提交 1bf38661 编写于 作者: F Felix Fietkau 提交者: John W. Linville

ath9k_hw: fix PA predistortion training power selection

The EEPROM contains scale factors for the tx power, which define
the range of allowable difference between target power and training
power. If the difference is too big, PA predistortion cannot be used.
For 2.4 GHz there is only one scale factor, for 5 GHz there are
three, depending on the specific frequency range.
Signed-off-by: NFelix Fietkau <nbd@openwrt.org>
Signed-off-by: NJohn W. Linville <linville@tuxdriver.com>
上级 1782352d
......@@ -4798,6 +4798,19 @@ static void ath9k_hw_ar9300_set_txpower(struct ath_hw *ah,
/* Write target power array to registers */
ar9003_hw_tx_power_regwrite(ah, targetPowerValT2);
ar9003_hw_calibration_apply(ah, chan->channel);
if (IS_CHAN_2GHZ(chan)) {
if (IS_CHAN_HT40(chan))
i = ALL_TARGET_HT40_0_8_16;
else
i = ALL_TARGET_HT20_0_8_16;
} else {
if (IS_CHAN_HT40(chan))
i = ALL_TARGET_HT40_7;
else
i = ALL_TARGET_HT20_7;
}
ah->paprd_target_power = targetPowerValT2[i];
}
static u16 ath9k_hw_ar9300_get_spur_channel(struct ath_hw *ah,
......
......@@ -30,8 +30,68 @@ void ar9003_paprd_enable(struct ath_hw *ah, bool val)
}
EXPORT_SYMBOL(ar9003_paprd_enable);
static void ar9003_paprd_setup_single_table(struct ath_hw *ah)
static int ar9003_get_training_power_2g(struct ath_hw *ah)
{
struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep;
struct ar9300_modal_eep_header *hdr = &eep->modalHeader2G;
unsigned int power, scale, delta;
scale = MS(le32_to_cpu(hdr->papdRateMaskHt20), AR9300_PAPRD_SCALE_1);
power = REG_READ_FIELD(ah, AR_PHY_POWERTX_RATE5,
AR_PHY_POWERTX_RATE5_POWERTXHT20_0);
delta = abs((int) ah->paprd_target_power - (int) power);
if (delta > scale)
return -1;
if (delta < 4)
power -= 4 - delta;
return power;
}
static int get_streams(int mask)
{
return !!(mask & BIT(0)) + !!(mask & BIT(1)) + !!(mask & BIT(2));
}
static int ar9003_get_training_power_5g(struct ath_hw *ah)
{
struct ath_common *common = ath9k_hw_common(ah);
struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep;
struct ar9300_modal_eep_header *hdr = &eep->modalHeader5G;
struct ath9k_channel *chan = ah->curchan;
unsigned int power, scale, delta;
if (chan->channel >= 5700)
scale = MS(le32_to_cpu(hdr->papdRateMaskHt20),
AR9300_PAPRD_SCALE_1);
else if (chan->channel >= 5400)
scale = MS(le32_to_cpu(hdr->papdRateMaskHt40),
AR9300_PAPRD_SCALE_2);
else
scale = MS(le32_to_cpu(hdr->papdRateMaskHt40),
AR9300_PAPRD_SCALE_1);
if (IS_CHAN_HT40(chan))
power = REG_READ_FIELD(ah, AR_PHY_POWERTX_RATE8,
AR_PHY_POWERTX_RATE8_POWERTXHT40_5);
else
power = REG_READ_FIELD(ah, AR_PHY_POWERTX_RATE6,
AR_PHY_POWERTX_RATE6_POWERTXHT20_5);
power += scale;
delta = abs((int) ah->paprd_target_power - (int) power);
if (delta > scale)
return -1;
power += 2 * get_streams(common->tx_chainmask);
return power;
}
static int ar9003_paprd_setup_single_table(struct ath_hw *ah)
{
struct ath_common *common = ath9k_hw_common(ah);
struct ar9300_eeprom *eep = &ah->eeprom.ar9300_eep;
struct ar9300_modal_eep_header *hdr;
static const u32 ctrl0[3] = {
......@@ -45,6 +105,7 @@ static void ar9003_paprd_setup_single_table(struct ath_hw *ah)
AR_PHY_PAPRD_CTRL1_B2
};
u32 am_mask, ht40_mask;
int training_power;
int i;
if (ah->curchan && IS_CHAN_5GHZ(ah->curchan))
......@@ -55,11 +116,25 @@ static void ar9003_paprd_setup_single_table(struct ath_hw *ah)
am_mask = le32_to_cpu(hdr->papdRateMaskHt20) & AR9300_PAPRD_RATE_MASK;
ht40_mask = le32_to_cpu(hdr->papdRateMaskHt40) & AR9300_PAPRD_RATE_MASK;
if (IS_CHAN_2GHZ(ah->curchan))
training_power = ar9003_get_training_power_2g(ah);
else
training_power = ar9003_get_training_power_5g(ah);
if (training_power < 0) {
ath_dbg(common, ATH_DBG_CALIBRATE,
"PAPRD target power delta out of range");
return -ERANGE;
}
ah->paprd_training_power = training_power;
ath_dbg(common, ATH_DBG_CALIBRATE,
"Training power: %d, Target power: %d\n",
ah->paprd_training_power, ah->paprd_target_power);
REG_RMW_FIELD(ah, AR_PHY_PAPRD_AM2AM, AR_PHY_PAPRD_AM2AM_MASK, am_mask);
REG_RMW_FIELD(ah, AR_PHY_PAPRD_AM2PM, AR_PHY_PAPRD_AM2PM_MASK, am_mask);
REG_RMW_FIELD(ah, AR_PHY_PAPRD_HT40, AR_PHY_PAPRD_HT40_MASK, ht40_mask);
for (i = 0; i < ah->caps.max_txchains; i++) {
REG_RMW_FIELD(ah, ctrl0[i],
AR_PHY_PAPRD_CTRL0_USE_SINGLE_TABLE_MASK, 1);
......@@ -141,6 +216,7 @@ static void ar9003_paprd_setup_single_table(struct ath_hw *ah)
AR_PHY_PAPRD_PRE_POST_SCALING, 185706);
REG_RMW_FIELD(ah, AR_PHY_PAPRD_PRE_POST_SCALE_7_B0,
AR_PHY_PAPRD_PRE_POST_SCALING, 175487);
return 0;
}
static void ar9003_paprd_get_gain_table(struct ath_hw *ah)
......@@ -595,15 +671,10 @@ void ar9003_paprd_populate_single_table(struct ath_hw *ah,
{
u32 *paprd_table_val = caldata->pa_table[chain];
u32 small_signal_gain = caldata->small_signal_gain[chain];
u32 training_power;
u32 training_power = ah->paprd_training_power;
u32 reg = 0;
int i;
training_power =
REG_READ_FIELD(ah, AR_PHY_POWERTX_RATE5,
AR_PHY_POWERTX_RATE5_POWERTXHT20_0);
training_power -= 4;
if (chain == 0)
reg = AR_PHY_PAPRD_MEM_TAB_B0;
else if (chain == 1)
......@@ -643,14 +714,8 @@ EXPORT_SYMBOL(ar9003_paprd_populate_single_table);
int ar9003_paprd_setup_gain_table(struct ath_hw *ah, int chain)
{
unsigned int i, desired_gain, gain_index;
unsigned int train_power;
train_power = REG_READ_FIELD(ah, AR_PHY_POWERTX_RATE5,
AR_PHY_POWERTX_RATE5_POWERTXHT20_0);
train_power = train_power - 4;
unsigned int train_power = ah->paprd_training_power;
desired_gain = ar9003_get_desired_gain(ah, chain, train_power);
......@@ -716,7 +781,12 @@ EXPORT_SYMBOL(ar9003_paprd_create_curve);
int ar9003_paprd_init_table(struct ath_hw *ah)
{
ar9003_paprd_setup_single_table(ah);
int ret;
ret = ar9003_paprd_setup_single_table(ah);
if (ret < 0)
return ret;
ar9003_paprd_get_gain_table(ah);
return 0;
}
......
......@@ -1090,6 +1090,14 @@
#define AR_PHY_POWERTX_RATE5_POWERTXHT20_0 0x3F
#define AR_PHY_POWERTX_RATE5_POWERTXHT20_0_S 0
#define AR_PHY_POWERTX_RATE6 (AR_SM_BASE + 0x1d4)
#define AR_PHY_POWERTX_RATE6_POWERTXHT20_5 0x3F00
#define AR_PHY_POWERTX_RATE6_POWERTXHT20_5_S 8
#define AR_PHY_POWERTX_RATE8 (AR_SM_BASE + 0x1dc)
#define AR_PHY_POWERTX_RATE8_POWERTXHT40_5 0x3F00
#define AR_PHY_POWERTX_RATE8_POWERTXHT40_5_S 8
void ar9003_hw_set_chain_masks(struct ath_hw *ah, u8 rx, u8 tx);
#endif /* AR9003_PHY_H */
......@@ -833,6 +833,8 @@ struct ath_hw {
u32 bb_watchdog_last_status;
u32 bb_watchdog_timeout_ms; /* in ms, 0 to disable */
unsigned int paprd_target_power;
unsigned int paprd_training_power;
u32 paprd_gain_table_entries[PAPRD_GAIN_TABLE_ENTRIES];
u8 paprd_gain_table_index[PAPRD_GAIN_TABLE_ENTRIES];
/*
......
......@@ -373,6 +373,9 @@ void ath_paprd_calibrate(struct work_struct *work)
if (!caldata)
return;
if (ar9003_paprd_init_table(ah) < 0)
return;
skb = alloc_skb(len, GFP_KERNEL);
if (!skb)
return;
......@@ -388,7 +391,6 @@ void ath_paprd_calibrate(struct work_struct *work)
memcpy(hdr->addr3, hw->wiphy->perm_addr, ETH_ALEN);
ath9k_ps_wakeup(sc);
ar9003_paprd_init_table(ah);
for (chain = 0; chain < AR9300_MAX_CHAINS; chain++) {
if (!(common->tx_chainmask & BIT(chain)))
continue;
......
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