return;
}
+ ratelimit_destroy(&s->rate_limit);
bdrv_release_dirty_bitmap(s->copy_bitmap);
shres_destroy(s->mem);
g_free(s);
s->copy_size = MAX(s->cluster_size, BLOCK_COPY_MAX_BUFFER);
}
+ ratelimit_init(&s->rate_limit);
QLIST_INIT(&s->tasks);
QLIST_INIT(&s->calls);
block_job_remove_all_bdrv(bjob);
blk_unref(bjob->blk);
+ ratelimit_destroy(&bjob->limit);
error_free(bjob->blocker);
}
assert(job->job.driver->free == &block_job_free);
assert(job->job.driver->user_resume == &block_job_user_resume);
+ ratelimit_init(&job->limit);
+
job->blk = blk;
job->finalize_cancelled_notifier.notify = block_job_event_cancelled;
#ifndef QEMU_RATELIMIT_H
#define QEMU_RATELIMIT_H
+#include "qemu/lockable.h"
#include "qemu/timer.h"
typedef struct {
+ QemuMutex lock;
int64_t slice_start_time;
int64_t slice_end_time;
uint64_t slice_quota;
int64_t now = qemu_clock_get_ns(QEMU_CLOCK_REALTIME);
double delay_slices;
+ QEMU_LOCK_GUARD(&limit->lock);
assert(limit->slice_quota && limit->slice_ns);
if (limit->slice_end_time < now) {
return limit->slice_end_time - now;
}
+static inline void ratelimit_init(RateLimit *limit)
+{
+ qemu_mutex_init(&limit->lock);
+}
+
+static inline void ratelimit_destroy(RateLimit *limit)
+{
+ qemu_mutex_destroy(&limit->lock);
+}
+
static inline void ratelimit_set_speed(RateLimit *limit, uint64_t speed,
uint64_t slice_ns)
{
+ QEMU_LOCK_GUARD(&limit->lock);
limit->slice_ns = slice_ns;
limit->slice_quota = MAX(((double)speed * slice_ns) / 1000000000ULL, 1);
}