[PATCH] Add support for specifying job nice value with nice=x
[fio.git] / README
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1fio
2---
3
4fio is a tool that will spawn a number of thread doing a particular
5type of io action as specified by the user. fio takes a number of
6global parameters, each inherited by the thread unless otherwise
7parameters given to them overriding that setting is given.
8
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9
10Source
11------
12
13fio resides in a git repo, the canonical place is:
14
15git://brick.kernel.dk/data/git/fio.git
16
17Snapshots are frequently generated as well and they include the git
18meta data as well. You can download them here:
19
20http://brick.kernel.dk/snaps/
21
22
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23Options
24-------
25
26$ fio
27 -s IO is sequential
28 -b block size in KiB for each io
29 -t <sec> Runtime in seconds
30 -r For random io, sequence must be repeatable
31 -R <on> If one thread fails to meet rate, quit all
32 -o <on> Use direct IO is 1, buffered if 0
33 -l Generate per-job latency logs
34 -w Generate per-job bandwidth logs
35 -f <file> Read <file> for job descriptions
4785f995 36 -h Print help info
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37 -v Print version information and exit
38
39The <jobs> format is as follows:
40
41 directory=x Use 'x' as the top level directory for storing files
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42 rw=x 'x' may be: read, randread, write, randwrite,
43 rw (read-write mix), randrw (read-write random mix)
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44 rwmixcycle=x Base cycle for switching between read and write
45 in msecs.
46 rwmixread=x 'x' percentage of rw mix ios will be reads. If
47 rwmixwrite is also given, the last of the two will
48 be used if they don't add up to 100%.
49 rwmixwrite=x 'x' percentage of rw mix ios will be writes. See
50 rwmixread.
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51 size=x Set file size to x bytes (x string can include k/m/g)
52 ioengine=x 'x' may be: aio/libaio/linuxaio for Linux aio,
53 posixaio for POSIX aio, sync for regular read/write io,
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54 mmap for mmap'ed io, splice for using splice/vmsplice,
55 or sgio for direct SG_IO io. The latter only works on
56 Linux on SCSI (or SCSI-like devices, such as
57 usb-storage or sata/libata driven) devices.
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58 iodepth=x For async io, allow 'x' ios in flight
59 overwrite=x If 'x', layout a write file first.
60 prio=x Run io at prio X, 0-7 is the kernel allowed range
61 prioclass=x Run io at prio class X
62 bs=x Use 'x' for thread blocksize. May include k/m postfix.
63 bsrange=x-y Mix thread block sizes randomly between x and y. May
64 also include k/m postfix.
65 direct=x 1 for direct IO, 0 for buffered IO
66 thinktime=x "Think" x usec after each io
67 rate=x Throttle rate to x KiB/sec
68 ratemin=x Quit if rate of x KiB/sec can't be met
69 ratecycle=x ratemin averaged over x msecs
70 cpumask=x Only allow job to run on CPUs defined by mask.
71 fsync=x If writing, fsync after every x blocks have been written
72 startdelay=x Start this thread x seconds after startup
73 timeout=x Terminate x seconds after startup
74 offset=x Start io at offset x (x string can include k/m/g)
75 invalidate=x Invalidate page cache for file prior to doing io
76 sync=x Use sync writes if x and writing
77 mem=x If x == malloc, use malloc for buffers. If x == shm,
78 use shm for buffers. If x == mmap, use anon mmap.
79 exitall When one thread quits, terminate the others
80 bwavgtime=x Average bandwidth stats over an x msec window.
81 create_serialize=x If 'x', serialize file creation.
82 create_fsync=x If 'x', run fsync() after file creation.
fc1a4713 83 end_fsync=x If 'x', run fsync() after end-of-job.
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84 loops=x Run the job 'x' number of times.
85 verify=x If 'x' == md5, use md5 for verifies. If 'x' == crc32,
86 use crc32 for verifies. md5 is 'safer', but crc32 is
87 a lot faster. Only makes sense for writing to a file.
88 stonewall Wait for preceeding jobs to end before running.
89 numjobs=x Create 'x' similar entries for this job
90 thread Use pthreads instead of forked jobs
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91 zonesize=x
92 zoneskip=y Zone options must be paired. If given, the job
93 will skip y bytes for every x read/written. This
94 can be used to gauge hard drive speed over the entire
95 platter, without reading everything. Both x/y can
96 include k/m/g suffix.
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97 iolog=x Open and read io pattern from file 'x'. The file must
98 contain one io action per line in the following format:
99 rw, offset, length
100 where with rw=0/1 for read/write, and the offset
101 and length entries being in bytes.
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102 lockmem=x Lock down x amount of memory on the machine, to
103 simulate a machine with less memory available. x can
104 include k/m/g suffix.
b6f4d880 105 nice=x Run job at given nice value.
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106
107Examples using a job file
108-------------------------
109
110A sample job file doing the same as above would look like this:
111
112[read_file]
113rw=0
114bs=4096
115
116[write_file]
117rw=1
118bs=16384
119
120And fio would be invoked as:
121
122$ fio -o1 -s -f file_with_above
123
124The second example would look like this:
125
126[rf1]
127rw=0
128prio=6
129
130[rf2]
131rw=0
132prio=3
133
134[rf3]
135rw=0
136prio=0
137direct=1
138
139And fio would be invoked as:
140
141$ fio -o0 -s -b4096 -f file_with_above
142
143'global' is a reserved keyword. When used as the filename, it sets the
144default options for the threads following that section. It is possible
145to have more than one global section in the file, as it only affects
146subsequent jobs.
147
148Also see the examples/ dir for sample job files.
149
150
151Interpreting the output
152-----------------------
153
154fio spits out a lot of output. While running, fio will display the
155status of the jobs created. An example of that would be:
156
157Threads now running: 2 : [ww] [5.73% done]
158
159The characters inside the square brackets denote the current status of
160each thread. The possible values (in typical life cycle order) are:
161
162Idle Run
163---- ---
164P Thread setup, but not started.
165C Thread created and running, but not doing anything yet
166 R Running, doing sequential reads.
167 r Running, doing random reads.
168 W Running, doing sequential writes.
169 w Running, doing random writes.
170V Running, doing verification of written data.
171E Thread exited, not reaped by main thread yet.
172_ Thread reaped.
173
174The other values are fairly self explanatory - number of thread currently
175running and doing io, and the estimated completion percentage.
176
177When fio is done (or interrupted by ctrl-c), it will show the data for
178each thread, group of threads, and disks in that order. For each data
179direction, the output looks like:
180
181Client1 (g=0): err= 0:
182 write: io= 32MiB, bw= 666KiB/s, runt= 50320msec
183 slat (msec): min= 0, max= 136, avg= 0.03, dev= 1.92
184 clat (msec): min= 0, max= 631, avg=48.50, dev=86.82
185 bw (KiB/s) : min= 0, max= 1196, per=51.00%, avg=664.02, dev=681.68
186 cpu : usr=1.49%, sys=0.25%, ctx=7969
187
188The client number is printed, along with the group id and error of that
189thread. Below is the io statistics, here for writes. In the order listed,
190they denote:
191
192io= Number of megabytes io performed
193bw= Average bandwidth rate
194runt= The runtime of that thread
195 slat= Submission latency (avg being the average, dev being the
196 standard deviation). This is the time it took to submit
197 the io. For sync io, the slat is really the completion
198 latency, since queue/complete is one operation there.
199 clat= Completion latency. Same names as slat, this denotes the
200 time from submission to completion of the io pieces. For
201 sync io, clat will usually be equal (or very close) to 0,
202 as the time from submit to complete is basically just
203 CPU time (io has already been done, see slat explanation).
204 bw= Bandwidth. Same names as the xlat stats, but also includes
205 an approximate percentage of total aggregate bandwidth
206 this thread received in this group. This last value is
207 only really useful if the threads in this group are on the
208 same disk, since they are then competing for disk access.
209cpu= CPU usage. User and system time, along with the number
210 of context switches this thread went through.
211
212After each client has been listed, the group statistics are printed. They
213will look like this:
214
215Run status group 0 (all jobs):
216 READ: io=64MiB, aggrb=22178, minb=11355, maxb=11814, mint=2840msec, maxt=2955msec
217 WRITE: io=64MiB, aggrb=1302, minb=666, maxb=669, mint=50093msec, maxt=50320msec
218
219For each data direction, it prints:
220
221io= Number of megabytes io performed.
222aggrb= Aggregate bandwidth of threads in this group.
223minb= The minimum average bandwidth a thread saw.
224maxb= The maximum average bandwidth a thread saw.
225mint= The minimum runtime of a thread.
226maxt= The maximum runtime of a thread.
227
228And finally, the disk statistics are printed. They will look like this:
229
230Disk stats (read/write):
231 sda: ios=16398/16511, merge=30/162, ticks=6853/819634, in_queue=826487, util=100.00%
232
233Each value is printed for both reads and writes, with reads first. The
234numbers denote:
235
236ios= Number of ios performed by all groups.
237merge= Number of merges io the io scheduler.
238ticks= Number of ticks we kept the disk busy.
239io_queue= Total time spent in the disk queue.
240util= The disk utilization. A value of 100% means we kept the disk
241 busy constantly, 50% would be a disk idling half of the time.