io.c 74.2 KB
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/*
 * Block layer I/O functions
 *
 * Copyright (c) 2003 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.
 */

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#include "qemu/osdep.h"
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#include "trace.h"
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#include "sysemu/block-backend.h"
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#include "block/blockjob.h"
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#include "block/blockjob_int.h"
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#include "block/block_int.h"
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#include "qemu/cutils.h"
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#include "qapi/error.h"
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#include "qemu/error-report.h"
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#define NOT_DONE 0x7fffffff /* used while emulated sync operation in progress */

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static int coroutine_fn bdrv_co_do_pwrite_zeroes(BlockDriverState *bs,
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    int64_t offset, int bytes, BdrvRequestFlags flags);
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void bdrv_parent_drained_begin(BlockDriverState *bs)
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{
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    BdrvChild *c;
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    QLIST_FOREACH(c, &bs->parents, next_parent) {
        if (c->role->drained_begin) {
            c->role->drained_begin(c);
        }
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    }
}
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void bdrv_parent_drained_end(BlockDriverState *bs)
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{
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    BdrvChild *c;
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    QLIST_FOREACH(c, &bs->parents, next_parent) {
        if (c->role->drained_end) {
            c->role->drained_end(c);
        }
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    }
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}

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static void bdrv_merge_limits(BlockLimits *dst, const BlockLimits *src)
{
    dst->opt_transfer = MAX(dst->opt_transfer, src->opt_transfer);
    dst->max_transfer = MIN_NON_ZERO(dst->max_transfer, src->max_transfer);
    dst->opt_mem_alignment = MAX(dst->opt_mem_alignment,
                                 src->opt_mem_alignment);
    dst->min_mem_alignment = MAX(dst->min_mem_alignment,
                                 src->min_mem_alignment);
    dst->max_iov = MIN_NON_ZERO(dst->max_iov, src->max_iov);
}

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void bdrv_refresh_limits(BlockDriverState *bs, Error **errp)
{
    BlockDriver *drv = bs->drv;
    Error *local_err = NULL;

    memset(&bs->bl, 0, sizeof(bs->bl));

    if (!drv) {
        return;
    }

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    /* Default alignment based on whether driver has byte interface */
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    bs->bl.request_alignment = drv->bdrv_co_preadv ? 1 : 512;
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    /* Take some limits from the children as a default */
    if (bs->file) {
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        bdrv_refresh_limits(bs->file->bs, &local_err);
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        if (local_err) {
            error_propagate(errp, local_err);
            return;
        }
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        bdrv_merge_limits(&bs->bl, &bs->file->bs->bl);
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    } else {
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        bs->bl.min_mem_alignment = 512;
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        bs->bl.opt_mem_alignment = getpagesize();
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        /* Safe default since most protocols use readv()/writev()/etc */
        bs->bl.max_iov = IOV_MAX;
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    }

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    if (bs->backing) {
        bdrv_refresh_limits(bs->backing->bs, &local_err);
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        if (local_err) {
            error_propagate(errp, local_err);
            return;
        }
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        bdrv_merge_limits(&bs->bl, &bs->backing->bs->bl);
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    }

    /* Then let the driver override it */
    if (drv->bdrv_refresh_limits) {
        drv->bdrv_refresh_limits(bs, errp);
    }
}

/**
 * The copy-on-read flag is actually a reference count so multiple users may
 * use the feature without worrying about clobbering its previous state.
 * Copy-on-read stays enabled until all users have called to disable it.
 */
void bdrv_enable_copy_on_read(BlockDriverState *bs)
{
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    atomic_inc(&bs->copy_on_read);
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}

void bdrv_disable_copy_on_read(BlockDriverState *bs)
{
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    int old = atomic_fetch_dec(&bs->copy_on_read);
    assert(old >= 1);
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}

/* Check if any requests are in-flight (including throttled requests) */
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bool bdrv_requests_pending(BlockDriverState *bs)
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{
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    BdrvChild *child;

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    if (atomic_read(&bs->in_flight)) {
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        return true;
    }
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    QLIST_FOREACH(child, &bs->children, next) {
        if (bdrv_requests_pending(child->bs)) {
            return true;
        }
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    }
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    return false;
}

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static bool bdrv_drain_recurse(BlockDriverState *bs)
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{
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    BdrvChild *child, *tmp;
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    bool waited;

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    waited = BDRV_POLL_WHILE(bs, atomic_read(&bs->in_flight) > 0);
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    if (bs->drv && bs->drv->bdrv_drain) {
        bs->drv->bdrv_drain(bs);
    }
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    QLIST_FOREACH_SAFE(child, &bs->children, next, tmp) {
        BlockDriverState *bs = child->bs;
        bool in_main_loop =
            qemu_get_current_aio_context() == qemu_get_aio_context();
        assert(bs->refcnt > 0);
        if (in_main_loop) {
            /* In case the recursive bdrv_drain_recurse processes a
             * block_job_defer_to_main_loop BH and modifies the graph,
             * let's hold a reference to bs until we are done.
             *
             * IOThread doesn't have such a BH, and it is not safe to call
             * bdrv_unref without BQL, so skip doing it there.
             */
            bdrv_ref(bs);
        }
        waited |= bdrv_drain_recurse(bs);
        if (in_main_loop) {
            bdrv_unref(bs);
        }
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    }
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    return waited;
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}

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typedef struct {
    Coroutine *co;
    BlockDriverState *bs;
    bool done;
} BdrvCoDrainData;

static void bdrv_co_drain_bh_cb(void *opaque)
{
    BdrvCoDrainData *data = opaque;
    Coroutine *co = data->co;
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    BlockDriverState *bs = data->bs;
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    bdrv_dec_in_flight(bs);
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    bdrv_drained_begin(bs);
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    data->done = true;
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    aio_co_wake(co);
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}

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static void coroutine_fn bdrv_co_yield_to_drain(BlockDriverState *bs)
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{
    BdrvCoDrainData data;

    /* Calling bdrv_drain() from a BH ensures the current coroutine yields and
     * other coroutines run if they were queued from
     * qemu_co_queue_run_restart(). */

    assert(qemu_in_coroutine());
    data = (BdrvCoDrainData) {
        .co = qemu_coroutine_self(),
        .bs = bs,
        .done = false,
    };
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    bdrv_inc_in_flight(bs);
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    aio_bh_schedule_oneshot(bdrv_get_aio_context(bs),
                            bdrv_co_drain_bh_cb, &data);
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    qemu_coroutine_yield();
    /* If we are resumed from some other event (such as an aio completion or a
     * timer callback), it is a bug in the caller that should be fixed. */
    assert(data.done);
}

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void bdrv_drained_begin(BlockDriverState *bs)
{
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    if (qemu_in_coroutine()) {
        bdrv_co_yield_to_drain(bs);
        return;
    }

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    if (atomic_fetch_inc(&bs->quiesce_counter) == 0) {
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        aio_disable_external(bdrv_get_aio_context(bs));
        bdrv_parent_drained_begin(bs);
    }

    bdrv_drain_recurse(bs);
}

void bdrv_drained_end(BlockDriverState *bs)
{
    assert(bs->quiesce_counter > 0);
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    if (atomic_fetch_dec(&bs->quiesce_counter) > 1) {
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        return;
    }

    bdrv_parent_drained_end(bs);
    aio_enable_external(bdrv_get_aio_context(bs));
}

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/*
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 * Wait for pending requests to complete on a single BlockDriverState subtree,
 * and suspend block driver's internal I/O until next request arrives.
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 *
 * Note that unlike bdrv_drain_all(), the caller must hold the BlockDriverState
 * AioContext.
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 *
 * Only this BlockDriverState's AioContext is run, so in-flight requests must
 * not depend on events in other AioContexts.  In that case, use
 * bdrv_drain_all() instead.
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 */
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void coroutine_fn bdrv_co_drain(BlockDriverState *bs)
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{
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    assert(qemu_in_coroutine());
    bdrv_drained_begin(bs);
    bdrv_drained_end(bs);
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}
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void bdrv_drain(BlockDriverState *bs)
{
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    bdrv_drained_begin(bs);
    bdrv_drained_end(bs);
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}

/*
 * Wait for pending requests to complete across all BlockDriverStates
 *
 * This function does not flush data to disk, use bdrv_flush_all() for that
 * after calling this function.
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 *
 * This pauses all block jobs and disables external clients. It must
 * be paired with bdrv_drain_all_end().
 *
 * NOTE: no new block jobs or BlockDriverStates can be created between
 * the bdrv_drain_all_begin() and bdrv_drain_all_end() calls.
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 */
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void bdrv_drain_all_begin(void)
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{
    /* Always run first iteration so any pending completion BHs run */
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    bool waited = true;
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    BlockDriverState *bs;
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    BdrvNextIterator it;
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    GSList *aio_ctxs = NULL, *ctx;
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    block_job_pause_all();
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    for (bs = bdrv_first(&it); bs; bs = bdrv_next(&it)) {
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        AioContext *aio_context = bdrv_get_aio_context(bs);

        aio_context_acquire(aio_context);
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        bdrv_parent_drained_begin(bs);
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        aio_disable_external(aio_context);
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        aio_context_release(aio_context);
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        if (!g_slist_find(aio_ctxs, aio_context)) {
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            aio_ctxs = g_slist_prepend(aio_ctxs, aio_context);
        }
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    }

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    /* Note that completion of an asynchronous I/O operation can trigger any
     * number of other I/O operations on other devices---for example a
     * coroutine can submit an I/O request to another device in response to
     * request completion.  Therefore we must keep looping until there was no
     * more activity rather than simply draining each device independently.
     */
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    while (waited) {
        waited = false;
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        for (ctx = aio_ctxs; ctx != NULL; ctx = ctx->next) {
            AioContext *aio_context = ctx->data;
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            aio_context_acquire(aio_context);
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            for (bs = bdrv_first(&it); bs; bs = bdrv_next(&it)) {
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                if (aio_context == bdrv_get_aio_context(bs)) {
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                    waited |= bdrv_drain_recurse(bs);
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                }
            }
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            aio_context_release(aio_context);
        }
    }

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    g_slist_free(aio_ctxs);
}

void bdrv_drain_all_end(void)
{
    BlockDriverState *bs;
    BdrvNextIterator it;

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    for (bs = bdrv_first(&it); bs; bs = bdrv_next(&it)) {
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        AioContext *aio_context = bdrv_get_aio_context(bs);

        aio_context_acquire(aio_context);
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        aio_enable_external(aio_context);
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        bdrv_parent_drained_end(bs);
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        aio_context_release(aio_context);
    }
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    block_job_resume_all();
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}

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void bdrv_drain_all(void)
{
    bdrv_drain_all_begin();
    bdrv_drain_all_end();
}

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/**
 * Remove an active request from the tracked requests list
 *
 * This function should be called when a tracked request is completing.
 */
static void tracked_request_end(BdrvTrackedRequest *req)
{
    if (req->serialising) {
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        atomic_dec(&req->bs->serialising_in_flight);
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    }

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    qemu_co_mutex_lock(&req->bs->reqs_lock);
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    QLIST_REMOVE(req, list);
    qemu_co_queue_restart_all(&req->wait_queue);
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    qemu_co_mutex_unlock(&req->bs->reqs_lock);
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}

/**
 * Add an active request to the tracked requests list
 */
static void tracked_request_begin(BdrvTrackedRequest *req,
                                  BlockDriverState *bs,
                                  int64_t offset,
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                                  unsigned int bytes,
                                  enum BdrvTrackedRequestType type)
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{
    *req = (BdrvTrackedRequest){
        .bs = bs,
        .offset         = offset,
        .bytes          = bytes,
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        .type           = type,
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        .co             = qemu_coroutine_self(),
        .serialising    = false,
        .overlap_offset = offset,
        .overlap_bytes  = bytes,
    };

    qemu_co_queue_init(&req->wait_queue);

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    qemu_co_mutex_lock(&bs->reqs_lock);
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    QLIST_INSERT_HEAD(&bs->tracked_requests, req, list);
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    qemu_co_mutex_unlock(&bs->reqs_lock);
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}

static void mark_request_serialising(BdrvTrackedRequest *req, uint64_t align)
{
    int64_t overlap_offset = req->offset & ~(align - 1);
    unsigned int overlap_bytes = ROUND_UP(req->offset + req->bytes, align)
                               - overlap_offset;

    if (!req->serialising) {
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        atomic_inc(&req->bs->serialising_in_flight);
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        req->serialising = true;
    }

    req->overlap_offset = MIN(req->overlap_offset, overlap_offset);
    req->overlap_bytes = MAX(req->overlap_bytes, overlap_bytes);
}

/**
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 * Round a region to cluster boundaries (sector-based)
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 */
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void bdrv_round_sectors_to_clusters(BlockDriverState *bs,
                                    int64_t sector_num, int nb_sectors,
                                    int64_t *cluster_sector_num,
                                    int *cluster_nb_sectors)
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{
    BlockDriverInfo bdi;

    if (bdrv_get_info(bs, &bdi) < 0 || bdi.cluster_size == 0) {
        *cluster_sector_num = sector_num;
        *cluster_nb_sectors = nb_sectors;
    } else {
        int64_t c = bdi.cluster_size / BDRV_SECTOR_SIZE;
        *cluster_sector_num = QEMU_ALIGN_DOWN(sector_num, c);
        *cluster_nb_sectors = QEMU_ALIGN_UP(sector_num - *cluster_sector_num +
                                            nb_sectors, c);
    }
}

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/**
 * Round a region to cluster boundaries
 */
void bdrv_round_to_clusters(BlockDriverState *bs,
                            int64_t offset, unsigned int bytes,
                            int64_t *cluster_offset,
                            unsigned int *cluster_bytes)
{
    BlockDriverInfo bdi;

    if (bdrv_get_info(bs, &bdi) < 0 || bdi.cluster_size == 0) {
        *cluster_offset = offset;
        *cluster_bytes = bytes;
    } else {
        int64_t c = bdi.cluster_size;
        *cluster_offset = QEMU_ALIGN_DOWN(offset, c);
        *cluster_bytes = QEMU_ALIGN_UP(offset - *cluster_offset + bytes, c);
    }
}

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static int bdrv_get_cluster_size(BlockDriverState *bs)
{
    BlockDriverInfo bdi;
    int ret;

    ret = bdrv_get_info(bs, &bdi);
    if (ret < 0 || bdi.cluster_size == 0) {
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        return bs->bl.request_alignment;
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    } else {
        return bdi.cluster_size;
    }
}

static bool tracked_request_overlaps(BdrvTrackedRequest *req,
                                     int64_t offset, unsigned int bytes)
{
    /*        aaaa   bbbb */
    if (offset >= req->overlap_offset + req->overlap_bytes) {
        return false;
    }
    /* bbbb   aaaa        */
    if (req->overlap_offset >= offset + bytes) {
        return false;
    }
    return true;
}

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void bdrv_inc_in_flight(BlockDriverState *bs)
{
    atomic_inc(&bs->in_flight);
}

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static void dummy_bh_cb(void *opaque)
{
}

void bdrv_wakeup(BlockDriverState *bs)
{
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    /* The barrier (or an atomic op) is in the caller.  */
    if (atomic_read(&bs->wakeup)) {
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        aio_bh_schedule_oneshot(qemu_get_aio_context(), dummy_bh_cb, NULL);
    }
}

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void bdrv_dec_in_flight(BlockDriverState *bs)
{
    atomic_dec(&bs->in_flight);
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    bdrv_wakeup(bs);
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}

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static bool coroutine_fn wait_serialising_requests(BdrvTrackedRequest *self)
{
    BlockDriverState *bs = self->bs;
    BdrvTrackedRequest *req;
    bool retry;
    bool waited = false;

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    if (!atomic_read(&bs->serialising_in_flight)) {
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        return false;
    }

    do {
        retry = false;
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        qemu_co_mutex_lock(&bs->reqs_lock);
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        QLIST_FOREACH(req, &bs->tracked_requests, list) {
            if (req == self || (!req->serialising && !self->serialising)) {
                continue;
            }
            if (tracked_request_overlaps(req, self->overlap_offset,
                                         self->overlap_bytes))
            {
                /* Hitting this means there was a reentrant request, for
                 * example, a block driver issuing nested requests.  This must
                 * never happen since it means deadlock.
                 */
                assert(qemu_coroutine_self() != req->co);

                /* If the request is already (indirectly) waiting for us, or
                 * will wait for us as soon as it wakes up, then just go on
                 * (instead of producing a deadlock in the former case). */
                if (!req->waiting_for) {
                    self->waiting_for = req;
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                    qemu_co_queue_wait(&req->wait_queue, &bs->reqs_lock);
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                    self->waiting_for = NULL;
                    retry = true;
                    waited = true;
                    break;
                }
            }
        }
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        qemu_co_mutex_unlock(&bs->reqs_lock);
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    } while (retry);

    return waited;
}

static int bdrv_check_byte_request(BlockDriverState *bs, int64_t offset,
                                   size_t size)
{
    if (size > BDRV_REQUEST_MAX_SECTORS << BDRV_SECTOR_BITS) {
        return -EIO;
    }

    if (!bdrv_is_inserted(bs)) {
        return -ENOMEDIUM;
    }

    if (offset < 0) {
        return -EIO;
    }

    return 0;
}

typedef struct RwCo {
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    BdrvChild *child;
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    int64_t offset;
    QEMUIOVector *qiov;
    bool is_write;
    int ret;
    BdrvRequestFlags flags;
} RwCo;

static void coroutine_fn bdrv_rw_co_entry(void *opaque)
{
    RwCo *rwco = opaque;

    if (!rwco->is_write) {
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        rwco->ret = bdrv_co_preadv(rwco->child, rwco->offset,
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                                   rwco->qiov->size, rwco->qiov,
                                   rwco->flags);
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    } else {
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        rwco->ret = bdrv_co_pwritev(rwco->child, rwco->offset,
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                                    rwco->qiov->size, rwco->qiov,
                                    rwco->flags);
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    }
}

/*
 * Process a vectored synchronous request using coroutines
 */
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static int bdrv_prwv_co(BdrvChild *child, int64_t offset,
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                        QEMUIOVector *qiov, bool is_write,
                        BdrvRequestFlags flags)
{
    Coroutine *co;
    RwCo rwco = {
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        .child = child,
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        .offset = offset,
        .qiov = qiov,
        .is_write = is_write,
        .ret = NOT_DONE,
        .flags = flags,
    };

    if (qemu_in_coroutine()) {
        /* Fast-path if already in coroutine context */
        bdrv_rw_co_entry(&rwco);
    } else {
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        co = qemu_coroutine_create(bdrv_rw_co_entry, &rwco);
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        bdrv_coroutine_enter(child->bs, co);
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        BDRV_POLL_WHILE(child->bs, rwco.ret == NOT_DONE);
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    }
    return rwco.ret;
}

/*
 * Process a synchronous request using coroutines
 */
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static int bdrv_rw_co(BdrvChild *child, int64_t sector_num, uint8_t *buf,
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                      int nb_sectors, bool is_write, BdrvRequestFlags flags)
{
    QEMUIOVector qiov;
    struct iovec iov = {
        .iov_base = (void *)buf,
        .iov_len = nb_sectors * BDRV_SECTOR_SIZE,
    };

    if (nb_sectors < 0 || nb_sectors > BDRV_REQUEST_MAX_SECTORS) {
        return -EINVAL;
    }

    qemu_iovec_init_external(&qiov, &iov, 1);
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    return bdrv_prwv_co(child, sector_num << BDRV_SECTOR_BITS,
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                        &qiov, is_write, flags);
}

/* return < 0 if error. See bdrv_write() for the return codes */
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int bdrv_read(BdrvChild *child, int64_t sector_num,
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              uint8_t *buf, int nb_sectors)
{
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    return bdrv_rw_co(child, sector_num, buf, nb_sectors, false, 0);
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}

/* Return < 0 if error. Important errors are:
  -EIO         generic I/O error (may happen for all errors)
  -ENOMEDIUM   No media inserted.
  -EINVAL      Invalid sector number or nb_sectors
  -EACCES      Trying to write a read-only device
*/
662
int bdrv_write(BdrvChild *child, int64_t sector_num,
663 664
               const uint8_t *buf, int nb_sectors)
{
665
    return bdrv_rw_co(child, sector_num, (uint8_t *)buf, nb_sectors, true, 0);
666 667
}

668
int bdrv_pwrite_zeroes(BdrvChild *child, int64_t offset,
669
                       int bytes, BdrvRequestFlags flags)
670
{
671 672 673
    QEMUIOVector qiov;
    struct iovec iov = {
        .iov_base = NULL,
674
        .iov_len = bytes,
675 676 677
    };

    qemu_iovec_init_external(&qiov, &iov, 1);
678
    return bdrv_prwv_co(child, offset, &qiov, true,
679
                        BDRV_REQ_ZERO_WRITE | flags);
680 681 682
}

/*
683
 * Completely zero out a block device with the help of bdrv_pwrite_zeroes.
684 685
 * The operation is sped up by checking the block status and only writing
 * zeroes to the device if they currently do not return zeroes. Optional
686
 * flags are passed through to bdrv_pwrite_zeroes (e.g. BDRV_REQ_MAY_UNMAP,
687
 * BDRV_REQ_FUA).
688 689 690
 *
 * Returns < 0 on error, 0 on success. For error codes see bdrv_write().
 */
691
int bdrv_make_zero(BdrvChild *child, BdrvRequestFlags flags)
692 693
{
    int64_t target_sectors, ret, nb_sectors, sector_num = 0;
694
    BlockDriverState *bs = child->bs;
695
    BlockDriverState *file;
696 697 698 699 700 701 702 703 704 705 706 707
    int n;

    target_sectors = bdrv_nb_sectors(bs);
    if (target_sectors < 0) {
        return target_sectors;
    }

    for (;;) {
        nb_sectors = MIN(target_sectors - sector_num, BDRV_REQUEST_MAX_SECTORS);
        if (nb_sectors <= 0) {
            return 0;
        }
708
        ret = bdrv_get_block_status(bs, sector_num, nb_sectors, &n, &file);
709 710 711 712 713 714 715 716 717
        if (ret < 0) {
            error_report("error getting block status at sector %" PRId64 ": %s",
                         sector_num, strerror(-ret));
            return ret;
        }
        if (ret & BDRV_BLOCK_ZERO) {
            sector_num += n;
            continue;
        }
718
        ret = bdrv_pwrite_zeroes(child, sector_num << BDRV_SECTOR_BITS,
719
                                 n << BDRV_SECTOR_BITS, flags);
720 721 722 723 724 725 726 727 728
        if (ret < 0) {
            error_report("error writing zeroes at sector %" PRId64 ": %s",
                         sector_num, strerror(-ret));
            return ret;
        }
        sector_num += n;
    }
}

729
int bdrv_preadv(BdrvChild *child, int64_t offset, QEMUIOVector *qiov)
K
Kevin Wolf 已提交
730 731 732
{
    int ret;

733
    ret = bdrv_prwv_co(child, offset, qiov, false, 0);
K
Kevin Wolf 已提交
734 735 736 737 738 739 740
    if (ret < 0) {
        return ret;
    }

    return qiov->size;
}

741
int bdrv_pread(BdrvChild *child, int64_t offset, void *buf, int bytes)
742 743 744 745 746 747 748 749 750 751 752 753
{
    QEMUIOVector qiov;
    struct iovec iov = {
        .iov_base = (void *)buf,
        .iov_len = bytes,
    };

    if (bytes < 0) {
        return -EINVAL;
    }

    qemu_iovec_init_external(&qiov, &iov, 1);
754
    return bdrv_preadv(child, offset, &qiov);
755 756
}

757
int bdrv_pwritev(BdrvChild *child, int64_t offset, QEMUIOVector *qiov)
758 759 760
{
    int ret;

761
    ret = bdrv_prwv_co(child, offset, qiov, true, 0);
762 763 764 765 766 767 768
    if (ret < 0) {
        return ret;
    }

    return qiov->size;
}

769
int bdrv_pwrite(BdrvChild *child, int64_t offset, const void *buf, int bytes)
770 771 772 773 774 775 776 777 778 779 780 781
{
    QEMUIOVector qiov;
    struct iovec iov = {
        .iov_base   = (void *) buf,
        .iov_len    = bytes,
    };

    if (bytes < 0) {
        return -EINVAL;
    }

    qemu_iovec_init_external(&qiov, &iov, 1);
782
    return bdrv_pwritev(child, offset, &qiov);
783 784 785 786 787 788 789 790
}

/*
 * Writes to the file and ensures that no writes are reordered across this
 * request (acts as a barrier)
 *
 * Returns 0 on success, -errno in error cases.
 */
791 792
int bdrv_pwrite_sync(BdrvChild *child, int64_t offset,
                     const void *buf, int count)
793 794 795
{
    int ret;

796
    ret = bdrv_pwrite(child, offset, buf, count);
797 798 799 800
    if (ret < 0) {
        return ret;
    }

801
    ret = bdrv_flush(child->bs);
802 803
    if (ret < 0) {
        return ret;
804 805 806 807 808
    }

    return 0;
}

809 810 811 812 813 814 815 816 817 818
typedef struct CoroutineIOCompletion {
    Coroutine *coroutine;
    int ret;
} CoroutineIOCompletion;

static void bdrv_co_io_em_complete(void *opaque, int ret)
{
    CoroutineIOCompletion *co = opaque;

    co->ret = ret;
819
    aio_co_wake(co->coroutine);
820 821
}

822 823 824 825 826
static int coroutine_fn bdrv_driver_preadv(BlockDriverState *bs,
                                           uint64_t offset, uint64_t bytes,
                                           QEMUIOVector *qiov, int flags)
{
    BlockDriver *drv = bs->drv;
827 828 829
    int64_t sector_num;
    unsigned int nb_sectors;

830 831
    assert(!(flags & ~BDRV_REQ_MASK));

832 833 834 835 836 837
    if (drv->bdrv_co_preadv) {
        return drv->bdrv_co_preadv(bs, offset, bytes, qiov, flags);
    }

    sector_num = offset >> BDRV_SECTOR_BITS;
    nb_sectors = bytes >> BDRV_SECTOR_BITS;
838 839 840 841 842

    assert((offset & (BDRV_SECTOR_SIZE - 1)) == 0);
    assert((bytes & (BDRV_SECTOR_SIZE - 1)) == 0);
    assert((bytes >> BDRV_SECTOR_BITS) <= BDRV_REQUEST_MAX_SECTORS);

843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859
    if (drv->bdrv_co_readv) {
        return drv->bdrv_co_readv(bs, sector_num, nb_sectors, qiov);
    } else {
        BlockAIOCB *acb;
        CoroutineIOCompletion co = {
            .coroutine = qemu_coroutine_self(),
        };

        acb = bs->drv->bdrv_aio_readv(bs, sector_num, qiov, nb_sectors,
                                      bdrv_co_io_em_complete, &co);
        if (acb == NULL) {
            return -EIO;
        } else {
            qemu_coroutine_yield();
            return co.ret;
        }
    }
860 861
}

862 863 864 865 866
static int coroutine_fn bdrv_driver_pwritev(BlockDriverState *bs,
                                            uint64_t offset, uint64_t bytes,
                                            QEMUIOVector *qiov, int flags)
{
    BlockDriver *drv = bs->drv;
867 868
    int64_t sector_num;
    unsigned int nb_sectors;
869 870
    int ret;

871 872
    assert(!(flags & ~BDRV_REQ_MASK));

873
    if (drv->bdrv_co_pwritev) {
874 875 876
        ret = drv->bdrv_co_pwritev(bs, offset, bytes, qiov,
                                   flags & bs->supported_write_flags);
        flags &= ~bs->supported_write_flags;
877 878 879 880 881 882
        goto emulate_flags;
    }

    sector_num = offset >> BDRV_SECTOR_BITS;
    nb_sectors = bytes >> BDRV_SECTOR_BITS;

883 884 885 886 887 888
    assert((offset & (BDRV_SECTOR_SIZE - 1)) == 0);
    assert((bytes & (BDRV_SECTOR_SIZE - 1)) == 0);
    assert((bytes >> BDRV_SECTOR_BITS) <= BDRV_REQUEST_MAX_SECTORS);

    if (drv->bdrv_co_writev_flags) {
        ret = drv->bdrv_co_writev_flags(bs, sector_num, nb_sectors, qiov,
889 890
                                        flags & bs->supported_write_flags);
        flags &= ~bs->supported_write_flags;
891
    } else if (drv->bdrv_co_writev) {
892
        assert(!bs->supported_write_flags);
893
        ret = drv->bdrv_co_writev(bs, sector_num, nb_sectors, qiov);
894 895 896 897 898 899 900 901 902
    } else {
        BlockAIOCB *acb;
        CoroutineIOCompletion co = {
            .coroutine = qemu_coroutine_self(),
        };

        acb = bs->drv->bdrv_aio_writev(bs, sector_num, qiov, nb_sectors,
                                       bdrv_co_io_em_complete, &co);
        if (acb == NULL) {
903
            ret = -EIO;
904 905
        } else {
            qemu_coroutine_yield();
906
            ret = co.ret;
907
        }
908 909
    }

910
emulate_flags:
911
    if (ret == 0 && (flags & BDRV_REQ_FUA)) {
912 913 914 915 916 917
        ret = bdrv_co_flush(bs);
    }

    return ret;
}

918 919 920 921 922 923 924 925 926 927 928 929 930
static int coroutine_fn
bdrv_driver_pwritev_compressed(BlockDriverState *bs, uint64_t offset,
                               uint64_t bytes, QEMUIOVector *qiov)
{
    BlockDriver *drv = bs->drv;

    if (!drv->bdrv_co_pwritev_compressed) {
        return -ENOTSUP;
    }

    return drv->bdrv_co_pwritev_compressed(bs, offset, bytes, qiov);
}

931
static int coroutine_fn bdrv_co_do_copy_on_readv(BdrvChild *child,
932
        int64_t offset, unsigned int bytes, QEMUIOVector *qiov)
933
{
934 935
    BlockDriverState *bs = child->bs;

936 937 938 939 940 941 942 943 944 945
    /* Perform I/O through a temporary buffer so that users who scribble over
     * their read buffer while the operation is in progress do not end up
     * modifying the image file.  This is critical for zero-copy guest I/O
     * where anything might happen inside guest memory.
     */
    void *bounce_buffer;

    BlockDriver *drv = bs->drv;
    struct iovec iov;
    QEMUIOVector bounce_qiov;
946 947
    int64_t cluster_offset;
    unsigned int cluster_bytes;
948 949 950
    size_t skip_bytes;
    int ret;

951 952 953 954 955 956 957 958
    /* FIXME We cannot require callers to have write permissions when all they
     * are doing is a read request. If we did things right, write permissions
     * would be obtained anyway, but internally by the copy-on-read code. As
     * long as it is implemented here rather than in a separat filter driver,
     * the copy-on-read code doesn't have its own BdrvChild, however, for which
     * it could request permissions. Therefore we have to bypass the permission
     * system for the moment. */
    // assert(child->perm & (BLK_PERM_WRITE_UNCHANGED | BLK_PERM_WRITE));
959

960 961 962
    /* Cover entire cluster so no additional backing file I/O is required when
     * allocating cluster in the image file.
     */
963
    bdrv_round_to_clusters(bs, offset, bytes, &cluster_offset, &cluster_bytes);
964

965 966
    trace_bdrv_co_do_copy_on_readv(bs, offset, bytes,
                                   cluster_offset, cluster_bytes);
967

968
    iov.iov_len = cluster_bytes;
969 970 971 972 973 974 975 976
    iov.iov_base = bounce_buffer = qemu_try_blockalign(bs, iov.iov_len);
    if (bounce_buffer == NULL) {
        ret = -ENOMEM;
        goto err;
    }

    qemu_iovec_init_external(&bounce_qiov, &iov, 1);

977
    ret = bdrv_driver_preadv(bs, cluster_offset, cluster_bytes,
978
                             &bounce_qiov, 0);
979 980 981 982
    if (ret < 0) {
        goto err;
    }

E
Eric Blake 已提交
983
    if (drv->bdrv_co_pwrite_zeroes &&
984
        buffer_is_zero(bounce_buffer, iov.iov_len)) {
985 986 987
        /* FIXME: Should we (perhaps conditionally) be setting
         * BDRV_REQ_MAY_UNMAP, if it will allow for a sparser copy
         * that still correctly reads as zero? */
988
        ret = bdrv_co_do_pwrite_zeroes(bs, cluster_offset, cluster_bytes, 0);
989 990 991 992
    } else {
        /* This does not change the data on the disk, it is not necessary
         * to flush even in cache=writethrough mode.
         */
993
        ret = bdrv_driver_pwritev(bs, cluster_offset, cluster_bytes,
994
                                  &bounce_qiov, 0);
995 996 997 998 999 1000 1001 1002 1003 1004
    }

    if (ret < 0) {
        /* It might be okay to ignore write errors for guest requests.  If this
         * is a deliberate copy-on-read then we don't want to ignore the error.
         * Simply report it in all cases.
         */
        goto err;
    }

1005 1006
    skip_bytes = offset - cluster_offset;
    qemu_iovec_from_buf(qiov, 0, bounce_buffer + skip_bytes, bytes);
1007 1008 1009 1010 1011 1012 1013 1014

err:
    qemu_vfree(bounce_buffer);
    return ret;
}

/*
 * Forwards an already correctly aligned request to the BlockDriver. This
1015 1016
 * handles copy on read, zeroing after EOF, and fragmentation of large
 * reads; any other features must be implemented by the caller.
1017
 */
1018
static int coroutine_fn bdrv_aligned_preadv(BdrvChild *child,
1019 1020 1021
    BdrvTrackedRequest *req, int64_t offset, unsigned int bytes,
    int64_t align, QEMUIOVector *qiov, int flags)
{
1022
    BlockDriverState *bs = child->bs;
K
Kevin Wolf 已提交
1023
    int64_t total_bytes, max_bytes;
1024 1025 1026
    int ret = 0;
    uint64_t bytes_remaining = bytes;
    int max_transfer;
1027

1028 1029 1030
    assert(is_power_of_2(align));
    assert((offset & (align - 1)) == 0);
    assert((bytes & (align - 1)) == 0);
1031
    assert(!qiov || bytes == qiov->size);
1032
    assert((bs->open_flags & BDRV_O_NO_IO) == 0);
1033 1034
    max_transfer = QEMU_ALIGN_DOWN(MIN_NON_ZERO(bs->bl.max_transfer, INT_MAX),
                                   align);
1035 1036 1037 1038 1039 1040

    /* TODO: We would need a per-BDS .supported_read_flags and
     * potential fallback support, if we ever implement any read flags
     * to pass through to drivers.  For now, there aren't any
     * passthrough flags.  */
    assert(!(flags & ~(BDRV_REQ_NO_SERIALISING | BDRV_REQ_COPY_ON_READ)));
1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051

    /* Handle Copy on Read and associated serialisation */
    if (flags & BDRV_REQ_COPY_ON_READ) {
        /* If we touch the same cluster it counts as an overlap.  This
         * guarantees that allocating writes will be serialized and not race
         * with each other for the same cluster.  For example, in copy-on-read
         * it ensures that the CoR read and write operations are atomic and
         * guest writes cannot interleave between them. */
        mark_request_serialising(req, bdrv_get_cluster_size(bs));
    }

1052 1053 1054
    if (!(flags & BDRV_REQ_NO_SERIALISING)) {
        wait_serialising_requests(req);
    }
1055 1056

    if (flags & BDRV_REQ_COPY_ON_READ) {
1057 1058 1059
        int64_t start_sector = offset >> BDRV_SECTOR_BITS;
        int64_t end_sector = DIV_ROUND_UP(offset + bytes, BDRV_SECTOR_SIZE);
        unsigned int nb_sectors = end_sector - start_sector;
1060 1061
        int pnum;

1062
        ret = bdrv_is_allocated(bs, start_sector, nb_sectors, &pnum);
1063 1064 1065 1066 1067
        if (ret < 0) {
            goto out;
        }

        if (!ret || pnum != nb_sectors) {
1068
            ret = bdrv_co_do_copy_on_readv(child, offset, bytes, qiov);
1069 1070 1071 1072
            goto out;
        }
    }

1073
    /* Forward the request to the BlockDriver, possibly fragmenting it */
K
Kevin Wolf 已提交
1074 1075 1076 1077 1078
    total_bytes = bdrv_getlength(bs);
    if (total_bytes < 0) {
        ret = total_bytes;
        goto out;
    }
1079

K
Kevin Wolf 已提交
1080
    max_bytes = ROUND_UP(MAX(0, total_bytes - offset), align);
1081
    if (bytes <= max_bytes && bytes <= max_transfer) {
K
Kevin Wolf 已提交
1082
        ret = bdrv_driver_preadv(bs, offset, bytes, qiov, 0);
1083 1084
        goto out;
    }
1085

1086 1087
    while (bytes_remaining) {
        int num;
1088

1089 1090
        if (max_bytes) {
            QEMUIOVector local_qiov;
1091

1092 1093 1094 1095
            num = MIN(bytes_remaining, MIN(max_bytes, max_transfer));
            assert(num);
            qemu_iovec_init(&local_qiov, qiov->niov);
            qemu_iovec_concat(&local_qiov, qiov, bytes - bytes_remaining, num);
1096

1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109
            ret = bdrv_driver_preadv(bs, offset + bytes - bytes_remaining,
                                     num, &local_qiov, 0);
            max_bytes -= num;
            qemu_iovec_destroy(&local_qiov);
        } else {
            num = bytes_remaining;
            ret = qemu_iovec_memset(qiov, bytes - bytes_remaining, 0,
                                    bytes_remaining);
        }
        if (ret < 0) {
            goto out;
        }
        bytes_remaining -= num;
1110 1111 1112
    }

out:
1113
    return ret < 0 ? ret : 0;
1114 1115 1116 1117 1118
}

/*
 * Handle a read request in coroutine context
 */
1119
int coroutine_fn bdrv_co_preadv(BdrvChild *child,
1120 1121 1122
    int64_t offset, unsigned int bytes, QEMUIOVector *qiov,
    BdrvRequestFlags flags)
{
1123
    BlockDriverState *bs = child->bs;
1124 1125 1126
    BlockDriver *drv = bs->drv;
    BdrvTrackedRequest req;

1127
    uint64_t align = bs->bl.request_alignment;
1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142
    uint8_t *head_buf = NULL;
    uint8_t *tail_buf = NULL;
    QEMUIOVector local_qiov;
    bool use_local_qiov = false;
    int ret;

    if (!drv) {
        return -ENOMEDIUM;
    }

    ret = bdrv_check_byte_request(bs, offset, bytes);
    if (ret < 0) {
        return ret;
    }

1143 1144
    bdrv_inc_in_flight(bs);

1145
    /* Don't do copy-on-read if we read data before write operation */
1146
    if (atomic_read(&bs->copy_on_read) && !(flags & BDRV_REQ_NO_SERIALISING)) {
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
        flags |= BDRV_REQ_COPY_ON_READ;
    }

    /* Align read if necessary by padding qiov */
    if (offset & (align - 1)) {
        head_buf = qemu_blockalign(bs, align);
        qemu_iovec_init(&local_qiov, qiov->niov + 2);
        qemu_iovec_add(&local_qiov, head_buf, offset & (align - 1));
        qemu_iovec_concat(&local_qiov, qiov, 0, qiov->size);
        use_local_qiov = true;

        bytes += offset & (align - 1);
        offset = offset & ~(align - 1);
    }

    if ((offset + bytes) & (align - 1)) {
        if (!use_local_qiov) {
            qemu_iovec_init(&local_qiov, qiov->niov + 1);
            qemu_iovec_concat(&local_qiov, qiov, 0, qiov->size);
            use_local_qiov = true;
        }
        tail_buf = qemu_blockalign(bs, align);
        qemu_iovec_add(&local_qiov, tail_buf,
                       align - ((offset + bytes) & (align - 1)));

        bytes = ROUND_UP(bytes, align);
    }

1175
    tracked_request_begin(&req, bs, offset, bytes, BDRV_TRACKED_READ);
1176
    ret = bdrv_aligned_preadv(child, &req, offset, bytes, align,
1177 1178 1179
                              use_local_qiov ? &local_qiov : qiov,
                              flags);
    tracked_request_end(&req);
1180
    bdrv_dec_in_flight(bs);
1181 1182 1183 1184 1185 1186 1187 1188 1189 1190

    if (use_local_qiov) {
        qemu_iovec_destroy(&local_qiov);
        qemu_vfree(head_buf);
        qemu_vfree(tail_buf);
    }

    return ret;
}

1191
static int coroutine_fn bdrv_co_do_readv(BdrvChild *child,
1192 1193 1194 1195 1196 1197 1198
    int64_t sector_num, int nb_sectors, QEMUIOVector *qiov,
    BdrvRequestFlags flags)
{
    if (nb_sectors < 0 || nb_sectors > BDRV_REQUEST_MAX_SECTORS) {
        return -EINVAL;
    }

1199
    return bdrv_co_preadv(child, sector_num << BDRV_SECTOR_BITS,
1200
                          nb_sectors << BDRV_SECTOR_BITS, qiov, flags);
1201 1202
}

1203 1204
int coroutine_fn bdrv_co_readv(BdrvChild *child, int64_t sector_num,
                               int nb_sectors, QEMUIOVector *qiov)
1205
{
1206
    trace_bdrv_co_readv(child->bs, sector_num, nb_sectors);
1207

1208
    return bdrv_co_do_readv(child, sector_num, nb_sectors, qiov, 0);
1209 1210
}

1211 1212
/* Maximum buffer for write zeroes fallback, in bytes */
#define MAX_WRITE_ZEROES_BOUNCE_BUFFER (32768 << BDRV_SECTOR_BITS)
1213

E
Eric Blake 已提交
1214
static int coroutine_fn bdrv_co_do_pwrite_zeroes(BlockDriverState *bs,
1215
    int64_t offset, int bytes, BdrvRequestFlags flags)
1216 1217 1218 1219 1220
{
    BlockDriver *drv = bs->drv;
    QEMUIOVector qiov;
    struct iovec iov = {0};
    int ret = 0;
1221
    bool need_flush = false;
1222 1223
    int head = 0;
    int tail = 0;
1224

1225
    int max_write_zeroes = MIN_NON_ZERO(bs->bl.max_pwrite_zeroes, INT_MAX);
1226 1227
    int alignment = MAX(bs->bl.pwrite_zeroes_alignment,
                        bs->bl.request_alignment);
1228 1229
    int max_transfer = MIN_NON_ZERO(bs->bl.max_transfer,
                                    MAX_WRITE_ZEROES_BOUNCE_BUFFER);
E
Eric Blake 已提交
1230

1231 1232
    assert(alignment % bs->bl.request_alignment == 0);
    head = offset % alignment;
1233
    tail = (offset + bytes) % alignment;
1234 1235
    max_write_zeroes = QEMU_ALIGN_DOWN(max_write_zeroes, alignment);
    assert(max_write_zeroes >= bs->bl.request_alignment);
1236

1237 1238
    while (bytes > 0 && !ret) {
        int num = bytes;
1239 1240

        /* Align request.  Block drivers can expect the "bulk" of the request
1241 1242
         * to be aligned, and that unaligned requests do not cross cluster
         * boundaries.
1243
         */
1244
        if (head) {
1245 1246 1247
            /* Make a small request up to the first aligned sector. For
             * convenience, limit this request to max_transfer even if
             * we don't need to fall back to writes.  */
1248
            num = MIN(MIN(bytes, max_transfer), alignment - head);
1249 1250
            head = (head + num) % alignment;
            assert(num < max_write_zeroes);
E
Eric Blake 已提交
1251
        } else if (tail && num > alignment) {
1252 1253
            /* Shorten the request to the last aligned sector.  */
            num -= tail;
1254 1255 1256 1257 1258 1259 1260 1261 1262
        }

        /* limit request size */
        if (num > max_write_zeroes) {
            num = max_write_zeroes;
        }

        ret = -ENOTSUP;
        /* First try the efficient write zeroes operation */
E
Eric Blake 已提交
1263 1264 1265 1266 1267 1268 1269
        if (drv->bdrv_co_pwrite_zeroes) {
            ret = drv->bdrv_co_pwrite_zeroes(bs, offset, num,
                                             flags & bs->supported_zero_flags);
            if (ret != -ENOTSUP && (flags & BDRV_REQ_FUA) &&
                !(bs->supported_zero_flags & BDRV_REQ_FUA)) {
                need_flush = true;
            }
1270 1271
        } else {
            assert(!bs->supported_zero_flags);
1272 1273 1274 1275
        }

        if (ret == -ENOTSUP) {
            /* Fall back to bounce buffer if write zeroes is unsupported */
1276 1277 1278 1279 1280 1281 1282 1283 1284
            BdrvRequestFlags write_flags = flags & ~BDRV_REQ_ZERO_WRITE;

            if ((flags & BDRV_REQ_FUA) &&
                !(bs->supported_write_flags & BDRV_REQ_FUA)) {
                /* No need for bdrv_driver_pwrite() to do a fallback
                 * flush on each chunk; use just one at the end */
                write_flags &= ~BDRV_REQ_FUA;
                need_flush = true;
            }
1285
            num = MIN(num, max_transfer);
E
Eric Blake 已提交
1286
            iov.iov_len = num;
1287
            if (iov.iov_base == NULL) {
E
Eric Blake 已提交
1288
                iov.iov_base = qemu_try_blockalign(bs, num);
1289 1290 1291 1292
                if (iov.iov_base == NULL) {
                    ret = -ENOMEM;
                    goto fail;
                }
E
Eric Blake 已提交
1293
                memset(iov.iov_base, 0, num);
1294 1295 1296
            }
            qemu_iovec_init_external(&qiov, &iov, 1);

E
Eric Blake 已提交
1297
            ret = bdrv_driver_pwritev(bs, offset, num, &qiov, write_flags);
1298 1299 1300 1301

            /* Keep bounce buffer around if it is big enough for all
             * all future requests.
             */
1302
            if (num < max_transfer) {
1303 1304 1305 1306 1307
                qemu_vfree(iov.iov_base);
                iov.iov_base = NULL;
            }
        }

E
Eric Blake 已提交
1308
        offset += num;
1309
        bytes -= num;
1310 1311 1312
    }

fail:
1313 1314 1315
    if (ret == 0 && need_flush) {
        ret = bdrv_co_flush(bs);
    }
1316 1317 1318 1319 1320
    qemu_vfree(iov.iov_base);
    return ret;
}

/*
1321 1322
 * Forwards an already correctly aligned write request to the BlockDriver,
 * after possibly fragmenting it.
1323
 */
1324
static int coroutine_fn bdrv_aligned_pwritev(BdrvChild *child,
1325
    BdrvTrackedRequest *req, int64_t offset, unsigned int bytes,
1326
    int64_t align, QEMUIOVector *qiov, int flags)
1327
{
1328
    BlockDriverState *bs = child->bs;
1329 1330 1331 1332
    BlockDriver *drv = bs->drv;
    bool waited;
    int ret;

1333 1334
    int64_t start_sector = offset >> BDRV_SECTOR_BITS;
    int64_t end_sector = DIV_ROUND_UP(offset + bytes, BDRV_SECTOR_SIZE);
1335 1336
    uint64_t bytes_remaining = bytes;
    int max_transfer;
1337

1338 1339 1340
    assert(is_power_of_2(align));
    assert((offset & (align - 1)) == 0);
    assert((bytes & (align - 1)) == 0);
1341
    assert(!qiov || bytes == qiov->size);
1342
    assert((bs->open_flags & BDRV_O_NO_IO) == 0);
1343
    assert(!(flags & ~BDRV_REQ_MASK));
1344 1345
    max_transfer = QEMU_ALIGN_DOWN(MIN_NON_ZERO(bs->bl.max_transfer, INT_MAX),
                                   align);
1346 1347 1348 1349 1350

    waited = wait_serialising_requests(req);
    assert(!waited || !req->serialising);
    assert(req->overlap_offset <= offset);
    assert(offset + bytes <= req->overlap_offset + req->overlap_bytes);
1351 1352
    assert(child->perm & BLK_PERM_WRITE);
    assert(end_sector <= bs->total_sectors || child->perm & BLK_PERM_RESIZE);
1353 1354 1355 1356

    ret = notifier_with_return_list_notify(&bs->before_write_notifiers, req);

    if (!ret && bs->detect_zeroes != BLOCKDEV_DETECT_ZEROES_OPTIONS_OFF &&
E
Eric Blake 已提交
1357
        !(flags & BDRV_REQ_ZERO_WRITE) && drv->bdrv_co_pwrite_zeroes &&
1358 1359 1360 1361 1362 1363 1364 1365 1366 1367
        qemu_iovec_is_zero(qiov)) {
        flags |= BDRV_REQ_ZERO_WRITE;
        if (bs->detect_zeroes == BLOCKDEV_DETECT_ZEROES_OPTIONS_UNMAP) {
            flags |= BDRV_REQ_MAY_UNMAP;
        }
    }

    if (ret < 0) {
        /* Do nothing, write notifier decided to fail this request */
    } else if (flags & BDRV_REQ_ZERO_WRITE) {
K
Kevin Wolf 已提交
1368
        bdrv_debug_event(bs, BLKDBG_PWRITEV_ZERO);
1369
        ret = bdrv_co_do_pwrite_zeroes(bs, offset, bytes, flags);
1370 1371
    } else if (flags & BDRV_REQ_WRITE_COMPRESSED) {
        ret = bdrv_driver_pwritev_compressed(bs, offset, bytes, qiov);
1372
    } else if (bytes <= max_transfer) {
K
Kevin Wolf 已提交
1373
        bdrv_debug_event(bs, BLKDBG_PWRITEV);
1374
        ret = bdrv_driver_pwritev(bs, offset, bytes, qiov, flags);
1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399
    } else {
        bdrv_debug_event(bs, BLKDBG_PWRITEV);
        while (bytes_remaining) {
            int num = MIN(bytes_remaining, max_transfer);
            QEMUIOVector local_qiov;
            int local_flags = flags;

            assert(num);
            if (num < bytes_remaining && (flags & BDRV_REQ_FUA) &&
                !(bs->supported_write_flags & BDRV_REQ_FUA)) {
                /* If FUA is going to be emulated by flush, we only
                 * need to flush on the last iteration */
                local_flags &= ~BDRV_REQ_FUA;
            }
            qemu_iovec_init(&local_qiov, qiov->niov);
            qemu_iovec_concat(&local_qiov, qiov, bytes - bytes_remaining, num);

            ret = bdrv_driver_pwritev(bs, offset + bytes - bytes_remaining,
                                      num, &local_qiov, local_flags);
            qemu_iovec_destroy(&local_qiov);
            if (ret < 0) {
                break;
            }
            bytes_remaining -= num;
        }
1400
    }
K
Kevin Wolf 已提交
1401
    bdrv_debug_event(bs, BLKDBG_PWRITEV_DONE);
1402

1403
    atomic_inc(&bs->write_gen);
1404
    bdrv_set_dirty(bs, start_sector, end_sector - start_sector);
1405

1406
    stat64_max(&bs->wr_highest_offset, offset + bytes);
1407 1408

    if (ret >= 0) {
1409
        bs->total_sectors = MAX(bs->total_sectors, end_sector);
1410
        ret = 0;
1411 1412 1413 1414 1415
    }

    return ret;
}

1416
static int coroutine_fn bdrv_co_do_zero_pwritev(BdrvChild *child,
1417 1418 1419 1420 1421
                                                int64_t offset,
                                                unsigned int bytes,
                                                BdrvRequestFlags flags,
                                                BdrvTrackedRequest *req)
{
1422
    BlockDriverState *bs = child->bs;
1423 1424 1425
    uint8_t *buf = NULL;
    QEMUIOVector local_qiov;
    struct iovec iov;
1426
    uint64_t align = bs->bl.request_alignment;
1427 1428 1429 1430
    unsigned int head_padding_bytes, tail_padding_bytes;
    int ret = 0;

    head_padding_bytes = offset & (align - 1);
1431
    tail_padding_bytes = (align - (offset + bytes)) & (align - 1);
1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448


    assert(flags & BDRV_REQ_ZERO_WRITE);
    if (head_padding_bytes || tail_padding_bytes) {
        buf = qemu_blockalign(bs, align);
        iov = (struct iovec) {
            .iov_base   = buf,
            .iov_len    = align,
        };
        qemu_iovec_init_external(&local_qiov, &iov, 1);
    }
    if (head_padding_bytes) {
        uint64_t zero_bytes = MIN(bytes, align - head_padding_bytes);

        /* RMW the unaligned part before head. */
        mark_request_serialising(req, align);
        wait_serialising_requests(req);
K
Kevin Wolf 已提交
1449
        bdrv_debug_event(bs, BLKDBG_PWRITEV_RMW_HEAD);
1450
        ret = bdrv_aligned_preadv(child, req, offset & ~(align - 1), align,
1451 1452 1453 1454
                                  align, &local_qiov, 0);
        if (ret < 0) {
            goto fail;
        }
K
Kevin Wolf 已提交
1455
        bdrv_debug_event(bs, BLKDBG_PWRITEV_RMW_AFTER_HEAD);
1456 1457

        memset(buf + head_padding_bytes, 0, zero_bytes);
1458
        ret = bdrv_aligned_pwritev(child, req, offset & ~(align - 1), align,
1459
                                   align, &local_qiov,
1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471
                                   flags & ~BDRV_REQ_ZERO_WRITE);
        if (ret < 0) {
            goto fail;
        }
        offset += zero_bytes;
        bytes -= zero_bytes;
    }

    assert(!bytes || (offset & (align - 1)) == 0);
    if (bytes >= align) {
        /* Write the aligned part in the middle. */
        uint64_t aligned_bytes = bytes & ~(align - 1);
1472
        ret = bdrv_aligned_pwritev(child, req, offset, aligned_bytes, align,
1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486
                                   NULL, flags);
        if (ret < 0) {
            goto fail;
        }
        bytes -= aligned_bytes;
        offset += aligned_bytes;
    }

    assert(!bytes || (offset & (align - 1)) == 0);
    if (bytes) {
        assert(align == tail_padding_bytes + bytes);
        /* RMW the unaligned part after tail. */
        mark_request_serialising(req, align);
        wait_serialising_requests(req);
K
Kevin Wolf 已提交
1487
        bdrv_debug_event(bs, BLKDBG_PWRITEV_RMW_TAIL);
1488
        ret = bdrv_aligned_preadv(child, req, offset, align,
1489 1490 1491 1492
                                  align, &local_qiov, 0);
        if (ret < 0) {
            goto fail;
        }
K
Kevin Wolf 已提交
1493
        bdrv_debug_event(bs, BLKDBG_PWRITEV_RMW_AFTER_TAIL);
1494 1495

        memset(buf, 0, bytes);
1496
        ret = bdrv_aligned_pwritev(child, req, offset, align, align,
1497 1498 1499 1500 1501 1502 1503 1504
                                   &local_qiov, flags & ~BDRV_REQ_ZERO_WRITE);
    }
fail:
    qemu_vfree(buf);
    return ret;

}

1505 1506 1507
/*
 * Handle a write request in coroutine context
 */
1508
int coroutine_fn bdrv_co_pwritev(BdrvChild *child,
1509 1510 1511
    int64_t offset, unsigned int bytes, QEMUIOVector *qiov,
    BdrvRequestFlags flags)
{
1512
    BlockDriverState *bs = child->bs;
1513
    BdrvTrackedRequest req;
1514
    uint64_t align = bs->bl.request_alignment;
1515 1516 1517 1518 1519 1520 1521 1522 1523 1524
    uint8_t *head_buf = NULL;
    uint8_t *tail_buf = NULL;
    QEMUIOVector local_qiov;
    bool use_local_qiov = false;
    int ret;

    if (!bs->drv) {
        return -ENOMEDIUM;
    }
    if (bs->read_only) {
1525
        return -EPERM;
1526
    }
1527
    assert(!(bs->open_flags & BDRV_O_INACTIVE));
1528 1529 1530 1531 1532 1533

    ret = bdrv_check_byte_request(bs, offset, bytes);
    if (ret < 0) {
        return ret;
    }

1534
    bdrv_inc_in_flight(bs);
1535 1536 1537 1538 1539
    /*
     * Align write if necessary by performing a read-modify-write cycle.
     * Pad qiov with the read parts and be sure to have a tracked request not
     * only for bdrv_aligned_pwritev, but also for the reads of the RMW cycle.
     */
1540
    tracked_request_begin(&req, bs, offset, bytes, BDRV_TRACKED_WRITE);
1541

1542
    if (!qiov) {
1543
        ret = bdrv_co_do_zero_pwritev(child, offset, bytes, flags, &req);
1544 1545 1546
        goto out;
    }

1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560
    if (offset & (align - 1)) {
        QEMUIOVector head_qiov;
        struct iovec head_iov;

        mark_request_serialising(&req, align);
        wait_serialising_requests(&req);

        head_buf = qemu_blockalign(bs, align);
        head_iov = (struct iovec) {
            .iov_base   = head_buf,
            .iov_len    = align,
        };
        qemu_iovec_init_external(&head_qiov, &head_iov, 1);

K
Kevin Wolf 已提交
1561
        bdrv_debug_event(bs, BLKDBG_PWRITEV_RMW_HEAD);
1562
        ret = bdrv_aligned_preadv(child, &req, offset & ~(align - 1), align,
1563 1564 1565 1566
                                  align, &head_qiov, 0);
        if (ret < 0) {
            goto fail;
        }
K
Kevin Wolf 已提交
1567
        bdrv_debug_event(bs, BLKDBG_PWRITEV_RMW_AFTER_HEAD);
1568 1569 1570 1571 1572 1573 1574 1575

        qemu_iovec_init(&local_qiov, qiov->niov + 2);
        qemu_iovec_add(&local_qiov, head_buf, offset & (align - 1));
        qemu_iovec_concat(&local_qiov, qiov, 0, qiov->size);
        use_local_qiov = true;

        bytes += offset & (align - 1);
        offset = offset & ~(align - 1);
1576 1577 1578 1579 1580 1581 1582 1583

        /* We have read the tail already if the request is smaller
         * than one aligned block.
         */
        if (bytes < align) {
            qemu_iovec_add(&local_qiov, head_buf + bytes, align - bytes);
            bytes = align;
        }
1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602
    }

    if ((offset + bytes) & (align - 1)) {
        QEMUIOVector tail_qiov;
        struct iovec tail_iov;
        size_t tail_bytes;
        bool waited;

        mark_request_serialising(&req, align);
        waited = wait_serialising_requests(&req);
        assert(!waited || !use_local_qiov);

        tail_buf = qemu_blockalign(bs, align);
        tail_iov = (struct iovec) {
            .iov_base   = tail_buf,
            .iov_len    = align,
        };
        qemu_iovec_init_external(&tail_qiov, &tail_iov, 1);

K
Kevin Wolf 已提交
1603
        bdrv_debug_event(bs, BLKDBG_PWRITEV_RMW_TAIL);
1604 1605
        ret = bdrv_aligned_preadv(child, &req, (offset + bytes) & ~(align - 1),
                                  align, align, &tail_qiov, 0);
1606 1607 1608
        if (ret < 0) {
            goto fail;
        }
K
Kevin Wolf 已提交
1609
        bdrv_debug_event(bs, BLKDBG_PWRITEV_RMW_AFTER_TAIL);
1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622

        if (!use_local_qiov) {
            qemu_iovec_init(&local_qiov, qiov->niov + 1);
            qemu_iovec_concat(&local_qiov, qiov, 0, qiov->size);
            use_local_qiov = true;
        }

        tail_bytes = (offset + bytes) & (align - 1);
        qemu_iovec_add(&local_qiov, tail_buf + tail_bytes, align - tail_bytes);

        bytes = ROUND_UP(bytes, align);
    }

1623
    ret = bdrv_aligned_pwritev(child, &req, offset, bytes, align,
1624 1625
                               use_local_qiov ? &local_qiov : qiov,
                               flags);
1626 1627 1628 1629 1630 1631 1632 1633

fail:

    if (use_local_qiov) {
        qemu_iovec_destroy(&local_qiov);
    }
    qemu_vfree(head_buf);
    qemu_vfree(tail_buf);
1634 1635
out:
    tracked_request_end(&req);
1636
    bdrv_dec_in_flight(bs);
1637 1638 1639
    return ret;
}

1640
static int coroutine_fn bdrv_co_do_writev(BdrvChild *child,
1641 1642 1643 1644 1645 1646 1647
    int64_t sector_num, int nb_sectors, QEMUIOVector *qiov,
    BdrvRequestFlags flags)
{
    if (nb_sectors < 0 || nb_sectors > BDRV_REQUEST_MAX_SECTORS) {
        return -EINVAL;
    }

1648
    return bdrv_co_pwritev(child, sector_num << BDRV_SECTOR_BITS,
1649
                           nb_sectors << BDRV_SECTOR_BITS, qiov, flags);
1650 1651
}

1652
int coroutine_fn bdrv_co_writev(BdrvChild *child, int64_t sector_num,
1653 1654
    int nb_sectors, QEMUIOVector *qiov)
{
1655
    trace_bdrv_co_writev(child->bs, sector_num, nb_sectors);
1656

1657
    return bdrv_co_do_writev(child, sector_num, nb_sectors, qiov, 0);
1658 1659
}

1660
int coroutine_fn bdrv_co_pwrite_zeroes(BdrvChild *child, int64_t offset,
1661
                                       int bytes, BdrvRequestFlags flags)
1662
{
1663
    trace_bdrv_co_pwrite_zeroes(child->bs, offset, bytes, flags);
1664

1665
    if (!(child->bs->open_flags & BDRV_O_UNMAP)) {
1666 1667 1668
        flags &= ~BDRV_REQ_MAY_UNMAP;
    }

1669
    return bdrv_co_pwritev(child, offset, bytes, NULL,
1670
                           BDRV_REQ_ZERO_WRITE | flags);
1671 1672
}

J
John Snow 已提交
1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697
/*
 * Flush ALL BDSes regardless of if they are reachable via a BlkBackend or not.
 */
int bdrv_flush_all(void)
{
    BdrvNextIterator it;
    BlockDriverState *bs = NULL;
    int result = 0;

    for (bs = bdrv_first(&it); bs; bs = bdrv_next(&it)) {
        AioContext *aio_context = bdrv_get_aio_context(bs);
        int ret;

        aio_context_acquire(aio_context);
        ret = bdrv_flush(bs);
        if (ret < 0 && !result) {
            result = ret;
        }
        aio_context_release(aio_context);
    }

    return result;
}


1698 1699 1700
typedef struct BdrvCoGetBlockStatusData {
    BlockDriverState *bs;
    BlockDriverState *base;
1701
    BlockDriverState **file;
1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713
    int64_t sector_num;
    int nb_sectors;
    int *pnum;
    int64_t ret;
    bool done;
} BdrvCoGetBlockStatusData;

/*
 * Returns the allocation status of the specified sectors.
 * Drivers not implementing the functionality are assumed to not support
 * backing files, hence all their sectors are reported as allocated.
 *
1714 1715
 * If 'sector_num' is beyond the end of the disk image the return value is
 * BDRV_BLOCK_EOF and 'pnum' is set to 0.
1716 1717 1718 1719 1720 1721
 *
 * 'pnum' is set to the number of sectors (including and immediately following
 * the specified sector) that are known to be in the same
 * allocated/unallocated state.
 *
 * 'nb_sectors' is the max value 'pnum' should be set to.  If nb_sectors goes
1722 1723
 * beyond the end of the disk image it will be clamped; if 'pnum' is set to
 * the end of the image, then the returned value will include BDRV_BLOCK_EOF.
1724 1725 1726
 *
 * If returned value is positive and BDRV_BLOCK_OFFSET_VALID bit is set, 'file'
 * points to the BDS which the sector range is allocated in.
1727 1728 1729
 */
static int64_t coroutine_fn bdrv_co_get_block_status(BlockDriverState *bs,
                                                     int64_t sector_num,
1730 1731
                                                     int nb_sectors, int *pnum,
                                                     BlockDriverState **file)
1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743
{
    int64_t total_sectors;
    int64_t n;
    int64_t ret, ret2;

    total_sectors = bdrv_nb_sectors(bs);
    if (total_sectors < 0) {
        return total_sectors;
    }

    if (sector_num >= total_sectors) {
        *pnum = 0;
1744
        return BDRV_BLOCK_EOF;
1745 1746 1747 1748 1749 1750 1751 1752 1753 1754
    }

    n = total_sectors - sector_num;
    if (n < nb_sectors) {
        nb_sectors = n;
    }

    if (!bs->drv->bdrv_co_get_block_status) {
        *pnum = nb_sectors;
        ret = BDRV_BLOCK_DATA | BDRV_BLOCK_ALLOCATED;
1755 1756 1757
        if (sector_num + nb_sectors == total_sectors) {
            ret |= BDRV_BLOCK_EOF;
        }
1758 1759 1760 1761 1762 1763
        if (bs->drv->protocol_name) {
            ret |= BDRV_BLOCK_OFFSET_VALID | (sector_num * BDRV_SECTOR_SIZE);
        }
        return ret;
    }

1764
    *file = NULL;
1765
    bdrv_inc_in_flight(bs);
1766 1767
    ret = bs->drv->bdrv_co_get_block_status(bs, sector_num, nb_sectors, pnum,
                                            file);
1768 1769
    if (ret < 0) {
        *pnum = 0;
1770
        goto out;
1771 1772 1773 1774
    }

    if (ret & BDRV_BLOCK_RAW) {
        assert(ret & BDRV_BLOCK_OFFSET_VALID);
1775 1776
        ret = bdrv_co_get_block_status(*file, ret >> BDRV_SECTOR_BITS,
                                       *pnum, pnum, file);
1777
        goto out;
1778 1779 1780 1781
    }

    if (ret & (BDRV_BLOCK_DATA | BDRV_BLOCK_ZERO)) {
        ret |= BDRV_BLOCK_ALLOCATED;
1782
    } else {
1783 1784
        if (bdrv_unallocated_blocks_are_zero(bs)) {
            ret |= BDRV_BLOCK_ZERO;
1785 1786
        } else if (bs->backing) {
            BlockDriverState *bs2 = bs->backing->bs;
1787 1788 1789 1790 1791 1792 1793
            int64_t nb_sectors2 = bdrv_nb_sectors(bs2);
            if (nb_sectors2 >= 0 && sector_num >= nb_sectors2) {
                ret |= BDRV_BLOCK_ZERO;
            }
        }
    }

1794
    if (*file && *file != bs &&
1795 1796
        (ret & BDRV_BLOCK_DATA) && !(ret & BDRV_BLOCK_ZERO) &&
        (ret & BDRV_BLOCK_OFFSET_VALID)) {
1797
        BlockDriverState *file2;
1798 1799
        int file_pnum;

1800
        ret2 = bdrv_co_get_block_status(*file, ret >> BDRV_SECTOR_BITS,
1801
                                        *pnum, &file_pnum, &file2);
1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818
        if (ret2 >= 0) {
            /* Ignore errors.  This is just providing extra information, it
             * is useful but not necessary.
             */
            if (!file_pnum) {
                /* !file_pnum indicates an offset at or beyond the EOF; it is
                 * perfectly valid for the format block driver to point to such
                 * offsets, so catch it and mark everything as zero */
                ret |= BDRV_BLOCK_ZERO;
            } else {
                /* Limit request to the range reported by the protocol driver */
                *pnum = file_pnum;
                ret |= (ret2 & BDRV_BLOCK_ZERO);
            }
        }
    }

1819 1820
out:
    bdrv_dec_in_flight(bs);
1821 1822 1823
    if (ret >= 0 && sector_num + *pnum == total_sectors) {
        ret |= BDRV_BLOCK_EOF;
    }
1824 1825 1826
    return ret;
}

1827 1828 1829 1830
static int64_t coroutine_fn bdrv_co_get_block_status_above(BlockDriverState *bs,
        BlockDriverState *base,
        int64_t sector_num,
        int nb_sectors,
1831 1832
        int *pnum,
        BlockDriverState **file)
1833 1834 1835 1836 1837
{
    BlockDriverState *p;
    int64_t ret = 0;

    assert(bs != base);
1838
    for (p = bs; p != base; p = backing_bs(p)) {
1839
        ret = bdrv_co_get_block_status(p, sector_num, nb_sectors, pnum, file);
1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851
        if (ret < 0 || ret & BDRV_BLOCK_ALLOCATED) {
            break;
        }
        /* [sector_num, pnum] unallocated on this layer, which could be only
         * the first part of [sector_num, nb_sectors].  */
        nb_sectors = MIN(nb_sectors, *pnum);
    }
    return ret;
}

/* Coroutine wrapper for bdrv_get_block_status_above() */
static void coroutine_fn bdrv_get_block_status_above_co_entry(void *opaque)
1852 1853 1854
{
    BdrvCoGetBlockStatusData *data = opaque;

1855 1856 1857
    data->ret = bdrv_co_get_block_status_above(data->bs, data->base,
                                               data->sector_num,
                                               data->nb_sectors,
1858 1859
                                               data->pnum,
                                               data->file);
1860 1861 1862 1863
    data->done = true;
}

/*
1864
 * Synchronous wrapper around bdrv_co_get_block_status_above().
1865
 *
1866
 * See bdrv_co_get_block_status_above() for details.
1867
 */
1868 1869 1870
int64_t bdrv_get_block_status_above(BlockDriverState *bs,
                                    BlockDriverState *base,
                                    int64_t sector_num,
1871 1872
                                    int nb_sectors, int *pnum,
                                    BlockDriverState **file)
1873 1874 1875 1876
{
    Coroutine *co;
    BdrvCoGetBlockStatusData data = {
        .bs = bs,
1877
        .base = base,
1878
        .file = file,
1879 1880 1881 1882 1883 1884 1885 1886
        .sector_num = sector_num,
        .nb_sectors = nb_sectors,
        .pnum = pnum,
        .done = false,
    };

    if (qemu_in_coroutine()) {
        /* Fast-path if already in coroutine context */
1887
        bdrv_get_block_status_above_co_entry(&data);
1888
    } else {
1889 1890
        co = qemu_coroutine_create(bdrv_get_block_status_above_co_entry,
                                   &data);
1891
        bdrv_coroutine_enter(bs, co);
P
Paolo Bonzini 已提交
1892
        BDRV_POLL_WHILE(bs, !data.done);
1893 1894 1895 1896
    }
    return data.ret;
}

1897 1898
int64_t bdrv_get_block_status(BlockDriverState *bs,
                              int64_t sector_num,
1899 1900
                              int nb_sectors, int *pnum,
                              BlockDriverState **file)
1901
{
1902
    return bdrv_get_block_status_above(bs, backing_bs(bs),
1903
                                       sector_num, nb_sectors, pnum, file);
1904 1905
}

1906 1907 1908
int coroutine_fn bdrv_is_allocated(BlockDriverState *bs, int64_t sector_num,
                                   int nb_sectors, int *pnum)
{
1909 1910 1911
    BlockDriverState *file;
    int64_t ret = bdrv_get_block_status(bs, sector_num, nb_sectors, pnum,
                                        &file);
1912 1913 1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961
    if (ret < 0) {
        return ret;
    }
    return !!(ret & BDRV_BLOCK_ALLOCATED);
}

/*
 * Given an image chain: ... -> [BASE] -> [INTER1] -> [INTER2] -> [TOP]
 *
 * Return true if the given sector is allocated in any image between
 * BASE and TOP (inclusive).  BASE can be NULL to check if the given
 * sector is allocated in any image of the chain.  Return false otherwise.
 *
 * 'pnum' is set to the number of sectors (including and immediately following
 *  the specified sector) that are known to be in the same
 *  allocated/unallocated state.
 *
 */
int bdrv_is_allocated_above(BlockDriverState *top,
                            BlockDriverState *base,
                            int64_t sector_num,
                            int nb_sectors, int *pnum)
{
    BlockDriverState *intermediate;
    int ret, n = nb_sectors;

    intermediate = top;
    while (intermediate && intermediate != base) {
        int pnum_inter;
        ret = bdrv_is_allocated(intermediate, sector_num, nb_sectors,
                                &pnum_inter);
        if (ret < 0) {
            return ret;
        } else if (ret) {
            *pnum = pnum_inter;
            return 1;
        }

        /*
         * [sector_num, nb_sectors] is unallocated on top but intermediate
         * might have
         *
         * [sector_num+x, nr_sectors] allocated.
         */
        if (n > pnum_inter &&
            (intermediate == top ||
             sector_num + pnum_inter < intermediate->total_sectors)) {
            n = pnum_inter;
        }

1962
        intermediate = backing_bs(intermediate);
1963 1964 1965 1966 1967 1968
    }

    *pnum = n;
    return 0;
}

1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981
typedef struct BdrvVmstateCo {
    BlockDriverState    *bs;
    QEMUIOVector        *qiov;
    int64_t             pos;
    bool                is_read;
    int                 ret;
} BdrvVmstateCo;

static int coroutine_fn
bdrv_co_rw_vmstate(BlockDriverState *bs, QEMUIOVector *qiov, int64_t pos,
                   bool is_read)
{
    BlockDriver *drv = bs->drv;
1982 1983 1984
    int ret = -ENOTSUP;

    bdrv_inc_in_flight(bs);
1985 1986

    if (!drv) {
1987
        ret = -ENOMEDIUM;
1988
    } else if (drv->bdrv_load_vmstate) {
1989 1990 1991 1992 1993
        if (is_read) {
            ret = drv->bdrv_load_vmstate(bs, qiov, pos);
        } else {
            ret = drv->bdrv_save_vmstate(bs, qiov, pos);
        }
1994
    } else if (bs->file) {
1995
        ret = bdrv_co_rw_vmstate(bs->file->bs, qiov, pos, is_read);
1996 1997
    }

1998 1999
    bdrv_dec_in_flight(bs);
    return ret;
2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021
}

static void coroutine_fn bdrv_co_rw_vmstate_entry(void *opaque)
{
    BdrvVmstateCo *co = opaque;
    co->ret = bdrv_co_rw_vmstate(co->bs, co->qiov, co->pos, co->is_read);
}

static inline int
bdrv_rw_vmstate(BlockDriverState *bs, QEMUIOVector *qiov, int64_t pos,
                bool is_read)
{
    if (qemu_in_coroutine()) {
        return bdrv_co_rw_vmstate(bs, qiov, pos, is_read);
    } else {
        BdrvVmstateCo data = {
            .bs         = bs,
            .qiov       = qiov,
            .pos        = pos,
            .is_read    = is_read,
            .ret        = -EINPROGRESS,
        };
2022
        Coroutine *co = qemu_coroutine_create(bdrv_co_rw_vmstate_entry, &data);
2023

2024
        bdrv_coroutine_enter(bs, co);
2025
        BDRV_POLL_WHILE(bs, data.ret == -EINPROGRESS);
2026 2027 2028 2029
        return data.ret;
    }
}

2030 2031 2032 2033 2034 2035 2036 2037
int bdrv_save_vmstate(BlockDriverState *bs, const uint8_t *buf,
                      int64_t pos, int size)
{
    QEMUIOVector qiov;
    struct iovec iov = {
        .iov_base   = (void *) buf,
        .iov_len    = size,
    };
2038
    int ret;
2039 2040

    qemu_iovec_init_external(&qiov, &iov, 1);
2041 2042 2043 2044 2045 2046 2047

    ret = bdrv_writev_vmstate(bs, &qiov, pos);
    if (ret < 0) {
        return ret;
    }

    return size;
2048 2049 2050 2051
}

int bdrv_writev_vmstate(BlockDriverState *bs, QEMUIOVector *qiov, int64_t pos)
{
2052
    return bdrv_rw_vmstate(bs, qiov, pos, false);
2053 2054 2055 2056
}

int bdrv_load_vmstate(BlockDriverState *bs, uint8_t *buf,
                      int64_t pos, int size)
2057 2058 2059 2060 2061 2062
{
    QEMUIOVector qiov;
    struct iovec iov = {
        .iov_base   = buf,
        .iov_len    = size,
    };
2063
    int ret;
2064 2065

    qemu_iovec_init_external(&qiov, &iov, 1);
2066 2067 2068 2069 2070 2071
    ret = bdrv_readv_vmstate(bs, &qiov, pos);
    if (ret < 0) {
        return ret;
    }

    return size;
2072 2073 2074
}

int bdrv_readv_vmstate(BlockDriverState *bs, QEMUIOVector *qiov, int64_t pos)
2075
{
2076
    return bdrv_rw_vmstate(bs, qiov, pos, true);
2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089
}

/**************************************************************/
/* async I/Os */

void bdrv_aio_cancel(BlockAIOCB *acb)
{
    qemu_aio_ref(acb);
    bdrv_aio_cancel_async(acb);
    while (acb->refcnt > 1) {
        if (acb->aiocb_info->get_aio_context) {
            aio_poll(acb->aiocb_info->get_aio_context(acb), true);
        } else if (acb->bs) {
2090 2091 2092 2093 2094
            /* qemu_aio_ref and qemu_aio_unref are not thread-safe, so
             * assert that we're not using an I/O thread.  Thread-safe
             * code should use bdrv_aio_cancel_async exclusively.
             */
            assert(bdrv_get_aio_context(acb->bs) == qemu_get_aio_context());
2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115
            aio_poll(bdrv_get_aio_context(acb->bs), true);
        } else {
            abort();
        }
    }
    qemu_aio_unref(acb);
}

/* Async version of aio cancel. The caller is not blocked if the acb implements
 * cancel_async, otherwise we do nothing and let the request normally complete.
 * In either case the completion callback must be called. */
void bdrv_aio_cancel_async(BlockAIOCB *acb)
{
    if (acb->aiocb_info->cancel_async) {
        acb->aiocb_info->cancel_async(acb);
    }
}

/**************************************************************/
/* Coroutine block device emulation */

2116 2117 2118 2119 2120 2121
typedef struct FlushCo {
    BlockDriverState *bs;
    int ret;
} FlushCo;


2122 2123
static void coroutine_fn bdrv_flush_co_entry(void *opaque)
{
2124
    FlushCo *rwco = opaque;
2125 2126 2127 2128 2129 2130

    rwco->ret = bdrv_co_flush(rwco->bs);
}

int coroutine_fn bdrv_co_flush(BlockDriverState *bs)
{
2131 2132 2133 2134
    int current_gen;
    int ret = 0;

    bdrv_inc_in_flight(bs);
2135

2136
    if (!bdrv_is_inserted(bs) || bdrv_is_read_only(bs) ||
2137
        bdrv_is_sg(bs)) {
2138
        goto early_exit;
2139 2140
    }

2141
    qemu_co_mutex_lock(&bs->reqs_lock);
2142
    current_gen = atomic_read(&bs->write_gen);
2143 2144

    /* Wait until any previous flushes are completed */
2145
    while (bs->active_flush_req) {
2146
        qemu_co_queue_wait(&bs->flush_queue, &bs->reqs_lock);
2147 2148
    }

2149
    /* Flushes reach this point in nondecreasing current_gen order.  */
2150
    bs->active_flush_req = true;
2151
    qemu_co_mutex_unlock(&bs->reqs_lock);
2152

P
Pavel Dovgalyuk 已提交
2153 2154 2155 2156 2157 2158
    /* Write back all layers by calling one driver function */
    if (bs->drv->bdrv_co_flush) {
        ret = bs->drv->bdrv_co_flush(bs);
        goto out;
    }

2159 2160 2161 2162 2163
    /* Write back cached data to the OS even with cache=unsafe */
    BLKDBG_EVENT(bs->file, BLKDBG_FLUSH_TO_OS);
    if (bs->drv->bdrv_co_flush_to_os) {
        ret = bs->drv->bdrv_co_flush_to_os(bs);
        if (ret < 0) {
F
Fam Zheng 已提交
2164
            goto out;
2165 2166 2167 2168 2169 2170 2171 2172
        }
    }

    /* But don't actually force it to the disk with cache=unsafe */
    if (bs->open_flags & BDRV_O_NO_FLUSH) {
        goto flush_parent;
    }

2173 2174 2175 2176 2177
    /* Check if we really need to flush anything */
    if (bs->flushed_gen == current_gen) {
        goto flush_parent;
    }

2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207
    BLKDBG_EVENT(bs->file, BLKDBG_FLUSH_TO_DISK);
    if (bs->drv->bdrv_co_flush_to_disk) {
        ret = bs->drv->bdrv_co_flush_to_disk(bs);
    } else if (bs->drv->bdrv_aio_flush) {
        BlockAIOCB *acb;
        CoroutineIOCompletion co = {
            .coroutine = qemu_coroutine_self(),
        };

        acb = bs->drv->bdrv_aio_flush(bs, bdrv_co_io_em_complete, &co);
        if (acb == NULL) {
            ret = -EIO;
        } else {
            qemu_coroutine_yield();
            ret = co.ret;
        }
    } else {
        /*
         * Some block drivers always operate in either writethrough or unsafe
         * mode and don't support bdrv_flush therefore. Usually qemu doesn't
         * know how the server works (because the behaviour is hardcoded or
         * depends on server-side configuration), so we can't ensure that
         * everything is safe on disk. Returning an error doesn't work because
         * that would break guests even if the server operates in writethrough
         * mode.
         *
         * Let's hope the user knows what he's doing.
         */
        ret = 0;
    }
2208

2209
    if (ret < 0) {
F
Fam Zheng 已提交
2210
        goto out;
2211 2212 2213 2214 2215 2216
    }

    /* Now flush the underlying protocol.  It will also have BDRV_O_NO_FLUSH
     * in the case of cache=unsafe, so there are no useless flushes.
     */
flush_parent:
F
Fam Zheng 已提交
2217 2218
    ret = bs->file ? bdrv_co_flush(bs->file->bs) : 0;
out:
2219
    /* Notify any pending flushes that we have completed */
2220 2221 2222
    if (ret == 0) {
        bs->flushed_gen = current_gen;
    }
2223 2224

    qemu_co_mutex_lock(&bs->reqs_lock);
2225
    bs->active_flush_req = false;
2226 2227
    /* Return value is ignored - it's ok if wait queue is empty */
    qemu_co_queue_next(&bs->flush_queue);
2228
    qemu_co_mutex_unlock(&bs->reqs_lock);
2229

2230
early_exit:
2231
    bdrv_dec_in_flight(bs);
F
Fam Zheng 已提交
2232
    return ret;
2233 2234 2235 2236 2237
}

int bdrv_flush(BlockDriverState *bs)
{
    Coroutine *co;
2238
    FlushCo flush_co = {
2239 2240 2241 2242 2243 2244
        .bs = bs,
        .ret = NOT_DONE,
    };

    if (qemu_in_coroutine()) {
        /* Fast-path if already in coroutine context */
2245
        bdrv_flush_co_entry(&flush_co);
2246
    } else {
2247
        co = qemu_coroutine_create(bdrv_flush_co_entry, &flush_co);
2248
        bdrv_coroutine_enter(bs, co);
P
Paolo Bonzini 已提交
2249
        BDRV_POLL_WHILE(bs, flush_co.ret == NOT_DONE);
2250 2251
    }

2252
    return flush_co.ret;
2253 2254 2255 2256
}

typedef struct DiscardCo {
    BlockDriverState *bs;
2257
    int64_t offset;
2258
    int bytes;
2259 2260
    int ret;
} DiscardCo;
2261
static void coroutine_fn bdrv_pdiscard_co_entry(void *opaque)
2262 2263 2264
{
    DiscardCo *rwco = opaque;

2265
    rwco->ret = bdrv_co_pdiscard(rwco->bs, rwco->offset, rwco->bytes);
2266 2267
}

2268
int coroutine_fn bdrv_co_pdiscard(BlockDriverState *bs, int64_t offset,
2269
                                  int bytes)
2270
{
F
Fam Zheng 已提交
2271
    BdrvTrackedRequest req;
2272
    int max_pdiscard, ret;
2273
    int head, tail, align;
2274 2275 2276 2277 2278

    if (!bs->drv) {
        return -ENOMEDIUM;
    }

2279
    ret = bdrv_check_byte_request(bs, offset, bytes);
2280 2281 2282
    if (ret < 0) {
        return ret;
    } else if (bs->read_only) {
2283
        return -EPERM;
2284
    }
2285
    assert(!(bs->open_flags & BDRV_O_INACTIVE));
2286 2287 2288 2289 2290 2291

    /* Do nothing if disabled.  */
    if (!(bs->open_flags & BDRV_O_UNMAP)) {
        return 0;
    }

E
Eric Blake 已提交
2292
    if (!bs->drv->bdrv_co_pdiscard && !bs->drv->bdrv_aio_pdiscard) {
2293 2294 2295
        return 0;
    }

2296 2297 2298 2299 2300
    /* Discard is advisory, but some devices track and coalesce
     * unaligned requests, so we must pass everything down rather than
     * round here.  Still, most devices will just silently ignore
     * unaligned requests (by returning -ENOTSUP), so we must fragment
     * the request accordingly.  */
E
Eric Blake 已提交
2301
    align = MAX(bs->bl.pdiscard_alignment, bs->bl.request_alignment);
2302 2303
    assert(align % bs->bl.request_alignment == 0);
    head = offset % align;
2304
    tail = (offset + bytes) % align;
2305

2306
    bdrv_inc_in_flight(bs);
2307
    tracked_request_begin(&req, bs, offset, bytes, BDRV_TRACKED_DISCARD);
2308

2309 2310 2311 2312 2313
    ret = notifier_with_return_list_notify(&bs->before_write_notifiers, &req);
    if (ret < 0) {
        goto out;
    }

2314 2315
    max_pdiscard = QEMU_ALIGN_DOWN(MIN_NON_ZERO(bs->bl.max_pdiscard, INT_MAX),
                                   align);
2316
    assert(max_pdiscard >= bs->bl.request_alignment);
2317

2318
    while (bytes > 0) {
2319
        int ret;
2320
        int num = bytes;
2321 2322 2323

        if (head) {
            /* Make small requests to get to alignment boundaries. */
2324
            num = MIN(bytes, align - head);
2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343
            if (!QEMU_IS_ALIGNED(num, bs->bl.request_alignment)) {
                num %= bs->bl.request_alignment;
            }
            head = (head + num) % align;
            assert(num < max_pdiscard);
        } else if (tail) {
            if (num > align) {
                /* Shorten the request to the last aligned cluster.  */
                num -= tail;
            } else if (!QEMU_IS_ALIGNED(tail, bs->bl.request_alignment) &&
                       tail > bs->bl.request_alignment) {
                tail %= bs->bl.request_alignment;
                num -= tail;
            }
        }
        /* limit request size */
        if (num > max_pdiscard) {
            num = max_pdiscard;
        }
2344

2345 2346
        if (bs->drv->bdrv_co_pdiscard) {
            ret = bs->drv->bdrv_co_pdiscard(bs, offset, num);
2347 2348 2349 2350 2351 2352
        } else {
            BlockAIOCB *acb;
            CoroutineIOCompletion co = {
                .coroutine = qemu_coroutine_self(),
            };

2353 2354
            acb = bs->drv->bdrv_aio_pdiscard(bs, offset, num,
                                             bdrv_co_io_em_complete, &co);
2355
            if (acb == NULL) {
F
Fam Zheng 已提交
2356 2357
                ret = -EIO;
                goto out;
2358 2359 2360 2361 2362 2363
            } else {
                qemu_coroutine_yield();
                ret = co.ret;
            }
        }
        if (ret && ret != -ENOTSUP) {
F
Fam Zheng 已提交
2364
            goto out;
2365 2366
        }

2367
        offset += num;
2368
        bytes -= num;
2369
    }
F
Fam Zheng 已提交
2370 2371
    ret = 0;
out:
2372
    atomic_inc(&bs->write_gen);
2373 2374
    bdrv_set_dirty(bs, req.offset >> BDRV_SECTOR_BITS,
                   req.bytes >> BDRV_SECTOR_BITS);
F
Fam Zheng 已提交
2375
    tracked_request_end(&req);
2376
    bdrv_dec_in_flight(bs);
F
Fam Zheng 已提交
2377
    return ret;
2378 2379
}

2380
int bdrv_pdiscard(BlockDriverState *bs, int64_t offset, int bytes)
2381 2382 2383 2384
{
    Coroutine *co;
    DiscardCo rwco = {
        .bs = bs,
2385
        .offset = offset,
2386
        .bytes = bytes,
2387 2388 2389 2390 2391
        .ret = NOT_DONE,
    };

    if (qemu_in_coroutine()) {
        /* Fast-path if already in coroutine context */
2392
        bdrv_pdiscard_co_entry(&rwco);
2393
    } else {
2394
        co = qemu_coroutine_create(bdrv_pdiscard_co_entry, &rwco);
2395
        bdrv_coroutine_enter(bs, co);
P
Paolo Bonzini 已提交
2396
        BDRV_POLL_WHILE(bs, rwco.ret == NOT_DONE);
2397 2398 2399 2400 2401
    }

    return rwco.ret;
}

2402
int bdrv_co_ioctl(BlockDriverState *bs, int req, void *buf)
2403 2404
{
    BlockDriver *drv = bs->drv;
2405 2406 2407 2408
    CoroutineIOCompletion co = {
        .coroutine = qemu_coroutine_self(),
    };
    BlockAIOCB *acb;
2409

2410
    bdrv_inc_in_flight(bs);
2411
    if (!drv || (!drv->bdrv_aio_ioctl && !drv->bdrv_co_ioctl)) {
2412 2413 2414 2415
        co.ret = -ENOTSUP;
        goto out;
    }

2416 2417 2418 2419 2420 2421 2422 2423 2424
    if (drv->bdrv_co_ioctl) {
        co.ret = drv->bdrv_co_ioctl(bs, req, buf);
    } else {
        acb = drv->bdrv_aio_ioctl(bs, req, buf, bdrv_co_io_em_complete, &co);
        if (!acb) {
            co.ret = -ENOTSUP;
            goto out;
        }
        qemu_coroutine_yield();
2425 2426
    }
out:
2427
    bdrv_dec_in_flight(bs);
2428 2429 2430
    return co.ret;
}

2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470
void *qemu_blockalign(BlockDriverState *bs, size_t size)
{
    return qemu_memalign(bdrv_opt_mem_align(bs), size);
}

void *qemu_blockalign0(BlockDriverState *bs, size_t size)
{
    return memset(qemu_blockalign(bs, size), 0, size);
}

void *qemu_try_blockalign(BlockDriverState *bs, size_t size)
{
    size_t align = bdrv_opt_mem_align(bs);

    /* Ensure that NULL is never returned on success */
    assert(align > 0);
    if (size == 0) {
        size = align;
    }

    return qemu_try_memalign(align, size);
}

void *qemu_try_blockalign0(BlockDriverState *bs, size_t size)
{
    void *mem = qemu_try_blockalign(bs, size);

    if (mem) {
        memset(mem, 0, size);
    }

    return mem;
}

/*
 * Check if all memory in this vector is sector aligned.
 */
bool bdrv_qiov_is_aligned(BlockDriverState *bs, QEMUIOVector *qiov)
{
    int i;
2471
    size_t alignment = bdrv_min_mem_align(bs);
2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492

    for (i = 0; i < qiov->niov; i++) {
        if ((uintptr_t) qiov->iov[i].iov_base % alignment) {
            return false;
        }
        if (qiov->iov[i].iov_len % alignment) {
            return false;
        }
    }

    return true;
}

void bdrv_add_before_write_notifier(BlockDriverState *bs,
                                    NotifierWithReturn *notifier)
{
    notifier_with_return_list_add(&bs->before_write_notifiers, notifier);
}

void bdrv_io_plug(BlockDriverState *bs)
{
2493 2494 2495 2496 2497 2498
    BdrvChild *child;

    QLIST_FOREACH(child, &bs->children, next) {
        bdrv_io_plug(child->bs);
    }

2499
    if (atomic_fetch_inc(&bs->io_plugged) == 0) {
2500 2501 2502 2503
        BlockDriver *drv = bs->drv;
        if (drv && drv->bdrv_io_plug) {
            drv->bdrv_io_plug(bs);
        }
2504 2505 2506 2507 2508
    }
}

void bdrv_io_unplug(BlockDriverState *bs)
{
2509 2510 2511
    BdrvChild *child;

    assert(bs->io_plugged);
2512
    if (atomic_fetch_dec(&bs->io_plugged) == 1) {
2513 2514 2515 2516 2517 2518 2519 2520
        BlockDriver *drv = bs->drv;
        if (drv && drv->bdrv_io_unplug) {
            drv->bdrv_io_unplug(bs);
        }
    }

    QLIST_FOREACH(child, &bs->children, next) {
        bdrv_io_unplug(child->bs);
2521 2522
    }
}