rt2x00dev.c 32.6 KB
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/*
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	Copyright (C) 2004 - 2008 rt2x00 SourceForge Project
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	<http://rt2x00.serialmonkey.com>

	This program is free software; you can redistribute it and/or modify
	it under the terms of the GNU General Public License as published by
	the Free Software Foundation; either version 2 of the License, or
	(at your option) any later version.

	This program is distributed in the hope that it will be useful,
	but WITHOUT ANY WARRANTY; without even the implied warranty of
	MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
	GNU General Public License for more details.

	You should have received a copy of the GNU General Public License
	along with this program; if not, write to the
	Free Software Foundation, Inc.,
	59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
 */

/*
	Module: rt2x00lib
	Abstract: rt2x00 generic device routines.
 */

#include <linux/kernel.h>
#include <linux/module.h>

#include "rt2x00.h"
#include "rt2x00lib.h"
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#include "rt2x00dump.h"
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/*
 * Link tuning handlers
 */
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void rt2x00lib_reset_link_tuner(struct rt2x00_dev *rt2x00dev)
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{
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	if (!test_bit(DEVICE_ENABLED_RADIO, &rt2x00dev->flags))
		return;

	/*
	 * Reset link information.
	 * Both the currently active vgc level as well as
	 * the link tuner counter should be reset. Resetting
	 * the counter is important for devices where the
	 * device should only perform link tuning during the
	 * first minute after being enabled.
	 */
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	rt2x00dev->link.count = 0;
	rt2x00dev->link.vgc_level = 0;

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	/*
	 * Reset the link tuner.
	 */
	rt2x00dev->ops->lib->reset_tuner(rt2x00dev);
}

static void rt2x00lib_start_link_tuner(struct rt2x00_dev *rt2x00dev)
{
	/*
	 * Clear all (possibly) pre-existing quality statistics.
	 */
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	memset(&rt2x00dev->link.qual, 0, sizeof(rt2x00dev->link.qual));

	/*
	 * The RX and TX percentage should start at 50%
	 * this will assure we will get at least get some
	 * decent value when the link tuner starts.
	 * The value will be dropped and overwritten with
	 * the correct (measured )value anyway during the
	 * first run of the link tuner.
	 */
	rt2x00dev->link.qual.rx_percentage = 50;
	rt2x00dev->link.qual.tx_percentage = 50;
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	rt2x00lib_reset_link_tuner(rt2x00dev);
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	queue_delayed_work(rt2x00dev->hw->workqueue,
			   &rt2x00dev->link.work, LINK_TUNE_INTERVAL);
}

static void rt2x00lib_stop_link_tuner(struct rt2x00_dev *rt2x00dev)
{
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	cancel_delayed_work_sync(&rt2x00dev->link.work);
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}

/*
 * Radio control handlers.
 */
int rt2x00lib_enable_radio(struct rt2x00_dev *rt2x00dev)
{
	int status;

	/*
	 * Don't enable the radio twice.
	 * And check if the hardware button has been disabled.
	 */
	if (test_bit(DEVICE_ENABLED_RADIO, &rt2x00dev->flags) ||
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	    test_bit(DEVICE_DISABLED_RADIO_HW, &rt2x00dev->flags))
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		return 0;

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	/*
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	 * Initialize all data queues.
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	 */
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	rt2x00queue_init_rx(rt2x00dev);
	rt2x00queue_init_tx(rt2x00dev);
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	/*
	 * Enable radio.
	 */
	status = rt2x00dev->ops->lib->set_device_state(rt2x00dev,
						       STATE_RADIO_ON);
	if (status)
		return status;

	__set_bit(DEVICE_ENABLED_RADIO, &rt2x00dev->flags);

	/*
	 * Enable RX.
	 */
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	rt2x00lib_toggle_rx(rt2x00dev, STATE_RADIO_RX_ON);
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	/*
	 * Start the TX queues.
	 */
	ieee80211_start_queues(rt2x00dev->hw);

	return 0;
}

void rt2x00lib_disable_radio(struct rt2x00_dev *rt2x00dev)
{
	if (!__test_and_clear_bit(DEVICE_ENABLED_RADIO, &rt2x00dev->flags))
		return;

	/*
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	 * Stop all scheduled work.
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	 */
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	if (work_pending(&rt2x00dev->intf_work))
		cancel_work_sync(&rt2x00dev->intf_work);
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	if (work_pending(&rt2x00dev->filter_work))
		cancel_work_sync(&rt2x00dev->filter_work);
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	/*
	 * Stop the TX queues.
	 */
	ieee80211_stop_queues(rt2x00dev->hw);

	/*
	 * Disable RX.
	 */
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	rt2x00lib_toggle_rx(rt2x00dev, STATE_RADIO_RX_OFF);
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	/*
	 * Disable radio.
	 */
	rt2x00dev->ops->lib->set_device_state(rt2x00dev, STATE_RADIO_OFF);
}

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void rt2x00lib_toggle_rx(struct rt2x00_dev *rt2x00dev, enum dev_state state)
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{
	/*
	 * When we are disabling the RX, we should also stop the link tuner.
	 */
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	if (state == STATE_RADIO_RX_OFF)
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		rt2x00lib_stop_link_tuner(rt2x00dev);

	rt2x00dev->ops->lib->set_device_state(rt2x00dev, state);

	/*
	 * When we are enabling the RX, we should also start the link tuner.
	 */
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	if (state == STATE_RADIO_RX_ON &&
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	    (rt2x00dev->intf_ap_count || rt2x00dev->intf_sta_count))
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		rt2x00lib_start_link_tuner(rt2x00dev);
}

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static void rt2x00lib_evaluate_antenna_sample(struct rt2x00_dev *rt2x00dev)
{
	enum antenna rx = rt2x00dev->link.ant.active.rx;
	enum antenna tx = rt2x00dev->link.ant.active.tx;
	int sample_a =
	    rt2x00_get_link_ant_rssi_history(&rt2x00dev->link, ANTENNA_A);
	int sample_b =
	    rt2x00_get_link_ant_rssi_history(&rt2x00dev->link, ANTENNA_B);

	/*
	 * We are done sampling. Now we should evaluate the results.
	 */
	rt2x00dev->link.ant.flags &= ~ANTENNA_MODE_SAMPLE;

	/*
	 * During the last period we have sampled the RSSI
	 * from both antenna's. It now is time to determine
	 * which antenna demonstrated the best performance.
	 * When we are already on the antenna with the best
	 * performance, then there really is nothing for us
	 * left to do.
	 */
	if (sample_a == sample_b)
		return;

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	if (rt2x00dev->link.ant.flags & ANTENNA_RX_DIVERSITY)
		rx = (sample_a > sample_b) ? ANTENNA_A : ANTENNA_B;
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	if (rt2x00dev->link.ant.flags & ANTENNA_TX_DIVERSITY)
		tx = (sample_a > sample_b) ? ANTENNA_A : ANTENNA_B;
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	rt2x00lib_config_antenna(rt2x00dev, rx, tx);
}

static void rt2x00lib_evaluate_antenna_eval(struct rt2x00_dev *rt2x00dev)
{
	enum antenna rx = rt2x00dev->link.ant.active.rx;
	enum antenna tx = rt2x00dev->link.ant.active.tx;
	int rssi_curr = rt2x00_get_link_ant_rssi(&rt2x00dev->link);
	int rssi_old = rt2x00_update_ant_rssi(&rt2x00dev->link, rssi_curr);

	/*
	 * Legacy driver indicates that we should swap antenna's
	 * when the difference in RSSI is greater that 5. This
	 * also should be done when the RSSI was actually better
	 * then the previous sample.
	 * When the difference exceeds the threshold we should
	 * sample the rssi from the other antenna to make a valid
	 * comparison between the 2 antennas.
	 */
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	if (abs(rssi_curr - rssi_old) < 5)
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		return;

	rt2x00dev->link.ant.flags |= ANTENNA_MODE_SAMPLE;

	if (rt2x00dev->link.ant.flags & ANTENNA_RX_DIVERSITY)
		rx = (rx == ANTENNA_A) ? ANTENNA_B : ANTENNA_A;

	if (rt2x00dev->link.ant.flags & ANTENNA_TX_DIVERSITY)
		tx = (tx == ANTENNA_A) ? ANTENNA_B : ANTENNA_A;

	rt2x00lib_config_antenna(rt2x00dev, rx, tx);
}

static void rt2x00lib_evaluate_antenna(struct rt2x00_dev *rt2x00dev)
{
	/*
	 * Determine if software diversity is enabled for
	 * either the TX or RX antenna (or both).
	 * Always perform this check since within the link
	 * tuner interval the configuration might have changed.
	 */
	rt2x00dev->link.ant.flags &= ~ANTENNA_RX_DIVERSITY;
	rt2x00dev->link.ant.flags &= ~ANTENNA_TX_DIVERSITY;

	if (rt2x00dev->hw->conf.antenna_sel_rx == 0 &&
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	    rt2x00dev->default_ant.rx == ANTENNA_SW_DIVERSITY)
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		rt2x00dev->link.ant.flags |= ANTENNA_RX_DIVERSITY;
	if (rt2x00dev->hw->conf.antenna_sel_tx == 0 &&
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	    rt2x00dev->default_ant.tx == ANTENNA_SW_DIVERSITY)
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		rt2x00dev->link.ant.flags |= ANTENNA_TX_DIVERSITY;

	if (!(rt2x00dev->link.ant.flags & ANTENNA_RX_DIVERSITY) &&
	    !(rt2x00dev->link.ant.flags & ANTENNA_TX_DIVERSITY)) {
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		rt2x00dev->link.ant.flags = 0;
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		return;
	}

	/*
	 * If we have only sampled the data over the last period
	 * we should now harvest the data. Otherwise just evaluate
	 * the data. The latter should only be performed once
	 * every 2 seconds.
	 */
	if (rt2x00dev->link.ant.flags & ANTENNA_MODE_SAMPLE)
		rt2x00lib_evaluate_antenna_sample(rt2x00dev);
	else if (rt2x00dev->link.count & 1)
		rt2x00lib_evaluate_antenna_eval(rt2x00dev);
}

static void rt2x00lib_update_link_stats(struct link *link, int rssi)
{
	int avg_rssi = rssi;

	/*
	 * Update global RSSI
	 */
	if (link->qual.avg_rssi)
		avg_rssi = MOVING_AVERAGE(link->qual.avg_rssi, rssi, 8);
	link->qual.avg_rssi = avg_rssi;

	/*
	 * Update antenna RSSI
	 */
	if (link->ant.rssi_ant)
		rssi = MOVING_AVERAGE(link->ant.rssi_ant, rssi, 8);
	link->ant.rssi_ant = rssi;
}

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static void rt2x00lib_precalculate_link_signal(struct link_qual *qual)
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{
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	if (qual->rx_failed || qual->rx_success)
		qual->rx_percentage =
		    (qual->rx_success * 100) /
		    (qual->rx_failed + qual->rx_success);
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	else
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		qual->rx_percentage = 50;
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	if (qual->tx_failed || qual->tx_success)
		qual->tx_percentage =
		    (qual->tx_success * 100) /
		    (qual->tx_failed + qual->tx_success);
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	else
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		qual->tx_percentage = 50;
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	qual->rx_success = 0;
	qual->rx_failed = 0;
	qual->tx_success = 0;
	qual->tx_failed = 0;
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}

static int rt2x00lib_calculate_link_signal(struct rt2x00_dev *rt2x00dev,
					   int rssi)
{
	int rssi_percentage = 0;
	int signal;

	/*
	 * We need a positive value for the RSSI.
	 */
	if (rssi < 0)
		rssi += rt2x00dev->rssi_offset;

	/*
	 * Calculate the different percentages,
	 * which will be used for the signal.
	 */
	if (rt2x00dev->rssi_offset)
		rssi_percentage = (rssi * 100) / rt2x00dev->rssi_offset;

	/*
	 * Add the individual percentages and use the WEIGHT
	 * defines to calculate the current link signal.
	 */
	signal = ((WEIGHT_RSSI * rssi_percentage) +
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		  (WEIGHT_TX * rt2x00dev->link.qual.tx_percentage) +
		  (WEIGHT_RX * rt2x00dev->link.qual.rx_percentage)) / 100;
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	return (signal > 100) ? 100 : signal;
}

static void rt2x00lib_link_tuner(struct work_struct *work)
{
	struct rt2x00_dev *rt2x00dev =
	    container_of(work, struct rt2x00_dev, link.work.work);

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	/*
	 * When the radio is shutting down we should
	 * immediately cease all link tuning.
	 */
	if (!test_bit(DEVICE_ENABLED_RADIO, &rt2x00dev->flags))
		return;

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	/*
	 * Update statistics.
	 */
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	rt2x00dev->ops->lib->link_stats(rt2x00dev, &rt2x00dev->link.qual);
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	rt2x00dev->low_level_stats.dot11FCSErrorCount +=
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	    rt2x00dev->link.qual.rx_failed;
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	/*
	 * Only perform the link tuning when Link tuning
	 * has been enabled (This could have been disabled from the EEPROM).
	 */
	if (!test_bit(CONFIG_DISABLE_LINK_TUNING, &rt2x00dev->flags))
		rt2x00dev->ops->lib->link_tuner(rt2x00dev);

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	/*
	 * Precalculate a portion of the link signal which is
	 * in based on the tx/rx success/failure counters.
	 */
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	rt2x00lib_precalculate_link_signal(&rt2x00dev->link.qual);
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	/*
	 * Send a signal to the led to update the led signal strength.
	 */
	rt2x00leds_led_quality(rt2x00dev, rt2x00dev->link.qual.avg_rssi);

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	/*
	 * Evaluate antenna setup, make this the last step since this could
	 * possibly reset some statistics.
	 */
	rt2x00lib_evaluate_antenna(rt2x00dev);

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	/*
	 * Increase tuner counter, and reschedule the next link tuner run.
	 */
	rt2x00dev->link.count++;
	queue_delayed_work(rt2x00dev->hw->workqueue, &rt2x00dev->link.work,
			   LINK_TUNE_INTERVAL);
}

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static void rt2x00lib_packetfilter_scheduled(struct work_struct *work)
{
	struct rt2x00_dev *rt2x00dev =
	    container_of(work, struct rt2x00_dev, filter_work);
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	unsigned int filter = rt2x00dev->packet_filter;
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	/*
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	 * Since we had stored the filter inside rt2x00dev->packet_filter,
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	 * we should now clear that field. Otherwise the driver will
	 * assume nothing has changed (*total_flags will be compared
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	 * to rt2x00dev->packet_filter to determine if any action is required).
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	 */
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	rt2x00dev->packet_filter = 0;
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	rt2x00dev->ops->hw->configure_filter(rt2x00dev->hw,
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					     filter, &filter, 0, NULL);
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}

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static void rt2x00lib_intf_scheduled_iter(void *data, u8 *mac,
					  struct ieee80211_vif *vif)
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{
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	struct rt2x00_dev *rt2x00dev = data;
	struct rt2x00_intf *intf = vif_to_intf(vif);
	struct sk_buff *skb;
	struct ieee80211_tx_control control;
	struct ieee80211_bss_conf conf;
	int delayed_flags;

	/*
	 * Copy all data we need during this action under the protection
	 * of a spinlock. Otherwise race conditions might occur which results
	 * into an invalid configuration.
	 */
	spin_lock(&intf->lock);

	memcpy(&conf, &intf->conf, sizeof(conf));
	delayed_flags = intf->delayed_flags;
	intf->delayed_flags = 0;

	spin_unlock(&intf->lock);

	if (delayed_flags & DELAYED_UPDATE_BEACON) {
		skb = ieee80211_beacon_get(rt2x00dev->hw, vif, &control);
		if (skb) {
			rt2x00dev->ops->hw->beacon_update(rt2x00dev->hw, skb,
							  &control);
			dev_kfree_skb(skb);
		}
	}

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	if (delayed_flags & DELAYED_CONFIG_ERP)
		rt2x00lib_config_erp(rt2x00dev, intf, &intf->conf);
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}
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static void rt2x00lib_intf_scheduled(struct work_struct *work)
{
	struct rt2x00_dev *rt2x00dev =
	    container_of(work, struct rt2x00_dev, intf_work);
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	/*
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	 * Iterate over each interface and perform the
	 * requested configurations.
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	 */
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	ieee80211_iterate_active_interfaces(rt2x00dev->hw,
					    rt2x00lib_intf_scheduled_iter,
					    rt2x00dev);
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}

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/*
 * Interrupt context handlers.
 */
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static void rt2x00lib_beacondone_iter(void *data, u8 *mac,
				      struct ieee80211_vif *vif)
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{
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	struct rt2x00_intf *intf = vif_to_intf(vif);
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	if (vif->type != IEEE80211_IF_TYPE_AP &&
	    vif->type != IEEE80211_IF_TYPE_IBSS)
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		return;

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	spin_lock(&intf->lock);
	intf->delayed_flags |= DELAYED_UPDATE_BEACON;
	spin_unlock(&intf->lock);
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}

void rt2x00lib_beacondone(struct rt2x00_dev *rt2x00dev)
{
	if (!test_bit(DEVICE_ENABLED_RADIO, &rt2x00dev->flags))
		return;

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	ieee80211_iterate_active_interfaces(rt2x00dev->hw,
					    rt2x00lib_beacondone_iter,
					    rt2x00dev);

	queue_work(rt2x00dev->hw->workqueue, &rt2x00dev->intf_work);
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}
EXPORT_SYMBOL_GPL(rt2x00lib_beacondone);

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void rt2x00lib_txdone(struct queue_entry *entry,
		      struct txdone_entry_desc *txdesc)
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{
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	struct rt2x00_dev *rt2x00dev = entry->queue->rt2x00dev;
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	struct skb_frame_desc *skbdesc;
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	struct ieee80211_tx_status tx_status;
	int success = !!(txdesc->status == TX_SUCCESS ||
			 txdesc->status == TX_SUCCESS_RETRY);
	int fail = !!(txdesc->status == TX_FAIL_RETRY ||
		      txdesc->status == TX_FAIL_INVALID ||
		      txdesc->status == TX_FAIL_OTHER);
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	/*
	 * Update TX statistics.
	 */
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	rt2x00dev->link.qual.tx_success += success;
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	rt2x00dev->link.qual.tx_failed += txdesc->retry + fail;
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	/*
	 * Initialize TX status
	 */
	tx_status.flags = 0;
	tx_status.ack_signal = 0;
	tx_status.excessive_retries = (txdesc->status == TX_FAIL_RETRY);
	tx_status.retry_count = txdesc->retry;
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	memcpy(&tx_status.control, txdesc->control, sizeof(*txdesc->control));
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	if (!(tx_status.control.flags & IEEE80211_TXCTL_NO_ACK)) {
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		if (success)
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			tx_status.flags |= IEEE80211_TX_STATUS_ACK;
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		else
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			rt2x00dev->low_level_stats.dot11ACKFailureCount++;
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	}

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	tx_status.queue_length = entry->queue->limit;
	tx_status.queue_number = tx_status.control.queue;
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	if (tx_status.control.flags & IEEE80211_TXCTL_USE_RTS_CTS) {
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		if (success)
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			rt2x00dev->low_level_stats.dot11RTSSuccessCount++;
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		else
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			rt2x00dev->low_level_stats.dot11RTSFailureCount++;
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	}

	/*
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	 * Send the tx_status to debugfs. Only send the status report
	 * to mac80211 when the frame originated from there. If this was
	 * a extra frame coming through a mac80211 library call (RTS/CTS)
	 * then we should not send the status report back.
	 * If send to mac80211, mac80211 will clean up the skb structure,
	 * otherwise we have to do it ourself.
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	 */
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	skbdesc = get_skb_frame_desc(entry->skb);
	skbdesc->frame_type = DUMP_FRAME_TXDONE;

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	rt2x00debug_dump_frame(rt2x00dev, entry->skb);
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	if (!(skbdesc->flags & FRAME_DESC_DRIVER_GENERATED))
		ieee80211_tx_status_irqsafe(rt2x00dev->hw,
					    entry->skb, &tx_status);
	else
		dev_kfree_skb(entry->skb);
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	entry->skb = NULL;
}
EXPORT_SYMBOL_GPL(rt2x00lib_txdone);

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void rt2x00lib_rxdone(struct queue_entry *entry,
		      struct rxdone_entry_desc *rxdesc)
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{
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	struct rt2x00_dev *rt2x00dev = entry->queue->rt2x00dev;
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	struct ieee80211_rx_status *rx_status = &rt2x00dev->rx_status;
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	struct ieee80211_supported_band *sband;
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	struct ieee80211_hdr *hdr;
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	const struct rt2x00_rate *rate;
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	unsigned int i;
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	int idx = -1;
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	u16 fc;
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	/*
	 * Update RX statistics.
	 */
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	sband = &rt2x00dev->bands[rt2x00dev->curr_band];
	for (i = 0; i < sband->n_bitrates; i++) {
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		rate = rt2x00_get_rate(sband->bitrates[i].hw_value);
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		if ((rxdesc->signal_plcp && rate->plcp == rxdesc->signal) ||
		    (!rxdesc->signal_plcp && rate->bitrate == rxdesc->signal)) {
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			idx = i;
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			break;
		}
	}

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	/*
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	 * Only update link status if this is a beacon frame carrying our bssid.
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	 */
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	hdr = (struct ieee80211_hdr *)entry->skb->data;
594
	fc = le16_to_cpu(hdr->frame_control);
I
Ivo van Doorn 已提交
595 596
	if (is_beacon(fc) && rxdesc->my_bss)
		rt2x00lib_update_link_stats(&rt2x00dev->link, rxdesc->rssi);
597

598
	rt2x00dev->link.qual.rx_success++;
599

600
	rx_status->rate_idx = idx;
601
	rx_status->signal =
I
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602 603 604
	    rt2x00lib_calculate_link_signal(rt2x00dev, rxdesc->rssi);
	rx_status->ssi = rxdesc->rssi;
	rx_status->flag = rxdesc->flags;
605
	rx_status->antenna = rt2x00dev->link.ant.active.rx;
606 607

	/*
I
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608 609
	 * Send frame to mac80211 & debugfs.
	 * mac80211 will clean up the skb structure.
610
	 */
I
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611 612 613 614
	get_skb_frame_desc(entry->skb)->frame_type = DUMP_FRAME_RXDONE;
	rt2x00debug_dump_frame(rt2x00dev, entry->skb);
	ieee80211_rx_irqsafe(rt2x00dev->hw, entry->skb, rx_status);
	entry->skb = NULL;
615 616 617 618 619 620 621
}
EXPORT_SYMBOL_GPL(rt2x00lib_rxdone);

/*
 * TX descriptor initializer
 */
void rt2x00lib_write_tx_desc(struct rt2x00_dev *rt2x00dev,
I
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622
			     struct sk_buff *skb,
623 624
			     struct ieee80211_tx_control *control)
{
I
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625 626
	struct txentry_desc txdesc;
	struct skb_frame_desc *skbdesc = get_skb_frame_desc(skb);
627
	struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skbdesc->data;
I
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628
	const struct rt2x00_rate *rate;
629
	int tx_rate;
I
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630
	int length;
631 632 633 634 635
	int duration;
	int residual;
	u16 frame_control;
	u16 seq_ctrl;

I
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636
	memset(&txdesc, 0, sizeof(txdesc));
637

638
	txdesc.queue = skbdesc->entry->queue->qid;
I
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639 640 641
	txdesc.cw_min = skbdesc->entry->queue->cw_min;
	txdesc.cw_max = skbdesc->entry->queue->cw_max;
	txdesc.aifs = skbdesc->entry->queue->aifs;
642 643 644 645

	/*
	 * Read required fields from ieee80211 header.
	 */
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646 647
	frame_control = le16_to_cpu(hdr->frame_control);
	seq_ctrl = le16_to_cpu(hdr->seq_ctrl);
648

649
	tx_rate = control->tx_rate->hw_value;
650

651 652 653 654
	/*
	 * Check whether this frame is to be acked
	 */
	if (!(control->flags & IEEE80211_TXCTL_NO_ACK))
I
Ivo van Doorn 已提交
655
		__set_bit(ENTRY_TXD_ACK, &txdesc.flags);
656

657 658 659 660
	/*
	 * Check if this is a RTS/CTS frame
	 */
	if (is_rts_frame(frame_control) || is_cts_frame(frame_control)) {
I
Ivo van Doorn 已提交
661
		__set_bit(ENTRY_TXD_BURST, &txdesc.flags);
662
		if (is_rts_frame(frame_control)) {
I
Ivo van Doorn 已提交
663 664
			__set_bit(ENTRY_TXD_RTS_FRAME, &txdesc.flags);
			__set_bit(ENTRY_TXD_ACK, &txdesc.flags);
665
		} else
I
Ivo van Doorn 已提交
666
			__clear_bit(ENTRY_TXD_ACK, &txdesc.flags);
667
		if (control->rts_cts_rate)
668
			tx_rate = control->rts_cts_rate->hw_value;
669 670
	}

I
Ivo van Doorn 已提交
671
	rate = rt2x00_get_rate(tx_rate);
672 673 674 675

	/*
	 * Check if more fragments are pending
	 */
I
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676
	if (ieee80211_get_morefrag(hdr)) {
I
Ivo van Doorn 已提交
677 678
		__set_bit(ENTRY_TXD_BURST, &txdesc.flags);
		__set_bit(ENTRY_TXD_MORE_FRAG, &txdesc.flags);
679 680 681 682 683 684
	}

	/*
	 * Beacons and probe responses require the tsf timestamp
	 * to be inserted into the frame.
	 */
685
	if (control->queue == RT2X00_BCN_QUEUE_BEACON ||
686
	    is_probe_resp(frame_control))
I
Ivo van Doorn 已提交
687
		__set_bit(ENTRY_TXD_REQ_TIMESTAMP, &txdesc.flags);
688 689 690 691 692 693 694

	/*
	 * Determine with what IFS priority this frame should be send.
	 * Set ifs to IFS_SIFS when the this is not the first fragment,
	 * or this fragment came after RTS/CTS.
	 */
	if ((seq_ctrl & IEEE80211_SCTL_FRAG) > 0 ||
I
Ivo van Doorn 已提交
695 696
	    test_bit(ENTRY_TXD_RTS_FRAME, &txdesc.flags))
		txdesc.ifs = IFS_SIFS;
697
	else
I
Ivo van Doorn 已提交
698
		txdesc.ifs = IFS_BACKOFF;
699 700 701 702 703

	/*
	 * PLCP setup
	 * Length calculation depends on OFDM/CCK rate.
	 */
I
Ivo van Doorn 已提交
704
	txdesc.signal = rate->plcp;
I
Ivo van Doorn 已提交
705
	txdesc.service = 0x04;
706

707
	length = skbdesc->data_len + FCS_LEN;
I
Ivo van Doorn 已提交
708 709 710
	if (rate->flags & DEV_RATE_OFDM) {
		__set_bit(ENTRY_TXD_OFDM_RATE, &txdesc.flags);

I
Ivo van Doorn 已提交
711 712
		txdesc.length_high = (length >> 6) & 0x3f;
		txdesc.length_low = length & 0x3f;
713 714 715 716
	} else {
		/*
		 * Convert length to microseconds.
		 */
I
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717 718
		residual = get_duration_res(length, rate->bitrate);
		duration = get_duration(length, rate->bitrate);
719 720 721 722 723 724 725

		if (residual != 0) {
			duration++;

			/*
			 * Check if we need to set the Length Extension
			 */
I
Ivo van Doorn 已提交
726
			if (rate->bitrate == 110 && residual <= 30)
I
Ivo van Doorn 已提交
727
				txdesc.service |= 0x80;
728 729
		}

I
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730 731
		txdesc.length_high = (duration >> 8) & 0xff;
		txdesc.length_low = duration & 0xff;
732 733 734 735 736

		/*
		 * When preamble is enabled we should set the
		 * preamble bit for the signal.
		 */
I
Ivo van Doorn 已提交
737
		if (rt2x00_get_rate_preamble(tx_rate))
I
Ivo van Doorn 已提交
738
			txdesc.signal |= 0x08;
739 740
	}

I
Ivo van Doorn 已提交
741
	rt2x00dev->ops->lib->write_tx_desc(rt2x00dev, skb, &txdesc, control);
I
Ivo van Doorn 已提交
742 743

	/*
I
Ivo van Doorn 已提交
744
	 * Update queue entry.
I
Ivo van Doorn 已提交
745 746
	 */
	skbdesc->entry->skb = skb;
747 748 749 750 751 752 753 754 755

	/*
	 * The frame has been completely initialized and ready
	 * for sending to the device. The caller will push the
	 * frame to the device, but we are going to push the
	 * frame to debugfs here.
	 */
	skbdesc->frame_type = DUMP_FRAME_TX;
	rt2x00debug_dump_frame(rt2x00dev, skb);
756 757 758 759 760 761
}
EXPORT_SYMBOL_GPL(rt2x00lib_write_tx_desc);

/*
 * Driver initialization handlers.
 */
I
Ivo van Doorn 已提交
762 763
const struct rt2x00_rate rt2x00_supported_rates[12] = {
	{
764
		.flags = DEV_RATE_CCK | DEV_RATE_BASIC,
I
Ivo van Doorn 已提交
765
		.bitrate = 10,
766
		.ratemask = BIT(0),
I
Ivo van Doorn 已提交
767 768 769
		.plcp = 0x00,
	},
	{
770
		.flags = DEV_RATE_CCK | DEV_RATE_SHORT_PREAMBLE | DEV_RATE_BASIC,
I
Ivo van Doorn 已提交
771
		.bitrate = 20,
772
		.ratemask = BIT(1),
I
Ivo van Doorn 已提交
773 774 775
		.plcp = 0x01,
	},
	{
776
		.flags = DEV_RATE_CCK | DEV_RATE_SHORT_PREAMBLE | DEV_RATE_BASIC,
I
Ivo van Doorn 已提交
777
		.bitrate = 55,
778
		.ratemask = BIT(2),
I
Ivo van Doorn 已提交
779 780 781
		.plcp = 0x02,
	},
	{
782
		.flags = DEV_RATE_CCK | DEV_RATE_SHORT_PREAMBLE | DEV_RATE_BASIC,
I
Ivo van Doorn 已提交
783
		.bitrate = 110,
784
		.ratemask = BIT(3),
I
Ivo van Doorn 已提交
785 786 787
		.plcp = 0x03,
	},
	{
788
		.flags = DEV_RATE_OFDM | DEV_RATE_BASIC,
I
Ivo van Doorn 已提交
789
		.bitrate = 60,
790
		.ratemask = BIT(4),
I
Ivo van Doorn 已提交
791 792 793 794 795
		.plcp = 0x0b,
	},
	{
		.flags = DEV_RATE_OFDM,
		.bitrate = 90,
796
		.ratemask = BIT(5),
I
Ivo van Doorn 已提交
797 798 799
		.plcp = 0x0f,
	},
	{
800
		.flags = DEV_RATE_OFDM | DEV_RATE_BASIC,
I
Ivo van Doorn 已提交
801
		.bitrate = 120,
802
		.ratemask = BIT(6),
I
Ivo van Doorn 已提交
803 804 805 806 807
		.plcp = 0x0a,
	},
	{
		.flags = DEV_RATE_OFDM,
		.bitrate = 180,
808
		.ratemask = BIT(7),
I
Ivo van Doorn 已提交
809 810 811
		.plcp = 0x0e,
	},
	{
812
		.flags = DEV_RATE_OFDM | DEV_RATE_BASIC,
I
Ivo van Doorn 已提交
813
		.bitrate = 240,
814
		.ratemask = BIT(8),
I
Ivo van Doorn 已提交
815 816 817 818 819
		.plcp = 0x09,
	},
	{
		.flags = DEV_RATE_OFDM,
		.bitrate = 360,
820
		.ratemask = BIT(9),
I
Ivo van Doorn 已提交
821 822 823 824 825
		.plcp = 0x0d,
	},
	{
		.flags = DEV_RATE_OFDM,
		.bitrate = 480,
826
		.ratemask = BIT(10),
I
Ivo van Doorn 已提交
827 828 829 830 831
		.plcp = 0x08,
	},
	{
		.flags = DEV_RATE_OFDM,
		.bitrate = 540,
832
		.ratemask = BIT(11),
I
Ivo van Doorn 已提交
833 834 835 836
		.plcp = 0x0c,
	},
};

837 838 839 840
static void rt2x00lib_channel(struct ieee80211_channel *entry,
			      const int channel, const int tx_power,
			      const int value)
{
841
	entry->center_freq = ieee80211_channel_to_frequency(channel);
842 843 844
	entry->hw_value = value;
	entry->max_power = tx_power;
	entry->max_antenna_gain = 0xff;
845 846 847
}

static void rt2x00lib_rate(struct ieee80211_rate *entry,
I
Ivo van Doorn 已提交
848
			   const u16 index, const struct rt2x00_rate *rate)
849
{
I
Ivo van Doorn 已提交
850 851 852
	entry->flags = 0;
	entry->bitrate = rate->bitrate;
	entry->hw_value = rt2x00_create_rate_hw_value(index, 0);
853
	entry->hw_value_short = entry->hw_value;
I
Ivo van Doorn 已提交
854 855 856 857 858

	if (rate->flags & DEV_RATE_SHORT_PREAMBLE) {
		entry->flags |= IEEE80211_RATE_SHORT_PREAMBLE;
		entry->hw_value_short |= rt2x00_create_rate_hw_value(index, 1);
	}
859 860 861 862 863 864 865 866
}

static int rt2x00lib_probe_hw_modes(struct rt2x00_dev *rt2x00dev,
				    struct hw_mode_spec *spec)
{
	struct ieee80211_hw *hw = rt2x00dev->hw;
	struct ieee80211_channel *channels;
	struct ieee80211_rate *rates;
867
	unsigned int num_rates;
868 869 870
	unsigned int i;
	unsigned char tx_power;

871 872 873 874 875
	num_rates = 0;
	if (spec->supported_rates & SUPPORT_RATE_CCK)
		num_rates += 4;
	if (spec->supported_rates & SUPPORT_RATE_OFDM)
		num_rates += 8;
876 877 878

	channels = kzalloc(sizeof(*channels) * spec->num_channels, GFP_KERNEL);
	if (!channels)
879
		return -ENOMEM;
880

881
	rates = kzalloc(sizeof(*rates) * num_rates, GFP_KERNEL);
882 883 884 885 886 887
	if (!rates)
		goto exit_free_channels;

	/*
	 * Initialize Rate list.
	 */
888
	for (i = 0; i < num_rates; i++)
I
Ivo van Doorn 已提交
889
		rt2x00lib_rate(&rates[i], i, rt2x00_get_rate(i));
890 891 892 893 894

	/*
	 * Initialize Channel list.
	 */
	for (i = 0; i < spec->num_channels; i++) {
895 896 897 898 899 900 901 902 903 904 905
		if (spec->channels[i].channel <= 14) {
			if (spec->tx_power_bg)
				tx_power = spec->tx_power_bg[i];
			else
				tx_power = spec->tx_power_default;
		} else {
			if (spec->tx_power_a)
				tx_power = spec->tx_power_a[i];
			else
				tx_power = spec->tx_power_default;
		}
906 907 908 909 910 911

		rt2x00lib_channel(&channels[i],
				  spec->channels[i].channel, tx_power, i);
	}

	/*
912
	 * Intitialize 802.11b, 802.11g
913
	 * Rates: CCK, OFDM.
914
	 * Channels: 2.4 GHz
915
	 */
916
	if (spec->supported_bands & SUPPORT_BAND_2GHZ) {
917 918 919 920 921 922
		rt2x00dev->bands[IEEE80211_BAND_2GHZ].n_channels = 14;
		rt2x00dev->bands[IEEE80211_BAND_2GHZ].n_bitrates = num_rates;
		rt2x00dev->bands[IEEE80211_BAND_2GHZ].channels = channels;
		rt2x00dev->bands[IEEE80211_BAND_2GHZ].bitrates = rates;
		hw->wiphy->bands[IEEE80211_BAND_2GHZ] =
		    &rt2x00dev->bands[IEEE80211_BAND_2GHZ];
923 924 925 926 927 928 929
	}

	/*
	 * Intitialize 802.11a
	 * Rates: OFDM.
	 * Channels: OFDM, UNII, HiperLAN2.
	 */
930
	if (spec->supported_bands & SUPPORT_BAND_5GHZ) {
931 932 933 934 935 936 937 938
		rt2x00dev->bands[IEEE80211_BAND_5GHZ].n_channels =
		    spec->num_channels - 14;
		rt2x00dev->bands[IEEE80211_BAND_5GHZ].n_bitrates =
		    num_rates - 4;
		rt2x00dev->bands[IEEE80211_BAND_5GHZ].channels = &channels[14];
		rt2x00dev->bands[IEEE80211_BAND_5GHZ].bitrates = &rates[4];
		hw->wiphy->bands[IEEE80211_BAND_5GHZ] =
		    &rt2x00dev->bands[IEEE80211_BAND_5GHZ];
939 940 941 942
	}

	return 0;

943
 exit_free_channels:
944 945 946 947 948 949 950
	kfree(channels);
	ERROR(rt2x00dev, "Allocation ieee80211 modes failed.\n");
	return -ENOMEM;
}

static void rt2x00lib_remove_hw(struct rt2x00_dev *rt2x00dev)
{
951
	if (test_bit(DEVICE_REGISTERED_HW, &rt2x00dev->flags))
952 953
		ieee80211_unregister_hw(rt2x00dev->hw);

954 955 956 957 958
	if (likely(rt2x00dev->hw->wiphy->bands[IEEE80211_BAND_2GHZ])) {
		kfree(rt2x00dev->hw->wiphy->bands[IEEE80211_BAND_2GHZ]->channels);
		kfree(rt2x00dev->hw->wiphy->bands[IEEE80211_BAND_2GHZ]->bitrates);
		rt2x00dev->hw->wiphy->bands[IEEE80211_BAND_2GHZ] = NULL;
		rt2x00dev->hw->wiphy->bands[IEEE80211_BAND_5GHZ] = NULL;
959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982
	}
}

static int rt2x00lib_probe_hw(struct rt2x00_dev *rt2x00dev)
{
	struct hw_mode_spec *spec = &rt2x00dev->spec;
	int status;

	/*
	 * Initialize HW modes.
	 */
	status = rt2x00lib_probe_hw_modes(rt2x00dev, spec);
	if (status)
		return status;

	/*
	 * Register HW.
	 */
	status = ieee80211_register_hw(rt2x00dev->hw);
	if (status) {
		rt2x00lib_remove_hw(rt2x00dev);
		return status;
	}

983
	__set_bit(DEVICE_REGISTERED_HW, &rt2x00dev->flags);
984 985 986 987 988 989 990

	return 0;
}

/*
 * Initialization/uninitialization handlers.
 */
991
static void rt2x00lib_uninitialize(struct rt2x00_dev *rt2x00dev)
992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006
{
	if (!__test_and_clear_bit(DEVICE_INITIALIZED, &rt2x00dev->flags))
		return;

	/*
	 * Unregister rfkill.
	 */
	rt2x00rfkill_unregister(rt2x00dev);

	/*
	 * Allow the HW to uninitialize.
	 */
	rt2x00dev->ops->lib->uninitialize(rt2x00dev);

	/*
I
Ivo van Doorn 已提交
1007
	 * Free allocated queue entries.
1008
	 */
I
Ivo van Doorn 已提交
1009
	rt2x00queue_uninitialize(rt2x00dev);
1010 1011
}

1012
static int rt2x00lib_initialize(struct rt2x00_dev *rt2x00dev)
1013 1014 1015 1016 1017 1018 1019
{
	int status;

	if (test_bit(DEVICE_INITIALIZED, &rt2x00dev->flags))
		return 0;

	/*
I
Ivo van Doorn 已提交
1020
	 * Allocate all queue entries.
1021
	 */
I
Ivo van Doorn 已提交
1022 1023
	status = rt2x00queue_initialize(rt2x00dev);
	if (status)
1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039
		return status;

	/*
	 * Initialize the device.
	 */
	status = rt2x00dev->ops->lib->initialize(rt2x00dev);
	if (status)
		goto exit;

	__set_bit(DEVICE_INITIALIZED, &rt2x00dev->flags);

	/*
	 * Register the rfkill handler.
	 */
	status = rt2x00rfkill_register(rt2x00dev);
	if (status)
I
Ivo van Doorn 已提交
1040
		goto exit;
1041 1042 1043 1044

	return 0;

exit:
I
Ivo van Doorn 已提交
1045
	rt2x00lib_uninitialize(rt2x00dev);
1046 1047 1048 1049

	return status;
}

1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060
int rt2x00lib_start(struct rt2x00_dev *rt2x00dev)
{
	int retval;

	if (test_bit(DEVICE_STARTED, &rt2x00dev->flags))
		return 0;

	/*
	 * If this is the first interface which is added,
	 * we should load the firmware now.
	 */
1061 1062 1063
	retval = rt2x00lib_load_firmware(rt2x00dev);
	if (retval)
		return retval;
1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080

	/*
	 * Initialize the device.
	 */
	retval = rt2x00lib_initialize(rt2x00dev);
	if (retval)
		return retval;

	/*
	 * Enable radio.
	 */
	retval = rt2x00lib_enable_radio(rt2x00dev);
	if (retval) {
		rt2x00lib_uninitialize(rt2x00dev);
		return retval;
	}

1081 1082 1083 1084
	rt2x00dev->intf_ap_count = 0;
	rt2x00dev->intf_sta_count = 0;
	rt2x00dev->intf_associated = 0;

1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100
	__set_bit(DEVICE_STARTED, &rt2x00dev->flags);

	return 0;
}

void rt2x00lib_stop(struct rt2x00_dev *rt2x00dev)
{
	if (!test_bit(DEVICE_STARTED, &rt2x00dev->flags))
		return;

	/*
	 * Perhaps we can add something smarter here,
	 * but for now just disabling the radio should do.
	 */
	rt2x00lib_disable_radio(rt2x00dev);

1101 1102 1103 1104
	rt2x00dev->intf_ap_count = 0;
	rt2x00dev->intf_sta_count = 0;
	rt2x00dev->intf_associated = 0;

1105 1106 1107
	__clear_bit(DEVICE_STARTED, &rt2x00dev->flags);
}

1108 1109 1110 1111 1112 1113 1114
/*
 * driver allocation handlers.
 */
int rt2x00lib_probe_dev(struct rt2x00_dev *rt2x00dev)
{
	int retval = -ENOMEM;

1115 1116 1117 1118 1119 1120
	/*
	 * Make room for rt2x00_intf inside the per-interface
	 * structure ieee80211_vif.
	 */
	rt2x00dev->hw->vif_data_size = sizeof(struct rt2x00_intf);

1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132
	/*
	 * Let the driver probe the device to detect the capabilities.
	 */
	retval = rt2x00dev->ops->lib->probe_hw(rt2x00dev);
	if (retval) {
		ERROR(rt2x00dev, "Failed to allocate device.\n");
		goto exit;
	}

	/*
	 * Initialize configuration work.
	 */
1133
	INIT_WORK(&rt2x00dev->intf_work, rt2x00lib_intf_scheduled);
1134
	INIT_WORK(&rt2x00dev->filter_work, rt2x00lib_packetfilter_scheduled);
1135 1136 1137
	INIT_DELAYED_WORK(&rt2x00dev->link.work, rt2x00lib_link_tuner);

	/*
I
Ivo van Doorn 已提交
1138
	 * Allocate queue array.
1139
	 */
I
Ivo van Doorn 已提交
1140
	retval = rt2x00queue_allocate(rt2x00dev);
1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152
	if (retval)
		goto exit;

	/*
	 * Initialize ieee80211 structure.
	 */
	retval = rt2x00lib_probe_hw(rt2x00dev);
	if (retval) {
		ERROR(rt2x00dev, "Failed to initialize hw.\n");
		goto exit;
	}

1153 1154 1155 1156 1157
	/*
	 * Register LED.
	 */
	rt2x00leds_register(rt2x00dev);

1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169
	/*
	 * Allocatie rfkill.
	 */
	retval = rt2x00rfkill_allocate(rt2x00dev);
	if (retval)
		goto exit;

	/*
	 * Open the debugfs entry.
	 */
	rt2x00debug_register(rt2x00dev);

1170 1171
	__set_bit(DEVICE_PRESENT, &rt2x00dev->flags);

1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182
	return 0;

exit:
	rt2x00lib_remove_dev(rt2x00dev);

	return retval;
}
EXPORT_SYMBOL_GPL(rt2x00lib_probe_dev);

void rt2x00lib_remove_dev(struct rt2x00_dev *rt2x00dev)
{
1183 1184
	__clear_bit(DEVICE_PRESENT, &rt2x00dev->flags);

1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204
	/*
	 * Disable radio.
	 */
	rt2x00lib_disable_radio(rt2x00dev);

	/*
	 * Uninitialize device.
	 */
	rt2x00lib_uninitialize(rt2x00dev);

	/*
	 * Close debugfs entry.
	 */
	rt2x00debug_deregister(rt2x00dev);

	/*
	 * Free rfkill
	 */
	rt2x00rfkill_free(rt2x00dev);

1205 1206 1207 1208 1209
	/*
	 * Free LED.
	 */
	rt2x00leds_unregister(rt2x00dev);

1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220
	/*
	 * Free ieee80211_hw memory.
	 */
	rt2x00lib_remove_hw(rt2x00dev);

	/*
	 * Free firmware image.
	 */
	rt2x00lib_free_firmware(rt2x00dev);

	/*
I
Ivo van Doorn 已提交
1221
	 * Free queue structures.
1222
	 */
I
Ivo van Doorn 已提交
1223
	rt2x00queue_free(rt2x00dev);
1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235
}
EXPORT_SYMBOL_GPL(rt2x00lib_remove_dev);

/*
 * Device state handlers
 */
#ifdef CONFIG_PM
int rt2x00lib_suspend(struct rt2x00_dev *rt2x00dev, pm_message_t state)
{
	int retval;

	NOTICE(rt2x00dev, "Going to sleep.\n");
1236 1237 1238 1239 1240 1241 1242
	__clear_bit(DEVICE_PRESENT, &rt2x00dev->flags);

	/*
	 * Only continue if mac80211 has open interfaces.
	 */
	if (!test_bit(DEVICE_STARTED, &rt2x00dev->flags))
		goto exit;
1243
	__set_bit(DEVICE_STARTED_SUSPEND, &rt2x00dev->flags);
1244 1245 1246 1247 1248

	/*
	 * Disable radio and unitialize all items
	 * that must be recreated on resume.
	 */
1249
	rt2x00lib_stop(rt2x00dev);
1250
	rt2x00lib_uninitialize(rt2x00dev);
1251
	rt2x00leds_suspend(rt2x00dev);
1252 1253
	rt2x00debug_deregister(rt2x00dev);

1254
exit:
1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265
	/*
	 * Set device mode to sleep for power management.
	 */
	retval = rt2x00dev->ops->lib->set_device_state(rt2x00dev, STATE_SLEEP);
	if (retval)
		return retval;

	return 0;
}
EXPORT_SYMBOL_GPL(rt2x00lib_suspend);

1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287
static void rt2x00lib_resume_intf(void *data, u8 *mac,
				  struct ieee80211_vif *vif)
{
	struct rt2x00_dev *rt2x00dev = data;
	struct rt2x00_intf *intf = vif_to_intf(vif);

	spin_lock(&intf->lock);

	rt2x00lib_config_intf(rt2x00dev, intf,
			      vif->type, intf->mac, intf->bssid);


	/*
	 * Master or Ad-hoc mode require a new beacon update.
	 */
	if (vif->type == IEEE80211_IF_TYPE_AP ||
	    vif->type == IEEE80211_IF_TYPE_IBSS)
		intf->delayed_flags |= DELAYED_UPDATE_BEACON;

	spin_unlock(&intf->lock);
}

1288 1289 1290 1291 1292 1293 1294
int rt2x00lib_resume(struct rt2x00_dev *rt2x00dev)
{
	int retval;

	NOTICE(rt2x00dev, "Waking up.\n");

	/*
1295
	 * Open the debugfs entry and restore led handling.
1296 1297
	 */
	rt2x00debug_register(rt2x00dev);
1298
	rt2x00leds_resume(rt2x00dev);
1299

1300
	/*
1301
	 * Only continue if mac80211 had open interfaces.
1302
	 */
1303
	if (!__test_and_clear_bit(DEVICE_STARTED_SUSPEND, &rt2x00dev->flags))
1304 1305
		return 0;

1306 1307 1308
	/*
	 * Reinitialize device and all active interfaces.
	 */
1309
	retval = rt2x00lib_start(rt2x00dev);
1310 1311 1312 1313 1314 1315
	if (retval)
		goto exit;

	/*
	 * Reconfigure device.
	 */
1316 1317 1318
	rt2x00lib_config(rt2x00dev, &rt2x00dev->hw->conf, 1);
	if (!rt2x00dev->hw->conf.radio_enabled)
		rt2x00lib_disable_radio(rt2x00dev);
1319

1320 1321 1322 1323 1324 1325
	/*
	 * Iterator over each active interface to
	 * reconfigure the hardware.
	 */
	ieee80211_iterate_active_interfaces(rt2x00dev->hw,
					    rt2x00lib_resume_intf, rt2x00dev);
1326

1327 1328 1329 1330 1331
	/*
	 * We are ready again to receive requests from mac80211.
	 */
	__set_bit(DEVICE_PRESENT, &rt2x00dev->flags);

1332 1333 1334 1335 1336 1337 1338 1339
	/*
	 * It is possible that during that mac80211 has attempted
	 * to send frames while we were suspending or resuming.
	 * In that case we have disabled the TX queue and should
	 * now enable it again
	 */
	ieee80211_start_queues(rt2x00dev->hw);

1340
	/*
1341 1342 1343
	 * During interface iteration we might have changed the
	 * delayed_flags, time to handles the event by calling
	 * the work handler directly.
1344
	 */
1345
	rt2x00lib_intf_scheduled(&rt2x00dev->intf_work);
1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365

	return 0;

exit:
	rt2x00lib_disable_radio(rt2x00dev);
	rt2x00lib_uninitialize(rt2x00dev);
	rt2x00debug_deregister(rt2x00dev);

	return retval;
}
EXPORT_SYMBOL_GPL(rt2x00lib_resume);
#endif /* CONFIG_PM */

/*
 * rt2x00lib module information.
 */
MODULE_AUTHOR(DRV_PROJECT);
MODULE_VERSION(DRV_VERSION);
MODULE_DESCRIPTION("rt2x00 library");
MODULE_LICENSE("GPL");