1ae1fae34SPekka Enberg #include "kvm/kvm.h" 2ae1fae34SPekka Enberg 3c78b8713SAsias He #include "kvm/cpufeature.h" 4ce79f1caSPekka Enberg #include "kvm/interrupt.h" 52f3976eeSPekka Enberg #include "kvm/e820.h" 6f3150089SPekka Enberg #include "kvm/util.h" 7eda03319SPekka Enberg 86c7d8514SPekka Enberg #include <linux/kvm.h> 9f5ab5f67SPekka Enberg 10f5ab5f67SPekka Enberg #include <asm/bootparam.h> 11f5ab5f67SPekka Enberg 12ae1fae34SPekka Enberg #include <sys/ioctl.h> 131f9cff23SPekka Enberg #include <inttypes.h> 141f9cff23SPekka Enberg #include <sys/mman.h> 15ce79f1caSPekka Enberg #include <sys/stat.h> 162da26a59SPekka Enberg #include <stdbool.h> 176e5e8b8dSPekka Enberg #include <assert.h> 1806e41eeaSPekka Enberg #include <limits.h> 19ce79f1caSPekka Enberg #include <signal.h> 20f5ab5f67SPekka Enberg #include <stdarg.h> 21b8f6afcdSPekka Enberg #include <stdlib.h> 22f5ab5f67SPekka Enberg #include <string.h> 230d1f17ecSPekka Enberg #include <unistd.h> 241f9cff23SPekka Enberg #include <stdio.h> 25b8f6afcdSPekka Enberg #include <fcntl.h> 26ce79f1caSPekka Enberg #include <time.h> 27b8f6afcdSPekka Enberg 281f9cff23SPekka Enberg /* 291f9cff23SPekka Enberg * Compatibility code. Remove this when we move to tools/kvm. 301f9cff23SPekka Enberg */ 311f9cff23SPekka Enberg #ifndef KVM_EXIT_INTERNAL_ERROR 321f9cff23SPekka Enberg # define KVM_EXIT_INTERNAL_ERROR 17 331f9cff23SPekka Enberg #endif 341f9cff23SPekka Enberg 35ae1fae34SPekka Enberg #define DEFINE_KVM_EXIT_REASON(reason) [reason] = #reason 360d1f17ecSPekka Enberg 37ae1fae34SPekka Enberg const char *kvm_exit_reasons[] = { 38ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_UNKNOWN), 39ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_EXCEPTION), 40ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_IO), 41ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_HYPERCALL), 42ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_DEBUG), 43ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_HLT), 44ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_MMIO), 45ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_IRQ_WINDOW_OPEN), 46ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_SHUTDOWN), 47ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_FAIL_ENTRY), 48ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_INTR), 49ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_SET_TPR), 50ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_TPR_ACCESS), 51ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_S390_SIEIC), 52ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_S390_RESET), 53ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_DCR), 54ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_NMI), 55ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_INTERNAL_ERROR), 569b1fb1c3SPekka Enberg }; 579b1fb1c3SPekka Enberg 5855e19624SCyrill Gorcunov #define DEFINE_KVM_EXT(ext) \ 5955e19624SCyrill Gorcunov .name = #ext, \ 6055e19624SCyrill Gorcunov .code = ext 6155e19624SCyrill Gorcunov 6255e19624SCyrill Gorcunov struct { 6355e19624SCyrill Gorcunov const char *name; 6455e19624SCyrill Gorcunov int code; 6555e19624SCyrill Gorcunov } kvm_req_ext[] = { 6655e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_COALESCED_MMIO) }, 6755e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_SET_TSS_ADDR) }, 6855e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_PIT2) }, 6955e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_USER_MEMORY) }, 7055e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_IRQ_ROUTING) }, 7155e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_IRQCHIP) }, 727c0ec28fSCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_HLT) }, 7355e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_IRQ_INJECT_STATUS) }, 74d38ad31aSCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_EXT_CPUID) }, 7555e19624SCyrill Gorcunov }; 7655e19624SCyrill Gorcunov 77ae1fae34SPekka Enberg static bool kvm__supports_extension(struct kvm *self, unsigned int extension) 78b8f6afcdSPekka Enberg { 7928fa19c0SPekka Enberg int ret; 80b8f6afcdSPekka Enberg 8173ac60e6SPekka Enberg ret = ioctl(self->sys_fd, KVM_CHECK_EXTENSION, extension); 824076b041SPekka Enberg if (ret < 0) 834076b041SPekka Enberg return false; 844076b041SPekka Enberg 854076b041SPekka Enberg return ret; 864076b041SPekka Enberg } 874076b041SPekka Enberg 8855e19624SCyrill Gorcunov static int kvm__check_extensions(struct kvm *self) 8955e19624SCyrill Gorcunov { 9055e19624SCyrill Gorcunov unsigned int i; 9155e19624SCyrill Gorcunov 9255e19624SCyrill Gorcunov for (i = 0; i < ARRAY_SIZE(kvm_req_ext); i++) { 9355e19624SCyrill Gorcunov if (!kvm__supports_extension(self, kvm_req_ext[i].code)) { 9455e19624SCyrill Gorcunov error("Unsuppored KVM extension detected: %s", 9555e19624SCyrill Gorcunov kvm_req_ext[i].name); 9655e19624SCyrill Gorcunov return (int)-i; 9755e19624SCyrill Gorcunov } 9855e19624SCyrill Gorcunov } 9955e19624SCyrill Gorcunov 10055e19624SCyrill Gorcunov return 0; 10155e19624SCyrill Gorcunov } 10255e19624SCyrill Gorcunov 1034076b041SPekka Enberg static struct kvm *kvm__new(void) 1044076b041SPekka Enberg { 1054076b041SPekka Enberg struct kvm *self = calloc(1, sizeof *self); 1064076b041SPekka Enberg 1074076b041SPekka Enberg if (!self) 1084076b041SPekka Enberg die("out of memory"); 1094076b041SPekka Enberg 1104076b041SPekka Enberg return self; 1114076b041SPekka Enberg } 1124076b041SPekka Enberg 1139ef4c68eSPekka Enberg void kvm__delete(struct kvm *self) 1149ef4c68eSPekka Enberg { 1159ef4c68eSPekka Enberg free(self->ram_start); 1169ef4c68eSPekka Enberg free(self); 1179ef4c68eSPekka Enberg } 1189ef4c68eSPekka Enberg 119c78b8713SAsias He static bool kvm__cpu_supports_vm(void) 120c78b8713SAsias He { 121c78b8713SAsias He struct cpuid_regs regs; 122831fbf23SPekka Enberg uint32_t eax_base; 123831fbf23SPekka Enberg int feature; 124c78b8713SAsias He 125c78b8713SAsias He regs = (struct cpuid_regs) { 126831fbf23SPekka Enberg .eax = 0x00, 127c78b8713SAsias He }; 128c78b8713SAsias He host_cpuid(®s); 129c78b8713SAsias He 130ae87afbfSCyrill Gorcunov switch (regs.ebx) { 131ae87afbfSCyrill Gorcunov case CPUID_VENDOR_INTEL_1: 132831fbf23SPekka Enberg eax_base = 0x00; 133831fbf23SPekka Enberg feature = KVM__X86_FEATURE_VMX; 134ae87afbfSCyrill Gorcunov break; 13534649df9SPekka Enberg 136ae87afbfSCyrill Gorcunov case CPUID_VENDOR_AMD_1: 137831fbf23SPekka Enberg eax_base = 0x80000000; 138831fbf23SPekka Enberg feature = KVM__X86_FEATURE_SVM; 139ae87afbfSCyrill Gorcunov break; 14034649df9SPekka Enberg 14134649df9SPekka Enberg default: 14234649df9SPekka Enberg return false; 143ae87afbfSCyrill Gorcunov } 144ae87afbfSCyrill Gorcunov 145831fbf23SPekka Enberg regs = (struct cpuid_regs) { 146831fbf23SPekka Enberg .eax = eax_base, 147831fbf23SPekka Enberg }; 148831fbf23SPekka Enberg host_cpuid(®s); 149831fbf23SPekka Enberg 150831fbf23SPekka Enberg if (regs.eax < eax_base + 0x01) 151831fbf23SPekka Enberg return false; 152831fbf23SPekka Enberg 153831fbf23SPekka Enberg regs = (struct cpuid_regs) { 154831fbf23SPekka Enberg .eax = eax_base + 0x01 155831fbf23SPekka Enberg }; 156831fbf23SPekka Enberg host_cpuid(®s); 157831fbf23SPekka Enberg 158831fbf23SPekka Enberg return regs.ecx & (1 << feature); 159c78b8713SAsias He } 160c78b8713SAsias He 161192a99d1SCyrill Gorcunov struct kvm *kvm__init(const char *kvm_dev, unsigned long ram_size) 1624076b041SPekka Enberg { 1632b0e3342SPekka Enberg struct kvm_userspace_memory_region mem; 1649687927dSAsias He struct kvm_pit_config pit_config = { .flags = 0, }; 1654076b041SPekka Enberg struct kvm *self; 1660d1f17ecSPekka Enberg long page_size; 1671f9cff23SPekka Enberg int mmap_size; 1684076b041SPekka Enberg int ret; 1694076b041SPekka Enberg 170c78b8713SAsias He if (!kvm__cpu_supports_vm()) 171c78b8713SAsias He die("Your CPU does not support hardware virtualization"); 172c78b8713SAsias He 1734076b041SPekka Enberg self = kvm__new(); 1744076b041SPekka Enberg 1756d7c36ceSPekka Enberg self->sys_fd = open(kvm_dev, O_RDWR); 1766d7c36ceSPekka Enberg if (self->sys_fd < 0) { 1776d7c36ceSPekka Enberg if (errno == ENOENT) 178e907b83fSPekka Enberg die("'%s' not found. Please make sure your kernel has CONFIG_KVM enabled and that the KVM modules are loaded.", kvm_dev); 1796d7c36ceSPekka Enberg 180f5ab5f67SPekka Enberg die_perror("open"); 1816d7c36ceSPekka Enberg } 182b8f6afcdSPekka Enberg 18373ac60e6SPekka Enberg ret = ioctl(self->sys_fd, KVM_GET_API_VERSION, 0); 1846c7d8514SPekka Enberg if (ret != KVM_API_VERSION) 185f5ab5f67SPekka Enberg die_perror("KVM_API_VERSION ioctl"); 1866c7d8514SPekka Enberg 18773ac60e6SPekka Enberg self->vm_fd = ioctl(self->sys_fd, KVM_CREATE_VM, 0); 18873ac60e6SPekka Enberg if (self->vm_fd < 0) 189f5ab5f67SPekka Enberg die_perror("KVM_CREATE_VM ioctl"); 19028fa19c0SPekka Enberg 19155e19624SCyrill Gorcunov if (kvm__check_extensions(self)) 19255e19624SCyrill Gorcunov die("A required KVM extention is not supported by OS"); 1939687927dSAsias He 1949687927dSAsias He ret = ioctl(self->vm_fd, KVM_SET_TSS_ADDR, 0xfffbd000); 1959687927dSAsias He if (ret < 0) 1969687927dSAsias He die_perror("KVM_SET_TSS_ADDR ioctl"); 1979687927dSAsias He 1989687927dSAsias He ret = ioctl(self->vm_fd, KVM_CREATE_PIT2, &pit_config); 1999687927dSAsias He if (ret < 0) 2009687927dSAsias He die_perror("KVM_CREATE_PIT2 ioctl"); 2019687927dSAsias He 202192a99d1SCyrill Gorcunov self->ram_size = ram_size; 2030d1f17ecSPekka Enberg 2040d1f17ecSPekka Enberg page_size = sysconf(_SC_PAGESIZE); 2050d1f17ecSPekka Enberg if (posix_memalign(&self->ram_start, page_size, self->ram_size) != 0) 2060d1f17ecSPekka Enberg die("out of memory"); 2070d1f17ecSPekka Enberg 2082b0e3342SPekka Enberg mem = (struct kvm_userspace_memory_region) { 2092b0e3342SPekka Enberg .slot = 0, 2102b0e3342SPekka Enberg .guest_phys_addr = 0x0UL, 2110d1f17ecSPekka Enberg .memory_size = self->ram_size, 2120d1f17ecSPekka Enberg .userspace_addr = (unsigned long) self->ram_start, 2132b0e3342SPekka Enberg }; 2142b0e3342SPekka Enberg 215b6e68186SAsias He ret = ioctl(self->vm_fd, KVM_SET_USER_MEMORY_REGION, &mem); 2162b0e3342SPekka Enberg if (ret < 0) 217f5ab5f67SPekka Enberg die_perror("KVM_SET_USER_MEMORY_REGION ioctl"); 2182b0e3342SPekka Enberg 2199687927dSAsias He ret = ioctl(self->vm_fd, KVM_CREATE_IRQCHIP); 220895c2fefSPekka Enberg if (ret < 0) 2219687927dSAsias He die_perror("KVM_CREATE_IRQCHIP ioctl"); 2229687927dSAsias He 22373ac60e6SPekka Enberg self->vcpu_fd = ioctl(self->vm_fd, KVM_CREATE_VCPU, 0); 2242b0e3342SPekka Enberg if (self->vcpu_fd < 0) 225f5ab5f67SPekka Enberg die_perror("KVM_CREATE_VCPU ioctl"); 2262b0e3342SPekka Enberg 2271f9cff23SPekka Enberg mmap_size = ioctl(self->sys_fd, KVM_GET_VCPU_MMAP_SIZE, 0); 2281f9cff23SPekka Enberg if (mmap_size < 0) 229f5ab5f67SPekka Enberg die_perror("KVM_GET_VCPU_MMAP_SIZE ioctl"); 2301f9cff23SPekka Enberg 2311f9cff23SPekka Enberg self->kvm_run = mmap(NULL, mmap_size, PROT_READ|PROT_WRITE, MAP_SHARED, self->vcpu_fd, 0); 2321f9cff23SPekka Enberg if (self->kvm_run == MAP_FAILED) 2331f9cff23SPekka Enberg die("unable to mmap vcpu fd"); 2341f9cff23SPekka Enberg 2354076b041SPekka Enberg return self; 2364076b041SPekka Enberg } 2374076b041SPekka Enberg 238ae1fae34SPekka Enberg void kvm__enable_singlestep(struct kvm *self) 239aee6632eSPekka Enberg { 240aee6632eSPekka Enberg struct kvm_guest_debug debug = { 241aee6632eSPekka Enberg .control = KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_SINGLESTEP, 242aee6632eSPekka Enberg }; 243aee6632eSPekka Enberg 244aee6632eSPekka Enberg if (ioctl(self->vcpu_fd, KVM_SET_GUEST_DEBUG, &debug) < 0) 245b625d4b6SCyrill Gorcunov warning("KVM_SET_GUEST_DEBUG failed"); 246aee6632eSPekka Enberg } 247aee6632eSPekka Enberg 2485f6772b8SCyrill Gorcunov #define BOOT_LOADER_SELECTOR 0x1000 249b08e9ec4SPekka Enberg #define BOOT_LOADER_IP 0x0000 250dbdb74c2SPekka Enberg #define BOOT_LOADER_SP 0x8000 2512dd4a4edSCyrill Gorcunov #define BOOT_CMDLINE_OFFSET 0x20000 2522dd4a4edSCyrill Gorcunov 2539a4ecdc5SPekka Enberg #define BOOT_PROTOCOL_REQUIRED 0x206 254a43f6460SCyrill Gorcunov #define LOAD_HIGH 0x01 255009b0758SPekka Enberg 256edc8a14dSPekka Enberg static int load_flat_binary(struct kvm *self, int fd) 257009b0758SPekka Enberg { 258009b0758SPekka Enberg void *p; 259009b0758SPekka Enberg int nr; 260009b0758SPekka Enberg 261009b0758SPekka Enberg if (lseek(fd, 0, SEEK_SET) < 0) 262009b0758SPekka Enberg die_perror("lseek"); 263009b0758SPekka Enberg 2646753ed2fSPekka Enberg p = guest_real_to_host(self, BOOT_LOADER_SELECTOR, BOOT_LOADER_IP); 265009b0758SPekka Enberg 266009b0758SPekka Enberg while ((nr = read(fd, p, 65536)) > 0) 267009b0758SPekka Enberg p += nr; 268009b0758SPekka Enberg 269dbdb74c2SPekka Enberg self->boot_selector = BOOT_LOADER_SELECTOR; 270edc8a14dSPekka Enberg self->boot_ip = BOOT_LOADER_IP; 271dbdb74c2SPekka Enberg self->boot_sp = BOOT_LOADER_SP; 272edc8a14dSPekka Enberg 2737fb218bdSPekka Enberg return true; 274009b0758SPekka Enberg } 275009b0758SPekka Enberg 2767fb218bdSPekka Enberg /* 2777fb218bdSPekka Enberg * The protected mode kernel part of a modern bzImage is loaded at 1 MB by 2787fb218bdSPekka Enberg * default. 2797fb218bdSPekka Enberg */ 2807fb218bdSPekka Enberg #define BZ_KERNEL_START 0x100000UL 2812065a6f7SCyrill Gorcunov #define INITRD_START 0x1000000UL 2822065a6f7SCyrill Gorcunov #define BZ_DEFAULT_SETUP_SECTS 4 283ae1fae34SPekka Enberg static const char *BZIMAGE_MAGIC = "HdrS"; 284ae1fae34SPekka Enberg 2852065a6f7SCyrill Gorcunov static bool load_bzimage(struct kvm *self, int fd_kernel, 2862065a6f7SCyrill Gorcunov int fd_initrd, const char *kernel_cmdline) 287ae1fae34SPekka Enberg { 288b9271160SPekka Enberg struct boot_params *kern_boot; 2894b62331fSPekka Enberg unsigned long setup_sects; 290b9271160SPekka Enberg struct boot_params boot; 2912dd4a4edSCyrill Gorcunov size_t cmdline_size; 2927fb218bdSPekka Enberg ssize_t setup_size; 29322489bb0SCyrill Gorcunov void *p; 294ae1fae34SPekka Enberg int nr; 295ae1fae34SPekka Enberg 2965d67eaf6SPekka Enberg /* 2975d67eaf6SPekka Enberg * See Documentation/x86/boot.txt for details no bzImage on-disk and 2985d67eaf6SPekka Enberg * memory layout. 2995d67eaf6SPekka Enberg */ 3005d67eaf6SPekka Enberg 3012065a6f7SCyrill Gorcunov if (lseek(fd_kernel, 0, SEEK_SET) < 0) 302009b0758SPekka Enberg die_perror("lseek"); 303009b0758SPekka Enberg 3040b62d2bbSPekka Enberg if (read(fd_kernel, &boot, sizeof(boot)) != sizeof(boot)) 3052346d461SPekka Enberg return false; 306ae1fae34SPekka Enberg 3070b62d2bbSPekka Enberg if (memcmp(&boot.hdr.header, BZIMAGE_MAGIC, strlen(BZIMAGE_MAGIC))) 3087fb218bdSPekka Enberg return false; 309ae1fae34SPekka Enberg 3102dd4a4edSCyrill Gorcunov if (boot.hdr.version < BOOT_PROTOCOL_REQUIRED) { 3110b62d2bbSPekka Enberg die("Too old kernel"); 312ad681038SCyrill Gorcunov } 313ad681038SCyrill Gorcunov 3142065a6f7SCyrill Gorcunov if (lseek(fd_kernel, 0, SEEK_SET) < 0) 315e93ab78aSPekka Enberg die_perror("lseek"); 316e93ab78aSPekka Enberg 3174cf542bbSCyrill Gorcunov if (!boot.hdr.setup_sects) 3184cf542bbSCyrill Gorcunov boot.hdr.setup_sects = BZ_DEFAULT_SETUP_SECTS; 31910943d14SPekka Enberg setup_sects = boot.hdr.setup_sects + 1; 32010943d14SPekka Enberg 32154d4a626SPekka Enberg setup_size = setup_sects << 9; 3226753ed2fSPekka Enberg p = guest_real_to_host(self, BOOT_LOADER_SELECTOR, BOOT_LOADER_IP); 323ae1fae34SPekka Enberg 3242065a6f7SCyrill Gorcunov /* copy setup.bin to mem*/ 3252065a6f7SCyrill Gorcunov if (read(fd_kernel, p, setup_size) != setup_size) 3267fb218bdSPekka Enberg die_perror("read"); 3277fb218bdSPekka Enberg 3282065a6f7SCyrill Gorcunov /* copy vmlinux.bin to BZ_KERNEL_START*/ 3296753ed2fSPekka Enberg p = guest_flat_to_host(self, BZ_KERNEL_START); 330ae1fae34SPekka Enberg 3312065a6f7SCyrill Gorcunov while ((nr = read(fd_kernel, p, 65536)) > 0) 332ae1fae34SPekka Enberg p += nr; 333ae1fae34SPekka Enberg 334a43f6460SCyrill Gorcunov p = guest_flat_to_host(self, BOOT_CMDLINE_OFFSET); 335debcfac0SCyrill Gorcunov if (kernel_cmdline) { 336debcfac0SCyrill Gorcunov cmdline_size = strlen(kernel_cmdline) + 1; 337debcfac0SCyrill Gorcunov if (cmdline_size > boot.hdr.cmdline_size) 338debcfac0SCyrill Gorcunov cmdline_size = boot.hdr.cmdline_size; 339ad681038SCyrill Gorcunov 3402dd4a4edSCyrill Gorcunov memset(p, 0, boot.hdr.cmdline_size); 3412dd4a4edSCyrill Gorcunov memcpy(p, kernel_cmdline, cmdline_size - 1); 342debcfac0SCyrill Gorcunov } 343debcfac0SCyrill Gorcunov 344b9271160SPekka Enberg kern_boot = guest_real_to_host(self, BOOT_LOADER_SELECTOR, 0x00); 345a43f6460SCyrill Gorcunov 346b9271160SPekka Enberg kern_boot->hdr.cmd_line_ptr = BOOT_CMDLINE_OFFSET; 347b9271160SPekka Enberg kern_boot->hdr.type_of_loader = 0xff; 348b9271160SPekka Enberg kern_boot->hdr.heap_end_ptr = 0xfe00; 349b9271160SPekka Enberg kern_boot->hdr.loadflags |= CAN_USE_HEAP; 350a43f6460SCyrill Gorcunov 3512065a6f7SCyrill Gorcunov /* 3522065a6f7SCyrill Gorcunov * Read initrd image into guest memory 3532065a6f7SCyrill Gorcunov */ 3542065a6f7SCyrill Gorcunov if (fd_initrd >= 0) { 3552065a6f7SCyrill Gorcunov struct stat initrd_stat; 3562065a6f7SCyrill Gorcunov unsigned long addr; 3572065a6f7SCyrill Gorcunov 3582065a6f7SCyrill Gorcunov if (fstat(fd_initrd, &initrd_stat)) 3592065a6f7SCyrill Gorcunov die_perror("fstat"); 3602065a6f7SCyrill Gorcunov 3612065a6f7SCyrill Gorcunov addr = boot.hdr.initrd_addr_max & ~0xfffff; 3622065a6f7SCyrill Gorcunov for (;;) { 3632065a6f7SCyrill Gorcunov if (addr < BZ_KERNEL_START) 3642065a6f7SCyrill Gorcunov die("Not enough memory for initrd"); 3652065a6f7SCyrill Gorcunov else if (addr < (self->ram_size - initrd_stat.st_size)) 3662065a6f7SCyrill Gorcunov break; 3672065a6f7SCyrill Gorcunov addr -= 0x100000; 3682065a6f7SCyrill Gorcunov } 3692065a6f7SCyrill Gorcunov 3702065a6f7SCyrill Gorcunov p = guest_flat_to_host(self, addr); 3712065a6f7SCyrill Gorcunov nr = read(fd_initrd, p, initrd_stat.st_size); 3722065a6f7SCyrill Gorcunov if (nr != initrd_stat.st_size) 3732065a6f7SCyrill Gorcunov die("Failed to read initrd"); 3742065a6f7SCyrill Gorcunov 3752065a6f7SCyrill Gorcunov kern_boot->hdr.ramdisk_image = addr; 3762065a6f7SCyrill Gorcunov kern_boot->hdr.ramdisk_size = initrd_stat.st_size; 3772065a6f7SCyrill Gorcunov } 3782065a6f7SCyrill Gorcunov 379dbdb74c2SPekka Enberg self->boot_selector = BOOT_LOADER_SELECTOR; 380edc8a14dSPekka Enberg /* 381edc8a14dSPekka Enberg * The real-mode setup code starts at offset 0x200 of a bzImage. See 382edc8a14dSPekka Enberg * Documentation/x86/boot.txt for details. 383edc8a14dSPekka Enberg */ 384edc8a14dSPekka Enberg self->boot_ip = BOOT_LOADER_IP + 0x200; 385dbdb74c2SPekka Enberg self->boot_sp = BOOT_LOADER_SP; 386edc8a14dSPekka Enberg 3877fb218bdSPekka Enberg return true; 388ae1fae34SPekka Enberg } 389ae1fae34SPekka Enberg 3906d1f350dSCyrill Gorcunov bool kvm__load_kernel(struct kvm *kvm, const char *kernel_filename, 3912065a6f7SCyrill Gorcunov const char *initrd_filename, const char *kernel_cmdline) 392ae1fae34SPekka Enberg { 3937fb218bdSPekka Enberg bool ret; 3942065a6f7SCyrill Gorcunov int fd_kernel = -1, fd_initrd = -1; 395ae1fae34SPekka Enberg 3962065a6f7SCyrill Gorcunov fd_kernel = open(kernel_filename, O_RDONLY); 3972065a6f7SCyrill Gorcunov if (fd_kernel < 0) 3980b62d2bbSPekka Enberg die("Unable to open kernel %s", kernel_filename); 399ae1fae34SPekka Enberg 4002065a6f7SCyrill Gorcunov if (initrd_filename) { 4012065a6f7SCyrill Gorcunov fd_initrd = open(initrd_filename, O_RDONLY); 4022065a6f7SCyrill Gorcunov if (fd_initrd < 0) 4030b62d2bbSPekka Enberg die("Unable to open initrd %s", initrd_filename); 4042065a6f7SCyrill Gorcunov } 4052065a6f7SCyrill Gorcunov 4062065a6f7SCyrill Gorcunov ret = load_bzimage(kvm, fd_kernel, fd_initrd, kernel_cmdline); 40728972750SCyrill Gorcunov 40828972750SCyrill Gorcunov if (initrd_filename) 40928972750SCyrill Gorcunov close(fd_initrd); 41028972750SCyrill Gorcunov 411009b0758SPekka Enberg if (ret) 412009b0758SPekka Enberg goto found_kernel; 413ae1fae34SPekka Enberg 4140b62d2bbSPekka Enberg warning("%s is not a bzImage. Trying to load it as a flat binary...", kernel_filename); 4150b62d2bbSPekka Enberg 4162065a6f7SCyrill Gorcunov ret = load_flat_binary(kvm, fd_kernel); 417009b0758SPekka Enberg if (ret) 418009b0758SPekka Enberg goto found_kernel; 419009b0758SPekka Enberg 420009b0758SPekka Enberg die("%s is not a valid bzImage or flat binary", kernel_filename); 421009b0758SPekka Enberg 422009b0758SPekka Enberg found_kernel: 423ae1fae34SPekka Enberg return ret; 424ae1fae34SPekka Enberg } 425ae1fae34SPekka Enberg 42606e41eeaSPekka Enberg static inline uint64_t ip_flat_to_real(struct kvm *self, uint64_t ip) 42706e41eeaSPekka Enberg { 42806e41eeaSPekka Enberg uint64_t cs = self->sregs.cs.selector; 42906e41eeaSPekka Enberg 43006e41eeaSPekka Enberg return ip - (cs << 4); 43106e41eeaSPekka Enberg } 43206e41eeaSPekka Enberg 433f01944c8SPekka Enberg static inline bool is_in_protected_mode(struct kvm *self) 434f01944c8SPekka Enberg { 435f01944c8SPekka Enberg return self->sregs.cr0 & 0x01; 436f01944c8SPekka Enberg } 437f01944c8SPekka Enberg 438f326512aSPekka Enberg static inline uint64_t ip_to_flat(struct kvm *self, uint64_t ip) 43906e41eeaSPekka Enberg { 440f326512aSPekka Enberg uint64_t cs; 441f326512aSPekka Enberg 442f326512aSPekka Enberg /* 443f326512aSPekka Enberg * NOTE! We should take code segment base address into account here. 444f326512aSPekka Enberg * Luckily it's usually zero because Linux uses flat memory model. 445f326512aSPekka Enberg */ 446f01944c8SPekka Enberg if (is_in_protected_mode(self)) 447f326512aSPekka Enberg return ip; 448f326512aSPekka Enberg 449f326512aSPekka Enberg cs = self->sregs.cs.selector; 45006e41eeaSPekka Enberg 45106e41eeaSPekka Enberg return ip + (cs << 4); 45206e41eeaSPekka Enberg } 45306e41eeaSPekka Enberg 454dbdb74c2SPekka Enberg static inline uint32_t selector_to_base(uint16_t selector) 455dbdb74c2SPekka Enberg { 456dbdb74c2SPekka Enberg /* 457dbdb74c2SPekka Enberg * KVM on Intel requires 'base' to be 'selector * 16' in real mode. 458dbdb74c2SPekka Enberg */ 459dbdb74c2SPekka Enberg return (uint32_t)selector * 16; 460dbdb74c2SPekka Enberg } 461dbdb74c2SPekka Enberg 46253d48714SPekka Enberg static struct kvm_msrs *kvm_msrs__new(size_t nmsrs) 46353d48714SPekka Enberg { 46453d48714SPekka Enberg struct kvm_msrs *self = calloc(1, sizeof(*self) + (sizeof(struct kvm_msr_entry) * nmsrs)); 46553d48714SPekka Enberg 46653d48714SPekka Enberg if (!self) 46753d48714SPekka Enberg die("out of memory"); 46853d48714SPekka Enberg 46953d48714SPekka Enberg return self; 47053d48714SPekka Enberg } 47153d48714SPekka Enberg 47253d48714SPekka Enberg #define MSR_IA32_TIME_STAMP_COUNTER 0x10 47353d48714SPekka Enberg 47453d48714SPekka Enberg #define MSR_IA32_SYSENTER_CS 0x174 47553d48714SPekka Enberg #define MSR_IA32_SYSENTER_ESP 0x175 47653d48714SPekka Enberg #define MSR_IA32_SYSENTER_EIP 0x176 47753d48714SPekka Enberg 47853d48714SPekka Enberg #define MSR_IA32_STAR 0xc0000081 47953d48714SPekka Enberg #define MSR_IA32_LSTAR 0xc0000082 48053d48714SPekka Enberg #define MSR_IA32_CSTAR 0xc0000083 48153d48714SPekka Enberg #define MSR_IA32_FMASK 0xc0000084 48253d48714SPekka Enberg #define MSR_IA32_KERNEL_GS_BASE 0xc0000102 48353d48714SPekka Enberg 48453d48714SPekka Enberg #define KVM_MSR_ENTRY(_index, _data) \ 48553d48714SPekka Enberg (struct kvm_msr_entry) { .index = _index, .data = _data } 48653d48714SPekka Enberg 48753d48714SPekka Enberg static void kvm__setup_msrs(struct kvm *self) 48853d48714SPekka Enberg { 48953d48714SPekka Enberg unsigned long ndx = 0; 49053d48714SPekka Enberg 49153d48714SPekka Enberg self->msrs = kvm_msrs__new(100); 49253d48714SPekka Enberg 49353d48714SPekka Enberg self->msrs->entries[ndx++] = KVM_MSR_ENTRY(MSR_IA32_SYSENTER_CS, 0x0); 49453d48714SPekka Enberg self->msrs->entries[ndx++] = KVM_MSR_ENTRY(MSR_IA32_SYSENTER_ESP, 0x0); 49553d48714SPekka Enberg self->msrs->entries[ndx++] = KVM_MSR_ENTRY(MSR_IA32_SYSENTER_EIP, 0x0); 4968b334abcSCyrill Gorcunov #ifdef CONFIG_X86_64 49753d48714SPekka Enberg self->msrs->entries[ndx++] = KVM_MSR_ENTRY(MSR_IA32_STAR, 0x0); 49853d48714SPekka Enberg self->msrs->entries[ndx++] = KVM_MSR_ENTRY(MSR_IA32_CSTAR, 0x0); 49953d48714SPekka Enberg self->msrs->entries[ndx++] = KVM_MSR_ENTRY(MSR_IA32_KERNEL_GS_BASE, 0x0); 50053d48714SPekka Enberg self->msrs->entries[ndx++] = KVM_MSR_ENTRY(MSR_IA32_FMASK, 0x0); 50153d48714SPekka Enberg self->msrs->entries[ndx++] = KVM_MSR_ENTRY(MSR_IA32_LSTAR, 0x0); 50244069a9dSCyrill Gorcunov #endif 50353d48714SPekka Enberg self->msrs->entries[ndx++] = KVM_MSR_ENTRY(MSR_IA32_TIME_STAMP_COUNTER, 0x0); 50453d48714SPekka Enberg 50553d48714SPekka Enberg self->msrs->nmsrs = ndx; 50653d48714SPekka Enberg 50753d48714SPekka Enberg if (ioctl(self->vcpu_fd, KVM_SET_MSRS, self->msrs) < 0) 50853d48714SPekka Enberg die_perror("KVM_SET_MSRS failed"); 50953d48714SPekka Enberg } 51053d48714SPekka Enberg 5113d78d3a5SPekka Enberg static void kvm__setup_fpu(struct kvm *self) 5123d78d3a5SPekka Enberg { 5133d78d3a5SPekka Enberg self->fpu = (struct kvm_fpu) { 5143d78d3a5SPekka Enberg .fcw = 0x37f, 5153d78d3a5SPekka Enberg .mxcsr = 0x1f80, 5163d78d3a5SPekka Enberg }; 5173d78d3a5SPekka Enberg 5183d78d3a5SPekka Enberg if (ioctl(self->vcpu_fd, KVM_SET_FPU, &self->fpu) < 0) 5193d78d3a5SPekka Enberg die_perror("KVM_SET_FPU failed"); 5203d78d3a5SPekka Enberg } 5213d78d3a5SPekka Enberg 5223d78d3a5SPekka Enberg static void kvm__setup_regs(struct kvm *self) 5233d78d3a5SPekka Enberg { 5243d78d3a5SPekka Enberg self->regs = (struct kvm_regs) { 5253d78d3a5SPekka Enberg /* We start the guest in 16-bit real mode */ 5263d78d3a5SPekka Enberg .rflags = 0x0000000000000002ULL, 5273d78d3a5SPekka Enberg 5283d78d3a5SPekka Enberg .rip = self->boot_ip, 5293d78d3a5SPekka Enberg .rsp = self->boot_sp, 5303d78d3a5SPekka Enberg .rbp = self->boot_sp, 5313d78d3a5SPekka Enberg }; 5323d78d3a5SPekka Enberg 5333d78d3a5SPekka Enberg if (self->regs.rip > USHRT_MAX) 5343d78d3a5SPekka Enberg die("ip 0x%" PRIx64 " is too high for real mode", (uint64_t) self->regs.rip); 5353d78d3a5SPekka Enberg 5363d78d3a5SPekka Enberg if (ioctl(self->vcpu_fd, KVM_SET_REGS, &self->regs) < 0) 5373d78d3a5SPekka Enberg die_perror("KVM_SET_REGS failed"); 5383d78d3a5SPekka Enberg } 5393d78d3a5SPekka Enberg 5403d78d3a5SPekka Enberg static void kvm__setup_sregs(struct kvm *self) 541ae1fae34SPekka Enberg { 54253602077SPekka Enberg 5430ed849e6SAsias He if (ioctl(self->vcpu_fd, KVM_GET_SREGS, &self->sregs) < 0) 5440ed849e6SAsias He die_perror("KVM_GET_SREGS failed"); 5454a7c140aSAsias He 5460ed849e6SAsias He self->sregs.cs.selector = self->boot_selector; 5470ed849e6SAsias He self->sregs.cs.base = selector_to_base(self->boot_selector); 5484e42cf94SAsias He self->sregs.ss.selector = self->boot_selector; 5494e42cf94SAsias He self->sregs.ss.base = selector_to_base(self->boot_selector); 5504e42cf94SAsias He self->sregs.ds.selector = self->boot_selector; 5514e42cf94SAsias He self->sregs.ds.base = selector_to_base(self->boot_selector); 5524e42cf94SAsias He self->sregs.es.selector = self->boot_selector; 5534e42cf94SAsias He self->sregs.es.base = selector_to_base(self->boot_selector); 5544e42cf94SAsias He self->sregs.fs.selector = self->boot_selector; 5554e42cf94SAsias He self->sregs.fs.base = selector_to_base(self->boot_selector); 5564e42cf94SAsias He self->sregs.gs.selector = self->boot_selector; 5574e42cf94SAsias He self->sregs.gs.base = selector_to_base(self->boot_selector); 5584a7c140aSAsias He 55953602077SPekka Enberg if (ioctl(self->vcpu_fd, KVM_SET_SREGS, &self->sregs) < 0) 56053602077SPekka Enberg die_perror("KVM_SET_SREGS failed"); 5613d78d3a5SPekka Enberg } 56206e41eeaSPekka Enberg 563*6f7265caSCyrill Gorcunov /** 564*6f7265caSCyrill Gorcunov * kvm__reset_vcpu - reset virtual CPU to a known state 565*6f7265caSCyrill Gorcunov */ 5663d78d3a5SPekka Enberg void kvm__reset_vcpu(struct kvm *self) 5673d78d3a5SPekka Enberg { 5683d78d3a5SPekka Enberg kvm__setup_sregs(self); 5693d78d3a5SPekka Enberg kvm__setup_regs(self); 5703d78d3a5SPekka Enberg kvm__setup_fpu(self); 57153d48714SPekka Enberg kvm__setup_msrs(self); 572ae1fae34SPekka Enberg } 573ae1fae34SPekka Enberg 5742f3976eeSPekka Enberg void kvm__setup_mem(struct kvm *self) 5752f3976eeSPekka Enberg { 5762f3976eeSPekka Enberg struct e820_entry *mem_map; 5772f3976eeSPekka Enberg unsigned char *size; 5782f3976eeSPekka Enberg 5792f3976eeSPekka Enberg size = guest_flat_to_host(self, E820_MAP_SIZE); 5802f3976eeSPekka Enberg mem_map = guest_flat_to_host(self, E820_MAP_START); 5812f3976eeSPekka Enberg 5822f3976eeSPekka Enberg *size = 4; 5832f3976eeSPekka Enberg 5842f3976eeSPekka Enberg mem_map[0] = (struct e820_entry) { 5852f3976eeSPekka Enberg .addr = REAL_MODE_IVT_BEGIN, 586b6542188SCyrill Gorcunov .size = EBDA_START - REAL_MODE_IVT_BEGIN, 5872f3976eeSPekka Enberg .type = E820_MEM_USABLE, 5882f3976eeSPekka Enberg }; 589b6542188SCyrill Gorcunov mem_map[1] = (struct e820_entry) { 590b6542188SCyrill Gorcunov .addr = EBDA_START, 591b6542188SCyrill Gorcunov .size = VGA_RAM_BEGIN - EBDA_START, 592b6542188SCyrill Gorcunov .type = E820_MEM_RESERVED, 593b6542188SCyrill Gorcunov }; 5942f3976eeSPekka Enberg mem_map[2] = (struct e820_entry) { 595b6542188SCyrill Gorcunov .addr = MB_BIOS_BEGIN, 596b6542188SCyrill Gorcunov .size = MB_BIOS_END - MB_BIOS_BEGIN, 5972f3976eeSPekka Enberg .type = E820_MEM_RESERVED, 5982f3976eeSPekka Enberg }; 5992f3976eeSPekka Enberg mem_map[3] = (struct e820_entry) { 6002f3976eeSPekka Enberg .addr = BZ_KERNEL_START, 6012f3976eeSPekka Enberg .size = self->ram_size - BZ_KERNEL_START, 6022f3976eeSPekka Enberg .type = E820_MEM_USABLE, 6032f3976eeSPekka Enberg }; 6042f3976eeSPekka Enberg } 6052f3976eeSPekka Enberg 606ce79f1caSPekka Enberg #define TIMER_INTERVAL_NS 1000000 /* 1 msec */ 607ce79f1caSPekka Enberg 608ce79f1caSPekka Enberg static void alarm_handler(int sig) 609ce79f1caSPekka Enberg { 610ce79f1caSPekka Enberg } 611ce79f1caSPekka Enberg 612ce79f1caSPekka Enberg /* 613ce79f1caSPekka Enberg * This function sets up a timer that's used to inject interrupts from the 614ce79f1caSPekka Enberg * userspace hypervisor into the guest at periodical intervals. Please note 615ce79f1caSPekka Enberg * that clock interrupt, for example, is not handled here. 616ce79f1caSPekka Enberg */ 617ce79f1caSPekka Enberg void kvm__start_timer(struct kvm *self) 618ce79f1caSPekka Enberg { 619ce79f1caSPekka Enberg struct itimerspec its; 620ce79f1caSPekka Enberg struct sigaction sa; 621ce79f1caSPekka Enberg struct sigevent sev; 622ce79f1caSPekka Enberg 623ce79f1caSPekka Enberg sigfillset(&sa.sa_mask); 624ce79f1caSPekka Enberg sa.sa_flags = 0; 625ce79f1caSPekka Enberg sa.sa_handler = alarm_handler; 626ce79f1caSPekka Enberg 627ce79f1caSPekka Enberg sigaction(SIGALRM, &sa, NULL); 628ce79f1caSPekka Enberg 629ce79f1caSPekka Enberg memset(&sev, 0, sizeof(struct sigevent)); 630ce79f1caSPekka Enberg sev.sigev_value.sival_int = 0; 631ce79f1caSPekka Enberg sev.sigev_notify = SIGEV_SIGNAL; 632ce79f1caSPekka Enberg sev.sigev_signo = SIGALRM; 633ce79f1caSPekka Enberg 634ce79f1caSPekka Enberg if (timer_create(CLOCK_REALTIME, &sev, &self->timerid) < 0) 635ce79f1caSPekka Enberg die("timer_create()"); 636ce79f1caSPekka Enberg 637ce79f1caSPekka Enberg its.it_value.tv_sec = TIMER_INTERVAL_NS / 1000000000; 638ce79f1caSPekka Enberg its.it_value.tv_nsec = TIMER_INTERVAL_NS % 1000000000; 639ce79f1caSPekka Enberg its.it_interval.tv_sec = its.it_value.tv_sec; 640ce79f1caSPekka Enberg its.it_interval.tv_nsec = its.it_value.tv_nsec; 641ce79f1caSPekka Enberg 642ce79f1caSPekka Enberg if (timer_settime(self->timerid, 0, &its, NULL) < 0) 643ce79f1caSPekka Enberg die("timer_settime()"); 644ce79f1caSPekka Enberg } 645ce79f1caSPekka Enberg 646ae1fae34SPekka Enberg void kvm__run(struct kvm *self) 647ae1fae34SPekka Enberg { 6488bb34e0dSPekka Enberg int err; 6498bb34e0dSPekka Enberg 6508bb34e0dSPekka Enberg err = ioctl(self->vcpu_fd, KVM_RUN, 0); 6518bb34e0dSPekka Enberg if (err && (errno != EINTR && errno != EAGAIN)) 652ae1fae34SPekka Enberg die_perror("KVM_RUN failed"); 653ae1fae34SPekka Enberg } 654ae1fae34SPekka Enberg 6558b1ff07eSPekka Enberg void kvm__irq_line(struct kvm *self, int irq, int level) 6568b1ff07eSPekka Enberg { 6578b1ff07eSPekka Enberg struct kvm_irq_level irq_level; 6588b1ff07eSPekka Enberg 6598b1ff07eSPekka Enberg irq_level = (struct kvm_irq_level) { 6608b1ff07eSPekka Enberg { 6618b1ff07eSPekka Enberg .irq = irq, 6628b1ff07eSPekka Enberg }, 6638b1ff07eSPekka Enberg .level = level, 6648b1ff07eSPekka Enberg }; 6658b1ff07eSPekka Enberg 6668b1ff07eSPekka Enberg if (ioctl(self->vm_fd, KVM_IRQ_LINE, &irq_level) < 0) 6678b1ff07eSPekka Enberg die_perror("KVM_IRQ_LINE failed"); 6688b1ff07eSPekka Enberg } 6698b1ff07eSPekka Enberg 6708351aaddSPekka Enberg static void print_dtable(const char *name, struct kvm_dtable *dtable) 6718351aaddSPekka Enberg { 6728351aaddSPekka Enberg printf(" %s %016" PRIx64 " %08" PRIx16 "\n", 6738351aaddSPekka Enberg name, (uint64_t) dtable->base, (uint16_t) dtable->limit); 6748351aaddSPekka Enberg } 6758351aaddSPekka Enberg 67653602077SPekka Enberg static void print_segment(const char *name, struct kvm_segment *seg) 67753602077SPekka Enberg { 678ce556636SPekka Enberg printf(" %s %04" PRIx16 " %016" PRIx64 " %08" PRIx32 " %02" PRIx8 " %x %x %x %x %x %x %x\n", 67953602077SPekka Enberg name, (uint16_t) seg->selector, (uint64_t) seg->base, (uint32_t) seg->limit, 680ce556636SPekka Enberg (uint8_t) seg->type, seg->present, seg->dpl, seg->db, seg->s, seg->l, seg->g, seg->avl); 68153602077SPekka Enberg } 68253602077SPekka Enberg 683ae1fae34SPekka Enberg void kvm__show_registers(struct kvm *self) 6847118d2caSPekka Enberg { 68553602077SPekka Enberg unsigned long cr0, cr2, cr3; 68653602077SPekka Enberg unsigned long cr4, cr8; 6877118d2caSPekka Enberg unsigned long rax, rbx, rcx; 6887118d2caSPekka Enberg unsigned long rdx, rsi, rdi; 6897118d2caSPekka Enberg unsigned long rbp, r8, r9; 6907118d2caSPekka Enberg unsigned long r10, r11, r12; 6917118d2caSPekka Enberg unsigned long r13, r14, r15; 6927118d2caSPekka Enberg unsigned long rip, rsp; 69353602077SPekka Enberg struct kvm_sregs sregs; 694a2fe6199SPekka Enberg unsigned long rflags; 6957118d2caSPekka Enberg struct kvm_regs regs; 696ce5e0ecbSPekka Enberg int i; 6977118d2caSPekka Enberg 6987118d2caSPekka Enberg if (ioctl(self->vcpu_fd, KVM_GET_REGS, ®s) < 0) 6997118d2caSPekka Enberg die("KVM_GET_REGS failed"); 7007118d2caSPekka Enberg 701a2fe6199SPekka Enberg rflags = regs.rflags; 702a2fe6199SPekka Enberg 7037118d2caSPekka Enberg rip = regs.rip; rsp = regs.rsp; 7047118d2caSPekka Enberg rax = regs.rax; rbx = regs.rbx; rcx = regs.rcx; 7057118d2caSPekka Enberg rdx = regs.rdx; rsi = regs.rsi; rdi = regs.rdi; 7067118d2caSPekka Enberg rbp = regs.rbp; r8 = regs.r8; r9 = regs.r9; 7077118d2caSPekka Enberg r10 = regs.r10; r11 = regs.r11; r12 = regs.r12; 7087118d2caSPekka Enberg r13 = regs.r13; r14 = regs.r14; r15 = regs.r15; 7097118d2caSPekka Enberg 7107118d2caSPekka Enberg printf("Registers:\n"); 7112177ec43SPekka Enberg printf(" rip: %016lx rsp: %016lx flags: %016lx\n", rip, rsp, rflags); 712ea2e4ea0SCyrill Gorcunov printf(" rax: %016lx rbx: %016lx rcx: %016lx\n", rax, rbx, rcx); 7137118d2caSPekka Enberg printf(" rdx: %016lx rsi: %016lx rdi: %016lx\n", rdx, rsi, rdi); 7147118d2caSPekka Enberg printf(" rbp: %016lx r8: %016lx r9: %016lx\n", rbp, r8, r9); 7157118d2caSPekka Enberg printf(" r10: %016lx r11: %016lx r12: %016lx\n", r10, r11, r12); 7167118d2caSPekka Enberg printf(" r13: %016lx r14: %016lx r15: %016lx\n", r13, r14, r15); 71753602077SPekka Enberg 71853602077SPekka Enberg if (ioctl(self->vcpu_fd, KVM_GET_SREGS, &sregs) < 0) 71953602077SPekka Enberg die("KVM_GET_REGS failed"); 72053602077SPekka Enberg 72153602077SPekka Enberg cr0 = sregs.cr0; cr2 = sregs.cr2; cr3 = sregs.cr3; 72253602077SPekka Enberg cr4 = sregs.cr4; cr8 = sregs.cr8; 72353602077SPekka Enberg 72453602077SPekka Enberg printf(" cr0: %016lx cr2: %016lx cr3: %016lx\n", cr0, cr2, cr3); 72553602077SPekka Enberg printf(" cr4: %016lx cr8: %016lx\n", cr4, cr8); 726ce5e0ecbSPekka Enberg printf("Segment registers:\n"); 727ce556636SPekka Enberg printf(" register selector base limit type p dpl db s l g avl\n"); 72853602077SPekka Enberg print_segment("cs ", &sregs.cs); 72953602077SPekka Enberg print_segment("ss ", &sregs.ss); 73053602077SPekka Enberg print_segment("ds ", &sregs.ds); 73153602077SPekka Enberg print_segment("es ", &sregs.es); 73253602077SPekka Enberg print_segment("fs ", &sregs.fs); 73353602077SPekka Enberg print_segment("gs ", &sregs.gs); 734ce5e0ecbSPekka Enberg print_segment("tr ", &sregs.tr); 735ce5e0ecbSPekka Enberg print_segment("ldt", &sregs.ldt); 7368351aaddSPekka Enberg print_dtable("gdt", &sregs.gdt); 7378351aaddSPekka Enberg print_dtable("idt", &sregs.idt); 7380f9983b2SCyrill Gorcunov printf(" [ efer: %016" PRIx64 " apic base: %016" PRIx64 " nmi: %s ]\n", 7390f9983b2SCyrill Gorcunov (uint64_t) sregs.efer, (uint64_t) sregs.apic_base, 7402049569dSPekka Enberg (self->nmi_disabled ? "disabled" : "enabled")); 741ce5e0ecbSPekka Enberg printf("Interrupt bitmap:\n"); 742ce5e0ecbSPekka Enberg printf(" "); 743ce5e0ecbSPekka Enberg for (i = 0; i < (KVM_NR_INTERRUPTS + 63) / 64; i++) 7440f9983b2SCyrill Gorcunov printf("%016" PRIx64 " ", (uint64_t) sregs.interrupt_bitmap[i]); 745ce5e0ecbSPekka Enberg printf("\n"); 7467118d2caSPekka Enberg } 7477118d2caSPekka Enberg 748ae1fae34SPekka Enberg void kvm__show_code(struct kvm *self) 7496f10be05SPekka Enberg { 7506f10be05SPekka Enberg unsigned int code_bytes = 64; 7516f10be05SPekka Enberg unsigned int code_prologue = code_bytes * 43 / 64; 7526f10be05SPekka Enberg unsigned int code_len = code_bytes; 7536f10be05SPekka Enberg unsigned char c; 754ae1fae34SPekka Enberg unsigned int i; 7556f10be05SPekka Enberg uint8_t *ip; 7566f10be05SPekka Enberg 7572a601aafSPekka Enberg if (ioctl(self->vcpu_fd, KVM_GET_REGS, &self->regs) < 0) 7582a601aafSPekka Enberg die("KVM_GET_REGS failed"); 7592a601aafSPekka Enberg 7602a601aafSPekka Enberg if (ioctl(self->vcpu_fd, KVM_GET_SREGS, &self->sregs) < 0) 7612a601aafSPekka Enberg die("KVM_GET_SREGS failed"); 7622a601aafSPekka Enberg 763f326512aSPekka Enberg ip = guest_flat_to_host(self, ip_to_flat(self, self->regs.rip) - code_prologue); 7646f10be05SPekka Enberg 7656f10be05SPekka Enberg printf("Code: "); 7666f10be05SPekka Enberg 7676f10be05SPekka Enberg for (i = 0; i < code_len; i++, ip++) { 76848cf3877SPekka Enberg if (!host_ptr_in_ram(self, ip)) 76948cf3877SPekka Enberg break; 77048cf3877SPekka Enberg 7716e8abc38SPekka Enberg c = *ip; 7726e8abc38SPekka Enberg 773f326512aSPekka Enberg if (ip == guest_flat_to_host(self, ip_to_flat(self, self->regs.rip))) 7746f10be05SPekka Enberg printf("<%02x> ", c); 7756f10be05SPekka Enberg else 7766f10be05SPekka Enberg printf("%02x ", c); 7776f10be05SPekka Enberg } 7786f10be05SPekka Enberg 7796f10be05SPekka Enberg printf("\n"); 7802a7d39a4SPekka Enberg 7812a7d39a4SPekka Enberg printf("Stack:\n"); 7822a7d39a4SPekka Enberg kvm__dump_mem(self, self->regs.rsp, 32); 7836f10be05SPekka Enberg } 784090f898eSCyrill Gorcunov 785f01944c8SPekka Enberg void kvm__show_page_tables(struct kvm *self) 786f01944c8SPekka Enberg { 787f01944c8SPekka Enberg uint64_t *pte1; 788f01944c8SPekka Enberg uint64_t *pte2; 789f01944c8SPekka Enberg uint64_t *pte3; 790f01944c8SPekka Enberg uint64_t *pte4; 791f01944c8SPekka Enberg 792f01944c8SPekka Enberg if (!is_in_protected_mode(self)) 793f01944c8SPekka Enberg return; 794f01944c8SPekka Enberg 795f01944c8SPekka Enberg if (ioctl(self->vcpu_fd, KVM_GET_SREGS, &self->sregs) < 0) 796f01944c8SPekka Enberg die("KVM_GET_SREGS failed"); 797f01944c8SPekka Enberg 798f01944c8SPekka Enberg pte4 = guest_flat_to_host(self, self->sregs.cr3); 79948cf3877SPekka Enberg if (!host_ptr_in_ram(self, pte4)) 80048cf3877SPekka Enberg return; 80148cf3877SPekka Enberg 802f01944c8SPekka Enberg pte3 = guest_flat_to_host(self, (*pte4 & ~0xfff)); 80348cf3877SPekka Enberg if (!host_ptr_in_ram(self, pte3)) 80448cf3877SPekka Enberg return; 80548cf3877SPekka Enberg 806f01944c8SPekka Enberg pte2 = guest_flat_to_host(self, (*pte3 & ~0xfff)); 80748cf3877SPekka Enberg if (!host_ptr_in_ram(self, pte2)) 80848cf3877SPekka Enberg return; 80948cf3877SPekka Enberg 810f01944c8SPekka Enberg pte1 = guest_flat_to_host(self, (*pte2 & ~0xfff)); 81148cf3877SPekka Enberg if (!host_ptr_in_ram(self, pte1)) 81248cf3877SPekka Enberg return; 813f01944c8SPekka Enberg 814f01944c8SPekka Enberg printf("Page Tables:\n"); 815f01944c8SPekka Enberg if (*pte2 & (1 << 7)) 8160f9983b2SCyrill Gorcunov printf(" pte4: %016" PRIx64 " pte3: %016" PRIx64 8170f9983b2SCyrill Gorcunov " pte2: %016" PRIx64 "\n", 8180f9983b2SCyrill Gorcunov *pte4, *pte3, *pte2); 819f01944c8SPekka Enberg else 8200f9983b2SCyrill Gorcunov printf(" pte4: %016" PRIx64 " pte3: %016" PRIx64 " pte2: %016" 8210f9983b2SCyrill Gorcunov PRIx64 " pte1: %016" PRIx64 "\n", 8220f9983b2SCyrill Gorcunov *pte4, *pte3, *pte2, *pte1); 823f01944c8SPekka Enberg } 824f01944c8SPekka Enberg 825090f898eSCyrill Gorcunov void kvm__dump_mem(struct kvm *self, unsigned long addr, unsigned long size) 826090f898eSCyrill Gorcunov { 827090f898eSCyrill Gorcunov unsigned char *p; 828090f898eSCyrill Gorcunov unsigned long n; 829090f898eSCyrill Gorcunov 830090f898eSCyrill Gorcunov size &= ~7; /* mod 8 */ 831090f898eSCyrill Gorcunov if (!size) 832090f898eSCyrill Gorcunov return; 833090f898eSCyrill Gorcunov 8342a7d39a4SPekka Enberg p = guest_flat_to_host(self, addr); 835090f898eSCyrill Gorcunov 83648cf3877SPekka Enberg for (n = 0; n < size; n+=8) { 83748cf3877SPekka Enberg if (!host_ptr_in_ram(self, p + n)) 83848cf3877SPekka Enberg break; 83948cf3877SPekka Enberg 840090f898eSCyrill Gorcunov printf(" 0x%08lx: %02x %02x %02x %02x %02x %02x %02x %02x\n", 841090f898eSCyrill Gorcunov addr + n, p[n + 0], p[n + 1], p[n + 2], p[n + 3], 842090f898eSCyrill Gorcunov p[n + 4], p[n + 5], p[n + 6], p[n + 7]); 843090f898eSCyrill Gorcunov } 84448cf3877SPekka Enberg } 845