{
int ret;
+ if (f->filetype == FIO_TYPE_PIPE) {
+ log_err("zonemode=zbd does not support pipes\n");
+ return -EINVAL;
+ }
+
+ /* If regular file, always emulate zones inside the file. */
+ if (f->filetype == FIO_TYPE_FILE) {
+ *model = ZBD_NONE;
+ return 0;
+ }
+
if (td->io_ops && td->io_ops->get_zoned_model)
ret = td->io_ops->get_zoned_model(td, f, model);
else
return ret;
}
+/**
+ * zbd_get_max_open_zones - Get the maximum number of open zones
+ * @td: FIO thread data
+ * @f: FIO file for which to get max open zones
+ * @max_open_zones: Upon success, result will be stored here.
+ *
+ * A @max_open_zones value set to zero means no limit.
+ *
+ * Returns 0 upon success and a negative error code upon failure.
+ */
+int zbd_get_max_open_zones(struct thread_data *td, struct fio_file *f,
+ unsigned int *max_open_zones)
+{
+ int ret;
+
+ if (td->io_ops && td->io_ops->get_max_open_zones)
+ ret = td->io_ops->get_max_open_zones(td, f, max_open_zones);
+ else
+ ret = blkzoned_get_max_open_zones(td, f, max_open_zones);
+ if (ret < 0) {
+ td_verror(td, errno, "get max open zones failed");
+ log_err("%s: get max open zones failed (%d).\n",
+ f->file_name, errno);
+ }
+
+ return ret;
+}
+
/**
* zbd_zone_idx - convert an offset into a zone number
* @f: file pointer.
int i;
if (zone_size == 0) {
- log_err("%s: Specifying the zone size is mandatory for regular block devices with --zonemode=zbd\n\n",
+ log_err("%s: Specifying the zone size is mandatory for regular file/block device with --zonemode=zbd\n\n",
f->file_name);
return 1;
}
return 1;
}
+ if (f->real_file_size < zone_size) {
+ log_err("%s: file/device size %"PRIu64" is smaller than zone size %"PRIu64"\n",
+ f->file_name, f->real_file_size, zone_size);
+ return -EINVAL;
+ }
+
nr_zones = (f->real_file_size + zone_size - 1) / zone_size;
zbd_info = scalloc(1, sizeof(*zbd_info) +
(nr_zones + 1) * sizeof(zbd_info->zone_info[0]));
return ret;
}
+static int zbd_set_max_open_zones(struct thread_data *td, struct fio_file *f)
+{
+ struct zoned_block_device_info *zbd = f->zbd_info;
+ unsigned int max_open_zones;
+ int ret;
+
+ if (zbd->model != ZBD_HOST_MANAGED || td->o.ignore_zone_limits) {
+ /* Only host-managed devices have a max open limit */
+ zbd->max_open_zones = td->o.max_open_zones;
+ goto out;
+ }
+
+ /* If host-managed, get the max open limit */
+ ret = zbd_get_max_open_zones(td, f, &max_open_zones);
+ if (ret)
+ return ret;
+
+ if (!max_open_zones) {
+ /* No device limit */
+ zbd->max_open_zones = td->o.max_open_zones;
+ } else if (!td->o.max_open_zones) {
+ /* No user limit. Set limit to device limit */
+ zbd->max_open_zones = max_open_zones;
+ } else if (td->o.max_open_zones <= max_open_zones) {
+ /* Both user limit and dev limit. User limit not too large */
+ zbd->max_open_zones = td->o.max_open_zones;
+ } else {
+ /* Both user limit and dev limit. User limit too large */
+ td_verror(td, EINVAL,
+ "Specified --max_open_zones is too large");
+ log_err("Specified --max_open_zones (%d) is larger than max (%u)\n",
+ td->o.max_open_zones, max_open_zones);
+ return -EINVAL;
+ }
+
+out:
+ /* Ensure that the limit is not larger than FIO's internal limit */
+ zbd->max_open_zones = min_not_zero(zbd->max_open_zones,
+ (uint32_t) ZBD_MAX_OPEN_ZONES);
+ dprint(FD_ZBD, "%s: using max open zones limit: %"PRIu32"\n",
+ f->file_name, zbd->max_open_zones);
+
+ return 0;
+}
+
/*
* Allocate zone information and store it into f->zbd_info if zonemode=zbd.
*
return ret;
switch (zbd_model) {
- case ZBD_IGNORE:
- return 0;
case ZBD_HOST_AWARE:
case ZBD_HOST_MANAGED:
ret = parse_zone_info(td, f);
+ if (ret)
+ return ret;
break;
case ZBD_NONE:
ret = init_zone_info(td, f);
+ if (ret)
+ return ret;
break;
default:
td_verror(td, EINVAL, "Unsupported zoned model");
return -EINVAL;
}
- if (ret == 0) {
- f->zbd_info->model = zbd_model;
- f->zbd_info->max_open_zones = td->o.max_open_zones;
+ assert(f->zbd_info);
+ f->zbd_info->model = zbd_model;
+
+ ret = zbd_set_max_open_zones(td, f);
+ if (ret) {
+ zbd_free_zone_info(f);
+ return ret;
}
- return ret;
+
+ return 0;
}
void zbd_free_zone_info(struct fio_file *f)
struct fio_zone_info *z;
int zi;
- if (!zbd)
- continue;
+ assert(zbd);
f->min_zone = zbd_zone_idx(f, f->file_offset);
f->max_zone = zbd_zone_idx(f, f->file_offset + f->io_size);
if (zbd_is_seq_job(f))
assert(f->min_zone < f->max_zone);
- zbd->max_open_zones = zbd->max_open_zones ?: ZBD_MAX_OPEN_ZONES;
-
if (td->o.max_open_zones > 0 &&
zbd->max_open_zones != td->o.max_open_zones) {
log_err("Different 'max_open_zones' values\n");
* @f: fio file for which to reset zones
* @zb: first zone to reset.
* @ze: first zone not to reset.
- * @all_zones: whether to reset all zones or only those zones for which the
- * write pointer is not a multiple of td->o.min_bs[DDIR_WRITE].
*/
static int zbd_reset_zones(struct thread_data *td, struct fio_file *f,
struct fio_zone_info *const zb,
- struct fio_zone_info *const ze, bool all_zones)
+ struct fio_zone_info *const ze)
{
struct fio_zone_info *z;
const uint32_t min_bs = td->o.min_bs[DDIR_WRITE];
- bool reset_wp;
int res = 0;
assert(min_bs);
if (!z->has_wp)
continue;
zone_lock(td, f, z);
- if (all_zones) {
- pthread_mutex_lock(&f->zbd_info->mutex);
- zbd_close_zone(td, f, nz);
- pthread_mutex_unlock(&f->zbd_info->mutex);
-
- reset_wp = z->wp != z->start;
- } else {
- reset_wp = z->wp % min_bs != 0;
- }
- if (reset_wp) {
+ pthread_mutex_lock(&f->zbd_info->mutex);
+ zbd_close_zone(td, f, nz);
+ pthread_mutex_unlock(&f->zbd_info->mutex);
+ if (z->wp != z->start) {
dprint(FD_ZBD, "%s: resetting zone %u\n",
f->file_name, zbd_zone_nr(f, z));
if (zbd_reset_zone(td, f, z) < 0)
* writing any data to avoid that a zone reset has to be issued while
* writing data, which causes data loss.
*/
- zbd_reset_zones(td, f, zb, ze, td->o.verify != VERIFY_NONE &&
- td->runstate != TD_VERIFYING);
+ if (td->o.verify != VERIFY_NONE && td->runstate != TD_VERIFYING)
+ zbd_reset_zones(td, f, zb, ze);
zbd_reset_write_cnt(td, f);
}
uint32_t zone_idx;
uint64_t zone_end;
- if (!zbd_info)
- return;
+ assert(zbd_info);
zone_idx = zbd_zone_idx(f, io_u->offset);
assert(zone_idx < zbd_info->nr_zones);
struct fio_zone_info *z;
uint32_t zone_idx;
- if (!zbd_info)
- return;
+ assert(zbd_info);
zone_idx = zbd_zone_idx(f, io_u->offset);
assert(zone_idx < zbd_info->nr_zones);
assert(td->o.zone_mode == ZONE_MODE_ZBD);
assert(td->o.zone_size);
+ assert(f->zbd_info);
zone_idx = zbd_zone_idx(f, f->last_pos[ddir]);
z = get_zone(f, zone_idx);
* devices with all empty zones. Overwrite the first I/O direction as
* write to make sure data to read exists.
*/
+ assert(io_u->file->zbd_info);
if (ddir != DDIR_READ || !td_rw(td))
return ddir;
uint64_t new_len;
int64_t range;
- if (!f->zbd_info)
- return io_u_accept;
-
+ assert(f->zbd_info);
assert(min_bs);
assert(is_valid_offset(f, io_u->offset));
assert(io_u->buflen);