163e158a0SMatt Evans /* 263e158a0SMatt Evans * PPC64 (SPAPR) platform support 363e158a0SMatt Evans * 463e158a0SMatt Evans * Copyright 2011 Matt Evans <matt@ozlabs.org>, IBM Corporation. 563e158a0SMatt Evans * 6d391177aSMatt Evans * Portions of FDT setup borrowed from QEMU, copyright 2010 David Gibson, IBM 7d391177aSMatt Evans * Corporation. 8d391177aSMatt Evans * 963e158a0SMatt Evans * This program is free software; you can redistribute it and/or modify it 1063e158a0SMatt Evans * under the terms of the GNU General Public License version 2 as published 1163e158a0SMatt Evans * by the Free Software Foundation. 1263e158a0SMatt Evans */ 1363e158a0SMatt Evans 14*1299331aSWill Deacon #include "kvm/fdt.h" 1563e158a0SMatt Evans #include "kvm/kvm.h" 1663e158a0SMatt Evans #include "kvm/util.h" 17d391177aSMatt Evans #include "cpu_info.h" 1863e158a0SMatt Evans 19be76823fSMatt Evans #include "spapr.h" 207295767dSMatt Evans #include "spapr_hvcons.h" 21c481cfd5SMatt Evans #include "spapr_pci.h" 22be76823fSMatt Evans 2363e158a0SMatt Evans #include <linux/kvm.h> 2463e158a0SMatt Evans 2563e158a0SMatt Evans #include <sys/types.h> 2663e158a0SMatt Evans #include <sys/ioctl.h> 2763e158a0SMatt Evans #include <sys/mman.h> 2863e158a0SMatt Evans #include <stdbool.h> 2963e158a0SMatt Evans #include <stdlib.h> 3063e158a0SMatt Evans #include <string.h> 3163e158a0SMatt Evans #include <unistd.h> 3263e158a0SMatt Evans #include <stdio.h> 3363e158a0SMatt Evans #include <fcntl.h> 3463e158a0SMatt Evans #include <asm/unistd.h> 3563e158a0SMatt Evans #include <errno.h> 3663e158a0SMatt Evans 3763e158a0SMatt Evans #include <linux/byteorder.h> 38d391177aSMatt Evans 39d391177aSMatt Evans #define HPT_ORDER 24 4063e158a0SMatt Evans 4163e158a0SMatt Evans #define HUGETLBFS_PATH "/var/lib/hugetlbfs/global/pagesize-16MB/" 4263e158a0SMatt Evans 43f17e5a37SMatt Evans #define PHANDLE_XICP 0x00001111 44f17e5a37SMatt Evans 4563e158a0SMatt Evans static char kern_cmdline[2048]; 4663e158a0SMatt Evans 4763e158a0SMatt Evans struct kvm_ext kvm_req_ext[] = { 48f17e5a37SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_PPC_UNSET_IRQ) }, 49f17e5a37SMatt Evans { DEFINE_KVM_EXT(KVM_CAP_PPC_IRQ_LEVEL) }, 5063e158a0SMatt Evans { 0, 0 } 5163e158a0SMatt Evans }; 5263e158a0SMatt Evans 53d391177aSMatt Evans static uint32_t mfpvr(void) 54d391177aSMatt Evans { 55d391177aSMatt Evans uint32_t r; 56d391177aSMatt Evans asm volatile ("mfpvr %0" : "=r"(r)); 57d391177aSMatt Evans return r; 58d391177aSMatt Evans } 59d391177aSMatt Evans 6063e158a0SMatt Evans bool kvm__arch_cpu_supports_vm(void) 6163e158a0SMatt Evans { 6263e158a0SMatt Evans return true; 6363e158a0SMatt Evans } 6463e158a0SMatt Evans 6563e158a0SMatt Evans void kvm__init_ram(struct kvm *kvm) 6663e158a0SMatt Evans { 6763e158a0SMatt Evans u64 phys_start, phys_size; 6863e158a0SMatt Evans void *host_mem; 6963e158a0SMatt Evans 7063e158a0SMatt Evans phys_start = 0; 7163e158a0SMatt Evans phys_size = kvm->ram_size; 7263e158a0SMatt Evans host_mem = kvm->ram_start; 7363e158a0SMatt Evans 7463e158a0SMatt Evans /* 7563e158a0SMatt Evans * We put MMIO at PPC_MMIO_START, high up. Make sure that this doesn't 7663e158a0SMatt Evans * crash into the end of RAM -- on PPC64 at least, this is so high 7763e158a0SMatt Evans * (63TB!) that this is unlikely. 7863e158a0SMatt Evans */ 7963e158a0SMatt Evans if (phys_size >= PPC_MMIO_START) 8063e158a0SMatt Evans die("Too much memory (%lld, what a nice problem): " 8163e158a0SMatt Evans "overlaps MMIO!\n", 8263e158a0SMatt Evans phys_size); 8363e158a0SMatt Evans 8463e158a0SMatt Evans kvm__register_mem(kvm, phys_start, phys_size, host_mem); 8563e158a0SMatt Evans } 8663e158a0SMatt Evans 8763e158a0SMatt Evans void kvm__arch_set_cmdline(char *cmdline, bool video) 8863e158a0SMatt Evans { 8963e158a0SMatt Evans /* We don't need anything unusual in here. */ 9063e158a0SMatt Evans } 9163e158a0SMatt Evans 9263e158a0SMatt Evans /* Architecture-specific KVM init */ 937eff9f49SWanlong Gao void kvm__arch_init(struct kvm *kvm, const char *hugetlbfs_path, u64 ram_size) 9463e158a0SMatt Evans { 9563e158a0SMatt Evans int cap_ppc_rma; 96df129a0aSMatt Evans unsigned long hpt; 9763e158a0SMatt Evans 9863e158a0SMatt Evans kvm->ram_size = ram_size; 9963e158a0SMatt Evans 1008cd50b93SMichael Ellerman /* Map "default" hugetblfs path to the standard 16M mount point */ 1018cd50b93SMichael Ellerman if (hugetlbfs_path && !strcmp(hugetlbfs_path, "default")) 10263e158a0SMatt Evans hugetlbfs_path = HUGETLBFS_PATH; 1038cd50b93SMichael Ellerman 1043ebd8e0bSMichael Ellerman kvm->ram_start = mmap_anon_or_hugetlbfs(kvm, hugetlbfs_path, kvm->ram_size); 1058cd50b93SMichael Ellerman 10663e158a0SMatt Evans if (kvm->ram_start == MAP_FAILED) 10763e158a0SMatt Evans die("Couldn't map %lld bytes for RAM (%d)\n", 10863e158a0SMatt Evans kvm->ram_size, errno); 10963e158a0SMatt Evans 11063e158a0SMatt Evans /* FDT goes at top of memory, RTAS just below */ 11142ac24f9SSasha Levin kvm->arch.fdt_gra = kvm->ram_size - FDT_MAX_SIZE; 11263e158a0SMatt Evans /* FIXME: Not all PPC systems have RTAS */ 11342ac24f9SSasha Levin kvm->arch.rtas_gra = kvm->arch.fdt_gra - RTAS_MAX_SIZE; 11463e158a0SMatt Evans madvise(kvm->ram_start, kvm->ram_size, MADV_MERGEABLE); 11563e158a0SMatt Evans 116df129a0aSMatt Evans /* FIXME: SPAPR-PR specific; allocate a guest HPT. */ 117df129a0aSMatt Evans if (posix_memalign((void **)&hpt, (1<<HPT_ORDER), (1<<HPT_ORDER))) 118df129a0aSMatt Evans die("Can't allocate %d bytes for HPT\n", (1<<HPT_ORDER)); 119df129a0aSMatt Evans 12042ac24f9SSasha Levin kvm->arch.sdr1 = ((hpt + 0x3ffffULL) & ~0x3ffffULL) | (HPT_ORDER-18); 121df129a0aSMatt Evans 12242ac24f9SSasha Levin kvm->arch.pvr = mfpvr(); 123d391177aSMatt Evans 12463e158a0SMatt Evans /* FIXME: This is book3s-specific */ 12563e158a0SMatt Evans cap_ppc_rma = ioctl(kvm->sys_fd, KVM_CHECK_EXTENSION, KVM_CAP_PPC_RMA); 12663e158a0SMatt Evans if (cap_ppc_rma == 2) 12763e158a0SMatt Evans die("Need contiguous RMA allocation on this hardware, " 12863e158a0SMatt Evans "which is not yet supported."); 129be76823fSMatt Evans 130be76823fSMatt Evans /* Do these before FDT setup, IRQ setup, etc. */ 131be76823fSMatt Evans /* FIXME: SPAPR-specific */ 132be76823fSMatt Evans hypercall_init(); 133be76823fSMatt Evans register_core_rtas(); 1347295767dSMatt Evans /* Now that hypercalls are initialised, register a couple for the console: */ 1357295767dSMatt Evans spapr_hvcons_init(); 136c481cfd5SMatt Evans spapr_create_phb(kvm, "pci", SPAPR_PCI_BUID, 137c481cfd5SMatt Evans SPAPR_PCI_MEM_WIN_ADDR, 138c481cfd5SMatt Evans SPAPR_PCI_MEM_WIN_SIZE, 139c481cfd5SMatt Evans SPAPR_PCI_IO_WIN_ADDR, 140c481cfd5SMatt Evans SPAPR_PCI_IO_WIN_SIZE); 14163e158a0SMatt Evans } 14263e158a0SMatt Evans 143e56e2de7SLai Jiangshan void kvm__arch_delete_ram(struct kvm *kvm) 144e56e2de7SLai Jiangshan { 145e56e2de7SLai Jiangshan munmap(kvm->ram_start, kvm->ram_size); 146e56e2de7SLai Jiangshan } 147e56e2de7SLai Jiangshan 14863e158a0SMatt Evans void kvm__irq_trigger(struct kvm *kvm, int irq) 14963e158a0SMatt Evans { 15063e158a0SMatt Evans kvm__irq_line(kvm, irq, 1); 15163e158a0SMatt Evans kvm__irq_line(kvm, irq, 0); 15263e158a0SMatt Evans } 15363e158a0SMatt Evans 1547295767dSMatt Evans void kvm__arch_periodic_poll(struct kvm *kvm) 1557295767dSMatt Evans { 1567295767dSMatt Evans /* FIXME: Should register callbacks to platform-specific polls */ 1577295767dSMatt Evans spapr_hvcons_poll(kvm); 1587295767dSMatt Evans } 1597295767dSMatt Evans 16063e158a0SMatt Evans int load_flat_binary(struct kvm *kvm, int fd_kernel, int fd_initrd, const char *kernel_cmdline) 16163e158a0SMatt Evans { 16263e158a0SMatt Evans void *p; 16363e158a0SMatt Evans void *k_start; 16463e158a0SMatt Evans void *i_start; 16563e158a0SMatt Evans int nr; 16663e158a0SMatt Evans 16763e158a0SMatt Evans if (lseek(fd_kernel, 0, SEEK_SET) < 0) 16863e158a0SMatt Evans die_perror("lseek"); 16963e158a0SMatt Evans 17063e158a0SMatt Evans p = k_start = guest_flat_to_host(kvm, KERNEL_LOAD_ADDR); 17163e158a0SMatt Evans 17263e158a0SMatt Evans while ((nr = read(fd_kernel, p, 65536)) > 0) 17363e158a0SMatt Evans p += nr; 17463e158a0SMatt Evans 17563e158a0SMatt Evans pr_info("Loaded kernel to 0x%x (%ld bytes)", KERNEL_LOAD_ADDR, p-k_start); 17663e158a0SMatt Evans 17763e158a0SMatt Evans if (fd_initrd != -1) { 17863e158a0SMatt Evans if (lseek(fd_initrd, 0, SEEK_SET) < 0) 17963e158a0SMatt Evans die_perror("lseek"); 18063e158a0SMatt Evans 18163e158a0SMatt Evans if (p-k_start > INITRD_LOAD_ADDR) 18263e158a0SMatt Evans die("Kernel overlaps initrd!"); 18363e158a0SMatt Evans 18463e158a0SMatt Evans /* Round up kernel size to 8byte alignment, and load initrd right after. */ 18563e158a0SMatt Evans i_start = p = guest_flat_to_host(kvm, INITRD_LOAD_ADDR); 18663e158a0SMatt Evans 18763e158a0SMatt Evans while (((nr = read(fd_initrd, p, 65536)) > 0) && 18863e158a0SMatt Evans p < (kvm->ram_start + kvm->ram_size)) 18963e158a0SMatt Evans p += nr; 19063e158a0SMatt Evans 19163e158a0SMatt Evans if (p >= (kvm->ram_start + kvm->ram_size)) 19263e158a0SMatt Evans die("initrd too big to contain in guest RAM.\n"); 19363e158a0SMatt Evans 19463e158a0SMatt Evans pr_info("Loaded initrd to 0x%x (%ld bytes)", 19563e158a0SMatt Evans INITRD_LOAD_ADDR, p-i_start); 19642ac24f9SSasha Levin kvm->arch.initrd_gra = INITRD_LOAD_ADDR; 19742ac24f9SSasha Levin kvm->arch.initrd_size = p-i_start; 19863e158a0SMatt Evans } else { 19942ac24f9SSasha Levin kvm->arch.initrd_size = 0; 20063e158a0SMatt Evans } 20163e158a0SMatt Evans strncpy(kern_cmdline, kernel_cmdline, 2048); 20263e158a0SMatt Evans kern_cmdline[2047] = '\0'; 20363e158a0SMatt Evans 20463e158a0SMatt Evans return true; 20563e158a0SMatt Evans } 20663e158a0SMatt Evans 20763e158a0SMatt Evans bool load_bzimage(struct kvm *kvm, int fd_kernel, 20863e158a0SMatt Evans int fd_initrd, const char *kernel_cmdline, u16 vidmode) 20963e158a0SMatt Evans { 21063e158a0SMatt Evans /* We don't support bzImages. */ 21163e158a0SMatt Evans return false; 21263e158a0SMatt Evans } 21363e158a0SMatt Evans 214de494ec5SMichael Ellerman struct fdt_prop { 215de494ec5SMichael Ellerman void *value; 216de494ec5SMichael Ellerman int size; 217de494ec5SMichael Ellerman }; 218de494ec5SMichael Ellerman 219de494ec5SMichael Ellerman static void generate_segment_page_sizes(struct kvm_ppc_smmu_info *info, struct fdt_prop *prop) 220de494ec5SMichael Ellerman { 221de494ec5SMichael Ellerman struct kvm_ppc_one_seg_page_size *sps; 222de494ec5SMichael Ellerman int i, j, size; 223de494ec5SMichael Ellerman u32 *p; 224de494ec5SMichael Ellerman 225de494ec5SMichael Ellerman for (size = 0, i = 0; i < KVM_PPC_PAGE_SIZES_MAX_SZ; i++) { 226de494ec5SMichael Ellerman sps = &info->sps[i]; 227de494ec5SMichael Ellerman 228de494ec5SMichael Ellerman if (sps->page_shift == 0) 229de494ec5SMichael Ellerman break; 230de494ec5SMichael Ellerman 231de494ec5SMichael Ellerman /* page shift, slb enc & count */ 232de494ec5SMichael Ellerman size += 3; 233de494ec5SMichael Ellerman 234de494ec5SMichael Ellerman for (j = 0; j < KVM_PPC_PAGE_SIZES_MAX_SZ; j++) { 235de494ec5SMichael Ellerman if (info->sps[i].enc[j].page_shift == 0) 236de494ec5SMichael Ellerman break; 237de494ec5SMichael Ellerman 238de494ec5SMichael Ellerman /* page shift & pte enc */ 239de494ec5SMichael Ellerman size += 2; 240de494ec5SMichael Ellerman } 241de494ec5SMichael Ellerman } 242de494ec5SMichael Ellerman 243de494ec5SMichael Ellerman if (!size) { 244de494ec5SMichael Ellerman prop->value = NULL; 245de494ec5SMichael Ellerman prop->size = 0; 246de494ec5SMichael Ellerman return; 247de494ec5SMichael Ellerman } 248de494ec5SMichael Ellerman 249de494ec5SMichael Ellerman /* Convert size to bytes */ 250de494ec5SMichael Ellerman prop->size = size * sizeof(u32); 251de494ec5SMichael Ellerman 252de494ec5SMichael Ellerman prop->value = malloc(prop->size); 253de494ec5SMichael Ellerman if (!prop->value) 254de494ec5SMichael Ellerman die_perror("malloc failed"); 255de494ec5SMichael Ellerman 256de494ec5SMichael Ellerman p = (u32 *)prop->value; 257de494ec5SMichael Ellerman for (i = 0; i < KVM_PPC_PAGE_SIZES_MAX_SZ; i++) { 258de494ec5SMichael Ellerman sps = &info->sps[i]; 259de494ec5SMichael Ellerman 260de494ec5SMichael Ellerman if (sps->page_shift == 0) 261de494ec5SMichael Ellerman break; 262de494ec5SMichael Ellerman 263de494ec5SMichael Ellerman *p++ = sps->page_shift; 264de494ec5SMichael Ellerman *p++ = sps->slb_enc; 265de494ec5SMichael Ellerman 266de494ec5SMichael Ellerman for (j = 0; j < KVM_PPC_PAGE_SIZES_MAX_SZ; j++) 267de494ec5SMichael Ellerman if (!info->sps[i].enc[j].page_shift) 268de494ec5SMichael Ellerman break; 269de494ec5SMichael Ellerman 270de494ec5SMichael Ellerman *p++ = j; /* count of enc */ 271de494ec5SMichael Ellerman 272de494ec5SMichael Ellerman for (j = 0; j < KVM_PPC_PAGE_SIZES_MAX_SZ; j++) { 273de494ec5SMichael Ellerman if (!info->sps[i].enc[j].page_shift) 274de494ec5SMichael Ellerman break; 275de494ec5SMichael Ellerman 276de494ec5SMichael Ellerman *p++ = info->sps[i].enc[j].page_shift; 277de494ec5SMichael Ellerman *p++ = info->sps[i].enc[j].pte_enc; 278de494ec5SMichael Ellerman } 279de494ec5SMichael Ellerman } 280de494ec5SMichael Ellerman } 281de494ec5SMichael Ellerman 282d391177aSMatt Evans #define SMT_THREADS 4 283d391177aSMatt Evans 284d391177aSMatt Evans /* 285d391177aSMatt Evans * Set up the FDT for the kernel: This function is currently fairly SPAPR-heavy, 286d391177aSMatt Evans * and whilst most PPC targets will require CPU/memory nodes, others like RTAS 287d391177aSMatt Evans * should eventually be added separately. 288d391177aSMatt Evans */ 289fc935584SMichael Ellerman static int setup_fdt(struct kvm *kvm) 29063e158a0SMatt Evans { 291d391177aSMatt Evans uint64_t mem_reg_property[] = { 0, cpu_to_be64(kvm->ram_size) }; 292d391177aSMatt Evans int smp_cpus = kvm->nrcpus; 293f17e5a37SMatt Evans uint32_t int_server_ranges_prop[] = {0, cpu_to_be32(smp_cpus)}; 294d391177aSMatt Evans char hypertas_prop_kvm[] = "hcall-pft\0hcall-term\0" 295d391177aSMatt Evans "hcall-dabr\0hcall-interrupt\0hcall-tce\0hcall-vio\0" 296d391177aSMatt Evans "hcall-splpar\0hcall-bulk"; 297d391177aSMatt Evans int i, j; 298d391177aSMatt Evans char cpu_name[30]; 299d391177aSMatt Evans u8 staging_fdt[FDT_MAX_SIZE]; 3004a75c603SMichael Ellerman struct cpu_info *cpu_info = find_cpu_info(kvm); 301de494ec5SMichael Ellerman struct fdt_prop segment_page_sizes; 30238baf777SMichael Ellerman u32 segment_sizes_1T[] = {0x1c, 0x28, 0xffffffff, 0xffffffff}; 30363e158a0SMatt Evans 30442ac24f9SSasha Levin /* Generate an appropriate DT at kvm->arch.fdt_gra */ 30542ac24f9SSasha Levin void *fdt_dest = guest_flat_to_host(kvm, kvm->arch.fdt_gra); 306d391177aSMatt Evans void *fdt = staging_fdt; 307d391177aSMatt Evans 308d391177aSMatt Evans _FDT(fdt_create(fdt, FDT_MAX_SIZE)); 309d391177aSMatt Evans _FDT(fdt_finish_reservemap(fdt)); 310d391177aSMatt Evans 311d391177aSMatt Evans _FDT(fdt_begin_node(fdt, "")); 312d391177aSMatt Evans 313d391177aSMatt Evans _FDT(fdt_property_string(fdt, "device_type", "chrp")); 314d391177aSMatt Evans _FDT(fdt_property_string(fdt, "model", "IBM pSeries (kvmtool)")); 315d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "#address-cells", 0x2)); 316d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "#size-cells", 0x2)); 317d391177aSMatt Evans 318be76823fSMatt Evans /* RTAS */ 319be76823fSMatt Evans _FDT(fdt_begin_node(fdt, "rtas")); 320be76823fSMatt Evans /* This is what the kernel uses to switch 'We're an LPAR'! */ 321be76823fSMatt Evans _FDT(fdt_property(fdt, "ibm,hypertas-functions", hypertas_prop_kvm, 322be76823fSMatt Evans sizeof(hypertas_prop_kvm))); 32342ac24f9SSasha Levin _FDT(fdt_property_cell(fdt, "linux,rtas-base", kvm->arch.rtas_gra)); 32442ac24f9SSasha Levin _FDT(fdt_property_cell(fdt, "linux,rtas-entry", kvm->arch.rtas_gra)); 32542ac24f9SSasha Levin _FDT(fdt_property_cell(fdt, "rtas-size", kvm->arch.rtas_size)); 326be76823fSMatt Evans /* Now add properties for all RTAS tokens: */ 327be76823fSMatt Evans if (spapr_rtas_fdt_setup(kvm, fdt)) 328be76823fSMatt Evans die("Couldn't create RTAS FDT properties\n"); 329be76823fSMatt Evans 330be76823fSMatt Evans _FDT(fdt_end_node(fdt)); 331be76823fSMatt Evans 332d391177aSMatt Evans /* /chosen */ 333d391177aSMatt Evans _FDT(fdt_begin_node(fdt, "chosen")); 334d391177aSMatt Evans /* cmdline */ 335d391177aSMatt Evans _FDT(fdt_property_string(fdt, "bootargs", kern_cmdline)); 336d391177aSMatt Evans /* Initrd */ 33742ac24f9SSasha Levin if (kvm->arch.initrd_size != 0) { 33842ac24f9SSasha Levin uint32_t ird_st_prop = cpu_to_be32(kvm->arch.initrd_gra); 33942ac24f9SSasha Levin uint32_t ird_end_prop = cpu_to_be32(kvm->arch.initrd_gra + 34042ac24f9SSasha Levin kvm->arch.initrd_size); 341d391177aSMatt Evans _FDT(fdt_property(fdt, "linux,initrd-start", 342d391177aSMatt Evans &ird_st_prop, sizeof(ird_st_prop))); 343d391177aSMatt Evans _FDT(fdt_property(fdt, "linux,initrd-end", 344d391177aSMatt Evans &ird_end_prop, sizeof(ird_end_prop))); 345d391177aSMatt Evans } 3467295767dSMatt Evans 3477295767dSMatt Evans /* 3487295767dSMatt Evans * stdout-path: This is assuming we're using the HV console. Also, the 3497295767dSMatt Evans * address is hardwired until we do a VIO bus. 3507295767dSMatt Evans */ 3517295767dSMatt Evans _FDT(fdt_property_string(fdt, "linux,stdout-path", 3527295767dSMatt Evans "/vdevice/vty@30000000")); 353d391177aSMatt Evans _FDT(fdt_end_node(fdt)); 354d391177aSMatt Evans 355d391177aSMatt Evans /* 356d391177aSMatt Evans * Memory: We don't alloc. a separate RMA yet. If we ever need to 357d391177aSMatt Evans * (CAP_PPC_RMA == 2) then have one memory node for 0->RMAsize, and 358d391177aSMatt Evans * another RMAsize->endOfMem. 359d391177aSMatt Evans */ 360d391177aSMatt Evans _FDT(fdt_begin_node(fdt, "memory@0")); 361d391177aSMatt Evans _FDT(fdt_property_string(fdt, "device_type", "memory")); 362d391177aSMatt Evans _FDT(fdt_property(fdt, "reg", mem_reg_property, 363d391177aSMatt Evans sizeof(mem_reg_property))); 364d391177aSMatt Evans _FDT(fdt_end_node(fdt)); 365d391177aSMatt Evans 366de494ec5SMichael Ellerman generate_segment_page_sizes(&cpu_info->mmu_info, &segment_page_sizes); 367de494ec5SMichael Ellerman 368d391177aSMatt Evans /* CPUs */ 369d391177aSMatt Evans _FDT(fdt_begin_node(fdt, "cpus")); 370d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "#address-cells", 0x1)); 371d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "#size-cells", 0x0)); 372d391177aSMatt Evans 373d391177aSMatt Evans for (i = 0; i < smp_cpus; i += SMT_THREADS) { 374d391177aSMatt Evans int32_t pft_size_prop[] = { 0, HPT_ORDER }; 375d391177aSMatt Evans uint32_t servers_prop[SMT_THREADS]; 376d391177aSMatt Evans uint32_t gservers_prop[SMT_THREADS * 2]; 377d391177aSMatt Evans int threads = (smp_cpus - i) >= SMT_THREADS ? SMT_THREADS : 378d391177aSMatt Evans smp_cpus - i; 379d391177aSMatt Evans 380d391177aSMatt Evans sprintf(cpu_name, "PowerPC,%s@%d", cpu_info->name, i); 381d391177aSMatt Evans _FDT(fdt_begin_node(fdt, cpu_name)); 382d391177aSMatt Evans sprintf(cpu_name, "PowerPC,%s", cpu_info->name); 383d391177aSMatt Evans _FDT(fdt_property_string(fdt, "name", cpu_name)); 384d391177aSMatt Evans _FDT(fdt_property_string(fdt, "device_type", "cpu")); 385d391177aSMatt Evans 386d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "reg", i)); 38742ac24f9SSasha Levin _FDT(fdt_property_cell(fdt, "cpu-version", kvm->arch.pvr)); 388d391177aSMatt Evans 389d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "dcache-block-size", cpu_info->d_bsize)); 390d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "icache-block-size", cpu_info->i_bsize)); 391d391177aSMatt Evans 392d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "timebase-frequency", cpu_info->tb_freq)); 393d391177aSMatt Evans /* Lies, but safeish lies! */ 394d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "clock-frequency", 0xddbab200)); 395d391177aSMatt Evans 396cb90966cSMichael Ellerman if (cpu_info->mmu_info.slb_size) 397cb90966cSMichael Ellerman _FDT(fdt_property_cell(fdt, "ibm,slb-size", cpu_info->mmu_info.slb_size)); 398cb90966cSMichael Ellerman 399d391177aSMatt Evans /* 400d391177aSMatt Evans * HPT size is hardwired; KVM currently fixes it at 16MB but the 401d391177aSMatt Evans * moment that changes we'll need to read it out of the kernel. 402d391177aSMatt Evans */ 403d391177aSMatt Evans _FDT(fdt_property(fdt, "ibm,pft-size", pft_size_prop, 404d391177aSMatt Evans sizeof(pft_size_prop))); 405d391177aSMatt Evans 406d391177aSMatt Evans _FDT(fdt_property_string(fdt, "status", "okay")); 407d391177aSMatt Evans _FDT(fdt_property(fdt, "64-bit", NULL, 0)); 408d391177aSMatt Evans /* A server for each thread in this core */ 409d391177aSMatt Evans for (j = 0; j < SMT_THREADS; j++) { 410d391177aSMatt Evans servers_prop[j] = cpu_to_be32(i+j); 411d391177aSMatt Evans /* 412d391177aSMatt Evans * Hack borrowed from QEMU, direct the group queues back 413d391177aSMatt Evans * to cpu 0: 414d391177aSMatt Evans */ 415d391177aSMatt Evans gservers_prop[j*2] = cpu_to_be32(i+j); 416d391177aSMatt Evans gservers_prop[j*2 + 1] = 0; 417d391177aSMatt Evans } 418d391177aSMatt Evans _FDT(fdt_property(fdt, "ibm,ppc-interrupt-server#s", 419d391177aSMatt Evans servers_prop, threads * sizeof(uint32_t))); 420d391177aSMatt Evans _FDT(fdt_property(fdt, "ibm,ppc-interrupt-gserver#s", 421d391177aSMatt Evans gservers_prop, 422d391177aSMatt Evans threads * 2 * sizeof(uint32_t))); 423de494ec5SMichael Ellerman 424de494ec5SMichael Ellerman if (segment_page_sizes.value) 425d391177aSMatt Evans _FDT(fdt_property(fdt, "ibm,segment-page-sizes", 426de494ec5SMichael Ellerman segment_page_sizes.value, 427de494ec5SMichael Ellerman segment_page_sizes.size)); 428de494ec5SMichael Ellerman 42938baf777SMichael Ellerman if (cpu_info->mmu_info.flags & KVM_PPC_1T_SEGMENTS) 430d391177aSMatt Evans _FDT(fdt_property(fdt, "ibm,processor-segment-sizes", 43138baf777SMichael Ellerman segment_sizes_1T, sizeof(segment_sizes_1T))); 43238baf777SMichael Ellerman 433d391177aSMatt Evans /* VSX / DFP options: */ 434d391177aSMatt Evans if (cpu_info->flags & CPUINFO_FLAG_VMX) 435d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "ibm,vmx", 436d391177aSMatt Evans (cpu_info->flags & 437d391177aSMatt Evans CPUINFO_FLAG_VSX) ? 2 : 1)); 438d391177aSMatt Evans if (cpu_info->flags & CPUINFO_FLAG_DFP) 439d391177aSMatt Evans _FDT(fdt_property_cell(fdt, "ibm,dfp", 0x1)); 440d391177aSMatt Evans _FDT(fdt_end_node(fdt)); 441d391177aSMatt Evans } 442d391177aSMatt Evans _FDT(fdt_end_node(fdt)); 443d391177aSMatt Evans 444f17e5a37SMatt Evans /* IRQ controller */ 445f17e5a37SMatt Evans _FDT(fdt_begin_node(fdt, "interrupt-controller@0")); 446f17e5a37SMatt Evans 447f17e5a37SMatt Evans _FDT(fdt_property_string(fdt, "device_type", 448f17e5a37SMatt Evans "PowerPC-External-Interrupt-Presentation")); 449f17e5a37SMatt Evans _FDT(fdt_property_string(fdt, "compatible", "IBM,ppc-xicp")); 450f17e5a37SMatt Evans _FDT(fdt_property_cell(fdt, "reg", 0)); 451f17e5a37SMatt Evans _FDT(fdt_property(fdt, "interrupt-controller", NULL, 0)); 452f17e5a37SMatt Evans _FDT(fdt_property(fdt, "ibm,interrupt-server-ranges", 453f17e5a37SMatt Evans int_server_ranges_prop, 454f17e5a37SMatt Evans sizeof(int_server_ranges_prop))); 455f17e5a37SMatt Evans _FDT(fdt_property_cell(fdt, "#interrupt-cells", 2)); 456f17e5a37SMatt Evans _FDT(fdt_property_cell(fdt, "linux,phandle", PHANDLE_XICP)); 457f17e5a37SMatt Evans _FDT(fdt_property_cell(fdt, "phandle", PHANDLE_XICP)); 458f17e5a37SMatt Evans _FDT(fdt_end_node(fdt)); 459f17e5a37SMatt Evans 4607295767dSMatt Evans /* 4617295767dSMatt Evans * VIO: See comment in linux,stdout-path; we don't yet represent a VIO 4627295767dSMatt Evans * bus/address allocation so addresses are hardwired here. 4637295767dSMatt Evans */ 4647295767dSMatt Evans _FDT(fdt_begin_node(fdt, "vdevice")); 4657295767dSMatt Evans _FDT(fdt_property_cell(fdt, "#address-cells", 0x1)); 4667295767dSMatt Evans _FDT(fdt_property_cell(fdt, "#size-cells", 0x0)); 4677295767dSMatt Evans _FDT(fdt_property_string(fdt, "device_type", "vdevice")); 4687295767dSMatt Evans _FDT(fdt_property_string(fdt, "compatible", "IBM,vdevice")); 4697295767dSMatt Evans _FDT(fdt_begin_node(fdt, "vty@30000000")); 4707295767dSMatt Evans _FDT(fdt_property_string(fdt, "name", "vty")); 4717295767dSMatt Evans _FDT(fdt_property_string(fdt, "device_type", "serial")); 4727295767dSMatt Evans _FDT(fdt_property_string(fdt, "compatible", "hvterm1")); 4737295767dSMatt Evans _FDT(fdt_property_cell(fdt, "reg", 0x30000000)); 4747295767dSMatt Evans _FDT(fdt_end_node(fdt)); 4757295767dSMatt Evans _FDT(fdt_end_node(fdt)); 4767295767dSMatt Evans 477d391177aSMatt Evans /* Finalise: */ 478d391177aSMatt Evans _FDT(fdt_end_node(fdt)); /* Root node */ 479d391177aSMatt Evans _FDT(fdt_finish(fdt)); 480d391177aSMatt Evans 481d391177aSMatt Evans _FDT(fdt_open_into(fdt, fdt_dest, FDT_MAX_SIZE)); 482c481cfd5SMatt Evans 483c481cfd5SMatt Evans /* PCI */ 484c481cfd5SMatt Evans if (spapr_populate_pci_devices(kvm, PHANDLE_XICP, fdt_dest)) 485c481cfd5SMatt Evans die("Fail populating PCI device nodes"); 486c481cfd5SMatt Evans 48742ac24f9SSasha Levin _FDT(fdt_add_mem_rsv(fdt_dest, kvm->arch.rtas_gra, kvm->arch.rtas_size)); 488d391177aSMatt Evans _FDT(fdt_pack(fdt_dest)); 489de494ec5SMichael Ellerman 490de494ec5SMichael Ellerman free(segment_page_sizes.value); 491fc935584SMichael Ellerman 492fc935584SMichael Ellerman return 0; 49363e158a0SMatt Evans } 494fc935584SMichael Ellerman firmware_init(setup_fdt); 49563e158a0SMatt Evans 49663e158a0SMatt Evans /** 49763e158a0SMatt Evans * kvm__arch_setup_firmware 49863e158a0SMatt Evans */ 499f7f9d02bSCyrill Gorcunov int kvm__arch_setup_firmware(struct kvm *kvm) 50063e158a0SMatt Evans { 501be76823fSMatt Evans /* 502be76823fSMatt Evans * Set up RTAS stub. All it is is a single hypercall: 503be76823fSMatt Evans * 0: 7c 64 1b 78 mr r4,r3 504be76823fSMatt Evans * 4: 3c 60 00 00 lis r3,0 505be76823fSMatt Evans * 8: 60 63 f0 00 ori r3,r3,61440 506be76823fSMatt Evans * c: 44 00 00 22 sc 1 507be76823fSMatt Evans * 10: 4e 80 00 20 blr 508be76823fSMatt Evans */ 50942ac24f9SSasha Levin uint32_t *rtas = guest_flat_to_host(kvm, kvm->arch.rtas_gra); 510be76823fSMatt Evans 511be76823fSMatt Evans rtas[0] = 0x7c641b78; 512be76823fSMatt Evans rtas[1] = 0x3c600000; 513be76823fSMatt Evans rtas[2] = 0x6063f000; 514be76823fSMatt Evans rtas[3] = 0x44000022; 515be76823fSMatt Evans rtas[4] = 0x4e800020; 51642ac24f9SSasha Levin kvm->arch.rtas_size = 20; 517be76823fSMatt Evans 518be76823fSMatt Evans pr_info("Set up %ld bytes of RTAS at 0x%lx\n", 51942ac24f9SSasha Levin kvm->arch.rtas_size, kvm->arch.rtas_gra); 52063e158a0SMatt Evans 52163e158a0SMatt Evans /* Load SLOF */ 52263e158a0SMatt Evans 523f7f9d02bSCyrill Gorcunov return 0; 52463e158a0SMatt Evans } 5251add9f73SSasha Levin 5261add9f73SSasha Levin int kvm__arch_free_firmware(struct kvm *kvm) 5271add9f73SSasha Levin { 5281add9f73SSasha Levin return 0; 5291add9f73SSasha Levin } 530