arch_init.c 33.9 KB
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/*
 * QEMU System Emulator
 *
 * Copyright (c) 2003-2008 Fabrice Bellard
 *
 * Permission is hereby granted, free of charge, to any person obtaining a copy
 * of this software and associated documentation files (the "Software"), to deal
 * in the Software without restriction, including without limitation the rights
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
 * copies of the Software, and to permit persons to whom the Software is
 * furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice shall be included in
 * all copies or substantial portions of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
 * THE SOFTWARE.
 */
#include <stdint.h>
#include <stdarg.h>
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#include <stdlib.h>
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#ifndef _WIN32
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#include <sys/types.h>
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#include <sys/mman.h>
#endif
#include "config.h"
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#include "monitor/monitor.h"
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#include "sysemu/sysemu.h"
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#include "qemu/bitops.h"
#include "qemu/bitmap.h"
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#include "sysemu/arch_init.h"
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#include "audio/audio.h"
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#include "hw/i386/pc.h"
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#include "hw/pci/pci.h"
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#include "hw/audio/audio.h"
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#include "sysemu/kvm.h"
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#include "migration/migration.h"
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#include "hw/i386/smbios.h"
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#include "exec/address-spaces.h"
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#include "hw/audio/pcspk.h"
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#include "migration/page_cache.h"
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#include "qemu/config-file.h"
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#include "qmp-commands.h"
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#include "trace.h"
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#include "exec/cpu-all.h"
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#include "exec/ram_addr.h"
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#include "hw/acpi/acpi.h"
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#include "qemu/host-utils.h"
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#ifdef DEBUG_ARCH_INIT
#define DPRINTF(fmt, ...) \
    do { fprintf(stdout, "arch_init: " fmt, ## __VA_ARGS__); } while (0)
#else
#define DPRINTF(fmt, ...) \
    do { } while (0)
#endif

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#ifdef TARGET_SPARC
int graphic_width = 1024;
int graphic_height = 768;
int graphic_depth = 8;
#else
int graphic_width = 800;
int graphic_height = 600;
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int graphic_depth = 32;
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#endif


#if defined(TARGET_ALPHA)
#define QEMU_ARCH QEMU_ARCH_ALPHA
#elif defined(TARGET_ARM)
#define QEMU_ARCH QEMU_ARCH_ARM
#elif defined(TARGET_CRIS)
#define QEMU_ARCH QEMU_ARCH_CRIS
#elif defined(TARGET_I386)
#define QEMU_ARCH QEMU_ARCH_I386
#elif defined(TARGET_M68K)
#define QEMU_ARCH QEMU_ARCH_M68K
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#elif defined(TARGET_LM32)
#define QEMU_ARCH QEMU_ARCH_LM32
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#elif defined(TARGET_MICROBLAZE)
#define QEMU_ARCH QEMU_ARCH_MICROBLAZE
#elif defined(TARGET_MIPS)
#define QEMU_ARCH QEMU_ARCH_MIPS
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#elif defined(TARGET_MOXIE)
#define QEMU_ARCH QEMU_ARCH_MOXIE
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#elif defined(TARGET_OPENRISC)
#define QEMU_ARCH QEMU_ARCH_OPENRISC
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#elif defined(TARGET_PPC)
#define QEMU_ARCH QEMU_ARCH_PPC
#elif defined(TARGET_S390X)
#define QEMU_ARCH QEMU_ARCH_S390X
#elif defined(TARGET_SH4)
#define QEMU_ARCH QEMU_ARCH_SH4
#elif defined(TARGET_SPARC)
#define QEMU_ARCH QEMU_ARCH_SPARC
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#elif defined(TARGET_XTENSA)
#define QEMU_ARCH QEMU_ARCH_XTENSA
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#elif defined(TARGET_UNICORE32)
#define QEMU_ARCH QEMU_ARCH_UNICORE32
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#endif

const uint32_t arch_type = QEMU_ARCH;
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static bool mig_throttle_on;
static int dirty_rate_high_cnt;
static void check_guest_throttling(void);
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/***********************************************************/
/* ram save/restore */

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#define RAM_SAVE_FLAG_FULL     0x01 /* Obsolete, not used anymore */
#define RAM_SAVE_FLAG_COMPRESS 0x02
#define RAM_SAVE_FLAG_MEM_SIZE 0x04
#define RAM_SAVE_FLAG_PAGE     0x08
#define RAM_SAVE_FLAG_EOS      0x10
#define RAM_SAVE_FLAG_CONTINUE 0x20
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#define RAM_SAVE_FLAG_XBZRLE   0x40
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/* 0x80 is reserved in migration.h start with 0x100 next */
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static struct defconfig_file {
    const char *filename;
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    /* Indicates it is an user config file (disabled by -no-user-config) */
    bool userconfig;
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} default_config_files[] = {
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    { CONFIG_QEMU_CONFDIR "/qemu.conf",                   true },
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    { CONFIG_QEMU_CONFDIR "/target-" TARGET_NAME ".conf", true },
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    { NULL }, /* end of list */
};


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int qemu_read_default_config_files(bool userconfig)
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{
    int ret;
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    struct defconfig_file *f;
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    for (f = default_config_files; f->filename; f++) {
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        if (!userconfig && f->userconfig) {
            continue;
        }
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        ret = qemu_read_config_file(f->filename);
        if (ret < 0 && ret != -ENOENT) {
            return ret;
        }
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    }
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    return 0;
}

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static inline bool is_zero_range(uint8_t *p, uint64_t size)
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{
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    return buffer_find_nonzero_offset(p, size) == size;
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}

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/* struct contains XBZRLE cache and a static page
   used by the compression */
static struct {
    /* buffer used for XBZRLE encoding */
    uint8_t *encoded_buf;
    /* buffer for storing page content */
    uint8_t *current_buf;
    /* buffer used for XBZRLE decoding */
    uint8_t *decoded_buf;
    /* Cache for XBZRLE */
    PageCache *cache;
} XBZRLE = {
    .encoded_buf = NULL,
    .current_buf = NULL,
    .decoded_buf = NULL,
    .cache = NULL,
};

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int64_t xbzrle_cache_resize(int64_t new_size)
{
    if (XBZRLE.cache != NULL) {
        return cache_resize(XBZRLE.cache, new_size / TARGET_PAGE_SIZE) *
            TARGET_PAGE_SIZE;
    }
    return pow2floor(new_size);
}

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/* accounting for migration statistics */
typedef struct AccountingInfo {
    uint64_t dup_pages;
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    uint64_t skipped_pages;
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    uint64_t norm_pages;
    uint64_t iterations;
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    uint64_t xbzrle_bytes;
    uint64_t xbzrle_pages;
    uint64_t xbzrle_cache_miss;
    uint64_t xbzrle_overflows;
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} AccountingInfo;

static AccountingInfo acct_info;

static void acct_clear(void)
{
    memset(&acct_info, 0, sizeof(acct_info));
}

uint64_t dup_mig_bytes_transferred(void)
{
    return acct_info.dup_pages * TARGET_PAGE_SIZE;
}

uint64_t dup_mig_pages_transferred(void)
{
    return acct_info.dup_pages;
}

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uint64_t skipped_mig_bytes_transferred(void)
{
    return acct_info.skipped_pages * TARGET_PAGE_SIZE;
}

uint64_t skipped_mig_pages_transferred(void)
{
    return acct_info.skipped_pages;
}

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uint64_t norm_mig_bytes_transferred(void)
{
    return acct_info.norm_pages * TARGET_PAGE_SIZE;
}

uint64_t norm_mig_pages_transferred(void)
{
    return acct_info.norm_pages;
}

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uint64_t xbzrle_mig_bytes_transferred(void)
{
    return acct_info.xbzrle_bytes;
}

uint64_t xbzrle_mig_pages_transferred(void)
{
    return acct_info.xbzrle_pages;
}

uint64_t xbzrle_mig_pages_cache_miss(void)
{
    return acct_info.xbzrle_cache_miss;
}

uint64_t xbzrle_mig_pages_overflow(void)
{
    return acct_info.xbzrle_overflows;
}

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static size_t save_block_hdr(QEMUFile *f, RAMBlock *block, ram_addr_t offset,
                             int cont, int flag)
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{
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    size_t size;

    qemu_put_be64(f, offset | cont | flag);
    size = 8;
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    if (!cont) {
        qemu_put_byte(f, strlen(block->idstr));
        qemu_put_buffer(f, (uint8_t *)block->idstr,
                        strlen(block->idstr));
        size += 1 + strlen(block->idstr);
    }
    return size;
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}

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#define ENCODING_FLAG_XBZRLE 0x1

static int save_xbzrle_page(QEMUFile *f, uint8_t *current_data,
                            ram_addr_t current_addr, RAMBlock *block,
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                            ram_addr_t offset, int cont, bool last_stage)
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{
    int encoded_len = 0, bytes_sent = -1;
    uint8_t *prev_cached_page;

    if (!cache_is_cached(XBZRLE.cache, current_addr)) {
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        if (!last_stage) {
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            cache_insert(XBZRLE.cache, current_addr, current_data);
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        }
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        acct_info.xbzrle_cache_miss++;
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        return -1;
    }

    prev_cached_page = get_cached_data(XBZRLE.cache, current_addr);

    /* save current buffer into memory */
    memcpy(XBZRLE.current_buf, current_data, TARGET_PAGE_SIZE);

    /* XBZRLE encoding (if there is no overflow) */
    encoded_len = xbzrle_encode_buffer(prev_cached_page, XBZRLE.current_buf,
                                       TARGET_PAGE_SIZE, XBZRLE.encoded_buf,
                                       TARGET_PAGE_SIZE);
    if (encoded_len == 0) {
        DPRINTF("Skipping unmodified page\n");
        return 0;
    } else if (encoded_len == -1) {
        DPRINTF("Overflow\n");
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        acct_info.xbzrle_overflows++;
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        /* update data in the cache */
        memcpy(prev_cached_page, current_data, TARGET_PAGE_SIZE);
        return -1;
    }

    /* we need to update the data in the cache, in order to get the same data */
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    if (!last_stage) {
        memcpy(prev_cached_page, XBZRLE.current_buf, TARGET_PAGE_SIZE);
    }
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    /* Send XBZRLE based compressed page */
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    bytes_sent = save_block_hdr(f, block, offset, cont, RAM_SAVE_FLAG_XBZRLE);
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    qemu_put_byte(f, ENCODING_FLAG_XBZRLE);
    qemu_put_be16(f, encoded_len);
    qemu_put_buffer(f, XBZRLE.encoded_buf, encoded_len);
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    bytes_sent += encoded_len + 1 + 2;
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    acct_info.xbzrle_pages++;
    acct_info.xbzrle_bytes += bytes_sent;
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    return bytes_sent;
}

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/* This is the last block that we have visited serching for dirty pages
 */
static RAMBlock *last_seen_block;
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/* This is the last block from where we have sent data */
static RAMBlock *last_sent_block;
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static ram_addr_t last_offset;
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static unsigned long *migration_bitmap;
static uint64_t migration_dirty_pages;
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static uint32_t last_version;
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static bool ram_bulk_stage;
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static inline
ram_addr_t migration_bitmap_find_and_reset_dirty(MemoryRegion *mr,
                                                 ram_addr_t start)
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{
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    unsigned long base = mr->ram_addr >> TARGET_PAGE_BITS;
    unsigned long nr = base + (start >> TARGET_PAGE_BITS);
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    uint64_t mr_size = TARGET_PAGE_ALIGN(memory_region_size(mr));
    unsigned long size = base + (mr_size >> TARGET_PAGE_BITS);
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    unsigned long next;

    if (ram_bulk_stage && nr > base) {
        next = nr + 1;
    } else {
        next = find_next_bit(migration_bitmap, size, nr);
    }
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    if (next < size) {
        clear_bit(next, migration_bitmap);
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        migration_dirty_pages--;
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    }
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    return (next - base) << TARGET_PAGE_BITS;
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}

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static inline bool migration_bitmap_set_dirty(ram_addr_t addr)
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{
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    bool ret;
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    int nr = addr >> TARGET_PAGE_BITS;
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    ret = test_and_set_bit(nr, migration_bitmap);

    if (!ret) {
        migration_dirty_pages++;
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    }
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    return ret;
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}

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static void migration_bitmap_sync_range(ram_addr_t start, ram_addr_t length)
{
    ram_addr_t addr;
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    unsigned long page = BIT_WORD(start >> TARGET_PAGE_BITS);

    /* start address is aligned at the start of a word? */
    if (((page * BITS_PER_LONG) << TARGET_PAGE_BITS) == start) {
        int k;
        int nr = BITS_TO_LONGS(length >> TARGET_PAGE_BITS);
        unsigned long *src = ram_list.dirty_memory[DIRTY_MEMORY_MIGRATION];

        for (k = page; k < page + nr; k++) {
            if (src[k]) {
                unsigned long new_dirty;
                new_dirty = ~migration_bitmap[k];
                migration_bitmap[k] |= src[k];
                new_dirty &= src[k];
                migration_dirty_pages += ctpopl(new_dirty);
                src[k] = 0;
            }
        }
    } else {
        for (addr = 0; addr < length; addr += TARGET_PAGE_SIZE) {
            if (cpu_physical_memory_get_dirty(start + addr,
                                              TARGET_PAGE_SIZE,
                                              DIRTY_MEMORY_MIGRATION)) {
                cpu_physical_memory_reset_dirty(start + addr,
                                                TARGET_PAGE_SIZE,
                                                DIRTY_MEMORY_MIGRATION);
                migration_bitmap_set_dirty(start + addr);
            }
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        }
    }
}


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/* Needs iothread lock! */

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static void migration_bitmap_sync(void)
{
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    RAMBlock *block;
    uint64_t num_dirty_pages_init = migration_dirty_pages;
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    MigrationState *s = migrate_get_current();
    static int64_t start_time;
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    static int64_t bytes_xfer_prev;
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    static int64_t num_dirty_pages_period;
    int64_t end_time;
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    int64_t bytes_xfer_now;

    if (!bytes_xfer_prev) {
        bytes_xfer_prev = ram_bytes_transferred();
    }
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    if (!start_time) {
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        start_time = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
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    }
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    trace_migration_bitmap_sync_start();
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    address_space_sync_dirty_bitmap(&address_space_memory);
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    QTAILQ_FOREACH(block, &ram_list.blocks, next) {
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        migration_bitmap_sync_range(block->mr->ram_addr, block->length);
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    }
    trace_migration_bitmap_sync_end(migration_dirty_pages
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                                    - num_dirty_pages_init);
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    num_dirty_pages_period += migration_dirty_pages - num_dirty_pages_init;
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    end_time = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
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    /* more than 1 second = 1000 millisecons */
    if (end_time > start_time + 1000) {
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        if (migrate_auto_converge()) {
            /* The following detection logic can be refined later. For now:
               Check to see if the dirtied bytes is 50% more than the approx.
               amount of bytes that just got transferred since the last time we
               were in this routine. If that happens >N times (for now N==4)
               we turn on the throttle down logic */
            bytes_xfer_now = ram_bytes_transferred();
            if (s->dirty_pages_rate &&
               (num_dirty_pages_period * TARGET_PAGE_SIZE >
                   (bytes_xfer_now - bytes_xfer_prev)/2) &&
               (dirty_rate_high_cnt++ > 4)) {
                    trace_migration_throttle();
                    mig_throttle_on = true;
                    dirty_rate_high_cnt = 0;
             }
             bytes_xfer_prev = bytes_xfer_now;
        } else {
             mig_throttle_on = false;
        }
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        s->dirty_pages_rate = num_dirty_pages_period * 1000
            / (end_time - start_time);
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        s->dirty_bytes_rate = s->dirty_pages_rate * TARGET_PAGE_SIZE;
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        start_time = end_time;
        num_dirty_pages_period = 0;
    }
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}

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/*
 * ram_save_block: Writes a page of memory to the stream f
 *
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 * Returns:  The number of bytes written.
 *           0 means no dirty pages
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 */

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static int ram_save_block(QEMUFile *f, bool last_stage)
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{
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    RAMBlock *block = last_seen_block;
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    ram_addr_t offset = last_offset;
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    bool complete_round = false;
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    int bytes_sent = 0;
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    MemoryRegion *mr;
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    ram_addr_t current_addr;
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    if (!block)
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        block = QTAILQ_FIRST(&ram_list.blocks);
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    while (true) {
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        mr = block->mr;
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        offset = migration_bitmap_find_and_reset_dirty(mr, offset);
        if (complete_round && block == last_seen_block &&
            offset >= last_offset) {
            break;
        }
        if (offset >= block->length) {
            offset = 0;
            block = QTAILQ_NEXT(block, next);
            if (!block) {
                block = QTAILQ_FIRST(&ram_list.blocks);
                complete_round = true;
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                ram_bulk_stage = false;
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            }
        } else {
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            int ret;
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            uint8_t *p;
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            int cont = (block == last_sent_block) ?
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                RAM_SAVE_FLAG_CONTINUE : 0;
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            p = memory_region_get_ram_ptr(mr) + offset;
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            /* In doubt sent page as normal */
            bytes_sent = -1;
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            ret = ram_control_save_page(f, block->offset,
                               offset, TARGET_PAGE_SIZE, &bytes_sent);

            if (ret != RAM_SAVE_CONTROL_NOT_SUPP) {
                if (ret != RAM_SAVE_CONTROL_DELAYED) {
                    if (bytes_sent > 0) {
                        acct_info.norm_pages++;
                    } else if (bytes_sent == 0) {
                        acct_info.dup_pages++;
                    }
                }
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            } else if (is_zero_range(p, TARGET_PAGE_SIZE)) {
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                acct_info.dup_pages++;
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                bytes_sent = save_block_hdr(f, block, offset, cont,
                                            RAM_SAVE_FLAG_COMPRESS);
                qemu_put_byte(f, 0);
                bytes_sent++;
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            } else if (!ram_bulk_stage && migrate_use_xbzrle()) {
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                current_addr = block->offset + offset;
                bytes_sent = save_xbzrle_page(f, p, current_addr, block,
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                                              offset, cont, last_stage);
                if (!last_stage) {
                    p = get_cached_data(XBZRLE.cache, current_addr);
                }
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            }

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            /* XBZRLE overflow or normal page */
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            if (bytes_sent == -1) {
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                bytes_sent = save_block_hdr(f, block, offset, cont, RAM_SAVE_FLAG_PAGE);
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                qemu_put_buffer_async(f, p, TARGET_PAGE_SIZE);
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                bytes_sent += TARGET_PAGE_SIZE;
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                acct_info.norm_pages++;
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            }

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            /* if page is unmodified, continue to the next */
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            if (bytes_sent > 0) {
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                last_sent_block = block;
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                break;
            }
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        }
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    }
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    last_seen_block = block;
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    last_offset = offset;
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    return bytes_sent;
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}

static uint64_t bytes_transferred;

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void acct_update_position(QEMUFile *f, size_t size, bool zero)
{
    uint64_t pages = size / TARGET_PAGE_SIZE;
    if (zero) {
        acct_info.dup_pages += pages;
    } else {
        acct_info.norm_pages += pages;
        bytes_transferred += size;
        qemu_update_position(f, size);
    }
}

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static ram_addr_t ram_save_remaining(void)
{
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    return migration_dirty_pages;
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}

uint64_t ram_bytes_remaining(void)
{
    return ram_save_remaining() * TARGET_PAGE_SIZE;
}

uint64_t ram_bytes_transferred(void)
{
    return bytes_transferred;
}

uint64_t ram_bytes_total(void)
{
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    RAMBlock *block;
    uint64_t total = 0;

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    QTAILQ_FOREACH(block, &ram_list.blocks, next)
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        total += block->length;

    return total;
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}

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static void migration_end(void)
{
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    if (migration_bitmap) {
        memory_global_dirty_log_stop();
        g_free(migration_bitmap);
        migration_bitmap = NULL;
    }
612

613
    if (XBZRLE.cache) {
614 615 616 617 618 619
        cache_fini(XBZRLE.cache);
        g_free(XBZRLE.cache);
        g_free(XBZRLE.encoded_buf);
        g_free(XBZRLE.current_buf);
        g_free(XBZRLE.decoded_buf);
        XBZRLE.cache = NULL;
620 621 622
        XBZRLE.encoded_buf = NULL;
        XBZRLE.current_buf = NULL;
        XBZRLE.decoded_buf = NULL;
623
    }
O
Orit Wasserman 已提交
624 625
}

626 627 628 629 630
static void ram_migration_cancel(void *opaque)
{
    migration_end();
}

631 632
static void reset_ram_globals(void)
{
633
    last_seen_block = NULL;
J
Juan Quintela 已提交
634
    last_sent_block = NULL;
635
    last_offset = 0;
U
Umesh Deshpande 已提交
636
    last_version = ram_list.version;
637
    ram_bulk_stage = true;
638 639
}

640 641
#define MAX_WAIT 50 /* ms, half buffered_file limit */

642
static int ram_save_setup(QEMUFile *f, void *opaque)
643
{
644
    RAMBlock *block;
J
Juan Quintela 已提交
645 646 647
    int64_t ram_pages = last_ram_offset() >> TARGET_PAGE_BITS;

    migration_bitmap = bitmap_new(ram_pages);
648
    bitmap_set(migration_bitmap, 0, ram_pages);
J
Juan Quintela 已提交
649
    migration_dirty_pages = ram_pages;
650 651
    mig_throttle_on = false;
    dirty_rate_high_cnt = 0;
652

653 654 655 656 657 658 659 660 661 662
    if (migrate_use_xbzrle()) {
        XBZRLE.cache = cache_init(migrate_xbzrle_cache_size() /
                                  TARGET_PAGE_SIZE,
                                  TARGET_PAGE_SIZE);
        if (!XBZRLE.cache) {
            DPRINTF("Error creating cache\n");
            return -1;
        }
        XBZRLE.encoded_buf = g_malloc0(TARGET_PAGE_SIZE);
        XBZRLE.current_buf = g_malloc(TARGET_PAGE_SIZE);
663
        acct_clear();
664 665
    }

666 667 668 669 670
    qemu_mutex_lock_iothread();
    qemu_mutex_lock_ramlist();
    bytes_transferred = 0;
    reset_ram_globals();

671
    memory_global_dirty_log_start();
J
Juan Quintela 已提交
672
    migration_bitmap_sync();
673
    qemu_mutex_unlock_iothread();
674

675
    qemu_put_be64(f, ram_bytes_total() | RAM_SAVE_FLAG_MEM_SIZE);
676

P
Paolo Bonzini 已提交
677
    QTAILQ_FOREACH(block, &ram_list.blocks, next) {
678 679 680
        qemu_put_byte(f, strlen(block->idstr));
        qemu_put_buffer(f, (uint8_t *)block->idstr, strlen(block->idstr));
        qemu_put_be64(f, block->length);
681 682
    }

683
    qemu_mutex_unlock_ramlist();
M
Michael R. Hines 已提交
684 685 686 687

    ram_control_before_iterate(f, RAM_CONTROL_SETUP);
    ram_control_after_iterate(f, RAM_CONTROL_SETUP);

688 689 690 691 692
    qemu_put_be64(f, RAM_SAVE_FLAG_EOS);

    return 0;
}

693
static int ram_save_iterate(QEMUFile *f, void *opaque)
694 695 696
{
    int ret;
    int i;
697
    int64_t t0;
698
    int total_sent = 0;
699

700 701
    qemu_mutex_lock_ramlist();

U
Umesh Deshpande 已提交
702 703 704 705
    if (ram_list.version != last_version) {
        reset_ram_globals();
    }

M
Michael R. Hines 已提交
706 707
    ram_control_before_iterate(f, RAM_CONTROL_ROUND);

708
    t0 = qemu_clock_get_ns(QEMU_CLOCK_REALTIME);
709
    i = 0;
710
    while ((ret = qemu_file_rate_limit(f)) == 0) {
711
        int bytes_sent;
712

713
        bytes_sent = ram_save_block(f, false);
714
        /* no more blocks to sent */
715
        if (bytes_sent == 0) {
716 717
            break;
        }
718
        total_sent += bytes_sent;
719
        acct_info.iterations++;
720
        check_guest_throttling();
721 722 723 724 725 726
        /* we want to check in the 1st loop, just in case it was the 1st time
           and we had to sync the dirty bitmap.
           qemu_get_clock_ns() is a bit expensive, so we only check each some
           iterations
        */
        if ((i & 63) == 0) {
727
            uint64_t t1 = (qemu_clock_get_ns(QEMU_CLOCK_REALTIME) - t0) / 1000000;
728
            if (t1 > MAX_WAIT) {
729
                DPRINTF("big wait: %" PRIu64 " milliseconds, %d iterations\n",
730 731 732 733 734
                        t1, i);
                break;
            }
        }
        i++;
735 736
    }

737 738
    qemu_mutex_unlock_ramlist();

M
Michael R. Hines 已提交
739 740 741 742 743 744
    /*
     * Must occur before EOS (or any QEMUFile operation)
     * because of RDMA protocol.
     */
    ram_control_after_iterate(f, RAM_CONTROL_ROUND);

745 746 747 748 749 750 751 752 753 754
    bytes_transferred += total_sent;

    /*
     * Do not count these 8 bytes into total_sent, so that we can
     * return 0 if no page had been dirtied.
     */
    qemu_put_be64(f, RAM_SAVE_FLAG_EOS);
    bytes_transferred += 8;

    ret = qemu_file_get_error(f);
755 756 757 758
    if (ret < 0) {
        return ret;
    }

759
    return total_sent;
760 761 762 763
}

static int ram_save_complete(QEMUFile *f, void *opaque)
{
764
    qemu_mutex_lock_ramlist();
765
    migration_bitmap_sync();
766

M
Michael R. Hines 已提交
767 768
    ram_control_before_iterate(f, RAM_CONTROL_FINISH);

769
    /* try transferring iterative blocks of memory */
O
Orit Wasserman 已提交
770

771
    /* flush all remaining blocks regardless of rate limiting */
772
    while (true) {
773 774
        int bytes_sent;

775
        bytes_sent = ram_save_block(f, true);
776
        /* no more blocks to sent */
777
        if (bytes_sent == 0) {
778
            break;
779
        }
780
        bytes_transferred += bytes_sent;
781
    }
M
Michael R. Hines 已提交
782 783

    ram_control_after_iterate(f, RAM_CONTROL_FINISH);
784
    migration_end();
785

786
    qemu_mutex_unlock_ramlist();
787 788
    qemu_put_be64(f, RAM_SAVE_FLAG_EOS);

789
    return 0;
790 791
}

792 793 794 795 796 797 798
static uint64_t ram_save_pending(QEMUFile *f, void *opaque, uint64_t max_size)
{
    uint64_t remaining_size;

    remaining_size = ram_save_remaining() * TARGET_PAGE_SIZE;

    if (remaining_size < max_size) {
799
        qemu_mutex_lock_iothread();
800
        migration_bitmap_sync();
801
        qemu_mutex_unlock_iothread();
802 803 804 805 806
        remaining_size = ram_save_remaining() * TARGET_PAGE_SIZE;
    }
    return remaining_size;
}

807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847
static int load_xbzrle(QEMUFile *f, ram_addr_t addr, void *host)
{
    int ret, rc = 0;
    unsigned int xh_len;
    int xh_flags;

    if (!XBZRLE.decoded_buf) {
        XBZRLE.decoded_buf = g_malloc(TARGET_PAGE_SIZE);
    }

    /* extract RLE header */
    xh_flags = qemu_get_byte(f);
    xh_len = qemu_get_be16(f);

    if (xh_flags != ENCODING_FLAG_XBZRLE) {
        fprintf(stderr, "Failed to load XBZRLE page - wrong compression!\n");
        return -1;
    }

    if (xh_len > TARGET_PAGE_SIZE) {
        fprintf(stderr, "Failed to load XBZRLE page - len overflow!\n");
        return -1;
    }
    /* load data and decode */
    qemu_get_buffer(f, XBZRLE.decoded_buf, xh_len);

    /* decode RLE */
    ret = xbzrle_decode_buffer(XBZRLE.decoded_buf, xh_len, host,
                               TARGET_PAGE_SIZE);
    if (ret == -1) {
        fprintf(stderr, "Failed to load XBZRLE page - decode error!\n");
        rc = -1;
    } else  if (ret > TARGET_PAGE_SIZE) {
        fprintf(stderr, "Failed to load XBZRLE page - size %d exceeds %d!\n",
                ret, TARGET_PAGE_SIZE);
        abort();
    }

    return rc;
}

848 849 850 851 852 853 854 855 856 857 858 859 860 861
static inline void *host_from_stream_offset(QEMUFile *f,
                                            ram_addr_t offset,
                                            int flags)
{
    static RAMBlock *block = NULL;
    char id[256];
    uint8_t len;

    if (flags & RAM_SAVE_FLAG_CONTINUE) {
        if (!block) {
            fprintf(stderr, "Ack, bad migration stream!\n");
            return NULL;
        }

862
        return memory_region_get_ram_ptr(block->mr) + offset;
863 864 865 866 867 868
    }

    len = qemu_get_byte(f);
    qemu_get_buffer(f, (uint8_t *)id, len);
    id[len] = 0;

P
Paolo Bonzini 已提交
869
    QTAILQ_FOREACH(block, &ram_list.blocks, next) {
870
        if (!strncmp(id, block->idstr, sizeof(id)))
871
            return memory_region_get_ram_ptr(block->mr) + offset;
872 873 874 875 876 877
    }

    fprintf(stderr, "Can't find block %s!\n", id);
    return NULL;
}

878 879 880 881 882 883
/*
 * If a page (or a whole RDMA chunk) has been
 * determined to be zero, then zap it.
 */
void ram_handle_compressed(void *host, uint8_t ch, uint64_t size)
{
884
    if (ch != 0 || !is_zero_range(host, size)) {
885 886 887 888
        memset(host, ch, size);
    }
}

889
static int ram_load(QEMUFile *f, void *opaque, int version_id)
890 891
{
    ram_addr_t addr;
O
Orit Wasserman 已提交
892
    int flags, ret = 0;
893
    int error;
O
Orit Wasserman 已提交
894 895 896
    static uint64_t seq_iter;

    seq_iter++;
897

898
    if (version_id < 4 || version_id > 4) {
899 900 901 902 903 904 905 906 907 908
        return -EINVAL;
    }

    do {
        addr = qemu_get_be64(f);

        flags = addr & ~TARGET_PAGE_MASK;
        addr &= TARGET_PAGE_MASK;

        if (flags & RAM_SAVE_FLAG_MEM_SIZE) {
909
            if (version_id == 4) {
910 911 912 913 914 915 916 917 918 919 920 921 922 923
                /* Synchronize RAM block list */
                char id[256];
                ram_addr_t length;
                ram_addr_t total_ram_bytes = addr;

                while (total_ram_bytes) {
                    RAMBlock *block;
                    uint8_t len;

                    len = qemu_get_byte(f);
                    qemu_get_buffer(f, (uint8_t *)id, len);
                    id[len] = 0;
                    length = qemu_get_be64(f);

P
Paolo Bonzini 已提交
924
                    QTAILQ_FOREACH(block, &ram_list.blocks, next) {
925
                        if (!strncmp(id, block->idstr, sizeof(id))) {
O
Orit Wasserman 已提交
926
                            if (block->length != length) {
927 928 929
                                fprintf(stderr,
                                        "Length mismatch: %s: " RAM_ADDR_FMT
                                        " in != " RAM_ADDR_FMT "\n", id, length,
930
                                        block->length);
O
Orit Wasserman 已提交
931 932 933
                                ret =  -EINVAL;
                                goto done;
                            }
934 935 936 937 938
                            break;
                        }
                    }

                    if (!block) {
939 940
                        fprintf(stderr, "Unknown ramblock \"%s\", cannot "
                                "accept migration\n", id);
O
Orit Wasserman 已提交
941 942
                        ret = -EINVAL;
                        goto done;
943 944 945 946
                    }

                    total_ram_bytes -= length;
                }
947 948 949 950
            }
        }

        if (flags & RAM_SAVE_FLAG_COMPRESS) {
951 952 953
            void *host;
            uint8_t ch;

954
            host = host_from_stream_offset(f, addr, flags);
955 956 957
            if (!host) {
                return -EINVAL;
            }
958 959

            ch = qemu_get_byte(f);
960
            ram_handle_compressed(host, ch, TARGET_PAGE_SIZE);
961
        } else if (flags & RAM_SAVE_FLAG_PAGE) {
962 963
            void *host;

964
            host = host_from_stream_offset(f, addr, flags);
965 966 967
            if (!host) {
                return -EINVAL;
            }
968 969

            qemu_get_buffer(f, host, TARGET_PAGE_SIZE);
970 971 972 973 974 975 976 977 978 979
        } else if (flags & RAM_SAVE_FLAG_XBZRLE) {
            void *host = host_from_stream_offset(f, addr, flags);
            if (!host) {
                return -EINVAL;
            }

            if (load_xbzrle(f, addr, host) < 0) {
                ret = -EINVAL;
                goto done;
            }
M
Michael R. Hines 已提交
980 981
        } else if (flags & RAM_SAVE_FLAG_HOOK) {
            ram_control_load_hook(f, flags);
982
        }
983 984
        error = qemu_file_get_error(f);
        if (error) {
O
Orit Wasserman 已提交
985 986
            ret = error;
            goto done;
987 988 989
        }
    } while (!(flags & RAM_SAVE_FLAG_EOS));

O
Orit Wasserman 已提交
990
done:
991 992
    DPRINTF("Completed load of VM with exit code %d seq iteration "
            "%" PRIu64 "\n", ret, seq_iter);
O
Orit Wasserman 已提交
993
    return ret;
994 995
}

996
SaveVMHandlers savevm_ram_handlers = {
997
    .save_live_setup = ram_save_setup,
998 999
    .save_live_iterate = ram_save_iterate,
    .save_live_complete = ram_save_complete,
1000
    .save_live_pending = ram_save_pending,
1001
    .load_state = ram_load,
1002
    .cancel = ram_migration_cancel,
1003 1004
};

I
Isaku Yamahata 已提交
1005 1006 1007 1008 1009 1010
struct soundhw {
    const char *name;
    const char *descr;
    int enabled;
    int isa;
    union {
1011
        int (*init_isa) (ISABus *bus);
I
Isaku Yamahata 已提交
1012 1013 1014 1015
        int (*init_pci) (PCIBus *bus);
    } init;
};

1016 1017
static struct soundhw soundhw[9];
static int soundhw_count;
1018

1019 1020 1021 1022 1023 1024 1025 1026 1027 1028
void isa_register_soundhw(const char *name, const char *descr,
                          int (*init_isa)(ISABus *bus))
{
    assert(soundhw_count < ARRAY_SIZE(soundhw) - 1);
    soundhw[soundhw_count].name = name;
    soundhw[soundhw_count].descr = descr;
    soundhw[soundhw_count].isa = 1;
    soundhw[soundhw_count].init.init_isa = init_isa;
    soundhw_count++;
}
1029

1030 1031 1032 1033 1034 1035 1036 1037 1038 1039
void pci_register_soundhw(const char *name, const char *descr,
                          int (*init_pci)(PCIBus *bus))
{
    assert(soundhw_count < ARRAY_SIZE(soundhw) - 1);
    soundhw[soundhw_count].name = name;
    soundhw[soundhw_count].descr = descr;
    soundhw[soundhw_count].isa = 0;
    soundhw[soundhw_count].init.init_pci = init_pci;
    soundhw_count++;
}
1040 1041 1042 1043 1044

void select_soundhw(const char *optarg)
{
    struct soundhw *c;

1045
    if (is_help_option(optarg)) {
1046 1047
    show_valid_cards:

1048 1049 1050 1051 1052 1053 1054 1055 1056
        if (soundhw_count) {
             printf("Valid sound card names (comma separated):\n");
             for (c = soundhw; c->name; ++c) {
                 printf ("%-11s %s\n", c->name, c->descr);
             }
             printf("\n-soundhw all will enable all of the above\n");
        } else {
             printf("Machine has no user-selectable audio hardware "
                    "(it may or may not have always-present audio hardware).\n");
1057
        }
1058
        exit(!is_help_option(optarg));
1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103
    }
    else {
        size_t l;
        const char *p;
        char *e;
        int bad_card = 0;

        if (!strcmp(optarg, "all")) {
            for (c = soundhw; c->name; ++c) {
                c->enabled = 1;
            }
            return;
        }

        p = optarg;
        while (*p) {
            e = strchr(p, ',');
            l = !e ? strlen(p) : (size_t) (e - p);

            for (c = soundhw; c->name; ++c) {
                if (!strncmp(c->name, p, l) && !c->name[l]) {
                    c->enabled = 1;
                    break;
                }
            }

            if (!c->name) {
                if (l > 80) {
                    fprintf(stderr,
                            "Unknown sound card name (too big to show)\n");
                }
                else {
                    fprintf(stderr, "Unknown sound card name `%.*s'\n",
                            (int) l, p);
                }
                bad_card = 1;
            }
            p += l + (e != NULL);
        }

        if (bad_card) {
            goto show_valid_cards;
        }
    }
}
I
Isaku Yamahata 已提交
1104

1105
void audio_init(void)
I
Isaku Yamahata 已提交
1106 1107
{
    struct soundhw *c;
1108 1109
    ISABus *isa_bus = (ISABus *) object_resolve_path_type("", TYPE_ISA_BUS, NULL);
    PCIBus *pci_bus = (PCIBus *) object_resolve_path_type("", TYPE_PCI_BUS, NULL);
I
Isaku Yamahata 已提交
1110 1111 1112 1113

    for (c = soundhw; c->name; ++c) {
        if (c->enabled) {
            if (c->isa) {
1114 1115 1116
                if (!isa_bus) {
                    fprintf(stderr, "ISA bus not available for %s\n", c->name);
                    exit(1);
I
Isaku Yamahata 已提交
1117
                }
1118
                c->init.init_isa(isa_bus);
I
Isaku Yamahata 已提交
1119
            } else {
1120 1121 1122
                if (!pci_bus) {
                    fprintf(stderr, "PCI bus not available for %s\n", c->name);
                    exit(1);
I
Isaku Yamahata 已提交
1123
                }
1124
                c->init.init_pci(pci_bus);
I
Isaku Yamahata 已提交
1125 1126 1127 1128
            }
        }
    }
}
1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148

int qemu_uuid_parse(const char *str, uint8_t *uuid)
{
    int ret;

    if (strlen(str) != 36) {
        return -1;
    }

    ret = sscanf(str, UUID_FMT, &uuid[0], &uuid[1], &uuid[2], &uuid[3],
                 &uuid[4], &uuid[5], &uuid[6], &uuid[7], &uuid[8], &uuid[9],
                 &uuid[10], &uuid[11], &uuid[12], &uuid[13], &uuid[14],
                 &uuid[15]);

    if (ret != 16) {
        return -1;
    }
    return 0;
}

1149
void do_acpitable_option(const QemuOpts *opts)
1150 1151
{
#ifdef TARGET_I386
1152 1153 1154 1155
    Error *err = NULL;

    acpi_table_add(opts, &err);
    if (err) {
1156 1157
        error_report("Wrong acpi table provided: %s",
                     error_get_pretty(err));
1158
        error_free(err);
1159 1160 1161 1162 1163
        exit(1);
    }
#endif
}

M
Markus Armbruster 已提交
1164
void do_smbios_option(QemuOpts *opts)
1165 1166
{
#ifdef TARGET_I386
M
Markus Armbruster 已提交
1167
    smbios_entry_add(opts);
1168 1169 1170 1171 1172 1173 1174 1175 1176 1177
#endif
}

void cpudef_init(void)
{
#if defined(cpudef_setup)
    cpudef_setup(); /* parse cpu definitions in target config file */
#endif
}

1178 1179 1180 1181 1182
int tcg_available(void)
{
    return 1;
}

1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199
int kvm_available(void)
{
#ifdef CONFIG_KVM
    return 1;
#else
    return 0;
#endif
}

int xen_available(void)
{
#ifdef CONFIG_XEN
    return 1;
#else
    return 0;
#endif
}
1200 1201 1202 1203 1204 1205


TargetInfo *qmp_query_target(Error **errp)
{
    TargetInfo *info = g_malloc0(sizeof(*info));

P
Paolo Bonzini 已提交
1206
    info->arch = g_strdup(TARGET_NAME);
1207 1208 1209

    return info;
}
1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225

/* Stub function that's gets run on the vcpu when its brought out of the
   VM to run inside qemu via async_run_on_cpu()*/
static void mig_sleep_cpu(void *opq)
{
    qemu_mutex_unlock_iothread();
    g_usleep(30*1000);
    qemu_mutex_lock_iothread();
}

/* To reduce the dirty rate explicitly disallow the VCPUs from spending
   much time in the VM. The migration thread will try to catchup.
   Workload will experience a performance drop.
*/
static void mig_throttle_guest_down(void)
{
1226 1227
    CPUState *cpu;

1228
    qemu_mutex_lock_iothread();
1229 1230 1231
    CPU_FOREACH(cpu) {
        async_run_on_cpu(cpu, mig_sleep_cpu, NULL);
    }
1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244
    qemu_mutex_unlock_iothread();
}

static void check_guest_throttling(void)
{
    static int64_t t0;
    int64_t        t1;

    if (!mig_throttle_on) {
        return;
    }

    if (!t0)  {
1245
        t0 = qemu_clock_get_ns(QEMU_CLOCK_REALTIME);
1246 1247 1248
        return;
    }

1249
    t1 = qemu_clock_get_ns(QEMU_CLOCK_REALTIME);
1250 1251 1252 1253 1254 1255 1256 1257 1258

    /* If it has been more than 40 ms since the last time the guest
     * was throttled then do it again.
     */
    if (40 < (t1-t0)/1000000) {
        mig_throttle_guest_down();
        t0 = t1;
    }
}