Files
tactility/TactilityKernel/source/drivers/wifi.cpp
T
Ken Van Hoeylandt 0ee2415f3b Bluetooth and Wi-Fi improvements (#622)
- Enable BT by default in DTS, and create separate radio on/of functionality (like recent Wi-Fi changes)
- Bluetooth event handling now uses queued subscriptions, improving event delivery and application responsiveness.
- Improved synchronization of Bluetooth advertising, connections, HID, MIDI, and SPP operations.
- Enhanced cleanup during Bluetooth shutdown and subscription removal.
- Clarified Bluetooth start and stop behavior.
- Improved wifi driver subscription stability to prevent endless loops
2026-08-26 00:30:03 +02:00

124 lines
4.1 KiB
C++

// SPDX-License-Identifier: Apache-2.0
#include <tactility/drivers/wifi.h>
#include <tactility/device.h>
#include <tactility/driver.h>
#define WIFI_API(device) ((const struct WifiApi*)device_get_driver(device)->api)
extern "C" {
error_t wifi_set_radio_on(struct Device* device) {
return WIFI_API(device)->set_radio_on(device);
}
error_t wifi_set_radio_off(struct Device* device) {
return WIFI_API(device)->set_radio_off(device);
}
error_t wifi_get_radio_state(struct Device* device, enum WifiRadioState* state) {
return WIFI_API(device)->get_radio_state(device, state);
}
error_t wifi_get_station_state(struct Device* device, enum WifiStationState* state) {
return WIFI_API(device)->get_station_state(device, state);
}
error_t wifi_get_access_point_state(struct Device* device, enum WifiAccessPointState* state) {
return WIFI_API(device)->get_access_point_state(device, state);
}
bool wifi_is_scanning(struct Device* device) {
return WIFI_API(device)->is_scanning(device);
}
error_t wifi_scan(struct Device* device) {
return WIFI_API(device)->scan(device);
}
error_t wifi_get_scan_results(struct Device* device, struct WifiApRecord* results, size_t* num_results) {
return WIFI_API(device)->get_scan_results(device, results, num_results);
}
error_t wifi_station_get_ipv4_address(struct Device* device, char* ipv4) {
return WIFI_API(device)->station_get_ipv4_address(device, ipv4);
}
error_t wifi_station_get_target_ssid(struct Device* device, char* ssid) {
return WIFI_API(device)->station_get_target_ssid(device, ssid);
}
error_t wifi_station_connect(struct Device* device, const char* ssid, const char* password, int32_t channel) {
return WIFI_API(device)->station_connect(device, ssid, password, channel);
}
error_t wifi_station_disconnect(struct Device* device) {
return WIFI_API(device)->station_disconnect(device);
}
error_t wifi_station_get_rssi(struct Device* device, int32_t* rssi) {
return WIFI_API(device)->station_get_rssi(device, rssi);
}
error_t wifi_event_subscribe(struct Device* device, struct WifiEventSubscription* sub, struct TaskEventGroup* event_group) {
mutex_construct(&sub->internal.ring_mutex);
sub->internal.head = 0;
sub->internal.count = 0;
sub->internal.closed = false;
sub->internal.constructed = true;
error_t result = WIFI_API(device)->event_subscribe(device, sub, event_group);
if (result != ERROR_NONE) {
sub->internal.constructed = false;
mutex_destruct(&sub->internal.ring_mutex);
}
return result;
}
error_t wifi_event_unsubscribe(struct Device* device, struct WifiEventSubscription* sub) {
error_t result = WIFI_API(device)->event_unsubscribe(device, sub);
// sub was never subscribed, or was already unsubscribed. ring_mutex was never constructed,
// unsafe to lock or destruct.
if (!sub->internal.constructed) {
return result;
}
mutex_lock(&sub->internal.ring_mutex);
bool was_closed = sub->internal.closed;
mutex_unlock(&sub->internal.ring_mutex);
// Destruct on success or force-close.
if (result == ERROR_NONE || was_closed) {
sub->internal.constructed = false;
mutex_destruct(&sub->internal.ring_mutex);
}
return result;
}
error_t wifi_event_poll(struct WifiEventSubscription* sub, struct WifiEvent* out_event) {
mutex_lock(&sub->internal.ring_mutex);
if (sub->internal.closed) {
mutex_unlock(&sub->internal.ring_mutex);
return ERROR_TIMEOUT;
}
bool has_event = sub->internal.count > 0;
if (has_event) {
*out_event = sub->internal.queue[sub->internal.head];
sub->internal.head = (sub->internal.head + 1) % WIFI_EVENT_QUEUE_CAPACITY;
sub->internal.count--;
}
mutex_unlock(&sub->internal.ring_mutex);
return has_event ? ERROR_NONE : ERROR_TIMEOUT;
}
error_t wifi_get_firmware_ops(struct Device* device, const struct FirmwareOps** ops, void** ctx) {
auto* api = WIFI_API(device);
if (api->get_firmware_ops == nullptr) {
return ERROR_NOT_SUPPORTED;
}
return api->get_firmware_ops(device, ops, ctx);
}
const struct DeviceType WIFI_TYPE = {
.name = "wifi"
};
} // extern "C"