162306a36Sopenharmony_ci// SPDX-License-Identifier: GPL-2.0-only
262306a36Sopenharmony_ci/*
362306a36Sopenharmony_ci * Copyright (C) 2014 Felix Fietkau <nbd@openwrt.org>
462306a36Sopenharmony_ci * Copyright (C) 2015 Jakub Kicinski <kubakici@wp.pl>
562306a36Sopenharmony_ci * Copyright (C) 2018 Stanislaw Gruszka <stf_xl@wp.pl>
662306a36Sopenharmony_ci */
762306a36Sopenharmony_ci
862306a36Sopenharmony_ci#include <linux/module.h>
962306a36Sopenharmony_ci#include <linux/of.h>
1062306a36Sopenharmony_ci#include <linux/mtd/mtd.h>
1162306a36Sopenharmony_ci#include <linux/mtd/partitions.h>
1262306a36Sopenharmony_ci#include <linux/etherdevice.h>
1362306a36Sopenharmony_ci#include <asm/unaligned.h>
1462306a36Sopenharmony_ci#include "mt76x0.h"
1562306a36Sopenharmony_ci#include "eeprom.h"
1662306a36Sopenharmony_ci#include "../mt76x02_phy.h"
1762306a36Sopenharmony_ci
1862306a36Sopenharmony_ci#define MT_MAP_READS	DIV_ROUND_UP(MT_EFUSE_USAGE_MAP_SIZE, 16)
1962306a36Sopenharmony_cistatic int
2062306a36Sopenharmony_cimt76x0_efuse_physical_size_check(struct mt76x02_dev *dev)
2162306a36Sopenharmony_ci{
2262306a36Sopenharmony_ci	u8 data[MT_MAP_READS * 16];
2362306a36Sopenharmony_ci	int ret, i;
2462306a36Sopenharmony_ci	u32 start = 0, end = 0, cnt_free;
2562306a36Sopenharmony_ci
2662306a36Sopenharmony_ci	ret = mt76x02_get_efuse_data(dev, MT_EE_USAGE_MAP_START, data,
2762306a36Sopenharmony_ci				     sizeof(data), MT_EE_PHYSICAL_READ);
2862306a36Sopenharmony_ci	if (ret)
2962306a36Sopenharmony_ci		return ret;
3062306a36Sopenharmony_ci
3162306a36Sopenharmony_ci	for (i = 0; i < MT_EFUSE_USAGE_MAP_SIZE; i++)
3262306a36Sopenharmony_ci		if (!data[i]) {
3362306a36Sopenharmony_ci			if (!start)
3462306a36Sopenharmony_ci				start = MT_EE_USAGE_MAP_START + i;
3562306a36Sopenharmony_ci			end = MT_EE_USAGE_MAP_START + i;
3662306a36Sopenharmony_ci		}
3762306a36Sopenharmony_ci	cnt_free = end - start + 1;
3862306a36Sopenharmony_ci
3962306a36Sopenharmony_ci	if (MT_EFUSE_USAGE_MAP_SIZE - cnt_free < 5) {
4062306a36Sopenharmony_ci		dev_err(dev->mt76.dev,
4162306a36Sopenharmony_ci			"driver does not support default EEPROM\n");
4262306a36Sopenharmony_ci		return -EINVAL;
4362306a36Sopenharmony_ci	}
4462306a36Sopenharmony_ci
4562306a36Sopenharmony_ci	return 0;
4662306a36Sopenharmony_ci}
4762306a36Sopenharmony_ci
4862306a36Sopenharmony_cistatic void mt76x0_set_chip_cap(struct mt76x02_dev *dev)
4962306a36Sopenharmony_ci{
5062306a36Sopenharmony_ci	u16 nic_conf0 = mt76x02_eeprom_get(dev, MT_EE_NIC_CONF_0);
5162306a36Sopenharmony_ci	u16 nic_conf1 = mt76x02_eeprom_get(dev, MT_EE_NIC_CONF_1);
5262306a36Sopenharmony_ci
5362306a36Sopenharmony_ci	mt76x02_eeprom_parse_hw_cap(dev);
5462306a36Sopenharmony_ci	dev_dbg(dev->mt76.dev, "2GHz %d 5GHz %d\n",
5562306a36Sopenharmony_ci		dev->mphy.cap.has_2ghz, dev->mphy.cap.has_5ghz);
5662306a36Sopenharmony_ci
5762306a36Sopenharmony_ci	if (dev->no_2ghz) {
5862306a36Sopenharmony_ci		dev->mphy.cap.has_2ghz = false;
5962306a36Sopenharmony_ci		dev_dbg(dev->mt76.dev, "mask out 2GHz support\n");
6062306a36Sopenharmony_ci	}
6162306a36Sopenharmony_ci
6262306a36Sopenharmony_ci	if (is_mt7630(dev)) {
6362306a36Sopenharmony_ci		dev->mphy.cap.has_5ghz = false;
6462306a36Sopenharmony_ci		dev_dbg(dev->mt76.dev, "mask out 5GHz support\n");
6562306a36Sopenharmony_ci	}
6662306a36Sopenharmony_ci
6762306a36Sopenharmony_ci	if (!mt76x02_field_valid(nic_conf1 & 0xff))
6862306a36Sopenharmony_ci		nic_conf1 &= 0xff00;
6962306a36Sopenharmony_ci
7062306a36Sopenharmony_ci	if (nic_conf1 & MT_EE_NIC_CONF_1_HW_RF_CTRL)
7162306a36Sopenharmony_ci		dev_dbg(dev->mt76.dev,
7262306a36Sopenharmony_ci			"driver does not support HW RF ctrl\n");
7362306a36Sopenharmony_ci
7462306a36Sopenharmony_ci	if (!mt76x02_field_valid(nic_conf0 >> 8))
7562306a36Sopenharmony_ci		return;
7662306a36Sopenharmony_ci
7762306a36Sopenharmony_ci	if (FIELD_GET(MT_EE_NIC_CONF_0_RX_PATH, nic_conf0) > 1 ||
7862306a36Sopenharmony_ci	    FIELD_GET(MT_EE_NIC_CONF_0_TX_PATH, nic_conf0) > 1)
7962306a36Sopenharmony_ci		dev_err(dev->mt76.dev, "invalid tx-rx stream\n");
8062306a36Sopenharmony_ci}
8162306a36Sopenharmony_ci
8262306a36Sopenharmony_cistatic void mt76x0_set_temp_offset(struct mt76x02_dev *dev)
8362306a36Sopenharmony_ci{
8462306a36Sopenharmony_ci	u8 val;
8562306a36Sopenharmony_ci
8662306a36Sopenharmony_ci	val = mt76x02_eeprom_get(dev, MT_EE_2G_TARGET_POWER) >> 8;
8762306a36Sopenharmony_ci	if (mt76x02_field_valid(val))
8862306a36Sopenharmony_ci		dev->cal.rx.temp_offset = mt76x02_sign_extend(val, 8);
8962306a36Sopenharmony_ci	else
9062306a36Sopenharmony_ci		dev->cal.rx.temp_offset = -10;
9162306a36Sopenharmony_ci}
9262306a36Sopenharmony_ci
9362306a36Sopenharmony_cistatic void mt76x0_set_freq_offset(struct mt76x02_dev *dev)
9462306a36Sopenharmony_ci{
9562306a36Sopenharmony_ci	struct mt76x02_rx_freq_cal *caldata = &dev->cal.rx;
9662306a36Sopenharmony_ci	u8 val;
9762306a36Sopenharmony_ci
9862306a36Sopenharmony_ci	val = mt76x02_eeprom_get(dev, MT_EE_FREQ_OFFSET);
9962306a36Sopenharmony_ci	if (!mt76x02_field_valid(val))
10062306a36Sopenharmony_ci		val = 0;
10162306a36Sopenharmony_ci	caldata->freq_offset = val;
10262306a36Sopenharmony_ci
10362306a36Sopenharmony_ci	val = mt76x02_eeprom_get(dev, MT_EE_TSSI_BOUND4) >> 8;
10462306a36Sopenharmony_ci	if (!mt76x02_field_valid(val))
10562306a36Sopenharmony_ci		val = 0;
10662306a36Sopenharmony_ci
10762306a36Sopenharmony_ci	caldata->freq_offset -= mt76x02_sign_extend(val, 8);
10862306a36Sopenharmony_ci}
10962306a36Sopenharmony_ci
11062306a36Sopenharmony_civoid mt76x0_read_rx_gain(struct mt76x02_dev *dev)
11162306a36Sopenharmony_ci{
11262306a36Sopenharmony_ci	struct ieee80211_channel *chan = dev->mphy.chandef.chan;
11362306a36Sopenharmony_ci	struct mt76x02_rx_freq_cal *caldata = &dev->cal.rx;
11462306a36Sopenharmony_ci	s8 val, lna_5g[3], lna_2g;
11562306a36Sopenharmony_ci	u16 rssi_offset;
11662306a36Sopenharmony_ci	int i;
11762306a36Sopenharmony_ci
11862306a36Sopenharmony_ci	mt76x02_get_rx_gain(dev, chan->band, &rssi_offset, &lna_2g, lna_5g);
11962306a36Sopenharmony_ci	caldata->lna_gain = mt76x02_get_lna_gain(dev, &lna_2g, lna_5g, chan);
12062306a36Sopenharmony_ci
12162306a36Sopenharmony_ci	for (i = 0; i < ARRAY_SIZE(caldata->rssi_offset); i++) {
12262306a36Sopenharmony_ci		val = rssi_offset >> (8 * i);
12362306a36Sopenharmony_ci		if (val < -10 || val > 10)
12462306a36Sopenharmony_ci			val = 0;
12562306a36Sopenharmony_ci
12662306a36Sopenharmony_ci		caldata->rssi_offset[i] = val;
12762306a36Sopenharmony_ci	}
12862306a36Sopenharmony_ci}
12962306a36Sopenharmony_ci
13062306a36Sopenharmony_cistatic s8 mt76x0_get_delta(struct mt76x02_dev *dev)
13162306a36Sopenharmony_ci{
13262306a36Sopenharmony_ci	struct cfg80211_chan_def *chandef = &dev->mphy.chandef;
13362306a36Sopenharmony_ci	u8 val;
13462306a36Sopenharmony_ci
13562306a36Sopenharmony_ci	if (chandef->width == NL80211_CHAN_WIDTH_80) {
13662306a36Sopenharmony_ci		val = mt76x02_eeprom_get(dev, MT_EE_5G_TARGET_POWER) >> 8;
13762306a36Sopenharmony_ci	} else if (chandef->width == NL80211_CHAN_WIDTH_40) {
13862306a36Sopenharmony_ci		u16 data;
13962306a36Sopenharmony_ci
14062306a36Sopenharmony_ci		data = mt76x02_eeprom_get(dev, MT_EE_TX_POWER_DELTA_BW40);
14162306a36Sopenharmony_ci		if (chandef->chan->band == NL80211_BAND_5GHZ)
14262306a36Sopenharmony_ci			val = data >> 8;
14362306a36Sopenharmony_ci		else
14462306a36Sopenharmony_ci			val = data;
14562306a36Sopenharmony_ci	} else {
14662306a36Sopenharmony_ci		return 0;
14762306a36Sopenharmony_ci	}
14862306a36Sopenharmony_ci
14962306a36Sopenharmony_ci	return mt76x02_rate_power_val(val);
15062306a36Sopenharmony_ci}
15162306a36Sopenharmony_ci
15262306a36Sopenharmony_civoid mt76x0_get_tx_power_per_rate(struct mt76x02_dev *dev,
15362306a36Sopenharmony_ci				  struct ieee80211_channel *chan,
15462306a36Sopenharmony_ci				  struct mt76x02_rate_power *t)
15562306a36Sopenharmony_ci{
15662306a36Sopenharmony_ci	bool is_2ghz = chan->band == NL80211_BAND_2GHZ;
15762306a36Sopenharmony_ci	u16 val, addr;
15862306a36Sopenharmony_ci	s8 delta;
15962306a36Sopenharmony_ci
16062306a36Sopenharmony_ci	memset(t, 0, sizeof(*t));
16162306a36Sopenharmony_ci
16262306a36Sopenharmony_ci	/* cck 1M, 2M, 5.5M, 11M */
16362306a36Sopenharmony_ci	val = mt76x02_eeprom_get(dev, MT_EE_TX_POWER_BYRATE_BASE);
16462306a36Sopenharmony_ci	t->cck[0] = t->cck[1] = s6_to_s8(val);
16562306a36Sopenharmony_ci	t->cck[2] = t->cck[3] = s6_to_s8(val >> 8);
16662306a36Sopenharmony_ci
16762306a36Sopenharmony_ci	/* ofdm 6M, 9M, 12M, 18M */
16862306a36Sopenharmony_ci	addr = is_2ghz ? MT_EE_TX_POWER_BYRATE_BASE + 2 : 0x120;
16962306a36Sopenharmony_ci	val = mt76x02_eeprom_get(dev, addr);
17062306a36Sopenharmony_ci	t->ofdm[0] = t->ofdm[1] = s6_to_s8(val);
17162306a36Sopenharmony_ci	t->ofdm[2] = t->ofdm[3] = s6_to_s8(val >> 8);
17262306a36Sopenharmony_ci
17362306a36Sopenharmony_ci	/* ofdm 24M, 36M, 48M, 54M */
17462306a36Sopenharmony_ci	addr = is_2ghz ? MT_EE_TX_POWER_BYRATE_BASE + 4 : 0x122;
17562306a36Sopenharmony_ci	val = mt76x02_eeprom_get(dev, addr);
17662306a36Sopenharmony_ci	t->ofdm[4] = t->ofdm[5] = s6_to_s8(val);
17762306a36Sopenharmony_ci	t->ofdm[6] = t->ofdm[7] = s6_to_s8(val >> 8);
17862306a36Sopenharmony_ci
17962306a36Sopenharmony_ci	/* ht-vht mcs 1ss 0, 1, 2, 3 */
18062306a36Sopenharmony_ci	addr = is_2ghz ? MT_EE_TX_POWER_BYRATE_BASE + 6 : 0x124;
18162306a36Sopenharmony_ci	val = mt76x02_eeprom_get(dev, addr);
18262306a36Sopenharmony_ci	t->ht[0] = t->ht[1] = s6_to_s8(val);
18362306a36Sopenharmony_ci	t->ht[2] = t->ht[3] = s6_to_s8(val >> 8);
18462306a36Sopenharmony_ci
18562306a36Sopenharmony_ci	/* ht-vht mcs 1ss 4, 5, 6 */
18662306a36Sopenharmony_ci	addr = is_2ghz ? MT_EE_TX_POWER_BYRATE_BASE + 8 : 0x126;
18762306a36Sopenharmony_ci	val = mt76x02_eeprom_get(dev, addr);
18862306a36Sopenharmony_ci	t->ht[4] = t->ht[5] = s6_to_s8(val);
18962306a36Sopenharmony_ci	t->ht[6] = t->ht[7] = s6_to_s8(val >> 8);
19062306a36Sopenharmony_ci
19162306a36Sopenharmony_ci	/* vht mcs 8, 9 5GHz */
19262306a36Sopenharmony_ci	val = mt76x02_eeprom_get(dev, 0x12c);
19362306a36Sopenharmony_ci	t->vht[0] = s6_to_s8(val);
19462306a36Sopenharmony_ci	t->vht[1] = s6_to_s8(val >> 8);
19562306a36Sopenharmony_ci
19662306a36Sopenharmony_ci	delta = mt76x0_tssi_enabled(dev) ? 0 : mt76x0_get_delta(dev);
19762306a36Sopenharmony_ci	mt76x02_add_rate_power_offset(t, delta);
19862306a36Sopenharmony_ci}
19962306a36Sopenharmony_ci
20062306a36Sopenharmony_civoid mt76x0_get_power_info(struct mt76x02_dev *dev,
20162306a36Sopenharmony_ci			   struct ieee80211_channel *chan, s8 *tp)
20262306a36Sopenharmony_ci{
20362306a36Sopenharmony_ci	static const struct mt76x0_chan_map {
20462306a36Sopenharmony_ci		u8 chan;
20562306a36Sopenharmony_ci		u8 offset;
20662306a36Sopenharmony_ci	} chan_map[] = {
20762306a36Sopenharmony_ci		{   2,  0 }, {   4,  2 }, {   6,  4 }, {   8,  6 },
20862306a36Sopenharmony_ci		{  10,  8 }, {  12, 10 }, {  14, 12 }, {  38,  0 },
20962306a36Sopenharmony_ci		{  44,  2 }, {  48,  4 }, {  54,  6 }, {  60,  8 },
21062306a36Sopenharmony_ci		{  64, 10 }, { 102, 12 }, { 108, 14 }, { 112, 16 },
21162306a36Sopenharmony_ci		{ 118, 18 }, { 124, 20 }, { 128, 22 }, { 134, 24 },
21262306a36Sopenharmony_ci		{ 140, 26 }, { 151, 28 }, { 157, 30 }, { 161, 32 },
21362306a36Sopenharmony_ci		{ 167, 34 }, { 171, 36 }, { 175, 38 },
21462306a36Sopenharmony_ci	};
21562306a36Sopenharmony_ci	u8 offset, addr;
21662306a36Sopenharmony_ci	int i, idx = 0;
21762306a36Sopenharmony_ci	u16 data;
21862306a36Sopenharmony_ci
21962306a36Sopenharmony_ci	if (mt76x0_tssi_enabled(dev)) {
22062306a36Sopenharmony_ci		s8 target_power;
22162306a36Sopenharmony_ci
22262306a36Sopenharmony_ci		if (chan->band == NL80211_BAND_5GHZ)
22362306a36Sopenharmony_ci			data = mt76x02_eeprom_get(dev, MT_EE_5G_TARGET_POWER);
22462306a36Sopenharmony_ci		else
22562306a36Sopenharmony_ci			data = mt76x02_eeprom_get(dev, MT_EE_2G_TARGET_POWER);
22662306a36Sopenharmony_ci		target_power = (data & 0xff) - dev->rate_power.ofdm[7];
22762306a36Sopenharmony_ci		*tp = target_power + mt76x0_get_delta(dev);
22862306a36Sopenharmony_ci
22962306a36Sopenharmony_ci		return;
23062306a36Sopenharmony_ci	}
23162306a36Sopenharmony_ci
23262306a36Sopenharmony_ci	for (i = 0; i < ARRAY_SIZE(chan_map); i++) {
23362306a36Sopenharmony_ci		if (chan->hw_value <= chan_map[i].chan) {
23462306a36Sopenharmony_ci			idx = (chan->hw_value == chan_map[i].chan);
23562306a36Sopenharmony_ci			offset = chan_map[i].offset;
23662306a36Sopenharmony_ci			break;
23762306a36Sopenharmony_ci		}
23862306a36Sopenharmony_ci	}
23962306a36Sopenharmony_ci	if (i == ARRAY_SIZE(chan_map))
24062306a36Sopenharmony_ci		offset = chan_map[0].offset;
24162306a36Sopenharmony_ci
24262306a36Sopenharmony_ci	if (chan->band == NL80211_BAND_2GHZ) {
24362306a36Sopenharmony_ci		addr = MT_EE_TX_POWER_DELTA_BW80 + offset;
24462306a36Sopenharmony_ci	} else {
24562306a36Sopenharmony_ci		switch (chan->hw_value) {
24662306a36Sopenharmony_ci		case 42:
24762306a36Sopenharmony_ci			offset = 2;
24862306a36Sopenharmony_ci			break;
24962306a36Sopenharmony_ci		case 58:
25062306a36Sopenharmony_ci			offset = 8;
25162306a36Sopenharmony_ci			break;
25262306a36Sopenharmony_ci		case 106:
25362306a36Sopenharmony_ci			offset = 14;
25462306a36Sopenharmony_ci			break;
25562306a36Sopenharmony_ci		case 122:
25662306a36Sopenharmony_ci			offset = 20;
25762306a36Sopenharmony_ci			break;
25862306a36Sopenharmony_ci		case 155:
25962306a36Sopenharmony_ci			offset = 30;
26062306a36Sopenharmony_ci			break;
26162306a36Sopenharmony_ci		default:
26262306a36Sopenharmony_ci			break;
26362306a36Sopenharmony_ci		}
26462306a36Sopenharmony_ci		addr = MT_EE_TX_POWER_0_GRP4_TSSI_SLOPE + 2 + offset;
26562306a36Sopenharmony_ci	}
26662306a36Sopenharmony_ci
26762306a36Sopenharmony_ci	data = mt76x02_eeprom_get(dev, addr);
26862306a36Sopenharmony_ci	*tp = data >> (8 * idx);
26962306a36Sopenharmony_ci	if (*tp < 0 || *tp > 0x3f)
27062306a36Sopenharmony_ci		*tp = 5;
27162306a36Sopenharmony_ci}
27262306a36Sopenharmony_ci
27362306a36Sopenharmony_cistatic int mt76x0_check_eeprom(struct mt76x02_dev *dev)
27462306a36Sopenharmony_ci{
27562306a36Sopenharmony_ci	u16 val;
27662306a36Sopenharmony_ci
27762306a36Sopenharmony_ci	val = get_unaligned_le16(dev->mt76.eeprom.data);
27862306a36Sopenharmony_ci	if (!val)
27962306a36Sopenharmony_ci		val = get_unaligned_le16(dev->mt76.eeprom.data +
28062306a36Sopenharmony_ci					 MT_EE_PCI_ID);
28162306a36Sopenharmony_ci
28262306a36Sopenharmony_ci	switch (val) {
28362306a36Sopenharmony_ci	case 0x7650:
28462306a36Sopenharmony_ci	case 0x7610:
28562306a36Sopenharmony_ci		return 0;
28662306a36Sopenharmony_ci	default:
28762306a36Sopenharmony_ci		dev_err(dev->mt76.dev, "EEPROM data check failed: %04x\n",
28862306a36Sopenharmony_ci			val);
28962306a36Sopenharmony_ci		return -EINVAL;
29062306a36Sopenharmony_ci	}
29162306a36Sopenharmony_ci}
29262306a36Sopenharmony_ci
29362306a36Sopenharmony_cistatic int mt76x0_load_eeprom(struct mt76x02_dev *dev)
29462306a36Sopenharmony_ci{
29562306a36Sopenharmony_ci	int found;
29662306a36Sopenharmony_ci
29762306a36Sopenharmony_ci	found = mt76_eeprom_init(&dev->mt76, MT76X0_EEPROM_SIZE);
29862306a36Sopenharmony_ci	if (found < 0)
29962306a36Sopenharmony_ci		return found;
30062306a36Sopenharmony_ci
30162306a36Sopenharmony_ci	if (found && !mt76x0_check_eeprom(dev))
30262306a36Sopenharmony_ci		return 0;
30362306a36Sopenharmony_ci
30462306a36Sopenharmony_ci	found = mt76x0_efuse_physical_size_check(dev);
30562306a36Sopenharmony_ci	if (found < 0)
30662306a36Sopenharmony_ci		return found;
30762306a36Sopenharmony_ci
30862306a36Sopenharmony_ci	return mt76x02_get_efuse_data(dev, 0, dev->mt76.eeprom.data,
30962306a36Sopenharmony_ci				      MT76X0_EEPROM_SIZE, MT_EE_READ);
31062306a36Sopenharmony_ci}
31162306a36Sopenharmony_ci
31262306a36Sopenharmony_ciint mt76x0_eeprom_init(struct mt76x02_dev *dev)
31362306a36Sopenharmony_ci{
31462306a36Sopenharmony_ci	u8 version, fae;
31562306a36Sopenharmony_ci	u16 data;
31662306a36Sopenharmony_ci	int err;
31762306a36Sopenharmony_ci
31862306a36Sopenharmony_ci	err = mt76x0_load_eeprom(dev);
31962306a36Sopenharmony_ci	if (err < 0)
32062306a36Sopenharmony_ci		return err;
32162306a36Sopenharmony_ci
32262306a36Sopenharmony_ci	data = mt76x02_eeprom_get(dev, MT_EE_VERSION);
32362306a36Sopenharmony_ci	version = data >> 8;
32462306a36Sopenharmony_ci	fae = data;
32562306a36Sopenharmony_ci
32662306a36Sopenharmony_ci	if (version > MT76X0U_EE_MAX_VER)
32762306a36Sopenharmony_ci		dev_warn(dev->mt76.dev,
32862306a36Sopenharmony_ci			 "Warning: unsupported EEPROM version %02hhx\n",
32962306a36Sopenharmony_ci			 version);
33062306a36Sopenharmony_ci	dev_info(dev->mt76.dev, "EEPROM ver:%02hhx fae:%02hhx\n",
33162306a36Sopenharmony_ci		 version, fae);
33262306a36Sopenharmony_ci
33362306a36Sopenharmony_ci	memcpy(dev->mphy.macaddr, (u8 *)dev->mt76.eeprom.data + MT_EE_MAC_ADDR,
33462306a36Sopenharmony_ci	       ETH_ALEN);
33562306a36Sopenharmony_ci	mt76_eeprom_override(&dev->mphy);
33662306a36Sopenharmony_ci	mt76x02_mac_setaddr(dev, dev->mphy.macaddr);
33762306a36Sopenharmony_ci
33862306a36Sopenharmony_ci	mt76x0_set_chip_cap(dev);
33962306a36Sopenharmony_ci	mt76x0_set_freq_offset(dev);
34062306a36Sopenharmony_ci	mt76x0_set_temp_offset(dev);
34162306a36Sopenharmony_ci
34262306a36Sopenharmony_ci	return 0;
34362306a36Sopenharmony_ci}
34462306a36Sopenharmony_ci
34562306a36Sopenharmony_ciMODULE_LICENSE("Dual BSD/GPL");
346