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5e6e3a92b9
This driver adds WiFi support for Marvell 802.11n based chipsets with SDIO interface. Currently only SD8787 is supported. More chipsets will be supported later. drivers/net/wireless/mwifiex/ Signed-off-by: Nishant Sarmukadam <nishants@marvell.com> Signed-off-by: Amitkumar Karwar <akarwar@marvell.com> Signed-off-by: Kiran Divekar <dkiran@marvell.com> Signed-off-by: Bing Zhao <bzhao@marvell.com> Signed-off-by: Yogesh Ashok Powar <yogeshp@marvell.com> Signed-off-by: Marc Yang <yangyang@marvell.com> Signed-off-by: Ramesh Radhakrishnan <rramesh@marvell.com> Signed-off-by: Frank Huang <frankh@marvell.com> Signed-off-by: John W. Linville <linville@tuxdriver.com>
205 lines
7.9 KiB
Plaintext
205 lines
7.9 KiB
Plaintext
# Copyright (C) 2011, Marvell International Ltd.
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#
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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 by writing to the Free Software Foundation, Inc.,
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# 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA or on the
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# worldwide web at http://www.gnu.org/licenses/old-licenses/gpl-2.0.txt.
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#
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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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U S E R M A N U A L
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1) FOR DRIVER INSTALL
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a) Copy sd8787.bin to /lib/firmware/mrvl/ directory,
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create the directory if it doesn't exist.
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b) Install WLAN driver,
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insmod mwifiex.ko
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c) Uninstall WLAN driver,
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ifconfig mlanX down
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rmmod mwifiex
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2) FOR DRIVER CONFIGURATION AND INFO
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The configurations can be done either using the 'iw' user space
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utility or debugfs.
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a) 'iw' utility commands
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Following are some useful iw commands:-
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iw dev mlan0 scan
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This command will trigger a scan.
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The command will then display the scan table entries
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iw dev mlan0 connect -w <SSID> [<freq in MHz>] [<bssid>] [key 0:abcde d:1123456789a]
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The above command can be used to connect to an AP with a particular SSID.
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Ap's operating frequency can be specified or even the bssid. If the AP is using
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WEP encryption, wep keys can be specified in the command.
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Note: Every time before connecting to an AP scan command (iw dev mlan0 scan) should be used by user.
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iw dev mlan0 disconnect
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This command will be used to disconnect from an AP.
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iw dev mlan0 ibss join <SSID> <freq in MHz> [fixed-freq] [fixed-bssid] [key 0:abcde]
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The command will be used to join or create an ibss. Optionally, operating frequency,
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bssid and the security related parameters can be specified while joining/creating
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and ibss.
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iw dev mlan0 ibss leave
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The command will be used to leave an ibss network.
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iw dev mlan0 link
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The command will be used to get the connection status. The command will return parameters
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such as SSID, operating frequency, rx/tx packets, signal strength, tx bitrate.
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Apart from the iw utility all standard configurations using the 'iwconfig' utility are also supported.
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b) Debugfs interface
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The debugfs interface can be used for configurations and for getting
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some useful information from the driver.
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The section below explains the configurations that can be
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done.
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Mount debugfs to /debugfs mount point:
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mkdir /debugfs
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mount -t debugfs debugfs /debugfs
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The information is provided in /debugfs/mwifiex/mlanX/:
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iw reg set <country code>
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The command will be used to change the regulatory domain.
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iw reg get
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The command will be used to get current regulatory domain.
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info
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This command is used to get driver info.
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Usage:
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cat info
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driver_name = "mwifiex"
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driver_version = <driver_name, driver_version, (firmware_version)>
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interface_name = "mlanX"
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bss_mode = "Ad-hoc" | "Managed" | "Auto" | "Unknown"
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media_state = "Disconnected" | "Connected"
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mac_address = <6-byte adapter MAC address>
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multicase_count = <multicast address count>
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essid = <current SSID>
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bssid = <current BSSID>
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channel = <current channel>
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region_code = <current region code>
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multicasr_address[n] = <multicast address>
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num_tx_bytes = <number of bytes sent to device>
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num_rx_bytes = <number of bytes received from device and sent to kernel>
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num_tx_pkts = <number of packets sent to device>
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num_rx_pkts = <number of packets received from device and sent to kernel>
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num_tx_pkts_dropped = <number of Tx packets dropped by driver>
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num_rx_pkts_dropped = <number of Rx packets dropped by driver>
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num_tx_pkts_err = <number of Tx packets failed to send to device>
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num_rx_pkts_err = <number of Rx packets failed to receive from device>
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carrier "on" | "off"
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tx queue "stopped" | "started"
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The following debug info are provided in /debugfs/mwifiex/mlanX/debug:
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int_counter = <interrupt count, cleared when interrupt handled>
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wmm_ac_vo = <number of packets sent to device from WMM AcVo queue>
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wmm_ac_vi = <number of packets sent to device from WMM AcVi queue>
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wmm_ac_be = <number of packets sent to device from WMM AcBE queue>
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wmm_ac_bk = <number of packets sent to device from WMM AcBK queue>
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max_tx_buf_size = <maximum Tx buffer size>
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tx_buf_size = <current Tx buffer size>
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curr_tx_buf_size = <current Tx buffer size>
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ps_mode = <0/1, CAM mode/PS mode>
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ps_state = <0/1/2/3, full power state/awake state/pre-sleep state/sleep state>
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is_deep_sleep = <0/1, not deep sleep state/deep sleep state>
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wakeup_dev_req = <0/1, wakeup device not required/required>
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wakeup_tries = <wakeup device count, cleared when device awake>
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hs_configured = <0/1, host sleep not configured/configured>
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hs_activated = <0/1, extended host sleep not activated/activated>
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num_tx_timeout = <number of Tx timeout>
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num_cmd_timeout = <number of timeout commands>
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timeout_cmd_id = <command id of the last timeout command>
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timeout_cmd_act = <command action of the last timeout command>
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last_cmd_id = <command id of the last several commands sent to device>
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last_cmd_act = <command action of the last several commands sent to device>
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last_cmd_index = <0 based last command index>
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last_cmd_resp_id = <command id of the last several command responses received from device>
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last_cmd_resp_index = <0 based last command response index>
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last_event = <event id of the last several events received from device>
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last_event_index = <0 based last event index>
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num_cmd_h2c_fail = <number of commands failed to send to device>
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num_cmd_sleep_cfm_fail = <number of sleep confirm failed to send to device>
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num_tx_h2c_fail = <number of data packets failed to send to device>
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num_evt_deauth = <number of deauthenticated events received from device>
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num_evt_disassoc = <number of disassociated events received from device>
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num_evt_link_lost = <number of link lost events received from device>
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num_cmd_deauth = <number of deauthenticate commands sent to device>
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num_cmd_assoc_ok = <number of associate commands with success return>
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num_cmd_assoc_fail = <number of associate commands with failure return>
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cmd_sent = <0/1, send command resources available/sending command to device>
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data_sent = <0/1, send data resources available/sending data to device>
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mp_rd_bitmap = <SDIO multi-port read bitmap>
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mp_wr_bitmap = <SDIO multi-port write bitmap>
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cmd_resp_received = <0/1, no cmd response to process/response received and yet to process>
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event_received = <0/1, no event to process/event received and yet to process>
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ioctl_pending = <number of ioctl pending>
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tx_pending = <number of Tx packet pending>
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rx_pending = <number of Rx packet pending>
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3) FOR DRIVER CONFIGURATION
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regrdwr
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This command is used to read/write the adapter register.
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Usage:
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echo " <type> <offset> [value]" > regrdwr
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cat regrdwr
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where the parameters are,
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<type>: 1:MAC/SOC, 2:BBP, 3:RF, 4:PMIC, 5:CAU
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<offset>: offset of register
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[value]: value to be written
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Examples:
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echo "1 0xa060" > regrdwr : Read the MAC register
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echo "1 0xa060 0x12" > regrdwr : Write the MAC register
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echo "1 0xa794 0x80000000" > regrdwr
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: Write 0x80000000 to MAC register
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rdeeprom
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This command is used to read the EEPROM contents of the card.
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Usage:
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echo "<offset> <length>" > rdeeprom
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cat rdeeprom
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where the parameters are,
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<offset>: multiples of 4
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<length>: 4-20, multiples of 4
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Example:
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echo "0 20" > rdeeprom : Read 20 bytes of EEPROM data from offset 0
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getlog
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This command is used to get the statistics available in the station.
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Usage:
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cat getlog
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===============================================================================
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