Fix race condition on multiple interfaces receiving at once
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6035e1a2c2
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7
Config.h
7
Config.h
@ -28,6 +28,8 @@
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#define CABLE_STATE_DISCONNECTED 0x00
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#define CABLE_STATE_CONNECTED 0x01
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uint8_t cable_state = CABLE_STATE_DISCONNECTED;
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#define MAX_INTERFACES 12
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#define BT_STATE_NA 0xff
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#define BT_STATE_OFF 0x00
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@ -88,6 +90,11 @@
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uint8_t seq = 0xFF;
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uint16_t read_len = 0;
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FIFOBuffer packet_rdy_interfaces;
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uint8_t packet_rdy_interfaces_buf[MAX_INTERFACES];
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// Incoming packet buffer
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uint8_t pbuf[MTU];
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@ -66,9 +66,6 @@ char sbuf[128];
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bool packet_ready = false;
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volatile bool process_packet = false;
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volatile uint8_t packet_interface = 0;
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uint8_t *packet_queue[INTERFACE_COUNT];
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void setup() {
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@ -140,6 +137,10 @@ void setup() {
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packet_queue[i] = (uint8_t*)malloc(getQueueSize(i)+1);
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}
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memset(packet_rdy_interfaces_buf, 0, sizeof(packet_rdy_interfaces_buf));
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fifo_init(&packet_rdy_interfaces, packet_rdy_interfaces_buf, MAX_INTERFACES);
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// Create and configure interface objects
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for (uint8_t i = 0; i < INTERFACE_COUNT; i++) {
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switch (interfaces[i]) {
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@ -330,7 +331,7 @@ inline void getPacketData(RadioInterface* radio, uint16_t len) {
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}
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}
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void ISR_VECT receive_callback(uint8_t index, int packet_size) {
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void receive_callback(uint8_t index, int packet_size) {
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if (!promisc) {
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selected_radio = interface_obj[index];
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@ -399,6 +400,24 @@ void ISR_VECT receive_callback(uint8_t index, int packet_size) {
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getPacketData(selected_radio, packet_size);
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packet_ready = true;
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}
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if (packet_ready) {
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#if MCU_VARIANT == MCU_ESP32
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portENTER_CRITICAL(&update_lock);
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#elif MCU_VARIANT == MCU_NRF52
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portENTER_CRITICAL();
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#endif
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last_rssi = selected_radio->packetRssi();
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last_snr_raw = selected_radio->packetSnrRaw();
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#if MCU_VARIANT == MCU_ESP32
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portEXIT_CRITICAL(&update_lock);
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#elif MCU_VARIANT == MCU_NRF52
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portEXIT_CRITICAL();
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#endif
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kiss_indicate_stat_rssi();
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kiss_indicate_stat_snr();
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kiss_write_packet(index);
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}
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last_rx = millis();
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}
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@ -1170,25 +1189,6 @@ void loop() {
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// If at least one radio is online then we can continue
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if (ready) {
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if (packet_ready) {
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selected_radio = interface_obj[packet_interface];
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#if MCU_VARIANT == MCU_ESP32
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portENTER_CRITICAL(&update_lock);
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#elif MCU_VARIANT == MCU_NRF52
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portENTER_CRITICAL();
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#endif
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last_rssi = selected_radio->packetRssi();
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last_snr_raw = selected_radio->packetSnrRaw();
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#if MCU_VARIANT == MCU_ESP32
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portEXIT_CRITICAL(&update_lock);
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#elif MCU_VARIANT == MCU_NRF52
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portEXIT_CRITICAL();
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#endif
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kiss_indicate_stat_rssi();
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kiss_indicate_stat_snr();
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kiss_write_packet(packet_interface);
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}
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for (int i = 0; i < INTERFACE_COUNT; i++) {
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selected_radio = interface_obj_sorted[i];
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@ -1321,23 +1321,13 @@ void poll_buffers() {
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}
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void packet_poll() {
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#if MCU_VARIANT == MCU_ESP32
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portENTER_CRITICAL(&update_lock);
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#elif MCU_VARIANT == MCU_NRF52
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portENTER_CRITICAL();
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#endif
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// If we have received a packet on an interface which needs to be processed
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if (process_packet) {
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selected_radio = interface_obj[packet_interface];
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while (!fifo_isempty(&packet_rdy_interfaces)) {
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uint8_t packet_int = fifo_pop(&packet_rdy_interfaces);
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selected_radio = interface_obj[packet_int];
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selected_radio->clearIRQStatus();
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selected_radio->handleDio0Rise();
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process_packet = false;
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}
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#if MCU_VARIANT == MCU_ESP32
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portEXIT_CRITICAL(&update_lock);
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#elif MCU_VARIANT == MCU_NRF52
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portEXIT_CRITICAL();
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#endif
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}
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volatile bool serial_polling = false;
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@ -88,8 +88,7 @@
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#define FREQ_DIV_6X (double)pow(2.0, 25.0)
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#define FREQ_STEP_6X (double)(XTAL_FREQ_6X / FREQ_DIV_6X)
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extern bool process_packet;
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extern uint8_t packet_interface;
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extern FIFOBuffer packet_rdy_interfaces;
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extern RadioInterface* interface_obj[];
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// ISRs cannot provide parameters to the functions they call. Since we have
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@ -99,9 +98,7 @@ extern RadioInterface* interface_obj[];
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void ISR_VECT onDio0Rise() {
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for (int i = 0; i < INTERFACE_COUNT; i++) {
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if (digitalRead(interface_pins[i][5]) == HIGH) {
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process_packet = true;
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packet_interface = i;
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break;
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fifo_push(&packet_rdy_interfaces, i);
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}
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}
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}
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