Files
linux/drivers/net/wireless/mediatek/mt76/mt7925/regd.c
T
Charlie-cy Wu e9f3f1cc13 wifi: mt76: mt7925: add regulatory wiphy self manager support
Introduce regulatory wiphy self-managed mode support for MT7925,
allowing the driver to manage its own regulatory domain independently
from the kernel's regulatory framework.

Signed-off-by: Charlie-cy Wu <Charlie-cy.Wu@mediatek.com>
Link: https://patch.msgid.link/20260609065024.577079-1-jb.tsai@mediatek.com
Signed-off-by: Felix Fietkau <nbd@nbd.name>
2026-07-31 12:25:39 +00:00

481 lines
11 KiB
C

// SPDX-License-Identifier: BSD-3-Clause-Clear
/* Copyright (C) 2025 MediaTek Inc. */
#include "mt7925.h"
#include "regd.h"
#include "mcu.h"
static bool mt7925_disable_clc;
module_param_named(disable_clc, mt7925_disable_clc, bool, 0644);
MODULE_PARM_DESC(disable_clc, "disable CLC support");
static struct ieee80211_regdomain mt7925_regd_ww = {
.n_reg_rules = 1,
.alpha2 = "00",
.reg_rules = {
/* IEEE 802.11b/g, channels 1..11 */
REG_RULE(2412 - 10, 2462 + 10, 40, 6, 20, 0),
}
};
bool mt7925_regd_clc_supported(struct mt792x_dev *dev)
{
if (mt7925_disable_clc ||
mt76_is_usb(&dev->mt76))
return false;
return true;
}
void mt7925_regd_be_ctrl(struct mt792x_dev *dev, u8 *alpha2)
{
struct mt792x_phy *phy = &dev->phy;
struct mt7925_clc_rule_v2 *rule;
struct mt7925_clc *clc;
bool old = dev->has_eht, new = true;
u32 mtcl_conf = mt792x_acpi_get_mtcl_conf(&dev->phy, alpha2);
u8 *pos;
if (mtcl_conf != MT792X_ACPI_MTCL_INVALID &&
(((mtcl_conf >> 4) & 0x3) == 0)) {
new = false;
goto out;
}
if (!phy->clc[MT792x_CLC_BE_CTRL])
goto out;
clc = (struct mt7925_clc *)phy->clc[MT792x_CLC_BE_CTRL];
pos = clc->data;
while (1) {
rule = (struct mt7925_clc_rule_v2 *)pos;
if (rule->alpha2[0] == alpha2[0] &&
rule->alpha2[1] == alpha2[1]) {
new = false;
break;
}
/* Check the last one */
if (rule->flag & BIT(0))
break;
pos += sizeof(*rule);
}
out:
if (old == new)
return;
dev->has_eht = new;
mt7925_set_stream_he_eht_caps(phy);
}
static void
mt7925_regd_channel_update(struct wiphy *wiphy, struct mt792x_dev *dev)
{
#define IS_UNII_INVALID(idx, sfreq, efreq, cfreq) \
(!(dev->phy.clc_chan_conf & BIT(idx)) && (cfreq) >= (sfreq) && (cfreq) <= (efreq))
#define MT7925_UNII_59G_IS_VALID 0x1
#define MT7925_UNII_6G_IS_VALID 0x1e
struct ieee80211_supported_band *sband;
struct mt76_dev *mdev = &dev->mt76;
struct ieee80211_channel *ch;
u32 mtcl_conf = mt792x_acpi_get_mtcl_conf(&dev->phy, mdev->alpha2);
int i;
if (mtcl_conf != MT792X_ACPI_MTCL_INVALID) {
if ((mtcl_conf & 0x3) == 0)
dev->phy.clc_chan_conf &= ~MT7925_UNII_59G_IS_VALID;
if (((mtcl_conf >> 2) & 0x3) == 0)
dev->phy.clc_chan_conf &= ~MT7925_UNII_6G_IS_VALID;
}
sband = wiphy->bands[NL80211_BAND_2GHZ];
if (!sband)
return;
for (i = 0; i < sband->n_channels; i++) {
ch = &sband->channels[i];
if (!dev->has_eht)
ch->flags |= IEEE80211_CHAN_NO_EHT;
}
sband = wiphy->bands[NL80211_BAND_5GHZ];
if (!sband)
return;
for (i = 0; i < sband->n_channels; i++) {
ch = &sband->channels[i];
/* UNII-4 */
if (IS_UNII_INVALID(0, 5845, 5925, ch->center_freq))
ch->flags |= IEEE80211_CHAN_DISABLED;
if (!dev->has_eht)
ch->flags |= IEEE80211_CHAN_NO_EHT;
}
sband = wiphy->bands[NL80211_BAND_6GHZ];
if (!sband)
return;
for (i = 0; i < sband->n_channels; i++) {
ch = &sband->channels[i];
/* UNII-5/6/7/8 */
if (IS_UNII_INVALID(1, 5925, 6425, ch->center_freq) ||
IS_UNII_INVALID(2, 6425, 6525, ch->center_freq) ||
IS_UNII_INVALID(3, 6525, 6875, ch->center_freq) ||
IS_UNII_INVALID(4, 6875, 7125, ch->center_freq))
ch->flags |= IEEE80211_CHAN_DISABLED;
if (!dev->has_eht)
ch->flags |= IEEE80211_CHAN_NO_EHT;
}
}
static int mt7925_mcu_apply_regd(struct mt792x_dev *dev, u8 *alpha2,
enum environment_cap env)
{
struct ieee80211_hw *hw = mt76_hw(dev);
struct wiphy *wiphy = hw->wiphy;
int ret;
ret = mt7925_mcu_set_clc(dev, alpha2, env);
if (ret < 0)
return ret;
mt7925_regd_be_ctrl(dev, alpha2);
mt7925_regd_channel_update(wiphy, dev);
ret = mt7925_mcu_set_channel_domain(hw->priv);
if (ret < 0)
return ret;
return mt7925_set_tx_sar_pwr(hw, NULL);
}
int mt7925_mcu_regd_update(struct mt792x_dev *dev, u8 *alpha2,
enum environment_cap country_ie_env)
{
int ret = 0;
dev->regd_in_progress = true;
mt792x_mutex_acquire(dev);
if (dev->regd_change)
ret = mt7925_mcu_apply_regd(dev, alpha2, country_ie_env);
mt792x_mutex_release(dev);
dev->regd_change = false;
dev->regd_in_progress = false;
wake_up(&dev->wait);
return ret;
}
EXPORT_SYMBOL_GPL(mt7925_mcu_regd_update);
void mt7925_regd_notifier(struct wiphy *wiphy, struct regulatory_request *req)
{
struct ieee80211_hw *hw = wiphy_to_ieee80211_hw(wiphy);
struct mt792x_dev *dev = mt792x_hw_dev(hw);
struct mt76_connac_pm *pm = &dev->pm;
struct mt76_dev *mdev = &dev->mt76;
if (req->initiator == NL80211_REGDOM_SET_BY_USER &&
!dev->regd_user)
dev->regd_user = true;
/* allow world regdom at the first boot only */
if (!memcmp(req->alpha2, "00", 2) &&
mdev->alpha2[0] && mdev->alpha2[1])
return;
/* do not need to update the same country twice */
if (!memcmp(req->alpha2, mdev->alpha2, 2) &&
dev->country_ie_env == req->country_ie_env)
return;
memcpy(mdev->alpha2, req->alpha2, 2);
mdev->region = req->dfs_region;
dev->country_ie_env = req->country_ie_env;
dev->regd_change = true;
if (pm->suspended)
/* postpone the mcu update to resume */
return;
if (MT7925_REGD_SUPPORTED(&dev->phy)) {
mt7925_regd_update(&dev->phy, req->alpha2);
return;
}
mt7925_mcu_regd_update(dev, req->alpha2,
req->country_ie_env);
return;
}
static struct sk_buff *
mt7925_regd_query_regdb(struct mt792x_phy *phy, char *alpha2)
{
struct wiphy *wiphy = phy->mt76->hw->wiphy;
struct ieee80211_hw *hw = wiphy_to_ieee80211_hw(wiphy);
struct mt792x_dev *dev = mt792x_hw_dev(hw);
struct mt7925_clc *clc = phy->clc[MT792x_CLC_REGD];
struct mt7925_regd_query_req *req;
struct mt7925_regd_cc *regd_cc;
struct sk_buff *ret_skb = NULL;
u8 *pos, *last_pos;
int ret = 0;
if (!clc)
return NULL;
pos = clc->data;
last_pos = pos + le32_to_cpu(clc->len) - sizeof(struct mt7925_clc);
while (pos < last_pos) {
u32 req_len = 0;
u32 rules_len = 0;
u32 sign_len = 4;
u32 n_reg_rules;
if (pos + sizeof(*regd_cc) > last_pos)
break;
regd_cc = (struct mt7925_regd_cc *)pos;
n_reg_rules = le32_to_cpu(regd_cc->n_reg_rules);
if (n_reg_rules > NL80211_MAX_SUPP_REG_RULES)
break;
rules_len = sizeof(struct mt7925_regd_rule_header) +
sizeof(struct mt7925_regd_rule) * n_reg_rules;
if (pos + sizeof(*regd_cc) + rules_len + sign_len > last_pos)
break;
pos += sizeof(*regd_cc) + rules_len + sign_len;
if (memcmp(regd_cc->alpha2, alpha2, 2))
continue;
req_len = sizeof(*req) + rules_len + sign_len;
req = kzalloc(req_len, GFP_KERNEL);
if (!req)
return NULL;
req->tag = cpu_to_le16(0x6);
req->len = cpu_to_le16(req_len - 4);
req->ver = regd_cc->ver;
req->sign_type = regd_cc->sign_type;
req->size = cpu_to_le32(rules_len + sign_len);
req->n_reg_rules = regd_cc->n_reg_rules;
memcpy(req->alpha2, regd_cc->alpha2, 2);
memcpy(req->data, regd_cc->data, rules_len + sign_len);
ret = mt76_mcu_send_and_get_msg(&dev->mt76,
MCU_UNI_CMD(SET_POWER_LIMIT),
req, req_len, true, &ret_skb);
kfree(req);
return ret < 0 ? NULL : ret_skb;
}
return NULL;
}
int mt7925_regd_update(struct mt792x_phy *phy, char *alpha2)
{
struct wiphy *wiphy = phy->mt76->hw->wiphy;
struct ieee80211_hw *hw = wiphy_to_ieee80211_hw(wiphy);
struct mt792x_dev *dev = mt792x_hw_dev(hw);
struct mt7925_regd_rule *mt7925_rule;
struct mt76_dev *mdev = &dev->mt76;
struct ieee80211_regdomain *regd;
struct ieee80211_reg_rule *rule;
struct mt7925_regd_rule_ev *ev;
int i, num_of_rules = 0;
struct sk_buff *skb;
int ret = 0;
if (dev->hw_full_reset)
return 0;
if (!MT7925_REGD_SUPPORTED(phy))
return -EOPNOTSUPP;
mt792x_mutex_acquire(dev);
skb = mt7925_regd_query_regdb(phy, alpha2);
mt792x_mutex_release(dev);
if (!skb) {
ret = -EINVAL;
goto err;
}
if (skb->len < sizeof(*ev) + 4) {
ret = -EINVAL;
goto err;
}
ev = (struct mt7925_regd_rule_ev *)(skb->data + 4);
num_of_rules = le32_to_cpu(ev->n_reg_rules);
if (!num_of_rules ||
WARN_ON_ONCE(num_of_rules > NL80211_MAX_SUPP_REG_RULES)) {
ret = -EINVAL;
goto err;
}
if (skb->len < struct_size(ev, reg_rule, num_of_rules) + 4) {
ret = -EINVAL;
goto err;
}
regd = kzalloc(struct_size(regd, reg_rules, num_of_rules), GFP_KERNEL);
if (!regd) {
ret = -ENOMEM;
goto err;
}
for (i = 0; i < num_of_rules; i++) {
mt7925_rule = &ev->reg_rule[i];
rule = &regd->reg_rules[i];
rule->freq_range.start_freq_khz =
MHZ_TO_KHZ(le32_to_cpu(mt7925_rule->start_freq));
rule->freq_range.end_freq_khz =
MHZ_TO_KHZ(le32_to_cpu(mt7925_rule->end_freq));
rule->freq_range.max_bandwidth_khz =
MHZ_TO_KHZ(le32_to_cpu(mt7925_rule->max_bw));
/* not used by fw */
rule->power_rule.max_antenna_gain = DBI_TO_MBI(6);
rule->power_rule.max_eirp = DBM_TO_MBM(22);
rule->flags = le32_to_cpu(mt7925_rule->flags);
}
regd->n_reg_rules = num_of_rules;
regd->dfs_region = ev->dfs_region;
memcpy(regd->alpha2, alpha2, 2);
memcpy(mdev->alpha2, alpha2, 2);
dev->regd_change = true;
mt7925_mcu_regd_update(dev, alpha2, ENVIRON_ANY);
ret = regulatory_set_wiphy_regd(wiphy, regd);
kfree(regd);
err:
dev_kfree_skb(skb);
if (ret < 0)
return regulatory_set_wiphy_regd(wiphy, &mt7925_regd_ww);
return ret;
}
EXPORT_SYMBOL_GPL(mt7925_regd_update);
static bool
mt7925_regd_is_valid_alpha2(const char *alpha2)
{
if (!alpha2)
return false;
if (alpha2[0] == '0' && alpha2[1] == '0')
return true;
if (isalpha(alpha2[0]) && isalpha(alpha2[1]))
return true;
return false;
}
bool
mt7925_regd_is_valid_channel(struct mt792x_dev *dev,
enum nl80211_band band,
struct ieee80211_channel *chan)
{
struct ieee80211_hw *hw = mt76_hw(dev);
struct wiphy *wiphy = hw->wiphy;
struct ieee80211_supported_band *sband;
struct ieee80211_channel *ch;
int i;
if (!chan)
return false;
sband = wiphy->bands[band];
if (!sband)
return false;
for (i = 0; i < sband->n_channels; i++) {
ch = &sband->channels[i];
if (ch->hw_value == chan->hw_value &&
((ch->flags & IEEE80211_CHAN_DISABLED) == 0))
return true;
}
return false;
}
EXPORT_SYMBOL_GPL(mt7925_regd_is_valid_channel);
int mt7925_regd_change(struct mt792x_phy *phy, char *alpha2)
{
struct wiphy *wiphy = phy->mt76->hw->wiphy;
struct ieee80211_hw *hw = wiphy_to_ieee80211_hw(wiphy);
struct mt792x_dev *dev = mt792x_hw_dev(hw);
struct mt76_dev *mdev = &dev->mt76;
if (dev->hw_full_reset)
return 0;
if (!mt7925_regd_is_valid_alpha2(alpha2) ||
!mt7925_regd_clc_supported(dev) ||
dev->regd_user)
return -EINVAL;
if ((mdev->alpha2[0] && mdev->alpha2[0] != '0') &&
(mdev->alpha2[1] && mdev->alpha2[1] != '0'))
return 0;
/* do not need to update the same country twice */
if (!memcmp(alpha2, mdev->alpha2, 2))
return 0;
if (MT7925_REGD_SUPPORTED(phy)) {
return mt7925_regd_update(phy, alpha2);
} else if (phy->chip_cap & MT792x_CHIP_CAP_11D_EN) {
return regulatory_hint(wiphy, alpha2);
} else {
return mt7925_mcu_set_clc(dev, alpha2, ENVIRON_INDOOR);
}
}
EXPORT_SYMBOL_GPL(mt7925_regd_change);
int mt7925_regd_init(struct mt792x_phy *phy)
{
struct wiphy *wiphy = phy->mt76->hw->wiphy;
struct ieee80211_hw *hw = wiphy_to_ieee80211_hw(wiphy);
struct mt792x_dev *dev = mt792x_hw_dev(hw);
struct mt76_dev *mdev = &dev->mt76;
if (MT7925_REGD_SUPPORTED(phy)) {
wiphy->regulatory_flags |= REGULATORY_WIPHY_SELF_MANAGED |
REGULATORY_DISABLE_BEACON_HINTS;
return mt7925_regd_update(phy, "00");
} else if (phy->chip_cap & MT792x_CHIP_CAP_11D_EN) {
wiphy->regulatory_flags |= REGULATORY_COUNTRY_IE_IGNORE |
REGULATORY_DISABLE_BEACON_HINTS;
} else {
memzero_explicit(&mdev->alpha2, sizeof(mdev->alpha2));
}
return 0;
}