{
char *io, *agg, *min, *max;
char *ioalt, *aggalt, *minalt, *maxalt;
- uint64_t io_mix = 0, agg_mix = 0, min_mix = -1, max_mix = 0, min_run = -1, max_run = 0;
- int i;
+ uint64_t io_mix = 0, agg_mix = 0, min_mix = -1, max_mix = 0;
+ uint64_t min_run = -1, max_run = 0;
const int i2p = is_power_of_2(rs->kb_base);
+ int i;
for (i = 0; i < DDIR_RWDIR_CNT; i++) {
if (!rs->max_run[i])
free(minalt);
free(maxalt);
}
-
+
/* Need to aggregate statisitics to show mixed values */
- if (rs->unified_rw_rep == UNIFIED_BOTH)
+ if (rs->unified_rw_rep == UNIFIED_BOTH)
show_mixed_group_stats(rs, out);
}
free(maxp);
}
-static double convert_agg_kbytes_percent(struct group_run_stats *rs, int ddir, int mean)
-{
- double p_of_agg = 100.0;
- if (rs && rs->agg[ddir] > 1024) {
- p_of_agg = mean * 100.0 / (double) (rs->agg[ddir] / 1024.0);
-
- if (p_of_agg > 100.0)
- p_of_agg = 100.0;
- }
- return p_of_agg;
-}
-
-static void show_mixed_ddir_status(struct group_run_stats *rs, struct thread_stat *ts,
- struct buf_output *out)
+static struct thread_stat *gen_mixed_ddir_stats_from_ts(struct thread_stat *ts)
{
- unsigned long runt;
- unsigned long long min, max, bw, iops;
- double mean, dev;
- char *io_p, *bw_p, *bw_p_alt, *iops_p, *post_st = NULL;
struct thread_stat *ts_lcl;
- int i2p;
- int ddir = 0;
-
- /* Handle aggregation of Reads (ddir = 0), Writes (ddir = 1), and Trims (ddir = 2) */
+ /*
+ * Handle aggregation of Reads (ddir = 0), Writes (ddir = 1), and
+ * Trims (ddir = 2)
+ */
ts_lcl = malloc(sizeof(struct thread_stat));
- memset((void *)ts_lcl, 0, sizeof(struct thread_stat));
- ts_lcl->unified_rw_rep = UNIFIED_MIXED; /* calculate mixed stats */
- init_thread_stat_min_vals(ts_lcl);
-
- sum_thread_stats(ts_lcl, ts, 1);
-
- assert(ddir_rw(ddir));
-
- if (!ts_lcl->runtime[ddir])
- return;
-
- i2p = is_power_of_2(rs->kb_base);
- runt = ts_lcl->runtime[ddir];
-
- bw = (1000 * ts_lcl->io_bytes[ddir]) / runt;
- io_p = num2str(ts_lcl->io_bytes[ddir], ts->sig_figs, 1, i2p, N2S_BYTE);
- bw_p = num2str(bw, ts->sig_figs, 1, i2p, ts->unit_base);
- bw_p_alt = num2str(bw, ts->sig_figs, 1, !i2p, ts->unit_base);
-
- iops = (1000 * ts_lcl->total_io_u[ddir]) / runt;
- iops_p = num2str(iops, ts->sig_figs, 1, 0, N2S_NONE);
-
- log_buf(out, " mixed: IOPS=%s, BW=%s (%s)(%s/%llumsec)%s\n",
- iops_p, bw_p, bw_p_alt, io_p,
- (unsigned long long) ts_lcl->runtime[ddir],
- post_st ? : "");
-
- free(post_st);
- free(io_p);
- free(bw_p);
- free(bw_p_alt);
- free(iops_p);
-
- if (calc_lat(&ts_lcl->slat_stat[ddir], &min, &max, &mean, &dev))
- display_lat("slat", min, max, mean, dev, out);
- if (calc_lat(&ts_lcl->clat_stat[ddir], &min, &max, &mean, &dev))
- display_lat("clat", min, max, mean, dev, out);
- if (calc_lat(&ts_lcl->lat_stat[ddir], &min, &max, &mean, &dev))
- display_lat(" lat", min, max, mean, dev, out);
- if (calc_lat(&ts_lcl->clat_high_prio_stat[ddir], &min, &max, &mean, &dev)) {
- display_lat(ts_lcl->lat_percentiles ? "high prio_lat" : "high prio_clat",
- min, max, mean, dev, out);
- if (calc_lat(&ts_lcl->clat_low_prio_stat[ddir], &min, &max, &mean, &dev))
- display_lat(ts_lcl->lat_percentiles ? "low prio_lat" : "low prio_clat",
- min, max, mean, dev, out);
- }
-
- if (ts->slat_percentiles && ts_lcl->slat_stat[ddir].samples > 0)
- show_clat_percentiles(ts_lcl->io_u_plat[FIO_SLAT][ddir],
- ts_lcl->slat_stat[ddir].samples,
- ts->percentile_list,
- ts->percentile_precision, "slat", out);
- if (ts->clat_percentiles && ts_lcl->clat_stat[ddir].samples > 0)
- show_clat_percentiles(ts_lcl->io_u_plat[FIO_CLAT][ddir],
- ts_lcl->clat_stat[ddir].samples,
- ts->percentile_list,
- ts->percentile_precision, "clat", out);
- if (ts->lat_percentiles && ts_lcl->lat_stat[ddir].samples > 0)
- show_clat_percentiles(ts_lcl->io_u_plat[FIO_LAT][ddir],
- ts_lcl->lat_stat[ddir].samples,
- ts->percentile_list,
- ts->percentile_precision, "lat", out);
-
- if (ts->clat_percentiles || ts->lat_percentiles) {
- const char *name = ts->lat_percentiles ? "lat" : "clat";
- char prio_name[32];
- uint64_t samples;
-
- if (ts->lat_percentiles)
- samples = ts_lcl->lat_stat[ddir].samples;
- else
- samples = ts_lcl->clat_stat[ddir].samples;
-
- /* Only print this if some high and low priority stats were collected */
- if (ts_lcl->clat_high_prio_stat[ddir].samples > 0 &&
- ts_lcl->clat_low_prio_stat[ddir].samples > 0)
- {
- sprintf(prio_name, "high prio (%.2f%%) %s",
- 100. * (double) ts_lcl->clat_high_prio_stat[ddir].samples / (double) samples,
- name);
- show_clat_percentiles(ts_lcl->io_u_plat_high_prio[ddir],
- ts_lcl->clat_high_prio_stat[ddir].samples,
- ts->percentile_list,
- ts->percentile_precision, prio_name, out);
-
- sprintf(prio_name, "low prio (%.2f%%) %s",
- 100. * (double) ts_lcl->clat_low_prio_stat[ddir].samples / (double) samples,
- name);
- show_clat_percentiles(ts_lcl->io_u_plat_low_prio[ddir],
- ts_lcl->clat_low_prio_stat[ddir].samples,
- ts->percentile_list,
- ts->percentile_precision, prio_name, out);
- }
+ if (!ts_lcl) {
+ log_err("fio: failed to allocate local thread stat\n");
+ return NULL;
}
- if (calc_lat(&ts_lcl->bw_stat[ddir], &min, &max, &mean, &dev)) {
- double p_of_agg = 100.0, fkb_base = (double)rs->kb_base;
- const char *bw_str;
+ init_thread_stat(ts_lcl);
- if ((rs->unit_base == 1) && i2p)
- bw_str = "Kibit";
- else if (rs->unit_base == 1)
- bw_str = "kbit";
- else if (i2p)
- bw_str = "KiB";
- else
- bw_str = "kB";
+ /* calculate mixed stats */
+ ts_lcl->unified_rw_rep = UNIFIED_MIXED;
+ ts_lcl->lat_percentiles = ts->lat_percentiles;
+ ts_lcl->clat_percentiles = ts->clat_percentiles;
+ ts_lcl->slat_percentiles = ts->slat_percentiles;
+ ts_lcl->percentile_precision = ts->percentile_precision;
+ memcpy(ts_lcl->percentile_list, ts->percentile_list, sizeof(ts->percentile_list));
- p_of_agg = convert_agg_kbytes_percent(rs, ddir, mean);
+ sum_thread_stats(ts_lcl, ts);
- if (rs->unit_base == 1) {
- min *= 8.0;
- max *= 8.0;
- mean *= 8.0;
- dev *= 8.0;
- }
+ return ts_lcl;
+}
- if (mean > fkb_base * fkb_base) {
- min /= fkb_base;
- max /= fkb_base;
- mean /= fkb_base;
- dev /= fkb_base;
- bw_str = (rs->unit_base == 1 ? "Mibit" : "MiB");
- }
+static double convert_agg_kbytes_percent(struct group_run_stats *rs,
+ enum fio_ddir ddir, int mean)
+{
+ double p_of_agg = 100.0;
+ if (rs && rs->agg[ddir] > 1024) {
+ p_of_agg = mean * 100.0 / (double) (rs->agg[ddir] / 1024.0);
- log_buf(out, " bw (%5s/s): min=%5llu, max=%5llu, per=%3.2f%%, "
- "avg=%5.02f, stdev=%5.02f, samples=%" PRIu64 "\n",
- bw_str, min, max, p_of_agg, mean, dev,
- (&ts_lcl->bw_stat[ddir])->samples);
- }
- if (calc_lat(&ts_lcl->iops_stat[ddir], &min, &max, &mean, &dev)) {
- log_buf(out, " iops : min=%5llu, max=%5llu, "
- "avg=%5.02f, stdev=%5.02f, samples=%" PRIu64 "\n",
- min, max, mean, dev, (&ts_lcl->iops_stat[ddir])->samples);
+ if (p_of_agg > 100.0)
+ p_of_agg = 100.0;
}
-
- free(ts_lcl);
+ return p_of_agg;
}
static void show_ddir_status(struct group_run_stats *rs, struct thread_stat *ts,
- int ddir, struct buf_output *out)
+ enum fio_ddir ddir, struct buf_output *out)
{
unsigned long runt;
unsigned long long min, max, bw, iops;
}
}
+static void show_mixed_ddir_status(struct group_run_stats *rs,
+ struct thread_stat *ts,
+ struct buf_output *out)
+{
+ struct thread_stat *ts_lcl = gen_mixed_ddir_stats_from_ts(ts);
+
+ if (ts_lcl)
+ show_ddir_status(rs, ts_lcl, DDIR_READ, out);
+
+ free(ts_lcl);
+}
+
static bool show_lat(double *io_u_lat, int nr, const char **ranges,
const char *msg, struct buf_output *out)
{
if (!is_running_backend())
return;
- if (flist_empty(&disk_list)) {
+ if (flist_empty(&disk_list))
return;
- }
if ((output_format & FIO_OUTPUT_JSON) && parent)
do_json = true;
if (!terse && !do_json)
log_buf(out, "\nDisk stats (read/write):\n");
- if (do_json)
+ if (do_json) {
json_object_add_disk_utils(parent, &disk_list);
- else if (output_format & ~(FIO_OUTPUT_JSON | FIO_OUTPUT_JSON_PLUS)) {
+ } else if (output_format & ~(FIO_OUTPUT_JSON | FIO_OUTPUT_JSON_PLUS)) {
flist_for_each(entry, &disk_list) {
du = flist_entry(entry, struct disk_util, list);
}
static void show_ddir_status_terse(struct thread_stat *ts,
- struct group_run_stats *rs, int ddir,
- int ver, struct buf_output *out)
+ struct group_run_stats *rs,
+ enum fio_ddir ddir, int ver,
+ struct buf_output *out)
{
unsigned long long min, max, minv, maxv, bw, iops;
unsigned long long *ovals = NULL;
else
log_buf(out, ";%llu;%llu;%f;%f", 0ULL, 0ULL, 0.0, 0.0);
- if (ts->lat_percentiles)
+ if (ts->lat_percentiles) {
len = calc_clat_percentiles(ts->io_u_plat[FIO_LAT][ddir],
ts->lat_stat[ddir].samples,
ts->percentile_list, &ovals, &maxv,
&minv);
- else if (ts->clat_percentiles)
+ } else if (ts->clat_percentiles) {
len = calc_clat_percentiles(ts->io_u_plat[FIO_CLAT][ddir],
ts->clat_stat[ddir].samples,
ts->percentile_list, &ovals, &maxv,
&minv);
- else
+ } else {
len = 0;
-
+ }
+
for (i = 0; i < FIO_IO_U_LIST_MAX_LEN; i++) {
if (i >= len) {
log_buf(out, ";0%%=0");
}
log_buf(out, ";%llu;%llu;%f%%;%f;%f", min, max, p_of_agg, mean, dev);
- } else
+ } else {
log_buf(out, ";%llu;%llu;%f%%;%f;%f", 0ULL, 0ULL, 0.0, 0.0, 0.0);
+ }
if (ver == 5) {
if (bw_stat)
struct group_run_stats *rs,
int ver, struct buf_output *out)
{
- struct thread_stat *ts_lcl;
+ struct thread_stat *ts_lcl = gen_mixed_ddir_stats_from_ts(ts);
- /* Handle aggregation of Reads (ddir = 0), Writes (ddir = 1), and Trims (ddir = 2) */
- ts_lcl = malloc(sizeof(struct thread_stat));
- memset((void *)ts_lcl, 0, sizeof(struct thread_stat));
- ts_lcl->unified_rw_rep = UNIFIED_MIXED; /* calculate mixed stats */
- init_thread_stat_min_vals(ts_lcl);
- ts_lcl->lat_percentiles = ts->lat_percentiles;
- ts_lcl->clat_percentiles = ts->clat_percentiles;
- ts_lcl->slat_percentiles = ts->slat_percentiles;
- ts_lcl->percentile_precision = ts->percentile_precision;
- memcpy(ts_lcl->percentile_list, ts->percentile_list, sizeof(ts->percentile_list));
-
- sum_thread_stats(ts_lcl, ts, 1);
+ if (ts_lcl)
+ show_ddir_status_terse(ts_lcl, rs, DDIR_READ, ver, out);
- /* add the aggregated stats to json parent */
- show_ddir_status_terse(ts_lcl, rs, DDIR_READ, ver, out);
free(ts_lcl);
}
-static struct json_object *add_ddir_lat_json(struct thread_stat *ts, uint32_t percentiles,
- struct io_stat *lat_stat, uint64_t *io_u_plat)
+static struct json_object *add_ddir_lat_json(struct thread_stat *ts,
+ uint32_t percentiles,
+ struct io_stat *lat_stat,
+ uint64_t *io_u_plat)
{
char buf[120];
double mean, dev;
}
static void add_ddir_status_json(struct thread_stat *ts,
- struct group_run_stats *rs, int ddir, struct json_object *parent)
+ struct group_run_stats *rs, enum fio_ddir ddir,
+ struct json_object *parent)
{
unsigned long long min, max;
unsigned long long bw_bytes, bw;
static void add_mixed_ddir_status_json(struct thread_stat *ts,
struct group_run_stats *rs, struct json_object *parent)
{
- struct thread_stat *ts_lcl;
-
- /* Handle aggregation of Reads (ddir = 0), Writes (ddir = 1), and Trims (ddir = 2) */
- ts_lcl = malloc(sizeof(struct thread_stat));
- memset((void *)ts_lcl, 0, sizeof(struct thread_stat));
- ts_lcl->unified_rw_rep = UNIFIED_MIXED; /* calculate mixed stats */
- init_thread_stat_min_vals(ts_lcl);
- ts_lcl->lat_percentiles = ts->lat_percentiles;
- ts_lcl->clat_percentiles = ts->clat_percentiles;
- ts_lcl->slat_percentiles = ts->slat_percentiles;
- ts_lcl->percentile_precision = ts->percentile_precision;
- memcpy(ts_lcl->percentile_list, ts->percentile_list, sizeof(ts->percentile_list));
-
- sum_thread_stats(ts_lcl, ts, 1);
+ struct thread_stat *ts_lcl = gen_mixed_ddir_stats_from_ts(ts);
/* add the aggregated stats to json parent */
- add_ddir_status_json(ts_lcl, rs, DDIR_READ, parent);
+ if (ts_lcl)
+ add_ddir_status_json(ts_lcl, rs, DDIR_READ, parent);
+
free(ts_lcl);
}
* numbers. For group_reporting, we should just add those up, not make
* them the mean of everything.
*/
-static void sum_stat(struct io_stat *dst, struct io_stat *src, bool first,
- bool pure_sum)
+static void sum_stat(struct io_stat *dst, struct io_stat *src, bool pure_sum)
{
+ bool first = dst->samples == 0;
+
if (src->samples == 0)
return;
dst->sig_figs = src->sig_figs;
}
-void sum_thread_stats(struct thread_stat *dst, struct thread_stat *src,
- bool first)
+/*
+ * Free the clat_prio_stat arrays allocated by alloc_clat_prio_stat_ddir().
+ */
+void free_clat_prio_stats(struct thread_stat *ts)
+{
+ enum fio_ddir ddir;
+
+ for (ddir = 0; ddir < DDIR_RWDIR_CNT; ddir++) {
+ sfree(ts->clat_prio[ddir]);
+ ts->clat_prio[ddir] = NULL;
+ ts->nr_clat_prio[ddir] = 0;
+ }
+}
+
+/*
+ * Allocate a clat_prio_stat array. The array has to be allocated/freed using
+ * smalloc/sfree, so that it is accessible by the process/thread summing the
+ * thread_stats.
+ */
+int alloc_clat_prio_stat_ddir(struct thread_stat *ts, enum fio_ddir ddir,
+ int nr_prios)
+{
+ struct clat_prio_stat *clat_prio;
+ int i;
+
+ clat_prio = scalloc(nr_prios, sizeof(*ts->clat_prio[ddir]));
+ if (!clat_prio) {
+ log_err("fio: failed to allocate ts clat data\n");
+ return 1;
+ }
+
+ for (i = 0; i < nr_prios; i++)
+ clat_prio[i].clat_stat.min_val = ULONG_MAX;
+
+ ts->clat_prio[ddir] = clat_prio;
+ ts->nr_clat_prio[ddir] = nr_prios;
+
+ return 0;
+}
+
+void sum_thread_stats(struct thread_stat *dst, struct thread_stat *src)
{
int k, l, m;
for (l = 0; l < DDIR_RWDIR_CNT; l++) {
- if (!(dst->unified_rw_rep == UNIFIED_MIXED)) {
- sum_stat(&dst->clat_stat[l], &src->clat_stat[l], first, false);
- sum_stat(&dst->clat_high_prio_stat[l], &src->clat_high_prio_stat[l], first, false);
- sum_stat(&dst->clat_low_prio_stat[l], &src->clat_low_prio_stat[l], first, false);
- sum_stat(&dst->slat_stat[l], &src->slat_stat[l], first, false);
- sum_stat(&dst->lat_stat[l], &src->lat_stat[l], first, false);
- sum_stat(&dst->bw_stat[l], &src->bw_stat[l], first, true);
- sum_stat(&dst->iops_stat[l], &src->iops_stat[l], first, true);
+ if (dst->unified_rw_rep != UNIFIED_MIXED) {
+ sum_stat(&dst->clat_stat[l], &src->clat_stat[l], false);
+ sum_stat(&dst->clat_high_prio_stat[l], &src->clat_high_prio_stat[l], false);
+ sum_stat(&dst->clat_low_prio_stat[l], &src->clat_low_prio_stat[l], false);
+ sum_stat(&dst->slat_stat[l], &src->slat_stat[l], false);
+ sum_stat(&dst->lat_stat[l], &src->lat_stat[l], false);
+ sum_stat(&dst->bw_stat[l], &src->bw_stat[l], true);
+ sum_stat(&dst->iops_stat[l], &src->iops_stat[l], true);
dst->io_bytes[l] += src->io_bytes[l];
if (dst->runtime[l] < src->runtime[l])
dst->runtime[l] = src->runtime[l];
} else {
- sum_stat(&dst->clat_stat[0], &src->clat_stat[l], first, false);
- sum_stat(&dst->clat_high_prio_stat[0], &src->clat_high_prio_stat[l], first, false);
- sum_stat(&dst->clat_low_prio_stat[0], &src->clat_low_prio_stat[l], first, false);
- sum_stat(&dst->slat_stat[0], &src->slat_stat[l], first, false);
- sum_stat(&dst->lat_stat[0], &src->lat_stat[l], first, false);
- sum_stat(&dst->bw_stat[0], &src->bw_stat[l], first, true);
- sum_stat(&dst->iops_stat[0], &src->iops_stat[l], first, true);
+ sum_stat(&dst->clat_stat[0], &src->clat_stat[l], false);
+ sum_stat(&dst->clat_high_prio_stat[0], &src->clat_high_prio_stat[l], false);
+ sum_stat(&dst->clat_low_prio_stat[0], &src->clat_low_prio_stat[l], false);
+ sum_stat(&dst->slat_stat[0], &src->slat_stat[l], false);
+ sum_stat(&dst->lat_stat[0], &src->lat_stat[l], false);
+ sum_stat(&dst->bw_stat[0], &src->bw_stat[l], true);
+ sum_stat(&dst->iops_stat[0], &src->iops_stat[l], true);
dst->io_bytes[0] += src->io_bytes[l];
if (dst->runtime[0] < src->runtime[l])
dst->runtime[0] = src->runtime[l];
-
- /*
- * We're summing to the same destination, so override
- * 'first' after the first iteration of the loop
- */
- first = false;
}
}
- sum_stat(&dst->sync_stat, &src->sync_stat, first, false);
+ sum_stat(&dst->sync_stat, &src->sync_stat, false);
dst->usr_time += src->usr_time;
dst->sys_time += src->sys_time;
dst->ctx += src->ctx;
dst->io_u_lat_m[k] += src->io_u_lat_m[k];
for (k = 0; k < DDIR_RWDIR_CNT; k++) {
- if (!(dst->unified_rw_rep == UNIFIED_MIXED)) {
+ if (dst->unified_rw_rep != UNIFIED_MIXED) {
dst->total_io_u[k] += src->total_io_u[k];
dst->short_io_u[k] += src->short_io_u[k];
dst->drop_io_u[k] += src->drop_io_u[k];
for (k = 0; k < FIO_LAT_CNT; k++)
for (l = 0; l < DDIR_RWDIR_CNT; l++)
for (m = 0; m < FIO_IO_U_PLAT_NR; m++)
- if (!(dst->unified_rw_rep == UNIFIED_MIXED))
+ if (dst->unified_rw_rep != UNIFIED_MIXED)
dst->io_u_plat[k][l][m] += src->io_u_plat[k][l][m];
else
dst->io_u_plat[k][0][m] += src->io_u_plat[k][l][m];
for (k = 0; k < DDIR_RWDIR_CNT; k++) {
for (m = 0; m < FIO_IO_U_PLAT_NR; m++) {
- if (!(dst->unified_rw_rep == UNIFIED_MIXED)) {
+ if (dst->unified_rw_rep != UNIFIED_MIXED) {
dst->io_u_plat_high_prio[k][m] += src->io_u_plat_high_prio[k][m];
dst->io_u_plat_low_prio[k][m] += src->io_u_plat_low_prio[k][m];
} else {
for (k = 0; k < ts->nr_block_infos; k++)
ts->block_infos[k] = td->ts.block_infos[k];
- sum_thread_stats(ts, &td->ts, idx == 1);
+ sum_thread_stats(ts, &td->ts);
if (td->o.ss_dur) {
ts->ss_state = td->ss.state;
}
for (i = 0; i < groupid + 1; i++) {
- int ddir;
+ enum fio_ddir ddir;
rs = &runstats[i];
static void _add_stat_to_log(struct io_log *iolog, unsigned long elapsed,
bool log_max)
{
- int ddir;
+ enum fio_ddir ddir;
for (ddir = 0; ddir < DDIR_RWDIR_CNT; ddir++)
__add_stat_to_log(iolog, ddir, elapsed, log_max);