pc.c 69.9 KB
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/*
 * QEMU PC System Emulator
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 *
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 * Copyright (c) 2003-2004 Fabrice Bellard
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 *
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 * Permission is hereby granted, free of charge, to any person obtaining a copy
 * of this software and associated documentation files (the "Software"), to deal
 * in the Software without restriction, including without limitation the rights
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
 * copies of the Software, and to permit persons to whom the Software is
 * furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice shall be included in
 * all copies or substantial portions of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
 * THE SOFTWARE.
 */
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#include "qemu/osdep.h"
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#include "hw/hw.h"
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#include "hw/i386/pc.h"
#include "hw/char/serial.h"
#include "hw/i386/apic.h"
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#include "hw/i386/topology.h"
#include "sysemu/cpus.h"
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#include "hw/block/fdc.h"
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#include "hw/ide.h"
#include "hw/pci/pci.h"
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#include "hw/pci/pci_bus.h"
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#include "hw/nvram/fw_cfg.h"
#include "hw/timer/hpet.h"
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#include "hw/smbios/smbios.h"
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#include "hw/loader.h"
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#include "elf.h"
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#include "multiboot.h"
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#include "hw/timer/mc146818rtc.h"
#include "hw/timer/i8254.h"
#include "hw/audio/pcspk.h"
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#include "hw/pci/msi.h"
#include "hw/sysbus.h"
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#include "sysemu/sysemu.h"
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#include "sysemu/numa.h"
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#include "sysemu/kvm.h"
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#include "sysemu/qtest.h"
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#include "kvm_i386.h"
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#include "hw/xen/xen.h"
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#include "sysemu/block-backend.h"
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#include "hw/block/block.h"
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#include "ui/qemu-spice.h"
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#include "exec/memory.h"
#include "exec/address-spaces.h"
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#include "sysemu/arch_init.h"
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#include "qemu/bitmap.h"
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#include "qemu/config-file.h"
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#include "qemu/error-report.h"
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#include "hw/acpi/acpi.h"
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#include "hw/acpi/cpu_hotplug.h"
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#include "hw/boards.h"
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#include "hw/pci/pci_host.h"
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#include "acpi-build.h"
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#include "hw/mem/pc-dimm.h"
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#include "qapi/visitor.h"
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#include "qapi-visit.h"
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#include "qom/cpu.h"
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#include "hw/nmi.h"
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/* debug PC/ISA interrupts */
//#define DEBUG_IRQ

#ifdef DEBUG_IRQ
#define DPRINTF(fmt, ...)                                       \
    do { printf("CPUIRQ: " fmt , ## __VA_ARGS__); } while (0)
#else
#define DPRINTF(fmt, ...)
#endif

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#define FW_CFG_ACPI_TABLES (FW_CFG_ARCH_LOCAL + 0)
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#define FW_CFG_SMBIOS_ENTRIES (FW_CFG_ARCH_LOCAL + 1)
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#define FW_CFG_IRQ0_OVERRIDE (FW_CFG_ARCH_LOCAL + 2)
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#define FW_CFG_E820_TABLE (FW_CFG_ARCH_LOCAL + 3)
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#define FW_CFG_HPET (FW_CFG_ARCH_LOCAL + 4)
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#define E820_NR_ENTRIES		16

struct e820_entry {
    uint64_t address;
    uint64_t length;
    uint32_t type;
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} QEMU_PACKED __attribute((__aligned__(4)));
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struct e820_table {
    uint32_t count;
    struct e820_entry entry[E820_NR_ENTRIES];
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} QEMU_PACKED __attribute((__aligned__(4)));
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static struct e820_table e820_reserve;
static struct e820_entry *e820_table;
static unsigned e820_entries;
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struct hpet_fw_config hpet_cfg = {.count = UINT8_MAX};
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void gsi_handler(void *opaque, int n, int level)
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{
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    GSIState *s = opaque;
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    DPRINTF("pc: %s GSI %d\n", level ? "raising" : "lowering", n);
    if (n < ISA_NUM_IRQS) {
        qemu_set_irq(s->i8259_irq[n], level);
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    }
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    qemu_set_irq(s->ioapic_irq[n], level);
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}
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static void ioport80_write(void *opaque, hwaddr addr, uint64_t data,
                           unsigned size)
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{
}

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static uint64_t ioport80_read(void *opaque, hwaddr addr, unsigned size)
{
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    return 0xffffffffffffffffULL;
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}

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/* MSDOS compatibility mode FPU exception support */
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static qemu_irq ferr_irq;
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void pc_register_ferr_irq(qemu_irq irq)
{
    ferr_irq = irq;
}

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/* XXX: add IGNNE support */
void cpu_set_ferr(CPUX86State *s)
{
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    qemu_irq_raise(ferr_irq);
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}

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static void ioportF0_write(void *opaque, hwaddr addr, uint64_t data,
                           unsigned size)
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{
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    qemu_irq_lower(ferr_irq);
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}

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static uint64_t ioportF0_read(void *opaque, hwaddr addr, unsigned size)
{
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    return 0xffffffffffffffffULL;
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}

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/* TSC handling */
uint64_t cpu_get_tsc(CPUX86State *env)
{
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    return cpu_get_ticks();
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}

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/* IRQ handling */
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int cpu_get_pic_interrupt(CPUX86State *env)
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{
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    X86CPU *cpu = x86_env_get_cpu(env);
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    int intno;

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    intno = apic_get_interrupt(cpu->apic_state);
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    if (intno >= 0) {
        return intno;
    }
    /* read the irq from the PIC */
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    if (!apic_accept_pic_intr(cpu->apic_state)) {
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        return -1;
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    }
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    intno = pic_read_irq(isa_pic);
    return intno;
}

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static void pic_irq_request(void *opaque, int irq, int level)
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{
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    CPUState *cs = first_cpu;
    X86CPU *cpu = X86_CPU(cs);
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    DPRINTF("pic_irqs: %s irq %d\n", level? "raise" : "lower", irq);
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    if (cpu->apic_state) {
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        CPU_FOREACH(cs) {
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            cpu = X86_CPU(cs);
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            if (apic_accept_pic_intr(cpu->apic_state)) {
                apic_deliver_pic_intr(cpu->apic_state, level);
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            }
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        }
    } else {
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        if (level) {
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            cpu_interrupt(cs, CPU_INTERRUPT_HARD);
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        } else {
            cpu_reset_interrupt(cs, CPU_INTERRUPT_HARD);
        }
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    }
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}

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/* PC cmos mappings */

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#define REG_EQUIPMENT_BYTE          0x14

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int cmos_get_fd_drive_type(FloppyDriveType fd0)
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{
    int val;

    switch (fd0) {
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    case FLOPPY_DRIVE_TYPE_144:
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        /* 1.44 Mb 3"5 drive */
        val = 4;
        break;
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    case FLOPPY_DRIVE_TYPE_288:
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        /* 2.88 Mb 3"5 drive */
        val = 5;
        break;
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    case FLOPPY_DRIVE_TYPE_120:
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        /* 1.2 Mb 5"5 drive */
        val = 2;
        break;
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    case FLOPPY_DRIVE_TYPE_NONE:
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    default:
        val = 0;
        break;
    }
    return val;
}

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static void cmos_init_hd(ISADevice *s, int type_ofs, int info_ofs,
                         int16_t cylinders, int8_t heads, int8_t sectors)
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{
    rtc_set_memory(s, type_ofs, 47);
    rtc_set_memory(s, info_ofs, cylinders);
    rtc_set_memory(s, info_ofs + 1, cylinders >> 8);
    rtc_set_memory(s, info_ofs + 2, heads);
    rtc_set_memory(s, info_ofs + 3, 0xff);
    rtc_set_memory(s, info_ofs + 4, 0xff);
    rtc_set_memory(s, info_ofs + 5, 0xc0 | ((heads > 8) << 3));
    rtc_set_memory(s, info_ofs + 6, cylinders);
    rtc_set_memory(s, info_ofs + 7, cylinders >> 8);
    rtc_set_memory(s, info_ofs + 8, sectors);
}

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/* convert boot_device letter to something recognizable by the bios */
static int boot_device2nibble(char boot_device)
{
    switch(boot_device) {
    case 'a':
    case 'b':
        return 0x01; /* floppy boot */
    case 'c':
        return 0x02; /* hard drive boot */
    case 'd':
        return 0x03; /* CD-ROM boot */
    case 'n':
        return 0x04; /* Network boot */
    }
    return 0;
}

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static void set_boot_dev(ISADevice *s, const char *boot_device, Error **errp)
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{
#define PC_MAX_BOOT_DEVICES 3
    int nbds, bds[3] = { 0, };
    int i;

    nbds = strlen(boot_device);
    if (nbds > PC_MAX_BOOT_DEVICES) {
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        error_setg(errp, "Too many boot devices for PC");
        return;
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    }
    for (i = 0; i < nbds; i++) {
        bds[i] = boot_device2nibble(boot_device[i]);
        if (bds[i] == 0) {
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            error_setg(errp, "Invalid boot device for PC: '%c'",
                       boot_device[i]);
            return;
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        }
    }
    rtc_set_memory(s, 0x3d, (bds[1] << 4) | bds[0]);
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    rtc_set_memory(s, 0x38, (bds[2] << 4) | (fd_bootchk ? 0x0 : 0x1));
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}

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static void pc_boot_set(void *opaque, const char *boot_device, Error **errp)
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{
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    set_boot_dev(opaque, boot_device, errp);
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}

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static void pc_cmos_init_floppy(ISADevice *rtc_state, ISADevice *floppy)
{
    int val, nb, i;
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    FloppyDriveType fd_type[2] = { FLOPPY_DRIVE_TYPE_NONE,
                                   FLOPPY_DRIVE_TYPE_NONE };
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    /* floppy type */
    if (floppy) {
        for (i = 0; i < 2; i++) {
            fd_type[i] = isa_fdc_get_drive_type(floppy, i);
        }
    }
    val = (cmos_get_fd_drive_type(fd_type[0]) << 4) |
        cmos_get_fd_drive_type(fd_type[1]);
    rtc_set_memory(rtc_state, 0x10, val);

    val = rtc_get_memory(rtc_state, REG_EQUIPMENT_BYTE);
    nb = 0;
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    if (fd_type[0] != FLOPPY_DRIVE_TYPE_NONE) {
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        nb++;
    }
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    if (fd_type[1] != FLOPPY_DRIVE_TYPE_NONE) {
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        nb++;
    }
    switch (nb) {
    case 0:
        break;
    case 1:
        val |= 0x01; /* 1 drive, ready for boot */
        break;
    case 2:
        val |= 0x41; /* 2 drives, ready for boot */
        break;
    }
    rtc_set_memory(rtc_state, REG_EQUIPMENT_BYTE, val);
}

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typedef struct pc_cmos_init_late_arg {
    ISADevice *rtc_state;
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    BusState *idebus[2];
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} pc_cmos_init_late_arg;

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typedef struct check_fdc_state {
    ISADevice *floppy;
    bool multiple;
} CheckFdcState;

static int check_fdc(Object *obj, void *opaque)
{
    CheckFdcState *state = opaque;
    Object *fdc;
    uint32_t iobase;
    Error *local_err = NULL;

    fdc = object_dynamic_cast(obj, TYPE_ISA_FDC);
    if (!fdc) {
        return 0;
    }

    iobase = object_property_get_int(obj, "iobase", &local_err);
    if (local_err || iobase != 0x3f0) {
        error_free(local_err);
        return 0;
    }

    if (state->floppy) {
        state->multiple = true;
    } else {
        state->floppy = ISA_DEVICE(obj);
    }
    return 0;
}

static const char * const fdc_container_path[] = {
    "/unattached", "/peripheral", "/peripheral-anon"
};

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/*
 * Locate the FDC at IO address 0x3f0, in order to configure the CMOS registers
 * and ACPI objects.
 */
ISADevice *pc_find_fdc0(void)
{
    int i;
    Object *container;
    CheckFdcState state = { 0 };

    for (i = 0; i < ARRAY_SIZE(fdc_container_path); i++) {
        container = container_get(qdev_get_machine(), fdc_container_path[i]);
        object_child_foreach(container, check_fdc, &state);
    }

    if (state.multiple) {
        error_report("warning: multiple floppy disk controllers with "
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                     "iobase=0x3f0 have been found");
        error_printf("the one being picked for CMOS setup might not reflect "
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                     "your intent\n");
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    }

    return state.floppy;
}

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static void pc_cmos_init_late(void *opaque)
{
    pc_cmos_init_late_arg *arg = opaque;
    ISADevice *s = arg->rtc_state;
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    int16_t cylinders;
    int8_t heads, sectors;
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    int val;
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    int i, trans;
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    val = 0;
    if (ide_get_geometry(arg->idebus[0], 0,
                         &cylinders, &heads, &sectors) >= 0) {
        cmos_init_hd(s, 0x19, 0x1b, cylinders, heads, sectors);
        val |= 0xf0;
    }
    if (ide_get_geometry(arg->idebus[0], 1,
                         &cylinders, &heads, &sectors) >= 0) {
        cmos_init_hd(s, 0x1a, 0x24, cylinders, heads, sectors);
        val |= 0x0f;
    }
    rtc_set_memory(s, 0x12, val);
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    val = 0;
    for (i = 0; i < 4; i++) {
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        /* NOTE: ide_get_geometry() returns the physical
           geometry.  It is always such that: 1 <= sects <= 63, 1
           <= heads <= 16, 1 <= cylinders <= 16383. The BIOS
           geometry can be different if a translation is done. */
        if (ide_get_geometry(arg->idebus[i / 2], i % 2,
                             &cylinders, &heads, &sectors) >= 0) {
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            trans = ide_get_bios_chs_trans(arg->idebus[i / 2], i % 2) - 1;
            assert((trans & ~3) == 0);
            val |= trans << (i * 2);
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        }
    }
    rtc_set_memory(s, 0x39, val);

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    pc_cmos_init_floppy(s, pc_find_fdc0());
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    qemu_unregister_reset(pc_cmos_init_late, opaque);
}

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void pc_cmos_init(PCMachineState *pcms,
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                  BusState *idebus0, BusState *idebus1,
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                  ISADevice *s)
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{
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    int val;
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    static pc_cmos_init_late_arg arg;
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    /* various important CMOS locations needed by PC/Bochs bios */
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    /* memory size */
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    /* base memory (first MiB) */
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    val = MIN(pcms->below_4g_mem_size / 1024, 640);
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    rtc_set_memory(s, 0x15, val);
    rtc_set_memory(s, 0x16, val >> 8);
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    /* extended memory (next 64MiB) */
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    if (pcms->below_4g_mem_size > 1024 * 1024) {
        val = (pcms->below_4g_mem_size - 1024 * 1024) / 1024;
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    } else {
        val = 0;
    }
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    if (val > 65535)
        val = 65535;
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    rtc_set_memory(s, 0x17, val);
    rtc_set_memory(s, 0x18, val >> 8);
    rtc_set_memory(s, 0x30, val);
    rtc_set_memory(s, 0x31, val >> 8);
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    /* memory between 16MiB and 4GiB */
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    if (pcms->below_4g_mem_size > 16 * 1024 * 1024) {
        val = (pcms->below_4g_mem_size - 16 * 1024 * 1024) / 65536;
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    } else {
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        val = 0;
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    }
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    if (val > 65535)
        val = 65535;
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    rtc_set_memory(s, 0x34, val);
    rtc_set_memory(s, 0x35, val >> 8);
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    /* memory above 4GiB */
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    val = pcms->above_4g_mem_size / 65536;
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    rtc_set_memory(s, 0x5b, val);
    rtc_set_memory(s, 0x5c, val >> 8);
    rtc_set_memory(s, 0x5d, val >> 16);
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    object_property_add_link(OBJECT(pcms), "rtc_state",
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                             TYPE_ISA_DEVICE,
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                             (Object **)&pcms->rtc,
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                             object_property_allow_set_link,
                             OBJ_PROP_LINK_UNREF_ON_RELEASE, &error_abort);
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    object_property_set_link(OBJECT(pcms), OBJECT(s),
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                             "rtc_state", &error_abort);
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    set_boot_dev(s, MACHINE(pcms)->boot_order, &error_fatal);
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    val = 0;
    val |= 0x02; /* FPU is there */
    val |= 0x04; /* PS/2 mouse installed */
    rtc_set_memory(s, REG_EQUIPMENT_BYTE, val);

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    /* hard drives and FDC */
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    arg.rtc_state = s;
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    arg.idebus[0] = idebus0;
    arg.idebus[1] = idebus1;
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    qemu_register_reset(pc_cmos_init_late, &arg);
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}

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#define TYPE_PORT92 "port92"
#define PORT92(obj) OBJECT_CHECK(Port92State, (obj), TYPE_PORT92)

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/* port 92 stuff: could be split off */
typedef struct Port92State {
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    ISADevice parent_obj;

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    MemoryRegion io;
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    uint8_t outport;
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    qemu_irq a20_out;
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} Port92State;

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static void port92_write(void *opaque, hwaddr addr, uint64_t val,
                         unsigned size)
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{
    Port92State *s = opaque;
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    int oldval = s->outport;
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    DPRINTF("port92: write 0x%02" PRIx64 "\n", val);
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    s->outport = val;
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    qemu_set_irq(s->a20_out, (val >> 1) & 1);
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    if ((val & 1) && !(oldval & 1)) {
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        qemu_system_reset_request();
    }
}

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static uint64_t port92_read(void *opaque, hwaddr addr,
                            unsigned size)
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{
    Port92State *s = opaque;
    uint32_t ret;

    ret = s->outport;
    DPRINTF("port92: read 0x%02x\n", ret);
    return ret;
}

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static void port92_init(ISADevice *dev, qemu_irq a20_out)
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{
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    qdev_connect_gpio_out_named(DEVICE(dev), PORT92_A20_LINE, 0, a20_out);
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}

static const VMStateDescription vmstate_port92_isa = {
    .name = "port92",
    .version_id = 1,
    .minimum_version_id = 1,
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    .fields = (VMStateField[]) {
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        VMSTATE_UINT8(outport, Port92State),
        VMSTATE_END_OF_LIST()
    }
};

static void port92_reset(DeviceState *d)
{
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    Port92State *s = PORT92(d);
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    s->outport &= ~1;
}

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static const MemoryRegionOps port92_ops = {
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    .read = port92_read,
    .write = port92_write,
    .impl = {
        .min_access_size = 1,
        .max_access_size = 1,
    },
    .endianness = DEVICE_LITTLE_ENDIAN,
563 564
};

565
static void port92_initfn(Object *obj)
566
{
567
    Port92State *s = PORT92(obj);
568

569
    memory_region_init_io(&s->io, OBJECT(s), &port92_ops, s, "port92", 1);
570

571
    s->outport = 0;
E
Efimov Vasily 已提交
572 573

    qdev_init_gpio_out_named(DEVICE(obj), &s->a20_out, PORT92_A20_LINE, 1);
574 575 576 577 578 579 580 581
}

static void port92_realizefn(DeviceState *dev, Error **errp)
{
    ISADevice *isadev = ISA_DEVICE(dev);
    Port92State *s = PORT92(dev);

    isa_register_ioport(isadev, &s->io, 0x92);
582 583
}

584 585
static void port92_class_initfn(ObjectClass *klass, void *data)
{
586
    DeviceClass *dc = DEVICE_CLASS(klass);
587 588

    dc->realize = port92_realizefn;
589 590
    dc->reset = port92_reset;
    dc->vmsd = &vmstate_port92_isa;
591 592 593 594 595 596
    /*
     * Reason: unlike ordinary ISA devices, this one needs additional
     * wiring: its A20 output line needs to be wired up by
     * port92_init().
     */
    dc->cannot_instantiate_with_device_add_yet = true;
597 598
}

599
static const TypeInfo port92_info = {
A
Andreas Färber 已提交
600
    .name          = TYPE_PORT92,
601 602
    .parent        = TYPE_ISA_DEVICE,
    .instance_size = sizeof(Port92State),
603
    .instance_init = port92_initfn,
604
    .class_init    = port92_class_initfn,
605 606
};

A
Andreas Färber 已提交
607
static void port92_register_types(void)
608
{
609
    type_register_static(&port92_info);
610
}
A
Andreas Färber 已提交
611 612

type_init(port92_register_types)
613

B
Blue Swirl 已提交
614
static void handle_a20_line_change(void *opaque, int irq, int level)
615
{
616
    X86CPU *cpu = opaque;
B
bellard 已提交
617

B
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    /* XXX: send to all CPUs ? */
619
    /* XXX: add logic to handle multiple A20 line sources */
620
    x86_cpu_set_a20(cpu, level);
B
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621 622
}

J
Jes Sorensen 已提交
623 624
int e820_add_entry(uint64_t address, uint64_t length, uint32_t type)
{
G
Gerd Hoffmann 已提交
625
    int index = le32_to_cpu(e820_reserve.count);
J
Jes Sorensen 已提交
626 627
    struct e820_entry *entry;

G
Gerd Hoffmann 已提交
628 629 630 631 632 633 634 635 636 637 638 639 640
    if (type != E820_RAM) {
        /* old FW_CFG_E820_TABLE entry -- reservations only */
        if (index >= E820_NR_ENTRIES) {
            return -EBUSY;
        }
        entry = &e820_reserve.entry[index++];

        entry->address = cpu_to_le64(address);
        entry->length = cpu_to_le64(length);
        entry->type = cpu_to_le32(type);

        e820_reserve.count = cpu_to_le32(index);
    }
J
Jes Sorensen 已提交
641

G
Gerd Hoffmann 已提交
642
    /* new "etc/e820" file -- include ram too */
643
    e820_table = g_renew(struct e820_entry, e820_table, e820_entries + 1);
G
Gerd Hoffmann 已提交
644 645 646 647
    e820_table[e820_entries].address = cpu_to_le64(address);
    e820_table[e820_entries].length = cpu_to_le64(length);
    e820_table[e820_entries].type = cpu_to_le32(type);
    e820_entries++;
J
Jes Sorensen 已提交
648

G
Gerd Hoffmann 已提交
649
    return e820_entries;
J
Jes Sorensen 已提交
650 651
}

652 653 654 655 656 657 658 659 660 661 662 663 664 665 666
int e820_get_num_entries(void)
{
    return e820_entries;
}

bool e820_get_entry(int idx, uint32_t type, uint64_t *address, uint64_t *length)
{
    if (idx < e820_entries && e820_table[idx].type == cpu_to_le32(type)) {
        *address = le64_to_cpu(e820_table[idx].address);
        *length = le64_to_cpu(e820_table[idx].length);
        return true;
    }
    return false;
}

667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688
/* Enables contiguous-apic-ID mode, for compatibility */
static bool compat_apic_id_mode;

void enable_compat_apic_id_mode(void)
{
    compat_apic_id_mode = true;
}

/* Calculates initial APIC ID for a specific CPU index
 *
 * Currently we need to be able to calculate the APIC ID from the CPU index
 * alone (without requiring a CPU object), as the QEMU<->Seabios interfaces have
 * no concept of "CPU index", and the NUMA tables on fw_cfg need the APIC ID of
 * all CPUs up to max_cpus.
 */
static uint32_t x86_cpu_apic_id_from_index(unsigned int cpu_index)
{
    uint32_t correct_id;
    static bool warned;

    correct_id = x86_apicid_from_cpu_idx(smp_cores, smp_threads, cpu_index);
    if (compat_apic_id_mode) {
689
        if (cpu_index != correct_id && !warned && !qtest_enabled()) {
690 691 692 693 694 695 696 697 698 699
            error_report("APIC IDs set in compatibility mode, "
                         "CPU topology won't match the configuration");
            warned = true;
        }
        return cpu_index;
    } else {
        return correct_id;
    }
}

700
static void pc_build_smbios(FWCfgState *fw_cfg)
B
bellard 已提交
701
{
702 703
    uint8_t *smbios_tables, *smbios_anchor;
    size_t smbios_tables_len, smbios_anchor_len;
704 705
    struct smbios_phys_mem_area *mem_array;
    unsigned i, array_count;
706 707 708 709 710 711 712

    smbios_tables = smbios_get_table_legacy(&smbios_tables_len);
    if (smbios_tables) {
        fw_cfg_add_bytes(fw_cfg, FW_CFG_SMBIOS_ENTRIES,
                         smbios_tables, smbios_tables_len);
    }

713 714 715 716 717 718 719 720 721 722 723 724 725
    /* build the array of physical mem area from e820 table */
    mem_array = g_malloc0(sizeof(*mem_array) * e820_get_num_entries());
    for (i = 0, array_count = 0; i < e820_get_num_entries(); i++) {
        uint64_t addr, len;

        if (e820_get_entry(i, E820_RAM, &addr, &len)) {
            mem_array[array_count].address = addr;
            mem_array[array_count].length = len;
            array_count++;
        }
    }
    smbios_get_tables(mem_array, array_count,
                      &smbios_tables, &smbios_tables_len,
726
                      &smbios_anchor, &smbios_anchor_len);
727 728
    g_free(mem_array);

729 730 731 732 733 734 735 736
    if (smbios_anchor) {
        fw_cfg_add_file(fw_cfg, "etc/smbios/smbios-tables",
                        smbios_tables, smbios_tables_len);
        fw_cfg_add_file(fw_cfg, "etc/smbios/smbios-anchor",
                        smbios_anchor, smbios_anchor_len);
    }
}

737
static FWCfgState *bochs_bios_init(AddressSpace *as, PCMachineState *pcms)
738 739
{
    FWCfgState *fw_cfg;
740 741
    uint64_t *numa_fw_cfg;
    int i, j;
742

743
    fw_cfg = fw_cfg_init_io_dma(FW_CFG_IO_BASE, FW_CFG_IO_BASE + 4, as);
M
Marc Marí 已提交
744

745 746 747 748 749 750 751 752 753 754 755 756 757 758
    /* FW_CFG_MAX_CPUS is a bit confusing/problematic on x86:
     *
     * SeaBIOS needs FW_CFG_MAX_CPUS for CPU hotplug, but the CPU hotplug
     * QEMU<->SeaBIOS interface is not based on the "CPU index", but on the APIC
     * ID of hotplugged CPUs[1]. This means that FW_CFG_MAX_CPUS is not the
     * "maximum number of CPUs", but the "limit to the APIC ID values SeaBIOS
     * may see".
     *
     * So, this means we must not use max_cpus, here, but the maximum possible
     * APIC ID value, plus one.
     *
     * [1] The only kind of "CPU identifier" used between SeaBIOS and QEMU is
     *     the APIC ID, not the "CPU index"
     */
759
    fw_cfg_add_i16(fw_cfg, FW_CFG_MAX_CPUS, (uint16_t)pcms->apic_id_limit);
760
    fw_cfg_add_i64(fw_cfg, FW_CFG_RAM_SIZE, (uint64_t)ram_size);
761 762
    fw_cfg_add_bytes(fw_cfg, FW_CFG_ACPI_TABLES,
                     acpi_tables, acpi_tables_len);
763
    fw_cfg_add_i32(fw_cfg, FW_CFG_IRQ0_OVERRIDE, kvm_allows_irq0_override());
764

765
    fw_cfg_add_bytes(fw_cfg, FW_CFG_E820_TABLE,
G
Gerd Hoffmann 已提交
766 767 768
                     &e820_reserve, sizeof(e820_reserve));
    fw_cfg_add_file(fw_cfg, "etc/e820", e820_table,
                    sizeof(struct e820_entry) * e820_entries);
769

770
    fw_cfg_add_bytes(fw_cfg, FW_CFG_HPET, &hpet_cfg, sizeof(hpet_cfg));
771 772 773 774
    /* allocate memory for the NUMA channel: one (64bit) word for the number
     * of nodes, one word for each VCPU->node and one word for each node to
     * hold the amount of memory.
     */
775
    numa_fw_cfg = g_new0(uint64_t, 1 + pcms->apic_id_limit + nb_numa_nodes);
776
    numa_fw_cfg[0] = cpu_to_le64(nb_numa_nodes);
777
    for (i = 0; i < max_cpus; i++) {
778
        unsigned int apic_id = x86_cpu_apic_id_from_index(i);
779
        assert(apic_id < pcms->apic_id_limit);
780
        for (j = 0; j < nb_numa_nodes; j++) {
781
            if (test_bit(i, numa_info[j].node_cpu)) {
782
                numa_fw_cfg[apic_id + 1] = cpu_to_le64(j);
783 784 785 786 787
                break;
            }
        }
    }
    for (i = 0; i < nb_numa_nodes; i++) {
788 789
        numa_fw_cfg[pcms->apic_id_limit + 1 + i] =
            cpu_to_le64(numa_info[i].node_mem);
790
    }
791
    fw_cfg_add_bytes(fw_cfg, FW_CFG_NUMA, numa_fw_cfg,
792
                     (1 + pcms->apic_id_limit + nb_numa_nodes) *
793
                     sizeof(*numa_fw_cfg));
A
Alexander Graf 已提交
794 795

    return fw_cfg;
B
bellard 已提交
796 797
}

T
ths 已提交
798 799 800 801 802 803 804 805 806 807 808 809 810 811
static long get_file_size(FILE *f)
{
    long where, size;

    /* XXX: on Unix systems, using fstat() probably makes more sense */

    where = ftell(f);
    fseek(f, 0, SEEK_END);
    size = ftell(f);
    fseek(f, where, SEEK_SET);

    return size;
}

812 813 814 815 816 817 818 819 820 821 822 823 824 825
/* setup_data types */
#define SETUP_NONE     0
#define SETUP_E820_EXT 1
#define SETUP_DTB      2
#define SETUP_PCI      3
#define SETUP_EFI      4

struct setup_data {
    uint64_t next;
    uint32_t type;
    uint32_t len;
    uint8_t data[0];
} __attribute__((packed));

826 827
static void load_linux(PCMachineState *pcms,
                       FWCfgState *fw_cfg)
T
ths 已提交
828 829
{
    uint16_t protocol;
P
Paul Brook 已提交
830
    int setup_size, kernel_size, initrd_size = 0, cmdline_size;
831
    int dtb_size, setup_data_offset;
T
ths 已提交
832
    uint32_t initrd_max;
833
    uint8_t header[8192], *setup, *kernel, *initrd_data;
A
Avi Kivity 已提交
834
    hwaddr real_addr, prot_addr, cmdline_addr, initrd_addr = 0;
835
    FILE *f;
P
Pascal Terjan 已提交
836
    char *vmode;
837
    MachineState *machine = MACHINE(pcms);
838
    PCMachineClass *pcmc = PC_MACHINE_GET_CLASS(pcms);
839
    struct setup_data *setup_data;
840 841
    const char *kernel_filename = machine->kernel_filename;
    const char *initrd_filename = machine->initrd_filename;
842
    const char *dtb_filename = machine->dtb;
843
    const char *kernel_cmdline = machine->kernel_cmdline;
T
ths 已提交
844 845 846 847 848 849 850

    /* Align to 16 bytes as a paranoia measure */
    cmdline_size = (strlen(kernel_cmdline)+16) & ~15;

    /* load the kernel header */
    f = fopen(kernel_filename, "rb");
    if (!f || !(kernel_size = get_file_size(f)) ||
L
liguang 已提交
851 852 853 854 855
        fread(header, 1, MIN(ARRAY_SIZE(header), kernel_size), f) !=
        MIN(ARRAY_SIZE(header), kernel_size)) {
        fprintf(stderr, "qemu: could not load kernel '%s': %s\n",
                kernel_filename, strerror(errno));
        exit(1);
T
ths 已提交
856 857 858
    }

    /* kernel protocol version */
B
bellard 已提交
859
#if 0
T
ths 已提交
860
    fprintf(stderr, "header magic: %#x\n", ldl_p(header+0x202));
B
bellard 已提交
861
#endif
L
liguang 已提交
862 863 864 865 866
    if (ldl_p(header+0x202) == 0x53726448) {
        protocol = lduw_p(header+0x206);
    } else {
        /* This looks like a multiboot kernel. If it is, let's stop
           treating it like a Linux kernel. */
867
        if (load_multiboot(fw_cfg, f, kernel_filename, initrd_filename,
L
liguang 已提交
868
                           kernel_cmdline, kernel_size, header)) {
B
Blue Swirl 已提交
869
            return;
L
liguang 已提交
870 871
        }
        protocol = 0;
A
Alexander Graf 已提交
872
    }
T
ths 已提交
873 874

    if (protocol < 0x200 || !(header[0x211] & 0x01)) {
L
liguang 已提交
875 876 877 878
        /* Low kernel */
        real_addr    = 0x90000;
        cmdline_addr = 0x9a000 - cmdline_size;
        prot_addr    = 0x10000;
T
ths 已提交
879
    } else if (protocol < 0x202) {
L
liguang 已提交
880 881 882 883
        /* High but ancient kernel */
        real_addr    = 0x90000;
        cmdline_addr = 0x9a000 - cmdline_size;
        prot_addr    = 0x100000;
T
ths 已提交
884
    } else {
L
liguang 已提交
885 886 887 888
        /* High and recent kernel */
        real_addr    = 0x10000;
        cmdline_addr = 0x20000;
        prot_addr    = 0x100000;
T
ths 已提交
889 890
    }

B
bellard 已提交
891
#if 0
T
ths 已提交
892
    fprintf(stderr,
L
liguang 已提交
893 894 895 896 897 898
            "qemu: real_addr     = 0x" TARGET_FMT_plx "\n"
            "qemu: cmdline_addr  = 0x" TARGET_FMT_plx "\n"
            "qemu: prot_addr     = 0x" TARGET_FMT_plx "\n",
            real_addr,
            cmdline_addr,
            prot_addr);
B
bellard 已提交
899
#endif
T
ths 已提交
900 901

    /* highest address for loading the initrd */
L
liguang 已提交
902 903 904 905 906
    if (protocol >= 0x203) {
        initrd_max = ldl_p(header+0x22c);
    } else {
        initrd_max = 0x37ffffff;
    }
T
ths 已提交
907

908 909
    if (initrd_max >= pcms->below_4g_mem_size - pcmc->acpi_data_size) {
        initrd_max = pcms->below_4g_mem_size - pcmc->acpi_data_size - 1;
910
    }
T
ths 已提交
911

912 913
    fw_cfg_add_i32(fw_cfg, FW_CFG_CMDLINE_ADDR, cmdline_addr);
    fw_cfg_add_i32(fw_cfg, FW_CFG_CMDLINE_SIZE, strlen(kernel_cmdline)+1);
914
    fw_cfg_add_string(fw_cfg, FW_CFG_CMDLINE_DATA, kernel_cmdline);
T
ths 已提交
915 916

    if (protocol >= 0x202) {
L
liguang 已提交
917
        stl_p(header+0x228, cmdline_addr);
T
ths 已提交
918
    } else {
L
liguang 已提交
919 920
        stw_p(header+0x20, 0xA33F);
        stw_p(header+0x22, cmdline_addr-real_addr);
T
ths 已提交
921 922
    }

P
Pascal Terjan 已提交
923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940
    /* handle vga= parameter */
    vmode = strstr(kernel_cmdline, "vga=");
    if (vmode) {
        unsigned int video_mode;
        /* skip "vga=" */
        vmode += 4;
        if (!strncmp(vmode, "normal", 6)) {
            video_mode = 0xffff;
        } else if (!strncmp(vmode, "ext", 3)) {
            video_mode = 0xfffe;
        } else if (!strncmp(vmode, "ask", 3)) {
            video_mode = 0xfffd;
        } else {
            video_mode = strtol(vmode, NULL, 0);
        }
        stw_p(header+0x1fa, video_mode);
    }

T
ths 已提交
941
    /* loader type */
S
Stefan Weil 已提交
942
    /* High nybble = B reserved for QEMU; low nybble is revision number.
T
ths 已提交
943 944
       If this code is substantially changed, you may want to consider
       incrementing the revision. */
L
liguang 已提交
945 946 947
    if (protocol >= 0x200) {
        header[0x210] = 0xB0;
    }
T
ths 已提交
948 949
    /* heap */
    if (protocol >= 0x201) {
L
liguang 已提交
950 951
        header[0x211] |= 0x80;	/* CAN_USE_HEAP */
        stw_p(header+0x224, cmdline_addr-real_addr-0x200);
T
ths 已提交
952 953 954 955
    }

    /* load initrd */
    if (initrd_filename) {
L
liguang 已提交
956 957 958 959
        if (protocol < 0x200) {
            fprintf(stderr, "qemu: linux kernel too old to load a ram disk\n");
            exit(1);
        }
T
ths 已提交
960

L
liguang 已提交
961
        initrd_size = get_image_size(initrd_filename);
M
M. Mohan Kumar 已提交
962
        if (initrd_size < 0) {
963 964
            fprintf(stderr, "qemu: error reading initrd %s: %s\n",
                    initrd_filename, strerror(errno));
M
M. Mohan Kumar 已提交
965 966 967
            exit(1);
        }

968
        initrd_addr = (initrd_max-initrd_size) & ~4095;
969

970
        initrd_data = g_malloc(initrd_size);
971 972 973 974 975
        load_image(initrd_filename, initrd_data);

        fw_cfg_add_i32(fw_cfg, FW_CFG_INITRD_ADDR, initrd_addr);
        fw_cfg_add_i32(fw_cfg, FW_CFG_INITRD_SIZE, initrd_size);
        fw_cfg_add_bytes(fw_cfg, FW_CFG_INITRD_DATA, initrd_data, initrd_size);
T
ths 已提交
976

L
liguang 已提交
977 978
        stl_p(header+0x218, initrd_addr);
        stl_p(header+0x21c, initrd_size);
T
ths 已提交
979 980
    }

981
    /* load kernel and setup */
T
ths 已提交
982
    setup_size = header[0x1f1];
L
liguang 已提交
983 984 985
    if (setup_size == 0) {
        setup_size = 4;
    }
T
ths 已提交
986
    setup_size = (setup_size+1)*512;
987 988 989 990
    if (setup_size > kernel_size) {
        fprintf(stderr, "qemu: invalid kernel header\n");
        exit(1);
    }
991
    kernel_size -= setup_size;
T
ths 已提交
992

993 994
    setup  = g_malloc(setup_size);
    kernel = g_malloc(kernel_size);
995
    fseek(f, 0, SEEK_SET);
996 997 998 999 1000 1001 1002 1003
    if (fread(setup, 1, setup_size, f) != setup_size) {
        fprintf(stderr, "fread() failed\n");
        exit(1);
    }
    if (fread(kernel, 1, kernel_size, f) != kernel_size) {
        fprintf(stderr, "fread() failed\n");
        exit(1);
    }
T
ths 已提交
1004
    fclose(f);
1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033

    /* append dtb to kernel */
    if (dtb_filename) {
        if (protocol < 0x209) {
            fprintf(stderr, "qemu: Linux kernel too old to load a dtb\n");
            exit(1);
        }

        dtb_size = get_image_size(dtb_filename);
        if (dtb_size <= 0) {
            fprintf(stderr, "qemu: error reading dtb %s: %s\n",
                    dtb_filename, strerror(errno));
            exit(1);
        }

        setup_data_offset = QEMU_ALIGN_UP(kernel_size, 16);
        kernel_size = setup_data_offset + sizeof(struct setup_data) + dtb_size;
        kernel = g_realloc(kernel, kernel_size);

        stq_p(header+0x250, prot_addr + setup_data_offset);

        setup_data = (struct setup_data *)(kernel + setup_data_offset);
        setup_data->next = 0;
        setup_data->type = cpu_to_le32(SETUP_DTB);
        setup_data->len = cpu_to_le32(dtb_size);

        load_image_size(dtb_filename, setup_data->data, dtb_size);
    }

1034
    memcpy(setup, header, MIN(sizeof(header), setup_size));
1035 1036 1037 1038 1039 1040 1041 1042 1043

    fw_cfg_add_i32(fw_cfg, FW_CFG_KERNEL_ADDR, prot_addr);
    fw_cfg_add_i32(fw_cfg, FW_CFG_KERNEL_SIZE, kernel_size);
    fw_cfg_add_bytes(fw_cfg, FW_CFG_KERNEL_DATA, kernel, kernel_size);

    fw_cfg_add_i32(fw_cfg, FW_CFG_SETUP_ADDR, real_addr);
    fw_cfg_add_i32(fw_cfg, FW_CFG_SETUP_SIZE, setup_size);
    fw_cfg_add_bytes(fw_cfg, FW_CFG_SETUP_DATA, setup, setup_size);

1044 1045 1046 1047 1048 1049 1050
    if (fw_cfg_dma_enabled(fw_cfg)) {
        option_rom[nb_option_roms].name = "linuxboot_dma.bin";
        option_rom[nb_option_roms].bootindex = 0;
    } else {
        option_rom[nb_option_roms].name = "linuxboot.bin";
        option_rom[nb_option_roms].bootindex = 0;
    }
1051
    nb_option_roms++;
T
ths 已提交
1052 1053
}

B
bellard 已提交
1054 1055
#define NE2000_NB_MAX 6

B
Blue Swirl 已提交
1056 1057 1058
static const int ne2000_io[NE2000_NB_MAX] = { 0x300, 0x320, 0x340, 0x360,
                                              0x280, 0x380 };
static const int ne2000_irq[NE2000_NB_MAX] = { 9, 10, 11, 3, 4, 5 };
B
bellard 已提交
1059

1060
void pc_init_ne2k_isa(ISABus *bus, NICInfo *nd)
1061 1062 1063 1064 1065
{
    static int nb_ne2k = 0;

    if (nb_ne2k == NE2000_NB_MAX)
        return;
1066
    isa_ne2000_init(bus, ne2000_io[nb_ne2k],
G
Gerd Hoffmann 已提交
1067
                    ne2000_irq[nb_ne2k], nd);
1068 1069 1070
    nb_ne2k++;
}

B
Blue Swirl 已提交
1071
DeviceState *cpu_get_current_apic(void)
1072
{
1073 1074
    if (current_cpu) {
        X86CPU *cpu = X86_CPU(current_cpu);
1075
        return cpu->apic_state;
1076 1077 1078 1079 1080
    } else {
        return NULL;
    }
}

1081
void pc_acpi_smi_interrupt(void *opaque, int irq, int level)
B
Blue Swirl 已提交
1082
{
1083
    X86CPU *cpu = opaque;
B
Blue Swirl 已提交
1084 1085

    if (level) {
1086
        cpu_interrupt(CPU(cpu), CPU_INTERRUPT_SMI);
B
Blue Swirl 已提交
1087 1088 1089
    }
}

1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100
static int pc_present_cpus_count(PCMachineState *pcms)
{
    int i, boot_cpus = 0;
    for (i = 0; i < pcms->possible_cpus->len; i++) {
        if (pcms->possible_cpus->cpus[i].cpu) {
            boot_cpus++;
        }
    }
    return boot_cpus;
}

I
Igor Mammedov 已提交
1101
static X86CPU *pc_new_cpu(const char *typename, int64_t apic_id,
C
Chen Fan 已提交
1102
                          Error **errp)
1103
{
1104
    X86CPU *cpu = NULL;
1105 1106
    Error *local_err = NULL;

I
Igor Mammedov 已提交
1107
    cpu = X86_CPU(object_new(typename));
1108 1109 1110 1111 1112 1113

    object_property_set_int(OBJECT(cpu), apic_id, "apic-id", &local_err);
    object_property_set_bool(OBJECT(cpu), true, "realized", &local_err);

    if (local_err) {
        error_propagate(errp, local_err);
1114 1115
        object_unref(OBJECT(cpu));
        cpu = NULL;
1116 1117 1118 1119
    }
    return cpu;
}

1120 1121
void pc_hot_add_cpu(const int64_t id, Error **errp)
{
1122
    X86CPU *cpu;
I
Igor Mammedov 已提交
1123 1124
    ObjectClass *oc;
    PCMachineState *pcms = PC_MACHINE(qdev_get_machine());
1125
    int64_t apic_id = x86_cpu_apic_id_from_index(id);
1126
    Error *local_err = NULL;
1127

1128 1129 1130 1131 1132
    if (id < 0) {
        error_setg(errp, "Invalid CPU id: %" PRIi64, id);
        return;
    }

1133 1134 1135 1136 1137 1138 1139
    if (apic_id >= ACPI_CPU_HOTPLUG_ID_LIMIT) {
        error_setg(errp, "Unable to add CPU: %" PRIi64
                   ", resulting APIC ID (%" PRIi64 ") is too large",
                   id, apic_id);
        return;
    }

I
Igor Mammedov 已提交
1140 1141 1142
    assert(pcms->possible_cpus->cpus[0].cpu); /* BSP is always present */
    oc = OBJECT_CLASS(CPU_GET_CLASS(pcms->possible_cpus->cpus[0].cpu));
    cpu = pc_new_cpu(object_class_get_name(oc), apic_id, &local_err);
1143 1144 1145 1146 1147
    if (local_err) {
        error_propagate(errp, local_err);
        return;
    }
    object_unref(OBJECT(cpu));
1148 1149
}

1150
void pc_cpus_init(PCMachineState *pcms)
1151 1152
{
    int i;
I
Igor Mammedov 已提交
1153 1154 1155 1156
    CPUClass *cc;
    ObjectClass *oc;
    const char *typename;
    gchar **model_pieces;
1157
    X86CPU *cpu = NULL;
1158
    MachineState *machine = MACHINE(pcms);
1159 1160

    /* init CPUs */
1161
    if (machine->cpu_model == NULL) {
1162
#ifdef TARGET_X86_64
1163
        machine->cpu_model = "qemu64";
1164
#else
1165
        machine->cpu_model = "qemu32";
1166 1167 1168
#endif
    }

I
Igor Mammedov 已提交
1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184
    model_pieces = g_strsplit(machine->cpu_model, ",", 2);
    if (!model_pieces[0]) {
        error_report("Invalid/empty CPU model name");
        exit(1);
    }

    oc = cpu_class_by_name(TYPE_X86_CPU, model_pieces[0]);
    if (oc == NULL) {
        error_report("Unable to find CPU definition: %s", model_pieces[0]);
        exit(1);
    }
    typename = object_class_get_name(oc);
    cc = CPU_CLASS(oc);
    cc->parse_features(typename, model_pieces[1], &error_fatal);
    g_strfreev(model_pieces);

1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195
    /* Calculates the limit to CPU APIC ID values
     *
     * Limit for the APIC ID value, so that all
     * CPU APIC IDs are < pcms->apic_id_limit.
     *
     * This is used for FW_CFG_MAX_CPUS. See comments on bochs_bios_init().
     */
    pcms->apic_id_limit = x86_cpu_apic_id_from_index(max_cpus - 1) + 1;
    if (pcms->apic_id_limit > ACPI_CPU_HOTPLUG_ID_LIMIT) {
        error_report("max_cpus is too large. APIC ID of last CPU is %u",
                     pcms->apic_id_limit - 1);
1196 1197 1198
        exit(1);
    }

1199 1200 1201 1202 1203 1204
    pcms->possible_cpus = g_malloc0(sizeof(CPUArchIdList) +
                                    sizeof(CPUArchId) * max_cpus);
    for (i = 0; i < max_cpus; i++) {
        pcms->possible_cpus->cpus[i].arch_id = x86_cpu_apic_id_from_index(i);
        pcms->possible_cpus->len++;
        if (i < smp_cpus) {
I
Igor Mammedov 已提交
1205
            cpu = pc_new_cpu(typename, x86_cpu_apic_id_from_index(i),
1206 1207 1208
                             &error_fatal);
            object_unref(OBJECT(cpu));
        }
1209
    }
1210

1211 1212
    /* tell smbios about cpuid version and features */
    smbios_set_cpuid(cpu->env.cpuid_version, cpu->env.features[FEAT_1_EDX]);
1213 1214
}

1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242
static void pc_build_feature_control_file(PCMachineState *pcms)
{
    X86CPU *cpu = X86_CPU(pcms->possible_cpus->cpus[0].cpu);
    CPUX86State *env = &cpu->env;
    uint32_t unused, ecx, edx;
    uint64_t feature_control_bits = 0;
    uint64_t *val;

    cpu_x86_cpuid(env, 1, 0, &unused, &unused, &ecx, &edx);
    if (ecx & CPUID_EXT_VMX) {
        feature_control_bits |= FEATURE_CONTROL_VMXON_ENABLED_OUTSIDE_SMX;
    }

    if ((edx & (CPUID_EXT2_MCE | CPUID_EXT2_MCA)) ==
        (CPUID_EXT2_MCE | CPUID_EXT2_MCA) &&
        (env->mcg_cap & MCG_LMCE_P)) {
        feature_control_bits |= FEATURE_CONTROL_LMCE;
    }

    if (!feature_control_bits) {
        return;
    }

    val = g_malloc(sizeof(*val));
    *val = cpu_to_le64(feature_control_bits | FEATURE_CONTROL_LOCKED);
    fw_cfg_add_file(pcms->fw_cfg, "etc/msr_feature_control", val, sizeof(*val));
}

1243
static
1244
void pc_machine_done(Notifier *notifier, void *data)
1245
{
1246 1247 1248
    PCMachineState *pcms = container_of(notifier,
                                        PCMachineState, machine_done);
    PCIBus *bus = pcms->bus;
1249

1250 1251 1252
    /* set the number of CPUs */
    rtc_set_memory(pcms->rtc, 0x5f, pc_present_cpus_count(pcms) - 1);

1253 1254 1255 1256 1257 1258 1259 1260 1261
    if (bus) {
        int extra_hosts = 0;

        QLIST_FOREACH(bus, &bus->child, sibling) {
            /* look for expander root buses */
            if (pci_bus_is_root(bus)) {
                extra_hosts++;
            }
        }
1262
        if (extra_hosts && pcms->fw_cfg) {
1263 1264
            uint64_t *val = g_malloc(sizeof(*val));
            *val = cpu_to_le64(extra_hosts);
1265
            fw_cfg_add_file(pcms->fw_cfg,
1266 1267 1268 1269
                    "etc/extra-pci-roots", val, sizeof(*val));
        }
    }

1270
    acpi_setup();
1271 1272
    if (pcms->fw_cfg) {
        pc_build_smbios(pcms->fw_cfg);
1273
        pc_build_feature_control_file(pcms);
1274
    }
1275 1276
}

1277
void pc_guest_info_init(PCMachineState *pcms)
1278
{
1279
    int i;
M
Michael S. Tsirkin 已提交
1280

1281 1282 1283 1284
    pcms->apic_xrupt_override = kvm_allows_irq0_override();
    pcms->numa_nodes = nb_numa_nodes;
    pcms->node_mem = g_malloc0(pcms->numa_nodes *
                                    sizeof *pcms->node_mem);
1285
    for (i = 0; i < nb_numa_nodes; i++) {
1286
        pcms->node_mem[i] = numa_info[i].node_mem;
1287 1288
    }

1289 1290
    pcms->machine_done.notify = pc_machine_done;
    qemu_add_machine_init_done_notifier(&pcms->machine_done);
1291 1292
}

1293 1294 1295
/* setup pci memory address space mapping into system address space */
void pc_pci_as_mapping_init(Object *owner, MemoryRegion *system_memory,
                            MemoryRegion *pci_address_space)
1296
{
1297 1298 1299
    /* Set to lower priority than RAM */
    memory_region_add_subregion_overlap(system_memory, 0x0,
                                        pci_address_space, -1);
1300 1301
}

G
Gerd Hoffmann 已提交
1302 1303
void pc_acpi_init(const char *default_dsdt)
{
1304
    char *filename;
G
Gerd Hoffmann 已提交
1305 1306 1307 1308 1309 1310 1311 1312 1313

    if (acpi_tables != NULL) {
        /* manually set via -acpitable, leave it alone */
        return;
    }

    filename = qemu_find_file(QEMU_FILE_TYPE_BIOS, default_dsdt);
    if (filename == NULL) {
        fprintf(stderr, "WARNING: failed to find %s\n", default_dsdt);
1314
    } else {
1315 1316
        QemuOpts *opts = qemu_opts_create(qemu_find_opts("acpi"), NULL, 0,
                                          &error_abort);
1317
        Error *err = NULL;
G
Gerd Hoffmann 已提交
1318

1319
        qemu_opt_set(opts, "file", filename, &error_abort);
1320

1321
        acpi_table_add_builtin(opts, &err);
1322
        if (err) {
1323 1324
            error_reportf_err(err, "WARNING: failed to load %s: ",
                              filename);
1325 1326
        }
        g_free(filename);
G
Gerd Hoffmann 已提交
1327 1328 1329
    }
}

1330
void xen_load_linux(PCMachineState *pcms)
1331 1332 1333 1334
{
    int i;
    FWCfgState *fw_cfg;

1335
    assert(MACHINE(pcms)->kernel_filename != NULL);
1336

1337
    fw_cfg = fw_cfg_init_io(FW_CFG_IO_BASE);
1338 1339
    rom_set_fw(fw_cfg);

1340
    load_linux(pcms, fw_cfg);
1341 1342
    for (i = 0; i < nb_option_roms; i++) {
        assert(!strcmp(option_rom[i].name, "linuxboot.bin") ||
1343
               !strcmp(option_rom[i].name, "linuxboot_dma.bin") ||
1344 1345 1346
               !strcmp(option_rom[i].name, "multiboot.bin"));
        rom_add_option(option_rom[i].name, option_rom[i].bootindex);
    }
1347
    pcms->fw_cfg = fw_cfg;
1348 1349
}

1350 1351 1352 1353
void pc_memory_init(PCMachineState *pcms,
                    MemoryRegion *system_memory,
                    MemoryRegion *rom_memory,
                    MemoryRegion **ram_memory)
B
bellard 已提交
1354
{
1355 1356
    int linux_boot, i;
    MemoryRegion *ram, *option_rom_mr;
1357
    MemoryRegion *ram_below_4g, *ram_above_4g;
L
Laszlo Ersek 已提交
1358
    FWCfgState *fw_cfg;
1359
    MachineState *machine = MACHINE(pcms);
1360
    PCMachineClass *pcmc = PC_MACHINE_GET_CLASS(pcms);
1361

1362 1363
    assert(machine->ram_size == pcms->below_4g_mem_size +
                                pcms->above_4g_mem_size);
1364 1365

    linux_boot = (machine->kernel_filename != NULL);
B
bellard 已提交
1366

1367
    /* Allocate RAM.  We allocate it as a single memory region and use
D
Dong Xu Wang 已提交
1368
     * aliases to address portions of it, mostly for backwards compatibility
1369 1370
     * with older qemus that used qemu_ram_alloc().
     */
1371
    ram = g_malloc(sizeof(*ram));
1372 1373
    memory_region_allocate_system_memory(ram, NULL, "pc.ram",
                                         machine->ram_size);
A
Avi Kivity 已提交
1374
    *ram_memory = ram;
1375
    ram_below_4g = g_malloc(sizeof(*ram_below_4g));
1376
    memory_region_init_alias(ram_below_4g, NULL, "ram-below-4g", ram,
1377
                             0, pcms->below_4g_mem_size);
1378
    memory_region_add_subregion(system_memory, 0, ram_below_4g);
1379 1380
    e820_add_entry(0, pcms->below_4g_mem_size, E820_RAM);
    if (pcms->above_4g_mem_size > 0) {
1381
        ram_above_4g = g_malloc(sizeof(*ram_above_4g));
1382
        memory_region_init_alias(ram_above_4g, NULL, "ram-above-4g", ram,
1383 1384
                                 pcms->below_4g_mem_size,
                                 pcms->above_4g_mem_size);
1385 1386
        memory_region_add_subregion(system_memory, 0x100000000ULL,
                                    ram_above_4g);
1387
        e820_add_entry(0x100000000ULL, pcms->above_4g_mem_size, E820_RAM);
1388
    }
1389

1390
    if (!pcmc->has_reserved_memory &&
1391
        (machine->ram_slots ||
1392
         (machine->maxram_size > machine->ram_size))) {
1393 1394 1395 1396 1397 1398 1399
        MachineClass *mc = MACHINE_GET_CLASS(machine);

        error_report("\"-memory 'slots|maxmem'\" is not supported by: %s",
                     mc->name);
        exit(EXIT_FAILURE);
    }

1400
    /* initialize hotplug memory address space */
1401
    if (pcmc->has_reserved_memory &&
1402
        (machine->ram_size < machine->maxram_size)) {
1403
        ram_addr_t hotplug_mem_size =
1404
            machine->maxram_size - machine->ram_size;
1405

1406 1407 1408 1409 1410 1411
        if (machine->ram_slots > ACPI_MAX_RAM_SLOTS) {
            error_report("unsupported amount of memory slots: %"PRIu64,
                         machine->ram_slots);
            exit(EXIT_FAILURE);
        }

1412 1413 1414 1415 1416 1417 1418
        if (QEMU_ALIGN_UP(machine->maxram_size,
                          TARGET_PAGE_SIZE) != machine->maxram_size) {
            error_report("maximum memory size must by aligned to multiple of "
                         "%d bytes", TARGET_PAGE_SIZE);
            exit(EXIT_FAILURE);
        }

1419
        pcms->hotplug_memory.base =
1420
            ROUND_UP(0x100000000ULL + pcms->above_4g_mem_size, 1ULL << 30);
1421

1422
        if (pcmc->enforce_aligned_dimm) {
1423 1424 1425 1426
            /* size hotplug region assuming 1G page max alignment per slot */
            hotplug_mem_size += (1ULL << 30) * machine->ram_slots;
        }

1427
        if ((pcms->hotplug_memory.base + hotplug_mem_size) <
1428 1429 1430 1431 1432 1433
            hotplug_mem_size) {
            error_report("unsupported amount of maximum memory: " RAM_ADDR_FMT,
                         machine->maxram_size);
            exit(EXIT_FAILURE);
        }

1434
        memory_region_init(&pcms->hotplug_memory.mr, OBJECT(pcms),
1435
                           "hotplug-memory", hotplug_mem_size);
1436 1437
        memory_region_add_subregion(system_memory, pcms->hotplug_memory.base,
                                    &pcms->hotplug_memory.mr);
1438
    }
1439 1440

    /* Initialize PC system firmware */
1441
    pc_system_firmware_init(rom_memory, !pcmc->pci_enabled);
1442

1443
    option_rom_mr = g_malloc(sizeof(*option_rom_mr));
1444
    memory_region_init_ram(option_rom_mr, NULL, "pc.rom", PC_ROM_SIZE,
1445
                           &error_fatal);
1446
    vmstate_register_ram_global(option_rom_mr);
1447
    memory_region_add_subregion_overlap(rom_memory,
1448 1449 1450
                                        PC_ROM_MIN_VGA,
                                        option_rom_mr,
                                        1);
1451

1452
    fw_cfg = bochs_bios_init(&address_space_memory, pcms);
M
Marc Marí 已提交
1453

G
Gerd Hoffmann 已提交
1454
    rom_set_fw(fw_cfg);
A
Alexander Graf 已提交
1455

1456
    if (pcmc->has_reserved_memory && pcms->hotplug_memory.base) {
1457
        uint64_t *val = g_malloc(sizeof(*val));
1458 1459 1460 1461 1462 1463
        PCMachineClass *pcmc = PC_MACHINE_GET_CLASS(pcms);
        uint64_t res_mem_end = pcms->hotplug_memory.base;

        if (!pcmc->broken_reserved_end) {
            res_mem_end += memory_region_size(&pcms->hotplug_memory.mr);
        }
1464
        *val = cpu_to_le64(ROUND_UP(res_mem_end, 0x1ULL << 30));
1465 1466 1467
        fw_cfg_add_file(fw_cfg, "etc/reserved-memory-end", val, sizeof(*val));
    }

1468
    if (linux_boot) {
1469
        load_linux(pcms, fw_cfg);
1470 1471 1472
    }

    for (i = 0; i < nb_option_roms; i++) {
G
Gleb Natapov 已提交
1473
        rom_add_option(option_rom[i].name, option_rom[i].bootindex);
1474
    }
1475
    pcms->fw_cfg = fw_cfg;
1476 1477 1478

    /* Init default IOAPIC address space */
    pcms->ioapic_as = &address_space_memory;
1479 1480
}

1481
qemu_irq pc_allocate_cpu_irq(void)
1482
{
1483
    return qemu_allocate_irq(pic_irq_request, NULL, 0);
1484 1485
}

1486
DeviceState *pc_vga_init(ISABus *isa_bus, PCIBus *pci_bus)
1487
{
1488 1489
    DeviceState *dev = NULL;

G
Gerd Hoffmann 已提交
1490
    rom_set_order_override(FW_CFG_ORDER_OVERRIDE_VGA);
1491 1492 1493 1494 1495
    if (pci_bus) {
        PCIDevice *pcidev = pci_vga_init(pci_bus);
        dev = pcidev ? &pcidev->qdev : NULL;
    } else if (isa_bus) {
        ISADevice *isadev = isa_vga_init(isa_bus);
A
Andreas Färber 已提交
1496
        dev = isadev ? DEVICE(isadev) : NULL;
1497
    }
G
Gerd Hoffmann 已提交
1498
    rom_reset_order_override();
1499
    return dev;
1500 1501
}

J
Julien Grall 已提交
1502 1503
static const MemoryRegionOps ioport80_io_ops = {
    .write = ioport80_write,
1504
    .read = ioport80_read,
J
Julien Grall 已提交
1505 1506 1507 1508 1509 1510 1511 1512 1513
    .endianness = DEVICE_NATIVE_ENDIAN,
    .impl = {
        .min_access_size = 1,
        .max_access_size = 1,
    },
};

static const MemoryRegionOps ioportF0_io_ops = {
    .write = ioportF0_write,
1514
    .read = ioportF0_read,
J
Julien Grall 已提交
1515 1516 1517 1518 1519 1520 1521
    .endianness = DEVICE_NATIVE_ENDIAN,
    .impl = {
        .min_access_size = 1,
        .max_access_size = 1,
    },
};

1522
void pc_basic_device_init(ISABus *isa_bus, qemu_irq *gsi,
1523
                          ISADevice **rtc_state,
1524
                          bool create_fdctrl,
1525
                          bool no_vmport,
1526
                          uint32_t hpet_irqs)
1527 1528 1529
{
    int i;
    DriveInfo *fd[MAX_FD];
1530 1531 1532
    DeviceState *hpet = NULL;
    int pit_isa_irq = 0;
    qemu_irq pit_alt_irq = NULL;
1533
    qemu_irq rtc_irq = NULL;
B
Blue Swirl 已提交
1534
    qemu_irq *a20_line;
1535
    ISADevice *i8042, *port92, *vmmouse, *pit = NULL;
J
Julien Grall 已提交
1536 1537
    MemoryRegion *ioport80_io = g_new(MemoryRegion, 1);
    MemoryRegion *ioportF0_io = g_new(MemoryRegion, 1);
1538

1539
    memory_region_init_io(ioport80_io, NULL, &ioport80_io_ops, NULL, "ioport80", 1);
J
Julien Grall 已提交
1540
    memory_region_add_subregion(isa_bus->address_space_io, 0x80, ioport80_io);
1541

1542
    memory_region_init_io(ioportF0_io, NULL, &ioportF0_io_ops, NULL, "ioportF0", 1);
J
Julien Grall 已提交
1543
    memory_region_add_subregion(isa_bus->address_space_io, 0xf0, ioportF0_io);
1544

1545 1546 1547 1548 1549 1550 1551
    /*
     * Check if an HPET shall be created.
     *
     * Without KVM_CAP_PIT_STATE2, we cannot switch off the in-kernel PIT
     * when the HPET wants to take over. Thus we have to disable the latter.
     */
    if (!no_hpet && (!kvm_irqchip_in_kernel() || kvm_has_pit_state2())) {
1552
        /* In order to set property, here not using sysbus_try_create_simple */
M
Michael S. Tsirkin 已提交
1553
        hpet = qdev_try_create(NULL, TYPE_HPET);
B
Blue Swirl 已提交
1554
        if (hpet) {
1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566
            /* For pc-piix-*, hpet's intcap is always IRQ2. For pc-q35-1.7
             * and earlier, use IRQ2 for compat. Otherwise, use IRQ16~23,
             * IRQ8 and IRQ2.
             */
            uint8_t compat = object_property_get_int(OBJECT(hpet),
                    HPET_INTCAP, NULL);
            if (!compat) {
                qdev_prop_set_uint32(hpet, HPET_INTCAP, hpet_irqs);
            }
            qdev_init_nofail(hpet);
            sysbus_mmio_map(SYS_BUS_DEVICE(hpet), 0, HPET_BASE);

J
Jan Kiszka 已提交
1567
            for (i = 0; i < GSI_NUM_PINS; i++) {
1568
                sysbus_connect_irq(SYS_BUS_DEVICE(hpet), i, gsi[i]);
B
Blue Swirl 已提交
1569
            }
1570 1571 1572
            pit_isa_irq = -1;
            pit_alt_irq = qdev_get_gpio_in(hpet, HPET_LEGACY_PIT_INT);
            rtc_irq = qdev_get_gpio_in(hpet, HPET_LEGACY_RTC_INT);
J
Jan Kiszka 已提交
1573
        }
1574
    }
1575
    *rtc_state = rtc_init(isa_bus, 2000, rtc_irq);
1576 1577 1578

    qemu_register_boot_set(pc_boot_set, *rtc_state);

1579
    if (!xen_enabled()) {
1580
        if (kvm_pit_in_kernel()) {
1581 1582 1583 1584 1585 1586
            pit = kvm_pit_init(isa_bus, 0x40);
        } else {
            pit = pit_init(isa_bus, 0x40, pit_isa_irq, pit_alt_irq);
        }
        if (hpet) {
            /* connect PIT to output control line of the HPET */
A
Andreas Färber 已提交
1587
            qdev_connect_gpio_out(hpet, 0, qdev_get_gpio_in(DEVICE(pit), 0));
1588 1589
        }
        pcspk_init(isa_bus, pit);
1590
    }
1591

1592
    serial_hds_isa_init(isa_bus, MAX_SERIAL_PORTS);
1593
    parallel_hds_isa_init(isa_bus, MAX_PARALLEL_PORTS);
1594

1595
    a20_line = qemu_allocate_irqs(handle_a20_line_change, first_cpu, 2);
1596
    i8042 = isa_create_simple(isa_bus, "i8042");
1597
    i8042_setup_a20_line(i8042, a20_line[0]);
1598
    if (!no_vmport) {
1599 1600
        vmport_init(isa_bus);
        vmmouse = isa_try_create(isa_bus, "vmmouse");
1601 1602 1603
    } else {
        vmmouse = NULL;
    }
B
Blue Swirl 已提交
1604
    if (vmmouse) {
A
Andreas Färber 已提交
1605 1606 1607
        DeviceState *dev = DEVICE(vmmouse);
        qdev_prop_set_ptr(dev, "ps2_mouse", i8042);
        qdev_init_nofail(dev);
B
Blue Swirl 已提交
1608
    }
1609
    port92 = isa_create_simple(isa_bus, "port92");
1610
    port92_init(port92, a20_line[1]);
M
Marc-André Lureau 已提交
1611
    g_free(a20_line);
B
Blue Swirl 已提交
1612

1613
    DMA_init(isa_bus, 0);
1614 1615 1616

    for(i = 0; i < MAX_FD; i++) {
        fd[i] = drive_get(IF_FLOPPY, 0, i);
1617
        create_fdctrl |= !!fd[i];
1618
    }
1619 1620 1621
    if (create_fdctrl) {
        fdctrl_init_isa(isa_bus, fd);
    }
1622 1623
}

1624 1625 1626 1627
void pc_nic_init(ISABus *isa_bus, PCIBus *pci_bus)
{
    int i;

G
Gerd Hoffmann 已提交
1628
    rom_set_order_override(FW_CFG_ORDER_OVERRIDE_NIC);
1629 1630 1631 1632 1633 1634
    for (i = 0; i < nb_nics; i++) {
        NICInfo *nd = &nd_table[i];

        if (!pci_bus || (nd->model && strcmp(nd->model, "ne2k_isa") == 0)) {
            pc_init_ne2k_isa(isa_bus, nd);
        } else {
1635
            pci_nic_init_nofail(nd, pci_bus, "e1000", NULL);
1636 1637
        }
    }
G
Gerd Hoffmann 已提交
1638
    rom_reset_order_override();
1639 1640
}

1641
void pc_pci_device_init(PCIBus *pci_bus)
1642 1643 1644 1645 1646 1647 1648 1649 1650
{
    int max_bus;
    int bus;

    max_bus = drive_get_max_bus(IF_SCSI);
    for (bus = 0; bus <= max_bus; bus++) {
        pci_create_simple(pci_bus, -1, "lsi53c895a");
    }
}
1651 1652 1653 1654 1655 1656 1657

void ioapic_init_gsi(GSIState *gsi_state, const char *parent_name)
{
    DeviceState *dev;
    SysBusDevice *d;
    unsigned int i;

1658
    if (kvm_ioapic_in_kernel()) {
1659 1660 1661 1662 1663 1664 1665 1666 1667
        dev = qdev_create(NULL, "kvm-ioapic");
    } else {
        dev = qdev_create(NULL, "ioapic");
    }
    if (parent_name) {
        object_property_add_child(object_resolve_path(parent_name, NULL),
                                  "ioapic", OBJECT(dev), NULL);
    }
    qdev_init_nofail(dev);
1668
    d = SYS_BUS_DEVICE(dev);
1669
    sysbus_mmio_map(d, 0, IO_APIC_DEFAULT_ADDRESS);
1670 1671 1672 1673 1674

    for (i = 0; i < IOAPIC_NUM_PINS; i++) {
        gsi_state->ioapic_irq[i] = qdev_get_gpio_in(dev, i);
    }
}
1675

1676 1677 1678
static void pc_dimm_plug(HotplugHandler *hotplug_dev,
                         DeviceState *dev, Error **errp)
{
1679
    HotplugHandlerClass *hhc;
1680 1681
    Error *local_err = NULL;
    PCMachineState *pcms = PC_MACHINE(hotplug_dev);
1682
    PCMachineClass *pcmc = PC_MACHINE_GET_CLASS(pcms);
1683 1684 1685
    PCDIMMDevice *dimm = PC_DIMM(dev);
    PCDIMMDeviceClass *ddc = PC_DIMM_GET_CLASS(dimm);
    MemoryRegion *mr = ddc->get_memory_region(dimm);
1686
    uint64_t align = TARGET_PAGE_SIZE;
1687

1688
    if (memory_region_get_alignment(mr) && pcmc->enforce_aligned_dimm) {
1689 1690 1691
        align = memory_region_get_alignment(mr);
    }

1692 1693 1694 1695 1696 1697
    if (!pcms->acpi_dev) {
        error_setg(&local_err,
                   "memory hotplug is not enabled: missing acpi device");
        goto out;
    }

1698
    pc_dimm_memory_plug(dev, &pcms->hotplug_memory, mr, align, &local_err);
1699
    if (local_err) {
1700 1701 1702
        goto out;
    }

1703
    hhc = HOTPLUG_HANDLER_GET_CLASS(pcms->acpi_dev);
1704
    hhc->plug(HOTPLUG_HANDLER(pcms->acpi_dev), dev, &error_abort);
1705 1706 1707 1708
out:
    error_propagate(errp, local_err);
}

1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728
static void pc_dimm_unplug_request(HotplugHandler *hotplug_dev,
                                   DeviceState *dev, Error **errp)
{
    HotplugHandlerClass *hhc;
    Error *local_err = NULL;
    PCMachineState *pcms = PC_MACHINE(hotplug_dev);

    if (!pcms->acpi_dev) {
        error_setg(&local_err,
                   "memory hotplug is not enabled: missing acpi device");
        goto out;
    }

    hhc = HOTPLUG_HANDLER_GET_CLASS(pcms->acpi_dev);
    hhc->unplug_request(HOTPLUG_HANDLER(pcms->acpi_dev), dev, &local_err);

out:
    error_propagate(errp, local_err);
}

1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745
static void pc_dimm_unplug(HotplugHandler *hotplug_dev,
                           DeviceState *dev, Error **errp)
{
    PCMachineState *pcms = PC_MACHINE(hotplug_dev);
    PCDIMMDevice *dimm = PC_DIMM(dev);
    PCDIMMDeviceClass *ddc = PC_DIMM_GET_CLASS(dimm);
    MemoryRegion *mr = ddc->get_memory_region(dimm);
    HotplugHandlerClass *hhc;
    Error *local_err = NULL;

    hhc = HOTPLUG_HANDLER_GET_CLASS(pcms->acpi_dev);
    hhc->unplug(HOTPLUG_HANDLER(pcms->acpi_dev), dev, &local_err);

    if (local_err) {
        goto out;
    }

1746
    pc_dimm_memory_unplug(dev, &pcms->hotplug_memory, mr);
1747 1748 1749 1750 1751 1752
    object_unparent(OBJECT(dev));

 out:
    error_propagate(errp, local_err);
}

1753 1754 1755 1756 1757 1758 1759 1760
static int pc_apic_cmp(const void *a, const void *b)
{
   CPUArchId *apic_a = (CPUArchId *)a;
   CPUArchId *apic_b = (CPUArchId *)b;

   return apic_a->arch_id - apic_b->arch_id;
}

1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780
/* returns pointer to CPUArchId descriptor that matches CPU's apic_id
 * in pcms->possible_cpus->cpus, if pcms->possible_cpus->cpus has no
 * entry correponding to CPU's apic_id returns NULL.
 */
static CPUArchId *pc_find_cpu_slot(PCMachineState *pcms, CPUState *cpu,
                                   int *idx)
{
    CPUClass *cc = CPU_GET_CLASS(cpu);
    CPUArchId apic_id, *found_cpu;

    apic_id.arch_id = cc->get_arch_id(CPU(cpu));
    found_cpu = bsearch(&apic_id, pcms->possible_cpus->cpus,
        pcms->possible_cpus->len, sizeof(*pcms->possible_cpus->cpus),
        pc_apic_cmp);
    if (found_cpu && idx) {
        *idx = found_cpu - pcms->possible_cpus->cpus;
    }
    return found_cpu;
}

1781 1782 1783
static void pc_cpu_plug(HotplugHandler *hotplug_dev,
                        DeviceState *dev, Error **errp)
{
1784
    CPUArchId *found_cpu;
1785 1786 1787 1788
    HotplugHandlerClass *hhc;
    Error *local_err = NULL;
    PCMachineState *pcms = PC_MACHINE(hotplug_dev);

1789 1790 1791 1792 1793 1794
    if (pcms->acpi_dev) {
        hhc = HOTPLUG_HANDLER_GET_CLASS(pcms->acpi_dev);
        hhc->plug(HOTPLUG_HANDLER(pcms->acpi_dev), dev, &local_err);
        if (local_err) {
            goto out;
        }
1795 1796
    }

1797 1798 1799
    if (dev->hotplugged) {
        /* increment the number of CPUs */
        rtc_set_memory(pcms->rtc, 0x5f, rtc_get_memory(pcms->rtc, 0x5f) + 1);
G
Gu Zheng 已提交
1800 1801
    }

1802
    found_cpu = pc_find_cpu_slot(pcms, CPU(dev), NULL);
1803
    found_cpu->cpu = CPU(dev);
1804 1805 1806
out:
    error_propagate(errp, local_err);
}
1807 1808 1809
static void pc_cpu_unplug_request_cb(HotplugHandler *hotplug_dev,
                                     DeviceState *dev, Error **errp)
{
I
Igor Mammedov 已提交
1810
    int idx = -1;
1811 1812 1813 1814
    HotplugHandlerClass *hhc;
    Error *local_err = NULL;
    PCMachineState *pcms = PC_MACHINE(hotplug_dev);

I
Igor Mammedov 已提交
1815 1816 1817 1818 1819 1820 1821
    pc_find_cpu_slot(pcms, CPU(dev), &idx);
    assert(idx != -1);
    if (idx == 0) {
        error_setg(&local_err, "Boot CPU is unpluggable");
        goto out;
    }

1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836
    hhc = HOTPLUG_HANDLER_GET_CLASS(pcms->acpi_dev);
    hhc->unplug_request(HOTPLUG_HANDLER(pcms->acpi_dev), dev, &local_err);

    if (local_err) {
        goto out;
    }

 out:
    error_propagate(errp, local_err);

}

static void pc_cpu_unplug_cb(HotplugHandler *hotplug_dev,
                             DeviceState *dev, Error **errp)
{
1837
    CPUArchId *found_cpu;
1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848
    HotplugHandlerClass *hhc;
    Error *local_err = NULL;
    PCMachineState *pcms = PC_MACHINE(hotplug_dev);

    hhc = HOTPLUG_HANDLER_GET_CLASS(pcms->acpi_dev);
    hhc->unplug(HOTPLUG_HANDLER(pcms->acpi_dev), dev, &local_err);

    if (local_err) {
        goto out;
    }

1849 1850 1851
    found_cpu = pc_find_cpu_slot(pcms, CPU(dev), NULL);
    found_cpu->cpu = NULL;
    object_unparent(OBJECT(dev));
1852

1853
    rtc_set_memory(pcms->rtc, 0x5f, rtc_get_memory(pcms->rtc, 0x5f) - 1);
1854 1855 1856
 out:
    error_propagate(errp, local_err);
}
1857

1858 1859 1860 1861
static void pc_cpu_pre_plug(HotplugHandler *hotplug_dev,
                            DeviceState *dev, Error **errp)
{
    int idx;
1862
    CPUState *cs;
1863
    CPUArchId *cpu_slot;
1864
    X86CPUTopoInfo topo;
1865 1866 1867
    X86CPU *cpu = X86_CPU(dev);
    PCMachineState *pcms = PC_MACHINE(hotplug_dev);

1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903
    /* if APIC ID is not set, set it based on socket/core/thread properties */
    if (cpu->apic_id == UNASSIGNED_APIC_ID) {
        int max_socket = (max_cpus - 1) / smp_threads / smp_cores;

        if (cpu->socket_id < 0) {
            error_setg(errp, "CPU socket-id is not set");
            return;
        } else if (cpu->socket_id > max_socket) {
            error_setg(errp, "Invalid CPU socket-id: %u must be in range 0:%u",
                       cpu->socket_id, max_socket);
            return;
        }
        if (cpu->core_id < 0) {
            error_setg(errp, "CPU core-id is not set");
            return;
        } else if (cpu->core_id > (smp_cores - 1)) {
            error_setg(errp, "Invalid CPU core-id: %u must be in range 0:%u",
                       cpu->core_id, smp_cores - 1);
            return;
        }
        if (cpu->thread_id < 0) {
            error_setg(errp, "CPU thread-id is not set");
            return;
        } else if (cpu->thread_id > (smp_threads - 1)) {
            error_setg(errp, "Invalid CPU thread-id: %u must be in range 0:%u",
                       cpu->thread_id, smp_threads - 1);
            return;
        }

        topo.pkg_id = cpu->socket_id;
        topo.core_id = cpu->core_id;
        topo.smt_id = cpu->thread_id;
        cpu->apic_id = apicid_from_topo_ids(smp_cores, smp_threads, &topo);
    }

    cpu_slot = pc_find_cpu_slot(pcms, CPU(dev), &idx);
1904
    if (!cpu_slot) {
1905 1906 1907 1908
        x86_topo_ids_from_apicid(cpu->apic_id, smp_cores, smp_threads, &topo);
        error_setg(errp, "Invalid CPU [socket: %u, core: %u, thread: %u] with"
                  " APIC ID %" PRIu32 ", valid index range 0:%d",
                   topo.pkg_id, topo.core_id, topo.smt_id, cpu->apic_id,
1909 1910 1911 1912 1913 1914 1915 1916 1917
                   pcms->possible_cpus->len - 1);
        return;
    }

    if (cpu_slot->cpu) {
        error_setg(errp, "CPU[%d] with APIC ID %" PRIu32 " exists",
                   idx, cpu->apic_id);
        return;
    }
1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945

    /* if 'address' properties socket-id/core-id/thread-id are not set, set them
     * so that query_hotpluggable_cpus would show correct values
     */
    /* TODO: move socket_id/core_id/thread_id checks into x86_cpu_realizefn()
     * once -smp refactoring is complete and there will be CPU private
     * CPUState::nr_cores and CPUState::nr_threads fields instead of globals */
    x86_topo_ids_from_apicid(cpu->apic_id, smp_cores, smp_threads, &topo);
    if (cpu->socket_id != -1 && cpu->socket_id != topo.pkg_id) {
        error_setg(errp, "property socket-id: %u doesn't match set apic-id:"
            " 0x%x (socket-id: %u)", cpu->socket_id, cpu->apic_id, topo.pkg_id);
        return;
    }
    cpu->socket_id = topo.pkg_id;

    if (cpu->core_id != -1 && cpu->core_id != topo.core_id) {
        error_setg(errp, "property core-id: %u doesn't match set apic-id:"
            " 0x%x (core-id: %u)", cpu->core_id, cpu->apic_id, topo.core_id);
        return;
    }
    cpu->core_id = topo.core_id;

    if (cpu->thread_id != -1 && cpu->thread_id != topo.smt_id) {
        error_setg(errp, "property thread-id: %u doesn't match set apic-id:"
            " 0x%x (thread-id: %u)", cpu->thread_id, cpu->apic_id, topo.smt_id);
        return;
    }
    cpu->thread_id = topo.smt_id;
1946 1947 1948

    cs = CPU(cpu);
    cs->cpu_index = idx;
1949 1950 1951 1952 1953 1954 1955 1956 1957 1958
}

static void pc_machine_device_pre_plug_cb(HotplugHandler *hotplug_dev,
                                          DeviceState *dev, Error **errp)
{
    if (object_dynamic_cast(OBJECT(dev), TYPE_CPU)) {
        pc_cpu_pre_plug(hotplug_dev, dev, errp);
    }
}

1959 1960 1961 1962 1963
static void pc_machine_device_plug_cb(HotplugHandler *hotplug_dev,
                                      DeviceState *dev, Error **errp)
{
    if (object_dynamic_cast(OBJECT(dev), TYPE_PC_DIMM)) {
        pc_dimm_plug(hotplug_dev, dev, errp);
1964 1965
    } else if (object_dynamic_cast(OBJECT(dev), TYPE_CPU)) {
        pc_cpu_plug(hotplug_dev, dev, errp);
1966 1967 1968
    }
}

1969 1970 1971
static void pc_machine_device_unplug_request_cb(HotplugHandler *hotplug_dev,
                                                DeviceState *dev, Error **errp)
{
1972 1973
    if (object_dynamic_cast(OBJECT(dev), TYPE_PC_DIMM)) {
        pc_dimm_unplug_request(hotplug_dev, dev, errp);
1974 1975
    } else if (object_dynamic_cast(OBJECT(dev), TYPE_CPU)) {
        pc_cpu_unplug_request_cb(hotplug_dev, dev, errp);
1976 1977 1978 1979
    } else {
        error_setg(errp, "acpi: device unplug request for not supported device"
                   " type: %s", object_get_typename(OBJECT(dev)));
    }
1980 1981
}

1982 1983 1984
static void pc_machine_device_unplug_cb(HotplugHandler *hotplug_dev,
                                        DeviceState *dev, Error **errp)
{
1985 1986
    if (object_dynamic_cast(OBJECT(dev), TYPE_PC_DIMM)) {
        pc_dimm_unplug(hotplug_dev, dev, errp);
1987 1988
    } else if (object_dynamic_cast(OBJECT(dev), TYPE_CPU)) {
        pc_cpu_unplug_cb(hotplug_dev, dev, errp);
1989 1990 1991 1992
    } else {
        error_setg(errp, "acpi: device unplug for not supported device"
                   " type: %s", object_get_typename(OBJECT(dev)));
    }
1993 1994
}

1995 1996 1997 1998 1999
static HotplugHandler *pc_get_hotpug_handler(MachineState *machine,
                                             DeviceState *dev)
{
    PCMachineClass *pcmc = PC_MACHINE_GET_CLASS(machine);

2000 2001
    if (object_dynamic_cast(OBJECT(dev), TYPE_PC_DIMM) ||
        object_dynamic_cast(OBJECT(dev), TYPE_CPU)) {
2002 2003 2004 2005 2006 2007 2008
        return HOTPLUG_HANDLER(machine);
    }

    return pcmc->get_hotplug_handler ?
        pcmc->get_hotplug_handler(machine, dev) : NULL;
}

2009
static void
2010 2011 2012
pc_machine_get_hotplug_memory_region_size(Object *obj, Visitor *v,
                                          const char *name, void *opaque,
                                          Error **errp)
2013 2014
{
    PCMachineState *pcms = PC_MACHINE(obj);
2015
    int64_t value = memory_region_size(&pcms->hotplug_memory.mr);
2016

2017
    visit_type_int(v, name, &value, errp);
2018 2019
}

2020
static void pc_machine_get_max_ram_below_4g(Object *obj, Visitor *v,
2021 2022
                                            const char *name, void *opaque,
                                            Error **errp)
2023 2024 2025 2026
{
    PCMachineState *pcms = PC_MACHINE(obj);
    uint64_t value = pcms->max_ram_below_4g;

2027
    visit_type_size(v, name, &value, errp);
2028 2029 2030
}

static void pc_machine_set_max_ram_below_4g(Object *obj, Visitor *v,
2031 2032
                                            const char *name, void *opaque,
                                            Error **errp)
2033 2034 2035 2036 2037
{
    PCMachineState *pcms = PC_MACHINE(obj);
    Error *error = NULL;
    uint64_t value;

2038
    visit_type_size(v, name, &value, &error);
2039 2040 2041 2042 2043
    if (error) {
        error_propagate(errp, error);
        return;
    }
    if (value > (1ULL << 32)) {
E
Eric Blake 已提交
2044 2045 2046
        error_setg(&error,
                   "Machine option 'max-ram-below-4g=%"PRIu64
                   "' expects size less than or equal to 4G", value);
2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059
        error_propagate(errp, error);
        return;
    }

    if (value < (1ULL << 20)) {
        error_report("Warning: small max_ram_below_4g(%"PRIu64
                     ") less than 1M.  BIOS may not work..",
                     value);
    }

    pcms->max_ram_below_4g = value;
}

2060 2061
static void pc_machine_get_vmport(Object *obj, Visitor *v, const char *name,
                                  void *opaque, Error **errp)
2062 2063
{
    PCMachineState *pcms = PC_MACHINE(obj);
2064
    OnOffAuto vmport = pcms->vmport;
2065

2066
    visit_type_OnOffAuto(v, name, &vmport, errp);
2067 2068
}

2069 2070
static void pc_machine_set_vmport(Object *obj, Visitor *v, const char *name,
                                  void *opaque, Error **errp)
2071 2072 2073
{
    PCMachineState *pcms = PC_MACHINE(obj);

2074
    visit_type_OnOffAuto(v, name, &pcms->vmport, errp);
2075 2076
}

P
Paolo Bonzini 已提交
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bool pc_machine_is_smm_enabled(PCMachineState *pcms)
{
    bool smm_available = false;

    if (pcms->smm == ON_OFF_AUTO_OFF) {
        return false;
    }

    if (tcg_enabled() || qtest_enabled()) {
        smm_available = true;
    } else if (kvm_enabled()) {
        smm_available = kvm_has_smm();
    }

    if (smm_available) {
        return true;
    }

    if (pcms->smm == ON_OFF_AUTO_ON) {
        error_report("System Management Mode not supported by this hypervisor.");
        exit(1);
    }
    return false;
}

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static void pc_machine_get_smm(Object *obj, Visitor *v, const char *name,
                               void *opaque, Error **errp)
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{
    PCMachineState *pcms = PC_MACHINE(obj);
    OnOffAuto smm = pcms->smm;

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    visit_type_OnOffAuto(v, name, &smm, errp);
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}

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static void pc_machine_set_smm(Object *obj, Visitor *v, const char *name,
                               void *opaque, Error **errp)
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{
    PCMachineState *pcms = PC_MACHINE(obj);

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    visit_type_OnOffAuto(v, name, &pcms->smm, errp);
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}

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static bool pc_machine_get_nvdimm(Object *obj, Error **errp)
{
    PCMachineState *pcms = PC_MACHINE(obj);

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    return pcms->acpi_nvdimm_state.is_enabled;
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}

static void pc_machine_set_nvdimm(Object *obj, bool value, Error **errp)
{
    PCMachineState *pcms = PC_MACHINE(obj);

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    pcms->acpi_nvdimm_state.is_enabled = value;
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}

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static void pc_machine_initfn(Object *obj)
{
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    PCMachineState *pcms = PC_MACHINE(obj);

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    object_property_add(obj, PC_MACHINE_MEMHP_REGION_SIZE, "int",
                        pc_machine_get_hotplug_memory_region_size,
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                        NULL, NULL, NULL, &error_abort);
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    pcms->max_ram_below_4g = 0; /* use default */
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    object_property_add(obj, PC_MACHINE_MAX_RAM_BELOW_4G, "size",
                        pc_machine_get_max_ram_below_4g,
                        pc_machine_set_max_ram_below_4g,
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                        NULL, NULL, &error_abort);
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    object_property_set_description(obj, PC_MACHINE_MAX_RAM_BELOW_4G,
                                    "Maximum ram below the 4G boundary (32bit boundary)",
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                                    &error_abort);
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    pcms->smm = ON_OFF_AUTO_AUTO;
    object_property_add(obj, PC_MACHINE_SMM, "OnOffAuto",
                        pc_machine_get_smm,
                        pc_machine_set_smm,
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                        NULL, NULL, &error_abort);
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    object_property_set_description(obj, PC_MACHINE_SMM,
                                    "Enable SMM (pc & q35)",
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                                    &error_abort);
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    pcms->vmport = ON_OFF_AUTO_AUTO;
    object_property_add(obj, PC_MACHINE_VMPORT, "OnOffAuto",
                        pc_machine_get_vmport,
                        pc_machine_set_vmport,
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                        NULL, NULL, &error_abort);
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    object_property_set_description(obj, PC_MACHINE_VMPORT,
                                    "Enable vmport (pc & q35)",
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                                    &error_abort);
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    /* nvdimm is disabled on default. */
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    pcms->acpi_nvdimm_state.is_enabled = false;
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    object_property_add_bool(obj, PC_MACHINE_NVDIMM, pc_machine_get_nvdimm,
                             pc_machine_set_nvdimm, &error_abort);
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}

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static void pc_machine_reset(void)
{
    CPUState *cs;
    X86CPU *cpu;

    qemu_devices_reset();

    /* Reset APIC after devices have been reset to cancel
     * any changes that qemu_devices_reset() might have done.
     */
    CPU_FOREACH(cs) {
        cpu = X86_CPU(cs);

        if (cpu->apic_state) {
            device_reset(cpu->apic_state);
        }
    }
}

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static unsigned pc_cpu_index_to_socket_id(unsigned cpu_index)
{
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    X86CPUTopoInfo topo;
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    x86_topo_ids_from_idx(smp_cores, smp_threads, cpu_index,
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                          &topo);
    return topo.pkg_id;
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}

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static CPUArchIdList *pc_possible_cpu_arch_ids(MachineState *machine)
{
    PCMachineState *pcms = PC_MACHINE(machine);
    int len = sizeof(CPUArchIdList) +
              sizeof(CPUArchId) * (pcms->possible_cpus->len);
    CPUArchIdList *list = g_malloc(len);

    memcpy(list, pcms->possible_cpus, len);
    return list;
}

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static HotpluggableCPUList *pc_query_hotpluggable_cpus(MachineState *machine)
{
    int i;
    CPUState *cpu;
    HotpluggableCPUList *head = NULL;
    PCMachineState *pcms = PC_MACHINE(machine);
    const char *cpu_type;

    cpu = pcms->possible_cpus->cpus[0].cpu;
    assert(cpu); /* BSP is always present */
    cpu_type = object_class_get_name(OBJECT_CLASS(CPU_GET_CLASS(cpu)));

    for (i = 0; i < pcms->possible_cpus->len; i++) {
        X86CPUTopoInfo topo;
        HotpluggableCPUList *list_item = g_new0(typeof(*list_item), 1);
        HotpluggableCPU *cpu_item = g_new0(typeof(*cpu_item), 1);
        CpuInstanceProperties *cpu_props = g_new0(typeof(*cpu_props), 1);
        const uint32_t apic_id = pcms->possible_cpus->cpus[i].arch_id;

        x86_topo_ids_from_apicid(apic_id, smp_cores, smp_threads, &topo);

        cpu_item->type = g_strdup(cpu_type);
        cpu_item->vcpus_count = 1;
        cpu_props->has_socket_id = true;
        cpu_props->socket_id = topo.pkg_id;
        cpu_props->has_core_id = true;
        cpu_props->core_id = topo.core_id;
        cpu_props->has_thread_id = true;
        cpu_props->thread_id = topo.smt_id;
        cpu_item->props = cpu_props;

        cpu = pcms->possible_cpus->cpus[i].cpu;
        if (cpu) {
            cpu_item->has_qom_path = true;
            cpu_item->qom_path = object_get_canonical_path(OBJECT(cpu));
        }

        list_item->value = cpu_item;
        list_item->next = head;
        head = list_item;
    }
    return head;
}

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static void x86_nmi(NMIState *n, int cpu_index, Error **errp)
{
    /* cpu index isn't used */
    CPUState *cs;

    CPU_FOREACH(cs) {
        X86CPU *cpu = X86_CPU(cs);

        if (!cpu->apic_state) {
            cpu_interrupt(cs, CPU_INTERRUPT_NMI);
        } else {
            apic_deliver_nmi(cpu->apic_state);
        }
    }
}

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static void pc_machine_class_init(ObjectClass *oc, void *data)
{
    MachineClass *mc = MACHINE_CLASS(oc);
    PCMachineClass *pcmc = PC_MACHINE_CLASS(oc);
    HotplugHandlerClass *hc = HOTPLUG_HANDLER_CLASS(oc);
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    NMIClass *nc = NMI_CLASS(oc);
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    pcmc->get_hotplug_handler = mc->get_hotplug_handler;
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    pcmc->pci_enabled = true;
    pcmc->has_acpi_build = true;
    pcmc->rsdp_in_ram = true;
    pcmc->smbios_defaults = true;
    pcmc->smbios_uuid_encoded = true;
    pcmc->gigabyte_align = true;
    pcmc->has_reserved_memory = true;
    pcmc->kvmclock_enabled = true;
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    pcmc->enforce_aligned_dimm = true;
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    /* BIOS ACPI tables: 128K. Other BIOS datastructures: less than 4K reported
     * to be used at the moment, 32K should be enough for a while.  */
    pcmc->acpi_data_size = 0x20000 + 0x8000;
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    pcmc->save_tsc_khz = true;
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    mc->get_hotplug_handler = pc_get_hotpug_handler;
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    mc->cpu_index_to_socket_id = pc_cpu_index_to_socket_id;
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    mc->possible_cpu_arch_ids = pc_possible_cpu_arch_ids;
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    mc->query_hotpluggable_cpus = pc_query_hotpluggable_cpus;
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    mc->default_boot_order = "cad";
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    mc->hot_add_cpu = pc_hot_add_cpu;
    mc->max_cpus = 255;
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    mc->reset = pc_machine_reset;
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    hc->pre_plug = pc_machine_device_pre_plug_cb;
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    hc->plug = pc_machine_device_plug_cb;
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    hc->unplug_request = pc_machine_device_unplug_request_cb;
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    hc->unplug = pc_machine_device_unplug_cb;
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    nc->nmi_monitor_handler = x86_nmi;
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}

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static const TypeInfo pc_machine_info = {
    .name = TYPE_PC_MACHINE,
    .parent = TYPE_MACHINE,
    .abstract = true,
    .instance_size = sizeof(PCMachineState),
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    .instance_init = pc_machine_initfn,
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    .class_size = sizeof(PCMachineClass),
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    .class_init = pc_machine_class_init,
    .interfaces = (InterfaceInfo[]) {
         { TYPE_HOTPLUG_HANDLER },
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         { TYPE_NMI },
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         { }
    },
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};

static void pc_machine_register_types(void)
{
    type_register_static(&pc_machine_info);
}

type_init(pc_machine_register_types)