242 lines
8.0 KiB
Plaintext
242 lines
8.0 KiB
Plaintext
================================================================================
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README for USB8388
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(c) Copyright © 2003-2006, Marvell International Ltd.
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All Rights Reserved
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This software file (the "File") is distributed by Marvell International
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Ltd. under the terms of the GNU General Public License Version 2, June 1991
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(the "License"). You may use, redistribute and/or modify this File in
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accordance with the terms and conditions of the License, a copy of which
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is available along with the File in the license.txt file or by writing to
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the Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
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02111-1307 or on the worldwide web at http://www.gnu.org/licenses/gpl.txt.
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THE FILE IS DISTRIBUTED AS-IS, WITHOUT WARRANTY OF ANY KIND, AND THE
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IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE
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ARE EXPRESSLY DISCLAIMED. The License provides additional details about
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this warranty disclaimer.
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================================================================================
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=====================
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DRIVER LOADING
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=====================
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o. Copy the firmware image (e.g. usb8388.bin) to /lib/firmware/
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o. Load driver by using the following command:
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insmod usb8388.ko [fw_name=usb8388.bin]
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=========================
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ETHTOOL
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=========================
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Use the -i option to retrieve version information from the driver.
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# ethtool -i eth0
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driver: libertas
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version: COMM-USB8388-318.p4
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firmware-version: 5.110.7
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bus-info:
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Use the -e option to read the EEPROM contents of the card.
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Usage:
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ethtool -e ethX [raw on|off] [offset N] [length N]
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-e retrieves and prints an EEPROM dump for the specified ethernet
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device. When raw is enabled, then it dumps the raw EEPROM data
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to stdout. The length and offset parameters allow dumping cer-
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tain portions of the EEPROM. Default is to dump the entire EEP-
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ROM.
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# ethtool -e eth0 offset 0 length 16
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Offset Values
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------ ------
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0x0000 38 33 30 58 00 00 34 f4 00 00 10 00 00 c4 17 00
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========================
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DEBUGFS COMMANDS
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========================
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those commands are used via debugfs interface
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===========
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rdmac
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rdbbp
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rdrf
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These commands are used to read the MAC, BBP and RF registers from the
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card. These commands take one parameter that specifies the offset
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location that is to be read. This parameter must be specified in
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hexadecimal (its possible to preceed preceding the number with a "0x").
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Path: /debugfs/libertas_wireless/ethX/registers/
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Usage:
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echo "0xa123" > rdmac ; cat rdmac
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echo "0xa123" > rdbbp ; cat rdbbp
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echo "0xa123" > rdrf ; cat rdrf
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wrmac
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wrbbp
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wrrf
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These commands are used to write the MAC, BBP and RF registers in the
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card. These commands take two parameters that specify the offset
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location and the value that is to be written. This parameters must
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be specified in hexadecimal (its possible to preceed the number
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with a "0x").
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Usage:
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echo "0xa123 0xaa" > wrmac
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echo "0xa123 0xaa" > wrbbp
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echo "0xa123 0xaa" > wrrf
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sleepparams
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This command is used to set the sleepclock configurations
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Path: /debugfs/libertas_wireless/ethX/
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Usage:
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cat sleepparams: reads the current sleepclock configuration
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echo "p1 p2 p3 p4 p5 p6" > sleepparams: writes the sleepclock configuration.
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where:
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p1 is Sleep clock error in ppm (0-65535)
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p2 is Wakeup offset in usec (0-65535)
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p3 is Clock stabilization time in usec (0-65535)
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p4 is Control periodic calibration (0-2)
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p5 is Control the use of external sleep clock (0-2)
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p6 is reserved for debug (0-65535)
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subscribed_events
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The subscribed_events directory contains the interface for the
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subscribed events API.
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Path: /debugfs/libertas_wireless/ethX/subscribed_events/
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Each event is represented by a filename. Each filename consists of the
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following three fields:
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Value Frequency Subscribed
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To read the current values for a given event, do:
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cat event
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To set the current values, do:
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echo "60 2 1" > event
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Frequency field specifies the reporting frequency for this event.
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If it is set to 0, then the event is reported only once, and then
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automatically unsubscribed. If it is set to 1, then the event is
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reported every time it occurs. If it is set to N, then the event is
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reported every Nth time it occurs.
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beacon_missed
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Value field specifies the number of consecutive missing beacons which
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triggers the LINK_LOSS event. This event is generated only once after
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which the firmware resets its state. At initialization, the LINK_LOSS
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event is subscribed by default. The default value of MissedBeacons is
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60.
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failure_count
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Value field specifies the consecutive failure count threshold which
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triggers the generation of the MAX_FAIL event. Once this event is
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generated, the consecutive failure count is reset to 0.
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At initialization, the MAX_FAIL event is NOT subscribed by
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default.
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high_rssi
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This event is generated when the average received RSSI in beacons goes
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above a threshold, specified by Value.
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low_rssi
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This event is generated when the average received RSSI in beacons goes
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below a threshold, specified by Value.
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high_snr
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This event is generated when the average received SNR in beacons goes
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above a threshold, specified by Value.
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low_snr
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This event is generated when the average received SNR in beacons goes
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below a threshold, specified by Value.
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extscan
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This command is used to do a specific scan.
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Path: /debugfs/libertas_wireless/ethX/
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Usage: echo "SSID" > extscan
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Example:
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echo "LINKSYS-AP" > extscan
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To see the results of use getscantable command.
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getscantable
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Display the current contents of the driver scan table (ie. get the
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scan results).
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Path: /debugfs/libertas_wireless/ethX/
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Usage:
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cat getscantable
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setuserscan
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Initiate a customized scan and retrieve the results
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Path: /debugfs/libertas_wireless/ethX/
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Usage:
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echo "[ARGS]" > setuserscan
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where [ARGS]:
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chan=[chan#][band][mode] where band is [a,b,g] and mode is
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blank for active or 'p' for passive
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bssid=xx:xx:xx:xx:xx:xx specify a BSSID filter for the scan
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ssid="[SSID]" specify a SSID filter for the scan
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keep=[0 or 1] keep the previous scan results (1), discard (0)
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dur=[scan time] time to scan for each channel in milliseconds
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probes=[#] number of probe requests to send on each chan
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type=[1,2,3] BSS type: 1 (Infra), 2(Adhoc), 3(Any)
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Any combination of the above arguments can be supplied on the command line.
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If the chan token is absent, a full channel scan will be completed by
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the driver. If the dur or probes tokens are absent, the driver default
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setting will be used. The bssid and ssid fields, if blank,
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will produce an unfiltered scan. The type field will default to 3 (Any)
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and the keep field will default to 0 (Discard).
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Examples:
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1) Perform an active scan on channels 1, 6, and 11 in the 'g' band:
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echo "chan=1g,6g,11g" > setuserscan
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2) Perform a passive scan on channel 11 for 20 ms:
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echo "chan=11gp dur=20" > setuserscan
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3) Perform an active scan on channels 1, 6, and 11; and a passive scan on
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channel 36 in the 'a' band:
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echo "chan=1g,6g,11g,36ap" > setuserscan
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4) Perform an active scan on channel 6 and 36 for a specific SSID:
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echo "chan=6g,36a ssid="TestAP"" > setuserscan
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5) Scan all available channels (B/G, A bands) for a specific BSSID, keep
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the current scan table intact, update existing or append new scan data:
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echo "bssid=00:50:43:20:12:82 keep=1" > setuserscan
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6) Scan channel 6, for all infrastructure networks, sending two probe
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requests. Keep the previous scan table intact. Update any duplicate
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BSSID/SSID matches with the new scan data:
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echo "chan=6g type=1 probes=2 keep=1" > setuserscan
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All entries in the scan table (not just the new scan data when keep=1)
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will be displayed upon completion by use of the getscantable ioctl.
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==============================================================================
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