gfio: set clat/lat bucket graph Y title
[fio.git] / cconv.c
CommitLineData
51167799
JA
1#include <string.h>
2
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3#include "thread_options.h"
4
5static void string_to_cpu(char **dst, const uint8_t *src)
6{
7 const char *__src = (const char *) src;
8
9 if (strlen(__src))
10 *dst = strdup(__src);
11}
12
13static void string_to_net(uint8_t *dst, const char *src)
14{
15 if (src)
16 strcpy((char *) dst, src);
17 else
18 dst[0] = '\0';
19}
20
21void convert_thread_options_to_cpu(struct thread_options *o,
22 struct thread_options_pack *top)
23{
24 int i, j;
25
26 string_to_cpu(&o->description, top->description);
27 string_to_cpu(&o->name, top->name);
28 string_to_cpu(&o->directory, top->directory);
29 string_to_cpu(&o->filename, top->filename);
30 string_to_cpu(&o->opendir, top->opendir);
31 string_to_cpu(&o->ioengine, top->ioengine);
32 string_to_cpu(&o->read_iolog_file, top->read_iolog_file);
33 string_to_cpu(&o->write_iolog_file, top->write_iolog_file);
34 string_to_cpu(&o->bw_log_file, top->bw_log_file);
35 string_to_cpu(&o->lat_log_file, top->lat_log_file);
36 string_to_cpu(&o->iops_log_file, top->iops_log_file);
37 string_to_cpu(&o->replay_redirect, top->replay_redirect);
38 string_to_cpu(&o->exec_prerun, top->exec_prerun);
39 string_to_cpu(&o->exec_postrun, top->exec_postrun);
40 string_to_cpu(&o->ioscheduler, top->ioscheduler);
41 string_to_cpu(&o->profile, top->profile);
42 string_to_cpu(&o->cgroup, top->cgroup);
43
44 o->td_ddir = le32_to_cpu(top->td_ddir);
45 o->rw_seq = le32_to_cpu(top->rw_seq);
46 o->kb_base = le32_to_cpu(top->kb_base);
47 o->ddir_seq_nr = le32_to_cpu(top->ddir_seq_nr);
48 o->ddir_seq_add = le64_to_cpu(top->ddir_seq_add);
49 o->iodepth = le32_to_cpu(top->iodepth);
50 o->iodepth_low = le32_to_cpu(top->iodepth_low);
51 o->iodepth_batch = le32_to_cpu(top->iodepth_batch);
52 o->iodepth_batch_complete = le32_to_cpu(top->iodepth_batch_complete);
53 o->size = le64_to_cpu(top->size);
54 o->size_percent = le32_to_cpu(top->size_percent);
55 o->fill_device = le32_to_cpu(top->fill_device);
56 o->file_size_low = le64_to_cpu(top->file_size_low);
57 o->file_size_high = le64_to_cpu(top->file_size_high);
58 o->start_offset = le64_to_cpu(top->start_offset);
59
60 for (i = 0; i < 2; i++) {
61 o->bs[i] = le32_to_cpu(top->bs[i]);
62 o->ba[i] = le32_to_cpu(top->ba[i]);
63 o->min_bs[i] = le32_to_cpu(top->min_bs[i]);
64 o->max_bs[i] = le32_to_cpu(top->max_bs[i]);
65 o->bssplit_nr[i] = le32_to_cpu(top->bssplit_nr[i]);
66
67 if (o->bssplit_nr[i]) {
68 o->bssplit[i] = malloc(o->bssplit_nr[i] * sizeof(struct bssplit));
69 for (j = 0; j < o->bssplit_nr[i]; j++) {
70 o->bssplit[i][j].bs = le32_to_cpu(top->bssplit[i][j].bs);
71 o->bssplit[i][j].perc = le32_to_cpu(top->bssplit[i][j].perc);
72 }
73 }
74
75 o->rwmix[i] = le32_to_cpu(top->rwmix[i]);
76 o->rate[i] = le32_to_cpu(top->rate[i]);
77 o->ratemin[i] = le32_to_cpu(top->ratemin[i]);
78 o->rate_iops[i] = le32_to_cpu(top->rate_iops[i]);
79 o->rate_iops_min[i] = le32_to_cpu(top->rate_iops_min[i]);
80 }
81
82 o->ratecycle = le32_to_cpu(top->ratecycle);
83 o->nr_files = le32_to_cpu(top->nr_files);
84 o->open_files = le32_to_cpu(top->open_files);
85 o->file_lock_mode = le32_to_cpu(top->file_lock_mode);
86 o->lockfile_batch = le32_to_cpu(top->lockfile_batch);
87 o->odirect = le32_to_cpu(top->odirect);
88 o->invalidate_cache = le32_to_cpu(top->invalidate_cache);
89 o->create_serialize = le32_to_cpu(top->create_serialize);
90 o->create_fsync = le32_to_cpu(top->create_fsync);
91 o->create_on_open = le32_to_cpu(top->create_on_open);
92 o->end_fsync = le32_to_cpu(top->end_fsync);
93 o->pre_read = le32_to_cpu(top->pre_read);
94 o->sync_io = le32_to_cpu(top->sync_io);
95 o->verify = le32_to_cpu(top->verify);
96 o->do_verify = le32_to_cpu(top->do_verify);
97 o->verifysort = le32_to_cpu(top->verifysort);
98 o->verify_interval = le32_to_cpu(top->verify_interval);
99 o->verify_offset = le32_to_cpu(top->verify_offset);
100
101 memcpy(o->verify_pattern, top->verify_pattern, MAX_PATTERN_SIZE);
102
103 o->verify_pattern_bytes = le32_to_cpu(top->verify_pattern_bytes);
104 o->verify_fatal = le32_to_cpu(top->verify_fatal);
105 o->verify_dump = le32_to_cpu(top->verify_dump);
106 o->verify_async = le32_to_cpu(top->verify_async);
107 o->verify_batch = le32_to_cpu(top->verify_batch);
108 o->use_thread = le32_to_cpu(top->use_thread);
109 o->unlink = le32_to_cpu(top->unlink);
110 o->do_disk_util = le32_to_cpu(top->do_disk_util);
111 o->override_sync = le32_to_cpu(top->override_sync);
112 o->rand_repeatable = le32_to_cpu(top->rand_repeatable);
113 o->use_os_rand = le32_to_cpu(top->use_os_rand);
114 o->write_lat_log = le32_to_cpu(top->write_lat_log);
115 o->write_bw_log = le32_to_cpu(top->write_bw_log);
116 o->write_iops_log = le32_to_cpu(top->write_iops_log);
117 o->log_avg_msec = le32_to_cpu(top->log_avg_msec);
118 o->norandommap = le32_to_cpu(top->norandommap);
119 o->softrandommap = le32_to_cpu(top->softrandommap);
120 o->bs_unaligned = le32_to_cpu(top->bs_unaligned);
121 o->fsync_on_close = le32_to_cpu(top->fsync_on_close);
122 o->hugepage_size = le32_to_cpu(top->hugepage_size);
123 o->rw_min_bs = le32_to_cpu(top->rw_min_bs);
124 o->thinktime = le32_to_cpu(top->thinktime);
125 o->thinktime_spin = le32_to_cpu(top->thinktime_spin);
126 o->thinktime_blocks = le32_to_cpu(top->thinktime_blocks);
127 o->fsync_blocks = le32_to_cpu(top->fsync_blocks);
128 o->fdatasync_blocks = le32_to_cpu(top->fdatasync_blocks);
129 o->barrier_blocks = le32_to_cpu(top->barrier_blocks);
130
131 o->verify_backlog = le64_to_cpu(top->verify_backlog);
132 o->start_delay = le64_to_cpu(top->start_delay);
133 o->timeout = le64_to_cpu(top->timeout);
134 o->ramp_time = le64_to_cpu(top->ramp_time);
135 o->zone_range = le64_to_cpu(top->zone_range);
136 o->zone_size = le64_to_cpu(top->zone_size);
137 o->zone_skip = le64_to_cpu(top->zone_skip);
6a4cf74f 138 o->offset_increment = le64_to_cpu(top->offset_increment);
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139
140 o->overwrite = le32_to_cpu(top->overwrite);
141 o->bw_avg_time = le32_to_cpu(top->bw_avg_time);
142 o->iops_avg_time = le32_to_cpu(top->iops_avg_time);
143 o->loops = le32_to_cpu(top->loops);
144 o->mem_type = le32_to_cpu(top->mem_type);
145 o->mem_align = le32_to_cpu(top->mem_align);
146 o->stonewall = le32_to_cpu(top->stonewall);
147 o->new_group = le32_to_cpu(top->new_group);
148 o->numjobs = le32_to_cpu(top->numjobs);
149 o->cpumask_set = le32_to_cpu(top->cpumask_set);
150 o->verify_cpumask_set = le32_to_cpu(top->verify_cpumask_set);
151 o->iolog = le32_to_cpu(top->iolog);
152 o->rwmixcycle = le32_to_cpu(top->rwmixcycle);
153 o->nice = le32_to_cpu(top->nice);
154 o->file_service_type = le32_to_cpu(top->file_service_type);
155 o->group_reporting = le32_to_cpu(top->group_reporting);
156 o->fadvise_hint = le32_to_cpu(top->fadvise_hint);
157 o->fallocate_mode = le32_to_cpu(top->fallocate_mode);
158 o->zero_buffers = le32_to_cpu(top->zero_buffers);
159 o->refill_buffers = le32_to_cpu(top->refill_buffers);
160 o->scramble_buffers = le32_to_cpu(top->scramble_buffers);
161 o->time_based = le32_to_cpu(top->time_based);
162 o->disable_lat = le32_to_cpu(top->disable_lat);
163 o->disable_clat = le32_to_cpu(top->disable_clat);
164 o->disable_slat = le32_to_cpu(top->disable_slat);
165 o->disable_bw = le32_to_cpu(top->disable_bw);
166 o->gtod_reduce = le32_to_cpu(top->gtod_reduce);
167 o->gtod_cpu = le32_to_cpu(top->gtod_cpu);
168 o->gtod_offload = le32_to_cpu(top->gtod_offload);
169 o->clocksource = le32_to_cpu(top->clocksource);
170 o->no_stall = le32_to_cpu(top->no_stall);
171 o->trim_percentage = le32_to_cpu(top->trim_percentage);
172 o->trim_batch = le32_to_cpu(top->trim_batch);
173 o->trim_zero = le32_to_cpu(top->trim_zero);
174 o->clat_percentiles = le32_to_cpu(top->clat_percentiles);
175 o->overwrite_plist = le32_to_cpu(top->overwrite_plist);
176 o->cpuload = le32_to_cpu(top->cpuload);
177 o->cpucycle = le32_to_cpu(top->cpucycle);
178 o->continue_on_error = le32_to_cpu(top->continue_on_error);
179 o->cgroup_weight = le32_to_cpu(top->cgroup_weight);
180 o->cgroup_nodelete = le32_to_cpu(top->cgroup_nodelete);
181 o->uid = le32_to_cpu(top->uid);
182 o->gid = le32_to_cpu(top->gid);
183 o->flow_id = __le32_to_cpu(top->flow_id);
184 o->flow = __le32_to_cpu(top->flow);
185 o->flow_watermark = __le32_to_cpu(top->flow_watermark);
186 o->flow_sleep = le32_to_cpu(top->flow_sleep);
187 o->sync_file_range = le32_to_cpu(top->sync_file_range);
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188 o->compress_percentage = le32_to_cpu(top->compress_percentage);
189 o->compress_chunk = le32_to_cpu(top->compress_chunk);
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190
191 o->trim_backlog = le64_to_cpu(top->trim_backlog);
192
193 for (i = 0; i < FIO_IO_U_LIST_MAX_LEN; i++)
194 o->percentile_list[i].u.f = fio_uint64_to_double(le64_to_cpu(top->percentile_list[i].u.i));
195#if 0
196 uint8_t cpumask[FIO_TOP_STR_MAX];
197 uint8_t verify_cpumask[FIO_TOP_STR_MAX];
198#endif
199}
200
201void convert_thread_options_to_net(struct thread_options_pack *top,
202 struct thread_options *o)
203{
204 int i, j;
205
206 string_to_net(top->description, o->description);
207 string_to_net(top->name, o->name);
208 string_to_net(top->directory, o->directory);
209 string_to_net(top->filename, o->filename);
210 string_to_net(top->opendir, o->opendir);
211 string_to_net(top->ioengine, o->ioengine);
212 string_to_net(top->read_iolog_file, o->read_iolog_file);
213 string_to_net(top->write_iolog_file, o->write_iolog_file);
214 string_to_net(top->bw_log_file, o->bw_log_file);
215 string_to_net(top->lat_log_file, o->lat_log_file);
216 string_to_net(top->iops_log_file, o->iops_log_file);
217 string_to_net(top->replay_redirect, o->replay_redirect);
218 string_to_net(top->exec_prerun, o->exec_prerun);
219 string_to_net(top->exec_postrun, o->exec_postrun);
220 string_to_net(top->ioscheduler, o->ioscheduler);
221 string_to_net(top->profile, o->profile);
222 string_to_net(top->cgroup, o->cgroup);
223
224 top->td_ddir = cpu_to_le32(o->td_ddir);
225 top->rw_seq = cpu_to_le32(o->rw_seq);
226 top->kb_base = cpu_to_le32(o->kb_base);
227 top->ddir_seq_nr = cpu_to_le32(o->ddir_seq_nr);
228 top->iodepth = cpu_to_le32(o->iodepth);
229 top->iodepth_low = cpu_to_le32(o->iodepth_low);
230 top->iodepth_batch = cpu_to_le32(o->iodepth_batch);
231 top->iodepth_batch_complete = cpu_to_le32(o->iodepth_batch_complete);
232 top->size_percent = cpu_to_le32(o->size_percent);
233 top->fill_device = cpu_to_le32(o->fill_device);
234 top->ratecycle = cpu_to_le32(o->ratecycle);
235 top->nr_files = cpu_to_le32(o->nr_files);
236 top->open_files = cpu_to_le32(o->open_files);
237 top->file_lock_mode = cpu_to_le32(o->file_lock_mode);
238 top->lockfile_batch = cpu_to_le32(o->lockfile_batch);
239 top->odirect = cpu_to_le32(o->odirect);
240 top->invalidate_cache = cpu_to_le32(o->invalidate_cache);
241 top->create_serialize = cpu_to_le32(o->create_serialize);
242 top->create_fsync = cpu_to_le32(o->create_fsync);
243 top->create_on_open = cpu_to_le32(o->create_on_open);
244 top->end_fsync = cpu_to_le32(o->end_fsync);
245 top->pre_read = cpu_to_le32(o->pre_read);
246 top->sync_io = cpu_to_le32(o->sync_io);
247 top->verify = cpu_to_le32(o->verify);
248 top->do_verify = cpu_to_le32(o->do_verify);
249 top->verifysort = cpu_to_le32(o->verifysort);
250 top->verify_interval = cpu_to_le32(o->verify_interval);
251 top->verify_offset = cpu_to_le32(o->verify_offset);
252 top->verify_pattern_bytes = cpu_to_le32(o->verify_pattern_bytes);
253 top->verify_fatal = cpu_to_le32(o->verify_fatal);
254 top->verify_dump = cpu_to_le32(o->verify_dump);
255 top->verify_async = cpu_to_le32(o->verify_async);
256 top->verify_batch = cpu_to_le32(o->verify_batch);
257 top->use_thread = cpu_to_le32(o->use_thread);
258 top->unlink = cpu_to_le32(o->unlink);
259 top->do_disk_util = cpu_to_le32(o->do_disk_util);
260 top->override_sync = cpu_to_le32(o->override_sync);
261 top->rand_repeatable = cpu_to_le32(o->rand_repeatable);
262 top->use_os_rand = cpu_to_le32(o->use_os_rand);
263 top->write_lat_log = cpu_to_le32(o->write_lat_log);
264 top->write_bw_log = cpu_to_le32(o->write_bw_log);
265 top->write_iops_log = cpu_to_le32(o->write_iops_log);
266 top->log_avg_msec = cpu_to_le32(o->log_avg_msec);
267 top->norandommap = cpu_to_le32(o->norandommap);
268 top->softrandommap = cpu_to_le32(o->softrandommap);
269 top->bs_unaligned = cpu_to_le32(o->bs_unaligned);
270 top->fsync_on_close = cpu_to_le32(o->fsync_on_close);
271 top->hugepage_size = cpu_to_le32(o->hugepage_size);
272 top->rw_min_bs = cpu_to_le32(o->rw_min_bs);
273 top->thinktime = cpu_to_le32(o->thinktime);
274 top->thinktime_spin = cpu_to_le32(o->thinktime_spin);
275 top->thinktime_blocks = cpu_to_le32(o->thinktime_blocks);
276 top->fsync_blocks = cpu_to_le32(o->fsync_blocks);
277 top->fdatasync_blocks = cpu_to_le32(o->fdatasync_blocks);
278 top->barrier_blocks = cpu_to_le32(o->barrier_blocks);
279 top->overwrite = cpu_to_le32(o->overwrite);
280 top->bw_avg_time = cpu_to_le32(o->bw_avg_time);
281 top->iops_avg_time = cpu_to_le32(o->iops_avg_time);
282 top->loops = cpu_to_le32(o->loops);
283 top->mem_type = cpu_to_le32(o->mem_type);
284 top->mem_align = cpu_to_le32(o->mem_align);
285 top->stonewall = cpu_to_le32(o->stonewall);
286 top->new_group = cpu_to_le32(o->new_group);
287 top->numjobs = cpu_to_le32(o->numjobs);
288 top->cpumask_set = cpu_to_le32(o->cpumask_set);
289 top->verify_cpumask_set = cpu_to_le32(o->verify_cpumask_set);
290 top->iolog = cpu_to_le32(o->iolog);
291 top->rwmixcycle = cpu_to_le32(o->rwmixcycle);
292 top->nice = cpu_to_le32(o->nice);
293 top->file_service_type = cpu_to_le32(o->file_service_type);
294 top->group_reporting = cpu_to_le32(o->group_reporting);
295 top->fadvise_hint = cpu_to_le32(o->fadvise_hint);
296 top->fallocate_mode = cpu_to_le32(o->fallocate_mode);
297 top->zero_buffers = cpu_to_le32(o->zero_buffers);
298 top->refill_buffers = cpu_to_le32(o->refill_buffers);
299 top->scramble_buffers = cpu_to_le32(o->scramble_buffers);
300 top->time_based = cpu_to_le32(o->time_based);
301 top->disable_lat = cpu_to_le32(o->disable_lat);
302 top->disable_clat = cpu_to_le32(o->disable_clat);
303 top->disable_slat = cpu_to_le32(o->disable_slat);
304 top->disable_bw = cpu_to_le32(o->disable_bw);
305 top->gtod_reduce = cpu_to_le32(o->gtod_reduce);
306 top->gtod_cpu = cpu_to_le32(o->gtod_cpu);
307 top->gtod_offload = cpu_to_le32(o->gtod_offload);
308 top->clocksource = cpu_to_le32(o->clocksource);
309 top->no_stall = cpu_to_le32(o->no_stall);
310 top->trim_percentage = cpu_to_le32(o->trim_percentage);
311 top->trim_batch = cpu_to_le32(o->trim_batch);
312 top->trim_zero = cpu_to_le32(o->trim_zero);
313 top->clat_percentiles = cpu_to_le32(o->clat_percentiles);
314 top->overwrite_plist = cpu_to_le32(o->overwrite_plist);
315 top->cpuload = cpu_to_le32(o->cpuload);
316 top->cpucycle = cpu_to_le32(o->cpucycle);
317 top->continue_on_error = cpu_to_le32(o->continue_on_error);
318 top->cgroup_weight = cpu_to_le32(o->cgroup_weight);
319 top->cgroup_nodelete = cpu_to_le32(o->cgroup_nodelete);
320 top->uid = cpu_to_le32(o->uid);
321 top->gid = cpu_to_le32(o->gid);
322 top->flow_id = __cpu_to_le32(o->flow_id);
323 top->flow = __cpu_to_le32(o->flow);
324 top->flow_watermark = __cpu_to_le32(o->flow_watermark);
325 top->flow_sleep = cpu_to_le32(o->flow_sleep);
326 top->sync_file_range = cpu_to_le32(o->sync_file_range);
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327 top->compress_percentage = cpu_to_le32(o->compress_percentage);
328 top->compress_chunk = cpu_to_le32(o->compress_chunk);
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329
330 for (i = 0; i < 2; i++) {
331 top->bs[i] = cpu_to_le32(o->bs[i]);
332 top->ba[i] = cpu_to_le32(o->ba[i]);
333 top->min_bs[i] = cpu_to_le32(o->min_bs[i]);
334 top->max_bs[i] = cpu_to_le32(o->max_bs[i]);
335 top->bssplit_nr[i] = cpu_to_le32(o->bssplit_nr[i]);
336
337 if (o->bssplit_nr[i]) {
338 unsigned int bssplit_nr = o->bssplit_nr[i];
339
340 if (bssplit_nr > BSSPLIT_MAX) {
341 log_err("fio: BSSPLIT_MAX is too small\n");
342 bssplit_nr = BSSPLIT_MAX;
343 }
344 for (j = 0; j < bssplit_nr; j++) {
345 top->bssplit[i][j].bs = cpu_to_le32(o->bssplit[i][j].bs);
346 top->bssplit[i][j].perc = cpu_to_le32(o->bssplit[i][j].perc);
347 }
348 }
349
350 top->rwmix[i] = cpu_to_le32(o->rwmix[i]);
351 top->rate[i] = cpu_to_le32(o->rate[i]);
352 top->ratemin[i] = cpu_to_le32(o->ratemin[i]);
353 top->rate_iops[i] = cpu_to_le32(o->rate_iops[i]);
354 top->rate_iops_min[i] = cpu_to_le32(o->rate_iops_min[i]);
355 }
356
357 memcpy(top->verify_pattern, o->verify_pattern, MAX_PATTERN_SIZE);
358
359 top->size = __cpu_to_le64(o->size);
360 top->verify_backlog = __cpu_to_le64(o->verify_backlog);
361 top->start_delay = __cpu_to_le64(o->start_delay);
362 top->timeout = __cpu_to_le64(o->timeout);
363 top->ramp_time = __cpu_to_le64(o->ramp_time);
364 top->zone_range = __cpu_to_le64(o->zone_range);
365 top->zone_size = __cpu_to_le64(o->zone_size);
366 top->zone_skip = __cpu_to_le64(o->zone_skip);
367 top->ddir_seq_add = __cpu_to_le64(o->ddir_seq_add);
368 top->file_size_low = __cpu_to_le64(o->file_size_low);
369 top->file_size_high = __cpu_to_le64(o->file_size_high);
370 top->start_offset = __cpu_to_le64(o->start_offset);
371 top->trim_backlog = __cpu_to_le64(o->trim_backlog);
6a4cf74f 372 top->offset_increment = __cpu_to_le64(o->offset_increment);
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373
374 for (i = 0; i < FIO_IO_U_LIST_MAX_LEN; i++)
375 top->percentile_list[i].u.i = __cpu_to_le64(fio_double_to_uint64(o->percentile_list[i].u.f));
376#if 0
377 uint8_t cpumask[FIO_TOP_STR_MAX];
378 uint8_t verify_cpumask[FIO_TOP_STR_MAX];
379#endif
380
381}
382
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383/*
384 * Basic conversion test. We'd really need to fill in more of the options
385 * to have a thorough test. Even better, we should auto-generate the
386 * converter functions...
387 */
388int fio_test_cconv(struct thread_options *__o)
389{
390 struct thread_options o;
391 struct thread_options_pack top1, top2;
392
393 memset(&top1, 0, sizeof(top1));
394 memset(&top2, 0, sizeof(top2));
395
396 convert_thread_options_to_net(&top1, __o);
397 memset(&o, 0, sizeof(o));
398 convert_thread_options_to_cpu(&o, &top1);
399 convert_thread_options_to_net(&top2, &o);
400
401 return memcmp(&top1, &top2, sizeof(top1));
402}