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1048643ea9
This patch brings the ath5k eeprom parsing code in sync with the work done on ath_info by Nick Kossifidis and integrates the missing parts based on the code of the Atheros Legacy HAL release. Signed-off-by: Felix Fietkau <nbd@openwrt.org> Signed-off-by: John W. Linville <linville@tuxdriver.com>
395 lines
15 KiB
C
395 lines
15 KiB
C
/*
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* Copyright (c) 2004-2008 Reyk Floeter <reyk@openbsd.org>
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* Copyright (c) 2006-2008 Nick Kossifidis <mickflemm@gmail.com>
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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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*/
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/*
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* Common ar5xxx EEPROM data offsets (set these on AR5K_EEPROM_BASE)
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*/
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#define AR5K_EEPROM_MAGIC 0x003d /* EEPROM Magic number */
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#define AR5K_EEPROM_MAGIC_VALUE 0x5aa5 /* Default - found on EEPROM */
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#define AR5K_EEPROM_MAGIC_5212 0x0000145c /* 5212 */
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#define AR5K_EEPROM_MAGIC_5211 0x0000145b /* 5211 */
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#define AR5K_EEPROM_MAGIC_5210 0x0000145a /* 5210 */
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#define AR5K_EEPROM_REG_DOMAIN 0x00bf /* EEPROM regdom */
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#define AR5K_EEPROM_CHECKSUM 0x00c0 /* EEPROM checksum */
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#define AR5K_EEPROM_INFO_BASE 0x00c0 /* EEPROM header */
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#define AR5K_EEPROM_INFO_MAX (0x400 - AR5K_EEPROM_INFO_BASE)
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#define AR5K_EEPROM_INFO_CKSUM 0xffff
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#define AR5K_EEPROM_INFO(_n) (AR5K_EEPROM_INFO_BASE + (_n))
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#define AR5K_EEPROM_VERSION AR5K_EEPROM_INFO(1) /* EEPROM Version */
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#define AR5K_EEPROM_VERSION_3_0 0x3000 /* No idea what's going on before this version */
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#define AR5K_EEPROM_VERSION_3_1 0x3001 /* ob/db values for 2Ghz (ar5211_rfregs) */
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#define AR5K_EEPROM_VERSION_3_2 0x3002 /* different frequency representation (eeprom_bin2freq) */
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#define AR5K_EEPROM_VERSION_3_3 0x3003 /* offsets changed, has 32 CTLs (see below) and ee_false_detect (eeprom_read_modes) */
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#define AR5K_EEPROM_VERSION_3_4 0x3004 /* has ee_i_gain, ee_cck_ofdm_power_delta (eeprom_read_modes) */
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#define AR5K_EEPROM_VERSION_4_0 0x4000 /* has ee_misc, ee_cal_pier, ee_turbo_max_power and ee_xr_power (eeprom_init) */
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#define AR5K_EEPROM_VERSION_4_1 0x4001 /* has ee_margin_tx_rx (eeprom_init) */
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#define AR5K_EEPROM_VERSION_4_2 0x4002 /* has ee_cck_ofdm_gain_delta (eeprom_init) */
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#define AR5K_EEPROM_VERSION_4_3 0x4003 /* power calibration changes */
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#define AR5K_EEPROM_VERSION_4_4 0x4004
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#define AR5K_EEPROM_VERSION_4_5 0x4005
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#define AR5K_EEPROM_VERSION_4_6 0x4006 /* has ee_scaled_cck_delta */
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#define AR5K_EEPROM_VERSION_4_7 0x3007 /* 4007 ? */
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#define AR5K_EEPROM_VERSION_4_9 0x4009 /* EAR futureproofing */
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#define AR5K_EEPROM_VERSION_5_0 0x5000 /* Has 2413 PDADC calibration etc */
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#define AR5K_EEPROM_VERSION_5_1 0x5001 /* Has capability values */
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#define AR5K_EEPROM_VERSION_5_3 0x5003 /* Has spur mitigation tables */
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#define AR5K_EEPROM_MODE_11A 0
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#define AR5K_EEPROM_MODE_11B 1
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#define AR5K_EEPROM_MODE_11G 2
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#define AR5K_EEPROM_HDR AR5K_EEPROM_INFO(2) /* Header that contains the device caps */
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#define AR5K_EEPROM_HDR_11A(_v) (((_v) >> AR5K_EEPROM_MODE_11A) & 0x1)
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#define AR5K_EEPROM_HDR_11B(_v) (((_v) >> AR5K_EEPROM_MODE_11B) & 0x1)
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#define AR5K_EEPROM_HDR_11G(_v) (((_v) >> AR5K_EEPROM_MODE_11G) & 0x1)
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#define AR5K_EEPROM_HDR_T_2GHZ_DIS(_v) (((_v) >> 3) & 0x1) /* Disable turbo for 2Ghz (?) */
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#define AR5K_EEPROM_HDR_T_5GHZ_DBM(_v) (((_v) >> 4) & 0x7f) /* Max turbo power for a/XR mode (eeprom_init) */
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#define AR5K_EEPROM_HDR_DEVICE(_v) (((_v) >> 11) & 0x7)
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#define AR5K_EEPROM_HDR_RFKILL(_v) (((_v) >> 14) & 0x1) /* Device has RFKill support */
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#define AR5K_EEPROM_HDR_T_5GHZ_DIS(_v) (((_v) >> 15) & 0x1) /* Disable turbo for 5Ghz */
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#define AR5K_EEPROM_RFKILL_GPIO_SEL 0x0000001c
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#define AR5K_EEPROM_RFKILL_GPIO_SEL_S 2
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#define AR5K_EEPROM_RFKILL_POLARITY 0x00000002
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#define AR5K_EEPROM_RFKILL_POLARITY_S 1
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/* Newer EEPROMs are using a different offset */
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#define AR5K_EEPROM_OFF(_v, _v3_0, _v3_3) \
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(((_v) >= AR5K_EEPROM_VERSION_3_3) ? _v3_3 : _v3_0)
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#define AR5K_EEPROM_ANT_GAIN(_v) AR5K_EEPROM_OFF(_v, 0x00c4, 0x00c3)
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#define AR5K_EEPROM_ANT_GAIN_5GHZ(_v) ((s8)(((_v) >> 8) & 0xff))
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#define AR5K_EEPROM_ANT_GAIN_2GHZ(_v) ((s8)((_v) & 0xff))
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/* Misc values available since EEPROM 4.0 */
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#define AR5K_EEPROM_MISC0 AR5K_EEPROM_INFO(4)
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#define AR5K_EEPROM_EARSTART(_v) ((_v) & 0xfff)
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#define AR5K_EEPROM_HDR_XR2_DIS(_v) (((_v) >> 12) & 0x1)
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#define AR5K_EEPROM_HDR_XR5_DIS(_v) (((_v) >> 13) & 0x1)
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#define AR5K_EEPROM_EEMAP(_v) (((_v) >> 14) & 0x3)
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#define AR5K_EEPROM_MISC1 AR5K_EEPROM_INFO(5)
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#define AR5K_EEPROM_TARGET_PWRSTART(_v) ((_v) & 0xfff)
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#define AR5K_EEPROM_HAS32KHZCRYSTAL(_v) (((_v) >> 14) & 0x1)
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#define AR5K_EEPROM_HAS32KHZCRYSTAL_OLD(_v) (((_v) >> 15) & 0x1)
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#define AR5K_EEPROM_MISC2 AR5K_EEPROM_INFO(6)
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#define AR5K_EEPROM_EEP_FILE_VERSION(_v) (((_v) >> 8) & 0xff)
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#define AR5K_EEPROM_EAR_FILE_VERSION(_v) ((_v) & 0xff)
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#define AR5K_EEPROM_MISC3 AR5K_EEPROM_INFO(7)
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#define AR5K_EEPROM_ART_BUILD_NUM(_v) (((_v) >> 10) & 0x3f)
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#define AR5K_EEPROM_EAR_FILE_ID(_v) ((_v) & 0xff)
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#define AR5K_EEPROM_MISC4 AR5K_EEPROM_INFO(8)
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#define AR5K_EEPROM_CAL_DATA_START(_v) (((_v) >> 4) & 0xfff)
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#define AR5K_EEPROM_MASK_R0(_v) (((_v) >> 2) & 0x3)
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#define AR5K_EEPROM_MASK_R1(_v) ((_v) & 0x3)
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#define AR5K_EEPROM_MISC5 AR5K_EEPROM_INFO(9)
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#define AR5K_EEPROM_COMP_DIS(_v) ((_v) & 0x1)
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#define AR5K_EEPROM_AES_DIS(_v) (((_v) >> 1) & 0x1)
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#define AR5K_EEPROM_FF_DIS(_v) (((_v) >> 2) & 0x1)
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#define AR5K_EEPROM_BURST_DIS(_v) (((_v) >> 3) & 0x1)
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#define AR5K_EEPROM_MAX_QCU(_v) (((_v) >> 4) & 0xf)
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#define AR5K_EEPROM_HEAVY_CLIP_EN(_v) (((_v) >> 8) & 0x1)
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#define AR5K_EEPROM_KEY_CACHE_SIZE(_v) (((_v) >> 12) & 0xf)
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#define AR5K_EEPROM_MISC6 AR5K_EEPROM_INFO(10)
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#define AR5K_EEPROM_TX_CHAIN_DIS ((_v) & 0x8)
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#define AR5K_EEPROM_RX_CHAIN_DIS (((_v) >> 3) & 0x8)
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#define AR5K_EEPROM_FCC_MID_EN (((_v) >> 6) & 0x1)
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#define AR5K_EEPROM_JAP_U1EVEN_EN (((_v) >> 7) & 0x1)
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#define AR5K_EEPROM_JAP_U2_EN (((_v) >> 8) & 0x1)
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#define AR5K_EEPROM_JAP_U1ODD_EN (((_v) >> 9) & 0x1)
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#define AR5K_EEPROM_JAP_11A_NEW_EN (((_v) >> 10) & 0x1)
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/* calibration settings */
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#define AR5K_EEPROM_MODES_11A(_v) AR5K_EEPROM_OFF(_v, 0x00c5, 0x00d4)
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#define AR5K_EEPROM_MODES_11B(_v) AR5K_EEPROM_OFF(_v, 0x00d0, 0x00f2)
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#define AR5K_EEPROM_MODES_11G(_v) AR5K_EEPROM_OFF(_v, 0x00da, 0x010d)
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#define AR5K_EEPROM_CTL(_v) AR5K_EEPROM_OFF(_v, 0x00e4, 0x0128) /* Conformance test limits */
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#define AR5K_EEPROM_GROUPS_START(_v) AR5K_EEPROM_OFF(_v, 0x0100, 0x0150) /* Start of Groups */
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#define AR5K_EEPROM_GROUP1_OFFSET 0x0
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#define AR5K_EEPROM_GROUP2_OFFSET 0x5
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#define AR5K_EEPROM_GROUP3_OFFSET 0x37
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#define AR5K_EEPROM_GROUP4_OFFSET 0x46
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#define AR5K_EEPROM_GROUP5_OFFSET 0x55
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#define AR5K_EEPROM_GROUP6_OFFSET 0x65
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#define AR5K_EEPROM_GROUP7_OFFSET 0x69
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#define AR5K_EEPROM_GROUP8_OFFSET 0x6f
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#define AR5K_EEPROM_TARGET_PWR_OFF_11A(_v) AR5K_EEPROM_OFF(_v, AR5K_EEPROM_GROUPS_START(_v) + \
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AR5K_EEPROM_GROUP5_OFFSET, 0x0000)
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#define AR5K_EEPROM_TARGET_PWR_OFF_11B(_v) AR5K_EEPROM_OFF(_v, AR5K_EEPROM_GROUPS_START(_v) + \
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AR5K_EEPROM_GROUP6_OFFSET, 0x0010)
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#define AR5K_EEPROM_TARGET_PWR_OFF_11G(_v) AR5K_EEPROM_OFF(_v, AR5K_EEPROM_GROUPS_START(_v) + \
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AR5K_EEPROM_GROUP7_OFFSET, 0x0014)
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/* [3.1 - 3.3] */
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#define AR5K_EEPROM_OBDB0_2GHZ 0x00ec
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#define AR5K_EEPROM_OBDB1_2GHZ 0x00ed
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#define AR5K_EEPROM_PROTECT 0x003f /* EEPROM protect status */
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#define AR5K_EEPROM_PROTECT_RD_0_31 0x0001 /* Read protection bit for offsets 0x0 - 0x1f */
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#define AR5K_EEPROM_PROTECT_WR_0_31 0x0002 /* Write protection bit for offsets 0x0 - 0x1f */
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#define AR5K_EEPROM_PROTECT_RD_32_63 0x0004 /* 0x20 - 0x3f */
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#define AR5K_EEPROM_PROTECT_WR_32_63 0x0008
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#define AR5K_EEPROM_PROTECT_RD_64_127 0x0010 /* 0x40 - 0x7f */
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#define AR5K_EEPROM_PROTECT_WR_64_127 0x0020
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#define AR5K_EEPROM_PROTECT_RD_128_191 0x0040 /* 0x80 - 0xbf (regdom) */
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#define AR5K_EEPROM_PROTECT_WR_128_191 0x0080
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#define AR5K_EEPROM_PROTECT_RD_192_207 0x0100 /* 0xc0 - 0xcf */
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#define AR5K_EEPROM_PROTECT_WR_192_207 0x0200
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#define AR5K_EEPROM_PROTECT_RD_208_223 0x0400 /* 0xd0 - 0xdf */
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#define AR5K_EEPROM_PROTECT_WR_208_223 0x0800
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#define AR5K_EEPROM_PROTECT_RD_224_239 0x1000 /* 0xe0 - 0xef */
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#define AR5K_EEPROM_PROTECT_WR_224_239 0x2000
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#define AR5K_EEPROM_PROTECT_RD_240_255 0x4000 /* 0xf0 - 0xff */
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#define AR5K_EEPROM_PROTECT_WR_240_255 0x8000
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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_N_2GHZ_CHAN_2413 4
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#define AR5K_EEPROM_MAX_CHAN 10
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#define AR5K_EEPROM_N_PWR_POINTS_5111 11
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#define AR5K_EEPROM_N_PCDAC 11
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#define AR5K_EEPROM_N_PHASE_CAL 5
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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_PD_GAINS 4
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#define AR5K_EEPROM_N_PD_POINTS 5
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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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#define AR5K_EEPROM_READ(_o, _v) do { \
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ret = ath5k_hw_eeprom_read(ah, (_o), &(_v)); \
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if (ret) \
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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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enum ath5k_ant_setting {
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AR5K_ANT_VARIABLE = 0, /* variable by programming */
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AR5K_ANT_FIXED_A = 1, /* fixed to 11a frequencies */
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AR5K_ANT_FIXED_B = 2, /* fixed to 11b frequencies */
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AR5K_ANT_MAX = 3,
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};
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enum ath5k_ctl_mode {
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AR5K_CTL_11A = 0,
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AR5K_CTL_11B = 1,
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AR5K_CTL_11G = 2,
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AR5K_CTL_TURBO = 3,
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AR5K_CTL_108G = 4,
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AR5K_CTL_2GHT20 = 5,
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AR5K_CTL_5GHT20 = 6,
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AR5K_CTL_2GHT40 = 7,
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AR5K_CTL_5GHT40 = 8,
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AR5K_CTL_MODE_M = 15,
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};
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/* Per channel calibration data, used for power table setup */
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struct ath5k_chan_pcal_info_rf5111 {
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/* Power levels in half dbm units
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* for one power curve. */
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u8 pwr[AR5K_EEPROM_N_PWR_POINTS_5111];
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/* PCDAC table steps
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* for the above values */
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u8 pcdac[AR5K_EEPROM_N_PWR_POINTS_5111];
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/* Starting PCDAC step */
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u8 pcdac_min;
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/* Final PCDAC step */
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u8 pcdac_max;
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};
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struct ath5k_chan_pcal_info_rf5112 {
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/* Power levels in quarter dBm units
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* for lower (0) and higher (3)
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* level curves */
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s8 pwr_x0[AR5K_EEPROM_N_XPD0_POINTS];
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s8 pwr_x3[AR5K_EEPROM_N_XPD3_POINTS];
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/* PCDAC table steps
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* for the above values */
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u8 pcdac_x0[AR5K_EEPROM_N_XPD0_POINTS];
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u8 pcdac_x3[AR5K_EEPROM_N_XPD3_POINTS];
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};
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struct ath5k_chan_pcal_info_rf2413 {
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/* Starting pwr/pddac values */
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s8 pwr_i[AR5K_EEPROM_N_PD_GAINS];
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u8 pddac_i[AR5K_EEPROM_N_PD_GAINS];
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/* (pwr,pddac) points */
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s8 pwr[AR5K_EEPROM_N_PD_GAINS]
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[AR5K_EEPROM_N_PD_POINTS];
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u8 pddac[AR5K_EEPROM_N_PD_GAINS]
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[AR5K_EEPROM_N_PD_POINTS];
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};
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struct ath5k_chan_pcal_info {
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/* Frequency */
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u16 freq;
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/* Max available power */
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s8 max_pwr;
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union {
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struct ath5k_chan_pcal_info_rf5111 rf5111_info;
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struct ath5k_chan_pcal_info_rf5112 rf5112_info;
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struct ath5k_chan_pcal_info_rf2413 rf2413_info;
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};
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};
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/* Per rate calibration data for each mode, used for power table setup */
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struct ath5k_rate_pcal_info {
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u16 freq; /* Frequency */
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/* Power level for 6-24Mbit/s rates */
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u16 target_power_6to24;
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/* Power level for 36Mbit rate */
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u16 target_power_36;
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/* Power level for 48Mbit rate */
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u16 target_power_48;
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/* Power level for 54Mbit rate */
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u16 target_power_54;
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};
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/* Power edges for conformance test limits */
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struct ath5k_edge_power {
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u16 freq;
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u16 edge; /* in half dBm */
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bool flag;
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};
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/* EEPROM calibration data */
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struct ath5k_eeprom_info {
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/* Header information */
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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_misc2;
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u16 ee_misc3;
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u16 ee_misc4;
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u16 ee_misc5;
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u16 ee_misc6;
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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_atn_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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u16 ee_switch_settling_turbo[AR5K_EEPROM_N_MODES];
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u16 ee_margin_tx_rx_turbo[AR5K_EEPROM_N_MODES];
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u16 ee_atn_tx_rx_turbo[AR5K_EEPROM_N_MODES];
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/* Power calibration data */
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u16 ee_false_detect[AR5K_EEPROM_N_MODES];
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/* Number of pd gain curves per mode (RF2413) */
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u8 ee_pd_gains[AR5K_EEPROM_N_MODES];
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u8 ee_n_piers[AR5K_EEPROM_N_MODES];
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struct ath5k_chan_pcal_info ee_pwr_cal_a[AR5K_EEPROM_N_5GHZ_CHAN];
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struct ath5k_chan_pcal_info ee_pwr_cal_b[AR5K_EEPROM_N_2GHZ_CHAN];
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struct ath5k_chan_pcal_info ee_pwr_cal_g[AR5K_EEPROM_N_2GHZ_CHAN];
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/* Per rate target power levels */
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u16 ee_rate_target_pwr_num[AR5K_EEPROM_N_MODES];
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struct ath5k_rate_pcal_info ee_rate_tpwr_a[AR5K_EEPROM_N_5GHZ_CHAN];
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struct ath5k_rate_pcal_info ee_rate_tpwr_b[AR5K_EEPROM_N_2GHZ_CHAN];
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struct ath5k_rate_pcal_info ee_rate_tpwr_g[AR5K_EEPROM_N_2GHZ_CHAN];
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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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struct ath5k_edge_power ee_ctl_pwr[AR5K_EEPROM_N_EDGES * 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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s8 ee_adc_desired_size_turbo[AR5K_EEPROM_N_MODES];
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s8 ee_pga_desired_size_turbo[AR5K_EEPROM_N_MODES];
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s8 ee_pd_gain_overlap;
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u32 ee_antenna[AR5K_EEPROM_N_MODES][AR5K_ANT_MAX];
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};
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