2012-05-16 04:50:19 +08:00
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/*
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* IEEE802.15.4-2003 specification
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*
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* Copyright (C) 2007-2012 Siemens AG
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2
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* as published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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*/
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#ifndef NET_MAC802154_H
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#define NET_MAC802154_H
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#include <net/af_ieee802154.h>
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2014-11-06 03:51:23 +08:00
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#include <linux/ieee802154.h>
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2014-03-15 04:24:00 +08:00
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#include <linux/skbuff.h>
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2012-05-16 04:50:19 +08:00
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2012-06-26 07:24:48 +08:00
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/* General MAC frame format:
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* 2 bytes: Frame Control
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* 1 byte: Sequence Number
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* 20 bytes: Addressing fields
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* 14 bytes: Auxiliary Security Header
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*/
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#define MAC802154_FRAME_HARD_HEADER_LEN (2 + 1 + 20 + 14)
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2012-05-16 04:50:19 +08:00
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/* The following flags are used to indicate changed address settings from
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* the stack to the hardware.
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*/
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/* indicates that the Short Address changed */
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2014-10-25 11:25:09 +08:00
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#define IEEE802154_AFILT_SADDR_CHANGED 0x00000001
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2012-05-16 04:50:19 +08:00
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/* indicates that the IEEE Address changed */
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2014-10-25 11:25:09 +08:00
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#define IEEE802154_AFILT_IEEEADDR_CHANGED 0x00000002
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2012-05-16 04:50:19 +08:00
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/* indicates that the PAN ID changed */
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#define IEEE802154_AFILT_PANID_CHANGED 0x00000004
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2012-05-16 04:50:19 +08:00
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/* indicates that PAN Coordinator status changed */
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2014-10-25 11:25:09 +08:00
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#define IEEE802154_AFILT_PANC_CHANGED 0x00000008
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2012-05-16 04:50:19 +08:00
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struct ieee802154_hw_addr_filt {
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__le16 pan_id; /* Each independent PAN selects a unique
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* identifier. This PAN id allows communication
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* between devices within a network using short
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* addresses and enables transmissions between
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* devices across independent networks.
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*/
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__le16 short_addr;
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2014-03-15 04:23:59 +08:00
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__le64 ieee_addr;
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2012-05-16 04:50:19 +08:00
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u8 pan_coord;
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};
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2014-11-06 03:51:20 +08:00
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struct ieee802154_vif {
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int type;
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/* must be last */
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u8 drv_priv[0] __aligned(sizeof(void *));
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};
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2014-10-25 23:16:34 +08:00
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struct ieee802154_hw {
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2012-05-16 04:50:19 +08:00
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/* filled by the driver */
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int extra_tx_headroom;
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u32 flags;
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struct device *parent;
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/* filled by mac802154 core */
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struct ieee802154_hw_addr_filt hw_filt;
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void *priv;
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struct wpan_phy *phy;
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size_t vif_data_size;
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2012-05-16 04:50:19 +08:00
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};
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/* Checksum is in hardware and is omitted from a packet
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*
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* These following flags are used to indicate hardware capabilities to
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* the stack. Generally, flags here should have their meaning
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* done in a way that the simplest hardware doesn't need setting
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* any particular flags. There are some exceptions to this rule,
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* however, so you are advised to review these flags carefully.
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*/
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2014-10-30 04:34:34 +08:00
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/* Indicates that xmitter will add FCS on it's own. */
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#define IEEE802154_HW_TX_OMIT_CKSUM 0x00000001
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2012-05-16 04:50:19 +08:00
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/* Indicates that receiver will autorespond with ACK frames. */
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#define IEEE802154_HW_AACK 0x00000002
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2014-07-03 06:20:43 +08:00
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/* Indicates that transceiver will support transmit power setting. */
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#define IEEE802154_HW_TXPOWER 0x00000004
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/* Indicates that transceiver will support listen before transmit. */
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#define IEEE802154_HW_LBT 0x00000008
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2014-07-03 06:20:43 +08:00
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/* Indicates that transceiver will support cca mode setting. */
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#define IEEE802154_HW_CCA_MODE 0x00000010
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/* Indicates that transceiver will support cca ed level setting. */
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#define IEEE802154_HW_CCA_ED_LEVEL 0x00000020
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/* Indicates that transceiver will support csma (max_be, min_be, csma retries)
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* settings. */
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2014-10-30 04:34:29 +08:00
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#define IEEE802154_HW_CSMA_PARAMS 0x00000040
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2014-07-03 06:20:43 +08:00
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/* Indicates that transceiver will support ARET frame retries setting. */
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2014-10-30 04:34:29 +08:00
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#define IEEE802154_HW_FRAME_RETRIES 0x00000080
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2014-10-30 04:34:31 +08:00
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/* Indicates that transceiver will support hardware address filter setting. */
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#define IEEE802154_HW_AFILT 0x00000100
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2014-10-30 04:34:32 +08:00
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/* Indicates that transceiver will support promiscuous mode setting. */
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#define IEEE802154_HW_PROMISCUOUS 0x00000200
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2014-10-30 04:34:34 +08:00
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/* Indicates that receiver omits FCS. */
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#define IEEE802154_HW_RX_OMIT_CKSUM 0x00000400
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2014-10-30 04:34:37 +08:00
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/* Indicates that receiver will not filter frames with bad checksum. */
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#define IEEE802154_HW_RX_DROP_BAD_CKSUM 0x00000800
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2014-10-30 04:34:34 +08:00
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/* Indicates that receiver omits FCS and xmitter will add FCS on it's own. */
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#define IEEE802154_HW_OMIT_CKSUM (IEEE802154_HW_TX_OMIT_CKSUM | \
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IEEE802154_HW_RX_OMIT_CKSUM)
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2014-07-03 06:20:43 +08:00
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/* This groups the most common CSMA support fields into one. */
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#define IEEE802154_HW_CSMA (IEEE802154_HW_CCA_MODE | \
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IEEE802154_HW_CCA_ED_LEVEL | \
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2014-10-30 04:34:30 +08:00
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IEEE802154_HW_CSMA_PARAMS)
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/* This groups the most common ARET support fields into one. */
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#define IEEE802154_HW_ARET (IEEE802154_HW_CSMA | \
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2014-07-03 06:20:43 +08:00
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IEEE802154_HW_FRAME_RETRIES)
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2012-05-16 04:50:19 +08:00
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/* struct ieee802154_ops - callbacks from mac802154 to the driver
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*
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* This structure contains various callbacks that the driver may
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* handle or, in some cases, must handle, for example to transmit
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* a frame.
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*
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* start: Handler that 802.15.4 module calls for device initialization.
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* This function is called before the first interface is attached.
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*
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* stop: Handler that 802.15.4 module calls for device cleanup.
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* This function is called after the last interface is removed.
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*
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2014-10-26 16:37:08 +08:00
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* xmit_sync:
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* Handler that 802.15.4 module calls for each transmitted frame.
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* skb cntains the buffer starting from the IEEE 802.15.4 header.
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* The low-level driver should send the frame based on available
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* configuration. This is called by a workqueue and useful for
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* synchronous 802.15.4 drivers.
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* This function should return zero or negative errno.
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*
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2014-10-26 16:37:14 +08:00
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* WARNING:
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* This will be deprecated soon. We don't accept synced xmit callbacks
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* drivers anymore.
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*
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2014-10-26 16:37:08 +08:00
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* xmit_async:
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* Handler that 802.15.4 module calls for each transmitted frame.
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2012-05-16 04:50:19 +08:00
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* skb cntains the buffer starting from the IEEE 802.15.4 header.
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* The low-level driver should send the frame based on available
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* configuration.
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2014-10-26 16:37:04 +08:00
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* This function should return zero or negative errno.
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2012-05-16 04:50:19 +08:00
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*
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* ed: Handler that 802.15.4 module calls for Energy Detection.
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* This function should place the value for detected energy
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* (usually device-dependant) in the level pointer and return
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* either zero or negative errno. Called with pib_lock held.
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*
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* set_channel:
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* Set radio for listening on specific channel.
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* Set the device for listening on specified channel.
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* Returns either zero, or negative errno. Called with pib_lock held.
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*
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* set_hw_addr_filt:
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* Set radio for listening on specific address.
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* Set the device for listening on specified address.
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* Returns either zero, or negative errno.
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2014-02-17 18:34:08 +08:00
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*
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* set_txpower:
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* Set radio transmit power in dB. Called with pib_lock held.
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* Returns either zero, or negative errno.
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2014-02-17 18:34:10 +08:00
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*
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* set_lbt
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* Enables or disables listen before talk on the device. Called with
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* pib_lock held.
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* Returns either zero, or negative errno.
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2014-02-17 18:34:11 +08:00
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*
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* set_cca_mode
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* Sets the CCA mode used by the device. Called with pib_lock held.
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* Returns either zero, or negative errno.
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2014-02-17 18:34:12 +08:00
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*
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* set_cca_ed_level
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* Sets the CCA energy detection threshold in dBm. Called with pib_lock
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* held.
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* Returns either zero, or negative errno.
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2014-02-17 18:34:14 +08:00
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*
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* set_csma_params
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* Sets the CSMA parameter set for the PHY. Called with pib_lock held.
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* Returns either zero, or negative errno.
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*
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* set_frame_retries
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* Sets the retransmission attempt limit. Called with pib_lock held.
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* Returns either zero, or negative errno.
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2014-10-30 04:34:32 +08:00
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*
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* set_promiscuous_mode
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* Enables or disable promiscuous mode.
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2012-05-16 04:50:19 +08:00
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*/
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struct ieee802154_ops {
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struct module *owner;
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2014-10-25 23:16:34 +08:00
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int (*start)(struct ieee802154_hw *hw);
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void (*stop)(struct ieee802154_hw *hw);
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2014-10-26 16:37:08 +08:00
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int (*xmit_sync)(struct ieee802154_hw *hw,
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struct sk_buff *skb);
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int (*xmit_async)(struct ieee802154_hw *hw,
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struct sk_buff *skb);
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2014-10-25 23:16:34 +08:00
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int (*ed)(struct ieee802154_hw *hw, u8 *level);
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2014-10-29 01:21:19 +08:00
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int (*set_channel)(struct ieee802154_hw *hw, u8 page,
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u8 channel);
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2014-10-25 23:16:34 +08:00
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int (*set_hw_addr_filt)(struct ieee802154_hw *hw,
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struct ieee802154_hw_addr_filt *filt,
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2012-05-16 04:50:19 +08:00
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unsigned long changed);
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2014-10-25 23:16:34 +08:00
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int (*set_txpower)(struct ieee802154_hw *hw, int db);
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int (*set_lbt)(struct ieee802154_hw *hw, bool on);
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int (*set_cca_mode)(struct ieee802154_hw *hw, u8 mode);
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int (*set_cca_ed_level)(struct ieee802154_hw *hw,
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2014-02-17 18:34:12 +08:00
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s32 level);
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2014-10-25 23:16:34 +08:00
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int (*set_csma_params)(struct ieee802154_hw *hw,
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2014-02-17 18:34:14 +08:00
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u8 min_be, u8 max_be, u8 retries);
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2014-10-25 23:16:34 +08:00
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int (*set_frame_retries)(struct ieee802154_hw *hw,
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2014-02-17 18:34:14 +08:00
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s8 retries);
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2014-10-30 04:34:32 +08:00
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int (*set_promiscuous_mode)(struct ieee802154_hw *hw,
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const bool on);
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2012-05-16 04:50:19 +08:00
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};
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2014-11-02 11:18:40 +08:00
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/**
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2014-11-06 03:51:24 +08:00
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* ieee802154_be64_to_le64 - copies and convert be64 to le64
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* @le64_dst: le64 destination pointer
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* @be64_src: be64 source pointer
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2014-11-02 11:18:40 +08:00
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*/
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2014-11-06 03:51:24 +08:00
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static inline void ieee802154_be64_to_le64(void *le64_dst, const void *be64_src)
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2014-11-02 11:18:40 +08:00
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{
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2014-11-06 03:51:24 +08:00
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__le64 tmp = (__force __le64)swab64p(be64_src);
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memcpy(le64_dst, &tmp, IEEE802154_EXTENDED_ADDR_LEN);
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2014-11-02 11:18:40 +08:00
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}
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2014-11-06 03:51:23 +08:00
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/**
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* ieee802154_le64_to_be64 - copies and convert le64 to be64
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* @be64_dst: be64 destination pointer
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* @le64_src: le64 source pointer
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*/
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static inline void ieee802154_le64_to_be64(void *be64_dst, const void *le64_src)
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{
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__be64 tmp = (__force __be64)swab64p(le64_src);
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memcpy(be64_dst, &tmp, IEEE802154_EXTENDED_ADDR_LEN);
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}
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2014-10-25 23:16:34 +08:00
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/* Basic interface to register ieee802154 hwice */
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struct ieee802154_hw *
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2014-10-29 01:21:18 +08:00
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ieee802154_alloc_hw(size_t priv_data_len, const struct ieee802154_ops *ops);
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2014-10-25 23:16:34 +08:00
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void ieee802154_free_hw(struct ieee802154_hw *hw);
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int ieee802154_register_hw(struct ieee802154_hw *hw);
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void ieee802154_unregister_hw(struct ieee802154_hw *hw);
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2012-05-16 04:50:20 +08:00
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2014-10-28 00:13:30 +08:00
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void ieee802154_rx(struct ieee802154_hw *hw, struct sk_buff *skb);
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2014-10-25 23:16:34 +08:00
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void ieee802154_rx_irqsafe(struct ieee802154_hw *hw, struct sk_buff *skb,
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2012-05-16 04:50:21 +08:00
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u8 lqi);
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2014-10-26 16:37:05 +08:00
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void ieee802154_wake_queue(struct ieee802154_hw *hw);
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void ieee802154_stop_queue(struct ieee802154_hw *hw);
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void ieee802154_xmit_complete(struct ieee802154_hw *hw, struct sk_buff *skb);
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2012-05-16 04:50:19 +08:00
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#endif /* NET_MAC802154_H */
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