1af7b0868SMatt Evans #include "kvm/kvm.h" 2af7b0868SMatt Evans #include "kvm/boot-protocol.h" 3af7b0868SMatt Evans #include "kvm/cpufeature.h" 4af7b0868SMatt Evans #include "kvm/interrupt.h" 5af7b0868SMatt Evans #include "kvm/mptable.h" 6af7b0868SMatt Evans #include "kvm/util.h" 70b69bdefSMatt Evans #include "kvm/8250-serial.h" 80b69bdefSMatt Evans #include "kvm/virtio-console.h" 9af7b0868SMatt Evans 10af7b0868SMatt Evans #include <asm/bootparam.h> 11af7b0868SMatt Evans #include <linux/kvm.h> 1273f00e73SAndre Przywara #include <linux/kernel.h> 13af7b0868SMatt Evans 14af7b0868SMatt Evans #include <sys/types.h> 15af7b0868SMatt Evans #include <sys/ioctl.h> 16af7b0868SMatt Evans #include <sys/mman.h> 17af7b0868SMatt Evans #include <sys/stat.h> 18af7b0868SMatt Evans #include <stdbool.h> 19af7b0868SMatt Evans #include <stdlib.h> 20af7b0868SMatt Evans #include <string.h> 21af7b0868SMatt Evans #include <unistd.h> 22af7b0868SMatt Evans #include <stdio.h> 23af7b0868SMatt Evans #include <fcntl.h> 24af7b0868SMatt Evans 25af7b0868SMatt Evans struct kvm_ext kvm_req_ext[] = { 26af7b0868SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_COALESCED_MMIO) }, 27af7b0868SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_SET_TSS_ADDR) }, 28af7b0868SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_PIT2) }, 29af7b0868SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_USER_MEMORY) }, 30af7b0868SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_IRQ_ROUTING) }, 31af7b0868SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_IRQCHIP) }, 32af7b0868SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_HLT) }, 33af7b0868SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_IRQ_INJECT_STATUS) }, 34af7b0868SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_EXT_CPUID) }, 35af7b0868SMatt Evans { 0, 0 } 36af7b0868SMatt Evans }; 37af7b0868SMatt Evans 38*3f7e48f6SAlexandru Elisei u64 kvm__arch_default_ram_address(void) 39*3f7e48f6SAlexandru Elisei { 40*3f7e48f6SAlexandru Elisei return 0; 41*3f7e48f6SAlexandru Elisei } 42*3f7e48f6SAlexandru Elisei 43abe3f28aSAlexandru Elisei void kvm__arch_validate_cfg(struct kvm *kvm) 44abe3f28aSAlexandru Elisei { 45abe3f28aSAlexandru Elisei } 46abe3f28aSAlexandru Elisei 47af7b0868SMatt Evans bool kvm__arch_cpu_supports_vm(void) 48af7b0868SMatt Evans { 49af7b0868SMatt Evans struct cpuid_regs regs; 50af7b0868SMatt Evans u32 eax_base; 51af7b0868SMatt Evans int feature; 52af7b0868SMatt Evans 53af7b0868SMatt Evans regs = (struct cpuid_regs) { 54af7b0868SMatt Evans .eax = 0x00, 55af7b0868SMatt Evans }; 56af7b0868SMatt Evans host_cpuid(®s); 57af7b0868SMatt Evans 58af7b0868SMatt Evans switch (regs.ebx) { 59af7b0868SMatt Evans case CPUID_VENDOR_INTEL_1: 60af7b0868SMatt Evans eax_base = 0x00; 61af7b0868SMatt Evans feature = KVM__X86_FEATURE_VMX; 62af7b0868SMatt Evans break; 63af7b0868SMatt Evans 64af7b0868SMatt Evans case CPUID_VENDOR_AMD_1: 65af7b0868SMatt Evans eax_base = 0x80000000; 66af7b0868SMatt Evans feature = KVM__X86_FEATURE_SVM; 67af7b0868SMatt Evans break; 68af7b0868SMatt Evans 69af7b0868SMatt Evans default: 70af7b0868SMatt Evans return false; 71af7b0868SMatt Evans } 72af7b0868SMatt Evans 73af7b0868SMatt Evans regs = (struct cpuid_regs) { 74af7b0868SMatt Evans .eax = eax_base, 75af7b0868SMatt Evans }; 76af7b0868SMatt Evans host_cpuid(®s); 77af7b0868SMatt Evans 78af7b0868SMatt Evans if (regs.eax < eax_base + 0x01) 79af7b0868SMatt Evans return false; 80af7b0868SMatt Evans 81af7b0868SMatt Evans regs = (struct cpuid_regs) { 82af7b0868SMatt Evans .eax = eax_base + 0x01 83af7b0868SMatt Evans }; 84af7b0868SMatt Evans host_cpuid(®s); 85af7b0868SMatt Evans 86af7b0868SMatt Evans return regs.ecx & (1 << feature); 87af7b0868SMatt Evans } 88af7b0868SMatt Evans 89af7b0868SMatt Evans /* 90af7b0868SMatt Evans * Allocating RAM size bigger than 4GB requires us to leave a gap 91af7b0868SMatt Evans * in the RAM which is used for PCI MMIO, hotplug, and unconfigured 92af7b0868SMatt Evans * devices (see documentation of e820_setup_gap() for details). 93af7b0868SMatt Evans * 94af7b0868SMatt Evans * If we're required to initialize RAM bigger than 4GB, we will create 95af7b0868SMatt Evans * a gap between 0xe0000000 and 0x100000000 in the guest virtual mem space. 96af7b0868SMatt Evans */ 97af7b0868SMatt Evans 98af7b0868SMatt Evans void kvm__init_ram(struct kvm *kvm) 99af7b0868SMatt Evans { 100af7b0868SMatt Evans u64 phys_start, phys_size; 101af7b0868SMatt Evans void *host_mem; 102af7b0868SMatt Evans 103af7b0868SMatt Evans if (kvm->ram_size < KVM_32BIT_GAP_START) { 104af7b0868SMatt Evans /* Use a single block of RAM for 32bit RAM */ 105af7b0868SMatt Evans 106af7b0868SMatt Evans phys_start = 0; 107af7b0868SMatt Evans phys_size = kvm->ram_size; 108af7b0868SMatt Evans host_mem = kvm->ram_start; 109af7b0868SMatt Evans 1108f46c736SJean-Philippe Brucker kvm__register_ram(kvm, phys_start, phys_size, host_mem); 111af7b0868SMatt Evans } else { 112af7b0868SMatt Evans /* First RAM range from zero to the PCI gap: */ 113af7b0868SMatt Evans 114af7b0868SMatt Evans phys_start = 0; 115af7b0868SMatt Evans phys_size = KVM_32BIT_GAP_START; 116af7b0868SMatt Evans host_mem = kvm->ram_start; 117af7b0868SMatt Evans 1188f46c736SJean-Philippe Brucker kvm__register_ram(kvm, phys_start, phys_size, host_mem); 119af7b0868SMatt Evans 120af7b0868SMatt Evans /* Second RAM range from 4GB to the end of RAM: */ 121af7b0868SMatt Evans 122f7abc4cdSHongyong Zang phys_start = KVM_32BIT_MAX_MEM_SIZE; 123f7abc4cdSHongyong Zang phys_size = kvm->ram_size - phys_start; 124af7b0868SMatt Evans host_mem = kvm->ram_start + phys_start; 125af7b0868SMatt Evans 1268f46c736SJean-Philippe Brucker kvm__register_ram(kvm, phys_start, phys_size, host_mem); 127af7b0868SMatt Evans } 128af7b0868SMatt Evans } 129af7b0868SMatt Evans 1308e704a7aSMatt Evans /* Arch-specific commandline setup */ 1318e704a7aSMatt Evans void kvm__arch_set_cmdline(char *cmdline, bool video) 1328e704a7aSMatt Evans { 1338e704a7aSMatt Evans strcpy(cmdline, "noapic noacpi pci=conf1 reboot=k panic=1 i8042.direct=1 " 1348e704a7aSMatt Evans "i8042.dumbkbd=1 i8042.nopnp=1"); 1353a60be06SSasha Levin if (video) 1365857730cSWill Deacon strcat(cmdline, " video=vesafb"); 1373a60be06SSasha Levin else 1385857730cSWill Deacon strcat(cmdline, " earlyprintk=serial i8042.noaux=1"); 1398e704a7aSMatt Evans } 1408e704a7aSMatt Evans 141af7b0868SMatt Evans /* Architecture-specific KVM init */ 1425e9c654eSJulien Grall void kvm__arch_init(struct kvm *kvm) 143af7b0868SMatt Evans { 1445e9c654eSJulien Grall const char *hugetlbfs_path = kvm->cfg.hugetlbfs_path; 145af7b0868SMatt Evans struct kvm_pit_config pit_config = { .flags = 0, }; 1465e9c654eSJulien Grall u64 ram_size = kvm->cfg.ram_size; 147af7b0868SMatt Evans int ret; 148af7b0868SMatt Evans 149af7b0868SMatt Evans ret = ioctl(kvm->vm_fd, KVM_SET_TSS_ADDR, 0xfffbd000); 150af7b0868SMatt Evans if (ret < 0) 151af7b0868SMatt Evans die_perror("KVM_SET_TSS_ADDR ioctl"); 152af7b0868SMatt Evans 153af7b0868SMatt Evans ret = ioctl(kvm->vm_fd, KVM_CREATE_PIT2, &pit_config); 154af7b0868SMatt Evans if (ret < 0) 155af7b0868SMatt Evans die_perror("KVM_CREATE_PIT2 ioctl"); 156af7b0868SMatt Evans 157f7abc4cdSHongyong Zang if (ram_size < KVM_32BIT_GAP_START) { 158af7b0868SMatt Evans kvm->ram_size = ram_size; 1593ebd8e0bSMichael Ellerman kvm->ram_start = mmap_anon_or_hugetlbfs(kvm, hugetlbfs_path, ram_size); 160af7b0868SMatt Evans } else { 1613ebd8e0bSMichael Ellerman kvm->ram_start = mmap_anon_or_hugetlbfs(kvm, hugetlbfs_path, ram_size + KVM_32BIT_GAP_SIZE); 162f7abc4cdSHongyong Zang kvm->ram_size = ram_size + KVM_32BIT_GAP_SIZE; 1633a60be06SSasha Levin if (kvm->ram_start != MAP_FAILED) 164af7b0868SMatt Evans /* 165af7b0868SMatt Evans * We mprotect the gap (see kvm__init_ram() for details) PROT_NONE so that 166af7b0868SMatt Evans * if we accidently write to it, we will know. 167af7b0868SMatt Evans */ 168af7b0868SMatt Evans mprotect(kvm->ram_start + KVM_32BIT_GAP_START, KVM_32BIT_GAP_SIZE, PROT_NONE); 169af7b0868SMatt Evans } 170af7b0868SMatt Evans if (kvm->ram_start == MAP_FAILED) 171af7b0868SMatt Evans die("out of memory"); 172af7b0868SMatt Evans 173af7b0868SMatt Evans madvise(kvm->ram_start, kvm->ram_size, MADV_MERGEABLE); 174af7b0868SMatt Evans 175af7b0868SMatt Evans ret = ioctl(kvm->vm_fd, KVM_CREATE_IRQCHIP); 176af7b0868SMatt Evans if (ret < 0) 177af7b0868SMatt Evans die_perror("KVM_CREATE_IRQCHIP ioctl"); 178af7b0868SMatt Evans } 179af7b0868SMatt Evans 180e56e2de7SLai Jiangshan void kvm__arch_delete_ram(struct kvm *kvm) 181e56e2de7SLai Jiangshan { 182e56e2de7SLai Jiangshan munmap(kvm->ram_start, kvm->ram_size); 183e56e2de7SLai Jiangshan } 184e56e2de7SLai Jiangshan 185af7b0868SMatt Evans void kvm__irq_line(struct kvm *kvm, int irq, int level) 186af7b0868SMatt Evans { 187af7b0868SMatt Evans struct kvm_irq_level irq_level; 188af7b0868SMatt Evans 189af7b0868SMatt Evans irq_level = (struct kvm_irq_level) { 190af7b0868SMatt Evans { 191af7b0868SMatt Evans .irq = irq, 192af7b0868SMatt Evans }, 193af7b0868SMatt Evans .level = level, 194af7b0868SMatt Evans }; 195af7b0868SMatt Evans 196af7b0868SMatt Evans if (ioctl(kvm->vm_fd, KVM_IRQ_LINE, &irq_level) < 0) 197af7b0868SMatt Evans die_perror("KVM_IRQ_LINE failed"); 198af7b0868SMatt Evans } 199af7b0868SMatt Evans 200af7b0868SMatt Evans void kvm__irq_trigger(struct kvm *kvm, int irq) 201af7b0868SMatt Evans { 202af7b0868SMatt Evans kvm__irq_line(kvm, irq, 1); 203af7b0868SMatt Evans kvm__irq_line(kvm, irq, 0); 204af7b0868SMatt Evans } 205af7b0868SMatt Evans 206af7b0868SMatt Evans #define BOOT_LOADER_SELECTOR 0x1000 207af7b0868SMatt Evans #define BOOT_LOADER_IP 0x0000 208af7b0868SMatt Evans #define BOOT_LOADER_SP 0x8000 209af7b0868SMatt Evans #define BOOT_CMDLINE_OFFSET 0x20000 210af7b0868SMatt Evans 211af7b0868SMatt Evans #define BOOT_PROTOCOL_REQUIRED 0x206 212af7b0868SMatt Evans #define LOAD_HIGH 0x01 213af7b0868SMatt Evans 214f412251fSWill Deacon static inline void *guest_real_to_host(struct kvm *kvm, u16 selector, u16 offset) 215f412251fSWill Deacon { 2161cbb2c50SAndre Przywara unsigned long flat = ((u32)selector << 4) + offset; 217f412251fSWill Deacon 218f412251fSWill Deacon return guest_flat_to_host(kvm, flat); 219f412251fSWill Deacon } 220f412251fSWill Deacon 221004f7684SAndre Przywara static bool load_flat_binary(struct kvm *kvm, int fd_kernel) 222af7b0868SMatt Evans { 223af7b0868SMatt Evans void *p; 224af7b0868SMatt Evans 225604dbd63SMatt Evans if (lseek(fd_kernel, 0, SEEK_SET) < 0) 226af7b0868SMatt Evans die_perror("lseek"); 227af7b0868SMatt Evans 228af7b0868SMatt Evans p = guest_real_to_host(kvm, BOOT_LOADER_SELECTOR, BOOT_LOADER_IP); 229af7b0868SMatt Evans 23073f00e73SAndre Przywara if (read_file(fd_kernel, p, kvm->cfg.ram_size) < 0) 23173f00e73SAndre Przywara die_perror("read"); 232af7b0868SMatt Evans 23342ac24f9SSasha Levin kvm->arch.boot_selector = BOOT_LOADER_SELECTOR; 23442ac24f9SSasha Levin kvm->arch.boot_ip = BOOT_LOADER_IP; 23542ac24f9SSasha Levin kvm->arch.boot_sp = BOOT_LOADER_SP; 236af7b0868SMatt Evans 237af7b0868SMatt Evans return true; 238af7b0868SMatt Evans } 239af7b0868SMatt Evans 240af7b0868SMatt Evans static const char *BZIMAGE_MAGIC = "HdrS"; 241af7b0868SMatt Evans 242004f7684SAndre Przywara static bool load_bzimage(struct kvm *kvm, int fd_kernel, int fd_initrd, 243ff7ba6faSWill Deacon const char *kernel_cmdline) 244af7b0868SMatt Evans { 245af7b0868SMatt Evans struct boot_params *kern_boot; 246af7b0868SMatt Evans struct boot_params boot; 247af7b0868SMatt Evans size_t cmdline_size; 24873f00e73SAndre Przywara ssize_t file_size; 249af7b0868SMatt Evans void *p; 250ff7ba6faSWill Deacon u16 vidmode; 251af7b0868SMatt Evans 252af7b0868SMatt Evans /* 253af7b0868SMatt Evans * See Documentation/x86/boot.txt for details no bzImage on-disk and 254af7b0868SMatt Evans * memory layout. 255af7b0868SMatt Evans */ 256af7b0868SMatt Evans 25773f00e73SAndre Przywara if (read_in_full(fd_kernel, &boot, sizeof(boot)) != sizeof(boot)) 258af7b0868SMatt Evans return false; 259af7b0868SMatt Evans 260af7b0868SMatt Evans if (memcmp(&boot.hdr.header, BZIMAGE_MAGIC, strlen(BZIMAGE_MAGIC))) 261af7b0868SMatt Evans return false; 262af7b0868SMatt Evans 263af7b0868SMatt Evans if (boot.hdr.version < BOOT_PROTOCOL_REQUIRED) 264af7b0868SMatt Evans die("Too old kernel"); 265af7b0868SMatt Evans 266af7b0868SMatt Evans if (lseek(fd_kernel, 0, SEEK_SET) < 0) 267af7b0868SMatt Evans die_perror("lseek"); 268af7b0868SMatt Evans 269af7b0868SMatt Evans if (!boot.hdr.setup_sects) 270af7b0868SMatt Evans boot.hdr.setup_sects = BZ_DEFAULT_SETUP_SECTS; 27173f00e73SAndre Przywara file_size = (boot.hdr.setup_sects + 1) << 9; 272af7b0868SMatt Evans p = guest_real_to_host(kvm, BOOT_LOADER_SELECTOR, BOOT_LOADER_IP); 27373f00e73SAndre Przywara if (read_in_full(fd_kernel, p, file_size) != file_size) 27473f00e73SAndre Przywara die_perror("kernel setup read"); 275af7b0868SMatt Evans 27673f00e73SAndre Przywara /* read actual kernel image (vmlinux.bin) to BZ_KERNEL_START */ 277af7b0868SMatt Evans p = guest_flat_to_host(kvm, BZ_KERNEL_START); 27873f00e73SAndre Przywara file_size = read_file(fd_kernel, p, 27973f00e73SAndre Przywara kvm->cfg.ram_size - BZ_KERNEL_START); 28073f00e73SAndre Przywara if (file_size < 0) 28173f00e73SAndre Przywara die_perror("kernel read"); 282af7b0868SMatt Evans 283af7b0868SMatt Evans p = guest_flat_to_host(kvm, BOOT_CMDLINE_OFFSET); 284af7b0868SMatt Evans if (kernel_cmdline) { 285af7b0868SMatt Evans cmdline_size = strlen(kernel_cmdline) + 1; 286af7b0868SMatt Evans if (cmdline_size > boot.hdr.cmdline_size) 287af7b0868SMatt Evans cmdline_size = boot.hdr.cmdline_size; 288af7b0868SMatt Evans 289af7b0868SMatt Evans memset(p, 0, boot.hdr.cmdline_size); 290af7b0868SMatt Evans memcpy(p, kernel_cmdline, cmdline_size - 1); 291af7b0868SMatt Evans } 292af7b0868SMatt Evans 293ff7ba6faSWill Deacon /* vidmode should be either specified or set by default */ 2947bcceb95SPekka Enberg if (kvm->cfg.vnc || kvm->cfg.sdl || kvm->cfg.gtk) { 2956ad7171aSAsias He if (!kvm->cfg.arch.vidmode) 296ff7ba6faSWill Deacon vidmode = 0x312; 2976ad7171aSAsias He else 2986ad7171aSAsias He vidmode = kvm->cfg.arch.vidmode; 299ff7ba6faSWill Deacon } else { 300ff7ba6faSWill Deacon vidmode = 0; 301ff7ba6faSWill Deacon } 302ff7ba6faSWill Deacon 303af7b0868SMatt Evans kern_boot = guest_real_to_host(kvm, BOOT_LOADER_SELECTOR, 0x00); 304af7b0868SMatt Evans 305af7b0868SMatt Evans kern_boot->hdr.cmd_line_ptr = BOOT_CMDLINE_OFFSET; 306af7b0868SMatt Evans kern_boot->hdr.type_of_loader = 0xff; 307af7b0868SMatt Evans kern_boot->hdr.heap_end_ptr = 0xfe00; 308af7b0868SMatt Evans kern_boot->hdr.loadflags |= CAN_USE_HEAP; 309af7b0868SMatt Evans kern_boot->hdr.vid_mode = vidmode; 310af7b0868SMatt Evans 311af7b0868SMatt Evans /* 312af7b0868SMatt Evans * Read initrd image into guest memory 313af7b0868SMatt Evans */ 314af7b0868SMatt Evans if (fd_initrd >= 0) { 315af7b0868SMatt Evans struct stat initrd_stat; 316af7b0868SMatt Evans unsigned long addr; 317af7b0868SMatt Evans 318af7b0868SMatt Evans if (fstat(fd_initrd, &initrd_stat)) 319af7b0868SMatt Evans die_perror("fstat"); 320af7b0868SMatt Evans 321af7b0868SMatt Evans addr = boot.hdr.initrd_addr_max & ~0xfffff; 322af7b0868SMatt Evans for (;;) { 323af7b0868SMatt Evans if (addr < BZ_KERNEL_START) 324af7b0868SMatt Evans die("Not enough memory for initrd"); 325af7b0868SMatt Evans else if (addr < (kvm->ram_size - initrd_stat.st_size)) 326af7b0868SMatt Evans break; 327af7b0868SMatt Evans addr -= 0x100000; 328af7b0868SMatt Evans } 329af7b0868SMatt Evans 330af7b0868SMatt Evans p = guest_flat_to_host(kvm, addr); 33173f00e73SAndre Przywara if (read_in_full(fd_initrd, p, initrd_stat.st_size) < 0) 332af7b0868SMatt Evans die("Failed to read initrd"); 333af7b0868SMatt Evans 334af7b0868SMatt Evans kern_boot->hdr.ramdisk_image = addr; 335af7b0868SMatt Evans kern_boot->hdr.ramdisk_size = initrd_stat.st_size; 336af7b0868SMatt Evans } 337af7b0868SMatt Evans 33842ac24f9SSasha Levin kvm->arch.boot_selector = BOOT_LOADER_SELECTOR; 339af7b0868SMatt Evans /* 340af7b0868SMatt Evans * The real-mode setup code starts at offset 0x200 of a bzImage. See 341af7b0868SMatt Evans * Documentation/x86/boot.txt for details. 342af7b0868SMatt Evans */ 34342ac24f9SSasha Levin kvm->arch.boot_ip = BOOT_LOADER_IP + 0x200; 34442ac24f9SSasha Levin kvm->arch.boot_sp = BOOT_LOADER_SP; 345af7b0868SMatt Evans 346af7b0868SMatt Evans return true; 347af7b0868SMatt Evans } 348af7b0868SMatt Evans 349004f7684SAndre Przywara bool kvm__arch_load_kernel_image(struct kvm *kvm, int fd_kernel, int fd_initrd, 350004f7684SAndre Przywara const char *kernel_cmdline) 351004f7684SAndre Przywara { 352004f7684SAndre Przywara if (load_bzimage(kvm, fd_kernel, fd_initrd, kernel_cmdline)) 353004f7684SAndre Przywara return true; 354004f7684SAndre Przywara pr_warning("Kernel image is not a bzImage."); 355004f7684SAndre Przywara pr_warning("Trying to load it as a flat binary (no cmdline support)"); 356004f7684SAndre Przywara 357004f7684SAndre Przywara if (fd_initrd != -1) 358004f7684SAndre Przywara pr_warning("Loading initrd with flat binary not supported."); 359004f7684SAndre Przywara 360004f7684SAndre Przywara return load_flat_binary(kvm, fd_kernel); 361004f7684SAndre Przywara } 362004f7684SAndre Przywara 363af7b0868SMatt Evans /** 364af7b0868SMatt Evans * kvm__arch_setup_firmware - inject BIOS into guest system memory 365af7b0868SMatt Evans * @kvm - guest system descriptor 366af7b0868SMatt Evans * 367af7b0868SMatt Evans * This function is a main routine where we poke guest memory 368af7b0868SMatt Evans * and install BIOS there. 369af7b0868SMatt Evans */ 370f7f9d02bSCyrill Gorcunov int kvm__arch_setup_firmware(struct kvm *kvm) 371af7b0868SMatt Evans { 372af7b0868SMatt Evans /* standart minimal configuration */ 373af7b0868SMatt Evans setup_bios(kvm); 374af7b0868SMatt Evans 375af7b0868SMatt Evans /* FIXME: SMP, ACPI and friends here */ 376af7b0868SMatt Evans 3773d34111eSSasha Levin return 0; 3781add9f73SSasha Levin } 3791add9f73SSasha Levin 3801add9f73SSasha Levin int kvm__arch_free_firmware(struct kvm *kvm) 3811add9f73SSasha Levin { 3823d34111eSSasha Levin return 0; 383af7b0868SMatt Evans } 3840b69bdefSMatt Evans 38512c406a8SJonathan Austin void kvm__arch_read_term(struct kvm *kvm) 3860b69bdefSMatt Evans { 387f6b8ccc1SThomas Gleixner serial8250__update_consoles(kvm); 3880b69bdefSMatt Evans virtio_console__inject_interrupt(kvm); 3890b69bdefSMatt Evans } 390