Add option to ignore thinktime for rated IO
[fio.git] / cconv.c
diff --git a/cconv.c b/cconv.c
index a01475a99e433ae82fa40478a8a16814a18be917..92996b1e430b744b4525d4e9390e528c496ac566 100644 (file)
--- a/cconv.c
+++ b/cconv.c
@@ -88,7 +88,7 @@ void convert_thread_options_to_cpu(struct thread_options *o,
        o->td_ddir = le32_to_cpu(top->td_ddir);
        o->rw_seq = le32_to_cpu(top->rw_seq);
        o->kb_base = le32_to_cpu(top->kb_base);
-       o->unit_base = le32_to_cpu(top->kb_base);
+       o->unit_base = le32_to_cpu(top->unit_base);
        o->ddir_seq_nr = le32_to_cpu(top->ddir_seq_nr);
        o->ddir_seq_add = le64_to_cpu(top->ddir_seq_add);
        o->iodepth = le32_to_cpu(top->iodepth);
@@ -96,14 +96,17 @@ void convert_thread_options_to_cpu(struct thread_options *o,
        o->iodepth_batch = le32_to_cpu(top->iodepth_batch);
        o->iodepth_batch_complete_min = le32_to_cpu(top->iodepth_batch_complete_min);
        o->iodepth_batch_complete_max = le32_to_cpu(top->iodepth_batch_complete_max);
+       o->serialize_overlap = le32_to_cpu(top->serialize_overlap);
        o->size = le64_to_cpu(top->size);
-       o->io_limit = le64_to_cpu(top->io_limit);
+       o->io_size = le64_to_cpu(top->io_size);
        o->size_percent = le32_to_cpu(top->size_percent);
        o->fill_device = le32_to_cpu(top->fill_device);
        o->file_append = le32_to_cpu(top->file_append);
        o->file_size_low = le64_to_cpu(top->file_size_low);
        o->file_size_high = le64_to_cpu(top->file_size_high);
        o->start_offset = le64_to_cpu(top->start_offset);
+       o->start_offset_align = le64_to_cpu(top->start_offset_align);
+       o->start_offset_percent = le32_to_cpu(top->start_offset_percent);
 
        for (i = 0; i < DDIR_RWDIR_CNT; i++) {
                o->bs[i] = le32_to_cpu(top->bs[i]);
@@ -131,8 +134,8 @@ void convert_thread_options_to_cpu(struct thread_options *o,
                }
 
                o->rwmix[i] = le32_to_cpu(top->rwmix[i]);
-               o->rate[i] = le32_to_cpu(top->rate[i]);
-               o->ratemin[i] = le32_to_cpu(top->ratemin[i]);
+               o->rate[i] = le64_to_cpu(top->rate[i]);
+               o->ratemin[i] = le64_to_cpu(top->ratemin[i]);
                o->rate_iops[i] = le32_to_cpu(top->rate_iops[i]);
                o->rate_iops_min[i] = le32_to_cpu(top->rate_iops_min[i]);
 
@@ -155,6 +158,7 @@ void convert_thread_options_to_cpu(struct thread_options *o,
        o->end_fsync = le32_to_cpu(top->end_fsync);
        o->pre_read = le32_to_cpu(top->pre_read);
        o->sync_io = le32_to_cpu(top->sync_io);
+       o->write_hint = le32_to_cpu(top->write_hint);
        o->verify = le32_to_cpu(top->verify);
        o->do_verify = le32_to_cpu(top->do_verify);
        o->verifysort = le32_to_cpu(top->verifysort);
@@ -187,6 +191,7 @@ void convert_thread_options_to_cpu(struct thread_options *o,
        o->log_offset = le32_to_cpu(top->log_offset);
        o->log_gz = le32_to_cpu(top->log_gz);
        o->log_gz_store = le32_to_cpu(top->log_gz_store);
+       o->log_unix_epoch = le32_to_cpu(top->log_unix_epoch);
        o->norandommap = le32_to_cpu(top->norandommap);
        o->softrandommap = le32_to_cpu(top->softrandommap);
        o->bs_unaligned = le32_to_cpu(top->bs_unaligned);
@@ -214,7 +219,7 @@ void convert_thread_options_to_cpu(struct thread_options *o,
        o->ramp_time = le64_to_cpu(top->ramp_time);
        o->ss_dur = le64_to_cpu(top->ss_dur);
        o->ss_ramp_time = le64_to_cpu(top->ss_ramp_time);
-       o->ss = le32_to_cpu(top->ss);
+       o->ss_state = le32_to_cpu(top->ss_state);
        o->ss_limit.u.f = fio_uint64_to_double(le64_to_cpu(top->ss_limit.u.i));
        o->zone_range = le64_to_cpu(top->zone_range);
        o->zone_size = le64_to_cpu(top->zone_size);
@@ -229,11 +234,11 @@ void convert_thread_options_to_cpu(struct thread_options *o,
        o->loops = le32_to_cpu(top->loops);
        o->mem_type = le32_to_cpu(top->mem_type);
        o->mem_align = le32_to_cpu(top->mem_align);
-       o->max_latency = le32_to_cpu(top->max_latency);
        o->stonewall = le32_to_cpu(top->stonewall);
        o->new_group = le32_to_cpu(top->new_group);
        o->numjobs = le32_to_cpu(top->numjobs);
        o->cpus_allowed_policy = le32_to_cpu(top->cpus_allowed_policy);
+       o->gpu_dev_id = le32_to_cpu(top->gpu_dev_id);
        o->iolog = le32_to_cpu(top->iolog);
        o->rwmixcycle = le32_to_cpu(top->rwmixcycle);
        o->nice = le32_to_cpu(top->nice);
@@ -241,6 +246,7 @@ void convert_thread_options_to_cpu(struct thread_options *o,
        o->ioprio_class = le32_to_cpu(top->ioprio_class);
        o->file_service_type = le32_to_cpu(top->file_service_type);
        o->group_reporting = le32_to_cpu(top->group_reporting);
+       o->stats = le32_to_cpu(top->stats);
        o->fadvise_hint = le32_to_cpu(top->fadvise_hint);
        o->fallocate_mode = le32_to_cpu(top->fallocate_mode);
        o->zero_buffers = le32_to_cpu(top->zero_buffers);
@@ -261,7 +267,9 @@ void convert_thread_options_to_cpu(struct thread_options *o,
        o->trim_batch = le32_to_cpu(top->trim_batch);
        o->trim_zero = le32_to_cpu(top->trim_zero);
        o->clat_percentiles = le32_to_cpu(top->clat_percentiles);
+       o->lat_percentiles = le32_to_cpu(top->lat_percentiles);
        o->percentile_precision = le32_to_cpu(top->percentile_precision);
+       o->sig_figs = le32_to_cpu(top->sig_figs);
        o->continue_on_error = le32_to_cpu(top->continue_on_error);
        o->cgroup_weight = le32_to_cpu(top->cgroup_weight);
        o->cgroup_nodelete = le32_to_cpu(top->cgroup_nodelete);
@@ -274,18 +282,23 @@ void convert_thread_options_to_cpu(struct thread_options *o,
        o->sync_file_range = le32_to_cpu(top->sync_file_range);
        o->latency_target = le64_to_cpu(top->latency_target);
        o->latency_window = le64_to_cpu(top->latency_window);
+       o->max_latency = le64_to_cpu(top->max_latency);
        o->latency_percentile.u.f = fio_uint64_to_double(le64_to_cpu(top->latency_percentile.u.i));
        o->compress_percentage = le32_to_cpu(top->compress_percentage);
        o->compress_chunk = le32_to_cpu(top->compress_chunk);
        o->dedupe_percentage = le32_to_cpu(top->dedupe_percentage);
-       o->skip_bad = le32_to_cpu(top->skip_bad);
        o->block_error_hist = le32_to_cpu(top->block_error_hist);
        o->replay_align = le32_to_cpu(top->replay_align);
        o->replay_scale = le32_to_cpu(top->replay_scale);
        o->per_job_logs = le32_to_cpu(top->per_job_logs);
+       o->write_bw_log = le32_to_cpu(top->write_bw_log);
+       o->write_lat_log = le32_to_cpu(top->write_lat_log);
+       o->write_iops_log = le32_to_cpu(top->write_iops_log);
+       o->write_hist_log = le32_to_cpu(top->write_hist_log);
 
        o->trim_backlog = le64_to_cpu(top->trim_backlog);
        o->rate_process = le32_to_cpu(top->rate_process);
+       o->rate_ign_think = le32_to_cpu(top->rate_ign_think);
 
        for (i = 0; i < FIO_IO_U_LIST_MAX_LEN; i++)
                o->percentile_list[i].u.f = fio_uint64_to_double(le64_to_cpu(top->percentile_list[i].u.i));
@@ -331,13 +344,14 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
        top->td_ddir = cpu_to_le32(o->td_ddir);
        top->rw_seq = cpu_to_le32(o->rw_seq);
        top->kb_base = cpu_to_le32(o->kb_base);
-       top->unit_base = cpu_to_le32(o->kb_base);
+       top->unit_base = cpu_to_le32(o->unit_base);
        top->ddir_seq_nr = cpu_to_le32(o->ddir_seq_nr);
        top->iodepth = cpu_to_le32(o->iodepth);
        top->iodepth_low = cpu_to_le32(o->iodepth_low);
        top->iodepth_batch = cpu_to_le32(o->iodepth_batch);
        top->iodepth_batch_complete_min = cpu_to_le32(o->iodepth_batch_complete_min);
        top->iodepth_batch_complete_max = cpu_to_le32(o->iodepth_batch_complete_max);
+       top->serialize_overlap = cpu_to_le32(o->serialize_overlap);
        top->size_percent = cpu_to_le32(o->size_percent);
        top->fill_device = cpu_to_le32(o->fill_device);
        top->file_append = cpu_to_le32(o->file_append);
@@ -357,6 +371,7 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
        top->end_fsync = cpu_to_le32(o->end_fsync);
        top->pre_read = cpu_to_le32(o->pre_read);
        top->sync_io = cpu_to_le32(o->sync_io);
+       top->write_hint = cpu_to_le32(o->write_hint);
        top->verify = cpu_to_le32(o->verify);
        top->do_verify = cpu_to_le32(o->do_verify);
        top->verifysort = cpu_to_le32(o->verifysort);
@@ -383,6 +398,7 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
        top->log_offset = cpu_to_le32(o->log_offset);
        top->log_gz = cpu_to_le32(o->log_gz);
        top->log_gz_store = cpu_to_le32(o->log_gz_store);
+       top->log_unix_epoch = cpu_to_le32(o->log_unix_epoch);
        top->norandommap = cpu_to_le32(o->norandommap);
        top->softrandommap = cpu_to_le32(o->softrandommap);
        top->bs_unaligned = cpu_to_le32(o->bs_unaligned);
@@ -408,11 +424,11 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
        top->loops = cpu_to_le32(o->loops);
        top->mem_type = cpu_to_le32(o->mem_type);
        top->mem_align = cpu_to_le32(o->mem_align);
-       top->max_latency = cpu_to_le32(o->max_latency);
        top->stonewall = cpu_to_le32(o->stonewall);
        top->new_group = cpu_to_le32(o->new_group);
        top->numjobs = cpu_to_le32(o->numjobs);
        top->cpus_allowed_policy = cpu_to_le32(o->cpus_allowed_policy);
+       top->gpu_dev_id = cpu_to_le32(o->gpu_dev_id);
        top->iolog = cpu_to_le32(o->iolog);
        top->rwmixcycle = cpu_to_le32(o->rwmixcycle);
        top->nice = cpu_to_le32(o->nice);
@@ -420,6 +436,7 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
        top->ioprio_class = cpu_to_le32(o->ioprio_class);
        top->file_service_type = cpu_to_le32(o->file_service_type);
        top->group_reporting = cpu_to_le32(o->group_reporting);
+       top->stats = cpu_to_le32(o->stats);
        top->fadvise_hint = cpu_to_le32(o->fadvise_hint);
        top->fallocate_mode = cpu_to_le32(o->fallocate_mode);
        top->zero_buffers = cpu_to_le32(o->zero_buffers);
@@ -440,7 +457,9 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
        top->trim_batch = cpu_to_le32(o->trim_batch);
        top->trim_zero = cpu_to_le32(o->trim_zero);
        top->clat_percentiles = cpu_to_le32(o->clat_percentiles);
+       top->lat_percentiles = cpu_to_le32(o->lat_percentiles);
        top->percentile_precision = cpu_to_le32(o->percentile_precision);
+       top->sig_figs = cpu_to_le32(o->sig_figs);
        top->continue_on_error = cpu_to_le32(o->continue_on_error);
        top->cgroup_weight = cpu_to_le32(o->cgroup_weight);
        top->cgroup_nodelete = cpu_to_le32(o->cgroup_nodelete);
@@ -453,15 +472,19 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
        top->sync_file_range = cpu_to_le32(o->sync_file_range);
        top->latency_target = __cpu_to_le64(o->latency_target);
        top->latency_window = __cpu_to_le64(o->latency_window);
+       top->max_latency = __cpu_to_le64(o->max_latency);
        top->latency_percentile.u.i = __cpu_to_le64(fio_double_to_uint64(o->latency_percentile.u.f));
        top->compress_percentage = cpu_to_le32(o->compress_percentage);
        top->compress_chunk = cpu_to_le32(o->compress_chunk);
        top->dedupe_percentage = cpu_to_le32(o->dedupe_percentage);
        top->block_error_hist = cpu_to_le32(o->block_error_hist);
-       top->skip_bad = cpu_to_le32(o->skip_bad);
        top->replay_align = cpu_to_le32(o->replay_align);
        top->replay_scale = cpu_to_le32(o->replay_scale);
        top->per_job_logs = cpu_to_le32(o->per_job_logs);
+       top->write_bw_log = cpu_to_le32(o->write_bw_log);
+       top->write_lat_log = cpu_to_le32(o->write_lat_log);
+       top->write_iops_log = cpu_to_le32(o->write_iops_log);
+       top->write_hist_log = cpu_to_le32(o->write_hist_log);
 
        for (i = 0; i < DDIR_RWDIR_CNT; i++) {
                top->bs[i] = cpu_to_le32(o->bs[i]);
@@ -499,8 +522,8 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
                }
 
                top->rwmix[i] = cpu_to_le32(o->rwmix[i]);
-               top->rate[i] = cpu_to_le32(o->rate[i]);
-               top->ratemin[i] = cpu_to_le32(o->ratemin[i]);
+               top->rate[i] = cpu_to_le64(o->rate[i]);
+               top->ratemin[i] = cpu_to_le64(o->ratemin[i]);
                top->rate_iops[i] = cpu_to_le32(o->rate_iops[i]);
                top->rate_iops_min[i] = cpu_to_le32(o->rate_iops_min[i]);
 
@@ -511,7 +534,7 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
        memcpy(top->buffer_pattern, o->buffer_pattern, MAX_PATTERN_SIZE);
 
        top->size = __cpu_to_le64(o->size);
-       top->io_limit = __cpu_to_le64(o->io_limit);
+       top->io_size = __cpu_to_le64(o->io_size);
        top->verify_backlog = __cpu_to_le64(o->verify_backlog);
        top->start_delay = __cpu_to_le64(o->start_delay);
        top->start_delay_high = __cpu_to_le64(o->start_delay_high);
@@ -519,7 +542,7 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
        top->ramp_time = __cpu_to_le64(o->ramp_time);
        top->ss_dur = __cpu_to_le64(top->ss_dur);
        top->ss_ramp_time = __cpu_to_le64(top->ss_ramp_time);
-       top->ss = cpu_to_le32(top->ss);
+       top->ss_state = cpu_to_le32(top->ss_state);
        top->ss_limit.u.i = __cpu_to_le64(fio_double_to_uint64(o->ss_limit.u.f));
        top->zone_range = __cpu_to_le64(o->zone_range);
        top->zone_size = __cpu_to_le64(o->zone_size);
@@ -529,10 +552,13 @@ void convert_thread_options_to_net(struct thread_options_pack *top,
        top->file_size_low = __cpu_to_le64(o->file_size_low);
        top->file_size_high = __cpu_to_le64(o->file_size_high);
        top->start_offset = __cpu_to_le64(o->start_offset);
+       top->start_offset_align = __cpu_to_le64(o->start_offset_align);
+       top->start_offset_percent = __cpu_to_le32(o->start_offset_percent);
        top->trim_backlog = __cpu_to_le64(o->trim_backlog);
        top->offset_increment = __cpu_to_le64(o->offset_increment);
        top->number_ios = __cpu_to_le64(o->number_ios);
        top->rate_process = cpu_to_le32(o->rate_process);
+       top->rate_ign_think = cpu_to_le32(o->rate_ign_think);
 
        for (i = 0; i < FIO_IO_U_LIST_MAX_LEN; i++)
                top->percentile_list[i].u.i = __cpu_to_le64(fio_double_to_uint64(o->percentile_list[i].u.f));