xen-hvm.c 41.3 KB
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Anthony PERARD 已提交
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/*
 * Copyright (C) 2010       Citrix Ltd.
 *
 * This work is licensed under the terms of the GNU GPL, version 2.  See
 * the COPYING file in the top-level directory.
 *
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 * Contributions after 2012-01-13 are licensed under the terms of the
 * GNU GPL, version 2 or (at your option) any later version.
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 */

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#include "qemu/osdep.h"
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#include <sys/mman.h>

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#include "cpu.h"
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#include "hw/pci/pci.h"
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#include "hw/i386/pc.h"
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#include "hw/i386/apic-msidef.h"
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#include "hw/xen/xen_common.h"
#include "hw/xen/xen_backend.h"
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#include "qmp-commands.h"
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#include "sysemu/char.h"
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#include "qemu/error-report.h"
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#include "qemu/range.h"
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#include "sysemu/xen-mapcache.h"
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#include "trace.h"
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#include "exec/address-spaces.h"
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#include <xen/hvm/ioreq.h>
#include <xen/hvm/params.h>
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#include <xen/hvm/e820.h>
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//#define DEBUG_XEN_HVM
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#ifdef DEBUG_XEN_HVM
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#define DPRINTF(fmt, ...) \
    do { fprintf(stderr, "xen: " fmt, ## __VA_ARGS__); } while (0)
#else
#define DPRINTF(fmt, ...) \
    do { } while (0)
#endif

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static MemoryRegion ram_memory, ram_640k, ram_lo, ram_hi;
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static MemoryRegion *framebuffer;
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static bool xen_in_migration;
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/* Compatibility with older version */
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/* This allows QEMU to build on a system that has Xen 4.5 or earlier
 * installed.  This here (not in hw/xen/xen_common.h) because xen/hvm/ioreq.h
 * needs to be included before this block and hw/xen/xen_common.h needs to
 * be included before xen/hvm/ioreq.h
 */
#ifndef IOREQ_TYPE_VMWARE_PORT
#define IOREQ_TYPE_VMWARE_PORT  3
struct vmware_regs {
    uint32_t esi;
    uint32_t edi;
    uint32_t ebx;
    uint32_t ecx;
    uint32_t edx;
};
typedef struct vmware_regs vmware_regs_t;

struct shared_vmport_iopage {
    struct vmware_regs vcpu_vmport_regs[1];
};
typedef struct shared_vmport_iopage shared_vmport_iopage_t;
#endif

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static inline uint32_t xen_vcpu_eport(shared_iopage_t *shared_page, int i)
{
    return shared_page->vcpu_ioreq[i].vp_eport;
}
static inline ioreq_t *xen_vcpu_ioreq(shared_iopage_t *shared_page, int vcpu)
{
    return &shared_page->vcpu_ioreq[vcpu];
}

#define BUFFER_IO_MAX_DELAY  100

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typedef struct XenPhysmap {
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    hwaddr start_addr;
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    ram_addr_t size;
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    const char *name;
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    hwaddr phys_offset;
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    QLIST_ENTRY(XenPhysmap) list;
} XenPhysmap;

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typedef struct XenIOState {
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    ioservid_t ioservid;
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    shared_iopage_t *shared_page;
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    shared_vmport_iopage_t *shared_vmport_page;
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    buffered_iopage_t *buffered_io_page;
    QEMUTimer *buffered_io_timer;
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    CPUState **cpu_by_vcpu_id;
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    /* the evtchn port for polling the notification, */
    evtchn_port_t *ioreq_local_port;
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    /* evtchn local port for buffered io */
    evtchn_port_t bufioreq_local_port;
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    /* the evtchn fd for polling */
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    xenevtchn_handle *xce_handle;
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    /* which vcpu we are serving */
    int send_vcpu;

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    struct xs_handle *xenstore;
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    MemoryListener memory_listener;
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    MemoryListener io_listener;
    DeviceListener device_listener;
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    QLIST_HEAD(, XenPhysmap) physmap;
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    hwaddr free_phys_offset;
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    const XenPhysmap *log_for_dirtybit;
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    Notifier exit;
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    Notifier suspend;
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    Notifier wakeup;
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} XenIOState;

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/* Xen specific function for piix pci */

int xen_pci_slot_get_pirq(PCIDevice *pci_dev, int irq_num)
{
    return irq_num + ((pci_dev->devfn >> 3) << 2);
}

void xen_piix3_set_irq(void *opaque, int irq_num, int level)
{
    xc_hvm_set_pci_intx_level(xen_xc, xen_domid, 0, 0, irq_num >> 2,
                              irq_num & 3, level);
}

void xen_piix_pci_write_config_client(uint32_t address, uint32_t val, int len)
{
    int i;

    /* Scan for updates to PCI link routes (0x60-0x63). */
    for (i = 0; i < len; i++) {
        uint8_t v = (val >> (8 * i)) & 0xff;
        if (v & 0x80) {
            v = 0;
        }
        v &= 0xf;
        if (((address + i) >= 0x60) && ((address + i) <= 0x63)) {
            xc_hvm_set_pci_link_route(xen_xc, xen_domid, address + i - 0x60, v);
        }
    }
}

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int xen_is_pirq_msi(uint32_t msi_data)
{
    /* If vector is 0, the msi is remapped into a pirq, passed as
     * dest_id.
     */
    return ((msi_data & MSI_DATA_VECTOR_MASK) >> MSI_DATA_VECTOR_SHIFT) == 0;
}

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void xen_hvm_inject_msi(uint64_t addr, uint32_t data)
{
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    xc_hvm_inject_msi(xen_xc, xen_domid, addr, data);
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}

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static void xen_suspend_notifier(Notifier *notifier, void *data)
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{
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    xc_set_hvm_param(xen_xc, xen_domid, HVM_PARAM_ACPI_S_STATE, 3);
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}

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/* Xen Interrupt Controller */

static void xen_set_irq(void *opaque, int irq, int level)
{
    xc_hvm_set_isa_irq_level(xen_xc, xen_domid, irq, level);
}

qemu_irq *xen_interrupt_controller_init(void)
{
    return qemu_allocate_irqs(xen_set_irq, NULL, 16);
}

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/* Memory Ops */

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static void xen_ram_init(PCMachineState *pcms,
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                         ram_addr_t ram_size, MemoryRegion **ram_memory_p)
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{
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    MemoryRegion *sysmem = get_system_memory();
    ram_addr_t block_len;
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    uint64_t user_lowmem = object_property_get_int(qdev_get_machine(),
                                                   PC_MACHINE_MAX_RAM_BELOW_4G,
                                                   &error_abort);
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    /* Handle the machine opt max-ram-below-4g.  It is basically doing
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     * min(xen limit, user limit).
     */
    if (HVM_BELOW_4G_RAM_END <= user_lowmem) {
        user_lowmem = HVM_BELOW_4G_RAM_END;
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    }
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    if (ram_size >= user_lowmem) {
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        pcms->above_4g_mem_size = ram_size - user_lowmem;
        pcms->below_4g_mem_size = user_lowmem;
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    } else {
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        pcms->above_4g_mem_size = 0;
        pcms->below_4g_mem_size = ram_size;
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    }
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    if (!pcms->above_4g_mem_size) {
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        block_len = ram_size;
    } else {
        /*
         * Xen does not allocate the memory continuously, it keeps a
         * hole of the size computed above or passed in.
         */
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        block_len = (1ULL << 32) + pcms->above_4g_mem_size;
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    }
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    memory_region_init_ram(&ram_memory, NULL, "xen.ram", block_len,
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                           &error_fatal);
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    *ram_memory_p = &ram_memory;
    vmstate_register_ram_global(&ram_memory);
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    memory_region_init_alias(&ram_640k, NULL, "xen.ram.640k",
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                             &ram_memory, 0, 0xa0000);
    memory_region_add_subregion(sysmem, 0, &ram_640k);
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    /* Skip of the VGA IO memory space, it will be registered later by the VGA
     * emulated device.
     *
     * The area between 0xc0000 and 0x100000 will be used by SeaBIOS to load
     * the Options ROM, so it is registered here as RAM.
     */
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    memory_region_init_alias(&ram_lo, NULL, "xen.ram.lo",
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                             &ram_memory, 0xc0000,
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                             pcms->below_4g_mem_size - 0xc0000);
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    memory_region_add_subregion(sysmem, 0xc0000, &ram_lo);
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    if (pcms->above_4g_mem_size > 0) {
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        memory_region_init_alias(&ram_hi, NULL, "xen.ram.hi",
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                                 &ram_memory, 0x100000000ULL,
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                                 pcms->above_4g_mem_size);
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        memory_region_add_subregion(sysmem, 0x100000000ULL, &ram_hi);
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    }
}

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void xen_ram_alloc(ram_addr_t ram_addr, ram_addr_t size, MemoryRegion *mr,
                   Error **errp)
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{
    unsigned long nr_pfn;
    xen_pfn_t *pfn_list;
    int i;

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    if (runstate_check(RUN_STATE_INMIGRATE)) {
        /* RAM already populated in Xen */
        fprintf(stderr, "%s: do not alloc "RAM_ADDR_FMT
                " bytes of ram at "RAM_ADDR_FMT" when runstate is INMIGRATE\n",
                __func__, size, ram_addr); 
        return;
    }

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    if (mr == &ram_memory) {
        return;
    }

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    trace_xen_ram_alloc(ram_addr, size);

    nr_pfn = size >> TARGET_PAGE_BITS;
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    pfn_list = g_malloc(sizeof (*pfn_list) * nr_pfn);
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    for (i = 0; i < nr_pfn; i++) {
        pfn_list[i] = (ram_addr >> TARGET_PAGE_BITS) + i;
    }

    if (xc_domain_populate_physmap_exact(xen_xc, xen_domid, nr_pfn, 0, 0, pfn_list)) {
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        error_setg(errp, "xen: failed to populate ram at " RAM_ADDR_FMT,
                   ram_addr);
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    }

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    g_free(pfn_list);
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}

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static XenPhysmap *get_physmapping(XenIOState *state,
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                                   hwaddr start_addr, ram_addr_t size)
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{
    XenPhysmap *physmap = NULL;

    start_addr &= TARGET_PAGE_MASK;

    QLIST_FOREACH(physmap, &state->physmap, list) {
        if (range_covers_byte(physmap->start_addr, physmap->size, start_addr)) {
            return physmap;
        }
    }
    return NULL;
}

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static hwaddr xen_phys_offset_to_gaddr(hwaddr start_addr,
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                                                   ram_addr_t size, void *opaque)
{
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    hwaddr addr = start_addr & TARGET_PAGE_MASK;
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    XenIOState *xen_io_state = opaque;
    XenPhysmap *physmap = NULL;

    QLIST_FOREACH(physmap, &xen_io_state->physmap, list) {
        if (range_covers_byte(physmap->phys_offset, physmap->size, addr)) {
            return physmap->start_addr;
        }
    }

    return start_addr;
}

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static int xen_add_to_physmap(XenIOState *state,
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                              hwaddr start_addr,
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                              ram_addr_t size,
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                              MemoryRegion *mr,
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                              hwaddr offset_within_region)
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{
    unsigned long i = 0;
    int rc = 0;
    XenPhysmap *physmap = NULL;
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    hwaddr pfn, start_gpfn;
    hwaddr phys_offset = memory_region_get_ram_addr(mr);
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    char path[80], value[17];
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    const char *mr_name;
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    if (get_physmapping(state, start_addr, size)) {
        return 0;
    }
    if (size <= 0) {
        return -1;
    }

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    /* Xen can only handle a single dirty log region for now and we want
     * the linear framebuffer to be that region.
     * Avoid tracking any regions that is not videoram and avoid tracking
     * the legacy vga region. */
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    if (mr == framebuffer && start_addr > 0xbffff) {
        goto go_physmap;
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    }
    return -1;

go_physmap:
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    DPRINTF("mapping vram to %"HWADDR_PRIx" - %"HWADDR_PRIx"\n",
            start_addr, start_addr + size);
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    pfn = phys_offset >> TARGET_PAGE_BITS;
    start_gpfn = start_addr >> TARGET_PAGE_BITS;
    for (i = 0; i < size >> TARGET_PAGE_BITS; i++) {
        unsigned long idx = pfn + i;
        xen_pfn_t gpfn = start_gpfn + i;

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        rc = xen_xc_domain_add_to_physmap(xen_xc, xen_domid, XENMAPSPACE_gmfn, idx, gpfn);
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        if (rc) {
            DPRINTF("add_to_physmap MFN %"PRI_xen_pfn" to PFN %"
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                    PRI_xen_pfn" failed: %d (errno: %d)\n", idx, gpfn, rc, errno);
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            return -rc;
        }
    }

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    mr_name = memory_region_name(mr);

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    physmap = g_malloc(sizeof (XenPhysmap));
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    physmap->start_addr = start_addr;
    physmap->size = size;
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    physmap->name = mr_name;
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    physmap->phys_offset = phys_offset;

    QLIST_INSERT_HEAD(&state->physmap, physmap, list);

    xc_domain_pin_memory_cacheattr(xen_xc, xen_domid,
                                   start_addr >> TARGET_PAGE_BITS,
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                                   (start_addr + size - 1) >> TARGET_PAGE_BITS,
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                                   XEN_DOMCTL_MEM_CACHEATTR_WB);
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    snprintf(path, sizeof(path),
            "/local/domain/0/device-model/%d/physmap/%"PRIx64"/start_addr",
            xen_domid, (uint64_t)phys_offset);
    snprintf(value, sizeof(value), "%"PRIx64, (uint64_t)start_addr);
    if (!xs_write(state->xenstore, 0, path, value, strlen(value))) {
        return -1;
    }
    snprintf(path, sizeof(path),
            "/local/domain/0/device-model/%d/physmap/%"PRIx64"/size",
            xen_domid, (uint64_t)phys_offset);
    snprintf(value, sizeof(value), "%"PRIx64, (uint64_t)size);
    if (!xs_write(state->xenstore, 0, path, value, strlen(value))) {
        return -1;
    }
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    if (mr_name) {
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        snprintf(path, sizeof(path),
                "/local/domain/0/device-model/%d/physmap/%"PRIx64"/name",
                xen_domid, (uint64_t)phys_offset);
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        if (!xs_write(state->xenstore, 0, path, mr_name, strlen(mr_name))) {
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            return -1;
        }
    }

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    return 0;
}

static int xen_remove_from_physmap(XenIOState *state,
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                                   hwaddr start_addr,
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                                   ram_addr_t size)
{
    unsigned long i = 0;
    int rc = 0;
    XenPhysmap *physmap = NULL;
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    hwaddr phys_offset = 0;
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    physmap = get_physmapping(state, start_addr, size);
    if (physmap == NULL) {
        return -1;
    }

    phys_offset = physmap->phys_offset;
    size = physmap->size;

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    DPRINTF("unmapping vram to %"HWADDR_PRIx" - %"HWADDR_PRIx", at "
            "%"HWADDR_PRIx"\n", start_addr, start_addr + size, phys_offset);
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    size >>= TARGET_PAGE_BITS;
    start_addr >>= TARGET_PAGE_BITS;
    phys_offset >>= TARGET_PAGE_BITS;
    for (i = 0; i < size; i++) {
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        xen_pfn_t idx = start_addr + i;
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        xen_pfn_t gpfn = phys_offset + i;

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        rc = xen_xc_domain_add_to_physmap(xen_xc, xen_domid, XENMAPSPACE_gmfn, idx, gpfn);
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        if (rc) {
            fprintf(stderr, "add_to_physmap MFN %"PRI_xen_pfn" to PFN %"
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                    PRI_xen_pfn" failed: %d (errno: %d)\n", idx, gpfn, rc, errno);
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            return -rc;
        }
    }

    QLIST_REMOVE(physmap, list);
    if (state->log_for_dirtybit == physmap) {
        state->log_for_dirtybit = NULL;
    }
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    g_free(physmap);
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    return 0;
}

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static void xen_set_memory(struct MemoryListener *listener,
                           MemoryRegionSection *section,
                           bool add)
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{
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    XenIOState *state = container_of(listener, XenIOState, memory_listener);
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    hwaddr start_addr = section->offset_within_address_space;
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    ram_addr_t size = int128_get64(section->size);
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    bool log_dirty = memory_region_is_logging(section->mr, DIRTY_MEMORY_VGA);
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    hvmmem_type_t mem_type;

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    if (section->mr == &ram_memory) {
        return;
    } else {
        if (add) {
            xen_map_memory_section(xen_xc, xen_domid, state->ioservid,
                                   section);
        } else {
            xen_unmap_memory_section(xen_xc, xen_domid, state->ioservid,
                                     section);
        }
    }

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    if (!memory_region_is_ram(section->mr)) {
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        return;
    }

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    if (log_dirty != add) {
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        return;
    }

    trace_xen_client_set_memory(start_addr, size, log_dirty);
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    start_addr &= TARGET_PAGE_MASK;
    size = TARGET_PAGE_ALIGN(size);
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    if (add) {
        if (!memory_region_is_rom(section->mr)) {
            xen_add_to_physmap(state, start_addr, size,
                               section->mr, section->offset_within_region);
        } else {
            mem_type = HVMMEM_ram_ro;
            if (xc_hvm_set_mem_type(xen_xc, xen_domid, mem_type,
                                    start_addr >> TARGET_PAGE_BITS,
                                    size >> TARGET_PAGE_BITS)) {
                DPRINTF("xc_hvm_set_mem_type error, addr: "TARGET_FMT_plx"\n",
                        start_addr);
            }
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        }
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    } else {
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        if (xen_remove_from_physmap(state, start_addr, size) < 0) {
            DPRINTF("physmapping does not exist at "TARGET_FMT_plx"\n", start_addr);
        }
    }
}

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static void xen_region_add(MemoryListener *listener,
                           MemoryRegionSection *section)
{
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    memory_region_ref(section->mr);
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    xen_set_memory(listener, section, true);
}

static void xen_region_del(MemoryListener *listener,
                           MemoryRegionSection *section)
{
    xen_set_memory(listener, section, false);
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    memory_region_unref(section->mr);
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}

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static void xen_io_add(MemoryListener *listener,
                       MemoryRegionSection *section)
{
    XenIOState *state = container_of(listener, XenIOState, io_listener);

    memory_region_ref(section->mr);

    xen_map_io_section(xen_xc, xen_domid, state->ioservid, section);
}

static void xen_io_del(MemoryListener *listener,
                       MemoryRegionSection *section)
{
    XenIOState *state = container_of(listener, XenIOState, io_listener);

    xen_unmap_io_section(xen_xc, xen_domid, state->ioservid, section);

    memory_region_unref(section->mr);
}

static void xen_device_realize(DeviceListener *listener,
			       DeviceState *dev)
{
    XenIOState *state = container_of(listener, XenIOState, device_listener);

    if (object_dynamic_cast(OBJECT(dev), TYPE_PCI_DEVICE)) {
        PCIDevice *pci_dev = PCI_DEVICE(dev);

        xen_map_pcidev(xen_xc, xen_domid, state->ioservid, pci_dev);
    }
}

static void xen_device_unrealize(DeviceListener *listener,
				 DeviceState *dev)
{
    XenIOState *state = container_of(listener, XenIOState, device_listener);

    if (object_dynamic_cast(OBJECT(dev), TYPE_PCI_DEVICE)) {
        PCIDevice *pci_dev = PCI_DEVICE(dev);

        xen_unmap_pcidev(xen_xc, xen_domid, state->ioservid, pci_dev);
    }
}

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static void xen_sync_dirty_bitmap(XenIOState *state,
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                                  hwaddr start_addr,
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                                  ram_addr_t size)
557
{
A
Avi Kivity 已提交
558
    hwaddr npages = size >> TARGET_PAGE_BITS;
559 560 561 562 563 564 565 566
    const int width = sizeof(unsigned long) * 8;
    unsigned long bitmap[(npages + width - 1) / width];
    int rc, i, j;
    const XenPhysmap *physmap = NULL;

    physmap = get_physmapping(state, start_addr, size);
    if (physmap == NULL) {
        /* not handled */
567
        return;
568 569 570 571 572
    }

    if (state->log_for_dirtybit == NULL) {
        state->log_for_dirtybit = physmap;
    } else if (state->log_for_dirtybit != physmap) {
573 574
        /* Only one range for dirty bitmap can be tracked. */
        return;
575 576 577 578 579
    }

    rc = xc_hvm_track_dirty_vram(xen_xc, xen_domid,
                                 start_addr >> TARGET_PAGE_BITS, npages,
                                 bitmap);
580
    if (rc < 0) {
R
Roger Pau Monne 已提交
581 582 583 584
#ifndef ENODATA
#define ENODATA  ENOENT
#endif
        if (errno == ENODATA) {
585 586
            memory_region_set_dirty(framebuffer, 0, size);
            DPRINTF("xen: track_dirty_vram failed (0x" TARGET_FMT_plx
587
                    ", 0x" TARGET_FMT_plx "): %s\n",
R
Roger Pau Monne 已提交
588
                    start_addr, start_addr + size, strerror(errno));
589 590
        }
        return;
591 592 593 594 595
    }

    for (i = 0; i < ARRAY_SIZE(bitmap); i++) {
        unsigned long map = bitmap[i];
        while (map != 0) {
N
Natanael Copa 已提交
596
            j = ctzl(map);
597
            map &= ~(1ul << j);
598
            memory_region_set_dirty(framebuffer,
599 600
                                    (i * width + j) * TARGET_PAGE_SIZE,
                                    TARGET_PAGE_SIZE);
601 602 603 604
        };
    }
}

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Avi Kivity 已提交
605
static void xen_log_start(MemoryListener *listener,
606 607
                          MemoryRegionSection *section,
                          int old, int new)
608
{
A
Avi Kivity 已提交
609
    XenIOState *state = container_of(listener, XenIOState, memory_listener);
610

611 612 613 614
    if (new & ~old & (1 << DIRTY_MEMORY_VGA)) {
        xen_sync_dirty_bitmap(state, section->offset_within_address_space,
                              int128_get64(section->size));
    }
615 616
}

617 618
static void xen_log_stop(MemoryListener *listener, MemoryRegionSection *section,
                         int old, int new)
619
{
A
Avi Kivity 已提交
620
    XenIOState *state = container_of(listener, XenIOState, memory_listener);
621

622 623 624 625 626
    if (old & ~new & (1 << DIRTY_MEMORY_VGA)) {
        state->log_for_dirtybit = NULL;
        /* Disable dirty bit tracking */
        xc_hvm_track_dirty_vram(xen_xc, xen_domid, 0, 0, NULL);
    }
627 628
}

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Avi Kivity 已提交
629
static void xen_log_sync(MemoryListener *listener, MemoryRegionSection *section)
630
{
A
Avi Kivity 已提交
631
    XenIOState *state = container_of(listener, XenIOState, memory_listener);
632

633
    xen_sync_dirty_bitmap(state, section->offset_within_address_space,
634
                          int128_get64(section->size));
635 636
}

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Avi Kivity 已提交
637 638
static void xen_log_global_start(MemoryListener *listener)
{
639 640 641
    if (xen_enabled()) {
        xen_in_migration = true;
    }
A
Avi Kivity 已提交
642 643 644
}

static void xen_log_global_stop(MemoryListener *listener)
645
{
646
    xen_in_migration = false;
647 648
}

A
Avi Kivity 已提交
649 650 651
static MemoryListener xen_memory_listener = {
    .region_add = xen_region_add,
    .region_del = xen_region_del,
652 653
    .log_start = xen_log_start,
    .log_stop = xen_log_stop,
A
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654 655 656
    .log_sync = xen_log_sync,
    .log_global_start = xen_log_global_start,
    .log_global_stop = xen_log_global_stop,
657
    .priority = 10,
658
};
J
Jun Nakajima 已提交
659

660 661 662 663 664 665 666 667 668 669 670
static MemoryListener xen_io_listener = {
    .region_add = xen_io_add,
    .region_del = xen_io_del,
    .priority = 10,
};

static DeviceListener xen_device_listener = {
    .realize = xen_device_realize,
    .unrealize = xen_device_unrealize,
};

671 672 673 674 675 676 677 678
/* get the ioreq packets from share mem */
static ioreq_t *cpu_get_ioreq_from_shared_memory(XenIOState *state, int vcpu)
{
    ioreq_t *req = xen_vcpu_ioreq(state->shared_page, vcpu);

    if (req->state != STATE_IOREQ_READY) {
        DPRINTF("I/O request not ready: "
                "%x, ptr: %x, port: %"PRIx64", "
679
                "data: %"PRIx64", count: %u, size: %u\n",
680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698
                req->state, req->data_is_ptr, req->addr,
                req->data, req->count, req->size);
        return NULL;
    }

    xen_rmb(); /* see IOREQ_READY /then/ read contents of ioreq */

    req->state = STATE_IOREQ_INPROCESS;
    return req;
}

/* use poll to get the port notification */
/* ioreq_vec--out,the */
/* retval--the number of ioreq packet */
static ioreq_t *cpu_get_ioreq(XenIOState *state)
{
    int i;
    evtchn_port_t port;

699
    port = xenevtchn_pending(state->xce_handle);
700
    if (port == state->bufioreq_local_port) {
701 702
        timer_mod(state->buffered_io_timer,
                BUFFER_IO_MAX_DELAY + qemu_clock_get_ms(QEMU_CLOCK_REALTIME));
703 704 705
        return NULL;
    }

706
    if (port != -1) {
A
Anthony PERARD 已提交
707
        for (i = 0; i < max_cpus; i++) {
708 709 710 711 712
            if (state->ioreq_local_port[i] == port) {
                break;
            }
        }

A
Anthony PERARD 已提交
713
        if (i == max_cpus) {
714 715 716 717
            hw_error("Fatal error while trying to get io event!\n");
        }

        /* unmask the wanted port again */
718
        xenevtchn_unmask(state->xce_handle, port);
719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757

        /* get the io packet from shared memory */
        state->send_vcpu = i;
        return cpu_get_ioreq_from_shared_memory(state, i);
    }

    /* read error or read nothing */
    return NULL;
}

static uint32_t do_inp(pio_addr_t addr, unsigned long size)
{
    switch (size) {
        case 1:
            return cpu_inb(addr);
        case 2:
            return cpu_inw(addr);
        case 4:
            return cpu_inl(addr);
        default:
            hw_error("inp: bad size: %04"FMT_pioaddr" %lx", addr, size);
    }
}

static void do_outp(pio_addr_t addr,
        unsigned long size, uint32_t val)
{
    switch (size) {
        case 1:
            return cpu_outb(addr, val);
        case 2:
            return cpu_outw(addr, val);
        case 4:
            return cpu_outl(addr, val);
        default:
            hw_error("outp: bad size: %04"FMT_pioaddr" %lx", addr, size);
    }
}

758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783
/*
 * Helper functions which read/write an object from/to physical guest
 * memory, as part of the implementation of an ioreq.
 *
 * Equivalent to
 *   cpu_physical_memory_rw(addr + (req->df ? -1 : +1) * req->size * i,
 *                          val, req->size, 0/1)
 * except without the integer overflow problems.
 */
static void rw_phys_req_item(hwaddr addr,
                             ioreq_t *req, uint32_t i, void *val, int rw)
{
    /* Do everything unsigned so overflow just results in a truncated result
     * and accesses to undesired parts of guest memory, which is up
     * to the guest */
    hwaddr offset = (hwaddr)req->size * i;
    if (req->df) {
        addr -= offset;
    } else {
        addr += offset;
    }
    cpu_physical_memory_rw(addr, val, req->size, rw);
}

static inline void read_phys_req_item(hwaddr addr,
                                      ioreq_t *req, uint32_t i, void *val)
784
{
785 786 787 788 789 790 791
    rw_phys_req_item(addr, req, i, val, 0);
}
static inline void write_phys_req_item(hwaddr addr,
                                       ioreq_t *req, uint32_t i, void *val)
{
    rw_phys_req_item(addr, req, i, val, 1);
}
792

793 794 795

static void cpu_ioreq_pio(ioreq_t *req)
{
796
    uint32_t i;
797

D
Don Slutz 已提交
798 799 800
    trace_cpu_ioreq_pio(req, req->dir, req->df, req->data_is_ptr, req->addr,
                         req->data, req->count, req->size);

801 802 803
    if (req->dir == IOREQ_READ) {
        if (!req->data_is_ptr) {
            req->data = do_inp(req->addr, req->size);
D
Don Slutz 已提交
804 805
            trace_cpu_ioreq_pio_read_reg(req, req->data, req->addr,
                                         req->size);
806 807 808 809 810
        } else {
            uint32_t tmp;

            for (i = 0; i < req->count; i++) {
                tmp = do_inp(req->addr, req->size);
811
                write_phys_req_item(req->data, req, i, &tmp);
812 813 814 815
            }
        }
    } else if (req->dir == IOREQ_WRITE) {
        if (!req->data_is_ptr) {
D
Don Slutz 已提交
816 817
            trace_cpu_ioreq_pio_write_reg(req, req->data, req->addr,
                                          req->size);
818 819 820 821 822
            do_outp(req->addr, req->size, req->data);
        } else {
            for (i = 0; i < req->count; i++) {
                uint32_t tmp = 0;

823
                read_phys_req_item(req->data, req, i, &tmp);
824 825 826 827 828 829 830 831
                do_outp(req->addr, req->size, tmp);
            }
        }
    }
}

static void cpu_ioreq_move(ioreq_t *req)
{
832
    uint32_t i;
833

D
Don Slutz 已提交
834 835 836
    trace_cpu_ioreq_move(req, req->dir, req->df, req->data_is_ptr, req->addr,
                         req->data, req->count, req->size);

837 838 839
    if (!req->data_is_ptr) {
        if (req->dir == IOREQ_READ) {
            for (i = 0; i < req->count; i++) {
840
                read_phys_req_item(req->addr, req, i, &req->data);
841 842 843
            }
        } else if (req->dir == IOREQ_WRITE) {
            for (i = 0; i < req->count; i++) {
844
                write_phys_req_item(req->addr, req, i, &req->data);
845 846 847
            }
        }
    } else {
848
        uint64_t tmp;
849 850 851

        if (req->dir == IOREQ_READ) {
            for (i = 0; i < req->count; i++) {
852 853
                read_phys_req_item(req->addr, req, i, &tmp);
                write_phys_req_item(req->data, req, i, &tmp);
854 855 856
            }
        } else if (req->dir == IOREQ_WRITE) {
            for (i = 0; i < req->count; i++) {
857 858
                read_phys_req_item(req->data, req, i, &tmp);
                write_phys_req_item(req->addr, req, i, &tmp);
859 860 861 862 863
            }
        }
    }
}

864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907
static void regs_to_cpu(vmware_regs_t *vmport_regs, ioreq_t *req)
{
    X86CPU *cpu;
    CPUX86State *env;

    cpu = X86_CPU(current_cpu);
    env = &cpu->env;
    env->regs[R_EAX] = req->data;
    env->regs[R_EBX] = vmport_regs->ebx;
    env->regs[R_ECX] = vmport_regs->ecx;
    env->regs[R_EDX] = vmport_regs->edx;
    env->regs[R_ESI] = vmport_regs->esi;
    env->regs[R_EDI] = vmport_regs->edi;
}

static void regs_from_cpu(vmware_regs_t *vmport_regs)
{
    X86CPU *cpu = X86_CPU(current_cpu);
    CPUX86State *env = &cpu->env;

    vmport_regs->ebx = env->regs[R_EBX];
    vmport_regs->ecx = env->regs[R_ECX];
    vmport_regs->edx = env->regs[R_EDX];
    vmport_regs->esi = env->regs[R_ESI];
    vmport_regs->edi = env->regs[R_EDI];
}

static void handle_vmport_ioreq(XenIOState *state, ioreq_t *req)
{
    vmware_regs_t *vmport_regs;

    assert(state->shared_vmport_page);
    vmport_regs =
        &state->shared_vmport_page->vcpu_vmport_regs[state->send_vcpu];
    QEMU_BUILD_BUG_ON(sizeof(*req) < sizeof(*vmport_regs));

    current_cpu = state->cpu_by_vcpu_id[state->send_vcpu];
    regs_to_cpu(vmport_regs, req);
    cpu_ioreq_pio(req);
    regs_from_cpu(vmport_regs);
    current_cpu = NULL;
}

static void handle_ioreq(XenIOState *state, ioreq_t *req)
908
{
D
Don Slutz 已提交
909 910 911
    trace_handle_ioreq(req, req->type, req->dir, req->df, req->data_is_ptr,
                       req->addr, req->data, req->count, req->size);

912 913 914 915 916
    if (!req->data_is_ptr && (req->dir == IOREQ_WRITE) &&
            (req->size < sizeof (target_ulong))) {
        req->data &= ((target_ulong) 1 << (8 * req->size)) - 1;
    }

D
Don Slutz 已提交
917 918 919 920
    if (req->dir == IOREQ_WRITE)
        trace_handle_ioreq_write(req, req->type, req->df, req->data_is_ptr,
                                 req->addr, req->data, req->count, req->size);

921 922 923 924 925 926 927
    switch (req->type) {
        case IOREQ_TYPE_PIO:
            cpu_ioreq_pio(req);
            break;
        case IOREQ_TYPE_COPY:
            cpu_ioreq_move(req);
            break;
928 929 930
        case IOREQ_TYPE_VMWARE_PORT:
            handle_vmport_ioreq(state, req);
            break;
931 932 933
        case IOREQ_TYPE_TIMEOFFSET:
            break;
        case IOREQ_TYPE_INVALIDATE:
J
Jan Kiszka 已提交
934
            xen_invalidate_map_cache();
935
            break;
936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956
        case IOREQ_TYPE_PCI_CONFIG: {
            uint32_t sbdf = req->addr >> 32;
            uint32_t val;

            /* Fake a write to port 0xCF8 so that
             * the config space access will target the
             * correct device model.
             */
            val = (1u << 31) |
                  ((req->addr & 0x0f00) << 16) |
                  ((sbdf & 0xffff) << 8) |
                  (req->addr & 0xfc);
            do_outp(0xcf8, 4, val);

            /* Now issue the config space access via
             * port 0xCFC
             */
            req->addr = 0xcfc | (req->addr & 0x03);
            cpu_ioreq_pio(req);
            break;
        }
957 958 959
        default:
            hw_error("Invalid ioreq type 0x%x\n", req->type);
    }
D
Don Slutz 已提交
960 961 962 963
    if (req->dir == IOREQ_READ) {
        trace_handle_ioreq_read(req, req->type, req->df, req->data_is_ptr,
                                req->addr, req->data, req->count, req->size);
    }
964 965
}

966
static int handle_buffered_iopage(XenIOState *state)
967
{
968
    buffered_iopage_t *buf_page = state->buffered_io_page;
969 970 971 972
    buf_ioreq_t *buf_req = NULL;
    ioreq_t req;
    int qw;

973
    if (!buf_page) {
974
        return 0;
975 976
    }

977 978
    memset(&req, 0x00, sizeof(req));

979 980 981 982 983 984 985 986 987 988 989 990 991
    for (;;) {
        uint32_t rdptr = buf_page->read_pointer, wrptr;

        xen_rmb();
        wrptr = buf_page->write_pointer;
        xen_rmb();
        if (rdptr != buf_page->read_pointer) {
            continue;
        }
        if (rdptr == wrptr) {
            break;
        }
        buf_req = &buf_page->buf_ioreq[rdptr % IOREQ_BUFFER_SLOT_NUM];
992 993 994 995 996 997 998 999 1000 1001 1002
        req.size = 1UL << buf_req->size;
        req.count = 1;
        req.addr = buf_req->addr;
        req.data = buf_req->data;
        req.state = STATE_IOREQ_READY;
        req.dir = buf_req->dir;
        req.df = 1;
        req.type = buf_req->type;
        req.data_is_ptr = 0;
        qw = (req.size == 8);
        if (qw) {
1003 1004
            buf_req = &buf_page->buf_ioreq[(rdptr + 1) %
                                           IOREQ_BUFFER_SLOT_NUM];
1005 1006 1007
            req.data |= ((uint64_t)buf_req->data) << 32;
        }

1008
        handle_ioreq(state, &req);
1009

1010
        atomic_add(&buf_page->read_pointer, qw + 1);
1011
    }
1012 1013

    return req.count;
1014 1015 1016 1017 1018 1019
}

static void handle_buffered_io(void *opaque)
{
    XenIOState *state = opaque;

1020
    if (handle_buffered_iopage(state)) {
1021 1022
        timer_mod(state->buffered_io_timer,
                BUFFER_IO_MAX_DELAY + qemu_clock_get_ms(QEMU_CLOCK_REALTIME));
1023
    } else {
1024
        timer_del(state->buffered_io_timer);
1025
        xenevtchn_unmask(state->xce_handle, state->bufioreq_local_port);
1026
    }
1027 1028 1029 1030 1031 1032 1033 1034 1035
}

static void cpu_handle_ioreq(void *opaque)
{
    XenIOState *state = opaque;
    ioreq_t *req = cpu_get_ioreq(state);

    handle_buffered_iopage(state);
    if (req) {
1036
        handle_ioreq(state, req);
1037 1038 1039 1040

        if (req->state != STATE_IOREQ_INPROCESS) {
            fprintf(stderr, "Badness in I/O request ... not in service?!: "
                    "%x, ptr: %x, port: %"PRIx64", "
1041
                    "data: %"PRIx64", count: %u, size: %u, type: %u\n",
1042
                    req->state, req->data_is_ptr, req->addr,
1043
                    req->data, req->count, req->size, req->type);
1044
            destroy_hvm_domain(false);
1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055
            return;
        }

        xen_wmb(); /* Update ioreq contents /then/ update state. */

        /*
         * We do this before we send the response so that the tools
         * have the opportunity to pick up on the reset before the
         * guest resumes and does a hlt with interrupts disabled which
         * causes Xen to powerdown the domain.
         */
1056
        if (runstate_is_running()) {
1057
            if (qemu_shutdown_requested_get()) {
1058
                destroy_hvm_domain(false);
1059 1060
            }
            if (qemu_reset_requested_get()) {
J
Jan Kiszka 已提交
1061
                qemu_system_reset(VMRESET_REPORT);
1062
                destroy_hvm_domain(true);
1063 1064 1065 1066
            }
        }

        req->state = STATE_IORESP_READY;
1067 1068
        xenevtchn_notify(state->xce_handle,
                         state->ioreq_local_port[state->send_vcpu]);
1069 1070 1071 1072 1073 1074 1075
    }
}

static void xen_main_loop_prepare(XenIOState *state)
{
    int evtchn_fd = -1;

1076 1077
    if (state->xce_handle != NULL) {
        evtchn_fd = xenevtchn_fd(state->xce_handle);
1078 1079
    }

1080
    state->buffered_io_timer = timer_new_ms(QEMU_CLOCK_REALTIME, handle_buffered_io,
1081 1082 1083
                                                 state);

    if (evtchn_fd != -1) {
1084 1085 1086 1087 1088 1089 1090 1091
        CPUState *cpu_state;

        DPRINTF("%s: Init cpu_by_vcpu_id\n", __func__);
        CPU_FOREACH(cpu_state) {
            DPRINTF("%s: cpu_by_vcpu_id[%d]=%p\n",
                    __func__, cpu_state->cpu_index, cpu_state);
            state->cpu_by_vcpu_id[cpu_state->cpu_index] = cpu_state;
        }
1092 1093 1094 1095 1096
        qemu_set_fd_handler(evtchn_fd, cpu_handle_ioreq, NULL, state);
    }
}


1097 1098
static void xen_hvm_change_state_handler(void *opaque, int running,
                                         RunState rstate)
1099
{
1100 1101
    XenIOState *state = opaque;

1102
    if (running) {
1103
        xen_main_loop_prepare(state);
1104
    }
1105 1106 1107 1108

    xen_set_ioreq_server_state(xen_xc, xen_domid,
                               state->ioservid,
                               (rstate == RUN_STATE_RUNNING));
1109 1110
}

1111
static void xen_exit_notifier(Notifier *n, void *data)
1112 1113 1114
{
    XenIOState *state = container_of(n, XenIOState, exit);

1115
    xenevtchn_close(state->xce_handle);
1116
    xs_daemon_close(state->xenstore);
1117 1118
}

1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139
static void xen_read_physmap(XenIOState *state)
{
    XenPhysmap *physmap = NULL;
    unsigned int len, num, i;
    char path[80], *value = NULL;
    char **entries = NULL;

    snprintf(path, sizeof(path),
            "/local/domain/0/device-model/%d/physmap", xen_domid);
    entries = xs_directory(state->xenstore, 0, path, &num);
    if (entries == NULL)
        return;

    for (i = 0; i < num; i++) {
        physmap = g_malloc(sizeof (XenPhysmap));
        physmap->phys_offset = strtoull(entries[i], NULL, 16);
        snprintf(path, sizeof(path),
                "/local/domain/0/device-model/%d/physmap/%s/start_addr",
                xen_domid, entries[i]);
        value = xs_read(state->xenstore, 0, path, &len);
        if (value == NULL) {
1140
            g_free(physmap);
1141 1142 1143 1144 1145 1146 1147 1148 1149 1150
            continue;
        }
        physmap->start_addr = strtoull(value, NULL, 16);
        free(value);

        snprintf(path, sizeof(path),
                "/local/domain/0/device-model/%d/physmap/%s/size",
                xen_domid, entries[i]);
        value = xs_read(state->xenstore, 0, path, &len);
        if (value == NULL) {
1151
            g_free(physmap);
1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166
            continue;
        }
        physmap->size = strtoull(value, NULL, 16);
        free(value);

        snprintf(path, sizeof(path),
                "/local/domain/0/device-model/%d/physmap/%s/name",
                xen_domid, entries[i]);
        physmap->name = xs_read(state->xenstore, 0, path, &len);

        QLIST_INSERT_HEAD(&state->physmap, physmap, list);
    }
    free(entries);
}

1167 1168 1169 1170 1171
static void xen_wakeup_notifier(Notifier *notifier, void *data)
{
    xc_set_hvm_param(xen_xc, xen_domid, HVM_PARAM_ACPI_S_STATE, 0);
}

1172
void xen_hvm_init(PCMachineState *pcms, MemoryRegion **ram_memory)
A
Anthony PERARD 已提交
1173
{
1174
    int i, rc;
1175 1176 1177
    xen_pfn_t ioreq_pfn;
    xen_pfn_t bufioreq_pfn;
    evtchn_port_t bufioreq_evtchn;
1178 1179
    XenIOState *state;

1180
    state = g_malloc0(sizeof (XenIOState));
1181

1182 1183
    state->xce_handle = xenevtchn_open(NULL, 0);
    if (state->xce_handle == NULL) {
1184
        perror("xen: event channel open");
1185
        goto err;
1186 1187
    }

1188 1189 1190
    state->xenstore = xs_daemon_open();
    if (state->xenstore == NULL) {
        perror("xen: xenstore open");
1191
        goto err;
1192 1193
    }

1194 1195 1196
    rc = xen_create_ioreq_server(xen_xc, xen_domid, &state->ioservid);
    if (rc < 0) {
        perror("xen: ioreq server create");
1197
        goto err;
1198 1199
    }

1200 1201 1202
    state->exit.notify = xen_exit_notifier;
    qemu_add_exit_notifier(&state->exit);

1203 1204 1205
    state->suspend.notify = xen_suspend_notifier;
    qemu_register_suspend_notifier(&state->suspend);

1206 1207 1208
    state->wakeup.notify = xen_wakeup_notifier;
    qemu_register_wakeup_notifier(&state->wakeup);

1209 1210 1211 1212
    rc = xen_get_ioreq_server_info(xen_xc, xen_domid, state->ioservid,
                                   &ioreq_pfn, &bufioreq_pfn,
                                   &bufioreq_evtchn);
    if (rc < 0) {
1213
        error_report("failed to get ioreq server info: error %d handle=%p",
1214 1215
                     errno, xen_xc);
        goto err;
1216 1217
    }

1218
    DPRINTF("shared page at pfn %lx\n", ioreq_pfn);
1219 1220 1221
    DPRINTF("buffered io page at pfn %lx\n", bufioreq_pfn);
    DPRINTF("buffered io evtchn is %x\n", bufioreq_evtchn);

1222
    state->shared_page = xenforeignmemory_map(xen_fmem, xen_domid,
1223
                                              PROT_READ|PROT_WRITE,
1224
                                              1, &ioreq_pfn, NULL);
1225
    if (state->shared_page == NULL) {
1226
        error_report("map shared IO page returned error %d handle=%p",
1227 1228
                     errno, xen_xc);
        goto err;
1229 1230
    }

1231 1232 1233 1234
    rc = xen_get_vmport_regs_pfn(xen_xc, xen_domid, &ioreq_pfn);
    if (!rc) {
        DPRINTF("shared vmport page at pfn %lx\n", ioreq_pfn);
        state->shared_vmport_page =
1235 1236
            xenforeignmemory_map(xen_fmem, xen_domid, PROT_READ|PROT_WRITE,
                                 1, &ioreq_pfn, NULL);
1237
        if (state->shared_vmport_page == NULL) {
1238 1239
            error_report("map shared vmport IO page returned error %d handle=%p",
                         errno, xen_xc);
1240
            goto err;
1241 1242
        }
    } else if (rc != -ENOSYS) {
1243 1244 1245
        error_report("get vmport regs pfn returned error %d, rc=%d",
                     errno, rc);
        goto err;
1246 1247
    }

1248
    state->buffered_io_page = xenforeignmemory_map(xen_fmem, xen_domid,
1249
                                                   PROT_READ|PROT_WRITE,
1250
                                                   1, &bufioreq_pfn, NULL);
1251
    if (state->buffered_io_page == NULL) {
1252 1253
        error_report("map buffered IO page returned error %d", errno);
        goto err;
1254 1255
    }

1256 1257 1258
    /* Note: cpus is empty at this point in init */
    state->cpu_by_vcpu_id = g_malloc0(max_cpus * sizeof(CPUState *));

1259 1260
    rc = xen_set_ioreq_server_state(xen_xc, xen_domid, state->ioservid, true);
    if (rc < 0) {
1261
        error_report("failed to enable ioreq server info: error %d handle=%p",
1262 1263
                     errno, xen_xc);
        goto err;
1264 1265
    }

A
Anthony PERARD 已提交
1266
    state->ioreq_local_port = g_malloc0(max_cpus * sizeof (evtchn_port_t));
1267 1268

    /* FIXME: how about if we overflow the page here? */
A
Anthony PERARD 已提交
1269
    for (i = 0; i < max_cpus; i++) {
1270
        rc = xenevtchn_bind_interdomain(state->xce_handle, xen_domid,
1271 1272
                                        xen_vcpu_eport(state->shared_page, i));
        if (rc == -1) {
1273 1274
            error_report("shared evtchn %d bind error %d", i, errno);
            goto err;
1275 1276 1277 1278
        }
        state->ioreq_local_port[i] = rc;
    }

1279
    rc = xenevtchn_bind_interdomain(state->xce_handle, xen_domid,
1280
                                    bufioreq_evtchn);
1281
    if (rc == -1) {
1282 1283
        error_report("buffered evtchn bind error %d", errno);
        goto err;
1284 1285 1286
    }
    state->bufioreq_local_port = rc;

J
Jun Nakajima 已提交
1287
    /* Init RAM management */
1288
    xen_map_cache_init(xen_phys_offset_to_gaddr, state);
1289
    xen_ram_init(pcms, ram_size, ram_memory);
J
Jun Nakajima 已提交
1290

1291
    qemu_add_vm_change_state_handler(xen_hvm_change_state_handler, state);
1292

A
Avi Kivity 已提交
1293
    state->memory_listener = xen_memory_listener;
1294
    QLIST_INIT(&state->physmap);
1295
    memory_listener_register(&state->memory_listener, &address_space_memory);
1296 1297
    state->log_for_dirtybit = NULL;

1298 1299 1300 1301 1302 1303
    state->io_listener = xen_io_listener;
    memory_listener_register(&state->io_listener, &address_space_io);

    state->device_listener = xen_device_listener;
    device_listener_register(&state->device_listener);

1304 1305
    /* Initialize backend core & drivers */
    if (xen_be_init() != 0) {
1306 1307
        error_report("xen backend core setup failed");
        goto err;
1308 1309
    }
    xen_be_register("console", &xen_console_ops);
1310
    xen_be_register("vkbd", &xen_kbdmouse_ops);
1311
    xen_be_register("qdisk", &xen_blkdev_ops);
1312
    xen_read_physmap(state);
1313
    return;
1314

1315 1316 1317
err:
    error_report("xen hardware virtual machine initialisation failed");
    exit(1);
A
Anthony PERARD 已提交
1318
}
1319

1320
void destroy_hvm_domain(bool reboot)
1321
{
1322
    xc_interface *xc_handle;
1323 1324
    int sts;

1325 1326
    xc_handle = xc_interface_open(0, 0, 0);
    if (xc_handle == NULL) {
1327 1328
        fprintf(stderr, "Cannot acquire xenctrl handle\n");
    } else {
1329 1330
        sts = xc_domain_shutdown(xc_handle, xen_domid,
                                 reboot ? SHUTDOWN_reboot : SHUTDOWN_poweroff);
1331
        if (sts != 0) {
1332 1333 1334
            fprintf(stderr, "xc_domain_shutdown failed to issue %s, "
                    "sts %d, %s\n", reboot ? "reboot" : "poweroff",
                    sts, strerror(errno));
1335
        } else {
1336 1337
            fprintf(stderr, "Issued domain %d %s\n", xen_domid,
                    reboot ? "reboot" : "poweroff");
1338 1339 1340 1341
        }
        xc_interface_close(xc_handle);
    }
}
1342 1343 1344 1345 1346

void xen_register_framebuffer(MemoryRegion *mr)
{
    framebuffer = mr;
}
1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358

void xen_shutdown_fatal_error(const char *fmt, ...)
{
    va_list ap;

    va_start(ap, fmt);
    vfprintf(stderr, fmt, ap);
    va_end(ap);
    fprintf(stderr, "Will destroy the domain.\n");
    /* destroy the domain */
    qemu_system_shutdown_request();
}
1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379

void xen_modified_memory(ram_addr_t start, ram_addr_t length)
{
    if (unlikely(xen_in_migration)) {
        int rc;
        ram_addr_t start_pfn, nb_pages;

        if (length == 0) {
            length = TARGET_PAGE_SIZE;
        }
        start_pfn = start >> TARGET_PAGE_BITS;
        nb_pages = ((start + length + TARGET_PAGE_SIZE - 1) >> TARGET_PAGE_BITS)
            - start_pfn;
        rc = xc_hvm_modified_memory(xen_xc, xen_domid, start_pfn, nb_pages);
        if (rc) {
            fprintf(stderr,
                    "%s failed for "RAM_ADDR_FMT" ("RAM_ADDR_FMT"): %i, %s\n",
                    __func__, start, nb_pages, rc, strerror(-rc));
        }
    }
}
W
Wei Liu 已提交
1380 1381 1382 1383 1384 1385 1386 1387 1388

void qmp_xen_set_global_dirty_log(bool enable, Error **errp)
{
    if (enable) {
        memory_global_dirty_log_start();
    } else {
        memory_global_dirty_log_stop();
    }
}