, Joerg             latvmload_min, vmload_sum / LATENCY_RUNS);
1290b006d7ebSAndrew Jones     printf("    Latency VMSAVE: max: %ld min: %ld avg: %ld\n", latvmsave_max,
1291ef101219SRoedel, Joerg             latvmsave_min, vmsave_sum / LATENCY_RUNS);
1292b006d7ebSAndrew Jones     printf("    Latency STGI:   max: %ld min: %ld avg: %ld\n", latstgi_max,
1293ef101219SRoedel, Joerg             latstgi_min, stgi_sum / LATENCY_RUNS);
1294b006d7ebSAndrew Jones     printf("    Latency CLGI:   max: %ld min: %ld avg: %ld\n", latclgi_max,
1295ef101219SRoedel, Joerg             latclgi_min, clgi_sum / LATENCY_RUNS);
1296ef101219SRoedel, Joerg     return true;
1297ef101219SRoedel, Joerg }
12987d36db35SAvi Kivity static struct test tests[] = {
12997d36db35SAvi Kivity     { "null", default_supported, default_prepare, null_test,
13007d36db35SAvi Kivity       default_finished, null_check },
13017d36db35SAvi Kivity     { "vmrun", default_supported, default_prepare, test_vmrun,
13027d36db35SAvi Kivity        default_finished, check_vmrun },
1303bcd9774aSPaolo Bonzini     { "ioio", default_supported, prepare_ioio, test_ioio,
1304bcd9774aSPaolo Bonzini        ioio_finished, check_ioio },
13057d36db35SAvi Kivity     { "vmrun intercept check", default_supported, prepare_no_vmrun_int,
13067d36db35SAvi Kivity       null_test, default_finished, check_no_vmrun_int },
13077d36db35SAvi Kivity     { "cr3 read intercept", default_supported, prepare_cr3_intercept,
13087d36db35SAvi Kivity       test_cr3_intercept, default_finished, check_cr3_intercept },
13097d36db35SAvi Kivity     { "cr3 read nointercept", default_supported, default_prepare,
13107d36db35SAvi Kivity       test_cr3_intercept, default_finished, check_cr3_nointercept },
1311095274b4SPrasad Joshi     { "cr3 read intercept emulate", smp_supported,
13127d36db35SAvi Kivity       prepare_cr3_intercept_bypass, test_cr3_intercept_bypass,
13137d36db35SAvi Kivity       default_finished, check_cr3_intercept },
13148c6286f1STambe, William     { "dr intercept check", default_supported, prepare_dr_intercept,
13158c6286f1STambe, William       test_dr_intercept, dr_intercept_finished, check_dr_intercept },
13167d36db35SAvi Kivity     { "next_rip", next_rip_supported, prepare_next_rip, test_next_rip,
13177d36db35SAvi Kivity       default_finished, check_next_rip },
131806a8c023STambe, William     { "msr intercept check", default_supported, prepare_msr_intercept,
131906a8c023STambe, William        test_msr_intercept, msr_intercept_finished, check_msr_intercept },
13207d36db35SAvi Kivity     { "mode_switch", default_supported, prepare_mode_switch, test_mode_switch,
13217d36db35SAvi Kivity        mode_switch_finished, check_mode_switch },
13227d36db35SAvi Kivity     { "asid_zero", default_supported, prepare_asid_zero, test_asid_zero,
13237d36db35SAvi Kivity        default_finished, check_asid_zero },
13244c8eb156SJoerg Roedel     { "sel_cr0_bug", default_supported, sel_cr0_bug_prepare, sel_cr0_bug_test,
13254c8eb156SJoerg Roedel        sel_cr0_bug_finished, sel_cr0_bug_check },
13268594b943SJoerg Roedel     { "npt_nx", npt_supported, npt_nx_prepare, null_test,
1327ea975120SJoerg Roedel 	    default_finished, npt_nx_check },
1328ea975120SJoerg Roedel     { "npt_us", npt_supported, npt_us_prepare, npt_us_test,
1329ea975120SJoerg Roedel 	    default_finished, npt_us_check },
1330dd6ef43cSJoerg Roedel     { "npt_rsvd", npt_supported, npt_rsvd_prepare, null_test,
1331dd6ef43cSJoerg Roedel 	    default_finished, npt_rsvd_check },
13325ebf82edSJoerg Roedel     { "npt_rw", npt_supported, npt_rw_prepare, npt_rw_test,
13335ebf82edSJoerg Roedel 	    default_finished, npt_rw_check },
1334f6a2ca45SPaolo Bonzini     { "npt_rsvd_pfwalk", npt_supported, npt_rsvd_pfwalk_prepare, null_test,
1335f6a2ca45SPaolo Bonzini 	    default_finished, npt_rsvd_pfwalk_check },
1336f6a2ca45SPaolo Bonzini     { "npt_rw_pfwalk", npt_supported, npt_rw_pfwalk_prepare, null_test,
1337f6a2ca45SPaolo Bonzini 	    default_finished, npt_rw_pfwalk_check },
1338a2ab7740SPaolo Bonzini     { "npt_l1mmio", npt_supported, npt_l1mmio_prepare, npt_l1mmio_test,
1339a2ab7740SPaolo Bonzini 	    default_finished, npt_l1mmio_check },
134069dd444aSPaolo Bonzini     { "npt_rw_l1mmio", npt_supported, npt_rw_l1mmio_prepare, npt_rw_l1mmio_test,
134169dd444aSPaolo Bonzini 	    default_finished, npt_rw_l1mmio_check },
134236a7018aSPaolo Bonzini     { "tsc_adjust", default_supported, tsc_adjust_prepare, tsc_adjust_test,
134336a7018aSPaolo Bonzini        default_finished, tsc_adjust_check },
134421c23154SJoerg Roedel     { "latency_run_exit", default_supported, latency_prepare, latency_test,
134521c23154SJoerg Roedel       latency_finished, latency_check },
1346ef101219SRoedel, Joerg     { "latency_svm_insn", default_supported, lat_svm_insn_prepare, null_test,
1347ef101219SRoedel, Joerg       lat_svm_insn_finished, lat_svm_insn_check },
13487d36db35SAvi Kivity };
13497d36db35SAvi Kivity 
13507d36db35SAvi Kivity int main(int ac, char **av)
13517d36db35SAvi Kivity {
1352a43ed2acSAndrew Jones     int i, nr;
13537d36db35SAvi Kivity     struct vmcb *vmcb;
13547d36db35SAvi Kivity 
13557d36db35SAvi Kivity     setup_vm();
13567d36db35SAvi Kivity     smp_init();
13577d36db35SAvi Kivity 
1358badc98caSKrish Sadhukhan     if (!this_cpu_has(X86_FEATURE_SVM)) {
13597d36db35SAvi Kivity         printf("SVM not availble\n");
136032b9603cSRadim Krčmář         return report_summary();
13617d36db35SAvi Kivity     }
13627d36db35SAvi Kivity 
13637d36db35SAvi Kivity     setup_svm();
13647d36db35SAvi Kivity 
13657d36db35SAvi Kivity     vmcb = alloc_page();
13667d36db35SAvi Kivity 
13677d36db35SAvi Kivity     nr = ARRAY_SIZE(tests);
13687d36db35SAvi Kivity     for (i = 0; i < nr; ++i) {
13697d36db35SAvi Kivity         if (!tests[i].supported())
13707d36db35SAvi Kivity             continue;
1371a43ed2acSAndrew Jones         test_run(&tests[i], vmcb);
13727d36db35SAvi Kivity     }
13737d36db35SAvi Kivity 
1374a43ed2acSAndrew Jones     return report_summary();
13757d36db35SAvi Kivity }
1376