fa1c114fda
add ath5k wireless driver Portions of this driver are covered by one or both of the ISC and 3-clause BSD licenses. Specific license information is cited at the top of each file. Acked-by and Signed-off-by information is collected from individual patches as collected in the wireless-2.6 tree prior to upstream submission. Acked-by: Matthew W. S. Bell <mentor@madwifi.org> Acked-by: Michael Taylor <mike.taylor@apprion.com> Acked-by: Pavel Roskin <proski@gnu.org> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Bradley M. Kuhn <bkuhn@softwarefreedom.org> Signed-off-by: Bruno Randolf <bruno@thinktube.com> Signed-off-by: Dave Young <hidave.darkstar@gmail.com> Signed-off-by: Francesco Gringoli <francesco.gringoli@ing.unibs.it> Signed-off-by: Jiri Slaby <jirislaby@gmail.com> Signed-off-by: Johannes Berg <johannes@sipsolutions.net> Signed-off-by: Karen Sandler <karen@softwarefreedom.org> Signed-off-by: Krzysztof Halasa <khc@pm.waw.pl> Signed-off-by: Luis R. Rodriguez <mcgrof@gmail.com> Signed-off-by: Matt Norwood <norwood@softwarefreedom.org> Signed-off-by: Nick Kossifidis <mickflemm@gmail.com> Signed-off-by: Richard Fontana <fontana@softwarefreedom.org> Signed-off-by: Stephen Hemminger <shemminger@linux-foundation.org> Signed-off-by: Ulrich Meis <meis@nets.rwth-aachen.de> Signed-off-by: John W. Linville <linville@tuxdriver.com>
589 lines
20 KiB
C
589 lines
20 KiB
C
/*
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* Copyright (c) 2004-2007 Reyk Floeter <reyk@openbsd.org>
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* Copyright (c) 2006-2007 Nick Kossifidis <mickflemm@gmail.com>
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* Copyright (c) 2007 Matthew W. S. Bell <mentor@madwifi.org>
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* Copyright (c) 2007 Luis Rodriguez <mcgrof@winlab.rutgers.edu>
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*
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* Permission to use, copy, modify, and distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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#include <linux/delay.h>
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/*
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* Gain settings
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*/
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enum ath5k_rfgain {
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AR5K_RFGAIN_INACTIVE = 0,
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AR5K_RFGAIN_READ_REQUESTED,
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AR5K_RFGAIN_NEED_CHANGE,
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};
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#define AR5K_GAIN_CRN_FIX_BITS_5111 4
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#define AR5K_GAIN_CRN_FIX_BITS_5112 7
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#define AR5K_GAIN_CRN_MAX_FIX_BITS AR5K_GAIN_CRN_FIX_BITS_5112
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#define AR5K_GAIN_DYN_ADJUST_HI_MARGIN 15
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#define AR5K_GAIN_DYN_ADJUST_LO_MARGIN 20
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#define AR5K_GAIN_CCK_PROBE_CORR 5
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#define AR5K_GAIN_CCK_OFDM_GAIN_DELTA 15
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#define AR5K_GAIN_STEP_COUNT 10
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#define AR5K_GAIN_PARAM_TX_CLIP 0
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#define AR5K_GAIN_PARAM_PD_90 1
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#define AR5K_GAIN_PARAM_PD_84 2
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#define AR5K_GAIN_PARAM_GAIN_SEL 3
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#define AR5K_GAIN_PARAM_MIX_ORN 0
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#define AR5K_GAIN_PARAM_PD_138 1
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#define AR5K_GAIN_PARAM_PD_137 2
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#define AR5K_GAIN_PARAM_PD_136 3
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#define AR5K_GAIN_PARAM_PD_132 4
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#define AR5K_GAIN_PARAM_PD_131 5
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#define AR5K_GAIN_PARAM_PD_130 6
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#define AR5K_GAIN_CHECK_ADJUST(_g) \
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((_g)->g_current <= (_g)->g_low || (_g)->g_current >= (_g)->g_high)
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struct ath5k_gain_opt_step {
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s16 gos_param[AR5K_GAIN_CRN_MAX_FIX_BITS];
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s32 gos_gain;
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};
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struct ath5k_gain {
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u32 g_step_idx;
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u32 g_current;
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u32 g_target;
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u32 g_low;
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u32 g_high;
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u32 g_f_corr;
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u32 g_active;
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const struct ath5k_gain_opt_step *g_step;
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};
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/*
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* HW SPECIFIC STRUCTS
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*/
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/* Some EEPROM defines */
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#define AR5K_EEPROM_EEP_SCALE 100
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#define AR5K_EEPROM_EEP_DELTA 10
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#define AR5K_EEPROM_N_MODES 3
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#define AR5K_EEPROM_N_5GHZ_CHAN 10
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#define AR5K_EEPROM_N_2GHZ_CHAN 3
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#define AR5K_EEPROM_MAX_CHAN 10
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#define AR5K_EEPROM_N_PCDAC 11
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#define AR5K_EEPROM_N_TEST_FREQ 8
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#define AR5K_EEPROM_N_EDGES 8
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#define AR5K_EEPROM_N_INTERCEPTS 11
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#define AR5K_EEPROM_FREQ_M(_v) AR5K_EEPROM_OFF(_v, 0x7f, 0xff)
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#define AR5K_EEPROM_PCDAC_M 0x3f
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#define AR5K_EEPROM_PCDAC_START 1
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#define AR5K_EEPROM_PCDAC_STOP 63
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#define AR5K_EEPROM_PCDAC_STEP 1
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#define AR5K_EEPROM_NON_EDGE_M 0x40
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#define AR5K_EEPROM_CHANNEL_POWER 8
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#define AR5K_EEPROM_N_OBDB 4
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#define AR5K_EEPROM_OBDB_DIS 0xffff
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#define AR5K_EEPROM_CHANNEL_DIS 0xff
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#define AR5K_EEPROM_SCALE_OC_DELTA(_x) (((_x) * 2) / 10)
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#define AR5K_EEPROM_N_CTLS(_v) AR5K_EEPROM_OFF(_v, 16, 32)
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#define AR5K_EEPROM_MAX_CTLS 32
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#define AR5K_EEPROM_N_XPD_PER_CHANNEL 4
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#define AR5K_EEPROM_N_XPD0_POINTS 4
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#define AR5K_EEPROM_N_XPD3_POINTS 3
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#define AR5K_EEPROM_N_INTERCEPT_10_2GHZ 35
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#define AR5K_EEPROM_N_INTERCEPT_10_5GHZ 55
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#define AR5K_EEPROM_POWER_M 0x3f
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#define AR5K_EEPROM_POWER_MIN 0
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#define AR5K_EEPROM_POWER_MAX 3150
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#define AR5K_EEPROM_POWER_STEP 50
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#define AR5K_EEPROM_POWER_TABLE_SIZE 64
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#define AR5K_EEPROM_N_POWER_LOC_11B 4
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#define AR5K_EEPROM_N_POWER_LOC_11G 6
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#define AR5K_EEPROM_I_GAIN 10
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#define AR5K_EEPROM_CCK_OFDM_DELTA 15
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#define AR5K_EEPROM_N_IQ_CAL 2
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/* Struct to hold EEPROM calibration data */
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struct ath5k_eeprom_info {
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u16 ee_magic;
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u16 ee_protect;
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u16 ee_regdomain;
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u16 ee_version;
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u16 ee_header;
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u16 ee_ant_gain;
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u16 ee_misc0;
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u16 ee_misc1;
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u16 ee_cck_ofdm_gain_delta;
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u16 ee_cck_ofdm_power_delta;
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u16 ee_scaled_cck_delta;
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/* Used for tx thermal adjustment (eeprom_init, rfregs) */
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u16 ee_tx_clip;
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u16 ee_pwd_84;
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u16 ee_pwd_90;
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u16 ee_gain_select;
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/* RF Calibration settings (reset, rfregs) */
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u16 ee_i_cal[AR5K_EEPROM_N_MODES];
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u16 ee_q_cal[AR5K_EEPROM_N_MODES];
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u16 ee_fixed_bias[AR5K_EEPROM_N_MODES];
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u16 ee_turbo_max_power[AR5K_EEPROM_N_MODES];
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u16 ee_xr_power[AR5K_EEPROM_N_MODES];
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u16 ee_switch_settling[AR5K_EEPROM_N_MODES];
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u16 ee_ant_tx_rx[AR5K_EEPROM_N_MODES];
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u16 ee_ant_control[AR5K_EEPROM_N_MODES][AR5K_EEPROM_N_PCDAC];
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u16 ee_ob[AR5K_EEPROM_N_MODES][AR5K_EEPROM_N_OBDB];
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u16 ee_db[AR5K_EEPROM_N_MODES][AR5K_EEPROM_N_OBDB];
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u16 ee_tx_end2xlna_enable[AR5K_EEPROM_N_MODES];
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u16 ee_tx_end2xpa_disable[AR5K_EEPROM_N_MODES];
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u16 ee_tx_frm2xpa_enable[AR5K_EEPROM_N_MODES];
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u16 ee_thr_62[AR5K_EEPROM_N_MODES];
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u16 ee_xlna_gain[AR5K_EEPROM_N_MODES];
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u16 ee_xpd[AR5K_EEPROM_N_MODES];
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u16 ee_x_gain[AR5K_EEPROM_N_MODES];
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u16 ee_i_gain[AR5K_EEPROM_N_MODES];
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u16 ee_margin_tx_rx[AR5K_EEPROM_N_MODES];
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/* Unused */
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u16 ee_false_detect[AR5K_EEPROM_N_MODES];
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u16 ee_cal_pier[AR5K_EEPROM_N_MODES][AR5K_EEPROM_N_2GHZ_CHAN];
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u16 ee_channel[AR5K_EEPROM_N_MODES][AR5K_EEPROM_MAX_CHAN]; /*empty*/
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/* Conformance test limits (Unused) */
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u16 ee_ctls;
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u16 ee_ctl[AR5K_EEPROM_MAX_CTLS];
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/* Noise Floor Calibration settings */
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s16 ee_noise_floor_thr[AR5K_EEPROM_N_MODES];
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s8 ee_adc_desired_size[AR5K_EEPROM_N_MODES];
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s8 ee_pga_desired_size[AR5K_EEPROM_N_MODES];
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};
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/*
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* Internal RX/TX descriptor structures
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* (rX: reserved fields possibily used by future versions of the ar5k chipset)
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*/
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struct ath5k_rx_desc {
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u32 rx_control_0; /* RX control word 0 */
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#define AR5K_DESC_RX_CTL0 0x00000000
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u32 rx_control_1; /* RX control word 1 */
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#define AR5K_DESC_RX_CTL1_BUF_LEN 0x00000fff
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#define AR5K_DESC_RX_CTL1_INTREQ 0x00002000
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} __packed;
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/*
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* 5210/5211 rx status descriptor
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*/
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struct ath5k_hw_old_rx_status {
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u32 rx_status_0; /* RX status word 0 */
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#define AR5K_OLD_RX_DESC_STATUS0_DATA_LEN 0x00000fff
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#define AR5K_OLD_RX_DESC_STATUS0_MORE 0x00001000
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#define AR5K_OLD_RX_DESC_STATUS0_RECEIVE_RATE 0x00078000
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#define AR5K_OLD_RX_DESC_STATUS0_RECEIVE_RATE_S 15
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#define AR5K_OLD_RX_DESC_STATUS0_RECEIVE_SIGNAL 0x07f80000
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#define AR5K_OLD_RX_DESC_STATUS0_RECEIVE_SIGNAL_S 19
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#define AR5K_OLD_RX_DESC_STATUS0_RECEIVE_ANTENNA 0x38000000
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#define AR5K_OLD_RX_DESC_STATUS0_RECEIVE_ANTENNA_S 27
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u32 rx_status_1; /* RX status word 1 */
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#define AR5K_OLD_RX_DESC_STATUS1_DONE 0x00000001
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#define AR5K_OLD_RX_DESC_STATUS1_FRAME_RECEIVE_OK 0x00000002
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#define AR5K_OLD_RX_DESC_STATUS1_CRC_ERROR 0x00000004
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#define AR5K_OLD_RX_DESC_STATUS1_FIFO_OVERRUN 0x00000008
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#define AR5K_OLD_RX_DESC_STATUS1_DECRYPT_CRC_ERROR 0x00000010
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#define AR5K_OLD_RX_DESC_STATUS1_PHY_ERROR 0x000000e0
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#define AR5K_OLD_RX_DESC_STATUS1_PHY_ERROR_S 5
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#define AR5K_OLD_RX_DESC_STATUS1_KEY_INDEX_VALID 0x00000100
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#define AR5K_OLD_RX_DESC_STATUS1_KEY_INDEX 0x00007e00
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#define AR5K_OLD_RX_DESC_STATUS1_KEY_INDEX_S 9
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#define AR5K_OLD_RX_DESC_STATUS1_RECEIVE_TIMESTAMP 0x0fff8000
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#define AR5K_OLD_RX_DESC_STATUS1_RECEIVE_TIMESTAMP_S 15
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#define AR5K_OLD_RX_DESC_STATUS1_KEY_CACHE_MISS 0x10000000
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} __packed;
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/*
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* 5212 rx status descriptor
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*/
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struct ath5k_hw_new_rx_status {
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u32 rx_status_0; /* RX status word 0 */
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#define AR5K_NEW_RX_DESC_STATUS0_DATA_LEN 0x00000fff
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#define AR5K_NEW_RX_DESC_STATUS0_MORE 0x00001000
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#define AR5K_NEW_RX_DESC_STATUS0_DECOMP_CRC_ERROR 0x00002000
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#define AR5K_NEW_RX_DESC_STATUS0_RECEIVE_RATE 0x000f8000
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#define AR5K_NEW_RX_DESC_STATUS0_RECEIVE_RATE_S 15
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#define AR5K_NEW_RX_DESC_STATUS0_RECEIVE_SIGNAL 0x0ff00000
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#define AR5K_NEW_RX_DESC_STATUS0_RECEIVE_SIGNAL_S 20
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#define AR5K_NEW_RX_DESC_STATUS0_RECEIVE_ANTENNA 0xf0000000
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#define AR5K_NEW_RX_DESC_STATUS0_RECEIVE_ANTENNA_S 28
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u32 rx_status_1; /* RX status word 1 */
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#define AR5K_NEW_RX_DESC_STATUS1_DONE 0x00000001
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#define AR5K_NEW_RX_DESC_STATUS1_FRAME_RECEIVE_OK 0x00000002
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#define AR5K_NEW_RX_DESC_STATUS1_CRC_ERROR 0x00000004
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#define AR5K_NEW_RX_DESC_STATUS1_DECRYPT_CRC_ERROR 0x00000008
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#define AR5K_NEW_RX_DESC_STATUS1_PHY_ERROR 0x00000010
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#define AR5K_NEW_RX_DESC_STATUS1_MIC_ERROR 0x00000020
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#define AR5K_NEW_RX_DESC_STATUS1_KEY_INDEX_VALID 0x00000100
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#define AR5K_NEW_RX_DESC_STATUS1_KEY_INDEX 0x0000fe00
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#define AR5K_NEW_RX_DESC_STATUS1_KEY_INDEX_S 9
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#define AR5K_NEW_RX_DESC_STATUS1_RECEIVE_TIMESTAMP 0x7fff0000
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#define AR5K_NEW_RX_DESC_STATUS1_RECEIVE_TIMESTAMP_S 16
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#define AR5K_NEW_RX_DESC_STATUS1_KEY_CACHE_MISS 0x80000000
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} __packed;
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struct ath5k_hw_rx_error {
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u32 rx_error_0; /* RX error word 0 */
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#define AR5K_RX_DESC_ERROR0 0x00000000
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u32 rx_error_1; /* RX error word 1 */
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#define AR5K_RX_DESC_ERROR1_PHY_ERROR_CODE 0x0000ff00
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#define AR5K_RX_DESC_ERROR1_PHY_ERROR_CODE_S 8
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} __packed;
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#define AR5K_DESC_RX_PHY_ERROR_NONE 0x00
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#define AR5K_DESC_RX_PHY_ERROR_TIMING 0x20
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#define AR5K_DESC_RX_PHY_ERROR_PARITY 0x40
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#define AR5K_DESC_RX_PHY_ERROR_RATE 0x60
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#define AR5K_DESC_RX_PHY_ERROR_LENGTH 0x80
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#define AR5K_DESC_RX_PHY_ERROR_64QAM 0xa0
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#define AR5K_DESC_RX_PHY_ERROR_SERVICE 0xc0
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#define AR5K_DESC_RX_PHY_ERROR_TRANSMITOVR 0xe0
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struct ath5k_hw_2w_tx_desc {
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u32 tx_control_0; /* TX control word 0 */
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#define AR5K_2W_TX_DESC_CTL0_FRAME_LEN 0x00000fff
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#define AR5K_2W_TX_DESC_CTL0_HEADER_LEN 0x0003f000 /*[5210 ?]*/
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#define AR5K_2W_TX_DESC_CTL0_HEADER_LEN_S 12
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#define AR5K_2W_TX_DESC_CTL0_XMIT_RATE 0x003c0000
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#define AR5K_2W_TX_DESC_CTL0_XMIT_RATE_S 18
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#define AR5K_2W_TX_DESC_CTL0_RTSENA 0x00400000
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#define AR5K_2W_TX_DESC_CTL0_CLRDMASK 0x01000000
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#define AR5K_2W_TX_DESC_CTL0_LONG_PACKET 0x00800000 /*[5210]*/
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#define AR5K_2W_TX_DESC_CTL0_VEOL 0x00800000 /*[5211]*/
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#define AR5K_2W_TX_DESC_CTL0_FRAME_TYPE 0x1c000000 /*[5210]*/
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#define AR5K_2W_TX_DESC_CTL0_FRAME_TYPE_S 26
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#define AR5K_2W_TX_DESC_CTL0_ANT_MODE_XMIT_5210 0x02000000
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#define AR5K_2W_TX_DESC_CTL0_ANT_MODE_XMIT_5211 0x1e000000
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#define AR5K_2W_TX_DESC_CTL0_ANT_MODE_XMIT (ah->ah_version == AR5K_AR5210 ? \
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AR5K_2W_TX_DESC_CTL0_ANT_MODE_XMIT_5210 : \
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AR5K_2W_TX_DESC_CTL0_ANT_MODE_XMIT_5211)
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#define AR5K_2W_TX_DESC_CTL0_ANT_MODE_XMIT_S 25
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#define AR5K_2W_TX_DESC_CTL0_INTREQ 0x20000000
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#define AR5K_2W_TX_DESC_CTL0_ENCRYPT_KEY_VALID 0x40000000
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u32 tx_control_1; /* TX control word 1 */
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#define AR5K_2W_TX_DESC_CTL1_BUF_LEN 0x00000fff
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#define AR5K_2W_TX_DESC_CTL1_MORE 0x00001000
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#define AR5K_2W_TX_DESC_CTL1_ENCRYPT_KEY_INDEX_5210 0x0007e000
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#define AR5K_2W_TX_DESC_CTL1_ENCRYPT_KEY_INDEX_5211 0x000fe000
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#define AR5K_2W_TX_DESC_CTL1_ENCRYPT_KEY_INDEX (ah->ah_version == AR5K_AR5210 ? \
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AR5K_2W_TX_DESC_CTL1_ENCRYPT_KEY_INDEX_5210 : \
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AR5K_2W_TX_DESC_CTL1_ENCRYPT_KEY_INDEX_5211)
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#define AR5K_2W_TX_DESC_CTL1_ENCRYPT_KEY_INDEX_S 13
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#define AR5K_2W_TX_DESC_CTL1_FRAME_TYPE 0x00700000 /*[5211]*/
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#define AR5K_2W_TX_DESC_CTL1_FRAME_TYPE_S 20
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#define AR5K_2W_TX_DESC_CTL1_NOACK 0x00800000 /*[5211]*/
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#define AR5K_2W_TX_DESC_CTL1_RTS_DURATION 0xfff80000 /*[5210 ?]*/
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} __packed;
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#define AR5K_AR5210_TX_DESC_FRAME_TYPE_NORMAL 0x00
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#define AR5K_AR5210_TX_DESC_FRAME_TYPE_ATIM 0x04
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#define AR5K_AR5210_TX_DESC_FRAME_TYPE_PSPOLL 0x08
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#define AR5K_AR5210_TX_DESC_FRAME_TYPE_NO_DELAY 0x0c
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#define AR5K_AR5210_TX_DESC_FRAME_TYPE_PIFS 0x10
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/*
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* 5212 4-word tx control descriptor
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*/
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struct ath5k_hw_4w_tx_desc {
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u32 tx_control_0; /* TX control word 0 */
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#define AR5K_4W_TX_DESC_CTL0_FRAME_LEN 0x00000fff
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#define AR5K_4W_TX_DESC_CTL0_XMIT_POWER 0x003f0000
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#define AR5K_4W_TX_DESC_CTL0_XMIT_POWER_S 16
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#define AR5K_4W_TX_DESC_CTL0_RTSENA 0x00400000
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#define AR5K_4W_TX_DESC_CTL0_VEOL 0x00800000
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#define AR5K_4W_TX_DESC_CTL0_CLRDMASK 0x01000000
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#define AR5K_4W_TX_DESC_CTL0_ANT_MODE_XMIT 0x1e000000
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#define AR5K_4W_TX_DESC_CTL0_ANT_MODE_XMIT_S 25
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#define AR5K_4W_TX_DESC_CTL0_INTREQ 0x20000000
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#define AR5K_4W_TX_DESC_CTL0_ENCRYPT_KEY_VALID 0x40000000
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#define AR5K_4W_TX_DESC_CTL0_CTSENA 0x80000000
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u32 tx_control_1; /* TX control word 1 */
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#define AR5K_4W_TX_DESC_CTL1_BUF_LEN 0x00000fff
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#define AR5K_4W_TX_DESC_CTL1_MORE 0x00001000
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#define AR5K_4W_TX_DESC_CTL1_ENCRYPT_KEY_INDEX 0x000fe000
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#define AR5K_4W_TX_DESC_CTL1_ENCRYPT_KEY_INDEX_S 13
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#define AR5K_4W_TX_DESC_CTL1_FRAME_TYPE 0x00f00000
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#define AR5K_4W_TX_DESC_CTL1_FRAME_TYPE_S 20
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#define AR5K_4W_TX_DESC_CTL1_NOACK 0x01000000
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#define AR5K_4W_TX_DESC_CTL1_COMP_PROC 0x06000000
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#define AR5K_4W_TX_DESC_CTL1_COMP_PROC_S 25
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#define AR5K_4W_TX_DESC_CTL1_COMP_IV_LEN 0x18000000
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#define AR5K_4W_TX_DESC_CTL1_COMP_IV_LEN_S 27
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#define AR5K_4W_TX_DESC_CTL1_COMP_ICV_LEN 0x60000000
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#define AR5K_4W_TX_DESC_CTL1_COMP_ICV_LEN_S 29
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u32 tx_control_2; /* TX control word 2 */
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#define AR5K_4W_TX_DESC_CTL2_RTS_DURATION 0x00007fff
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#define AR5K_4W_TX_DESC_CTL2_DURATION_UPDATE_ENABLE 0x00008000
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#define AR5K_4W_TX_DESC_CTL2_XMIT_TRIES0 0x000f0000
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#define AR5K_4W_TX_DESC_CTL2_XMIT_TRIES0_S 16
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#define AR5K_4W_TX_DESC_CTL2_XMIT_TRIES1 0x00f00000
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#define AR5K_4W_TX_DESC_CTL2_XMIT_TRIES1_S 20
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#define AR5K_4W_TX_DESC_CTL2_XMIT_TRIES2 0x0f000000
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#define AR5K_4W_TX_DESC_CTL2_XMIT_TRIES2_S 24
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#define AR5K_4W_TX_DESC_CTL2_XMIT_TRIES3 0xf0000000
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#define AR5K_4W_TX_DESC_CTL2_XMIT_TRIES3_S 28
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u32 tx_control_3; /* TX control word 3 */
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#define AR5K_4W_TX_DESC_CTL3_XMIT_RATE0 0x0000001f
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#define AR5K_4W_TX_DESC_CTL3_XMIT_RATE1 0x000003e0
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#define AR5K_4W_TX_DESC_CTL3_XMIT_RATE1_S 5
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#define AR5K_4W_TX_DESC_CTL3_XMIT_RATE2 0x00007c00
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#define AR5K_4W_TX_DESC_CTL3_XMIT_RATE2_S 10
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#define AR5K_4W_TX_DESC_CTL3_XMIT_RATE3 0x000f8000
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#define AR5K_4W_TX_DESC_CTL3_XMIT_RATE3_S 15
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#define AR5K_4W_TX_DESC_CTL3_RTS_CTS_RATE 0x01f00000
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#define AR5K_4W_TX_DESC_CTL3_RTS_CTS_RATE_S 20
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} __packed;
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/*
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* Common tx status descriptor
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*/
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struct ath5k_hw_tx_status {
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u32 tx_status_0; /* TX status word 0 */
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#define AR5K_DESC_TX_STATUS0_FRAME_XMIT_OK 0x00000001
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#define AR5K_DESC_TX_STATUS0_EXCESSIVE_RETRIES 0x00000002
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#define AR5K_DESC_TX_STATUS0_FIFO_UNDERRUN 0x00000004
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#define AR5K_DESC_TX_STATUS0_FILTERED 0x00000008
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/*???
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#define AR5K_DESC_TX_STATUS0_RTS_FAIL_COUNT 0x000000f0
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#define AR5K_DESC_TX_STATUS0_RTS_FAIL_COUNT_S 4
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*/
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#define AR5K_DESC_TX_STATUS0_SHORT_RETRY_COUNT 0x000000f0
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#define AR5K_DESC_TX_STATUS0_SHORT_RETRY_COUNT_S 4
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/*???
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#define AR5K_DESC_TX_STATUS0_DATA_FAIL_COUNT 0x00000f00
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#define AR5K_DESC_TX_STATUS0_DATA_FAIL_COUNT_S 8
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*/
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#define AR5K_DESC_TX_STATUS0_LONG_RETRY_COUNT 0x00000f00
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#define AR5K_DESC_TX_STATUS0_LONG_RETRY_COUNT_S 8
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#define AR5K_DESC_TX_STATUS0_VIRT_COLL_COUNT 0x0000f000
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#define AR5K_DESC_TX_STATUS0_VIRT_COLL_COUNT_S 12
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#define AR5K_DESC_TX_STATUS0_SEND_TIMESTAMP 0xffff0000
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#define AR5K_DESC_TX_STATUS0_SEND_TIMESTAMP_S 16
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u32 tx_status_1; /* TX status word 1 */
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#define AR5K_DESC_TX_STATUS1_DONE 0x00000001
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#define AR5K_DESC_TX_STATUS1_SEQ_NUM 0x00001ffe
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#define AR5K_DESC_TX_STATUS1_SEQ_NUM_S 1
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#define AR5K_DESC_TX_STATUS1_ACK_SIG_STRENGTH 0x001fe000
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#define AR5K_DESC_TX_STATUS1_ACK_SIG_STRENGTH_S 13
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#define AR5K_DESC_TX_STATUS1_FINAL_TS_INDEX 0x00600000
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#define AR5K_DESC_TX_STATUS1_FINAL_TS_INDEX_S 21
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#define AR5K_DESC_TX_STATUS1_COMP_SUCCESS 0x00800000
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#define AR5K_DESC_TX_STATUS1_XMIT_ANTENNA 0x01000000
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} __packed;
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/*
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* AR5K REGISTER ACCESS
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*/
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/*Swap RX/TX Descriptor for big endian archs*/
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#if defined(__BIG_ENDIAN)
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#define AR5K_INIT_CFG ( \
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AR5K_CFG_SWTD | AR5K_CFG_SWRD \
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)
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#else
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#define AR5K_INIT_CFG 0x00000000
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#endif
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/*#define AR5K_REG_READ(_reg) ath5k_hw_reg_read(ah, _reg)
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#define AR5K_REG_WRITE(_reg, _val) ath5k_hw_reg_write(ah, _val, _reg)*/
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#define AR5K_REG_SM(_val, _flags) \
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(((_val) << _flags##_S) & (_flags))
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#define AR5K_REG_MS(_val, _flags) \
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(((_val) & (_flags)) >> _flags##_S)
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/* Some registers can hold multiple values of interest. For this
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* reason when we want to write to these registers we must first
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* retrieve the values which we do not want to clear (lets call this
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* old_data) and then set the register with this and our new_value:
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* ( old_data | new_value) */
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#define AR5K_REG_WRITE_BITS(ah, _reg, _flags, _val) \
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ath5k_hw_reg_write(ah, (ath5k_hw_reg_read(ah, _reg) & ~(_flags)) | \
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(((_val) << _flags##_S) & (_flags)), _reg)
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#define AR5K_REG_MASKED_BITS(ah, _reg, _flags, _mask) \
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ath5k_hw_reg_write(ah, (ath5k_hw_reg_read(ah, _reg) & \
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(_mask)) | (_flags), _reg)
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#define AR5K_REG_ENABLE_BITS(ah, _reg, _flags) \
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ath5k_hw_reg_write(ah, ath5k_hw_reg_read(ah, _reg) | (_flags), _reg)
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#define AR5K_REG_DISABLE_BITS(ah, _reg, _flags) \
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ath5k_hw_reg_write(ah, ath5k_hw_reg_read(ah, _reg) & ~(_flags), _reg)
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#define AR5K_PHY_WRITE(ah, _reg, _val) \
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ath5k_hw_reg_write(ah, _val, (ah)->ah_phy + ((_reg) << 2))
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#define AR5K_PHY_READ(ah, _reg) \
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ath5k_hw_reg_read(ah, (ah)->ah_phy + ((_reg) << 2))
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#define AR5K_REG_WAIT(_i) do { \
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if (_i % 64) \
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udelay(1); \
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} while (0)
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#define AR5K_EEPROM_READ(_o, _v) do { \
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if ((ret = ath5k_hw_eeprom_read(ah, (_o), &(_v))) != 0) \
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return (ret); \
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} while (0)
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#define AR5K_EEPROM_READ_HDR(_o, _v) \
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AR5K_EEPROM_READ(_o, ah->ah_capabilities.cap_eeprom._v); \
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/* Read status of selected queue */
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#define AR5K_REG_READ_Q(ah, _reg, _queue) \
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(ath5k_hw_reg_read(ah, _reg) & (1 << _queue)) \
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#define AR5K_REG_WRITE_Q(ah, _reg, _queue) \
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ath5k_hw_reg_write(ah, (1 << _queue), _reg)
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#define AR5K_Q_ENABLE_BITS(_reg, _queue) do { \
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_reg |= 1 << _queue; \
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} while (0)
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#define AR5K_Q_DISABLE_BITS(_reg, _queue) do { \
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_reg &= ~(1 << _queue); \
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} while (0)
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#define AR5K_LOW_ID(_a)( \
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(_a)[0] | (_a)[1] << 8 | (_a)[2] << 16 | (_a)[3] << 24 \
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)
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#define AR5K_HIGH_ID(_a) ((_a)[4] | (_a)[5] << 8)
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|
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/*
|
|
* Initial register values
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*/
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/*
|
|
* Common initial register values
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*/
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#define AR5K_INIT_MODE CHANNEL_B
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#define AR5K_INIT_TX_LATENCY 502
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#define AR5K_INIT_USEC 39
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#define AR5K_INIT_USEC_TURBO 79
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#define AR5K_INIT_USEC_32 31
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#define AR5K_INIT_CARR_SENSE_EN 1
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#define AR5K_INIT_PROG_IFS 920
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#define AR5K_INIT_PROG_IFS_TURBO 960
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|
#define AR5K_INIT_EIFS 3440
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|
#define AR5K_INIT_EIFS_TURBO 6880
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|
#define AR5K_INIT_SLOT_TIME 396
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|
#define AR5K_INIT_SLOT_TIME_TURBO 480
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|
#define AR5K_INIT_ACK_CTS_TIMEOUT 1024
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#define AR5K_INIT_ACK_CTS_TIMEOUT_TURBO 0x08000800
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#define AR5K_INIT_SIFS 560
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#define AR5K_INIT_SIFS_TURBO 480
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#define AR5K_INIT_SH_RETRY 10
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#define AR5K_INIT_LG_RETRY AR5K_INIT_SH_RETRY
|
|
#define AR5K_INIT_SSH_RETRY 32
|
|
#define AR5K_INIT_SLG_RETRY AR5K_INIT_SSH_RETRY
|
|
#define AR5K_INIT_TX_RETRY 10
|
|
#define AR5K_INIT_TOPS 8
|
|
#define AR5K_INIT_RXNOFRM 8
|
|
#define AR5K_INIT_RPGTO 0
|
|
#define AR5K_INIT_TXNOFRM 0
|
|
#define AR5K_INIT_BEACON_PERIOD 65535
|
|
#define AR5K_INIT_TIM_OFFSET 0
|
|
#define AR5K_INIT_BEACON_EN 0
|
|
#define AR5K_INIT_RESET_TSF 0
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|
|
#define AR5K_INIT_TRANSMIT_LATENCY ( \
|
|
(AR5K_INIT_TX_LATENCY << 14) | (AR5K_INIT_USEC_32 << 7) | \
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(AR5K_INIT_USEC) \
|
|
)
|
|
#define AR5K_INIT_TRANSMIT_LATENCY_TURBO ( \
|
|
(AR5K_INIT_TX_LATENCY << 14) | (AR5K_INIT_USEC_32 << 7) | \
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|
(AR5K_INIT_USEC_TURBO) \
|
|
)
|
|
#define AR5K_INIT_PROTO_TIME_CNTRL ( \
|
|
(AR5K_INIT_CARR_SENSE_EN << 26) | (AR5K_INIT_EIFS << 12) | \
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|
(AR5K_INIT_PROG_IFS) \
|
|
)
|
|
#define AR5K_INIT_PROTO_TIME_CNTRL_TURBO ( \
|
|
(AR5K_INIT_CARR_SENSE_EN << 26) | (AR5K_INIT_EIFS_TURBO << 12) | \
|
|
(AR5K_INIT_PROG_IFS_TURBO) \
|
|
)
|
|
#define AR5K_INIT_BEACON_CONTROL ( \
|
|
(AR5K_INIT_RESET_TSF << 24) | (AR5K_INIT_BEACON_EN << 23) | \
|
|
(AR5K_INIT_TIM_OFFSET << 16) | (AR5K_INIT_BEACON_PERIOD) \
|
|
)
|
|
|
|
/*
|
|
* Non-common initial register values which have to be loaded into the
|
|
* card at boot time and after each reset.
|
|
*/
|
|
|
|
/* Register dumps are done per operation mode */
|
|
#define AR5K_INI_RFGAIN_5GHZ 0
|
|
#define AR5K_INI_RFGAIN_2GHZ 1
|
|
|
|
#define AR5K_INI_VAL_11A 0
|
|
#define AR5K_INI_VAL_11A_TURBO 1
|
|
#define AR5K_INI_VAL_11B 2
|
|
#define AR5K_INI_VAL_11G 3
|
|
#define AR5K_INI_VAL_11G_TURBO 4
|
|
#define AR5K_INI_VAL_XR 0
|
|
#define AR5K_INI_VAL_MAX 5
|
|
|
|
#define AR5K_RF5111_INI_RF_MAX_BANKS AR5K_MAX_RF_BANKS
|
|
#define AR5K_RF5112_INI_RF_MAX_BANKS AR5K_MAX_RF_BANKS
|
|
|
|
static inline u32 ath5k_hw_bitswap(u32 val, unsigned int bits)
|
|
{
|
|
u32 retval = 0, bit, i;
|
|
|
|
for (i = 0; i < bits; i++) {
|
|
bit = (val >> i) & 1;
|
|
retval = (retval << 1) | bit;
|
|
}
|
|
|
|
return retval;
|
|
}
|