xref: /freebsd/usr.sbin/i2c/i2c.8 (revision 1f474190)
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26.\" $FreeBSD$
27.\"
28.Dd May 22, 2019
29.Dt I2C 8
30.Os
31.Sh NAME
32.Nm i2c
33.Nd test I2C bus and slave devices
34.Sh SYNOPSIS
35.Nm
36.Cm -a Ar address
37.Op Fl f Ar device
38.Op Fl d Ar r|w
39.Op Fl w Ar 0|8|16
40.Op Fl o Ar offset
41.Op Fl c Ar count
42.Op Fl m Ar tr|ss|rs|no
43.Op Fl b
44.Op Fl v
45.Nm
46.Cm -s
47.Op Fl f Ar device
48.Op Fl n Ar skip_addr
49.Op Fl v
50.Nm
51.Cm -r
52.Op Fl f Ar device
53.Op Fl v
54.Sh DESCRIPTION
55The
56.Nm
57utility can be used to perform raw data transfers (read or write) with devices
58on the I2C bus.
59It can also scan the bus for available devices and reset the I2C controller.
60.Pp
61The options are as follows:
62.Bl -tag -width ".Fl d Ar direction"
63.It Fl a Ar address
647-bit address on the I2C device to operate on (hex).
65.It Fl b
66binary mode - when performing a read operation, the data read from the device
67is output in binary format on stdout; when doing a write, the binary data to
68be written to the device is read from stdin.
69.It Fl c Ar count
70number of bytes to transfer (dec).
71.It Fl d Ar r|w
72transfer direction: r - read, w - write.
73.It Fl f Ar device
74I2C bus to use (default is /dev/iic0).
75.It Fl m Ar tr|ss|rs|no
76addressing mode, i.e., I2C bus operations performed after the offset for the
77transfer has been written to the device and before the actual read/write
78operation.
79.Bl -tag -compact -offset indent
80.It Va tr
81complete-transfer
82.It Va ss
83stop then start
84.It Va rs
85repeated start
86.It Va no
87none
88.El
89Some I2C bus hardware does not provide control over the individual start,
90repeat-start, and stop operations.
91Such hardware can only perform a complete transfer of the offset and the
92data as a single operation.
93The
94.Va tr
95mode creates control structures describing the transfer and submits them
96to the driver as a single complete transaction.
97This mode works on all types of I2C hardware.
98.It Fl n Ar skip_addr
99skip address - address(es) to be skipped during bus scan.
100There are two ways to specify addresses to ignore: by range 'a..b' or
101using selected addresses 'a:b:c'. This option is available only when "-s" is
102used.
103.It Fl o Ar offset
104offset within the device for data transfer (hex).
105The default is zero.
106Use
107.Dq -w 0
108to disable writing of the offset to the slave.
109.It Fl r
110reset the controller.
111.It Fl s
112scan the bus for devices.
113.It Fl v
114be verbose.
115.It Fl w Ar 0|8|16
116device addressing width (in bits).
117This is used to determine how to pass
118.Ar offset
119specified with
120.Fl o
121to the slave.
122Zero means that the offset is ignored and not passed to the slave at all.
123.El
124.Sh WARNINGS
125Great care must be taken when manipulating slave I2C devices with the
126.Nm
127utility.
128Often times important configuration data for the system is kept in non-volatile
129but write enabled memories located on the I2C bus, for example Ethernet hardware
130addresses, RAM module parameters (SPD), processor reset configuration word etc.
131.Pp
132It is very easy to render the whole system unusable when such configuration
133data is deleted or altered, so use the
134.Dq -d w
135(write) command only if you know exactly what you are doing.
136.Pp
137Also avoid ungraceful interrupting of an ongoing transaction on the I2C bus,
138as it can lead to potentially dangerous effects.
139Consider the following scenario: when the host CPU is reset (for whatever reason)
140in the middle of a started I2C transaction, the I2C slave device could be left
141in write mode waiting for data or offset to arrive.
142When the CPU reinitializes itself and talks to this I2C slave device again,
143the commands and other control info it sends are treated by the slave device
144as data or offset it was waiting for, and there's great potential for
145corruption if such a write is performed.
146.Sh EXAMPLES
147.Bl -bullet
148.It
149Scan the default bus (/dev/iic0) for devices:
150.Pp
151i2c -s
152.It
153Scan the default bus (/dev/iic0) for devices and skip addresses 0x56 and
1540x45.
155.Pp
156i2c -s -n 0x56:0x45
157.It
158Scan the default bus (/dev/iic0) for devices and skip address range
1590x34 to 0x56.
160.Pp
161i2c -s -n 0x34..0x56
162.It
163Read 8 bytes of data from device at address 0x56 (e.g., an EEPROM):
164.Pp
165i2c -a 0x56 -d r -c 8
166.It
167Write 16 bytes of data from file data.bin to device 0x56 at offset 0x10:
168.Pp
169i2c -a 0x56 -d w -c 16 -o 0x10 -b < data.bin
170.It
171Copy 4 bytes between two EEPROMs (0x56 on /dev/iic1 to 0x57 on /dev/iic0):
172.Pp
173i2c -a 0x56 -f /dev/iic1 -d r -c 0x4 -b | i2c -a 0x57 -f /dev/iic0 -d w -c 4 -b
174.It
175Reset the controller:
176.Pp
177i2c -f /dev/iic1 -r
178.El
179.Sh SEE ALSO
180.Xr iic 4 ,
181.Xr iicbus 4
182.Sh HISTORY
183The
184.Nm
185utility appeared in
186.Fx 8.0 .
187.Sh AUTHORS
188.An -nosplit
189The
190.Nm
191utility and this manual page were written by
192.An Bartlomiej Sieka Aq Mt tur@semihalf.com
193and
194.An Michal Hajduk Aq Mt mih@semihalf.com .
195