1d76d1650Saurel32 /* 2d76d1650Saurel32 * PowerPC implementation of KVM hooks 3d76d1650Saurel32 * 4d76d1650Saurel32 * Copyright IBM Corp. 2007 590dc8812SScott Wood * Copyright (C) 2011 Freescale Semiconductor, Inc. 6d76d1650Saurel32 * 7d76d1650Saurel32 * Authors: 8d76d1650Saurel32 * Jerone Young <jyoung5@us.ibm.com> 9d76d1650Saurel32 * Christian Ehrhardt <ehrhardt@linux.vnet.ibm.com> 10d76d1650Saurel32 * Hollis Blanchard <hollisb@us.ibm.com> 11d76d1650Saurel32 * 12d76d1650Saurel32 * This work is licensed under the terms of the GNU GPL, version 2 or later. 13d76d1650Saurel32 * See the COPYING file in the top-level directory. 14d76d1650Saurel32 * 15d76d1650Saurel32 */ 16d76d1650Saurel32 170d75590dSPeter Maydell #include "qemu/osdep.h" 18eadaada1SAlexander Graf #include <dirent.h> 19d76d1650Saurel32 #include <sys/ioctl.h> 204656e1f0SBenjamin Herrenschmidt #include <sys/vfs.h> 21d76d1650Saurel32 22d76d1650Saurel32 #include <linux/kvm.h> 23d76d1650Saurel32 24d76d1650Saurel32 #include "qemu-common.h" 2530f4b05bSDavid Gibson #include "qapi/error.h" 26072ed5f2SThomas Huth #include "qemu/error-report.h" 2733c11879SPaolo Bonzini #include "cpu.h" 28715d4b96SThomas Huth #include "cpu-models.h" 291de7afc9SPaolo Bonzini #include "qemu/timer.h" 30b3946626SVincent Palatin #include "sysemu/hw_accel.h" 31d76d1650Saurel32 #include "kvm_ppc.h" 329c17d615SPaolo Bonzini #include "sysemu/cpus.h" 339c17d615SPaolo Bonzini #include "sysemu/device_tree.h" 34d5aea6f3SDavid Gibson #include "mmu-hash64.h" 35d76d1650Saurel32 36f61b4bedSAlexander Graf #include "hw/sysbus.h" 370d09e41aSPaolo Bonzini #include "hw/ppc/spapr.h" 387ebaf795SBharata B Rao #include "hw/ppc/spapr_cpu_core.h" 39650d103dSMarkus Armbruster #include "hw/hw.h" 4098a8b524SAlexey Kardashevskiy #include "hw/ppc/ppc.h" 41ca77ee28SMarkus Armbruster #include "migration/qemu-file-types.h" 4231f2cb8fSBharat Bhushan #include "sysemu/watchdog.h" 43b36f100eSAlexey Kardashevskiy #include "trace.h" 4488365d17SBharat Bhushan #include "exec/gdbstub.h" 454c663752SPaolo Bonzini #include "exec/memattrs.h" 469c607668SAlexey Kardashevskiy #include "exec/ram_addr.h" 472d103aaeSMichael Roth #include "sysemu/hostmem.h" 48f348b6d1SVeronia Bahaa #include "qemu/cutils.h" 49db725815SMarkus Armbruster #include "qemu/main-loop.h" 509c607668SAlexey Kardashevskiy #include "qemu/mmap-alloc.h" 51f3d9f303SSam Bobroff #include "elf.h" 52c64abd1fSSam Bobroff #include "sysemu/kvm_int.h" 53f61b4bedSAlexander Graf 54eadaada1SAlexander Graf #define PROC_DEVTREE_CPU "/proc/device-tree/cpus/" 55eadaada1SAlexander Graf 56*6e0552a3SFabiano Rosas #define DEBUG_RETURN_GUEST 0 57*6e0552a3SFabiano Rosas #define DEBUG_RETURN_GDB 1 58*6e0552a3SFabiano Rosas 5994a8d39aSJan Kiszka const KVMCapabilityInfo kvm_arch_required_capabilities[] = { 6094a8d39aSJan Kiszka KVM_CAP_LAST_INFO 6194a8d39aSJan Kiszka }; 6294a8d39aSJan Kiszka 63c995e942SDavid Gibson static int cap_interrupt_unset; 6490dc8812SScott Wood static int cap_segstate; 6590dc8812SScott Wood static int cap_booke_sregs; 66e97c3636SDavid Gibson static int cap_ppc_smt; 67fa98fbfcSSam Bobroff static int cap_ppc_smt_possible; 680f5cb298SDavid Gibson static int cap_spapr_tce; 69d6ee2a7cSAlexey Kardashevskiy static int cap_spapr_tce_64; 70da95324eSAlexey Kardashevskiy static int cap_spapr_multitce; 719bb62a07SAlexey Kardashevskiy static int cap_spapr_vfio; 72f1af19d7SDavid Gibson static int cap_hior; 73d67d40eaSDavid Gibson static int cap_one_reg; 743b961124SStuart Yoder static int cap_epr; 7531f2cb8fSBharat Bhushan static int cap_ppc_watchdog; 769b00ea49SDavid Gibson static int cap_papr; 77e68cb8b4SAlexey Kardashevskiy static int cap_htab_fd; 7887a91de6SAlexander Graf static int cap_fixup_hcalls; 79bac3bf28SThomas Huth static int cap_htm; /* Hardware transactional memory support */ 80cf1c4cceSSam Bobroff static int cap_mmu_radix; 81cf1c4cceSSam Bobroff static int cap_mmu_hash_v3; 8238afd772SCédric Le Goater static int cap_xive; 83b55d295eSDavid Gibson static int cap_resize_hpt; 84c363a37aSDaniel Henrique Barboza static int cap_ppc_pvr_compat; 858acc2ae5SSuraj Jitindar Singh static int cap_ppc_safe_cache; 868acc2ae5SSuraj Jitindar Singh static int cap_ppc_safe_bounds_check; 878acc2ae5SSuraj Jitindar Singh static int cap_ppc_safe_indirect_branch; 888ff43ee4SSuraj Jitindar Singh static int cap_ppc_count_cache_flush_assist; 89b9a477b7SSuraj Jitindar Singh static int cap_ppc_nested_kvm_hv; 907d050527SSuraj Jitindar Singh static int cap_large_decr; 91fc87e185SAlexander Graf 923c902d44SBharat Bhushan static uint32_t debug_inst_opcode; 933c902d44SBharat Bhushan 94c995e942SDavid Gibson /* 95c995e942SDavid Gibson * Check whether we are running with KVM-PR (instead of KVM-HV). This 9696c9cff0SThomas Huth * should only be used for fallback tests - generally we should use 9796c9cff0SThomas Huth * explicit capabilities for the features we want, rather than 98c995e942SDavid Gibson * assuming what is/isn't available depending on the KVM variant. 99c995e942SDavid Gibson */ 10096c9cff0SThomas Huth static bool kvmppc_is_pr(KVMState *ks) 10196c9cff0SThomas Huth { 10296c9cff0SThomas Huth /* Assume KVM-PR if the GET_PVINFO capability is available */ 10370a0c19eSGreg Kurz return kvm_vm_check_extension(ks, KVM_CAP_PPC_GET_PVINFO) != 0; 10496c9cff0SThomas Huth } 10596c9cff0SThomas Huth 106165dc3edSDavid Gibson static int kvm_ppc_register_host_cpu_type(void); 1078acc2ae5SSuraj Jitindar Singh static void kvmppc_get_cpu_characteristics(KVMState *s); 1087d050527SSuraj Jitindar Singh static int kvmppc_get_dec_bits(void); 1095ba4576bSAndreas Färber 110b16565b3SMarcel Apfelbaum int kvm_arch_init(MachineState *ms, KVMState *s) 111d76d1650Saurel32 { 112fc87e185SAlexander Graf cap_interrupt_unset = kvm_check_extension(s, KVM_CAP_PPC_UNSET_IRQ); 11390dc8812SScott Wood cap_segstate = kvm_check_extension(s, KVM_CAP_PPC_SEGSTATE); 11490dc8812SScott Wood cap_booke_sregs = kvm_check_extension(s, KVM_CAP_PPC_BOOKE_SREGS); 1156977afdaSGreg Kurz cap_ppc_smt_possible = kvm_vm_check_extension(s, KVM_CAP_PPC_SMT_POSSIBLE); 1160f5cb298SDavid Gibson cap_spapr_tce = kvm_check_extension(s, KVM_CAP_SPAPR_TCE); 117d6ee2a7cSAlexey Kardashevskiy cap_spapr_tce_64 = kvm_check_extension(s, KVM_CAP_SPAPR_TCE_64); 118da95324eSAlexey Kardashevskiy cap_spapr_multitce = kvm_check_extension(s, KVM_CAP_SPAPR_MULTITCE); 1199ded780cSAlexey Kardashevskiy cap_spapr_vfio = kvm_vm_check_extension(s, KVM_CAP_SPAPR_TCE_VFIO); 120d67d40eaSDavid Gibson cap_one_reg = kvm_check_extension(s, KVM_CAP_ONE_REG); 121f1af19d7SDavid Gibson cap_hior = kvm_check_extension(s, KVM_CAP_PPC_HIOR); 1223b961124SStuart Yoder cap_epr = kvm_check_extension(s, KVM_CAP_PPC_EPR); 12331f2cb8fSBharat Bhushan cap_ppc_watchdog = kvm_check_extension(s, KVM_CAP_PPC_BOOKE_WATCHDOG); 124c995e942SDavid Gibson /* 125c995e942SDavid Gibson * Note: we don't set cap_papr here, because this capability is 126c995e942SDavid Gibson * only activated after this by kvmppc_set_papr() 127c995e942SDavid Gibson */ 1286977afdaSGreg Kurz cap_htab_fd = kvm_vm_check_extension(s, KVM_CAP_PPC_HTAB_FD); 12987a91de6SAlexander Graf cap_fixup_hcalls = kvm_check_extension(s, KVM_CAP_PPC_FIXUP_HCALL); 130fa98fbfcSSam Bobroff cap_ppc_smt = kvm_vm_check_extension(s, KVM_CAP_PPC_SMT); 131bac3bf28SThomas Huth cap_htm = kvm_vm_check_extension(s, KVM_CAP_PPC_HTM); 132cf1c4cceSSam Bobroff cap_mmu_radix = kvm_vm_check_extension(s, KVM_CAP_PPC_MMU_RADIX); 133cf1c4cceSSam Bobroff cap_mmu_hash_v3 = kvm_vm_check_extension(s, KVM_CAP_PPC_MMU_HASH_V3); 13438afd772SCédric Le Goater cap_xive = kvm_vm_check_extension(s, KVM_CAP_PPC_IRQ_XIVE); 135b55d295eSDavid Gibson cap_resize_hpt = kvm_vm_check_extension(s, KVM_CAP_SPAPR_RESIZE_HPT); 1368acc2ae5SSuraj Jitindar Singh kvmppc_get_cpu_characteristics(s); 137b9a477b7SSuraj Jitindar Singh cap_ppc_nested_kvm_hv = kvm_vm_check_extension(s, KVM_CAP_PPC_NESTED_HV); 1387d050527SSuraj Jitindar Singh cap_large_decr = kvmppc_get_dec_bits(); 139c363a37aSDaniel Henrique Barboza /* 140c363a37aSDaniel Henrique Barboza * Note: setting it to false because there is not such capability 141c363a37aSDaniel Henrique Barboza * in KVM at this moment. 142c363a37aSDaniel Henrique Barboza * 143c363a37aSDaniel Henrique Barboza * TODO: call kvm_vm_check_extension() with the right capability 144c995e942SDavid Gibson * after the kernel starts implementing it. 145c995e942SDavid Gibson */ 146c363a37aSDaniel Henrique Barboza cap_ppc_pvr_compat = false; 147fc87e185SAlexander Graf 1481e8f51e8SShivaprasad G Bhat if (!kvm_check_extension(s, KVM_CAP_PPC_IRQ_LEVEL)) { 1491e8f51e8SShivaprasad G Bhat error_report("KVM: Host kernel doesn't have level irq capability"); 1501e8f51e8SShivaprasad G Bhat exit(1); 151fc87e185SAlexander Graf } 152fc87e185SAlexander Graf 153165dc3edSDavid Gibson kvm_ppc_register_host_cpu_type(); 1545ba4576bSAndreas Färber 155d76d1650Saurel32 return 0; 156d76d1650Saurel32 } 157d76d1650Saurel32 1584376c40dSPaolo Bonzini int kvm_arch_irqchip_create(KVMState *s) 159d525ffabSPaolo Bonzini { 160d525ffabSPaolo Bonzini return 0; 161d525ffabSPaolo Bonzini } 162d525ffabSPaolo Bonzini 1631bc22652SAndreas Färber static int kvm_arch_sync_sregs(PowerPCCPU *cpu) 164d76d1650Saurel32 { 1651bc22652SAndreas Färber CPUPPCState *cenv = &cpu->env; 1661bc22652SAndreas Färber CPUState *cs = CPU(cpu); 167861bbc80SAlexander Graf struct kvm_sregs sregs; 1685666ca4aSScott Wood int ret; 1695666ca4aSScott Wood 1705666ca4aSScott Wood if (cenv->excp_model == POWERPC_EXCP_BOOKE) { 171c995e942SDavid Gibson /* 172c995e942SDavid Gibson * What we're really trying to say is "if we're on BookE, we 173c995e942SDavid Gibson * use the native PVR for now". This is the only sane way to 174c995e942SDavid Gibson * check it though, so we potentially confuse users that they 175c995e942SDavid Gibson * can run BookE guests on BookS. Let's hope nobody dares 176c995e942SDavid Gibson * enough :) 177c995e942SDavid Gibson */ 1785666ca4aSScott Wood return 0; 1795666ca4aSScott Wood } else { 18090dc8812SScott Wood if (!cap_segstate) { 18164e07be5SAlexander Graf fprintf(stderr, "kvm error: missing PVR setting capability\n"); 18264e07be5SAlexander Graf return -ENOSYS; 1835666ca4aSScott Wood } 1845666ca4aSScott Wood } 1855666ca4aSScott Wood 1861bc22652SAndreas Färber ret = kvm_vcpu_ioctl(cs, KVM_GET_SREGS, &sregs); 1875666ca4aSScott Wood if (ret) { 1885666ca4aSScott Wood return ret; 1895666ca4aSScott Wood } 190861bbc80SAlexander Graf 191861bbc80SAlexander Graf sregs.pvr = cenv->spr[SPR_PVR]; 1921bc22652SAndreas Färber return kvm_vcpu_ioctl(cs, KVM_SET_SREGS, &sregs); 1935666ca4aSScott Wood } 1945666ca4aSScott Wood 19593dd5e85SScott Wood /* Set up a shared TLB array with KVM */ 1961bc22652SAndreas Färber static int kvm_booke206_tlb_init(PowerPCCPU *cpu) 19793dd5e85SScott Wood { 1981bc22652SAndreas Färber CPUPPCState *env = &cpu->env; 1991bc22652SAndreas Färber CPUState *cs = CPU(cpu); 20093dd5e85SScott Wood struct kvm_book3e_206_tlb_params params = {}; 20193dd5e85SScott Wood struct kvm_config_tlb cfg = {}; 20293dd5e85SScott Wood unsigned int entries = 0; 20393dd5e85SScott Wood int ret, i; 20493dd5e85SScott Wood 20593dd5e85SScott Wood if (!kvm_enabled() || 206a60f24b5SAndreas Färber !kvm_check_extension(cs->kvm_state, KVM_CAP_SW_TLB)) { 20793dd5e85SScott Wood return 0; 20893dd5e85SScott Wood } 20993dd5e85SScott Wood 21093dd5e85SScott Wood assert(ARRAY_SIZE(params.tlb_sizes) == BOOKE206_MAX_TLBN); 21193dd5e85SScott Wood 21293dd5e85SScott Wood for (i = 0; i < BOOKE206_MAX_TLBN; i++) { 21393dd5e85SScott Wood params.tlb_sizes[i] = booke206_tlb_size(env, i); 21493dd5e85SScott Wood params.tlb_ways[i] = booke206_tlb_ways(env, i); 21593dd5e85SScott Wood entries += params.tlb_sizes[i]; 21693dd5e85SScott Wood } 21793dd5e85SScott Wood 21893dd5e85SScott Wood assert(entries == env->nb_tlb); 21993dd5e85SScott Wood assert(sizeof(struct kvm_book3e_206_tlb_entry) == sizeof(ppcmas_tlb_t)); 22093dd5e85SScott Wood 22193dd5e85SScott Wood env->tlb_dirty = true; 22293dd5e85SScott Wood 22393dd5e85SScott Wood cfg.array = (uintptr_t)env->tlb.tlbm; 22493dd5e85SScott Wood cfg.array_len = sizeof(ppcmas_tlb_t) * entries; 22593dd5e85SScott Wood cfg.params = (uintptr_t)¶ms; 22693dd5e85SScott Wood cfg.mmu_type = KVM_MMU_FSL_BOOKE_NOHV; 22793dd5e85SScott Wood 22848add816SCornelia Huck ret = kvm_vcpu_enable_cap(cs, KVM_CAP_SW_TLB, 0, (uintptr_t)&cfg); 22993dd5e85SScott Wood if (ret < 0) { 23093dd5e85SScott Wood fprintf(stderr, "%s: couldn't enable KVM_CAP_SW_TLB: %s\n", 23193dd5e85SScott Wood __func__, strerror(-ret)); 23293dd5e85SScott Wood return ret; 23393dd5e85SScott Wood } 23493dd5e85SScott Wood 23593dd5e85SScott Wood env->kvm_sw_tlb = true; 23693dd5e85SScott Wood return 0; 23793dd5e85SScott Wood } 23893dd5e85SScott Wood 2394656e1f0SBenjamin Herrenschmidt 2404656e1f0SBenjamin Herrenschmidt #if defined(TARGET_PPC64) 241ab256960SGreg Kurz static void kvm_get_smmu_info(struct kvm_ppc_smmu_info *info, Error **errp) 2424656e1f0SBenjamin Herrenschmidt { 2434656e1f0SBenjamin Herrenschmidt int ret; 2444656e1f0SBenjamin Herrenschmidt 245ab256960SGreg Kurz assert(kvm_state != NULL); 246ab256960SGreg Kurz 247ab256960SGreg Kurz if (!kvm_check_extension(kvm_state, KVM_CAP_PPC_GET_SMMU_INFO)) { 24871d0f1eaSGreg Kurz error_setg(errp, "KVM doesn't expose the MMU features it supports"); 24971d0f1eaSGreg Kurz error_append_hint(errp, "Consider switching to a newer KVM\n"); 25071d0f1eaSGreg Kurz return; 25171d0f1eaSGreg Kurz } 25271d0f1eaSGreg Kurz 253ab256960SGreg Kurz ret = kvm_vm_ioctl(kvm_state, KVM_PPC_GET_SMMU_INFO, info); 2544656e1f0SBenjamin Herrenschmidt if (ret == 0) { 2554656e1f0SBenjamin Herrenschmidt return; 2564656e1f0SBenjamin Herrenschmidt } 2574656e1f0SBenjamin Herrenschmidt 25871d0f1eaSGreg Kurz error_setg_errno(errp, -ret, 25971d0f1eaSGreg Kurz "KVM failed to provide the MMU features it supports"); 2604656e1f0SBenjamin Herrenschmidt } 2614656e1f0SBenjamin Herrenschmidt 262c64abd1fSSam Bobroff struct ppc_radix_page_info *kvm_get_radix_page_info(void) 263c64abd1fSSam Bobroff { 2644f7f5893SPhilippe Mathieu-Daudé KVMState *s = KVM_STATE(current_accel()); 265c64abd1fSSam Bobroff struct ppc_radix_page_info *radix_page_info; 266c64abd1fSSam Bobroff struct kvm_ppc_rmmu_info rmmu_info; 267c64abd1fSSam Bobroff int i; 268c64abd1fSSam Bobroff 269c64abd1fSSam Bobroff if (!kvm_check_extension(s, KVM_CAP_PPC_MMU_RADIX)) { 270c64abd1fSSam Bobroff return NULL; 271c64abd1fSSam Bobroff } 272c64abd1fSSam Bobroff if (kvm_vm_ioctl(s, KVM_PPC_GET_RMMU_INFO, &rmmu_info)) { 273c64abd1fSSam Bobroff return NULL; 274c64abd1fSSam Bobroff } 275c64abd1fSSam Bobroff radix_page_info = g_malloc0(sizeof(*radix_page_info)); 276c64abd1fSSam Bobroff radix_page_info->count = 0; 277c64abd1fSSam Bobroff for (i = 0; i < PPC_PAGE_SIZES_MAX_SZ; i++) { 278c64abd1fSSam Bobroff if (rmmu_info.ap_encodings[i]) { 279c64abd1fSSam Bobroff radix_page_info->entries[i] = rmmu_info.ap_encodings[i]; 280c64abd1fSSam Bobroff radix_page_info->count++; 281c64abd1fSSam Bobroff } 282c64abd1fSSam Bobroff } 283c64abd1fSSam Bobroff return radix_page_info; 284c64abd1fSSam Bobroff } 285c64abd1fSSam Bobroff 286b4db5413SSuraj Jitindar Singh target_ulong kvmppc_configure_v3_mmu(PowerPCCPU *cpu, 287b4db5413SSuraj Jitindar Singh bool radix, bool gtse, 288b4db5413SSuraj Jitindar Singh uint64_t proc_tbl) 289b4db5413SSuraj Jitindar Singh { 290b4db5413SSuraj Jitindar Singh CPUState *cs = CPU(cpu); 291b4db5413SSuraj Jitindar Singh int ret; 292b4db5413SSuraj Jitindar Singh uint64_t flags = 0; 293b4db5413SSuraj Jitindar Singh struct kvm_ppc_mmuv3_cfg cfg = { 294b4db5413SSuraj Jitindar Singh .process_table = proc_tbl, 295b4db5413SSuraj Jitindar Singh }; 296b4db5413SSuraj Jitindar Singh 297b4db5413SSuraj Jitindar Singh if (radix) { 298b4db5413SSuraj Jitindar Singh flags |= KVM_PPC_MMUV3_RADIX; 299b4db5413SSuraj Jitindar Singh } 300b4db5413SSuraj Jitindar Singh if (gtse) { 301b4db5413SSuraj Jitindar Singh flags |= KVM_PPC_MMUV3_GTSE; 302b4db5413SSuraj Jitindar Singh } 303b4db5413SSuraj Jitindar Singh cfg.flags = flags; 304b4db5413SSuraj Jitindar Singh ret = kvm_vm_ioctl(cs->kvm_state, KVM_PPC_CONFIGURE_V3_MMU, &cfg); 305b4db5413SSuraj Jitindar Singh switch (ret) { 306b4db5413SSuraj Jitindar Singh case 0: 307b4db5413SSuraj Jitindar Singh return H_SUCCESS; 308b4db5413SSuraj Jitindar Singh case -EINVAL: 309b4db5413SSuraj Jitindar Singh return H_PARAMETER; 310b4db5413SSuraj Jitindar Singh case -ENODEV: 311b4db5413SSuraj Jitindar Singh return H_NOT_AVAILABLE; 312b4db5413SSuraj Jitindar Singh default: 313b4db5413SSuraj Jitindar Singh return H_HARDWARE; 314b4db5413SSuraj Jitindar Singh } 315b4db5413SSuraj Jitindar Singh } 316b4db5413SSuraj Jitindar Singh 31724c6863cSDavid Gibson bool kvmppc_hpt_needs_host_contiguous_pages(void) 31824c6863cSDavid Gibson { 31924c6863cSDavid Gibson static struct kvm_ppc_smmu_info smmu_info; 32024c6863cSDavid Gibson 32124c6863cSDavid Gibson if (!kvm_enabled()) { 32224c6863cSDavid Gibson return false; 32324c6863cSDavid Gibson } 32424c6863cSDavid Gibson 325ab256960SGreg Kurz kvm_get_smmu_info(&smmu_info, &error_fatal); 32624c6863cSDavid Gibson return !!(smmu_info.flags & KVM_PPC_PAGE_SIZES_REAL); 32724c6863cSDavid Gibson } 32824c6863cSDavid Gibson 329e5ca28ecSDavid Gibson void kvm_check_mmu(PowerPCCPU *cpu, Error **errp) 3304656e1f0SBenjamin Herrenschmidt { 331e5ca28ecSDavid Gibson struct kvm_ppc_smmu_info smmu_info; 3324656e1f0SBenjamin Herrenschmidt int iq, ik, jq, jk; 33371d0f1eaSGreg Kurz Error *local_err = NULL; 3344656e1f0SBenjamin Herrenschmidt 335e5ca28ecSDavid Gibson /* For now, we only have anything to check on hash64 MMUs */ 336e5ca28ecSDavid Gibson if (!cpu->hash64_opts || !kvm_enabled()) { 3374656e1f0SBenjamin Herrenschmidt return; 3384656e1f0SBenjamin Herrenschmidt } 3394656e1f0SBenjamin Herrenschmidt 340ab256960SGreg Kurz kvm_get_smmu_info(&smmu_info, &local_err); 34171d0f1eaSGreg Kurz if (local_err) { 34271d0f1eaSGreg Kurz error_propagate(errp, local_err); 34371d0f1eaSGreg Kurz return; 34471d0f1eaSGreg Kurz } 345e5ca28ecSDavid Gibson 346e5ca28ecSDavid Gibson if (ppc_hash64_has(cpu, PPC_HASH64_1TSEG) 347e5ca28ecSDavid Gibson && !(smmu_info.flags & KVM_PPC_1T_SEGMENTS)) { 348e5ca28ecSDavid Gibson error_setg(errp, 349e5ca28ecSDavid Gibson "KVM does not support 1TiB segments which guest expects"); 350e5ca28ecSDavid Gibson return; 3514656e1f0SBenjamin Herrenschmidt } 3524656e1f0SBenjamin Herrenschmidt 353e5ca28ecSDavid Gibson if (smmu_info.slb_size < cpu->hash64_opts->slb_size) { 354e5ca28ecSDavid Gibson error_setg(errp, "KVM only supports %u SLB entries, but guest needs %u", 355e5ca28ecSDavid Gibson smmu_info.slb_size, cpu->hash64_opts->slb_size); 356e5ca28ecSDavid Gibson return; 35790da0d5aSBenjamin Herrenschmidt } 35890da0d5aSBenjamin Herrenschmidt 35908215d8fSAlexander Graf /* 360e5ca28ecSDavid Gibson * Verify that every pagesize supported by the cpu model is 361e5ca28ecSDavid Gibson * supported by KVM with the same encodings 36208215d8fSAlexander Graf */ 363e5ca28ecSDavid Gibson for (iq = 0; iq < ARRAY_SIZE(cpu->hash64_opts->sps); iq++) { 364b07c59f7SDavid Gibson PPCHash64SegmentPageSizes *qsps = &cpu->hash64_opts->sps[iq]; 365e5ca28ecSDavid Gibson struct kvm_ppc_one_seg_page_size *ksps; 3664656e1f0SBenjamin Herrenschmidt 367e5ca28ecSDavid Gibson for (ik = 0; ik < ARRAY_SIZE(smmu_info.sps); ik++) { 368e5ca28ecSDavid Gibson if (qsps->page_shift == smmu_info.sps[ik].page_shift) { 3694656e1f0SBenjamin Herrenschmidt break; 3704656e1f0SBenjamin Herrenschmidt } 3714656e1f0SBenjamin Herrenschmidt } 372e5ca28ecSDavid Gibson if (ik >= ARRAY_SIZE(smmu_info.sps)) { 373e5ca28ecSDavid Gibson error_setg(errp, "KVM doesn't support for base page shift %u", 374e5ca28ecSDavid Gibson qsps->page_shift); 375e5ca28ecSDavid Gibson return; 376e5ca28ecSDavid Gibson } 377e5ca28ecSDavid Gibson 378e5ca28ecSDavid Gibson ksps = &smmu_info.sps[ik]; 379e5ca28ecSDavid Gibson if (ksps->slb_enc != qsps->slb_enc) { 380e5ca28ecSDavid Gibson error_setg(errp, 381e5ca28ecSDavid Gibson "KVM uses SLB encoding 0x%x for page shift %u, but guest expects 0x%x", 382e5ca28ecSDavid Gibson ksps->slb_enc, ksps->page_shift, qsps->slb_enc); 383e5ca28ecSDavid Gibson return; 384e5ca28ecSDavid Gibson } 385e5ca28ecSDavid Gibson 386e5ca28ecSDavid Gibson for (jq = 0; jq < ARRAY_SIZE(qsps->enc); jq++) { 387e5ca28ecSDavid Gibson for (jk = 0; jk < ARRAY_SIZE(ksps->enc); jk++) { 388e5ca28ecSDavid Gibson if (qsps->enc[jq].page_shift == ksps->enc[jk].page_shift) { 3894656e1f0SBenjamin Herrenschmidt break; 3904656e1f0SBenjamin Herrenschmidt } 3914656e1f0SBenjamin Herrenschmidt } 3924656e1f0SBenjamin Herrenschmidt 393e5ca28ecSDavid Gibson if (jk >= ARRAY_SIZE(ksps->enc)) { 394e5ca28ecSDavid Gibson error_setg(errp, "KVM doesn't support page shift %u/%u", 395e5ca28ecSDavid Gibson qsps->enc[jq].page_shift, qsps->page_shift); 396e5ca28ecSDavid Gibson return; 397e5ca28ecSDavid Gibson } 398e5ca28ecSDavid Gibson if (qsps->enc[jq].pte_enc != ksps->enc[jk].pte_enc) { 399e5ca28ecSDavid Gibson error_setg(errp, 400e5ca28ecSDavid Gibson "KVM uses PTE encoding 0x%x for page shift %u/%u, but guest expects 0x%x", 401e5ca28ecSDavid Gibson ksps->enc[jk].pte_enc, qsps->enc[jq].page_shift, 402e5ca28ecSDavid Gibson qsps->page_shift, qsps->enc[jq].pte_enc); 403e5ca28ecSDavid Gibson return; 404e5ca28ecSDavid Gibson } 405e5ca28ecSDavid Gibson } 4064656e1f0SBenjamin Herrenschmidt } 4074656e1f0SBenjamin Herrenschmidt 408e5ca28ecSDavid Gibson if (ppc_hash64_has(cpu, PPC_HASH64_CI_LARGEPAGE)) { 409c995e942SDavid Gibson /* 410c995e942SDavid Gibson * Mostly what guest pagesizes we can use are related to the 411e5ca28ecSDavid Gibson * host pages used to map guest RAM, which is handled in the 412e5ca28ecSDavid Gibson * platform code. Cache-Inhibited largepages (64k) however are 413e5ca28ecSDavid Gibson * used for I/O, so if they're mapped to the host at all it 414e5ca28ecSDavid Gibson * will be a normal mapping, not a special hugepage one used 415c995e942SDavid Gibson * for RAM. 416c995e942SDavid Gibson */ 417038adc2fSWei Yang if (qemu_real_host_page_size < 0x10000) { 418e5ca28ecSDavid Gibson error_setg(errp, 419e5ca28ecSDavid Gibson "KVM can't supply 64kiB CI pages, which guest expects"); 420e5ca28ecSDavid Gibson } 421e5ca28ecSDavid Gibson } 422e5ca28ecSDavid Gibson } 4234656e1f0SBenjamin Herrenschmidt #endif /* !defined (TARGET_PPC64) */ 4244656e1f0SBenjamin Herrenschmidt 425b164e48eSEduardo Habkost unsigned long kvm_arch_vcpu_id(CPUState *cpu) 426b164e48eSEduardo Habkost { 4272e886fb3SSam Bobroff return POWERPC_CPU(cpu)->vcpu_id; 428b164e48eSEduardo Habkost } 429b164e48eSEduardo Habkost 430c995e942SDavid Gibson /* 431c995e942SDavid Gibson * e500 supports 2 h/w breakpoint and 2 watchpoint. book3s supports 432c995e942SDavid Gibson * only 1 watchpoint, so array size of 4 is sufficient for now. 43388365d17SBharat Bhushan */ 43488365d17SBharat Bhushan #define MAX_HW_BKPTS 4 43588365d17SBharat Bhushan 43688365d17SBharat Bhushan static struct HWBreakpoint { 43788365d17SBharat Bhushan target_ulong addr; 43888365d17SBharat Bhushan int type; 43988365d17SBharat Bhushan } hw_debug_points[MAX_HW_BKPTS]; 44088365d17SBharat Bhushan 44188365d17SBharat Bhushan static CPUWatchpoint hw_watchpoint; 44288365d17SBharat Bhushan 44388365d17SBharat Bhushan /* Default there is no breakpoint and watchpoint supported */ 44488365d17SBharat Bhushan static int max_hw_breakpoint; 44588365d17SBharat Bhushan static int max_hw_watchpoint; 44688365d17SBharat Bhushan static int nb_hw_breakpoint; 44788365d17SBharat Bhushan static int nb_hw_watchpoint; 44888365d17SBharat Bhushan 44988365d17SBharat Bhushan static void kvmppc_hw_debug_points_init(CPUPPCState *cenv) 45088365d17SBharat Bhushan { 45188365d17SBharat Bhushan if (cenv->excp_model == POWERPC_EXCP_BOOKE) { 45288365d17SBharat Bhushan max_hw_breakpoint = 2; 45388365d17SBharat Bhushan max_hw_watchpoint = 2; 45488365d17SBharat Bhushan } 45588365d17SBharat Bhushan 45688365d17SBharat Bhushan if ((max_hw_breakpoint + max_hw_watchpoint) > MAX_HW_BKPTS) { 45788365d17SBharat Bhushan fprintf(stderr, "Error initializing h/w breakpoints\n"); 45888365d17SBharat Bhushan return; 45988365d17SBharat Bhushan } 46088365d17SBharat Bhushan } 46188365d17SBharat Bhushan 46220d695a9SAndreas Färber int kvm_arch_init_vcpu(CPUState *cs) 4635666ca4aSScott Wood { 46420d695a9SAndreas Färber PowerPCCPU *cpu = POWERPC_CPU(cs); 46520d695a9SAndreas Färber CPUPPCState *cenv = &cpu->env; 4665666ca4aSScott Wood int ret; 4675666ca4aSScott Wood 4684656e1f0SBenjamin Herrenschmidt /* Synchronize sregs with kvm */ 4691bc22652SAndreas Färber ret = kvm_arch_sync_sregs(cpu); 4705666ca4aSScott Wood if (ret) { 471388e47c7SThomas Huth if (ret == -EINVAL) { 472388e47c7SThomas Huth error_report("Register sync failed... If you're using kvm-hv.ko," 473388e47c7SThomas Huth " only \"-cpu host\" is possible"); 474388e47c7SThomas Huth } 4755666ca4aSScott Wood return ret; 4765666ca4aSScott Wood } 477861bbc80SAlexander Graf 47893dd5e85SScott Wood switch (cenv->mmu_model) { 47993dd5e85SScott Wood case POWERPC_MMU_BOOKE206: 4807f516c96SThomas Huth /* This target supports access to KVM's guest TLB */ 4811bc22652SAndreas Färber ret = kvm_booke206_tlb_init(cpu); 48293dd5e85SScott Wood break; 4837f516c96SThomas Huth case POWERPC_MMU_2_07: 4847f516c96SThomas Huth if (!cap_htm && !kvmppc_is_pr(cs->kvm_state)) { 485c995e942SDavid Gibson /* 486c995e942SDavid Gibson * KVM-HV has transactional memory on POWER8 also without 487c995e942SDavid Gibson * the KVM_CAP_PPC_HTM extension, so enable it here 488c995e942SDavid Gibson * instead as long as it's availble to userspace on the 489c995e942SDavid Gibson * host. 490c995e942SDavid Gibson */ 491f3d9f303SSam Bobroff if (qemu_getauxval(AT_HWCAP2) & PPC_FEATURE2_HAS_HTM) { 4927f516c96SThomas Huth cap_htm = true; 4937f516c96SThomas Huth } 494f3d9f303SSam Bobroff } 4957f516c96SThomas Huth break; 49693dd5e85SScott Wood default: 49793dd5e85SScott Wood break; 49893dd5e85SScott Wood } 49993dd5e85SScott Wood 5003c902d44SBharat Bhushan kvm_get_one_reg(cs, KVM_REG_PPC_DEBUG_INST, &debug_inst_opcode); 50188365d17SBharat Bhushan kvmppc_hw_debug_points_init(cenv); 5023c902d44SBharat Bhushan 503861bbc80SAlexander Graf return ret; 504d76d1650Saurel32 } 505d76d1650Saurel32 506b1115c99SLiran Alon int kvm_arch_destroy_vcpu(CPUState *cs) 507b1115c99SLiran Alon { 508b1115c99SLiran Alon return 0; 509b1115c99SLiran Alon } 510b1115c99SLiran Alon 5111bc22652SAndreas Färber static void kvm_sw_tlb_put(PowerPCCPU *cpu) 51293dd5e85SScott Wood { 5131bc22652SAndreas Färber CPUPPCState *env = &cpu->env; 5141bc22652SAndreas Färber CPUState *cs = CPU(cpu); 51593dd5e85SScott Wood struct kvm_dirty_tlb dirty_tlb; 51693dd5e85SScott Wood unsigned char *bitmap; 51793dd5e85SScott Wood int ret; 51893dd5e85SScott Wood 51993dd5e85SScott Wood if (!env->kvm_sw_tlb) { 52093dd5e85SScott Wood return; 52193dd5e85SScott Wood } 52293dd5e85SScott Wood 52393dd5e85SScott Wood bitmap = g_malloc((env->nb_tlb + 7) / 8); 52493dd5e85SScott Wood memset(bitmap, 0xFF, (env->nb_tlb + 7) / 8); 52593dd5e85SScott Wood 52693dd5e85SScott Wood dirty_tlb.bitmap = (uintptr_t)bitmap; 52793dd5e85SScott Wood dirty_tlb.num_dirty = env->nb_tlb; 52893dd5e85SScott Wood 5291bc22652SAndreas Färber ret = kvm_vcpu_ioctl(cs, KVM_DIRTY_TLB, &dirty_tlb); 53093dd5e85SScott Wood if (ret) { 53193dd5e85SScott Wood fprintf(stderr, "%s: KVM_DIRTY_TLB: %s\n", 53293dd5e85SScott Wood __func__, strerror(-ret)); 53393dd5e85SScott Wood } 53493dd5e85SScott Wood 53593dd5e85SScott Wood g_free(bitmap); 53693dd5e85SScott Wood } 53793dd5e85SScott Wood 538d67d40eaSDavid Gibson static void kvm_get_one_spr(CPUState *cs, uint64_t id, int spr) 539d67d40eaSDavid Gibson { 540d67d40eaSDavid Gibson PowerPCCPU *cpu = POWERPC_CPU(cs); 541d67d40eaSDavid Gibson CPUPPCState *env = &cpu->env; 542d67d40eaSDavid Gibson union { 543d67d40eaSDavid Gibson uint32_t u32; 544d67d40eaSDavid Gibson uint64_t u64; 545d67d40eaSDavid Gibson } val; 546d67d40eaSDavid Gibson struct kvm_one_reg reg = { 547d67d40eaSDavid Gibson .id = id, 548d67d40eaSDavid Gibson .addr = (uintptr_t) &val, 549d67d40eaSDavid Gibson }; 550d67d40eaSDavid Gibson int ret; 551d67d40eaSDavid Gibson 552d67d40eaSDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, ®); 553d67d40eaSDavid Gibson if (ret != 0) { 554b36f100eSAlexey Kardashevskiy trace_kvm_failed_spr_get(spr, strerror(errno)); 555d67d40eaSDavid Gibson } else { 556d67d40eaSDavid Gibson switch (id & KVM_REG_SIZE_MASK) { 557d67d40eaSDavid Gibson case KVM_REG_SIZE_U32: 558d67d40eaSDavid Gibson env->spr[spr] = val.u32; 559d67d40eaSDavid Gibson break; 560d67d40eaSDavid Gibson 561d67d40eaSDavid Gibson case KVM_REG_SIZE_U64: 562d67d40eaSDavid Gibson env->spr[spr] = val.u64; 563d67d40eaSDavid Gibson break; 564d67d40eaSDavid Gibson 565d67d40eaSDavid Gibson default: 566d67d40eaSDavid Gibson /* Don't handle this size yet */ 567d67d40eaSDavid Gibson abort(); 568d67d40eaSDavid Gibson } 569d67d40eaSDavid Gibson } 570d67d40eaSDavid Gibson } 571d67d40eaSDavid Gibson 572d67d40eaSDavid Gibson static void kvm_put_one_spr(CPUState *cs, uint64_t id, int spr) 573d67d40eaSDavid Gibson { 574d67d40eaSDavid Gibson PowerPCCPU *cpu = POWERPC_CPU(cs); 575d67d40eaSDavid Gibson CPUPPCState *env = &cpu->env; 576d67d40eaSDavid Gibson union { 577d67d40eaSDavid Gibson uint32_t u32; 578d67d40eaSDavid Gibson uint64_t u64; 579d67d40eaSDavid Gibson } val; 580d67d40eaSDavid Gibson struct kvm_one_reg reg = { 581d67d40eaSDavid Gibson .id = id, 582d67d40eaSDavid Gibson .addr = (uintptr_t) &val, 583d67d40eaSDavid Gibson }; 584d67d40eaSDavid Gibson int ret; 585d67d40eaSDavid Gibson 586d67d40eaSDavid Gibson switch (id & KVM_REG_SIZE_MASK) { 587d67d40eaSDavid Gibson case KVM_REG_SIZE_U32: 588d67d40eaSDavid Gibson val.u32 = env->spr[spr]; 589d67d40eaSDavid Gibson break; 590d67d40eaSDavid Gibson 591d67d40eaSDavid Gibson case KVM_REG_SIZE_U64: 592d67d40eaSDavid Gibson val.u64 = env->spr[spr]; 593d67d40eaSDavid Gibson break; 594d67d40eaSDavid Gibson 595d67d40eaSDavid Gibson default: 596d67d40eaSDavid Gibson /* Don't handle this size yet */ 597d67d40eaSDavid Gibson abort(); 598d67d40eaSDavid Gibson } 599d67d40eaSDavid Gibson 600d67d40eaSDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 601d67d40eaSDavid Gibson if (ret != 0) { 602b36f100eSAlexey Kardashevskiy trace_kvm_failed_spr_set(spr, strerror(errno)); 603d67d40eaSDavid Gibson } 604d67d40eaSDavid Gibson } 605d67d40eaSDavid Gibson 60670b79849SDavid Gibson static int kvm_put_fp(CPUState *cs) 60770b79849SDavid Gibson { 60870b79849SDavid Gibson PowerPCCPU *cpu = POWERPC_CPU(cs); 60970b79849SDavid Gibson CPUPPCState *env = &cpu->env; 61070b79849SDavid Gibson struct kvm_one_reg reg; 61170b79849SDavid Gibson int i; 61270b79849SDavid Gibson int ret; 61370b79849SDavid Gibson 61470b79849SDavid Gibson if (env->insns_flags & PPC_FLOAT) { 61570b79849SDavid Gibson uint64_t fpscr = env->fpscr; 61670b79849SDavid Gibson bool vsx = !!(env->insns_flags2 & PPC2_VSX); 61770b79849SDavid Gibson 61870b79849SDavid Gibson reg.id = KVM_REG_PPC_FPSCR; 61970b79849SDavid Gibson reg.addr = (uintptr_t)&fpscr; 62070b79849SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 62170b79849SDavid Gibson if (ret < 0) { 6228d83cbf1SGreg Kurz trace_kvm_failed_fpscr_set(strerror(errno)); 62370b79849SDavid Gibson return ret; 62470b79849SDavid Gibson } 62570b79849SDavid Gibson 62670b79849SDavid Gibson for (i = 0; i < 32; i++) { 62770b79849SDavid Gibson uint64_t vsr[2]; 628ef96e3aeSMark Cave-Ayland uint64_t *fpr = cpu_fpr_ptr(&cpu->env, i); 629ef96e3aeSMark Cave-Ayland uint64_t *vsrl = cpu_vsrl_ptr(&cpu->env, i); 63070b79849SDavid Gibson 6313a4b791bSGreg Kurz #ifdef HOST_WORDS_BIGENDIAN 632ef96e3aeSMark Cave-Ayland vsr[0] = float64_val(*fpr); 633ef96e3aeSMark Cave-Ayland vsr[1] = *vsrl; 6343a4b791bSGreg Kurz #else 635ef96e3aeSMark Cave-Ayland vsr[0] = *vsrl; 636ef96e3aeSMark Cave-Ayland vsr[1] = float64_val(*fpr); 6373a4b791bSGreg Kurz #endif 63870b79849SDavid Gibson reg.addr = (uintptr_t) &vsr; 63970b79849SDavid Gibson reg.id = vsx ? KVM_REG_PPC_VSR(i) : KVM_REG_PPC_FPR(i); 64070b79849SDavid Gibson 64170b79849SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 64270b79849SDavid Gibson if (ret < 0) { 6438d83cbf1SGreg Kurz trace_kvm_failed_fp_set(vsx ? "VSR" : "FPR", i, 6448d83cbf1SGreg Kurz strerror(errno)); 64570b79849SDavid Gibson return ret; 64670b79849SDavid Gibson } 64770b79849SDavid Gibson } 64870b79849SDavid Gibson } 64970b79849SDavid Gibson 65070b79849SDavid Gibson if (env->insns_flags & PPC_ALTIVEC) { 65170b79849SDavid Gibson reg.id = KVM_REG_PPC_VSCR; 65270b79849SDavid Gibson reg.addr = (uintptr_t)&env->vscr; 65370b79849SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 65470b79849SDavid Gibson if (ret < 0) { 6558d83cbf1SGreg Kurz trace_kvm_failed_vscr_set(strerror(errno)); 65670b79849SDavid Gibson return ret; 65770b79849SDavid Gibson } 65870b79849SDavid Gibson 65970b79849SDavid Gibson for (i = 0; i < 32; i++) { 66070b79849SDavid Gibson reg.id = KVM_REG_PPC_VR(i); 661ef96e3aeSMark Cave-Ayland reg.addr = (uintptr_t)cpu_avr_ptr(env, i); 66270b79849SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 66370b79849SDavid Gibson if (ret < 0) { 6648d83cbf1SGreg Kurz trace_kvm_failed_vr_set(i, strerror(errno)); 66570b79849SDavid Gibson return ret; 66670b79849SDavid Gibson } 66770b79849SDavid Gibson } 66870b79849SDavid Gibson } 66970b79849SDavid Gibson 67070b79849SDavid Gibson return 0; 67170b79849SDavid Gibson } 67270b79849SDavid Gibson 67370b79849SDavid Gibson static int kvm_get_fp(CPUState *cs) 67470b79849SDavid Gibson { 67570b79849SDavid Gibson PowerPCCPU *cpu = POWERPC_CPU(cs); 67670b79849SDavid Gibson CPUPPCState *env = &cpu->env; 67770b79849SDavid Gibson struct kvm_one_reg reg; 67870b79849SDavid Gibson int i; 67970b79849SDavid Gibson int ret; 68070b79849SDavid Gibson 68170b79849SDavid Gibson if (env->insns_flags & PPC_FLOAT) { 68270b79849SDavid Gibson uint64_t fpscr; 68370b79849SDavid Gibson bool vsx = !!(env->insns_flags2 & PPC2_VSX); 68470b79849SDavid Gibson 68570b79849SDavid Gibson reg.id = KVM_REG_PPC_FPSCR; 68670b79849SDavid Gibson reg.addr = (uintptr_t)&fpscr; 68770b79849SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, ®); 68870b79849SDavid Gibson if (ret < 0) { 6898d83cbf1SGreg Kurz trace_kvm_failed_fpscr_get(strerror(errno)); 69070b79849SDavid Gibson return ret; 69170b79849SDavid Gibson } else { 69270b79849SDavid Gibson env->fpscr = fpscr; 69370b79849SDavid Gibson } 69470b79849SDavid Gibson 69570b79849SDavid Gibson for (i = 0; i < 32; i++) { 69670b79849SDavid Gibson uint64_t vsr[2]; 697ef96e3aeSMark Cave-Ayland uint64_t *fpr = cpu_fpr_ptr(&cpu->env, i); 698ef96e3aeSMark Cave-Ayland uint64_t *vsrl = cpu_vsrl_ptr(&cpu->env, i); 69970b79849SDavid Gibson 70070b79849SDavid Gibson reg.addr = (uintptr_t) &vsr; 70170b79849SDavid Gibson reg.id = vsx ? KVM_REG_PPC_VSR(i) : KVM_REG_PPC_FPR(i); 70270b79849SDavid Gibson 70370b79849SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, ®); 70470b79849SDavid Gibson if (ret < 0) { 7058d83cbf1SGreg Kurz trace_kvm_failed_fp_get(vsx ? "VSR" : "FPR", i, 7068d83cbf1SGreg Kurz strerror(errno)); 70770b79849SDavid Gibson return ret; 70870b79849SDavid Gibson } else { 7093a4b791bSGreg Kurz #ifdef HOST_WORDS_BIGENDIAN 710ef96e3aeSMark Cave-Ayland *fpr = vsr[0]; 71170b79849SDavid Gibson if (vsx) { 712ef96e3aeSMark Cave-Ayland *vsrl = vsr[1]; 71370b79849SDavid Gibson } 7143a4b791bSGreg Kurz #else 715ef96e3aeSMark Cave-Ayland *fpr = vsr[1]; 7163a4b791bSGreg Kurz if (vsx) { 717ef96e3aeSMark Cave-Ayland *vsrl = vsr[0]; 7183a4b791bSGreg Kurz } 7193a4b791bSGreg Kurz #endif 72070b79849SDavid Gibson } 72170b79849SDavid Gibson } 72270b79849SDavid Gibson } 72370b79849SDavid Gibson 72470b79849SDavid Gibson if (env->insns_flags & PPC_ALTIVEC) { 72570b79849SDavid Gibson reg.id = KVM_REG_PPC_VSCR; 72670b79849SDavid Gibson reg.addr = (uintptr_t)&env->vscr; 72770b79849SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, ®); 72870b79849SDavid Gibson if (ret < 0) { 7298d83cbf1SGreg Kurz trace_kvm_failed_vscr_get(strerror(errno)); 73070b79849SDavid Gibson return ret; 73170b79849SDavid Gibson } 73270b79849SDavid Gibson 73370b79849SDavid Gibson for (i = 0; i < 32; i++) { 73470b79849SDavid Gibson reg.id = KVM_REG_PPC_VR(i); 735ef96e3aeSMark Cave-Ayland reg.addr = (uintptr_t)cpu_avr_ptr(env, i); 73670b79849SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, ®); 73770b79849SDavid Gibson if (ret < 0) { 7388d83cbf1SGreg Kurz trace_kvm_failed_vr_get(i, strerror(errno)); 73970b79849SDavid Gibson return ret; 74070b79849SDavid Gibson } 74170b79849SDavid Gibson } 74270b79849SDavid Gibson } 74370b79849SDavid Gibson 74470b79849SDavid Gibson return 0; 74570b79849SDavid Gibson } 74670b79849SDavid Gibson 7479b00ea49SDavid Gibson #if defined(TARGET_PPC64) 7489b00ea49SDavid Gibson static int kvm_get_vpa(CPUState *cs) 7499b00ea49SDavid Gibson { 7509b00ea49SDavid Gibson PowerPCCPU *cpu = POWERPC_CPU(cs); 751ce2918cbSDavid Gibson SpaprCpuState *spapr_cpu = spapr_cpu_state(cpu); 7529b00ea49SDavid Gibson struct kvm_one_reg reg; 7539b00ea49SDavid Gibson int ret; 7549b00ea49SDavid Gibson 7559b00ea49SDavid Gibson reg.id = KVM_REG_PPC_VPA_ADDR; 7567388efafSDavid Gibson reg.addr = (uintptr_t)&spapr_cpu->vpa_addr; 7579b00ea49SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, ®); 7589b00ea49SDavid Gibson if (ret < 0) { 7598d83cbf1SGreg Kurz trace_kvm_failed_vpa_addr_get(strerror(errno)); 7609b00ea49SDavid Gibson return ret; 7619b00ea49SDavid Gibson } 7629b00ea49SDavid Gibson 7637388efafSDavid Gibson assert((uintptr_t)&spapr_cpu->slb_shadow_size 7647388efafSDavid Gibson == ((uintptr_t)&spapr_cpu->slb_shadow_addr + 8)); 7659b00ea49SDavid Gibson reg.id = KVM_REG_PPC_VPA_SLB; 7667388efafSDavid Gibson reg.addr = (uintptr_t)&spapr_cpu->slb_shadow_addr; 7679b00ea49SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, ®); 7689b00ea49SDavid Gibson if (ret < 0) { 7698d83cbf1SGreg Kurz trace_kvm_failed_slb_get(strerror(errno)); 7709b00ea49SDavid Gibson return ret; 7719b00ea49SDavid Gibson } 7729b00ea49SDavid Gibson 7737388efafSDavid Gibson assert((uintptr_t)&spapr_cpu->dtl_size 7747388efafSDavid Gibson == ((uintptr_t)&spapr_cpu->dtl_addr + 8)); 7759b00ea49SDavid Gibson reg.id = KVM_REG_PPC_VPA_DTL; 7767388efafSDavid Gibson reg.addr = (uintptr_t)&spapr_cpu->dtl_addr; 7779b00ea49SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_GET_ONE_REG, ®); 7789b00ea49SDavid Gibson if (ret < 0) { 7798d83cbf1SGreg Kurz trace_kvm_failed_dtl_get(strerror(errno)); 7809b00ea49SDavid Gibson return ret; 7819b00ea49SDavid Gibson } 7829b00ea49SDavid Gibson 7839b00ea49SDavid Gibson return 0; 7849b00ea49SDavid Gibson } 7859b00ea49SDavid Gibson 7869b00ea49SDavid Gibson static int kvm_put_vpa(CPUState *cs) 7879b00ea49SDavid Gibson { 7889b00ea49SDavid Gibson PowerPCCPU *cpu = POWERPC_CPU(cs); 789ce2918cbSDavid Gibson SpaprCpuState *spapr_cpu = spapr_cpu_state(cpu); 7909b00ea49SDavid Gibson struct kvm_one_reg reg; 7919b00ea49SDavid Gibson int ret; 7929b00ea49SDavid Gibson 793c995e942SDavid Gibson /* 794c995e942SDavid Gibson * SLB shadow or DTL can't be registered unless a master VPA is 7959b00ea49SDavid Gibson * registered. That means when restoring state, if a VPA *is* 7969b00ea49SDavid Gibson * registered, we need to set that up first. If not, we need to 797c995e942SDavid Gibson * deregister the others before deregistering the master VPA 798c995e942SDavid Gibson */ 7997388efafSDavid Gibson assert(spapr_cpu->vpa_addr 8007388efafSDavid Gibson || !(spapr_cpu->slb_shadow_addr || spapr_cpu->dtl_addr)); 8019b00ea49SDavid Gibson 8027388efafSDavid Gibson if (spapr_cpu->vpa_addr) { 8039b00ea49SDavid Gibson reg.id = KVM_REG_PPC_VPA_ADDR; 8047388efafSDavid Gibson reg.addr = (uintptr_t)&spapr_cpu->vpa_addr; 8059b00ea49SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 8069b00ea49SDavid Gibson if (ret < 0) { 8078d83cbf1SGreg Kurz trace_kvm_failed_vpa_addr_set(strerror(errno)); 8089b00ea49SDavid Gibson return ret; 8099b00ea49SDavid Gibson } 8109b00ea49SDavid Gibson } 8119b00ea49SDavid Gibson 8127388efafSDavid Gibson assert((uintptr_t)&spapr_cpu->slb_shadow_size 8137388efafSDavid Gibson == ((uintptr_t)&spapr_cpu->slb_shadow_addr + 8)); 8149b00ea49SDavid Gibson reg.id = KVM_REG_PPC_VPA_SLB; 8157388efafSDavid Gibson reg.addr = (uintptr_t)&spapr_cpu->slb_shadow_addr; 8169b00ea49SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 8179b00ea49SDavid Gibson if (ret < 0) { 8188d83cbf1SGreg Kurz trace_kvm_failed_slb_set(strerror(errno)); 8199b00ea49SDavid Gibson return ret; 8209b00ea49SDavid Gibson } 8219b00ea49SDavid Gibson 8227388efafSDavid Gibson assert((uintptr_t)&spapr_cpu->dtl_size 8237388efafSDavid Gibson == ((uintptr_t)&spapr_cpu->dtl_addr + 8)); 8249b00ea49SDavid Gibson reg.id = KVM_REG_PPC_VPA_DTL; 8257388efafSDavid Gibson reg.addr = (uintptr_t)&spapr_cpu->dtl_addr; 8269b00ea49SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 8279b00ea49SDavid Gibson if (ret < 0) { 8288d83cbf1SGreg Kurz trace_kvm_failed_dtl_set(strerror(errno)); 8299b00ea49SDavid Gibson return ret; 8309b00ea49SDavid Gibson } 8319b00ea49SDavid Gibson 8327388efafSDavid Gibson if (!spapr_cpu->vpa_addr) { 8339b00ea49SDavid Gibson reg.id = KVM_REG_PPC_VPA_ADDR; 8347388efafSDavid Gibson reg.addr = (uintptr_t)&spapr_cpu->vpa_addr; 8359b00ea49SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 8369b00ea49SDavid Gibson if (ret < 0) { 8378d83cbf1SGreg Kurz trace_kvm_failed_null_vpa_addr_set(strerror(errno)); 8389b00ea49SDavid Gibson return ret; 8399b00ea49SDavid Gibson } 8409b00ea49SDavid Gibson } 8419b00ea49SDavid Gibson 8429b00ea49SDavid Gibson return 0; 8439b00ea49SDavid Gibson } 8449b00ea49SDavid Gibson #endif /* TARGET_PPC64 */ 8459b00ea49SDavid Gibson 846e5c0d3ceSDavid Gibson int kvmppc_put_books_sregs(PowerPCCPU *cpu) 847a7a00a72SDavid Gibson { 848a7a00a72SDavid Gibson CPUPPCState *env = &cpu->env; 849a7a00a72SDavid Gibson struct kvm_sregs sregs; 850a7a00a72SDavid Gibson int i; 851a7a00a72SDavid Gibson 852a7a00a72SDavid Gibson sregs.pvr = env->spr[SPR_PVR]; 853a7a00a72SDavid Gibson 8541ec26c75SGreg Kurz if (cpu->vhyp) { 8551ec26c75SGreg Kurz PPCVirtualHypervisorClass *vhc = 8561ec26c75SGreg Kurz PPC_VIRTUAL_HYPERVISOR_GET_CLASS(cpu->vhyp); 8571ec26c75SGreg Kurz sregs.u.s.sdr1 = vhc->encode_hpt_for_kvm_pr(cpu->vhyp); 8581ec26c75SGreg Kurz } else { 859a7a00a72SDavid Gibson sregs.u.s.sdr1 = env->spr[SPR_SDR1]; 8601ec26c75SGreg Kurz } 861a7a00a72SDavid Gibson 862a7a00a72SDavid Gibson /* Sync SLB */ 863a7a00a72SDavid Gibson #ifdef TARGET_PPC64 864a7a00a72SDavid Gibson for (i = 0; i < ARRAY_SIZE(env->slb); i++) { 865a7a00a72SDavid Gibson sregs.u.s.ppc64.slb[i].slbe = env->slb[i].esid; 866a7a00a72SDavid Gibson if (env->slb[i].esid & SLB_ESID_V) { 867a7a00a72SDavid Gibson sregs.u.s.ppc64.slb[i].slbe |= i; 868a7a00a72SDavid Gibson } 869a7a00a72SDavid Gibson sregs.u.s.ppc64.slb[i].slbv = env->slb[i].vsid; 870a7a00a72SDavid Gibson } 871a7a00a72SDavid Gibson #endif 872a7a00a72SDavid Gibson 873a7a00a72SDavid Gibson /* Sync SRs */ 874a7a00a72SDavid Gibson for (i = 0; i < 16; i++) { 875a7a00a72SDavid Gibson sregs.u.s.ppc32.sr[i] = env->sr[i]; 876a7a00a72SDavid Gibson } 877a7a00a72SDavid Gibson 878a7a00a72SDavid Gibson /* Sync BATs */ 879a7a00a72SDavid Gibson for (i = 0; i < 8; i++) { 880a7a00a72SDavid Gibson /* Beware. We have to swap upper and lower bits here */ 881a7a00a72SDavid Gibson sregs.u.s.ppc32.dbat[i] = ((uint64_t)env->DBAT[0][i] << 32) 882a7a00a72SDavid Gibson | env->DBAT[1][i]; 883a7a00a72SDavid Gibson sregs.u.s.ppc32.ibat[i] = ((uint64_t)env->IBAT[0][i] << 32) 884a7a00a72SDavid Gibson | env->IBAT[1][i]; 885a7a00a72SDavid Gibson } 886a7a00a72SDavid Gibson 887a7a00a72SDavid Gibson return kvm_vcpu_ioctl(CPU(cpu), KVM_SET_SREGS, &sregs); 888a7a00a72SDavid Gibson } 889a7a00a72SDavid Gibson 89020d695a9SAndreas Färber int kvm_arch_put_registers(CPUState *cs, int level) 891d76d1650Saurel32 { 89220d695a9SAndreas Färber PowerPCCPU *cpu = POWERPC_CPU(cs); 89320d695a9SAndreas Färber CPUPPCState *env = &cpu->env; 894d76d1650Saurel32 struct kvm_regs regs; 895d76d1650Saurel32 int ret; 896d76d1650Saurel32 int i; 897d76d1650Saurel32 8981bc22652SAndreas Färber ret = kvm_vcpu_ioctl(cs, KVM_GET_REGS, ®s); 8991bc22652SAndreas Färber if (ret < 0) { 900d76d1650Saurel32 return ret; 9011bc22652SAndreas Färber } 902d76d1650Saurel32 903d76d1650Saurel32 regs.ctr = env->ctr; 904d76d1650Saurel32 regs.lr = env->lr; 905da91a00fSRichard Henderson regs.xer = cpu_read_xer(env); 906d76d1650Saurel32 regs.msr = env->msr; 907d76d1650Saurel32 regs.pc = env->nip; 908d76d1650Saurel32 909d76d1650Saurel32 regs.srr0 = env->spr[SPR_SRR0]; 910d76d1650Saurel32 regs.srr1 = env->spr[SPR_SRR1]; 911d76d1650Saurel32 912d76d1650Saurel32 regs.sprg0 = env->spr[SPR_SPRG0]; 913d76d1650Saurel32 regs.sprg1 = env->spr[SPR_SPRG1]; 914d76d1650Saurel32 regs.sprg2 = env->spr[SPR_SPRG2]; 915d76d1650Saurel32 regs.sprg3 = env->spr[SPR_SPRG3]; 916d76d1650Saurel32 regs.sprg4 = env->spr[SPR_SPRG4]; 917d76d1650Saurel32 regs.sprg5 = env->spr[SPR_SPRG5]; 918d76d1650Saurel32 regs.sprg6 = env->spr[SPR_SPRG6]; 919d76d1650Saurel32 regs.sprg7 = env->spr[SPR_SPRG7]; 920d76d1650Saurel32 92190dc8812SScott Wood regs.pid = env->spr[SPR_BOOKE_PID]; 92290dc8812SScott Wood 923c995e942SDavid Gibson for (i = 0; i < 32; i++) { 924d76d1650Saurel32 regs.gpr[i] = env->gpr[i]; 925c995e942SDavid Gibson } 926d76d1650Saurel32 9274bddaf55SAlexey Kardashevskiy regs.cr = 0; 9284bddaf55SAlexey Kardashevskiy for (i = 0; i < 8; i++) { 9294bddaf55SAlexey Kardashevskiy regs.cr |= (env->crf[i] & 15) << (4 * (7 - i)); 9304bddaf55SAlexey Kardashevskiy } 9314bddaf55SAlexey Kardashevskiy 9321bc22652SAndreas Färber ret = kvm_vcpu_ioctl(cs, KVM_SET_REGS, ®s); 933c995e942SDavid Gibson if (ret < 0) { 934d76d1650Saurel32 return ret; 935c995e942SDavid Gibson } 936d76d1650Saurel32 93770b79849SDavid Gibson kvm_put_fp(cs); 93870b79849SDavid Gibson 93993dd5e85SScott Wood if (env->tlb_dirty) { 9401bc22652SAndreas Färber kvm_sw_tlb_put(cpu); 94193dd5e85SScott Wood env->tlb_dirty = false; 94293dd5e85SScott Wood } 94393dd5e85SScott Wood 944f1af19d7SDavid Gibson if (cap_segstate && (level >= KVM_PUT_RESET_STATE)) { 945a7a00a72SDavid Gibson ret = kvmppc_put_books_sregs(cpu); 946a7a00a72SDavid Gibson if (ret < 0) { 947f1af19d7SDavid Gibson return ret; 948f1af19d7SDavid Gibson } 949f1af19d7SDavid Gibson } 950f1af19d7SDavid Gibson 951f1af19d7SDavid Gibson if (cap_hior && (level >= KVM_PUT_RESET_STATE)) { 952d67d40eaSDavid Gibson kvm_put_one_spr(cs, KVM_REG_PPC_HIOR, SPR_HIOR); 953d67d40eaSDavid Gibson } 954f1af19d7SDavid Gibson 955d67d40eaSDavid Gibson if (cap_one_reg) { 956d67d40eaSDavid Gibson int i; 957d67d40eaSDavid Gibson 958c995e942SDavid Gibson /* 959c995e942SDavid Gibson * We deliberately ignore errors here, for kernels which have 960d67d40eaSDavid Gibson * the ONE_REG calls, but don't support the specific 961d67d40eaSDavid Gibson * registers, there's a reasonable chance things will still 962c995e942SDavid Gibson * work, at least until we try to migrate. 963c995e942SDavid Gibson */ 964d67d40eaSDavid Gibson for (i = 0; i < 1024; i++) { 965d67d40eaSDavid Gibson uint64_t id = env->spr_cb[i].one_reg_id; 966d67d40eaSDavid Gibson 967d67d40eaSDavid Gibson if (id != 0) { 968d67d40eaSDavid Gibson kvm_put_one_spr(cs, id, i); 969d67d40eaSDavid Gibson } 970f1af19d7SDavid Gibson } 9719b00ea49SDavid Gibson 9729b00ea49SDavid Gibson #ifdef TARGET_PPC64 97380b3f79bSAlexey Kardashevskiy if (msr_ts) { 97480b3f79bSAlexey Kardashevskiy for (i = 0; i < ARRAY_SIZE(env->tm_gpr); i++) { 97580b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_GPR(i), &env->tm_gpr[i]); 97680b3f79bSAlexey Kardashevskiy } 97780b3f79bSAlexey Kardashevskiy for (i = 0; i < ARRAY_SIZE(env->tm_vsr); i++) { 97880b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_VSR(i), &env->tm_vsr[i]); 97980b3f79bSAlexey Kardashevskiy } 98080b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_CR, &env->tm_cr); 98180b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_LR, &env->tm_lr); 98280b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_CTR, &env->tm_ctr); 98380b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_FPSCR, &env->tm_fpscr); 98480b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_AMR, &env->tm_amr); 98580b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_PPR, &env->tm_ppr); 98680b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_VRSAVE, &env->tm_vrsave); 98780b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_VSCR, &env->tm_vscr); 98880b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_DSCR, &env->tm_dscr); 98980b3f79bSAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TM_TAR, &env->tm_tar); 99080b3f79bSAlexey Kardashevskiy } 99180b3f79bSAlexey Kardashevskiy 9929b00ea49SDavid Gibson if (cap_papr) { 9939b00ea49SDavid Gibson if (kvm_put_vpa(cs) < 0) { 9948d83cbf1SGreg Kurz trace_kvm_failed_put_vpa(); 9959b00ea49SDavid Gibson } 9969b00ea49SDavid Gibson } 99798a8b524SAlexey Kardashevskiy 99898a8b524SAlexey Kardashevskiy kvm_set_one_reg(cs, KVM_REG_PPC_TB_OFFSET, &env->tb_env->tb_offset); 999972bd576SAlexey Kardashevskiy 1000972bd576SAlexey Kardashevskiy if (level > KVM_PUT_RUNTIME_STATE) { 1001972bd576SAlexey Kardashevskiy kvm_put_one_spr(cs, KVM_REG_PPC_DPDES, SPR_DPDES); 1002972bd576SAlexey Kardashevskiy } 10039b00ea49SDavid Gibson #endif /* TARGET_PPC64 */ 1004f1af19d7SDavid Gibson } 1005f1af19d7SDavid Gibson 1006d76d1650Saurel32 return ret; 1007d76d1650Saurel32 } 1008d76d1650Saurel32 1009c371c2e3SBharat Bhushan static void kvm_sync_excp(CPUPPCState *env, int vector, int ivor) 1010c371c2e3SBharat Bhushan { 1011c371c2e3SBharat Bhushan env->excp_vectors[vector] = env->spr[ivor] + env->spr[SPR_BOOKE_IVPR]; 1012c371c2e3SBharat Bhushan } 1013c371c2e3SBharat Bhushan 1014a7a00a72SDavid Gibson static int kvmppc_get_booke_sregs(PowerPCCPU *cpu) 1015d76d1650Saurel32 { 101620d695a9SAndreas Färber CPUPPCState *env = &cpu->env; 1017ba5e5090SAlexander Graf struct kvm_sregs sregs; 1018a7a00a72SDavid Gibson int ret; 1019d76d1650Saurel32 1020a7a00a72SDavid Gibson ret = kvm_vcpu_ioctl(CPU(cpu), KVM_GET_SREGS, &sregs); 102190dc8812SScott Wood if (ret < 0) { 102290dc8812SScott Wood return ret; 102390dc8812SScott Wood } 102490dc8812SScott Wood 102590dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_E_BASE) { 102690dc8812SScott Wood env->spr[SPR_BOOKE_CSRR0] = sregs.u.e.csrr0; 102790dc8812SScott Wood env->spr[SPR_BOOKE_CSRR1] = sregs.u.e.csrr1; 102890dc8812SScott Wood env->spr[SPR_BOOKE_ESR] = sregs.u.e.esr; 102990dc8812SScott Wood env->spr[SPR_BOOKE_DEAR] = sregs.u.e.dear; 103090dc8812SScott Wood env->spr[SPR_BOOKE_MCSR] = sregs.u.e.mcsr; 103190dc8812SScott Wood env->spr[SPR_BOOKE_TSR] = sregs.u.e.tsr; 103290dc8812SScott Wood env->spr[SPR_BOOKE_TCR] = sregs.u.e.tcr; 103390dc8812SScott Wood env->spr[SPR_DECR] = sregs.u.e.dec; 103490dc8812SScott Wood env->spr[SPR_TBL] = sregs.u.e.tb & 0xffffffff; 103590dc8812SScott Wood env->spr[SPR_TBU] = sregs.u.e.tb >> 32; 103690dc8812SScott Wood env->spr[SPR_VRSAVE] = sregs.u.e.vrsave; 103790dc8812SScott Wood } 103890dc8812SScott Wood 103990dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_E_ARCH206) { 104090dc8812SScott Wood env->spr[SPR_BOOKE_PIR] = sregs.u.e.pir; 104190dc8812SScott Wood env->spr[SPR_BOOKE_MCSRR0] = sregs.u.e.mcsrr0; 104290dc8812SScott Wood env->spr[SPR_BOOKE_MCSRR1] = sregs.u.e.mcsrr1; 104390dc8812SScott Wood env->spr[SPR_BOOKE_DECAR] = sregs.u.e.decar; 104490dc8812SScott Wood env->spr[SPR_BOOKE_IVPR] = sregs.u.e.ivpr; 104590dc8812SScott Wood } 104690dc8812SScott Wood 104790dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_E_64) { 104890dc8812SScott Wood env->spr[SPR_BOOKE_EPCR] = sregs.u.e.epcr; 104990dc8812SScott Wood } 105090dc8812SScott Wood 105190dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_E_SPRG8) { 105290dc8812SScott Wood env->spr[SPR_BOOKE_SPRG8] = sregs.u.e.sprg8; 105390dc8812SScott Wood } 105490dc8812SScott Wood 105590dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_E_IVOR) { 105690dc8812SScott Wood env->spr[SPR_BOOKE_IVOR0] = sregs.u.e.ivor_low[0]; 1057c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_CRITICAL, SPR_BOOKE_IVOR0); 105890dc8812SScott Wood env->spr[SPR_BOOKE_IVOR1] = sregs.u.e.ivor_low[1]; 1059c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_MCHECK, SPR_BOOKE_IVOR1); 106090dc8812SScott Wood env->spr[SPR_BOOKE_IVOR2] = sregs.u.e.ivor_low[2]; 1061c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_DSI, SPR_BOOKE_IVOR2); 106290dc8812SScott Wood env->spr[SPR_BOOKE_IVOR3] = sregs.u.e.ivor_low[3]; 1063c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_ISI, SPR_BOOKE_IVOR3); 106490dc8812SScott Wood env->spr[SPR_BOOKE_IVOR4] = sregs.u.e.ivor_low[4]; 1065c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_EXTERNAL, SPR_BOOKE_IVOR4); 106690dc8812SScott Wood env->spr[SPR_BOOKE_IVOR5] = sregs.u.e.ivor_low[5]; 1067c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_ALIGN, SPR_BOOKE_IVOR5); 106890dc8812SScott Wood env->spr[SPR_BOOKE_IVOR6] = sregs.u.e.ivor_low[6]; 1069c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_PROGRAM, SPR_BOOKE_IVOR6); 107090dc8812SScott Wood env->spr[SPR_BOOKE_IVOR7] = sregs.u.e.ivor_low[7]; 1071c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_FPU, SPR_BOOKE_IVOR7); 107290dc8812SScott Wood env->spr[SPR_BOOKE_IVOR8] = sregs.u.e.ivor_low[8]; 1073c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_SYSCALL, SPR_BOOKE_IVOR8); 107490dc8812SScott Wood env->spr[SPR_BOOKE_IVOR9] = sregs.u.e.ivor_low[9]; 1075c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_APU, SPR_BOOKE_IVOR9); 107690dc8812SScott Wood env->spr[SPR_BOOKE_IVOR10] = sregs.u.e.ivor_low[10]; 1077c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_DECR, SPR_BOOKE_IVOR10); 107890dc8812SScott Wood env->spr[SPR_BOOKE_IVOR11] = sregs.u.e.ivor_low[11]; 1079c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_FIT, SPR_BOOKE_IVOR11); 108090dc8812SScott Wood env->spr[SPR_BOOKE_IVOR12] = sregs.u.e.ivor_low[12]; 1081c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_WDT, SPR_BOOKE_IVOR12); 108290dc8812SScott Wood env->spr[SPR_BOOKE_IVOR13] = sregs.u.e.ivor_low[13]; 1083c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_DTLB, SPR_BOOKE_IVOR13); 108490dc8812SScott Wood env->spr[SPR_BOOKE_IVOR14] = sregs.u.e.ivor_low[14]; 1085c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_ITLB, SPR_BOOKE_IVOR14); 108690dc8812SScott Wood env->spr[SPR_BOOKE_IVOR15] = sregs.u.e.ivor_low[15]; 1087c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_DEBUG, SPR_BOOKE_IVOR15); 108890dc8812SScott Wood 108990dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_E_SPE) { 109090dc8812SScott Wood env->spr[SPR_BOOKE_IVOR32] = sregs.u.e.ivor_high[0]; 1091c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_SPEU, SPR_BOOKE_IVOR32); 109290dc8812SScott Wood env->spr[SPR_BOOKE_IVOR33] = sregs.u.e.ivor_high[1]; 1093c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_EFPDI, SPR_BOOKE_IVOR33); 109490dc8812SScott Wood env->spr[SPR_BOOKE_IVOR34] = sregs.u.e.ivor_high[2]; 1095c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_EFPRI, SPR_BOOKE_IVOR34); 109690dc8812SScott Wood } 109790dc8812SScott Wood 109890dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_E_PM) { 109990dc8812SScott Wood env->spr[SPR_BOOKE_IVOR35] = sregs.u.e.ivor_high[3]; 1100c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_EPERFM, SPR_BOOKE_IVOR35); 110190dc8812SScott Wood } 110290dc8812SScott Wood 110390dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_E_PC) { 110490dc8812SScott Wood env->spr[SPR_BOOKE_IVOR36] = sregs.u.e.ivor_high[4]; 1105c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_DOORI, SPR_BOOKE_IVOR36); 110690dc8812SScott Wood env->spr[SPR_BOOKE_IVOR37] = sregs.u.e.ivor_high[5]; 1107c371c2e3SBharat Bhushan kvm_sync_excp(env, POWERPC_EXCP_DOORCI, SPR_BOOKE_IVOR37); 110890dc8812SScott Wood } 110990dc8812SScott Wood } 111090dc8812SScott Wood 111190dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_E_ARCH206_MMU) { 111290dc8812SScott Wood env->spr[SPR_BOOKE_MAS0] = sregs.u.e.mas0; 111390dc8812SScott Wood env->spr[SPR_BOOKE_MAS1] = sregs.u.e.mas1; 111490dc8812SScott Wood env->spr[SPR_BOOKE_MAS2] = sregs.u.e.mas2; 111590dc8812SScott Wood env->spr[SPR_BOOKE_MAS3] = sregs.u.e.mas7_3 & 0xffffffff; 111690dc8812SScott Wood env->spr[SPR_BOOKE_MAS4] = sregs.u.e.mas4; 111790dc8812SScott Wood env->spr[SPR_BOOKE_MAS6] = sregs.u.e.mas6; 111890dc8812SScott Wood env->spr[SPR_BOOKE_MAS7] = sregs.u.e.mas7_3 >> 32; 111990dc8812SScott Wood env->spr[SPR_MMUCFG] = sregs.u.e.mmucfg; 112090dc8812SScott Wood env->spr[SPR_BOOKE_TLB0CFG] = sregs.u.e.tlbcfg[0]; 112190dc8812SScott Wood env->spr[SPR_BOOKE_TLB1CFG] = sregs.u.e.tlbcfg[1]; 112290dc8812SScott Wood } 112390dc8812SScott Wood 112490dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_EXP) { 112590dc8812SScott Wood env->spr[SPR_BOOKE_EPR] = sregs.u.e.epr; 112690dc8812SScott Wood } 112790dc8812SScott Wood 112890dc8812SScott Wood if (sregs.u.e.features & KVM_SREGS_E_PD) { 112990dc8812SScott Wood env->spr[SPR_BOOKE_EPLC] = sregs.u.e.eplc; 113090dc8812SScott Wood env->spr[SPR_BOOKE_EPSC] = sregs.u.e.epsc; 113190dc8812SScott Wood } 113290dc8812SScott Wood 113390dc8812SScott Wood if (sregs.u.e.impl_id == KVM_SREGS_E_IMPL_FSL) { 113490dc8812SScott Wood env->spr[SPR_E500_SVR] = sregs.u.e.impl.fsl.svr; 113590dc8812SScott Wood env->spr[SPR_Exxx_MCAR] = sregs.u.e.impl.fsl.mcar; 113690dc8812SScott Wood env->spr[SPR_HID0] = sregs.u.e.impl.fsl.hid0; 113790dc8812SScott Wood 113890dc8812SScott Wood if (sregs.u.e.impl.fsl.features & KVM_SREGS_E_FSL_PIDn) { 113990dc8812SScott Wood env->spr[SPR_BOOKE_PID1] = sregs.u.e.impl.fsl.pid1; 114090dc8812SScott Wood env->spr[SPR_BOOKE_PID2] = sregs.u.e.impl.fsl.pid2; 114190dc8812SScott Wood } 114290dc8812SScott Wood } 1143a7a00a72SDavid Gibson 1144a7a00a72SDavid Gibson return 0; 1145fafc0b6aSAlexander Graf } 114690dc8812SScott Wood 1147a7a00a72SDavid Gibson static int kvmppc_get_books_sregs(PowerPCCPU *cpu) 1148a7a00a72SDavid Gibson { 1149a7a00a72SDavid Gibson CPUPPCState *env = &cpu->env; 1150a7a00a72SDavid Gibson struct kvm_sregs sregs; 1151a7a00a72SDavid Gibson int ret; 1152a7a00a72SDavid Gibson int i; 1153a7a00a72SDavid Gibson 1154a7a00a72SDavid Gibson ret = kvm_vcpu_ioctl(CPU(cpu), KVM_GET_SREGS, &sregs); 115590dc8812SScott Wood if (ret < 0) { 115690dc8812SScott Wood return ret; 115790dc8812SScott Wood } 115890dc8812SScott Wood 1159e57ca75cSDavid Gibson if (!cpu->vhyp) { 1160bb593904SDavid Gibson ppc_store_sdr1(env, sregs.u.s.sdr1); 1161f3c75d42SAneesh Kumar K.V } 1162ba5e5090SAlexander Graf 1163ba5e5090SAlexander Graf /* Sync SLB */ 116482c09f2fSAlexander Graf #ifdef TARGET_PPC64 11654b4d4a21SAneesh Kumar K.V /* 11664b4d4a21SAneesh Kumar K.V * The packed SLB array we get from KVM_GET_SREGS only contains 1167a7a00a72SDavid Gibson * information about valid entries. So we flush our internal copy 1168a7a00a72SDavid Gibson * to get rid of stale ones, then put all valid SLB entries back 1169a7a00a72SDavid Gibson * in. 11704b4d4a21SAneesh Kumar K.V */ 11714b4d4a21SAneesh Kumar K.V memset(env->slb, 0, sizeof(env->slb)); 1172d83af167SAneesh Kumar K.V for (i = 0; i < ARRAY_SIZE(env->slb); i++) { 11734b4d4a21SAneesh Kumar K.V target_ulong rb = sregs.u.s.ppc64.slb[i].slbe; 11744b4d4a21SAneesh Kumar K.V target_ulong rs = sregs.u.s.ppc64.slb[i].slbv; 11754b4d4a21SAneesh Kumar K.V /* 11764b4d4a21SAneesh Kumar K.V * Only restore valid entries 11774b4d4a21SAneesh Kumar K.V */ 11784b4d4a21SAneesh Kumar K.V if (rb & SLB_ESID_V) { 1179bcd81230SDavid Gibson ppc_store_slb(cpu, rb & 0xfff, rb & ~0xfffULL, rs); 11804b4d4a21SAneesh Kumar K.V } 1181ba5e5090SAlexander Graf } 118282c09f2fSAlexander Graf #endif 1183ba5e5090SAlexander Graf 1184ba5e5090SAlexander Graf /* Sync SRs */ 1185ba5e5090SAlexander Graf for (i = 0; i < 16; i++) { 1186ba5e5090SAlexander Graf env->sr[i] = sregs.u.s.ppc32.sr[i]; 1187ba5e5090SAlexander Graf } 1188ba5e5090SAlexander Graf 1189ba5e5090SAlexander Graf /* Sync BATs */ 1190ba5e5090SAlexander Graf for (i = 0; i < 8; i++) { 1191ba5e5090SAlexander Graf env->DBAT[0][i] = sregs.u.s.ppc32.dbat[i] & 0xffffffff; 1192ba5e5090SAlexander Graf env->DBAT[1][i] = sregs.u.s.ppc32.dbat[i] >> 32; 1193ba5e5090SAlexander Graf env->IBAT[0][i] = sregs.u.s.ppc32.ibat[i] & 0xffffffff; 1194ba5e5090SAlexander Graf env->IBAT[1][i] = sregs.u.s.ppc32.ibat[i] >> 32; 1195ba5e5090SAlexander Graf } 1196a7a00a72SDavid Gibson 1197a7a00a72SDavid Gibson return 0; 1198a7a00a72SDavid Gibson } 1199a7a00a72SDavid Gibson 1200a7a00a72SDavid Gibson int kvm_arch_get_registers(CPUState *cs) 1201a7a00a72SDavid Gibson { 1202a7a00a72SDavid Gibson PowerPCCPU *cpu = POWERPC_CPU(cs); 1203a7a00a72SDavid Gibson CPUPPCState *env = &cpu->env; 1204a7a00a72SDavid Gibson struct kvm_regs regs; 1205a7a00a72SDavid Gibson uint32_t cr; 1206a7a00a72SDavid Gibson int i, ret; 1207a7a00a72SDavid Gibson 1208a7a00a72SDavid Gibson ret = kvm_vcpu_ioctl(cs, KVM_GET_REGS, ®s); 1209c995e942SDavid Gibson if (ret < 0) { 1210a7a00a72SDavid Gibson return ret; 1211c995e942SDavid Gibson } 1212a7a00a72SDavid Gibson 1213a7a00a72SDavid Gibson cr = regs.cr; 1214a7a00a72SDavid Gibson for (i = 7; i >= 0; i--) { 1215a7a00a72SDavid Gibson env->crf[i] = cr & 15; 1216a7a00a72SDavid Gibson cr >>= 4; 1217a7a00a72SDavid Gibson } 1218a7a00a72SDavid Gibson 1219a7a00a72SDavid Gibson env->ctr = regs.ctr; 1220a7a00a72SDavid Gibson env->lr = regs.lr; 1221a7a00a72SDavid Gibson cpu_write_xer(env, regs.xer); 1222a7a00a72SDavid Gibson env->msr = regs.msr; 1223a7a00a72SDavid Gibson env->nip = regs.pc; 1224a7a00a72SDavid Gibson 1225a7a00a72SDavid Gibson env->spr[SPR_SRR0] = regs.srr0; 1226a7a00a72SDavid Gibson env->spr[SPR_SRR1] = regs.srr1; 1227a7a00a72SDavid Gibson 1228a7a00a72SDavid Gibson env->spr[SPR_SPRG0] = regs.sprg0; 1229a7a00a72SDavid Gibson env->spr[SPR_SPRG1] = regs.sprg1; 1230a7a00a72SDavid Gibson env->spr[SPR_SPRG2] = regs.sprg2; 1231a7a00a72SDavid Gibson env->spr[SPR_SPRG3] = regs.sprg3; 1232a7a00a72SDavid Gibson env->spr[SPR_SPRG4] = regs.sprg4; 1233a7a00a72SDavid Gibson env->spr[SPR_SPRG5] = regs.sprg5; 1234a7a00a72SDavid Gibson env->spr[SPR_SPRG6] = regs.sprg6; 1235a7a00a72SDavid Gibson env->spr[SPR_SPRG7] = regs.sprg7; 1236a7a00a72SDavid Gibson 1237a7a00a72SDavid Gibson env->spr[SPR_BOOKE_PID] = regs.pid; 1238a7a00a72SDavid Gibson 1239c995e942SDavid Gibson for (i = 0; i < 32; i++) { 1240a7a00a72SDavid Gibson env->gpr[i] = regs.gpr[i]; 1241c995e942SDavid Gibson } 1242a7a00a72SDavid Gibson 1243a7a00a72SDavid Gibson kvm_get_fp(cs); 1244a7a00a72SDavid Gibson 1245a7a00a72SDavid Gibson if (cap_booke_sregs) { 1246a7a00a72SDavid Gibson ret = kvmppc_get_booke_sregs(cpu); 1247a7a00a72SDavid Gibson if (ret < 0) { 1248a7a00a72SDavid Gibson return ret; 1249a7a00a72SDavid Gibson } 1250a7a00a72SDavid Gibson } 1251a7a00a72SDavid Gibson 1252a7a00a72SDavid Gibson if (cap_segstate) { 1253a7a00a72SDavid Gibson ret = kvmppc_get_books_sregs(cpu); 1254a7a00a72SDavid Gibson if (ret < 0) { 1255a7a00a72SDavid Gibson return ret; 1256a7a00a72SDavid Gibson } 1257fafc0b6aSAlexander Graf } 1258ba5e5090SAlexander Graf 1259d67d40eaSDavid Gibson if (cap_hior) { 1260d67d40eaSDavid Gibson kvm_get_one_spr(cs, KVM_REG_PPC_HIOR, SPR_HIOR); 1261d67d40eaSDavid Gibson } 1262d67d40eaSDavid Gibson 1263d67d40eaSDavid Gibson if (cap_one_reg) { 1264d67d40eaSDavid Gibson int i; 1265d67d40eaSDavid Gibson 1266c995e942SDavid Gibson /* 1267c995e942SDavid Gibson * We deliberately ignore errors here, for kernels which have 1268d67d40eaSDavid Gibson * the ONE_REG calls, but don't support the specific 1269d67d40eaSDavid Gibson * registers, there's a reasonable chance things will still 1270c995e942SDavid Gibson * work, at least until we try to migrate. 1271c995e942SDavid Gibson */ 1272d67d40eaSDavid Gibson for (i = 0; i < 1024; i++) { 1273d67d40eaSDavid Gibson uint64_t id = env->spr_cb[i].one_reg_id; 1274d67d40eaSDavid Gibson 1275d67d40eaSDavid Gibson if (id != 0) { 1276d67d40eaSDavid Gibson kvm_get_one_spr(cs, id, i); 1277d67d40eaSDavid Gibson } 1278d67d40eaSDavid Gibson } 12799b00ea49SDavid Gibson 12809b00ea49SDavid Gibson #ifdef TARGET_PPC64 128180b3f79bSAlexey Kardashevskiy if (msr_ts) { 128280b3f79bSAlexey Kardashevskiy for (i = 0; i < ARRAY_SIZE(env->tm_gpr); i++) { 128380b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_GPR(i), &env->tm_gpr[i]); 128480b3f79bSAlexey Kardashevskiy } 128580b3f79bSAlexey Kardashevskiy for (i = 0; i < ARRAY_SIZE(env->tm_vsr); i++) { 128680b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_VSR(i), &env->tm_vsr[i]); 128780b3f79bSAlexey Kardashevskiy } 128880b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_CR, &env->tm_cr); 128980b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_LR, &env->tm_lr); 129080b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_CTR, &env->tm_ctr); 129180b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_FPSCR, &env->tm_fpscr); 129280b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_AMR, &env->tm_amr); 129380b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_PPR, &env->tm_ppr); 129480b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_VRSAVE, &env->tm_vrsave); 129580b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_VSCR, &env->tm_vscr); 129680b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_DSCR, &env->tm_dscr); 129780b3f79bSAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TM_TAR, &env->tm_tar); 129880b3f79bSAlexey Kardashevskiy } 129980b3f79bSAlexey Kardashevskiy 13009b00ea49SDavid Gibson if (cap_papr) { 13019b00ea49SDavid Gibson if (kvm_get_vpa(cs) < 0) { 13028d83cbf1SGreg Kurz trace_kvm_failed_get_vpa(); 13039b00ea49SDavid Gibson } 13049b00ea49SDavid Gibson } 130598a8b524SAlexey Kardashevskiy 130698a8b524SAlexey Kardashevskiy kvm_get_one_reg(cs, KVM_REG_PPC_TB_OFFSET, &env->tb_env->tb_offset); 1307972bd576SAlexey Kardashevskiy kvm_get_one_spr(cs, KVM_REG_PPC_DPDES, SPR_DPDES); 13089b00ea49SDavid Gibson #endif 1309d67d40eaSDavid Gibson } 1310d67d40eaSDavid Gibson 1311d76d1650Saurel32 return 0; 1312d76d1650Saurel32 } 1313d76d1650Saurel32 13141bc22652SAndreas Färber int kvmppc_set_interrupt(PowerPCCPU *cpu, int irq, int level) 1315fc87e185SAlexander Graf { 1316fc87e185SAlexander Graf unsigned virq = level ? KVM_INTERRUPT_SET_LEVEL : KVM_INTERRUPT_UNSET; 1317fc87e185SAlexander Graf 1318fc87e185SAlexander Graf if (irq != PPC_INTERRUPT_EXT) { 1319fc87e185SAlexander Graf return 0; 1320fc87e185SAlexander Graf } 1321fc87e185SAlexander Graf 13221e8f51e8SShivaprasad G Bhat if (!kvm_enabled() || !cap_interrupt_unset) { 1323fc87e185SAlexander Graf return 0; 1324fc87e185SAlexander Graf } 1325fc87e185SAlexander Graf 13261bc22652SAndreas Färber kvm_vcpu_ioctl(CPU(cpu), KVM_INTERRUPT, &virq); 1327fc87e185SAlexander Graf 1328fc87e185SAlexander Graf return 0; 1329fc87e185SAlexander Graf } 1330fc87e185SAlexander Graf 133120d695a9SAndreas Färber void kvm_arch_pre_run(CPUState *cs, struct kvm_run *run) 1332d76d1650Saurel32 { 13331e8f51e8SShivaprasad G Bhat return; 1334d76d1650Saurel32 } 1335d76d1650Saurel32 13364c663752SPaolo Bonzini MemTxAttrs kvm_arch_post_run(CPUState *cs, struct kvm_run *run) 1337d76d1650Saurel32 { 13384c663752SPaolo Bonzini return MEMTXATTRS_UNSPECIFIED; 1339d76d1650Saurel32 } 1340d76d1650Saurel32 134120d695a9SAndreas Färber int kvm_arch_process_async_events(CPUState *cs) 13420af691d7SMarcelo Tosatti { 1343259186a7SAndreas Färber return cs->halted; 13440af691d7SMarcelo Tosatti } 13450af691d7SMarcelo Tosatti 1346259186a7SAndreas Färber static int kvmppc_handle_halt(PowerPCCPU *cpu) 1347d76d1650Saurel32 { 1348259186a7SAndreas Färber CPUState *cs = CPU(cpu); 1349259186a7SAndreas Färber CPUPPCState *env = &cpu->env; 1350259186a7SAndreas Färber 1351259186a7SAndreas Färber if (!(cs->interrupt_request & CPU_INTERRUPT_HARD) && (msr_ee)) { 1352259186a7SAndreas Färber cs->halted = 1; 135327103424SAndreas Färber cs->exception_index = EXCP_HLT; 1354d76d1650Saurel32 } 1355d76d1650Saurel32 1356bb4ea393SJan Kiszka return 0; 1357d76d1650Saurel32 } 1358d76d1650Saurel32 1359d76d1650Saurel32 /* map dcr access to existing qemu dcr emulation */ 1360c995e942SDavid Gibson static int kvmppc_handle_dcr_read(CPUPPCState *env, 1361c995e942SDavid Gibson uint32_t dcrn, uint32_t *data) 1362d76d1650Saurel32 { 1363c995e942SDavid Gibson if (ppc_dcr_read(env->dcr_env, dcrn, data) < 0) { 1364d76d1650Saurel32 fprintf(stderr, "Read to unhandled DCR (0x%x)\n", dcrn); 1365c995e942SDavid Gibson } 1366d76d1650Saurel32 1367bb4ea393SJan Kiszka return 0; 1368d76d1650Saurel32 } 1369d76d1650Saurel32 1370c995e942SDavid Gibson static int kvmppc_handle_dcr_write(CPUPPCState *env, 1371c995e942SDavid Gibson uint32_t dcrn, uint32_t data) 1372d76d1650Saurel32 { 1373c995e942SDavid Gibson if (ppc_dcr_write(env->dcr_env, dcrn, data) < 0) { 1374d76d1650Saurel32 fprintf(stderr, "Write to unhandled DCR (0x%x)\n", dcrn); 1375c995e942SDavid Gibson } 1376d76d1650Saurel32 1377bb4ea393SJan Kiszka return 0; 1378d76d1650Saurel32 } 1379d76d1650Saurel32 13808a0548f9SBharat Bhushan int kvm_arch_insert_sw_breakpoint(CPUState *cs, struct kvm_sw_breakpoint *bp) 13818a0548f9SBharat Bhushan { 13828a0548f9SBharat Bhushan /* Mixed endian case is not handled */ 13838a0548f9SBharat Bhushan uint32_t sc = debug_inst_opcode; 13848a0548f9SBharat Bhushan 13858a0548f9SBharat Bhushan if (cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)&bp->saved_insn, 13868a0548f9SBharat Bhushan sizeof(sc), 0) || 13878a0548f9SBharat Bhushan cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)&sc, sizeof(sc), 1)) { 13888a0548f9SBharat Bhushan return -EINVAL; 13898a0548f9SBharat Bhushan } 13908a0548f9SBharat Bhushan 13918a0548f9SBharat Bhushan return 0; 13928a0548f9SBharat Bhushan } 13938a0548f9SBharat Bhushan 13948a0548f9SBharat Bhushan int kvm_arch_remove_sw_breakpoint(CPUState *cs, struct kvm_sw_breakpoint *bp) 13958a0548f9SBharat Bhushan { 13968a0548f9SBharat Bhushan uint32_t sc; 13978a0548f9SBharat Bhushan 13988a0548f9SBharat Bhushan if (cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)&sc, sizeof(sc), 0) || 13998a0548f9SBharat Bhushan sc != debug_inst_opcode || 14008a0548f9SBharat Bhushan cpu_memory_rw_debug(cs, bp->pc, (uint8_t *)&bp->saved_insn, 14018a0548f9SBharat Bhushan sizeof(sc), 1)) { 14028a0548f9SBharat Bhushan return -EINVAL; 14038a0548f9SBharat Bhushan } 14048a0548f9SBharat Bhushan 14058a0548f9SBharat Bhushan return 0; 14068a0548f9SBharat Bhushan } 14078a0548f9SBharat Bhushan 140888365d17SBharat Bhushan static int find_hw_breakpoint(target_ulong addr, int type) 140988365d17SBharat Bhushan { 141088365d17SBharat Bhushan int n; 141188365d17SBharat Bhushan 141288365d17SBharat Bhushan assert((nb_hw_breakpoint + nb_hw_watchpoint) 141388365d17SBharat Bhushan <= ARRAY_SIZE(hw_debug_points)); 141488365d17SBharat Bhushan 141588365d17SBharat Bhushan for (n = 0; n < nb_hw_breakpoint + nb_hw_watchpoint; n++) { 141688365d17SBharat Bhushan if (hw_debug_points[n].addr == addr && 141788365d17SBharat Bhushan hw_debug_points[n].type == type) { 141888365d17SBharat Bhushan return n; 141988365d17SBharat Bhushan } 142088365d17SBharat Bhushan } 142188365d17SBharat Bhushan 142288365d17SBharat Bhushan return -1; 142388365d17SBharat Bhushan } 142488365d17SBharat Bhushan 142588365d17SBharat Bhushan static int find_hw_watchpoint(target_ulong addr, int *flag) 142688365d17SBharat Bhushan { 142788365d17SBharat Bhushan int n; 142888365d17SBharat Bhushan 142988365d17SBharat Bhushan n = find_hw_breakpoint(addr, GDB_WATCHPOINT_ACCESS); 143088365d17SBharat Bhushan if (n >= 0) { 143188365d17SBharat Bhushan *flag = BP_MEM_ACCESS; 143288365d17SBharat Bhushan return n; 143388365d17SBharat Bhushan } 143488365d17SBharat Bhushan 143588365d17SBharat Bhushan n = find_hw_breakpoint(addr, GDB_WATCHPOINT_WRITE); 143688365d17SBharat Bhushan if (n >= 0) { 143788365d17SBharat Bhushan *flag = BP_MEM_WRITE; 143888365d17SBharat Bhushan return n; 143988365d17SBharat Bhushan } 144088365d17SBharat Bhushan 144188365d17SBharat Bhushan n = find_hw_breakpoint(addr, GDB_WATCHPOINT_READ); 144288365d17SBharat Bhushan if (n >= 0) { 144388365d17SBharat Bhushan *flag = BP_MEM_READ; 144488365d17SBharat Bhushan return n; 144588365d17SBharat Bhushan } 144688365d17SBharat Bhushan 144788365d17SBharat Bhushan return -1; 144888365d17SBharat Bhushan } 144988365d17SBharat Bhushan 145088365d17SBharat Bhushan int kvm_arch_insert_hw_breakpoint(target_ulong addr, 145188365d17SBharat Bhushan target_ulong len, int type) 145288365d17SBharat Bhushan { 145388365d17SBharat Bhushan if ((nb_hw_breakpoint + nb_hw_watchpoint) >= ARRAY_SIZE(hw_debug_points)) { 145488365d17SBharat Bhushan return -ENOBUFS; 145588365d17SBharat Bhushan } 145688365d17SBharat Bhushan 145788365d17SBharat Bhushan hw_debug_points[nb_hw_breakpoint + nb_hw_watchpoint].addr = addr; 145888365d17SBharat Bhushan hw_debug_points[nb_hw_breakpoint + nb_hw_watchpoint].type = type; 145988365d17SBharat Bhushan 146088365d17SBharat Bhushan switch (type) { 146188365d17SBharat Bhushan case GDB_BREAKPOINT_HW: 146288365d17SBharat Bhushan if (nb_hw_breakpoint >= max_hw_breakpoint) { 146388365d17SBharat Bhushan return -ENOBUFS; 146488365d17SBharat Bhushan } 146588365d17SBharat Bhushan 146688365d17SBharat Bhushan if (find_hw_breakpoint(addr, type) >= 0) { 146788365d17SBharat Bhushan return -EEXIST; 146888365d17SBharat Bhushan } 146988365d17SBharat Bhushan 147088365d17SBharat Bhushan nb_hw_breakpoint++; 147188365d17SBharat Bhushan break; 147288365d17SBharat Bhushan 147388365d17SBharat Bhushan case GDB_WATCHPOINT_WRITE: 147488365d17SBharat Bhushan case GDB_WATCHPOINT_READ: 147588365d17SBharat Bhushan case GDB_WATCHPOINT_ACCESS: 147688365d17SBharat Bhushan if (nb_hw_watchpoint >= max_hw_watchpoint) { 147788365d17SBharat Bhushan return -ENOBUFS; 147888365d17SBharat Bhushan } 147988365d17SBharat Bhushan 148088365d17SBharat Bhushan if (find_hw_breakpoint(addr, type) >= 0) { 148188365d17SBharat Bhushan return -EEXIST; 148288365d17SBharat Bhushan } 148388365d17SBharat Bhushan 148488365d17SBharat Bhushan nb_hw_watchpoint++; 148588365d17SBharat Bhushan break; 148688365d17SBharat Bhushan 148788365d17SBharat Bhushan default: 148888365d17SBharat Bhushan return -ENOSYS; 148988365d17SBharat Bhushan } 149088365d17SBharat Bhushan 149188365d17SBharat Bhushan return 0; 149288365d17SBharat Bhushan } 149388365d17SBharat Bhushan 149488365d17SBharat Bhushan int kvm_arch_remove_hw_breakpoint(target_ulong addr, 149588365d17SBharat Bhushan target_ulong len, int type) 149688365d17SBharat Bhushan { 149788365d17SBharat Bhushan int n; 149888365d17SBharat Bhushan 149988365d17SBharat Bhushan n = find_hw_breakpoint(addr, type); 150088365d17SBharat Bhushan if (n < 0) { 150188365d17SBharat Bhushan return -ENOENT; 150288365d17SBharat Bhushan } 150388365d17SBharat Bhushan 150488365d17SBharat Bhushan switch (type) { 150588365d17SBharat Bhushan case GDB_BREAKPOINT_HW: 150688365d17SBharat Bhushan nb_hw_breakpoint--; 150788365d17SBharat Bhushan break; 150888365d17SBharat Bhushan 150988365d17SBharat Bhushan case GDB_WATCHPOINT_WRITE: 151088365d17SBharat Bhushan case GDB_WATCHPOINT_READ: 151188365d17SBharat Bhushan case GDB_WATCHPOINT_ACCESS: 151288365d17SBharat Bhushan nb_hw_watchpoint--; 151388365d17SBharat Bhushan break; 151488365d17SBharat Bhushan 151588365d17SBharat Bhushan default: 151688365d17SBharat Bhushan return -ENOSYS; 151788365d17SBharat Bhushan } 151888365d17SBharat Bhushan hw_debug_points[n] = hw_debug_points[nb_hw_breakpoint + nb_hw_watchpoint]; 151988365d17SBharat Bhushan 152088365d17SBharat Bhushan return 0; 152188365d17SBharat Bhushan } 152288365d17SBharat Bhushan 152388365d17SBharat Bhushan void kvm_arch_remove_all_hw_breakpoints(void) 152488365d17SBharat Bhushan { 152588365d17SBharat Bhushan nb_hw_breakpoint = nb_hw_watchpoint = 0; 152688365d17SBharat Bhushan } 152788365d17SBharat Bhushan 15288a0548f9SBharat Bhushan void kvm_arch_update_guest_debug(CPUState *cs, struct kvm_guest_debug *dbg) 15298a0548f9SBharat Bhushan { 153088365d17SBharat Bhushan int n; 153188365d17SBharat Bhushan 15328a0548f9SBharat Bhushan /* Software Breakpoint updates */ 15338a0548f9SBharat Bhushan if (kvm_sw_breakpoints_active(cs)) { 15348a0548f9SBharat Bhushan dbg->control |= KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_USE_SW_BP; 15358a0548f9SBharat Bhushan } 153688365d17SBharat Bhushan 153788365d17SBharat Bhushan assert((nb_hw_breakpoint + nb_hw_watchpoint) 153888365d17SBharat Bhushan <= ARRAY_SIZE(hw_debug_points)); 153988365d17SBharat Bhushan assert((nb_hw_breakpoint + nb_hw_watchpoint) <= ARRAY_SIZE(dbg->arch.bp)); 154088365d17SBharat Bhushan 154188365d17SBharat Bhushan if (nb_hw_breakpoint + nb_hw_watchpoint > 0) { 154288365d17SBharat Bhushan dbg->control |= KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_USE_HW_BP; 154388365d17SBharat Bhushan memset(dbg->arch.bp, 0, sizeof(dbg->arch.bp)); 154488365d17SBharat Bhushan for (n = 0; n < nb_hw_breakpoint + nb_hw_watchpoint; n++) { 154588365d17SBharat Bhushan switch (hw_debug_points[n].type) { 154688365d17SBharat Bhushan case GDB_BREAKPOINT_HW: 154788365d17SBharat Bhushan dbg->arch.bp[n].type = KVMPPC_DEBUG_BREAKPOINT; 154888365d17SBharat Bhushan break; 154988365d17SBharat Bhushan case GDB_WATCHPOINT_WRITE: 155088365d17SBharat Bhushan dbg->arch.bp[n].type = KVMPPC_DEBUG_WATCH_WRITE; 155188365d17SBharat Bhushan break; 155288365d17SBharat Bhushan case GDB_WATCHPOINT_READ: 155388365d17SBharat Bhushan dbg->arch.bp[n].type = KVMPPC_DEBUG_WATCH_READ; 155488365d17SBharat Bhushan break; 155588365d17SBharat Bhushan case GDB_WATCHPOINT_ACCESS: 155688365d17SBharat Bhushan dbg->arch.bp[n].type = KVMPPC_DEBUG_WATCH_WRITE | 155788365d17SBharat Bhushan KVMPPC_DEBUG_WATCH_READ; 155888365d17SBharat Bhushan break; 155988365d17SBharat Bhushan default: 156088365d17SBharat Bhushan cpu_abort(cs, "Unsupported breakpoint type\n"); 156188365d17SBharat Bhushan } 156288365d17SBharat Bhushan dbg->arch.bp[n].addr = hw_debug_points[n].addr; 156388365d17SBharat Bhushan } 156488365d17SBharat Bhushan } 15658a0548f9SBharat Bhushan } 15668a0548f9SBharat Bhushan 15672cbd1581SFabiano Rosas static int kvm_handle_hw_breakpoint(CPUState *cs, 15682cbd1581SFabiano Rosas struct kvm_debug_exit_arch *arch_info) 15698a0548f9SBharat Bhushan { 1570*6e0552a3SFabiano Rosas int handle = DEBUG_RETURN_GUEST; 157188365d17SBharat Bhushan int n; 157288365d17SBharat Bhushan int flag = 0; 15738a0548f9SBharat Bhushan 157488365d17SBharat Bhushan if (nb_hw_breakpoint + nb_hw_watchpoint > 0) { 157588365d17SBharat Bhushan if (arch_info->status & KVMPPC_DEBUG_BREAKPOINT) { 157688365d17SBharat Bhushan n = find_hw_breakpoint(arch_info->address, GDB_BREAKPOINT_HW); 157788365d17SBharat Bhushan if (n >= 0) { 1578*6e0552a3SFabiano Rosas handle = DEBUG_RETURN_GDB; 157988365d17SBharat Bhushan } 158088365d17SBharat Bhushan } else if (arch_info->status & (KVMPPC_DEBUG_WATCH_READ | 158188365d17SBharat Bhushan KVMPPC_DEBUG_WATCH_WRITE)) { 158288365d17SBharat Bhushan n = find_hw_watchpoint(arch_info->address, &flag); 158388365d17SBharat Bhushan if (n >= 0) { 1584*6e0552a3SFabiano Rosas handle = DEBUG_RETURN_GDB; 158588365d17SBharat Bhushan cs->watchpoint_hit = &hw_watchpoint; 158688365d17SBharat Bhushan hw_watchpoint.vaddr = hw_debug_points[n].addr; 158788365d17SBharat Bhushan hw_watchpoint.flags = flag; 158888365d17SBharat Bhushan } 158988365d17SBharat Bhushan } 159088365d17SBharat Bhushan } 15912cbd1581SFabiano Rosas return handle; 15922cbd1581SFabiano Rosas } 15932cbd1581SFabiano Rosas 1594468e3a1aSFabiano Rosas static int kvm_handle_singlestep(void) 1595468e3a1aSFabiano Rosas { 1596*6e0552a3SFabiano Rosas return DEBUG_RETURN_GDB; 1597468e3a1aSFabiano Rosas } 1598468e3a1aSFabiano Rosas 1599468e3a1aSFabiano Rosas static int kvm_handle_sw_breakpoint(void) 1600468e3a1aSFabiano Rosas { 1601*6e0552a3SFabiano Rosas return DEBUG_RETURN_GDB; 1602468e3a1aSFabiano Rosas } 1603468e3a1aSFabiano Rosas 16042cbd1581SFabiano Rosas static int kvm_handle_debug(PowerPCCPU *cpu, struct kvm_run *run) 16052cbd1581SFabiano Rosas { 16062cbd1581SFabiano Rosas CPUState *cs = CPU(cpu); 16072cbd1581SFabiano Rosas CPUPPCState *env = &cpu->env; 16082cbd1581SFabiano Rosas struct kvm_debug_exit_arch *arch_info = &run->debug.arch; 16092cbd1581SFabiano Rosas 16102cbd1581SFabiano Rosas if (cs->singlestep_enabled) { 1611468e3a1aSFabiano Rosas return kvm_handle_singlestep(); 1612468e3a1aSFabiano Rosas } 1613468e3a1aSFabiano Rosas 1614468e3a1aSFabiano Rosas if (arch_info->status) { 1615468e3a1aSFabiano Rosas return kvm_handle_hw_breakpoint(cs, arch_info); 1616468e3a1aSFabiano Rosas } 1617468e3a1aSFabiano Rosas 1618468e3a1aSFabiano Rosas if (kvm_find_sw_breakpoint(cs, arch_info->address)) { 1619468e3a1aSFabiano Rosas return kvm_handle_sw_breakpoint(); 1620468e3a1aSFabiano Rosas } 1621468e3a1aSFabiano Rosas 1622468e3a1aSFabiano Rosas /* 1623468e3a1aSFabiano Rosas * QEMU is not able to handle debug exception, so inject 16248a0548f9SBharat Bhushan * program exception to guest; 16258a0548f9SBharat Bhushan * Yes program exception NOT debug exception !! 162688365d17SBharat Bhushan * When QEMU is using debug resources then debug exception must 162788365d17SBharat Bhushan * be always set. To achieve this we set MSR_DE and also set 162888365d17SBharat Bhushan * MSRP_DEP so guest cannot change MSR_DE. 162988365d17SBharat Bhushan * When emulating debug resource for guest we want guest 163088365d17SBharat Bhushan * to control MSR_DE (enable/disable debug interrupt on need). 163188365d17SBharat Bhushan * Supporting both configurations are NOT possible. 163288365d17SBharat Bhushan * So the result is that we cannot share debug resources 163388365d17SBharat Bhushan * between QEMU and Guest on BOOKE architecture. 163488365d17SBharat Bhushan * In the current design QEMU gets the priority over guest, 163588365d17SBharat Bhushan * this means that if QEMU is using debug resources then guest 163688365d17SBharat Bhushan * cannot use them; 16378a0548f9SBharat Bhushan * For software breakpoint QEMU uses a privileged instruction; 16388a0548f9SBharat Bhushan * So there cannot be any reason that we are here for guest 16398a0548f9SBharat Bhushan * set debug exception, only possibility is guest executed a 16408a0548f9SBharat Bhushan * privileged / illegal instruction and that's why we are 16418a0548f9SBharat Bhushan * injecting a program interrupt. 16428a0548f9SBharat Bhushan */ 16438a0548f9SBharat Bhushan cpu_synchronize_state(cs); 1644468e3a1aSFabiano Rosas /* 1645468e3a1aSFabiano Rosas * env->nip is PC, so increment this by 4 to use 16468a0548f9SBharat Bhushan * ppc_cpu_do_interrupt(), which set srr0 = env->nip - 4. 16478a0548f9SBharat Bhushan */ 16488a0548f9SBharat Bhushan env->nip += 4; 16498a0548f9SBharat Bhushan cs->exception_index = POWERPC_EXCP_PROGRAM; 16508a0548f9SBharat Bhushan env->error_code = POWERPC_EXCP_INVAL; 16518a0548f9SBharat Bhushan ppc_cpu_do_interrupt(cs); 16528a0548f9SBharat Bhushan 1653*6e0552a3SFabiano Rosas return DEBUG_RETURN_GUEST; 16548a0548f9SBharat Bhushan } 16558a0548f9SBharat Bhushan 165620d695a9SAndreas Färber int kvm_arch_handle_exit(CPUState *cs, struct kvm_run *run) 1657d76d1650Saurel32 { 165820d695a9SAndreas Färber PowerPCCPU *cpu = POWERPC_CPU(cs); 165920d695a9SAndreas Färber CPUPPCState *env = &cpu->env; 1660bb4ea393SJan Kiszka int ret; 1661d76d1650Saurel32 16624b8523eeSJan Kiszka qemu_mutex_lock_iothread(); 16634b8523eeSJan Kiszka 1664d76d1650Saurel32 switch (run->exit_reason) { 1665d76d1650Saurel32 case KVM_EXIT_DCR: 1666d76d1650Saurel32 if (run->dcr.is_write) { 16678d83cbf1SGreg Kurz trace_kvm_handle_dcr_write(); 1668d76d1650Saurel32 ret = kvmppc_handle_dcr_write(env, run->dcr.dcrn, run->dcr.data); 1669d76d1650Saurel32 } else { 1670228152c2SBoxuan Li trace_kvm_handle_dcr_read(); 1671d76d1650Saurel32 ret = kvmppc_handle_dcr_read(env, run->dcr.dcrn, &run->dcr.data); 1672d76d1650Saurel32 } 1673d76d1650Saurel32 break; 1674d76d1650Saurel32 case KVM_EXIT_HLT: 16758d83cbf1SGreg Kurz trace_kvm_handle_halt(); 1676259186a7SAndreas Färber ret = kvmppc_handle_halt(cpu); 1677d76d1650Saurel32 break; 1678c6304a4aSDavid Gibson #if defined(TARGET_PPC64) 1679f61b4bedSAlexander Graf case KVM_EXIT_PAPR_HCALL: 16808d83cbf1SGreg Kurz trace_kvm_handle_papr_hcall(); 168120d695a9SAndreas Färber run->papr_hcall.ret = spapr_hypercall(cpu, 1682aa100fa4SAndreas Färber run->papr_hcall.nr, 1683f61b4bedSAlexander Graf run->papr_hcall.args); 168478e8fde2SDavid Gibson ret = 0; 1685f61b4bedSAlexander Graf break; 1686f61b4bedSAlexander Graf #endif 16875b95b8b9SAlexander Graf case KVM_EXIT_EPR: 16888d83cbf1SGreg Kurz trace_kvm_handle_epr(); 1689933b19eaSAlexander Graf run->epr.epr = ldl_phys(cs->as, env->mpic_iack); 16905b95b8b9SAlexander Graf ret = 0; 16915b95b8b9SAlexander Graf break; 169231f2cb8fSBharat Bhushan case KVM_EXIT_WATCHDOG: 16938d83cbf1SGreg Kurz trace_kvm_handle_watchdog_expiry(); 169431f2cb8fSBharat Bhushan watchdog_perform_action(); 169531f2cb8fSBharat Bhushan ret = 0; 169631f2cb8fSBharat Bhushan break; 169731f2cb8fSBharat Bhushan 16988a0548f9SBharat Bhushan case KVM_EXIT_DEBUG: 16998d83cbf1SGreg Kurz trace_kvm_handle_debug_exception(); 17008a0548f9SBharat Bhushan if (kvm_handle_debug(cpu, run)) { 17018a0548f9SBharat Bhushan ret = EXCP_DEBUG; 17028a0548f9SBharat Bhushan break; 17038a0548f9SBharat Bhushan } 17048a0548f9SBharat Bhushan /* re-enter, this exception was guest-internal */ 17058a0548f9SBharat Bhushan ret = 0; 17068a0548f9SBharat Bhushan break; 17078a0548f9SBharat Bhushan 170873aaec4aSJan Kiszka default: 170973aaec4aSJan Kiszka fprintf(stderr, "KVM: unknown exit reason %d\n", run->exit_reason); 171073aaec4aSJan Kiszka ret = -1; 171173aaec4aSJan Kiszka break; 1712d76d1650Saurel32 } 1713d76d1650Saurel32 17144b8523eeSJan Kiszka qemu_mutex_unlock_iothread(); 1715d76d1650Saurel32 return ret; 1716d76d1650Saurel32 } 1717d76d1650Saurel32 171831f2cb8fSBharat Bhushan int kvmppc_or_tsr_bits(PowerPCCPU *cpu, uint32_t tsr_bits) 171931f2cb8fSBharat Bhushan { 172031f2cb8fSBharat Bhushan CPUState *cs = CPU(cpu); 172131f2cb8fSBharat Bhushan uint32_t bits = tsr_bits; 172231f2cb8fSBharat Bhushan struct kvm_one_reg reg = { 172331f2cb8fSBharat Bhushan .id = KVM_REG_PPC_OR_TSR, 172431f2cb8fSBharat Bhushan .addr = (uintptr_t) &bits, 172531f2cb8fSBharat Bhushan }; 172631f2cb8fSBharat Bhushan 172731f2cb8fSBharat Bhushan return kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 172831f2cb8fSBharat Bhushan } 172931f2cb8fSBharat Bhushan 173031f2cb8fSBharat Bhushan int kvmppc_clear_tsr_bits(PowerPCCPU *cpu, uint32_t tsr_bits) 173131f2cb8fSBharat Bhushan { 173231f2cb8fSBharat Bhushan 173331f2cb8fSBharat Bhushan CPUState *cs = CPU(cpu); 173431f2cb8fSBharat Bhushan uint32_t bits = tsr_bits; 173531f2cb8fSBharat Bhushan struct kvm_one_reg reg = { 173631f2cb8fSBharat Bhushan .id = KVM_REG_PPC_CLEAR_TSR, 173731f2cb8fSBharat Bhushan .addr = (uintptr_t) &bits, 173831f2cb8fSBharat Bhushan }; 173931f2cb8fSBharat Bhushan 174031f2cb8fSBharat Bhushan return kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 174131f2cb8fSBharat Bhushan } 174231f2cb8fSBharat Bhushan 174331f2cb8fSBharat Bhushan int kvmppc_set_tcr(PowerPCCPU *cpu) 174431f2cb8fSBharat Bhushan { 174531f2cb8fSBharat Bhushan CPUState *cs = CPU(cpu); 174631f2cb8fSBharat Bhushan CPUPPCState *env = &cpu->env; 174731f2cb8fSBharat Bhushan uint32_t tcr = env->spr[SPR_BOOKE_TCR]; 174831f2cb8fSBharat Bhushan 174931f2cb8fSBharat Bhushan struct kvm_one_reg reg = { 175031f2cb8fSBharat Bhushan .id = KVM_REG_PPC_TCR, 175131f2cb8fSBharat Bhushan .addr = (uintptr_t) &tcr, 175231f2cb8fSBharat Bhushan }; 175331f2cb8fSBharat Bhushan 175431f2cb8fSBharat Bhushan return kvm_vcpu_ioctl(cs, KVM_SET_ONE_REG, ®); 175531f2cb8fSBharat Bhushan } 175631f2cb8fSBharat Bhushan 175731f2cb8fSBharat Bhushan int kvmppc_booke_watchdog_enable(PowerPCCPU *cpu) 175831f2cb8fSBharat Bhushan { 175931f2cb8fSBharat Bhushan CPUState *cs = CPU(cpu); 176031f2cb8fSBharat Bhushan int ret; 176131f2cb8fSBharat Bhushan 176231f2cb8fSBharat Bhushan if (!kvm_enabled()) { 176331f2cb8fSBharat Bhushan return -1; 176431f2cb8fSBharat Bhushan } 176531f2cb8fSBharat Bhushan 176631f2cb8fSBharat Bhushan if (!cap_ppc_watchdog) { 176731f2cb8fSBharat Bhushan printf("warning: KVM does not support watchdog"); 176831f2cb8fSBharat Bhushan return -1; 176931f2cb8fSBharat Bhushan } 177031f2cb8fSBharat Bhushan 177148add816SCornelia Huck ret = kvm_vcpu_enable_cap(cs, KVM_CAP_PPC_BOOKE_WATCHDOG, 0); 177231f2cb8fSBharat Bhushan if (ret < 0) { 177331f2cb8fSBharat Bhushan fprintf(stderr, "%s: couldn't enable KVM_CAP_PPC_BOOKE_WATCHDOG: %s\n", 177431f2cb8fSBharat Bhushan __func__, strerror(-ret)); 177531f2cb8fSBharat Bhushan return ret; 177631f2cb8fSBharat Bhushan } 177731f2cb8fSBharat Bhushan 177831f2cb8fSBharat Bhushan return ret; 177931f2cb8fSBharat Bhushan } 178031f2cb8fSBharat Bhushan 1781dc333cd6SAlexander Graf static int read_cpuinfo(const char *field, char *value, int len) 1782dc333cd6SAlexander Graf { 1783dc333cd6SAlexander Graf FILE *f; 1784dc333cd6SAlexander Graf int ret = -1; 1785dc333cd6SAlexander Graf int field_len = strlen(field); 1786dc333cd6SAlexander Graf char line[512]; 1787dc333cd6SAlexander Graf 1788dc333cd6SAlexander Graf f = fopen("/proc/cpuinfo", "r"); 1789dc333cd6SAlexander Graf if (!f) { 1790dc333cd6SAlexander Graf return -1; 1791dc333cd6SAlexander Graf } 1792dc333cd6SAlexander Graf 1793dc333cd6SAlexander Graf do { 1794dc333cd6SAlexander Graf if (!fgets(line, sizeof(line), f)) { 1795dc333cd6SAlexander Graf break; 1796dc333cd6SAlexander Graf } 1797dc333cd6SAlexander Graf if (!strncmp(line, field, field_len)) { 1798ae215068SJim Meyering pstrcpy(value, len, line); 1799dc333cd6SAlexander Graf ret = 0; 1800dc333cd6SAlexander Graf break; 1801dc333cd6SAlexander Graf } 1802dc333cd6SAlexander Graf } while (*line); 1803dc333cd6SAlexander Graf 1804dc333cd6SAlexander Graf fclose(f); 1805dc333cd6SAlexander Graf 1806dc333cd6SAlexander Graf return ret; 1807dc333cd6SAlexander Graf } 1808dc333cd6SAlexander Graf 1809dc333cd6SAlexander Graf uint32_t kvmppc_get_tbfreq(void) 1810dc333cd6SAlexander Graf { 1811dc333cd6SAlexander Graf char line[512]; 1812dc333cd6SAlexander Graf char *ns; 181373bcb24dSRutuja Shah uint32_t retval = NANOSECONDS_PER_SECOND; 1814dc333cd6SAlexander Graf 1815dc333cd6SAlexander Graf if (read_cpuinfo("timebase", line, sizeof(line))) { 1816dc333cd6SAlexander Graf return retval; 1817dc333cd6SAlexander Graf } 1818dc333cd6SAlexander Graf 1819c995e942SDavid Gibson ns = strchr(line, ':'); 1820c995e942SDavid Gibson if (!ns) { 1821dc333cd6SAlexander Graf return retval; 1822dc333cd6SAlexander Graf } 1823dc333cd6SAlexander Graf 1824dc333cd6SAlexander Graf ns++; 1825dc333cd6SAlexander Graf 1826f9b8e7f6SShraddha Barke return atoi(ns); 1827ef951443SNikunj A Dadhania } 1828ef951443SNikunj A Dadhania 1829ef951443SNikunj A Dadhania bool kvmppc_get_host_serial(char **value) 1830ef951443SNikunj A Dadhania { 1831ef951443SNikunj A Dadhania return g_file_get_contents("/proc/device-tree/system-id", value, NULL, 1832ef951443SNikunj A Dadhania NULL); 1833ef951443SNikunj A Dadhania } 1834ef951443SNikunj A Dadhania 1835ef951443SNikunj A Dadhania bool kvmppc_get_host_model(char **value) 1836ef951443SNikunj A Dadhania { 1837ef951443SNikunj A Dadhania return g_file_get_contents("/proc/device-tree/model", value, NULL, NULL); 1838dc333cd6SAlexander Graf } 18394513d923SGleb Natapov 1840eadaada1SAlexander Graf /* Try to find a device tree node for a CPU with clock-frequency property */ 1841eadaada1SAlexander Graf static int kvmppc_find_cpu_dt(char *buf, int buf_len) 1842eadaada1SAlexander Graf { 1843eadaada1SAlexander Graf struct dirent *dirp; 1844eadaada1SAlexander Graf DIR *dp; 1845eadaada1SAlexander Graf 1846c995e942SDavid Gibson dp = opendir(PROC_DEVTREE_CPU); 1847c995e942SDavid Gibson if (!dp) { 1848eadaada1SAlexander Graf printf("Can't open directory " PROC_DEVTREE_CPU "\n"); 1849eadaada1SAlexander Graf return -1; 1850eadaada1SAlexander Graf } 1851eadaada1SAlexander Graf 1852eadaada1SAlexander Graf buf[0] = '\0'; 1853eadaada1SAlexander Graf while ((dirp = readdir(dp)) != NULL) { 1854eadaada1SAlexander Graf FILE *f; 1855eadaada1SAlexander Graf snprintf(buf, buf_len, "%s%s/clock-frequency", PROC_DEVTREE_CPU, 1856eadaada1SAlexander Graf dirp->d_name); 1857eadaada1SAlexander Graf f = fopen(buf, "r"); 1858eadaada1SAlexander Graf if (f) { 1859eadaada1SAlexander Graf snprintf(buf, buf_len, "%s%s", PROC_DEVTREE_CPU, dirp->d_name); 1860eadaada1SAlexander Graf fclose(f); 1861eadaada1SAlexander Graf break; 1862eadaada1SAlexander Graf } 1863eadaada1SAlexander Graf buf[0] = '\0'; 1864eadaada1SAlexander Graf } 1865eadaada1SAlexander Graf closedir(dp); 1866eadaada1SAlexander Graf if (buf[0] == '\0') { 1867eadaada1SAlexander Graf printf("Unknown host!\n"); 1868eadaada1SAlexander Graf return -1; 1869eadaada1SAlexander Graf } 1870eadaada1SAlexander Graf 1871eadaada1SAlexander Graf return 0; 1872eadaada1SAlexander Graf } 1873eadaada1SAlexander Graf 18747d94a30bSSukadev Bhattiprolu static uint64_t kvmppc_read_int_dt(const char *filename) 1875eadaada1SAlexander Graf { 18769bc884b7SDavid Gibson union { 18779bc884b7SDavid Gibson uint32_t v32; 18789bc884b7SDavid Gibson uint64_t v64; 18799bc884b7SDavid Gibson } u; 1880eadaada1SAlexander Graf FILE *f; 1881eadaada1SAlexander Graf int len; 1882eadaada1SAlexander Graf 18837d94a30bSSukadev Bhattiprolu f = fopen(filename, "rb"); 1884eadaada1SAlexander Graf if (!f) { 1885eadaada1SAlexander Graf return -1; 1886eadaada1SAlexander Graf } 1887eadaada1SAlexander Graf 18889bc884b7SDavid Gibson len = fread(&u, 1, sizeof(u), f); 1889eadaada1SAlexander Graf fclose(f); 1890eadaada1SAlexander Graf switch (len) { 18919bc884b7SDavid Gibson case 4: 18929bc884b7SDavid Gibson /* property is a 32-bit quantity */ 18939bc884b7SDavid Gibson return be32_to_cpu(u.v32); 18949bc884b7SDavid Gibson case 8: 18959bc884b7SDavid Gibson return be64_to_cpu(u.v64); 1896eadaada1SAlexander Graf } 1897eadaada1SAlexander Graf 1898eadaada1SAlexander Graf return 0; 1899eadaada1SAlexander Graf } 1900eadaada1SAlexander Graf 1901c995e942SDavid Gibson /* 1902c995e942SDavid Gibson * Read a CPU node property from the host device tree that's a single 19037d94a30bSSukadev Bhattiprolu * integer (32-bit or 64-bit). Returns 0 if anything goes wrong 1904c995e942SDavid Gibson * (can't find or open the property, or doesn't understand the format) 1905c995e942SDavid Gibson */ 19067d94a30bSSukadev Bhattiprolu static uint64_t kvmppc_read_int_cpu_dt(const char *propname) 19077d94a30bSSukadev Bhattiprolu { 19087d94a30bSSukadev Bhattiprolu char buf[PATH_MAX], *tmp; 19097d94a30bSSukadev Bhattiprolu uint64_t val; 19107d94a30bSSukadev Bhattiprolu 19117d94a30bSSukadev Bhattiprolu if (kvmppc_find_cpu_dt(buf, sizeof(buf))) { 19127d94a30bSSukadev Bhattiprolu return -1; 19137d94a30bSSukadev Bhattiprolu } 19147d94a30bSSukadev Bhattiprolu 19157d94a30bSSukadev Bhattiprolu tmp = g_strdup_printf("%s/%s", buf, propname); 19167d94a30bSSukadev Bhattiprolu val = kvmppc_read_int_dt(tmp); 19177d94a30bSSukadev Bhattiprolu g_free(tmp); 19187d94a30bSSukadev Bhattiprolu 19197d94a30bSSukadev Bhattiprolu return val; 19207d94a30bSSukadev Bhattiprolu } 19217d94a30bSSukadev Bhattiprolu 19229bc884b7SDavid Gibson uint64_t kvmppc_get_clockfreq(void) 19239bc884b7SDavid Gibson { 19249bc884b7SDavid Gibson return kvmppc_read_int_cpu_dt("clock-frequency"); 19259bc884b7SDavid Gibson } 19269bc884b7SDavid Gibson 19277d050527SSuraj Jitindar Singh static int kvmppc_get_dec_bits(void) 19287d050527SSuraj Jitindar Singh { 19297d050527SSuraj Jitindar Singh int nr_bits = kvmppc_read_int_cpu_dt("ibm,dec-bits"); 19307d050527SSuraj Jitindar Singh 19317d050527SSuraj Jitindar Singh if (nr_bits > 0) { 19327d050527SSuraj Jitindar Singh return nr_bits; 19337d050527SSuraj Jitindar Singh } 19347d050527SSuraj Jitindar Singh return 0; 19357d050527SSuraj Jitindar Singh } 19367d050527SSuraj Jitindar Singh 19371a61a9aeSStuart Yoder static int kvmppc_get_pvinfo(CPUPPCState *env, struct kvm_ppc_pvinfo *pvinfo) 193845024f09SAlexander Graf { 1939db70b311SRichard Henderson CPUState *cs = env_cpu(env); 194045024f09SAlexander Graf 19416fd33a75SAlexander Graf if (kvm_vm_check_extension(cs->kvm_state, KVM_CAP_PPC_GET_PVINFO) && 19421a61a9aeSStuart Yoder !kvm_vm_ioctl(cs->kvm_state, KVM_PPC_GET_PVINFO, pvinfo)) { 19431a61a9aeSStuart Yoder return 0; 19441a61a9aeSStuart Yoder } 194545024f09SAlexander Graf 19461a61a9aeSStuart Yoder return 1; 19471a61a9aeSStuart Yoder } 19481a61a9aeSStuart Yoder 19491a61a9aeSStuart Yoder int kvmppc_get_hasidle(CPUPPCState *env) 19501a61a9aeSStuart Yoder { 19511a61a9aeSStuart Yoder struct kvm_ppc_pvinfo pvinfo; 19521a61a9aeSStuart Yoder 19531a61a9aeSStuart Yoder if (!kvmppc_get_pvinfo(env, &pvinfo) && 19541a61a9aeSStuart Yoder (pvinfo.flags & KVM_PPC_PVINFO_FLAGS_EV_IDLE)) { 19551a61a9aeSStuart Yoder return 1; 19561a61a9aeSStuart Yoder } 19571a61a9aeSStuart Yoder 19581a61a9aeSStuart Yoder return 0; 19591a61a9aeSStuart Yoder } 19601a61a9aeSStuart Yoder 19611a61a9aeSStuart Yoder int kvmppc_get_hypercall(CPUPPCState *env, uint8_t *buf, int buf_len) 19621a61a9aeSStuart Yoder { 19631a61a9aeSStuart Yoder uint32_t *hc = (uint32_t *)buf; 19641a61a9aeSStuart Yoder struct kvm_ppc_pvinfo pvinfo; 19651a61a9aeSStuart Yoder 19661a61a9aeSStuart Yoder if (!kvmppc_get_pvinfo(env, &pvinfo)) { 19671a61a9aeSStuart Yoder memcpy(buf, pvinfo.hcall, buf_len); 196845024f09SAlexander Graf return 0; 196945024f09SAlexander Graf } 197045024f09SAlexander Graf 197145024f09SAlexander Graf /* 1972d13fc32eSAlexander Graf * Fallback to always fail hypercalls regardless of endianness: 197345024f09SAlexander Graf * 1974d13fc32eSAlexander Graf * tdi 0,r0,72 (becomes b .+8 in wrong endian, nop in good endian) 197545024f09SAlexander Graf * li r3, -1 1976d13fc32eSAlexander Graf * b .+8 (becomes nop in wrong endian) 1977d13fc32eSAlexander Graf * bswap32(li r3, -1) 197845024f09SAlexander Graf */ 197945024f09SAlexander Graf 1980d13fc32eSAlexander Graf hc[0] = cpu_to_be32(0x08000048); 1981d13fc32eSAlexander Graf hc[1] = cpu_to_be32(0x3860ffff); 1982d13fc32eSAlexander Graf hc[2] = cpu_to_be32(0x48000008); 1983d13fc32eSAlexander Graf hc[3] = cpu_to_be32(bswap32(0x3860ffff)); 198445024f09SAlexander Graf 19850ddbd053SAlexey Kardashevskiy return 1; 198645024f09SAlexander Graf } 198745024f09SAlexander Graf 1988026bfd89SDavid Gibson static inline int kvmppc_enable_hcall(KVMState *s, target_ulong hcall) 1989026bfd89SDavid Gibson { 1990026bfd89SDavid Gibson return kvm_vm_enable_cap(s, KVM_CAP_PPC_ENABLE_HCALL, 0, hcall, 1); 1991026bfd89SDavid Gibson } 1992026bfd89SDavid Gibson 1993026bfd89SDavid Gibson void kvmppc_enable_logical_ci_hcalls(void) 1994026bfd89SDavid Gibson { 1995026bfd89SDavid Gibson /* 1996026bfd89SDavid Gibson * FIXME: it would be nice if we could detect the cases where 1997026bfd89SDavid Gibson * we're using a device which requires the in kernel 1998026bfd89SDavid Gibson * implementation of these hcalls, but the kernel lacks them and 1999026bfd89SDavid Gibson * produce a warning. 2000026bfd89SDavid Gibson */ 2001026bfd89SDavid Gibson kvmppc_enable_hcall(kvm_state, H_LOGICAL_CI_LOAD); 2002026bfd89SDavid Gibson kvmppc_enable_hcall(kvm_state, H_LOGICAL_CI_STORE); 2003026bfd89SDavid Gibson } 2004026bfd89SDavid Gibson 2005ef9971ddSAlexey Kardashevskiy void kvmppc_enable_set_mode_hcall(void) 2006ef9971ddSAlexey Kardashevskiy { 2007ef9971ddSAlexey Kardashevskiy kvmppc_enable_hcall(kvm_state, H_SET_MODE); 2008ef9971ddSAlexey Kardashevskiy } 2009ef9971ddSAlexey Kardashevskiy 20105145ad4fSNathan Whitehorn void kvmppc_enable_clear_ref_mod_hcalls(void) 20115145ad4fSNathan Whitehorn { 20125145ad4fSNathan Whitehorn kvmppc_enable_hcall(kvm_state, H_CLEAR_REF); 20135145ad4fSNathan Whitehorn kvmppc_enable_hcall(kvm_state, H_CLEAR_MOD); 20145145ad4fSNathan Whitehorn } 20155145ad4fSNathan Whitehorn 201668f9f708SSuraj Jitindar Singh void kvmppc_enable_h_page_init(void) 201768f9f708SSuraj Jitindar Singh { 201868f9f708SSuraj Jitindar Singh kvmppc_enable_hcall(kvm_state, H_PAGE_INIT); 201968f9f708SSuraj Jitindar Singh } 202068f9f708SSuraj Jitindar Singh 20211bc22652SAndreas Färber void kvmppc_set_papr(PowerPCCPU *cpu) 2022f61b4bedSAlexander Graf { 20231bc22652SAndreas Färber CPUState *cs = CPU(cpu); 2024f61b4bedSAlexander Graf int ret; 2025f61b4bedSAlexander Graf 2026da20aed1SDavid Gibson if (!kvm_enabled()) { 2027da20aed1SDavid Gibson return; 2028da20aed1SDavid Gibson } 2029da20aed1SDavid Gibson 203048add816SCornelia Huck ret = kvm_vcpu_enable_cap(cs, KVM_CAP_PPC_PAPR, 0); 2031f61b4bedSAlexander Graf if (ret) { 2032072ed5f2SThomas Huth error_report("This vCPU type or KVM version does not support PAPR"); 2033072ed5f2SThomas Huth exit(1); 2034f61b4bedSAlexander Graf } 20359b00ea49SDavid Gibson 2036c995e942SDavid Gibson /* 2037c995e942SDavid Gibson * Update the capability flag so we sync the right information 2038c995e942SDavid Gibson * with kvm 2039c995e942SDavid Gibson */ 20409b00ea49SDavid Gibson cap_papr = 1; 2041f1af19d7SDavid Gibson } 2042f61b4bedSAlexander Graf 2043d6e166c0SDavid Gibson int kvmppc_set_compat(PowerPCCPU *cpu, uint32_t compat_pvr) 20446db5bb0fSAlexey Kardashevskiy { 2045d6e166c0SDavid Gibson return kvm_set_one_reg(CPU(cpu), KVM_REG_PPC_ARCH_COMPAT, &compat_pvr); 20466db5bb0fSAlexey Kardashevskiy } 20476db5bb0fSAlexey Kardashevskiy 20485b95b8b9SAlexander Graf void kvmppc_set_mpic_proxy(PowerPCCPU *cpu, int mpic_proxy) 20495b95b8b9SAlexander Graf { 20505b95b8b9SAlexander Graf CPUState *cs = CPU(cpu); 20515b95b8b9SAlexander Graf int ret; 20525b95b8b9SAlexander Graf 205348add816SCornelia Huck ret = kvm_vcpu_enable_cap(cs, KVM_CAP_PPC_EPR, 0, mpic_proxy); 20545b95b8b9SAlexander Graf if (ret && mpic_proxy) { 2055072ed5f2SThomas Huth error_report("This KVM version does not support EPR"); 2056072ed5f2SThomas Huth exit(1); 20575b95b8b9SAlexander Graf } 20585b95b8b9SAlexander Graf } 20595b95b8b9SAlexander Graf 2060e97c3636SDavid Gibson int kvmppc_smt_threads(void) 2061e97c3636SDavid Gibson { 2062e97c3636SDavid Gibson return cap_ppc_smt ? cap_ppc_smt : 1; 2063e97c3636SDavid Gibson } 2064e97c3636SDavid Gibson 2065fa98fbfcSSam Bobroff int kvmppc_set_smt_threads(int smt) 2066fa98fbfcSSam Bobroff { 2067fa98fbfcSSam Bobroff int ret; 2068fa98fbfcSSam Bobroff 2069fa98fbfcSSam Bobroff ret = kvm_vm_enable_cap(kvm_state, KVM_CAP_PPC_SMT, 0, smt, 0); 2070fa98fbfcSSam Bobroff if (!ret) { 2071fa98fbfcSSam Bobroff cap_ppc_smt = smt; 2072fa98fbfcSSam Bobroff } 2073fa98fbfcSSam Bobroff return ret; 2074fa98fbfcSSam Bobroff } 2075fa98fbfcSSam Bobroff 20760c115681SVladimir Sementsov-Ogievskiy void kvmppc_error_append_smt_possible_hint(Error *const *errp) 2077fa98fbfcSSam Bobroff { 2078fa98fbfcSSam Bobroff int i; 2079fa98fbfcSSam Bobroff GString *g; 2080fa98fbfcSSam Bobroff char *s; 2081fa98fbfcSSam Bobroff 2082fa98fbfcSSam Bobroff assert(kvm_enabled()); 2083fa98fbfcSSam Bobroff if (cap_ppc_smt_possible) { 2084fa98fbfcSSam Bobroff g = g_string_new("Available VSMT modes:"); 2085fa98fbfcSSam Bobroff for (i = 63; i >= 0; i--) { 2086fa98fbfcSSam Bobroff if ((1UL << i) & cap_ppc_smt_possible) { 2087fa98fbfcSSam Bobroff g_string_append_printf(g, " %lu", (1UL << i)); 2088fa98fbfcSSam Bobroff } 2089fa98fbfcSSam Bobroff } 2090fa98fbfcSSam Bobroff s = g_string_free(g, false); 20911a639fdfSMarkus Armbruster error_append_hint(errp, "%s.\n", s); 2092fa98fbfcSSam Bobroff g_free(s); 2093fa98fbfcSSam Bobroff } else { 20941a639fdfSMarkus Armbruster error_append_hint(errp, 2095fa98fbfcSSam Bobroff "This KVM seems to be too old to support VSMT.\n"); 2096fa98fbfcSSam Bobroff } 2097fa98fbfcSSam Bobroff } 2098fa98fbfcSSam Bobroff 2099fa98fbfcSSam Bobroff 21007f763a5dSDavid Gibson #ifdef TARGET_PPC64 21017f763a5dSDavid Gibson uint64_t kvmppc_rma_size(uint64_t current_size, unsigned int hash_shift) 21027f763a5dSDavid Gibson { 2103f36951c1SDavid Gibson struct kvm_ppc_smmu_info info; 2104f36951c1SDavid Gibson long rampagesize, best_page_shift; 2105f36951c1SDavid Gibson int i; 2106f36951c1SDavid Gibson 2107c995e942SDavid Gibson /* 2108c995e942SDavid Gibson * Find the largest hardware supported page size that's less than 2109c995e942SDavid Gibson * or equal to the (logical) backing page size of guest RAM 2110c995e942SDavid Gibson */ 2111ab256960SGreg Kurz kvm_get_smmu_info(&info, &error_fatal); 2112905b7ee4SDavid Hildenbrand rampagesize = qemu_minrampagesize(); 2113f36951c1SDavid Gibson best_page_shift = 0; 2114f36951c1SDavid Gibson 2115f36951c1SDavid Gibson for (i = 0; i < KVM_PPC_PAGE_SIZES_MAX_SZ; i++) { 2116f36951c1SDavid Gibson struct kvm_ppc_one_seg_page_size *sps = &info.sps[i]; 2117f36951c1SDavid Gibson 2118f36951c1SDavid Gibson if (!sps->page_shift) { 2119f36951c1SDavid Gibson continue; 2120f36951c1SDavid Gibson } 2121f36951c1SDavid Gibson 2122f36951c1SDavid Gibson if ((sps->page_shift > best_page_shift) 2123f36951c1SDavid Gibson && ((1UL << sps->page_shift) <= rampagesize)) { 2124f36951c1SDavid Gibson best_page_shift = sps->page_shift; 2125f36951c1SDavid Gibson } 2126f36951c1SDavid Gibson } 2127f36951c1SDavid Gibson 21287f763a5dSDavid Gibson return MIN(current_size, 2129f36951c1SDavid Gibson 1ULL << (best_page_shift + hash_shift - 7)); 21307f763a5dSDavid Gibson } 21317f763a5dSDavid Gibson #endif 21327f763a5dSDavid Gibson 2133da95324eSAlexey Kardashevskiy bool kvmppc_spapr_use_multitce(void) 2134da95324eSAlexey Kardashevskiy { 2135da95324eSAlexey Kardashevskiy return cap_spapr_multitce; 2136da95324eSAlexey Kardashevskiy } 2137da95324eSAlexey Kardashevskiy 21383dc410aeSAlexey Kardashevskiy int kvmppc_spapr_enable_inkernel_multitce(void) 21393dc410aeSAlexey Kardashevskiy { 21403dc410aeSAlexey Kardashevskiy int ret; 21413dc410aeSAlexey Kardashevskiy 21423dc410aeSAlexey Kardashevskiy ret = kvm_vm_enable_cap(kvm_state, KVM_CAP_PPC_ENABLE_HCALL, 0, 21433dc410aeSAlexey Kardashevskiy H_PUT_TCE_INDIRECT, 1); 21443dc410aeSAlexey Kardashevskiy if (!ret) { 21453dc410aeSAlexey Kardashevskiy ret = kvm_vm_enable_cap(kvm_state, KVM_CAP_PPC_ENABLE_HCALL, 0, 21463dc410aeSAlexey Kardashevskiy H_STUFF_TCE, 1); 21473dc410aeSAlexey Kardashevskiy } 21483dc410aeSAlexey Kardashevskiy 21493dc410aeSAlexey Kardashevskiy return ret; 21503dc410aeSAlexey Kardashevskiy } 21513dc410aeSAlexey Kardashevskiy 2152d6ee2a7cSAlexey Kardashevskiy void *kvmppc_create_spapr_tce(uint32_t liobn, uint32_t page_shift, 2153d6ee2a7cSAlexey Kardashevskiy uint64_t bus_offset, uint32_t nb_table, 2154d6ee2a7cSAlexey Kardashevskiy int *pfd, bool need_vfio) 21550f5cb298SDavid Gibson { 21560f5cb298SDavid Gibson long len; 21570f5cb298SDavid Gibson int fd; 21580f5cb298SDavid Gibson void *table; 21590f5cb298SDavid Gibson 2160c995e942SDavid Gibson /* 2161c995e942SDavid Gibson * Must set fd to -1 so we don't try to munmap when called for 2162b5aec396SDavid Gibson * destroying the table, which the upper layers -will- do 2163b5aec396SDavid Gibson */ 2164b5aec396SDavid Gibson *pfd = -1; 21656a81dd17SDavid Gibson if (!cap_spapr_tce || (need_vfio && !cap_spapr_vfio)) { 21660f5cb298SDavid Gibson return NULL; 21670f5cb298SDavid Gibson } 21680f5cb298SDavid Gibson 2169d6ee2a7cSAlexey Kardashevskiy if (cap_spapr_tce_64) { 2170d6ee2a7cSAlexey Kardashevskiy struct kvm_create_spapr_tce_64 args = { 2171d6ee2a7cSAlexey Kardashevskiy .liobn = liobn, 2172d6ee2a7cSAlexey Kardashevskiy .page_shift = page_shift, 2173d6ee2a7cSAlexey Kardashevskiy .offset = bus_offset >> page_shift, 2174d6ee2a7cSAlexey Kardashevskiy .size = nb_table, 2175d6ee2a7cSAlexey Kardashevskiy .flags = 0 2176d6ee2a7cSAlexey Kardashevskiy }; 2177d6ee2a7cSAlexey Kardashevskiy fd = kvm_vm_ioctl(kvm_state, KVM_CREATE_SPAPR_TCE_64, &args); 2178d6ee2a7cSAlexey Kardashevskiy if (fd < 0) { 2179d6ee2a7cSAlexey Kardashevskiy fprintf(stderr, 2180d6ee2a7cSAlexey Kardashevskiy "KVM: Failed to create TCE64 table for liobn 0x%x\n", 2181d6ee2a7cSAlexey Kardashevskiy liobn); 2182d6ee2a7cSAlexey Kardashevskiy return NULL; 2183d6ee2a7cSAlexey Kardashevskiy } 2184d6ee2a7cSAlexey Kardashevskiy } else if (cap_spapr_tce) { 2185d6ee2a7cSAlexey Kardashevskiy uint64_t window_size = (uint64_t) nb_table << page_shift; 2186d6ee2a7cSAlexey Kardashevskiy struct kvm_create_spapr_tce args = { 2187d6ee2a7cSAlexey Kardashevskiy .liobn = liobn, 2188d6ee2a7cSAlexey Kardashevskiy .window_size = window_size, 2189d6ee2a7cSAlexey Kardashevskiy }; 2190d6ee2a7cSAlexey Kardashevskiy if ((window_size != args.window_size) || bus_offset) { 2191d6ee2a7cSAlexey Kardashevskiy return NULL; 2192d6ee2a7cSAlexey Kardashevskiy } 21930f5cb298SDavid Gibson fd = kvm_vm_ioctl(kvm_state, KVM_CREATE_SPAPR_TCE, &args); 21940f5cb298SDavid Gibson if (fd < 0) { 2195b5aec396SDavid Gibson fprintf(stderr, "KVM: Failed to create TCE table for liobn 0x%x\n", 2196b5aec396SDavid Gibson liobn); 21970f5cb298SDavid Gibson return NULL; 21980f5cb298SDavid Gibson } 2199d6ee2a7cSAlexey Kardashevskiy } else { 2200d6ee2a7cSAlexey Kardashevskiy return NULL; 2201d6ee2a7cSAlexey Kardashevskiy } 22020f5cb298SDavid Gibson 2203d6ee2a7cSAlexey Kardashevskiy len = nb_table * sizeof(uint64_t); 22040f5cb298SDavid Gibson /* FIXME: round this up to page size */ 22050f5cb298SDavid Gibson 220674b41e56SDavid Gibson table = mmap(NULL, len, PROT_READ | PROT_WRITE, MAP_SHARED, fd, 0); 22070f5cb298SDavid Gibson if (table == MAP_FAILED) { 2208b5aec396SDavid Gibson fprintf(stderr, "KVM: Failed to map TCE table for liobn 0x%x\n", 2209b5aec396SDavid Gibson liobn); 22100f5cb298SDavid Gibson close(fd); 22110f5cb298SDavid Gibson return NULL; 22120f5cb298SDavid Gibson } 22130f5cb298SDavid Gibson 22140f5cb298SDavid Gibson *pfd = fd; 22150f5cb298SDavid Gibson return table; 22160f5cb298SDavid Gibson } 22170f5cb298SDavid Gibson 2218523e7b8aSAlexey Kardashevskiy int kvmppc_remove_spapr_tce(void *table, int fd, uint32_t nb_table) 22190f5cb298SDavid Gibson { 22200f5cb298SDavid Gibson long len; 22210f5cb298SDavid Gibson 22220f5cb298SDavid Gibson if (fd < 0) { 22230f5cb298SDavid Gibson return -1; 22240f5cb298SDavid Gibson } 22250f5cb298SDavid Gibson 2226523e7b8aSAlexey Kardashevskiy len = nb_table * sizeof(uint64_t); 22270f5cb298SDavid Gibson if ((munmap(table, len) < 0) || 22280f5cb298SDavid Gibson (close(fd) < 0)) { 2229b5aec396SDavid Gibson fprintf(stderr, "KVM: Unexpected error removing TCE table: %s", 2230b5aec396SDavid Gibson strerror(errno)); 22310f5cb298SDavid Gibson /* Leak the table */ 22320f5cb298SDavid Gibson } 22330f5cb298SDavid Gibson 22340f5cb298SDavid Gibson return 0; 22350f5cb298SDavid Gibson } 22360f5cb298SDavid Gibson 22377f763a5dSDavid Gibson int kvmppc_reset_htab(int shift_hint) 22387f763a5dSDavid Gibson { 22397f763a5dSDavid Gibson uint32_t shift = shift_hint; 22407f763a5dSDavid Gibson 2241ace9a2cbSDavid Gibson if (!kvm_enabled()) { 2242ace9a2cbSDavid Gibson /* Full emulation, tell caller to allocate htab itself */ 2243ace9a2cbSDavid Gibson return 0; 2244ace9a2cbSDavid Gibson } 22456977afdaSGreg Kurz if (kvm_vm_check_extension(kvm_state, KVM_CAP_PPC_ALLOC_HTAB)) { 22467f763a5dSDavid Gibson int ret; 22477f763a5dSDavid Gibson ret = kvm_vm_ioctl(kvm_state, KVM_PPC_ALLOCATE_HTAB, &shift); 2248ace9a2cbSDavid Gibson if (ret == -ENOTTY) { 2249c995e942SDavid Gibson /* 2250c995e942SDavid Gibson * At least some versions of PR KVM advertise the 2251ace9a2cbSDavid Gibson * capability, but don't implement the ioctl(). Oops. 2252ace9a2cbSDavid Gibson * Return 0 so that we allocate the htab in qemu, as is 2253c995e942SDavid Gibson * correct for PR. 2254c995e942SDavid Gibson */ 2255ace9a2cbSDavid Gibson return 0; 2256ace9a2cbSDavid Gibson } else if (ret < 0) { 22577f763a5dSDavid Gibson return ret; 22587f763a5dSDavid Gibson } 22597f763a5dSDavid Gibson return shift; 22607f763a5dSDavid Gibson } 22617f763a5dSDavid Gibson 2262c995e942SDavid Gibson /* 2263c995e942SDavid Gibson * We have a kernel that predates the htab reset calls. For PR 2264ace9a2cbSDavid Gibson * KVM, we need to allocate the htab ourselves, for an HV KVM of 2265c995e942SDavid Gibson * this era, it has allocated a 16MB fixed size hash table 2266c995e942SDavid Gibson * already. 2267c995e942SDavid Gibson */ 226896c9cff0SThomas Huth if (kvmppc_is_pr(kvm_state)) { 2269ace9a2cbSDavid Gibson /* PR - tell caller to allocate htab */ 22707f763a5dSDavid Gibson return 0; 2271ace9a2cbSDavid Gibson } else { 2272ace9a2cbSDavid Gibson /* HV - assume 16MB kernel allocated htab */ 2273ace9a2cbSDavid Gibson return 24; 2274ace9a2cbSDavid Gibson } 22757f763a5dSDavid Gibson } 22767f763a5dSDavid Gibson 2277a1e98583SDavid Gibson static inline uint32_t mfpvr(void) 2278a1e98583SDavid Gibson { 2279a1e98583SDavid Gibson uint32_t pvr; 2280a1e98583SDavid Gibson 2281a1e98583SDavid Gibson asm ("mfpvr %0" 2282a1e98583SDavid Gibson : "=r"(pvr)); 2283a1e98583SDavid Gibson return pvr; 2284a1e98583SDavid Gibson } 2285a1e98583SDavid Gibson 2286a7342588SDavid Gibson static void alter_insns(uint64_t *word, uint64_t flags, bool on) 2287a7342588SDavid Gibson { 2288a7342588SDavid Gibson if (on) { 2289a7342588SDavid Gibson *word |= flags; 2290a7342588SDavid Gibson } else { 2291a7342588SDavid Gibson *word &= ~flags; 2292a7342588SDavid Gibson } 2293a7342588SDavid Gibson } 2294a7342588SDavid Gibson 22952985b86bSAndreas Färber static void kvmppc_host_cpu_class_init(ObjectClass *oc, void *data) 22962985b86bSAndreas Färber { 22972985b86bSAndreas Färber PowerPCCPUClass *pcc = POWERPC_CPU_CLASS(oc); 22980cbad81fSDavid Gibson uint32_t dcache_size = kvmppc_read_int_cpu_dt("d-cache-size"); 22990cbad81fSDavid Gibson uint32_t icache_size = kvmppc_read_int_cpu_dt("i-cache-size"); 2300a1e98583SDavid Gibson 2301cfe34f44SAndreas Färber /* Now fix up the class with information we can query from the host */ 23023bc9ccc0SAlexey Kardashevskiy pcc->pvr = mfpvr(); 2303a7342588SDavid Gibson 23043f2ca480SDavid Gibson alter_insns(&pcc->insns_flags, PPC_ALTIVEC, 23053f2ca480SDavid Gibson qemu_getauxval(AT_HWCAP) & PPC_FEATURE_HAS_ALTIVEC); 23063f2ca480SDavid Gibson alter_insns(&pcc->insns_flags2, PPC2_VSX, 23073f2ca480SDavid Gibson qemu_getauxval(AT_HWCAP) & PPC_FEATURE_HAS_VSX); 23083f2ca480SDavid Gibson alter_insns(&pcc->insns_flags2, PPC2_DFP, 23093f2ca480SDavid Gibson qemu_getauxval(AT_HWCAP) & PPC_FEATURE_HAS_DFP); 23100cbad81fSDavid Gibson 23110cbad81fSDavid Gibson if (dcache_size != -1) { 23120cbad81fSDavid Gibson pcc->l1_dcache_size = dcache_size; 23130cbad81fSDavid Gibson } 23140cbad81fSDavid Gibson 23150cbad81fSDavid Gibson if (icache_size != -1) { 23160cbad81fSDavid Gibson pcc->l1_icache_size = icache_size; 23170cbad81fSDavid Gibson } 2318c64abd1fSSam Bobroff 2319c64abd1fSSam Bobroff #if defined(TARGET_PPC64) 2320c64abd1fSSam Bobroff pcc->radix_page_info = kvm_get_radix_page_info(); 23215f3066d8SDavid Gibson 23225f3066d8SDavid Gibson if ((pcc->pvr & 0xffffff00) == CPU_POWERPC_POWER9_DD1) { 23235f3066d8SDavid Gibson /* 23245f3066d8SDavid Gibson * POWER9 DD1 has some bugs which make it not really ISA 3.00 23255f3066d8SDavid Gibson * compliant. More importantly, advertising ISA 3.00 23265f3066d8SDavid Gibson * architected mode may prevent guests from activating 23275f3066d8SDavid Gibson * necessary DD1 workarounds. 23285f3066d8SDavid Gibson */ 23295f3066d8SDavid Gibson pcc->pcr_supported &= ~(PCR_COMPAT_3_00 | PCR_COMPAT_2_07 23305f3066d8SDavid Gibson | PCR_COMPAT_2_06 | PCR_COMPAT_2_05); 23315f3066d8SDavid Gibson } 2332c64abd1fSSam Bobroff #endif /* defined(TARGET_PPC64) */ 2333a1e98583SDavid Gibson } 2334a1e98583SDavid Gibson 23353b961124SStuart Yoder bool kvmppc_has_cap_epr(void) 23363b961124SStuart Yoder { 23373b961124SStuart Yoder return cap_epr; 23383b961124SStuart Yoder } 23393b961124SStuart Yoder 234087a91de6SAlexander Graf bool kvmppc_has_cap_fixup_hcalls(void) 234187a91de6SAlexander Graf { 234287a91de6SAlexander Graf return cap_fixup_hcalls; 234387a91de6SAlexander Graf } 234487a91de6SAlexander Graf 2345bac3bf28SThomas Huth bool kvmppc_has_cap_htm(void) 2346bac3bf28SThomas Huth { 2347bac3bf28SThomas Huth return cap_htm; 2348bac3bf28SThomas Huth } 2349bac3bf28SThomas Huth 2350cf1c4cceSSam Bobroff bool kvmppc_has_cap_mmu_radix(void) 2351cf1c4cceSSam Bobroff { 2352cf1c4cceSSam Bobroff return cap_mmu_radix; 2353cf1c4cceSSam Bobroff } 2354cf1c4cceSSam Bobroff 2355cf1c4cceSSam Bobroff bool kvmppc_has_cap_mmu_hash_v3(void) 2356cf1c4cceSSam Bobroff { 2357cf1c4cceSSam Bobroff return cap_mmu_hash_v3; 2358cf1c4cceSSam Bobroff } 2359cf1c4cceSSam Bobroff 2360072f416aSSuraj Jitindar Singh static bool kvmppc_power8_host(void) 2361072f416aSSuraj Jitindar Singh { 2362072f416aSSuraj Jitindar Singh bool ret = false; 2363072f416aSSuraj Jitindar Singh #ifdef TARGET_PPC64 2364072f416aSSuraj Jitindar Singh { 2365072f416aSSuraj Jitindar Singh uint32_t base_pvr = CPU_POWERPC_POWER_SERVER_MASK & mfpvr(); 2366072f416aSSuraj Jitindar Singh ret = (base_pvr == CPU_POWERPC_POWER8E_BASE) || 2367072f416aSSuraj Jitindar Singh (base_pvr == CPU_POWERPC_POWER8NVL_BASE) || 2368072f416aSSuraj Jitindar Singh (base_pvr == CPU_POWERPC_POWER8_BASE); 2369072f416aSSuraj Jitindar Singh } 2370072f416aSSuraj Jitindar Singh #endif /* TARGET_PPC64 */ 2371072f416aSSuraj Jitindar Singh return ret; 2372072f416aSSuraj Jitindar Singh } 2373072f416aSSuraj Jitindar Singh 23748fea7044SSuraj Jitindar Singh static int parse_cap_ppc_safe_cache(struct kvm_ppc_cpu_char c) 23758fea7044SSuraj Jitindar Singh { 2376072f416aSSuraj Jitindar Singh bool l1d_thread_priv_req = !kvmppc_power8_host(); 2377072f416aSSuraj Jitindar Singh 23788fea7044SSuraj Jitindar Singh if (~c.behaviour & c.behaviour_mask & H_CPU_BEHAV_L1D_FLUSH_PR) { 23798fea7044SSuraj Jitindar Singh return 2; 2380072f416aSSuraj Jitindar Singh } else if ((!l1d_thread_priv_req || 2381072f416aSSuraj Jitindar Singh c.character & c.character_mask & H_CPU_CHAR_L1D_THREAD_PRIV) && 23828fea7044SSuraj Jitindar Singh (c.character & c.character_mask 23838fea7044SSuraj Jitindar Singh & (H_CPU_CHAR_L1D_FLUSH_ORI30 | H_CPU_CHAR_L1D_FLUSH_TRIG2))) { 23848fea7044SSuraj Jitindar Singh return 1; 23858fea7044SSuraj Jitindar Singh } 23868fea7044SSuraj Jitindar Singh 23878fea7044SSuraj Jitindar Singh return 0; 23888fea7044SSuraj Jitindar Singh } 23898fea7044SSuraj Jitindar Singh 23908fea7044SSuraj Jitindar Singh static int parse_cap_ppc_safe_bounds_check(struct kvm_ppc_cpu_char c) 23918fea7044SSuraj Jitindar Singh { 23928fea7044SSuraj Jitindar Singh if (~c.behaviour & c.behaviour_mask & H_CPU_BEHAV_BNDS_CHK_SPEC_BAR) { 23938fea7044SSuraj Jitindar Singh return 2; 23948fea7044SSuraj Jitindar Singh } else if (c.character & c.character_mask & H_CPU_CHAR_SPEC_BAR_ORI31) { 23958fea7044SSuraj Jitindar Singh return 1; 23968fea7044SSuraj Jitindar Singh } 23978fea7044SSuraj Jitindar Singh 23988fea7044SSuraj Jitindar Singh return 0; 23998fea7044SSuraj Jitindar Singh } 24008fea7044SSuraj Jitindar Singh 24018fea7044SSuraj Jitindar Singh static int parse_cap_ppc_safe_indirect_branch(struct kvm_ppc_cpu_char c) 24028fea7044SSuraj Jitindar Singh { 2403399b2896SSuraj Jitindar Singh if ((~c.behaviour & c.behaviour_mask & H_CPU_BEHAV_FLUSH_COUNT_CACHE) && 2404399b2896SSuraj Jitindar Singh (~c.character & c.character_mask & H_CPU_CHAR_CACHE_COUNT_DIS) && 2405399b2896SSuraj Jitindar Singh (~c.character & c.character_mask & H_CPU_CHAR_BCCTRL_SERIALISED)) { 2406399b2896SSuraj Jitindar Singh return SPAPR_CAP_FIXED_NA; 2407399b2896SSuraj Jitindar Singh } else if (c.behaviour & c.behaviour_mask & H_CPU_BEHAV_FLUSH_COUNT_CACHE) { 2408399b2896SSuraj Jitindar Singh return SPAPR_CAP_WORKAROUND; 2409399b2896SSuraj Jitindar Singh } else if (c.character & c.character_mask & H_CPU_CHAR_CACHE_COUNT_DIS) { 24108fea7044SSuraj Jitindar Singh return SPAPR_CAP_FIXED_CCD; 24118fea7044SSuraj Jitindar Singh } else if (c.character & c.character_mask & H_CPU_CHAR_BCCTRL_SERIALISED) { 24128fea7044SSuraj Jitindar Singh return SPAPR_CAP_FIXED_IBS; 24138fea7044SSuraj Jitindar Singh } 24148fea7044SSuraj Jitindar Singh 24158fea7044SSuraj Jitindar Singh return 0; 24168fea7044SSuraj Jitindar Singh } 24178fea7044SSuraj Jitindar Singh 24188ff43ee4SSuraj Jitindar Singh static int parse_cap_ppc_count_cache_flush_assist(struct kvm_ppc_cpu_char c) 24198ff43ee4SSuraj Jitindar Singh { 24208ff43ee4SSuraj Jitindar Singh if (c.character & c.character_mask & H_CPU_CHAR_BCCTR_FLUSH_ASSIST) { 24218ff43ee4SSuraj Jitindar Singh return 1; 24228ff43ee4SSuraj Jitindar Singh } 24238ff43ee4SSuraj Jitindar Singh return 0; 24248ff43ee4SSuraj Jitindar Singh } 24258ff43ee4SSuraj Jitindar Singh 242638afd772SCédric Le Goater bool kvmppc_has_cap_xive(void) 242738afd772SCédric Le Goater { 242838afd772SCédric Le Goater return cap_xive; 242938afd772SCédric Le Goater } 243038afd772SCédric Le Goater 24318acc2ae5SSuraj Jitindar Singh static void kvmppc_get_cpu_characteristics(KVMState *s) 24328acc2ae5SSuraj Jitindar Singh { 24338acc2ae5SSuraj Jitindar Singh struct kvm_ppc_cpu_char c; 24348acc2ae5SSuraj Jitindar Singh int ret; 24358acc2ae5SSuraj Jitindar Singh 24368acc2ae5SSuraj Jitindar Singh /* Assume broken */ 24378acc2ae5SSuraj Jitindar Singh cap_ppc_safe_cache = 0; 24388acc2ae5SSuraj Jitindar Singh cap_ppc_safe_bounds_check = 0; 24398acc2ae5SSuraj Jitindar Singh cap_ppc_safe_indirect_branch = 0; 24408acc2ae5SSuraj Jitindar Singh 24418acc2ae5SSuraj Jitindar Singh ret = kvm_vm_check_extension(s, KVM_CAP_PPC_GET_CPU_CHAR); 24428acc2ae5SSuraj Jitindar Singh if (!ret) { 24438acc2ae5SSuraj Jitindar Singh return; 24448acc2ae5SSuraj Jitindar Singh } 24458acc2ae5SSuraj Jitindar Singh ret = kvm_vm_ioctl(s, KVM_PPC_GET_CPU_CHAR, &c); 24468acc2ae5SSuraj Jitindar Singh if (ret < 0) { 24478acc2ae5SSuraj Jitindar Singh return; 24488acc2ae5SSuraj Jitindar Singh } 24498fea7044SSuraj Jitindar Singh 24508fea7044SSuraj Jitindar Singh cap_ppc_safe_cache = parse_cap_ppc_safe_cache(c); 24518fea7044SSuraj Jitindar Singh cap_ppc_safe_bounds_check = parse_cap_ppc_safe_bounds_check(c); 24528fea7044SSuraj Jitindar Singh cap_ppc_safe_indirect_branch = parse_cap_ppc_safe_indirect_branch(c); 24538ff43ee4SSuraj Jitindar Singh cap_ppc_count_cache_flush_assist = 24548ff43ee4SSuraj Jitindar Singh parse_cap_ppc_count_cache_flush_assist(c); 24558acc2ae5SSuraj Jitindar Singh } 24568acc2ae5SSuraj Jitindar Singh 24578acc2ae5SSuraj Jitindar Singh int kvmppc_get_cap_safe_cache(void) 24588acc2ae5SSuraj Jitindar Singh { 24598acc2ae5SSuraj Jitindar Singh return cap_ppc_safe_cache; 24608acc2ae5SSuraj Jitindar Singh } 24618acc2ae5SSuraj Jitindar Singh 24628acc2ae5SSuraj Jitindar Singh int kvmppc_get_cap_safe_bounds_check(void) 24638acc2ae5SSuraj Jitindar Singh { 24648acc2ae5SSuraj Jitindar Singh return cap_ppc_safe_bounds_check; 24658acc2ae5SSuraj Jitindar Singh } 24668acc2ae5SSuraj Jitindar Singh 24678acc2ae5SSuraj Jitindar Singh int kvmppc_get_cap_safe_indirect_branch(void) 24688acc2ae5SSuraj Jitindar Singh { 24698acc2ae5SSuraj Jitindar Singh return cap_ppc_safe_indirect_branch; 24708acc2ae5SSuraj Jitindar Singh } 24718acc2ae5SSuraj Jitindar Singh 24728ff43ee4SSuraj Jitindar Singh int kvmppc_get_cap_count_cache_flush_assist(void) 24738ff43ee4SSuraj Jitindar Singh { 24748ff43ee4SSuraj Jitindar Singh return cap_ppc_count_cache_flush_assist; 24758ff43ee4SSuraj Jitindar Singh } 24768ff43ee4SSuraj Jitindar Singh 2477b9a477b7SSuraj Jitindar Singh bool kvmppc_has_cap_nested_kvm_hv(void) 2478b9a477b7SSuraj Jitindar Singh { 2479b9a477b7SSuraj Jitindar Singh return !!cap_ppc_nested_kvm_hv; 2480b9a477b7SSuraj Jitindar Singh } 2481b9a477b7SSuraj Jitindar Singh 2482b9a477b7SSuraj Jitindar Singh int kvmppc_set_cap_nested_kvm_hv(int enable) 2483b9a477b7SSuraj Jitindar Singh { 2484b9a477b7SSuraj Jitindar Singh return kvm_vm_enable_cap(kvm_state, KVM_CAP_PPC_NESTED_HV, 0, enable); 2485b9a477b7SSuraj Jitindar Singh } 2486b9a477b7SSuraj Jitindar Singh 24879ded780cSAlexey Kardashevskiy bool kvmppc_has_cap_spapr_vfio(void) 24889ded780cSAlexey Kardashevskiy { 24899ded780cSAlexey Kardashevskiy return cap_spapr_vfio; 24909ded780cSAlexey Kardashevskiy } 24919ded780cSAlexey Kardashevskiy 24927d050527SSuraj Jitindar Singh int kvmppc_get_cap_large_decr(void) 24937d050527SSuraj Jitindar Singh { 24947d050527SSuraj Jitindar Singh return cap_large_decr; 24957d050527SSuraj Jitindar Singh } 24967d050527SSuraj Jitindar Singh 24977d050527SSuraj Jitindar Singh int kvmppc_enable_cap_large_decr(PowerPCCPU *cpu, int enable) 24987d050527SSuraj Jitindar Singh { 24997d050527SSuraj Jitindar Singh CPUState *cs = CPU(cpu); 25007d050527SSuraj Jitindar Singh uint64_t lpcr; 25017d050527SSuraj Jitindar Singh 25027d050527SSuraj Jitindar Singh kvm_get_one_reg(cs, KVM_REG_PPC_LPCR_64, &lpcr); 25037d050527SSuraj Jitindar Singh /* Do we need to modify the LPCR? */ 25047d050527SSuraj Jitindar Singh if (!!(lpcr & LPCR_LD) != !!enable) { 25057d050527SSuraj Jitindar Singh if (enable) { 25067d050527SSuraj Jitindar Singh lpcr |= LPCR_LD; 25077d050527SSuraj Jitindar Singh } else { 25087d050527SSuraj Jitindar Singh lpcr &= ~LPCR_LD; 25097d050527SSuraj Jitindar Singh } 25107d050527SSuraj Jitindar Singh kvm_set_one_reg(cs, KVM_REG_PPC_LPCR_64, &lpcr); 25117d050527SSuraj Jitindar Singh kvm_get_one_reg(cs, KVM_REG_PPC_LPCR_64, &lpcr); 25127d050527SSuraj Jitindar Singh 25137d050527SSuraj Jitindar Singh if (!!(lpcr & LPCR_LD) != !!enable) { 25147d050527SSuraj Jitindar Singh return -1; 25157d050527SSuraj Jitindar Singh } 25167d050527SSuraj Jitindar Singh } 25177d050527SSuraj Jitindar Singh 25187d050527SSuraj Jitindar Singh return 0; 25197d050527SSuraj Jitindar Singh } 25207d050527SSuraj Jitindar Singh 252152b2519cSThomas Huth PowerPCCPUClass *kvm_ppc_get_host_cpu_class(void) 252252b2519cSThomas Huth { 252352b2519cSThomas Huth uint32_t host_pvr = mfpvr(); 252452b2519cSThomas Huth PowerPCCPUClass *pvr_pcc; 252552b2519cSThomas Huth 252652b2519cSThomas Huth pvr_pcc = ppc_cpu_class_by_pvr(host_pvr); 252752b2519cSThomas Huth if (pvr_pcc == NULL) { 252852b2519cSThomas Huth pvr_pcc = ppc_cpu_class_by_pvr_mask(host_pvr); 252952b2519cSThomas Huth } 253052b2519cSThomas Huth 253152b2519cSThomas Huth return pvr_pcc; 253252b2519cSThomas Huth } 253352b2519cSThomas Huth 2534165dc3edSDavid Gibson static void pseries_machine_class_fixup(ObjectClass *oc, void *opaque) 2535165dc3edSDavid Gibson { 2536165dc3edSDavid Gibson MachineClass *mc = MACHINE_CLASS(oc); 2537165dc3edSDavid Gibson 2538165dc3edSDavid Gibson mc->default_cpu_type = TYPE_HOST_POWERPC_CPU; 2539165dc3edSDavid Gibson } 2540165dc3edSDavid Gibson 2541165dc3edSDavid Gibson static int kvm_ppc_register_host_cpu_type(void) 25425ba4576bSAndreas Färber { 25435ba4576bSAndreas Färber TypeInfo type_info = { 25445ba4576bSAndreas Färber .name = TYPE_HOST_POWERPC_CPU, 25455ba4576bSAndreas Färber .class_init = kvmppc_host_cpu_class_init, 25465ba4576bSAndreas Färber }; 25475ba4576bSAndreas Färber PowerPCCPUClass *pvr_pcc; 254892e926e1SGreg Kurz ObjectClass *oc; 25495b79b1caSAlexey Kardashevskiy DeviceClass *dc; 2550715d4b96SThomas Huth int i; 25515ba4576bSAndreas Färber 255252b2519cSThomas Huth pvr_pcc = kvm_ppc_get_host_cpu_class(); 25533bc9ccc0SAlexey Kardashevskiy if (pvr_pcc == NULL) { 25545ba4576bSAndreas Färber return -1; 25555ba4576bSAndreas Färber } 25565ba4576bSAndreas Färber type_info.parent = object_class_get_name(OBJECT_CLASS(pvr_pcc)); 25575ba4576bSAndreas Färber type_register(&type_info); 25582e9c10ebSIgor Mammedov /* override TCG default cpu type with 'host' cpu model */ 2559165dc3edSDavid Gibson object_class_foreach(pseries_machine_class_fixup, TYPE_SPAPR_MACHINE, 2560165dc3edSDavid Gibson false, NULL); 25615b79b1caSAlexey Kardashevskiy 256292e926e1SGreg Kurz oc = object_class_by_name(type_info.name); 256392e926e1SGreg Kurz g_assert(oc); 256492e926e1SGreg Kurz 2565715d4b96SThomas Huth /* 2566715d4b96SThomas Huth * Update generic CPU family class alias (e.g. on a POWER8NVL host, 2567715d4b96SThomas Huth * we want "POWER8" to be a "family" alias that points to the current 2568715d4b96SThomas Huth * host CPU type, too) 2569715d4b96SThomas Huth */ 2570715d4b96SThomas Huth dc = DEVICE_CLASS(ppc_cpu_get_family_class(pvr_pcc)); 2571715d4b96SThomas Huth for (i = 0; ppc_cpu_aliases[i].alias != NULL; i++) { 2572c5354f54SIgor Mammedov if (strcasecmp(ppc_cpu_aliases[i].alias, dc->desc) == 0) { 2573715d4b96SThomas Huth char *suffix; 2574715d4b96SThomas Huth 2575715d4b96SThomas Huth ppc_cpu_aliases[i].model = g_strdup(object_class_get_name(oc)); 2576c9137065SIgor Mammedov suffix = strstr(ppc_cpu_aliases[i].model, POWERPC_CPU_TYPE_SUFFIX); 2577715d4b96SThomas Huth if (suffix) { 2578715d4b96SThomas Huth *suffix = 0; 2579715d4b96SThomas Huth } 2580715d4b96SThomas Huth break; 2581715d4b96SThomas Huth } 2582715d4b96SThomas Huth } 2583715d4b96SThomas Huth 25845ba4576bSAndreas Färber return 0; 25855ba4576bSAndreas Färber } 25865ba4576bSAndreas Färber 2587feaa64c4SDavid Gibson int kvmppc_define_rtas_kernel_token(uint32_t token, const char *function) 2588feaa64c4SDavid Gibson { 2589feaa64c4SDavid Gibson struct kvm_rtas_token_args args = { 2590feaa64c4SDavid Gibson .token = token, 2591feaa64c4SDavid Gibson }; 2592feaa64c4SDavid Gibson 2593feaa64c4SDavid Gibson if (!kvm_check_extension(kvm_state, KVM_CAP_PPC_RTAS)) { 2594feaa64c4SDavid Gibson return -ENOENT; 2595feaa64c4SDavid Gibson } 2596feaa64c4SDavid Gibson 25977701aeedSCédric Le Goater strncpy(args.name, function, sizeof(args.name) - 1); 2598feaa64c4SDavid Gibson 2599feaa64c4SDavid Gibson return kvm_vm_ioctl(kvm_state, KVM_PPC_RTAS_DEFINE_TOKEN, &args); 2600feaa64c4SDavid Gibson } 260112b1143bSDavid Gibson 260214b0d748SGreg Kurz int kvmppc_get_htab_fd(bool write, uint64_t index, Error **errp) 2603e68cb8b4SAlexey Kardashevskiy { 2604e68cb8b4SAlexey Kardashevskiy struct kvm_get_htab_fd s = { 2605e68cb8b4SAlexey Kardashevskiy .flags = write ? KVM_GET_HTAB_WRITE : 0, 260614b0d748SGreg Kurz .start_index = index, 2607e68cb8b4SAlexey Kardashevskiy }; 260882be8e73SGreg Kurz int ret; 2609e68cb8b4SAlexey Kardashevskiy 2610e68cb8b4SAlexey Kardashevskiy if (!cap_htab_fd) { 261114b0d748SGreg Kurz error_setg(errp, "KVM version doesn't support %s the HPT", 261214b0d748SGreg Kurz write ? "writing" : "reading"); 261382be8e73SGreg Kurz return -ENOTSUP; 2614e68cb8b4SAlexey Kardashevskiy } 2615e68cb8b4SAlexey Kardashevskiy 261682be8e73SGreg Kurz ret = kvm_vm_ioctl(kvm_state, KVM_PPC_GET_HTAB_FD, &s); 261782be8e73SGreg Kurz if (ret < 0) { 261814b0d748SGreg Kurz error_setg(errp, "Unable to open fd for %s HPT %s KVM: %s", 261914b0d748SGreg Kurz write ? "writing" : "reading", write ? "to" : "from", 262014b0d748SGreg Kurz strerror(errno)); 262182be8e73SGreg Kurz return -errno; 262282be8e73SGreg Kurz } 262382be8e73SGreg Kurz 262482be8e73SGreg Kurz return ret; 2625e68cb8b4SAlexey Kardashevskiy } 2626e68cb8b4SAlexey Kardashevskiy 2627e68cb8b4SAlexey Kardashevskiy int kvmppc_save_htab(QEMUFile *f, int fd, size_t bufsize, int64_t max_ns) 2628e68cb8b4SAlexey Kardashevskiy { 2629bc72ad67SAlex Bligh int64_t starttime = qemu_clock_get_ns(QEMU_CLOCK_REALTIME); 2630e68cb8b4SAlexey Kardashevskiy uint8_t buf[bufsize]; 2631e68cb8b4SAlexey Kardashevskiy ssize_t rc; 2632e68cb8b4SAlexey Kardashevskiy 2633e68cb8b4SAlexey Kardashevskiy do { 2634e68cb8b4SAlexey Kardashevskiy rc = read(fd, buf, bufsize); 2635e68cb8b4SAlexey Kardashevskiy if (rc < 0) { 2636e68cb8b4SAlexey Kardashevskiy fprintf(stderr, "Error reading data from KVM HTAB fd: %s\n", 2637e68cb8b4SAlexey Kardashevskiy strerror(errno)); 2638e68cb8b4SAlexey Kardashevskiy return rc; 2639e68cb8b4SAlexey Kardashevskiy } else if (rc) { 2640e094c4c1SCédric Le Goater uint8_t *buffer = buf; 2641e094c4c1SCédric Le Goater ssize_t n = rc; 2642e094c4c1SCédric Le Goater while (n) { 2643e094c4c1SCédric Le Goater struct kvm_get_htab_header *head = 2644e094c4c1SCédric Le Goater (struct kvm_get_htab_header *) buffer; 2645e094c4c1SCédric Le Goater size_t chunksize = sizeof(*head) + 2646e094c4c1SCédric Le Goater HASH_PTE_SIZE_64 * head->n_valid; 2647e094c4c1SCédric Le Goater 2648e094c4c1SCédric Le Goater qemu_put_be32(f, head->index); 2649e094c4c1SCédric Le Goater qemu_put_be16(f, head->n_valid); 2650e094c4c1SCédric Le Goater qemu_put_be16(f, head->n_invalid); 2651e094c4c1SCédric Le Goater qemu_put_buffer(f, (void *)(head + 1), 2652e094c4c1SCédric Le Goater HASH_PTE_SIZE_64 * head->n_valid); 2653e094c4c1SCédric Le Goater 2654e094c4c1SCédric Le Goater buffer += chunksize; 2655e094c4c1SCédric Le Goater n -= chunksize; 2656e094c4c1SCédric Le Goater } 2657e68cb8b4SAlexey Kardashevskiy } 2658e68cb8b4SAlexey Kardashevskiy } while ((rc != 0) 2659c995e942SDavid Gibson && ((max_ns < 0) || 2660c995e942SDavid Gibson ((qemu_clock_get_ns(QEMU_CLOCK_REALTIME) - starttime) < max_ns))); 2661e68cb8b4SAlexey Kardashevskiy 2662e68cb8b4SAlexey Kardashevskiy return (rc == 0) ? 1 : 0; 2663e68cb8b4SAlexey Kardashevskiy } 2664e68cb8b4SAlexey Kardashevskiy 2665e68cb8b4SAlexey Kardashevskiy int kvmppc_load_htab_chunk(QEMUFile *f, int fd, uint32_t index, 2666e68cb8b4SAlexey Kardashevskiy uint16_t n_valid, uint16_t n_invalid) 2667e68cb8b4SAlexey Kardashevskiy { 2668e68cb8b4SAlexey Kardashevskiy struct kvm_get_htab_header *buf; 2669e68cb8b4SAlexey Kardashevskiy size_t chunksize = sizeof(*buf) + n_valid * HASH_PTE_SIZE_64; 2670e68cb8b4SAlexey Kardashevskiy ssize_t rc; 2671e68cb8b4SAlexey Kardashevskiy 2672e68cb8b4SAlexey Kardashevskiy buf = alloca(chunksize); 2673e68cb8b4SAlexey Kardashevskiy buf->index = index; 2674e68cb8b4SAlexey Kardashevskiy buf->n_valid = n_valid; 2675e68cb8b4SAlexey Kardashevskiy buf->n_invalid = n_invalid; 2676e68cb8b4SAlexey Kardashevskiy 2677e68cb8b4SAlexey Kardashevskiy qemu_get_buffer(f, (void *)(buf + 1), HASH_PTE_SIZE_64 * n_valid); 2678e68cb8b4SAlexey Kardashevskiy 2679e68cb8b4SAlexey Kardashevskiy rc = write(fd, buf, chunksize); 2680e68cb8b4SAlexey Kardashevskiy if (rc < 0) { 2681e68cb8b4SAlexey Kardashevskiy fprintf(stderr, "Error writing KVM hash table: %s\n", 2682e68cb8b4SAlexey Kardashevskiy strerror(errno)); 2683e68cb8b4SAlexey Kardashevskiy return rc; 2684e68cb8b4SAlexey Kardashevskiy } 2685e68cb8b4SAlexey Kardashevskiy if (rc != chunksize) { 2686e68cb8b4SAlexey Kardashevskiy /* We should never get a short write on a single chunk */ 2687e68cb8b4SAlexey Kardashevskiy fprintf(stderr, "Short write, restoring KVM hash table\n"); 2688e68cb8b4SAlexey Kardashevskiy return -1; 2689e68cb8b4SAlexey Kardashevskiy } 2690e68cb8b4SAlexey Kardashevskiy return 0; 2691e68cb8b4SAlexey Kardashevskiy } 2692e68cb8b4SAlexey Kardashevskiy 269320d695a9SAndreas Färber bool kvm_arch_stop_on_emulation_error(CPUState *cpu) 26944513d923SGleb Natapov { 26954513d923SGleb Natapov return true; 26964513d923SGleb Natapov } 2697a1b87fe0SJan Kiszka 269882169660SScott Wood void kvm_arch_init_irq_routing(KVMState *s) 269982169660SScott Wood { 270082169660SScott Wood } 2701c65f9a07SGreg Kurz 27021ad9f0a4SDavid Gibson void kvmppc_read_hptes(ppc_hash_pte64_t *hptes, hwaddr ptex, int n) 27031ad9f0a4SDavid Gibson { 27041ad9f0a4SDavid Gibson int fd, rc; 27051ad9f0a4SDavid Gibson int i; 27067c43bca0SAneesh Kumar K.V 270714b0d748SGreg Kurz fd = kvmppc_get_htab_fd(false, ptex, &error_abort); 27081ad9f0a4SDavid Gibson 27091ad9f0a4SDavid Gibson i = 0; 27101ad9f0a4SDavid Gibson while (i < n) { 27111ad9f0a4SDavid Gibson struct kvm_get_htab_header *hdr; 27121ad9f0a4SDavid Gibson int m = n < HPTES_PER_GROUP ? n : HPTES_PER_GROUP; 27131ad9f0a4SDavid Gibson char buf[sizeof(*hdr) + m * HASH_PTE_SIZE_64]; 27141ad9f0a4SDavid Gibson 27151ad9f0a4SDavid Gibson rc = read(fd, buf, sizeof(buf)); 27161ad9f0a4SDavid Gibson if (rc < 0) { 27171ad9f0a4SDavid Gibson hw_error("kvmppc_read_hptes: Unable to read HPTEs"); 27181ad9f0a4SDavid Gibson } 27191ad9f0a4SDavid Gibson 27201ad9f0a4SDavid Gibson hdr = (struct kvm_get_htab_header *)buf; 27211ad9f0a4SDavid Gibson while ((i < n) && ((char *)hdr < (buf + rc))) { 2722a36593e1SAlexey Kardashevskiy int invalid = hdr->n_invalid, valid = hdr->n_valid; 27231ad9f0a4SDavid Gibson 27241ad9f0a4SDavid Gibson if (hdr->index != (ptex + i)) { 27251ad9f0a4SDavid Gibson hw_error("kvmppc_read_hptes: Unexpected HPTE index %"PRIu32 27261ad9f0a4SDavid Gibson " != (%"HWADDR_PRIu" + %d", hdr->index, ptex, i); 27271ad9f0a4SDavid Gibson } 27281ad9f0a4SDavid Gibson 2729a36593e1SAlexey Kardashevskiy if (n - i < valid) { 2730a36593e1SAlexey Kardashevskiy valid = n - i; 2731a36593e1SAlexey Kardashevskiy } 2732a36593e1SAlexey Kardashevskiy memcpy(hptes + i, hdr + 1, HASH_PTE_SIZE_64 * valid); 2733a36593e1SAlexey Kardashevskiy i += valid; 27341ad9f0a4SDavid Gibson 27351ad9f0a4SDavid Gibson if ((n - i) < invalid) { 27361ad9f0a4SDavid Gibson invalid = n - i; 27371ad9f0a4SDavid Gibson } 27381ad9f0a4SDavid Gibson memset(hptes + i, 0, invalid * HASH_PTE_SIZE_64); 2739a36593e1SAlexey Kardashevskiy i += invalid; 27401ad9f0a4SDavid Gibson 27411ad9f0a4SDavid Gibson hdr = (struct kvm_get_htab_header *) 27421ad9f0a4SDavid Gibson ((char *)(hdr + 1) + HASH_PTE_SIZE_64 * hdr->n_valid); 27431ad9f0a4SDavid Gibson } 27441ad9f0a4SDavid Gibson } 27451ad9f0a4SDavid Gibson 27461ad9f0a4SDavid Gibson close(fd); 27471ad9f0a4SDavid Gibson } 27481ad9f0a4SDavid Gibson 27491ad9f0a4SDavid Gibson void kvmppc_write_hpte(hwaddr ptex, uint64_t pte0, uint64_t pte1) 27507c43bca0SAneesh Kumar K.V { 27511ad9f0a4SDavid Gibson int fd, rc; 27521ad9f0a4SDavid Gibson struct { 27531ad9f0a4SDavid Gibson struct kvm_get_htab_header hdr; 27541ad9f0a4SDavid Gibson uint64_t pte0; 27551ad9f0a4SDavid Gibson uint64_t pte1; 27561ad9f0a4SDavid Gibson } buf; 2757c1385933SAneesh Kumar K.V 275814b0d748SGreg Kurz fd = kvmppc_get_htab_fd(true, 0 /* Ignored */, &error_abort); 2759c1385933SAneesh Kumar K.V 27601ad9f0a4SDavid Gibson buf.hdr.n_valid = 1; 27611ad9f0a4SDavid Gibson buf.hdr.n_invalid = 0; 27621ad9f0a4SDavid Gibson buf.hdr.index = ptex; 27631ad9f0a4SDavid Gibson buf.pte0 = cpu_to_be64(pte0); 27641ad9f0a4SDavid Gibson buf.pte1 = cpu_to_be64(pte1); 27651ad9f0a4SDavid Gibson 27661ad9f0a4SDavid Gibson rc = write(fd, &buf, sizeof(buf)); 27671ad9f0a4SDavid Gibson if (rc != sizeof(buf)) { 27681ad9f0a4SDavid Gibson hw_error("kvmppc_write_hpte: Unable to update KVM HPT"); 2769c1385933SAneesh Kumar K.V } 27701ad9f0a4SDavid Gibson close(fd); 2771c1385933SAneesh Kumar K.V } 27729e03a040SFrank Blaschka 27739e03a040SFrank Blaschka int kvm_arch_fixup_msi_route(struct kvm_irq_routing_entry *route, 2774dc9f06caSPavel Fedin uint64_t address, uint32_t data, PCIDevice *dev) 27759e03a040SFrank Blaschka { 27769e03a040SFrank Blaschka return 0; 27779e03a040SFrank Blaschka } 27781850b6b7SEric Auger 277938d87493SPeter Xu int kvm_arch_add_msi_route_post(struct kvm_irq_routing_entry *route, 278038d87493SPeter Xu int vector, PCIDevice *dev) 278138d87493SPeter Xu { 278238d87493SPeter Xu return 0; 278338d87493SPeter Xu } 278438d87493SPeter Xu 278538d87493SPeter Xu int kvm_arch_release_virq_post(int virq) 278638d87493SPeter Xu { 278738d87493SPeter Xu return 0; 278838d87493SPeter Xu } 278938d87493SPeter Xu 27901850b6b7SEric Auger int kvm_arch_msi_data_to_gsi(uint32_t data) 27911850b6b7SEric Auger { 27921850b6b7SEric Auger return data & 0xffff; 27931850b6b7SEric Auger } 27944d9392beSThomas Huth 27954d9392beSThomas Huth int kvmppc_enable_hwrng(void) 27964d9392beSThomas Huth { 27974d9392beSThomas Huth if (!kvm_enabled() || !kvm_check_extension(kvm_state, KVM_CAP_PPC_HWRNG)) { 27984d9392beSThomas Huth return -1; 27994d9392beSThomas Huth } 28004d9392beSThomas Huth 28014d9392beSThomas Huth return kvmppc_enable_hcall(kvm_state, H_RANDOM); 28024d9392beSThomas Huth } 280330f4b05bSDavid Gibson 280430f4b05bSDavid Gibson void kvmppc_check_papr_resize_hpt(Error **errp) 280530f4b05bSDavid Gibson { 280630f4b05bSDavid Gibson if (!kvm_enabled()) { 2807b55d295eSDavid Gibson return; /* No KVM, we're good */ 2808b55d295eSDavid Gibson } 2809b55d295eSDavid Gibson 2810b55d295eSDavid Gibson if (cap_resize_hpt) { 2811b55d295eSDavid Gibson return; /* Kernel has explicit support, we're good */ 2812b55d295eSDavid Gibson } 2813b55d295eSDavid Gibson 2814b55d295eSDavid Gibson /* Otherwise fallback on looking for PR KVM */ 2815b55d295eSDavid Gibson if (kvmppc_is_pr(kvm_state)) { 281630f4b05bSDavid Gibson return; 281730f4b05bSDavid Gibson } 281830f4b05bSDavid Gibson 281930f4b05bSDavid Gibson error_setg(errp, 282030f4b05bSDavid Gibson "Hash page table resizing not available with this KVM version"); 282130f4b05bSDavid Gibson } 2822b55d295eSDavid Gibson 2823b55d295eSDavid Gibson int kvmppc_resize_hpt_prepare(PowerPCCPU *cpu, target_ulong flags, int shift) 2824b55d295eSDavid Gibson { 2825b55d295eSDavid Gibson CPUState *cs = CPU(cpu); 2826b55d295eSDavid Gibson struct kvm_ppc_resize_hpt rhpt = { 2827b55d295eSDavid Gibson .flags = flags, 2828b55d295eSDavid Gibson .shift = shift, 2829b55d295eSDavid Gibson }; 2830b55d295eSDavid Gibson 2831b55d295eSDavid Gibson if (!cap_resize_hpt) { 2832b55d295eSDavid Gibson return -ENOSYS; 2833b55d295eSDavid Gibson } 2834b55d295eSDavid Gibson 2835b55d295eSDavid Gibson return kvm_vm_ioctl(cs->kvm_state, KVM_PPC_RESIZE_HPT_PREPARE, &rhpt); 2836b55d295eSDavid Gibson } 2837b55d295eSDavid Gibson 2838b55d295eSDavid Gibson int kvmppc_resize_hpt_commit(PowerPCCPU *cpu, target_ulong flags, int shift) 2839b55d295eSDavid Gibson { 2840b55d295eSDavid Gibson CPUState *cs = CPU(cpu); 2841b55d295eSDavid Gibson struct kvm_ppc_resize_hpt rhpt = { 2842b55d295eSDavid Gibson .flags = flags, 2843b55d295eSDavid Gibson .shift = shift, 2844b55d295eSDavid Gibson }; 2845b55d295eSDavid Gibson 2846b55d295eSDavid Gibson if (!cap_resize_hpt) { 2847b55d295eSDavid Gibson return -ENOSYS; 2848b55d295eSDavid Gibson } 2849b55d295eSDavid Gibson 2850b55d295eSDavid Gibson return kvm_vm_ioctl(cs->kvm_state, KVM_PPC_RESIZE_HPT_COMMIT, &rhpt); 2851b55d295eSDavid Gibson } 2852b55d295eSDavid Gibson 2853c363a37aSDaniel Henrique Barboza /* 2854c363a37aSDaniel Henrique Barboza * This is a helper function to detect a post migration scenario 2855c363a37aSDaniel Henrique Barboza * in which a guest, running as KVM-HV, freezes in cpu_post_load because 2856c363a37aSDaniel Henrique Barboza * the guest kernel can't handle a PVR value other than the actual host 2857c363a37aSDaniel Henrique Barboza * PVR in KVM_SET_SREGS, even if pvr_match() returns true. 2858c363a37aSDaniel Henrique Barboza * 2859c363a37aSDaniel Henrique Barboza * If we don't have cap_ppc_pvr_compat and we're not running in PR 2860c363a37aSDaniel Henrique Barboza * (so, we're HV), return true. The workaround itself is done in 2861c363a37aSDaniel Henrique Barboza * cpu_post_load. 2862c363a37aSDaniel Henrique Barboza * 2863c363a37aSDaniel Henrique Barboza * The order here is important: we'll only check for KVM PR as a 2864c363a37aSDaniel Henrique Barboza * fallback if the guest kernel can't handle the situation itself. 2865c363a37aSDaniel Henrique Barboza * We need to avoid as much as possible querying the running KVM type 2866c363a37aSDaniel Henrique Barboza * in QEMU level. 2867c363a37aSDaniel Henrique Barboza */ 2868c363a37aSDaniel Henrique Barboza bool kvmppc_pvr_workaround_required(PowerPCCPU *cpu) 2869c363a37aSDaniel Henrique Barboza { 2870c363a37aSDaniel Henrique Barboza CPUState *cs = CPU(cpu); 2871c363a37aSDaniel Henrique Barboza 2872c363a37aSDaniel Henrique Barboza if (!kvm_enabled()) { 2873c363a37aSDaniel Henrique Barboza return false; 2874c363a37aSDaniel Henrique Barboza } 2875c363a37aSDaniel Henrique Barboza 2876c363a37aSDaniel Henrique Barboza if (cap_ppc_pvr_compat) { 2877c363a37aSDaniel Henrique Barboza return false; 2878c363a37aSDaniel Henrique Barboza } 2879c363a37aSDaniel Henrique Barboza 2880c363a37aSDaniel Henrique Barboza return !kvmppc_is_pr(cs->kvm_state); 2881c363a37aSDaniel Henrique Barboza } 2882a84f7179SNikunj A Dadhania 2883a84f7179SNikunj A Dadhania void kvmppc_set_reg_ppc_online(PowerPCCPU *cpu, unsigned int online) 2884a84f7179SNikunj A Dadhania { 2885a84f7179SNikunj A Dadhania CPUState *cs = CPU(cpu); 2886a84f7179SNikunj A Dadhania 2887a84f7179SNikunj A Dadhania if (kvm_enabled()) { 2888a84f7179SNikunj A Dadhania kvm_set_one_reg(cs, KVM_REG_PPC_ONLINE, &online); 2889a84f7179SNikunj A Dadhania } 2890a84f7179SNikunj A Dadhania } 28919723295aSGreg Kurz 28929723295aSGreg Kurz void kvmppc_set_reg_tb_offset(PowerPCCPU *cpu, int64_t tb_offset) 28939723295aSGreg Kurz { 28949723295aSGreg Kurz CPUState *cs = CPU(cpu); 28959723295aSGreg Kurz 28969723295aSGreg Kurz if (kvm_enabled()) { 28979723295aSGreg Kurz kvm_set_one_reg(cs, KVM_REG_PPC_TB_OFFSET, &tb_offset); 28989723295aSGreg Kurz } 28999723295aSGreg Kurz } 2900905db916SBharata B Rao 2901905db916SBharata B Rao /* 2902905db916SBharata B Rao * Don't set error if KVM_PPC_SVM_OFF ioctl is invoked on kernels 2903905db916SBharata B Rao * that don't support this ioctl. 2904905db916SBharata B Rao */ 2905905db916SBharata B Rao void kvmppc_svm_off(Error **errp) 2906905db916SBharata B Rao { 2907905db916SBharata B Rao int rc; 2908905db916SBharata B Rao 29090b731978SBharata B Rao if (!kvm_enabled()) { 29100b731978SBharata B Rao return; 29110b731978SBharata B Rao } 29120b731978SBharata B Rao 29134f7f5893SPhilippe Mathieu-Daudé rc = kvm_vm_ioctl(KVM_STATE(current_accel()), KVM_PPC_SVM_OFF); 2914905db916SBharata B Rao if (rc && rc != -ENOTTY) { 2915905db916SBharata B Rao error_setg_errno(errp, -rc, "KVM_PPC_SVM_OFF ioctl failed"); 2916905db916SBharata B Rao } 2917905db916SBharata B Rao } 2918