memory.c 89.7 KB
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/*
 * Physical memory management
 *
 * Copyright 2011 Red Hat, Inc. and/or its affiliates
 *
 * Authors:
 *  Avi Kivity <avi@redhat.com>
 *
 * 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 "qapi/error.h"
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#include "qemu-common.h"
#include "cpu.h"
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#include "exec/memory.h"
#include "exec/address-spaces.h"
#include "exec/ioport.h"
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#include "qapi/visitor.h"
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#include "qemu/bitops.h"
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#include "qemu/error-report.h"
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#include "qom/object.h"
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#include "trace-root.h"
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#include "exec/memory-internal.h"
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#include "exec/ram_addr.h"
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#include "sysemu/kvm.h"
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#include "sysemu/sysemu.h"
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#include "hw/misc/mmio_interface.h"
#include "hw/qdev-properties.h"
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//#define DEBUG_UNASSIGNED

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static unsigned memory_region_transaction_depth;
static bool memory_region_update_pending;
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static bool ioeventfd_update_pending;
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static bool global_dirty_log = false;

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static QTAILQ_HEAD(memory_listeners, MemoryListener) memory_listeners
    = QTAILQ_HEAD_INITIALIZER(memory_listeners);
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static QTAILQ_HEAD(, AddressSpace) address_spaces
    = QTAILQ_HEAD_INITIALIZER(address_spaces);

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typedef struct AddrRange AddrRange;

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/*
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 * Note that signed integers are needed for negative offsetting in aliases
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 * (large MemoryRegion::alias_offset).
 */
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struct AddrRange {
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    Int128 start;
    Int128 size;
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};

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static AddrRange addrrange_make(Int128 start, Int128 size)
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{
    return (AddrRange) { start, size };
}

static bool addrrange_equal(AddrRange r1, AddrRange r2)
{
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    return int128_eq(r1.start, r2.start) && int128_eq(r1.size, r2.size);
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}

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static Int128 addrrange_end(AddrRange r)
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{
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    return int128_add(r.start, r.size);
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}

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static AddrRange addrrange_shift(AddrRange range, Int128 delta)
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{
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    int128_addto(&range.start, delta);
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    return range;
}

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static bool addrrange_contains(AddrRange range, Int128 addr)
{
    return int128_ge(addr, range.start)
        && int128_lt(addr, addrrange_end(range));
}

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static bool addrrange_intersects(AddrRange r1, AddrRange r2)
{
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    return addrrange_contains(r1, r2.start)
        || addrrange_contains(r2, r1.start);
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}

static AddrRange addrrange_intersection(AddrRange r1, AddrRange r2)
{
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    Int128 start = int128_max(r1.start, r2.start);
    Int128 end = int128_min(addrrange_end(r1), addrrange_end(r2));
    return addrrange_make(start, int128_sub(end, start));
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}

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enum ListenerDirection { Forward, Reverse };

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#define MEMORY_LISTENER_CALL_GLOBAL(_callback, _direction, _args...)    \
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    do {                                                                \
        MemoryListener *_listener;                                      \
                                                                        \
        switch (_direction) {                                           \
        case Forward:                                                   \
            QTAILQ_FOREACH(_listener, &memory_listeners, link) {        \
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                if (_listener->_callback) {                             \
                    _listener->_callback(_listener, ##_args);           \
                }                                                       \
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            }                                                           \
            break;                                                      \
        case Reverse:                                                   \
            QTAILQ_FOREACH_REVERSE(_listener, &memory_listeners,        \
                                   memory_listeners, link) {            \
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                if (_listener->_callback) {                             \
                    _listener->_callback(_listener, ##_args);           \
                }                                                       \
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            }                                                           \
            break;                                                      \
        default:                                                        \
            abort();                                                    \
        }                                                               \
    } while (0)

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#define MEMORY_LISTENER_CALL(_as, _callback, _direction, _section, _args...) \
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    do {                                                                \
        MemoryListener *_listener;                                      \
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        struct memory_listeners_as *list = &(_as)->listeners;           \
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                                                                        \
        switch (_direction) {                                           \
        case Forward:                                                   \
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            QTAILQ_FOREACH(_listener, list, link_as) {                  \
                if (_listener->_callback) {                             \
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                    _listener->_callback(_listener, _section, ##_args); \
                }                                                       \
            }                                                           \
            break;                                                      \
        case Reverse:                                                   \
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            QTAILQ_FOREACH_REVERSE(_listener, list, memory_listeners_as, \
                                   link_as) {                           \
                if (_listener->_callback) {                             \
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                    _listener->_callback(_listener, _section, ##_args); \
                }                                                       \
            }                                                           \
            break;                                                      \
        default:                                                        \
            abort();                                                    \
        }                                                               \
    } while (0)

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/* No need to ref/unref .mr, the FlatRange keeps it alive.  */
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#define MEMORY_LISTENER_UPDATE_REGION(fr, as, dir, callback, _args...)  \
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    do {                                                                \
        MemoryRegionSection mrs = section_from_flat_range(fr, as);      \
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        MEMORY_LISTENER_CALL(as, callback, dir, &mrs, ##_args);         \
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    } while(0)
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struct CoalescedMemoryRange {
    AddrRange addr;
    QTAILQ_ENTRY(CoalescedMemoryRange) link;
};

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struct MemoryRegionIoeventfd {
    AddrRange addr;
    bool match_data;
    uint64_t data;
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    EventNotifier *e;
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};

static bool memory_region_ioeventfd_before(MemoryRegionIoeventfd a,
                                           MemoryRegionIoeventfd b)
{
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    if (int128_lt(a.addr.start, b.addr.start)) {
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        return true;
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    } else if (int128_gt(a.addr.start, b.addr.start)) {
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        return false;
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    } else if (int128_lt(a.addr.size, b.addr.size)) {
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        return true;
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    } else if (int128_gt(a.addr.size, b.addr.size)) {
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        return false;
    } else if (a.match_data < b.match_data) {
        return true;
    } else  if (a.match_data > b.match_data) {
        return false;
    } else if (a.match_data) {
        if (a.data < b.data) {
            return true;
        } else if (a.data > b.data) {
            return false;
        }
    }
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    if (a.e < b.e) {
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        return true;
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    } else if (a.e > b.e) {
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        return false;
    }
    return false;
}

static bool memory_region_ioeventfd_equal(MemoryRegionIoeventfd a,
                                          MemoryRegionIoeventfd b)
{
    return !memory_region_ioeventfd_before(a, b)
        && !memory_region_ioeventfd_before(b, a);
}

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typedef struct FlatRange FlatRange;
typedef struct FlatView FlatView;

/* Range of memory in the global map.  Addresses are absolute. */
struct FlatRange {
    MemoryRegion *mr;
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    hwaddr offset_in_region;
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    AddrRange addr;
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    uint8_t dirty_log_mask;
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    bool romd_mode;
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    bool readonly;
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};

/* Flattened global view of current active memory hierarchy.  Kept in sorted
 * order.
 */
struct FlatView {
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    struct rcu_head rcu;
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    unsigned ref;
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    FlatRange *ranges;
    unsigned nr;
    unsigned nr_allocated;
};

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typedef struct AddressSpaceOps AddressSpaceOps;

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#define FOR_EACH_FLAT_RANGE(var, view)          \
    for (var = (view)->ranges; var < (view)->ranges + (view)->nr; ++var)

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static inline MemoryRegionSection
section_from_flat_range(FlatRange *fr, AddressSpace *as)
{
    return (MemoryRegionSection) {
        .mr = fr->mr,
        .address_space = as,
        .offset_within_region = fr->offset_in_region,
        .size = fr->addr.size,
        .offset_within_address_space = int128_get64(fr->addr.start),
        .readonly = fr->readonly,
    };
}

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static bool flatrange_equal(FlatRange *a, FlatRange *b)
{
    return a->mr == b->mr
        && addrrange_equal(a->addr, b->addr)
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        && a->offset_in_region == b->offset_in_region
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        && a->romd_mode == b->romd_mode
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        && a->readonly == b->readonly;
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}

static void flatview_init(FlatView *view)
{
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    view->ref = 1;
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    view->ranges = NULL;
    view->nr = 0;
    view->nr_allocated = 0;
}

/* Insert a range into a given position.  Caller is responsible for maintaining
 * sorting order.
 */
static void flatview_insert(FlatView *view, unsigned pos, FlatRange *range)
{
    if (view->nr == view->nr_allocated) {
        view->nr_allocated = MAX(2 * view->nr, 10);
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        view->ranges = g_realloc(view->ranges,
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                                    view->nr_allocated * sizeof(*view->ranges));
    }
    memmove(view->ranges + pos + 1, view->ranges + pos,
            (view->nr - pos) * sizeof(FlatRange));
    view->ranges[pos] = *range;
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    memory_region_ref(range->mr);
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    ++view->nr;
}

static void flatview_destroy(FlatView *view)
{
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    int i;

    for (i = 0; i < view->nr; i++) {
        memory_region_unref(view->ranges[i].mr);
    }
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    g_free(view->ranges);
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    g_free(view);
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}

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static void flatview_ref(FlatView *view)
{
    atomic_inc(&view->ref);
}

static void flatview_unref(FlatView *view)
{
    if (atomic_fetch_dec(&view->ref) == 1) {
        flatview_destroy(view);
    }
}

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static bool can_merge(FlatRange *r1, FlatRange *r2)
{
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    return int128_eq(addrrange_end(r1->addr), r2->addr.start)
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        && r1->mr == r2->mr
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        && int128_eq(int128_add(int128_make64(r1->offset_in_region),
                                r1->addr.size),
                     int128_make64(r2->offset_in_region))
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        && r1->dirty_log_mask == r2->dirty_log_mask
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        && r1->romd_mode == r2->romd_mode
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        && r1->readonly == r2->readonly;
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}

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/* Attempt to simplify a view by merging adjacent ranges */
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static void flatview_simplify(FlatView *view)
{
    unsigned i, j;

    i = 0;
    while (i < view->nr) {
        j = i + 1;
        while (j < view->nr
               && can_merge(&view->ranges[j-1], &view->ranges[j])) {
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            int128_addto(&view->ranges[i].addr.size, view->ranges[j].addr.size);
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            ++j;
        }
        ++i;
        memmove(&view->ranges[i], &view->ranges[j],
                (view->nr - j) * sizeof(view->ranges[j]));
        view->nr -= j - i;
    }
}

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static bool memory_region_big_endian(MemoryRegion *mr)
{
#ifdef TARGET_WORDS_BIGENDIAN
    return mr->ops->endianness != DEVICE_LITTLE_ENDIAN;
#else
    return mr->ops->endianness == DEVICE_BIG_ENDIAN;
#endif
}

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static bool memory_region_wrong_endianness(MemoryRegion *mr)
{
#ifdef TARGET_WORDS_BIGENDIAN
    return mr->ops->endianness == DEVICE_LITTLE_ENDIAN;
#else
    return mr->ops->endianness == DEVICE_BIG_ENDIAN;
#endif
}

static void adjust_endianness(MemoryRegion *mr, uint64_t *data, unsigned size)
{
    if (memory_region_wrong_endianness(mr)) {
        switch (size) {
        case 1:
            break;
        case 2:
            *data = bswap16(*data);
            break;
        case 4:
            *data = bswap32(*data);
            break;
        case 8:
            *data = bswap64(*data);
            break;
        default:
            abort();
        }
    }
}

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static hwaddr memory_region_to_absolute_addr(MemoryRegion *mr, hwaddr offset)
{
    MemoryRegion *root;
    hwaddr abs_addr = offset;

    abs_addr += mr->addr;
    for (root = mr; root->container; ) {
        root = root->container;
        abs_addr += root->addr;
    }

    return abs_addr;
}

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static int get_cpu_index(void)
{
    if (current_cpu) {
        return current_cpu->cpu_index;
    }
    return -1;
}

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static MemTxResult memory_region_oldmmio_read_accessor(MemoryRegion *mr,
                                                       hwaddr addr,
                                                       uint64_t *value,
                                                       unsigned size,
                                                       unsigned shift,
                                                       uint64_t mask,
                                                       MemTxAttrs attrs)
{
    uint64_t tmp;

    tmp = mr->ops->old_mmio.read[ctz32(size)](mr->opaque, addr);
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    if (mr->subpage) {
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        trace_memory_region_subpage_read(get_cpu_index(), mr, addr, tmp, size);
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    } else if (mr == &io_mem_notdirty) {
        /* Accesses to code which has previously been translated into a TB show
         * up in the MMIO path, as accesses to the io_mem_notdirty
         * MemoryRegion. */
        trace_memory_region_tb_read(get_cpu_index(), addr, tmp, size);
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    } else if (TRACE_MEMORY_REGION_OPS_READ_ENABLED) {
        hwaddr abs_addr = memory_region_to_absolute_addr(mr, addr);
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        trace_memory_region_ops_read(get_cpu_index(), mr, abs_addr, tmp, size);
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    }
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    *value |= (tmp & mask) << shift;
    return MEMTX_OK;
}

static MemTxResult  memory_region_read_accessor(MemoryRegion *mr,
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                                                hwaddr addr,
                                                uint64_t *value,
                                                unsigned size,
                                                unsigned shift,
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                                                uint64_t mask,
                                                MemTxAttrs attrs)
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{
    uint64_t tmp;

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    tmp = mr->ops->read(mr->opaque, addr, size);
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    if (mr->subpage) {
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        trace_memory_region_subpage_read(get_cpu_index(), mr, addr, tmp, size);
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    } else if (mr == &io_mem_notdirty) {
        /* Accesses to code which has previously been translated into a TB show
         * up in the MMIO path, as accesses to the io_mem_notdirty
         * MemoryRegion. */
        trace_memory_region_tb_read(get_cpu_index(), addr, tmp, size);
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    } else if (TRACE_MEMORY_REGION_OPS_READ_ENABLED) {
        hwaddr abs_addr = memory_region_to_absolute_addr(mr, addr);
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        trace_memory_region_ops_read(get_cpu_index(), mr, abs_addr, tmp, size);
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    }
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    *value |= (tmp & mask) << shift;
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    return MEMTX_OK;
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}

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static MemTxResult memory_region_read_with_attrs_accessor(MemoryRegion *mr,
                                                          hwaddr addr,
                                                          uint64_t *value,
                                                          unsigned size,
                                                          unsigned shift,
                                                          uint64_t mask,
                                                          MemTxAttrs attrs)
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{
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    uint64_t tmp = 0;
    MemTxResult r;
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    r = mr->ops->read_with_attrs(mr->opaque, addr, &tmp, size, attrs);
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    if (mr->subpage) {
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        trace_memory_region_subpage_read(get_cpu_index(), mr, addr, tmp, size);
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    } else if (mr == &io_mem_notdirty) {
        /* Accesses to code which has previously been translated into a TB show
         * up in the MMIO path, as accesses to the io_mem_notdirty
         * MemoryRegion. */
        trace_memory_region_tb_read(get_cpu_index(), addr, tmp, size);
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    } else if (TRACE_MEMORY_REGION_OPS_READ_ENABLED) {
        hwaddr abs_addr = memory_region_to_absolute_addr(mr, addr);
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        trace_memory_region_ops_read(get_cpu_index(), mr, abs_addr, tmp, size);
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    }
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    *value |= (tmp & mask) << shift;
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    return r;
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}

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static MemTxResult memory_region_oldmmio_write_accessor(MemoryRegion *mr,
                                                        hwaddr addr,
                                                        uint64_t *value,
                                                        unsigned size,
                                                        unsigned shift,
                                                        uint64_t mask,
                                                        MemTxAttrs attrs)
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{
    uint64_t tmp;

    tmp = (*value >> shift) & mask;
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    if (mr->subpage) {
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        trace_memory_region_subpage_write(get_cpu_index(), mr, addr, tmp, size);
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    } else if (mr == &io_mem_notdirty) {
        /* Accesses to code which has previously been translated into a TB show
         * up in the MMIO path, as accesses to the io_mem_notdirty
         * MemoryRegion. */
        trace_memory_region_tb_write(get_cpu_index(), addr, tmp, size);
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    } else if (TRACE_MEMORY_REGION_OPS_WRITE_ENABLED) {
        hwaddr abs_addr = memory_region_to_absolute_addr(mr, addr);
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        trace_memory_region_ops_write(get_cpu_index(), mr, abs_addr, tmp, size);
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    }
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    mr->ops->old_mmio.write[ctz32(size)](mr->opaque, addr, tmp);
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    return MEMTX_OK;
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}

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static MemTxResult memory_region_write_accessor(MemoryRegion *mr,
                                                hwaddr addr,
                                                uint64_t *value,
                                                unsigned size,
                                                unsigned shift,
                                                uint64_t mask,
                                                MemTxAttrs attrs)
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{
    uint64_t tmp;

    tmp = (*value >> shift) & mask;
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    if (mr->subpage) {
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        trace_memory_region_subpage_write(get_cpu_index(), mr, addr, tmp, size);
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    } else if (mr == &io_mem_notdirty) {
        /* Accesses to code which has previously been translated into a TB show
         * up in the MMIO path, as accesses to the io_mem_notdirty
         * MemoryRegion. */
        trace_memory_region_tb_write(get_cpu_index(), addr, tmp, size);
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    } else if (TRACE_MEMORY_REGION_OPS_WRITE_ENABLED) {
        hwaddr abs_addr = memory_region_to_absolute_addr(mr, addr);
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        trace_memory_region_ops_write(get_cpu_index(), mr, abs_addr, tmp, size);
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    }
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    mr->ops->write(mr->opaque, addr, tmp, size);
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    return MEMTX_OK;
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}

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static MemTxResult memory_region_write_with_attrs_accessor(MemoryRegion *mr,
                                                           hwaddr addr,
                                                           uint64_t *value,
                                                           unsigned size,
                                                           unsigned shift,
                                                           uint64_t mask,
                                                           MemTxAttrs attrs)
{
    uint64_t tmp;

    tmp = (*value >> shift) & mask;
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    if (mr->subpage) {
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        trace_memory_region_subpage_write(get_cpu_index(), mr, addr, tmp, size);
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    } else if (mr == &io_mem_notdirty) {
        /* Accesses to code which has previously been translated into a TB show
         * up in the MMIO path, as accesses to the io_mem_notdirty
         * MemoryRegion. */
        trace_memory_region_tb_write(get_cpu_index(), addr, tmp, size);
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    } else if (TRACE_MEMORY_REGION_OPS_WRITE_ENABLED) {
        hwaddr abs_addr = memory_region_to_absolute_addr(mr, addr);
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        trace_memory_region_ops_write(get_cpu_index(), mr, abs_addr, tmp, size);
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    }
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    return mr->ops->write_with_attrs(mr->opaque, addr, tmp, size, attrs);
}

static MemTxResult access_with_adjusted_size(hwaddr addr,
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                                      uint64_t *value,
                                      unsigned size,
                                      unsigned access_size_min,
                                      unsigned access_size_max,
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                                      MemTxResult (*access)(MemoryRegion *mr,
                                                            hwaddr addr,
                                                            uint64_t *value,
                                                            unsigned size,
                                                            unsigned shift,
                                                            uint64_t mask,
                                                            MemTxAttrs attrs),
                                      MemoryRegion *mr,
                                      MemTxAttrs attrs)
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{
    uint64_t access_mask;
    unsigned access_size;
    unsigned i;
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    MemTxResult r = MEMTX_OK;
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    if (!access_size_min) {
        access_size_min = 1;
    }
    if (!access_size_max) {
        access_size_max = 4;
    }
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    /* FIXME: support unaligned access? */
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    access_size = MAX(MIN(size, access_size_max), access_size_min);
    access_mask = -1ULL >> (64 - access_size * 8);
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    if (memory_region_big_endian(mr)) {
        for (i = 0; i < size; i += access_size) {
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            r |= access(mr, addr + i, value, access_size,
                        (size - access_size - i) * 8, access_mask, attrs);
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        }
    } else {
        for (i = 0; i < size; i += access_size) {
594 595
            r |= access(mr, addr + i, value, access_size, i * 8,
                        access_mask, attrs);
596
        }
597
    }
598
    return r;
599 600
}

601 602
static AddressSpace *memory_region_to_address_space(MemoryRegion *mr)
{
603 604
    AddressSpace *as;

605 606
    while (mr->container) {
        mr = mr->container;
607
    }
608 609 610 611
    QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
        if (mr == as->root) {
            return as;
        }
612
    }
613
    return NULL;
614 615
}

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/* Render a memory region into the global view.  Ranges in @view obscure
 * ranges in @mr.
 */
static void render_memory_region(FlatView *view,
                                 MemoryRegion *mr,
621
                                 Int128 base,
622 623
                                 AddrRange clip,
                                 bool readonly)
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{
    MemoryRegion *subregion;
    unsigned i;
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    hwaddr offset_in_region;
628 629
    Int128 remain;
    Int128 now;
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    FlatRange fr;
    AddrRange tmp;

633 634 635 636
    if (!mr->enabled) {
        return;
    }

637
    int128_addto(&base, int128_make64(mr->addr));
638
    readonly |= mr->readonly;
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    tmp = addrrange_make(base, mr->size);

    if (!addrrange_intersects(tmp, clip)) {
        return;
    }

    clip = addrrange_intersection(tmp, clip);

    if (mr->alias) {
649 650
        int128_subfrom(&base, int128_make64(mr->alias->addr));
        int128_subfrom(&base, int128_make64(mr->alias_offset));
651
        render_memory_region(view, mr->alias, base, clip, readonly);
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        return;
    }

    /* Render subregions in priority order. */
    QTAILQ_FOREACH(subregion, &mr->subregions, subregions_link) {
657
        render_memory_region(view, subregion, base, clip, readonly);
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    }

660
    if (!mr->terminates) {
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        return;
    }

664
    offset_in_region = int128_get64(int128_sub(clip.start, base));
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    base = clip.start;
    remain = clip.size;

668
    fr.mr = mr;
669
    fr.dirty_log_mask = memory_region_get_dirty_log_mask(mr);
670
    fr.romd_mode = mr->romd_mode;
671 672
    fr.readonly = readonly;

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    /* Render the region itself into any gaps left by the current view. */
674 675
    for (i = 0; i < view->nr && int128_nz(remain); ++i) {
        if (int128_ge(base, addrrange_end(view->ranges[i].addr))) {
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            continue;
        }
678 679 680
        if (int128_lt(base, view->ranges[i].addr.start)) {
            now = int128_min(remain,
                             int128_sub(view->ranges[i].addr.start, base));
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            fr.offset_in_region = offset_in_region;
            fr.addr = addrrange_make(base, now);
            flatview_insert(view, i, &fr);
            ++i;
685 686 687
            int128_addto(&base, now);
            offset_in_region += int128_get64(now);
            int128_subfrom(&remain, now);
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        }
689 690 691 692 693 694
        now = int128_sub(int128_min(int128_add(base, remain),
                                    addrrange_end(view->ranges[i].addr)),
                         base);
        int128_addto(&base, now);
        offset_in_region += int128_get64(now);
        int128_subfrom(&remain, now);
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    }
696
    if (int128_nz(remain)) {
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        fr.offset_in_region = offset_in_region;
        fr.addr = addrrange_make(base, remain);
        flatview_insert(view, i, &fr);
    }
}

/* Render a memory topology into a list of disjoint absolute ranges. */
704
static FlatView *generate_memory_topology(MemoryRegion *mr)
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{
706
    FlatView *view;
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708 709
    view = g_new(FlatView, 1);
    flatview_init(view);
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711
    if (mr) {
712
        render_memory_region(view, mr, int128_zero(),
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                             addrrange_make(int128_zero(), int128_2_64()), false);
    }
715
    flatview_simplify(view);
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    return view;
}

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static void address_space_add_del_ioeventfds(AddressSpace *as,
                                             MemoryRegionIoeventfd *fds_new,
                                             unsigned fds_new_nb,
                                             MemoryRegionIoeventfd *fds_old,
                                             unsigned fds_old_nb)
{
    unsigned iold, inew;
727 728
    MemoryRegionIoeventfd *fd;
    MemoryRegionSection section;
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    /* Generate a symmetric difference of the old and new fd sets, adding
     * and deleting as necessary.
     */

    iold = inew = 0;
    while (iold < fds_old_nb || inew < fds_new_nb) {
        if (iold < fds_old_nb
            && (inew == fds_new_nb
                || memory_region_ioeventfd_before(fds_old[iold],
                                                  fds_new[inew]))) {
740 741
            fd = &fds_old[iold];
            section = (MemoryRegionSection) {
742
                .address_space = as,
743
                .offset_within_address_space = int128_get64(fd->addr.start),
744
                .size = fd->addr.size,
745
            };
746
            MEMORY_LISTENER_CALL(as, eventfd_del, Forward, &section,
747
                                 fd->match_data, fd->data, fd->e);
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            ++iold;
        } else if (inew < fds_new_nb
                   && (iold == fds_old_nb
                       || memory_region_ioeventfd_before(fds_new[inew],
                                                         fds_old[iold]))) {
753 754
            fd = &fds_new[inew];
            section = (MemoryRegionSection) {
755
                .address_space = as,
756
                .offset_within_address_space = int128_get64(fd->addr.start),
757
                .size = fd->addr.size,
758
            };
759
            MEMORY_LISTENER_CALL(as, eventfd_add, Reverse, &section,
760
                                 fd->match_data, fd->data, fd->e);
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            ++inew;
        } else {
            ++iold;
            ++inew;
        }
    }
}

769 770 771 772
static FlatView *address_space_get_flatview(AddressSpace *as)
{
    FlatView *view;

773 774
    rcu_read_lock();
    view = atomic_rcu_read(&as->current_map);
775
    flatview_ref(view);
776
    rcu_read_unlock();
777 778 779
    return view;
}

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static void address_space_update_ioeventfds(AddressSpace *as)
{
782
    FlatView *view;
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    FlatRange *fr;
    unsigned ioeventfd_nb = 0;
    MemoryRegionIoeventfd *ioeventfds = NULL;
    AddrRange tmp;
    unsigned i;

789
    view = address_space_get_flatview(as);
790
    FOR_EACH_FLAT_RANGE(fr, view) {
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        for (i = 0; i < fr->mr->ioeventfd_nb; ++i) {
            tmp = addrrange_shift(fr->mr->ioeventfds[i].addr,
793 794
                                  int128_sub(fr->addr.start,
                                             int128_make64(fr->offset_in_region)));
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            if (addrrange_intersects(fr->addr, tmp)) {
                ++ioeventfd_nb;
797
                ioeventfds = g_realloc(ioeventfds,
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                                          ioeventfd_nb * sizeof(*ioeventfds));
                ioeventfds[ioeventfd_nb-1] = fr->mr->ioeventfds[i];
                ioeventfds[ioeventfd_nb-1].addr = tmp;
            }
        }
    }

    address_space_add_del_ioeventfds(as, ioeventfds, ioeventfd_nb,
                                     as->ioeventfds, as->ioeventfd_nb);

808
    g_free(as->ioeventfds);
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    as->ioeventfds = ioeventfds;
    as->ioeventfd_nb = ioeventfd_nb;
811
    flatview_unref(view);
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}

814
static void address_space_update_topology_pass(AddressSpace *as,
815 816
                                               const FlatView *old_view,
                                               const FlatView *new_view,
817
                                               bool adding)
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{
    unsigned iold, inew;
    FlatRange *frold, *frnew;

    /* Generate a symmetric difference of the old and new memory maps.
     * Kill ranges in the old map, and instantiate ranges in the new map.
     */
    iold = inew = 0;
826 827 828
    while (iold < old_view->nr || inew < new_view->nr) {
        if (iold < old_view->nr) {
            frold = &old_view->ranges[iold];
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        } else {
            frold = NULL;
        }
832 833
        if (inew < new_view->nr) {
            frnew = &new_view->ranges[inew];
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        } else {
            frnew = NULL;
        }

        if (frold
            && (!frnew
840 841
                || int128_lt(frold->addr.start, frnew->addr.start)
                || (int128_eq(frold->addr.start, frnew->addr.start)
A
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842
                    && !flatrange_equal(frold, frnew)))) {
843
            /* In old but not in new, or in both but attributes changed. */
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844

845
            if (!adding) {
846
                MEMORY_LISTENER_UPDATE_REGION(frold, as, Reverse, region_del);
847 848
            }

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849 850
            ++iold;
        } else if (frold && frnew && flatrange_equal(frold, frnew)) {
851
            /* In both and unchanged (except logging may have changed) */
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852

853
            if (adding) {
854
                MEMORY_LISTENER_UPDATE_REGION(frnew, as, Forward, region_nop);
855 856 857 858 859 860 861 862 863
                if (frnew->dirty_log_mask & ~frold->dirty_log_mask) {
                    MEMORY_LISTENER_UPDATE_REGION(frnew, as, Forward, log_start,
                                                  frold->dirty_log_mask,
                                                  frnew->dirty_log_mask);
                }
                if (frold->dirty_log_mask & ~frnew->dirty_log_mask) {
                    MEMORY_LISTENER_UPDATE_REGION(frnew, as, Reverse, log_stop,
                                                  frold->dirty_log_mask,
                                                  frnew->dirty_log_mask);
864
                }
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865 866
            }

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867 868 869 870 871
            ++iold;
            ++inew;
        } else {
            /* In new */

872
            if (adding) {
873
                MEMORY_LISTENER_UPDATE_REGION(frnew, as, Forward, region_add);
874 875
            }

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            ++inew;
        }
    }
879 880 881 882 883
}


static void address_space_update_topology(AddressSpace *as)
{
884
    FlatView *old_view = address_space_get_flatview(as);
885
    FlatView *new_view = generate_memory_topology(as->root);
886 887 888 889

    address_space_update_topology_pass(as, old_view, new_view, false);
    address_space_update_topology_pass(as, old_view, new_view, true);

890 891 892
    /* Writes are protected by the BQL.  */
    atomic_rcu_set(&as->current_map, new_view);
    call_rcu(old_view, flatview_unref, rcu);
893 894 895 896 897 898 899 900 901

    /* Note that all the old MemoryRegions are still alive up to this
     * point.  This relieves most MemoryListeners from the need to
     * ref/unref the MemoryRegions they get---unless they use them
     * outside the iothread mutex, in which case precise reference
     * counting is necessary.
     */
    flatview_unref(old_view);

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    address_space_update_ioeventfds(as);
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903 904
}

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void memory_region_transaction_begin(void)
{
907
    qemu_flush_coalesced_mmio_buffer();
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    ++memory_region_transaction_depth;
}

void memory_region_transaction_commit(void)
{
913 914
    AddressSpace *as;

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915
    assert(memory_region_transaction_depth);
916 917
    assert(qemu_mutex_iothread_locked());

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918
    --memory_region_transaction_depth;
919 920 921
    if (!memory_region_transaction_depth) {
        if (memory_region_update_pending) {
            MEMORY_LISTENER_CALL_GLOBAL(begin, Forward);
922

923 924 925
            QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
                address_space_update_topology(as);
            }
926
            memory_region_update_pending = false;
927 928 929 930 931
            MEMORY_LISTENER_CALL_GLOBAL(commit, Forward);
        } else if (ioeventfd_update_pending) {
            QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
                address_space_update_ioeventfds(as);
            }
932
            ioeventfd_update_pending = false;
933 934
        }
   }
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935 936
}

937 938 939 940 941 942
static void memory_region_destructor_none(MemoryRegion *mr)
{
}

static void memory_region_destructor_ram(MemoryRegion *mr)
{
943
    qemu_ram_free(mr->ram_block);
944 945
}

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Peter Crosthwaite 已提交
946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979
static bool memory_region_need_escape(char c)
{
    return c == '/' || c == '[' || c == '\\' || c == ']';
}

static char *memory_region_escape_name(const char *name)
{
    const char *p;
    char *escaped, *q;
    uint8_t c;
    size_t bytes = 0;

    for (p = name; *p; p++) {
        bytes += memory_region_need_escape(*p) ? 4 : 1;
    }
    if (bytes == p - name) {
       return g_memdup(name, bytes + 1);
    }

    escaped = g_malloc(bytes + 1);
    for (p = name, q = escaped; *p; p++) {
        c = *p;
        if (unlikely(memory_region_need_escape(c))) {
            *q++ = '\\';
            *q++ = 'x';
            *q++ = "0123456789abcdef"[c >> 4];
            c = "0123456789abcdef"[c & 15];
        }
        *q++ = c;
    }
    *q = 0;
    return escaped;
}

980 981 982 983
static void memory_region_do_init(MemoryRegion *mr,
                                  Object *owner,
                                  const char *name,
                                  uint64_t size)
A
Avi Kivity 已提交
984
{
985 986 987 988
    mr->size = int128_make64(size);
    if (size == UINT64_MAX) {
        mr->size = int128_2_64();
    }
989
    mr->name = g_strdup(name);
990
    mr->owner = owner;
991
    mr->ram_block = NULL;
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Peter Crosthwaite 已提交
992 993

    if (name) {
994 995
        char *escaped_name = memory_region_escape_name(name);
        char *name_array = g_strdup_printf("%s[*]", escaped_name);
996 997 998 999 1000

        if (!owner) {
            owner = container_get(qdev_get_machine(), "/unattached");
        }

1001
        object_property_add_child(owner, name_array, OBJECT(mr), &error_abort);
P
Peter Crosthwaite 已提交
1002
        object_unref(OBJECT(mr));
1003 1004
        g_free(name_array);
        g_free(escaped_name);
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1005 1006 1007
    }
}

1008 1009 1010 1011 1012 1013 1014 1015 1016
void memory_region_init(MemoryRegion *mr,
                        Object *owner,
                        const char *name,
                        uint64_t size)
{
    object_initialize(mr, sizeof(*mr), TYPE_MEMORY_REGION);
    memory_region_do_init(mr, owner, name, size);
}

1017 1018
static void memory_region_get_addr(Object *obj, Visitor *v, const char *name,
                                   void *opaque, Error **errp)
1019 1020 1021 1022
{
    MemoryRegion *mr = MEMORY_REGION(obj);
    uint64_t value = mr->addr;

1023
    visit_type_uint64(v, name, &value, errp);
1024 1025
}

1026 1027 1028
static void memory_region_get_container(Object *obj, Visitor *v,
                                        const char *name, void *opaque,
                                        Error **errp)
1029 1030 1031 1032 1033 1034 1035
{
    MemoryRegion *mr = MEMORY_REGION(obj);
    gchar *path = (gchar *)"";

    if (mr->container) {
        path = object_get_canonical_path(OBJECT(mr->container));
    }
1036
    visit_type_str(v, name, &path, errp);
1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049
    if (mr->container) {
        g_free(path);
    }
}

static Object *memory_region_resolve_container(Object *obj, void *opaque,
                                               const char *part)
{
    MemoryRegion *mr = MEMORY_REGION(obj);

    return OBJECT(mr->container);
}

1050 1051 1052
static void memory_region_get_priority(Object *obj, Visitor *v,
                                       const char *name, void *opaque,
                                       Error **errp)
1053 1054 1055 1056
{
    MemoryRegion *mr = MEMORY_REGION(obj);
    int32_t value = mr->priority;

1057
    visit_type_int32(v, name, &value, errp);
1058 1059
}

1060 1061
static void memory_region_get_size(Object *obj, Visitor *v, const char *name,
                                   void *opaque, Error **errp)
1062 1063 1064 1065
{
    MemoryRegion *mr = MEMORY_REGION(obj);
    uint64_t value = memory_region_size(mr);

1066
    visit_type_uint64(v, name, &value, errp);
1067 1068
}

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Peter Crosthwaite 已提交
1069 1070 1071
static void memory_region_initfn(Object *obj)
{
    MemoryRegion *mr = MEMORY_REGION(obj);
1072
    ObjectProperty *op;
P
Peter Crosthwaite 已提交
1073 1074

    mr->ops = &unassigned_mem_ops;
1075
    mr->enabled = true;
1076
    mr->romd_mode = true;
1077
    mr->global_locking = true;
1078
    mr->destructor = memory_region_destructor_none;
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1079 1080
    QTAILQ_INIT(&mr->subregions);
    QTAILQ_INIT(&mr->coalesced);
1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092

    op = object_property_add(OBJECT(mr), "container",
                             "link<" TYPE_MEMORY_REGION ">",
                             memory_region_get_container,
                             NULL, /* memory_region_set_container */
                             NULL, NULL, &error_abort);
    op->resolve = memory_region_resolve_container;

    object_property_add(OBJECT(mr), "addr", "uint64",
                        memory_region_get_addr,
                        NULL, /* memory_region_set_addr */
                        NULL, NULL, &error_abort);
1093 1094 1095 1096
    object_property_add(OBJECT(mr), "priority", "uint32",
                        memory_region_get_priority,
                        NULL, /* memory_region_set_priority */
                        NULL, NULL, &error_abort);
1097 1098 1099 1100
    object_property_add(OBJECT(mr), "size", "uint64",
                        memory_region_get_size,
                        NULL, /* memory_region_set_size, */
                        NULL, NULL, &error_abort);
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1101 1102
}

1103 1104 1105 1106 1107 1108 1109
static void iommu_memory_region_initfn(Object *obj)
{
    MemoryRegion *mr = MEMORY_REGION(obj);

    mr->is_iommu = true;
}

1110 1111 1112 1113 1114 1115
static uint64_t unassigned_mem_read(void *opaque, hwaddr addr,
                                    unsigned size)
{
#ifdef DEBUG_UNASSIGNED
    printf("Unassigned mem read " TARGET_FMT_plx "\n", addr);
#endif
1116 1117
    if (current_cpu != NULL) {
        cpu_unassigned_access(current_cpu, addr, false, false, 0, size);
1118
    }
1119
    return 0;
1120 1121 1122 1123 1124 1125 1126 1127
}

static void unassigned_mem_write(void *opaque, hwaddr addr,
                                 uint64_t val, unsigned size)
{
#ifdef DEBUG_UNASSIGNED
    printf("Unassigned mem write " TARGET_FMT_plx " = 0x%"PRIx64"\n", addr, val);
#endif
1128 1129
    if (current_cpu != NULL) {
        cpu_unassigned_access(current_cpu, addr, true, false, 0, size);
1130
    }
1131 1132
}

1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143
static bool unassigned_mem_accepts(void *opaque, hwaddr addr,
                                   unsigned size, bool is_write)
{
    return false;
}

const MemoryRegionOps unassigned_mem_ops = {
    .valid.accepts = unassigned_mem_accepts,
    .endianness = DEVICE_NATIVE_ENDIAN,
};

1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195
static uint64_t memory_region_ram_device_read(void *opaque,
                                              hwaddr addr, unsigned size)
{
    MemoryRegion *mr = opaque;
    uint64_t data = (uint64_t)~0;

    switch (size) {
    case 1:
        data = *(uint8_t *)(mr->ram_block->host + addr);
        break;
    case 2:
        data = *(uint16_t *)(mr->ram_block->host + addr);
        break;
    case 4:
        data = *(uint32_t *)(mr->ram_block->host + addr);
        break;
    case 8:
        data = *(uint64_t *)(mr->ram_block->host + addr);
        break;
    }

    trace_memory_region_ram_device_read(get_cpu_index(), mr, addr, data, size);

    return data;
}

static void memory_region_ram_device_write(void *opaque, hwaddr addr,
                                           uint64_t data, unsigned size)
{
    MemoryRegion *mr = opaque;

    trace_memory_region_ram_device_write(get_cpu_index(), mr, addr, data, size);

    switch (size) {
    case 1:
        *(uint8_t *)(mr->ram_block->host + addr) = (uint8_t)data;
        break;
    case 2:
        *(uint16_t *)(mr->ram_block->host + addr) = (uint16_t)data;
        break;
    case 4:
        *(uint32_t *)(mr->ram_block->host + addr) = (uint32_t)data;
        break;
    case 8:
        *(uint64_t *)(mr->ram_block->host + addr) = data;
        break;
    }
}

static const MemoryRegionOps ram_device_mem_ops = {
    .read = memory_region_ram_device_read,
    .write = memory_region_ram_device_write,
1196
    .endianness = DEVICE_HOST_ENDIAN,
1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208
    .valid = {
        .min_access_size = 1,
        .max_access_size = 8,
        .unaligned = true,
    },
    .impl = {
        .min_access_size = 1,
        .max_access_size = 8,
        .unaligned = true,
    },
};

1209 1210 1211 1212
bool memory_region_access_valid(MemoryRegion *mr,
                                hwaddr addr,
                                unsigned size,
                                bool is_write)
A
Avi Kivity 已提交
1213
{
1214 1215
    int access_size_min, access_size_max;
    int access_size, i;
1216

A
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1217 1218 1219 1220
    if (!mr->ops->valid.unaligned && (addr & (size - 1))) {
        return false;
    }

1221
    if (!mr->ops->valid.accepts) {
A
Avi Kivity 已提交
1222 1223 1224
        return true;
    }

1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240
    access_size_min = mr->ops->valid.min_access_size;
    if (!mr->ops->valid.min_access_size) {
        access_size_min = 1;
    }

    access_size_max = mr->ops->valid.max_access_size;
    if (!mr->ops->valid.max_access_size) {
        access_size_max = 4;
    }

    access_size = MAX(MIN(size, access_size_max), access_size_min);
    for (i = 0; i < size; i += access_size) {
        if (!mr->ops->valid.accepts(mr->opaque, addr + i, access_size,
                                    is_write)) {
            return false;
        }
A
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1241
    }
1242

A
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1243 1244 1245
    return true;
}

1246 1247 1248 1249 1250
static MemTxResult memory_region_dispatch_read1(MemoryRegion *mr,
                                                hwaddr addr,
                                                uint64_t *pval,
                                                unsigned size,
                                                MemTxAttrs attrs)
A
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1251
{
1252
    *pval = 0;
A
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1253

1254
    if (mr->ops->read) {
1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265
        return access_with_adjusted_size(addr, pval, size,
                                         mr->ops->impl.min_access_size,
                                         mr->ops->impl.max_access_size,
                                         memory_region_read_accessor,
                                         mr, attrs);
    } else if (mr->ops->read_with_attrs) {
        return access_with_adjusted_size(addr, pval, size,
                                         mr->ops->impl.min_access_size,
                                         mr->ops->impl.max_access_size,
                                         memory_region_read_with_attrs_accessor,
                                         mr, attrs);
1266
    } else {
1267 1268 1269
        return access_with_adjusted_size(addr, pval, size, 1, 4,
                                         memory_region_oldmmio_read_accessor,
                                         mr, attrs);
1270
    }
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1271 1272
}

1273 1274 1275 1276 1277
MemTxResult memory_region_dispatch_read(MemoryRegion *mr,
                                        hwaddr addr,
                                        uint64_t *pval,
                                        unsigned size,
                                        MemTxAttrs attrs)
1278
{
1279 1280
    MemTxResult r;

1281 1282
    if (!memory_region_access_valid(mr, addr, size, false)) {
        *pval = unassigned_mem_read(mr, addr, size);
1283
        return MEMTX_DECODE_ERROR;
1284
    }
1285

1286
    r = memory_region_dispatch_read1(mr, addr, pval, size, attrs);
1287
    adjust_endianness(mr, pval, size);
1288
    return r;
1289
}
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Pavel Fedin 已提交
1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316
/* Return true if an eventfd was signalled */
static bool memory_region_dispatch_write_eventfds(MemoryRegion *mr,
                                                    hwaddr addr,
                                                    uint64_t data,
                                                    unsigned size,
                                                    MemTxAttrs attrs)
{
    MemoryRegionIoeventfd ioeventfd = {
        .addr = addrrange_make(int128_make64(addr), int128_make64(size)),
        .data = data,
    };
    unsigned i;

    for (i = 0; i < mr->ioeventfd_nb; i++) {
        ioeventfd.match_data = mr->ioeventfds[i].match_data;
        ioeventfd.e = mr->ioeventfds[i].e;

        if (memory_region_ioeventfd_equal(ioeventfd, mr->ioeventfds[i])) {
            event_notifier_set(ioeventfd.e);
            return true;
        }
    }

    return false;
}

1317 1318 1319 1320 1321
MemTxResult memory_region_dispatch_write(MemoryRegion *mr,
                                         hwaddr addr,
                                         uint64_t data,
                                         unsigned size,
                                         MemTxAttrs attrs)
1322
{
1323
    if (!memory_region_access_valid(mr, addr, size, true)) {
1324
        unassigned_mem_write(mr, addr, data, size);
1325
        return MEMTX_DECODE_ERROR;
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1326 1327
    }

1328 1329
    adjust_endianness(mr, &data, size);

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1330 1331 1332 1333 1334
    if ((!kvm_eventfds_enabled()) &&
        memory_region_dispatch_write_eventfds(mr, addr, data, size, attrs)) {
        return MEMTX_OK;
    }

1335
    if (mr->ops->write) {
1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347
        return access_with_adjusted_size(addr, &data, size,
                                         mr->ops->impl.min_access_size,
                                         mr->ops->impl.max_access_size,
                                         memory_region_write_accessor, mr,
                                         attrs);
    } else if (mr->ops->write_with_attrs) {
        return
            access_with_adjusted_size(addr, &data, size,
                                      mr->ops->impl.min_access_size,
                                      mr->ops->impl.max_access_size,
                                      memory_region_write_with_attrs_accessor,
                                      mr, attrs);
1348
    } else {
1349 1350 1351
        return access_with_adjusted_size(addr, &data, size, 1, 4,
                                         memory_region_oldmmio_write_accessor,
                                         mr, attrs);
1352
    }
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}

void memory_region_init_io(MemoryRegion *mr,
1356
                           Object *owner,
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1357 1358 1359 1360 1361
                           const MemoryRegionOps *ops,
                           void *opaque,
                           const char *name,
                           uint64_t size)
{
1362
    memory_region_init(mr, owner, name, size);
1363
    mr->ops = ops ? ops : &unassigned_mem_ops;
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1364
    mr->opaque = opaque;
1365
    mr->terminates = true;
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1366 1367 1368
}

void memory_region_init_ram(MemoryRegion *mr,
1369
                            Object *owner,
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1370
                            const char *name,
1371 1372
                            uint64_t size,
                            Error **errp)
A
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1373
{
1374
    memory_region_init(mr, owner, name, size);
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1375
    mr->ram = true;
1376
    mr->terminates = true;
1377
    mr->destructor = memory_region_destructor_ram;
F
Fam Zheng 已提交
1378
    mr->ram_block = qemu_ram_alloc(size, mr, errp);
1379
    mr->dirty_log_mask = tcg_enabled() ? (1 << DIRTY_MEMORY_CODE) : 0;
1380 1381
}

1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395
void memory_region_init_resizeable_ram(MemoryRegion *mr,
                                       Object *owner,
                                       const char *name,
                                       uint64_t size,
                                       uint64_t max_size,
                                       void (*resized)(const char*,
                                                       uint64_t length,
                                                       void *host),
                                       Error **errp)
{
    memory_region_init(mr, owner, name, size);
    mr->ram = true;
    mr->terminates = true;
    mr->destructor = memory_region_destructor_ram;
F
Fam Zheng 已提交
1396 1397
    mr->ram_block = qemu_ram_alloc_resizeable(size, max_size, resized,
                                              mr, errp);
1398
    mr->dirty_log_mask = tcg_enabled() ? (1 << DIRTY_MEMORY_CODE) : 0;
1399 1400
}

1401 1402 1403 1404 1405
#ifdef __linux__
void memory_region_init_ram_from_file(MemoryRegion *mr,
                                      struct Object *owner,
                                      const char *name,
                                      uint64_t size,
1406
                                      bool share,
1407 1408
                                      const char *path,
                                      Error **errp)
1409 1410 1411 1412 1413
{
    memory_region_init(mr, owner, name, size);
    mr->ram = true;
    mr->terminates = true;
    mr->destructor = memory_region_destructor_ram;
F
Fam Zheng 已提交
1414
    mr->ram_block = qemu_ram_alloc_from_file(size, mr, share, path, errp);
1415
    mr->dirty_log_mask = tcg_enabled() ? (1 << DIRTY_MEMORY_CODE) : 0;
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Avi Kivity 已提交
1416
}
1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432

void memory_region_init_ram_from_fd(MemoryRegion *mr,
                                    struct Object *owner,
                                    const char *name,
                                    uint64_t size,
                                    bool share,
                                    int fd,
                                    Error **errp)
{
    memory_region_init(mr, owner, name, size);
    mr->ram = true;
    mr->terminates = true;
    mr->destructor = memory_region_destructor_ram;
    mr->ram_block = qemu_ram_alloc_from_fd(size, mr, share, fd, errp);
    mr->dirty_log_mask = tcg_enabled() ? (1 << DIRTY_MEMORY_CODE) : 0;
}
1433
#endif
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1434 1435

void memory_region_init_ram_ptr(MemoryRegion *mr,
1436
                                Object *owner,
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1437 1438 1439 1440
                                const char *name,
                                uint64_t size,
                                void *ptr)
{
1441
    memory_region_init(mr, owner, name, size);
A
Avi Kivity 已提交
1442
    mr->ram = true;
1443
    mr->terminates = true;
1444
    mr->destructor = memory_region_destructor_ram;
1445
    mr->dirty_log_mask = tcg_enabled() ? (1 << DIRTY_MEMORY_CODE) : 0;
1446 1447 1448

    /* qemu_ram_alloc_from_ptr cannot fail with ptr != NULL.  */
    assert(ptr != NULL);
F
Fam Zheng 已提交
1449
    mr->ram_block = qemu_ram_alloc_from_ptr(size, ptr, mr, &error_fatal);
A
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1450 1451
}

1452 1453 1454 1455 1456
void memory_region_init_ram_device_ptr(MemoryRegion *mr,
                                       Object *owner,
                                       const char *name,
                                       uint64_t size,
                                       void *ptr)
1457
{
1458 1459
    memory_region_init_ram_ptr(mr, owner, name, size, ptr);
    mr->ram_device = true;
1460 1461
    mr->ops = &ram_device_mem_ops;
    mr->opaque = mr;
1462 1463
}

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1464
void memory_region_init_alias(MemoryRegion *mr,
1465
                              Object *owner,
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1466 1467
                              const char *name,
                              MemoryRegion *orig,
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1468
                              hwaddr offset,
A
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1469 1470
                              uint64_t size)
{
1471
    memory_region_init(mr, owner, name, size);
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1472 1473 1474 1475
    mr->alias = orig;
    mr->alias_offset = offset;
}

1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490
void memory_region_init_rom(MemoryRegion *mr,
                            struct Object *owner,
                            const char *name,
                            uint64_t size,
                            Error **errp)
{
    memory_region_init(mr, owner, name, size);
    mr->ram = true;
    mr->readonly = true;
    mr->terminates = true;
    mr->destructor = memory_region_destructor_ram;
    mr->ram_block = qemu_ram_alloc(size, mr, errp);
    mr->dirty_log_mask = tcg_enabled() ? (1 << DIRTY_MEMORY_CODE) : 0;
}

1491
void memory_region_init_rom_device(MemoryRegion *mr,
1492
                                   Object *owner,
1493
                                   const MemoryRegionOps *ops,
1494
                                   void *opaque,
1495
                                   const char *name,
1496 1497
                                   uint64_t size,
                                   Error **errp)
1498
{
1499
    assert(ops);
1500
    memory_region_init(mr, owner, name, size);
1501
    mr->ops = ops;
1502
    mr->opaque = opaque;
1503
    mr->terminates = true;
A
Avi Kivity 已提交
1504
    mr->rom_device = true;
1505
    mr->destructor = memory_region_destructor_ram;
F
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1506
    mr->ram_block = qemu_ram_alloc(size, mr, errp);
1507 1508
}

1509 1510 1511
void memory_region_init_iommu(void *_iommu_mr,
                              size_t instance_size,
                              const char *mrtypename,
1512
                              Object *owner,
A
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1513 1514 1515
                              const char *name,
                              uint64_t size)
{
1516
    struct IOMMUMemoryRegion *iommu_mr;
1517 1518
    struct MemoryRegion *mr;

1519 1520
    object_initialize(_iommu_mr, instance_size, mrtypename);
    mr = MEMORY_REGION(_iommu_mr);
1521 1522
    memory_region_do_init(mr, owner, name, size);
    iommu_mr = IOMMU_MEMORY_REGION(mr);
A
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1523
    mr->terminates = true;  /* then re-forwards */
1524 1525
    QLIST_INIT(&iommu_mr->iommu_notify);
    iommu_mr->iommu_notify_flags = IOMMU_NOTIFIER_NONE;
A
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1526 1527
}

P
Peter Crosthwaite 已提交
1528
static void memory_region_finalize(Object *obj)
A
Avi Kivity 已提交
1529
{
P
Peter Crosthwaite 已提交
1530 1531
    MemoryRegion *mr = MEMORY_REGION(obj);

1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547
    assert(!mr->container);

    /* We know the region is not visible in any address space (it
     * does not have a container and cannot be a root either because
     * it has no references, so we can blindly clear mr->enabled.
     * memory_region_set_enabled instead could trigger a transaction
     * and cause an infinite loop.
     */
    mr->enabled = false;
    memory_region_transaction_begin();
    while (!QTAILQ_EMPTY(&mr->subregions)) {
        MemoryRegion *subregion = QTAILQ_FIRST(&mr->subregions);
        memory_region_del_subregion(mr, subregion);
    }
    memory_region_transaction_commit();

1548
    mr->destructor(mr);
A
Avi Kivity 已提交
1549
    memory_region_clear_coalescing(mr);
1550
    g_free((char *)mr->name);
1551
    g_free(mr->ioeventfds);
A
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1552 1553
}

P
Paolo Bonzini 已提交
1554 1555
Object *memory_region_owner(MemoryRegion *mr)
{
1556 1557
    Object *obj = OBJECT(mr);
    return obj->parent;
P
Paolo Bonzini 已提交
1558 1559
}

P
Paolo Bonzini 已提交
1560 1561
void memory_region_ref(MemoryRegion *mr)
{
1562 1563 1564 1565 1566 1567 1568
    /* MMIO callbacks most likely will access data that belongs
     * to the owner, hence the need to ref/unref the owner whenever
     * the memory region is in use.
     *
     * The memory region is a child of its owner.  As long as the
     * owner doesn't call unparent itself on the memory region,
     * ref-ing the owner will also keep the memory region alive.
1569 1570
     * Memory regions without an owner are supposed to never go away;
     * we do not ref/unref them because it slows down DMA sensibly.
1571
     */
1572 1573
    if (mr && mr->owner) {
        object_ref(mr->owner);
P
Paolo Bonzini 已提交
1574 1575 1576 1577 1578
    }
}

void memory_region_unref(MemoryRegion *mr)
{
1579 1580
    if (mr && mr->owner) {
        object_unref(mr->owner);
P
Paolo Bonzini 已提交
1581 1582 1583
    }
}

A
Avi Kivity 已提交
1584 1585
uint64_t memory_region_size(MemoryRegion *mr)
{
1586 1587 1588 1589
    if (int128_eq(mr->size, int128_2_64())) {
        return UINT64_MAX;
    }
    return int128_get64(mr->size);
A
Avi Kivity 已提交
1590 1591
}

1592
const char *memory_region_name(const MemoryRegion *mr)
1593
{
1594 1595 1596 1597
    if (!mr->name) {
        ((MemoryRegion *)mr)->name =
            object_get_canonical_path_component(OBJECT(mr));
    }
1598
    return mr->name;
1599 1600
}

1601
bool memory_region_is_ram_device(MemoryRegion *mr)
1602
{
1603
    return mr->ram_device;
1604 1605
}

1606
uint8_t memory_region_get_dirty_log_mask(MemoryRegion *mr)
1607
{
1608
    uint8_t mask = mr->dirty_log_mask;
1609
    if (global_dirty_log && mr->ram_block) {
1610 1611 1612
        mask |= (1 << DIRTY_MEMORY_MIGRATION);
    }
    return mask;
1613 1614
}

1615 1616 1617 1618 1619
bool memory_region_is_logging(MemoryRegion *mr, uint8_t client)
{
    return memory_region_get_dirty_log_mask(mr) & (1 << client);
}

1620
static void memory_region_update_iommu_notify_flags(IOMMUMemoryRegion *iommu_mr)
1621 1622 1623
{
    IOMMUNotifierFlag flags = IOMMU_NOTIFIER_NONE;
    IOMMUNotifier *iommu_notifier;
1624
    IOMMUMemoryRegionClass *imrc = IOMMU_MEMORY_REGION_GET_CLASS(iommu_mr);
1625

1626
    IOMMU_NOTIFIER_FOREACH(iommu_notifier, iommu_mr) {
1627 1628 1629
        flags |= iommu_notifier->notifier_flags;
    }

1630 1631 1632 1633
    if (flags != iommu_mr->iommu_notify_flags && imrc->notify_flag_changed) {
        imrc->notify_flag_changed(iommu_mr,
                                  iommu_mr->iommu_notify_flags,
                                  flags);
1634 1635
    }

1636
    iommu_mr->iommu_notify_flags = flags;
1637 1638
}

1639 1640
void memory_region_register_iommu_notifier(MemoryRegion *mr,
                                           IOMMUNotifier *n)
1641
{
1642 1643
    IOMMUMemoryRegion *iommu_mr;

1644 1645 1646 1647 1648
    if (mr->alias) {
        memory_region_register_iommu_notifier(mr->alias, n);
        return;
    }

1649
    /* We need to register for at least one bitfield */
1650
    iommu_mr = IOMMU_MEMORY_REGION(mr);
1651
    assert(n->notifier_flags != IOMMU_NOTIFIER_NONE);
1652
    assert(n->start <= n->end);
1653 1654
    QLIST_INSERT_HEAD(&iommu_mr->iommu_notify, n, node);
    memory_region_update_iommu_notify_flags(iommu_mr);
1655 1656
}

1657
uint64_t memory_region_iommu_get_min_page_size(IOMMUMemoryRegion *iommu_mr)
1658
{
1659 1660 1661 1662
    IOMMUMemoryRegionClass *imrc = IOMMU_MEMORY_REGION_GET_CLASS(iommu_mr);

    if (imrc->get_min_page_size) {
        return imrc->get_min_page_size(iommu_mr);
1663 1664 1665 1666
    }
    return TARGET_PAGE_SIZE;
}

1667
void memory_region_iommu_replay(IOMMUMemoryRegion *iommu_mr, IOMMUNotifier *n)
1668
{
1669
    MemoryRegion *mr = MEMORY_REGION(iommu_mr);
1670
    IOMMUMemoryRegionClass *imrc = IOMMU_MEMORY_REGION_GET_CLASS(iommu_mr);
1671
    hwaddr addr, granularity;
1672 1673
    IOMMUTLBEntry iotlb;

1674
    /* If the IOMMU has its own replay callback, override */
1675 1676
    if (imrc->replay) {
        imrc->replay(iommu_mr, n);
1677 1678 1679
        return;
    }

1680
    granularity = memory_region_iommu_get_min_page_size(iommu_mr);
1681

1682
    for (addr = 0; addr < memory_region_size(mr); addr += granularity) {
1683
        iotlb = imrc->translate(iommu_mr, addr, IOMMU_NONE);
1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695
        if (iotlb.perm != IOMMU_NONE) {
            n->notify(n, &iotlb);
        }

        /* if (2^64 - MR size) < granularity, it's possible to get an
         * infinite loop here.  This should catch such a wraparound */
        if ((addr + granularity) < addr) {
            break;
        }
    }
}

1696
void memory_region_iommu_replay_all(IOMMUMemoryRegion *iommu_mr)
P
Peter Xu 已提交
1697 1698 1699
{
    IOMMUNotifier *notifier;

1700 1701
    IOMMU_NOTIFIER_FOREACH(notifier, iommu_mr) {
        memory_region_iommu_replay(iommu_mr, notifier);
P
Peter Xu 已提交
1702 1703 1704
    }
}

1705 1706
void memory_region_unregister_iommu_notifier(MemoryRegion *mr,
                                             IOMMUNotifier *n)
1707
{
1708 1709
    IOMMUMemoryRegion *iommu_mr;

1710 1711 1712 1713
    if (mr->alias) {
        memory_region_unregister_iommu_notifier(mr->alias, n);
        return;
    }
1714
    QLIST_REMOVE(n, node);
1715 1716
    iommu_mr = IOMMU_MEMORY_REGION(mr);
    memory_region_update_iommu_notify_flags(iommu_mr);
1717 1718
}

1719 1720
void memory_region_notify_one(IOMMUNotifier *notifier,
                              IOMMUTLBEntry *entry)
1721
{
1722 1723
    IOMMUNotifierFlag request_flags;

1724 1725 1726 1727 1728 1729 1730 1731
    /*
     * Skip the notification if the notification does not overlap
     * with registered range.
     */
    if (notifier->start > entry->iova + entry->addr_mask + 1 ||
        notifier->end < entry->iova) {
        return;
    }
1732

1733
    if (entry->perm & IOMMU_RW) {
1734 1735 1736 1737 1738
        request_flags = IOMMU_NOTIFIER_MAP;
    } else {
        request_flags = IOMMU_NOTIFIER_UNMAP;
    }

1739 1740 1741 1742 1743
    if (notifier->notifier_flags & request_flags) {
        notifier->notify(notifier, entry);
    }
}

1744
void memory_region_notify_iommu(IOMMUMemoryRegion *iommu_mr,
1745 1746 1747 1748
                                IOMMUTLBEntry entry)
{
    IOMMUNotifier *iommu_notifier;

1749
    assert(memory_region_is_iommu(MEMORY_REGION(iommu_mr)));
1750

1751
    IOMMU_NOTIFIER_FOREACH(iommu_notifier, iommu_mr) {
1752
        memory_region_notify_one(iommu_notifier, &entry);
1753
    }
1754 1755
}

A
Avi Kivity 已提交
1756 1757
void memory_region_set_log(MemoryRegion *mr, bool log, unsigned client)
{
A
Avi Kivity 已提交
1758
    uint8_t mask = 1 << client;
1759
    uint8_t old_logging;
A
Avi Kivity 已提交
1760

1761
    assert(client == DIRTY_MEMORY_VGA);
1762 1763 1764 1765 1766 1767
    old_logging = mr->vga_logging_count;
    mr->vga_logging_count += log ? 1 : -1;
    if (!!old_logging == !!mr->vga_logging_count) {
        return;
    }

1768
    memory_region_transaction_begin();
A
Avi Kivity 已提交
1769
    mr->dirty_log_mask = (mr->dirty_log_mask & ~mask) | (log * mask);
1770
    memory_region_update_pending |= mr->enabled;
1771
    memory_region_transaction_commit();
A
Avi Kivity 已提交
1772 1773
}

A
Avi Kivity 已提交
1774 1775
bool memory_region_get_dirty(MemoryRegion *mr, hwaddr addr,
                             hwaddr size, unsigned client)
A
Avi Kivity 已提交
1776
{
F
Fam Zheng 已提交
1777 1778 1779
    assert(mr->ram_block);
    return cpu_physical_memory_get_dirty(memory_region_get_ram_addr(mr) + addr,
                                         size, client);
A
Avi Kivity 已提交
1780 1781
}

A
Avi Kivity 已提交
1782 1783
void memory_region_set_dirty(MemoryRegion *mr, hwaddr addr,
                             hwaddr size)
A
Avi Kivity 已提交
1784
{
F
Fam Zheng 已提交
1785 1786 1787
    assert(mr->ram_block);
    cpu_physical_memory_set_dirty_range(memory_region_get_ram_addr(mr) + addr,
                                        size,
1788
                                        memory_region_get_dirty_log_mask(mr));
A
Avi Kivity 已提交
1789 1790
}

1791 1792 1793
bool memory_region_test_and_clear_dirty(MemoryRegion *mr, hwaddr addr,
                                        hwaddr size, unsigned client)
{
F
Fam Zheng 已提交
1794 1795 1796
    assert(mr->ram_block);
    return cpu_physical_memory_test_and_clear_dirty(
                memory_region_get_ram_addr(mr) + addr, size, client);
1797 1798
}

1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815
DirtyBitmapSnapshot *memory_region_snapshot_and_clear_dirty(MemoryRegion *mr,
                                                            hwaddr addr,
                                                            hwaddr size,
                                                            unsigned client)
{
    assert(mr->ram_block);
    return cpu_physical_memory_snapshot_and_clear_dirty(
                memory_region_get_ram_addr(mr) + addr, size, client);
}

bool memory_region_snapshot_get_dirty(MemoryRegion *mr, DirtyBitmapSnapshot *snap,
                                      hwaddr addr, hwaddr size)
{
    assert(mr->ram_block);
    return cpu_physical_memory_snapshot_get_dirty(snap,
                memory_region_get_ram_addr(mr) + addr, size);
}
1816

A
Avi Kivity 已提交
1817 1818
void memory_region_sync_dirty_bitmap(MemoryRegion *mr)
{
1819
    MemoryListener *listener;
1820
    AddressSpace *as;
1821
    FlatView *view;
A
Avi Kivity 已提交
1822 1823
    FlatRange *fr;

1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834
    /* If the same address space has multiple log_sync listeners, we
     * visit that address space's FlatView multiple times.  But because
     * log_sync listeners are rare, it's still cheaper than walking each
     * address space once.
     */
    QTAILQ_FOREACH(listener, &memory_listeners, link) {
        if (!listener->log_sync) {
            continue;
        }
        as = listener->address_space;
        view = address_space_get_flatview(as);
1835
        FOR_EACH_FLAT_RANGE(fr, view) {
1836
            if (fr->mr == mr) {
1837 1838
                MemoryRegionSection mrs = section_from_flat_range(fr, as);
                listener->log_sync(listener, &mrs);
1839
            }
A
Avi Kivity 已提交
1840
        }
1841
        flatview_unref(view);
A
Avi Kivity 已提交
1842
    }
A
Avi Kivity 已提交
1843 1844 1845 1846
}

void memory_region_set_readonly(MemoryRegion *mr, bool readonly)
{
1847
    if (mr->readonly != readonly) {
1848
        memory_region_transaction_begin();
1849
        mr->readonly = readonly;
1850
        memory_region_update_pending |= mr->enabled;
1851
        memory_region_transaction_commit();
1852
    }
A
Avi Kivity 已提交
1853 1854
}

1855
void memory_region_rom_device_set_romd(MemoryRegion *mr, bool romd_mode)
1856
{
1857
    if (mr->romd_mode != romd_mode) {
1858
        memory_region_transaction_begin();
1859
        mr->romd_mode = romd_mode;
1860
        memory_region_update_pending |= mr->enabled;
1861
        memory_region_transaction_commit();
1862 1863 1864
    }
}

A
Avi Kivity 已提交
1865 1866
void memory_region_reset_dirty(MemoryRegion *mr, hwaddr addr,
                               hwaddr size, unsigned client)
A
Avi Kivity 已提交
1867
{
F
Fam Zheng 已提交
1868 1869 1870
    assert(mr->ram_block);
    cpu_physical_memory_test_and_clear_dirty(
        memory_region_get_ram_addr(mr) + addr, size, client);
A
Avi Kivity 已提交
1871 1872
}

1873 1874
int memory_region_get_fd(MemoryRegion *mr)
{
1875 1876 1877 1878 1879
    int fd;

    rcu_read_lock();
    while (mr->alias) {
        mr = mr->alias;
1880
    }
1881 1882
    fd = mr->ram_block->fd;
    rcu_read_unlock();
1883

1884 1885
    return fd;
}
1886

A
Avi Kivity 已提交
1887 1888
void *memory_region_get_ram_ptr(MemoryRegion *mr)
{
1889 1890
    void *ptr;
    uint64_t offset = 0;
A
Avi Kivity 已提交
1891

1892 1893 1894 1895 1896
    rcu_read_lock();
    while (mr->alias) {
        offset += mr->alias_offset;
        mr = mr->alias;
    }
F
Fam Zheng 已提交
1897
    assert(mr->ram_block);
1898
    ptr = qemu_map_ram_ptr(mr->ram_block, offset);
1899
    rcu_read_unlock();
A
Avi Kivity 已提交
1900

1901
    return ptr;
A
Avi Kivity 已提交
1902 1903
}

1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915
MemoryRegion *memory_region_from_host(void *ptr, ram_addr_t *offset)
{
    RAMBlock *block;

    block = qemu_ram_block_from_host(ptr, false, offset);
    if (!block) {
        return NULL;
    }

    return block->mr;
}

1916 1917 1918 1919 1920
ram_addr_t memory_region_get_ram_addr(MemoryRegion *mr)
{
    return mr->ram_block ? mr->ram_block->offset : RAM_ADDR_INVALID;
}

1921 1922
void memory_region_ram_resize(MemoryRegion *mr, ram_addr_t newsize, Error **errp)
{
F
Fam Zheng 已提交
1923
    assert(mr->ram_block);
1924

G
Gonglei 已提交
1925
    qemu_ram_resize(mr->ram_block, newsize, errp);
1926 1927
}

1928
static void memory_region_update_coalesced_range_as(MemoryRegion *mr, AddressSpace *as)
A
Avi Kivity 已提交
1929
{
1930
    FlatView *view;
A
Avi Kivity 已提交
1931 1932 1933
    FlatRange *fr;
    CoalescedMemoryRange *cmr;
    AddrRange tmp;
1934
    MemoryRegionSection section;
A
Avi Kivity 已提交
1935

1936
    view = address_space_get_flatview(as);
1937
    FOR_EACH_FLAT_RANGE(fr, view) {
A
Avi Kivity 已提交
1938
        if (fr->mr == mr) {
1939
            section = (MemoryRegionSection) {
1940
                .address_space = as,
1941
                .offset_within_address_space = int128_get64(fr->addr.start),
1942
                .size = fr->addr.size,
1943 1944
            };

1945
            MEMORY_LISTENER_CALL(as, coalesced_mmio_del, Reverse, &section,
1946 1947
                                 int128_get64(fr->addr.start),
                                 int128_get64(fr->addr.size));
A
Avi Kivity 已提交
1948 1949
            QTAILQ_FOREACH(cmr, &mr->coalesced, link) {
                tmp = addrrange_shift(cmr->addr,
1950 1951
                                      int128_sub(fr->addr.start,
                                                 int128_make64(fr->offset_in_region)));
A
Avi Kivity 已提交
1952 1953 1954 1955
                if (!addrrange_intersects(tmp, fr->addr)) {
                    continue;
                }
                tmp = addrrange_intersection(tmp, fr->addr);
1956
                MEMORY_LISTENER_CALL(as, coalesced_mmio_add, Forward, &section,
1957 1958
                                     int128_get64(tmp.start),
                                     int128_get64(tmp.size));
A
Avi Kivity 已提交
1959 1960 1961
            }
        }
    }
1962
    flatview_unref(view);
A
Avi Kivity 已提交
1963 1964
}

1965 1966 1967 1968 1969 1970 1971 1972 1973
static void memory_region_update_coalesced_range(MemoryRegion *mr)
{
    AddressSpace *as;

    QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
        memory_region_update_coalesced_range_as(mr, as);
    }
}

A
Avi Kivity 已提交
1974 1975 1976
void memory_region_set_coalescing(MemoryRegion *mr)
{
    memory_region_clear_coalescing(mr);
1977
    memory_region_add_coalescing(mr, 0, int128_get64(mr->size));
A
Avi Kivity 已提交
1978 1979 1980
}

void memory_region_add_coalescing(MemoryRegion *mr,
A
Avi Kivity 已提交
1981
                                  hwaddr offset,
A
Avi Kivity 已提交
1982 1983
                                  uint64_t size)
{
1984
    CoalescedMemoryRange *cmr = g_malloc(sizeof(*cmr));
A
Avi Kivity 已提交
1985

1986
    cmr->addr = addrrange_make(int128_make64(offset), int128_make64(size));
A
Avi Kivity 已提交
1987 1988
    QTAILQ_INSERT_TAIL(&mr->coalesced, cmr, link);
    memory_region_update_coalesced_range(mr);
1989
    memory_region_set_flush_coalesced(mr);
A
Avi Kivity 已提交
1990 1991 1992 1993 1994
}

void memory_region_clear_coalescing(MemoryRegion *mr)
{
    CoalescedMemoryRange *cmr;
1995
    bool updated = false;
A
Avi Kivity 已提交
1996

1997 1998 1999
    qemu_flush_coalesced_mmio_buffer();
    mr->flush_coalesced_mmio = false;

A
Avi Kivity 已提交
2000 2001 2002
    while (!QTAILQ_EMPTY(&mr->coalesced)) {
        cmr = QTAILQ_FIRST(&mr->coalesced);
        QTAILQ_REMOVE(&mr->coalesced, cmr, link);
2003
        g_free(cmr);
2004 2005 2006 2007 2008
        updated = true;
    }

    if (updated) {
        memory_region_update_coalesced_range(mr);
A
Avi Kivity 已提交
2009 2010 2011
    }
}

2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024
void memory_region_set_flush_coalesced(MemoryRegion *mr)
{
    mr->flush_coalesced_mmio = true;
}

void memory_region_clear_flush_coalesced(MemoryRegion *mr)
{
    qemu_flush_coalesced_mmio_buffer();
    if (QTAILQ_EMPTY(&mr->coalesced)) {
        mr->flush_coalesced_mmio = false;
    }
}

2025 2026 2027 2028 2029 2030 2031 2032 2033 2034
void memory_region_set_global_locking(MemoryRegion *mr)
{
    mr->global_locking = true;
}

void memory_region_clear_global_locking(MemoryRegion *mr)
{
    mr->global_locking = false;
}

P
Pavel Fedin 已提交
2035 2036
static bool userspace_eventfd_warning;

A
Avi Kivity 已提交
2037
void memory_region_add_eventfd(MemoryRegion *mr,
A
Avi Kivity 已提交
2038
                               hwaddr addr,
A
Avi Kivity 已提交
2039 2040 2041
                               unsigned size,
                               bool match_data,
                               uint64_t data,
2042
                               EventNotifier *e)
A
Avi Kivity 已提交
2043 2044
{
    MemoryRegionIoeventfd mrfd = {
2045 2046
        .addr.start = int128_make64(addr),
        .addr.size = int128_make64(size),
A
Avi Kivity 已提交
2047 2048
        .match_data = match_data,
        .data = data,
2049
        .e = e,
A
Avi Kivity 已提交
2050 2051 2052
    };
    unsigned i;

P
Pavel Fedin 已提交
2053 2054 2055 2056 2057 2058 2059
    if (kvm_enabled() && (!(kvm_eventfds_enabled() ||
                            userspace_eventfd_warning))) {
        userspace_eventfd_warning = true;
        error_report("Using eventfd without MMIO binding in KVM. "
                     "Suboptimal performance expected");
    }

2060 2061 2062
    if (size) {
        adjust_endianness(mr, &mrfd.data, size);
    }
2063
    memory_region_transaction_begin();
A
Avi Kivity 已提交
2064 2065 2066 2067 2068 2069
    for (i = 0; i < mr->ioeventfd_nb; ++i) {
        if (memory_region_ioeventfd_before(mrfd, mr->ioeventfds[i])) {
            break;
        }
    }
    ++mr->ioeventfd_nb;
2070
    mr->ioeventfds = g_realloc(mr->ioeventfds,
A
Avi Kivity 已提交
2071 2072 2073 2074
                                  sizeof(*mr->ioeventfds) * mr->ioeventfd_nb);
    memmove(&mr->ioeventfds[i+1], &mr->ioeventfds[i],
            sizeof(*mr->ioeventfds) * (mr->ioeventfd_nb-1 - i));
    mr->ioeventfds[i] = mrfd;
2075
    ioeventfd_update_pending |= mr->enabled;
2076
    memory_region_transaction_commit();
A
Avi Kivity 已提交
2077 2078 2079
}

void memory_region_del_eventfd(MemoryRegion *mr,
A
Avi Kivity 已提交
2080
                               hwaddr addr,
A
Avi Kivity 已提交
2081 2082 2083
                               unsigned size,
                               bool match_data,
                               uint64_t data,
2084
                               EventNotifier *e)
A
Avi Kivity 已提交
2085 2086
{
    MemoryRegionIoeventfd mrfd = {
2087 2088
        .addr.start = int128_make64(addr),
        .addr.size = int128_make64(size),
A
Avi Kivity 已提交
2089 2090
        .match_data = match_data,
        .data = data,
2091
        .e = e,
A
Avi Kivity 已提交
2092 2093 2094
    };
    unsigned i;

2095 2096 2097
    if (size) {
        adjust_endianness(mr, &mrfd.data, size);
    }
2098
    memory_region_transaction_begin();
A
Avi Kivity 已提交
2099 2100 2101 2102 2103 2104 2105 2106 2107
    for (i = 0; i < mr->ioeventfd_nb; ++i) {
        if (memory_region_ioeventfd_equal(mrfd, mr->ioeventfds[i])) {
            break;
        }
    }
    assert(i != mr->ioeventfd_nb);
    memmove(&mr->ioeventfds[i], &mr->ioeventfds[i+1],
            sizeof(*mr->ioeventfds) * (mr->ioeventfd_nb - (i+1)));
    --mr->ioeventfd_nb;
2108
    mr->ioeventfds = g_realloc(mr->ioeventfds,
A
Avi Kivity 已提交
2109
                                  sizeof(*mr->ioeventfds)*mr->ioeventfd_nb + 1);
2110
    ioeventfd_update_pending |= mr->enabled;
2111
    memory_region_transaction_commit();
A
Avi Kivity 已提交
2112 2113
}

2114
static void memory_region_update_container_subregions(MemoryRegion *subregion)
A
Avi Kivity 已提交
2115
{
2116
    MemoryRegion *mr = subregion->container;
A
Avi Kivity 已提交
2117 2118
    MemoryRegion *other;

2119 2120
    memory_region_transaction_begin();

P
Paolo Bonzini 已提交
2121
    memory_region_ref(subregion);
A
Avi Kivity 已提交
2122 2123 2124 2125 2126 2127 2128 2129
    QTAILQ_FOREACH(other, &mr->subregions, subregions_link) {
        if (subregion->priority >= other->priority) {
            QTAILQ_INSERT_BEFORE(other, subregion, subregions_link);
            goto done;
        }
    }
    QTAILQ_INSERT_TAIL(&mr->subregions, subregion, subregions_link);
done:
2130
    memory_region_update_pending |= mr->enabled && subregion->enabled;
2131
    memory_region_transaction_commit();
A
Avi Kivity 已提交
2132 2133
}

2134 2135 2136 2137
static void memory_region_add_subregion_common(MemoryRegion *mr,
                                               hwaddr offset,
                                               MemoryRegion *subregion)
{
2138 2139
    assert(!subregion->container);
    subregion->container = mr;
2140
    subregion->addr = offset;
2141
    memory_region_update_container_subregions(subregion);
2142
}
A
Avi Kivity 已提交
2143 2144

void memory_region_add_subregion(MemoryRegion *mr,
A
Avi Kivity 已提交
2145
                                 hwaddr offset,
A
Avi Kivity 已提交
2146 2147 2148 2149 2150 2151 2152
                                 MemoryRegion *subregion)
{
    subregion->priority = 0;
    memory_region_add_subregion_common(mr, offset, subregion);
}

void memory_region_add_subregion_overlap(MemoryRegion *mr,
A
Avi Kivity 已提交
2153
                                         hwaddr offset,
A
Avi Kivity 已提交
2154
                                         MemoryRegion *subregion,
2155
                                         int priority)
A
Avi Kivity 已提交
2156 2157 2158 2159 2160 2161 2162 2163
{
    subregion->priority = priority;
    memory_region_add_subregion_common(mr, offset, subregion);
}

void memory_region_del_subregion(MemoryRegion *mr,
                                 MemoryRegion *subregion)
{
2164
    memory_region_transaction_begin();
2165 2166
    assert(subregion->container == mr);
    subregion->container = NULL;
A
Avi Kivity 已提交
2167
    QTAILQ_REMOVE(&mr->subregions, subregion, subregions_link);
P
Paolo Bonzini 已提交
2168
    memory_region_unref(subregion);
2169
    memory_region_update_pending |= mr->enabled && subregion->enabled;
2170
    memory_region_transaction_commit();
2171 2172 2173 2174 2175 2176 2177
}

void memory_region_set_enabled(MemoryRegion *mr, bool enabled)
{
    if (enabled == mr->enabled) {
        return;
    }
2178
    memory_region_transaction_begin();
2179
    mr->enabled = enabled;
2180
    memory_region_update_pending = true;
2181
    memory_region_transaction_commit();
A
Avi Kivity 已提交
2182
}
A
Avi Kivity 已提交
2183

2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199
void memory_region_set_size(MemoryRegion *mr, uint64_t size)
{
    Int128 s = int128_make64(size);

    if (size == UINT64_MAX) {
        s = int128_2_64();
    }
    if (int128_eq(s, mr->size)) {
        return;
    }
    memory_region_transaction_begin();
    mr->size = s;
    memory_region_update_pending = true;
    memory_region_transaction_commit();
}

2200
static void memory_region_readd_subregion(MemoryRegion *mr)
2201
{
2202
    MemoryRegion *container = mr->container;
2203

2204
    if (container) {
2205 2206
        memory_region_transaction_begin();
        memory_region_ref(mr);
2207 2208 2209
        memory_region_del_subregion(container, mr);
        mr->container = container;
        memory_region_update_container_subregions(mr);
2210 2211
        memory_region_unref(mr);
        memory_region_transaction_commit();
2212
    }
2213
}
2214

2215 2216 2217 2218 2219 2220
void memory_region_set_address(MemoryRegion *mr, hwaddr addr)
{
    if (addr != mr->addr) {
        mr->addr = addr;
        memory_region_readd_subregion(mr);
    }
2221 2222
}

A
Avi Kivity 已提交
2223
void memory_region_set_alias_offset(MemoryRegion *mr, hwaddr offset)
2224 2225 2226
{
    assert(mr->alias);

2227
    if (offset == mr->alias_offset) {
2228 2229 2230
        return;
    }

2231 2232
    memory_region_transaction_begin();
    mr->alias_offset = offset;
2233
    memory_region_update_pending |= mr->enabled;
2234
    memory_region_transaction_commit();
2235 2236
}

2237 2238 2239 2240 2241
uint64_t memory_region_get_alignment(const MemoryRegion *mr)
{
    return mr->align;
}

2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254
static int cmp_flatrange_addr(const void *addr_, const void *fr_)
{
    const AddrRange *addr = addr_;
    const FlatRange *fr = fr_;

    if (int128_le(addrrange_end(*addr), fr->addr.start)) {
        return -1;
    } else if (int128_ge(addr->start, addrrange_end(fr->addr))) {
        return 1;
    }
    return 0;
}

2255
static FlatRange *flatview_lookup(FlatView *view, AddrRange addr)
2256
{
2257
    return bsearch(&addr, view->ranges, view->nr,
2258 2259 2260
                   sizeof(FlatRange), cmp_flatrange_addr);
}

2261 2262 2263 2264 2265
bool memory_region_is_mapped(MemoryRegion *mr)
{
    return mr->container ? true : false;
}

2266 2267 2268 2269 2270
/* Same as memory_region_find, but it does not add a reference to the
 * returned region.  It must be called from an RCU critical section.
 */
static MemoryRegionSection memory_region_find_rcu(MemoryRegion *mr,
                                                  hwaddr addr, uint64_t size)
2271
{
2272
    MemoryRegionSection ret = { .mr = NULL };
2273 2274 2275
    MemoryRegion *root;
    AddressSpace *as;
    AddrRange range;
2276
    FlatView *view;
2277 2278 2279
    FlatRange *fr;

    addr += mr->addr;
2280 2281
    for (root = mr; root->container; ) {
        root = root->container;
2282 2283
        addr += root->addr;
    }
2284

2285
    as = memory_region_to_address_space(root);
2286 2287 2288
    if (!as) {
        return ret;
    }
2289
    range = addrrange_make(int128_make64(addr), int128_make64(size));
2290

2291
    view = atomic_rcu_read(&as->current_map);
2292
    fr = flatview_lookup(view, range);
2293
    if (!fr) {
2294
        return ret;
2295 2296
    }

2297
    while (fr > view->ranges && addrrange_intersects(fr[-1].addr, range)) {
2298 2299 2300 2301
        --fr;
    }

    ret.mr = fr->mr;
2302
    ret.address_space = as;
2303 2304 2305 2306
    range = addrrange_intersection(range, fr->addr);
    ret.offset_within_region = fr->offset_in_region;
    ret.offset_within_region += int128_get64(int128_sub(range.start,
                                                        fr->addr.start));
2307
    ret.size = range.size;
2308
    ret.offset_within_address_space = int128_get64(range.start);
2309
    ret.readonly = fr->readonly;
2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321
    return ret;
}

MemoryRegionSection memory_region_find(MemoryRegion *mr,
                                       hwaddr addr, uint64_t size)
{
    MemoryRegionSection ret;
    rcu_read_lock();
    ret = memory_region_find_rcu(mr, addr, size);
    if (ret.mr) {
        memory_region_ref(ret.mr);
    }
2322
    rcu_read_unlock();
2323 2324 2325
    return ret;
}

2326 2327 2328 2329 2330 2331 2332 2333 2334 2335
bool memory_region_present(MemoryRegion *container, hwaddr addr)
{
    MemoryRegion *mr;

    rcu_read_lock();
    mr = memory_region_find_rcu(container, addr, 1).mr;
    rcu_read_unlock();
    return mr && mr != container;
}

2336
void memory_global_dirty_log_sync(void)
2337
{
2338 2339
    MemoryListener *listener;
    AddressSpace *as;
2340
    FlatView *view;
2341 2342
    FlatRange *fr;

2343 2344 2345 2346
    QTAILQ_FOREACH(listener, &memory_listeners, link) {
        if (!listener->log_sync) {
            continue;
        }
2347
        as = listener->address_space;
2348 2349
        view = address_space_get_flatview(as);
        FOR_EACH_FLAT_RANGE(fr, view) {
2350 2351 2352 2353
            if (fr->dirty_log_mask) {
                MemoryRegionSection mrs = section_from_flat_range(fr, as);
                listener->log_sync(listener, &mrs);
            }
2354 2355
        }
        flatview_unref(view);
2356 2357 2358 2359 2360 2361
    }
}

void memory_global_dirty_log_start(void)
{
    global_dirty_log = true;
2362

2363
    MEMORY_LISTENER_CALL_GLOBAL(log_global_start, Forward);
2364 2365 2366 2367 2368

    /* Refresh DIRTY_LOG_MIGRATION bit.  */
    memory_region_transaction_begin();
    memory_region_update_pending = true;
    memory_region_transaction_commit();
2369 2370 2371 2372 2373
}

void memory_global_dirty_log_stop(void)
{
    global_dirty_log = false;
2374 2375 2376 2377 2378 2379

    /* Refresh DIRTY_LOG_MIGRATION bit.  */
    memory_region_transaction_begin();
    memory_region_update_pending = true;
    memory_region_transaction_commit();

2380
    MEMORY_LISTENER_CALL_GLOBAL(log_global_stop, Reverse);
2381 2382 2383 2384 2385
}

static void listener_add_address_space(MemoryListener *listener,
                                       AddressSpace *as)
{
2386
    FlatView *view;
2387 2388
    FlatRange *fr;

2389 2390 2391
    if (listener->begin) {
        listener->begin(listener);
    }
2392
    if (global_dirty_log) {
2393 2394 2395
        if (listener->log_global_start) {
            listener->log_global_start(listener);
        }
2396
    }
2397

2398
    view = address_space_get_flatview(as);
2399
    FOR_EACH_FLAT_RANGE(fr, view) {
2400 2401
        MemoryRegionSection section = {
            .mr = fr->mr,
2402
            .address_space = as,
2403
            .offset_within_region = fr->offset_in_region,
2404
            .size = fr->addr.size,
2405
            .offset_within_address_space = int128_get64(fr->addr.start),
2406
            .readonly = fr->readonly,
2407
        };
2408 2409 2410
        if (fr->dirty_log_mask && listener->log_start) {
            listener->log_start(listener, &section, 0, fr->dirty_log_mask);
        }
2411 2412 2413
        if (listener->region_add) {
            listener->region_add(listener, &section);
        }
2414
    }
2415 2416 2417
    if (listener->commit) {
        listener->commit(listener);
    }
2418
    flatview_unref(view);
2419 2420
}

2421
void memory_listener_register(MemoryListener *listener, AddressSpace *as)
2422
{
2423 2424
    MemoryListener *other = NULL;

2425
    listener->address_space = as;
2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437
    if (QTAILQ_EMPTY(&memory_listeners)
        || listener->priority >= QTAILQ_LAST(&memory_listeners,
                                             memory_listeners)->priority) {
        QTAILQ_INSERT_TAIL(&memory_listeners, listener, link);
    } else {
        QTAILQ_FOREACH(other, &memory_listeners, link) {
            if (listener->priority < other->priority) {
                break;
            }
        }
        QTAILQ_INSERT_BEFORE(other, listener, link);
    }
2438

2439 2440 2441 2442 2443 2444 2445 2446 2447 2448 2449 2450 2451
    if (QTAILQ_EMPTY(&as->listeners)
        || listener->priority >= QTAILQ_LAST(&as->listeners,
                                             memory_listeners)->priority) {
        QTAILQ_INSERT_TAIL(&as->listeners, listener, link_as);
    } else {
        QTAILQ_FOREACH(other, &as->listeners, link_as) {
            if (listener->priority < other->priority) {
                break;
            }
        }
        QTAILQ_INSERT_BEFORE(other, listener, link_as);
    }

2452
    listener_add_address_space(listener, as);
2453 2454 2455 2456
}

void memory_listener_unregister(MemoryListener *listener)
{
2457 2458 2459 2460
    if (!listener->address_space) {
        return;
    }

2461
    QTAILQ_REMOVE(&memory_listeners, listener, link);
2462
    QTAILQ_REMOVE(&listener->address_space->listeners, listener, link_as);
2463
    listener->address_space = NULL;
2464
}
2465

2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574
bool memory_region_request_mmio_ptr(MemoryRegion *mr, hwaddr addr)
{
    void *host;
    unsigned size = 0;
    unsigned offset = 0;
    Object *new_interface;

    if (!mr || !mr->ops->request_ptr) {
        return false;
    }

    /*
     * Avoid an update if the request_ptr call
     * memory_region_invalidate_mmio_ptr which seems to be likely when we use
     * a cache.
     */
    memory_region_transaction_begin();

    host = mr->ops->request_ptr(mr->opaque, addr - mr->addr, &size, &offset);

    if (!host || !size) {
        memory_region_transaction_commit();
        return false;
    }

    new_interface = object_new("mmio_interface");
    qdev_prop_set_uint64(DEVICE(new_interface), "start", offset);
    qdev_prop_set_uint64(DEVICE(new_interface), "end", offset + size - 1);
    qdev_prop_set_bit(DEVICE(new_interface), "ro", true);
    qdev_prop_set_ptr(DEVICE(new_interface), "host_ptr", host);
    qdev_prop_set_ptr(DEVICE(new_interface), "subregion", mr);
    object_property_set_bool(OBJECT(new_interface), true, "realized", NULL);

    memory_region_transaction_commit();
    return true;
}

typedef struct MMIOPtrInvalidate {
    MemoryRegion *mr;
    hwaddr offset;
    unsigned size;
    int busy;
    int allocated;
} MMIOPtrInvalidate;

#define MAX_MMIO_INVALIDATE 10
static MMIOPtrInvalidate mmio_ptr_invalidate_list[MAX_MMIO_INVALIDATE];

static void memory_region_do_invalidate_mmio_ptr(CPUState *cpu,
                                                 run_on_cpu_data data)
{
    MMIOPtrInvalidate *invalidate_data = (MMIOPtrInvalidate *)data.host_ptr;
    MemoryRegion *mr = invalidate_data->mr;
    hwaddr offset = invalidate_data->offset;
    unsigned size = invalidate_data->size;
    MemoryRegionSection section = memory_region_find(mr, offset, size);

    qemu_mutex_lock_iothread();

    /* Reset dirty so this doesn't happen later. */
    cpu_physical_memory_test_and_clear_dirty(offset, size, 1);

    if (section.mr != mr) {
        /* memory_region_find add a ref on section.mr */
        memory_region_unref(section.mr);
        if (MMIO_INTERFACE(section.mr->owner)) {
            /* We found the interface just drop it. */
            object_property_set_bool(section.mr->owner, false, "realized",
                                     NULL);
            object_unref(section.mr->owner);
            object_unparent(section.mr->owner);
        }
    }

    qemu_mutex_unlock_iothread();

    if (invalidate_data->allocated) {
        g_free(invalidate_data);
    } else {
        invalidate_data->busy = 0;
    }
}

void memory_region_invalidate_mmio_ptr(MemoryRegion *mr, hwaddr offset,
                                       unsigned size)
{
    size_t i;
    MMIOPtrInvalidate *invalidate_data = NULL;

    for (i = 0; i < MAX_MMIO_INVALIDATE; i++) {
        if (atomic_cmpxchg(&(mmio_ptr_invalidate_list[i].busy), 0, 1) == 0) {
            invalidate_data = &mmio_ptr_invalidate_list[i];
            break;
        }
    }

    if (!invalidate_data) {
        invalidate_data = g_malloc0(sizeof(MMIOPtrInvalidate));
        invalidate_data->allocated = 1;
    }

    invalidate_data->mr = mr;
    invalidate_data->offset = offset;
    invalidate_data->size = size;

    async_safe_run_on_cpu(first_cpu, memory_region_do_invalidate_mmio_ptr,
                          RUN_ON_CPU_HOST_PTR(invalidate_data));
}

2575
void address_space_init(AddressSpace *as, MemoryRegion *root, const char *name)
A
Avi Kivity 已提交
2576
{
2577
    memory_region_ref(root);
2578
    memory_region_transaction_begin();
2579
    as->ref_count = 1;
2580
    as->root = root;
2581
    as->malloced = false;
2582 2583
    as->current_map = g_new(FlatView, 1);
    flatview_init(as->current_map);
2584 2585
    as->ioeventfd_nb = 0;
    as->ioeventfds = NULL;
2586
    QTAILQ_INIT(&as->listeners);
2587
    QTAILQ_INSERT_TAIL(&address_spaces, as, address_spaces_link);
2588
    as->name = g_strdup(name ? name : "anonymous");
A
Avi Kivity 已提交
2589
    address_space_init_dispatch(as);
2590 2591
    memory_region_update_pending |= root->enabled;
    memory_region_transaction_commit();
A
Avi Kivity 已提交
2592
}
A
Avi Kivity 已提交
2593

2594
static void do_address_space_destroy(AddressSpace *as)
A
Avi Kivity 已提交
2595
{
2596
    bool do_free = as->malloced;
2597

A
Avi Kivity 已提交
2598
    address_space_destroy_dispatch(as);
2599
    assert(QTAILQ_EMPTY(&as->listeners));
2600

2601
    flatview_unref(as->current_map);
2602
    g_free(as->name);
2603
    g_free(as->ioeventfds);
2604
    memory_region_unref(as->root);
2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624
    if (do_free) {
        g_free(as);
    }
}

AddressSpace *address_space_init_shareable(MemoryRegion *root, const char *name)
{
    AddressSpace *as;

    QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
        if (root == as->root && as->malloced) {
            as->ref_count++;
            return as;
        }
    }

    as = g_malloc0(sizeof *as);
    address_space_init(as, root, name);
    as->malloced = true;
    return as;
A
Avi Kivity 已提交
2625 2626
}

2627 2628
void address_space_destroy(AddressSpace *as)
{
2629 2630
    MemoryRegion *root = as->root;

2631 2632 2633 2634
    as->ref_count--;
    if (as->ref_count) {
        return;
    }
2635 2636 2637 2638 2639
    /* Flush out anything from MemoryListeners listening in on this */
    memory_region_transaction_begin();
    as->root = NULL;
    memory_region_transaction_commit();
    QTAILQ_REMOVE(&address_spaces, as, address_spaces_link);
2640
    address_space_unregister(as);
2641 2642 2643 2644 2645

    /* At this point, as->dispatch and as->current_map are dummy
     * entries that the guest should never use.  Wait for the old
     * values to expire before freeing the data.
     */
2646
    as->root = root;
2647 2648 2649
    call_rcu(as, do_address_space_destroy, rcu);
}

2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664
static const char *memory_region_type(MemoryRegion *mr)
{
    if (memory_region_is_ram_device(mr)) {
        return "ramd";
    } else if (memory_region_is_romd(mr)) {
        return "romd";
    } else if (memory_region_is_rom(mr)) {
        return "rom";
    } else if (memory_region_is_ram(mr)) {
        return "ram";
    } else {
        return "i/o";
    }
}

B
Blue Swirl 已提交
2665 2666 2667 2668 2669 2670 2671 2672 2673
typedef struct MemoryRegionList MemoryRegionList;

struct MemoryRegionList {
    const MemoryRegion *mr;
    QTAILQ_ENTRY(MemoryRegionList) queue;
};

typedef QTAILQ_HEAD(queue, MemoryRegionList) MemoryRegionListHead;

2674 2675 2676 2677
#define MR_SIZE(size) (int128_nz(size) ? (hwaddr)int128_get64( \
                           int128_sub((size), int128_one())) : 0)
#define MTREE_INDENT "  "

B
Blue Swirl 已提交
2678 2679
static void mtree_print_mr(fprintf_function mon_printf, void *f,
                           const MemoryRegion *mr, unsigned int level,
A
Avi Kivity 已提交
2680
                           hwaddr base,
2681
                           MemoryRegionListHead *alias_print_queue)
B
Blue Swirl 已提交
2682
{
2683 2684
    MemoryRegionList *new_ml, *ml, *next_ml;
    MemoryRegionListHead submr_print_queue;
B
Blue Swirl 已提交
2685 2686
    const MemoryRegion *submr;
    unsigned int i;
2687
    hwaddr cur_start, cur_end;
B
Blue Swirl 已提交
2688

2689
    if (!mr) {
B
Blue Swirl 已提交
2690 2691 2692 2693
        return;
    }

    for (i = 0; i < level; i++) {
2694
        mon_printf(f, MTREE_INDENT);
B
Blue Swirl 已提交
2695 2696
    }

2697 2698 2699 2700 2701 2702 2703 2704 2705 2706 2707 2708
    cur_start = base + mr->addr;
    cur_end = cur_start + MR_SIZE(mr->size);

    /*
     * Try to detect overflow of memory region. This should never
     * happen normally. When it happens, we dump something to warn the
     * user who is observing this.
     */
    if (cur_start < base || cur_end < cur_start) {
        mon_printf(f, "[DETECTED OVERFLOW!] ");
    }

B
Blue Swirl 已提交
2709 2710 2711 2712 2713
    if (mr->alias) {
        MemoryRegionList *ml;
        bool found = false;

        /* check if the alias is already in the queue */
2714
        QTAILQ_FOREACH(ml, alias_print_queue, queue) {
P
Paolo Bonzini 已提交
2715
            if (ml->mr == mr->alias) {
B
Blue Swirl 已提交
2716 2717 2718 2719 2720 2721 2722
                found = true;
            }
        }

        if (!found) {
            ml = g_new(MemoryRegionList, 1);
            ml->mr = mr->alias;
2723
            QTAILQ_INSERT_TAIL(alias_print_queue, ml, queue);
B
Blue Swirl 已提交
2724
        }
2725
        mon_printf(f, TARGET_FMT_plx "-" TARGET_FMT_plx
2726
                   " (prio %d, %s): alias %s @%s " TARGET_FMT_plx
2727
                   "-" TARGET_FMT_plx "%s\n",
2728
                   cur_start, cur_end,
J
Jan Kiszka 已提交
2729
                   mr->priority,
2730
                   memory_region_type((MemoryRegion *)mr),
2731 2732
                   memory_region_name(mr),
                   memory_region_name(mr->alias),
B
Blue Swirl 已提交
2733
                   mr->alias_offset,
2734
                   mr->alias_offset + MR_SIZE(mr->size),
2735
                   mr->enabled ? "" : " [disabled]");
B
Blue Swirl 已提交
2736
    } else {
2737
        mon_printf(f,
2738
                   TARGET_FMT_plx "-" TARGET_FMT_plx " (prio %d, %s): %s%s\n",
2739
                   cur_start, cur_end,
J
Jan Kiszka 已提交
2740
                   mr->priority,
2741
                   memory_region_type((MemoryRegion *)mr),
2742 2743
                   memory_region_name(mr),
                   mr->enabled ? "" : " [disabled]");
B
Blue Swirl 已提交
2744
    }
2745 2746 2747

    QTAILQ_INIT(&submr_print_queue);

B
Blue Swirl 已提交
2748
    QTAILQ_FOREACH(submr, &mr->subregions, subregions_link) {
2749 2750 2751 2752 2753 2754 2755 2756 2757 2758 2759 2760 2761 2762 2763 2764 2765
        new_ml = g_new(MemoryRegionList, 1);
        new_ml->mr = submr;
        QTAILQ_FOREACH(ml, &submr_print_queue, queue) {
            if (new_ml->mr->addr < ml->mr->addr ||
                (new_ml->mr->addr == ml->mr->addr &&
                 new_ml->mr->priority > ml->mr->priority)) {
                QTAILQ_INSERT_BEFORE(ml, new_ml, queue);
                new_ml = NULL;
                break;
            }
        }
        if (new_ml) {
            QTAILQ_INSERT_TAIL(&submr_print_queue, new_ml, queue);
        }
    }

    QTAILQ_FOREACH(ml, &submr_print_queue, queue) {
2766
        mtree_print_mr(mon_printf, f, ml->mr, level + 1, cur_start,
2767 2768 2769
                       alias_print_queue);
    }

A
Avi Kivity 已提交
2770
    QTAILQ_FOREACH_SAFE(ml, &submr_print_queue, queue, next_ml) {
2771
        g_free(ml);
B
Blue Swirl 已提交
2772 2773 2774
    }
}

2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791
static void mtree_print_flatview(fprintf_function p, void *f,
                                 AddressSpace *as)
{
    FlatView *view = address_space_get_flatview(as);
    FlatRange *range = &view->ranges[0];
    MemoryRegion *mr;
    int n = view->nr;

    if (n <= 0) {
        p(f, MTREE_INDENT "No rendered FlatView for "
          "address space '%s'\n", as->name);
        flatview_unref(view);
        return;
    }

    while (n--) {
        mr = range->mr;
2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806 2807 2808 2809
        if (range->offset_in_region) {
            p(f, MTREE_INDENT TARGET_FMT_plx "-"
              TARGET_FMT_plx " (prio %d, %s): %s @" TARGET_FMT_plx "\n",
              int128_get64(range->addr.start),
              int128_get64(range->addr.start) + MR_SIZE(range->addr.size),
              mr->priority,
              range->readonly ? "rom" : memory_region_type(mr),
              memory_region_name(mr),
              range->offset_in_region);
        } else {
            p(f, MTREE_INDENT TARGET_FMT_plx "-"
              TARGET_FMT_plx " (prio %d, %s): %s\n",
              int128_get64(range->addr.start),
              int128_get64(range->addr.start) + MR_SIZE(range->addr.size),
              mr->priority,
              range->readonly ? "rom" : memory_region_type(mr),
              memory_region_name(mr));
        }
2810 2811 2812 2813 2814 2815 2816
        range++;
    }

    flatview_unref(view);
}

void mtree_info(fprintf_function mon_printf, void *f, bool flatview)
B
Blue Swirl 已提交
2817 2818 2819
{
    MemoryRegionListHead ml_head;
    MemoryRegionList *ml, *ml2;
2820
    AddressSpace *as;
B
Blue Swirl 已提交
2821

2822 2823 2824 2825 2826 2827 2828 2829 2830
    if (flatview) {
        QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
            mon_printf(f, "address-space (flat view): %s\n", as->name);
            mtree_print_flatview(mon_printf, f, as);
            mon_printf(f, "\n");
        }
        return;
    }

B
Blue Swirl 已提交
2831 2832
    QTAILQ_INIT(&ml_head);

2833
    QTAILQ_FOREACH(as, &address_spaces, address_spaces_link) {
G
Gerd Hoffmann 已提交
2834 2835 2836
        mon_printf(f, "address-space: %s\n", as->name);
        mtree_print_mr(mon_printf, f, as->root, 1, 0, &ml_head);
        mon_printf(f, "\n");
2837 2838
    }

B
Blue Swirl 已提交
2839 2840
    /* print aliased regions */
    QTAILQ_FOREACH(ml, &ml_head, queue) {
G
Gerd Hoffmann 已提交
2841 2842 2843
        mon_printf(f, "memory-region: %s\n", memory_region_name(ml->mr));
        mtree_print_mr(mon_printf, f, ml->mr, 1, 0, &ml_head);
        mon_printf(f, "\n");
B
Blue Swirl 已提交
2844 2845 2846
    }

    QTAILQ_FOREACH_SAFE(ml, &ml_head, queue, ml2) {
A
Avi Kivity 已提交
2847
        g_free(ml);
B
Blue Swirl 已提交
2848 2849
    }
}
P
Peter Crosthwaite 已提交
2850 2851 2852 2853 2854 2855 2856 2857 2858

static const TypeInfo memory_region_info = {
    .parent             = TYPE_OBJECT,
    .name               = TYPE_MEMORY_REGION,
    .instance_size      = sizeof(MemoryRegion),
    .instance_init      = memory_region_initfn,
    .instance_finalize  = memory_region_finalize,
};

2859 2860 2861
static const TypeInfo iommu_memory_region_info = {
    .parent             = TYPE_MEMORY_REGION,
    .name               = TYPE_IOMMU_MEMORY_REGION,
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    .class_size         = sizeof(IOMMUMemoryRegionClass),
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    .instance_size      = sizeof(IOMMUMemoryRegion),
    .instance_init      = iommu_memory_region_initfn,
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    .abstract           = true,
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};

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static void memory_register_types(void)
{
    type_register_static(&memory_region_info);
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    type_register_static(&iommu_memory_region_info);
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}

type_init(memory_register_types)