1ae1fae34SPekka Enberg #include "kvm/kvm.h" 2ae1fae34SPekka Enberg 3b3594ec7SCyrill Gorcunov #include "kvm/boot-protocol.h" 472811558SPekka Enberg #include "kvm/cpufeature.h" 572811558SPekka Enberg #include "kvm/read-write.h" 672811558SPekka Enberg #include "kvm/interrupt.h" 70c7c14a7SCyrill Gorcunov #include "kvm/mptable.h" 872811558SPekka Enberg #include "kvm/util.h" 94298ddadSSasha Levin #include "kvm/mutex.h" 104298ddadSSasha Levin #include "kvm/kvm-cpu.h" 11eda03319SPekka Enberg 126c7d8514SPekka Enberg #include <linux/kvm.h> 13f5ab5f67SPekka Enberg 14f5ab5f67SPekka Enberg #include <asm/bootparam.h> 15f5ab5f67SPekka Enberg 16ae1fae34SPekka Enberg #include <sys/ioctl.h> 171f9cff23SPekka Enberg #include <sys/mman.h> 18ce79f1caSPekka Enberg #include <sys/stat.h> 192da26a59SPekka Enberg #include <stdbool.h> 206e5e8b8dSPekka Enberg #include <assert.h> 2106e41eeaSPekka Enberg #include <limits.h> 22ce79f1caSPekka Enberg #include <signal.h> 23f5ab5f67SPekka Enberg #include <stdarg.h> 24b8f6afcdSPekka Enberg #include <stdlib.h> 25f5ab5f67SPekka Enberg #include <string.h> 260d1f17ecSPekka Enberg #include <unistd.h> 271f9cff23SPekka Enberg #include <stdio.h> 28b8f6afcdSPekka Enberg #include <fcntl.h> 29ce79f1caSPekka Enberg #include <time.h> 304298ddadSSasha Levin #include <sys/eventfd.h> 31*c7828731SSasha Levin #include <asm/unistd.h> 32b8f6afcdSPekka Enberg 33ae1fae34SPekka Enberg #define DEFINE_KVM_EXIT_REASON(reason) [reason] = #reason 340d1f17ecSPekka Enberg 35ae1fae34SPekka Enberg const char *kvm_exit_reasons[] = { 36ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_UNKNOWN), 37ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_EXCEPTION), 38ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_IO), 39ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_HYPERCALL), 40ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_DEBUG), 41ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_HLT), 42ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_MMIO), 43ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_IRQ_WINDOW_OPEN), 44ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_SHUTDOWN), 45ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_FAIL_ENTRY), 46ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_INTR), 47ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_SET_TPR), 48ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_TPR_ACCESS), 49ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_S390_SIEIC), 50ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_S390_RESET), 51ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_DCR), 52ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_NMI), 53ae1fae34SPekka Enberg DEFINE_KVM_EXIT_REASON(KVM_EXIT_INTERNAL_ERROR), 549b1fb1c3SPekka Enberg }; 559b1fb1c3SPekka Enberg 5655e19624SCyrill Gorcunov #define DEFINE_KVM_EXT(ext) \ 5755e19624SCyrill Gorcunov .name = #ext, \ 5855e19624SCyrill Gorcunov .code = ext 5955e19624SCyrill Gorcunov 6055e19624SCyrill Gorcunov struct { 6155e19624SCyrill Gorcunov const char *name; 6255e19624SCyrill Gorcunov int code; 6355e19624SCyrill Gorcunov } kvm_req_ext[] = { 6455e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_COALESCED_MMIO) }, 6555e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_SET_TSS_ADDR) }, 6655e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_PIT2) }, 6755e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_USER_MEMORY) }, 6855e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_IRQ_ROUTING) }, 6955e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_IRQCHIP) }, 707c0ec28fSCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_HLT) }, 7155e19624SCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_IRQ_INJECT_STATUS) }, 72d38ad31aSCyrill Gorcunov { DEFINE_KVM_EXT(KVM_CAP_EXT_CPUID) }, 7355e19624SCyrill Gorcunov }; 7455e19624SCyrill Gorcunov 754298ddadSSasha Levin extern struct kvm *kvm; 764298ddadSSasha Levin extern struct kvm_cpu *kvm_cpus[KVM_NR_CPUS]; 774298ddadSSasha Levin static int pause_event; 784298ddadSSasha Levin static DEFINE_MUTEX(pause_lock); 794298ddadSSasha Levin 8043835ac9SSasha Levin static bool kvm__supports_extension(struct kvm *kvm, unsigned int extension) 81b8f6afcdSPekka Enberg { 8228fa19c0SPekka Enberg int ret; 83b8f6afcdSPekka Enberg 8443835ac9SSasha Levin ret = ioctl(kvm->sys_fd, KVM_CHECK_EXTENSION, extension); 854076b041SPekka Enberg if (ret < 0) 864076b041SPekka Enberg return false; 874076b041SPekka Enberg 884076b041SPekka Enberg return ret; 894076b041SPekka Enberg } 904076b041SPekka Enberg 9143835ac9SSasha Levin static int kvm__check_extensions(struct kvm *kvm) 9255e19624SCyrill Gorcunov { 9355e19624SCyrill Gorcunov unsigned int i; 9455e19624SCyrill Gorcunov 9555e19624SCyrill Gorcunov for (i = 0; i < ARRAY_SIZE(kvm_req_ext); i++) { 9643835ac9SSasha Levin if (!kvm__supports_extension(kvm, kvm_req_ext[i].code)) { 974542f276SCyrill Gorcunov pr_error("Unsuppored KVM extension detected: %s", 9855e19624SCyrill Gorcunov kvm_req_ext[i].name); 9955e19624SCyrill Gorcunov return (int)-i; 10055e19624SCyrill Gorcunov } 10155e19624SCyrill Gorcunov } 10255e19624SCyrill Gorcunov 10355e19624SCyrill Gorcunov return 0; 10455e19624SCyrill Gorcunov } 10555e19624SCyrill Gorcunov 1064076b041SPekka Enberg static struct kvm *kvm__new(void) 1074076b041SPekka Enberg { 10843835ac9SSasha Levin struct kvm *kvm = calloc(1, sizeof *kvm); 1094076b041SPekka Enberg 11043835ac9SSasha Levin if (!kvm) 1114076b041SPekka Enberg die("out of memory"); 1124076b041SPekka Enberg 11343835ac9SSasha Levin return kvm; 1144076b041SPekka Enberg } 1154076b041SPekka Enberg 11643835ac9SSasha Levin void kvm__delete(struct kvm *kvm) 1179ef4c68eSPekka Enberg { 11843835ac9SSasha Levin kvm__stop_timer(kvm); 119fbfe68b7SSasha Levin 12043835ac9SSasha Levin munmap(kvm->ram_start, kvm->ram_size); 12143835ac9SSasha Levin free(kvm); 1229ef4c68eSPekka Enberg } 1239ef4c68eSPekka Enberg 124c78b8713SAsias He static bool kvm__cpu_supports_vm(void) 125c78b8713SAsias He { 126c78b8713SAsias He struct cpuid_regs regs; 1273fdf659dSSasha Levin u32 eax_base; 128831fbf23SPekka Enberg int feature; 129c78b8713SAsias He 130c78b8713SAsias He regs = (struct cpuid_regs) { 131831fbf23SPekka Enberg .eax = 0x00, 132c78b8713SAsias He }; 133c78b8713SAsias He host_cpuid(®s); 134c78b8713SAsias He 135ae87afbfSCyrill Gorcunov switch (regs.ebx) { 136ae87afbfSCyrill Gorcunov case CPUID_VENDOR_INTEL_1: 137831fbf23SPekka Enberg eax_base = 0x00; 138831fbf23SPekka Enberg feature = KVM__X86_FEATURE_VMX; 139ae87afbfSCyrill Gorcunov break; 14034649df9SPekka Enberg 141ae87afbfSCyrill Gorcunov case CPUID_VENDOR_AMD_1: 142831fbf23SPekka Enberg eax_base = 0x80000000; 143831fbf23SPekka Enberg feature = KVM__X86_FEATURE_SVM; 144ae87afbfSCyrill Gorcunov break; 14534649df9SPekka Enberg 14634649df9SPekka Enberg default: 14734649df9SPekka Enberg return false; 148ae87afbfSCyrill Gorcunov } 149ae87afbfSCyrill Gorcunov 150831fbf23SPekka Enberg regs = (struct cpuid_regs) { 151831fbf23SPekka Enberg .eax = eax_base, 152831fbf23SPekka Enberg }; 153831fbf23SPekka Enberg host_cpuid(®s); 154831fbf23SPekka Enberg 155831fbf23SPekka Enberg if (regs.eax < eax_base + 0x01) 156831fbf23SPekka Enberg return false; 157831fbf23SPekka Enberg 158831fbf23SPekka Enberg regs = (struct cpuid_regs) { 159831fbf23SPekka Enberg .eax = eax_base + 0x01 160831fbf23SPekka Enberg }; 161831fbf23SPekka Enberg host_cpuid(®s); 162831fbf23SPekka Enberg 163831fbf23SPekka Enberg return regs.ecx & (1 << feature); 164c78b8713SAsias He } 165c78b8713SAsias He 16696feb589SPekka Enberg /* 16796feb589SPekka Enberg * Note: KVM_SET_USER_MEMORY_REGION assumes that we don't pass overlapping 16896feb589SPekka Enberg * memory regions to it. Therefore, be careful if you use this function for 16996feb589SPekka Enberg * registering memory regions for emulating hardware. 17096feb589SPekka Enberg */ 17196feb589SPekka Enberg void kvm__register_mem(struct kvm *kvm, u64 guest_phys, u64 size, void *userspace_addr) 1724076b041SPekka Enberg { 1732b0e3342SPekka Enberg struct kvm_userspace_memory_region mem; 174839051d9SSasha Levin int ret; 175839051d9SSasha Levin 176839051d9SSasha Levin mem = (struct kvm_userspace_memory_region) { 17796feb589SPekka Enberg .slot = kvm->mem_slots++, 178874467f8SSasha Levin .guest_phys_addr = guest_phys, 179874467f8SSasha Levin .memory_size = size, 180c4acb611SIngo Molnar .userspace_addr = (unsigned long)userspace_addr, 181839051d9SSasha Levin }; 182839051d9SSasha Levin 183874467f8SSasha Levin ret = ioctl(kvm->vm_fd, KVM_SET_USER_MEMORY_REGION, &mem); 184839051d9SSasha Levin if (ret < 0) 185839051d9SSasha Levin die_perror("KVM_SET_USER_MEMORY_REGION ioctl"); 186839051d9SSasha Levin } 187839051d9SSasha Levin 188874467f8SSasha Levin /* 189874467f8SSasha Levin * Allocating RAM size bigger than 4GB requires us to leave a gap 190874467f8SSasha Levin * in the RAM which is used for PCI MMIO, hotplug, and unconfigured 191874467f8SSasha Levin * devices (see documentation of e820_setup_gap() for details). 192874467f8SSasha Levin * 193874467f8SSasha Levin * If we're required to initialize RAM bigger than 4GB, we will create 194874467f8SSasha Levin * a gap between 0xe0000000 and 0x100000000 in the guest virtual mem space. 195874467f8SSasha Levin */ 196874467f8SSasha Levin 19743835ac9SSasha Levin void kvm__init_ram(struct kvm *kvm) 198874467f8SSasha Levin { 199874467f8SSasha Levin u64 phys_start, phys_size; 200874467f8SSasha Levin void *host_mem; 201874467f8SSasha Levin 20243835ac9SSasha Levin if (kvm->ram_size < KVM_32BIT_GAP_START) { 203874467f8SSasha Levin /* Use a single block of RAM for 32bit RAM */ 204874467f8SSasha Levin 205874467f8SSasha Levin phys_start = 0; 20643835ac9SSasha Levin phys_size = kvm->ram_size; 20743835ac9SSasha Levin host_mem = kvm->ram_start; 208874467f8SSasha Levin 20996feb589SPekka Enberg kvm__register_mem(kvm, phys_start, phys_size, host_mem); 210874467f8SSasha Levin } else { 211874467f8SSasha Levin /* First RAM range from zero to the PCI gap: */ 212874467f8SSasha Levin 213874467f8SSasha Levin phys_start = 0; 214874467f8SSasha Levin phys_size = KVM_32BIT_GAP_START; 21543835ac9SSasha Levin host_mem = kvm->ram_start; 216874467f8SSasha Levin 21796feb589SPekka Enberg kvm__register_mem(kvm, phys_start, phys_size, host_mem); 218874467f8SSasha Levin 219874467f8SSasha Levin /* Second RAM range from 4GB to the end of RAM: */ 220874467f8SSasha Levin 221874467f8SSasha Levin phys_start = 0x100000000ULL; 22243835ac9SSasha Levin phys_size = kvm->ram_size - phys_size; 22343835ac9SSasha Levin host_mem = kvm->ram_start + phys_start; 224874467f8SSasha Levin 22596feb589SPekka Enberg kvm__register_mem(kvm, phys_start, phys_size, host_mem); 226874467f8SSasha Levin } 227874467f8SSasha Levin } 228874467f8SSasha Levin 22943835ac9SSasha Levin int kvm__max_cpus(struct kvm *kvm) 230384922b3SPekka Enberg { 231384922b3SPekka Enberg int ret; 232384922b3SPekka Enberg 23343835ac9SSasha Levin ret = ioctl(kvm->sys_fd, KVM_CHECK_EXTENSION, KVM_CAP_NR_VCPUS); 234384922b3SPekka Enberg if (ret < 0) 235384922b3SPekka Enberg die_perror("KVM_CAP_NR_VCPUS"); 236384922b3SPekka Enberg 237384922b3SPekka Enberg return ret; 238384922b3SPekka Enberg } 239384922b3SPekka Enberg 24006761c76SPekka Enberg struct kvm *kvm__init(const char *kvm_dev, u64 ram_size) 241839051d9SSasha Levin { 2429687927dSAsias He struct kvm_pit_config pit_config = { .flags = 0, }; 24343835ac9SSasha Levin struct kvm *kvm; 2444076b041SPekka Enberg int ret; 2454076b041SPekka Enberg 246c78b8713SAsias He if (!kvm__cpu_supports_vm()) 247c78b8713SAsias He die("Your CPU does not support hardware virtualization"); 248c78b8713SAsias He 24943835ac9SSasha Levin kvm = kvm__new(); 2504076b041SPekka Enberg 25143835ac9SSasha Levin kvm->sys_fd = open(kvm_dev, O_RDWR); 25243835ac9SSasha Levin if (kvm->sys_fd < 0) { 2536d7c36ceSPekka Enberg if (errno == ENOENT) 254e907b83fSPekka Enberg die("'%s' not found. Please make sure your kernel has CONFIG_KVM enabled and that the KVM modules are loaded.", kvm_dev); 255f8334800SIngo Molnar if (errno == ENODEV) 256f8334800SIngo Molnar die("'%s' KVM driver not available.\n # (If the KVM module is loaded then 'dmesg' may offer further clues about the failure.)", kvm_dev); 2576d7c36ceSPekka Enberg 258f8334800SIngo Molnar fprintf(stderr, " Fatal, could not open %s: ", kvm_dev); 259f8334800SIngo Molnar perror(NULL); 260f8334800SIngo Molnar exit(1); 2616d7c36ceSPekka Enberg } 262b8f6afcdSPekka Enberg 26343835ac9SSasha Levin ret = ioctl(kvm->sys_fd, KVM_GET_API_VERSION, 0); 2646c7d8514SPekka Enberg if (ret != KVM_API_VERSION) 265f5ab5f67SPekka Enberg die_perror("KVM_API_VERSION ioctl"); 2666c7d8514SPekka Enberg 26743835ac9SSasha Levin kvm->vm_fd = ioctl(kvm->sys_fd, KVM_CREATE_VM, 0); 26843835ac9SSasha Levin if (kvm->vm_fd < 0) 269f5ab5f67SPekka Enberg die_perror("KVM_CREATE_VM ioctl"); 27028fa19c0SPekka Enberg 27143835ac9SSasha Levin if (kvm__check_extensions(kvm)) 27255e19624SCyrill Gorcunov die("A required KVM extention is not supported by OS"); 2739687927dSAsias He 27443835ac9SSasha Levin ret = ioctl(kvm->vm_fd, KVM_SET_TSS_ADDR, 0xfffbd000); 2759687927dSAsias He if (ret < 0) 2769687927dSAsias He die_perror("KVM_SET_TSS_ADDR ioctl"); 2779687927dSAsias He 27843835ac9SSasha Levin ret = ioctl(kvm->vm_fd, KVM_CREATE_PIT2, &pit_config); 2799687927dSAsias He if (ret < 0) 2809687927dSAsias He die_perror("KVM_CREATE_PIT2 ioctl"); 2819687927dSAsias He 28243835ac9SSasha Levin kvm->ram_size = ram_size; 2830d1f17ecSPekka Enberg 28443835ac9SSasha Levin if (kvm->ram_size < KVM_32BIT_GAP_START) { 28537c34ca8SSasha Levin kvm->ram_start = mmap(NULL, ram_size, PROT_RW, MAP_ANON_NORESERVE, -1, 0); 286874467f8SSasha Levin } else { 28737c34ca8SSasha Levin kvm->ram_start = mmap(NULL, ram_size + KVM_32BIT_GAP_SIZE, PROT_RW, MAP_ANON_NORESERVE, -1, 0); 28843835ac9SSasha Levin if (kvm->ram_start != MAP_FAILED) { 289874467f8SSasha Levin /* 290874467f8SSasha Levin * We mprotect the gap (see kvm__init_ram() for details) PROT_NONE so that 291874467f8SSasha Levin * if we accidently write to it, we will know. 292874467f8SSasha Levin */ 29343835ac9SSasha Levin mprotect(kvm->ram_start + KVM_32BIT_GAP_START, KVM_32BIT_GAP_SIZE, PROT_NONE); 294874467f8SSasha Levin } 295874467f8SSasha Levin } 29643835ac9SSasha Levin if (kvm->ram_start == MAP_FAILED) 2970d1f17ecSPekka Enberg die("out of memory"); 2980d1f17ecSPekka Enberg 29943835ac9SSasha Levin ret = ioctl(kvm->vm_fd, KVM_CREATE_IRQCHIP); 300895c2fefSPekka Enberg if (ret < 0) 3019687927dSAsias He die_perror("KVM_CREATE_IRQCHIP ioctl"); 3029687927dSAsias He 30343835ac9SSasha Levin return kvm; 3044076b041SPekka Enberg } 3054076b041SPekka Enberg 3065f6772b8SCyrill Gorcunov #define BOOT_LOADER_SELECTOR 0x1000 307b08e9ec4SPekka Enberg #define BOOT_LOADER_IP 0x0000 308dbdb74c2SPekka Enberg #define BOOT_LOADER_SP 0x8000 3092dd4a4edSCyrill Gorcunov #define BOOT_CMDLINE_OFFSET 0x20000 3102dd4a4edSCyrill Gorcunov 3119a4ecdc5SPekka Enberg #define BOOT_PROTOCOL_REQUIRED 0x206 312a43f6460SCyrill Gorcunov #define LOAD_HIGH 0x01 313009b0758SPekka Enberg 31443835ac9SSasha Levin static int load_flat_binary(struct kvm *kvm, int fd) 315009b0758SPekka Enberg { 316009b0758SPekka Enberg void *p; 317009b0758SPekka Enberg int nr; 318009b0758SPekka Enberg 319009b0758SPekka Enberg if (lseek(fd, 0, SEEK_SET) < 0) 320009b0758SPekka Enberg die_perror("lseek"); 321009b0758SPekka Enberg 32243835ac9SSasha Levin p = guest_real_to_host(kvm, BOOT_LOADER_SELECTOR, BOOT_LOADER_IP); 323009b0758SPekka Enberg 324009b0758SPekka Enberg while ((nr = read(fd, p, 65536)) > 0) 325009b0758SPekka Enberg p += nr; 326009b0758SPekka Enberg 32743835ac9SSasha Levin kvm->boot_selector = BOOT_LOADER_SELECTOR; 32843835ac9SSasha Levin kvm->boot_ip = BOOT_LOADER_IP; 32943835ac9SSasha Levin kvm->boot_sp = BOOT_LOADER_SP; 330edc8a14dSPekka Enberg 3317fb218bdSPekka Enberg return true; 332009b0758SPekka Enberg } 333009b0758SPekka Enberg 334ae1fae34SPekka Enberg static const char *BZIMAGE_MAGIC = "HdrS"; 335ae1fae34SPekka Enberg 33643835ac9SSasha Levin static bool load_bzimage(struct kvm *kvm, int fd_kernel, 33753861c74SJohn Floren int fd_initrd, const char *kernel_cmdline, u16 vidmode) 338ae1fae34SPekka Enberg { 339b9271160SPekka Enberg struct boot_params *kern_boot; 3404b62331fSPekka Enberg unsigned long setup_sects; 341b9271160SPekka Enberg struct boot_params boot; 3422dd4a4edSCyrill Gorcunov size_t cmdline_size; 3437fb218bdSPekka Enberg ssize_t setup_size; 34422489bb0SCyrill Gorcunov void *p; 345ae1fae34SPekka Enberg int nr; 346ae1fae34SPekka Enberg 3475d67eaf6SPekka Enberg /* 3485d67eaf6SPekka Enberg * See Documentation/x86/boot.txt for details no bzImage on-disk and 3495d67eaf6SPekka Enberg * memory layout. 3505d67eaf6SPekka Enberg */ 3515d67eaf6SPekka Enberg 3522065a6f7SCyrill Gorcunov if (lseek(fd_kernel, 0, SEEK_SET) < 0) 353009b0758SPekka Enberg die_perror("lseek"); 354009b0758SPekka Enberg 3550b62d2bbSPekka Enberg if (read(fd_kernel, &boot, sizeof(boot)) != sizeof(boot)) 3562346d461SPekka Enberg return false; 357ae1fae34SPekka Enberg 3580b62d2bbSPekka Enberg if (memcmp(&boot.hdr.header, BZIMAGE_MAGIC, strlen(BZIMAGE_MAGIC))) 3597fb218bdSPekka Enberg return false; 360ae1fae34SPekka Enberg 3610ea58e5bSPekka Enberg if (boot.hdr.version < BOOT_PROTOCOL_REQUIRED) 3620b62d2bbSPekka Enberg die("Too old kernel"); 363ad681038SCyrill Gorcunov 3642065a6f7SCyrill Gorcunov if (lseek(fd_kernel, 0, SEEK_SET) < 0) 365e93ab78aSPekka Enberg die_perror("lseek"); 366e93ab78aSPekka Enberg 3674cf542bbSCyrill Gorcunov if (!boot.hdr.setup_sects) 3684cf542bbSCyrill Gorcunov boot.hdr.setup_sects = BZ_DEFAULT_SETUP_SECTS; 36910943d14SPekka Enberg setup_sects = boot.hdr.setup_sects + 1; 37010943d14SPekka Enberg 37154d4a626SPekka Enberg setup_size = setup_sects << 9; 37243835ac9SSasha Levin p = guest_real_to_host(kvm, BOOT_LOADER_SELECTOR, BOOT_LOADER_IP); 373ae1fae34SPekka Enberg 3742065a6f7SCyrill Gorcunov /* copy setup.bin to mem*/ 3752065a6f7SCyrill Gorcunov if (read(fd_kernel, p, setup_size) != setup_size) 3767fb218bdSPekka Enberg die_perror("read"); 3777fb218bdSPekka Enberg 3782065a6f7SCyrill Gorcunov /* copy vmlinux.bin to BZ_KERNEL_START*/ 37943835ac9SSasha Levin p = guest_flat_to_host(kvm, BZ_KERNEL_START); 380ae1fae34SPekka Enberg 3812065a6f7SCyrill Gorcunov while ((nr = read(fd_kernel, p, 65536)) > 0) 382ae1fae34SPekka Enberg p += nr; 383ae1fae34SPekka Enberg 38443835ac9SSasha Levin p = guest_flat_to_host(kvm, BOOT_CMDLINE_OFFSET); 385debcfac0SCyrill Gorcunov if (kernel_cmdline) { 386debcfac0SCyrill Gorcunov cmdline_size = strlen(kernel_cmdline) + 1; 387debcfac0SCyrill Gorcunov if (cmdline_size > boot.hdr.cmdline_size) 388debcfac0SCyrill Gorcunov cmdline_size = boot.hdr.cmdline_size; 389ad681038SCyrill Gorcunov 3902dd4a4edSCyrill Gorcunov memset(p, 0, boot.hdr.cmdline_size); 3912dd4a4edSCyrill Gorcunov memcpy(p, kernel_cmdline, cmdline_size - 1); 392debcfac0SCyrill Gorcunov } 393debcfac0SCyrill Gorcunov 39443835ac9SSasha Levin kern_boot = guest_real_to_host(kvm, BOOT_LOADER_SELECTOR, 0x00); 395a43f6460SCyrill Gorcunov 396b9271160SPekka Enberg kern_boot->hdr.cmd_line_ptr = BOOT_CMDLINE_OFFSET; 397b9271160SPekka Enberg kern_boot->hdr.type_of_loader = 0xff; 398b9271160SPekka Enberg kern_boot->hdr.heap_end_ptr = 0xfe00; 399b9271160SPekka Enberg kern_boot->hdr.loadflags |= CAN_USE_HEAP; 40053861c74SJohn Floren kern_boot->hdr.vid_mode = vidmode; 401a43f6460SCyrill Gorcunov 4022065a6f7SCyrill Gorcunov /* 4032065a6f7SCyrill Gorcunov * Read initrd image into guest memory 4042065a6f7SCyrill Gorcunov */ 4052065a6f7SCyrill Gorcunov if (fd_initrd >= 0) { 4062065a6f7SCyrill Gorcunov struct stat initrd_stat; 4072065a6f7SCyrill Gorcunov unsigned long addr; 4082065a6f7SCyrill Gorcunov 4092065a6f7SCyrill Gorcunov if (fstat(fd_initrd, &initrd_stat)) 4102065a6f7SCyrill Gorcunov die_perror("fstat"); 4112065a6f7SCyrill Gorcunov 4122065a6f7SCyrill Gorcunov addr = boot.hdr.initrd_addr_max & ~0xfffff; 4132065a6f7SCyrill Gorcunov for (;;) { 4142065a6f7SCyrill Gorcunov if (addr < BZ_KERNEL_START) 4152065a6f7SCyrill Gorcunov die("Not enough memory for initrd"); 41643835ac9SSasha Levin else if (addr < (kvm->ram_size - initrd_stat.st_size)) 4172065a6f7SCyrill Gorcunov break; 4182065a6f7SCyrill Gorcunov addr -= 0x100000; 4192065a6f7SCyrill Gorcunov } 4202065a6f7SCyrill Gorcunov 42143835ac9SSasha Levin p = guest_flat_to_host(kvm, addr); 4222065a6f7SCyrill Gorcunov nr = read(fd_initrd, p, initrd_stat.st_size); 4232065a6f7SCyrill Gorcunov if (nr != initrd_stat.st_size) 4242065a6f7SCyrill Gorcunov die("Failed to read initrd"); 4252065a6f7SCyrill Gorcunov 4262065a6f7SCyrill Gorcunov kern_boot->hdr.ramdisk_image = addr; 4272065a6f7SCyrill Gorcunov kern_boot->hdr.ramdisk_size = initrd_stat.st_size; 4282065a6f7SCyrill Gorcunov } 4292065a6f7SCyrill Gorcunov 43043835ac9SSasha Levin kvm->boot_selector = BOOT_LOADER_SELECTOR; 431edc8a14dSPekka Enberg /* 432edc8a14dSPekka Enberg * The real-mode setup code starts at offset 0x200 of a bzImage. See 433edc8a14dSPekka Enberg * Documentation/x86/boot.txt for details. 434edc8a14dSPekka Enberg */ 43543835ac9SSasha Levin kvm->boot_ip = BOOT_LOADER_IP + 0x200; 43643835ac9SSasha Levin kvm->boot_sp = BOOT_LOADER_SP; 437edc8a14dSPekka Enberg 4387fb218bdSPekka Enberg return true; 439ae1fae34SPekka Enberg } 440ae1fae34SPekka Enberg 44172811558SPekka Enberg /* RFC 1952 */ 44272811558SPekka Enberg #define GZIP_ID1 0x1f 44372811558SPekka Enberg #define GZIP_ID2 0x8b 44472811558SPekka Enberg 44572811558SPekka Enberg static bool initrd_check(int fd) 44672811558SPekka Enberg { 44772811558SPekka Enberg unsigned char id[2]; 44872811558SPekka Enberg 44972811558SPekka Enberg if (read_in_full(fd, id, ARRAY_SIZE(id)) < 0) 45072811558SPekka Enberg return false; 45172811558SPekka Enberg 45272811558SPekka Enberg if (lseek(fd, 0, SEEK_SET) < 0) 45372811558SPekka Enberg die_perror("lseek"); 45472811558SPekka Enberg 45572811558SPekka Enberg return id[0] == GZIP_ID1 && id[1] == GZIP_ID2; 45672811558SPekka Enberg } 45772811558SPekka Enberg 4586d1f350dSCyrill Gorcunov bool kvm__load_kernel(struct kvm *kvm, const char *kernel_filename, 45953861c74SJohn Floren const char *initrd_filename, const char *kernel_cmdline, u16 vidmode) 460ae1fae34SPekka Enberg { 4617fb218bdSPekka Enberg bool ret; 4622065a6f7SCyrill Gorcunov int fd_kernel = -1, fd_initrd = -1; 463ae1fae34SPekka Enberg 4642065a6f7SCyrill Gorcunov fd_kernel = open(kernel_filename, O_RDONLY); 4652065a6f7SCyrill Gorcunov if (fd_kernel < 0) 4660b62d2bbSPekka Enberg die("Unable to open kernel %s", kernel_filename); 467ae1fae34SPekka Enberg 4682065a6f7SCyrill Gorcunov if (initrd_filename) { 4692065a6f7SCyrill Gorcunov fd_initrd = open(initrd_filename, O_RDONLY); 4702065a6f7SCyrill Gorcunov if (fd_initrd < 0) 4710b62d2bbSPekka Enberg die("Unable to open initrd %s", initrd_filename); 47272811558SPekka Enberg 47372811558SPekka Enberg if (!initrd_check(fd_initrd)) 47472811558SPekka Enberg die("%s is not an initrd", initrd_filename); 4752065a6f7SCyrill Gorcunov } 4762065a6f7SCyrill Gorcunov 47753861c74SJohn Floren ret = load_bzimage(kvm, fd_kernel, fd_initrd, kernel_cmdline, vidmode); 47828972750SCyrill Gorcunov 47928972750SCyrill Gorcunov if (initrd_filename) 48028972750SCyrill Gorcunov close(fd_initrd); 48128972750SCyrill Gorcunov 482009b0758SPekka Enberg if (ret) 483009b0758SPekka Enberg goto found_kernel; 484ae1fae34SPekka Enberg 4854542f276SCyrill Gorcunov pr_warning("%s is not a bzImage. Trying to load it as a flat binary...", kernel_filename); 4860b62d2bbSPekka Enberg 4872065a6f7SCyrill Gorcunov ret = load_flat_binary(kvm, fd_kernel); 488009b0758SPekka Enberg if (ret) 489009b0758SPekka Enberg goto found_kernel; 490009b0758SPekka Enberg 4915a6ac675SSasha Levin close(fd_kernel); 4925a6ac675SSasha Levin 493009b0758SPekka Enberg die("%s is not a valid bzImage or flat binary", kernel_filename); 494009b0758SPekka Enberg 495009b0758SPekka Enberg found_kernel: 4965a6ac675SSasha Levin close(fd_kernel); 4975a6ac675SSasha Levin 498ae1fae34SPekka Enberg return ret; 499ae1fae34SPekka Enberg } 500ae1fae34SPekka Enberg 501b3594ec7SCyrill Gorcunov /** 502b3594ec7SCyrill Gorcunov * kvm__setup_bios - inject BIOS into guest system memory 50343835ac9SSasha Levin * @kvm - guest system descriptor 504b3594ec7SCyrill Gorcunov * 505b3594ec7SCyrill Gorcunov * This function is a main routine where we poke guest memory 506b3594ec7SCyrill Gorcunov * and install BIOS there. 507b3594ec7SCyrill Gorcunov */ 50843835ac9SSasha Levin void kvm__setup_bios(struct kvm *kvm) 5092f3976eeSPekka Enberg { 510b3594ec7SCyrill Gorcunov /* standart minimal configuration */ 51143835ac9SSasha Levin setup_bios(kvm); 5122f3976eeSPekka Enberg 513b3594ec7SCyrill Gorcunov /* FIXME: SMP, ACPI and friends here */ 5140c7c14a7SCyrill Gorcunov 5150c7c14a7SCyrill Gorcunov /* MP table */ 51643835ac9SSasha Levin mptable_setup(kvm, kvm->nrcpus); 5172f3976eeSPekka Enberg } 5182f3976eeSPekka Enberg 519ce79f1caSPekka Enberg #define TIMER_INTERVAL_NS 1000000 /* 1 msec */ 520ce79f1caSPekka Enberg 521ce79f1caSPekka Enberg /* 522ce79f1caSPekka Enberg * This function sets up a timer that's used to inject interrupts from the 523ce79f1caSPekka Enberg * userspace hypervisor into the guest at periodical intervals. Please note 524ce79f1caSPekka Enberg * that clock interrupt, for example, is not handled here. 525ce79f1caSPekka Enberg */ 52643835ac9SSasha Levin void kvm__start_timer(struct kvm *kvm) 527ce79f1caSPekka Enberg { 528ce79f1caSPekka Enberg struct itimerspec its; 529ce79f1caSPekka Enberg struct sigevent sev; 530ce79f1caSPekka Enberg 531ce79f1caSPekka Enberg memset(&sev, 0, sizeof(struct sigevent)); 532ce79f1caSPekka Enberg sev.sigev_value.sival_int = 0; 533*c7828731SSasha Levin sev.sigev_notify = SIGEV_THREAD_ID; 534ce79f1caSPekka Enberg sev.sigev_signo = SIGALRM; 535*c7828731SSasha Levin sev._sigev_un._tid = syscall(__NR_gettid); 536ce79f1caSPekka Enberg 53743835ac9SSasha Levin if (timer_create(CLOCK_REALTIME, &sev, &kvm->timerid) < 0) 538ce79f1caSPekka Enberg die("timer_create()"); 539ce79f1caSPekka Enberg 540ce79f1caSPekka Enberg its.it_value.tv_sec = TIMER_INTERVAL_NS / 1000000000; 541ce79f1caSPekka Enberg its.it_value.tv_nsec = TIMER_INTERVAL_NS % 1000000000; 542ce79f1caSPekka Enberg its.it_interval.tv_sec = its.it_value.tv_sec; 543ce79f1caSPekka Enberg its.it_interval.tv_nsec = its.it_value.tv_nsec; 544ce79f1caSPekka Enberg 54543835ac9SSasha Levin if (timer_settime(kvm->timerid, 0, &its, NULL) < 0) 546ce79f1caSPekka Enberg die("timer_settime()"); 547ce79f1caSPekka Enberg } 548ce79f1caSPekka Enberg 54943835ac9SSasha Levin void kvm__stop_timer(struct kvm *kvm) 550fbfe68b7SSasha Levin { 55143835ac9SSasha Levin if (kvm->timerid) 55243835ac9SSasha Levin if (timer_delete(kvm->timerid) < 0) 553fbfe68b7SSasha Levin die("timer_delete()"); 554fbfe68b7SSasha Levin 55543835ac9SSasha Levin kvm->timerid = 0; 556fbfe68b7SSasha Levin } 557fbfe68b7SSasha Levin 55843835ac9SSasha Levin void kvm__irq_line(struct kvm *kvm, int irq, int level) 5598b1ff07eSPekka Enberg { 5608b1ff07eSPekka Enberg struct kvm_irq_level irq_level; 5618b1ff07eSPekka Enberg 5628b1ff07eSPekka Enberg irq_level = (struct kvm_irq_level) { 5638b1ff07eSPekka Enberg { 5648b1ff07eSPekka Enberg .irq = irq, 5658b1ff07eSPekka Enberg }, 5668b1ff07eSPekka Enberg .level = level, 5678b1ff07eSPekka Enberg }; 5688b1ff07eSPekka Enberg 56943835ac9SSasha Levin if (ioctl(kvm->vm_fd, KVM_IRQ_LINE, &irq_level) < 0) 5708b1ff07eSPekka Enberg die_perror("KVM_IRQ_LINE failed"); 5718b1ff07eSPekka Enberg } 5728b1ff07eSPekka Enberg 57343835ac9SSasha Levin void kvm__dump_mem(struct kvm *kvm, unsigned long addr, unsigned long size) 574090f898eSCyrill Gorcunov { 575090f898eSCyrill Gorcunov unsigned char *p; 576090f898eSCyrill Gorcunov unsigned long n; 577090f898eSCyrill Gorcunov 578090f898eSCyrill Gorcunov size &= ~7; /* mod 8 */ 579090f898eSCyrill Gorcunov if (!size) 580090f898eSCyrill Gorcunov return; 581090f898eSCyrill Gorcunov 58243835ac9SSasha Levin p = guest_flat_to_host(kvm, addr); 583090f898eSCyrill Gorcunov 58448cf3877SPekka Enberg for (n = 0; n < size; n += 8) { 58543835ac9SSasha Levin if (!host_ptr_in_ram(kvm, p + n)) 58648cf3877SPekka Enberg break; 58748cf3877SPekka Enberg 588090f898eSCyrill Gorcunov printf(" 0x%08lx: %02x %02x %02x %02x %02x %02x %02x %02x\n", 589090f898eSCyrill Gorcunov addr + n, p[n + 0], p[n + 1], p[n + 2], p[n + 3], 590090f898eSCyrill Gorcunov p[n + 4], p[n + 5], p[n + 6], p[n + 7]); 591090f898eSCyrill Gorcunov } 59248cf3877SPekka Enberg } 5934298ddadSSasha Levin 5944298ddadSSasha Levin void kvm__pause(void) 5954298ddadSSasha Levin { 5964298ddadSSasha Levin int i, paused_vcpus = 0; 5974298ddadSSasha Levin 5984298ddadSSasha Levin /* Check if the guest is running */ 5994298ddadSSasha Levin if (!kvm_cpus[0] || kvm_cpus[0]->thread == 0) 6004298ddadSSasha Levin return; 6014298ddadSSasha Levin 6024298ddadSSasha Levin mutex_lock(&pause_lock); 6034298ddadSSasha Levin 6044298ddadSSasha Levin pause_event = eventfd(0, 0); 6054298ddadSSasha Levin if (pause_event < 0) 6064298ddadSSasha Levin die("Failed creating pause notification event"); 6074298ddadSSasha Levin for (i = 0; i < kvm->nrcpus; i++) 6084298ddadSSasha Levin pthread_kill(kvm_cpus[i]->thread, SIGKVMPAUSE); 6094298ddadSSasha Levin 6104298ddadSSasha Levin while (paused_vcpus < kvm->nrcpus) { 6114298ddadSSasha Levin u64 cur_read; 6124298ddadSSasha Levin 6134298ddadSSasha Levin if (read(pause_event, &cur_read, sizeof(cur_read)) < 0) 6144298ddadSSasha Levin die("Failed reading pause event"); 6154298ddadSSasha Levin paused_vcpus += cur_read; 6164298ddadSSasha Levin } 6174298ddadSSasha Levin close(pause_event); 6184298ddadSSasha Levin } 6194298ddadSSasha Levin 6204298ddadSSasha Levin void kvm__continue(void) 6214298ddadSSasha Levin { 6224298ddadSSasha Levin /* Check if the guest is running */ 6234298ddadSSasha Levin if (!kvm_cpus[0] || kvm_cpus[0]->thread == 0) 6244298ddadSSasha Levin return; 6254298ddadSSasha Levin 6264298ddadSSasha Levin mutex_unlock(&pause_lock); 6274298ddadSSasha Levin } 6284298ddadSSasha Levin 6294298ddadSSasha Levin void kvm__notify_paused(void) 6304298ddadSSasha Levin { 6314298ddadSSasha Levin u64 p = 1; 6324298ddadSSasha Levin 6334298ddadSSasha Levin if (write(pause_event, &p, sizeof(p)) < 0) 6344298ddadSSasha Levin die("Failed notifying of paused VCPU."); 6354298ddadSSasha Levin 6364298ddadSSasha Levin mutex_lock(&pause_lock); 6374298ddadSSasha Levin mutex_unlock(&pause_lock); 6384298ddadSSasha Levin } 639