11a9cdd37SRoger Pau Monné /* 21a9cdd37SRoger Pau Monné * Copyright (c) 2004 Christian Limpach. 31a9cdd37SRoger Pau Monné * Copyright (c) 2004-2006,2008 Kip Macy 41a9cdd37SRoger Pau Monné * Copyright (c) 2013 Roger Pau Monné <roger.pau@citrix.com> 51a9cdd37SRoger Pau Monné * All rights reserved. 61a9cdd37SRoger Pau Monné * 71a9cdd37SRoger Pau Monné * Redistribution and use in source and binary forms, with or without 81a9cdd37SRoger Pau Monné * modification, are permitted provided that the following conditions 91a9cdd37SRoger Pau Monné * are met: 101a9cdd37SRoger Pau Monné * 1. Redistributions of source code must retain the above copyright 111a9cdd37SRoger Pau Monné * notice, this list of conditions and the following disclaimer. 121a9cdd37SRoger Pau Monné * 2. Redistributions in binary form must reproduce the above copyright 131a9cdd37SRoger Pau Monné * notice, this list of conditions and the following disclaimer in the 141a9cdd37SRoger Pau Monné * documentation and/or other materials provided with the distribution. 151a9cdd37SRoger Pau Monné * 161a9cdd37SRoger Pau Monné * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS AS IS'' AND 171a9cdd37SRoger Pau Monné * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 181a9cdd37SRoger Pau Monné * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 191a9cdd37SRoger Pau Monné * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 201a9cdd37SRoger Pau Monné * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 211a9cdd37SRoger Pau Monné * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 221a9cdd37SRoger Pau Monné * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 231a9cdd37SRoger Pau Monné * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 241a9cdd37SRoger Pau Monné * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 251a9cdd37SRoger Pau Monné * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 261a9cdd37SRoger Pau Monné * SUCH DAMAGE. 271a9cdd37SRoger Pau Monné */ 281a9cdd37SRoger Pau Monné 291a9cdd37SRoger Pau Monné #include <sys/cdefs.h> 301a9cdd37SRoger Pau Monné __FBSDID("$FreeBSD$"); 311a9cdd37SRoger Pau Monné 32*c98a2727SRoger Pau Monné #include "opt_ddb.h" 33*c98a2727SRoger Pau Monné 341a9cdd37SRoger Pau Monné #include <sys/param.h> 351a9cdd37SRoger Pau Monné #include <sys/bus.h> 361a9cdd37SRoger Pau Monné #include <sys/kernel.h> 371a9cdd37SRoger Pau Monné #include <sys/reboot.h> 381a9cdd37SRoger Pau Monné #include <sys/systm.h> 39079f7ef8SRoger Pau Monné #include <sys/malloc.h> 40*c98a2727SRoger Pau Monné #include <sys/linker.h> 411a9cdd37SRoger Pau Monné #include <sys/lock.h> 421a9cdd37SRoger Pau Monné #include <sys/rwlock.h> 43aa389b4fSRoger Pau Monné #include <sys/boot.h> 4497baeefdSRoger Pau Monné #include <sys/ctype.h> 45079f7ef8SRoger Pau Monné #include <sys/mutex.h> 46079f7ef8SRoger Pau Monné #include <sys/smp.h> 471a9cdd37SRoger Pau Monné 481a9cdd37SRoger Pau Monné #include <vm/vm.h> 491a9cdd37SRoger Pau Monné #include <vm/vm_extern.h> 501a9cdd37SRoger Pau Monné #include <vm/vm_kern.h> 511a9cdd37SRoger Pau Monné #include <vm/vm_page.h> 521a9cdd37SRoger Pau Monné #include <vm/vm_map.h> 531a9cdd37SRoger Pau Monné #include <vm/vm_object.h> 541a9cdd37SRoger Pau Monné #include <vm/vm_pager.h> 551a9cdd37SRoger Pau Monné #include <vm/vm_param.h> 561a9cdd37SRoger Pau Monné 57fae92773SJohn Baldwin #include <machine/intr_machdep.h> 58fae92773SJohn Baldwin #include <x86/apicvar.h> 5997baeefdSRoger Pau Monné #include <x86/init.h> 601e69553eSRoger Pau Monné #include <machine/pc/bios.h> 61079f7ef8SRoger Pau Monné #include <machine/smp.h> 6297baeefdSRoger Pau Monné 631a9cdd37SRoger Pau Monné #include <xen/xen-os.h> 641a9cdd37SRoger Pau Monné #include <xen/hypervisor.h> 65b7df74eeSWarner Losh #include <xen/xenstore/xenstorevar.h> 66842471b3SRoger Pau Monné #include <xen/xen_pv.h> 671a9cdd37SRoger Pau Monné 68079f7ef8SRoger Pau Monné #include <xen/interface/vcpu.h> 69079f7ef8SRoger Pau Monné 705f05c794SRoger Pau Monné #include <dev/xen/timer/timer.h> 715f05c794SRoger Pau Monné 72*c98a2727SRoger Pau Monné #ifdef DDB 73*c98a2727SRoger Pau Monné #include <ddb/ddb.h> 74*c98a2727SRoger Pau Monné #endif 75*c98a2727SRoger Pau Monné 761a9cdd37SRoger Pau Monné /* Native initial function */ 771a9cdd37SRoger Pau Monné extern u_int64_t hammer_time(u_int64_t, u_int64_t); 781a9cdd37SRoger Pau Monné /* Xen initial function */ 791a9cdd37SRoger Pau Monné uint64_t hammer_time_xen(start_info_t *, uint64_t); 801a9cdd37SRoger Pau Monné 811e69553eSRoger Pau Monné #define MAX_E820_ENTRIES 128 821e69553eSRoger Pau Monné 8397baeefdSRoger Pau Monné /*--------------------------- Forward Declarations ---------------------------*/ 8497baeefdSRoger Pau Monné static caddr_t xen_pv_parse_preload_data(u_int64_t); 851e69553eSRoger Pau Monné static void xen_pv_parse_memmap(caddr_t, vm_paddr_t *, int *); 8697baeefdSRoger Pau Monné 87079f7ef8SRoger Pau Monné #ifdef SMP 88079f7ef8SRoger Pau Monné static int xen_pv_start_all_aps(void); 89079f7ef8SRoger Pau Monné #endif 90079f7ef8SRoger Pau Monné 91079f7ef8SRoger Pau Monné /*---------------------------- Extern Declarations ---------------------------*/ 92079f7ef8SRoger Pau Monné #ifdef SMP 93079f7ef8SRoger Pau Monné /* Variables used by amd64 mp_machdep to start APs */ 94079f7ef8SRoger Pau Monné extern struct mtx ap_boot_mtx; 95079f7ef8SRoger Pau Monné extern void *bootstacks[]; 96079f7ef8SRoger Pau Monné extern char *doublefault_stack; 97079f7ef8SRoger Pau Monné extern char *nmi_stack; 98079f7ef8SRoger Pau Monné extern void *dpcpu; 99079f7ef8SRoger Pau Monné extern int bootAP; 100079f7ef8SRoger Pau Monné extern char *bootSTK; 101079f7ef8SRoger Pau Monné #endif 102079f7ef8SRoger Pau Monné 103*c98a2727SRoger Pau Monné /* 104*c98a2727SRoger Pau Monné * Placed by the linker at the end of the bss section, which is the last 105*c98a2727SRoger Pau Monné * section loaded by Xen before loading the symtab and strtab. 106*c98a2727SRoger Pau Monné */ 107*c98a2727SRoger Pau Monné extern uint32_t end; 108*c98a2727SRoger Pau Monné 10997baeefdSRoger Pau Monné /*-------------------------------- Global Data -------------------------------*/ 11097baeefdSRoger Pau Monné /* Xen init_ops implementation. */ 11197baeefdSRoger Pau Monné struct init_ops xen_init_ops = { 11297baeefdSRoger Pau Monné .parse_preload_data = xen_pv_parse_preload_data, 1135f05c794SRoger Pau Monné .early_clock_source_init = xen_clock_init, 1145f05c794SRoger Pau Monné .early_delay = xen_delay, 1151e69553eSRoger Pau Monné .parse_memmap = xen_pv_parse_memmap, 116079f7ef8SRoger Pau Monné #ifdef SMP 117079f7ef8SRoger Pau Monné .start_all_aps = xen_pv_start_all_aps, 118079f7ef8SRoger Pau Monné #endif 11997baeefdSRoger Pau Monné }; 12097baeefdSRoger Pau Monné 1211e69553eSRoger Pau Monné static struct bios_smap xen_smap[MAX_E820_ENTRIES]; 1221e69553eSRoger Pau Monné 12397baeefdSRoger Pau Monné /*-------------------------------- Xen PV init -------------------------------*/ 1241a9cdd37SRoger Pau Monné /* 1251a9cdd37SRoger Pau Monné * First function called by the Xen PVH boot sequence. 1261a9cdd37SRoger Pau Monné * 1271a9cdd37SRoger Pau Monné * Set some Xen global variables and prepare the environment so it is 1281a9cdd37SRoger Pau Monné * as similar as possible to what native FreeBSD init function expects. 1291a9cdd37SRoger Pau Monné */ 1301a9cdd37SRoger Pau Monné uint64_t 1311a9cdd37SRoger Pau Monné hammer_time_xen(start_info_t *si, uint64_t xenstack) 1321a9cdd37SRoger Pau Monné { 1331a9cdd37SRoger Pau Monné uint64_t physfree; 1341a9cdd37SRoger Pau Monné uint64_t *PT4 = (u_int64_t *)xenstack; 1351a9cdd37SRoger Pau Monné uint64_t *PT3 = (u_int64_t *)(xenstack + PAGE_SIZE); 1361a9cdd37SRoger Pau Monné uint64_t *PT2 = (u_int64_t *)(xenstack + 2 * PAGE_SIZE); 1371a9cdd37SRoger Pau Monné int i; 1381a9cdd37SRoger Pau Monné 1391a9cdd37SRoger Pau Monné xen_domain_type = XEN_PV_DOMAIN; 1401a9cdd37SRoger Pau Monné vm_guest = VM_GUEST_XEN; 1411a9cdd37SRoger Pau Monné 1421a9cdd37SRoger Pau Monné if ((si == NULL) || (xenstack == 0)) { 143c203fa69SRoger Pau Monné xc_printf("ERROR: invalid start_info or xen stack, halting\n"); 1441a9cdd37SRoger Pau Monné HYPERVISOR_shutdown(SHUTDOWN_crash); 1451a9cdd37SRoger Pau Monné } 1461a9cdd37SRoger Pau Monné 147c203fa69SRoger Pau Monné xc_printf("FreeBSD PVH running on %s\n", si->magic); 148c203fa69SRoger Pau Monné 1491a9cdd37SRoger Pau Monné /* We use 3 pages of xen stack for the boot pagetables */ 1501a9cdd37SRoger Pau Monné physfree = xenstack + 3 * PAGE_SIZE - KERNBASE; 1511a9cdd37SRoger Pau Monné 1521a9cdd37SRoger Pau Monné /* Setup Xen global variables */ 1531a9cdd37SRoger Pau Monné HYPERVISOR_start_info = si; 1541a9cdd37SRoger Pau Monné HYPERVISOR_shared_info = 1551a9cdd37SRoger Pau Monné (shared_info_t *)(si->shared_info + KERNBASE); 1561a9cdd37SRoger Pau Monné 1571a9cdd37SRoger Pau Monné /* 1581a9cdd37SRoger Pau Monné * Setup some misc global variables for Xen devices 1591a9cdd37SRoger Pau Monné * 1601a9cdd37SRoger Pau Monné * XXX: Devices that need these specific variables should 1611a9cdd37SRoger Pau Monné * be rewritten to fetch this info by themselves from the 1621a9cdd37SRoger Pau Monné * start_info page. 1631a9cdd37SRoger Pau Monné */ 1641a9cdd37SRoger Pau Monné xen_store = (struct xenstore_domain_interface *) 1651a9cdd37SRoger Pau Monné (ptoa(si->store_mfn) + KERNBASE); 166c203fa69SRoger Pau Monné console_page = (char *)(ptoa(si->console.domU.mfn) + KERNBASE); 1671a9cdd37SRoger Pau Monné 1681a9cdd37SRoger Pau Monné /* 1691a9cdd37SRoger Pau Monné * Use the stack Xen gives us to build the page tables 1701a9cdd37SRoger Pau Monné * as native FreeBSD expects to find them (created 1711a9cdd37SRoger Pau Monné * by the boot trampoline). 1721a9cdd37SRoger Pau Monné */ 1731a9cdd37SRoger Pau Monné for (i = 0; i < (PAGE_SIZE / sizeof(uint64_t)); i++) { 1745f35f84fSRoger Pau Monné /* 1755f35f84fSRoger Pau Monné * Each slot of the level 4 pages points 1765f35f84fSRoger Pau Monné * to the same level 3 page 1775f35f84fSRoger Pau Monné */ 1781a9cdd37SRoger Pau Monné PT4[i] = ((uint64_t)&PT3[0]) - KERNBASE; 1791a9cdd37SRoger Pau Monné PT4[i] |= PG_V | PG_RW | PG_U; 1801a9cdd37SRoger Pau Monné 1815f35f84fSRoger Pau Monné /* 1825f35f84fSRoger Pau Monné * Each slot of the level 3 pages points 1835f35f84fSRoger Pau Monné * to the same level 2 page 1845f35f84fSRoger Pau Monné */ 1851a9cdd37SRoger Pau Monné PT3[i] = ((uint64_t)&PT2[0]) - KERNBASE; 1861a9cdd37SRoger Pau Monné PT3[i] |= PG_V | PG_RW | PG_U; 1871a9cdd37SRoger Pau Monné 1885f35f84fSRoger Pau Monné /* 1895f35f84fSRoger Pau Monné * The level 2 page slots are mapped with 1905f35f84fSRoger Pau Monné * 2MB pages for 1GB. 1915f35f84fSRoger Pau Monné */ 1921a9cdd37SRoger Pau Monné PT2[i] = i * (2 * 1024 * 1024); 1931a9cdd37SRoger Pau Monné PT2[i] |= PG_V | PG_RW | PG_PS | PG_U; 1941a9cdd37SRoger Pau Monné } 1951a9cdd37SRoger Pau Monné load_cr3(((uint64_t)&PT4[0]) - KERNBASE); 1961a9cdd37SRoger Pau Monné 19797baeefdSRoger Pau Monné /* Set the hooks for early functions that diverge from bare metal */ 19897baeefdSRoger Pau Monné init_ops = xen_init_ops; 199842471b3SRoger Pau Monné apic_ops = xen_apic_ops; 20097baeefdSRoger Pau Monné 2011a9cdd37SRoger Pau Monné /* Now we can jump into the native init function */ 2021a9cdd37SRoger Pau Monné return (hammer_time(0, physfree)); 2031a9cdd37SRoger Pau Monné } 20497baeefdSRoger Pau Monné 20597baeefdSRoger Pau Monné /*-------------------------------- PV specific -------------------------------*/ 206079f7ef8SRoger Pau Monné #ifdef SMP 207079f7ef8SRoger Pau Monné static bool 208079f7ef8SRoger Pau Monné start_xen_ap(int cpu) 209079f7ef8SRoger Pau Monné { 210079f7ef8SRoger Pau Monné struct vcpu_guest_context *ctxt; 211079f7ef8SRoger Pau Monné int ms, cpus = mp_naps; 212079f7ef8SRoger Pau Monné const size_t stacksize = KSTACK_PAGES * PAGE_SIZE; 213079f7ef8SRoger Pau Monné 214079f7ef8SRoger Pau Monné /* allocate and set up an idle stack data page */ 215079f7ef8SRoger Pau Monné bootstacks[cpu] = 216079f7ef8SRoger Pau Monné (void *)kmem_malloc(kernel_arena, stacksize, M_WAITOK | M_ZERO); 217079f7ef8SRoger Pau Monné doublefault_stack = 218079f7ef8SRoger Pau Monné (char *)kmem_malloc(kernel_arena, PAGE_SIZE, M_WAITOK | M_ZERO); 219079f7ef8SRoger Pau Monné nmi_stack = 220079f7ef8SRoger Pau Monné (char *)kmem_malloc(kernel_arena, PAGE_SIZE, M_WAITOK | M_ZERO); 221079f7ef8SRoger Pau Monné dpcpu = 222079f7ef8SRoger Pau Monné (void *)kmem_malloc(kernel_arena, DPCPU_SIZE, M_WAITOK | M_ZERO); 223079f7ef8SRoger Pau Monné 224079f7ef8SRoger Pau Monné bootSTK = (char *)bootstacks[cpu] + KSTACK_PAGES * PAGE_SIZE - 8; 225079f7ef8SRoger Pau Monné bootAP = cpu; 226079f7ef8SRoger Pau Monné 227079f7ef8SRoger Pau Monné ctxt = malloc(sizeof(*ctxt), M_TEMP, M_WAITOK | M_ZERO); 228079f7ef8SRoger Pau Monné if (ctxt == NULL) 229079f7ef8SRoger Pau Monné panic("unable to allocate memory"); 230079f7ef8SRoger Pau Monné 231079f7ef8SRoger Pau Monné ctxt->flags = VGCF_IN_KERNEL; 232079f7ef8SRoger Pau Monné ctxt->user_regs.rip = (unsigned long) init_secondary; 233079f7ef8SRoger Pau Monné ctxt->user_regs.rsp = (unsigned long) bootSTK; 234079f7ef8SRoger Pau Monné 235079f7ef8SRoger Pau Monné /* Set the AP to use the same page tables */ 236079f7ef8SRoger Pau Monné ctxt->ctrlreg[3] = KPML4phys; 237079f7ef8SRoger Pau Monné 238079f7ef8SRoger Pau Monné if (HYPERVISOR_vcpu_op(VCPUOP_initialise, cpu, ctxt)) 239079f7ef8SRoger Pau Monné panic("unable to initialize AP#%d", cpu); 240079f7ef8SRoger Pau Monné 241079f7ef8SRoger Pau Monné free(ctxt, M_TEMP); 242079f7ef8SRoger Pau Monné 243079f7ef8SRoger Pau Monné /* Launch the vCPU */ 244079f7ef8SRoger Pau Monné if (HYPERVISOR_vcpu_op(VCPUOP_up, cpu, NULL)) 245079f7ef8SRoger Pau Monné panic("unable to start AP#%d", cpu); 246079f7ef8SRoger Pau Monné 247079f7ef8SRoger Pau Monné /* Wait up to 5 seconds for it to start. */ 248079f7ef8SRoger Pau Monné for (ms = 0; ms < 5000; ms++) { 249079f7ef8SRoger Pau Monné if (mp_naps > cpus) 250079f7ef8SRoger Pau Monné return (true); 251079f7ef8SRoger Pau Monné DELAY(1000); 252079f7ef8SRoger Pau Monné } 253079f7ef8SRoger Pau Monné 254079f7ef8SRoger Pau Monné return (false); 255079f7ef8SRoger Pau Monné } 256079f7ef8SRoger Pau Monné 257079f7ef8SRoger Pau Monné static int 258079f7ef8SRoger Pau Monné xen_pv_start_all_aps(void) 259079f7ef8SRoger Pau Monné { 260079f7ef8SRoger Pau Monné int cpu; 261079f7ef8SRoger Pau Monné 262079f7ef8SRoger Pau Monné mtx_init(&ap_boot_mtx, "ap boot", NULL, MTX_SPIN); 263079f7ef8SRoger Pau Monné 264079f7ef8SRoger Pau Monné for (cpu = 1; cpu < mp_ncpus; cpu++) { 265079f7ef8SRoger Pau Monné 266079f7ef8SRoger Pau Monné /* attempt to start the Application Processor */ 267079f7ef8SRoger Pau Monné if (!start_xen_ap(cpu)) 268079f7ef8SRoger Pau Monné panic("AP #%d failed to start!", cpu); 269079f7ef8SRoger Pau Monné 270079f7ef8SRoger Pau Monné CPU_SET(cpu, &all_cpus); /* record AP in CPU map */ 271079f7ef8SRoger Pau Monné } 272079f7ef8SRoger Pau Monné 273079f7ef8SRoger Pau Monné return (mp_naps); 274079f7ef8SRoger Pau Monné } 275079f7ef8SRoger Pau Monné #endif /* SMP */ 276079f7ef8SRoger Pau Monné 27797baeefdSRoger Pau Monné /* 27897baeefdSRoger Pau Monné * Functions to convert the "extra" parameters passed by Xen 27997baeefdSRoger Pau Monné * into FreeBSD boot options. 28097baeefdSRoger Pau Monné */ 28197baeefdSRoger Pau Monné static void 28297baeefdSRoger Pau Monné xen_pv_set_env(void) 28397baeefdSRoger Pau Monné { 28497baeefdSRoger Pau Monné char *cmd_line_next, *cmd_line; 28597baeefdSRoger Pau Monné size_t env_size; 28697baeefdSRoger Pau Monné 28797baeefdSRoger Pau Monné cmd_line = HYPERVISOR_start_info->cmd_line; 28897baeefdSRoger Pau Monné env_size = sizeof(HYPERVISOR_start_info->cmd_line); 28997baeefdSRoger Pau Monné 29097baeefdSRoger Pau Monné /* Skip leading spaces */ 29197baeefdSRoger Pau Monné for (; isspace(*cmd_line) && (env_size != 0); cmd_line++) 29297baeefdSRoger Pau Monné env_size--; 29397baeefdSRoger Pau Monné 29497baeefdSRoger Pau Monné /* Replace ',' with '\0' */ 29597baeefdSRoger Pau Monné for (cmd_line_next = cmd_line; strsep(&cmd_line_next, ",") != NULL;) 29697baeefdSRoger Pau Monné ; 29797baeefdSRoger Pau Monné 29897baeefdSRoger Pau Monné init_static_kenv(cmd_line, env_size); 29997baeefdSRoger Pau Monné } 30097baeefdSRoger Pau Monné 30197baeefdSRoger Pau Monné static void 30297baeefdSRoger Pau Monné xen_pv_set_boothowto(void) 30397baeefdSRoger Pau Monné { 30497baeefdSRoger Pau Monné int i; 30597baeefdSRoger Pau Monné 30697baeefdSRoger Pau Monné /* get equivalents from the environment */ 30797baeefdSRoger Pau Monné for (i = 0; howto_names[i].ev != NULL; i++) { 30897baeefdSRoger Pau Monné if (getenv(howto_names[i].ev) != NULL) 30997baeefdSRoger Pau Monné boothowto |= howto_names[i].mask; 31097baeefdSRoger Pau Monné } 31197baeefdSRoger Pau Monné } 31297baeefdSRoger Pau Monné 313*c98a2727SRoger Pau Monné #ifdef DDB 314*c98a2727SRoger Pau Monné /* 315*c98a2727SRoger Pau Monné * The way Xen loads the symtab is different from the native boot loader, 316*c98a2727SRoger Pau Monné * because it's tailored for NetBSD. So we have to adapt and use the same 317*c98a2727SRoger Pau Monné * method as NetBSD. Portions of the code below have been picked from NetBSD: 318*c98a2727SRoger Pau Monné * sys/kern/kern_ksyms.c CVS Revision 1.71. 319*c98a2727SRoger Pau Monné */ 320*c98a2727SRoger Pau Monné static void 321*c98a2727SRoger Pau Monné xen_pv_parse_symtab(void) 322*c98a2727SRoger Pau Monné { 323*c98a2727SRoger Pau Monné Elf_Ehdr *ehdr; 324*c98a2727SRoger Pau Monné Elf_Shdr *shdr; 325*c98a2727SRoger Pau Monné vm_offset_t sym_end; 326*c98a2727SRoger Pau Monné uint32_t size; 327*c98a2727SRoger Pau Monné int i, j; 328*c98a2727SRoger Pau Monné 329*c98a2727SRoger Pau Monné size = end; 330*c98a2727SRoger Pau Monné sym_end = HYPERVISOR_start_info->mod_start != 0 ? 331*c98a2727SRoger Pau Monné HYPERVISOR_start_info->mod_start : 332*c98a2727SRoger Pau Monné HYPERVISOR_start_info->mfn_list; 333*c98a2727SRoger Pau Monné 334*c98a2727SRoger Pau Monné /* 335*c98a2727SRoger Pau Monné * Make sure the size is right headed, sym_end is just a 336*c98a2727SRoger Pau Monné * high boundary, but at least allows us to fail earlier. 337*c98a2727SRoger Pau Monné */ 338*c98a2727SRoger Pau Monné if ((vm_offset_t)&end + size > sym_end) { 339*c98a2727SRoger Pau Monné xc_printf("Unable to load ELF symtab: size mismatch\n"); 340*c98a2727SRoger Pau Monné return; 341*c98a2727SRoger Pau Monné } 342*c98a2727SRoger Pau Monné 343*c98a2727SRoger Pau Monné ehdr = (Elf_Ehdr *)(&end + 1); 344*c98a2727SRoger Pau Monné if (memcmp(ehdr->e_ident, ELFMAG, SELFMAG) || 345*c98a2727SRoger Pau Monné ehdr->e_ident[EI_CLASS] != ELF_TARG_CLASS || 346*c98a2727SRoger Pau Monné ehdr->e_version > 1) { 347*c98a2727SRoger Pau Monné xc_printf("Unable to load ELF symtab: invalid symbol table\n"); 348*c98a2727SRoger Pau Monné return; 349*c98a2727SRoger Pau Monné } 350*c98a2727SRoger Pau Monné 351*c98a2727SRoger Pau Monné shdr = (Elf_Shdr *)((uint8_t *)ehdr + ehdr->e_shoff); 352*c98a2727SRoger Pau Monné /* Find the symbol table and the corresponding string table. */ 353*c98a2727SRoger Pau Monné for (i = 1; i < ehdr->e_shnum; i++) { 354*c98a2727SRoger Pau Monné if (shdr[i].sh_type != SHT_SYMTAB) 355*c98a2727SRoger Pau Monné continue; 356*c98a2727SRoger Pau Monné if (shdr[i].sh_offset == 0) 357*c98a2727SRoger Pau Monné continue; 358*c98a2727SRoger Pau Monné ksymtab = (uintptr_t)((uint8_t *)ehdr + shdr[i].sh_offset); 359*c98a2727SRoger Pau Monné ksymtab_size = shdr[i].sh_size; 360*c98a2727SRoger Pau Monné j = shdr[i].sh_link; 361*c98a2727SRoger Pau Monné if (shdr[j].sh_offset == 0) 362*c98a2727SRoger Pau Monné continue; /* Can this happen? */ 363*c98a2727SRoger Pau Monné kstrtab = (uintptr_t)((uint8_t *)ehdr + shdr[j].sh_offset); 364*c98a2727SRoger Pau Monné break; 365*c98a2727SRoger Pau Monné } 366*c98a2727SRoger Pau Monné 367*c98a2727SRoger Pau Monné if (ksymtab == 0 || kstrtab == 0) { 368*c98a2727SRoger Pau Monné xc_printf( 369*c98a2727SRoger Pau Monné "Unable to load ELF symtab: could not find symtab or strtab\n"); 370*c98a2727SRoger Pau Monné return; 371*c98a2727SRoger Pau Monné } 372*c98a2727SRoger Pau Monné } 373*c98a2727SRoger Pau Monné #endif 374*c98a2727SRoger Pau Monné 37597baeefdSRoger Pau Monné static caddr_t 37697baeefdSRoger Pau Monné xen_pv_parse_preload_data(u_int64_t modulep) 37797baeefdSRoger Pau Monné { 37897baeefdSRoger Pau Monné /* Parse the extra boot information given by Xen */ 37997baeefdSRoger Pau Monné xen_pv_set_env(); 38097baeefdSRoger Pau Monné xen_pv_set_boothowto(); 38197baeefdSRoger Pau Monné 382*c98a2727SRoger Pau Monné #ifdef DDB 383*c98a2727SRoger Pau Monné xen_pv_parse_symtab(); 384*c98a2727SRoger Pau Monné #endif 385*c98a2727SRoger Pau Monné 38697baeefdSRoger Pau Monné return (NULL); 38797baeefdSRoger Pau Monné } 3881e69553eSRoger Pau Monné 3891e69553eSRoger Pau Monné static void 3901e69553eSRoger Pau Monné xen_pv_parse_memmap(caddr_t kmdp, vm_paddr_t *physmap, int *physmap_idx) 3911e69553eSRoger Pau Monné { 3921e69553eSRoger Pau Monné struct xen_memory_map memmap; 3931e69553eSRoger Pau Monné u_int32_t size; 3941e69553eSRoger Pau Monné int rc; 3951e69553eSRoger Pau Monné 3961e69553eSRoger Pau Monné /* Fetch the E820 map from Xen */ 3971e69553eSRoger Pau Monné memmap.nr_entries = MAX_E820_ENTRIES; 3981e69553eSRoger Pau Monné set_xen_guest_handle(memmap.buffer, xen_smap); 3991e69553eSRoger Pau Monné rc = HYPERVISOR_memory_op(XENMEM_memory_map, &memmap); 4001e69553eSRoger Pau Monné if (rc) 4011e69553eSRoger Pau Monné panic("unable to fetch Xen E820 memory map"); 4021e69553eSRoger Pau Monné size = memmap.nr_entries * sizeof(xen_smap[0]); 4031e69553eSRoger Pau Monné 4041e69553eSRoger Pau Monné bios_add_smap_entries(xen_smap, size, physmap, physmap_idx); 4051e69553eSRoger Pau Monné } 406