xen-all.c 28.9 KB
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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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#include <sys/mman.h>

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#include "hw/pci.h"
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#include "hw/pc.h"
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#include "hw/xen_common.h"
#include "hw/xen_backend.h"

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#include "range.h"
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#include "xen-mapcache.h"
#include "trace.h"
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#include "exec-memory.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

#ifdef DEBUG_XEN
#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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/* Compatibility with older version */
#if __XEN_LATEST_INTERFACE_VERSION__ < 0x0003020a
static inline uint32_t xen_vcpu_eport(shared_iopage_t *shared_page, int i)
{
    return shared_page->vcpu_iodata[i].vp_eport;
}
static inline ioreq_t *xen_vcpu_ioreq(shared_iopage_t *shared_page, int vcpu)
{
    return &shared_page->vcpu_iodata[vcpu].vp_ioreq;
}
#  define FMT_ioreq_size PRIx64
#else
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 FMT_ioreq_size "u"
#endif

#define BUFFER_IO_MAX_DELAY  100

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typedef struct XenPhysmap {
    target_phys_addr_t start_addr;
    ram_addr_t size;
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    MemoryRegion *mr;
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    target_phys_addr_t phys_offset;

    QLIST_ENTRY(XenPhysmap) list;
} XenPhysmap;

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typedef struct XenIOState {
    shared_iopage_t *shared_page;
    buffered_iopage_t *buffered_io_page;
    QEMUTimer *buffered_io_timer;
    /* the evtchn port for polling the notification, */
    evtchn_port_t *ioreq_local_port;
    /* the evtchn fd for polling */
    XenEvtchn xce_handle;
    /* 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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    QLIST_HEAD(, XenPhysmap) physmap;
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    target_phys_addr_t free_phys_offset;
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    const XenPhysmap *log_for_dirtybit;
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    Notifier exit;
} 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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void xen_cmos_set_s3_resume(void *opaque, int irq, int level)
{
    pc_cmos_set_s3_resume(opaque, irq, level);
    if (level) {
        xc_set_hvm_param(xen_xc, xen_domid, HVM_PARAM_ACPI_S_STATE, 3);
    }
}

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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 */

static void xen_ram_init(ram_addr_t ram_size)
{
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    MemoryRegion *sysmem = get_system_memory();
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    ram_addr_t below_4g_mem_size, above_4g_mem_size = 0;
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    ram_addr_t block_len;
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    block_len = ram_size;
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    if (ram_size >= HVM_BELOW_4G_RAM_END) {
        /* Xen does not allocate the memory continuously, and keep a hole at
         * HVM_BELOW_4G_MMIO_START of HVM_BELOW_4G_MMIO_LENGTH
         */
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        block_len += HVM_BELOW_4G_MMIO_LENGTH;
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    }
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    memory_region_init_ram(&ram_memory, "xen.ram", block_len);
    vmstate_register_ram_global(&ram_memory);
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    if (ram_size >= HVM_BELOW_4G_RAM_END) {
        above_4g_mem_size = ram_size - HVM_BELOW_4G_RAM_END;
        below_4g_mem_size = HVM_BELOW_4G_RAM_END;
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    } else {
        below_4g_mem_size = ram_size;
    }

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    memory_region_init_alias(&ram_640k, "xen.ram.640k",
                             &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, "xen.ram.lo",
                             &ram_memory, 0xc0000, below_4g_mem_size - 0xc0000);
    memory_region_add_subregion(sysmem, 0xc0000, &ram_lo);
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    if (above_4g_mem_size > 0) {
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        memory_region_init_alias(&ram_hi, "xen.ram.hi",
                                 &ram_memory, 0x100000000ULL,
                                 above_4g_mem_size);
        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)
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{
    unsigned long nr_pfn;
    xen_pfn_t *pfn_list;
    int i;

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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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        hw_error("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,
                                   target_phys_addr_t start_addr, ram_addr_t size)
{
    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;
}

#if CONFIG_XEN_CTRL_INTERFACE_VERSION >= 340
static int xen_add_to_physmap(XenIOState *state,
                              target_phys_addr_t start_addr,
                              ram_addr_t size,
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                              MemoryRegion *mr,
                              target_phys_addr_t offset_within_region)
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{
    unsigned long i = 0;
    int rc = 0;
    XenPhysmap *physmap = NULL;
    target_phys_addr_t pfn, start_gpfn;
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    target_phys_addr_t phys_offset = memory_region_get_ram_addr(mr);
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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 %llx - %llx\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;

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

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    physmap = g_malloc(sizeof (XenPhysmap));
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    physmap->start_addr = start_addr;
    physmap->size = size;
    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,
                                   (start_addr + size) >> TARGET_PAGE_BITS,
                                   XEN_DOMCTL_MEM_CACHEATTR_WB);
    return 0;
}

static int xen_remove_from_physmap(XenIOState *state,
                                   target_phys_addr_t start_addr,
                                   ram_addr_t size)
{
    unsigned long i = 0;
    int rc = 0;
    XenPhysmap *physmap = NULL;
    target_phys_addr_t phys_offset = 0;

    physmap = get_physmapping(state, start_addr, size);
    if (physmap == NULL) {
        return -1;
    }

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

    DPRINTF("unmapping vram to %llx - %llx, from %llx\n",
            phys_offset, phys_offset + size, start_addr);

    size >>= TARGET_PAGE_BITS;
    start_addr >>= TARGET_PAGE_BITS;
    phys_offset >>= TARGET_PAGE_BITS;
    for (i = 0; i < size; i++) {
        unsigned long idx = start_addr + i;
        xen_pfn_t gpfn = phys_offset + i;

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

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

    return 0;
}

#else
static int xen_add_to_physmap(XenIOState *state,
                              target_phys_addr_t start_addr,
                              ram_addr_t size,
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                              MemoryRegion *mr,
                              target_phys_addr_t offset_within_region)
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{
    return -ENOSYS;
}

static int xen_remove_from_physmap(XenIOState *state,
                                   target_phys_addr_t start_addr,
                                   ram_addr_t size)
{
    return -ENOSYS;
}
#endif

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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);
    target_phys_addr_t start_addr = section->offset_within_address_space;
    ram_addr_t size = section->size;
    bool log_dirty = memory_region_is_logging(section->mr);
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    hvmmem_type_t mem_type;

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

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    if (!(section->mr != &ram_memory
          && ( (log_dirty && add) || (!log_dirty && !add)))) {
        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)
{
    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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static void xen_sync_dirty_bitmap(XenIOState *state,
                                  target_phys_addr_t start_addr,
                                  ram_addr_t size)
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{
    target_phys_addr_t npages = size >> TARGET_PAGE_BITS;
    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 */
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        return;
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    }

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

    rc = xc_hvm_track_dirty_vram(xen_xc, xen_domid,
                                 start_addr >> TARGET_PAGE_BITS, npages,
                                 bitmap);
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    if (rc < 0) {
        if (rc != -ENODATA) {
            fprintf(stderr, "xen: track_dirty_vram failed (0x" TARGET_FMT_plx
                    ", 0x" TARGET_FMT_plx "): %s\n",
                    start_addr, start_addr + size, strerror(-rc));
        }
        return;
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    }

    for (i = 0; i < ARRAY_SIZE(bitmap); i++) {
        unsigned long map = bitmap[i];
        while (map != 0) {
            j = ffsl(map) - 1;
            map &= ~(1ul << j);
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            memory_region_set_dirty(framebuffer,
                                    (i * width + j) * TARGET_PAGE_SIZE);
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        };
    }
}

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static void xen_log_start(MemoryListener *listener,
                          MemoryRegionSection *section)
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{
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    XenIOState *state = container_of(listener, XenIOState, memory_listener);
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    xen_sync_dirty_bitmap(state, section->offset_within_address_space,
                          section->size);
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}

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static void xen_log_stop(MemoryListener *listener, MemoryRegionSection *section)
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{
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    XenIOState *state = container_of(listener, XenIOState, memory_listener);
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    state->log_for_dirtybit = NULL;
    /* Disable dirty bit tracking */
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    xc_hvm_track_dirty_vram(xen_xc, xen_domid, 0, 0, NULL);
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}

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static void xen_log_sync(MemoryListener *listener, MemoryRegionSection *section)
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{
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    XenIOState *state = container_of(listener, XenIOState, memory_listener);
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    xen_sync_dirty_bitmap(state, section->offset_within_address_space,
                          section->size);
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}

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static void xen_log_global_start(MemoryListener *listener)
{
}

static void xen_log_global_stop(MemoryListener *listener)
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{
}

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static MemoryListener xen_memory_listener = {
    .region_add = xen_region_add,
    .region_del = xen_region_del,
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    .log_start = xen_log_start,
    .log_stop = xen_log_stop,
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    .log_sync = xen_log_sync,
    .log_global_start = xen_log_global_start,
    .log_global_stop = xen_log_global_stop,
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};
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/* VCPU Operations, MMIO, IO ring ... */

static void xen_reset_vcpu(void *opaque)
{
    CPUState *env = opaque;

    env->halted = 1;
}

void xen_vcpu_init(void)
{
    CPUState *first_cpu;

    if ((first_cpu = qemu_get_cpu(0))) {
        qemu_register_reset(xen_reset_vcpu, first_cpu);
        xen_reset_vcpu(first_cpu);
    }
}

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/* 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", "
                "data: %"PRIx64", count: %" FMT_ioreq_size ", size: %" FMT_ioreq_size "\n",
                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;

    port = xc_evtchn_pending(state->xce_handle);
    if (port != -1) {
        for (i = 0; i < smp_cpus; i++) {
            if (state->ioreq_local_port[i] == port) {
                break;
            }
        }

        if (i == smp_cpus) {
            hw_error("Fatal error while trying to get io event!\n");
        }

        /* unmask the wanted port again */
        xc_evtchn_unmask(state->xce_handle, port);

        /* 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);
    }
}

static void cpu_ioreq_pio(ioreq_t *req)
{
    int i, sign;

    sign = req->df ? -1 : 1;

    if (req->dir == IOREQ_READ) {
        if (!req->data_is_ptr) {
            req->data = do_inp(req->addr, req->size);
        } else {
            uint32_t tmp;

            for (i = 0; i < req->count; i++) {
                tmp = do_inp(req->addr, req->size);
                cpu_physical_memory_write(req->data + (sign * i * req->size),
                        (uint8_t *) &tmp, req->size);
            }
        }
    } else if (req->dir == IOREQ_WRITE) {
        if (!req->data_is_ptr) {
            do_outp(req->addr, req->size, req->data);
        } else {
            for (i = 0; i < req->count; i++) {
                uint32_t tmp = 0;

                cpu_physical_memory_read(req->data + (sign * i * req->size),
                        (uint8_t*) &tmp, req->size);
                do_outp(req->addr, req->size, tmp);
            }
        }
    }
}

static void cpu_ioreq_move(ioreq_t *req)
{
    int i, sign;

    sign = req->df ? -1 : 1;

    if (!req->data_is_ptr) {
        if (req->dir == IOREQ_READ) {
            for (i = 0; i < req->count; i++) {
                cpu_physical_memory_read(req->addr + (sign * i * req->size),
                        (uint8_t *) &req->data, req->size);
            }
        } else if (req->dir == IOREQ_WRITE) {
            for (i = 0; i < req->count; i++) {
                cpu_physical_memory_write(req->addr + (sign * i * req->size),
                        (uint8_t *) &req->data, req->size);
            }
        }
    } else {
649
        uint64_t tmp;
650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685

        if (req->dir == IOREQ_READ) {
            for (i = 0; i < req->count; i++) {
                cpu_physical_memory_read(req->addr + (sign * i * req->size),
                        (uint8_t*) &tmp, req->size);
                cpu_physical_memory_write(req->data + (sign * i * req->size),
                        (uint8_t*) &tmp, req->size);
            }
        } else if (req->dir == IOREQ_WRITE) {
            for (i = 0; i < req->count; i++) {
                cpu_physical_memory_read(req->data + (sign * i * req->size),
                        (uint8_t*) &tmp, req->size);
                cpu_physical_memory_write(req->addr + (sign * i * req->size),
                        (uint8_t*) &tmp, req->size);
            }
        }
    }
}

static void handle_ioreq(ioreq_t *req)
{
    if (!req->data_is_ptr && (req->dir == IOREQ_WRITE) &&
            (req->size < sizeof (target_ulong))) {
        req->data &= ((target_ulong) 1 << (8 * req->size)) - 1;
    }

    switch (req->type) {
        case IOREQ_TYPE_PIO:
            cpu_ioreq_pio(req);
            break;
        case IOREQ_TYPE_COPY:
            cpu_ioreq_move(req);
            break;
        case IOREQ_TYPE_TIMEOFFSET:
            break;
        case IOREQ_TYPE_INVALIDATE:
J
Jan Kiszka 已提交
686
            xen_invalidate_map_cache();
687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764
            break;
        default:
            hw_error("Invalid ioreq type 0x%x\n", req->type);
    }
}

static void handle_buffered_iopage(XenIOState *state)
{
    buf_ioreq_t *buf_req = NULL;
    ioreq_t req;
    int qw;

    if (!state->buffered_io_page) {
        return;
    }

    while (state->buffered_io_page->read_pointer != state->buffered_io_page->write_pointer) {
        buf_req = &state->buffered_io_page->buf_ioreq[
            state->buffered_io_page->read_pointer % IOREQ_BUFFER_SLOT_NUM];
        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) {
            buf_req = &state->buffered_io_page->buf_ioreq[
                (state->buffered_io_page->read_pointer + 1) % IOREQ_BUFFER_SLOT_NUM];
            req.data |= ((uint64_t)buf_req->data) << 32;
        }

        handle_ioreq(&req);

        xen_mb();
        state->buffered_io_page->read_pointer += qw ? 2 : 1;
    }
}

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

    handle_buffered_iopage(state);
    qemu_mod_timer(state->buffered_io_timer,
                   BUFFER_IO_MAX_DELAY + qemu_get_clock_ms(rt_clock));
}

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

    handle_buffered_iopage(state);
    if (req) {
        handle_ioreq(req);

        if (req->state != STATE_IOREQ_INPROCESS) {
            fprintf(stderr, "Badness in I/O request ... not in service?!: "
                    "%x, ptr: %x, port: %"PRIx64", "
                    "data: %"PRIx64", count: %" FMT_ioreq_size ", size: %" FMT_ioreq_size "\n",
                    req->state, req->data_is_ptr, req->addr,
                    req->data, req->count, req->size);
            destroy_hvm_domain();
            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.
         */
765
        if (runstate_is_running()) {
766 767 768 769
            if (qemu_shutdown_requested_get()) {
                destroy_hvm_domain();
            }
            if (qemu_reset_requested_get()) {
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Jan Kiszka 已提交
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                qemu_system_reset(VMRESET_REPORT);
771 772 773 774 775 776 777 778
            }
        }

        req->state = STATE_IORESP_READY;
        xc_evtchn_notify(state->xce_handle, state->ioreq_local_port[state->send_vcpu]);
    }
}

779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838
static int store_dev_info(int domid, CharDriverState *cs, const char *string)
{
    struct xs_handle *xs = NULL;
    char *path = NULL;
    char *newpath = NULL;
    char *pts = NULL;
    int ret = -1;

    /* Only continue if we're talking to a pty. */
    if (strncmp(cs->filename, "pty:", 4)) {
        return 0;
    }
    pts = cs->filename + 4;

    /* We now have everything we need to set the xenstore entry. */
    xs = xs_open(0);
    if (xs == NULL) {
        fprintf(stderr, "Could not contact XenStore\n");
        goto out;
    }

    path = xs_get_domain_path(xs, domid);
    if (path == NULL) {
        fprintf(stderr, "xs_get_domain_path() error\n");
        goto out;
    }
    newpath = realloc(path, (strlen(path) + strlen(string) +
                strlen("/tty") + 1));
    if (newpath == NULL) {
        fprintf(stderr, "realloc error\n");
        goto out;
    }
    path = newpath;

    strcat(path, string);
    strcat(path, "/tty");
    if (!xs_write(xs, XBT_NULL, path, pts, strlen(pts))) {
        fprintf(stderr, "xs_write for '%s' fail", string);
        goto out;
    }
    ret = 0;

out:
    free(path);
    xs_close(xs);

    return ret;
}

void xenstore_store_pv_console_info(int i, CharDriverState *chr)
{
    if (i == 0) {
        store_dev_info(xen_domid, chr, "/console");
    } else {
        char buf[32];
        snprintf(buf, sizeof(buf), "/device/console/%d", i);
        store_dev_info(xen_domid, chr, buf);
    }
}

839
static void xenstore_record_dm_state(struct xs_handle *xs, const char *state)
840 841 842
{
    char path[50];

843 844 845 846 847
    if (xs == NULL) {
        fprintf(stderr, "xenstore connection not initialized\n");
        exit(1);
    }

848
    snprintf(path, sizeof (path), "/local/domain/0/device-model/%u/state", xen_domid);
849
    if (!xs_write(xs, XBT_NULL, path, state, strlen(state))) {
850 851 852 853 854
        fprintf(stderr, "error recording dm state\n");
        exit(1);
    }
}

855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872
static void xen_main_loop_prepare(XenIOState *state)
{
    int evtchn_fd = -1;

    if (state->xce_handle != XC_HANDLER_INITIAL_VALUE) {
        evtchn_fd = xc_evtchn_fd(state->xce_handle);
    }

    state->buffered_io_timer = qemu_new_timer_ms(rt_clock, handle_buffered_io,
                                                 state);
    qemu_mod_timer(state->buffered_io_timer, qemu_get_clock_ms(rt_clock));

    if (evtchn_fd != -1) {
        qemu_set_fd_handler(evtchn_fd, cpu_handle_ioreq, NULL, state);
    }
}


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Anthony PERARD 已提交
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/* Initialise Xen */

875 876
static void xen_change_state_handler(void *opaque, int running,
                                     RunState state)
877 878 879 880 881 882 883
{
    if (running) {
        /* record state running */
        xenstore_record_dm_state(xenstore, "running");
    }
}

884 885
static void xen_hvm_change_state_handler(void *opaque, int running,
                                         RunState rstate)
886
{
887
    XenIOState *xstate = opaque;
888
    if (running) {
889
        xen_main_loop_prepare(xstate);
890 891 892
    }
}

893
static void xen_exit_notifier(Notifier *n, void *data)
894 895 896 897
{
    XenIOState *state = container_of(n, XenIOState, exit);

    xc_evtchn_close(state->xce_handle);
898
    xs_daemon_close(state->xenstore);
899 900
}

A
Anthony PERARD 已提交
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int xen_init(void)
{
    xen_xc = xen_xc_interface_open(0, 0, 0);
    if (xen_xc == XC_HANDLER_INITIAL_VALUE) {
        xen_be_printf(NULL, 0, "can't open xen interface\n");
        return -1;
    }
908
    qemu_add_vm_change_state_handler(xen_change_state_handler, NULL);
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Anthony PERARD 已提交
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    return 0;
}
A
Anthony PERARD 已提交
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int xen_hvm_init(void)
{
915 916 917 918
    int i, rc;
    unsigned long ioreq_pfn;
    XenIOState *state;

919
    state = g_malloc0(sizeof (XenIOState));
920 921 922 923 924 925 926

    state->xce_handle = xen_xc_evtchn_open(NULL, 0);
    if (state->xce_handle == XC_HANDLER_INITIAL_VALUE) {
        perror("xen: event channel open");
        return -errno;
    }

927 928 929 930 931 932
    state->xenstore = xs_daemon_open();
    if (state->xenstore == NULL) {
        perror("xen: xenstore open");
        return -errno;
    }

933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952
    state->exit.notify = xen_exit_notifier;
    qemu_add_exit_notifier(&state->exit);

    xc_get_hvm_param(xen_xc, xen_domid, HVM_PARAM_IOREQ_PFN, &ioreq_pfn);
    DPRINTF("shared page at pfn %lx\n", ioreq_pfn);
    state->shared_page = xc_map_foreign_range(xen_xc, xen_domid, XC_PAGE_SIZE,
                                              PROT_READ|PROT_WRITE, ioreq_pfn);
    if (state->shared_page == NULL) {
        hw_error("map shared IO page returned error %d handle=" XC_INTERFACE_FMT,
                 errno, xen_xc);
    }

    xc_get_hvm_param(xen_xc, xen_domid, HVM_PARAM_BUFIOREQ_PFN, &ioreq_pfn);
    DPRINTF("buffered io page at pfn %lx\n", ioreq_pfn);
    state->buffered_io_page = xc_map_foreign_range(xen_xc, xen_domid, XC_PAGE_SIZE,
                                                   PROT_READ|PROT_WRITE, ioreq_pfn);
    if (state->buffered_io_page == NULL) {
        hw_error("map buffered IO page returned error %d", errno);
    }

953
    state->ioreq_local_port = g_malloc0(smp_cpus * sizeof (evtchn_port_t));
954 955 956 957 958 959 960 961 962 963 964 965

    /* FIXME: how about if we overflow the page here? */
    for (i = 0; i < smp_cpus; i++) {
        rc = xc_evtchn_bind_interdomain(state->xce_handle, xen_domid,
                                        xen_vcpu_eport(state->shared_page, i));
        if (rc == -1) {
            fprintf(stderr, "bind interdomain ioctl error %d\n", errno);
            return -1;
        }
        state->ioreq_local_port[i] = rc;
    }

J
Jun Nakajima 已提交
966
    /* Init RAM management */
J
Jan Kiszka 已提交
967
    xen_map_cache_init();
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Jun Nakajima 已提交
968 969
    xen_ram_init(ram_size);

970
    qemu_add_vm_change_state_handler(xen_hvm_change_state_handler, state);
971

A
Avi Kivity 已提交
972
    state->memory_listener = xen_memory_listener;
973
    QLIST_INIT(&state->physmap);
A
Avi Kivity 已提交
974
    memory_listener_register(&state->memory_listener);
975 976
    state->log_for_dirtybit = NULL;

977 978 979 980 981 982
    /* Initialize backend core & drivers */
    if (xen_be_init() != 0) {
        fprintf(stderr, "%s: xen backend core setup failed\n", __FUNCTION__);
        exit(1);
    }
    xen_be_register("console", &xen_console_ops);
983
    xen_be_register("vkbd", &xen_kbdmouse_ops);
984 985
    xen_be_register("qdisk", &xen_blkdev_ops);

A
Anthony PERARD 已提交
986 987
    return 0;
}
988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007

void destroy_hvm_domain(void)
{
    XenXC xc_handle;
    int sts;

    xc_handle = xen_xc_interface_open(0, 0, 0);
    if (xc_handle == XC_HANDLER_INITIAL_VALUE) {
        fprintf(stderr, "Cannot acquire xenctrl handle\n");
    } else {
        sts = xc_domain_shutdown(xc_handle, xen_domid, SHUTDOWN_poweroff);
        if (sts != 0) {
            fprintf(stderr, "? xc_domain_shutdown failed to issue poweroff, "
                    "sts %d, %s\n", sts, strerror(errno));
        } else {
            fprintf(stderr, "Issued domain %d poweroff\n", xen_domid);
        }
        xc_interface_close(xc_handle);
    }
}
1008 1009 1010 1011 1012

void xen_register_framebuffer(MemoryRegion *mr)
{
    framebuffer = mr;
}