From fb9987d0f748c983bb795a86f47522313f701a08 Mon Sep 17 00:00:00 2001 From: Sujith Date: Wed, 17 Mar 2010 14:25:25 +0530 Subject: ath9k_htc: Support for AR9271 chipset. Features: * Station mode * IBSS mode * Monitor mode * Legacy support * HT support * TX/RX 11n Aggregation * HW encryption * LED * Suspend/Resume For more information: http://wireless.kernel.org/en/users/Drivers/ath9k_htc Signed-off-by: Sujith Signed-off-by: Vasanthakumar Thiagarajan Signed-off-by: Senthil Balasubramanian Signed-off-by: John W. Linville --- drivers/net/wireless/ath/ath9k/Makefile | 10 ++++++++++ 1 file changed, 10 insertions(+) (limited to 'drivers/net/wireless/ath/ath9k/Makefile') diff --git a/drivers/net/wireless/ath/ath9k/Makefile b/drivers/net/wireless/ath/ath9k/Makefile index 6b50d5eb9ec..97133beda26 100644 --- a/drivers/net/wireless/ath/ath9k/Makefile +++ b/drivers/net/wireless/ath/ath9k/Makefile @@ -28,3 +28,13 @@ obj-$(CONFIG_ATH9K_HW) += ath9k_hw.o obj-$(CONFIG_ATH9K_COMMON) += ath9k_common.o ath9k_common-y:= common.o + +ath9k_htc-y += htc_hst.o \ + hif_usb.o \ + wmi.o \ + htc_drv_txrx.o \ + htc_drv_main.o \ + htc_drv_beacon.o \ + htc_drv_init.o + +obj-$(CONFIG_ATH9K_HTC) += ath9k_htc.o -- cgit v1.2.3-70-g09d2 From 8fe6536850ae49609704a263cbc7542133536922 Mon Sep 17 00:00:00 2001 From: "Luis R. Rodriguez" Date: Thu, 15 Apr 2010 17:38:14 -0400 Subject: ath9k_hw: Move some RF ops to the private callbacks The PHY split is easier done in a few steps. First move the RF ops to the private ops and rename them accordingly. We split PHY stuff up first for the AR5008 and AR9002 families. There are some callbacks that AR9002 share with the AR5008 familiy so we set those first, if AR9002 has some different callbacks it will override them upon hardware init. Signed-off-by: Felix Fietkau Signed-off-by: Luis R. Rodriguez Signed-off-by: John W. Linville --- drivers/net/wireless/ath/ath9k/Makefile | 3 +- drivers/net/wireless/ath/ath9k/ani.c | 1 + drivers/net/wireless/ath/ath9k/ar5008_phy.c | 991 +++++++++++++++++++++++++++ drivers/net/wireless/ath/ath9k/ar9002_phy.c | 450 ++++++++++++ drivers/net/wireless/ath/ath9k/ar9002_phy.h | 581 ++++++++++++++++ drivers/net/wireless/ath/ath9k/calib.c | 1 + drivers/net/wireless/ath/ath9k/eeprom_4k.c | 1 + drivers/net/wireless/ath/ath9k/eeprom_9287.c | 1 + drivers/net/wireless/ath/ath9k/eeprom_def.c | 1 + drivers/net/wireless/ath/ath9k/hw-ops.h | 113 +++ drivers/net/wireless/ath/ath9k/hw.c | 467 +------------ drivers/net/wireless/ath/ath9k/hw.h | 46 +- drivers/net/wireless/ath/ath9k/init.c | 2 +- drivers/net/wireless/ath/ath9k/phy.c | 961 -------------------------- drivers/net/wireless/ath/ath9k/phy.h | 576 +--------------- 15 files changed, 2208 insertions(+), 1987 deletions(-) create mode 100644 drivers/net/wireless/ath/ath9k/ar5008_phy.c create mode 100644 drivers/net/wireless/ath/ath9k/ar9002_phy.c create mode 100644 drivers/net/wireless/ath/ath9k/ar9002_phy.h delete mode 100644 drivers/net/wireless/ath/ath9k/phy.c (limited to 'drivers/net/wireless/ath/ath9k/Makefile') diff --git a/drivers/net/wireless/ath/ath9k/Makefile b/drivers/net/wireless/ath/ath9k/Makefile index 97133beda26..db63ba29804 100644 --- a/drivers/net/wireless/ath/ath9k/Makefile +++ b/drivers/net/wireless/ath/ath9k/Makefile @@ -14,13 +14,14 @@ ath9k-$(CONFIG_ATH9K_DEBUGFS) += debug.o obj-$(CONFIG_ATH9K) += ath9k.o ath9k_hw-y:= hw.o \ + ar9002_phy.o \ + ar5008_phy.o \ eeprom.o \ eeprom_def.o \ eeprom_4k.o \ eeprom_9287.o \ calib.o \ ani.o \ - phy.o \ btcoex.o \ mac.o \ diff --git a/drivers/net/wireless/ath/ath9k/ani.c b/drivers/net/wireless/ath/ath9k/ani.c index 2a0cd64c2bf..031802c8c12 100644 --- a/drivers/net/wireless/ath/ath9k/ani.c +++ b/drivers/net/wireless/ath/ath9k/ani.c @@ -15,6 +15,7 @@ */ #include "hw.h" +#include "ar9002_phy.h" static int ath9k_hw_get_ani_channel_idx(struct ath_hw *ah, struct ath9k_channel *chan) diff --git a/drivers/net/wireless/ath/ath9k/ar5008_phy.c b/drivers/net/wireless/ath/ath9k/ar5008_phy.c new file mode 100644 index 00000000000..982b0d3877f --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar5008_phy.c @@ -0,0 +1,991 @@ +/* + * Copyright (c) 2008-2010 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include "hw.h" +#include "hw-ops.h" +#include "../regd.h" +#include "ar9002_phy.h" + +/* All code below is for non single-chip solutions */ + +/** + * ar5008_hw_phy_modify_rx_buffer() - perform analog swizzling of parameters + * @rfbuf: + * @reg32: + * @numBits: + * @firstBit: + * @column: + * + * Performs analog "swizzling" of parameters into their location. + * Used on external AR2133/AR5133 radios. + */ +static void ar5008_hw_phy_modify_rx_buffer(u32 *rfBuf, u32 reg32, + u32 numBits, u32 firstBit, + u32 column) +{ + u32 tmp32, mask, arrayEntry, lastBit; + int32_t bitPosition, bitsLeft; + + tmp32 = ath9k_hw_reverse_bits(reg32, numBits); + arrayEntry = (firstBit - 1) / 8; + bitPosition = (firstBit - 1) % 8; + bitsLeft = numBits; + while (bitsLeft > 0) { + lastBit = (bitPosition + bitsLeft > 8) ? + 8 : bitPosition + bitsLeft; + mask = (((1 << lastBit) - 1) ^ ((1 << bitPosition) - 1)) << + (column * 8); + rfBuf[arrayEntry] &= ~mask; + rfBuf[arrayEntry] |= ((tmp32 << bitPosition) << + (column * 8)) & mask; + bitsLeft -= 8 - bitPosition; + tmp32 = tmp32 >> (8 - bitPosition); + bitPosition = 0; + arrayEntry++; + } +} + +/* + * Fix on 2.4 GHz band for orientation sensitivity issue by increasing + * rf_pwd_icsyndiv. + * + * Theoretical Rules: + * if 2 GHz band + * if forceBiasAuto + * if synth_freq < 2412 + * bias = 0 + * else if 2412 <= synth_freq <= 2422 + * bias = 1 + * else // synth_freq > 2422 + * bias = 2 + * else if forceBias > 0 + * bias = forceBias & 7 + * else + * no change, use value from ini file + * else + * no change, invalid band + * + * 1st Mod: + * 2422 also uses value of 2 + * + * + * 2nd Mod: + * Less than 2412 uses value of 0, 2412 and above uses value of 2 + */ +static void ar5008_hw_force_bias(struct ath_hw *ah, u16 synth_freq) +{ + struct ath_common *common = ath9k_hw_common(ah); + u32 tmp_reg; + int reg_writes = 0; + u32 new_bias = 0; + + if (!AR_SREV_5416(ah) || synth_freq >= 3000) + return; + + BUG_ON(AR_SREV_9280_10_OR_LATER(ah)); + + if (synth_freq < 2412) + new_bias = 0; + else if (synth_freq < 2422) + new_bias = 1; + else + new_bias = 2; + + /* pre-reverse this field */ + tmp_reg = ath9k_hw_reverse_bits(new_bias, 3); + + ath_print(common, ATH_DBG_CONFIG, + "Force rf_pwd_icsyndiv to %1d on %4d\n", + new_bias, synth_freq); + + /* swizzle rf_pwd_icsyndiv */ + ar5008_hw_phy_modify_rx_buffer(ah->analogBank6Data, tmp_reg, 3, 181, 3); + + /* write Bank 6 with new params */ + REG_WRITE_RF_ARRAY(&ah->iniBank6, ah->analogBank6Data, reg_writes); +} + +/** + * ar5008_hw_set_channel - tune to a channel on the external AR2133/AR5133 radios + * @ah: atheros hardware stucture + * @chan: + * + * For the external AR2133/AR5133 radios, takes the MHz channel value and set + * the channel value. Assumes writes enabled to analog bus and bank6 register + * cache in ah->analogBank6Data. + */ +static int ar5008_hw_set_channel(struct ath_hw *ah, struct ath9k_channel *chan) +{ + struct ath_common *common = ath9k_hw_common(ah); + u32 channelSel = 0; + u32 bModeSynth = 0; + u32 aModeRefSel = 0; + u32 reg32 = 0; + u16 freq; + struct chan_centers centers; + + ath9k_hw_get_channel_centers(ah, chan, ¢ers); + freq = centers.synth_center; + + if (freq < 4800) { + u32 txctl; + + if (((freq - 2192) % 5) == 0) { + channelSel = ((freq - 672) * 2 - 3040) / 10; + bModeSynth = 0; + } else if (((freq - 2224) % 5) == 0) { + channelSel = ((freq - 704) * 2 - 3040) / 10; + bModeSynth = 1; + } else { + ath_print(common, ATH_DBG_FATAL, + "Invalid channel %u MHz\n", freq); + return -EINVAL; + } + + channelSel = (channelSel << 2) & 0xff; + channelSel = ath9k_hw_reverse_bits(channelSel, 8); + + txctl = REG_READ(ah, AR_PHY_CCK_TX_CTRL); + if (freq == 2484) { + + REG_WRITE(ah, AR_PHY_CCK_TX_CTRL, + txctl | AR_PHY_CCK_TX_CTRL_JAPAN); + } else { + REG_WRITE(ah, AR_PHY_CCK_TX_CTRL, + txctl & ~AR_PHY_CCK_TX_CTRL_JAPAN); + } + + } else if ((freq % 20) == 0 && freq >= 5120) { + channelSel = + ath9k_hw_reverse_bits(((freq - 4800) / 20 << 2), 8); + aModeRefSel = ath9k_hw_reverse_bits(1, 2); + } else if ((freq % 10) == 0) { + channelSel = + ath9k_hw_reverse_bits(((freq - 4800) / 10 << 1), 8); + if (AR_SREV_9100(ah) || AR_SREV_9160_10_OR_LATER(ah)) + aModeRefSel = ath9k_hw_reverse_bits(2, 2); + else + aModeRefSel = ath9k_hw_reverse_bits(1, 2); + } else if ((freq % 5) == 0) { + channelSel = ath9k_hw_reverse_bits((freq - 4800) / 5, 8); + aModeRefSel = ath9k_hw_reverse_bits(1, 2); + } else { + ath_print(common, ATH_DBG_FATAL, + "Invalid channel %u MHz\n", freq); + return -EINVAL; + } + + ar5008_hw_force_bias(ah, freq); + + reg32 = + (channelSel << 8) | (aModeRefSel << 2) | (bModeSynth << 1) | + (1 << 5) | 0x1; + + REG_WRITE(ah, AR_PHY(0x37), reg32); + + ah->curchan = chan; + ah->curchan_rad_index = -1; + + return 0; +} + +/** + * ar5008_hw_spur_mitigate - convert baseband spur frequency for external radios + * @ah: atheros hardware structure + * @chan: + * + * For non single-chip solutions. Converts to baseband spur frequency given the + * input channel frequency and compute register settings below. + */ +static void ar5008_hw_spur_mitigate(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + int bb_spur = AR_NO_SPUR; + int bin, cur_bin; + int spur_freq_sd; + int spur_delta_phase; + int denominator; + int upper, lower, cur_vit_mask; + int tmp, new; + int i; + int pilot_mask_reg[4] = { AR_PHY_TIMING7, AR_PHY_TIMING8, + AR_PHY_PILOT_MASK_01_30, AR_PHY_PILOT_MASK_31_60 + }; + int chan_mask_reg[4] = { AR_PHY_TIMING9, AR_PHY_TIMING10, + AR_PHY_CHANNEL_MASK_01_30, AR_PHY_CHANNEL_MASK_31_60 + }; + int inc[4] = { 0, 100, 0, 0 }; + + int8_t mask_m[123]; + int8_t mask_p[123]; + int8_t mask_amt; + int tmp_mask; + int cur_bb_spur; + bool is2GHz = IS_CHAN_2GHZ(chan); + + memset(&mask_m, 0, sizeof(int8_t) * 123); + memset(&mask_p, 0, sizeof(int8_t) * 123); + + for (i = 0; i < AR_EEPROM_MODAL_SPURS; i++) { + cur_bb_spur = ah->eep_ops->get_spur_channel(ah, i, is2GHz); + if (AR_NO_SPUR == cur_bb_spur) + break; + cur_bb_spur = cur_bb_spur - (chan->channel * 10); + if ((cur_bb_spur > -95) && (cur_bb_spur < 95)) { + bb_spur = cur_bb_spur; + break; + } + } + + if (AR_NO_SPUR == bb_spur) + return; + + bin = bb_spur * 32; + + tmp = REG_READ(ah, AR_PHY_TIMING_CTRL4(0)); + new = tmp | (AR_PHY_TIMING_CTRL4_ENABLE_SPUR_RSSI | + AR_PHY_TIMING_CTRL4_ENABLE_SPUR_FILTER | + AR_PHY_TIMING_CTRL4_ENABLE_CHAN_MASK | + AR_PHY_TIMING_CTRL4_ENABLE_PILOT_MASK); + + REG_WRITE(ah, AR_PHY_TIMING_CTRL4(0), new); + + new = (AR_PHY_SPUR_REG_MASK_RATE_CNTL | + AR_PHY_SPUR_REG_ENABLE_MASK_PPM | + AR_PHY_SPUR_REG_MASK_RATE_SELECT | + AR_PHY_SPUR_REG_ENABLE_VIT_SPUR_RSSI | + SM(SPUR_RSSI_THRESH, AR_PHY_SPUR_REG_SPUR_RSSI_THRESH)); + REG_WRITE(ah, AR_PHY_SPUR_REG, new); + + spur_delta_phase = ((bb_spur * 524288) / 100) & + AR_PHY_TIMING11_SPUR_DELTA_PHASE; + + denominator = IS_CHAN_2GHZ(chan) ? 440 : 400; + spur_freq_sd = ((bb_spur * 2048) / denominator) & 0x3ff; + + new = (AR_PHY_TIMING11_USE_SPUR_IN_AGC | + SM(spur_freq_sd, AR_PHY_TIMING11_SPUR_FREQ_SD) | + SM(spur_delta_phase, AR_PHY_TIMING11_SPUR_DELTA_PHASE)); + REG_WRITE(ah, AR_PHY_TIMING11, new); + + cur_bin = -6000; + upper = bin + 100; + lower = bin - 100; + + for (i = 0; i < 4; i++) { + int pilot_mask = 0; + int chan_mask = 0; + int bp = 0; + for (bp = 0; bp < 30; bp++) { + if ((cur_bin > lower) && (cur_bin < upper)) { + pilot_mask = pilot_mask | 0x1 << bp; + chan_mask = chan_mask | 0x1 << bp; + } + cur_bin += 100; + } + cur_bin += inc[i]; + REG_WRITE(ah, pilot_mask_reg[i], pilot_mask); + REG_WRITE(ah, chan_mask_reg[i], chan_mask); + } + + cur_vit_mask = 6100; + upper = bin + 120; + lower = bin - 120; + + for (i = 0; i < 123; i++) { + if ((cur_vit_mask > lower) && (cur_vit_mask < upper)) { + + /* workaround for gcc bug #37014 */ + volatile int tmp_v = abs(cur_vit_mask - bin); + + if (tmp_v < 75) + mask_amt = 1; + else + mask_amt = 0; + if (cur_vit_mask < 0) + mask_m[abs(cur_vit_mask / 100)] = mask_amt; + else + mask_p[cur_vit_mask / 100] = mask_amt; + } + cur_vit_mask -= 100; + } + + tmp_mask = (mask_m[46] << 30) | (mask_m[47] << 28) + | (mask_m[48] << 26) | (mask_m[49] << 24) + | (mask_m[50] << 22) | (mask_m[51] << 20) + | (mask_m[52] << 18) | (mask_m[53] << 16) + | (mask_m[54] << 14) | (mask_m[55] << 12) + | (mask_m[56] << 10) | (mask_m[57] << 8) + | (mask_m[58] << 6) | (mask_m[59] << 4) + | (mask_m[60] << 2) | (mask_m[61] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK_1, tmp_mask); + REG_WRITE(ah, AR_PHY_VIT_MASK2_M_46_61, tmp_mask); + + tmp_mask = (mask_m[31] << 28) + | (mask_m[32] << 26) | (mask_m[33] << 24) + | (mask_m[34] << 22) | (mask_m[35] << 20) + | (mask_m[36] << 18) | (mask_m[37] << 16) + | (mask_m[48] << 14) | (mask_m[39] << 12) + | (mask_m[40] << 10) | (mask_m[41] << 8) + | (mask_m[42] << 6) | (mask_m[43] << 4) + | (mask_m[44] << 2) | (mask_m[45] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK_2, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_M_31_45, tmp_mask); + + tmp_mask = (mask_m[16] << 30) | (mask_m[16] << 28) + | (mask_m[18] << 26) | (mask_m[18] << 24) + | (mask_m[20] << 22) | (mask_m[20] << 20) + | (mask_m[22] << 18) | (mask_m[22] << 16) + | (mask_m[24] << 14) | (mask_m[24] << 12) + | (mask_m[25] << 10) | (mask_m[26] << 8) + | (mask_m[27] << 6) | (mask_m[28] << 4) + | (mask_m[29] << 2) | (mask_m[30] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK_3, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_M_16_30, tmp_mask); + + tmp_mask = (mask_m[0] << 30) | (mask_m[1] << 28) + | (mask_m[2] << 26) | (mask_m[3] << 24) + | (mask_m[4] << 22) | (mask_m[5] << 20) + | (mask_m[6] << 18) | (mask_m[7] << 16) + | (mask_m[8] << 14) | (mask_m[9] << 12) + | (mask_m[10] << 10) | (mask_m[11] << 8) + | (mask_m[12] << 6) | (mask_m[13] << 4) + | (mask_m[14] << 2) | (mask_m[15] << 0); + REG_WRITE(ah, AR_PHY_MASK_CTL, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_M_00_15, tmp_mask); + + tmp_mask = (mask_p[15] << 28) + | (mask_p[14] << 26) | (mask_p[13] << 24) + | (mask_p[12] << 22) | (mask_p[11] << 20) + | (mask_p[10] << 18) | (mask_p[9] << 16) + | (mask_p[8] << 14) | (mask_p[7] << 12) + | (mask_p[6] << 10) | (mask_p[5] << 8) + | (mask_p[4] << 6) | (mask_p[3] << 4) + | (mask_p[2] << 2) | (mask_p[1] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK2_1, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_P_15_01, tmp_mask); + + tmp_mask = (mask_p[30] << 28) + | (mask_p[29] << 26) | (mask_p[28] << 24) + | (mask_p[27] << 22) | (mask_p[26] << 20) + | (mask_p[25] << 18) | (mask_p[24] << 16) + | (mask_p[23] << 14) | (mask_p[22] << 12) + | (mask_p[21] << 10) | (mask_p[20] << 8) + | (mask_p[19] << 6) | (mask_p[18] << 4) + | (mask_p[17] << 2) | (mask_p[16] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK2_2, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_P_30_16, tmp_mask); + + tmp_mask = (mask_p[45] << 28) + | (mask_p[44] << 26) | (mask_p[43] << 24) + | (mask_p[42] << 22) | (mask_p[41] << 20) + | (mask_p[40] << 18) | (mask_p[39] << 16) + | (mask_p[38] << 14) | (mask_p[37] << 12) + | (mask_p[36] << 10) | (mask_p[35] << 8) + | (mask_p[34] << 6) | (mask_p[33] << 4) + | (mask_p[32] << 2) | (mask_p[31] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK2_3, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_P_45_31, tmp_mask); + + tmp_mask = (mask_p[61] << 30) | (mask_p[60] << 28) + | (mask_p[59] << 26) | (mask_p[58] << 24) + | (mask_p[57] << 22) | (mask_p[56] << 20) + | (mask_p[55] << 18) | (mask_p[54] << 16) + | (mask_p[53] << 14) | (mask_p[52] << 12) + | (mask_p[51] << 10) | (mask_p[50] << 8) + | (mask_p[49] << 6) | (mask_p[48] << 4) + | (mask_p[47] << 2) | (mask_p[46] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK2_4, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_P_61_45, tmp_mask); +} + +/** + * ar5008_hw_rf_alloc_ext_banks - allocates banks for external radio programming + * @ah: atheros hardware structure + * + * Only required for older devices with external AR2133/AR5133 radios. + */ +static int ar5008_hw_rf_alloc_ext_banks(struct ath_hw *ah) +{ +#define ATH_ALLOC_BANK(bank, size) do { \ + bank = kzalloc((sizeof(u32) * size), GFP_KERNEL); \ + if (!bank) { \ + ath_print(common, ATH_DBG_FATAL, \ + "Cannot allocate RF banks\n"); \ + return -ENOMEM; \ + } \ + } while (0); + + struct ath_common *common = ath9k_hw_common(ah); + + BUG_ON(AR_SREV_9280_10_OR_LATER(ah)); + + ATH_ALLOC_BANK(ah->analogBank0Data, ah->iniBank0.ia_rows); + ATH_ALLOC_BANK(ah->analogBank1Data, ah->iniBank1.ia_rows); + ATH_ALLOC_BANK(ah->analogBank2Data, ah->iniBank2.ia_rows); + ATH_ALLOC_BANK(ah->analogBank3Data, ah->iniBank3.ia_rows); + ATH_ALLOC_BANK(ah->analogBank6Data, ah->iniBank6.ia_rows); + ATH_ALLOC_BANK(ah->analogBank6TPCData, ah->iniBank6TPC.ia_rows); + ATH_ALLOC_BANK(ah->analogBank7Data, ah->iniBank7.ia_rows); + ATH_ALLOC_BANK(ah->addac5416_21, + ah->iniAddac.ia_rows * ah->iniAddac.ia_columns); + ATH_ALLOC_BANK(ah->bank6Temp, ah->iniBank6.ia_rows); + + return 0; +#undef ATH_ALLOC_BANK +} + + +/** + * ar5008_hw_rf_free_ext_banks - Free memory for analog bank scratch buffers + * @ah: atheros hardware struture + * For the external AR2133/AR5133 radios banks. + */ +static void ar5008_hw_rf_free_ext_banks(struct ath_hw *ah) +{ +#define ATH_FREE_BANK(bank) do { \ + kfree(bank); \ + bank = NULL; \ + } while (0); + + BUG_ON(AR_SREV_9280_10_OR_LATER(ah)); + + ATH_FREE_BANK(ah->analogBank0Data); + ATH_FREE_BANK(ah->analogBank1Data); + ATH_FREE_BANK(ah->analogBank2Data); + ATH_FREE_BANK(ah->analogBank3Data); + ATH_FREE_BANK(ah->analogBank6Data); + ATH_FREE_BANK(ah->analogBank6TPCData); + ATH_FREE_BANK(ah->analogBank7Data); + ATH_FREE_BANK(ah->addac5416_21); + ATH_FREE_BANK(ah->bank6Temp); + +#undef ATH_FREE_BANK +} + +/* * + * ar5008_hw_set_rf_regs - programs rf registers based on EEPROM + * @ah: atheros hardware structure + * @chan: + * @modesIndex: + * + * Used for the external AR2133/AR5133 radios. + * + * Reads the EEPROM header info from the device structure and programs + * all rf registers. This routine requires access to the analog + * rf device. This is not required for single-chip devices. + */ +static bool ar5008_hw_set_rf_regs(struct ath_hw *ah, + struct ath9k_channel *chan, + u16 modesIndex) +{ + u32 eepMinorRev; + u32 ob5GHz = 0, db5GHz = 0; + u32 ob2GHz = 0, db2GHz = 0; + int regWrites = 0; + + /* + * Software does not need to program bank data + * for single chip devices, that is AR9280 or anything + * after that. + */ + if (AR_SREV_9280_10_OR_LATER(ah)) + return true; + + /* Setup rf parameters */ + eepMinorRev = ah->eep_ops->get_eeprom(ah, EEP_MINOR_REV); + + /* Setup Bank 0 Write */ + RF_BANK_SETUP(ah->analogBank0Data, &ah->iniBank0, 1); + + /* Setup Bank 1 Write */ + RF_BANK_SETUP(ah->analogBank1Data, &ah->iniBank1, 1); + + /* Setup Bank 2 Write */ + RF_BANK_SETUP(ah->analogBank2Data, &ah->iniBank2, 1); + + /* Setup Bank 6 Write */ + RF_BANK_SETUP(ah->analogBank3Data, &ah->iniBank3, + modesIndex); + { + int i; + for (i = 0; i < ah->iniBank6TPC.ia_rows; i++) { + ah->analogBank6Data[i] = + INI_RA(&ah->iniBank6TPC, i, modesIndex); + } + } + + /* Only the 5 or 2 GHz OB/DB need to be set for a mode */ + if (eepMinorRev >= 2) { + if (IS_CHAN_2GHZ(chan)) { + ob2GHz = ah->eep_ops->get_eeprom(ah, EEP_OB_2); + db2GHz = ah->eep_ops->get_eeprom(ah, EEP_DB_2); + ar5008_hw_phy_modify_rx_buffer(ah->analogBank6Data, + ob2GHz, 3, 197, 0); + ar5008_hw_phy_modify_rx_buffer(ah->analogBank6Data, + db2GHz, 3, 194, 0); + } else { + ob5GHz = ah->eep_ops->get_eeprom(ah, EEP_OB_5); + db5GHz = ah->eep_ops->get_eeprom(ah, EEP_DB_5); + ar5008_hw_phy_modify_rx_buffer(ah->analogBank6Data, + ob5GHz, 3, 203, 0); + ar5008_hw_phy_modify_rx_buffer(ah->analogBank6Data, + db5GHz, 3, 200, 0); + } + } + + /* Setup Bank 7 Setup */ + RF_BANK_SETUP(ah->analogBank7Data, &ah->iniBank7, 1); + + /* Write Analog registers */ + REG_WRITE_RF_ARRAY(&ah->iniBank0, ah->analogBank0Data, + regWrites); + REG_WRITE_RF_ARRAY(&ah->iniBank1, ah->analogBank1Data, + regWrites); + REG_WRITE_RF_ARRAY(&ah->iniBank2, ah->analogBank2Data, + regWrites); + REG_WRITE_RF_ARRAY(&ah->iniBank3, ah->analogBank3Data, + regWrites); + REG_WRITE_RF_ARRAY(&ah->iniBank6TPC, ah->analogBank6Data, + regWrites); + REG_WRITE_RF_ARRAY(&ah->iniBank7, ah->analogBank7Data, + regWrites); + + return true; +} + +static void ar5008_hw_init_bb(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + u32 synthDelay; + + synthDelay = REG_READ(ah, AR_PHY_RX_DELAY) & AR_PHY_RX_DELAY_DELAY; + if (IS_CHAN_B(chan)) + synthDelay = (4 * synthDelay) / 22; + else + synthDelay /= 10; + + REG_WRITE(ah, AR_PHY_ACTIVE, AR_PHY_ACTIVE_EN); + + udelay(synthDelay + BASE_ACTIVATE_DELAY); +} + +static void ar5008_hw_init_chain_masks(struct ath_hw *ah) +{ + int rx_chainmask, tx_chainmask; + + rx_chainmask = ah->rxchainmask; + tx_chainmask = ah->txchainmask; + + switch (rx_chainmask) { + case 0x5: + REG_SET_BIT(ah, AR_PHY_ANALOG_SWAP, + AR_PHY_SWAP_ALT_CHAIN); + case 0x3: + if (ah->hw_version.macVersion == AR_SREV_REVISION_5416_10) { + REG_WRITE(ah, AR_PHY_RX_CHAINMASK, 0x7); + REG_WRITE(ah, AR_PHY_CAL_CHAINMASK, 0x7); + break; + } + case 0x1: + case 0x2: + case 0x7: + REG_WRITE(ah, AR_PHY_RX_CHAINMASK, rx_chainmask); + REG_WRITE(ah, AR_PHY_CAL_CHAINMASK, rx_chainmask); + break; + default: + break; + } + + REG_WRITE(ah, AR_SELFGEN_MASK, tx_chainmask); + if (tx_chainmask == 0x5) { + REG_SET_BIT(ah, AR_PHY_ANALOG_SWAP, + AR_PHY_SWAP_ALT_CHAIN); + } + if (AR_SREV_9100(ah)) + REG_WRITE(ah, AR_PHY_ANALOG_SWAP, + REG_READ(ah, AR_PHY_ANALOG_SWAP) | 0x00000001); +} + +static void ar5008_hw_override_ini(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + u32 val; + + /* + * Set the RX_ABORT and RX_DIS and clear if off only after + * RXE is set for MAC. This prevents frames with corrupted + * descriptor status. + */ + REG_SET_BIT(ah, AR_DIAG_SW, (AR_DIAG_RX_DIS | AR_DIAG_RX_ABORT)); + + if (AR_SREV_9280_10_OR_LATER(ah)) { + val = REG_READ(ah, AR_PCU_MISC_MODE2); + + if (!AR_SREV_9271(ah)) + val &= ~AR_PCU_MISC_MODE2_HWWAR1; + + if (AR_SREV_9287_10_OR_LATER(ah)) + val = val & (~AR_PCU_MISC_MODE2_HWWAR2); + + REG_WRITE(ah, AR_PCU_MISC_MODE2, val); + } + + if (!AR_SREV_5416_20_OR_LATER(ah) || + AR_SREV_9280_10_OR_LATER(ah)) + return; + /* + * Disable BB clock gating + * Necessary to avoid issues on AR5416 2.0 + */ + REG_WRITE(ah, 0x9800 + (651 << 2), 0x11); + + /* + * Disable RIFS search on some chips to avoid baseband + * hang issues. + */ + if (AR_SREV_9100(ah) || AR_SREV_9160(ah)) { + val = REG_READ(ah, AR_PHY_HEAVY_CLIP_FACTOR_RIFS); + val &= ~AR_PHY_RIFS_INIT_DELAY; + REG_WRITE(ah, AR_PHY_HEAVY_CLIP_FACTOR_RIFS, val); + } +} + +static void ar5008_hw_set_channel_regs(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + u32 phymode; + u32 enableDacFifo = 0; + + if (AR_SREV_9285_10_OR_LATER(ah)) + enableDacFifo = (REG_READ(ah, AR_PHY_TURBO) & + AR_PHY_FC_ENABLE_DAC_FIFO); + + phymode = AR_PHY_FC_HT_EN | AR_PHY_FC_SHORT_GI_40 + | AR_PHY_FC_SINGLE_HT_LTF1 | AR_PHY_FC_WALSH | enableDacFifo; + + if (IS_CHAN_HT40(chan)) { + phymode |= AR_PHY_FC_DYN2040_EN; + + if ((chan->chanmode == CHANNEL_A_HT40PLUS) || + (chan->chanmode == CHANNEL_G_HT40PLUS)) + phymode |= AR_PHY_FC_DYN2040_PRI_CH; + + } + REG_WRITE(ah, AR_PHY_TURBO, phymode); + + ath9k_hw_set11nmac2040(ah); + + REG_WRITE(ah, AR_GTXTO, 25 << AR_GTXTO_TIMEOUT_LIMIT_S); + REG_WRITE(ah, AR_CST, 0xF << AR_CST_TIMEOUT_LIMIT_S); +} + + +static int ar5008_hw_process_ini(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + struct ath_regulatory *regulatory = ath9k_hw_regulatory(ah); + int i, regWrites = 0; + struct ieee80211_channel *channel = chan->chan; + u32 modesIndex, freqIndex; + + switch (chan->chanmode) { + case CHANNEL_A: + case CHANNEL_A_HT20: + modesIndex = 1; + freqIndex = 1; + break; + case CHANNEL_A_HT40PLUS: + case CHANNEL_A_HT40MINUS: + modesIndex = 2; + freqIndex = 1; + break; + case CHANNEL_G: + case CHANNEL_G_HT20: + case CHANNEL_B: + modesIndex = 4; + freqIndex = 2; + break; + case CHANNEL_G_HT40PLUS: + case CHANNEL_G_HT40MINUS: + modesIndex = 3; + freqIndex = 2; + break; + + default: + return -EINVAL; + } + + if (AR_SREV_9287_12_OR_LATER(ah)) { + /* Enable ASYNC FIFO */ + REG_SET_BIT(ah, AR_MAC_PCU_ASYNC_FIFO_REG3, + AR_MAC_PCU_ASYNC_FIFO_REG3_DATAPATH_SEL); + REG_SET_BIT(ah, AR_PHY_MODE, AR_PHY_MODE_ASYNCFIFO); + REG_CLR_BIT(ah, AR_MAC_PCU_ASYNC_FIFO_REG3, + AR_MAC_PCU_ASYNC_FIFO_REG3_SOFT_RESET); + REG_SET_BIT(ah, AR_MAC_PCU_ASYNC_FIFO_REG3, + AR_MAC_PCU_ASYNC_FIFO_REG3_SOFT_RESET); + } + + /* + * Set correct baseband to analog shift setting to + * access analog chips. + */ + REG_WRITE(ah, AR_PHY(0), 0x00000007); + + /* Write ADDAC shifts */ + REG_WRITE(ah, AR_PHY_ADC_SERIAL_CTL, AR_PHY_SEL_EXTERNAL_RADIO); + ah->eep_ops->set_addac(ah, chan); + + if (AR_SREV_5416_22_OR_LATER(ah)) { + REG_WRITE_ARRAY(&ah->iniAddac, 1, regWrites); + } else { + struct ar5416IniArray temp; + u32 addacSize = + sizeof(u32) * ah->iniAddac.ia_rows * + ah->iniAddac.ia_columns; + + /* For AR5416 2.0/2.1 */ + memcpy(ah->addac5416_21, + ah->iniAddac.ia_array, addacSize); + + /* override CLKDRV value at [row, column] = [31, 1] */ + (ah->addac5416_21)[31 * ah->iniAddac.ia_columns + 1] = 0; + + temp.ia_array = ah->addac5416_21; + temp.ia_columns = ah->iniAddac.ia_columns; + temp.ia_rows = ah->iniAddac.ia_rows; + REG_WRITE_ARRAY(&temp, 1, regWrites); + } + + REG_WRITE(ah, AR_PHY_ADC_SERIAL_CTL, AR_PHY_SEL_INTERNAL_ADDAC); + + for (i = 0; i < ah->iniModes.ia_rows; i++) { + u32 reg = INI_RA(&ah->iniModes, i, 0); + u32 val = INI_RA(&ah->iniModes, i, modesIndex); + + if (reg == AR_AN_TOP2 && ah->need_an_top2_fixup) + val &= ~AR_AN_TOP2_PWDCLKIND; + + REG_WRITE(ah, reg, val); + + if (reg >= 0x7800 && reg < 0x78a0 + && ah->config.analog_shiftreg) { + udelay(100); + } + + DO_DELAY(regWrites); + } + + if (AR_SREV_9280(ah) || AR_SREV_9287_10_OR_LATER(ah)) + REG_WRITE_ARRAY(&ah->iniModesRxGain, modesIndex, regWrites); + + if (AR_SREV_9280(ah) || AR_SREV_9285_12_OR_LATER(ah) || + AR_SREV_9287_10_OR_LATER(ah)) + REG_WRITE_ARRAY(&ah->iniModesTxGain, modesIndex, regWrites); + + if (AR_SREV_9271_10(ah)) + REG_WRITE_ARRAY(&ah->iniModes_9271_1_0_only, + modesIndex, regWrites); + + /* Write common array parameters */ + for (i = 0; i < ah->iniCommon.ia_rows; i++) { + u32 reg = INI_RA(&ah->iniCommon, i, 0); + u32 val = INI_RA(&ah->iniCommon, i, 1); + + REG_WRITE(ah, reg, val); + + if (reg >= 0x7800 && reg < 0x78a0 + && ah->config.analog_shiftreg) { + udelay(100); + } + + DO_DELAY(regWrites); + } + + if (AR_SREV_9271(ah)) { + if (ah->eep_ops->get_eeprom(ah, EEP_TXGAIN_TYPE) == 1) + REG_WRITE_ARRAY(&ah->iniModes_high_power_tx_gain_9271, + modesIndex, regWrites); + else + REG_WRITE_ARRAY(&ah->iniModes_normal_power_tx_gain_9271, + modesIndex, regWrites); + } + + REG_WRITE_ARRAY(&ah->iniBB_RfGain, freqIndex, regWrites); + + if (AR_SREV_9280_20(ah) && IS_CHAN_A_5MHZ_SPACED(chan)) { + REG_WRITE_ARRAY(&ah->iniModesAdditional, modesIndex, + regWrites); + } + + ar5008_hw_override_ini(ah, chan); + ar5008_hw_set_channel_regs(ah, chan); + ar5008_hw_init_chain_masks(ah); + ath9k_olc_init(ah); + + /* Set TX power */ + ah->eep_ops->set_txpower(ah, chan, + ath9k_regd_get_ctl(regulatory, chan), + channel->max_antenna_gain * 2, + channel->max_power * 2, + min((u32) MAX_RATE_POWER, + (u32) regulatory->power_limit)); + + /* Write analog registers */ + if (!ath9k_hw_set_rf_regs(ah, chan, freqIndex)) { + ath_print(ath9k_hw_common(ah), ATH_DBG_FATAL, + "ar5416SetRfRegs failed\n"); + return -EIO; + } + + return 0; +} + +static void ar5008_hw_set_rfmode(struct ath_hw *ah, struct ath9k_channel *chan) +{ + u32 rfMode = 0; + + if (chan == NULL) + return; + + rfMode |= (IS_CHAN_B(chan) || IS_CHAN_G(chan)) + ? AR_PHY_MODE_DYNAMIC : AR_PHY_MODE_OFDM; + + if (!AR_SREV_9280_10_OR_LATER(ah)) + rfMode |= (IS_CHAN_5GHZ(chan)) ? + AR_PHY_MODE_RF5GHZ : AR_PHY_MODE_RF2GHZ; + + if ((AR_SREV_9280_20(ah) || AR_SREV_9300_20_OR_LATER(ah)) + && IS_CHAN_A_5MHZ_SPACED(chan)) + rfMode |= (AR_PHY_MODE_DYNAMIC | AR_PHY_MODE_DYN_CCK_DISABLE); + + REG_WRITE(ah, AR_PHY_MODE, rfMode); +} + +static void ar5008_hw_mark_phy_inactive(struct ath_hw *ah) +{ + REG_WRITE(ah, AR_PHY_ACTIVE, AR_PHY_ACTIVE_DIS); +} + +static void ar5008_hw_set_delta_slope(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + u32 coef_scaled, ds_coef_exp, ds_coef_man; + u32 clockMhzScaled = 0x64000000; + struct chan_centers centers; + + if (IS_CHAN_HALF_RATE(chan)) + clockMhzScaled = clockMhzScaled >> 1; + else if (IS_CHAN_QUARTER_RATE(chan)) + clockMhzScaled = clockMhzScaled >> 2; + + ath9k_hw_get_channel_centers(ah, chan, ¢ers); + coef_scaled = clockMhzScaled / centers.synth_center; + + ath9k_hw_get_delta_slope_vals(ah, coef_scaled, &ds_coef_man, + &ds_coef_exp); + + REG_RMW_FIELD(ah, AR_PHY_TIMING3, + AR_PHY_TIMING3_DSC_MAN, ds_coef_man); + REG_RMW_FIELD(ah, AR_PHY_TIMING3, + AR_PHY_TIMING3_DSC_EXP, ds_coef_exp); + + coef_scaled = (9 * coef_scaled) / 10; + + ath9k_hw_get_delta_slope_vals(ah, coef_scaled, &ds_coef_man, + &ds_coef_exp); + + REG_RMW_FIELD(ah, AR_PHY_HALFGI, + AR_PHY_HALFGI_DSC_MAN, ds_coef_man); + REG_RMW_FIELD(ah, AR_PHY_HALFGI, + AR_PHY_HALFGI_DSC_EXP, ds_coef_exp); +} + +static bool ar5008_hw_rfbus_req(struct ath_hw *ah) +{ + REG_WRITE(ah, AR_PHY_RFBUS_REQ, AR_PHY_RFBUS_REQ_EN); + return ath9k_hw_wait(ah, AR_PHY_RFBUS_GRANT, AR_PHY_RFBUS_GRANT_EN, + AR_PHY_RFBUS_GRANT_EN, AH_WAIT_TIMEOUT); +} + +static void ar5008_hw_rfbus_done(struct ath_hw *ah) +{ + u32 synthDelay = REG_READ(ah, AR_PHY_RX_DELAY) & AR_PHY_RX_DELAY_DELAY; + if (IS_CHAN_B(ah->curchan)) + synthDelay = (4 * synthDelay) / 22; + else + synthDelay /= 10; + + udelay(synthDelay + BASE_ACTIVATE_DELAY); + + REG_WRITE(ah, AR_PHY_RFBUS_REQ, 0); +} + +static void ar5008_hw_enable_rfkill(struct ath_hw *ah) +{ + REG_SET_BIT(ah, AR_GPIO_INPUT_EN_VAL, + AR_GPIO_INPUT_EN_VAL_RFSILENT_BB); + + REG_CLR_BIT(ah, AR_GPIO_INPUT_MUX2, + AR_GPIO_INPUT_MUX2_RFSILENT); + + ath9k_hw_cfg_gpio_input(ah, ah->rfkill_gpio); + REG_SET_BIT(ah, AR_PHY_TEST, RFSILENT_BB); +} + +static void ar5008_restore_chainmask(struct ath_hw *ah) +{ + int rx_chainmask = ah->rxchainmask; + + if ((rx_chainmask == 0x5) || (rx_chainmask == 0x3)) { + REG_WRITE(ah, AR_PHY_RX_CHAINMASK, rx_chainmask); + REG_WRITE(ah, AR_PHY_CAL_CHAINMASK, rx_chainmask); + } +} + +static void ar5008_set_diversity(struct ath_hw *ah, bool value) +{ + u32 v = REG_READ(ah, AR_PHY_CCK_DETECT); + if (value) + v |= AR_PHY_CCK_DETECT_BB_ENABLE_ANT_FAST_DIV; + else + v &= ~AR_PHY_CCK_DETECT_BB_ENABLE_ANT_FAST_DIV; + REG_WRITE(ah, AR_PHY_CCK_DETECT, v); +} + +void ar5008_hw_attach_phy_ops(struct ath_hw *ah) +{ + struct ath_hw_private_ops *priv_ops = ath9k_hw_private_ops(ah); + + priv_ops->rf_set_freq = ar5008_hw_set_channel; + priv_ops->spur_mitigate_freq = ar5008_hw_spur_mitigate; + + priv_ops->rf_alloc_ext_banks = ar5008_hw_rf_alloc_ext_banks; + priv_ops->rf_free_ext_banks = ar5008_hw_rf_free_ext_banks; + priv_ops->set_rf_regs = ar5008_hw_set_rf_regs; + priv_ops->set_channel_regs = ar5008_hw_set_channel_regs; + priv_ops->init_bb = ar5008_hw_init_bb; + priv_ops->process_ini = ar5008_hw_process_ini; + priv_ops->set_rfmode = ar5008_hw_set_rfmode; + priv_ops->mark_phy_inactive = ar5008_hw_mark_phy_inactive; + priv_ops->set_delta_slope = ar5008_hw_set_delta_slope; + priv_ops->rfbus_req = ar5008_hw_rfbus_req; + priv_ops->rfbus_done = ar5008_hw_rfbus_done; + priv_ops->enable_rfkill = ar5008_hw_enable_rfkill; + priv_ops->restore_chainmask = ar5008_restore_chainmask; + priv_ops->set_diversity = ar5008_set_diversity; +} diff --git a/drivers/net/wireless/ath/ath9k/ar9002_phy.c b/drivers/net/wireless/ath/ath9k/ar9002_phy.c new file mode 100644 index 00000000000..29b50ca0a0c --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9002_phy.c @@ -0,0 +1,450 @@ +/* + * Copyright (c) 2008-2010 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +/** + * DOC: Programming Atheros 802.11n analog front end radios + * + * AR5416 MAC based PCI devices and AR518 MAC based PCI-Express + * devices have either an external AR2133 analog front end radio for single + * band 2.4 GHz communication or an AR5133 analog front end radio for dual + * band 2.4 GHz / 5 GHz communication. + * + * All devices after the AR5416 and AR5418 family starting with the AR9280 + * have their analog front radios, MAC/BB and host PCIe/USB interface embedded + * into a single-chip and require less programming. + * + * The following single-chips exist with a respective embedded radio: + * + * AR9280 - 11n dual-band 2x2 MIMO for PCIe + * AR9281 - 11n single-band 1x2 MIMO for PCIe + * AR9285 - 11n single-band 1x1 for PCIe + * AR9287 - 11n single-band 2x2 MIMO for PCIe + * + * AR9220 - 11n dual-band 2x2 MIMO for PCI + * AR9223 - 11n single-band 2x2 MIMO for PCI + * + * AR9287 - 11n single-band 1x1 MIMO for USB + */ + +#include "hw.h" +#include "ar9002_phy.h" + +/** + * ar9002_hw_set_channel - set channel on single-chip device + * @ah: atheros hardware structure + * @chan: + * + * This is the function to change channel on single-chip devices, that is + * all devices after ar9280. + * + * This function takes the channel value in MHz and sets + * hardware channel value. Assumes writes have been enabled to analog bus. + * + * Actual Expression, + * + * For 2GHz channel, + * Channel Frequency = (3/4) * freq_ref * (chansel[8:0] + chanfrac[16:0]/2^17) + * (freq_ref = 40MHz) + * + * For 5GHz channel, + * Channel Frequency = (3/2) * freq_ref * (chansel[8:0] + chanfrac[16:0]/2^10) + * (freq_ref = 40MHz/(24>>amodeRefSel)) + */ +static int ar9002_hw_set_channel(struct ath_hw *ah, struct ath9k_channel *chan) +{ + u16 bMode, fracMode, aModeRefSel = 0; + u32 freq, ndiv, channelSel = 0, channelFrac = 0, reg32 = 0; + struct chan_centers centers; + u32 refDivA = 24; + + ath9k_hw_get_channel_centers(ah, chan, ¢ers); + freq = centers.synth_center; + + reg32 = REG_READ(ah, AR_PHY_SYNTH_CONTROL); + reg32 &= 0xc0000000; + + if (freq < 4800) { /* 2 GHz, fractional mode */ + u32 txctl; + int regWrites = 0; + + bMode = 1; + fracMode = 1; + aModeRefSel = 0; + channelSel = (freq * 0x10000) / 15; + + if (AR_SREV_9287_11_OR_LATER(ah)) { + if (freq == 2484) { + /* Enable channel spreading for channel 14 */ + REG_WRITE_ARRAY(&ah->iniCckfirJapan2484, + 1, regWrites); + } else { + REG_WRITE_ARRAY(&ah->iniCckfirNormal, + 1, regWrites); + } + } else { + txctl = REG_READ(ah, AR_PHY_CCK_TX_CTRL); + if (freq == 2484) { + /* Enable channel spreading for channel 14 */ + REG_WRITE(ah, AR_PHY_CCK_TX_CTRL, + txctl | AR_PHY_CCK_TX_CTRL_JAPAN); + } else { + REG_WRITE(ah, AR_PHY_CCK_TX_CTRL, + txctl & ~AR_PHY_CCK_TX_CTRL_JAPAN); + } + } + } else { + bMode = 0; + fracMode = 0; + + switch (ah->eep_ops->get_eeprom(ah, EEP_FRAC_N_5G)) { + case 0: + if ((freq % 20) == 0) + aModeRefSel = 3; + else if ((freq % 10) == 0) + aModeRefSel = 2; + if (aModeRefSel) + break; + case 1: + default: + aModeRefSel = 0; + /* + * Enable 2G (fractional) mode for channels + * which are 5MHz spaced. + */ + fracMode = 1; + refDivA = 1; + channelSel = (freq * 0x8000) / 15; + + /* RefDivA setting */ + REG_RMW_FIELD(ah, AR_AN_SYNTH9, + AR_AN_SYNTH9_REFDIVA, refDivA); + + } + + if (!fracMode) { + ndiv = (freq * (refDivA >> aModeRefSel)) / 60; + channelSel = ndiv & 0x1ff; + channelFrac = (ndiv & 0xfffffe00) * 2; + channelSel = (channelSel << 17) | channelFrac; + } + } + + reg32 = reg32 | + (bMode << 29) | + (fracMode << 28) | (aModeRefSel << 26) | (channelSel); + + REG_WRITE(ah, AR_PHY_SYNTH_CONTROL, reg32); + + ah->curchan = chan; + ah->curchan_rad_index = -1; + + return 0; +} + +/** + * ar9002_hw_spur_mitigate - convert baseband spur frequency + * @ah: atheros hardware structure + * @chan: + * + * For single-chip solutions. Converts to baseband spur frequency given the + * input channel frequency and compute register settings below. + */ +static void ar9002_hw_spur_mitigate(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + int bb_spur = AR_NO_SPUR; + int freq; + int bin, cur_bin; + int bb_spur_off, spur_subchannel_sd; + int spur_freq_sd; + int spur_delta_phase; + int denominator; + int upper, lower, cur_vit_mask; + int tmp, newVal; + int i; + int pilot_mask_reg[4] = { AR_PHY_TIMING7, AR_PHY_TIMING8, + AR_PHY_PILOT_MASK_01_30, AR_PHY_PILOT_MASK_31_60 + }; + int chan_mask_reg[4] = { AR_PHY_TIMING9, AR_PHY_TIMING10, + AR_PHY_CHANNEL_MASK_01_30, AR_PHY_CHANNEL_MASK_31_60 + }; + int inc[4] = { 0, 100, 0, 0 }; + struct chan_centers centers; + + int8_t mask_m[123]; + int8_t mask_p[123]; + int8_t mask_amt; + int tmp_mask; + int cur_bb_spur; + bool is2GHz = IS_CHAN_2GHZ(chan); + + memset(&mask_m, 0, sizeof(int8_t) * 123); + memset(&mask_p, 0, sizeof(int8_t) * 123); + + ath9k_hw_get_channel_centers(ah, chan, ¢ers); + freq = centers.synth_center; + + ah->config.spurmode = SPUR_ENABLE_EEPROM; + for (i = 0; i < AR_EEPROM_MODAL_SPURS; i++) { + cur_bb_spur = ah->eep_ops->get_spur_channel(ah, i, is2GHz); + + if (is2GHz) + cur_bb_spur = (cur_bb_spur / 10) + AR_BASE_FREQ_2GHZ; + else + cur_bb_spur = (cur_bb_spur / 10) + AR_BASE_FREQ_5GHZ; + + if (AR_NO_SPUR == cur_bb_spur) + break; + cur_bb_spur = cur_bb_spur - freq; + + if (IS_CHAN_HT40(chan)) { + if ((cur_bb_spur > -AR_SPUR_FEEQ_BOUND_HT40) && + (cur_bb_spur < AR_SPUR_FEEQ_BOUND_HT40)) { + bb_spur = cur_bb_spur; + break; + } + } else if ((cur_bb_spur > -AR_SPUR_FEEQ_BOUND_HT20) && + (cur_bb_spur < AR_SPUR_FEEQ_BOUND_HT20)) { + bb_spur = cur_bb_spur; + break; + } + } + + if (AR_NO_SPUR == bb_spur) { + REG_CLR_BIT(ah, AR_PHY_FORCE_CLKEN_CCK, + AR_PHY_FORCE_CLKEN_CCK_MRC_MUX); + return; + } else { + REG_CLR_BIT(ah, AR_PHY_FORCE_CLKEN_CCK, + AR_PHY_FORCE_CLKEN_CCK_MRC_MUX); + } + + bin = bb_spur * 320; + + tmp = REG_READ(ah, AR_PHY_TIMING_CTRL4(0)); + + newVal = tmp | (AR_PHY_TIMING_CTRL4_ENABLE_SPUR_RSSI | + AR_PHY_TIMING_CTRL4_ENABLE_SPUR_FILTER | + AR_PHY_TIMING_CTRL4_ENABLE_CHAN_MASK | + AR_PHY_TIMING_CTRL4_ENABLE_PILOT_MASK); + REG_WRITE(ah, AR_PHY_TIMING_CTRL4(0), newVal); + + newVal = (AR_PHY_SPUR_REG_MASK_RATE_CNTL | + AR_PHY_SPUR_REG_ENABLE_MASK_PPM | + AR_PHY_SPUR_REG_MASK_RATE_SELECT | + AR_PHY_SPUR_REG_ENABLE_VIT_SPUR_RSSI | + SM(SPUR_RSSI_THRESH, AR_PHY_SPUR_REG_SPUR_RSSI_THRESH)); + REG_WRITE(ah, AR_PHY_SPUR_REG, newVal); + + if (IS_CHAN_HT40(chan)) { + if (bb_spur < 0) { + spur_subchannel_sd = 1; + bb_spur_off = bb_spur + 10; + } else { + spur_subchannel_sd = 0; + bb_spur_off = bb_spur - 10; + } + } else { + spur_subchannel_sd = 0; + bb_spur_off = bb_spur; + } + + if (IS_CHAN_HT40(chan)) + spur_delta_phase = + ((bb_spur * 262144) / + 10) & AR_PHY_TIMING11_SPUR_DELTA_PHASE; + else + spur_delta_phase = + ((bb_spur * 524288) / + 10) & AR_PHY_TIMING11_SPUR_DELTA_PHASE; + + denominator = IS_CHAN_2GHZ(chan) ? 44 : 40; + spur_freq_sd = ((bb_spur_off * 2048) / denominator) & 0x3ff; + + newVal = (AR_PHY_TIMING11_USE_SPUR_IN_AGC | + SM(spur_freq_sd, AR_PHY_TIMING11_SPUR_FREQ_SD) | + SM(spur_delta_phase, AR_PHY_TIMING11_SPUR_DELTA_PHASE)); + REG_WRITE(ah, AR_PHY_TIMING11, newVal); + + newVal = spur_subchannel_sd << AR_PHY_SFCORR_SPUR_SUBCHNL_SD_S; + REG_WRITE(ah, AR_PHY_SFCORR_EXT, newVal); + + cur_bin = -6000; + upper = bin + 100; + lower = bin - 100; + + for (i = 0; i < 4; i++) { + int pilot_mask = 0; + int chan_mask = 0; + int bp = 0; + for (bp = 0; bp < 30; bp++) { + if ((cur_bin > lower) && (cur_bin < upper)) { + pilot_mask = pilot_mask | 0x1 << bp; + chan_mask = chan_mask | 0x1 << bp; + } + cur_bin += 100; + } + cur_bin += inc[i]; + REG_WRITE(ah, pilot_mask_reg[i], pilot_mask); + REG_WRITE(ah, chan_mask_reg[i], chan_mask); + } + + cur_vit_mask = 6100; + upper = bin + 120; + lower = bin - 120; + + for (i = 0; i < 123; i++) { + if ((cur_vit_mask > lower) && (cur_vit_mask < upper)) { + + /* workaround for gcc bug #37014 */ + volatile int tmp_v = abs(cur_vit_mask - bin); + + if (tmp_v < 75) + mask_amt = 1; + else + mask_amt = 0; + if (cur_vit_mask < 0) + mask_m[abs(cur_vit_mask / 100)] = mask_amt; + else + mask_p[cur_vit_mask / 100] = mask_amt; + } + cur_vit_mask -= 100; + } + + tmp_mask = (mask_m[46] << 30) | (mask_m[47] << 28) + | (mask_m[48] << 26) | (mask_m[49] << 24) + | (mask_m[50] << 22) | (mask_m[51] << 20) + | (mask_m[52] << 18) | (mask_m[53] << 16) + | (mask_m[54] << 14) | (mask_m[55] << 12) + | (mask_m[56] << 10) | (mask_m[57] << 8) + | (mask_m[58] << 6) | (mask_m[59] << 4) + | (mask_m[60] << 2) | (mask_m[61] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK_1, tmp_mask); + REG_WRITE(ah, AR_PHY_VIT_MASK2_M_46_61, tmp_mask); + + tmp_mask = (mask_m[31] << 28) + | (mask_m[32] << 26) | (mask_m[33] << 24) + | (mask_m[34] << 22) | (mask_m[35] << 20) + | (mask_m[36] << 18) | (mask_m[37] << 16) + | (mask_m[48] << 14) | (mask_m[39] << 12) + | (mask_m[40] << 10) | (mask_m[41] << 8) + | (mask_m[42] << 6) | (mask_m[43] << 4) + | (mask_m[44] << 2) | (mask_m[45] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK_2, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_M_31_45, tmp_mask); + + tmp_mask = (mask_m[16] << 30) | (mask_m[16] << 28) + | (mask_m[18] << 26) | (mask_m[18] << 24) + | (mask_m[20] << 22) | (mask_m[20] << 20) + | (mask_m[22] << 18) | (mask_m[22] << 16) + | (mask_m[24] << 14) | (mask_m[24] << 12) + | (mask_m[25] << 10) | (mask_m[26] << 8) + | (mask_m[27] << 6) | (mask_m[28] << 4) + | (mask_m[29] << 2) | (mask_m[30] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK_3, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_M_16_30, tmp_mask); + + tmp_mask = (mask_m[0] << 30) | (mask_m[1] << 28) + | (mask_m[2] << 26) | (mask_m[3] << 24) + | (mask_m[4] << 22) | (mask_m[5] << 20) + | (mask_m[6] << 18) | (mask_m[7] << 16) + | (mask_m[8] << 14) | (mask_m[9] << 12) + | (mask_m[10] << 10) | (mask_m[11] << 8) + | (mask_m[12] << 6) | (mask_m[13] << 4) + | (mask_m[14] << 2) | (mask_m[15] << 0); + REG_WRITE(ah, AR_PHY_MASK_CTL, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_M_00_15, tmp_mask); + + tmp_mask = (mask_p[15] << 28) + | (mask_p[14] << 26) | (mask_p[13] << 24) + | (mask_p[12] << 22) | (mask_p[11] << 20) + | (mask_p[10] << 18) | (mask_p[9] << 16) + | (mask_p[8] << 14) | (mask_p[7] << 12) + | (mask_p[6] << 10) | (mask_p[5] << 8) + | (mask_p[4] << 6) | (mask_p[3] << 4) + | (mask_p[2] << 2) | (mask_p[1] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK2_1, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_P_15_01, tmp_mask); + + tmp_mask = (mask_p[30] << 28) + | (mask_p[29] << 26) | (mask_p[28] << 24) + | (mask_p[27] << 22) | (mask_p[26] << 20) + | (mask_p[25] << 18) | (mask_p[24] << 16) + | (mask_p[23] << 14) | (mask_p[22] << 12) + | (mask_p[21] << 10) | (mask_p[20] << 8) + | (mask_p[19] << 6) | (mask_p[18] << 4) + | (mask_p[17] << 2) | (mask_p[16] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK2_2, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_P_30_16, tmp_mask); + + tmp_mask = (mask_p[45] << 28) + | (mask_p[44] << 26) | (mask_p[43] << 24) + | (mask_p[42] << 22) | (mask_p[41] << 20) + | (mask_p[40] << 18) | (mask_p[39] << 16) + | (mask_p[38] << 14) | (mask_p[37] << 12) + | (mask_p[36] << 10) | (mask_p[35] << 8) + | (mask_p[34] << 6) | (mask_p[33] << 4) + | (mask_p[32] << 2) | (mask_p[31] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK2_3, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_P_45_31, tmp_mask); + + tmp_mask = (mask_p[61] << 30) | (mask_p[60] << 28) + | (mask_p[59] << 26) | (mask_p[58] << 24) + | (mask_p[57] << 22) | (mask_p[56] << 20) + | (mask_p[55] << 18) | (mask_p[54] << 16) + | (mask_p[53] << 14) | (mask_p[52] << 12) + | (mask_p[51] << 10) | (mask_p[50] << 8) + | (mask_p[49] << 6) | (mask_p[48] << 4) + | (mask_p[47] << 2) | (mask_p[46] << 0); + REG_WRITE(ah, AR_PHY_BIN_MASK2_4, tmp_mask); + REG_WRITE(ah, AR_PHY_MASK2_P_61_45, tmp_mask); +} + +static void ar9002_olc_init(struct ath_hw *ah) +{ + u32 i; + + if (!OLC_FOR_AR9280_20_LATER) + return; + + if (OLC_FOR_AR9287_10_LATER) { + REG_SET_BIT(ah, AR_PHY_TX_PWRCTRL9, + AR_PHY_TX_PWRCTRL9_RES_DC_REMOVAL); + ath9k_hw_analog_shift_rmw(ah, AR9287_AN_TXPC0, + AR9287_AN_TXPC0_TXPCMODE, + AR9287_AN_TXPC0_TXPCMODE_S, + AR9287_AN_TXPC0_TXPCMODE_TEMPSENSE); + udelay(100); + } else { + for (i = 0; i < AR9280_TX_GAIN_TABLE_SIZE; i++) + ah->originalGain[i] = + MS(REG_READ(ah, AR_PHY_TX_GAIN_TBL1 + i * 4), + AR_PHY_TX_GAIN); + ah->PDADCdelta = 0; + } +} + +void ar9002_hw_attach_phy_ops(struct ath_hw *ah) +{ + struct ath_hw_private_ops *priv_ops = ath9k_hw_private_ops(ah); + + priv_ops->set_rf_regs = NULL; + priv_ops->rf_alloc_ext_banks = NULL; + priv_ops->rf_free_ext_banks = NULL; + priv_ops->rf_set_freq = ar9002_hw_set_channel; + priv_ops->spur_mitigate_freq = ar9002_hw_spur_mitigate; + priv_ops->olc_init = ar9002_olc_init; +} diff --git a/drivers/net/wireless/ath/ath9k/ar9002_phy.h b/drivers/net/wireless/ath/ath9k/ar9002_phy.h new file mode 100644 index 00000000000..4fe204ed3a7 --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9002_phy.h @@ -0,0 +1,581 @@ +/* + * Copyright (c) 2008-2010 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ +#ifndef AR9002_PHY_H +#define AR9002_PHY_H + +#define AR_PHY_TEST 0x9800 +#define PHY_AGC_CLR 0x10000000 +#define RFSILENT_BB 0x00002000 + +#define AR_PHY_TURBO 0x9804 +#define AR_PHY_FC_TURBO_MODE 0x00000001 +#define AR_PHY_FC_TURBO_SHORT 0x00000002 +#define AR_PHY_FC_DYN2040_EN 0x00000004 +#define AR_PHY_FC_DYN2040_PRI_ONLY 0x00000008 +#define AR_PHY_FC_DYN2040_PRI_CH 0x00000010 +/* For 25 MHz channel spacing -- not used but supported by hw */ +#define AR_PHY_FC_DYN2040_EXT_CH 0x00000020 +#define AR_PHY_FC_HT_EN 0x00000040 +#define AR_PHY_FC_SHORT_GI_40 0x00000080 +#define AR_PHY_FC_WALSH 0x00000100 +#define AR_PHY_FC_SINGLE_HT_LTF1 0x00000200 +#define AR_PHY_FC_ENABLE_DAC_FIFO 0x00000800 + +#define AR_PHY_TEST2 0x9808 + +#define AR_PHY_TIMING2 0x9810 +#define AR_PHY_TIMING3 0x9814 +#define AR_PHY_TIMING3_DSC_MAN 0xFFFE0000 +#define AR_PHY_TIMING3_DSC_MAN_S 17 +#define AR_PHY_TIMING3_DSC_EXP 0x0001E000 +#define AR_PHY_TIMING3_DSC_EXP_S 13 + +#define AR_PHY_CHIP_ID_REV_0 0x80 +#define AR_PHY_CHIP_ID_REV_1 0x81 +#define AR_PHY_CHIP_ID_9160_REV_0 0xb0 + +#define AR_PHY_ACTIVE 0x981C +#define AR_PHY_ACTIVE_EN 0x00000001 +#define AR_PHY_ACTIVE_DIS 0x00000000 + +#define AR_PHY_RF_CTL2 0x9824 +#define AR_PHY_TX_END_DATA_START 0x000000FF +#define AR_PHY_TX_END_DATA_START_S 0 +#define AR_PHY_TX_END_PA_ON 0x0000FF00 +#define AR_PHY_TX_END_PA_ON_S 8 + +#define AR_PHY_RF_CTL3 0x9828 +#define AR_PHY_TX_END_TO_A2_RX_ON 0x00FF0000 +#define AR_PHY_TX_END_TO_A2_RX_ON_S 16 + +#define AR_PHY_ADC_CTL 0x982C +#define AR_PHY_ADC_CTL_OFF_INBUFGAIN 0x00000003 +#define AR_PHY_ADC_CTL_OFF_INBUFGAIN_S 0 +#define AR_PHY_ADC_CTL_OFF_PWDDAC 0x00002000 +#define AR_PHY_ADC_CTL_OFF_PWDBANDGAP 0x00004000 +#define AR_PHY_ADC_CTL_OFF_PWDADC 0x00008000 +#define AR_PHY_ADC_CTL_ON_INBUFGAIN 0x00030000 +#define AR_PHY_ADC_CTL_ON_INBUFGAIN_S 16 + +#define AR_PHY_ADC_SERIAL_CTL 0x9830 +#define AR_PHY_SEL_INTERNAL_ADDAC 0x00000000 +#define AR_PHY_SEL_EXTERNAL_RADIO 0x00000001 + +#define AR_PHY_RF_CTL4 0x9834 +#define AR_PHY_RF_CTL4_TX_END_XPAB_OFF 0xFF000000 +#define AR_PHY_RF_CTL4_TX_END_XPAB_OFF_S 24 +#define AR_PHY_RF_CTL4_TX_END_XPAA_OFF 0x00FF0000 +#define AR_PHY_RF_CTL4_TX_END_XPAA_OFF_S 16 +#define AR_PHY_RF_CTL4_FRAME_XPAB_ON 0x0000FF00 +#define AR_PHY_RF_CTL4_FRAME_XPAB_ON_S 8 +#define AR_PHY_RF_CTL4_FRAME_XPAA_ON 0x000000FF +#define AR_PHY_RF_CTL4_FRAME_XPAA_ON_S 0 + +#define AR_PHY_TSTDAC_CONST 0x983c + +#define AR_PHY_SETTLING 0x9844 +#define AR_PHY_SETTLING_SWITCH 0x00003F80 +#define AR_PHY_SETTLING_SWITCH_S 7 + +#define AR_PHY_RXGAIN 0x9848 +#define AR_PHY_RXGAIN_TXRX_ATTEN 0x0003F000 +#define AR_PHY_RXGAIN_TXRX_ATTEN_S 12 +#define AR_PHY_RXGAIN_TXRX_RF_MAX 0x007C0000 +#define AR_PHY_RXGAIN_TXRX_RF_MAX_S 18 +#define AR9280_PHY_RXGAIN_TXRX_ATTEN 0x00003F80 +#define AR9280_PHY_RXGAIN_TXRX_ATTEN_S 7 +#define AR9280_PHY_RXGAIN_TXRX_MARGIN 0x001FC000 +#define AR9280_PHY_RXGAIN_TXRX_MARGIN_S 14 + +#define AR_PHY_DESIRED_SZ 0x9850 +#define AR_PHY_DESIRED_SZ_ADC 0x000000FF +#define AR_PHY_DESIRED_SZ_ADC_S 0 +#define AR_PHY_DESIRED_SZ_PGA 0x0000FF00 +#define AR_PHY_DESIRED_SZ_PGA_S 8 +#define AR_PHY_DESIRED_SZ_TOT_DES 0x0FF00000 +#define AR_PHY_DESIRED_SZ_TOT_DES_S 20 + +#define AR_PHY_FIND_SIG 0x9858 +#define AR_PHY_FIND_SIG_FIRSTEP 0x0003F000 +#define AR_PHY_FIND_SIG_FIRSTEP_S 12 +#define AR_PHY_FIND_SIG_FIRPWR 0x03FC0000 +#define AR_PHY_FIND_SIG_FIRPWR_S 18 + +#define AR_PHY_AGC_CTL1 0x985C +#define AR_PHY_AGC_CTL1_COARSE_LOW 0x00007F80 +#define AR_PHY_AGC_CTL1_COARSE_LOW_S 7 +#define AR_PHY_AGC_CTL1_COARSE_HIGH 0x003F8000 +#define AR_PHY_AGC_CTL1_COARSE_HIGH_S 15 + +#define AR_PHY_AGC_CONTROL 0x9860 +#define AR_PHY_AGC_CONTROL_CAL 0x00000001 +#define AR_PHY_AGC_CONTROL_NF 0x00000002 +#define AR_PHY_AGC_CONTROL_ENABLE_NF 0x00008000 +#define AR_PHY_AGC_CONTROL_FLTR_CAL 0x00010000 +#define AR_PHY_AGC_CONTROL_NO_UPDATE_NF 0x00020000 + +#define AR_PHY_CCA 0x9864 +#define AR_PHY_MINCCA_PWR 0x0FF80000 +#define AR_PHY_MINCCA_PWR_S 19 +#define AR_PHY_CCA_THRESH62 0x0007F000 +#define AR_PHY_CCA_THRESH62_S 12 +#define AR9280_PHY_MINCCA_PWR 0x1FF00000 +#define AR9280_PHY_MINCCA_PWR_S 20 +#define AR9280_PHY_CCA_THRESH62 0x000FF000 +#define AR9280_PHY_CCA_THRESH62_S 12 + +#define AR_PHY_SFCORR_LOW 0x986C +#define AR_PHY_SFCORR_LOW_USE_SELF_CORR_LOW 0x00000001 +#define AR_PHY_SFCORR_LOW_M2COUNT_THR_LOW 0x00003F00 +#define AR_PHY_SFCORR_LOW_M2COUNT_THR_LOW_S 8 +#define AR_PHY_SFCORR_LOW_M1_THRESH_LOW 0x001FC000 +#define AR_PHY_SFCORR_LOW_M1_THRESH_LOW_S 14 +#define AR_PHY_SFCORR_LOW_M2_THRESH_LOW 0x0FE00000 +#define AR_PHY_SFCORR_LOW_M2_THRESH_LOW_S 21 + +#define AR_PHY_SFCORR 0x9868 +#define AR_PHY_SFCORR_M2COUNT_THR 0x0000001F +#define AR_PHY_SFCORR_M2COUNT_THR_S 0 +#define AR_PHY_SFCORR_M1_THRESH 0x00FE0000 +#define AR_PHY_SFCORR_M1_THRESH_S 17 +#define AR_PHY_SFCORR_M2_THRESH 0x7F000000 +#define AR_PHY_SFCORR_M2_THRESH_S 24 + +#define AR_PHY_SLEEP_CTR_CONTROL 0x9870 +#define AR_PHY_SLEEP_CTR_LIMIT 0x9874 +#define AR_PHY_SYNTH_CONTROL 0x9874 +#define AR_PHY_SLEEP_SCAL 0x9878 + +#define AR_PHY_PLL_CTL 0x987c +#define AR_PHY_PLL_CTL_40 0xaa +#define AR_PHY_PLL_CTL_40_5413 0x04 +#define AR_PHY_PLL_CTL_44 0xab +#define AR_PHY_PLL_CTL_44_2133 0xeb +#define AR_PHY_PLL_CTL_40_2133 0xea + +#define AR_PHY_SPECTRAL_SCAN 0x9910 /* AR9280 spectral scan configuration register */ +#define AR_PHY_SPECTRAL_SCAN_ENABLE 0x1 +#define AR_PHY_SPECTRAL_SCAN_ENA 0x00000001 /* Enable spectral scan, reg 68, bit 0 */ +#define AR_PHY_SPECTRAL_SCAN_ENA_S 0 /* Enable spectral scan, reg 68, bit 0 */ +#define AR_PHY_SPECTRAL_SCAN_ACTIVE 0x00000002 /* Activate spectral scan reg 68, bit 1*/ +#define AR_PHY_SPECTRAL_SCAN_ACTIVE_S 1 /* Activate spectral scan reg 68, bit 1*/ +#define AR_PHY_SPECTRAL_SCAN_FFT_PERIOD 0x000000F0 /* Interval for FFT reports, reg 68, bits 4-7*/ +#define AR_PHY_SPECTRAL_SCAN_FFT_PERIOD_S 4 +#define AR_PHY_SPECTRAL_SCAN_PERIOD 0x0000FF00 /* Interval for FFT reports, reg 68, bits 8-15*/ +#define AR_PHY_SPECTRAL_SCAN_PERIOD_S 8 +#define AR_PHY_SPECTRAL_SCAN_COUNT 0x00FF0000 /* Number of reports, reg 68, bits 16-23*/ +#define AR_PHY_SPECTRAL_SCAN_COUNT_S 16 +#define AR_PHY_SPECTRAL_SCAN_SHORT_REPEAT 0x01000000 /* Short repeat, reg 68, bit 24*/ +#define AR_PHY_SPECTRAL_SCAN_SHORT_REPEAT_S 24 /* Short repeat, reg 68, bit 24*/ + +#define AR_PHY_RX_DELAY 0x9914 +#define AR_PHY_SEARCH_START_DELAY 0x9918 +#define AR_PHY_RX_DELAY_DELAY 0x00003FFF + +#define AR_PHY_TIMING_CTRL4(_i) (0x9920 + ((_i) << 12)) +#define AR_PHY_TIMING_CTRL4_IQCORR_Q_Q_COFF 0x01F +#define AR_PHY_TIMING_CTRL4_IQCORR_Q_Q_COFF_S 0 +#define AR_PHY_TIMING_CTRL4_IQCORR_Q_I_COFF 0x7E0 +#define AR_PHY_TIMING_CTRL4_IQCORR_Q_I_COFF_S 5 +#define AR_PHY_TIMING_CTRL4_IQCORR_ENABLE 0x800 +#define AR_PHY_TIMING_CTRL4_IQCAL_LOG_COUNT_MAX 0xF000 +#define AR_PHY_TIMING_CTRL4_IQCAL_LOG_COUNT_MAX_S 12 +#define AR_PHY_TIMING_CTRL4_DO_CAL 0x10000 + +#define AR_PHY_TIMING_CTRL4_ENABLE_SPUR_RSSI 0x80000000 +#define AR_PHY_TIMING_CTRL4_ENABLE_SPUR_FILTER 0x40000000 +#define AR_PHY_TIMING_CTRL4_ENABLE_CHAN_MASK 0x20000000 +#define AR_PHY_TIMING_CTRL4_ENABLE_PILOT_MASK 0x10000000 + +#define AR_PHY_TIMING5 0x9924 +#define AR_PHY_TIMING5_CYCPWR_THR1 0x000000FE +#define AR_PHY_TIMING5_CYCPWR_THR1_S 1 + +#define AR_PHY_POWER_TX_RATE1 0x9934 +#define AR_PHY_POWER_TX_RATE2 0x9938 +#define AR_PHY_POWER_TX_RATE_MAX 0x993c +#define AR_PHY_POWER_TX_RATE_MAX_TPC_ENABLE 0x00000040 + +#define AR_PHY_FRAME_CTL 0x9944 +#define AR_PHY_FRAME_CTL_TX_CLIP 0x00000038 +#define AR_PHY_FRAME_CTL_TX_CLIP_S 3 + +#define AR_PHY_TXPWRADJ 0x994C +#define AR_PHY_TXPWRADJ_CCK_GAIN_DELTA 0x00000FC0 +#define AR_PHY_TXPWRADJ_CCK_GAIN_DELTA_S 6 +#define AR_PHY_TXPWRADJ_CCK_PCDAC_INDEX 0x00FC0000 +#define AR_PHY_TXPWRADJ_CCK_PCDAC_INDEX_S 18 + +#define AR_PHY_RADAR_EXT 0x9940 +#define AR_PHY_RADAR_EXT_ENA 0x00004000 + +#define AR_PHY_RADAR_0 0x9954 +#define AR_PHY_RADAR_0_ENA 0x00000001 +#define AR_PHY_RADAR_0_FFT_ENA 0x80000000 +#define AR_PHY_RADAR_0_INBAND 0x0000003e +#define AR_PHY_RADAR_0_INBAND_S 1 +#define AR_PHY_RADAR_0_PRSSI 0x00000FC0 +#define AR_PHY_RADAR_0_PRSSI_S 6 +#define AR_PHY_RADAR_0_HEIGHT 0x0003F000 +#define AR_PHY_RADAR_0_HEIGHT_S 12 +#define AR_PHY_RADAR_0_RRSSI 0x00FC0000 +#define AR_PHY_RADAR_0_RRSSI_S 18 +#define AR_PHY_RADAR_0_FIRPWR 0x7F000000 +#define AR_PHY_RADAR_0_FIRPWR_S 24 + +#define AR_PHY_RADAR_1 0x9958 +#define AR_PHY_RADAR_1_RELPWR_ENA 0x00800000 +#define AR_PHY_RADAR_1_USE_FIR128 0x00400000 +#define AR_PHY_RADAR_1_RELPWR_THRESH 0x003F0000 +#define AR_PHY_RADAR_1_RELPWR_THRESH_S 16 +#define AR_PHY_RADAR_1_BLOCK_CHECK 0x00008000 +#define AR_PHY_RADAR_1_MAX_RRSSI 0x00004000 +#define AR_PHY_RADAR_1_RELSTEP_CHECK 0x00002000 +#define AR_PHY_RADAR_1_RELSTEP_THRESH 0x00001F00 +#define AR_PHY_RADAR_1_RELSTEP_THRESH_S 8 +#define AR_PHY_RADAR_1_MAXLEN 0x000000FF +#define AR_PHY_RADAR_1_MAXLEN_S 0 + +#define AR_PHY_SWITCH_CHAIN_0 0x9960 +#define AR_PHY_SWITCH_COM 0x9964 + +#define AR_PHY_SIGMA_DELTA 0x996C +#define AR_PHY_SIGMA_DELTA_ADC_SEL 0x00000003 +#define AR_PHY_SIGMA_DELTA_ADC_SEL_S 0 +#define AR_PHY_SIGMA_DELTA_FILT2 0x000000F8 +#define AR_PHY_SIGMA_DELTA_FILT2_S 3 +#define AR_PHY_SIGMA_DELTA_FILT1 0x00001F00 +#define AR_PHY_SIGMA_DELTA_FILT1_S 8 +#define AR_PHY_SIGMA_DELTA_ADC_CLIP 0x01FFE000 +#define AR_PHY_SIGMA_DELTA_ADC_CLIP_S 13 + +#define AR_PHY_RESTART 0x9970 +#define AR_PHY_RESTART_DIV_GC 0x001C0000 +#define AR_PHY_RESTART_DIV_GC_S 18 + +#define AR_PHY_RFBUS_REQ 0x997C +#define AR_PHY_RFBUS_REQ_EN 0x00000001 + +#define AR_PHY_TIMING7 0x9980 +#define AR_PHY_TIMING8 0x9984 +#define AR_PHY_TIMING8_PILOT_MASK_2 0x000FFFFF +#define AR_PHY_TIMING8_PILOT_MASK_2_S 0 + +#define AR_PHY_BIN_MASK2_1 0x9988 +#define AR_PHY_BIN_MASK2_2 0x998c +#define AR_PHY_BIN_MASK2_3 0x9990 +#define AR_PHY_BIN_MASK2_4 0x9994 + +#define AR_PHY_BIN_MASK_1 0x9900 +#define AR_PHY_BIN_MASK_2 0x9904 +#define AR_PHY_BIN_MASK_3 0x9908 + +#define AR_PHY_MASK_CTL 0x990c + +#define AR_PHY_BIN_MASK2_4_MASK_4 0x00003FFF +#define AR_PHY_BIN_MASK2_4_MASK_4_S 0 + +#define AR_PHY_TIMING9 0x9998 +#define AR_PHY_TIMING10 0x999c +#define AR_PHY_TIMING10_PILOT_MASK_2 0x000FFFFF +#define AR_PHY_TIMING10_PILOT_MASK_2_S 0 + +#define AR_PHY_TIMING11 0x99a0 +#define AR_PHY_TIMING11_SPUR_DELTA_PHASE 0x000FFFFF +#define AR_PHY_TIMING11_SPUR_DELTA_PHASE_S 0 +#define AR_PHY_TIMING11_SPUR_FREQ_SD 0x3FF00000 +#define AR_PHY_TIMING11_SPUR_FREQ_SD_S 20 +#define AR_PHY_TIMING11_USE_SPUR_IN_AGC 0x40000000 +#define AR_PHY_TIMING11_USE_SPUR_IN_SELFCOR 0x80000000 + +#define AR_PHY_RX_CHAINMASK 0x99a4 +#define AR_PHY_NEW_ADC_DC_GAIN_CORR(_i) (0x99b4 + ((_i) << 12)) +#define AR_PHY_NEW_ADC_GAIN_CORR_ENABLE 0x40000000 +#define AR_PHY_NEW_ADC_DC_OFFSET_CORR_ENABLE 0x80000000 + +#define AR_PHY_MULTICHAIN_GAIN_CTL 0x99ac +#define AR_PHY_9285_ANT_DIV_CTL_ALL 0x7f000000 +#define AR_PHY_9285_ANT_DIV_CTL 0x01000000 +#define AR_PHY_9285_ANT_DIV_CTL_S 24 +#define AR_PHY_9285_ANT_DIV_ALT_LNACONF 0x06000000 +#define AR_PHY_9285_ANT_DIV_ALT_LNACONF_S 25 +#define AR_PHY_9285_ANT_DIV_MAIN_LNACONF 0x18000000 +#define AR_PHY_9285_ANT_DIV_MAIN_LNACONF_S 27 +#define AR_PHY_9285_ANT_DIV_ALT_GAINTB 0x20000000 +#define AR_PHY_9285_ANT_DIV_ALT_GAINTB_S 29 +#define AR_PHY_9285_ANT_DIV_MAIN_GAINTB 0x40000000 +#define AR_PHY_9285_ANT_DIV_MAIN_GAINTB_S 30 +#define AR_PHY_9285_ANT_DIV_LNA1 2 +#define AR_PHY_9285_ANT_DIV_LNA2 1 +#define AR_PHY_9285_ANT_DIV_LNA1_PLUS_LNA2 3 +#define AR_PHY_9285_ANT_DIV_LNA1_MINUS_LNA2 0 +#define AR_PHY_9285_ANT_DIV_GAINTB_0 0 +#define AR_PHY_9285_ANT_DIV_GAINTB_1 1 + +#define AR_PHY_EXT_CCA0 0x99b8 +#define AR_PHY_EXT_CCA0_THRESH62 0x000000FF +#define AR_PHY_EXT_CCA0_THRESH62_S 0 + +#define AR_PHY_EXT_CCA 0x99bc +#define AR_PHY_EXT_CCA_CYCPWR_THR1 0x0000FE00 +#define AR_PHY_EXT_CCA_CYCPWR_THR1_S 9 +#define AR_PHY_EXT_CCA_THRESH62 0x007F0000 +#define AR_PHY_EXT_CCA_THRESH62_S 16 +#define AR_PHY_EXT_MINCCA_PWR 0xFF800000 +#define AR_PHY_EXT_MINCCA_PWR_S 23 +#define AR9280_PHY_EXT_MINCCA_PWR 0x01FF0000 +#define AR9280_PHY_EXT_MINCCA_PWR_S 16 + +#define AR_PHY_SFCORR_EXT 0x99c0 +#define AR_PHY_SFCORR_EXT_M1_THRESH 0x0000007F +#define AR_PHY_SFCORR_EXT_M1_THRESH_S 0 +#define AR_PHY_SFCORR_EXT_M2_THRESH 0x00003F80 +#define AR_PHY_SFCORR_EXT_M2_THRESH_S 7 +#define AR_PHY_SFCORR_EXT_M1_THRESH_LOW 0x001FC000 +#define AR_PHY_SFCORR_EXT_M1_THRESH_LOW_S 14 +#define AR_PHY_SFCORR_EXT_M2_THRESH_LOW 0x0FE00000 +#define AR_PHY_SFCORR_EXT_M2_THRESH_LOW_S 21 +#define AR_PHY_SFCORR_SPUR_SUBCHNL_SD_S 28 + +#define AR_PHY_HALFGI 0x99D0 +#define AR_PHY_HALFGI_DSC_MAN 0x0007FFF0 +#define AR_PHY_HALFGI_DSC_MAN_S 4 +#define AR_PHY_HALFGI_DSC_EXP 0x0000000F +#define AR_PHY_HALFGI_DSC_EXP_S 0 + +#define AR_PHY_CHAN_INFO_MEMORY 0x99DC +#define AR_PHY_CHAN_INFO_MEMORY_CAPTURE_MASK 0x0001 + +#define AR_PHY_HEAVY_CLIP_ENABLE 0x99E0 + +#define AR_PHY_HEAVY_CLIP_FACTOR_RIFS 0x99EC +#define AR_PHY_RIFS_INIT_DELAY 0x03ff0000 + +#define AR_PHY_M_SLEEP 0x99f0 +#define AR_PHY_REFCLKDLY 0x99f4 +#define AR_PHY_REFCLKPD 0x99f8 + +#define AR_PHY_CALMODE 0x99f0 + +#define AR_PHY_CALMODE_IQ 0x00000000 +#define AR_PHY_CALMODE_ADC_GAIN 0x00000001 +#define AR_PHY_CALMODE_ADC_DC_PER 0x00000002 +#define AR_PHY_CALMODE_ADC_DC_INIT 0x00000003 + +#define AR_PHY_CAL_MEAS_0(_i) (0x9c10 + ((_i) << 12)) +#define AR_PHY_CAL_MEAS_1(_i) (0x9c14 + ((_i) << 12)) +#define AR_PHY_CAL_MEAS_2(_i) (0x9c18 + ((_i) << 12)) +#define AR_PHY_CAL_MEAS_3(_i) (0x9c1c + ((_i) << 12)) + +#define AR_PHY_CURRENT_RSSI 0x9c1c +#define AR9280_PHY_CURRENT_RSSI 0x9c3c + +#define AR_PHY_RFBUS_GRANT 0x9C20 +#define AR_PHY_RFBUS_GRANT_EN 0x00000001 + +#define AR_PHY_CHAN_INFO_GAIN_DIFF 0x9CF4 +#define AR_PHY_CHAN_INFO_GAIN_DIFF_UPPER_LIMIT 320 + +#define AR_PHY_CHAN_INFO_GAIN 0x9CFC + +#define AR_PHY_MODE 0xA200 +#define AR_PHY_MODE_ASYNCFIFO 0x80 +#define AR_PHY_MODE_AR2133 0x08 +#define AR_PHY_MODE_AR5111 0x00 +#define AR_PHY_MODE_AR5112 0x08 +#define AR_PHY_MODE_DYNAMIC 0x04 +#define AR_PHY_MODE_RF2GHZ 0x02 +#define AR_PHY_MODE_RF5GHZ 0x00 +#define AR_PHY_MODE_CCK 0x01 +#define AR_PHY_MODE_OFDM 0x00 +#define AR_PHY_MODE_DYN_CCK_DISABLE 0x100 + +#define AR_PHY_CCK_TX_CTRL 0xA204 +#define AR_PHY_CCK_TX_CTRL_JAPAN 0x00000010 +#define AR_PHY_CCK_TX_CTRL_TX_DAC_SCALE_CCK 0x0000000C +#define AR_PHY_CCK_TX_CTRL_TX_DAC_SCALE_CCK_S 2 + +#define AR_PHY_CCK_DETECT 0xA208 +#define AR_PHY_CCK_DETECT_WEAK_SIG_THR_CCK 0x0000003F +#define AR_PHY_CCK_DETECT_WEAK_SIG_THR_CCK_S 0 +/* [12:6] settling time for antenna switch */ +#define AR_PHY_CCK_DETECT_ANT_SWITCH_TIME 0x00001FC0 +#define AR_PHY_CCK_DETECT_ANT_SWITCH_TIME_S 6 +#define AR_PHY_CCK_DETECT_BB_ENABLE_ANT_FAST_DIV 0x2000 +#define AR_PHY_CCK_DETECT_BB_ENABLE_ANT_FAST_DIV_S 13 + +#define AR_PHY_GAIN_2GHZ 0xA20C +#define AR_PHY_GAIN_2GHZ_RXTX_MARGIN 0x00FC0000 +#define AR_PHY_GAIN_2GHZ_RXTX_MARGIN_S 18 +#define AR_PHY_GAIN_2GHZ_BSW_MARGIN 0x00003C00 +#define AR_PHY_GAIN_2GHZ_BSW_MARGIN_S 10 +#define AR_PHY_GAIN_2GHZ_BSW_ATTEN 0x0000001F +#define AR_PHY_GAIN_2GHZ_BSW_ATTEN_S 0 + +#define AR_PHY_GAIN_2GHZ_XATTEN2_MARGIN 0x003E0000 +#define AR_PHY_GAIN_2GHZ_XATTEN2_MARGIN_S 17 +#define AR_PHY_GAIN_2GHZ_XATTEN1_MARGIN 0x0001F000 +#define AR_PHY_GAIN_2GHZ_XATTEN1_MARGIN_S 12 +#define AR_PHY_GAIN_2GHZ_XATTEN2_DB 0x00000FC0 +#define AR_PHY_GAIN_2GHZ_XATTEN2_DB_S 6 +#define AR_PHY_GAIN_2GHZ_XATTEN1_DB 0x0000003F +#define AR_PHY_GAIN_2GHZ_XATTEN1_DB_S 0 + +#define AR_PHY_CCK_RXCTRL4 0xA21C +#define AR_PHY_CCK_RXCTRL4_FREQ_EST_SHORT 0x01F80000 +#define AR_PHY_CCK_RXCTRL4_FREQ_EST_SHORT_S 19 + +#define AR_PHY_DAG_CTRLCCK 0xA228 +#define AR_PHY_DAG_CTRLCCK_EN_RSSI_THR 0x00000200 +#define AR_PHY_DAG_CTRLCCK_RSSI_THR 0x0001FC00 +#define AR_PHY_DAG_CTRLCCK_RSSI_THR_S 10 + +#define AR_PHY_FORCE_CLKEN_CCK 0xA22C +#define AR_PHY_FORCE_CLKEN_CCK_MRC_MUX 0x00000040 + +#define AR_PHY_POWER_TX_RATE3 0xA234 +#define AR_PHY_POWER_TX_RATE4 0xA238 + +#define AR_PHY_SCRM_SEQ_XR 0xA23C +#define AR_PHY_HEADER_DETECT_XR 0xA240 +#define AR_PHY_CHIRP_DETECTED_XR 0xA244 +#define AR_PHY_BLUETOOTH 0xA254 + +#define AR_PHY_TPCRG1 0xA258 +#define AR_PHY_TPCRG1_NUM_PD_GAIN 0x0000c000 +#define AR_PHY_TPCRG1_NUM_PD_GAIN_S 14 + +#define AR_PHY_TPCRG1_PD_GAIN_1 0x00030000 +#define AR_PHY_TPCRG1_PD_GAIN_1_S 16 +#define AR_PHY_TPCRG1_PD_GAIN_2 0x000C0000 +#define AR_PHY_TPCRG1_PD_GAIN_2_S 18 +#define AR_PHY_TPCRG1_PD_GAIN_3 0x00300000 +#define AR_PHY_TPCRG1_PD_GAIN_3_S 20 + +#define AR_PHY_TPCRG1_PD_CAL_ENABLE 0x00400000 +#define AR_PHY_TPCRG1_PD_CAL_ENABLE_S 22 + +#define AR_PHY_TX_PWRCTRL4 0xa264 +#define AR_PHY_TX_PWRCTRL_PD_AVG_VALID 0x00000001 +#define AR_PHY_TX_PWRCTRL_PD_AVG_VALID_S 0 +#define AR_PHY_TX_PWRCTRL_PD_AVG_OUT 0x000001FE +#define AR_PHY_TX_PWRCTRL_PD_AVG_OUT_S 1 + +#define AR_PHY_TX_PWRCTRL6_0 0xa270 +#define AR_PHY_TX_PWRCTRL6_1 0xb270 +#define AR_PHY_TX_PWRCTRL_ERR_EST_MODE 0x03000000 +#define AR_PHY_TX_PWRCTRL_ERR_EST_MODE_S 24 + +#define AR_PHY_TX_PWRCTRL7 0xa274 +#define AR_PHY_TX_PWRCTRL_INIT_TX_GAIN 0x01F80000 +#define AR_PHY_TX_PWRCTRL_INIT_TX_GAIN_S 19 + +#define AR_PHY_TX_PWRCTRL9 0xa27C +#define AR_PHY_TX_DESIRED_SCALE_CCK 0x00007C00 +#define AR_PHY_TX_DESIRED_SCALE_CCK_S 10 +#define AR_PHY_TX_PWRCTRL9_RES_DC_REMOVAL 0x80000000 +#define AR_PHY_TX_PWRCTRL9_RES_DC_REMOVAL_S 31 + +#define AR_PHY_TX_GAIN_TBL1 0xa300 +#define AR_PHY_TX_GAIN 0x0007F000 +#define AR_PHY_TX_GAIN_S 12 + +#define AR_PHY_CH0_TX_PWRCTRL11 0xa398 +#define AR_PHY_CH1_TX_PWRCTRL11 0xb398 +#define AR_PHY_TX_PWRCTRL_OLPC_TEMP_COMP 0x0000FC00 +#define AR_PHY_TX_PWRCTRL_OLPC_TEMP_COMP_S 10 + +#define AR_PHY_VIT_MASK2_M_46_61 0xa3a0 +#define AR_PHY_MASK2_M_31_45 0xa3a4 +#define AR_PHY_MASK2_M_16_30 0xa3a8 +#define AR_PHY_MASK2_M_00_15 0xa3ac +#define AR_PHY_MASK2_P_15_01 0xa3b8 +#define AR_PHY_MASK2_P_30_16 0xa3bc +#define AR_PHY_MASK2_P_45_31 0xa3c0 +#define AR_PHY_MASK2_P_61_45 0xa3c4 +#define AR_PHY_SPUR_REG 0x994c + +#define AR_PHY_SPUR_REG_MASK_RATE_CNTL (0xFF << 18) +#define AR_PHY_SPUR_REG_MASK_RATE_CNTL_S 18 + +#define AR_PHY_SPUR_REG_ENABLE_MASK_PPM 0x20000 +#define AR_PHY_SPUR_REG_MASK_RATE_SELECT (0xFF << 9) +#define AR_PHY_SPUR_REG_MASK_RATE_SELECT_S 9 +#define AR_PHY_SPUR_REG_ENABLE_VIT_SPUR_RSSI 0x100 +#define AR_PHY_SPUR_REG_SPUR_RSSI_THRESH 0x7F +#define AR_PHY_SPUR_REG_SPUR_RSSI_THRESH_S 0 + +#define AR_PHY_PILOT_MASK_01_30 0xa3b0 +#define AR_PHY_PILOT_MASK_31_60 0xa3b4 + +#define AR_PHY_CHANNEL_MASK_01_30 0x99d4 +#define AR_PHY_CHANNEL_MASK_31_60 0x99d8 + +#define AR_PHY_ANALOG_SWAP 0xa268 +#define AR_PHY_SWAP_ALT_CHAIN 0x00000040 + +#define AR_PHY_TPCRG5 0xA26C +#define AR_PHY_TPCRG5_PD_GAIN_OVERLAP 0x0000000F +#define AR_PHY_TPCRG5_PD_GAIN_OVERLAP_S 0 +#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_1 0x000003F0 +#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_1_S 4 +#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_2 0x0000FC00 +#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_2_S 10 +#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_3 0x003F0000 +#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_3_S 16 +#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_4 0x0FC00000 +#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_4_S 22 + +/* Carrier leak calibration control, do it after AGC calibration */ +#define AR_PHY_CL_CAL_CTL 0xA358 +#define AR_PHY_CL_CAL_ENABLE 0x00000002 +#define AR_PHY_PARALLEL_CAL_ENABLE 0x00000001 + +#define AR_PHY_POWER_TX_RATE5 0xA38C +#define AR_PHY_POWER_TX_RATE6 0xA390 + +#define AR_PHY_CAL_CHAINMASK 0xA39C + +#define AR_PHY_POWER_TX_SUB 0xA3C8 +#define AR_PHY_POWER_TX_RATE7 0xA3CC +#define AR_PHY_POWER_TX_RATE8 0xA3D0 +#define AR_PHY_POWER_TX_RATE9 0xA3D4 + +#define AR_PHY_XPA_CFG 0xA3D8 +#define AR_PHY_FORCE_XPA_CFG 0x000000001 +#define AR_PHY_FORCE_XPA_CFG_S 0 + +#define AR_PHY_CH1_CCA 0xa864 +#define AR_PHY_CH1_MINCCA_PWR 0x0FF80000 +#define AR_PHY_CH1_MINCCA_PWR_S 19 +#define AR9280_PHY_CH1_MINCCA_PWR 0x1FF00000 +#define AR9280_PHY_CH1_MINCCA_PWR_S 20 + +#define AR_PHY_CH2_CCA 0xb864 +#define AR_PHY_CH2_MINCCA_PWR 0x0FF80000 +#define AR_PHY_CH2_MINCCA_PWR_S 19 + +#define AR_PHY_CH1_EXT_CCA 0xa9bc +#define AR_PHY_CH1_EXT_MINCCA_PWR 0xFF800000 +#define AR_PHY_CH1_EXT_MINCCA_PWR_S 23 +#define AR9280_PHY_CH1_EXT_MINCCA_PWR 0x01FF0000 +#define AR9280_PHY_CH1_EXT_MINCCA_PWR_S 16 + +#define AR_PHY_CH2_EXT_CCA 0xb9bc +#define AR_PHY_CH2_EXT_MINCCA_PWR 0xFF800000 +#define AR_PHY_CH2_EXT_MINCCA_PWR_S 23 + +#endif diff --git a/drivers/net/wireless/ath/ath9k/calib.c b/drivers/net/wireless/ath/ath9k/calib.c index 064f5b51dfc..eba85adb7cd 100644 --- a/drivers/net/wireless/ath/ath9k/calib.c +++ b/drivers/net/wireless/ath/ath9k/calib.c @@ -15,6 +15,7 @@ */ #include "hw.h" +#include "ar9002_phy.h" /* We can tune this as we go by monitoring really low values */ #define ATH9K_NF_TOO_LOW -60 diff --git a/drivers/net/wireless/ath/ath9k/eeprom_4k.c b/drivers/net/wireless/ath/ath9k/eeprom_4k.c index 0354fe50f8e..97279a5e01e 100644 --- a/drivers/net/wireless/ath/ath9k/eeprom_4k.c +++ b/drivers/net/wireless/ath/ath9k/eeprom_4k.c @@ -15,6 +15,7 @@ */ #include "hw.h" +#include "ar9002_phy.h" static int ath9k_hw_4k_get_eeprom_ver(struct ath_hw *ah) { diff --git a/drivers/net/wireless/ath/ath9k/eeprom_9287.c b/drivers/net/wireless/ath/ath9k/eeprom_9287.c index d8ca94c3fa0..e57c5b48c03 100644 --- a/drivers/net/wireless/ath/ath9k/eeprom_9287.c +++ b/drivers/net/wireless/ath/ath9k/eeprom_9287.c @@ -15,6 +15,7 @@ */ #include "hw.h" +#include "ar9002_phy.h" static int ath9k_hw_AR9287_get_eeprom_ver(struct ath_hw *ah) { diff --git a/drivers/net/wireless/ath/ath9k/eeprom_def.c b/drivers/net/wireless/ath/ath9k/eeprom_def.c index 404a0341242..99f16a3a5be 100644 --- a/drivers/net/wireless/ath/ath9k/eeprom_def.c +++ b/drivers/net/wireless/ath/ath9k/eeprom_def.c @@ -15,6 +15,7 @@ */ #include "hw.h" +#include "ar9002_phy.h" static void ath9k_get_txgain_index(struct ath_hw *ah, struct ath9k_channel *chan, diff --git a/drivers/net/wireless/ath/ath9k/hw-ops.h b/drivers/net/wireless/ath/ath9k/hw-ops.h index ee33146cda1..81f3d03f0db 100644 --- a/drivers/net/wireless/ath/ath9k/hw-ops.h +++ b/drivers/net/wireless/ath/ath9k/hw-ops.h @@ -28,4 +28,117 @@ static inline void ath9k_hw_configpcipowersave(struct ath_hw *ah, ath9k_hw_ops(ah)->config_pci_powersave(ah, restore, power_off); } +/* Private hardware call ops */ + +/* PHY ops */ + +static inline int ath9k_hw_rf_set_freq(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + return ath9k_hw_private_ops(ah)->rf_set_freq(ah, chan); +} + +static inline void ath9k_hw_spur_mitigate_freq(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + ath9k_hw_private_ops(ah)->spur_mitigate_freq(ah, chan); +} + +static inline int ath9k_hw_rf_alloc_ext_banks(struct ath_hw *ah) +{ + if (!ath9k_hw_private_ops(ah)->rf_alloc_ext_banks) + return 0; + + return ath9k_hw_private_ops(ah)->rf_alloc_ext_banks(ah); +} + +static inline void ath9k_hw_rf_free_ext_banks(struct ath_hw *ah) +{ + if (!ath9k_hw_private_ops(ah)->rf_free_ext_banks) + return; + + ath9k_hw_private_ops(ah)->rf_free_ext_banks(ah); +} + +static inline bool ath9k_hw_set_rf_regs(struct ath_hw *ah, + struct ath9k_channel *chan, + u16 modesIndex) +{ + if (!ath9k_hw_private_ops(ah)->set_rf_regs) + return true; + + return ath9k_hw_private_ops(ah)->set_rf_regs(ah, chan, modesIndex); +} + +static inline void ath9k_hw_init_bb(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + return ath9k_hw_private_ops(ah)->init_bb(ah, chan); +} + +static inline void ath9k_hw_set_channel_regs(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + return ath9k_hw_private_ops(ah)->set_channel_regs(ah, chan); +} + +static inline int ath9k_hw_process_ini(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + return ath9k_hw_private_ops(ah)->process_ini(ah, chan); +} + +static inline void ath9k_olc_init(struct ath_hw *ah) +{ + if (!ath9k_hw_private_ops(ah)->olc_init) + return; + + return ath9k_hw_private_ops(ah)->olc_init(ah); +} + +static inline void ath9k_hw_set_rfmode(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + return ath9k_hw_private_ops(ah)->set_rfmode(ah, chan); +} + +static inline void ath9k_hw_mark_phy_inactive(struct ath_hw *ah) +{ + return ath9k_hw_private_ops(ah)->mark_phy_inactive(ah); +} + +static inline void ath9k_hw_set_delta_slope(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + return ath9k_hw_private_ops(ah)->set_delta_slope(ah, chan); +} + +static inline bool ath9k_hw_rfbus_req(struct ath_hw *ah) +{ + return ath9k_hw_private_ops(ah)->rfbus_req(ah); +} + +static inline void ath9k_hw_rfbus_done(struct ath_hw *ah) +{ + return ath9k_hw_private_ops(ah)->rfbus_done(ah); +} + +static inline void ath9k_enable_rfkill(struct ath_hw *ah) +{ + return ath9k_hw_private_ops(ah)->enable_rfkill(ah); +} + +static inline void ath9k_hw_restore_chainmask(struct ath_hw *ah) +{ + if (!ath9k_hw_private_ops(ah)->restore_chainmask) + return; + + return ath9k_hw_private_ops(ah)->restore_chainmask(ah); +} + +static inline void ath9k_hw_set_diversity(struct ath_hw *ah, bool value) +{ + return ath9k_hw_private_ops(ah)->set_diversity(ah, value); +} + #endif /* ATH9K_HW_OPS_H */ diff --git a/drivers/net/wireless/ath/ath9k/hw.c b/drivers/net/wireless/ath/ath9k/hw.c index 6f447cdbd05..2ab061381fc 100644 --- a/drivers/net/wireless/ath/ath9k/hw.c +++ b/drivers/net/wireless/ath/ath9k/hw.c @@ -29,7 +29,6 @@ static void ar9002_hw_attach_ops(struct ath_hw *ah); static bool ath9k_hw_set_reset_reg(struct ath_hw *ah, u32 type); -static void ath9k_hw_set_regs(struct ath_hw *ah, struct ath9k_channel *chan); MODULE_AUTHOR("Atheros Communications"); MODULE_DESCRIPTION("Support for Atheros 802.11n wireless LAN cards."); @@ -535,14 +534,12 @@ static int ath9k_hw_post_init(struct ath_hw *ah) ah->eep_ops->get_eeprom_ver(ah), ah->eep_ops->get_eeprom_rev(ah)); - if (!AR_SREV_9280_10_OR_LATER(ah)) { - ecode = ath9k_hw_rf_alloc_ext_banks(ah); - if (ecode) { - ath_print(ath9k_hw_common(ah), ATH_DBG_FATAL, - "Failed allocating banks for " - "external radio\n"); - return ecode; - } + ecode = ath9k_hw_rf_alloc_ext_banks(ah); + if (ecode) { + ath_print(ath9k_hw_common(ah), ATH_DBG_FATAL, + "Failed allocating banks for " + "external radio\n"); + return ecode; } if (!AR_SREV_9100(ah)) { @@ -913,20 +910,12 @@ static int __ath9k_hw_init(struct ath_hw *ah) if (AR_SREV_9271(ah)) ah->is_pciexpress = false; - /* XXX: move this to its own hw op */ ah->hw_version.phyRev = REG_READ(ah, AR_PHY_CHIP_ID); - ath9k_hw_init_cal_settings(ah); ah->ani_function = ATH9K_ANI_ALL; - if (AR_SREV_9280_10_OR_LATER(ah)) { + if (AR_SREV_9280_10_OR_LATER(ah)) ah->ani_function &= ~ATH9K_ANI_NOISE_IMMUNITY_LEVEL; - ah->ath9k_hw_rf_set_freq = &ath9k_hw_ar9280_set_channel; - ah->ath9k_hw_spur_mitigate_freq = &ath9k_hw_9280_spur_mitigate; - } else { - ah->ath9k_hw_rf_set_freq = &ath9k_hw_set_channel; - ah->ath9k_hw_spur_mitigate_freq = &ath9k_hw_spur_mitigate; - } ath9k_hw_init_mode_regs(ah); @@ -1014,22 +1003,6 @@ int ath9k_hw_init(struct ath_hw *ah) } EXPORT_SYMBOL(ath9k_hw_init); -static void ath9k_hw_init_bb(struct ath_hw *ah, - struct ath9k_channel *chan) -{ - u32 synthDelay; - - synthDelay = REG_READ(ah, AR_PHY_RX_DELAY) & AR_PHY_RX_DELAY_DELAY; - if (IS_CHAN_B(chan)) - synthDelay = (4 * synthDelay) / 22; - else - synthDelay /= 10; - - REG_WRITE(ah, AR_PHY_ACTIVE, AR_PHY_ACTIVE_EN); - - udelay(synthDelay + BASE_ACTIVATE_DELAY); -} - static void ath9k_hw_init_qos(struct ath_hw *ah) { REG_WRITE(ah, AR_MIC_QOS_CONTROL, 0x100aa); @@ -1121,43 +1094,6 @@ static void ath9k_hw_init_pll(struct ath_hw *ah, REG_WRITE(ah, AR_RTC_SLEEP_CLK, AR_RTC_FORCE_DERIVED_CLK); } -static void ath9k_hw_init_chain_masks(struct ath_hw *ah) -{ - int rx_chainmask, tx_chainmask; - - rx_chainmask = ah->rxchainmask; - tx_chainmask = ah->txchainmask; - - switch (rx_chainmask) { - case 0x5: - REG_SET_BIT(ah, AR_PHY_ANALOG_SWAP, - AR_PHY_SWAP_ALT_CHAIN); - case 0x3: - if (ah->hw_version.macVersion == AR_SREV_REVISION_5416_10) { - REG_WRITE(ah, AR_PHY_RX_CHAINMASK, 0x7); - REG_WRITE(ah, AR_PHY_CAL_CHAINMASK, 0x7); - break; - } - case 0x1: - case 0x2: - case 0x7: - REG_WRITE(ah, AR_PHY_RX_CHAINMASK, rx_chainmask); - REG_WRITE(ah, AR_PHY_CAL_CHAINMASK, rx_chainmask); - break; - default: - break; - } - - REG_WRITE(ah, AR_SELFGEN_MASK, tx_chainmask); - if (tx_chainmask == 0x5) { - REG_SET_BIT(ah, AR_PHY_ANALOG_SWAP, - AR_PHY_SWAP_ALT_CHAIN); - } - if (AR_SREV_9100(ah)) - REG_WRITE(ah, AR_PHY_ANALOG_SWAP, - REG_READ(ah, AR_PHY_ANALOG_SWAP) | 0x00000001); -} - static void ath9k_hw_init_interrupt_masks(struct ath_hw *ah, enum nl80211_iftype opmode) { @@ -1277,8 +1213,7 @@ void ath9k_hw_deinit(struct ath_hw *ah) ath9k_hw_setpower(ah, ATH9K_PM_FULL_SLEEP); free_hw: - if (!AR_SREV_9280_10_OR_LATER(ah)) - ath9k_hw_rf_free_ext_banks(ah); + ath9k_hw_rf_free_ext_banks(ah); } EXPORT_SYMBOL(ath9k_hw_deinit); @@ -1286,73 +1221,7 @@ EXPORT_SYMBOL(ath9k_hw_deinit); /* INI */ /*******/ -static void ath9k_hw_override_ini(struct ath_hw *ah, - struct ath9k_channel *chan) -{ - u32 val; - - /* - * Set the RX_ABORT and RX_DIS and clear if off only after - * RXE is set for MAC. This prevents frames with corrupted - * descriptor status. - */ - REG_SET_BIT(ah, AR_DIAG_SW, (AR_DIAG_RX_DIS | AR_DIAG_RX_ABORT)); - - if (AR_SREV_9280_10_OR_LATER(ah)) { - val = REG_READ(ah, AR_PCU_MISC_MODE2); - - if (!AR_SREV_9271(ah)) - val &= ~AR_PCU_MISC_MODE2_HWWAR1; - - if (AR_SREV_9287_10_OR_LATER(ah)) - val = val & (~AR_PCU_MISC_MODE2_HWWAR2); - - REG_WRITE(ah, AR_PCU_MISC_MODE2, val); - } - - if (!AR_SREV_5416_20_OR_LATER(ah) || - AR_SREV_9280_10_OR_LATER(ah)) - return; - /* - * Disable BB clock gating - * Necessary to avoid issues on AR5416 2.0 - */ - REG_WRITE(ah, 0x9800 + (651 << 2), 0x11); - - /* - * Disable RIFS search on some chips to avoid baseband - * hang issues. - */ - if (AR_SREV_9100(ah) || AR_SREV_9160(ah)) { - val = REG_READ(ah, AR_PHY_HEAVY_CLIP_FACTOR_RIFS); - val &= ~AR_PHY_RIFS_INIT_DELAY; - REG_WRITE(ah, AR_PHY_HEAVY_CLIP_FACTOR_RIFS, val); - } -} - -static void ath9k_olc_init(struct ath_hw *ah) -{ - u32 i; - - if (OLC_FOR_AR9287_10_LATER) { - REG_SET_BIT(ah, AR_PHY_TX_PWRCTRL9, - AR_PHY_TX_PWRCTRL9_RES_DC_REMOVAL); - ath9k_hw_analog_shift_rmw(ah, AR9287_AN_TXPC0, - AR9287_AN_TXPC0_TXPCMODE, - AR9287_AN_TXPC0_TXPCMODE_S, - AR9287_AN_TXPC0_TXPCMODE_TEMPSENSE); - udelay(100); - } else { - for (i = 0; i < AR9280_TX_GAIN_TABLE_SIZE; i++) - ah->originalGain[i] = - MS(REG_READ(ah, AR_PHY_TX_GAIN_TBL1 + i * 4), - AR_PHY_TX_GAIN); - ah->PDADCdelta = 0; - } -} - -static u32 ath9k_regd_get_ctl(struct ath_regulatory *reg, - struct ath9k_channel *chan) +u32 ath9k_regd_get_ctl(struct ath_regulatory *reg, struct ath9k_channel *chan) { u32 ctl = ath_regd_get_band_ctl(reg, chan->chan->band); @@ -1366,184 +1235,10 @@ static u32 ath9k_regd_get_ctl(struct ath_regulatory *reg, return ctl; } -static int ath9k_hw_process_ini(struct ath_hw *ah, - struct ath9k_channel *chan) -{ - struct ath_regulatory *regulatory = ath9k_hw_regulatory(ah); - int i, regWrites = 0; - struct ieee80211_channel *channel = chan->chan; - u32 modesIndex, freqIndex; - - switch (chan->chanmode) { - case CHANNEL_A: - case CHANNEL_A_HT20: - modesIndex = 1; - freqIndex = 1; - break; - case CHANNEL_A_HT40PLUS: - case CHANNEL_A_HT40MINUS: - modesIndex = 2; - freqIndex = 1; - break; - case CHANNEL_G: - case CHANNEL_G_HT20: - case CHANNEL_B: - modesIndex = 4; - freqIndex = 2; - break; - case CHANNEL_G_HT40PLUS: - case CHANNEL_G_HT40MINUS: - modesIndex = 3; - freqIndex = 2; - break; - - default: - return -EINVAL; - } - - /* Set correct baseband to analog shift setting to access analog chips */ - REG_WRITE(ah, AR_PHY(0), 0x00000007); - - /* Write ADDAC shifts */ - REG_WRITE(ah, AR_PHY_ADC_SERIAL_CTL, AR_PHY_SEL_EXTERNAL_RADIO); - ah->eep_ops->set_addac(ah, chan); - - if (AR_SREV_5416_22_OR_LATER(ah)) { - REG_WRITE_ARRAY(&ah->iniAddac, 1, regWrites); - } else { - struct ar5416IniArray temp; - u32 addacSize = - sizeof(u32) * ah->iniAddac.ia_rows * - ah->iniAddac.ia_columns; - - /* For AR5416 2.0/2.1 */ - memcpy(ah->addac5416_21, - ah->iniAddac.ia_array, addacSize); - - /* override CLKDRV value at [row, column] = [31, 1] */ - (ah->addac5416_21)[31 * ah->iniAddac.ia_columns + 1] = 0; - - temp.ia_array = ah->addac5416_21; - temp.ia_columns = ah->iniAddac.ia_columns; - temp.ia_rows = ah->iniAddac.ia_rows; - REG_WRITE_ARRAY(&temp, 1, regWrites); - } - - REG_WRITE(ah, AR_PHY_ADC_SERIAL_CTL, AR_PHY_SEL_INTERNAL_ADDAC); - - for (i = 0; i < ah->iniModes.ia_rows; i++) { - u32 reg = INI_RA(&ah->iniModes, i, 0); - u32 val = INI_RA(&ah->iniModes, i, modesIndex); - - if (reg == AR_AN_TOP2 && ah->need_an_top2_fixup) - val &= ~AR_AN_TOP2_PWDCLKIND; - - REG_WRITE(ah, reg, val); - - if (reg >= 0x7800 && reg < 0x78a0 - && ah->config.analog_shiftreg) { - udelay(100); - } - - DO_DELAY(regWrites); - } - - if (AR_SREV_9280(ah) || AR_SREV_9287_10_OR_LATER(ah)) - REG_WRITE_ARRAY(&ah->iniModesRxGain, modesIndex, regWrites); - - if (AR_SREV_9280(ah) || AR_SREV_9285_12_OR_LATER(ah) || - AR_SREV_9287_10_OR_LATER(ah)) - REG_WRITE_ARRAY(&ah->iniModesTxGain, modesIndex, regWrites); - - if (AR_SREV_9271_10(ah)) - REG_WRITE_ARRAY(&ah->iniModes_9271_1_0_only, - modesIndex, regWrites); - - /* Write common array parameters */ - for (i = 0; i < ah->iniCommon.ia_rows; i++) { - u32 reg = INI_RA(&ah->iniCommon, i, 0); - u32 val = INI_RA(&ah->iniCommon, i, 1); - - REG_WRITE(ah, reg, val); - - if (reg >= 0x7800 && reg < 0x78a0 - && ah->config.analog_shiftreg) { - udelay(100); - } - - DO_DELAY(regWrites); - } - - if (AR_SREV_9271(ah)) { - if (ah->eep_ops->get_eeprom(ah, EEP_TXGAIN_TYPE) == 1) - REG_WRITE_ARRAY(&ah->iniModes_high_power_tx_gain_9271, - modesIndex, regWrites); - else - REG_WRITE_ARRAY(&ah->iniModes_normal_power_tx_gain_9271, - modesIndex, regWrites); - } - - REG_WRITE_ARRAY(&ah->iniBB_RfGain, freqIndex, regWrites); - - if (AR_SREV_9280_20(ah) && IS_CHAN_A_5MHZ_SPACED(chan)) { - REG_WRITE_ARRAY(&ah->iniModesAdditional, modesIndex, - regWrites); - } - - ath9k_hw_override_ini(ah, chan); - ath9k_hw_set_regs(ah, chan); - ath9k_hw_init_chain_masks(ah); - - if (OLC_FOR_AR9280_20_LATER) - ath9k_olc_init(ah); - - /* Set TX power */ - ah->eep_ops->set_txpower(ah, chan, - ath9k_regd_get_ctl(regulatory, chan), - channel->max_antenna_gain * 2, - channel->max_power * 2, - min((u32) MAX_RATE_POWER, - (u32) regulatory->power_limit)); - - /* Write analog registers */ - if (!ath9k_hw_set_rf_regs(ah, chan, freqIndex)) { - ath_print(ath9k_hw_common(ah), ATH_DBG_FATAL, - "ar5416SetRfRegs failed\n"); - return -EIO; - } - - return 0; -} - /****************************************/ /* Reset and Channel Switching Routines */ /****************************************/ -static void ath9k_hw_set_rfmode(struct ath_hw *ah, struct ath9k_channel *chan) -{ - u32 rfMode = 0; - - if (chan == NULL) - return; - - rfMode |= (IS_CHAN_B(chan) || IS_CHAN_G(chan)) - ? AR_PHY_MODE_DYNAMIC : AR_PHY_MODE_OFDM; - - if (!AR_SREV_9280_10_OR_LATER(ah)) - rfMode |= (IS_CHAN_5GHZ(chan)) ? - AR_PHY_MODE_RF5GHZ : AR_PHY_MODE_RF2GHZ; - - if (AR_SREV_9280_20(ah) && IS_CHAN_A_5MHZ_SPACED(chan)) - rfMode |= (AR_PHY_MODE_DYNAMIC | AR_PHY_MODE_DYN_CCK_DISABLE); - - REG_WRITE(ah, AR_PHY_MODE, rfMode); -} - -static void ath9k_hw_mark_phy_inactive(struct ath_hw *ah) -{ - REG_WRITE(ah, AR_PHY_ACTIVE, AR_PHY_ACTIVE_DIS); -} - static inline void ath9k_hw_set_dma(struct ath_hw *ah) { u32 regval; @@ -1620,10 +1315,8 @@ static void ath9k_hw_set_operating_mode(struct ath_hw *ah, int opmode) } } -static inline void ath9k_hw_get_delta_slope_vals(struct ath_hw *ah, - u32 coef_scaled, - u32 *coef_mantissa, - u32 *coef_exponent) +void ath9k_hw_get_delta_slope_vals(struct ath_hw *ah, u32 coef_scaled, + u32 *coef_mantissa, u32 *coef_exponent) { u32 coef_exp, coef_man; @@ -1639,40 +1332,6 @@ static inline void ath9k_hw_get_delta_slope_vals(struct ath_hw *ah, *coef_exponent = coef_exp - 16; } -static void ath9k_hw_set_delta_slope(struct ath_hw *ah, - struct ath9k_channel *chan) -{ - u32 coef_scaled, ds_coef_exp, ds_coef_man; - u32 clockMhzScaled = 0x64000000; - struct chan_centers centers; - - if (IS_CHAN_HALF_RATE(chan)) - clockMhzScaled = clockMhzScaled >> 1; - else if (IS_CHAN_QUARTER_RATE(chan)) - clockMhzScaled = clockMhzScaled >> 2; - - ath9k_hw_get_channel_centers(ah, chan, ¢ers); - coef_scaled = clockMhzScaled / centers.synth_center; - - ath9k_hw_get_delta_slope_vals(ah, coef_scaled, &ds_coef_man, - &ds_coef_exp); - - REG_RMW_FIELD(ah, AR_PHY_TIMING3, - AR_PHY_TIMING3_DSC_MAN, ds_coef_man); - REG_RMW_FIELD(ah, AR_PHY_TIMING3, - AR_PHY_TIMING3_DSC_EXP, ds_coef_exp); - - coef_scaled = (9 * coef_scaled) / 10; - - ath9k_hw_get_delta_slope_vals(ah, coef_scaled, &ds_coef_man, - &ds_coef_exp); - - REG_RMW_FIELD(ah, AR_PHY_HALFGI, - AR_PHY_HALFGI_DSC_MAN, ds_coef_man); - REG_RMW_FIELD(ah, AR_PHY_HALFGI, - AR_PHY_HALFGI_DSC_EXP, ds_coef_exp); -} - static bool ath9k_hw_set_reset(struct ath_hw *ah, int type) { u32 rst_flags; @@ -1779,34 +1438,6 @@ static bool ath9k_hw_set_reset_reg(struct ath_hw *ah, u32 type) } } -static void ath9k_hw_set_regs(struct ath_hw *ah, struct ath9k_channel *chan) -{ - u32 phymode; - u32 enableDacFifo = 0; - - if (AR_SREV_9285_10_OR_LATER(ah)) - enableDacFifo = (REG_READ(ah, AR_PHY_TURBO) & - AR_PHY_FC_ENABLE_DAC_FIFO); - - phymode = AR_PHY_FC_HT_EN | AR_PHY_FC_SHORT_GI_40 - | AR_PHY_FC_SINGLE_HT_LTF1 | AR_PHY_FC_WALSH | enableDacFifo; - - if (IS_CHAN_HT40(chan)) { - phymode |= AR_PHY_FC_DYN2040_EN; - - if ((chan->chanmode == CHANNEL_A_HT40PLUS) || - (chan->chanmode == CHANNEL_G_HT40PLUS)) - phymode |= AR_PHY_FC_DYN2040_PRI_CH; - - } - REG_WRITE(ah, AR_PHY_TURBO, phymode); - - ath9k_hw_set11nmac2040(ah); - - REG_WRITE(ah, AR_GTXTO, 25 << AR_GTXTO_TIMEOUT_LIMIT_S); - REG_WRITE(ah, AR_CST, 0xF << AR_CST_TIMEOUT_LIMIT_S); -} - static bool ath9k_hw_chip_reset(struct ath_hw *ah, struct ath9k_channel *chan) { @@ -1832,7 +1463,7 @@ static bool ath9k_hw_channel_change(struct ath_hw *ah, struct ath_regulatory *regulatory = ath9k_hw_regulatory(ah); struct ath_common *common = ath9k_hw_common(ah); struct ieee80211_channel *channel = chan->chan; - u32 synthDelay, qnum; + u32 qnum; int r; for (qnum = 0; qnum < AR_NUM_QCU; qnum++) { @@ -1844,17 +1475,15 @@ static bool ath9k_hw_channel_change(struct ath_hw *ah, } } - REG_WRITE(ah, AR_PHY_RFBUS_REQ, AR_PHY_RFBUS_REQ_EN); - if (!ath9k_hw_wait(ah, AR_PHY_RFBUS_GRANT, AR_PHY_RFBUS_GRANT_EN, - AR_PHY_RFBUS_GRANT_EN, AH_WAIT_TIMEOUT)) { + if (!ath9k_hw_rfbus_req(ah)) { ath_print(common, ATH_DBG_FATAL, "Could not kill baseband RX\n"); return false; } - ath9k_hw_set_regs(ah, chan); + ath9k_hw_set_channel_regs(ah, chan); - r = ah->ath9k_hw_rf_set_freq(ah, chan); + r = ath9k_hw_rf_set_freq(ah, chan); if (r) { ath_print(common, ATH_DBG_FATAL, "Failed to set channel\n"); @@ -1868,20 +1497,12 @@ static bool ath9k_hw_channel_change(struct ath_hw *ah, min((u32) MAX_RATE_POWER, (u32) regulatory->power_limit)); - synthDelay = REG_READ(ah, AR_PHY_RX_DELAY) & AR_PHY_RX_DELAY_DELAY; - if (IS_CHAN_B(chan)) - synthDelay = (4 * synthDelay) / 22; - else - synthDelay /= 10; - - udelay(synthDelay + BASE_ACTIVATE_DELAY); - - REG_WRITE(ah, AR_PHY_RFBUS_REQ, 0); + ath9k_hw_rfbus_done(ah); if (IS_CHAN_OFDM(chan) || IS_CHAN_HT(chan)) ath9k_hw_set_delta_slope(ah, chan); - ah->ath9k_hw_spur_mitigate_freq(ah, chan); + ath9k_hw_spur_mitigate_freq(ah, chan); if (!chan->oneTimeCalsDone) chan->oneTimeCalsDone = true; @@ -1889,18 +1510,6 @@ static bool ath9k_hw_channel_change(struct ath_hw *ah, return true; } -static void ath9k_enable_rfkill(struct ath_hw *ah) -{ - REG_SET_BIT(ah, AR_GPIO_INPUT_EN_VAL, - AR_GPIO_INPUT_EN_VAL_RFSILENT_BB); - - REG_CLR_BIT(ah, AR_GPIO_INPUT_MUX2, - AR_GPIO_INPUT_MUX2_RFSILENT); - - ath9k_hw_cfg_gpio_input(ah, ah->rfkill_gpio); - REG_SET_BIT(ah, AR_PHY_TEST, RFSILENT_BB); -} - int ath9k_hw_reset(struct ath_hw *ah, struct ath9k_channel *chan, bool bChannelChange) { @@ -1910,7 +1519,7 @@ int ath9k_hw_reset(struct ath_hw *ah, struct ath9k_channel *chan, u32 saveDefAntenna; u32 macStaId1; u64 tsf = 0; - int i, rx_chainmask, r; + int i, r; ah->txchainmask = common->tx_chainmask; ah->rxchainmask = common->rx_chainmask; @@ -1982,16 +1591,6 @@ int ath9k_hw_reset(struct ath_hw *ah, struct ath9k_channel *chan, if (AR_SREV_9280_10_OR_LATER(ah)) REG_SET_BIT(ah, AR_GPIO_INPUT_EN_VAL, AR_GPIO_JTAG_DISABLE); - if (AR_SREV_9287_12_OR_LATER(ah)) { - /* Enable ASYNC FIFO */ - REG_SET_BIT(ah, AR_MAC_PCU_ASYNC_FIFO_REG3, - AR_MAC_PCU_ASYNC_FIFO_REG3_DATAPATH_SEL); - REG_SET_BIT(ah, AR_PHY_MODE, AR_PHY_MODE_ASYNCFIFO); - REG_CLR_BIT(ah, AR_MAC_PCU_ASYNC_FIFO_REG3, - AR_MAC_PCU_ASYNC_FIFO_REG3_SOFT_RESET); - REG_SET_BIT(ah, AR_MAC_PCU_ASYNC_FIFO_REG3, - AR_MAC_PCU_ASYNC_FIFO_REG3_SOFT_RESET); - } r = ath9k_hw_process_ini(ah, chan); if (r) return r; @@ -2016,7 +1615,7 @@ int ath9k_hw_reset(struct ath_hw *ah, struct ath9k_channel *chan, if (IS_CHAN_OFDM(chan) || IS_CHAN_HT(chan)) ath9k_hw_set_delta_slope(ah, chan); - ah->ath9k_hw_spur_mitigate_freq(ah, chan); + ath9k_hw_spur_mitigate_freq(ah, chan); ah->eep_ops->set_board_values(ah, chan); REG_WRITE(ah, AR_STA_ID0, get_unaligned_le32(common->macaddr)); @@ -2038,7 +1637,7 @@ int ath9k_hw_reset(struct ath_hw *ah, struct ath9k_channel *chan, REG_WRITE(ah, AR_RSSI_THR, INIT_RSSI_THR); - r = ah->ath9k_hw_rf_set_freq(ah, chan); + r = ath9k_hw_rf_set_freq(ah, chan); if (r) return r; @@ -2095,12 +1694,7 @@ int ath9k_hw_reset(struct ath_hw *ah, struct ath9k_channel *chan, if (!ath9k_hw_init_cal(ah, chan)) return -EIO; - rx_chainmask = ah->rxchainmask; - if ((rx_chainmask == 0x5) || (rx_chainmask == 0x3)) { - REG_WRITE(ah, AR_PHY_RX_CHAINMASK, rx_chainmask); - REG_WRITE(ah, AR_PHY_CAL_CHAINMASK, rx_chainmask); - } - + ath9k_hw_restore_chainmask(ah); REG_WRITE(ah, AR_CFG_LED, saveLedState | AR_CFG_SCLK_32KHZ); /* @@ -3322,10 +2916,6 @@ bool ath9k_hw_getcapability(struct ath_hw *ah, enum ath9k_capability_type type, case ATH9K_CAP_TKIP_SPLIT: return (ah->misc_mode & AR_PCU_MIC_NEW_LOC_ENA) ? false : true; - case ATH9K_CAP_DIVERSITY: - return (REG_READ(ah, AR_PHY_CCK_DETECT) & - AR_PHY_CCK_DETECT_BB_ENABLE_ANT_FAST_DIV) ? - true : false; case ATH9K_CAP_MCAST_KEYSRCH: switch (capability) { case 0: @@ -3368,8 +2958,6 @@ EXPORT_SYMBOL(ath9k_hw_getcapability); bool ath9k_hw_setcapability(struct ath_hw *ah, enum ath9k_capability_type type, u32 capability, u32 setting, int *status) { - u32 v; - switch (type) { case ATH9K_CAP_TKIP_MIC: if (setting) @@ -3379,14 +2967,6 @@ bool ath9k_hw_setcapability(struct ath_hw *ah, enum ath9k_capability_type type, ah->sta_id1_defaults &= ~AR_STA_ID1_CRPT_MIC_ENABLE; return true; - case ATH9K_CAP_DIVERSITY: - v = REG_READ(ah, AR_PHY_CCK_DETECT); - if (setting) - v |= AR_PHY_CCK_DETECT_BB_ENABLE_ANT_FAST_DIV; - else - v &= ~AR_PHY_CCK_DETECT_BB_ENABLE_ANT_FAST_DIV; - REG_WRITE(ah, AR_PHY_CCK_DETECT, v); - return true; case ATH9K_CAP_MCAST_KEYSRCH: if (setting) ah->sta_id1_defaults |= AR_STA_ID1_MCAST_KSRCH; @@ -3981,4 +3561,9 @@ static void ar9002_hw_attach_ops(struct ath_hw *ah) priv_ops->macversion_supported = ar9002_hw_macversion_supported; ops->config_pci_powersave = ar9002_hw_configpcipowersave; + + if (AR_SREV_9280_10_OR_LATER(ah)) + ar9002_hw_attach_phy_ops(ah); + else + ar5008_hw_attach_phy_ops(ah); } diff --git a/drivers/net/wireless/ath/ath9k/hw.h b/drivers/net/wireless/ath/ath9k/hw.h index dfe8502866b..d740e9cc721 100644 --- a/drivers/net/wireless/ath/ath9k/hw.h +++ b/drivers/net/wireless/ath/ath9k/hw.h @@ -171,7 +171,6 @@ enum ath9k_capability_type { ATH9K_CAP_CIPHER = 0, ATH9K_CAP_TKIP_MIC, ATH9K_CAP_TKIP_SPLIT, - ATH9K_CAP_DIVERSITY, ATH9K_CAP_TXPOW, ATH9K_CAP_MCAST_KEYSRCH, ATH9K_CAP_DS @@ -449,11 +448,41 @@ struct ath_gen_timer_table { * @init_cal_settings: Initializes calibration settings * @init_mode_regs: Initializes mode registers * @macversion_supported: If this specific mac revision is supported + * + * @rf_set_freq: change frequency + * @spur_mitigate_freq: spur mitigation + * @rf_alloc_ext_banks: + * @rf_free_ext_banks: + * @set_rf_regs: */ struct ath_hw_private_ops { void (*init_cal_settings)(struct ath_hw *ah); void (*init_mode_regs)(struct ath_hw *ah); bool (*macversion_supported)(u32 macversion); + + /* PHY ops */ + int (*rf_set_freq)(struct ath_hw *ah, + struct ath9k_channel *chan); + void (*spur_mitigate_freq)(struct ath_hw *ah, + struct ath9k_channel *chan); + int (*rf_alloc_ext_banks)(struct ath_hw *ah); + void (*rf_free_ext_banks)(struct ath_hw *ah); + bool (*set_rf_regs)(struct ath_hw *ah, + struct ath9k_channel *chan, + u16 modesIndex); + void (*set_channel_regs)(struct ath_hw *ah, struct ath9k_channel *chan); + void (*init_bb)(struct ath_hw *ah, + struct ath9k_channel *chan); + int (*process_ini)(struct ath_hw *ah, struct ath9k_channel *chan); + void (*olc_init)(struct ath_hw *ah); + void (*set_rfmode)(struct ath_hw *ah, struct ath9k_channel *chan); + void (*mark_phy_inactive)(struct ath_hw *ah); + void (*set_delta_slope)(struct ath_hw *ah, struct ath9k_channel *chan); + bool (*rfbus_req)(struct ath_hw *ah); + void (*rfbus_done)(struct ath_hw *ah); + void (*enable_rfkill)(struct ath_hw *ah); + void (*restore_chainmask)(struct ath_hw *ah); + void (*set_diversity)(struct ath_hw *ah, bool value); }; /** @@ -563,13 +592,6 @@ struct ath_hw { DONT_USE_32KHZ, } enable_32kHz_clock; - /* Callback for radio frequency change */ - int (*ath9k_hw_rf_set_freq)(struct ath_hw *ah, struct ath9k_channel *chan); - - /* Callback for baseband spur frequency */ - void (*ath9k_hw_spur_mitigate_freq)(struct ath_hw *ah, - struct ath9k_channel *chan); - /* Private to hardware code */ struct ath_hw_private_ops private_ops; /* Accessed by the lower level driver */ @@ -675,6 +697,7 @@ bool ath9k_hw_getcapability(struct ath_hw *ah, enum ath9k_capability_type type, u32 capability, u32 *result); bool ath9k_hw_setcapability(struct ath_hw *ah, enum ath9k_capability_type type, u32 capability, u32 setting, int *status); +u32 ath9k_regd_get_ctl(struct ath_regulatory *reg, struct ath9k_channel *chan); /* Key Cache Management */ bool ath9k_hw_keyreset(struct ath_hw *ah, u16 entry); @@ -752,6 +775,13 @@ void ath9k_hw_name(struct ath_hw *ah, char *hw_name, size_t len); /* HTC */ void ath9k_hw_htc_resetinit(struct ath_hw *ah); +/* PHY */ +void ath9k_hw_get_delta_slope_vals(struct ath_hw *ah, u32 coef_scaled, + u32 *coef_mantissa, u32 *coef_exponent); + +void ar9002_hw_attach_phy_ops(struct ath_hw *ah); +void ar5008_hw_attach_phy_ops(struct ath_hw *ah); + #define ATH_PCIE_CAP_LINK_CTRL 0x70 #define ATH_PCIE_CAP_LINK_L0S 1 #define ATH_PCIE_CAP_LINK_L1 2 diff --git a/drivers/net/wireless/ath/ath9k/init.c b/drivers/net/wireless/ath/ath9k/init.c index 62682cc2e21..1956c611503 100644 --- a/drivers/net/wireless/ath/ath9k/init.c +++ b/drivers/net/wireless/ath/ath9k/init.c @@ -512,7 +512,7 @@ static void ath9k_init_misc(struct ath_softc *sc) common->tx_chainmask = sc->sc_ah->caps.tx_chainmask; common->rx_chainmask = sc->sc_ah->caps.rx_chainmask; - ath9k_hw_setcapability(sc->sc_ah, ATH9K_CAP_DIVERSITY, 1, true, NULL); + ath9k_hw_set_diversity(sc->sc_ah, true); sc->rx.defant = ath9k_hw_getdefantenna(sc->sc_ah); if (sc->sc_ah->caps.hw_caps & ATH9K_HW_CAP_BSSIDMASK) diff --git a/drivers/net/wireless/ath/ath9k/phy.c b/drivers/net/wireless/ath/ath9k/phy.c deleted file mode 100644 index 02d40dfd3a9..00000000000 --- a/drivers/net/wireless/ath/ath9k/phy.c +++ /dev/null @@ -1,961 +0,0 @@ -/* - * Copyright (c) 2008-2009 Atheros Communications Inc. - * - * Permission to use, copy, modify, and/or distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -/** - * DOC: Programming Atheros 802.11n analog front end radios - * - * AR5416 MAC based PCI devices and AR518 MAC based PCI-Express - * devices have either an external AR2133 analog front end radio for single - * band 2.4 GHz communication or an AR5133 analog front end radio for dual - * band 2.4 GHz / 5 GHz communication. - * - * All devices after the AR5416 and AR5418 family starting with the AR9280 - * have their analog front radios, MAC/BB and host PCIe/USB interface embedded - * into a single-chip and require less programming. - * - * The following single-chips exist with a respective embedded radio: - * - * AR9280 - 11n dual-band 2x2 MIMO for PCIe - * AR9281 - 11n single-band 1x2 MIMO for PCIe - * AR9285 - 11n single-band 1x1 for PCIe - * AR9287 - 11n single-band 2x2 MIMO for PCIe - * - * AR9220 - 11n dual-band 2x2 MIMO for PCI - * AR9223 - 11n single-band 2x2 MIMO for PCI - * - * AR9287 - 11n single-band 1x1 MIMO for USB - */ - -#include "hw.h" - -/** - * ath9k_hw_ar9280_set_channel - set channel on single-chip device - * @ah: atheros hardware structure - * @chan: - * - * This is the function to change channel on single-chip devices, that is - * all devices after ar9280. - * - * This function takes the channel value in MHz and sets - * hardware channel value. Assumes writes have been enabled to analog bus. - * - * Actual Expression, - * - * For 2GHz channel, - * Channel Frequency = (3/4) * freq_ref * (chansel[8:0] + chanfrac[16:0]/2^17) - * (freq_ref = 40MHz) - * - * For 5GHz channel, - * Channel Frequency = (3/2) * freq_ref * (chansel[8:0] + chanfrac[16:0]/2^10) - * (freq_ref = 40MHz/(24>>amodeRefSel)) - */ -int ath9k_hw_ar9280_set_channel(struct ath_hw *ah, struct ath9k_channel *chan) -{ - u16 bMode, fracMode, aModeRefSel = 0; - u32 freq, ndiv, channelSel = 0, channelFrac = 0, reg32 = 0; - struct chan_centers centers; - u32 refDivA = 24; - - ath9k_hw_get_channel_centers(ah, chan, ¢ers); - freq = centers.synth_center; - - reg32 = REG_READ(ah, AR_PHY_SYNTH_CONTROL); - reg32 &= 0xc0000000; - - if (freq < 4800) { /* 2 GHz, fractional mode */ - u32 txctl; - int regWrites = 0; - - bMode = 1; - fracMode = 1; - aModeRefSel = 0; - channelSel = (freq * 0x10000) / 15; - - if (AR_SREV_9287_11_OR_LATER(ah)) { - if (freq == 2484) { - /* Enable channel spreading for channel 14 */ - REG_WRITE_ARRAY(&ah->iniCckfirJapan2484, - 1, regWrites); - } else { - REG_WRITE_ARRAY(&ah->iniCckfirNormal, - 1, regWrites); - } - } else { - txctl = REG_READ(ah, AR_PHY_CCK_TX_CTRL); - if (freq == 2484) { - /* Enable channel spreading for channel 14 */ - REG_WRITE(ah, AR_PHY_CCK_TX_CTRL, - txctl | AR_PHY_CCK_TX_CTRL_JAPAN); - } else { - REG_WRITE(ah, AR_PHY_CCK_TX_CTRL, - txctl &~ AR_PHY_CCK_TX_CTRL_JAPAN); - } - } - } else { - bMode = 0; - fracMode = 0; - - switch(ah->eep_ops->get_eeprom(ah, EEP_FRAC_N_5G)) { - case 0: - if ((freq % 20) == 0) { - aModeRefSel = 3; - } else if ((freq % 10) == 0) { - aModeRefSel = 2; - } - if (aModeRefSel) - break; - case 1: - default: - aModeRefSel = 0; - /* - * Enable 2G (fractional) mode for channels - * which are 5MHz spaced. - */ - fracMode = 1; - refDivA = 1; - channelSel = (freq * 0x8000) / 15; - - /* RefDivA setting */ - REG_RMW_FIELD(ah, AR_AN_SYNTH9, - AR_AN_SYNTH9_REFDIVA, refDivA); - - } - - if (!fracMode) { - ndiv = (freq * (refDivA >> aModeRefSel)) / 60; - channelSel = ndiv & 0x1ff; - channelFrac = (ndiv & 0xfffffe00) * 2; - channelSel = (channelSel << 17) | channelFrac; - } - } - - reg32 = reg32 | - (bMode << 29) | - (fracMode << 28) | (aModeRefSel << 26) | (channelSel); - - REG_WRITE(ah, AR_PHY_SYNTH_CONTROL, reg32); - - ah->curchan = chan; - ah->curchan_rad_index = -1; - - return 0; -} - -/** - * ath9k_hw_9280_spur_mitigate - convert baseband spur frequency - * @ah: atheros hardware structure - * @chan: - * - * For single-chip solutions. Converts to baseband spur frequency given the - * input channel frequency and compute register settings below. - */ -void ath9k_hw_9280_spur_mitigate(struct ath_hw *ah, struct ath9k_channel *chan) -{ - int bb_spur = AR_NO_SPUR; - int freq; - int bin, cur_bin; - int bb_spur_off, spur_subchannel_sd; - int spur_freq_sd; - int spur_delta_phase; - int denominator; - int upper, lower, cur_vit_mask; - int tmp, newVal; - int i; - int pilot_mask_reg[4] = { AR_PHY_TIMING7, AR_PHY_TIMING8, - AR_PHY_PILOT_MASK_01_30, AR_PHY_PILOT_MASK_31_60 - }; - int chan_mask_reg[4] = { AR_PHY_TIMING9, AR_PHY_TIMING10, - AR_PHY_CHANNEL_MASK_01_30, AR_PHY_CHANNEL_MASK_31_60 - }; - int inc[4] = { 0, 100, 0, 0 }; - struct chan_centers centers; - - int8_t mask_m[123]; - int8_t mask_p[123]; - int8_t mask_amt; - int tmp_mask; - int cur_bb_spur; - bool is2GHz = IS_CHAN_2GHZ(chan); - - memset(&mask_m, 0, sizeof(int8_t) * 123); - memset(&mask_p, 0, sizeof(int8_t) * 123); - - ath9k_hw_get_channel_centers(ah, chan, ¢ers); - freq = centers.synth_center; - - ah->config.spurmode = SPUR_ENABLE_EEPROM; - for (i = 0; i < AR_EEPROM_MODAL_SPURS; i++) { - cur_bb_spur = ah->eep_ops->get_spur_channel(ah, i, is2GHz); - - if (is2GHz) - cur_bb_spur = (cur_bb_spur / 10) + AR_BASE_FREQ_2GHZ; - else - cur_bb_spur = (cur_bb_spur / 10) + AR_BASE_FREQ_5GHZ; - - if (AR_NO_SPUR == cur_bb_spur) - break; - cur_bb_spur = cur_bb_spur - freq; - - if (IS_CHAN_HT40(chan)) { - if ((cur_bb_spur > -AR_SPUR_FEEQ_BOUND_HT40) && - (cur_bb_spur < AR_SPUR_FEEQ_BOUND_HT40)) { - bb_spur = cur_bb_spur; - break; - } - } else if ((cur_bb_spur > -AR_SPUR_FEEQ_BOUND_HT20) && - (cur_bb_spur < AR_SPUR_FEEQ_BOUND_HT20)) { - bb_spur = cur_bb_spur; - break; - } - } - - if (AR_NO_SPUR == bb_spur) { - REG_CLR_BIT(ah, AR_PHY_FORCE_CLKEN_CCK, - AR_PHY_FORCE_CLKEN_CCK_MRC_MUX); - return; - } else { - REG_CLR_BIT(ah, AR_PHY_FORCE_CLKEN_CCK, - AR_PHY_FORCE_CLKEN_CCK_MRC_MUX); - } - - bin = bb_spur * 320; - - tmp = REG_READ(ah, AR_PHY_TIMING_CTRL4(0)); - - newVal = tmp | (AR_PHY_TIMING_CTRL4_ENABLE_SPUR_RSSI | - AR_PHY_TIMING_CTRL4_ENABLE_SPUR_FILTER | - AR_PHY_TIMING_CTRL4_ENABLE_CHAN_MASK | - AR_PHY_TIMING_CTRL4_ENABLE_PILOT_MASK); - REG_WRITE(ah, AR_PHY_TIMING_CTRL4(0), newVal); - - newVal = (AR_PHY_SPUR_REG_MASK_RATE_CNTL | - AR_PHY_SPUR_REG_ENABLE_MASK_PPM | - AR_PHY_SPUR_REG_MASK_RATE_SELECT | - AR_PHY_SPUR_REG_ENABLE_VIT_SPUR_RSSI | - SM(SPUR_RSSI_THRESH, AR_PHY_SPUR_REG_SPUR_RSSI_THRESH)); - REG_WRITE(ah, AR_PHY_SPUR_REG, newVal); - - if (IS_CHAN_HT40(chan)) { - if (bb_spur < 0) { - spur_subchannel_sd = 1; - bb_spur_off = bb_spur + 10; - } else { - spur_subchannel_sd = 0; - bb_spur_off = bb_spur - 10; - } - } else { - spur_subchannel_sd = 0; - bb_spur_off = bb_spur; - } - - if (IS_CHAN_HT40(chan)) - spur_delta_phase = - ((bb_spur * 262144) / - 10) & AR_PHY_TIMING11_SPUR_DELTA_PHASE; - else - spur_delta_phase = - ((bb_spur * 524288) / - 10) & AR_PHY_TIMING11_SPUR_DELTA_PHASE; - - denominator = IS_CHAN_2GHZ(chan) ? 44 : 40; - spur_freq_sd = ((bb_spur_off * 2048) / denominator) & 0x3ff; - - newVal = (AR_PHY_TIMING11_USE_SPUR_IN_AGC | - SM(spur_freq_sd, AR_PHY_TIMING11_SPUR_FREQ_SD) | - SM(spur_delta_phase, AR_PHY_TIMING11_SPUR_DELTA_PHASE)); - REG_WRITE(ah, AR_PHY_TIMING11, newVal); - - newVal = spur_subchannel_sd << AR_PHY_SFCORR_SPUR_SUBCHNL_SD_S; - REG_WRITE(ah, AR_PHY_SFCORR_EXT, newVal); - - cur_bin = -6000; - upper = bin + 100; - lower = bin - 100; - - for (i = 0; i < 4; i++) { - int pilot_mask = 0; - int chan_mask = 0; - int bp = 0; - for (bp = 0; bp < 30; bp++) { - if ((cur_bin > lower) && (cur_bin < upper)) { - pilot_mask = pilot_mask | 0x1 << bp; - chan_mask = chan_mask | 0x1 << bp; - } - cur_bin += 100; - } - cur_bin += inc[i]; - REG_WRITE(ah, pilot_mask_reg[i], pilot_mask); - REG_WRITE(ah, chan_mask_reg[i], chan_mask); - } - - cur_vit_mask = 6100; - upper = bin + 120; - lower = bin - 120; - - for (i = 0; i < 123; i++) { - if ((cur_vit_mask > lower) && (cur_vit_mask < upper)) { - - /* workaround for gcc bug #37014 */ - volatile int tmp_v = abs(cur_vit_mask - bin); - - if (tmp_v < 75) - mask_amt = 1; - else - mask_amt = 0; - if (cur_vit_mask < 0) - mask_m[abs(cur_vit_mask / 100)] = mask_amt; - else - mask_p[cur_vit_mask / 100] = mask_amt; - } - cur_vit_mask -= 100; - } - - tmp_mask = (mask_m[46] << 30) | (mask_m[47] << 28) - | (mask_m[48] << 26) | (mask_m[49] << 24) - | (mask_m[50] << 22) | (mask_m[51] << 20) - | (mask_m[52] << 18) | (mask_m[53] << 16) - | (mask_m[54] << 14) | (mask_m[55] << 12) - | (mask_m[56] << 10) | (mask_m[57] << 8) - | (mask_m[58] << 6) | (mask_m[59] << 4) - | (mask_m[60] << 2) | (mask_m[61] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK_1, tmp_mask); - REG_WRITE(ah, AR_PHY_VIT_MASK2_M_46_61, tmp_mask); - - tmp_mask = (mask_m[31] << 28) - | (mask_m[32] << 26) | (mask_m[33] << 24) - | (mask_m[34] << 22) | (mask_m[35] << 20) - | (mask_m[36] << 18) | (mask_m[37] << 16) - | (mask_m[48] << 14) | (mask_m[39] << 12) - | (mask_m[40] << 10) | (mask_m[41] << 8) - | (mask_m[42] << 6) | (mask_m[43] << 4) - | (mask_m[44] << 2) | (mask_m[45] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK_2, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_M_31_45, tmp_mask); - - tmp_mask = (mask_m[16] << 30) | (mask_m[16] << 28) - | (mask_m[18] << 26) | (mask_m[18] << 24) - | (mask_m[20] << 22) | (mask_m[20] << 20) - | (mask_m[22] << 18) | (mask_m[22] << 16) - | (mask_m[24] << 14) | (mask_m[24] << 12) - | (mask_m[25] << 10) | (mask_m[26] << 8) - | (mask_m[27] << 6) | (mask_m[28] << 4) - | (mask_m[29] << 2) | (mask_m[30] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK_3, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_M_16_30, tmp_mask); - - tmp_mask = (mask_m[0] << 30) | (mask_m[1] << 28) - | (mask_m[2] << 26) | (mask_m[3] << 24) - | (mask_m[4] << 22) | (mask_m[5] << 20) - | (mask_m[6] << 18) | (mask_m[7] << 16) - | (mask_m[8] << 14) | (mask_m[9] << 12) - | (mask_m[10] << 10) | (mask_m[11] << 8) - | (mask_m[12] << 6) | (mask_m[13] << 4) - | (mask_m[14] << 2) | (mask_m[15] << 0); - REG_WRITE(ah, AR_PHY_MASK_CTL, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_M_00_15, tmp_mask); - - tmp_mask = (mask_p[15] << 28) - | (mask_p[14] << 26) | (mask_p[13] << 24) - | (mask_p[12] << 22) | (mask_p[11] << 20) - | (mask_p[10] << 18) | (mask_p[9] << 16) - | (mask_p[8] << 14) | (mask_p[7] << 12) - | (mask_p[6] << 10) | (mask_p[5] << 8) - | (mask_p[4] << 6) | (mask_p[3] << 4) - | (mask_p[2] << 2) | (mask_p[1] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK2_1, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_P_15_01, tmp_mask); - - tmp_mask = (mask_p[30] << 28) - | (mask_p[29] << 26) | (mask_p[28] << 24) - | (mask_p[27] << 22) | (mask_p[26] << 20) - | (mask_p[25] << 18) | (mask_p[24] << 16) - | (mask_p[23] << 14) | (mask_p[22] << 12) - | (mask_p[21] << 10) | (mask_p[20] << 8) - | (mask_p[19] << 6) | (mask_p[18] << 4) - | (mask_p[17] << 2) | (mask_p[16] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK2_2, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_P_30_16, tmp_mask); - - tmp_mask = (mask_p[45] << 28) - | (mask_p[44] << 26) | (mask_p[43] << 24) - | (mask_p[42] << 22) | (mask_p[41] << 20) - | (mask_p[40] << 18) | (mask_p[39] << 16) - | (mask_p[38] << 14) | (mask_p[37] << 12) - | (mask_p[36] << 10) | (mask_p[35] << 8) - | (mask_p[34] << 6) | (mask_p[33] << 4) - | (mask_p[32] << 2) | (mask_p[31] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK2_3, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_P_45_31, tmp_mask); - - tmp_mask = (mask_p[61] << 30) | (mask_p[60] << 28) - | (mask_p[59] << 26) | (mask_p[58] << 24) - | (mask_p[57] << 22) | (mask_p[56] << 20) - | (mask_p[55] << 18) | (mask_p[54] << 16) - | (mask_p[53] << 14) | (mask_p[52] << 12) - | (mask_p[51] << 10) | (mask_p[50] << 8) - | (mask_p[49] << 6) | (mask_p[48] << 4) - | (mask_p[47] << 2) | (mask_p[46] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK2_4, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_P_61_45, tmp_mask); -} - -/* All code below is for non single-chip solutions */ - -/** - * ath9k_phy_modify_rx_buffer() - perform analog swizzling of parameters - * @rfbuf: - * @reg32: - * @numBits: - * @firstBit: - * @column: - * - * Performs analog "swizzling" of parameters into their location. - * Used on external AR2133/AR5133 radios. - */ -static void ath9k_phy_modify_rx_buffer(u32 *rfBuf, u32 reg32, - u32 numBits, u32 firstBit, - u32 column) -{ - u32 tmp32, mask, arrayEntry, lastBit; - int32_t bitPosition, bitsLeft; - - tmp32 = ath9k_hw_reverse_bits(reg32, numBits); - arrayEntry = (firstBit - 1) / 8; - bitPosition = (firstBit - 1) % 8; - bitsLeft = numBits; - while (bitsLeft > 0) { - lastBit = (bitPosition + bitsLeft > 8) ? - 8 : bitPosition + bitsLeft; - mask = (((1 << lastBit) - 1) ^ ((1 << bitPosition) - 1)) << - (column * 8); - rfBuf[arrayEntry] &= ~mask; - rfBuf[arrayEntry] |= ((tmp32 << bitPosition) << - (column * 8)) & mask; - bitsLeft -= 8 - bitPosition; - tmp32 = tmp32 >> (8 - bitPosition); - bitPosition = 0; - arrayEntry++; - } -} - -/* - * Fix on 2.4 GHz band for orientation sensitivity issue by increasing - * rf_pwd_icsyndiv. - * - * Theoretical Rules: - * if 2 GHz band - * if forceBiasAuto - * if synth_freq < 2412 - * bias = 0 - * else if 2412 <= synth_freq <= 2422 - * bias = 1 - * else // synth_freq > 2422 - * bias = 2 - * else if forceBias > 0 - * bias = forceBias & 7 - * else - * no change, use value from ini file - * else - * no change, invalid band - * - * 1st Mod: - * 2422 also uses value of 2 - * - * - * 2nd Mod: - * Less than 2412 uses value of 0, 2412 and above uses value of 2 - */ -static void ath9k_hw_force_bias(struct ath_hw *ah, u16 synth_freq) -{ - struct ath_common *common = ath9k_hw_common(ah); - u32 tmp_reg; - int reg_writes = 0; - u32 new_bias = 0; - - if (!AR_SREV_5416(ah) || synth_freq >= 3000) { - return; - } - - BUG_ON(AR_SREV_9280_10_OR_LATER(ah)); - - if (synth_freq < 2412) - new_bias = 0; - else if (synth_freq < 2422) - new_bias = 1; - else - new_bias = 2; - - /* pre-reverse this field */ - tmp_reg = ath9k_hw_reverse_bits(new_bias, 3); - - ath_print(common, ATH_DBG_CONFIG, - "Force rf_pwd_icsyndiv to %1d on %4d\n", - new_bias, synth_freq); - - /* swizzle rf_pwd_icsyndiv */ - ath9k_phy_modify_rx_buffer(ah->analogBank6Data, tmp_reg, 3, 181, 3); - - /* write Bank 6 with new params */ - REG_WRITE_RF_ARRAY(&ah->iniBank6, ah->analogBank6Data, reg_writes); -} - -/** - * ath9k_hw_set_channel - tune to a channel on the external AR2133/AR5133 radios - * @ah: atheros hardware stucture - * @chan: - * - * For the external AR2133/AR5133 radios, takes the MHz channel value and set - * the channel value. Assumes writes enabled to analog bus and bank6 register - * cache in ah->analogBank6Data. - */ -int ath9k_hw_set_channel(struct ath_hw *ah, struct ath9k_channel *chan) -{ - struct ath_common *common = ath9k_hw_common(ah); - u32 channelSel = 0; - u32 bModeSynth = 0; - u32 aModeRefSel = 0; - u32 reg32 = 0; - u16 freq; - struct chan_centers centers; - - ath9k_hw_get_channel_centers(ah, chan, ¢ers); - freq = centers.synth_center; - - if (freq < 4800) { - u32 txctl; - - if (((freq - 2192) % 5) == 0) { - channelSel = ((freq - 672) * 2 - 3040) / 10; - bModeSynth = 0; - } else if (((freq - 2224) % 5) == 0) { - channelSel = ((freq - 704) * 2 - 3040) / 10; - bModeSynth = 1; - } else { - ath_print(common, ATH_DBG_FATAL, - "Invalid channel %u MHz\n", freq); - return -EINVAL; - } - - channelSel = (channelSel << 2) & 0xff; - channelSel = ath9k_hw_reverse_bits(channelSel, 8); - - txctl = REG_READ(ah, AR_PHY_CCK_TX_CTRL); - if (freq == 2484) { - - REG_WRITE(ah, AR_PHY_CCK_TX_CTRL, - txctl | AR_PHY_CCK_TX_CTRL_JAPAN); - } else { - REG_WRITE(ah, AR_PHY_CCK_TX_CTRL, - txctl & ~AR_PHY_CCK_TX_CTRL_JAPAN); - } - - } else if ((freq % 20) == 0 && freq >= 5120) { - channelSel = - ath9k_hw_reverse_bits(((freq - 4800) / 20 << 2), 8); - aModeRefSel = ath9k_hw_reverse_bits(1, 2); - } else if ((freq % 10) == 0) { - channelSel = - ath9k_hw_reverse_bits(((freq - 4800) / 10 << 1), 8); - if (AR_SREV_9100(ah) || AR_SREV_9160_10_OR_LATER(ah)) - aModeRefSel = ath9k_hw_reverse_bits(2, 2); - else - aModeRefSel = ath9k_hw_reverse_bits(1, 2); - } else if ((freq % 5) == 0) { - channelSel = ath9k_hw_reverse_bits((freq - 4800) / 5, 8); - aModeRefSel = ath9k_hw_reverse_bits(1, 2); - } else { - ath_print(common, ATH_DBG_FATAL, - "Invalid channel %u MHz\n", freq); - return -EINVAL; - } - - ath9k_hw_force_bias(ah, freq); - - reg32 = - (channelSel << 8) | (aModeRefSel << 2) | (bModeSynth << 1) | - (1 << 5) | 0x1; - - REG_WRITE(ah, AR_PHY(0x37), reg32); - - ah->curchan = chan; - ah->curchan_rad_index = -1; - - return 0; -} - -/** - * ath9k_hw_spur_mitigate - convert baseband spur frequency for external radios - * @ah: atheros hardware structure - * @chan: - * - * For non single-chip solutions. Converts to baseband spur frequency given the - * input channel frequency and compute register settings below. - */ -void ath9k_hw_spur_mitigate(struct ath_hw *ah, struct ath9k_channel *chan) -{ - int bb_spur = AR_NO_SPUR; - int bin, cur_bin; - int spur_freq_sd; - int spur_delta_phase; - int denominator; - int upper, lower, cur_vit_mask; - int tmp, new; - int i; - int pilot_mask_reg[4] = { AR_PHY_TIMING7, AR_PHY_TIMING8, - AR_PHY_PILOT_MASK_01_30, AR_PHY_PILOT_MASK_31_60 - }; - int chan_mask_reg[4] = { AR_PHY_TIMING9, AR_PHY_TIMING10, - AR_PHY_CHANNEL_MASK_01_30, AR_PHY_CHANNEL_MASK_31_60 - }; - int inc[4] = { 0, 100, 0, 0 }; - - int8_t mask_m[123]; - int8_t mask_p[123]; - int8_t mask_amt; - int tmp_mask; - int cur_bb_spur; - bool is2GHz = IS_CHAN_2GHZ(chan); - - memset(&mask_m, 0, sizeof(int8_t) * 123); - memset(&mask_p, 0, sizeof(int8_t) * 123); - - for (i = 0; i < AR_EEPROM_MODAL_SPURS; i++) { - cur_bb_spur = ah->eep_ops->get_spur_channel(ah, i, is2GHz); - if (AR_NO_SPUR == cur_bb_spur) - break; - cur_bb_spur = cur_bb_spur - (chan->channel * 10); - if ((cur_bb_spur > -95) && (cur_bb_spur < 95)) { - bb_spur = cur_bb_spur; - break; - } - } - - if (AR_NO_SPUR == bb_spur) - return; - - bin = bb_spur * 32; - - tmp = REG_READ(ah, AR_PHY_TIMING_CTRL4(0)); - new = tmp | (AR_PHY_TIMING_CTRL4_ENABLE_SPUR_RSSI | - AR_PHY_TIMING_CTRL4_ENABLE_SPUR_FILTER | - AR_PHY_TIMING_CTRL4_ENABLE_CHAN_MASK | - AR_PHY_TIMING_CTRL4_ENABLE_PILOT_MASK); - - REG_WRITE(ah, AR_PHY_TIMING_CTRL4(0), new); - - new = (AR_PHY_SPUR_REG_MASK_RATE_CNTL | - AR_PHY_SPUR_REG_ENABLE_MASK_PPM | - AR_PHY_SPUR_REG_MASK_RATE_SELECT | - AR_PHY_SPUR_REG_ENABLE_VIT_SPUR_RSSI | - SM(SPUR_RSSI_THRESH, AR_PHY_SPUR_REG_SPUR_RSSI_THRESH)); - REG_WRITE(ah, AR_PHY_SPUR_REG, new); - - spur_delta_phase = ((bb_spur * 524288) / 100) & - AR_PHY_TIMING11_SPUR_DELTA_PHASE; - - denominator = IS_CHAN_2GHZ(chan) ? 440 : 400; - spur_freq_sd = ((bb_spur * 2048) / denominator) & 0x3ff; - - new = (AR_PHY_TIMING11_USE_SPUR_IN_AGC | - SM(spur_freq_sd, AR_PHY_TIMING11_SPUR_FREQ_SD) | - SM(spur_delta_phase, AR_PHY_TIMING11_SPUR_DELTA_PHASE)); - REG_WRITE(ah, AR_PHY_TIMING11, new); - - cur_bin = -6000; - upper = bin + 100; - lower = bin - 100; - - for (i = 0; i < 4; i++) { - int pilot_mask = 0; - int chan_mask = 0; - int bp = 0; - for (bp = 0; bp < 30; bp++) { - if ((cur_bin > lower) && (cur_bin < upper)) { - pilot_mask = pilot_mask | 0x1 << bp; - chan_mask = chan_mask | 0x1 << bp; - } - cur_bin += 100; - } - cur_bin += inc[i]; - REG_WRITE(ah, pilot_mask_reg[i], pilot_mask); - REG_WRITE(ah, chan_mask_reg[i], chan_mask); - } - - cur_vit_mask = 6100; - upper = bin + 120; - lower = bin - 120; - - for (i = 0; i < 123; i++) { - if ((cur_vit_mask > lower) && (cur_vit_mask < upper)) { - - /* workaround for gcc bug #37014 */ - volatile int tmp_v = abs(cur_vit_mask - bin); - - if (tmp_v < 75) - mask_amt = 1; - else - mask_amt = 0; - if (cur_vit_mask < 0) - mask_m[abs(cur_vit_mask / 100)] = mask_amt; - else - mask_p[cur_vit_mask / 100] = mask_amt; - } - cur_vit_mask -= 100; - } - - tmp_mask = (mask_m[46] << 30) | (mask_m[47] << 28) - | (mask_m[48] << 26) | (mask_m[49] << 24) - | (mask_m[50] << 22) | (mask_m[51] << 20) - | (mask_m[52] << 18) | (mask_m[53] << 16) - | (mask_m[54] << 14) | (mask_m[55] << 12) - | (mask_m[56] << 10) | (mask_m[57] << 8) - | (mask_m[58] << 6) | (mask_m[59] << 4) - | (mask_m[60] << 2) | (mask_m[61] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK_1, tmp_mask); - REG_WRITE(ah, AR_PHY_VIT_MASK2_M_46_61, tmp_mask); - - tmp_mask = (mask_m[31] << 28) - | (mask_m[32] << 26) | (mask_m[33] << 24) - | (mask_m[34] << 22) | (mask_m[35] << 20) - | (mask_m[36] << 18) | (mask_m[37] << 16) - | (mask_m[48] << 14) | (mask_m[39] << 12) - | (mask_m[40] << 10) | (mask_m[41] << 8) - | (mask_m[42] << 6) | (mask_m[43] << 4) - | (mask_m[44] << 2) | (mask_m[45] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK_2, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_M_31_45, tmp_mask); - - tmp_mask = (mask_m[16] << 30) | (mask_m[16] << 28) - | (mask_m[18] << 26) | (mask_m[18] << 24) - | (mask_m[20] << 22) | (mask_m[20] << 20) - | (mask_m[22] << 18) | (mask_m[22] << 16) - | (mask_m[24] << 14) | (mask_m[24] << 12) - | (mask_m[25] << 10) | (mask_m[26] << 8) - | (mask_m[27] << 6) | (mask_m[28] << 4) - | (mask_m[29] << 2) | (mask_m[30] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK_3, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_M_16_30, tmp_mask); - - tmp_mask = (mask_m[0] << 30) | (mask_m[1] << 28) - | (mask_m[2] << 26) | (mask_m[3] << 24) - | (mask_m[4] << 22) | (mask_m[5] << 20) - | (mask_m[6] << 18) | (mask_m[7] << 16) - | (mask_m[8] << 14) | (mask_m[9] << 12) - | (mask_m[10] << 10) | (mask_m[11] << 8) - | (mask_m[12] << 6) | (mask_m[13] << 4) - | (mask_m[14] << 2) | (mask_m[15] << 0); - REG_WRITE(ah, AR_PHY_MASK_CTL, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_M_00_15, tmp_mask); - - tmp_mask = (mask_p[15] << 28) - | (mask_p[14] << 26) | (mask_p[13] << 24) - | (mask_p[12] << 22) | (mask_p[11] << 20) - | (mask_p[10] << 18) | (mask_p[9] << 16) - | (mask_p[8] << 14) | (mask_p[7] << 12) - | (mask_p[6] << 10) | (mask_p[5] << 8) - | (mask_p[4] << 6) | (mask_p[3] << 4) - | (mask_p[2] << 2) | (mask_p[1] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK2_1, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_P_15_01, tmp_mask); - - tmp_mask = (mask_p[30] << 28) - | (mask_p[29] << 26) | (mask_p[28] << 24) - | (mask_p[27] << 22) | (mask_p[26] << 20) - | (mask_p[25] << 18) | (mask_p[24] << 16) - | (mask_p[23] << 14) | (mask_p[22] << 12) - | (mask_p[21] << 10) | (mask_p[20] << 8) - | (mask_p[19] << 6) | (mask_p[18] << 4) - | (mask_p[17] << 2) | (mask_p[16] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK2_2, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_P_30_16, tmp_mask); - - tmp_mask = (mask_p[45] << 28) - | (mask_p[44] << 26) | (mask_p[43] << 24) - | (mask_p[42] << 22) | (mask_p[41] << 20) - | (mask_p[40] << 18) | (mask_p[39] << 16) - | (mask_p[38] << 14) | (mask_p[37] << 12) - | (mask_p[36] << 10) | (mask_p[35] << 8) - | (mask_p[34] << 6) | (mask_p[33] << 4) - | (mask_p[32] << 2) | (mask_p[31] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK2_3, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_P_45_31, tmp_mask); - - tmp_mask = (mask_p[61] << 30) | (mask_p[60] << 28) - | (mask_p[59] << 26) | (mask_p[58] << 24) - | (mask_p[57] << 22) | (mask_p[56] << 20) - | (mask_p[55] << 18) | (mask_p[54] << 16) - | (mask_p[53] << 14) | (mask_p[52] << 12) - | (mask_p[51] << 10) | (mask_p[50] << 8) - | (mask_p[49] << 6) | (mask_p[48] << 4) - | (mask_p[47] << 2) | (mask_p[46] << 0); - REG_WRITE(ah, AR_PHY_BIN_MASK2_4, tmp_mask); - REG_WRITE(ah, AR_PHY_MASK2_P_61_45, tmp_mask); -} - -/** - * ath9k_hw_rf_alloc_ext_banks - allocates banks for external radio programming - * @ah: atheros hardware structure - * - * Only required for older devices with external AR2133/AR5133 radios. - */ -int ath9k_hw_rf_alloc_ext_banks(struct ath_hw *ah) -{ -#define ATH_ALLOC_BANK(bank, size) do { \ - bank = kzalloc((sizeof(u32) * size), GFP_KERNEL); \ - if (!bank) { \ - ath_print(common, ATH_DBG_FATAL, \ - "Cannot allocate RF banks\n"); \ - return -ENOMEM; \ - } \ - } while (0); - - struct ath_common *common = ath9k_hw_common(ah); - - BUG_ON(AR_SREV_9280_10_OR_LATER(ah)); - - ATH_ALLOC_BANK(ah->analogBank0Data, ah->iniBank0.ia_rows); - ATH_ALLOC_BANK(ah->analogBank1Data, ah->iniBank1.ia_rows); - ATH_ALLOC_BANK(ah->analogBank2Data, ah->iniBank2.ia_rows); - ATH_ALLOC_BANK(ah->analogBank3Data, ah->iniBank3.ia_rows); - ATH_ALLOC_BANK(ah->analogBank6Data, ah->iniBank6.ia_rows); - ATH_ALLOC_BANK(ah->analogBank6TPCData, ah->iniBank6TPC.ia_rows); - ATH_ALLOC_BANK(ah->analogBank7Data, ah->iniBank7.ia_rows); - ATH_ALLOC_BANK(ah->addac5416_21, - ah->iniAddac.ia_rows * ah->iniAddac.ia_columns); - ATH_ALLOC_BANK(ah->bank6Temp, ah->iniBank6.ia_rows); - - return 0; -#undef ATH_ALLOC_BANK -} - - -/** - * ath9k_hw_rf_free_ext_banks - Free memory for analog bank scratch buffers - * @ah: atheros hardware struture - * For the external AR2133/AR5133 radios banks. - */ -void -ath9k_hw_rf_free_ext_banks(struct ath_hw *ah) -{ -#define ATH_FREE_BANK(bank) do { \ - kfree(bank); \ - bank = NULL; \ - } while (0); - - BUG_ON(AR_SREV_9280_10_OR_LATER(ah)); - - ATH_FREE_BANK(ah->analogBank0Data); - ATH_FREE_BANK(ah->analogBank1Data); - ATH_FREE_BANK(ah->analogBank2Data); - ATH_FREE_BANK(ah->analogBank3Data); - ATH_FREE_BANK(ah->analogBank6Data); - ATH_FREE_BANK(ah->analogBank6TPCData); - ATH_FREE_BANK(ah->analogBank7Data); - ATH_FREE_BANK(ah->addac5416_21); - ATH_FREE_BANK(ah->bank6Temp); - -#undef ATH_FREE_BANK -} - -/* * - * ath9k_hw_set_rf_regs - programs rf registers based on EEPROM - * @ah: atheros hardware structure - * @chan: - * @modesIndex: - * - * Used for the external AR2133/AR5133 radios. - * - * Reads the EEPROM header info from the device structure and programs - * all rf registers. This routine requires access to the analog - * rf device. This is not required for single-chip devices. - */ -bool ath9k_hw_set_rf_regs(struct ath_hw *ah, struct ath9k_channel *chan, - u16 modesIndex) -{ - u32 eepMinorRev; - u32 ob5GHz = 0, db5GHz = 0; - u32 ob2GHz = 0, db2GHz = 0; - int regWrites = 0; - - /* - * Software does not need to program bank data - * for single chip devices, that is AR9280 or anything - * after that. - */ - if (AR_SREV_9280_10_OR_LATER(ah)) - return true; - - /* Setup rf parameters */ - eepMinorRev = ah->eep_ops->get_eeprom(ah, EEP_MINOR_REV); - - /* Setup Bank 0 Write */ - RF_BANK_SETUP(ah->analogBank0Data, &ah->iniBank0, 1); - - /* Setup Bank 1 Write */ - RF_BANK_SETUP(ah->analogBank1Data, &ah->iniBank1, 1); - - /* Setup Bank 2 Write */ - RF_BANK_SETUP(ah->analogBank2Data, &ah->iniBank2, 1); - - /* Setup Bank 6 Write */ - RF_BANK_SETUP(ah->analogBank3Data, &ah->iniBank3, - modesIndex); - { - int i; - for (i = 0; i < ah->iniBank6TPC.ia_rows; i++) { - ah->analogBank6Data[i] = - INI_RA(&ah->iniBank6TPC, i, modesIndex); - } - } - - /* Only the 5 or 2 GHz OB/DB need to be set for a mode */ - if (eepMinorRev >= 2) { - if (IS_CHAN_2GHZ(chan)) { - ob2GHz = ah->eep_ops->get_eeprom(ah, EEP_OB_2); - db2GHz = ah->eep_ops->get_eeprom(ah, EEP_DB_2); - ath9k_phy_modify_rx_buffer(ah->analogBank6Data, - ob2GHz, 3, 197, 0); - ath9k_phy_modify_rx_buffer(ah->analogBank6Data, - db2GHz, 3, 194, 0); - } else { - ob5GHz = ah->eep_ops->get_eeprom(ah, EEP_OB_5); - db5GHz = ah->eep_ops->get_eeprom(ah, EEP_DB_5); - ath9k_phy_modify_rx_buffer(ah->analogBank6Data, - ob5GHz, 3, 203, 0); - ath9k_phy_modify_rx_buffer(ah->analogBank6Data, - db5GHz, 3, 200, 0); - } - } - - /* Setup Bank 7 Setup */ - RF_BANK_SETUP(ah->analogBank7Data, &ah->iniBank7, 1); - - /* Write Analog registers */ - REG_WRITE_RF_ARRAY(&ah->iniBank0, ah->analogBank0Data, - regWrites); - REG_WRITE_RF_ARRAY(&ah->iniBank1, ah->analogBank1Data, - regWrites); - REG_WRITE_RF_ARRAY(&ah->iniBank2, ah->analogBank2Data, - regWrites); - REG_WRITE_RF_ARRAY(&ah->iniBank3, ah->analogBank3Data, - regWrites); - REG_WRITE_RF_ARRAY(&ah->iniBank6TPC, ah->analogBank6Data, - regWrites); - REG_WRITE_RF_ARRAY(&ah->iniBank7, ah->analogBank7Data, - regWrites); - - return true; -} diff --git a/drivers/net/wireless/ath/ath9k/phy.h b/drivers/net/wireless/ath/ath9k/phy.h index 4b6e494bd98..b90815205a1 100644 --- a/drivers/net/wireless/ath/ath9k/phy.h +++ b/drivers/net/wireless/ath/ath9k/phy.h @@ -17,501 +17,11 @@ #ifndef PHY_H #define PHY_H -/* Single chip radio settings */ -int ath9k_hw_ar9280_set_channel(struct ath_hw *ah, struct ath9k_channel *chan); -void ath9k_hw_9280_spur_mitigate(struct ath_hw *ah, struct ath9k_channel *chan); - -/* Routines below are for non single-chip solutions */ -int ath9k_hw_set_channel(struct ath_hw *ah, struct ath9k_channel *chan); -void ath9k_hw_spur_mitigate(struct ath_hw *ah, struct ath9k_channel *chan); - -int ath9k_hw_rf_alloc_ext_banks(struct ath_hw *ah); -void ath9k_hw_rf_free_ext_banks(struct ath_hw *ah); - -bool ath9k_hw_set_rf_regs(struct ath_hw *ah, - struct ath9k_channel *chan, - u16 modesIndex); - #define AR_PHY_BASE 0x9800 #define AR_PHY(_n) (AR_PHY_BASE + ((_n)<<2)) -#define AR_PHY_TEST 0x9800 -#define PHY_AGC_CLR 0x10000000 -#define RFSILENT_BB 0x00002000 - -#define AR_PHY_TURBO 0x9804 -#define AR_PHY_FC_TURBO_MODE 0x00000001 -#define AR_PHY_FC_TURBO_SHORT 0x00000002 -#define AR_PHY_FC_DYN2040_EN 0x00000004 -#define AR_PHY_FC_DYN2040_PRI_ONLY 0x00000008 -#define AR_PHY_FC_DYN2040_PRI_CH 0x00000010 -/* For 25 MHz channel spacing -- not used but supported by hw */ -#define AR_PHY_FC_DYN2040_EXT_CH 0x00000020 -#define AR_PHY_FC_HT_EN 0x00000040 -#define AR_PHY_FC_SHORT_GI_40 0x00000080 -#define AR_PHY_FC_WALSH 0x00000100 -#define AR_PHY_FC_SINGLE_HT_LTF1 0x00000200 -#define AR_PHY_FC_ENABLE_DAC_FIFO 0x00000800 - -#define AR_PHY_TEST2 0x9808 - -#define AR_PHY_TIMING2 0x9810 -#define AR_PHY_TIMING3 0x9814 -#define AR_PHY_TIMING3_DSC_MAN 0xFFFE0000 -#define AR_PHY_TIMING3_DSC_MAN_S 17 -#define AR_PHY_TIMING3_DSC_EXP 0x0001E000 -#define AR_PHY_TIMING3_DSC_EXP_S 13 - -#define AR_PHY_CHIP_ID 0x9818 -#define AR_PHY_CHIP_ID_REV_0 0x80 -#define AR_PHY_CHIP_ID_REV_1 0x81 -#define AR_PHY_CHIP_ID_9160_REV_0 0xb0 - -#define AR_PHY_ACTIVE 0x981C -#define AR_PHY_ACTIVE_EN 0x00000001 -#define AR_PHY_ACTIVE_DIS 0x00000000 - -#define AR_PHY_RF_CTL2 0x9824 -#define AR_PHY_TX_END_DATA_START 0x000000FF -#define AR_PHY_TX_END_DATA_START_S 0 -#define AR_PHY_TX_END_PA_ON 0x0000FF00 -#define AR_PHY_TX_END_PA_ON_S 8 - -#define AR_PHY_RF_CTL3 0x9828 -#define AR_PHY_TX_END_TO_A2_RX_ON 0x00FF0000 -#define AR_PHY_TX_END_TO_A2_RX_ON_S 16 - -#define AR_PHY_ADC_CTL 0x982C -#define AR_PHY_ADC_CTL_OFF_INBUFGAIN 0x00000003 -#define AR_PHY_ADC_CTL_OFF_INBUFGAIN_S 0 -#define AR_PHY_ADC_CTL_OFF_PWDDAC 0x00002000 -#define AR_PHY_ADC_CTL_OFF_PWDBANDGAP 0x00004000 -#define AR_PHY_ADC_CTL_OFF_PWDADC 0x00008000 -#define AR_PHY_ADC_CTL_ON_INBUFGAIN 0x00030000 -#define AR_PHY_ADC_CTL_ON_INBUFGAIN_S 16 - -#define AR_PHY_ADC_SERIAL_CTL 0x9830 -#define AR_PHY_SEL_INTERNAL_ADDAC 0x00000000 -#define AR_PHY_SEL_EXTERNAL_RADIO 0x00000001 - -#define AR_PHY_RF_CTL4 0x9834 -#define AR_PHY_RF_CTL4_TX_END_XPAB_OFF 0xFF000000 -#define AR_PHY_RF_CTL4_TX_END_XPAB_OFF_S 24 -#define AR_PHY_RF_CTL4_TX_END_XPAA_OFF 0x00FF0000 -#define AR_PHY_RF_CTL4_TX_END_XPAA_OFF_S 16 -#define AR_PHY_RF_CTL4_FRAME_XPAB_ON 0x0000FF00 -#define AR_PHY_RF_CTL4_FRAME_XPAB_ON_S 8 -#define AR_PHY_RF_CTL4_FRAME_XPAA_ON 0x000000FF -#define AR_PHY_RF_CTL4_FRAME_XPAA_ON_S 0 - -#define AR_PHY_TSTDAC_CONST 0x983c - -#define AR_PHY_SETTLING 0x9844 -#define AR_PHY_SETTLING_SWITCH 0x00003F80 -#define AR_PHY_SETTLING_SWITCH_S 7 - -#define AR_PHY_RXGAIN 0x9848 -#define AR_PHY_RXGAIN_TXRX_ATTEN 0x0003F000 -#define AR_PHY_RXGAIN_TXRX_ATTEN_S 12 -#define AR_PHY_RXGAIN_TXRX_RF_MAX 0x007C0000 -#define AR_PHY_RXGAIN_TXRX_RF_MAX_S 18 -#define AR9280_PHY_RXGAIN_TXRX_ATTEN 0x00003F80 -#define AR9280_PHY_RXGAIN_TXRX_ATTEN_S 7 -#define AR9280_PHY_RXGAIN_TXRX_MARGIN 0x001FC000 -#define AR9280_PHY_RXGAIN_TXRX_MARGIN_S 14 - -#define AR_PHY_DESIRED_SZ 0x9850 -#define AR_PHY_DESIRED_SZ_ADC 0x000000FF -#define AR_PHY_DESIRED_SZ_ADC_S 0 -#define AR_PHY_DESIRED_SZ_PGA 0x0000FF00 -#define AR_PHY_DESIRED_SZ_PGA_S 8 -#define AR_PHY_DESIRED_SZ_TOT_DES 0x0FF00000 -#define AR_PHY_DESIRED_SZ_TOT_DES_S 20 - -#define AR_PHY_FIND_SIG 0x9858 -#define AR_PHY_FIND_SIG_FIRSTEP 0x0003F000 -#define AR_PHY_FIND_SIG_FIRSTEP_S 12 -#define AR_PHY_FIND_SIG_FIRPWR 0x03FC0000 -#define AR_PHY_FIND_SIG_FIRPWR_S 18 - -#define AR_PHY_AGC_CTL1 0x985C -#define AR_PHY_AGC_CTL1_COARSE_LOW 0x00007F80 -#define AR_PHY_AGC_CTL1_COARSE_LOW_S 7 -#define AR_PHY_AGC_CTL1_COARSE_HIGH 0x003F8000 -#define AR_PHY_AGC_CTL1_COARSE_HIGH_S 15 - -#define AR_PHY_AGC_CONTROL 0x9860 -#define AR_PHY_AGC_CONTROL_CAL 0x00000001 -#define AR_PHY_AGC_CONTROL_NF 0x00000002 -#define AR_PHY_AGC_CONTROL_ENABLE_NF 0x00008000 -#define AR_PHY_AGC_CONTROL_FLTR_CAL 0x00010000 -#define AR_PHY_AGC_CONTROL_NO_UPDATE_NF 0x00020000 - -#define AR_PHY_CCA 0x9864 -#define AR_PHY_MINCCA_PWR 0x0FF80000 -#define AR_PHY_MINCCA_PWR_S 19 -#define AR_PHY_CCA_THRESH62 0x0007F000 -#define AR_PHY_CCA_THRESH62_S 12 -#define AR9280_PHY_MINCCA_PWR 0x1FF00000 -#define AR9280_PHY_MINCCA_PWR_S 20 -#define AR9280_PHY_CCA_THRESH62 0x000FF000 -#define AR9280_PHY_CCA_THRESH62_S 12 - -#define AR_PHY_SFCORR_LOW 0x986C -#define AR_PHY_SFCORR_LOW_USE_SELF_CORR_LOW 0x00000001 -#define AR_PHY_SFCORR_LOW_M2COUNT_THR_LOW 0x00003F00 -#define AR_PHY_SFCORR_LOW_M2COUNT_THR_LOW_S 8 -#define AR_PHY_SFCORR_LOW_M1_THRESH_LOW 0x001FC000 -#define AR_PHY_SFCORR_LOW_M1_THRESH_LOW_S 14 -#define AR_PHY_SFCORR_LOW_M2_THRESH_LOW 0x0FE00000 -#define AR_PHY_SFCORR_LOW_M2_THRESH_LOW_S 21 - -#define AR_PHY_SFCORR 0x9868 -#define AR_PHY_SFCORR_M2COUNT_THR 0x0000001F -#define AR_PHY_SFCORR_M2COUNT_THR_S 0 -#define AR_PHY_SFCORR_M1_THRESH 0x00FE0000 -#define AR_PHY_SFCORR_M1_THRESH_S 17 -#define AR_PHY_SFCORR_M2_THRESH 0x7F000000 -#define AR_PHY_SFCORR_M2_THRESH_S 24 - -#define AR_PHY_SLEEP_CTR_CONTROL 0x9870 -#define AR_PHY_SLEEP_CTR_LIMIT 0x9874 -#define AR_PHY_SYNTH_CONTROL 0x9874 -#define AR_PHY_SLEEP_SCAL 0x9878 - -#define AR_PHY_PLL_CTL 0x987c -#define AR_PHY_PLL_CTL_40 0xaa -#define AR_PHY_PLL_CTL_40_5413 0x04 -#define AR_PHY_PLL_CTL_44 0xab -#define AR_PHY_PLL_CTL_44_2133 0xeb -#define AR_PHY_PLL_CTL_40_2133 0xea - -#define AR_PHY_SPECTRAL_SCAN 0x9910 /* AR9280 spectral scan configuration register */ -#define AR_PHY_SPECTRAL_SCAN_ENABLE 0x1 -#define AR_PHY_SPECTRAL_SCAN_ENA 0x00000001 /* Enable spectral scan, reg 68, bit 0 */ -#define AR_PHY_SPECTRAL_SCAN_ENA_S 0 /* Enable spectral scan, reg 68, bit 0 */ -#define AR_PHY_SPECTRAL_SCAN_ACTIVE 0x00000002 /* Activate spectral scan reg 68, bit 1*/ -#define AR_PHY_SPECTRAL_SCAN_ACTIVE_S 1 /* Activate spectral scan reg 68, bit 1*/ -#define AR_PHY_SPECTRAL_SCAN_FFT_PERIOD 0x000000F0 /* Interval for FFT reports, reg 68, bits 4-7*/ -#define AR_PHY_SPECTRAL_SCAN_FFT_PERIOD_S 4 -#define AR_PHY_SPECTRAL_SCAN_PERIOD 0x0000FF00 /* Interval for FFT reports, reg 68, bits 8-15*/ -#define AR_PHY_SPECTRAL_SCAN_PERIOD_S 8 -#define AR_PHY_SPECTRAL_SCAN_COUNT 0x00FF0000 /* Number of reports, reg 68, bits 16-23*/ -#define AR_PHY_SPECTRAL_SCAN_COUNT_S 16 -#define AR_PHY_SPECTRAL_SCAN_SHORT_REPEAT 0x01000000 /* Short repeat, reg 68, bit 24*/ -#define AR_PHY_SPECTRAL_SCAN_SHORT_REPEAT_S 24 /* Short repeat, reg 68, bit 24*/ - -#define AR_PHY_RX_DELAY 0x9914 -#define AR_PHY_SEARCH_START_DELAY 0x9918 -#define AR_PHY_RX_DELAY_DELAY 0x00003FFF - -#define AR_PHY_TIMING_CTRL4(_i) (0x9920 + ((_i) << 12)) -#define AR_PHY_TIMING_CTRL4_IQCORR_Q_Q_COFF 0x01F -#define AR_PHY_TIMING_CTRL4_IQCORR_Q_Q_COFF_S 0 -#define AR_PHY_TIMING_CTRL4_IQCORR_Q_I_COFF 0x7E0 -#define AR_PHY_TIMING_CTRL4_IQCORR_Q_I_COFF_S 5 -#define AR_PHY_TIMING_CTRL4_IQCORR_ENABLE 0x800 -#define AR_PHY_TIMING_CTRL4_IQCAL_LOG_COUNT_MAX 0xF000 -#define AR_PHY_TIMING_CTRL4_IQCAL_LOG_COUNT_MAX_S 12 -#define AR_PHY_TIMING_CTRL4_DO_CAL 0x10000 - -#define AR_PHY_TIMING_CTRL4_ENABLE_SPUR_RSSI 0x80000000 -#define AR_PHY_TIMING_CTRL4_ENABLE_SPUR_FILTER 0x40000000 -#define AR_PHY_TIMING_CTRL4_ENABLE_CHAN_MASK 0x20000000 -#define AR_PHY_TIMING_CTRL4_ENABLE_PILOT_MASK 0x10000000 - -#define AR_PHY_TIMING5 0x9924 -#define AR_PHY_TIMING5_CYCPWR_THR1 0x000000FE -#define AR_PHY_TIMING5_CYCPWR_THR1_S 1 - -#define AR_PHY_POWER_TX_RATE1 0x9934 -#define AR_PHY_POWER_TX_RATE2 0x9938 -#define AR_PHY_POWER_TX_RATE_MAX 0x993c -#define AR_PHY_POWER_TX_RATE_MAX_TPC_ENABLE 0x00000040 - -#define AR_PHY_FRAME_CTL 0x9944 -#define AR_PHY_FRAME_CTL_TX_CLIP 0x00000038 -#define AR_PHY_FRAME_CTL_TX_CLIP_S 3 - -#define AR_PHY_TXPWRADJ 0x994C -#define AR_PHY_TXPWRADJ_CCK_GAIN_DELTA 0x00000FC0 -#define AR_PHY_TXPWRADJ_CCK_GAIN_DELTA_S 6 -#define AR_PHY_TXPWRADJ_CCK_PCDAC_INDEX 0x00FC0000 -#define AR_PHY_TXPWRADJ_CCK_PCDAC_INDEX_S 18 - -#define AR_PHY_RADAR_EXT 0x9940 -#define AR_PHY_RADAR_EXT_ENA 0x00004000 - -#define AR_PHY_RADAR_0 0x9954 -#define AR_PHY_RADAR_0_ENA 0x00000001 -#define AR_PHY_RADAR_0_FFT_ENA 0x80000000 -#define AR_PHY_RADAR_0_INBAND 0x0000003e -#define AR_PHY_RADAR_0_INBAND_S 1 -#define AR_PHY_RADAR_0_PRSSI 0x00000FC0 -#define AR_PHY_RADAR_0_PRSSI_S 6 -#define AR_PHY_RADAR_0_HEIGHT 0x0003F000 -#define AR_PHY_RADAR_0_HEIGHT_S 12 -#define AR_PHY_RADAR_0_RRSSI 0x00FC0000 -#define AR_PHY_RADAR_0_RRSSI_S 18 -#define AR_PHY_RADAR_0_FIRPWR 0x7F000000 -#define AR_PHY_RADAR_0_FIRPWR_S 24 - -#define AR_PHY_RADAR_1 0x9958 -#define AR_PHY_RADAR_1_RELPWR_ENA 0x00800000 -#define AR_PHY_RADAR_1_USE_FIR128 0x00400000 -#define AR_PHY_RADAR_1_RELPWR_THRESH 0x003F0000 -#define AR_PHY_RADAR_1_RELPWR_THRESH_S 16 -#define AR_PHY_RADAR_1_BLOCK_CHECK 0x00008000 -#define AR_PHY_RADAR_1_MAX_RRSSI 0x00004000 -#define AR_PHY_RADAR_1_RELSTEP_CHECK 0x00002000 -#define AR_PHY_RADAR_1_RELSTEP_THRESH 0x00001F00 -#define AR_PHY_RADAR_1_RELSTEP_THRESH_S 8 -#define AR_PHY_RADAR_1_MAXLEN 0x000000FF -#define AR_PHY_RADAR_1_MAXLEN_S 0 - -#define AR_PHY_SWITCH_CHAIN_0 0x9960 -#define AR_PHY_SWITCH_COM 0x9964 - -#define AR_PHY_SIGMA_DELTA 0x996C -#define AR_PHY_SIGMA_DELTA_ADC_SEL 0x00000003 -#define AR_PHY_SIGMA_DELTA_ADC_SEL_S 0 -#define AR_PHY_SIGMA_DELTA_FILT2 0x000000F8 -#define AR_PHY_SIGMA_DELTA_FILT2_S 3 -#define AR_PHY_SIGMA_DELTA_FILT1 0x00001F00 -#define AR_PHY_SIGMA_DELTA_FILT1_S 8 -#define AR_PHY_SIGMA_DELTA_ADC_CLIP 0x01FFE000 -#define AR_PHY_SIGMA_DELTA_ADC_CLIP_S 13 - -#define AR_PHY_RESTART 0x9970 -#define AR_PHY_RESTART_DIV_GC 0x001C0000 -#define AR_PHY_RESTART_DIV_GC_S 18 - -#define AR_PHY_RFBUS_REQ 0x997C -#define AR_PHY_RFBUS_REQ_EN 0x00000001 - -#define AR_PHY_TIMING7 0x9980 -#define AR_PHY_TIMING8 0x9984 -#define AR_PHY_TIMING8_PILOT_MASK_2 0x000FFFFF -#define AR_PHY_TIMING8_PILOT_MASK_2_S 0 - -#define AR_PHY_BIN_MASK2_1 0x9988 -#define AR_PHY_BIN_MASK2_2 0x998c -#define AR_PHY_BIN_MASK2_3 0x9990 -#define AR_PHY_BIN_MASK2_4 0x9994 - -#define AR_PHY_BIN_MASK_1 0x9900 -#define AR_PHY_BIN_MASK_2 0x9904 -#define AR_PHY_BIN_MASK_3 0x9908 - -#define AR_PHY_MASK_CTL 0x990c - -#define AR_PHY_BIN_MASK2_4_MASK_4 0x00003FFF -#define AR_PHY_BIN_MASK2_4_MASK_4_S 0 - -#define AR_PHY_TIMING9 0x9998 -#define AR_PHY_TIMING10 0x999c -#define AR_PHY_TIMING10_PILOT_MASK_2 0x000FFFFF -#define AR_PHY_TIMING10_PILOT_MASK_2_S 0 - -#define AR_PHY_TIMING11 0x99a0 -#define AR_PHY_TIMING11_SPUR_DELTA_PHASE 0x000FFFFF -#define AR_PHY_TIMING11_SPUR_DELTA_PHASE_S 0 -#define AR_PHY_TIMING11_SPUR_FREQ_SD 0x3FF00000 -#define AR_PHY_TIMING11_SPUR_FREQ_SD_S 20 -#define AR_PHY_TIMING11_USE_SPUR_IN_AGC 0x40000000 -#define AR_PHY_TIMING11_USE_SPUR_IN_SELFCOR 0x80000000 - -#define AR_PHY_RX_CHAINMASK 0x99a4 -#define AR_PHY_NEW_ADC_DC_GAIN_CORR(_i) (0x99b4 + ((_i) << 12)) -#define AR_PHY_NEW_ADC_GAIN_CORR_ENABLE 0x40000000 -#define AR_PHY_NEW_ADC_DC_OFFSET_CORR_ENABLE 0x80000000 - -#define AR_PHY_MULTICHAIN_GAIN_CTL 0x99ac -#define AR_PHY_9285_ANT_DIV_CTL_ALL 0x7f000000 -#define AR_PHY_9285_ANT_DIV_CTL 0x01000000 -#define AR_PHY_9285_ANT_DIV_CTL_S 24 -#define AR_PHY_9285_ANT_DIV_ALT_LNACONF 0x06000000 -#define AR_PHY_9285_ANT_DIV_ALT_LNACONF_S 25 -#define AR_PHY_9285_ANT_DIV_MAIN_LNACONF 0x18000000 -#define AR_PHY_9285_ANT_DIV_MAIN_LNACONF_S 27 -#define AR_PHY_9285_ANT_DIV_ALT_GAINTB 0x20000000 -#define AR_PHY_9285_ANT_DIV_ALT_GAINTB_S 29 -#define AR_PHY_9285_ANT_DIV_MAIN_GAINTB 0x40000000 -#define AR_PHY_9285_ANT_DIV_MAIN_GAINTB_S 30 -#define AR_PHY_9285_ANT_DIV_LNA1 2 -#define AR_PHY_9285_ANT_DIV_LNA2 1 -#define AR_PHY_9285_ANT_DIV_LNA1_PLUS_LNA2 3 -#define AR_PHY_9285_ANT_DIV_LNA1_MINUS_LNA2 0 -#define AR_PHY_9285_ANT_DIV_GAINTB_0 0 -#define AR_PHY_9285_ANT_DIV_GAINTB_1 1 - -#define AR_PHY_EXT_CCA0 0x99b8 -#define AR_PHY_EXT_CCA0_THRESH62 0x000000FF -#define AR_PHY_EXT_CCA0_THRESH62_S 0 - -#define AR_PHY_EXT_CCA 0x99bc -#define AR_PHY_EXT_CCA_CYCPWR_THR1 0x0000FE00 -#define AR_PHY_EXT_CCA_CYCPWR_THR1_S 9 -#define AR_PHY_EXT_CCA_THRESH62 0x007F0000 -#define AR_PHY_EXT_CCA_THRESH62_S 16 -#define AR_PHY_EXT_MINCCA_PWR 0xFF800000 -#define AR_PHY_EXT_MINCCA_PWR_S 23 -#define AR9280_PHY_EXT_MINCCA_PWR 0x01FF0000 -#define AR9280_PHY_EXT_MINCCA_PWR_S 16 - -#define AR_PHY_SFCORR_EXT 0x99c0 -#define AR_PHY_SFCORR_EXT_M1_THRESH 0x0000007F -#define AR_PHY_SFCORR_EXT_M1_THRESH_S 0 -#define AR_PHY_SFCORR_EXT_M2_THRESH 0x00003F80 -#define AR_PHY_SFCORR_EXT_M2_THRESH_S 7 -#define AR_PHY_SFCORR_EXT_M1_THRESH_LOW 0x001FC000 -#define AR_PHY_SFCORR_EXT_M1_THRESH_LOW_S 14 -#define AR_PHY_SFCORR_EXT_M2_THRESH_LOW 0x0FE00000 -#define AR_PHY_SFCORR_EXT_M2_THRESH_LOW_S 21 -#define AR_PHY_SFCORR_SPUR_SUBCHNL_SD_S 28 - -#define AR_PHY_HALFGI 0x99D0 -#define AR_PHY_HALFGI_DSC_MAN 0x0007FFF0 -#define AR_PHY_HALFGI_DSC_MAN_S 4 -#define AR_PHY_HALFGI_DSC_EXP 0x0000000F -#define AR_PHY_HALFGI_DSC_EXP_S 0 - -#define AR_PHY_CHAN_INFO_MEMORY 0x99DC -#define AR_PHY_CHAN_INFO_MEMORY_CAPTURE_MASK 0x0001 - -#define AR_PHY_HEAVY_CLIP_ENABLE 0x99E0 - -#define AR_PHY_HEAVY_CLIP_FACTOR_RIFS 0x99EC -#define AR_PHY_RIFS_INIT_DELAY 0x03ff0000 - -#define AR_PHY_M_SLEEP 0x99f0 -#define AR_PHY_REFCLKDLY 0x99f4 -#define AR_PHY_REFCLKPD 0x99f8 - -#define AR_PHY_CALMODE 0x99f0 - -#define AR_PHY_CALMODE_IQ 0x00000000 -#define AR_PHY_CALMODE_ADC_GAIN 0x00000001 -#define AR_PHY_CALMODE_ADC_DC_PER 0x00000002 -#define AR_PHY_CALMODE_ADC_DC_INIT 0x00000003 - -#define AR_PHY_CAL_MEAS_0(_i) (0x9c10 + ((_i) << 12)) -#define AR_PHY_CAL_MEAS_1(_i) (0x9c14 + ((_i) << 12)) -#define AR_PHY_CAL_MEAS_2(_i) (0x9c18 + ((_i) << 12)) -#define AR_PHY_CAL_MEAS_3(_i) (0x9c1c + ((_i) << 12)) - -#define AR_PHY_CURRENT_RSSI 0x9c1c -#define AR9280_PHY_CURRENT_RSSI 0x9c3c - -#define AR_PHY_RFBUS_GRANT 0x9C20 -#define AR_PHY_RFBUS_GRANT_EN 0x00000001 - -#define AR_PHY_CHAN_INFO_GAIN_DIFF 0x9CF4 -#define AR_PHY_CHAN_INFO_GAIN_DIFF_UPPER_LIMIT 320 - -#define AR_PHY_CHAN_INFO_GAIN 0x9CFC - -#define AR_PHY_MODE 0xA200 -#define AR_PHY_MODE_ASYNCFIFO 0x80 -#define AR_PHY_MODE_AR2133 0x08 -#define AR_PHY_MODE_AR5111 0x00 -#define AR_PHY_MODE_AR5112 0x08 -#define AR_PHY_MODE_DYNAMIC 0x04 -#define AR_PHY_MODE_RF2GHZ 0x02 -#define AR_PHY_MODE_RF5GHZ 0x00 -#define AR_PHY_MODE_CCK 0x01 -#define AR_PHY_MODE_OFDM 0x00 -#define AR_PHY_MODE_DYN_CCK_DISABLE 0x100 - -#define AR_PHY_CCK_TX_CTRL 0xA204 -#define AR_PHY_CCK_TX_CTRL_JAPAN 0x00000010 -#define AR_PHY_CCK_TX_CTRL_TX_DAC_SCALE_CCK 0x0000000C -#define AR_PHY_CCK_TX_CTRL_TX_DAC_SCALE_CCK_S 2 - -#define AR_PHY_CCK_DETECT 0xA208 -#define AR_PHY_CCK_DETECT_WEAK_SIG_THR_CCK 0x0000003F -#define AR_PHY_CCK_DETECT_WEAK_SIG_THR_CCK_S 0 -/* [12:6] settling time for antenna switch */ -#define AR_PHY_CCK_DETECT_ANT_SWITCH_TIME 0x00001FC0 -#define AR_PHY_CCK_DETECT_ANT_SWITCH_TIME_S 6 -#define AR_PHY_CCK_DETECT_BB_ENABLE_ANT_FAST_DIV 0x2000 -#define AR_PHY_CCK_DETECT_BB_ENABLE_ANT_FAST_DIV_S 13 - -#define AR_PHY_GAIN_2GHZ 0xA20C -#define AR_PHY_GAIN_2GHZ_RXTX_MARGIN 0x00FC0000 -#define AR_PHY_GAIN_2GHZ_RXTX_MARGIN_S 18 -#define AR_PHY_GAIN_2GHZ_BSW_MARGIN 0x00003C00 -#define AR_PHY_GAIN_2GHZ_BSW_MARGIN_S 10 -#define AR_PHY_GAIN_2GHZ_BSW_ATTEN 0x0000001F -#define AR_PHY_GAIN_2GHZ_BSW_ATTEN_S 0 - -#define AR_PHY_GAIN_2GHZ_XATTEN2_MARGIN 0x003E0000 -#define AR_PHY_GAIN_2GHZ_XATTEN2_MARGIN_S 17 -#define AR_PHY_GAIN_2GHZ_XATTEN1_MARGIN 0x0001F000 -#define AR_PHY_GAIN_2GHZ_XATTEN1_MARGIN_S 12 -#define AR_PHY_GAIN_2GHZ_XATTEN2_DB 0x00000FC0 -#define AR_PHY_GAIN_2GHZ_XATTEN2_DB_S 6 -#define AR_PHY_GAIN_2GHZ_XATTEN1_DB 0x0000003F -#define AR_PHY_GAIN_2GHZ_XATTEN1_DB_S 0 - -#define AR_PHY_CCK_RXCTRL4 0xA21C -#define AR_PHY_CCK_RXCTRL4_FREQ_EST_SHORT 0x01F80000 -#define AR_PHY_CCK_RXCTRL4_FREQ_EST_SHORT_S 19 - -#define AR_PHY_DAG_CTRLCCK 0xA228 -#define AR_PHY_DAG_CTRLCCK_EN_RSSI_THR 0x00000200 -#define AR_PHY_DAG_CTRLCCK_RSSI_THR 0x0001FC00 -#define AR_PHY_DAG_CTRLCCK_RSSI_THR_S 10 - -#define AR_PHY_FORCE_CLKEN_CCK 0xA22C -#define AR_PHY_FORCE_CLKEN_CCK_MRC_MUX 0x00000040 - -#define AR_PHY_POWER_TX_RATE3 0xA234 -#define AR_PHY_POWER_TX_RATE4 0xA238 - -#define AR_PHY_SCRM_SEQ_XR 0xA23C -#define AR_PHY_HEADER_DETECT_XR 0xA240 -#define AR_PHY_CHIRP_DETECTED_XR 0xA244 -#define AR_PHY_BLUETOOTH 0xA254 - -#define AR_PHY_TPCRG1 0xA258 -#define AR_PHY_TPCRG1_NUM_PD_GAIN 0x0000c000 -#define AR_PHY_TPCRG1_NUM_PD_GAIN_S 14 - -#define AR_PHY_TPCRG1_PD_GAIN_1 0x00030000 -#define AR_PHY_TPCRG1_PD_GAIN_1_S 16 -#define AR_PHY_TPCRG1_PD_GAIN_2 0x000C0000 -#define AR_PHY_TPCRG1_PD_GAIN_2_S 18 -#define AR_PHY_TPCRG1_PD_GAIN_3 0x00300000 -#define AR_PHY_TPCRG1_PD_GAIN_3_S 20 - -#define AR_PHY_TPCRG1_PD_CAL_ENABLE 0x00400000 -#define AR_PHY_TPCRG1_PD_CAL_ENABLE_S 22 - -#define AR_PHY_TX_PWRCTRL4 0xa264 -#define AR_PHY_TX_PWRCTRL_PD_AVG_VALID 0x00000001 -#define AR_PHY_TX_PWRCTRL_PD_AVG_VALID_S 0 -#define AR_PHY_TX_PWRCTRL_PD_AVG_OUT 0x000001FE -#define AR_PHY_TX_PWRCTRL_PD_AVG_OUT_S 1 - -#define AR_PHY_TX_PWRCTRL6_0 0xa270 -#define AR_PHY_TX_PWRCTRL6_1 0xb270 -#define AR_PHY_TX_PWRCTRL_ERR_EST_MODE 0x03000000 -#define AR_PHY_TX_PWRCTRL_ERR_EST_MODE_S 24 - -#define AR_PHY_TX_PWRCTRL7 0xa274 #define AR_PHY_TX_PWRCTRL_TX_GAIN_TAB_MAX 0x0007E000 #define AR_PHY_TX_PWRCTRL_TX_GAIN_TAB_MAX_S 13 -#define AR_PHY_TX_PWRCTRL_INIT_TX_GAIN 0x01F80000 -#define AR_PHY_TX_PWRCTRL_INIT_TX_GAIN_S 19 - -#define AR_PHY_TX_PWRCTRL9 0xa27C -#define AR_PHY_TX_DESIRED_SCALE_CCK 0x00007C00 -#define AR_PHY_TX_DESIRED_SCALE_CCK_S 10 -#define AR_PHY_TX_PWRCTRL9_RES_DC_REMOVAL 0x80000000 -#define AR_PHY_TX_PWRCTRL9_RES_DC_REMOVAL_S 31 - -#define AR_PHY_TX_GAIN_TBL1 0xa300 #define AR_PHY_TX_GAIN_CLC 0x0000001E #define AR_PHY_TX_GAIN_CLC_S 1 #define AR_PHY_TX_GAIN 0x0007F000 @@ -523,91 +33,6 @@ bool ath9k_hw_set_rf_regs(struct ath_hw *ah, #define AR_PHY_CLC_Q0 0x0000ffd0 #define AR_PHY_CLC_Q0_S 5 -#define AR_PHY_CH0_TX_PWRCTRL11 0xa398 -#define AR_PHY_CH1_TX_PWRCTRL11 0xb398 -#define AR_PHY_TX_PWRCTRL_OLPC_TEMP_COMP 0x0000FC00 -#define AR_PHY_TX_PWRCTRL_OLPC_TEMP_COMP_S 10 - -#define AR_PHY_VIT_MASK2_M_46_61 0xa3a0 -#define AR_PHY_MASK2_M_31_45 0xa3a4 -#define AR_PHY_MASK2_M_16_30 0xa3a8 -#define AR_PHY_MASK2_M_00_15 0xa3ac -#define AR_PHY_MASK2_P_15_01 0xa3b8 -#define AR_PHY_MASK2_P_30_16 0xa3bc -#define AR_PHY_MASK2_P_45_31 0xa3c0 -#define AR_PHY_MASK2_P_61_45 0xa3c4 -#define AR_PHY_SPUR_REG 0x994c - -#define AR_PHY_SPUR_REG_MASK_RATE_CNTL (0xFF << 18) -#define AR_PHY_SPUR_REG_MASK_RATE_CNTL_S 18 - -#define AR_PHY_SPUR_REG_ENABLE_MASK_PPM 0x20000 -#define AR_PHY_SPUR_REG_MASK_RATE_SELECT (0xFF << 9) -#define AR_PHY_SPUR_REG_MASK_RATE_SELECT_S 9 -#define AR_PHY_SPUR_REG_ENABLE_VIT_SPUR_RSSI 0x100 -#define AR_PHY_SPUR_REG_SPUR_RSSI_THRESH 0x7F -#define AR_PHY_SPUR_REG_SPUR_RSSI_THRESH_S 0 - -#define AR_PHY_PILOT_MASK_01_30 0xa3b0 -#define AR_PHY_PILOT_MASK_31_60 0xa3b4 - -#define AR_PHY_CHANNEL_MASK_01_30 0x99d4 -#define AR_PHY_CHANNEL_MASK_31_60 0x99d8 - -#define AR_PHY_ANALOG_SWAP 0xa268 -#define AR_PHY_SWAP_ALT_CHAIN 0x00000040 - -#define AR_PHY_TPCRG5 0xA26C -#define AR_PHY_TPCRG5_PD_GAIN_OVERLAP 0x0000000F -#define AR_PHY_TPCRG5_PD_GAIN_OVERLAP_S 0 -#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_1 0x000003F0 -#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_1_S 4 -#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_2 0x0000FC00 -#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_2_S 10 -#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_3 0x003F0000 -#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_3_S 16 -#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_4 0x0FC00000 -#define AR_PHY_TPCRG5_PD_GAIN_BOUNDARY_4_S 22 - -/* Carrier leak calibration control, do it after AGC calibration */ -#define AR_PHY_CL_CAL_CTL 0xA358 -#define AR_PHY_CL_CAL_ENABLE 0x00000002 -#define AR_PHY_PARALLEL_CAL_ENABLE 0x00000001 - -#define AR_PHY_POWER_TX_RATE5 0xA38C -#define AR_PHY_POWER_TX_RATE6 0xA390 - -#define AR_PHY_CAL_CHAINMASK 0xA39C - -#define AR_PHY_POWER_TX_SUB 0xA3C8 -#define AR_PHY_POWER_TX_RATE7 0xA3CC -#define AR_PHY_POWER_TX_RATE8 0xA3D0 -#define AR_PHY_POWER_TX_RATE9 0xA3D4 - -#define AR_PHY_XPA_CFG 0xA3D8 -#define AR_PHY_FORCE_XPA_CFG 0x000000001 -#define AR_PHY_FORCE_XPA_CFG_S 0 - -#define AR_PHY_CH1_CCA 0xa864 -#define AR_PHY_CH1_MINCCA_PWR 0x0FF80000 -#define AR_PHY_CH1_MINCCA_PWR_S 19 -#define AR9280_PHY_CH1_MINCCA_PWR 0x1FF00000 -#define AR9280_PHY_CH1_MINCCA_PWR_S 20 - -#define AR_PHY_CH2_CCA 0xb864 -#define AR_PHY_CH2_MINCCA_PWR 0x0FF80000 -#define AR_PHY_CH2_MINCCA_PWR_S 19 - -#define AR_PHY_CH1_EXT_CCA 0xa9bc -#define AR_PHY_CH1_EXT_MINCCA_PWR 0xFF800000 -#define AR_PHY_CH1_EXT_MINCCA_PWR_S 23 -#define AR9280_PHY_CH1_EXT_MINCCA_PWR 0x01FF0000 -#define AR9280_PHY_CH1_EXT_MINCCA_PWR_S 16 - -#define AR_PHY_CH2_EXT_CCA 0xb9bc -#define AR_PHY_CH2_EXT_MINCCA_PWR 0xFF800000 -#define AR_PHY_CH2_EXT_MINCCA_PWR_S 23 - #define REG_WRITE_RF_ARRAY(iniarray, regData, regWr) do { \ int r; \ for (r = 0; r < ((iniarray)->ia_rows); r++) { \ @@ -622,6 +47,7 @@ bool ath9k_hw_set_rf_regs(struct ath_hw *ah, #define ANTSWAP_AB 0x0001 #define REDUCE_CHAIN_0 0x00000050 #define REDUCE_CHAIN_1 0x00000051 +#define AR_PHY_CHIP_ID 0x9818 #define RF_BANK_SETUP(_bank, _iniarray, _col) do { \ int i; \ -- cgit v1.2.3-70-g09d2 From 8525f2801df14b6c4ae6a96127e47d646be5304c Mon Sep 17 00:00:00 2001 From: "Luis R. Rodriguez" Date: Thu, 15 Apr 2010 17:38:19 -0400 Subject: ath9k_hw: Add AR9003 PHY support This add stubs for PHY support for the AR9003 hardware family. Signed-off-by: Felix Fietkau Signed-off-by: Luis R. Rodriguez Signed-off-by: John W. Linville --- drivers/net/wireless/ath/ath9k/Makefile | 1 + drivers/net/wireless/ath/ath9k/ar9003_phy.c | 147 ++++++++++++++++++++++++++++ drivers/net/wireless/ath/ath9k/hw.c | 20 +++- drivers/net/wireless/ath/ath9k/hw.h | 3 +- 4 files changed, 167 insertions(+), 4 deletions(-) create mode 100644 drivers/net/wireless/ath/ath9k/ar9003_phy.c (limited to 'drivers/net/wireless/ath/ath9k/Makefile') diff --git a/drivers/net/wireless/ath/ath9k/Makefile b/drivers/net/wireless/ath/ath9k/Makefile index db63ba29804..ecf3f8c71d6 100644 --- a/drivers/net/wireless/ath/ath9k/Makefile +++ b/drivers/net/wireless/ath/ath9k/Makefile @@ -14,6 +14,7 @@ ath9k-$(CONFIG_ATH9K_DEBUGFS) += debug.o obj-$(CONFIG_ATH9K) += ath9k.o ath9k_hw-y:= hw.o \ + ar9003_phy.o \ ar9002_phy.o \ ar5008_phy.o \ eeprom.o \ diff --git a/drivers/net/wireless/ath/ath9k/ar9003_phy.c b/drivers/net/wireless/ath/ath9k/ar9003_phy.c new file mode 100644 index 00000000000..c4511b8ff75 --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9003_phy.c @@ -0,0 +1,147 @@ +/* + * Copyright (c) 2010 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include "hw.h" + +/** + * ar9003_hw_set_channel - set channel on single-chip device + * @ah: atheros hardware structure + * @chan: + * + * This is the function to change channel on single-chip devices, that is + * all devices after ar9280. + * + * This function takes the channel value in MHz and sets + * hardware channel value. Assumes writes have been enabled to analog bus. + * + * Actual Expression, + * + * For 2GHz channel, + * Channel Frequency = (3/4) * freq_ref * (chansel[8:0] + chanfrac[16:0]/2^17) + * (freq_ref = 40MHz) + * + * For 5GHz channel, + * Channel Frequency = (3/2) * freq_ref * (chansel[8:0] + chanfrac[16:0]/2^10) + * (freq_ref = 40MHz/(24>>amodeRefSel)) + * + * For 5GHz channels which are 5MHz spaced, + * Channel Frequency = (3/2) * freq_ref * (chansel[8:0] + chanfrac[16:0]/2^17) + * (freq_ref = 40MHz) + */ +static int ar9003_hw_set_channel(struct ath_hw *ah, struct ath9k_channel *chan) +{ + /* TODO */ + return 0; +} + +/** + * ar9003_hw_spur_mitigate - convert baseband spur frequency + * @ah: atheros hardware structure + * @chan: + * + * For single-chip solutions. Converts to baseband spur frequency given the + * input channel frequency and compute register settings below. + * + * Spur mitigation for MRC CCK + */ +static void ar9003_hw_spur_mitigate(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + /* TODO */ +} + +static u32 ar9003_hw_compute_pll_control(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + /* TODO */ + return 0; +} + +static void ar9003_hw_set_channel_regs(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + /* TODO */ +} + +static void ar9003_hw_init_bb(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + /* TODO */ +} + +static int ar9003_hw_process_ini(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + /* TODO */ + return -1; +} + +static void ar9003_hw_set_rfmode(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + /* TODO */ +} + +static void ar9003_hw_mark_phy_inactive(struct ath_hw *ah) +{ + /* TODO */ +} + +static void ar9003_hw_set_delta_slope(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + /* TODO */ +} + +static bool ar9003_hw_rfbus_req(struct ath_hw *ah) +{ + /* TODO */ + return false; +} + +static void ar9003_hw_rfbus_done(struct ath_hw *ah) +{ + /* TODO */ +} + +static void ar9003_hw_enable_rfkill(struct ath_hw *ah) +{ + /* TODO */ +} + +static void ar9003_hw_set_diversity(struct ath_hw *ah, bool value) +{ + /* TODO */ +} + +void ar9003_hw_attach_phy_ops(struct ath_hw *ah) +{ + struct ath_hw_private_ops *priv_ops = ath9k_hw_private_ops(ah); + + priv_ops->rf_set_freq = ar9003_hw_set_channel; + priv_ops->spur_mitigate_freq = ar9003_hw_spur_mitigate; + priv_ops->compute_pll_control = ar9003_hw_compute_pll_control; + priv_ops->set_channel_regs = ar9003_hw_set_channel_regs; + priv_ops->init_bb = ar9003_hw_init_bb; + priv_ops->process_ini = ar9003_hw_process_ini; + priv_ops->set_rfmode = ar9003_hw_set_rfmode; + priv_ops->mark_phy_inactive = ar9003_hw_mark_phy_inactive; + priv_ops->set_delta_slope = ar9003_hw_set_delta_slope; + priv_ops->rfbus_req = ar9003_hw_rfbus_req; + priv_ops->rfbus_done = ar9003_hw_rfbus_done; + priv_ops->enable_rfkill = ar9003_hw_enable_rfkill; + priv_ops->set_diversity = ar9003_hw_set_diversity; +} diff --git a/drivers/net/wireless/ath/ath9k/hw.c b/drivers/net/wireless/ath/ath9k/hw.c index 7952818e630..f057d1ad929 100644 --- a/drivers/net/wireless/ath/ath9k/hw.c +++ b/drivers/net/wireless/ath/ath9k/hw.c @@ -27,6 +27,7 @@ #define ATH9K_CLOCK_RATE_2GHZ_OFDM 44 static void ar9002_hw_attach_ops(struct ath_hw *ah); +static void ar9003_hw_attach_ops(struct ath_hw *ah); static bool ath9k_hw_set_reset_reg(struct ath_hw *ah, u32 type); @@ -858,6 +859,14 @@ static void ath9k_hw_init_eeprom_fix(struct ath_hw *ah) "needs fixup for AR_AN_TOP2 register\n"); } +static void ath9k_hw_attach_ops(struct ath_hw *ah) +{ + if (AR_SREV_9300_20_OR_LATER(ah)) + ar9003_hw_attach_ops(ah); + else + ar9002_hw_attach_ops(ah); +} + /* Called for all hardware families */ static int __ath9k_hw_init(struct ath_hw *ah) { @@ -873,7 +882,7 @@ static int __ath9k_hw_init(struct ath_hw *ah) return -EIO; } - ar9002_hw_attach_ops(ah); + ath9k_hw_attach_ops(ah); if (!ath9k_hw_setpower(ah, ATH9K_PM_AWAKE)) { ath_print(common, ATH_DBG_FATAL, "Couldn't wakeup chip\n"); @@ -3524,8 +3533,13 @@ static void ar9002_hw_attach_ops(struct ath_hw *ah) ops->config_pci_powersave = ar9002_hw_configpcipowersave; + ar5008_hw_attach_phy_ops(ah); if (AR_SREV_9280_10_OR_LATER(ah)) ar9002_hw_attach_phy_ops(ah); - else - ar5008_hw_attach_phy_ops(ah); +} + +/* Sets up the AR9003 hardware familiy callbacks */ +static void ar9003_hw_attach_ops(struct ath_hw *ah) +{ + ar9003_hw_attach_phy_ops(ah); } diff --git a/drivers/net/wireless/ath/ath9k/hw.h b/drivers/net/wireless/ath/ath9k/hw.h index a1ce79d1795..3bc362134dc 100644 --- a/drivers/net/wireless/ath/ath9k/hw.h +++ b/drivers/net/wireless/ath/ath9k/hw.h @@ -783,8 +783,9 @@ void ath9k_hw_htc_resetinit(struct ath_hw *ah); void ath9k_hw_get_delta_slope_vals(struct ath_hw *ah, u32 coef_scaled, u32 *coef_mantissa, u32 *coef_exponent); -void ar9002_hw_attach_phy_ops(struct ath_hw *ah); void ar5008_hw_attach_phy_ops(struct ath_hw *ah); +void ar9002_hw_attach_phy_ops(struct ath_hw *ah); +void ar9003_hw_attach_phy_ops(struct ath_hw *ah); #define ATH_PCIE_CAP_LINK_CTRL 0x70 #define ATH_PCIE_CAP_LINK_L0S 1 -- cgit v1.2.3-70-g09d2 From ae3bb6d4628dae7ead588263177a0674221fea78 Mon Sep 17 00:00:00 2001 From: Vasanthakumar Thiagarajan Date: Thu, 15 Apr 2010 17:38:27 -0400 Subject: ath9k_hw: Fill rx_enable() for the AR9003 hardware family Signed-off-by: Vasanthakumar Thiagarajan Signed-off-by: John W. Linville --- drivers/net/wireless/ath/ath9k/Makefile | 1 + drivers/net/wireless/ath/ath9k/ar9003_mac.c | 28 ++++++++++++++++++++++++++++ drivers/net/wireless/ath/ath9k/ar9003_mac.h | 2 ++ drivers/net/wireless/ath/ath9k/hw.c | 6 ++++-- 4 files changed, 35 insertions(+), 2 deletions(-) create mode 100644 drivers/net/wireless/ath/ath9k/ar9003_mac.c (limited to 'drivers/net/wireless/ath/ath9k/Makefile') diff --git a/drivers/net/wireless/ath/ath9k/Makefile b/drivers/net/wireless/ath/ath9k/Makefile index ecf3f8c71d6..96af3d96de5 100644 --- a/drivers/net/wireless/ath/ath9k/Makefile +++ b/drivers/net/wireless/ath/ath9k/Makefile @@ -25,6 +25,7 @@ ath9k_hw-y:= hw.o \ ani.o \ btcoex.o \ mac.o \ + ar9003_mac.o obj-$(CONFIG_ATH9K_HW) += ath9k_hw.o diff --git a/drivers/net/wireless/ath/ath9k/ar9003_mac.c b/drivers/net/wireless/ath/ath9k/ar9003_mac.c new file mode 100644 index 00000000000..ee84e64b8b0 --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9003_mac.c @@ -0,0 +1,28 @@ +/* + * Copyright (c) 2010 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ +#include "hw.h" + +static void ar9003_hw_rx_enable(struct ath_hw *hw) +{ + REG_WRITE(hw, AR_CR, 0); +} + +void ar9003_hw_attach_mac_ops(struct ath_hw *hw) +{ + struct ath_hw_ops *ops = ath9k_hw_ops(hw); + + ops->rx_enable = ar9003_hw_rx_enable; +} diff --git a/drivers/net/wireless/ath/ath9k/ar9003_mac.h b/drivers/net/wireless/ath/ath9k/ar9003_mac.h index dbf74eba4c5..2a9d80e9e0c 100644 --- a/drivers/net/wireless/ath/ath9k/ar9003_mac.h +++ b/drivers/net/wireless/ath/ath9k/ar9003_mac.h @@ -32,4 +32,6 @@ struct ar9003_rxs { u32 status11; } __packed; +void ar9003_hw_attach_mac_ops(struct ath_hw *hw); + #endif diff --git a/drivers/net/wireless/ath/ath9k/hw.c b/drivers/net/wireless/ath/ath9k/hw.c index c06c44c396d..b4a8af1a544 100644 --- a/drivers/net/wireless/ath/ath9k/hw.c +++ b/drivers/net/wireless/ath/ath9k/hw.c @@ -1566,8 +1566,6 @@ int ath9k_hw_reset(struct ath_hw *ah, struct ath9k_channel *chan, if (tsf && AR_SREV_9280(ah) && ah->eep_ops->get_eeprom(ah, EEP_OL_PWRCTRL)) ath9k_hw_settsf64(ah, tsf); - ar9002_hw_attach_mac_ops(ah); - if (AR_SREV_9280_10_OR_LATER(ah)) REG_SET_BIT(ah, AR_GPIO_INPUT_EN_VAL, AR_GPIO_JTAG_DISABLE); @@ -3563,6 +3561,8 @@ static void ar9002_hw_attach_ops(struct ath_hw *ah) ar5008_hw_attach_phy_ops(ah); if (AR_SREV_9280_10_OR_LATER(ah)) ar9002_hw_attach_phy_ops(ah); + + ar9002_hw_attach_mac_ops(ah); } /* Sets up the AR9003 hardware familiy callbacks */ @@ -3573,4 +3573,6 @@ static void ar9003_hw_attach_ops(struct ath_hw *ah) priv_ops->macversion_supported = ar9003_hw_macversion_supported; ar9003_hw_attach_phy_ops(ah); + + ar9003_hw_attach_mac_ops(ah); } -- cgit v1.2.3-70-g09d2 From 795f5e2ca672727a96bacf97075976cfe1249fcf Mon Sep 17 00:00:00 2001 From: "Luis R. Rodriguez" Date: Thu, 15 Apr 2010 17:39:00 -0400 Subject: ath9k_hw: split calib code by hardware families Calibration code touches phy registers and since these change the calibration code needs to be abstracted. Noise floor calibration is the only thing remaining but since the remaining calls only touch the AR_PHY_AGC_CONTROL register we'll just define that register conditionally, that will be done separately. The goal is to remove the dependency of ar9002_phy.h on calib.c This also adds stubs to be filled for AR9003 calibration code. Signed-off-by: Luis R. Rodriguez Signed-off-by: John W. Linville --- drivers/net/wireless/ath/ath9k/Makefile | 4 +- drivers/net/wireless/ath/ath9k/ar9002_calib.c | 993 ++++++++++++++++++++++++++ drivers/net/wireless/ath/ath9k/ar9003_calib.c | 66 ++ drivers/net/wireless/ath/ath9k/calib.c | 928 +----------------------- drivers/net/wireless/ath/ath9k/calib.h | 15 +- drivers/net/wireless/ath/ath9k/hw-ops.h | 28 +- drivers/net/wireless/ath/ath9k/hw.c | 34 +- drivers/net/wireless/ath/ath9k/hw.h | 21 +- 8 files changed, 1118 insertions(+), 971 deletions(-) create mode 100644 drivers/net/wireless/ath/ath9k/ar9002_calib.c create mode 100644 drivers/net/wireless/ath/ath9k/ar9003_calib.c (limited to 'drivers/net/wireless/ath/ath9k/Makefile') diff --git a/drivers/net/wireless/ath/ath9k/Makefile b/drivers/net/wireless/ath/ath9k/Makefile index 96af3d96de5..d2417ed8ec4 100644 --- a/drivers/net/wireless/ath/ath9k/Makefile +++ b/drivers/net/wireless/ath/ath9k/Makefile @@ -17,11 +17,13 @@ ath9k_hw-y:= hw.o \ ar9003_phy.o \ ar9002_phy.o \ ar5008_phy.o \ + ar9002_calib.o \ + ar9003_calib.o \ + calib.o \ eeprom.o \ eeprom_def.o \ eeprom_4k.o \ eeprom_9287.o \ - calib.o \ ani.o \ btcoex.o \ mac.o \ diff --git a/drivers/net/wireless/ath/ath9k/ar9002_calib.c b/drivers/net/wireless/ath/ath9k/ar9002_calib.c new file mode 100644 index 00000000000..cd234aafaa4 --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9002_calib.c @@ -0,0 +1,993 @@ +/* + * Copyright (c) 2008-2010 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include "hw.h" +#include "hw-ops.h" +#include "ar9002_phy.h" + +#define AR9285_CLCAL_REDO_THRESH 1 + +static void ar9002_hw_setup_calibration(struct ath_hw *ah, + struct ath9k_cal_list *currCal) +{ + struct ath_common *common = ath9k_hw_common(ah); + + REG_RMW_FIELD(ah, AR_PHY_TIMING_CTRL4(0), + AR_PHY_TIMING_CTRL4_IQCAL_LOG_COUNT_MAX, + currCal->calData->calCountMax); + + switch (currCal->calData->calType) { + case IQ_MISMATCH_CAL: + REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_IQ); + ath_print(common, ATH_DBG_CALIBRATE, + "starting IQ Mismatch Calibration\n"); + break; + case ADC_GAIN_CAL: + REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_ADC_GAIN); + ath_print(common, ATH_DBG_CALIBRATE, + "starting ADC Gain Calibration\n"); + break; + case ADC_DC_CAL: + REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_ADC_DC_PER); + ath_print(common, ATH_DBG_CALIBRATE, + "starting ADC DC Calibration\n"); + break; + case ADC_DC_INIT_CAL: + REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_ADC_DC_INIT); + ath_print(common, ATH_DBG_CALIBRATE, + "starting Init ADC DC Calibration\n"); + break; + } + + REG_SET_BIT(ah, AR_PHY_TIMING_CTRL4(0), + AR_PHY_TIMING_CTRL4_DO_CAL); +} + +static bool ar9002_hw_per_calibration(struct ath_hw *ah, + struct ath9k_channel *ichan, + u8 rxchainmask, + struct ath9k_cal_list *currCal) +{ + bool iscaldone = false; + + if (currCal->calState == CAL_RUNNING) { + if (!(REG_READ(ah, AR_PHY_TIMING_CTRL4(0)) & + AR_PHY_TIMING_CTRL4_DO_CAL)) { + + currCal->calData->calCollect(ah); + ah->cal_samples++; + + if (ah->cal_samples >= + currCal->calData->calNumSamples) { + int i, numChains = 0; + for (i = 0; i < AR5416_MAX_CHAINS; i++) { + if (rxchainmask & (1 << i)) + numChains++; + } + + currCal->calData->calPostProc(ah, numChains); + ichan->CalValid |= currCal->calData->calType; + currCal->calState = CAL_DONE; + iscaldone = true; + } else { + ar9002_hw_setup_calibration(ah, currCal); + } + } + } else if (!(ichan->CalValid & currCal->calData->calType)) { + ath9k_hw_reset_calibration(ah, currCal); + } + + return iscaldone; +} + +/* Assumes you are talking about the currently configured channel */ +static bool ar9002_hw_iscal_supported(struct ath_hw *ah, + enum ath9k_cal_types calType) +{ + struct ieee80211_conf *conf = &ath9k_hw_common(ah)->hw->conf; + + switch (calType & ah->supp_cals) { + case IQ_MISMATCH_CAL: /* Both 2 GHz and 5 GHz support OFDM */ + return true; + case ADC_GAIN_CAL: + case ADC_DC_CAL: + if (!(conf->channel->band == IEEE80211_BAND_2GHZ && + conf_is_ht20(conf))) + return true; + break; + } + return false; +} + +static void ar9002_hw_iqcal_collect(struct ath_hw *ah) +{ + int i; + + for (i = 0; i < AR5416_MAX_CHAINS; i++) { + ah->totalPowerMeasI[i] += + REG_READ(ah, AR_PHY_CAL_MEAS_0(i)); + ah->totalPowerMeasQ[i] += + REG_READ(ah, AR_PHY_CAL_MEAS_1(i)); + ah->totalIqCorrMeas[i] += + (int32_t) REG_READ(ah, AR_PHY_CAL_MEAS_2(i)); + ath_print(ath9k_hw_common(ah), ATH_DBG_CALIBRATE, + "%d: Chn %d pmi=0x%08x;pmq=0x%08x;iqcm=0x%08x;\n", + ah->cal_samples, i, ah->totalPowerMeasI[i], + ah->totalPowerMeasQ[i], + ah->totalIqCorrMeas[i]); + } +} + +static void ar9002_hw_adc_gaincal_collect(struct ath_hw *ah) +{ + int i; + + for (i = 0; i < AR5416_MAX_CHAINS; i++) { + ah->totalAdcIOddPhase[i] += + REG_READ(ah, AR_PHY_CAL_MEAS_0(i)); + ah->totalAdcIEvenPhase[i] += + REG_READ(ah, AR_PHY_CAL_MEAS_1(i)); + ah->totalAdcQOddPhase[i] += + REG_READ(ah, AR_PHY_CAL_MEAS_2(i)); + ah->totalAdcQEvenPhase[i] += + REG_READ(ah, AR_PHY_CAL_MEAS_3(i)); + + ath_print(ath9k_hw_common(ah), ATH_DBG_CALIBRATE, + "%d: Chn %d oddi=0x%08x; eveni=0x%08x; " + "oddq=0x%08x; evenq=0x%08x;\n", + ah->cal_samples, i, + ah->totalAdcIOddPhase[i], + ah->totalAdcIEvenPhase[i], + ah->totalAdcQOddPhase[i], + ah->totalAdcQEvenPhase[i]); + } +} + +static void ar9002_hw_adc_dccal_collect(struct ath_hw *ah) +{ + int i; + + for (i = 0; i < AR5416_MAX_CHAINS; i++) { + ah->totalAdcDcOffsetIOddPhase[i] += + (int32_t) REG_READ(ah, AR_PHY_CAL_MEAS_0(i)); + ah->totalAdcDcOffsetIEvenPhase[i] += + (int32_t) REG_READ(ah, AR_PHY_CAL_MEAS_1(i)); + ah->totalAdcDcOffsetQOddPhase[i] += + (int32_t) REG_READ(ah, AR_PHY_CAL_MEAS_2(i)); + ah->totalAdcDcOffsetQEvenPhase[i] += + (int32_t) REG_READ(ah, AR_PHY_CAL_MEAS_3(i)); + + ath_print(ath9k_hw_common(ah), ATH_DBG_CALIBRATE, + "%d: Chn %d oddi=0x%08x; eveni=0x%08x; " + "oddq=0x%08x; evenq=0x%08x;\n", + ah->cal_samples, i, + ah->totalAdcDcOffsetIOddPhase[i], + ah->totalAdcDcOffsetIEvenPhase[i], + ah->totalAdcDcOffsetQOddPhase[i], + ah->totalAdcDcOffsetQEvenPhase[i]); + } +} + +static void ar9002_hw_iqcalibrate(struct ath_hw *ah, u8 numChains) +{ + struct ath_common *common = ath9k_hw_common(ah); + u32 powerMeasQ, powerMeasI, iqCorrMeas; + u32 qCoffDenom, iCoffDenom; + int32_t qCoff, iCoff; + int iqCorrNeg, i; + + for (i = 0; i < numChains; i++) { + powerMeasI = ah->totalPowerMeasI[i]; + powerMeasQ = ah->totalPowerMeasQ[i]; + iqCorrMeas = ah->totalIqCorrMeas[i]; + + ath_print(common, ATH_DBG_CALIBRATE, + "Starting IQ Cal and Correction for Chain %d\n", + i); + + ath_print(common, ATH_DBG_CALIBRATE, + "Orignal: Chn %diq_corr_meas = 0x%08x\n", + i, ah->totalIqCorrMeas[i]); + + iqCorrNeg = 0; + + if (iqCorrMeas > 0x80000000) { + iqCorrMeas = (0xffffffff - iqCorrMeas) + 1; + iqCorrNeg = 1; + } + + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d pwr_meas_i = 0x%08x\n", i, powerMeasI); + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d pwr_meas_q = 0x%08x\n", i, powerMeasQ); + ath_print(common, ATH_DBG_CALIBRATE, "iqCorrNeg is 0x%08x\n", + iqCorrNeg); + + iCoffDenom = (powerMeasI / 2 + powerMeasQ / 2) / 128; + qCoffDenom = powerMeasQ / 64; + + if ((powerMeasQ != 0) && (iCoffDenom != 0) && + (qCoffDenom != 0)) { + iCoff = iqCorrMeas / iCoffDenom; + qCoff = powerMeasI / qCoffDenom - 64; + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d iCoff = 0x%08x\n", i, iCoff); + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d qCoff = 0x%08x\n", i, qCoff); + + iCoff = iCoff & 0x3f; + ath_print(common, ATH_DBG_CALIBRATE, + "New: Chn %d iCoff = 0x%08x\n", i, iCoff); + if (iqCorrNeg == 0x0) + iCoff = 0x40 - iCoff; + + if (qCoff > 15) + qCoff = 15; + else if (qCoff <= -16) + qCoff = 16; + + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d : iCoff = 0x%x qCoff = 0x%x\n", + i, iCoff, qCoff); + + REG_RMW_FIELD(ah, AR_PHY_TIMING_CTRL4(i), + AR_PHY_TIMING_CTRL4_IQCORR_Q_I_COFF, + iCoff); + REG_RMW_FIELD(ah, AR_PHY_TIMING_CTRL4(i), + AR_PHY_TIMING_CTRL4_IQCORR_Q_Q_COFF, + qCoff); + ath_print(common, ATH_DBG_CALIBRATE, + "IQ Cal and Correction done for Chain %d\n", + i); + } + } + + REG_SET_BIT(ah, AR_PHY_TIMING_CTRL4(0), + AR_PHY_TIMING_CTRL4_IQCORR_ENABLE); +} + +static void ar9002_hw_adc_gaincal_calibrate(struct ath_hw *ah, u8 numChains) +{ + struct ath_common *common = ath9k_hw_common(ah); + u32 iOddMeasOffset, iEvenMeasOffset, qOddMeasOffset, qEvenMeasOffset; + u32 qGainMismatch, iGainMismatch, val, i; + + for (i = 0; i < numChains; i++) { + iOddMeasOffset = ah->totalAdcIOddPhase[i]; + iEvenMeasOffset = ah->totalAdcIEvenPhase[i]; + qOddMeasOffset = ah->totalAdcQOddPhase[i]; + qEvenMeasOffset = ah->totalAdcQEvenPhase[i]; + + ath_print(common, ATH_DBG_CALIBRATE, + "Starting ADC Gain Cal for Chain %d\n", i); + + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d pwr_meas_odd_i = 0x%08x\n", i, + iOddMeasOffset); + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d pwr_meas_even_i = 0x%08x\n", i, + iEvenMeasOffset); + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d pwr_meas_odd_q = 0x%08x\n", i, + qOddMeasOffset); + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d pwr_meas_even_q = 0x%08x\n", i, + qEvenMeasOffset); + + if (iOddMeasOffset != 0 && qEvenMeasOffset != 0) { + iGainMismatch = + ((iEvenMeasOffset * 32) / + iOddMeasOffset) & 0x3f; + qGainMismatch = + ((qOddMeasOffset * 32) / + qEvenMeasOffset) & 0x3f; + + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d gain_mismatch_i = 0x%08x\n", i, + iGainMismatch); + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d gain_mismatch_q = 0x%08x\n", i, + qGainMismatch); + + val = REG_READ(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(i)); + val &= 0xfffff000; + val |= (qGainMismatch) | (iGainMismatch << 6); + REG_WRITE(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(i), val); + + ath_print(common, ATH_DBG_CALIBRATE, + "ADC Gain Cal done for Chain %d\n", i); + } + } + + REG_WRITE(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(0), + REG_READ(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(0)) | + AR_PHY_NEW_ADC_GAIN_CORR_ENABLE); +} + +static void ar9002_hw_adc_dccal_calibrate(struct ath_hw *ah, u8 numChains) +{ + struct ath_common *common = ath9k_hw_common(ah); + u32 iOddMeasOffset, iEvenMeasOffset, val, i; + int32_t qOddMeasOffset, qEvenMeasOffset, qDcMismatch, iDcMismatch; + const struct ath9k_percal_data *calData = + ah->cal_list_curr->calData; + u32 numSamples = + (1 << (calData->calCountMax + 5)) * calData->calNumSamples; + + for (i = 0; i < numChains; i++) { + iOddMeasOffset = ah->totalAdcDcOffsetIOddPhase[i]; + iEvenMeasOffset = ah->totalAdcDcOffsetIEvenPhase[i]; + qOddMeasOffset = ah->totalAdcDcOffsetQOddPhase[i]; + qEvenMeasOffset = ah->totalAdcDcOffsetQEvenPhase[i]; + + ath_print(common, ATH_DBG_CALIBRATE, + "Starting ADC DC Offset Cal for Chain %d\n", i); + + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d pwr_meas_odd_i = %d\n", i, + iOddMeasOffset); + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d pwr_meas_even_i = %d\n", i, + iEvenMeasOffset); + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d pwr_meas_odd_q = %d\n", i, + qOddMeasOffset); + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d pwr_meas_even_q = %d\n", i, + qEvenMeasOffset); + + iDcMismatch = (((iEvenMeasOffset - iOddMeasOffset) * 2) / + numSamples) & 0x1ff; + qDcMismatch = (((qOddMeasOffset - qEvenMeasOffset) * 2) / + numSamples) & 0x1ff; + + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d dc_offset_mismatch_i = 0x%08x\n", i, + iDcMismatch); + ath_print(common, ATH_DBG_CALIBRATE, + "Chn %d dc_offset_mismatch_q = 0x%08x\n", i, + qDcMismatch); + + val = REG_READ(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(i)); + val &= 0xc0000fff; + val |= (qDcMismatch << 12) | (iDcMismatch << 21); + REG_WRITE(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(i), val); + + ath_print(common, ATH_DBG_CALIBRATE, + "ADC DC Offset Cal done for Chain %d\n", i); + } + + REG_WRITE(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(0), + REG_READ(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(0)) | + AR_PHY_NEW_ADC_DC_OFFSET_CORR_ENABLE); +} + +static void ar9287_hw_olc_temp_compensation(struct ath_hw *ah) +{ + u32 rddata; + int32_t delta, currPDADC, slope; + + rddata = REG_READ(ah, AR_PHY_TX_PWRCTRL4); + currPDADC = MS(rddata, AR_PHY_TX_PWRCTRL_PD_AVG_OUT); + + if (ah->initPDADC == 0 || currPDADC == 0) { + /* + * Zero value indicates that no frames have been transmitted + * yet, can't do temperature compensation until frames are + * transmitted. + */ + return; + } else { + slope = ah->eep_ops->get_eeprom(ah, EEP_TEMPSENSE_SLOPE); + + if (slope == 0) { /* to avoid divide by zero case */ + delta = 0; + } else { + delta = ((currPDADC - ah->initPDADC)*4) / slope; + } + REG_RMW_FIELD(ah, AR_PHY_CH0_TX_PWRCTRL11, + AR_PHY_TX_PWRCTRL_OLPC_TEMP_COMP, delta); + REG_RMW_FIELD(ah, AR_PHY_CH1_TX_PWRCTRL11, + AR_PHY_TX_PWRCTRL_OLPC_TEMP_COMP, delta); + } +} + +static void ar9280_hw_olc_temp_compensation(struct ath_hw *ah) +{ + u32 rddata, i; + int delta, currPDADC, regval; + + rddata = REG_READ(ah, AR_PHY_TX_PWRCTRL4); + currPDADC = MS(rddata, AR_PHY_TX_PWRCTRL_PD_AVG_OUT); + + if (ah->initPDADC == 0 || currPDADC == 0) + return; + + if (ah->eep_ops->get_eeprom(ah, EEP_DAC_HPWR_5G)) + delta = (currPDADC - ah->initPDADC + 4) / 8; + else + delta = (currPDADC - ah->initPDADC + 5) / 10; + + if (delta != ah->PDADCdelta) { + ah->PDADCdelta = delta; + for (i = 1; i < AR9280_TX_GAIN_TABLE_SIZE; i++) { + regval = ah->originalGain[i] - delta; + if (regval < 0) + regval = 0; + + REG_RMW_FIELD(ah, + AR_PHY_TX_GAIN_TBL1 + i * 4, + AR_PHY_TX_GAIN, regval); + } + } +} + +static void ar9271_hw_pa_cal(struct ath_hw *ah, bool is_reset) +{ + u32 regVal; + unsigned int i; + u32 regList[][2] = { + { 0x786c, 0 }, + { 0x7854, 0 }, + { 0x7820, 0 }, + { 0x7824, 0 }, + { 0x7868, 0 }, + { 0x783c, 0 }, + { 0x7838, 0 } , + { 0x7828, 0 } , + }; + + for (i = 0; i < ARRAY_SIZE(regList); i++) + regList[i][1] = REG_READ(ah, regList[i][0]); + + regVal = REG_READ(ah, 0x7834); + regVal &= (~(0x1)); + REG_WRITE(ah, 0x7834, regVal); + regVal = REG_READ(ah, 0x9808); + regVal |= (0x1 << 27); + REG_WRITE(ah, 0x9808, regVal); + + /* 786c,b23,1, pwddac=1 */ + REG_RMW_FIELD(ah, AR9285_AN_TOP3, AR9285_AN_TOP3_PWDDAC, 1); + /* 7854, b5,1, pdrxtxbb=1 */ + REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDRXTXBB1, 1); + /* 7854, b7,1, pdv2i=1 */ + REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDV2I, 1); + /* 7854, b8,1, pddacinterface=1 */ + REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDDACIF, 1); + /* 7824,b12,0, offcal=0 */ + REG_RMW_FIELD(ah, AR9285_AN_RF2G2, AR9285_AN_RF2G2_OFFCAL, 0); + /* 7838, b1,0, pwddb=0 */ + REG_RMW_FIELD(ah, AR9285_AN_RF2G7, AR9285_AN_RF2G7_PWDDB, 0); + /* 7820,b11,0, enpacal=0 */ + REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_ENPACAL, 0); + /* 7820,b25,1, pdpadrv1=0 */ + REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPADRV1, 0); + /* 7820,b24,0, pdpadrv2=0 */ + REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPADRV2, 0); + /* 7820,b23,0, pdpaout=0 */ + REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPAOUT, 0); + /* 783c,b14-16,7, padrvgn2tab_0=7 */ + REG_RMW_FIELD(ah, AR9285_AN_RF2G8, AR9285_AN_RF2G8_PADRVGN2TAB0, 7); + /* + * 7838,b29-31,0, padrvgn1tab_0=0 + * does not matter since we turn it off + */ + REG_RMW_FIELD(ah, AR9285_AN_RF2G7, AR9285_AN_RF2G7_PADRVGN2TAB0, 0); + + REG_RMW_FIELD(ah, AR9285_AN_RF2G3, AR9271_AN_RF2G3_CCOMP, 0xfff); + + /* Set: + * localmode=1,bmode=1,bmoderxtx=1,synthon=1, + * txon=1,paon=1,oscon=1,synthon_force=1 + */ + REG_WRITE(ah, AR9285_AN_TOP2, 0xca0358a0); + udelay(30); + REG_RMW_FIELD(ah, AR9285_AN_RF2G6, AR9271_AN_RF2G6_OFFS, 0); + + /* find off_6_1; */ + for (i = 6; i > 0; i--) { + regVal = REG_READ(ah, 0x7834); + regVal |= (1 << (20 + i)); + REG_WRITE(ah, 0x7834, regVal); + udelay(1); + /* regVal = REG_READ(ah, 0x7834); */ + regVal &= (~(0x1 << (20 + i))); + regVal |= (MS(REG_READ(ah, 0x7840), AR9285_AN_RXTXBB1_SPARE9) + << (20 + i)); + REG_WRITE(ah, 0x7834, regVal); + } + + regVal = (regVal >> 20) & 0x7f; + + /* Update PA cal info */ + if ((!is_reset) && (ah->pacal_info.prev_offset == regVal)) { + if (ah->pacal_info.max_skipcount < MAX_PACAL_SKIPCOUNT) + ah->pacal_info.max_skipcount = + 2 * ah->pacal_info.max_skipcount; + ah->pacal_info.skipcount = ah->pacal_info.max_skipcount; + } else { + ah->pacal_info.max_skipcount = 1; + ah->pacal_info.skipcount = 0; + ah->pacal_info.prev_offset = regVal; + } + + regVal = REG_READ(ah, 0x7834); + regVal |= 0x1; + REG_WRITE(ah, 0x7834, regVal); + regVal = REG_READ(ah, 0x9808); + regVal &= (~(0x1 << 27)); + REG_WRITE(ah, 0x9808, regVal); + + for (i = 0; i < ARRAY_SIZE(regList); i++) + REG_WRITE(ah, regList[i][0], regList[i][1]); +} + +static inline void ar9285_hw_pa_cal(struct ath_hw *ah, bool is_reset) +{ + struct ath_common *common = ath9k_hw_common(ah); + u32 regVal; + int i, offset, offs_6_1, offs_0; + u32 ccomp_org, reg_field; + u32 regList[][2] = { + { 0x786c, 0 }, + { 0x7854, 0 }, + { 0x7820, 0 }, + { 0x7824, 0 }, + { 0x7868, 0 }, + { 0x783c, 0 }, + { 0x7838, 0 }, + }; + + ath_print(common, ATH_DBG_CALIBRATE, "Running PA Calibration\n"); + + /* PA CAL is not needed for high power solution */ + if (ah->eep_ops->get_eeprom(ah, EEP_TXGAIN_TYPE) == + AR5416_EEP_TXGAIN_HIGH_POWER) + return; + + if (AR_SREV_9285_11(ah)) { + REG_WRITE(ah, AR9285_AN_TOP4, (AR9285_AN_TOP4_DEFAULT | 0x14)); + udelay(10); + } + + for (i = 0; i < ARRAY_SIZE(regList); i++) + regList[i][1] = REG_READ(ah, regList[i][0]); + + regVal = REG_READ(ah, 0x7834); + regVal &= (~(0x1)); + REG_WRITE(ah, 0x7834, regVal); + regVal = REG_READ(ah, 0x9808); + regVal |= (0x1 << 27); + REG_WRITE(ah, 0x9808, regVal); + + REG_RMW_FIELD(ah, AR9285_AN_TOP3, AR9285_AN_TOP3_PWDDAC, 1); + REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDRXTXBB1, 1); + REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDV2I, 1); + REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDDACIF, 1); + REG_RMW_FIELD(ah, AR9285_AN_RF2G2, AR9285_AN_RF2G2_OFFCAL, 0); + REG_RMW_FIELD(ah, AR9285_AN_RF2G7, AR9285_AN_RF2G7_PWDDB, 0); + REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_ENPACAL, 0); + REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPADRV1, 0); + REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPADRV2, 0); + REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPAOUT, 0); + REG_RMW_FIELD(ah, AR9285_AN_RF2G8, AR9285_AN_RF2G8_PADRVGN2TAB0, 7); + REG_RMW_FIELD(ah, AR9285_AN_RF2G7, AR9285_AN_RF2G7_PADRVGN2TAB0, 0); + ccomp_org = MS(REG_READ(ah, AR9285_AN_RF2G6), AR9285_AN_RF2G6_CCOMP); + REG_RMW_FIELD(ah, AR9285_AN_RF2G6, AR9285_AN_RF2G6_CCOMP, 0xf); + + REG_WRITE(ah, AR9285_AN_TOP2, 0xca0358a0); + udelay(30); + REG_RMW_FIELD(ah, AR9285_AN_RF2G6, AR9285_AN_RF2G6_OFFS, 0); + REG_RMW_FIELD(ah, AR9285_AN_RF2G3, AR9285_AN_RF2G3_PDVCCOMP, 0); + + for (i = 6; i > 0; i--) { + regVal = REG_READ(ah, 0x7834); + regVal |= (1 << (19 + i)); + REG_WRITE(ah, 0x7834, regVal); + udelay(1); + regVal = REG_READ(ah, 0x7834); + regVal &= (~(0x1 << (19 + i))); + reg_field = MS(REG_READ(ah, 0x7840), AR9285_AN_RXTXBB1_SPARE9); + regVal |= (reg_field << (19 + i)); + REG_WRITE(ah, 0x7834, regVal); + } + + REG_RMW_FIELD(ah, AR9285_AN_RF2G3, AR9285_AN_RF2G3_PDVCCOMP, 1); + udelay(1); + reg_field = MS(REG_READ(ah, AR9285_AN_RF2G9), AR9285_AN_RXTXBB1_SPARE9); + REG_RMW_FIELD(ah, AR9285_AN_RF2G3, AR9285_AN_RF2G3_PDVCCOMP, reg_field); + offs_6_1 = MS(REG_READ(ah, AR9285_AN_RF2G6), AR9285_AN_RF2G6_OFFS); + offs_0 = MS(REG_READ(ah, AR9285_AN_RF2G3), AR9285_AN_RF2G3_PDVCCOMP); + + offset = (offs_6_1<<1) | offs_0; + offset = offset - 0; + offs_6_1 = offset>>1; + offs_0 = offset & 1; + + if ((!is_reset) && (ah->pacal_info.prev_offset == offset)) { + if (ah->pacal_info.max_skipcount < MAX_PACAL_SKIPCOUNT) + ah->pacal_info.max_skipcount = + 2 * ah->pacal_info.max_skipcount; + ah->pacal_info.skipcount = ah->pacal_info.max_skipcount; + } else { + ah->pacal_info.max_skipcount = 1; + ah->pacal_info.skipcount = 0; + ah->pacal_info.prev_offset = offset; + } + + REG_RMW_FIELD(ah, AR9285_AN_RF2G6, AR9285_AN_RF2G6_OFFS, offs_6_1); + REG_RMW_FIELD(ah, AR9285_AN_RF2G3, AR9285_AN_RF2G3_PDVCCOMP, offs_0); + + regVal = REG_READ(ah, 0x7834); + regVal |= 0x1; + REG_WRITE(ah, 0x7834, regVal); + regVal = REG_READ(ah, 0x9808); + regVal &= (~(0x1 << 27)); + REG_WRITE(ah, 0x9808, regVal); + + for (i = 0; i < ARRAY_SIZE(regList); i++) + REG_WRITE(ah, regList[i][0], regList[i][1]); + + REG_RMW_FIELD(ah, AR9285_AN_RF2G6, AR9285_AN_RF2G6_CCOMP, ccomp_org); + + if (AR_SREV_9285_11(ah)) + REG_WRITE(ah, AR9285_AN_TOP4, AR9285_AN_TOP4_DEFAULT); + +} + +static void ar9002_hw_pa_cal(struct ath_hw *ah, bool is_reset) +{ + if (AR_SREV_9271(ah)) { + if (is_reset || !ah->pacal_info.skipcount) + ar9271_hw_pa_cal(ah, is_reset); + else + ah->pacal_info.skipcount--; + } else if (AR_SREV_9285_11_OR_LATER(ah)) { + if (is_reset || !ah->pacal_info.skipcount) + ar9285_hw_pa_cal(ah, is_reset); + else + ah->pacal_info.skipcount--; + } +} + +static void ar9002_hw_olc_temp_compensation(struct ath_hw *ah) +{ + if (OLC_FOR_AR9287_10_LATER) + ar9287_hw_olc_temp_compensation(ah); + else if (OLC_FOR_AR9280_20_LATER) + ar9280_hw_olc_temp_compensation(ah); +} + +static bool ar9002_hw_calibrate(struct ath_hw *ah, + struct ath9k_channel *chan, + u8 rxchainmask, + bool longcal) +{ + bool iscaldone = true; + struct ath9k_cal_list *currCal = ah->cal_list_curr; + + if (currCal && + (currCal->calState == CAL_RUNNING || + currCal->calState == CAL_WAITING)) { + iscaldone = ar9002_hw_per_calibration(ah, chan, + rxchainmask, currCal); + if (iscaldone) { + ah->cal_list_curr = currCal = currCal->calNext; + + if (currCal->calState == CAL_WAITING) { + iscaldone = false; + ath9k_hw_reset_calibration(ah, currCal); + } + } + } + + /* Do NF cal only at longer intervals */ + if (longcal) { + /* Do periodic PAOffset Cal */ + ar9002_hw_pa_cal(ah, false); + ar9002_hw_olc_temp_compensation(ah); + + /* + * Get the value from the previous NF cal and update + * history buffer. + */ + ath9k_hw_getnf(ah, chan); + + /* + * Load the NF from history buffer of the current channel. + * NF is slow time-variant, so it is OK to use a historical + * value. + */ + ath9k_hw_loadnf(ah, ah->curchan); + + ath9k_hw_start_nfcal(ah); + } + + return iscaldone; +} + +/* Carrier leakage Calibration fix */ +static bool ar9285_hw_cl_cal(struct ath_hw *ah, struct ath9k_channel *chan) +{ + struct ath_common *common = ath9k_hw_common(ah); + + REG_SET_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_CL_CAL_ENABLE); + if (IS_CHAN_HT20(chan)) { + REG_SET_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_PARALLEL_CAL_ENABLE); + REG_SET_BIT(ah, AR_PHY_TURBO, AR_PHY_FC_DYN2040_EN); + REG_CLR_BIT(ah, AR_PHY_AGC_CONTROL, + AR_PHY_AGC_CONTROL_FLTR_CAL); + REG_CLR_BIT(ah, AR_PHY_TPCRG1, AR_PHY_TPCRG1_PD_CAL_ENABLE); + REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL); + if (!ath9k_hw_wait(ah, AR_PHY_AGC_CONTROL, + AR_PHY_AGC_CONTROL_CAL, 0, AH_WAIT_TIMEOUT)) { + ath_print(common, ATH_DBG_CALIBRATE, "offset " + "calibration failed to complete in " + "1ms; noisy ??\n"); + return false; + } + REG_CLR_BIT(ah, AR_PHY_TURBO, AR_PHY_FC_DYN2040_EN); + REG_CLR_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_PARALLEL_CAL_ENABLE); + REG_CLR_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_CL_CAL_ENABLE); + } + REG_CLR_BIT(ah, AR_PHY_ADC_CTL, AR_PHY_ADC_CTL_OFF_PWDADC); + REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_FLTR_CAL); + REG_SET_BIT(ah, AR_PHY_TPCRG1, AR_PHY_TPCRG1_PD_CAL_ENABLE); + REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL); + if (!ath9k_hw_wait(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL, + 0, AH_WAIT_TIMEOUT)) { + ath_print(common, ATH_DBG_CALIBRATE, "offset calibration " + "failed to complete in 1ms; noisy ??\n"); + return false; + } + + REG_SET_BIT(ah, AR_PHY_ADC_CTL, AR_PHY_ADC_CTL_OFF_PWDADC); + REG_CLR_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_CL_CAL_ENABLE); + REG_CLR_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_FLTR_CAL); + + return true; +} + +static bool ar9285_hw_clc(struct ath_hw *ah, struct ath9k_channel *chan) +{ + int i; + u_int32_t txgain_max; + u_int32_t clc_gain, gain_mask = 0, clc_num = 0; + u_int32_t reg_clc_I0, reg_clc_Q0; + u_int32_t i0_num = 0; + u_int32_t q0_num = 0; + u_int32_t total_num = 0; + u_int32_t reg_rf2g5_org; + bool retv = true; + + if (!(ar9285_hw_cl_cal(ah, chan))) + return false; + + txgain_max = MS(REG_READ(ah, AR_PHY_TX_PWRCTRL7), + AR_PHY_TX_PWRCTRL_TX_GAIN_TAB_MAX); + + for (i = 0; i < (txgain_max+1); i++) { + clc_gain = (REG_READ(ah, (AR_PHY_TX_GAIN_TBL1+(i<<2))) & + AR_PHY_TX_GAIN_CLC) >> AR_PHY_TX_GAIN_CLC_S; + if (!(gain_mask & (1 << clc_gain))) { + gain_mask |= (1 << clc_gain); + clc_num++; + } + } + + for (i = 0; i < clc_num; i++) { + reg_clc_I0 = (REG_READ(ah, (AR_PHY_CLC_TBL1 + (i << 2))) + & AR_PHY_CLC_I0) >> AR_PHY_CLC_I0_S; + reg_clc_Q0 = (REG_READ(ah, (AR_PHY_CLC_TBL1 + (i << 2))) + & AR_PHY_CLC_Q0) >> AR_PHY_CLC_Q0_S; + if (reg_clc_I0 == 0) + i0_num++; + + if (reg_clc_Q0 == 0) + q0_num++; + } + total_num = i0_num + q0_num; + if (total_num > AR9285_CLCAL_REDO_THRESH) { + reg_rf2g5_org = REG_READ(ah, AR9285_RF2G5); + if (AR_SREV_9285E_20(ah)) { + REG_WRITE(ah, AR9285_RF2G5, + (reg_rf2g5_org & AR9285_RF2G5_IC50TX) | + AR9285_RF2G5_IC50TX_XE_SET); + } else { + REG_WRITE(ah, AR9285_RF2G5, + (reg_rf2g5_org & AR9285_RF2G5_IC50TX) | + AR9285_RF2G5_IC50TX_SET); + } + retv = ar9285_hw_cl_cal(ah, chan); + REG_WRITE(ah, AR9285_RF2G5, reg_rf2g5_org); + } + return retv; +} + +static bool ar9002_hw_init_cal(struct ath_hw *ah, struct ath9k_channel *chan) +{ + struct ath_common *common = ath9k_hw_common(ah); + + if (AR_SREV_9271(ah) || AR_SREV_9285_12_OR_LATER(ah)) { + if (!ar9285_hw_clc(ah, chan)) + return false; + } else { + if (AR_SREV_9280_10_OR_LATER(ah)) { + if (!AR_SREV_9287_10_OR_LATER(ah)) + REG_CLR_BIT(ah, AR_PHY_ADC_CTL, + AR_PHY_ADC_CTL_OFF_PWDADC); + REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, + AR_PHY_AGC_CONTROL_FLTR_CAL); + } + + /* Calibrate the AGC */ + REG_WRITE(ah, AR_PHY_AGC_CONTROL, + REG_READ(ah, AR_PHY_AGC_CONTROL) | + AR_PHY_AGC_CONTROL_CAL); + + /* Poll for offset calibration complete */ + if (!ath9k_hw_wait(ah, AR_PHY_AGC_CONTROL, + AR_PHY_AGC_CONTROL_CAL, + 0, AH_WAIT_TIMEOUT)) { + ath_print(common, ATH_DBG_CALIBRATE, + "offset calibration failed to " + "complete in 1ms; noisy environment?\n"); + return false; + } + + if (AR_SREV_9280_10_OR_LATER(ah)) { + if (!AR_SREV_9287_10_OR_LATER(ah)) + REG_SET_BIT(ah, AR_PHY_ADC_CTL, + AR_PHY_ADC_CTL_OFF_PWDADC); + REG_CLR_BIT(ah, AR_PHY_AGC_CONTROL, + AR_PHY_AGC_CONTROL_FLTR_CAL); + } + } + + /* Do PA Calibration */ + ar9002_hw_pa_cal(ah, true); + + /* Do NF Calibration after DC offset and other calibrations */ + REG_WRITE(ah, AR_PHY_AGC_CONTROL, + REG_READ(ah, AR_PHY_AGC_CONTROL) | AR_PHY_AGC_CONTROL_NF); + + ah->cal_list = ah->cal_list_last = ah->cal_list_curr = NULL; + + /* Enable IQ, ADC Gain and ADC DC offset CALs */ + if (AR_SREV_9100(ah) || AR_SREV_9160_10_OR_LATER(ah)) { + if (ar9002_hw_iscal_supported(ah, ADC_GAIN_CAL)) { + INIT_CAL(&ah->adcgain_caldata); + INSERT_CAL(ah, &ah->adcgain_caldata); + ath_print(common, ATH_DBG_CALIBRATE, + "enabling ADC Gain Calibration.\n"); + } + if (ar9002_hw_iscal_supported(ah, ADC_DC_CAL)) { + INIT_CAL(&ah->adcdc_caldata); + INSERT_CAL(ah, &ah->adcdc_caldata); + ath_print(common, ATH_DBG_CALIBRATE, + "enabling ADC DC Calibration.\n"); + } + if (ar9002_hw_iscal_supported(ah, IQ_MISMATCH_CAL)) { + INIT_CAL(&ah->iq_caldata); + INSERT_CAL(ah, &ah->iq_caldata); + ath_print(common, ATH_DBG_CALIBRATE, + "enabling IQ Calibration.\n"); + } + + ah->cal_list_curr = ah->cal_list; + + if (ah->cal_list_curr) + ath9k_hw_reset_calibration(ah, ah->cal_list_curr); + } + + chan->CalValid = 0; + + return true; +} + +static const struct ath9k_percal_data iq_cal_multi_sample = { + IQ_MISMATCH_CAL, + MAX_CAL_SAMPLES, + PER_MIN_LOG_COUNT, + ar9002_hw_iqcal_collect, + ar9002_hw_iqcalibrate +}; +static const struct ath9k_percal_data iq_cal_single_sample = { + IQ_MISMATCH_CAL, + MIN_CAL_SAMPLES, + PER_MAX_LOG_COUNT, + ar9002_hw_iqcal_collect, + ar9002_hw_iqcalibrate +}; +static const struct ath9k_percal_data adc_gain_cal_multi_sample = { + ADC_GAIN_CAL, + MAX_CAL_SAMPLES, + PER_MIN_LOG_COUNT, + ar9002_hw_adc_gaincal_collect, + ar9002_hw_adc_gaincal_calibrate +}; +static const struct ath9k_percal_data adc_gain_cal_single_sample = { + ADC_GAIN_CAL, + MIN_CAL_SAMPLES, + PER_MAX_LOG_COUNT, + ar9002_hw_adc_gaincal_collect, + ar9002_hw_adc_gaincal_calibrate +}; +static const struct ath9k_percal_data adc_dc_cal_multi_sample = { + ADC_DC_CAL, + MAX_CAL_SAMPLES, + PER_MIN_LOG_COUNT, + ar9002_hw_adc_dccal_collect, + ar9002_hw_adc_dccal_calibrate +}; +static const struct ath9k_percal_data adc_dc_cal_single_sample = { + ADC_DC_CAL, + MIN_CAL_SAMPLES, + PER_MAX_LOG_COUNT, + ar9002_hw_adc_dccal_collect, + ar9002_hw_adc_dccal_calibrate +}; +static const struct ath9k_percal_data adc_init_dc_cal = { + ADC_DC_INIT_CAL, + MIN_CAL_SAMPLES, + INIT_LOG_COUNT, + ar9002_hw_adc_dccal_collect, + ar9002_hw_adc_dccal_calibrate +}; + +static void ar9002_hw_init_cal_settings(struct ath_hw *ah) +{ + if (AR_SREV_9100(ah)) { + ah->iq_caldata.calData = &iq_cal_multi_sample; + ah->supp_cals = IQ_MISMATCH_CAL; + return; + } + + if (AR_SREV_9160_10_OR_LATER(ah)) { + if (AR_SREV_9280_10_OR_LATER(ah)) { + ah->iq_caldata.calData = &iq_cal_single_sample; + ah->adcgain_caldata.calData = + &adc_gain_cal_single_sample; + ah->adcdc_caldata.calData = + &adc_dc_cal_single_sample; + ah->adcdc_calinitdata.calData = + &adc_init_dc_cal; + } else { + ah->iq_caldata.calData = &iq_cal_multi_sample; + ah->adcgain_caldata.calData = + &adc_gain_cal_multi_sample; + ah->adcdc_caldata.calData = + &adc_dc_cal_multi_sample; + ah->adcdc_calinitdata.calData = + &adc_init_dc_cal; + } + ah->supp_cals = ADC_GAIN_CAL | ADC_DC_CAL | IQ_MISMATCH_CAL; + } +} + +void ar9002_hw_attach_calib_ops(struct ath_hw *ah) +{ + struct ath_hw_private_ops *priv_ops = ath9k_hw_private_ops(ah); + struct ath_hw_ops *ops = ath9k_hw_ops(ah); + + priv_ops->init_cal_settings = ar9002_hw_init_cal_settings; + priv_ops->init_cal = ar9002_hw_init_cal; + priv_ops->setup_calibration = ar9002_hw_setup_calibration; + priv_ops->iscal_supported = ar9002_hw_iscal_supported; + + ops->calibrate = ar9002_hw_calibrate; +} diff --git a/drivers/net/wireless/ath/ath9k/ar9003_calib.c b/drivers/net/wireless/ath/ath9k/ar9003_calib.c new file mode 100644 index 00000000000..6a7267764ac --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9003_calib.c @@ -0,0 +1,66 @@ +/* + * Copyright (c) 2010 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include "hw.h" +#include "hw-ops.h" +#include "ar9003_phy.h" + +static void ar9003_hw_setup_calibration(struct ath_hw *ah, + struct ath9k_cal_list *currCal) +{ + /* TODO */ +} + +static bool ar9003_hw_calibrate(struct ath_hw *ah, + struct ath9k_channel *chan, + u8 rxchainmask, + bool longcal) +{ + /* TODO */ + return false; +} + +static bool ar9003_hw_init_cal(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + /* TODO */ + return false; +} + +static void ar9003_hw_init_cal_settings(struct ath_hw *ah) +{ + /* TODO */ +} + +static bool ar9003_hw_iscal_supported(struct ath_hw *ah, + enum ath9k_cal_types calType) +{ + /* TODO */ + return false; +} + +void ar9003_hw_attach_calib_ops(struct ath_hw *ah) +{ + struct ath_hw_private_ops *priv_ops = ath9k_hw_private_ops(ah); + struct ath_hw_ops *ops = ath9k_hw_ops(ah); + + priv_ops->init_cal_settings = ar9003_hw_init_cal_settings; + priv_ops->init_cal = ar9003_hw_init_cal; + priv_ops->setup_calibration = ar9003_hw_setup_calibration; + priv_ops->iscal_supported = ar9003_hw_iscal_supported; + + ops->calibrate = ar9003_hw_calibrate; +} diff --git a/drivers/net/wireless/ath/ath9k/calib.c b/drivers/net/wireless/ath/ath9k/calib.c index aa724c26340..085e1264fbe 100644 --- a/drivers/net/wireless/ath/ath9k/calib.c +++ b/drivers/net/wireless/ath/ath9k/calib.c @@ -18,9 +18,10 @@ #include "hw-ops.h" #include "ar9002_phy.h" +/* Common calibration code */ + /* We can tune this as we go by monitoring really low values */ #define ATH9K_NF_TOO_LOW -60 -#define AR9285_CLCAL_REDO_THRESH 1 /* AR5416 may return very high value (like -31 dBm), in those cases the nf * is incorrect and we should use the static NF value. Later we can try to @@ -108,44 +109,8 @@ static bool ath9k_hw_get_nf_thresh(struct ath_hw *ah, return true; } -static void ath9k_hw_setup_calibration(struct ath_hw *ah, - struct ath9k_cal_list *currCal) -{ - struct ath_common *common = ath9k_hw_common(ah); - - REG_RMW_FIELD(ah, AR_PHY_TIMING_CTRL4(0), - AR_PHY_TIMING_CTRL4_IQCAL_LOG_COUNT_MAX, - currCal->calData->calCountMax); - - switch (currCal->calData->calType) { - case IQ_MISMATCH_CAL: - REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_IQ); - ath_print(common, ATH_DBG_CALIBRATE, - "starting IQ Mismatch Calibration\n"); - break; - case ADC_GAIN_CAL: - REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_ADC_GAIN); - ath_print(common, ATH_DBG_CALIBRATE, - "starting ADC Gain Calibration\n"); - break; - case ADC_DC_CAL: - REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_ADC_DC_PER); - ath_print(common, ATH_DBG_CALIBRATE, - "starting ADC DC Calibration\n"); - break; - case ADC_DC_INIT_CAL: - REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_ADC_DC_INIT); - ath_print(common, ATH_DBG_CALIBRATE, - "starting Init ADC DC Calibration\n"); - break; - } - - REG_SET_BIT(ah, AR_PHY_TIMING_CTRL4(0), - AR_PHY_TIMING_CTRL4_DO_CAL); -} - -static void ath9k_hw_reset_calibration(struct ath_hw *ah, - struct ath9k_cal_list *currCal) +void ath9k_hw_reset_calibration(struct ath_hw *ah, + struct ath9k_cal_list *currCal) { int i; @@ -163,324 +128,6 @@ static void ath9k_hw_reset_calibration(struct ath_hw *ah, ah->cal_samples = 0; } -static bool ath9k_hw_per_calibration(struct ath_hw *ah, - struct ath9k_channel *ichan, - u8 rxchainmask, - struct ath9k_cal_list *currCal) -{ - bool iscaldone = false; - - if (currCal->calState == CAL_RUNNING) { - if (!(REG_READ(ah, AR_PHY_TIMING_CTRL4(0)) & - AR_PHY_TIMING_CTRL4_DO_CAL)) { - - currCal->calData->calCollect(ah); - ah->cal_samples++; - - if (ah->cal_samples >= currCal->calData->calNumSamples) { - int i, numChains = 0; - for (i = 0; i < AR5416_MAX_CHAINS; i++) { - if (rxchainmask & (1 << i)) - numChains++; - } - - currCal->calData->calPostProc(ah, numChains); - ichan->CalValid |= currCal->calData->calType; - currCal->calState = CAL_DONE; - iscaldone = true; - } else { - ath9k_hw_setup_calibration(ah, currCal); - } - } - } else if (!(ichan->CalValid & currCal->calData->calType)) { - ath9k_hw_reset_calibration(ah, currCal); - } - - return iscaldone; -} - -/* Assumes you are talking about the currently configured channel */ -static bool ath9k_hw_iscal_supported(struct ath_hw *ah, - enum ath9k_cal_types calType) -{ - struct ieee80211_conf *conf = &ath9k_hw_common(ah)->hw->conf; - - switch (calType & ah->supp_cals) { - case IQ_MISMATCH_CAL: /* Both 2 GHz and 5 GHz support OFDM */ - return true; - case ADC_GAIN_CAL: - case ADC_DC_CAL: - if (!(conf->channel->band == IEEE80211_BAND_2GHZ && - conf_is_ht20(conf))) - return true; - break; - } - return false; -} - -static void ath9k_hw_iqcal_collect(struct ath_hw *ah) -{ - int i; - - for (i = 0; i < AR5416_MAX_CHAINS; i++) { - ah->totalPowerMeasI[i] += - REG_READ(ah, AR_PHY_CAL_MEAS_0(i)); - ah->totalPowerMeasQ[i] += - REG_READ(ah, AR_PHY_CAL_MEAS_1(i)); - ah->totalIqCorrMeas[i] += - (int32_t) REG_READ(ah, AR_PHY_CAL_MEAS_2(i)); - ath_print(ath9k_hw_common(ah), ATH_DBG_CALIBRATE, - "%d: Chn %d pmi=0x%08x;pmq=0x%08x;iqcm=0x%08x;\n", - ah->cal_samples, i, ah->totalPowerMeasI[i], - ah->totalPowerMeasQ[i], - ah->totalIqCorrMeas[i]); - } -} - -static void ath9k_hw_adc_gaincal_collect(struct ath_hw *ah) -{ - int i; - - for (i = 0; i < AR5416_MAX_CHAINS; i++) { - ah->totalAdcIOddPhase[i] += - REG_READ(ah, AR_PHY_CAL_MEAS_0(i)); - ah->totalAdcIEvenPhase[i] += - REG_READ(ah, AR_PHY_CAL_MEAS_1(i)); - ah->totalAdcQOddPhase[i] += - REG_READ(ah, AR_PHY_CAL_MEAS_2(i)); - ah->totalAdcQEvenPhase[i] += - REG_READ(ah, AR_PHY_CAL_MEAS_3(i)); - - ath_print(ath9k_hw_common(ah), ATH_DBG_CALIBRATE, - "%d: Chn %d oddi=0x%08x; eveni=0x%08x; " - "oddq=0x%08x; evenq=0x%08x;\n", - ah->cal_samples, i, - ah->totalAdcIOddPhase[i], - ah->totalAdcIEvenPhase[i], - ah->totalAdcQOddPhase[i], - ah->totalAdcQEvenPhase[i]); - } -} - -static void ath9k_hw_adc_dccal_collect(struct ath_hw *ah) -{ - int i; - - for (i = 0; i < AR5416_MAX_CHAINS; i++) { - ah->totalAdcDcOffsetIOddPhase[i] += - (int32_t) REG_READ(ah, AR_PHY_CAL_MEAS_0(i)); - ah->totalAdcDcOffsetIEvenPhase[i] += - (int32_t) REG_READ(ah, AR_PHY_CAL_MEAS_1(i)); - ah->totalAdcDcOffsetQOddPhase[i] += - (int32_t) REG_READ(ah, AR_PHY_CAL_MEAS_2(i)); - ah->totalAdcDcOffsetQEvenPhase[i] += - (int32_t) REG_READ(ah, AR_PHY_CAL_MEAS_3(i)); - - ath_print(ath9k_hw_common(ah), ATH_DBG_CALIBRATE, - "%d: Chn %d oddi=0x%08x; eveni=0x%08x; " - "oddq=0x%08x; evenq=0x%08x;\n", - ah->cal_samples, i, - ah->totalAdcDcOffsetIOddPhase[i], - ah->totalAdcDcOffsetIEvenPhase[i], - ah->totalAdcDcOffsetQOddPhase[i], - ah->totalAdcDcOffsetQEvenPhase[i]); - } -} - -static void ath9k_hw_iqcalibrate(struct ath_hw *ah, u8 numChains) -{ - struct ath_common *common = ath9k_hw_common(ah); - u32 powerMeasQ, powerMeasI, iqCorrMeas; - u32 qCoffDenom, iCoffDenom; - int32_t qCoff, iCoff; - int iqCorrNeg, i; - - for (i = 0; i < numChains; i++) { - powerMeasI = ah->totalPowerMeasI[i]; - powerMeasQ = ah->totalPowerMeasQ[i]; - iqCorrMeas = ah->totalIqCorrMeas[i]; - - ath_print(common, ATH_DBG_CALIBRATE, - "Starting IQ Cal and Correction for Chain %d\n", - i); - - ath_print(common, ATH_DBG_CALIBRATE, - "Orignal: Chn %diq_corr_meas = 0x%08x\n", - i, ah->totalIqCorrMeas[i]); - - iqCorrNeg = 0; - - if (iqCorrMeas > 0x80000000) { - iqCorrMeas = (0xffffffff - iqCorrMeas) + 1; - iqCorrNeg = 1; - } - - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d pwr_meas_i = 0x%08x\n", i, powerMeasI); - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d pwr_meas_q = 0x%08x\n", i, powerMeasQ); - ath_print(common, ATH_DBG_CALIBRATE, "iqCorrNeg is 0x%08x\n", - iqCorrNeg); - - iCoffDenom = (powerMeasI / 2 + powerMeasQ / 2) / 128; - qCoffDenom = powerMeasQ / 64; - - if ((powerMeasQ != 0) && (iCoffDenom != 0) && - (qCoffDenom != 0)) { - iCoff = iqCorrMeas / iCoffDenom; - qCoff = powerMeasI / qCoffDenom - 64; - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d iCoff = 0x%08x\n", i, iCoff); - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d qCoff = 0x%08x\n", i, qCoff); - - iCoff = iCoff & 0x3f; - ath_print(common, ATH_DBG_CALIBRATE, - "New: Chn %d iCoff = 0x%08x\n", i, iCoff); - if (iqCorrNeg == 0x0) - iCoff = 0x40 - iCoff; - - if (qCoff > 15) - qCoff = 15; - else if (qCoff <= -16) - qCoff = 16; - - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d : iCoff = 0x%x qCoff = 0x%x\n", - i, iCoff, qCoff); - - REG_RMW_FIELD(ah, AR_PHY_TIMING_CTRL4(i), - AR_PHY_TIMING_CTRL4_IQCORR_Q_I_COFF, - iCoff); - REG_RMW_FIELD(ah, AR_PHY_TIMING_CTRL4(i), - AR_PHY_TIMING_CTRL4_IQCORR_Q_Q_COFF, - qCoff); - ath_print(common, ATH_DBG_CALIBRATE, - "IQ Cal and Correction done for Chain %d\n", - i); - } - } - - REG_SET_BIT(ah, AR_PHY_TIMING_CTRL4(0), - AR_PHY_TIMING_CTRL4_IQCORR_ENABLE); -} - -static void ath9k_hw_adc_gaincal_calibrate(struct ath_hw *ah, u8 numChains) -{ - struct ath_common *common = ath9k_hw_common(ah); - u32 iOddMeasOffset, iEvenMeasOffset, qOddMeasOffset, qEvenMeasOffset; - u32 qGainMismatch, iGainMismatch, val, i; - - for (i = 0; i < numChains; i++) { - iOddMeasOffset = ah->totalAdcIOddPhase[i]; - iEvenMeasOffset = ah->totalAdcIEvenPhase[i]; - qOddMeasOffset = ah->totalAdcQOddPhase[i]; - qEvenMeasOffset = ah->totalAdcQEvenPhase[i]; - - ath_print(common, ATH_DBG_CALIBRATE, - "Starting ADC Gain Cal for Chain %d\n", i); - - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d pwr_meas_odd_i = 0x%08x\n", i, - iOddMeasOffset); - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d pwr_meas_even_i = 0x%08x\n", i, - iEvenMeasOffset); - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d pwr_meas_odd_q = 0x%08x\n", i, - qOddMeasOffset); - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d pwr_meas_even_q = 0x%08x\n", i, - qEvenMeasOffset); - - if (iOddMeasOffset != 0 && qEvenMeasOffset != 0) { - iGainMismatch = - ((iEvenMeasOffset * 32) / - iOddMeasOffset) & 0x3f; - qGainMismatch = - ((qOddMeasOffset * 32) / - qEvenMeasOffset) & 0x3f; - - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d gain_mismatch_i = 0x%08x\n", i, - iGainMismatch); - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d gain_mismatch_q = 0x%08x\n", i, - qGainMismatch); - - val = REG_READ(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(i)); - val &= 0xfffff000; - val |= (qGainMismatch) | (iGainMismatch << 6); - REG_WRITE(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(i), val); - - ath_print(common, ATH_DBG_CALIBRATE, - "ADC Gain Cal done for Chain %d\n", i); - } - } - - REG_WRITE(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(0), - REG_READ(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(0)) | - AR_PHY_NEW_ADC_GAIN_CORR_ENABLE); -} - -static void ath9k_hw_adc_dccal_calibrate(struct ath_hw *ah, u8 numChains) -{ - struct ath_common *common = ath9k_hw_common(ah); - u32 iOddMeasOffset, iEvenMeasOffset, val, i; - int32_t qOddMeasOffset, qEvenMeasOffset, qDcMismatch, iDcMismatch; - const struct ath9k_percal_data *calData = - ah->cal_list_curr->calData; - u32 numSamples = - (1 << (calData->calCountMax + 5)) * calData->calNumSamples; - - for (i = 0; i < numChains; i++) { - iOddMeasOffset = ah->totalAdcDcOffsetIOddPhase[i]; - iEvenMeasOffset = ah->totalAdcDcOffsetIEvenPhase[i]; - qOddMeasOffset = ah->totalAdcDcOffsetQOddPhase[i]; - qEvenMeasOffset = ah->totalAdcDcOffsetQEvenPhase[i]; - - ath_print(common, ATH_DBG_CALIBRATE, - "Starting ADC DC Offset Cal for Chain %d\n", i); - - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d pwr_meas_odd_i = %d\n", i, - iOddMeasOffset); - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d pwr_meas_even_i = %d\n", i, - iEvenMeasOffset); - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d pwr_meas_odd_q = %d\n", i, - qOddMeasOffset); - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d pwr_meas_even_q = %d\n", i, - qEvenMeasOffset); - - iDcMismatch = (((iEvenMeasOffset - iOddMeasOffset) * 2) / - numSamples) & 0x1ff; - qDcMismatch = (((qOddMeasOffset - qEvenMeasOffset) * 2) / - numSamples) & 0x1ff; - - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d dc_offset_mismatch_i = 0x%08x\n", i, - iDcMismatch); - ath_print(common, ATH_DBG_CALIBRATE, - "Chn %d dc_offset_mismatch_q = 0x%08x\n", i, - qDcMismatch); - - val = REG_READ(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(i)); - val &= 0xc0000fff; - val |= (qDcMismatch << 12) | (iDcMismatch << 21); - REG_WRITE(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(i), val); - - ath_print(common, ATH_DBG_CALIBRATE, - "ADC DC Offset Cal done for Chain %d\n", i); - } - - REG_WRITE(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(0), - REG_READ(ah, AR_PHY_NEW_ADC_DC_GAIN_CORR(0)) | - AR_PHY_NEW_ADC_DC_OFFSET_CORR_ENABLE); -} - /* This is done for the currently configured channel */ bool ath9k_hw_reset_calvalid(struct ath_hw *ah) { @@ -670,570 +317,3 @@ s16 ath9k_hw_getchan_noise(struct ath_hw *ah, struct ath9k_channel *chan) return nf; } EXPORT_SYMBOL(ath9k_hw_getchan_noise); - -static void ar9287_hw_olc_temp_compensation(struct ath_hw *ah) -{ - u32 rddata; - int32_t delta, currPDADC, slope; - - rddata = REG_READ(ah, AR_PHY_TX_PWRCTRL4); - currPDADC = MS(rddata, AR_PHY_TX_PWRCTRL_PD_AVG_OUT); - - if (ah->initPDADC == 0 || currPDADC == 0) { - /* - * Zero value indicates that no frames have been transmitted yet, - * can't do temperature compensation until frames are transmitted. - */ - return; - } else { - slope = ah->eep_ops->get_eeprom(ah, EEP_TEMPSENSE_SLOPE); - - if (slope == 0) { /* to avoid divide by zero case */ - delta = 0; - } else { - delta = ((currPDADC - ah->initPDADC)*4) / slope; - } - REG_RMW_FIELD(ah, AR_PHY_CH0_TX_PWRCTRL11, - AR_PHY_TX_PWRCTRL_OLPC_TEMP_COMP, delta); - REG_RMW_FIELD(ah, AR_PHY_CH1_TX_PWRCTRL11, - AR_PHY_TX_PWRCTRL_OLPC_TEMP_COMP, delta); - } -} - -static void ar9280_hw_olc_temp_compensation(struct ath_hw *ah) -{ - u32 rddata, i; - int delta, currPDADC, regval; - - rddata = REG_READ(ah, AR_PHY_TX_PWRCTRL4); - currPDADC = MS(rddata, AR_PHY_TX_PWRCTRL_PD_AVG_OUT); - - if (ah->initPDADC == 0 || currPDADC == 0) - return; - - if (ah->eep_ops->get_eeprom(ah, EEP_DAC_HPWR_5G)) - delta = (currPDADC - ah->initPDADC + 4) / 8; - else - delta = (currPDADC - ah->initPDADC + 5) / 10; - - if (delta != ah->PDADCdelta) { - ah->PDADCdelta = delta; - for (i = 1; i < AR9280_TX_GAIN_TABLE_SIZE; i++) { - regval = ah->originalGain[i] - delta; - if (regval < 0) - regval = 0; - - REG_RMW_FIELD(ah, - AR_PHY_TX_GAIN_TBL1 + i * 4, - AR_PHY_TX_GAIN, regval); - } - } -} - -static void ar9271_hw_pa_cal(struct ath_hw *ah, bool is_reset) -{ - u32 regVal; - unsigned int i; - u32 regList [][2] = { - { 0x786c, 0 }, - { 0x7854, 0 }, - { 0x7820, 0 }, - { 0x7824, 0 }, - { 0x7868, 0 }, - { 0x783c, 0 }, - { 0x7838, 0 } , - { 0x7828, 0 } , - }; - - for (i = 0; i < ARRAY_SIZE(regList); i++) - regList[i][1] = REG_READ(ah, regList[i][0]); - - regVal = REG_READ(ah, 0x7834); - regVal &= (~(0x1)); - REG_WRITE(ah, 0x7834, regVal); - regVal = REG_READ(ah, 0x9808); - regVal |= (0x1 << 27); - REG_WRITE(ah, 0x9808, regVal); - - /* 786c,b23,1, pwddac=1 */ - REG_RMW_FIELD(ah, AR9285_AN_TOP3, AR9285_AN_TOP3_PWDDAC, 1); - /* 7854, b5,1, pdrxtxbb=1 */ - REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDRXTXBB1, 1); - /* 7854, b7,1, pdv2i=1 */ - REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDV2I, 1); - /* 7854, b8,1, pddacinterface=1 */ - REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDDACIF, 1); - /* 7824,b12,0, offcal=0 */ - REG_RMW_FIELD(ah, AR9285_AN_RF2G2, AR9285_AN_RF2G2_OFFCAL, 0); - /* 7838, b1,0, pwddb=0 */ - REG_RMW_FIELD(ah, AR9285_AN_RF2G7, AR9285_AN_RF2G7_PWDDB, 0); - /* 7820,b11,0, enpacal=0 */ - REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_ENPACAL, 0); - /* 7820,b25,1, pdpadrv1=0 */ - REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPADRV1, 0); - /* 7820,b24,0, pdpadrv2=0 */ - REG_RMW_FIELD(ah, AR9285_AN_RF2G1,AR9285_AN_RF2G1_PDPADRV2,0); - /* 7820,b23,0, pdpaout=0 */ - REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPAOUT, 0); - /* 783c,b14-16,7, padrvgn2tab_0=7 */ - REG_RMW_FIELD(ah, AR9285_AN_RF2G8,AR9285_AN_RF2G8_PADRVGN2TAB0, 7); - /* - * 7838,b29-31,0, padrvgn1tab_0=0 - * does not matter since we turn it off - */ - REG_RMW_FIELD(ah, AR9285_AN_RF2G7,AR9285_AN_RF2G7_PADRVGN2TAB0, 0); - - REG_RMW_FIELD(ah, AR9285_AN_RF2G3, AR9271_AN_RF2G3_CCOMP, 0xfff); - - /* Set: - * localmode=1,bmode=1,bmoderxtx=1,synthon=1, - * txon=1,paon=1,oscon=1,synthon_force=1 - */ - REG_WRITE(ah, AR9285_AN_TOP2, 0xca0358a0); - udelay(30); - REG_RMW_FIELD(ah, AR9285_AN_RF2G6, AR9271_AN_RF2G6_OFFS, 0); - - /* find off_6_1; */ - for (i = 6; i > 0; i--) { - regVal = REG_READ(ah, 0x7834); - regVal |= (1 << (20 + i)); - REG_WRITE(ah, 0x7834, regVal); - udelay(1); - //regVal = REG_READ(ah, 0x7834); - regVal &= (~(0x1 << (20 + i))); - regVal |= (MS(REG_READ(ah, 0x7840), AR9285_AN_RXTXBB1_SPARE9) - << (20 + i)); - REG_WRITE(ah, 0x7834, regVal); - } - - regVal = (regVal >>20) & 0x7f; - - /* Update PA cal info */ - if ((!is_reset) && (ah->pacal_info.prev_offset == regVal)) { - if (ah->pacal_info.max_skipcount < MAX_PACAL_SKIPCOUNT) - ah->pacal_info.max_skipcount = - 2 * ah->pacal_info.max_skipcount; - ah->pacal_info.skipcount = ah->pacal_info.max_skipcount; - } else { - ah->pacal_info.max_skipcount = 1; - ah->pacal_info.skipcount = 0; - ah->pacal_info.prev_offset = regVal; - } - - regVal = REG_READ(ah, 0x7834); - regVal |= 0x1; - REG_WRITE(ah, 0x7834, regVal); - regVal = REG_READ(ah, 0x9808); - regVal &= (~(0x1 << 27)); - REG_WRITE(ah, 0x9808, regVal); - - for (i = 0; i < ARRAY_SIZE(regList); i++) - REG_WRITE(ah, regList[i][0], regList[i][1]); -} - -static inline void ar9285_hw_pa_cal(struct ath_hw *ah, bool is_reset) -{ - struct ath_common *common = ath9k_hw_common(ah); - u32 regVal; - int i, offset, offs_6_1, offs_0; - u32 ccomp_org, reg_field; - u32 regList[][2] = { - { 0x786c, 0 }, - { 0x7854, 0 }, - { 0x7820, 0 }, - { 0x7824, 0 }, - { 0x7868, 0 }, - { 0x783c, 0 }, - { 0x7838, 0 }, - }; - - ath_print(common, ATH_DBG_CALIBRATE, "Running PA Calibration\n"); - - /* PA CAL is not needed for high power solution */ - if (ah->eep_ops->get_eeprom(ah, EEP_TXGAIN_TYPE) == - AR5416_EEP_TXGAIN_HIGH_POWER) - return; - - if (AR_SREV_9285_11(ah)) { - REG_WRITE(ah, AR9285_AN_TOP4, (AR9285_AN_TOP4_DEFAULT | 0x14)); - udelay(10); - } - - for (i = 0; i < ARRAY_SIZE(regList); i++) - regList[i][1] = REG_READ(ah, regList[i][0]); - - regVal = REG_READ(ah, 0x7834); - regVal &= (~(0x1)); - REG_WRITE(ah, 0x7834, regVal); - regVal = REG_READ(ah, 0x9808); - regVal |= (0x1 << 27); - REG_WRITE(ah, 0x9808, regVal); - - REG_RMW_FIELD(ah, AR9285_AN_TOP3, AR9285_AN_TOP3_PWDDAC, 1); - REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDRXTXBB1, 1); - REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDV2I, 1); - REG_RMW_FIELD(ah, AR9285_AN_RXTXBB1, AR9285_AN_RXTXBB1_PDDACIF, 1); - REG_RMW_FIELD(ah, AR9285_AN_RF2G2, AR9285_AN_RF2G2_OFFCAL, 0); - REG_RMW_FIELD(ah, AR9285_AN_RF2G7, AR9285_AN_RF2G7_PWDDB, 0); - REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_ENPACAL, 0); - REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPADRV1, 0); - REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPADRV2, 0); - REG_RMW_FIELD(ah, AR9285_AN_RF2G1, AR9285_AN_RF2G1_PDPAOUT, 0); - REG_RMW_FIELD(ah, AR9285_AN_RF2G8, AR9285_AN_RF2G8_PADRVGN2TAB0, 7); - REG_RMW_FIELD(ah, AR9285_AN_RF2G7, AR9285_AN_RF2G7_PADRVGN2TAB0, 0); - ccomp_org = MS(REG_READ(ah, AR9285_AN_RF2G6), AR9285_AN_RF2G6_CCOMP); - REG_RMW_FIELD(ah, AR9285_AN_RF2G6, AR9285_AN_RF2G6_CCOMP, 0xf); - - REG_WRITE(ah, AR9285_AN_TOP2, 0xca0358a0); - udelay(30); - REG_RMW_FIELD(ah, AR9285_AN_RF2G6, AR9285_AN_RF2G6_OFFS, 0); - REG_RMW_FIELD(ah, AR9285_AN_RF2G3, AR9285_AN_RF2G3_PDVCCOMP, 0); - - for (i = 6; i > 0; i--) { - regVal = REG_READ(ah, 0x7834); - regVal |= (1 << (19 + i)); - REG_WRITE(ah, 0x7834, regVal); - udelay(1); - regVal = REG_READ(ah, 0x7834); - regVal &= (~(0x1 << (19 + i))); - reg_field = MS(REG_READ(ah, 0x7840), AR9285_AN_RXTXBB1_SPARE9); - regVal |= (reg_field << (19 + i)); - REG_WRITE(ah, 0x7834, regVal); - } - - REG_RMW_FIELD(ah, AR9285_AN_RF2G3, AR9285_AN_RF2G3_PDVCCOMP, 1); - udelay(1); - reg_field = MS(REG_READ(ah, AR9285_AN_RF2G9), AR9285_AN_RXTXBB1_SPARE9); - REG_RMW_FIELD(ah, AR9285_AN_RF2G3, AR9285_AN_RF2G3_PDVCCOMP, reg_field); - offs_6_1 = MS(REG_READ(ah, AR9285_AN_RF2G6), AR9285_AN_RF2G6_OFFS); - offs_0 = MS(REG_READ(ah, AR9285_AN_RF2G3), AR9285_AN_RF2G3_PDVCCOMP); - - offset = (offs_6_1<<1) | offs_0; - offset = offset - 0; - offs_6_1 = offset>>1; - offs_0 = offset & 1; - - if ((!is_reset) && (ah->pacal_info.prev_offset == offset)) { - if (ah->pacal_info.max_skipcount < MAX_PACAL_SKIPCOUNT) - ah->pacal_info.max_skipcount = - 2 * ah->pacal_info.max_skipcount; - ah->pacal_info.skipcount = ah->pacal_info.max_skipcount; - } else { - ah->pacal_info.max_skipcount = 1; - ah->pacal_info.skipcount = 0; - ah->pacal_info.prev_offset = offset; - } - - REG_RMW_FIELD(ah, AR9285_AN_RF2G6, AR9285_AN_RF2G6_OFFS, offs_6_1); - REG_RMW_FIELD(ah, AR9285_AN_RF2G3, AR9285_AN_RF2G3_PDVCCOMP, offs_0); - - regVal = REG_READ(ah, 0x7834); - regVal |= 0x1; - REG_WRITE(ah, 0x7834, regVal); - regVal = REG_READ(ah, 0x9808); - regVal &= (~(0x1 << 27)); - REG_WRITE(ah, 0x9808, regVal); - - for (i = 0; i < ARRAY_SIZE(regList); i++) - REG_WRITE(ah, regList[i][0], regList[i][1]); - - REG_RMW_FIELD(ah, AR9285_AN_RF2G6, AR9285_AN_RF2G6_CCOMP, ccomp_org); - - if (AR_SREV_9285_11(ah)) - REG_WRITE(ah, AR9285_AN_TOP4, AR9285_AN_TOP4_DEFAULT); - -} - -static void ar9002_hw_pa_cal(struct ath_hw *ah, bool is_reset) -{ - if (AR_SREV_9271(ah)) { - if (is_reset || !ah->pacal_info.skipcount) - ar9271_hw_pa_cal(ah, is_reset); - else - ah->pacal_info.skipcount--; - } else if (AR_SREV_9285_11_OR_LATER(ah)) { - if (is_reset || !ah->pacal_info.skipcount) - ar9285_hw_pa_cal(ah, is_reset); - else - ah->pacal_info.skipcount--; - } -} - -static void ar9002_hw_olc_temp_compensation(struct ath_hw *ah) -{ - if (OLC_FOR_AR9287_10_LATER) - ar9287_hw_olc_temp_compensation(ah); - else if (OLC_FOR_AR9280_20_LATER) - ar9280_hw_olc_temp_compensation(ah); -} - -bool ath9k_hw_calibrate(struct ath_hw *ah, struct ath9k_channel *chan, - u8 rxchainmask, bool longcal) -{ - bool iscaldone = true; - struct ath9k_cal_list *currCal = ah->cal_list_curr; - - if (currCal && - (currCal->calState == CAL_RUNNING || - currCal->calState == CAL_WAITING)) { - iscaldone = ath9k_hw_per_calibration(ah, chan, - rxchainmask, currCal); - if (iscaldone) { - ah->cal_list_curr = currCal = currCal->calNext; - - if (currCal->calState == CAL_WAITING) { - iscaldone = false; - ath9k_hw_reset_calibration(ah, currCal); - } - } - } - - /* Do NF cal only at longer intervals */ - if (longcal) { - /* Do periodic PAOffset Cal */ - ar9002_hw_pa_cal(ah, false); - ar9002_hw_olc_temp_compensation(ah); - - /* Get the value from the previous NF cal and update history buffer */ - ath9k_hw_getnf(ah, chan); - - /* - * Load the NF from history buffer of the current channel. - * NF is slow time-variant, so it is OK to use a historical value. - */ - ath9k_hw_loadnf(ah, ah->curchan); - - ath9k_hw_start_nfcal(ah); - } - - return iscaldone; -} -EXPORT_SYMBOL(ath9k_hw_calibrate); - -/* Carrier leakage Calibration fix */ -static bool ar9285_cl_cal(struct ath_hw *ah, struct ath9k_channel *chan) -{ - struct ath_common *common = ath9k_hw_common(ah); - - REG_SET_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_CL_CAL_ENABLE); - if (IS_CHAN_HT20(chan)) { - REG_SET_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_PARALLEL_CAL_ENABLE); - REG_SET_BIT(ah, AR_PHY_TURBO, AR_PHY_FC_DYN2040_EN); - REG_CLR_BIT(ah, AR_PHY_AGC_CONTROL, - AR_PHY_AGC_CONTROL_FLTR_CAL); - REG_CLR_BIT(ah, AR_PHY_TPCRG1, AR_PHY_TPCRG1_PD_CAL_ENABLE); - REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL); - if (!ath9k_hw_wait(ah, AR_PHY_AGC_CONTROL, - AR_PHY_AGC_CONTROL_CAL, 0, AH_WAIT_TIMEOUT)) { - ath_print(common, ATH_DBG_CALIBRATE, "offset " - "calibration failed to complete in " - "1ms; noisy ??\n"); - return false; - } - REG_CLR_BIT(ah, AR_PHY_TURBO, AR_PHY_FC_DYN2040_EN); - REG_CLR_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_PARALLEL_CAL_ENABLE); - REG_CLR_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_CL_CAL_ENABLE); - } - REG_CLR_BIT(ah, AR_PHY_ADC_CTL, AR_PHY_ADC_CTL_OFF_PWDADC); - REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_FLTR_CAL); - REG_SET_BIT(ah, AR_PHY_TPCRG1, AR_PHY_TPCRG1_PD_CAL_ENABLE); - REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL); - if (!ath9k_hw_wait(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL, - 0, AH_WAIT_TIMEOUT)) { - ath_print(common, ATH_DBG_CALIBRATE, "offset calibration " - "failed to complete in 1ms; noisy ??\n"); - return false; - } - - REG_SET_BIT(ah, AR_PHY_ADC_CTL, AR_PHY_ADC_CTL_OFF_PWDADC); - REG_CLR_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_CL_CAL_ENABLE); - REG_CLR_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_FLTR_CAL); - - return true; -} - -static bool ar9285_clc(struct ath_hw *ah, struct ath9k_channel *chan) -{ - int i; - u_int32_t txgain_max; - u_int32_t clc_gain, gain_mask = 0, clc_num = 0; - u_int32_t reg_clc_I0, reg_clc_Q0; - u_int32_t i0_num = 0; - u_int32_t q0_num = 0; - u_int32_t total_num = 0; - u_int32_t reg_rf2g5_org; - bool retv = true; - - if (!(ar9285_cl_cal(ah, chan))) - return false; - - txgain_max = MS(REG_READ(ah, AR_PHY_TX_PWRCTRL7), - AR_PHY_TX_PWRCTRL_TX_GAIN_TAB_MAX); - - for (i = 0; i < (txgain_max+1); i++) { - clc_gain = (REG_READ(ah, (AR_PHY_TX_GAIN_TBL1+(i<<2))) & - AR_PHY_TX_GAIN_CLC) >> AR_PHY_TX_GAIN_CLC_S; - if (!(gain_mask & (1 << clc_gain))) { - gain_mask |= (1 << clc_gain); - clc_num++; - } - } - - for (i = 0; i < clc_num; i++) { - reg_clc_I0 = (REG_READ(ah, (AR_PHY_CLC_TBL1 + (i << 2))) - & AR_PHY_CLC_I0) >> AR_PHY_CLC_I0_S; - reg_clc_Q0 = (REG_READ(ah, (AR_PHY_CLC_TBL1 + (i << 2))) - & AR_PHY_CLC_Q0) >> AR_PHY_CLC_Q0_S; - if (reg_clc_I0 == 0) - i0_num++; - - if (reg_clc_Q0 == 0) - q0_num++; - } - total_num = i0_num + q0_num; - if (total_num > AR9285_CLCAL_REDO_THRESH) { - reg_rf2g5_org = REG_READ(ah, AR9285_RF2G5); - if (AR_SREV_9285E_20(ah)) { - REG_WRITE(ah, AR9285_RF2G5, - (reg_rf2g5_org & AR9285_RF2G5_IC50TX) | - AR9285_RF2G5_IC50TX_XE_SET); - } else { - REG_WRITE(ah, AR9285_RF2G5, - (reg_rf2g5_org & AR9285_RF2G5_IC50TX) | - AR9285_RF2G5_IC50TX_SET); - } - retv = ar9285_cl_cal(ah, chan); - REG_WRITE(ah, AR9285_RF2G5, reg_rf2g5_org); - } - return retv; -} - -bool ath9k_hw_init_cal(struct ath_hw *ah, struct ath9k_channel *chan) -{ - struct ath_common *common = ath9k_hw_common(ah); - - if (AR_SREV_9271(ah) || AR_SREV_9285_12_OR_LATER(ah)) { - if (!ar9285_clc(ah, chan)) - return false; - } else { - if (AR_SREV_9280_10_OR_LATER(ah)) { - if (!AR_SREV_9287_10_OR_LATER(ah)) - REG_CLR_BIT(ah, AR_PHY_ADC_CTL, - AR_PHY_ADC_CTL_OFF_PWDADC); - REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, - AR_PHY_AGC_CONTROL_FLTR_CAL); - } - - /* Calibrate the AGC */ - REG_WRITE(ah, AR_PHY_AGC_CONTROL, - REG_READ(ah, AR_PHY_AGC_CONTROL) | - AR_PHY_AGC_CONTROL_CAL); - - /* Poll for offset calibration complete */ - if (!ath9k_hw_wait(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL, - 0, AH_WAIT_TIMEOUT)) { - ath_print(common, ATH_DBG_CALIBRATE, - "offset calibration failed to " - "complete in 1ms; noisy environment?\n"); - return false; - } - - if (AR_SREV_9280_10_OR_LATER(ah)) { - if (!AR_SREV_9287_10_OR_LATER(ah)) - REG_SET_BIT(ah, AR_PHY_ADC_CTL, - AR_PHY_ADC_CTL_OFF_PWDADC); - REG_CLR_BIT(ah, AR_PHY_AGC_CONTROL, - AR_PHY_AGC_CONTROL_FLTR_CAL); - } - } - - /* Do PA Calibration */ - ar9002_hw_pa_cal(ah, true); - - /* Do NF Calibration after DC offset and other calibrations */ - REG_WRITE(ah, AR_PHY_AGC_CONTROL, - REG_READ(ah, AR_PHY_AGC_CONTROL) | AR_PHY_AGC_CONTROL_NF); - - ah->cal_list = ah->cal_list_last = ah->cal_list_curr = NULL; - - /* Enable IQ, ADC Gain and ADC DC offset CALs */ - if (AR_SREV_9100(ah) || AR_SREV_9160_10_OR_LATER(ah)) { - if (ath9k_hw_iscal_supported(ah, ADC_GAIN_CAL)) { - INIT_CAL(&ah->adcgain_caldata); - INSERT_CAL(ah, &ah->adcgain_caldata); - ath_print(common, ATH_DBG_CALIBRATE, - "enabling ADC Gain Calibration.\n"); - } - if (ath9k_hw_iscal_supported(ah, ADC_DC_CAL)) { - INIT_CAL(&ah->adcdc_caldata); - INSERT_CAL(ah, &ah->adcdc_caldata); - ath_print(common, ATH_DBG_CALIBRATE, - "enabling ADC DC Calibration.\n"); - } - if (ath9k_hw_iscal_supported(ah, IQ_MISMATCH_CAL)) { - INIT_CAL(&ah->iq_caldata); - INSERT_CAL(ah, &ah->iq_caldata); - ath_print(common, ATH_DBG_CALIBRATE, - "enabling IQ Calibration.\n"); - } - - ah->cal_list_curr = ah->cal_list; - - if (ah->cal_list_curr) - ath9k_hw_reset_calibration(ah, ah->cal_list_curr); - } - - chan->CalValid = 0; - - return true; -} - -const struct ath9k_percal_data iq_cal_multi_sample = { - IQ_MISMATCH_CAL, - MAX_CAL_SAMPLES, - PER_MIN_LOG_COUNT, - ath9k_hw_iqcal_collect, - ath9k_hw_iqcalibrate -}; -const struct ath9k_percal_data iq_cal_single_sample = { - IQ_MISMATCH_CAL, - MIN_CAL_SAMPLES, - PER_MAX_LOG_COUNT, - ath9k_hw_iqcal_collect, - ath9k_hw_iqcalibrate -}; -const struct ath9k_percal_data adc_gain_cal_multi_sample = { - ADC_GAIN_CAL, - MAX_CAL_SAMPLES, - PER_MIN_LOG_COUNT, - ath9k_hw_adc_gaincal_collect, - ath9k_hw_adc_gaincal_calibrate -}; -const struct ath9k_percal_data adc_gain_cal_single_sample = { - ADC_GAIN_CAL, - MIN_CAL_SAMPLES, - PER_MAX_LOG_COUNT, - ath9k_hw_adc_gaincal_collect, - ath9k_hw_adc_gaincal_calibrate -}; -const struct ath9k_percal_data adc_dc_cal_multi_sample = { - ADC_DC_CAL, - MAX_CAL_SAMPLES, - PER_MIN_LOG_COUNT, - ath9k_hw_adc_dccal_collect, - ath9k_hw_adc_dccal_calibrate -}; -const struct ath9k_percal_data adc_dc_cal_single_sample = { - ADC_DC_CAL, - MIN_CAL_SAMPLES, - PER_MAX_LOG_COUNT, - ath9k_hw_adc_dccal_collect, - ath9k_hw_adc_dccal_calibrate -}; -const struct ath9k_percal_data adc_init_dc_cal = { - ADC_DC_INIT_CAL, - MIN_CAL_SAMPLES, - INIT_LOG_COUNT, - ath9k_hw_adc_dccal_collect, - ath9k_hw_adc_dccal_calibrate -}; diff --git a/drivers/net/wireless/ath/ath9k/calib.h b/drivers/net/wireless/ath/ath9k/calib.h index b2c873e9748..9f6c21d50f1 100644 --- a/drivers/net/wireless/ath/ath9k/calib.h +++ b/drivers/net/wireless/ath/ath9k/calib.h @@ -19,14 +19,6 @@ #include "hw.h" -extern const struct ath9k_percal_data iq_cal_multi_sample; -extern const struct ath9k_percal_data iq_cal_single_sample; -extern const struct ath9k_percal_data adc_gain_cal_multi_sample; -extern const struct ath9k_percal_data adc_gain_cal_single_sample; -extern const struct ath9k_percal_data adc_dc_cal_multi_sample; -extern const struct ath9k_percal_data adc_dc_cal_single_sample; -extern const struct ath9k_percal_data adc_init_dc_cal; - #define AR_PHY_CCA_MAX_AR5416_GOOD_VALUE -85 #define AR_PHY_CCA_MAX_AR9280_GOOD_VALUE -112 #define AR_PHY_CCA_MAX_AR9285_GOOD_VALUE -118 @@ -127,9 +119,8 @@ int16_t ath9k_hw_getnf(struct ath_hw *ah, struct ath9k_channel *chan); void ath9k_init_nfcal_hist_buffer(struct ath_hw *ah); s16 ath9k_hw_getchan_noise(struct ath_hw *ah, struct ath9k_channel *chan); -bool ath9k_hw_calibrate(struct ath_hw *ah, struct ath9k_channel *chan, - u8 rxchainmask, bool longcal); -bool ath9k_hw_init_cal(struct ath_hw *ah, - struct ath9k_channel *chan); +void ath9k_hw_reset_calibration(struct ath_hw *ah, + struct ath9k_cal_list *currCal); + #endif /* CALIB_H */ diff --git a/drivers/net/wireless/ath/ath9k/hw-ops.h b/drivers/net/wireless/ath/ath9k/hw-ops.h index e2b8ad4df90..3848c0d3f99 100644 --- a/drivers/net/wireless/ath/ath9k/hw-ops.h +++ b/drivers/net/wireless/ath/ath9k/hw-ops.h @@ -44,6 +44,14 @@ static inline void ath9k_hw_get_desc_link(struct ath_hw *ah, void *ds, { ath9k_hw_ops(ah)->get_desc_link(ds, link); } +static inline bool ath9k_hw_calibrate(struct ath_hw *ah, + struct ath9k_channel *chan, + u8 rxchainmask, + bool longcal) +{ + return ath9k_hw_ops(ah)->calibrate(ah, chan, rxchainmask, longcal); +} + /* Private hardware call ops */ /* PHY ops */ @@ -166,7 +174,25 @@ static inline bool ath9k_hw_ani_control(struct ath_hw *ah, static inline void ath9k_hw_do_getnf(struct ath_hw *ah, int16_t nfarray[NUM_NF_READINGS]) { - return ath9k_hw_private_ops(ah)->do_getnf(ah, nfarray); + ath9k_hw_private_ops(ah)->do_getnf(ah, nfarray); +} + +static inline bool ath9k_hw_init_cal(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + return ath9k_hw_private_ops(ah)->init_cal(ah, chan); +} + +static inline void ath9k_hw_setup_calibration(struct ath_hw *ah, + struct ath9k_cal_list *currCal) +{ + ath9k_hw_private_ops(ah)->setup_calibration(ah, currCal); +} + +static inline bool ath9k_hw_iscal_supported(struct ath_hw *ah, + enum ath9k_cal_types calType) +{ + return ath9k_hw_private_ops(ah)->iscal_supported(ah, calType); } #endif /* ATH9K_HW_OPS_H */ diff --git a/drivers/net/wireless/ath/ath9k/hw.c b/drivers/net/wireless/ath/ath9k/hw.c index 67c2becad66..e6d4c4c8a3d 100644 --- a/drivers/net/wireless/ath/ath9k/hw.c +++ b/drivers/net/wireless/ath/ath9k/hw.c @@ -600,36 +600,6 @@ static bool ar9003_hw_macversion_supported(u32 macversion) return false; } -static void ar9002_hw_init_cal_settings(struct ath_hw *ah) -{ - if (AR_SREV_9100(ah)) { - ah->iq_caldata.calData = &iq_cal_multi_sample; - ah->supp_cals = IQ_MISMATCH_CAL; - return; - } - - if (AR_SREV_9160_10_OR_LATER(ah)) { - if (AR_SREV_9280_10_OR_LATER(ah)) { - ah->iq_caldata.calData = &iq_cal_single_sample; - ah->adcgain_caldata.calData = - &adc_gain_cal_single_sample; - ah->adcdc_caldata.calData = - &adc_dc_cal_single_sample; - ah->adcdc_calinitdata.calData = - &adc_init_dc_cal; - } else { - ah->iq_caldata.calData = &iq_cal_multi_sample; - ah->adcgain_caldata.calData = - &adc_gain_cal_multi_sample; - ah->adcdc_caldata.calData = - &adc_dc_cal_multi_sample; - ah->adcdc_calinitdata.calData = - &adc_init_dc_cal; - } - ah->supp_cals = ADC_GAIN_CAL | ADC_DC_CAL | IQ_MISMATCH_CAL; - } -} - static void ar9002_hw_init_mode_regs(struct ath_hw *ah) { if (AR_SREV_9271(ah)) { @@ -3641,7 +3611,6 @@ static void ar9002_hw_attach_ops(struct ath_hw *ah) struct ath_hw_private_ops *priv_ops = ath9k_hw_private_ops(ah); struct ath_hw_ops *ops = ath9k_hw_ops(ah); - priv_ops->init_cal_settings = ar9002_hw_init_cal_settings; priv_ops->init_mode_regs = ar9002_hw_init_mode_regs; priv_ops->macversion_supported = ar9002_hw_macversion_supported; @@ -3651,6 +3620,7 @@ static void ar9002_hw_attach_ops(struct ath_hw *ah) if (AR_SREV_9280_10_OR_LATER(ah)) ar9002_hw_attach_phy_ops(ah); + ar9002_hw_attach_calib_ops(ah); ar9002_hw_attach_mac_ops(ah); } @@ -3663,6 +3633,6 @@ static void ar9003_hw_attach_ops(struct ath_hw *ah) priv_ops->macversion_supported = ar9003_hw_macversion_supported; ar9003_hw_attach_phy_ops(ah); - + ar9003_hw_attach_calib_ops(ah); ar9003_hw_attach_mac_ops(ah); } diff --git a/drivers/net/wireless/ath/ath9k/hw.h b/drivers/net/wireless/ath/ath9k/hw.h index 48fb5ce8294..7ef93c8df92 100644 --- a/drivers/net/wireless/ath/ath9k/hw.h +++ b/drivers/net/wireless/ath/ath9k/hw.h @@ -469,7 +469,9 @@ struct ath_gen_timer_table { * This structure contains private callbacks designed to only be used internally * by the hardware core. * - * @init_cal_settings: Initializes calibration settings + * @init_cal_settings: setup types of calibrations supported + * @init_cal: starts actual calibration + * * @init_mode_regs: Initializes mode registers * @macversion_supported: If this specific mac revision is supported * @@ -480,11 +482,20 @@ struct ath_gen_timer_table { * @set_rf_regs: * @compute_pll_control: compute the PLL control value to use for * AR_RTC_PLL_CONTROL for a given channel + * @setup_calibration: set up calibration + * @iscal_supported: used to query if a type of calibration is supported */ struct ath_hw_private_ops { + /* Calibration ops */ void (*init_cal_settings)(struct ath_hw *ah); + bool (*init_cal)(struct ath_hw *ah, struct ath9k_channel *chan); + void (*init_mode_regs)(struct ath_hw *ah); bool (*macversion_supported)(u32 macversion); + void (*setup_calibration)(struct ath_hw *ah, + struct ath9k_cal_list *currCal); + bool (*iscal_supported)(struct ath_hw *ah, + enum ath9k_cal_types calType); /* PHY ops */ int (*rf_set_freq)(struct ath_hw *ah, @@ -523,6 +534,7 @@ struct ath_hw_private_ops { * hardware code and also by the lower level driver. * * @config_pci_powersave: + * @calibrate: periodic calibration for NF, ANI, IQ, ADC gain, ADC-DC */ struct ath_hw_ops { void (*config_pci_powersave)(struct ath_hw *ah, @@ -531,6 +543,10 @@ struct ath_hw_ops { void (*rx_enable)(struct ath_hw *ah); void (*set_desc_link)(void *ds, u32 link); void (*get_desc_link)(void *ds, u32 **link); + bool (*calibrate)(struct ath_hw *ah, + struct ath9k_channel *chan, + u8 rxchainmask, + bool longcal); }; struct ath_hw { @@ -833,6 +849,9 @@ void ar5008_hw_attach_phy_ops(struct ath_hw *ah); void ar9002_hw_attach_phy_ops(struct ath_hw *ah); void ar9003_hw_attach_phy_ops(struct ath_hw *ah); +void ar9002_hw_attach_calib_ops(struct ath_hw *ah); +void ar9003_hw_attach_calib_ops(struct ath_hw *ah); + #define ATH_PCIE_CAP_LINK_CTRL 0x70 #define ATH_PCIE_CAP_LINK_L0S 1 #define ATH_PCIE_CAP_LINK_L1 2 -- cgit v1.2.3-70-g09d2 From b3950e6a52b1d0279787ef44ba1efac2f3414260 Mon Sep 17 00:00:00 2001 From: "Luis R. Rodriguez" Date: Thu, 15 Apr 2010 17:39:03 -0400 Subject: ath9k_hw: split the generic hardware code by hardware family Move out the generic hardware family code out into their own files, we have one for AR5008, AR9001, and AR9002 family (ar9002_hw.c) and another file for the new AR9003 hardware family (ar9003_hw.c). Signed-off-by: Luis R. Rodriguez Signed-off-by: John W. Linville --- drivers/net/wireless/ath/ath9k/Makefile | 5 +- drivers/net/wireless/ath/ath9k/ar9002_hw.c | 383 ++++++++++++++++++++++ drivers/net/wireless/ath/ath9k/ar9003_hw.c | 149 +++++++++ drivers/net/wireless/ath/ath9k/hw.c | 498 +---------------------------- drivers/net/wireless/ath/ath9k/hw.h | 5 +- 5 files changed, 541 insertions(+), 499 deletions(-) create mode 100644 drivers/net/wireless/ath/ath9k/ar9002_hw.c create mode 100644 drivers/net/wireless/ath/ath9k/ar9003_hw.c (limited to 'drivers/net/wireless/ath/ath9k/Makefile') diff --git a/drivers/net/wireless/ath/ath9k/Makefile b/drivers/net/wireless/ath/ath9k/Makefile index d2417ed8ec4..ee8f7e87e9c 100644 --- a/drivers/net/wireless/ath/ath9k/Makefile +++ b/drivers/net/wireless/ath/ath9k/Makefile @@ -13,7 +13,10 @@ ath9k-$(CONFIG_ATH9K_DEBUGFS) += debug.o obj-$(CONFIG_ATH9K) += ath9k.o -ath9k_hw-y:= hw.o \ +ath9k_hw-y:= \ + ar9002_hw.o \ + ar9003_hw.o \ + hw.o \ ar9003_phy.o \ ar9002_phy.o \ ar5008_phy.o \ diff --git a/drivers/net/wireless/ath/ath9k/ar9002_hw.c b/drivers/net/wireless/ath/ath9k/ar9002_hw.c new file mode 100644 index 00000000000..aa52fd7b630 --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9002_hw.c @@ -0,0 +1,383 @@ +/* + * Copyright (c) 2008-2010 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include "hw.h" +#include "ar5008_initvals.h" +#include "ar9001_initvals.h" +#include "ar9002_initvals.h" + +/* General hardware code for the A5008/AR9001/AR9002 hadware families */ + +static bool ar9002_hw_macversion_supported(u32 macversion) +{ + switch (macversion) { + case AR_SREV_VERSION_5416_PCI: + case AR_SREV_VERSION_5416_PCIE: + case AR_SREV_VERSION_9160: + case AR_SREV_VERSION_9100: + case AR_SREV_VERSION_9280: + case AR_SREV_VERSION_9285: + case AR_SREV_VERSION_9287: + case AR_SREV_VERSION_9271: + return true; + default: + break; + } + return false; +} + +static void ar9002_hw_init_mode_regs(struct ath_hw *ah) +{ + if (AR_SREV_9271(ah)) { + INIT_INI_ARRAY(&ah->iniModes, ar9271Modes_9271, + ARRAY_SIZE(ar9271Modes_9271), 6); + INIT_INI_ARRAY(&ah->iniCommon, ar9271Common_9271, + ARRAY_SIZE(ar9271Common_9271), 2); + INIT_INI_ARRAY(&ah->iniCommon_normal_cck_fir_coeff_9271, + ar9271Common_normal_cck_fir_coeff_9271, + ARRAY_SIZE(ar9271Common_normal_cck_fir_coeff_9271), 2); + INIT_INI_ARRAY(&ah->iniCommon_japan_2484_cck_fir_coeff_9271, + ar9271Common_japan_2484_cck_fir_coeff_9271, + ARRAY_SIZE(ar9271Common_japan_2484_cck_fir_coeff_9271), 2); + INIT_INI_ARRAY(&ah->iniModes_9271_1_0_only, + ar9271Modes_9271_1_0_only, + ARRAY_SIZE(ar9271Modes_9271_1_0_only), 6); + INIT_INI_ARRAY(&ah->iniModes_9271_ANI_reg, ar9271Modes_9271_ANI_reg, + ARRAY_SIZE(ar9271Modes_9271_ANI_reg), 6); + INIT_INI_ARRAY(&ah->iniModes_high_power_tx_gain_9271, + ar9271Modes_high_power_tx_gain_9271, + ARRAY_SIZE(ar9271Modes_high_power_tx_gain_9271), 6); + INIT_INI_ARRAY(&ah->iniModes_normal_power_tx_gain_9271, + ar9271Modes_normal_power_tx_gain_9271, + ARRAY_SIZE(ar9271Modes_normal_power_tx_gain_9271), 6); + return; + } + + if (AR_SREV_9287_11_OR_LATER(ah)) { + INIT_INI_ARRAY(&ah->iniModes, ar9287Modes_9287_1_1, + ARRAY_SIZE(ar9287Modes_9287_1_1), 6); + INIT_INI_ARRAY(&ah->iniCommon, ar9287Common_9287_1_1, + ARRAY_SIZE(ar9287Common_9287_1_1), 2); + if (ah->config.pcie_clock_req) + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9287PciePhy_clkreq_off_L1_9287_1_1, + ARRAY_SIZE(ar9287PciePhy_clkreq_off_L1_9287_1_1), 2); + else + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9287PciePhy_clkreq_always_on_L1_9287_1_1, + ARRAY_SIZE(ar9287PciePhy_clkreq_always_on_L1_9287_1_1), + 2); + } else if (AR_SREV_9287_10_OR_LATER(ah)) { + INIT_INI_ARRAY(&ah->iniModes, ar9287Modes_9287_1_0, + ARRAY_SIZE(ar9287Modes_9287_1_0), 6); + INIT_INI_ARRAY(&ah->iniCommon, ar9287Common_9287_1_0, + ARRAY_SIZE(ar9287Common_9287_1_0), 2); + + if (ah->config.pcie_clock_req) + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9287PciePhy_clkreq_off_L1_9287_1_0, + ARRAY_SIZE(ar9287PciePhy_clkreq_off_L1_9287_1_0), 2); + else + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9287PciePhy_clkreq_always_on_L1_9287_1_0, + ARRAY_SIZE(ar9287PciePhy_clkreq_always_on_L1_9287_1_0), + 2); + } else if (AR_SREV_9285_12_OR_LATER(ah)) { + + + INIT_INI_ARRAY(&ah->iniModes, ar9285Modes_9285_1_2, + ARRAY_SIZE(ar9285Modes_9285_1_2), 6); + INIT_INI_ARRAY(&ah->iniCommon, ar9285Common_9285_1_2, + ARRAY_SIZE(ar9285Common_9285_1_2), 2); + + if (ah->config.pcie_clock_req) { + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9285PciePhy_clkreq_off_L1_9285_1_2, + ARRAY_SIZE(ar9285PciePhy_clkreq_off_L1_9285_1_2), 2); + } else { + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9285PciePhy_clkreq_always_on_L1_9285_1_2, + ARRAY_SIZE(ar9285PciePhy_clkreq_always_on_L1_9285_1_2), + 2); + } + } else if (AR_SREV_9285_10_OR_LATER(ah)) { + INIT_INI_ARRAY(&ah->iniModes, ar9285Modes_9285, + ARRAY_SIZE(ar9285Modes_9285), 6); + INIT_INI_ARRAY(&ah->iniCommon, ar9285Common_9285, + ARRAY_SIZE(ar9285Common_9285), 2); + + if (ah->config.pcie_clock_req) { + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9285PciePhy_clkreq_off_L1_9285, + ARRAY_SIZE(ar9285PciePhy_clkreq_off_L1_9285), 2); + } else { + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9285PciePhy_clkreq_always_on_L1_9285, + ARRAY_SIZE(ar9285PciePhy_clkreq_always_on_L1_9285), 2); + } + } else if (AR_SREV_9280_20_OR_LATER(ah)) { + INIT_INI_ARRAY(&ah->iniModes, ar9280Modes_9280_2, + ARRAY_SIZE(ar9280Modes_9280_2), 6); + INIT_INI_ARRAY(&ah->iniCommon, ar9280Common_9280_2, + ARRAY_SIZE(ar9280Common_9280_2), 2); + + if (ah->config.pcie_clock_req) { + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9280PciePhy_clkreq_off_L1_9280, + ARRAY_SIZE(ar9280PciePhy_clkreq_off_L1_9280), 2); + } else { + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9280PciePhy_clkreq_always_on_L1_9280, + ARRAY_SIZE(ar9280PciePhy_clkreq_always_on_L1_9280), 2); + } + INIT_INI_ARRAY(&ah->iniModesAdditional, + ar9280Modes_fast_clock_9280_2, + ARRAY_SIZE(ar9280Modes_fast_clock_9280_2), 3); + } else if (AR_SREV_9280_10_OR_LATER(ah)) { + INIT_INI_ARRAY(&ah->iniModes, ar9280Modes_9280, + ARRAY_SIZE(ar9280Modes_9280), 6); + INIT_INI_ARRAY(&ah->iniCommon, ar9280Common_9280, + ARRAY_SIZE(ar9280Common_9280), 2); + } else if (AR_SREV_9160_10_OR_LATER(ah)) { + INIT_INI_ARRAY(&ah->iniModes, ar5416Modes_9160, + ARRAY_SIZE(ar5416Modes_9160), 6); + INIT_INI_ARRAY(&ah->iniCommon, ar5416Common_9160, + ARRAY_SIZE(ar5416Common_9160), 2); + INIT_INI_ARRAY(&ah->iniBank0, ar5416Bank0_9160, + ARRAY_SIZE(ar5416Bank0_9160), 2); + INIT_INI_ARRAY(&ah->iniBB_RfGain, ar5416BB_RfGain_9160, + ARRAY_SIZE(ar5416BB_RfGain_9160), 3); + INIT_INI_ARRAY(&ah->iniBank1, ar5416Bank1_9160, + ARRAY_SIZE(ar5416Bank1_9160), 2); + INIT_INI_ARRAY(&ah->iniBank2, ar5416Bank2_9160, + ARRAY_SIZE(ar5416Bank2_9160), 2); + INIT_INI_ARRAY(&ah->iniBank3, ar5416Bank3_9160, + ARRAY_SIZE(ar5416Bank3_9160), 3); + INIT_INI_ARRAY(&ah->iniBank6, ar5416Bank6_9160, + ARRAY_SIZE(ar5416Bank6_9160), 3); + INIT_INI_ARRAY(&ah->iniBank6TPC, ar5416Bank6TPC_9160, + ARRAY_SIZE(ar5416Bank6TPC_9160), 3); + INIT_INI_ARRAY(&ah->iniBank7, ar5416Bank7_9160, + ARRAY_SIZE(ar5416Bank7_9160), 2); + if (AR_SREV_9160_11(ah)) { + INIT_INI_ARRAY(&ah->iniAddac, + ar5416Addac_91601_1, + ARRAY_SIZE(ar5416Addac_91601_1), 2); + } else { + INIT_INI_ARRAY(&ah->iniAddac, ar5416Addac_9160, + ARRAY_SIZE(ar5416Addac_9160), 2); + } + } else if (AR_SREV_9100_OR_LATER(ah)) { + INIT_INI_ARRAY(&ah->iniModes, ar5416Modes_9100, + ARRAY_SIZE(ar5416Modes_9100), 6); + INIT_INI_ARRAY(&ah->iniCommon, ar5416Common_9100, + ARRAY_SIZE(ar5416Common_9100), 2); + INIT_INI_ARRAY(&ah->iniBank0, ar5416Bank0_9100, + ARRAY_SIZE(ar5416Bank0_9100), 2); + INIT_INI_ARRAY(&ah->iniBB_RfGain, ar5416BB_RfGain_9100, + ARRAY_SIZE(ar5416BB_RfGain_9100), 3); + INIT_INI_ARRAY(&ah->iniBank1, ar5416Bank1_9100, + ARRAY_SIZE(ar5416Bank1_9100), 2); + INIT_INI_ARRAY(&ah->iniBank2, ar5416Bank2_9100, + ARRAY_SIZE(ar5416Bank2_9100), 2); + INIT_INI_ARRAY(&ah->iniBank3, ar5416Bank3_9100, + ARRAY_SIZE(ar5416Bank3_9100), 3); + INIT_INI_ARRAY(&ah->iniBank6, ar5416Bank6_9100, + ARRAY_SIZE(ar5416Bank6_9100), 3); + INIT_INI_ARRAY(&ah->iniBank6TPC, ar5416Bank6TPC_9100, + ARRAY_SIZE(ar5416Bank6TPC_9100), 3); + INIT_INI_ARRAY(&ah->iniBank7, ar5416Bank7_9100, + ARRAY_SIZE(ar5416Bank7_9100), 2); + INIT_INI_ARRAY(&ah->iniAddac, ar5416Addac_9100, + ARRAY_SIZE(ar5416Addac_9100), 2); + } else { + INIT_INI_ARRAY(&ah->iniModes, ar5416Modes, + ARRAY_SIZE(ar5416Modes), 6); + INIT_INI_ARRAY(&ah->iniCommon, ar5416Common, + ARRAY_SIZE(ar5416Common), 2); + INIT_INI_ARRAY(&ah->iniBank0, ar5416Bank0, + ARRAY_SIZE(ar5416Bank0), 2); + INIT_INI_ARRAY(&ah->iniBB_RfGain, ar5416BB_RfGain, + ARRAY_SIZE(ar5416BB_RfGain), 3); + INIT_INI_ARRAY(&ah->iniBank1, ar5416Bank1, + ARRAY_SIZE(ar5416Bank1), 2); + INIT_INI_ARRAY(&ah->iniBank2, ar5416Bank2, + ARRAY_SIZE(ar5416Bank2), 2); + INIT_INI_ARRAY(&ah->iniBank3, ar5416Bank3, + ARRAY_SIZE(ar5416Bank3), 3); + INIT_INI_ARRAY(&ah->iniBank6, ar5416Bank6, + ARRAY_SIZE(ar5416Bank6), 3); + INIT_INI_ARRAY(&ah->iniBank6TPC, ar5416Bank6TPC, + ARRAY_SIZE(ar5416Bank6TPC), 3); + INIT_INI_ARRAY(&ah->iniBank7, ar5416Bank7, + ARRAY_SIZE(ar5416Bank7), 2); + INIT_INI_ARRAY(&ah->iniAddac, ar5416Addac, + ARRAY_SIZE(ar5416Addac), 2); + } +} + +/* + * Helper for ASPM support. + * + * Disable PLL when in L0s as well as receiver clock when in L1. + * This power saving option must be enabled through the SerDes. + * + * Programming the SerDes must go through the same 288 bit serial shift + * register as the other analog registers. Hence the 9 writes. + */ +static void ar9002_hw_configpcipowersave(struct ath_hw *ah, + int restore, + int power_off) +{ + u8 i; + u32 val; + + if (ah->is_pciexpress != true) + return; + + /* Do not touch SerDes registers */ + if (ah->config.pcie_powersave_enable == 2) + return; + + /* Nothing to do on restore for 11N */ + if (!restore) { + if (AR_SREV_9280_20_OR_LATER(ah)) { + /* + * AR9280 2.0 or later chips use SerDes values from the + * initvals.h initialized depending on chipset during + * __ath9k_hw_init() + */ + for (i = 0; i < ah->iniPcieSerdes.ia_rows; i++) { + REG_WRITE(ah, INI_RA(&ah->iniPcieSerdes, i, 0), + INI_RA(&ah->iniPcieSerdes, i, 1)); + } + } else if (AR_SREV_9280(ah) && + (ah->hw_version.macRev == AR_SREV_REVISION_9280_10)) { + REG_WRITE(ah, AR_PCIE_SERDES, 0x9248fd00); + REG_WRITE(ah, AR_PCIE_SERDES, 0x24924924); + + /* RX shut off when elecidle is asserted */ + REG_WRITE(ah, AR_PCIE_SERDES, 0xa8000019); + REG_WRITE(ah, AR_PCIE_SERDES, 0x13160820); + REG_WRITE(ah, AR_PCIE_SERDES, 0xe5980560); + + /* Shut off CLKREQ active in L1 */ + if (ah->config.pcie_clock_req) + REG_WRITE(ah, AR_PCIE_SERDES, 0x401deffc); + else + REG_WRITE(ah, AR_PCIE_SERDES, 0x401deffd); + + REG_WRITE(ah, AR_PCIE_SERDES, 0x1aaabe40); + REG_WRITE(ah, AR_PCIE_SERDES, 0xbe105554); + REG_WRITE(ah, AR_PCIE_SERDES, 0x00043007); + + /* Load the new settings */ + REG_WRITE(ah, AR_PCIE_SERDES2, 0x00000000); + + } else { + REG_WRITE(ah, AR_PCIE_SERDES, 0x9248fc00); + REG_WRITE(ah, AR_PCIE_SERDES, 0x24924924); + + /* RX shut off when elecidle is asserted */ + REG_WRITE(ah, AR_PCIE_SERDES, 0x28000039); + REG_WRITE(ah, AR_PCIE_SERDES, 0x53160824); + REG_WRITE(ah, AR_PCIE_SERDES, 0xe5980579); + + /* + * Ignore ah->ah_config.pcie_clock_req setting for + * pre-AR9280 11n + */ + REG_WRITE(ah, AR_PCIE_SERDES, 0x001defff); + + REG_WRITE(ah, AR_PCIE_SERDES, 0x1aaabe40); + REG_WRITE(ah, AR_PCIE_SERDES, 0xbe105554); + REG_WRITE(ah, AR_PCIE_SERDES, 0x000e3007); + + /* Load the new settings */ + REG_WRITE(ah, AR_PCIE_SERDES2, 0x00000000); + } + + udelay(1000); + + /* set bit 19 to allow forcing of pcie core into L1 state */ + REG_SET_BIT(ah, AR_PCIE_PM_CTRL, AR_PCIE_PM_CTRL_ENA); + + /* Several PCIe massages to ensure proper behaviour */ + if (ah->config.pcie_waen) { + val = ah->config.pcie_waen; + if (!power_off) + val &= (~AR_WA_D3_L1_DISABLE); + } else { + if (AR_SREV_9285(ah) || AR_SREV_9271(ah) || + AR_SREV_9287(ah)) { + val = AR9285_WA_DEFAULT; + if (!power_off) + val &= (~AR_WA_D3_L1_DISABLE); + } else if (AR_SREV_9280(ah)) { + /* + * On AR9280 chips bit 22 of 0x4004 needs to be + * set otherwise card may disappear. + */ + val = AR9280_WA_DEFAULT; + if (!power_off) + val &= (~AR_WA_D3_L1_DISABLE); + } else + val = AR_WA_DEFAULT; + } + + REG_WRITE(ah, AR_WA, val); + } + + if (power_off) { + /* + * Set PCIe workaround bits + * bit 14 in WA register (disable L1) should only + * be set when device enters D3 and be cleared + * when device comes back to D0. + */ + if (ah->config.pcie_waen) { + if (ah->config.pcie_waen & AR_WA_D3_L1_DISABLE) + REG_SET_BIT(ah, AR_WA, AR_WA_D3_L1_DISABLE); + } else { + if (((AR_SREV_9285(ah) || AR_SREV_9271(ah) || + AR_SREV_9287(ah)) && + (AR9285_WA_DEFAULT & AR_WA_D3_L1_DISABLE)) || + (AR_SREV_9280(ah) && + (AR9280_WA_DEFAULT & AR_WA_D3_L1_DISABLE))) { + REG_SET_BIT(ah, AR_WA, AR_WA_D3_L1_DISABLE); + } + } + } +} + +/* Sets up the AR5008/AR9001/AR9002 hardware familiy callbacks */ +void ar9002_hw_attach_ops(struct ath_hw *ah) +{ + struct ath_hw_private_ops *priv_ops = ath9k_hw_private_ops(ah); + struct ath_hw_ops *ops = ath9k_hw_ops(ah); + + priv_ops->init_mode_regs = ar9002_hw_init_mode_regs; + priv_ops->macversion_supported = ar9002_hw_macversion_supported; + + ops->config_pci_powersave = ar9002_hw_configpcipowersave; + + ar5008_hw_attach_phy_ops(ah); + if (AR_SREV_9280_10_OR_LATER(ah)) + ar9002_hw_attach_phy_ops(ah); + + ar9002_hw_attach_calib_ops(ah); + ar9002_hw_attach_mac_ops(ah); +} diff --git a/drivers/net/wireless/ath/ath9k/ar9003_hw.c b/drivers/net/wireless/ath/ath9k/ar9003_hw.c new file mode 100644 index 00000000000..6111bdb7779 --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9003_hw.c @@ -0,0 +1,149 @@ +/* + * Copyright (c) 2008-2010 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include "hw.h" +#include "ar9003_initvals.h" + +/* General hardware code for the AR9003 hadware family */ + +static bool ar9003_hw_macversion_supported(u32 macversion) +{ + switch (macversion) { + case AR_SREV_VERSION_9300: + return true; + default: + break; + } + return false; +} + +/* AR9003 2.0 - new INI format (pre, core, post arrays per subsystem) */ +static void ar9003_hw_init_mode_regs(struct ath_hw *ah) +{ + /* mac */ + INIT_INI_ARRAY(&ah->iniMac[ATH_INI_PRE], NULL, 0, 0); + INIT_INI_ARRAY(&ah->iniMac[ATH_INI_CORE], + ar9300_2p0_mac_core, + ARRAY_SIZE(ar9300_2p0_mac_core), 2); + INIT_INI_ARRAY(&ah->iniMac[ATH_INI_POST], + ar9300_2p0_mac_postamble, + ARRAY_SIZE(ar9300_2p0_mac_postamble), 5); + + /* bb */ + INIT_INI_ARRAY(&ah->iniBB[ATH_INI_PRE], NULL, 0, 0); + INIT_INI_ARRAY(&ah->iniBB[ATH_INI_CORE], + ar9300_2p0_baseband_core, + ARRAY_SIZE(ar9300_2p0_baseband_core), 2); + INIT_INI_ARRAY(&ah->iniBB[ATH_INI_POST], + ar9300_2p0_baseband_postamble, + ARRAY_SIZE(ar9300_2p0_baseband_postamble), 5); + + /* radio */ + INIT_INI_ARRAY(&ah->iniRadio[ATH_INI_PRE], NULL, 0, 0); + INIT_INI_ARRAY(&ah->iniRadio[ATH_INI_CORE], + ar9300_2p0_radio_core, + ARRAY_SIZE(ar9300_2p0_radio_core), 2); + INIT_INI_ARRAY(&ah->iniRadio[ATH_INI_POST], + ar9300_2p0_radio_postamble, + ARRAY_SIZE(ar9300_2p0_radio_postamble), 5); + + /* soc */ + INIT_INI_ARRAY(&ah->iniSOC[ATH_INI_PRE], + ar9300_2p0_soc_preamble, + ARRAY_SIZE(ar9300_2p0_soc_preamble), 2); + INIT_INI_ARRAY(&ah->iniSOC[ATH_INI_CORE], NULL, 0, 0); + INIT_INI_ARRAY(&ah->iniSOC[ATH_INI_POST], + ar9300_2p0_soc_postamble, + ARRAY_SIZE(ar9300_2p0_soc_postamble), 5); + + /* rx/tx gain */ + INIT_INI_ARRAY(&ah->iniModesRxGain, + ar9300Common_rx_gain_table_2p0, + ARRAY_SIZE(ar9300Common_rx_gain_table_2p0), 2); + INIT_INI_ARRAY(&ah->iniModesTxGain, + ar9300Modes_lowest_ob_db_tx_gain_table_2p0, + ARRAY_SIZE(ar9300Modes_lowest_ob_db_tx_gain_table_2p0), + 5); + + /* Load PCIE SERDES settings from INI */ + + /* Awake Setting */ + + INIT_INI_ARRAY(&ah->iniPcieSerdes, + ar9300PciePhy_pll_on_clkreq_disable_L1_2p0, + ARRAY_SIZE(ar9300PciePhy_pll_on_clkreq_disable_L1_2p0), + 2); + + /* Sleep Setting */ + + INIT_INI_ARRAY(&ah->iniPcieSerdesLowPower, + ar9300PciePhy_clkreq_enable_L1_2p0, + ARRAY_SIZE(ar9300PciePhy_clkreq_enable_L1_2p0), + 2); + + /* Fast clock modal settings */ + INIT_INI_ARRAY(&ah->iniModesAdditional, + ar9300Modes_fast_clock_2p0, + ARRAY_SIZE(ar9300Modes_fast_clock_2p0), + 3); +} + +/* + * Helper for ASPM support. + * + * Disable PLL when in L0s as well as receiver clock when in L1. + * This power saving option must be enabled through the SerDes. + * + * Programming the SerDes must go through the same 288 bit serial shift + * register as the other analog registers. Hence the 9 writes. + */ +static void ar9003_hw_configpcipowersave(struct ath_hw *ah, + int restore, + int power_off) +{ + if (ah->is_pciexpress != true) + return; + + /* Do not touch SerDes registers */ + if (ah->config.pcie_powersave_enable == 2) + return; + + /* Nothing to do on restore for 11N */ + if (!restore) { + /* set bit 19 to allow forcing of pcie core into L1 state */ + REG_SET_BIT(ah, AR_PCIE_PM_CTRL, AR_PCIE_PM_CTRL_ENA); + + /* Several PCIe massages to ensure proper behaviour */ + if (ah->config.pcie_waen) + REG_WRITE(ah, AR_WA, ah->config.pcie_waen); + } +} + +/* Sets up the AR9003 hardware familiy callbacks */ +void ar9003_hw_attach_ops(struct ath_hw *ah) +{ + struct ath_hw_private_ops *priv_ops = ath9k_hw_private_ops(ah); + struct ath_hw_ops *ops = ath9k_hw_ops(ah); + + priv_ops->init_mode_regs = ar9003_hw_init_mode_regs; + priv_ops->macversion_supported = ar9003_hw_macversion_supported; + + ops->config_pci_powersave = ar9003_hw_configpcipowersave; + + ar9003_hw_attach_phy_ops(ah); + ar9003_hw_attach_calib_ops(ah); + ar9003_hw_attach_mac_ops(ah); +} diff --git a/drivers/net/wireless/ath/ath9k/hw.c b/drivers/net/wireless/ath/ath9k/hw.c index 0db3475487c..3157ddeab31 100644 --- a/drivers/net/wireless/ath/ath9k/hw.c +++ b/drivers/net/wireless/ath/ath9k/hw.c @@ -1,5 +1,5 @@ /* - * Copyright (c) 2008-2009 Atheros Communications Inc. + * Copyright (c) 2008-2010 Atheros Communications Inc. * * Permission to use, copy, modify, and/or distribute this software for any * purpose with or without fee is hereby granted, provided that the above @@ -20,18 +20,12 @@ #include "hw.h" #include "hw-ops.h" #include "rc.h" -#include "ar5008_initvals.h" -#include "ar9001_initvals.h" #include "ar9002_initvals.h" -#include "ar9003_initvals.h" #define ATH9K_CLOCK_RATE_CCK 22 #define ATH9K_CLOCK_RATE_5GHZ_OFDM 40 #define ATH9K_CLOCK_RATE_2GHZ_OFDM 44 -static void ar9002_hw_attach_ops(struct ath_hw *ah); -static void ar9003_hw_attach_ops(struct ath_hw *ah); - static bool ath9k_hw_set_reset_reg(struct ath_hw *ah, u32 type); MODULE_AUTHOR("Atheros Communications"); @@ -571,296 +565,6 @@ static int ath9k_hw_post_init(struct ath_hw *ah) return 0; } -static bool ar9002_hw_macversion_supported(u32 macversion) -{ - switch (macversion) { - case AR_SREV_VERSION_5416_PCI: - case AR_SREV_VERSION_5416_PCIE: - case AR_SREV_VERSION_9160: - case AR_SREV_VERSION_9100: - case AR_SREV_VERSION_9280: - case AR_SREV_VERSION_9285: - case AR_SREV_VERSION_9287: - case AR_SREV_VERSION_9271: - return true; - default: - break; - } - return false; -} - -static bool ar9003_hw_macversion_supported(u32 macversion) -{ - switch (macversion) { - case AR_SREV_VERSION_9300: - return true; - default: - break; - } - return false; -} - -static void ar9002_hw_init_mode_regs(struct ath_hw *ah) -{ - if (AR_SREV_9271(ah)) { - INIT_INI_ARRAY(&ah->iniModes, ar9271Modes_9271, - ARRAY_SIZE(ar9271Modes_9271), 6); - INIT_INI_ARRAY(&ah->iniCommon, ar9271Common_9271, - ARRAY_SIZE(ar9271Common_9271), 2); - INIT_INI_ARRAY(&ah->iniCommon_normal_cck_fir_coeff_9271, - ar9271Common_normal_cck_fir_coeff_9271, - ARRAY_SIZE(ar9271Common_normal_cck_fir_coeff_9271), 2); - INIT_INI_ARRAY(&ah->iniCommon_japan_2484_cck_fir_coeff_9271, - ar9271Common_japan_2484_cck_fir_coeff_9271, - ARRAY_SIZE(ar9271Common_japan_2484_cck_fir_coeff_9271), 2); - INIT_INI_ARRAY(&ah->iniModes_9271_1_0_only, - ar9271Modes_9271_1_0_only, - ARRAY_SIZE(ar9271Modes_9271_1_0_only), 6); - INIT_INI_ARRAY(&ah->iniModes_9271_ANI_reg, ar9271Modes_9271_ANI_reg, - ARRAY_SIZE(ar9271Modes_9271_ANI_reg), 6); - INIT_INI_ARRAY(&ah->iniModes_high_power_tx_gain_9271, - ar9271Modes_high_power_tx_gain_9271, - ARRAY_SIZE(ar9271Modes_high_power_tx_gain_9271), 6); - INIT_INI_ARRAY(&ah->iniModes_normal_power_tx_gain_9271, - ar9271Modes_normal_power_tx_gain_9271, - ARRAY_SIZE(ar9271Modes_normal_power_tx_gain_9271), 6); - return; - } - - if (AR_SREV_9287_11_OR_LATER(ah)) { - INIT_INI_ARRAY(&ah->iniModes, ar9287Modes_9287_1_1, - ARRAY_SIZE(ar9287Modes_9287_1_1), 6); - INIT_INI_ARRAY(&ah->iniCommon, ar9287Common_9287_1_1, - ARRAY_SIZE(ar9287Common_9287_1_1), 2); - if (ah->config.pcie_clock_req) - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9287PciePhy_clkreq_off_L1_9287_1_1, - ARRAY_SIZE(ar9287PciePhy_clkreq_off_L1_9287_1_1), 2); - else - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9287PciePhy_clkreq_always_on_L1_9287_1_1, - ARRAY_SIZE(ar9287PciePhy_clkreq_always_on_L1_9287_1_1), - 2); - } else if (AR_SREV_9287_10_OR_LATER(ah)) { - INIT_INI_ARRAY(&ah->iniModes, ar9287Modes_9287_1_0, - ARRAY_SIZE(ar9287Modes_9287_1_0), 6); - INIT_INI_ARRAY(&ah->iniCommon, ar9287Common_9287_1_0, - ARRAY_SIZE(ar9287Common_9287_1_0), 2); - - if (ah->config.pcie_clock_req) - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9287PciePhy_clkreq_off_L1_9287_1_0, - ARRAY_SIZE(ar9287PciePhy_clkreq_off_L1_9287_1_0), 2); - else - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9287PciePhy_clkreq_always_on_L1_9287_1_0, - ARRAY_SIZE(ar9287PciePhy_clkreq_always_on_L1_9287_1_0), - 2); - } else if (AR_SREV_9285_12_OR_LATER(ah)) { - - - INIT_INI_ARRAY(&ah->iniModes, ar9285Modes_9285_1_2, - ARRAY_SIZE(ar9285Modes_9285_1_2), 6); - INIT_INI_ARRAY(&ah->iniCommon, ar9285Common_9285_1_2, - ARRAY_SIZE(ar9285Common_9285_1_2), 2); - - if (ah->config.pcie_clock_req) { - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9285PciePhy_clkreq_off_L1_9285_1_2, - ARRAY_SIZE(ar9285PciePhy_clkreq_off_L1_9285_1_2), 2); - } else { - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9285PciePhy_clkreq_always_on_L1_9285_1_2, - ARRAY_SIZE(ar9285PciePhy_clkreq_always_on_L1_9285_1_2), - 2); - } - } else if (AR_SREV_9285_10_OR_LATER(ah)) { - INIT_INI_ARRAY(&ah->iniModes, ar9285Modes_9285, - ARRAY_SIZE(ar9285Modes_9285), 6); - INIT_INI_ARRAY(&ah->iniCommon, ar9285Common_9285, - ARRAY_SIZE(ar9285Common_9285), 2); - - if (ah->config.pcie_clock_req) { - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9285PciePhy_clkreq_off_L1_9285, - ARRAY_SIZE(ar9285PciePhy_clkreq_off_L1_9285), 2); - } else { - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9285PciePhy_clkreq_always_on_L1_9285, - ARRAY_SIZE(ar9285PciePhy_clkreq_always_on_L1_9285), 2); - } - } else if (AR_SREV_9280_20_OR_LATER(ah)) { - INIT_INI_ARRAY(&ah->iniModes, ar9280Modes_9280_2, - ARRAY_SIZE(ar9280Modes_9280_2), 6); - INIT_INI_ARRAY(&ah->iniCommon, ar9280Common_9280_2, - ARRAY_SIZE(ar9280Common_9280_2), 2); - - if (ah->config.pcie_clock_req) { - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9280PciePhy_clkreq_off_L1_9280, - ARRAY_SIZE(ar9280PciePhy_clkreq_off_L1_9280),2); - } else { - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9280PciePhy_clkreq_always_on_L1_9280, - ARRAY_SIZE(ar9280PciePhy_clkreq_always_on_L1_9280), 2); - } - INIT_INI_ARRAY(&ah->iniModesAdditional, - ar9280Modes_fast_clock_9280_2, - ARRAY_SIZE(ar9280Modes_fast_clock_9280_2), 3); - } else if (AR_SREV_9280_10_OR_LATER(ah)) { - INIT_INI_ARRAY(&ah->iniModes, ar9280Modes_9280, - ARRAY_SIZE(ar9280Modes_9280), 6); - INIT_INI_ARRAY(&ah->iniCommon, ar9280Common_9280, - ARRAY_SIZE(ar9280Common_9280), 2); - } else if (AR_SREV_9160_10_OR_LATER(ah)) { - INIT_INI_ARRAY(&ah->iniModes, ar5416Modes_9160, - ARRAY_SIZE(ar5416Modes_9160), 6); - INIT_INI_ARRAY(&ah->iniCommon, ar5416Common_9160, - ARRAY_SIZE(ar5416Common_9160), 2); - INIT_INI_ARRAY(&ah->iniBank0, ar5416Bank0_9160, - ARRAY_SIZE(ar5416Bank0_9160), 2); - INIT_INI_ARRAY(&ah->iniBB_RfGain, ar5416BB_RfGain_9160, - ARRAY_SIZE(ar5416BB_RfGain_9160), 3); - INIT_INI_ARRAY(&ah->iniBank1, ar5416Bank1_9160, - ARRAY_SIZE(ar5416Bank1_9160), 2); - INIT_INI_ARRAY(&ah->iniBank2, ar5416Bank2_9160, - ARRAY_SIZE(ar5416Bank2_9160), 2); - INIT_INI_ARRAY(&ah->iniBank3, ar5416Bank3_9160, - ARRAY_SIZE(ar5416Bank3_9160), 3); - INIT_INI_ARRAY(&ah->iniBank6, ar5416Bank6_9160, - ARRAY_SIZE(ar5416Bank6_9160), 3); - INIT_INI_ARRAY(&ah->iniBank6TPC, ar5416Bank6TPC_9160, - ARRAY_SIZE(ar5416Bank6TPC_9160), 3); - INIT_INI_ARRAY(&ah->iniBank7, ar5416Bank7_9160, - ARRAY_SIZE(ar5416Bank7_9160), 2); - if (AR_SREV_9160_11(ah)) { - INIT_INI_ARRAY(&ah->iniAddac, - ar5416Addac_91601_1, - ARRAY_SIZE(ar5416Addac_91601_1), 2); - } else { - INIT_INI_ARRAY(&ah->iniAddac, ar5416Addac_9160, - ARRAY_SIZE(ar5416Addac_9160), 2); - } - } else if (AR_SREV_9100_OR_LATER(ah)) { - INIT_INI_ARRAY(&ah->iniModes, ar5416Modes_9100, - ARRAY_SIZE(ar5416Modes_9100), 6); - INIT_INI_ARRAY(&ah->iniCommon, ar5416Common_9100, - ARRAY_SIZE(ar5416Common_9100), 2); - INIT_INI_ARRAY(&ah->iniBank0, ar5416Bank0_9100, - ARRAY_SIZE(ar5416Bank0_9100), 2); - INIT_INI_ARRAY(&ah->iniBB_RfGain, ar5416BB_RfGain_9100, - ARRAY_SIZE(ar5416BB_RfGain_9100), 3); - INIT_INI_ARRAY(&ah->iniBank1, ar5416Bank1_9100, - ARRAY_SIZE(ar5416Bank1_9100), 2); - INIT_INI_ARRAY(&ah->iniBank2, ar5416Bank2_9100, - ARRAY_SIZE(ar5416Bank2_9100), 2); - INIT_INI_ARRAY(&ah->iniBank3, ar5416Bank3_9100, - ARRAY_SIZE(ar5416Bank3_9100), 3); - INIT_INI_ARRAY(&ah->iniBank6, ar5416Bank6_9100, - ARRAY_SIZE(ar5416Bank6_9100), 3); - INIT_INI_ARRAY(&ah->iniBank6TPC, ar5416Bank6TPC_9100, - ARRAY_SIZE(ar5416Bank6TPC_9100), 3); - INIT_INI_ARRAY(&ah->iniBank7, ar5416Bank7_9100, - ARRAY_SIZE(ar5416Bank7_9100), 2); - INIT_INI_ARRAY(&ah->iniAddac, ar5416Addac_9100, - ARRAY_SIZE(ar5416Addac_9100), 2); - } else { - INIT_INI_ARRAY(&ah->iniModes, ar5416Modes, - ARRAY_SIZE(ar5416Modes), 6); - INIT_INI_ARRAY(&ah->iniCommon, ar5416Common, - ARRAY_SIZE(ar5416Common), 2); - INIT_INI_ARRAY(&ah->iniBank0, ar5416Bank0, - ARRAY_SIZE(ar5416Bank0), 2); - INIT_INI_ARRAY(&ah->iniBB_RfGain, ar5416BB_RfGain, - ARRAY_SIZE(ar5416BB_RfGain), 3); - INIT_INI_ARRAY(&ah->iniBank1, ar5416Bank1, - ARRAY_SIZE(ar5416Bank1), 2); - INIT_INI_ARRAY(&ah->iniBank2, ar5416Bank2, - ARRAY_SIZE(ar5416Bank2), 2); - INIT_INI_ARRAY(&ah->iniBank3, ar5416Bank3, - ARRAY_SIZE(ar5416Bank3), 3); - INIT_INI_ARRAY(&ah->iniBank6, ar5416Bank6, - ARRAY_SIZE(ar5416Bank6), 3); - INIT_INI_ARRAY(&ah->iniBank6TPC, ar5416Bank6TPC, - ARRAY_SIZE(ar5416Bank6TPC), 3); - INIT_INI_ARRAY(&ah->iniBank7, ar5416Bank7, - ARRAY_SIZE(ar5416Bank7), 2); - INIT_INI_ARRAY(&ah->iniAddac, ar5416Addac, - ARRAY_SIZE(ar5416Addac), 2); - } -} - -/* AR9003 2.0 - new INI format (pre, core, post arrays per subsystem) */ -static void ar9003_hw_init_mode_regs(struct ath_hw *ah) -{ - /* mac */ - INIT_INI_ARRAY(&ah->iniMac[ATH_INI_PRE], NULL, 0, 0); - INIT_INI_ARRAY(&ah->iniMac[ATH_INI_CORE], - ar9300_2p0_mac_core, - ARRAY_SIZE(ar9300_2p0_mac_core), 2); - INIT_INI_ARRAY(&ah->iniMac[ATH_INI_POST], - ar9300_2p0_mac_postamble, - ARRAY_SIZE(ar9300_2p0_mac_postamble), 5); - - /* bb */ - INIT_INI_ARRAY(&ah->iniBB[ATH_INI_PRE], NULL, 0, 0); - INIT_INI_ARRAY(&ah->iniBB[ATH_INI_CORE], - ar9300_2p0_baseband_core, - ARRAY_SIZE(ar9300_2p0_baseband_core), 2); - INIT_INI_ARRAY(&ah->iniBB[ATH_INI_POST], - ar9300_2p0_baseband_postamble, - ARRAY_SIZE(ar9300_2p0_baseband_postamble), 5); - - /* radio */ - INIT_INI_ARRAY(&ah->iniRadio[ATH_INI_PRE], NULL, 0, 0); - INIT_INI_ARRAY(&ah->iniRadio[ATH_INI_CORE], - ar9300_2p0_radio_core, - ARRAY_SIZE(ar9300_2p0_radio_core), 2); - INIT_INI_ARRAY(&ah->iniRadio[ATH_INI_POST], - ar9300_2p0_radio_postamble, - ARRAY_SIZE(ar9300_2p0_radio_postamble), 5); - - /* soc */ - INIT_INI_ARRAY(&ah->iniSOC[ATH_INI_PRE], - ar9300_2p0_soc_preamble, - ARRAY_SIZE(ar9300_2p0_soc_preamble), 2); - INIT_INI_ARRAY(&ah->iniSOC[ATH_INI_CORE], NULL, 0, 0); - INIT_INI_ARRAY(&ah->iniSOC[ATH_INI_POST], - ar9300_2p0_soc_postamble, - ARRAY_SIZE(ar9300_2p0_soc_postamble), 5); - - /* rx/tx gain */ - INIT_INI_ARRAY(&ah->iniModesRxGain, - ar9300Common_rx_gain_table_2p0, - ARRAY_SIZE(ar9300Common_rx_gain_table_2p0), 2); - INIT_INI_ARRAY(&ah->iniModesTxGain, - ar9300Modes_lowest_ob_db_tx_gain_table_2p0, - ARRAY_SIZE(ar9300Modes_lowest_ob_db_tx_gain_table_2p0), - 5); - - /* Load PCIE SERDES settings from INI */ - - /* Awake Setting */ - - INIT_INI_ARRAY(&ah->iniPcieSerdes, - ar9300PciePhy_pll_on_clkreq_disable_L1_2p0, - ARRAY_SIZE(ar9300PciePhy_pll_on_clkreq_disable_L1_2p0), - 2); - - /* Sleep Setting */ - - INIT_INI_ARRAY(&ah->iniPcieSerdesLowPower, - ar9300PciePhy_clkreq_enable_L1_2p0, - ARRAY_SIZE(ar9300PciePhy_clkreq_enable_L1_2p0), - 2); - - /* Fast clock modal settings */ - INIT_INI_ARRAY(&ah->iniModesAdditional, - ar9300Modes_fast_clock_2p0, - ARRAY_SIZE(ar9300Modes_fast_clock_2p0), - 3); -} - static void ath9k_hw_init_mode_gain_regs(struct ath_hw *ah) { if (AR_SREV_9287_11_OR_LATER(ah)) @@ -2179,140 +1883,6 @@ bool ath9k_hw_setpower(struct ath_hw *ah, enum ath9k_power_mode mode) } EXPORT_SYMBOL(ath9k_hw_setpower); -/* - * Helper for ASPM support. - * - * Disable PLL when in L0s as well as receiver clock when in L1. - * This power saving option must be enabled through the SerDes. - * - * Programming the SerDes must go through the same 288 bit serial shift - * register as the other analog registers. Hence the 9 writes. - */ -static void ar9002_hw_configpcipowersave(struct ath_hw *ah, - int restore, - int power_off) -{ - u8 i; - u32 val; - - if (ah->is_pciexpress != true) - return; - - /* Do not touch SerDes registers */ - if (ah->config.pcie_powersave_enable == 2) - return; - - /* Nothing to do on restore for 11N */ - if (!restore) { - if (AR_SREV_9280_20_OR_LATER(ah)) { - /* - * AR9280 2.0 or later chips use SerDes values from the - * initvals.h initialized depending on chipset during - * __ath9k_hw_init() - */ - for (i = 0; i < ah->iniPcieSerdes.ia_rows; i++) { - REG_WRITE(ah, INI_RA(&ah->iniPcieSerdes, i, 0), - INI_RA(&ah->iniPcieSerdes, i, 1)); - } - } else if (AR_SREV_9280(ah) && - (ah->hw_version.macRev == AR_SREV_REVISION_9280_10)) { - REG_WRITE(ah, AR_PCIE_SERDES, 0x9248fd00); - REG_WRITE(ah, AR_PCIE_SERDES, 0x24924924); - - /* RX shut off when elecidle is asserted */ - REG_WRITE(ah, AR_PCIE_SERDES, 0xa8000019); - REG_WRITE(ah, AR_PCIE_SERDES, 0x13160820); - REG_WRITE(ah, AR_PCIE_SERDES, 0xe5980560); - - /* Shut off CLKREQ active in L1 */ - if (ah->config.pcie_clock_req) - REG_WRITE(ah, AR_PCIE_SERDES, 0x401deffc); - else - REG_WRITE(ah, AR_PCIE_SERDES, 0x401deffd); - - REG_WRITE(ah, AR_PCIE_SERDES, 0x1aaabe40); - REG_WRITE(ah, AR_PCIE_SERDES, 0xbe105554); - REG_WRITE(ah, AR_PCIE_SERDES, 0x00043007); - - /* Load the new settings */ - REG_WRITE(ah, AR_PCIE_SERDES2, 0x00000000); - - } else { - REG_WRITE(ah, AR_PCIE_SERDES, 0x9248fc00); - REG_WRITE(ah, AR_PCIE_SERDES, 0x24924924); - - /* RX shut off when elecidle is asserted */ - REG_WRITE(ah, AR_PCIE_SERDES, 0x28000039); - REG_WRITE(ah, AR_PCIE_SERDES, 0x53160824); - REG_WRITE(ah, AR_PCIE_SERDES, 0xe5980579); - - /* - * Ignore ah->ah_config.pcie_clock_req setting for - * pre-AR9280 11n - */ - REG_WRITE(ah, AR_PCIE_SERDES, 0x001defff); - - REG_WRITE(ah, AR_PCIE_SERDES, 0x1aaabe40); - REG_WRITE(ah, AR_PCIE_SERDES, 0xbe105554); - REG_WRITE(ah, AR_PCIE_SERDES, 0x000e3007); - - /* Load the new settings */ - REG_WRITE(ah, AR_PCIE_SERDES2, 0x00000000); - } - - udelay(1000); - - /* set bit 19 to allow forcing of pcie core into L1 state */ - REG_SET_BIT(ah, AR_PCIE_PM_CTRL, AR_PCIE_PM_CTRL_ENA); - - /* Several PCIe massages to ensure proper behaviour */ - if (ah->config.pcie_waen) { - val = ah->config.pcie_waen; - if (!power_off) - val &= (~AR_WA_D3_L1_DISABLE); - } else { - if (AR_SREV_9285(ah) || AR_SREV_9271(ah) || - AR_SREV_9287(ah)) { - val = AR9285_WA_DEFAULT; - if (!power_off) - val &= (~AR_WA_D3_L1_DISABLE); - } else if (AR_SREV_9280(ah)) { - /* - * On AR9280 chips bit 22 of 0x4004 needs to be - * set otherwise card may disappear. - */ - val = AR9280_WA_DEFAULT; - if (!power_off) - val &= (~AR_WA_D3_L1_DISABLE); - } else - val = AR_WA_DEFAULT; - } - - REG_WRITE(ah, AR_WA, val); - } - - if (power_off) { - /* - * Set PCIe workaround bits - * bit 14 in WA register (disable L1) should only - * be set when device enters D3 and be cleared - * when device comes back to D0. - */ - if (ah->config.pcie_waen) { - if (ah->config.pcie_waen & AR_WA_D3_L1_DISABLE) - REG_SET_BIT(ah, AR_WA, AR_WA_D3_L1_DISABLE); - } else { - if (((AR_SREV_9285(ah) || AR_SREV_9271(ah) || - AR_SREV_9287(ah)) && - (AR9285_WA_DEFAULT & AR_WA_D3_L1_DISABLE)) || - (AR_SREV_9280(ah) && - (AR9280_WA_DEFAULT & AR_WA_D3_L1_DISABLE))) { - REG_SET_BIT(ah, AR_WA, AR_WA_D3_L1_DISABLE); - } - } - } -} - /**********************/ /* Interrupt Handling */ /**********************/ @@ -2594,37 +2164,6 @@ enum ath9k_int ath9k_hw_set_interrupts(struct ath_hw *ah, enum ath9k_int ints) } EXPORT_SYMBOL(ath9k_hw_set_interrupts); -/* - * Helper for ASPM support. - * - * Disable PLL when in L0s as well as receiver clock when in L1. - * This power saving option must be enabled through the SerDes. - * - * Programming the SerDes must go through the same 288 bit serial shift - * register as the other analog registers. Hence the 9 writes. - */ -static void ar9003_hw_configpcipowersave(struct ath_hw *ah, - int restore, - int power_off) -{ - if (ah->is_pciexpress != true) - return; - - /* Do not touch SerDes registers */ - if (ah->config.pcie_powersave_enable == 2) - return; - - /* Nothing to do on restore for 11N */ - if (!restore) { - /* set bit 19 to allow forcing of pcie core into L1 state */ - REG_SET_BIT(ah, AR_PCIE_PM_CTRL, AR_PCIE_PM_CTRL_ENA); - - /* Several PCIe massages to ensure proper behaviour */ - if (ah->config.pcie_waen) - REG_WRITE(ah, AR_WA, ah->config.pcie_waen); - } -} - /*******************/ /* Beacon Handling */ /*******************/ @@ -3635,38 +3174,3 @@ void ath9k_hw_name(struct ath_hw *ah, char *hw_name, size_t len) hw_name[used] = '\0'; } EXPORT_SYMBOL(ath9k_hw_name); - -/* Sets up the AR5008/AR9001/AR9002 hardware familiy callbacks */ -static void ar9002_hw_attach_ops(struct ath_hw *ah) -{ - struct ath_hw_private_ops *priv_ops = ath9k_hw_private_ops(ah); - struct ath_hw_ops *ops = ath9k_hw_ops(ah); - - priv_ops->init_mode_regs = ar9002_hw_init_mode_regs; - priv_ops->macversion_supported = ar9002_hw_macversion_supported; - - ops->config_pci_powersave = ar9002_hw_configpcipowersave; - - ar5008_hw_attach_phy_ops(ah); - if (AR_SREV_9280_10_OR_LATER(ah)) - ar9002_hw_attach_phy_ops(ah); - - ar9002_hw_attach_calib_ops(ah); - ar9002_hw_attach_mac_ops(ah); -} - -/* Sets up the AR9003 hardware familiy callbacks */ -static void ar9003_hw_attach_ops(struct ath_hw *ah) -{ - struct ath_hw_private_ops *priv_ops = ath9k_hw_private_ops(ah); - struct ath_hw_ops *ops = ath9k_hw_ops(ah); - - priv_ops->init_mode_regs = ar9003_hw_init_mode_regs; - priv_ops->macversion_supported = ar9003_hw_macversion_supported; - - ops->config_pci_powersave = ar9003_hw_configpcipowersave; - - ar9003_hw_attach_phy_ops(ah); - ar9003_hw_attach_calib_ops(ah); - ar9003_hw_attach_mac_ops(ah); -} diff --git a/drivers/net/wireless/ath/ath9k/hw.h b/drivers/net/wireless/ath/ath9k/hw.h index 7ef93c8df92..9325095da53 100644 --- a/drivers/net/wireless/ath/ath9k/hw.h +++ b/drivers/net/wireless/ath/ath9k/hw.h @@ -1,5 +1,5 @@ /* - * Copyright (c) 2008-2009 Atheros Communications Inc. + * Copyright (c) 2008-2010 Atheros Communications Inc. * * Permission to use, copy, modify, and/or distribute this software for any * purpose with or without fee is hereby granted, provided that the above @@ -852,6 +852,9 @@ void ar9003_hw_attach_phy_ops(struct ath_hw *ah); void ar9002_hw_attach_calib_ops(struct ath_hw *ah); void ar9003_hw_attach_calib_ops(struct ath_hw *ah); +void ar9002_hw_attach_ops(struct ath_hw *ah); +void ar9003_hw_attach_ops(struct ath_hw *ah); + #define ATH_PCIE_CAP_LINK_CTRL 0x70 #define ATH_PCIE_CAP_LINK_L0S 1 #define ATH_PCIE_CAP_LINK_L1 2 -- cgit v1.2.3-70-g09d2 From 15c9ee7af8a3527a82013ea447da2d8c491aabfe Mon Sep 17 00:00:00 2001 From: Senthil Balasubramanian Date: Thu, 15 Apr 2010 17:39:14 -0400 Subject: ath9k_hw: Implement AR9003 eeprom callbacks Signed-off-by: Senthil Balasubramanian Signed-off-by: Luis R. Rodriguez Signed-off-by: John W. Linville --- drivers/net/wireless/ath/ath9k/Makefile | 3 +- drivers/net/wireless/ath/ath9k/ar9003_eeprom.c | 1842 ++++++++++++++++++++++++ drivers/net/wireless/ath/ath9k/ar9003_eeprom.h | 319 ++++ drivers/net/wireless/ath/ath9k/eeprom.c | 4 +- drivers/net/wireless/ath/ath9k/eeprom.h | 11 +- drivers/net/wireless/ath/ath9k/hw.h | 1 + drivers/net/wireless/ath/ath9k/reg.h | 11 + 7 files changed, 2187 insertions(+), 4 deletions(-) create mode 100644 drivers/net/wireless/ath/ath9k/ar9003_eeprom.c create mode 100644 drivers/net/wireless/ath/ath9k/ar9003_eeprom.h (limited to 'drivers/net/wireless/ath/ath9k/Makefile') diff --git a/drivers/net/wireless/ath/ath9k/Makefile b/drivers/net/wireless/ath/ath9k/Makefile index ee8f7e87e9c..b0702fc8465 100644 --- a/drivers/net/wireless/ath/ath9k/Makefile +++ b/drivers/net/wireless/ath/ath9k/Makefile @@ -30,7 +30,8 @@ ath9k_hw-y:= \ ani.o \ btcoex.o \ mac.o \ - ar9003_mac.o + ar9003_mac.o \ + ar9003_eeprom.o obj-$(CONFIG_ATH9K_HW) += ath9k_hw.o diff --git a/drivers/net/wireless/ath/ath9k/ar9003_eeprom.c b/drivers/net/wireless/ath/ath9k/ar9003_eeprom.c new file mode 100644 index 00000000000..fb39e392d9f --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9003_eeprom.c @@ -0,0 +1,1842 @@ +/* + * Copyright (c) 2010 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include "hw.h" +#include "ar9003_phy.h" +#include "ar9003_eeprom.h" + +#define COMP_HDR_LEN 4 +#define COMP_CKSUM_LEN 2 + +#define AR_CH0_TOP (0x00016288) +#define AR_CH0_TOP_XPABIASLVL (0x3) +#define AR_CH0_TOP_XPABIASLVL_S (8) + +#define AR_CH0_THERM (0x00016290) +#define AR_CH0_THERM_SPARE (0x3f) +#define AR_CH0_THERM_SPARE_S (0) + +#define AR_SWITCH_TABLE_COM_ALL (0xffff) +#define AR_SWITCH_TABLE_COM_ALL_S (0) + +#define AR_SWITCH_TABLE_COM2_ALL (0xffffff) +#define AR_SWITCH_TABLE_COM2_ALL_S (0) + +#define AR_SWITCH_TABLE_ALL (0xfff) +#define AR_SWITCH_TABLE_ALL_S (0) + +static const struct ar9300_eeprom ar9300_default = { + .eepromVersion = 2, + .templateVersion = 2, + .macAddr = {1, 2, 3, 4, 5, 6}, + .custData = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}, + .baseEepHeader = { + .regDmn = {0, 0x1f}, + .txrxMask = 0x77, /* 4 bits tx and 4 bits rx */ + .opCapFlags = { + .opFlags = AR9300_OPFLAGS_11G | AR9300_OPFLAGS_11A, + .eepMisc = 0, + }, + .rfSilent = 0, + .blueToothOptions = 0, + .deviceCap = 0, + .deviceType = 5, /* takes lower byte in eeprom location */ + .pwrTableOffset = AR9300_PWR_TABLE_OFFSET, + .params_for_tuning_caps = {0, 0}, + .featureEnable = 0x0c, + /* + * bit0 - enable tx temp comp - disabled + * bit1 - enable tx volt comp - disabled + * bit2 - enable fastClock - enabled + * bit3 - enable doubling - enabled + * bit4 - enable internal regulator - disabled + */ + .miscConfiguration = 0, /* bit0 - turn down drivestrength */ + .eepromWriteEnableGpio = 3, + .wlanDisableGpio = 0, + .wlanLedGpio = 8, + .rxBandSelectGpio = 0xff, + .txrxgain = 0, + .swreg = 0, + }, + .modalHeader2G = { + /* ar9300_modal_eep_header 2g */ + /* 4 idle,t1,t2,b(4 bits per setting) */ + .antCtrlCommon = 0x110, + /* 4 ra1l1, ra2l1, ra1l2, ra2l2, ra12 */ + .antCtrlCommon2 = 0x22222, + + /* + * antCtrlChain[AR9300_MAX_CHAINS]; 6 idle, t, r, + * rx1, rx12, b (2 bits each) + */ + .antCtrlChain = {0x150, 0x150, 0x150}, + + /* + * xatten1DB[AR9300_MAX_CHAINS]; 3 xatten1_db + * for ar9280 (0xa20c/b20c 5:0) + */ + .xatten1DB = {0, 0, 0}, + + /* + * xatten1Margin[AR9300_MAX_CHAINS]; 3 xatten1_margin + * for ar9280 (0xa20c/b20c 16:12 + */ + .xatten1Margin = {0, 0, 0}, + .tempSlope = 36, + .voltSlope = 0, + + /* + * spurChans[OSPREY_EEPROM_MODAL_SPURS]; spur + * channels in usual fbin coding format + */ + .spurChans = {0, 0, 0, 0, 0}, + + /* + * noiseFloorThreshCh[AR9300_MAX_CHAINS]; 3 Check + * if the register is per chain + */ + .noiseFloorThreshCh = {-1, 0, 0}, + .ob = {1, 1, 1},/* 3 chain */ + .db_stage2 = {1, 1, 1}, /* 3 chain */ + .db_stage3 = {0, 0, 0}, + .db_stage4 = {0, 0, 0}, + .xpaBiasLvl = 0, + .txFrameToDataStart = 0x0e, + .txFrameToPaOn = 0x0e, + .txClip = 3, /* 4 bits tx_clip, 4 bits dac_scale_cck */ + .antennaGain = 0, + .switchSettling = 0x2c, + .adcDesiredSize = -30, + .txEndToXpaOff = 0, + .txEndToRxOn = 0x2, + .txFrameToXpaOn = 0xe, + .thresh62 = 28, + .futureModal = { /* [32] */ + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 + }, + }, + .calFreqPier2G = { + FREQ2FBIN(2412, 1), + FREQ2FBIN(2437, 1), + FREQ2FBIN(2472, 1), + }, + /* ar9300_cal_data_per_freq_op_loop 2g */ + .calPierData2G = { + { {0, 0, 0, 0, 0, 0}, {0, 0, 0, 0, 0, 0}, {0, 0, 0, 0, 0, 0} }, + { {0, 0, 0, 0, 0, 0}, {0, 0, 0, 0, 0, 0}, {0, 0, 0, 0, 0, 0} }, + { {0, 0, 0, 0, 0, 0}, {0, 0, 0, 0, 0, 0}, {0, 0, 0, 0, 0, 0} }, + }, + .calTarget_freqbin_Cck = { + FREQ2FBIN(2412, 1), + FREQ2FBIN(2484, 1), + }, + .calTarget_freqbin_2G = { + FREQ2FBIN(2412, 1), + FREQ2FBIN(2437, 1), + FREQ2FBIN(2472, 1) + }, + .calTarget_freqbin_2GHT20 = { + FREQ2FBIN(2412, 1), + FREQ2FBIN(2437, 1), + FREQ2FBIN(2472, 1) + }, + .calTarget_freqbin_2GHT40 = { + FREQ2FBIN(2412, 1), + FREQ2FBIN(2437, 1), + FREQ2FBIN(2472, 1) + }, + .calTargetPowerCck = { + /* 1L-5L,5S,11L,11S */ + { {36, 36, 36, 36} }, + { {36, 36, 36, 36} }, + }, + .calTargetPower2G = { + /* 6-24,36,48,54 */ + { {32, 32, 28, 24} }, + { {32, 32, 28, 24} }, + { {32, 32, 28, 24} }, + }, + .calTargetPower2GHT20 = { + { {32, 32, 32, 32, 28, 20, 32, 32, 28, 20, 32, 32, 28, 20} }, + { {32, 32, 32, 32, 28, 20, 32, 32, 28, 20, 32, 32, 28, 20} }, + { {32, 32, 32, 32, 28, 20, 32, 32, 28, 20, 32, 32, 28, 20} }, + }, + .calTargetPower2GHT40 = { + { {32, 32, 32, 32, 28, 20, 32, 32, 28, 20, 32, 32, 28, 20} }, + { {32, 32, 32, 32, 28, 20, 32, 32, 28, 20, 32, 32, 28, 20} }, + { {32, 32, 32, 32, 28, 20, 32, 32, 28, 20, 32, 32, 28, 20} }, + }, + .ctlIndex_2G = { + 0x11, 0x12, 0x15, 0x17, 0x41, 0x42, + 0x45, 0x47, 0x31, 0x32, 0x35, 0x37, + }, + .ctl_freqbin_2G = { + { + FREQ2FBIN(2412, 1), + FREQ2FBIN(2417, 1), + FREQ2FBIN(2457, 1), + FREQ2FBIN(2462, 1) + }, + { + FREQ2FBIN(2412, 1), + FREQ2FBIN(2417, 1), + FREQ2FBIN(2462, 1), + 0xFF, + }, + + { + FREQ2FBIN(2412, 1), + FREQ2FBIN(2417, 1), + FREQ2FBIN(2462, 1), + 0xFF, + }, + { + FREQ2FBIN(2422, 1), + FREQ2FBIN(2427, 1), + FREQ2FBIN(2447, 1), + FREQ2FBIN(2452, 1) + }, + + { + /* Data[4].ctlEdges[0].bChannel */ FREQ2FBIN(2412, 1), + /* Data[4].ctlEdges[1].bChannel */ FREQ2FBIN(2417, 1), + /* Data[4].ctlEdges[2].bChannel */ FREQ2FBIN(2472, 1), + /* Data[4].ctlEdges[3].bChannel */ FREQ2FBIN(2484, 1), + }, + + { + /* Data[5].ctlEdges[0].bChannel */ FREQ2FBIN(2412, 1), + /* Data[5].ctlEdges[1].bChannel */ FREQ2FBIN(2417, 1), + /* Data[5].ctlEdges[2].bChannel */ FREQ2FBIN(2472, 1), + 0, + }, + + { + /* Data[6].ctlEdges[0].bChannel */ FREQ2FBIN(2412, 1), + /* Data[6].ctlEdges[1].bChannel */ FREQ2FBIN(2417, 1), + FREQ2FBIN(2472, 1), + 0, + }, + + { + /* Data[7].ctlEdges[0].bChannel */ FREQ2FBIN(2422, 1), + /* Data[7].ctlEdges[1].bChannel */ FREQ2FBIN(2427, 1), + /* Data[7].ctlEdges[2].bChannel */ FREQ2FBIN(2447, 1), + /* Data[7].ctlEdges[3].bChannel */ FREQ2FBIN(2462, 1), + }, + + { + /* Data[8].ctlEdges[0].bChannel */ FREQ2FBIN(2412, 1), + /* Data[8].ctlEdges[1].bChannel */ FREQ2FBIN(2417, 1), + /* Data[8].ctlEdges[2].bChannel */ FREQ2FBIN(2472, 1), + }, + + { + /* Data[9].ctlEdges[0].bChannel */ FREQ2FBIN(2412, 1), + /* Data[9].ctlEdges[1].bChannel */ FREQ2FBIN(2417, 1), + /* Data[9].ctlEdges[2].bChannel */ FREQ2FBIN(2472, 1), + 0 + }, + + { + /* Data[10].ctlEdges[0].bChannel */ FREQ2FBIN(2412, 1), + /* Data[10].ctlEdges[1].bChannel */ FREQ2FBIN(2417, 1), + /* Data[10].ctlEdges[2].bChannel */ FREQ2FBIN(2472, 1), + 0 + }, + + { + /* Data[11].ctlEdges[0].bChannel */ FREQ2FBIN(2422, 1), + /* Data[11].ctlEdges[1].bChannel */ FREQ2FBIN(2427, 1), + /* Data[11].ctlEdges[2].bChannel */ FREQ2FBIN(2447, 1), + /* Data[11].ctlEdges[3].bChannel */ + FREQ2FBIN(2462, 1), + } + }, + .ctlPowerData_2G = { + { { {60, 0}, {60, 1}, {60, 0}, {60, 0} } }, + { { {60, 0}, {60, 1}, {60, 0}, {60, 0} } }, + { { {60, 1}, {60, 0}, {60, 0}, {60, 1} } }, + + { { {60, 1}, {60, 0}, {0, 0}, {0, 0} } }, + { { {60, 0}, {60, 1}, {60, 0}, {60, 0} } }, + { { {60, 0}, {60, 1}, {60, 0}, {60, 0} } }, + + { { {60, 0}, {60, 1}, {60, 1}, {60, 0} } }, + { { {60, 0}, {60, 1}, {60, 0}, {60, 0} } }, + { { {60, 0}, {60, 1}, {60, 0}, {60, 0} } }, + + { { {60, 0}, {60, 1}, {60, 0}, {60, 0} } }, + { { {60, 0}, {60, 1}, {60, 1}, {60, 1} } }, + }, + .modalHeader5G = { + /* 4 idle,t1,t2,b (4 bits per setting) */ + .antCtrlCommon = 0x110, + /* 4 ra1l1, ra2l1, ra1l2,ra2l2,ra12 */ + .antCtrlCommon2 = 0x22222, + /* antCtrlChain 6 idle, t,r,rx1,rx12,b (2 bits each) */ + .antCtrlChain = { + 0x000, 0x000, 0x000, + }, + /* xatten1DB 3 xatten1_db for AR9280 (0xa20c/b20c 5:0) */ + .xatten1DB = {0, 0, 0}, + + /* + * xatten1Margin[AR9300_MAX_CHAINS]; 3 xatten1_margin + * for merlin (0xa20c/b20c 16:12 + */ + .xatten1Margin = {0, 0, 0}, + .tempSlope = 68, + .voltSlope = 0, + /* spurChans spur channels in usual fbin coding format */ + .spurChans = {0, 0, 0, 0, 0}, + /* noiseFloorThreshCh Check if the register is per chain */ + .noiseFloorThreshCh = {-1, 0, 0}, + .ob = {3, 3, 3}, /* 3 chain */ + .db_stage2 = {3, 3, 3}, /* 3 chain */ + .db_stage3 = {3, 3, 3}, /* doesn't exist for 2G */ + .db_stage4 = {3, 3, 3}, /* don't exist for 2G */ + .xpaBiasLvl = 0, + .txFrameToDataStart = 0x0e, + .txFrameToPaOn = 0x0e, + .txClip = 3, /* 4 bits tx_clip, 4 bits dac_scale_cck */ + .antennaGain = 0, + .switchSettling = 0x2d, + .adcDesiredSize = -30, + .txEndToXpaOff = 0, + .txEndToRxOn = 0x2, + .txFrameToXpaOn = 0xe, + .thresh62 = 28, + .futureModal = { + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 + }, + }, + .calFreqPier5G = { + FREQ2FBIN(5180, 0), + FREQ2FBIN(5220, 0), + FREQ2FBIN(5320, 0), + FREQ2FBIN(5400, 0), + FREQ2FBIN(5500, 0), + FREQ2FBIN(5600, 0), + FREQ2FBIN(5725, 0), + FREQ2FBIN(5825, 0) + }, + .calPierData5G = { + { + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + }, + { + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + }, + { + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + {0, 0, 0, 0, 0}, + }, + + }, + .calTarget_freqbin_5G = { + FREQ2FBIN(5180, 0), + FREQ2FBIN(5220, 0), + FREQ2FBIN(5320, 0), + FREQ2FBIN(5400, 0), + FREQ2FBIN(5500, 0), + FREQ2FBIN(5600, 0), + FREQ2FBIN(5725, 0), + FREQ2FBIN(5825, 0) + }, + .calTarget_freqbin_5GHT20 = { + FREQ2FBIN(5180, 0), + FREQ2FBIN(5240, 0), + FREQ2FBIN(5320, 0), + FREQ2FBIN(5500, 0), + FREQ2FBIN(5700, 0), + FREQ2FBIN(5745, 0), + FREQ2FBIN(5725, 0), + FREQ2FBIN(5825, 0) + }, + .calTarget_freqbin_5GHT40 = { + FREQ2FBIN(5180, 0), + FREQ2FBIN(5240, 0), + FREQ2FBIN(5320, 0), + FREQ2FBIN(5500, 0), + FREQ2FBIN(5700, 0), + FREQ2FBIN(5745, 0), + FREQ2FBIN(5725, 0), + FREQ2FBIN(5825, 0) + }, + .calTargetPower5G = { + /* 6-24,36,48,54 */ + { {20, 20, 20, 10} }, + { {20, 20, 20, 10} }, + { {20, 20, 20, 10} }, + { {20, 20, 20, 10} }, + { {20, 20, 20, 10} }, + { {20, 20, 20, 10} }, + { {20, 20, 20, 10} }, + { {20, 20, 20, 10} }, + }, + .calTargetPower5GHT20 = { + /* + * 0_8_16,1-3_9-11_17-19, + * 4,5,6,7,12,13,14,15,20,21,22,23 + */ + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + }, + .calTargetPower5GHT40 = { + /* + * 0_8_16,1-3_9-11_17-19, + * 4,5,6,7,12,13,14,15,20,21,22,23 + */ + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + { {20, 20, 10, 10, 0, 0, 10, 10, 0, 0, 10, 10, 0, 0} }, + }, + .ctlIndex_5G = { + 0x10, 0x16, 0x18, 0x40, 0x46, + 0x48, 0x30, 0x36, 0x38 + }, + .ctl_freqbin_5G = { + { + /* Data[0].ctlEdges[0].bChannel */ FREQ2FBIN(5180, 0), + /* Data[0].ctlEdges[1].bChannel */ FREQ2FBIN(5260, 0), + /* Data[0].ctlEdges[2].bChannel */ FREQ2FBIN(5280, 0), + /* Data[0].ctlEdges[3].bChannel */ FREQ2FBIN(5500, 0), + /* Data[0].ctlEdges[4].bChannel */ FREQ2FBIN(5600, 0), + /* Data[0].ctlEdges[5].bChannel */ FREQ2FBIN(5700, 0), + /* Data[0].ctlEdges[6].bChannel */ FREQ2FBIN(5745, 0), + /* Data[0].ctlEdges[7].bChannel */ FREQ2FBIN(5825, 0) + }, + { + /* Data[1].ctlEdges[0].bChannel */ FREQ2FBIN(5180, 0), + /* Data[1].ctlEdges[1].bChannel */ FREQ2FBIN(5260, 0), + /* Data[1].ctlEdges[2].bChannel */ FREQ2FBIN(5280, 0), + /* Data[1].ctlEdges[3].bChannel */ FREQ2FBIN(5500, 0), + /* Data[1].ctlEdges[4].bChannel */ FREQ2FBIN(5520, 0), + /* Data[1].ctlEdges[5].bChannel */ FREQ2FBIN(5700, 0), + /* Data[1].ctlEdges[6].bChannel */ FREQ2FBIN(5745, 0), + /* Data[1].ctlEdges[7].bChannel */ FREQ2FBIN(5825, 0) + }, + + { + /* Data[2].ctlEdges[0].bChannel */ FREQ2FBIN(5190, 0), + /* Data[2].ctlEdges[1].bChannel */ FREQ2FBIN(5230, 0), + /* Data[2].ctlEdges[2].bChannel */ FREQ2FBIN(5270, 0), + /* Data[2].ctlEdges[3].bChannel */ FREQ2FBIN(5310, 0), + /* Data[2].ctlEdges[4].bChannel */ FREQ2FBIN(5510, 0), + /* Data[2].ctlEdges[5].bChannel */ FREQ2FBIN(5550, 0), + /* Data[2].ctlEdges[6].bChannel */ FREQ2FBIN(5670, 0), + /* Data[2].ctlEdges[7].bChannel */ FREQ2FBIN(5755, 0) + }, + + { + /* Data[3].ctlEdges[0].bChannel */ FREQ2FBIN(5180, 0), + /* Data[3].ctlEdges[1].bChannel */ FREQ2FBIN(5200, 0), + /* Data[3].ctlEdges[2].bChannel */ FREQ2FBIN(5260, 0), + /* Data[3].ctlEdges[3].bChannel */ FREQ2FBIN(5320, 0), + /* Data[3].ctlEdges[4].bChannel */ FREQ2FBIN(5500, 0), + /* Data[3].ctlEdges[5].bChannel */ FREQ2FBIN(5700, 0), + /* Data[3].ctlEdges[6].bChannel */ 0xFF, + /* Data[3].ctlEdges[7].bChannel */ 0xFF, + }, + + { + /* Data[4].ctlEdges[0].bChannel */ FREQ2FBIN(5180, 0), + /* Data[4].ctlEdges[1].bChannel */ FREQ2FBIN(5260, 0), + /* Data[4].ctlEdges[2].bChannel */ FREQ2FBIN(5500, 0), + /* Data[4].ctlEdges[3].bChannel */ FREQ2FBIN(5700, 0), + /* Data[4].ctlEdges[4].bChannel */ 0xFF, + /* Data[4].ctlEdges[5].bChannel */ 0xFF, + /* Data[4].ctlEdges[6].bChannel */ 0xFF, + /* Data[4].ctlEdges[7].bChannel */ 0xFF, + }, + + { + /* Data[5].ctlEdges[0].bChannel */ FREQ2FBIN(5190, 0), + /* Data[5].ctlEdges[1].bChannel */ FREQ2FBIN(5270, 0), + /* Data[5].ctlEdges[2].bChannel */ FREQ2FBIN(5310, 0), + /* Data[5].ctlEdges[3].bChannel */ FREQ2FBIN(5510, 0), + /* Data[5].ctlEdges[4].bChannel */ FREQ2FBIN(5590, 0), + /* Data[5].ctlEdges[5].bChannel */ FREQ2FBIN(5670, 0), + /* Data[5].ctlEdges[6].bChannel */ 0xFF, + /* Data[5].ctlEdges[7].bChannel */ 0xFF + }, + + { + /* Data[6].ctlEdges[0].bChannel */ FREQ2FBIN(5180, 0), + /* Data[6].ctlEdges[1].bChannel */ FREQ2FBIN(5200, 0), + /* Data[6].ctlEdges[2].bChannel */ FREQ2FBIN(5220, 0), + /* Data[6].ctlEdges[3].bChannel */ FREQ2FBIN(5260, 0), + /* Data[6].ctlEdges[4].bChannel */ FREQ2FBIN(5500, 0), + /* Data[6].ctlEdges[5].bChannel */ FREQ2FBIN(5600, 0), + /* Data[6].ctlEdges[6].bChannel */ FREQ2FBIN(5700, 0), + /* Data[6].ctlEdges[7].bChannel */ FREQ2FBIN(5745, 0) + }, + + { + /* Data[7].ctlEdges[0].bChannel */ FREQ2FBIN(5180, 0), + /* Data[7].ctlEdges[1].bChannel */ FREQ2FBIN(5260, 0), + /* Data[7].ctlEdges[2].bChannel */ FREQ2FBIN(5320, 0), + /* Data[7].ctlEdges[3].bChannel */ FREQ2FBIN(5500, 0), + /* Data[7].ctlEdges[4].bChannel */ FREQ2FBIN(5560, 0), + /* Data[7].ctlEdges[5].bChannel */ FREQ2FBIN(5700, 0), + /* Data[7].ctlEdges[6].bChannel */ FREQ2FBIN(5745, 0), + /* Data[7].ctlEdges[7].bChannel */ FREQ2FBIN(5825, 0) + }, + + { + /* Data[8].ctlEdges[0].bChannel */ FREQ2FBIN(5190, 0), + /* Data[8].ctlEdges[1].bChannel */ FREQ2FBIN(5230, 0), + /* Data[8].ctlEdges[2].bChannel */ FREQ2FBIN(5270, 0), + /* Data[8].ctlEdges[3].bChannel */ FREQ2FBIN(5510, 0), + /* Data[8].ctlEdges[4].bChannel */ FREQ2FBIN(5550, 0), + /* Data[8].ctlEdges[5].bChannel */ FREQ2FBIN(5670, 0), + /* Data[8].ctlEdges[6].bChannel */ FREQ2FBIN(5755, 0), + /* Data[8].ctlEdges[7].bChannel */ FREQ2FBIN(5795, 0) + } + }, + .ctlPowerData_5G = { + { + { + {60, 1}, {60, 1}, {60, 1}, {60, 1}, + {60, 1}, {60, 1}, {60, 1}, {60, 0}, + } + }, + { + { + {60, 1}, {60, 1}, {60, 1}, {60, 1}, + {60, 1}, {60, 1}, {60, 1}, {60, 0}, + } + }, + { + { + {60, 0}, {60, 1}, {60, 0}, {60, 1}, + {60, 1}, {60, 1}, {60, 1}, {60, 1}, + } + }, + { + { + {60, 0}, {60, 1}, {60, 1}, {60, 0}, + {60, 1}, {60, 0}, {60, 0}, {60, 0}, + } + }, + { + { + {60, 1}, {60, 1}, {60, 1}, {60, 0}, + {60, 0}, {60, 0}, {60, 0}, {60, 0}, + } + }, + { + { + {60, 1}, {60, 1}, {60, 1}, {60, 1}, + {60, 1}, {60, 0}, {60, 0}, {60, 0}, + } + }, + { + { + {60, 1}, {60, 1}, {60, 1}, {60, 1}, + {60, 1}, {60, 1}, {60, 1}, {60, 1}, + } + }, + { + { + {60, 1}, {60, 1}, {60, 0}, {60, 1}, + {60, 1}, {60, 1}, {60, 1}, {60, 0}, + } + }, + { + { + {60, 1}, {60, 0}, {60, 1}, {60, 1}, + {60, 1}, {60, 1}, {60, 0}, {60, 1}, + } + }, + } +}; + +static int ath9k_hw_ar9300_check_eeprom(struct ath_hw *ah) +{ + return 0; +} + +static u32 ath9k_hw_ar9300_get_eeprom(struct ath_hw *ah, + enum eeprom_param param) +{ + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + struct ar9300_base_eep_hdr *pBase = &eep->baseEepHeader; + + switch (param) { + case EEP_MAC_LSW: + return eep->macAddr[0] << 8 | eep->macAddr[1]; + case EEP_MAC_MID: + return eep->macAddr[2] << 8 | eep->macAddr[3]; + case EEP_MAC_MSW: + return eep->macAddr[4] << 8 | eep->macAddr[5]; + case EEP_REG_0: + return pBase->regDmn[0]; + case EEP_REG_1: + return pBase->regDmn[1]; + case EEP_OP_CAP: + return pBase->deviceCap; + case EEP_OP_MODE: + return pBase->opCapFlags.opFlags; + case EEP_RF_SILENT: + return pBase->rfSilent; + case EEP_TX_MASK: + return (pBase->txrxMask >> 4) & 0xf; + case EEP_RX_MASK: + return pBase->txrxMask & 0xf; + case EEP_DRIVE_STRENGTH: +#define AR9300_EEP_BASE_DRIV_STRENGTH 0x1 + return pBase->miscConfiguration & AR9300_EEP_BASE_DRIV_STRENGTH; + case EEP_INTERNAL_REGULATOR: + /* Bit 4 is internal regulator flag */ + return (pBase->featureEnable & 0x10) >> 4; + case EEP_SWREG: + return pBase->swreg; + default: + return 0; + } +} + +#ifdef __BIG_ENDIAN +static void ar9300_swap_eeprom(struct ar9300_eeprom *eep) +{ + u32 dword; + u16 word; + int i; + + word = swab16(eep->baseEepHeader.regDmn[0]); + eep->baseEepHeader.regDmn[0] = word; + + word = swab16(eep->baseEepHeader.regDmn[1]); + eep->baseEepHeader.regDmn[1] = word; + + dword = swab32(eep->modalHeader2G.antCtrlCommon); + eep->modalHeader2G.antCtrlCommon = dword; + + dword = swab32(eep->modalHeader2G.antCtrlCommon2); + eep->modalHeader2G.antCtrlCommon2 = dword; + + dword = swab32(eep->modalHeader5G.antCtrlCommon); + eep->modalHeader5G.antCtrlCommon = dword; + + dword = swab32(eep->modalHeader5G.antCtrlCommon2); + eep->modalHeader5G.antCtrlCommon2 = dword; + + for (i = 0; i < AR9300_MAX_CHAINS; i++) { + word = swab16(eep->modalHeader2G.antCtrlChain[i]); + eep->modalHeader2G.antCtrlChain[i] = word; + + word = swab16(eep->modalHeader5G.antCtrlChain[i]); + eep->modalHeader5G.antCtrlChain[i] = word; + } +} +#endif + +static bool ar9300_hw_read_eeprom(struct ath_hw *ah, + long address, u8 *buffer, int many) +{ + int i; + u8 value[2]; + unsigned long eepAddr; + unsigned long byteAddr; + u16 *svalue; + struct ath_common *common = ath9k_hw_common(ah); + + if ((address < 0) || ((address + many) > AR9300_EEPROM_SIZE - 1)) { + ath_print(common, ATH_DBG_EEPROM, + "eeprom address not in range\n"); + return false; + } + + for (i = 0; i < many; i++) { + eepAddr = (u16) (address + i) / 2; + byteAddr = (u16) (address + i) % 2; + svalue = (u16 *) value; + if (!ath9k_hw_nvram_read(common, eepAddr, svalue)) { + ath_print(common, ATH_DBG_EEPROM, + "unable to read eeprom region\n"); + return false; + } + *svalue = le16_to_cpu(*svalue); + buffer[i] = value[byteAddr]; + } + + return true; +} + +static bool ar9300_read_eeprom(struct ath_hw *ah, + int address, u8 *buffer, int many) +{ + int it; + + for (it = 0; it < many; it++) + if (!ar9300_hw_read_eeprom(ah, + (address - it), + (buffer + it), 1)) + return false; + return true; +} + +static void ar9300_comp_hdr_unpack(u8 *best, int *code, int *reference, + int *length, int *major, int *minor) +{ + unsigned long value[4]; + + value[0] = best[0]; + value[1] = best[1]; + value[2] = best[2]; + value[3] = best[3]; + *code = ((value[0] >> 5) & 0x0007); + *reference = (value[0] & 0x001f) | ((value[1] >> 2) & 0x0020); + *length = ((value[1] << 4) & 0x07f0) | ((value[2] >> 4) & 0x000f); + *major = (value[2] & 0x000f); + *minor = (value[3] & 0x00ff); +} + +static u16 ar9300_comp_cksum(u8 *data, int dsize) +{ + int it, checksum = 0; + + for (it = 0; it < dsize; it++) { + checksum += data[it]; + checksum &= 0xffff; + } + + return checksum; +} + +static bool ar9300_uncompress_block(struct ath_hw *ah, + u8 *mptr, + int mdataSize, + u8 *block, + int size) +{ + int it; + int spot; + int offset; + int length; + struct ath_common *common = ath9k_hw_common(ah); + + spot = 0; + + for (it = 0; it < size; it += (length+2)) { + offset = block[it]; + offset &= 0xff; + spot += offset; + length = block[it+1]; + length &= 0xff; + + if (length > 0 && spot >= 0 && spot+length < mdataSize) { + ath_print(common, ATH_DBG_EEPROM, + "Restore at %d: spot=%d " + "offset=%d length=%d\n", + it, spot, offset, length); + memcpy(&mptr[spot], &block[it+2], length); + spot += length; + } else if (length > 0) { + ath_print(common, ATH_DBG_EEPROM, + "Bad restore at %d: spot=%d " + "offset=%d length=%d\n", + it, spot, offset, length); + return false; + } + } + return true; +} + +static int ar9300_compress_decision(struct ath_hw *ah, + int it, + int code, + int reference, + u8 *mptr, + u8 *word, int length, int mdata_size) +{ + struct ath_common *common = ath9k_hw_common(ah); + u8 *dptr; + + switch (code) { + case _CompressNone: + if (length != mdata_size) { + ath_print(common, ATH_DBG_EEPROM, + "EEPROM structure size mismatch" + "memory=%d eeprom=%d\n", mdata_size, length); + return -1; + } + memcpy(mptr, (u8 *) (word + COMP_HDR_LEN), length); + ath_print(common, ATH_DBG_EEPROM, "restored eeprom %d:" + " uncompressed, length %d\n", it, length); + break; + case _CompressBlock: + if (reference == 0) { + dptr = mptr; + } else { + if (reference != 2) { + ath_print(common, ATH_DBG_EEPROM, + "cant find reference eeprom" + "struct %d\n", reference); + return -1; + } + memcpy(mptr, &ar9300_default, mdata_size); + } + ath_print(common, ATH_DBG_EEPROM, + "restore eeprom %d: block, reference %d," + " length %d\n", it, reference, length); + ar9300_uncompress_block(ah, mptr, mdata_size, + (u8 *) (word + COMP_HDR_LEN), length); + break; + default: + ath_print(common, ATH_DBG_EEPROM, "unknown compression" + " code %d\n", code); + return -1; + } + return 0; +} + +/* + * Read the configuration data from the eeprom. + * The data can be put in any specified memory buffer. + * + * Returns -1 on error. + * Returns address of next memory location on success. + */ +static int ar9300_eeprom_restore_internal(struct ath_hw *ah, + u8 *mptr, int mdata_size) +{ +#define MDEFAULT 15 +#define MSTATE 100 + int cptr; + u8 *word; + int code; + int reference, length, major, minor; + int osize; + int it; + u16 checksum, mchecksum; + struct ath_common *common = ath9k_hw_common(ah); + + word = kzalloc(2048, GFP_KERNEL); + if (!word) + return -1; + + memcpy(mptr, &ar9300_default, mdata_size); + + cptr = AR9300_BASE_ADDR; + for (it = 0; it < MSTATE; it++) { + if (!ar9300_read_eeprom(ah, cptr, word, COMP_HDR_LEN)) + goto fail; + + if ((word[0] == 0 && word[1] == 0 && word[2] == 0 && + word[3] == 0) || (word[0] == 0xff && word[1] == 0xff + && word[2] == 0xff && word[3] == 0xff)) + break; + + ar9300_comp_hdr_unpack(word, &code, &reference, + &length, &major, &minor); + ath_print(common, ATH_DBG_EEPROM, + "Found block at %x: code=%d ref=%d" + "length=%d major=%d minor=%d\n", cptr, code, + reference, length, major, minor); + if (length >= 1024) { + ath_print(common, ATH_DBG_EEPROM, + "Skipping bad header\n"); + cptr -= COMP_HDR_LEN; + continue; + } + + osize = length; + ar9300_read_eeprom(ah, cptr, word, + COMP_HDR_LEN + osize + COMP_CKSUM_LEN); + checksum = ar9300_comp_cksum(&word[COMP_HDR_LEN], length); + mchecksum = word[COMP_HDR_LEN + osize] | + (word[COMP_HDR_LEN + osize + 1] << 8); + ath_print(common, ATH_DBG_EEPROM, + "checksum %x %x\n", checksum, mchecksum); + if (checksum == mchecksum) { + ar9300_compress_decision(ah, it, code, reference, mptr, + word, length, mdata_size); + } else { + ath_print(common, ATH_DBG_EEPROM, + "skipping block with bad checksum\n"); + } + cptr -= (COMP_HDR_LEN + osize + COMP_CKSUM_LEN); + } + + kfree(word); + return cptr; + +fail: + kfree(word); + return -1; +} + +/* + * Restore the configuration structure by reading the eeprom. + * This function destroys any existing in-memory structure + * content. + */ +static bool ath9k_hw_ar9300_fill_eeprom(struct ath_hw *ah) +{ + u8 *mptr = NULL; + int mdata_size; + + mptr = (u8 *) &ah->eeprom.ar9300_eep; + mdata_size = sizeof(struct ar9300_eeprom); + + if (mptr && mdata_size > 0) { + /* At this point, mptr points to the eeprom data structure + * in it's "default" state. If this is big endian, swap the + * data structures back to "little endian" + */ + /* First swap, default to Little Endian */ +#ifdef __BIG_ENDIAN + ar9300_swap_eeprom((struct ar9300_eeprom *)mptr); +#endif + if (ar9300_eeprom_restore_internal(ah, mptr, mdata_size) >= 0) + return true; + + /* Second Swap, back to Big Endian */ +#ifdef __BIG_ENDIAN + ar9300_swap_eeprom((struct ar9300_eeprom *)mptr); +#endif + } + return false; +} + +/* XXX: review hardware docs */ +static int ath9k_hw_ar9300_get_eeprom_ver(struct ath_hw *ah) +{ + return ah->eeprom.ar9300_eep.eepromVersion; +} + +/* XXX: could be read from the eepromVersion, not sure yet */ +static int ath9k_hw_ar9300_get_eeprom_rev(struct ath_hw *ah) +{ + return 0; +} + +static u8 ath9k_hw_ar9300_get_num_ant_config(struct ath_hw *ah, + enum ieee80211_band freq_band) +{ + return 1; +} + +static u16 ath9k_hw_ar9300_get_eeprom_antenna_cfg(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + return -EINVAL; +} + +static s32 ar9003_hw_xpa_bias_level_get(struct ath_hw *ah, bool is2ghz) +{ + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + + if (is2ghz) + return eep->modalHeader2G.xpaBiasLvl; + else + return eep->modalHeader5G.xpaBiasLvl; +} + +static void ar9003_hw_xpa_bias_level_apply(struct ath_hw *ah, bool is2ghz) +{ + int bias = ar9003_hw_xpa_bias_level_get(ah, is2ghz); + REG_RMW_FIELD(ah, AR_CH0_TOP, AR_CH0_TOP_XPABIASLVL, (bias & 0x3)); + REG_RMW_FIELD(ah, AR_CH0_THERM, AR_CH0_THERM_SPARE, + ((bias >> 2) & 0x3)); +} + +static u32 ar9003_hw_ant_ctrl_common_get(struct ath_hw *ah, bool is2ghz) +{ + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + + if (is2ghz) + return eep->modalHeader2G.antCtrlCommon; + else + return eep->modalHeader5G.antCtrlCommon; +} + +static u32 ar9003_hw_ant_ctrl_common_2_get(struct ath_hw *ah, bool is2ghz) +{ + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + + if (is2ghz) + return eep->modalHeader2G.antCtrlCommon2; + else + return eep->modalHeader5G.antCtrlCommon2; +} + +static u16 ar9003_hw_ant_ctrl_chain_get(struct ath_hw *ah, + int chain, + bool is2ghz) +{ + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + + if (chain >= 0 && chain < AR9300_MAX_CHAINS) { + if (is2ghz) + return eep->modalHeader2G.antCtrlChain[chain]; + else + return eep->modalHeader5G.antCtrlChain[chain]; + } + + return 0; +} + +static void ar9003_hw_ant_ctrl_apply(struct ath_hw *ah, bool is2ghz) +{ + u32 value = ar9003_hw_ant_ctrl_common_get(ah, is2ghz); + REG_RMW_FIELD(ah, AR_PHY_SWITCH_COM, AR_SWITCH_TABLE_COM_ALL, value); + + value = ar9003_hw_ant_ctrl_common_2_get(ah, is2ghz); + REG_RMW_FIELD(ah, AR_PHY_SWITCH_COM_2, AR_SWITCH_TABLE_COM2_ALL, value); + + value = ar9003_hw_ant_ctrl_chain_get(ah, 0, is2ghz); + REG_RMW_FIELD(ah, AR_PHY_SWITCH_CHAIN_0, AR_SWITCH_TABLE_ALL, value); + + value = ar9003_hw_ant_ctrl_chain_get(ah, 1, is2ghz); + REG_RMW_FIELD(ah, AR_PHY_SWITCH_CHAIN_1, AR_SWITCH_TABLE_ALL, value); + + value = ar9003_hw_ant_ctrl_chain_get(ah, 2, is2ghz); + REG_RMW_FIELD(ah, AR_PHY_SWITCH_CHAIN_2, AR_SWITCH_TABLE_ALL, value); +} + +static void ar9003_hw_drive_strength_apply(struct ath_hw *ah) +{ + int drive_strength; + unsigned long reg; + + drive_strength = ath9k_hw_ar9300_get_eeprom(ah, EEP_DRIVE_STRENGTH); + + if (!drive_strength) + return; + + reg = REG_READ(ah, AR_PHY_65NM_CH0_BIAS1); + reg &= ~0x00ffffc0; + reg |= 0x5 << 21; + reg |= 0x5 << 18; + reg |= 0x5 << 15; + reg |= 0x5 << 12; + reg |= 0x5 << 9; + reg |= 0x5 << 6; + REG_WRITE(ah, AR_PHY_65NM_CH0_BIAS1, reg); + + reg = REG_READ(ah, AR_PHY_65NM_CH0_BIAS2); + reg &= ~0xffffffe0; + reg |= 0x5 << 29; + reg |= 0x5 << 26; + reg |= 0x5 << 23; + reg |= 0x5 << 20; + reg |= 0x5 << 17; + reg |= 0x5 << 14; + reg |= 0x5 << 11; + reg |= 0x5 << 8; + reg |= 0x5 << 5; + REG_WRITE(ah, AR_PHY_65NM_CH0_BIAS2, reg); + + reg = REG_READ(ah, AR_PHY_65NM_CH0_BIAS4); + reg &= ~0xff800000; + reg |= 0x5 << 29; + reg |= 0x5 << 26; + reg |= 0x5 << 23; + REG_WRITE(ah, AR_PHY_65NM_CH0_BIAS4, reg); +} + +static void ar9003_hw_internal_regulator_apply(struct ath_hw *ah) +{ + int internal_regulator = + ath9k_hw_ar9300_get_eeprom(ah, EEP_INTERNAL_REGULATOR); + + if (internal_regulator) { + /* Internal regulator is ON. Write swreg register. */ + int swreg = ath9k_hw_ar9300_get_eeprom(ah, EEP_SWREG); + REG_WRITE(ah, AR_RTC_REG_CONTROL1, + REG_READ(ah, AR_RTC_REG_CONTROL1) & + (~AR_RTC_REG_CONTROL1_SWREG_PROGRAM)); + REG_WRITE(ah, AR_RTC_REG_CONTROL0, swreg); + /* Set REG_CONTROL1.SWREG_PROGRAM */ + REG_WRITE(ah, AR_RTC_REG_CONTROL1, + REG_READ(ah, + AR_RTC_REG_CONTROL1) | + AR_RTC_REG_CONTROL1_SWREG_PROGRAM); + } else { + REG_WRITE(ah, AR_RTC_SLEEP_CLK, + (REG_READ(ah, + AR_RTC_SLEEP_CLK) | + AR_RTC_FORCE_SWREG_PRD)); + } +} + +static void ath9k_hw_ar9300_set_board_values(struct ath_hw *ah, + struct ath9k_channel *chan) +{ + ar9003_hw_xpa_bias_level_apply(ah, IS_CHAN_2GHZ(chan)); + ar9003_hw_ant_ctrl_apply(ah, IS_CHAN_2GHZ(chan)); + ar9003_hw_drive_strength_apply(ah); + ar9003_hw_internal_regulator_apply(ah); +} + +static void ath9k_hw_ar9300_set_addac(struct ath_hw *ah, + struct ath9k_channel *chan) +{ +} + +/* + * Returns the interpolated y value corresponding to the specified x value + * from the np ordered pairs of data (px,py). + * The pairs do not have to be in any order. + * If the specified x value is less than any of the px, + * the returned y value is equal to the py for the lowest px. + * If the specified x value is greater than any of the px, + * the returned y value is equal to the py for the highest px. + */ +static int ar9003_hw_power_interpolate(int32_t x, + int32_t *px, int32_t *py, u_int16_t np) +{ + int ip = 0; + int lx = 0, ly = 0, lhave = 0; + int hx = 0, hy = 0, hhave = 0; + int dx = 0; + int y = 0; + + lhave = 0; + hhave = 0; + + /* identify best lower and higher x calibration measurement */ + for (ip = 0; ip < np; ip++) { + dx = x - px[ip]; + + /* this measurement is higher than our desired x */ + if (dx <= 0) { + if (!hhave || dx > (x - hx)) { + /* new best higher x measurement */ + hx = px[ip]; + hy = py[ip]; + hhave = 1; + } + } + /* this measurement is lower than our desired x */ + if (dx >= 0) { + if (!lhave || dx < (x - lx)) { + /* new best lower x measurement */ + lx = px[ip]; + ly = py[ip]; + lhave = 1; + } + } + } + + /* the low x is good */ + if (lhave) { + /* so is the high x */ + if (hhave) { + /* they're the same, so just pick one */ + if (hx == lx) + y = ly; + else /* interpolate */ + y = ly + (((x - lx) * (hy - ly)) / (hx - lx)); + } else /* only low is good, use it */ + y = ly; + } else if (hhave) /* only high is good, use it */ + y = hy; + else /* nothing is good,this should never happen unless np=0, ???? */ + y = -(1 << 30); + return y; +} + +static u8 ar9003_hw_eeprom_get_tgt_pwr(struct ath_hw *ah, + u16 rateIndex, u16 freq, bool is2GHz) +{ + u16 numPiers, i; + s32 targetPowerArray[AR9300_NUM_5G_20_TARGET_POWERS]; + s32 freqArray[AR9300_NUM_5G_20_TARGET_POWERS]; + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + struct cal_tgt_pow_legacy *pEepromTargetPwr; + u8 *pFreqBin; + + if (is2GHz) { + numPiers = AR9300_NUM_5G_20_TARGET_POWERS; + pEepromTargetPwr = eep->calTargetPower2G; + pFreqBin = eep->calTarget_freqbin_2G; + } else { + numPiers = AR9300_NUM_5G_20_TARGET_POWERS; + pEepromTargetPwr = eep->calTargetPower5G; + pFreqBin = eep->calTarget_freqbin_5G; + } + + /* + * create array of channels and targetpower from + * targetpower piers stored on eeprom + */ + for (i = 0; i < numPiers; i++) { + freqArray[i] = FBIN2FREQ(pFreqBin[i], is2GHz); + targetPowerArray[i] = pEepromTargetPwr[i].tPow2x[rateIndex]; + } + + /* interpolate to get target power for given frequency */ + return (u8) ar9003_hw_power_interpolate((s32) freq, + freqArray, + targetPowerArray, numPiers); +} + +static u8 ar9003_hw_eeprom_get_ht20_tgt_pwr(struct ath_hw *ah, + u16 rateIndex, + u16 freq, bool is2GHz) +{ + u16 numPiers, i; + s32 targetPowerArray[AR9300_NUM_5G_20_TARGET_POWERS]; + s32 freqArray[AR9300_NUM_5G_20_TARGET_POWERS]; + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + struct cal_tgt_pow_ht *pEepromTargetPwr; + u8 *pFreqBin; + + if (is2GHz) { + numPiers = AR9300_NUM_5G_20_TARGET_POWERS; + pEepromTargetPwr = eep->calTargetPower2GHT20; + pFreqBin = eep->calTarget_freqbin_2GHT20; + } else { + numPiers = AR9300_NUM_5G_20_TARGET_POWERS; + pEepromTargetPwr = eep->calTargetPower5GHT20; + pFreqBin = eep->calTarget_freqbin_5GHT20; + } + + /* + * create array of channels and targetpower + * from targetpower piers stored on eeprom + */ + for (i = 0; i < numPiers; i++) { + freqArray[i] = FBIN2FREQ(pFreqBin[i], is2GHz); + targetPowerArray[i] = pEepromTargetPwr[i].tPow2x[rateIndex]; + } + + /* interpolate to get target power for given frequency */ + return (u8) ar9003_hw_power_interpolate((s32) freq, + freqArray, + targetPowerArray, numPiers); +} + +static u8 ar9003_hw_eeprom_get_ht40_tgt_pwr(struct ath_hw *ah, + u16 rateIndex, + u16 freq, bool is2GHz) +{ + u16 numPiers, i; + s32 targetPowerArray[AR9300_NUM_5G_40_TARGET_POWERS]; + s32 freqArray[AR9300_NUM_5G_40_TARGET_POWERS]; + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + struct cal_tgt_pow_ht *pEepromTargetPwr; + u8 *pFreqBin; + + if (is2GHz) { + numPiers = AR9300_NUM_2G_40_TARGET_POWERS; + pEepromTargetPwr = eep->calTargetPower2GHT40; + pFreqBin = eep->calTarget_freqbin_2GHT40; + } else { + numPiers = AR9300_NUM_5G_40_TARGET_POWERS; + pEepromTargetPwr = eep->calTargetPower5GHT40; + pFreqBin = eep->calTarget_freqbin_5GHT40; + } + + /* + * create array of channels and targetpower from + * targetpower piers stored on eeprom + */ + for (i = 0; i < numPiers; i++) { + freqArray[i] = FBIN2FREQ(pFreqBin[i], is2GHz); + targetPowerArray[i] = pEepromTargetPwr[i].tPow2x[rateIndex]; + } + + /* interpolate to get target power for given frequency */ + return (u8) ar9003_hw_power_interpolate((s32) freq, + freqArray, + targetPowerArray, numPiers); +} + +static u8 ar9003_hw_eeprom_get_cck_tgt_pwr(struct ath_hw *ah, + u16 rateIndex, u16 freq) +{ + u16 numPiers = AR9300_NUM_2G_CCK_TARGET_POWERS, i; + s32 targetPowerArray[AR9300_NUM_2G_CCK_TARGET_POWERS]; + s32 freqArray[AR9300_NUM_2G_CCK_TARGET_POWERS]; + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + struct cal_tgt_pow_legacy *pEepromTargetPwr = eep->calTargetPowerCck; + u8 *pFreqBin = eep->calTarget_freqbin_Cck; + + /* + * create array of channels and targetpower from + * targetpower piers stored on eeprom + */ + for (i = 0; i < numPiers; i++) { + freqArray[i] = FBIN2FREQ(pFreqBin[i], 1); + targetPowerArray[i] = pEepromTargetPwr[i].tPow2x[rateIndex]; + } + + /* interpolate to get target power for given frequency */ + return (u8) ar9003_hw_power_interpolate((s32) freq, + freqArray, + targetPowerArray, numPiers); +} + +/* Set tx power registers to array of values passed in */ +static int ar9003_hw_tx_power_regwrite(struct ath_hw *ah, u8 * pPwrArray) +{ +#define POW_SM(_r, _s) (((_r) & 0x3f) << (_s)) + /* make sure forced gain is not set */ + REG_WRITE(ah, 0xa458, 0); + + /* Write the OFDM power per rate set */ + + /* 6 (LSB), 9, 12, 18 (MSB) */ + REG_WRITE(ah, 0xa3c0, + POW_SM(pPwrArray[ALL_TARGET_LEGACY_6_24], 24) | + POW_SM(pPwrArray[ALL_TARGET_LEGACY_6_24], 16) | + POW_SM(pPwrArray[ALL_TARGET_LEGACY_6_24], 8) | + POW_SM(pPwrArray[ALL_TARGET_LEGACY_6_24], 0)); + + /* 24 (LSB), 36, 48, 54 (MSB) */ + REG_WRITE(ah, 0xa3c4, + POW_SM(pPwrArray[ALL_TARGET_LEGACY_54], 24) | + POW_SM(pPwrArray[ALL_TARGET_LEGACY_48], 16) | + POW_SM(pPwrArray[ALL_TARGET_LEGACY_36], 8) | + POW_SM(pPwrArray[ALL_TARGET_LEGACY_6_24], 0)); + + /* Write the CCK power per rate set */ + + /* 1L (LSB), reserved, 2L, 2S (MSB) */ + REG_WRITE(ah, 0xa3c8, + POW_SM(pPwrArray[ALL_TARGET_LEGACY_1L_5L], 24) | + POW_SM(pPwrArray[ALL_TARGET_LEGACY_1L_5L], 16) | + /* POW_SM(txPowerTimes2, 8) | this is reserved for AR9003 */ + POW_SM(pPwrArray[ALL_TARGET_LEGACY_1L_5L], 0)); + + /* 5.5L (LSB), 5.5S, 11L, 11S (MSB) */ + REG_WRITE(ah, 0xa3cc, + POW_SM(pPwrArray[ALL_TARGET_LEGACY_11S], 24) | + POW_SM(pPwrArray[ALL_TARGET_LEGACY_11L], 16) | + POW_SM(pPwrArray[ALL_TARGET_LEGACY_5S], 8) | + POW_SM(pPwrArray[ALL_TARGET_LEGACY_1L_5L], 0) + ); + + /* Write the HT20 power per rate set */ + + /* 0/8/16 (LSB), 1-3/9-11/17-19, 4, 5 (MSB) */ + REG_WRITE(ah, 0xa3d0, + POW_SM(pPwrArray[ALL_TARGET_HT20_5], 24) | + POW_SM(pPwrArray[ALL_TARGET_HT20_4], 16) | + POW_SM(pPwrArray[ALL_TARGET_HT20_1_3_9_11_17_19], 8) | + POW_SM(pPwrArray[ALL_TARGET_HT20_0_8_16], 0) + ); + + /* 6 (LSB), 7, 12, 13 (MSB) */ + REG_WRITE(ah, 0xa3d4, + POW_SM(pPwrArray[ALL_TARGET_HT20_13], 24) | + POW_SM(pPwrArray[ALL_TARGET_HT20_12], 16) | + POW_SM(pPwrArray[ALL_TARGET_HT20_7], 8) | + POW_SM(pPwrArray[ALL_TARGET_HT20_6], 0) + ); + + /* 14 (LSB), 15, 20, 21 */ + REG_WRITE(ah, 0xa3e4, + POW_SM(pPwrArray[ALL_TARGET_HT20_21], 24) | + POW_SM(pPwrArray[ALL_TARGET_HT20_20], 16) | + POW_SM(pPwrArray[ALL_TARGET_HT20_15], 8) | + POW_SM(pPwrArray[ALL_TARGET_HT20_14], 0) + ); + + /* Mixed HT20 and HT40 rates */ + + /* HT20 22 (LSB), HT20 23, HT40 22, HT40 23 (MSB) */ + REG_WRITE(ah, 0xa3e8, + POW_SM(pPwrArray[ALL_TARGET_HT40_23], 24) | + POW_SM(pPwrArray[ALL_TARGET_HT40_22], 16) | + POW_SM(pPwrArray[ALL_TARGET_HT20_23], 8) | + POW_SM(pPwrArray[ALL_TARGET_HT20_22], 0) + ); + + /* + * Write the HT40 power per rate set + * correct PAR difference between HT40 and HT20/LEGACY + * 0/8/16 (LSB), 1-3/9-11/17-19, 4, 5 (MSB) + */ + REG_WRITE(ah, 0xa3d8, + POW_SM(pPwrArray[ALL_TARGET_HT40_5], 24) | + POW_SM(pPwrArray[ALL_TARGET_HT40_4], 16) | + POW_SM(pPwrArray[ALL_TARGET_HT40_1_3_9_11_17_19], 8) | + POW_SM(pPwrArray[ALL_TARGET_HT40_0_8_16], 0) + ); + + /* 6 (LSB), 7, 12, 13 (MSB) */ + REG_WRITE(ah, 0xa3dc, + POW_SM(pPwrArray[ALL_TARGET_HT40_13], 24) | + POW_SM(pPwrArray[ALL_TARGET_HT40_12], 16) | + POW_SM(pPwrArray[ALL_TARGET_HT40_7], 8) | + POW_SM(pPwrArray[ALL_TARGET_HT40_6], 0) + ); + + /* 14 (LSB), 15, 20, 21 */ + REG_WRITE(ah, 0xa3ec, + POW_SM(pPwrArray[ALL_TARGET_HT40_21], 24) | + POW_SM(pPwrArray[ALL_TARGET_HT40_20], 16) | + POW_SM(pPwrArray[ALL_TARGET_HT40_15], 8) | + POW_SM(pPwrArray[ALL_TARGET_HT40_14], 0) + ); + + return 0; +#undef POW_SM +} + +static void ar9003_hw_set_target_power_eeprom(struct ath_hw *ah, u16 freq) +{ + u8 targetPowerValT2[ar9300RateSize]; + /* XXX: hard code for now, need to get from eeprom struct */ + u8 ht40PowerIncForPdadc = 0; + bool is2GHz = false; + unsigned int i = 0; + struct ath_common *common = ath9k_hw_common(ah); + + if (freq < 4000) + is2GHz = true; + + targetPowerValT2[ALL_TARGET_LEGACY_6_24] = + ar9003_hw_eeprom_get_tgt_pwr(ah, LEGACY_TARGET_RATE_6_24, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_LEGACY_36] = + ar9003_hw_eeprom_get_tgt_pwr(ah, LEGACY_TARGET_RATE_36, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_LEGACY_48] = + ar9003_hw_eeprom_get_tgt_pwr(ah, LEGACY_TARGET_RATE_48, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_LEGACY_54] = + ar9003_hw_eeprom_get_tgt_pwr(ah, LEGACY_TARGET_RATE_54, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_LEGACY_1L_5L] = + ar9003_hw_eeprom_get_cck_tgt_pwr(ah, LEGACY_TARGET_RATE_1L_5L, + freq); + targetPowerValT2[ALL_TARGET_LEGACY_5S] = + ar9003_hw_eeprom_get_cck_tgt_pwr(ah, LEGACY_TARGET_RATE_5S, freq); + targetPowerValT2[ALL_TARGET_LEGACY_11L] = + ar9003_hw_eeprom_get_cck_tgt_pwr(ah, LEGACY_TARGET_RATE_11L, freq); + targetPowerValT2[ALL_TARGET_LEGACY_11S] = + ar9003_hw_eeprom_get_cck_tgt_pwr(ah, LEGACY_TARGET_RATE_11S, freq); + targetPowerValT2[ALL_TARGET_HT20_0_8_16] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_0_8_16, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_1_3_9_11_17_19] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_1_3_9_11_17_19, + freq, is2GHz); + targetPowerValT2[ALL_TARGET_HT20_4] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_4, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_5] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_5, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_6] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_6, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_7] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_7, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_12] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_12, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_13] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_13, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_14] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_14, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_15] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_15, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_20] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_20, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_21] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_21, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_22] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_22, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT20_23] = + ar9003_hw_eeprom_get_ht20_tgt_pwr(ah, HT_TARGET_RATE_23, freq, + is2GHz); + targetPowerValT2[ALL_TARGET_HT40_0_8_16] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_0_8_16, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_1_3_9_11_17_19] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_1_3_9_11_17_19, + freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_4] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_4, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_5] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_5, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_6] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_6, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_7] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_7, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_12] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_12, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_13] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_13, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_14] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_14, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_15] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_15, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_20] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_20, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_21] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_21, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_22] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_22, freq, + is2GHz) + ht40PowerIncForPdadc; + targetPowerValT2[ALL_TARGET_HT40_23] = + ar9003_hw_eeprom_get_ht40_tgt_pwr(ah, HT_TARGET_RATE_23, freq, + is2GHz) + ht40PowerIncForPdadc; + + while (i < ar9300RateSize) { + ath_print(common, ATH_DBG_EEPROM, + "TPC[%02d] 0x%08x ", i, targetPowerValT2[i]); + i++; + + ath_print(common, ATH_DBG_EEPROM, + "TPC[%02d] 0x%08x ", i, targetPowerValT2[i]); + i++; + + ath_print(common, ATH_DBG_EEPROM, + "TPC[%02d] 0x%08x ", i, targetPowerValT2[i]); + i++; + + ath_print(common, ATH_DBG_EEPROM, + "TPC[%02d] 0x%08x\n", i, targetPowerValT2[i]); + i++; + } + + /* Write target power array to registers */ + ar9003_hw_tx_power_regwrite(ah, targetPowerValT2); +} + +static int ar9003_hw_cal_pier_get(struct ath_hw *ah, + int mode, + int ipier, + int ichain, + int *pfrequency, + int *pcorrection, + int *ptemperature, int *pvoltage) +{ + u8 *pCalPier; + struct ar9300_cal_data_per_freq_op_loop *pCalPierStruct; + int is2GHz; + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + struct ath_common *common = ath9k_hw_common(ah); + + if (ichain >= AR9300_MAX_CHAINS) { + ath_print(common, ATH_DBG_EEPROM, + "Invalid chain index, must be less than %d\n", + AR9300_MAX_CHAINS); + return -1; + } + + if (mode) { /* 5GHz */ + if (ipier >= AR9300_NUM_5G_CAL_PIERS) { + ath_print(common, ATH_DBG_EEPROM, + "Invalid 5GHz cal pier index, must " + "be less than %d\n", + AR9300_NUM_5G_CAL_PIERS); + return -1; + } + pCalPier = &(eep->calFreqPier5G[ipier]); + pCalPierStruct = &(eep->calPierData5G[ichain][ipier]); + is2GHz = 0; + } else { + if (ipier >= AR9300_NUM_2G_CAL_PIERS) { + ath_print(common, ATH_DBG_EEPROM, + "Invalid 2GHz cal pier index, must " + "be less than %d\n", AR9300_NUM_2G_CAL_PIERS); + return -1; + } + + pCalPier = &(eep->calFreqPier2G[ipier]); + pCalPierStruct = &(eep->calPierData2G[ichain][ipier]); + is2GHz = 1; + } + + *pfrequency = FBIN2FREQ(*pCalPier, is2GHz); + *pcorrection = pCalPierStruct->refPower; + *ptemperature = pCalPierStruct->tempMeas; + *pvoltage = pCalPierStruct->voltMeas; + + return 0; +} + +static int ar9003_hw_power_control_override(struct ath_hw *ah, + int frequency, + int *correction, + int *voltage, int *temperature) +{ + int tempSlope = 0; + struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep; + + REG_RMW(ah, AR_PHY_TPC_11_B0, + (correction[0] << AR_PHY_TPC_OLPC_GAIN_DELTA_S), + AR_PHY_TPC_OLPC_GAIN_DELTA); + REG_RMW(ah, AR_PHY_TPC_11_B1, + (correction[1] << AR_PHY_TPC_OLPC_GAIN_DELTA_S), + AR_PHY_TPC_OLPC_GAIN_DELTA); + REG_RMW(ah, AR_PHY_TPC_11_B2, + (correction[2] << AR_PHY_TPC_OLPC_GAIN_DELTA_S), + AR_PHY_TPC_OLPC_GAIN_DELTA); + + /* enable open loop power control on chip */ + REG_RMW(ah, AR_PHY_TPC_6_B0, + (3 << AR_PHY_TPC_6_ERROR_EST_MODE_S), + AR_PHY_TPC_6_ERROR_EST_MODE); + REG_RMW(ah, AR_PHY_TPC_6_B1, + (3 << AR_PHY_TPC_6_ERROR_EST_MODE_S), + AR_PHY_TPC_6_ERROR_EST_MODE); + REG_RMW(ah, AR_PHY_TPC_6_B2, + (3 << AR_PHY_TPC_6_ERROR_EST_MODE_S), + AR_PHY_TPC_6_ERROR_EST_MODE); + + /* + * enable temperature compensation + * Need to use register names + */ + if (frequency < 4000) + tempSlope = eep->modalHeader2G.tempSlope; + else + tempSlope = eep->modalHeader5G.tempSlope; + + REG_RMW_FIELD(ah, AR_PHY_TPC_19, AR_PHY_TPC_19_ALPHA_THERM, tempSlope); + REG_RMW_FIELD(ah, AR_PHY_TPC_18, AR_PHY_TPC_18_THERM_CAL_VALUE, + temperature[0]); + + return 0; +} + +/* Apply the recorded correction values. */ +static int ar9003_hw_calibration_apply(struct ath_hw *ah, int frequency) +{ + int ichain, ipier, npier; + int mode; + int lfrequency[AR9300_MAX_CHAINS], + lcorrection[AR9300_MAX_CHAINS], + ltemperature[AR9300_MAX_CHAINS], lvoltage[AR9300_MAX_CHAINS]; + int hfrequency[AR9300_MAX_CHAINS], + hcorrection[AR9300_MAX_CHAINS], + htemperature[AR9300_MAX_CHAINS], hvoltage[AR9300_MAX_CHAINS]; + int fdiff; + int correction[AR9300_MAX_CHAINS], + voltage[AR9300_MAX_CHAINS], temperature[AR9300_MAX_CHAINS]; + int pfrequency, pcorrection, ptemperature, pvoltage; + struct ath_common *common = ath9k_hw_common(ah); + + mode = (frequency >= 4000); + if (mode) + npier = AR9300_NUM_5G_CAL_PIERS; + else + npier = AR9300_NUM_2G_CAL_PIERS; + + for (ichain = 0; ichain < AR9300_MAX_CHAINS; ichain++) { + lfrequency[ichain] = 0; + hfrequency[ichain] = 100000; + } + /* identify best lower and higher frequency calibration measurement */ + for (ichain = 0; ichain < AR9300_MAX_CHAINS; ichain++) { + for (ipier = 0; ipier < npier; ipier++) { + if (!ar9003_hw_cal_pier_get(ah, mode, ipier, ichain, + &pfrequency, &pcorrection, + &ptemperature, &pvoltage)) { + fdiff = frequency - pfrequency; + + /* + * this measurement is higher than + * our desired frequency + */ + if (fdiff <= 0) { + if (hfrequency[ichain] <= 0 || + hfrequency[ichain] >= 100000 || + fdiff > + (frequency - hfrequency[ichain])) { + /* + * new best higher + * frequency measurement + */ + hfrequency[ichain] = pfrequency; + hcorrection[ichain] = + pcorrection; + htemperature[ichain] = + ptemperature; + hvoltage[ichain] = pvoltage; + } + } + if (fdiff >= 0) { + if (lfrequency[ichain] <= 0 + || fdiff < + (frequency - lfrequency[ichain])) { + /* + * new best lower + * frequency measurement + */ + lfrequency[ichain] = pfrequency; + lcorrection[ichain] = + pcorrection; + ltemperature[ichain] = + ptemperature; + lvoltage[ichain] = pvoltage; + } + } + } + } + } + + /* interpolate */ + for (ichain = 0; ichain < AR9300_MAX_CHAINS; ichain++) { + ath_print(common, ATH_DBG_EEPROM, + "ch=%d f=%d low=%d %d h=%d %d\n", + ichain, frequency, lfrequency[ichain], + lcorrection[ichain], hfrequency[ichain], + hcorrection[ichain]); + /* they're the same, so just pick one */ + if (hfrequency[ichain] == lfrequency[ichain]) { + correction[ichain] = lcorrection[ichain]; + voltage[ichain] = lvoltage[ichain]; + temperature[ichain] = ltemperature[ichain]; + } + /* the low frequency is good */ + else if (frequency - lfrequency[ichain] < 1000) { + /* so is the high frequency, interpolate */ + if (hfrequency[ichain] - frequency < 1000) { + + correction[ichain] = lcorrection[ichain] + + (((frequency - lfrequency[ichain]) * + (hcorrection[ichain] - + lcorrection[ichain])) / + (hfrequency[ichain] - lfrequency[ichain])); + + temperature[ichain] = ltemperature[ichain] + + (((frequency - lfrequency[ichain]) * + (htemperature[ichain] - + ltemperature[ichain])) / + (hfrequency[ichain] - lfrequency[ichain])); + + voltage[ichain] = + lvoltage[ichain] + + (((frequency - + lfrequency[ichain]) * (hvoltage[ichain] - + lvoltage[ichain])) + / (hfrequency[ichain] - + lfrequency[ichain])); + } + /* only low is good, use it */ + else { + correction[ichain] = lcorrection[ichain]; + temperature[ichain] = ltemperature[ichain]; + voltage[ichain] = lvoltage[ichain]; + } + } + /* only high is good, use it */ + else if (hfrequency[ichain] - frequency < 1000) { + correction[ichain] = hcorrection[ichain]; + temperature[ichain] = htemperature[ichain]; + voltage[ichain] = hvoltage[ichain]; + } else { /* nothing is good, presume 0???? */ + correction[ichain] = 0; + temperature[ichain] = 0; + voltage[ichain] = 0; + } + } + + ar9003_hw_power_control_override(ah, frequency, correction, voltage, + temperature); + + ath_print(common, ATH_DBG_EEPROM, + "for frequency=%d, calibration correction = %d %d %d\n", + frequency, correction[0], correction[1], correction[2]); + + return 0; +} + +static void ath9k_hw_ar9300_set_txpower(struct ath_hw *ah, + struct ath9k_channel *chan, u16 cfgCtl, + u8 twiceAntennaReduction, + u8 twiceMaxRegulatoryPower, + u8 powerLimit) +{ + ar9003_hw_set_target_power_eeprom(ah, chan->channel); + ar9003_hw_calibration_apply(ah, chan->channel); +} + +static u16 ath9k_hw_ar9300_get_spur_channel(struct ath_hw *ah, + u16 i, bool is2GHz) +{ + return AR_NO_SPUR; +} + +const struct eeprom_ops eep_ar9300_ops = { + .check_eeprom = ath9k_hw_ar9300_check_eeprom, + .get_eeprom = ath9k_hw_ar9300_get_eeprom, + .fill_eeprom = ath9k_hw_ar9300_fill_eeprom, + .get_eeprom_ver = ath9k_hw_ar9300_get_eeprom_ver, + .get_eeprom_rev = ath9k_hw_ar9300_get_eeprom_rev, + .get_num_ant_config = ath9k_hw_ar9300_get_num_ant_config, + .get_eeprom_antenna_cfg = ath9k_hw_ar9300_get_eeprom_antenna_cfg, + .set_board_values = ath9k_hw_ar9300_set_board_values, + .set_addac = ath9k_hw_ar9300_set_addac, + .set_txpower = ath9k_hw_ar9300_set_txpower, + .get_spur_channel = ath9k_hw_ar9300_get_spur_channel +}; diff --git a/drivers/net/wireless/ath/ath9k/ar9003_eeprom.h b/drivers/net/wireless/ath/ath9k/ar9003_eeprom.h new file mode 100644 index 00000000000..3ca520c4b6a --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9003_eeprom.h @@ -0,0 +1,319 @@ +#ifndef AR9003_EEPROM_H +#define AR9003_EEPROM_H + +#include + +#define AR9300_EEP_VER 0xD000 +#define AR9300_EEP_VER_MINOR_MASK 0xFFF +#define AR9300_EEP_MINOR_VER_1 0x1 +#define AR9300_EEP_MINOR_VER AR9300_EEP_MINOR_VER_1 + +/* 16-bit offset location start of calibration struct */ +#define AR9300_EEP_START_LOC 256 +#define AR9300_NUM_5G_CAL_PIERS 8 +#define AR9300_NUM_2G_CAL_PIERS 3 +#define AR9300_NUM_5G_20_TARGET_POWERS 8 +#define AR9300_NUM_5G_40_TARGET_POWERS 8 +#define AR9300_NUM_2G_CCK_TARGET_POWERS 2 +#define AR9300_NUM_2G_20_TARGET_POWERS 3 +#define AR9300_NUM_2G_40_TARGET_POWERS 3 +/* #define AR9300_NUM_CTLS 21 */ +#define AR9300_NUM_CTLS_5G 9 +#define AR9300_NUM_CTLS_2G 12 +#define AR9300_CTL_MODE_M 0xF +#define AR9300_NUM_BAND_EDGES_5G 8 +#define AR9300_NUM_BAND_EDGES_2G 4 +#define AR9300_NUM_PD_GAINS 4 +#define AR9300_PD_GAINS_IN_MASK 4 +#define AR9300_PD_GAIN_ICEPTS 5 +#define AR9300_EEPROM_MODAL_SPURS 5 +#define AR9300_MAX_RATE_POWER 63 +#define AR9300_NUM_PDADC_VALUES 128 +#define AR9300_NUM_RATES 16 +#define AR9300_BCHAN_UNUSED 0xFF +#define AR9300_MAX_PWR_RANGE_IN_HALF_DB 64 +#define AR9300_OPFLAGS_11A 0x01 +#define AR9300_OPFLAGS_11G 0x02 +#define AR9300_OPFLAGS_5G_HT40 0x04 +#define AR9300_OPFLAGS_2G_HT40 0x08 +#define AR9300_OPFLAGS_5G_HT20 0x10 +#define AR9300_OPFLAGS_2G_HT20 0x20 +#define AR9300_EEPMISC_BIG_ENDIAN 0x01 +#define AR9300_EEPMISC_WOW 0x02 +#define AR9300_CUSTOMER_DATA_SIZE 20 + +#define FREQ2FBIN(x, y) ((y) ? ((x) - 2300) : (((x) - 4800) / 5)) +#define FBIN2FREQ(x, y) ((y) ? (2300 + x) : (4800 + 5 * x)) +#define AR9300_MAX_CHAINS 3 +#define AR9300_ANT_16S 25 +#define AR9300_FUTURE_MODAL_SZ 6 + +#define AR9300_NUM_ANT_CHAIN_FIELDS 7 +#define AR9300_NUM_ANT_COMMON_FIELDS 4 +#define AR9300_SIZE_ANT_CHAIN_FIELD 3 +#define AR9300_SIZE_ANT_COMMON_FIELD 4 +#define AR9300_ANT_CHAIN_MASK 0x7 +#define AR9300_ANT_COMMON_MASK 0xf +#define AR9300_CHAIN_0_IDX 0 +#define AR9300_CHAIN_1_IDX 1 +#define AR9300_CHAIN_2_IDX 2 + +#define AR928X_NUM_ANT_CHAIN_FIELDS 6 +#define AR928X_SIZE_ANT_CHAIN_FIELD 2 +#define AR928X_ANT_CHAIN_MASK 0x3 + +/* Delta from which to start power to pdadc table */ +/* This offset is used in both open loop and closed loop power control + * schemes. In open loop power control, it is not really needed, but for + * the "sake of consistency" it was kept. For certain AP designs, this + * value is overwritten by the value in the flag "pwrTableOffset" just + * before writing the pdadc vs pwr into the chip registers. + */ +#define AR9300_PWR_TABLE_OFFSET 0 + +/* enable flags for voltage and temp compensation */ +#define ENABLE_TEMP_COMPENSATION 0x01 +#define ENABLE_VOLT_COMPENSATION 0x02 +/* byte addressable */ +#define AR9300_EEPROM_SIZE (16*1024) +#define FIXED_CCA_THRESHOLD 15 + +#define AR9300_BASE_ADDR 0x3ff + +enum targetPowerHTRates { + HT_TARGET_RATE_0_8_16, + HT_TARGET_RATE_1_3_9_11_17_19, + HT_TARGET_RATE_4, + HT_TARGET_RATE_5, + HT_TARGET_RATE_6, + HT_TARGET_RATE_7, + HT_TARGET_RATE_12, + HT_TARGET_RATE_13, + HT_TARGET_RATE_14, + HT_TARGET_RATE_15, + HT_TARGET_RATE_20, + HT_TARGET_RATE_21, + HT_TARGET_RATE_22, + HT_TARGET_RATE_23 +}; + +enum targetPowerLegacyRates { + LEGACY_TARGET_RATE_6_24, + LEGACY_TARGET_RATE_36, + LEGACY_TARGET_RATE_48, + LEGACY_TARGET_RATE_54 +}; + +enum targetPowerCckRates { + LEGACY_TARGET_RATE_1L_5L, + LEGACY_TARGET_RATE_5S, + LEGACY_TARGET_RATE_11L, + LEGACY_TARGET_RATE_11S +}; + +enum ar9300_Rates { + ALL_TARGET_LEGACY_6_24, + ALL_TARGET_LEGACY_36, + ALL_TARGET_LEGACY_48, + ALL_TARGET_LEGACY_54, + ALL_TARGET_LEGACY_1L_5L, + ALL_TARGET_LEGACY_5S, + ALL_TARGET_LEGACY_11L, + ALL_TARGET_LEGACY_11S, + ALL_TARGET_HT20_0_8_16, + ALL_TARGET_HT20_1_3_9_11_17_19, + ALL_TARGET_HT20_4, + ALL_TARGET_HT20_5, + ALL_TARGET_HT20_6, + ALL_TARGET_HT20_7, + ALL_TARGET_HT20_12, + ALL_TARGET_HT20_13, + ALL_TARGET_HT20_14, + ALL_TARGET_HT20_15, + ALL_TARGET_HT20_20, + ALL_TARGET_HT20_21, + ALL_TARGET_HT20_22, + ALL_TARGET_HT20_23, + ALL_TARGET_HT40_0_8_16, + ALL_TARGET_HT40_1_3_9_11_17_19, + ALL_TARGET_HT40_4, + ALL_TARGET_HT40_5, + ALL_TARGET_HT40_6, + ALL_TARGET_HT40_7, + ALL_TARGET_HT40_12, + ALL_TARGET_HT40_13, + ALL_TARGET_HT40_14, + ALL_TARGET_HT40_15, + ALL_TARGET_HT40_20, + ALL_TARGET_HT40_21, + ALL_TARGET_HT40_22, + ALL_TARGET_HT40_23, + ar9300RateSize, +}; + + +struct eepFlags { + u8 opFlags; + u8 eepMisc; +} __packed; + +enum CompressAlgorithm { + _CompressNone = 0, + _CompressLzma, + _CompressPairs, + _CompressBlock, + _Compress4, + _Compress5, + _Compress6, + _Compress7, +}; + +struct ar9300_base_eep_hdr { + u16 regDmn[2]; + /* 4 bits tx and 4 bits rx */ + u8 txrxMask; + struct eepFlags opCapFlags; + u8 rfSilent; + u8 blueToothOptions; + u8 deviceCap; + /* takes lower byte in eeprom location */ + u8 deviceType; + /* offset in dB to be added to beginning + * of pdadc table in calibration + */ + int8_t pwrTableOffset; + u8 params_for_tuning_caps[2]; + /* + * bit0 - enable tx temp comp + * bit1 - enable tx volt comp + * bit2 - enable fastClock - default to 1 + * bit3 - enable doubling - default to 1 + * bit4 - enable internal regulator - default to 1 + */ + u8 featureEnable; + /* misc flags: bit0 - turn down drivestrength */ + u8 miscConfiguration; + u8 eepromWriteEnableGpio; + u8 wlanDisableGpio; + u8 wlanLedGpio; + u8 rxBandSelectGpio; + u8 txrxgain; + /* SW controlled internal regulator fields */ + u32 swreg; +} __packed; + +struct ar9300_modal_eep_header { + /* 4 idle, t1, t2, b (4 bits per setting) */ + u32 antCtrlCommon; + /* 4 ra1l1, ra2l1, ra1l2, ra2l2, ra12 */ + u32 antCtrlCommon2; + /* 6 idle, t, r, rx1, rx12, b (2 bits each) */ + u16 antCtrlChain[AR9300_MAX_CHAINS]; + /* 3 xatten1_db for AR9280 (0xa20c/b20c 5:0) */ + u8 xatten1DB[AR9300_MAX_CHAINS]; + /* 3 xatten1_margin for merlin (0xa20c/b20c 16:12 */ + u8 xatten1Margin[AR9300_MAX_CHAINS]; + int8_t tempSlope; + int8_t voltSlope; + /* spur channels in usual fbin coding format */ + u8 spurChans[AR9300_EEPROM_MODAL_SPURS]; + /* 3 Check if the register is per chain */ + int8_t noiseFloorThreshCh[AR9300_MAX_CHAINS]; + u8 ob[AR9300_MAX_CHAINS]; + u8 db_stage2[AR9300_MAX_CHAINS]; + u8 db_stage3[AR9300_MAX_CHAINS]; + u8 db_stage4[AR9300_MAX_CHAINS]; + u8 xpaBiasLvl; + u8 txFrameToDataStart; + u8 txFrameToPaOn; + u8 txClip; + int8_t antennaGain; + u8 switchSettling; + int8_t adcDesiredSize; + u8 txEndToXpaOff; + u8 txEndToRxOn; + u8 txFrameToXpaOn; + u8 thresh62; + u8 futureModal[32]; +} __packed; + +struct ar9300_cal_data_per_freq_op_loop { + int8_t refPower; + /* pdadc voltage at power measurement */ + u8 voltMeas; + /* pcdac used for power measurement */ + u8 tempMeas; + /* range is -60 to -127 create a mapping equation 1db resolution */ + int8_t rxNoisefloorCal; + /*range is same as noisefloor */ + int8_t rxNoisefloorPower; + /* temp measured when noisefloor cal was performed */ + u8 rxTempMeas; +} __packed; + +struct cal_tgt_pow_legacy { + u8 tPow2x[4]; +} __packed; + +struct cal_tgt_pow_ht { + u8 tPow2x[14]; +} __packed; + +struct cal_ctl_edge_pwr { + u8 tPower:6, + flag:2; +} __packed; + +struct cal_ctl_data_2g { + struct cal_ctl_edge_pwr ctlEdges[AR9300_NUM_BAND_EDGES_5G]; +} __packed; + +struct cal_ctl_data_5g { + struct cal_ctl_edge_pwr ctlEdges[AR9300_NUM_BAND_EDGES_5G]; +} __packed; + +struct ar9300_eeprom { + u8 eepromVersion; + u8 templateVersion; + u8 macAddr[6]; + u8 custData[AR9300_CUSTOMER_DATA_SIZE]; + + struct ar9300_base_eep_hdr baseEepHeader; + + struct ar9300_modal_eep_header modalHeader2G; + u8 calFreqPier2G[AR9300_NUM_2G_CAL_PIERS]; + struct ar9300_cal_data_per_freq_op_loop + calPierData2G[AR9300_MAX_CHAINS][AR9300_NUM_2G_CAL_PIERS]; + u8 calTarget_freqbin_Cck[AR9300_NUM_2G_CCK_TARGET_POWERS]; + u8 calTarget_freqbin_2G[AR9300_NUM_2G_20_TARGET_POWERS]; + u8 calTarget_freqbin_2GHT20[AR9300_NUM_2G_20_TARGET_POWERS]; + u8 calTarget_freqbin_2GHT40[AR9300_NUM_2G_40_TARGET_POWERS]; + struct cal_tgt_pow_legacy + calTargetPowerCck[AR9300_NUM_2G_CCK_TARGET_POWERS]; + struct cal_tgt_pow_legacy + calTargetPower2G[AR9300_NUM_2G_20_TARGET_POWERS]; + struct cal_tgt_pow_ht + calTargetPower2GHT20[AR9300_NUM_2G_20_TARGET_POWERS]; + struct cal_tgt_pow_ht + calTargetPower2GHT40[AR9300_NUM_2G_40_TARGET_POWERS]; + u8 ctlIndex_2G[AR9300_NUM_CTLS_2G]; + u8 ctl_freqbin_2G[AR9300_NUM_CTLS_2G][AR9300_NUM_BAND_EDGES_2G]; + struct cal_ctl_data_2g ctlPowerData_2G[AR9300_NUM_CTLS_2G]; + struct ar9300_modal_eep_header modalHeader5G; + u8 calFreqPier5G[AR9300_NUM_5G_CAL_PIERS]; + struct ar9300_cal_data_per_freq_op_loop + calPierData5G[AR9300_MAX_CHAINS][AR9300_NUM_5G_CAL_PIERS]; + u8 calTarget_freqbin_5G[AR9300_NUM_5G_20_TARGET_POWERS]; + u8 calTarget_freqbin_5GHT20[AR9300_NUM_5G_20_TARGET_POWERS]; + u8 calTarget_freqbin_5GHT40[AR9300_NUM_5G_40_TARGET_POWERS]; + struct cal_tgt_pow_legacy + calTargetPower5G[AR9300_NUM_5G_20_TARGET_POWERS]; + struct cal_tgt_pow_ht + calTargetPower5GHT20[AR9300_NUM_5G_20_TARGET_POWERS]; + struct cal_tgt_pow_ht + calTargetPower5GHT40[AR9300_NUM_5G_40_TARGET_POWERS]; + u8 ctlIndex_5G[AR9300_NUM_CTLS_5G]; + u8 ctl_freqbin_5G[AR9300_NUM_CTLS_5G][AR9300_NUM_BAND_EDGES_5G]; + struct cal_ctl_data_5g ctlPowerData_5G[AR9300_NUM_CTLS_5G]; +} __packed; +#endif diff --git a/drivers/net/wireless/ath/ath9k/eeprom.c b/drivers/net/wireless/ath/ath9k/eeprom.c index aec6ebbb658..bd9dff3293d 100644 --- a/drivers/net/wireless/ath/ath9k/eeprom.c +++ b/drivers/net/wireless/ath/ath9k/eeprom.c @@ -256,7 +256,9 @@ int ath9k_hw_eeprom_init(struct ath_hw *ah) { int status; - if (AR_SREV_9287(ah)) { + if (AR_SREV_9300_20_OR_LATER(ah)) + ah->eep_ops = &eep_ar9300_ops; + else if (AR_SREV_9287(ah)) { ah->eep_ops = &eep_ar9287_ops; } else if (AR_SREV_9285(ah) || AR_SREV_9271(ah)) { ah->eep_ops = &eep_4k_ops; diff --git a/drivers/net/wireless/ath/ath9k/eeprom.h b/drivers/net/wireless/ath/ath9k/eeprom.h index 289084c7152..fb9c8c92eab 100644 --- a/drivers/net/wireless/ath/ath9k/eeprom.h +++ b/drivers/net/wireless/ath/ath9k/eeprom.h @@ -19,6 +19,7 @@ #include "../ath.h" #include +#include "ar9003_eeprom.h" #define AH_USE_EEPROM 0x1 @@ -249,16 +250,20 @@ enum eeprom_param { EEP_MINOR_REV, EEP_TX_MASK, EEP_RX_MASK, + EEP_FSTCLK_5G, EEP_RXGAIN_TYPE, - EEP_TXGAIN_TYPE, EEP_OL_PWRCTRL, + EEP_TXGAIN_TYPE, EEP_RC_CHAIN_MASK, EEP_DAC_HPWR_5G, EEP_FRAC_N_5G, EEP_DEV_TYPE, EEP_TEMPSENSE_SLOPE, EEP_TEMPSENSE_SLOPE_PAL_ON, - EEP_PWR_TABLE_OFFSET + EEP_PWR_TABLE_OFFSET, + EEP_DRIVE_STRENGTH, + EEP_INTERNAL_REGULATOR, + EEP_SWREG }; enum ar5416_rates { @@ -707,5 +712,7 @@ int ath9k_hw_eeprom_init(struct ath_hw *ah); extern const struct eeprom_ops eep_def_ops; extern const struct eeprom_ops eep_4k_ops; extern const struct eeprom_ops eep_ar9287_ops; +extern const struct eeprom_ops eep_ar9287_ops; +extern const struct eeprom_ops eep_ar9300_ops; #endif /* EEPROM_H */ diff --git a/drivers/net/wireless/ath/ath9k/hw.h b/drivers/net/wireless/ath/ath9k/hw.h index cb0421a910d..d1b9940b2ae 100644 --- a/drivers/net/wireless/ath/ath9k/hw.h +++ b/drivers/net/wireless/ath/ath9k/hw.h @@ -568,6 +568,7 @@ struct ath_hw { struct ar5416_eeprom_def def; struct ar5416_eeprom_4k map4k; struct ar9287_eeprom map9287; + struct ar9300_eeprom ar9300_eep; } eeprom; const struct eeprom_ops *eep_ops; diff --git a/drivers/net/wireless/ath/ath9k/reg.h b/drivers/net/wireless/ath/ath9k/reg.h index aacc29a5ad7..12de95ea763 100644 --- a/drivers/net/wireless/ath/ath9k/reg.h +++ b/drivers/net/wireless/ath/ath9k/reg.h @@ -1070,6 +1070,16 @@ enum { #define AR_RTC_RC_COLD_RESET 0x00000004 #define AR_RTC_RC_WARM_RESET 0x00000008 +/* Crystal Control */ +#define AR_RTC_XTAL_CONTROL 0x7004 + +/* Reg Control 0 */ +#define AR_RTC_REG_CONTROL0 0x7008 + +/* Reg Control 1 */ +#define AR_RTC_REG_CONTROL1 0x700c +#define AR_RTC_REG_CONTROL1_SWREG_PROGRAM 0x00000001 + #define AR_RTC_PLL_CONTROL \ ((AR_SREV_9100(ah)) ? (AR_RTC_BASE + 0x0014) : 0x7014) @@ -1100,6 +1110,7 @@ enum { #define AR_RTC_SLEEP_CLK \ ((AR_SREV_9100(ah)) ? (AR_RTC_BASE + 0x0048) : 0x7048) #define AR_RTC_FORCE_DERIVED_CLK 0x2 +#define AR_RTC_FORCE_SWREG_PRD 0x00000004 #define AR_RTC_FORCE_WAKE \ ((AR_SREV_9100(ah)) ? (AR_RTC_BASE + 0x004c) : 0x704c) -- cgit v1.2.3-70-g09d2 From b622a720b45def8dce816244a83b82992da4fe20 Mon Sep 17 00:00:00 2001 From: "Luis R. Rodriguez" Date: Thu, 15 Apr 2010 17:39:28 -0400 Subject: ath9k_hw: move AR9002 mac ops to its own file Signed-off-by: Luis R. Rodriguez Signed-off-by: Felix Fietkau Signed-off-by: John W. Linville --- drivers/net/wireless/ath/ath9k/Makefile | 1 + drivers/net/wireless/ath/ath9k/ar9002_mac.c | 480 ++++++++++++++++++++++++++++ drivers/net/wireless/ath/ath9k/ar9003_hw.c | 1 + drivers/net/wireless/ath/ath9k/ar9003_mac.c | 1 + drivers/net/wireless/ath/ath9k/hw.c | 1 + drivers/net/wireless/ath/ath9k/hw.h | 1 - drivers/net/wireless/ath/ath9k/mac.c | 461 -------------------------- drivers/net/wireless/ath/ath9k/mac.h | 2 - drivers/net/wireless/ath/ath9k/recv.c | 1 + drivers/net/wireless/ath/ath9k/xmit.c | 1 + 10 files changed, 486 insertions(+), 464 deletions(-) create mode 100644 drivers/net/wireless/ath/ath9k/ar9002_mac.c (limited to 'drivers/net/wireless/ath/ath9k/Makefile') diff --git a/drivers/net/wireless/ath/ath9k/Makefile b/drivers/net/wireless/ath/ath9k/Makefile index b0702fc8465..dd112be218a 100644 --- a/drivers/net/wireless/ath/ath9k/Makefile +++ b/drivers/net/wireless/ath/ath9k/Makefile @@ -30,6 +30,7 @@ ath9k_hw-y:= \ ani.o \ btcoex.o \ mac.o \ + ar9002_mac.o \ ar9003_mac.o \ ar9003_eeprom.o diff --git a/drivers/net/wireless/ath/ath9k/ar9002_mac.c b/drivers/net/wireless/ath/ath9k/ar9002_mac.c new file mode 100644 index 00000000000..2be20d2070c --- /dev/null +++ b/drivers/net/wireless/ath/ath9k/ar9002_mac.c @@ -0,0 +1,480 @@ +/* + * Copyright (c) 2008-2009 Atheros Communications Inc. + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include "hw.h" + +#define AR_BufLen 0x00000fff + +static void ar9002_hw_rx_enable(struct ath_hw *ah) +{ + REG_WRITE(ah, AR_CR, AR_CR_RXE); +} + +static void ar9002_hw_set_desc_link(void *ds, u32 ds_link) +{ + ((struct ath_desc*) ds)->ds_link = ds_link; +} + +static void ar9002_hw_get_desc_link(void *ds, u32 **ds_link) +{ + *ds_link = &((struct ath_desc *)ds)->ds_link; +} + +static bool ar9002_hw_get_isr(struct ath_hw *ah, enum ath9k_int *masked) +{ + u32 isr = 0; + u32 mask2 = 0; + struct ath9k_hw_capabilities *pCap = &ah->caps; + u32 sync_cause = 0; + bool fatal_int = false; + struct ath_common *common = ath9k_hw_common(ah); + + if (!AR_SREV_9100(ah)) { + if (REG_READ(ah, AR_INTR_ASYNC_CAUSE) & AR_INTR_MAC_IRQ) { + if ((REG_READ(ah, AR_RTC_STATUS) & AR_RTC_STATUS_M) + == AR_RTC_STATUS_ON) { + isr = REG_READ(ah, AR_ISR); + } + } + + sync_cause = REG_READ(ah, AR_INTR_SYNC_CAUSE) & + AR_INTR_SYNC_DEFAULT; + + *masked = 0; + + if (!isr && !sync_cause) + return false; + } else { + *masked = 0; + isr = REG_READ(ah, AR_ISR); + } + + if (isr) { + if (isr & AR_ISR_BCNMISC) { + u32 isr2; + isr2 = REG_READ(ah, AR_ISR_S2); + if (isr2 & AR_ISR_S2_TIM) + mask2 |= ATH9K_INT_TIM; + if (isr2 & AR_ISR_S2_DTIM) + mask2 |= ATH9K_INT_DTIM; + if (isr2 & AR_ISR_S2_DTIMSYNC) + mask2 |= ATH9K_INT_DTIMSYNC; + if (isr2 & (AR_ISR_S2_CABEND)) + mask2 |= ATH9K_INT_CABEND; + if (isr2 & AR_ISR_S2_GTT) + mask2 |= ATH9K_INT_GTT; + if (isr2 & AR_ISR_S2_CST) + mask2 |= ATH9K_INT_CST; + if (isr2 & AR_ISR_S2_TSFOOR) + mask2 |= ATH9K_INT_TSFOOR; + } + + isr = REG_READ(ah, AR_ISR_RAC); + if (isr == 0xffffffff) { + *masked = 0; + return false; + } + + *masked = isr & ATH9K_INT_COMMON; + + if (ah->config.rx_intr_mitigation) { + if (isr & (AR_ISR_RXMINTR | AR_ISR_RXINTM)) + *masked |= ATH9K_INT_RX; + } + + if (isr & (AR_ISR_RXOK | AR_ISR_RXERR)) + *masked |= ATH9K_INT_RX; + if (isr & + (AR_ISR_TXOK | AR_ISR_TXDESC | AR_ISR_TXERR | + AR_ISR_TXEOL)) { + u32 s0_s, s1_s; + + *masked |= ATH9K_INT_TX; + + s0_s = REG_READ(ah, AR_ISR_S0_S); + ah->intr_txqs |= MS(s0_s, AR_ISR_S0_QCU_TXOK); + ah->intr_txqs |= MS(s0_s, AR_ISR_S0_QCU_TXDESC); + + s1_s = REG_READ(ah, AR_ISR_S1_S); + ah->intr_txqs |= MS(s1_s, AR_ISR_S1_QCU_TXERR); + ah->intr_txqs |= MS(s1_s, AR_ISR_S1_QCU_TXEOL); + } + + if (isr & AR_ISR_RXORN) { + ath_print(common, ATH_DBG_INTERRUPT, + "receive FIFO overrun interrupt\n"); + } + + if (!AR_SREV_9100(ah)) { + if (!(pCap->hw_caps & ATH9K_HW_CAP_AUTOSLEEP)) { + u32 isr5 = REG_READ(ah, AR_ISR_S5_S); + if (isr5 & AR_ISR_S5_TIM_TIMER) + *masked |= ATH9K_INT_TIM_TIMER; + } + } + + *masked |= mask2; + } + + if (AR_SREV_9100(ah)) + return true; + + if (isr & AR_ISR_GENTMR) { + u32 s5_s; + + s5_s = REG_READ(ah, AR_ISR_S5_S); + if (isr & AR_ISR_GENTMR) { + ah->intr_gen_timer_trigger = + MS(s5_s, AR_ISR_S5_GENTIMER_TRIG); + + ah->intr_gen_timer_thresh = + MS(s5_s, AR_ISR_S5_GENTIMER_THRESH); + + if (ah->intr_gen_timer_trigger) + *masked |= ATH9K_INT_GENTIMER; + + } + } + + if (sync_cause) { + fatal_int = + (sync_cause & + (AR_INTR_SYNC_HOST1_FATAL | AR_INTR_SYNC_HOST1_PERR)) + ? true : false; + + if (fatal_int) { + if (sync_cause & AR_INTR_SYNC_HOST1_FATAL) { + ath_print(common, ATH_DBG_ANY, + "received PCI FATAL interrupt\n"); + } + if (sync_cause & AR_INTR_SYNC_HOST1_PERR) { + ath_print(common, ATH_DBG_ANY, + "received PCI PERR interrupt\n"); + } + *masked |= ATH9K_INT_FATAL; + } + if (sync_cause & AR_INTR_SYNC_RADM_CPL_TIMEOUT) { + ath_print(common, ATH_DBG_INTERRUPT, + "AR_INTR_SYNC_RADM_CPL_TIMEOUT\n"); + REG_WRITE(ah, AR_RC, AR_RC_HOSTIF); + REG_WRITE(ah, AR_RC, 0); + *masked |= ATH9K_INT_FATAL; + } + if (sync_cause & AR_INTR_SYNC_LOCAL_TIMEOUT) { + ath_print(common, ATH_DBG_INTERRUPT, + "AR_INTR_SYNC_LOCAL_TIMEOUT\n"); + } + + REG_WRITE(ah, AR_INTR_SYNC_CAUSE_CLR, sync_cause); + (void) REG_READ(ah, AR_INTR_SYNC_CAUSE_CLR); + } + + return true; +} + +static void ar9002_hw_fill_txdesc(struct ath_hw *ah, void *ds, u32 seglen, + bool is_firstseg, bool is_lastseg, + const void *ds0, dma_addr_t buf_addr, + unsigned int qcu) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + + ads->ds_data = buf_addr; + + if (is_firstseg) { + ads->ds_ctl1 |= seglen | (is_lastseg ? 0 : AR_TxMore); + } else if (is_lastseg) { + ads->ds_ctl0 = 0; + ads->ds_ctl1 = seglen; + ads->ds_ctl2 = AR5416DESC_CONST(ds0)->ds_ctl2; + ads->ds_ctl3 = AR5416DESC_CONST(ds0)->ds_ctl3; + } else { + ads->ds_ctl0 = 0; + ads->ds_ctl1 = seglen | AR_TxMore; + ads->ds_ctl2 = 0; + ads->ds_ctl3 = 0; + } + ads->ds_txstatus0 = ads->ds_txstatus1 = 0; + ads->ds_txstatus2 = ads->ds_txstatus3 = 0; + ads->ds_txstatus4 = ads->ds_txstatus5 = 0; + ads->ds_txstatus6 = ads->ds_txstatus7 = 0; + ads->ds_txstatus8 = ads->ds_txstatus9 = 0; +} + +static int ar9002_hw_proc_txdesc(struct ath_hw *ah, void *ds, + struct ath_tx_status *ts) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + + if ((ads->ds_txstatus9 & AR_TxDone) == 0) + return -EINPROGRESS; + + ts->ts_seqnum = MS(ads->ds_txstatus9, AR_SeqNum); + ts->ts_tstamp = ads->AR_SendTimestamp; + ts->ts_status = 0; + ts->ts_flags = 0; + + if (ads->ds_txstatus1 & AR_FrmXmitOK) + ts->ts_status |= ATH9K_TX_ACKED; + if (ads->ds_txstatus1 & AR_ExcessiveRetries) + ts->ts_status |= ATH9K_TXERR_XRETRY; + if (ads->ds_txstatus1 & AR_Filtered) + ts->ts_status |= ATH9K_TXERR_FILT; + if (ads->ds_txstatus1 & AR_FIFOUnderrun) { + ts->ts_status |= ATH9K_TXERR_FIFO; + ath9k_hw_updatetxtriglevel(ah, true); + } + if (ads->ds_txstatus9 & AR_TxOpExceeded) + ts->ts_status |= ATH9K_TXERR_XTXOP; + if (ads->ds_txstatus1 & AR_TxTimerExpired) + ts->ts_status |= ATH9K_TXERR_TIMER_EXPIRED; + + if (ads->ds_txstatus1 & AR_DescCfgErr) + ts->ts_flags |= ATH9K_TX_DESC_CFG_ERR; + if (ads->ds_txstatus1 & AR_TxDataUnderrun) { + ts->ts_flags |= ATH9K_TX_DATA_UNDERRUN; + ath9k_hw_updatetxtriglevel(ah, true); + } + if (ads->ds_txstatus1 & AR_TxDelimUnderrun) { + ts->ts_flags |= ATH9K_TX_DELIM_UNDERRUN; + ath9k_hw_updatetxtriglevel(ah, true); + } + if (ads->ds_txstatus0 & AR_TxBaStatus) { + ts->ts_flags |= ATH9K_TX_BA; + ts->ba_low = ads->AR_BaBitmapLow; + ts->ba_high = ads->AR_BaBitmapHigh; + } + + ts->ts_rateindex = MS(ads->ds_txstatus9, AR_FinalTxIdx); + switch (ts->ts_rateindex) { + case 0: + ts->ts_ratecode = MS(ads->ds_ctl3, AR_XmitRate0); + break; + case 1: + ts->ts_ratecode = MS(ads->ds_ctl3, AR_XmitRate1); + break; + case 2: + ts->ts_ratecode = MS(ads->ds_ctl3, AR_XmitRate2); + break; + case 3: + ts->ts_ratecode = MS(ads->ds_ctl3, AR_XmitRate3); + break; + } + + ts->ts_rssi = MS(ads->ds_txstatus5, AR_TxRSSICombined); + ts->ts_rssi_ctl0 = MS(ads->ds_txstatus0, AR_TxRSSIAnt00); + ts->ts_rssi_ctl1 = MS(ads->ds_txstatus0, AR_TxRSSIAnt01); + ts->ts_rssi_ctl2 = MS(ads->ds_txstatus0, AR_TxRSSIAnt02); + ts->ts_rssi_ext0 = MS(ads->ds_txstatus5, AR_TxRSSIAnt10); + ts->ts_rssi_ext1 = MS(ads->ds_txstatus5, AR_TxRSSIAnt11); + ts->ts_rssi_ext2 = MS(ads->ds_txstatus5, AR_TxRSSIAnt12); + ts->evm0 = ads->AR_TxEVM0; + ts->evm1 = ads->AR_TxEVM1; + ts->evm2 = ads->AR_TxEVM2; + ts->ts_shortretry = MS(ads->ds_txstatus1, AR_RTSFailCnt); + ts->ts_longretry = MS(ads->ds_txstatus1, AR_DataFailCnt); + ts->ts_virtcol = MS(ads->ds_txstatus1, AR_VirtRetryCnt); + ts->ts_antenna = 0; + + return 0; +} + +static void ar9002_hw_set11n_txdesc(struct ath_hw *ah, void *ds, + u32 pktLen, enum ath9k_pkt_type type, + u32 txPower, u32 keyIx, + enum ath9k_key_type keyType, u32 flags) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + + txPower += ah->txpower_indexoffset; + if (txPower > 63) + txPower = 63; + + ads->ds_ctl0 = (pktLen & AR_FrameLen) + | (flags & ATH9K_TXDESC_VMF ? AR_VirtMoreFrag : 0) + | SM(txPower, AR_XmitPower) + | (flags & ATH9K_TXDESC_VEOL ? AR_VEOL : 0) + | (flags & ATH9K_TXDESC_CLRDMASK ? AR_ClrDestMask : 0) + | (flags & ATH9K_TXDESC_INTREQ ? AR_TxIntrReq : 0) + | (keyIx != ATH9K_TXKEYIX_INVALID ? AR_DestIdxValid : 0); + + ads->ds_ctl1 = + (keyIx != ATH9K_TXKEYIX_INVALID ? SM(keyIx, AR_DestIdx) : 0) + | SM(type, AR_FrameType) + | (flags & ATH9K_TXDESC_NOACK ? AR_NoAck : 0) + | (flags & ATH9K_TXDESC_EXT_ONLY ? AR_ExtOnly : 0) + | (flags & ATH9K_TXDESC_EXT_AND_CTL ? AR_ExtAndCtl : 0); + + ads->ds_ctl6 = SM(keyType, AR_EncrType); + + if (AR_SREV_9285(ah) || AR_SREV_9271(ah)) { + ads->ds_ctl8 = 0; + ads->ds_ctl9 = 0; + ads->ds_ctl10 = 0; + ads->ds_ctl11 = 0; + } +} + +static void ar9002_hw_set11n_ratescenario(struct ath_hw *ah, void *ds, + void *lastds, + u32 durUpdateEn, u32 rtsctsRate, + u32 rtsctsDuration, + struct ath9k_11n_rate_series series[], + u32 nseries, u32 flags) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + struct ar5416_desc *last_ads = AR5416DESC(lastds); + u32 ds_ctl0; + + if (flags & (ATH9K_TXDESC_RTSENA | ATH9K_TXDESC_CTSENA)) { + ds_ctl0 = ads->ds_ctl0; + + if (flags & ATH9K_TXDESC_RTSENA) { + ds_ctl0 &= ~AR_CTSEnable; + ds_ctl0 |= AR_RTSEnable; + } else { + ds_ctl0 &= ~AR_RTSEnable; + ds_ctl0 |= AR_CTSEnable; + } + + ads->ds_ctl0 = ds_ctl0; + } else { + ads->ds_ctl0 = + (ads->ds_ctl0 & ~(AR_RTSEnable | AR_CTSEnable)); + } + + ads->ds_ctl2 = set11nTries(series, 0) + | set11nTries(series, 1) + | set11nTries(series, 2) + | set11nTries(series, 3) + | (durUpdateEn ? AR_DurUpdateEna : 0) + | SM(0, AR_BurstDur); + + ads->ds_ctl3 = set11nRate(series, 0) + | set11nRate(series, 1) + | set11nRate(series, 2) + | set11nRate(series, 3); + + ads->ds_ctl4 = set11nPktDurRTSCTS(series, 0) + | set11nPktDurRTSCTS(series, 1); + + ads->ds_ctl5 = set11nPktDurRTSCTS(series, 2) + | set11nPktDurRTSCTS(series, 3); + + ads->ds_ctl7 = set11nRateFlags(series, 0) + | set11nRateFlags(series, 1) + | set11nRateFlags(series, 2) + | set11nRateFlags(series, 3) + | SM(rtsctsRate, AR_RTSCTSRate); + last_ads->ds_ctl2 = ads->ds_ctl2; + last_ads->ds_ctl3 = ads->ds_ctl3; +} + +static void ar9002_hw_set11n_aggr_first(struct ath_hw *ah, void *ds, + u32 aggrLen) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + + ads->ds_ctl1 |= (AR_IsAggr | AR_MoreAggr); + ads->ds_ctl6 &= ~AR_AggrLen; + ads->ds_ctl6 |= SM(aggrLen, AR_AggrLen); +} + +static void ar9002_hw_set11n_aggr_middle(struct ath_hw *ah, void *ds, + u32 numDelims) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + unsigned int ctl6; + + ads->ds_ctl1 |= (AR_IsAggr | AR_MoreAggr); + + ctl6 = ads->ds_ctl6; + ctl6 &= ~AR_PadDelim; + ctl6 |= SM(numDelims, AR_PadDelim); + ads->ds_ctl6 = ctl6; +} + +static void ar9002_hw_set11n_aggr_last(struct ath_hw *ah, void *ds) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + + ads->ds_ctl1 |= AR_IsAggr; + ads->ds_ctl1 &= ~AR_MoreAggr; + ads->ds_ctl6 &= ~AR_PadDelim; +} + +static void ar9002_hw_clr11n_aggr(struct ath_hw *ah, void *ds) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + + ads->ds_ctl1 &= (~AR_IsAggr & ~AR_MoreAggr); +} + +static void ar9002_hw_set11n_burstduration(struct ath_hw *ah, void *ds, + u32 burstDuration) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + + ads->ds_ctl2 &= ~AR_BurstDur; + ads->ds_ctl2 |= SM(burstDuration, AR_BurstDur); +} + +static void ar9002_hw_set11n_virtualmorefrag(struct ath_hw *ah, void *ds, + u32 vmf) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + + if (vmf) + ads->ds_ctl0 |= AR_VirtMoreFrag; + else + ads->ds_ctl0 &= ~AR_VirtMoreFrag; +} + +void ath9k_hw_setuprxdesc(struct ath_hw *ah, struct ath_desc *ds, + u32 size, u32 flags) +{ + struct ar5416_desc *ads = AR5416DESC(ds); + struct ath9k_hw_capabilities *pCap = &ah->caps; + + ads->ds_ctl1 = size & AR_BufLen; + if (flags & ATH9K_RXDESC_INTREQ) + ads->ds_ctl1 |= AR_RxIntrReq; + + ads->ds_rxstatus8 &= ~AR_RxDone; + if (!(pCap->hw_caps & ATH9K_HW_CAP_AUTOSLEEP)) + memset(&(ads->u), 0, sizeof(ads->u)); +} +EXPORT_SYMBOL(ath9k_hw_setuprxdesc); + +void ar9002_hw_attach_mac_ops(struct ath_hw *ah) +{ + struct ath_hw_ops *ops = ath9k_hw_ops(ah); + + ops->rx_enable = ar9002_hw_rx_enable; + ops->set_desc_link = ar9002_hw_set_desc_link; + ops->get_desc_link = ar9002_hw_get_desc_link; + ops->get_isr = ar9002_hw_get_isr; + ops->fill_txdesc = ar9002_hw_fill_txdesc; + ops->proc_txdesc = ar9002_hw_proc_txdesc; + ops->set11n_txdesc = ar9002_hw_set11n_txdesc; + ops->set11n_ratescenario = ar9002_hw_set11n_ratescenario; + ops->set11n_aggr_first = ar9002_hw_set11n_aggr_first; + ops->set11n_aggr_middle = ar9002_hw_set11n_aggr_middle; + ops->set11n_aggr_last = ar9002_hw_set11n_aggr_last; + ops->clr11n_aggr = ar9002_hw_clr11n_aggr; + ops->set11n_burstduration = ar9002_hw_set11n_burstduration; + ops->set11n_virtualmorefrag = ar9002_hw_set11n_virtualmorefrag; +} diff --git a/drivers/net/wireless/ath/ath9k/ar9003_hw.c b/drivers/net/wireless/ath/ath9k/ar9003_hw.c index f32665d9ec0..b15309caf1d 100644 --- a/drivers/net/wireless/ath/ath9k/ar9003_hw.c +++ b/drivers/net/wireless/ath/ath9k/ar9003_hw.c @@ -15,6 +15,7 @@ */ #include "hw.h" +#include "ar9003_mac.h" #include "ar9003_initvals.h" /* General hardware code for the AR9003 hadware family */ diff --git a/drivers/net/wireless/ath/ath9k/ar9003_mac.c b/drivers/net/wireless/ath/ath9k/ar9003_mac.c index 81ad09a7ddf..cb93d2375e8 100644 --- a/drivers/net/wireless/ath/ath9k/ar9003_mac.c +++ b/drivers/net/wireless/ath/ath9k/ar9003_mac.c @@ -14,6 +14,7 @@ * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ #include "hw.h" +#include "ar9003_mac.h" static void ar9003_hw_rx_enable(struct ath_hw *hw) { diff --git a/drivers/net/wireless/ath/ath9k/hw.c b/drivers/net/wireless/ath/ath9k/hw.c index 19e2c3cd147..1a7cf20d31e 100644 --- a/drivers/net/wireless/ath/ath9k/hw.c +++ b/drivers/net/wireless/ath/ath9k/hw.c @@ -20,6 +20,7 @@ #include "hw.h" #include "hw-ops.h" #include "rc.h" +#include "ar9003_mac.h" #define ATH9K_CLOCK_RATE_CCK 22 #define ATH9K_CLOCK_RATE_5GHZ_OFDM 40 diff --git a/drivers/net/wireless/ath/ath9k/hw.h b/drivers/net/wireless/ath/ath9k/hw.h index 6dbbab95df5..b711ec212ab 100644 --- a/drivers/net/wireless/ath/ath9k/hw.h +++ b/drivers/net/wireless/ath/ath9k/hw.h @@ -28,7 +28,6 @@ #include "reg.h" #include "phy.h" #include "btcoex.h" -#include "ar9003_mac.h" #include "../regd.h" #include "../debug.h" diff --git a/drivers/net/wireless/ath/ath9k/mac.c b/drivers/net/wireless/ath/ath9k/mac.c index 22fa5125abf..05159584a54 100644 --- a/drivers/net/wireless/ath/ath9k/mac.c +++ b/drivers/net/wireless/ath/ath9k/mac.c @@ -16,451 +16,6 @@ #include "hw.h" -static void ar9002_hw_rx_enable(struct ath_hw *ah) -{ - REG_WRITE(ah, AR_CR, AR_CR_RXE); -} - -static void ar9002_hw_set_desc_link(void *ds, u32 ds_link) -{ - ((struct ath_desc *) ds)->ds_link = ds_link; -} - -static void ar9002_hw_get_desc_link(void *ds, u32 **ds_link) -{ - *ds_link = &((struct ath_desc *)ds)->ds_link; -} - -static bool ar9002_hw_get_isr(struct ath_hw *ah, enum ath9k_int *masked) -{ - u32 isr = 0; - u32 mask2 = 0; - struct ath9k_hw_capabilities *pCap = &ah->caps; - u32 sync_cause = 0; - bool fatal_int = false; - struct ath_common *common = ath9k_hw_common(ah); - - if (!AR_SREV_9100(ah)) { - if (REG_READ(ah, AR_INTR_ASYNC_CAUSE) & AR_INTR_MAC_IRQ) { - if ((REG_READ(ah, AR_RTC_STATUS) & AR_RTC_STATUS_M) - == AR_RTC_STATUS_ON) { - isr = REG_READ(ah, AR_ISR); - } - } - - sync_cause = REG_READ(ah, AR_INTR_SYNC_CAUSE) & - AR_INTR_SYNC_DEFAULT; - - *masked = 0; - - if (!isr && !sync_cause) - return false; - } else { - *masked = 0; - isr = REG_READ(ah, AR_ISR); - } - - if (isr) { - if (isr & AR_ISR_BCNMISC) { - u32 isr2; - isr2 = REG_READ(ah, AR_ISR_S2); - if (isr2 & AR_ISR_S2_TIM) - mask2 |= ATH9K_INT_TIM; - if (isr2 & AR_ISR_S2_DTIM) - mask2 |= ATH9K_INT_DTIM; - if (isr2 & AR_ISR_S2_DTIMSYNC) - mask2 |= ATH9K_INT_DTIMSYNC; - if (isr2 & (AR_ISR_S2_CABEND)) - mask2 |= ATH9K_INT_CABEND; - if (isr2 & AR_ISR_S2_GTT) - mask2 |= ATH9K_INT_GTT; - if (isr2 & AR_ISR_S2_CST) - mask2 |= ATH9K_INT_CST; - if (isr2 & AR_ISR_S2_TSFOOR) - mask2 |= ATH9K_INT_TSFOOR; - } - - isr = REG_READ(ah, AR_ISR_RAC); - if (isr == 0xffffffff) { - *masked = 0; - return false; - } - - *masked = isr & ATH9K_INT_COMMON; - - if (ah->config.rx_intr_mitigation) { - if (isr & (AR_ISR_RXMINTR | AR_ISR_RXINTM)) - *masked |= ATH9K_INT_RX; - } - - if (isr & (AR_ISR_RXOK | AR_ISR_RXERR)) - *masked |= ATH9K_INT_RX; - if (isr & - (AR_ISR_TXOK | AR_ISR_TXDESC | AR_ISR_TXERR | - AR_ISR_TXEOL)) { - u32 s0_s, s1_s; - - *masked |= ATH9K_INT_TX; - - s0_s = REG_READ(ah, AR_ISR_S0_S); - ah->intr_txqs |= MS(s0_s, AR_ISR_S0_QCU_TXOK); - ah->intr_txqs |= MS(s0_s, AR_ISR_S0_QCU_TXDESC); - - s1_s = REG_READ(ah, AR_ISR_S1_S); - ah->intr_txqs |= MS(s1_s, AR_ISR_S1_QCU_TXERR); - ah->intr_txqs |= MS(s1_s, AR_ISR_S1_QCU_TXEOL); - } - - if (isr & AR_ISR_RXORN) { - ath_print(common, ATH_DBG_INTERRUPT, - "receive FIFO overrun interrupt\n"); - } - - if (!AR_SREV_9100(ah)) { - if (!(pCap->hw_caps & ATH9K_HW_CAP_AUTOSLEEP)) { - u32 isr5 = REG_READ(ah, AR_ISR_S5_S); - if (isr5 & AR_ISR_S5_TIM_TIMER) - *masked |= ATH9K_INT_TIM_TIMER; - } - } - - *masked |= mask2; - } - - if (AR_SREV_9100(ah)) - return true; - - if (isr & AR_ISR_GENTMR) { - u32 s5_s; - - s5_s = REG_READ(ah, AR_ISR_S5_S); - if (isr & AR_ISR_GENTMR) { - ah->intr_gen_timer_trigger = - MS(s5_s, AR_ISR_S5_GENTIMER_TRIG); - - ah->intr_gen_timer_thresh = - MS(s5_s, AR_ISR_S5_GENTIMER_THRESH); - - if (ah->intr_gen_timer_trigger) - *masked |= ATH9K_INT_GENTIMER; - - } - } - - if (sync_cause) { - fatal_int = - (sync_cause & - (AR_INTR_SYNC_HOST1_FATAL | AR_INTR_SYNC_HOST1_PERR)) - ? true : false; - - if (fatal_int) { - if (sync_cause & AR_INTR_SYNC_HOST1_FATAL) { - ath_print(common, ATH_DBG_ANY, - "received PCI FATAL interrupt\n"); - } - if (sync_cause & AR_INTR_SYNC_HOST1_PERR) { - ath_print(common, ATH_DBG_ANY, - "received PCI PERR interrupt\n"); - } - *masked |= ATH9K_INT_FATAL; - } - if (sync_cause & AR_INTR_SYNC_RADM_CPL_TIMEOUT) { - ath_print(common, ATH_DBG_INTERRUPT, - "AR_INTR_SYNC_RADM_CPL_TIMEOUT\n"); - REG_WRITE(ah, AR_RC, AR_RC_HOSTIF); - REG_WRITE(ah, AR_RC, 0); - *masked |= ATH9K_INT_FATAL; - } - if (sync_cause & AR_INTR_SYNC_LOCAL_TIMEOUT) { - ath_print(common, ATH_DBG_INTERRUPT, - "AR_INTR_SYNC_LOCAL_TIMEOUT\n"); - } - - REG_WRITE(ah, AR_INTR_SYNC_CAUSE_CLR, sync_cause); - (void) REG_READ(ah, AR_INTR_SYNC_CAUSE_CLR); - } - - return true; -} - -static void ar9002_hw_fill_txdesc(struct ath_hw *ah, void *ds, u32 seglen, - bool is_firstseg, bool is_lastseg, - const void *ds0, dma_addr_t buf_addr, - unsigned int qcu) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - - ads->ds_data = buf_addr; - - if (is_firstseg) { - ads->ds_ctl1 |= seglen | (is_lastseg ? 0 : AR_TxMore); - } else if (is_lastseg) { - ads->ds_ctl0 = 0; - ads->ds_ctl1 = seglen; - ads->ds_ctl2 = AR5416DESC_CONST(ds0)->ds_ctl2; - ads->ds_ctl3 = AR5416DESC_CONST(ds0)->ds_ctl3; - } else { - ads->ds_ctl0 = 0; - ads->ds_ctl1 = seglen | AR_TxMore; - ads->ds_ctl2 = 0; - ads->ds_ctl3 = 0; - } - ads->ds_txstatus0 = ads->ds_txstatus1 = 0; - ads->ds_txstatus2 = ads->ds_txstatus3 = 0; - ads->ds_txstatus4 = ads->ds_txstatus5 = 0; - ads->ds_txstatus6 = ads->ds_txstatus7 = 0; - ads->ds_txstatus8 = ads->ds_txstatus9 = 0; -} - -static int ar9002_hw_proc_txdesc(struct ath_hw *ah, void *ds, - struct ath_tx_status *ts) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - - if ((ads->ds_txstatus9 & AR_TxDone) == 0) - return -EINPROGRESS; - - ts->ts_seqnum = MS(ads->ds_txstatus9, AR_SeqNum); - ts->ts_tstamp = ads->AR_SendTimestamp; - ts->ts_status = 0; - ts->ts_flags = 0; - - if (ads->ds_txstatus1 & AR_FrmXmitOK) - ts->ts_status |= ATH9K_TX_ACKED; - if (ads->ds_txstatus1 & AR_ExcessiveRetries) - ts->ts_status |= ATH9K_TXERR_XRETRY; - if (ads->ds_txstatus1 & AR_Filtered) - ts->ts_status |= ATH9K_TXERR_FILT; - if (ads->ds_txstatus1 & AR_FIFOUnderrun) { - ts->ts_status |= ATH9K_TXERR_FIFO; - ath9k_hw_updatetxtriglevel(ah, true); - } - if (ads->ds_txstatus9 & AR_TxOpExceeded) - ts->ts_status |= ATH9K_TXERR_XTXOP; - if (ads->ds_txstatus1 & AR_TxTimerExpired) - ts->ts_status |= ATH9K_TXERR_TIMER_EXPIRED; - - if (ads->ds_txstatus1 & AR_DescCfgErr) - ts->ts_flags |= ATH9K_TX_DESC_CFG_ERR; - if (ads->ds_txstatus1 & AR_TxDataUnderrun) { - ts->ts_flags |= ATH9K_TX_DATA_UNDERRUN; - ath9k_hw_updatetxtriglevel(ah, true); - } - if (ads->ds_txstatus1 & AR_TxDelimUnderrun) { - ts->ts_flags |= ATH9K_TX_DELIM_UNDERRUN; - ath9k_hw_updatetxtriglevel(ah, true); - } - if (ads->ds_txstatus0 & AR_TxBaStatus) { - ts->ts_flags |= ATH9K_TX_BA; - ts->ba_low = ads->AR_BaBitmapLow; - ts->ba_high = ads->AR_BaBitmapHigh; - } - - ts->ts_rateindex = MS(ads->ds_txstatus9, AR_FinalTxIdx); - switch (ts->ts_rateindex) { - case 0: - ts->ts_ratecode = MS(ads->ds_ctl3, AR_XmitRate0); - break; - case 1: - ts->ts_ratecode = MS(ads->ds_ctl3, AR_XmitRate1); - break; - case 2: - ts->ts_ratecode = MS(ads->ds_ctl3, AR_XmitRate2); - break; - case 3: - ts->ts_ratecode = MS(ads->ds_ctl3, AR_XmitRate3); - break; - } - - ts->ts_rssi = MS(ads->ds_txstatus5, AR_TxRSSICombined); - ts->ts_rssi_ctl0 = MS(ads->ds_txstatus0, AR_TxRSSIAnt00); - ts->ts_rssi_ctl1 = MS(ads->ds_txstatus0, AR_TxRSSIAnt01); - ts->ts_rssi_ctl2 = MS(ads->ds_txstatus0, AR_TxRSSIAnt02); - ts->ts_rssi_ext0 = MS(ads->ds_txstatus5, AR_TxRSSIAnt10); - ts->ts_rssi_ext1 = MS(ads->ds_txstatus5, AR_TxRSSIAnt11); - ts->ts_rssi_ext2 = MS(ads->ds_txstatus5, AR_TxRSSIAnt12); - ts->evm0 = ads->AR_TxEVM0; - ts->evm1 = ads->AR_TxEVM1; - ts->evm2 = ads->AR_TxEVM2; - ts->ts_shortretry = MS(ads->ds_txstatus1, AR_RTSFailCnt); - ts->ts_longretry = MS(ads->ds_txstatus1, AR_DataFailCnt); - ts->ts_virtcol = MS(ads->ds_txstatus1, AR_VirtRetryCnt); - ts->ts_antenna = 0; - - return 0; -} - -static void ar9002_hw_set11n_txdesc(struct ath_hw *ah, void *ds, - u32 pktLen, enum ath9k_pkt_type type, - u32 txPower, u32 keyIx, - enum ath9k_key_type keyType, u32 flags) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - - txPower += ah->txpower_indexoffset; - if (txPower > 63) - txPower = 63; - - ads->ds_ctl0 = (pktLen & AR_FrameLen) - | (flags & ATH9K_TXDESC_VMF ? AR_VirtMoreFrag : 0) - | SM(txPower, AR_XmitPower) - | (flags & ATH9K_TXDESC_VEOL ? AR_VEOL : 0) - | (flags & ATH9K_TXDESC_CLRDMASK ? AR_ClrDestMask : 0) - | (flags & ATH9K_TXDESC_INTREQ ? AR_TxIntrReq : 0) - | (keyIx != ATH9K_TXKEYIX_INVALID ? AR_DestIdxValid : 0); - - ads->ds_ctl1 = - (keyIx != ATH9K_TXKEYIX_INVALID ? SM(keyIx, AR_DestIdx) : 0) - | SM(type, AR_FrameType) - | (flags & ATH9K_TXDESC_NOACK ? AR_NoAck : 0) - | (flags & ATH9K_TXDESC_EXT_ONLY ? AR_ExtOnly : 0) - | (flags & ATH9K_TXDESC_EXT_AND_CTL ? AR_ExtAndCtl : 0); - - ads->ds_ctl6 = SM(keyType, AR_EncrType); - - if (AR_SREV_9285(ah) || AR_SREV_9271(ah)) { - ads->ds_ctl8 = 0; - ads->ds_ctl9 = 0; - ads->ds_ctl10 = 0; - ads->ds_ctl11 = 0; - } -} - -static void ar9002_hw_set11n_ratescenario(struct ath_hw *ah, void *ds, - void *lastds, - u32 durUpdateEn, u32 rtsctsRate, - u32 rtsctsDuration, - struct ath9k_11n_rate_series series[], - u32 nseries, u32 flags) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - struct ar5416_desc *last_ads = AR5416DESC(lastds); - u32 ds_ctl0; - - if (flags & (ATH9K_TXDESC_RTSENA | ATH9K_TXDESC_CTSENA)) { - ds_ctl0 = ads->ds_ctl0; - - if (flags & ATH9K_TXDESC_RTSENA) { - ds_ctl0 &= ~AR_CTSEnable; - ds_ctl0 |= AR_RTSEnable; - } else { - ds_ctl0 &= ~AR_RTSEnable; - ds_ctl0 |= AR_CTSEnable; - } - - ads->ds_ctl0 = ds_ctl0; - } else { - ads->ds_ctl0 = - (ads->ds_ctl0 & ~(AR_RTSEnable | AR_CTSEnable)); - } - - ads->ds_ctl2 = set11nTries(series, 0) - | set11nTries(series, 1) - | set11nTries(series, 2) - | set11nTries(series, 3) - | (durUpdateEn ? AR_DurUpdateEna : 0) - | SM(0, AR_BurstDur); - - ads->ds_ctl3 = set11nRate(series, 0) - | set11nRate(series, 1) - | set11nRate(series, 2) - | set11nRate(series, 3); - - ads->ds_ctl4 = set11nPktDurRTSCTS(series, 0) - | set11nPktDurRTSCTS(series, 1); - - ads->ds_ctl5 = set11nPktDurRTSCTS(series, 2) - | set11nPktDurRTSCTS(series, 3); - - ads->ds_ctl7 = set11nRateFlags(series, 0) - | set11nRateFlags(series, 1) - | set11nRateFlags(series, 2) - | set11nRateFlags(series, 3) - | SM(rtsctsRate, AR_RTSCTSRate); - last_ads->ds_ctl2 = ads->ds_ctl2; - last_ads->ds_ctl3 = ads->ds_ctl3; -} - -static void ar9002_hw_set11n_aggr_first(struct ath_hw *ah, void *ds, - u32 aggrLen) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - - ads->ds_ctl1 |= (AR_IsAggr | AR_MoreAggr); - ads->ds_ctl6 &= ~AR_AggrLen; - ads->ds_ctl6 |= SM(aggrLen, AR_AggrLen); -} - -static void ar9002_hw_set11n_aggr_middle(struct ath_hw *ah, void *ds, - u32 numDelims) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - unsigned int ctl6; - - ads->ds_ctl1 |= (AR_IsAggr | AR_MoreAggr); - - ctl6 = ads->ds_ctl6; - ctl6 &= ~AR_PadDelim; - ctl6 |= SM(numDelims, AR_PadDelim); - ads->ds_ctl6 = ctl6; -} - -static void ar9002_hw_set11n_aggr_last(struct ath_hw *ah, void *ds) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - - ads->ds_ctl1 |= AR_IsAggr; - ads->ds_ctl1 &= ~AR_MoreAggr; - ads->ds_ctl6 &= ~AR_PadDelim; -} - -static void ar9002_hw_clr11n_aggr(struct ath_hw *ah, void *ds) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - - ads->ds_ctl1 &= (~AR_IsAggr & ~AR_MoreAggr); -} - -static void ar9002_hw_set11n_burstduration(struct ath_hw *ah, void *ds, - u32 burstDuration) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - - ads->ds_ctl2 &= ~AR_BurstDur; - ads->ds_ctl2 |= SM(burstDuration, AR_BurstDur); -} - -static void ar9002_hw_set11n_virtualmorefrag(struct ath_hw *ah, void *ds, - u32 vmf) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - - if (vmf) - ads->ds_ctl0 |= AR_VirtMoreFrag; - else - ads->ds_ctl0 &= ~AR_VirtMoreFrag; -} - -void ar9002_hw_attach_mac_ops(struct ath_hw *ah) -{ - struct ath_hw_ops *ops = ath9k_hw_ops(ah); - - ops->rx_enable = ar9002_hw_rx_enable; - ops->set_desc_link = ar9002_hw_set_desc_link; - ops->get_desc_link = ar9002_hw_get_desc_link; - ops->get_isr = ar9002_hw_get_isr; - ops->fill_txdesc = ar9002_hw_fill_txdesc; - ops->proc_txdesc = ar9002_hw_proc_txdesc; - ops->set11n_txdesc = ar9002_hw_set11n_txdesc; - ops->set11n_ratescenario = ar9002_hw_set11n_ratescenario; - ops->set11n_aggr_first = ar9002_hw_set11n_aggr_first; - ops->set11n_aggr_middle = ar9002_hw_set11n_aggr_middle; - ops->set11n_aggr_last = ar9002_hw_set11n_aggr_last; - ops->clr11n_aggr = ar9002_hw_clr11n_aggr; - ops->set11n_burstduration = ar9002_hw_set11n_burstduration; - ops->set11n_virtualmorefrag = ar9002_hw_set11n_virtualmorefrag; -} - static void ath9k_hw_set_txq_interrupts(struct ath_hw *ah, struct ath9k_tx_queue_info *qi) { @@ -1122,22 +677,6 @@ int ath9k_hw_rxprocdesc(struct ath_hw *ah, struct ath_desc *ds, } EXPORT_SYMBOL(ath9k_hw_rxprocdesc); -void ath9k_hw_setuprxdesc(struct ath_hw *ah, struct ath_desc *ds, - u32 size, u32 flags) -{ - struct ar5416_desc *ads = AR5416DESC(ds); - struct ath9k_hw_capabilities *pCap = &ah->caps; - - ads->ds_ctl1 = size & AR_BufLen; - if (flags & ATH9K_RXDESC_INTREQ) - ads->ds_ctl1 |= AR_RxIntrReq; - - ads->ds_rxstatus8 &= ~AR_RxDone; - if (!(pCap->hw_caps & ATH9K_HW_CAP_AUTOSLEEP)) - memset(&(ads->u), 0, sizeof(ads->u)); -} -EXPORT_SYMBOL(ath9k_hw_setuprxdesc); - /* * This can stop or re-enables RX. * diff --git a/drivers/net/wireless/ath/ath9k/mac.h b/drivers/net/wireless/ath/ath9k/mac.h index 0d492192de9..eb430c471c5 100644 --- a/drivers/net/wireless/ath/ath9k/mac.h +++ b/drivers/net/wireless/ath/ath9k/mac.h @@ -354,7 +354,6 @@ struct ar5416_desc { #define AR_DestIdxValid 0x40000000 #define AR_CTSEnable 0x80000000 -#define AR_BufLen 0x00000fff #define AR_TxMore 0x00001000 #define AR_DestIdx 0x000fe000 #define AR_DestIdx_S 13 @@ -494,7 +493,6 @@ struct ar5416_desc { #define AR_RxCTLRsvd00 0xffffffff -#define AR_BufLen 0x00000fff #define AR_RxCtlRsvd00 0x00001000 #define AR_RxIntrReq 0x00002000 #define AR_RxCtlRsvd01 0xffffc000 diff --git a/drivers/net/wireless/ath/ath9k/recv.c b/drivers/net/wireless/ath/ath9k/recv.c index ffb599c4918..cb4995ccbc1 100644 --- a/drivers/net/wireless/ath/ath9k/recv.c +++ b/drivers/net/wireless/ath/ath9k/recv.c @@ -15,6 +15,7 @@ */ #include "ath9k.h" +#include "ar9003_mac.h" #define SKB_CB_ATHBUF(__skb) (*((struct ath_buf **)__skb->cb)) diff --git a/drivers/net/wireless/ath/ath9k/xmit.c b/drivers/net/wireless/ath/ath9k/xmit.c index 550253fe61f..7dae199361b 100644 --- a/drivers/net/wireless/ath/ath9k/xmit.c +++ b/drivers/net/wireless/ath/ath9k/xmit.c @@ -15,6 +15,7 @@ */ #include "ath9k.h" +#include "ar9003_mac.h" #define BITS_PER_BYTE 8 #define OFDM_PLCP_BITS 22 -- cgit v1.2.3-70-g09d2