kopia lustrzana https://github.com/DL7AD/pecanpico10
196 wiersze
5.5 KiB
C
196 wiersze
5.5 KiB
C
#include "ch.h"
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#include "hal.h"
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#include "debug.h"
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#include "si446x.h"
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#include "geofence.h"
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#include "aprs.h"
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#include "pktconf.h"
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#include "radio.h"
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static void processPacket(uint8_t *buf, uint32_t len) {
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if(len < 3) {
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/*
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* Incoming packet was too short.
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* Don't yet have a general packet so nothing to do.
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*/
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TRACE_INFO("RX > Packet dropped due to data length < 2");
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return;
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}
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/* Remove CRC from frame. */
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len -= 2;
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/* Decode APRS frame. */
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packet_t pp = ax25_from_frame(buf, len);
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if(pp == NULL) {
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TRACE_INFO("RX > Error in packet - dropped");
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return;
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}
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/* Continue packet analysis. */
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uint8_t *c;
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uint32_t ilen = ax25_get_info(pp, &c);
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if(ilen == 0) {
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TRACE_INFO("RX > Invalid packet structure - dropped");
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pktReleasePacketBuffer(pp);
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return;
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}
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/* Output packet as text. */
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char serial_buf[512];
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aprs_debug_getPacket(pp, serial_buf, sizeof(serial_buf));
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TRACE_MON("RX > %s", serial_buf);
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if(pp->num_addr > 0) {
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aprs_decode_packet(pp);
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}
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else {
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TRACE_INFO("RX > No addresses in packet - dropped");
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}
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pktReleasePacketBuffer(pp);
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}
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void mapCallback(pkt_data_object_t *pkt_buff) {
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/* Packet buffer. */
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ax25char_t *frame_buffer = pkt_buff->buffer;
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ax25size_t frame_size = pkt_buff->packet_size;
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/* FIXME: This is a quick diagnostic implementation only. */
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/*
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#if DUMP_PACKET_TO_SERIAL == TRUE && ENABLE_EXTERNAL_I2C != TRUE
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pktDiagnosticOutput(pkt_buff->handler, pkt_buff);
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#endif
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*/
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if(pktGetAX25FrameStatus(pkt_buff)) {
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/* Perform the callback. */
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processPacket(frame_buffer, frame_size);
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} else {
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TRACE_INFO("RX > Frame has bad CRC - dropped");
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}
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}
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void start_aprs_threads(radio_unit_t radio, radio_freq_t base_freq,
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channel_hz_t step,
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radio_ch_t chan, radio_squelch_t rssi) {
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/* if(base_freq == FREQ_APRS_DYNAMIC) {
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base_freq = getAPRSRegionFrequency(); // Get transmission frequency by geofencing
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// If using geofence ignore channel and step.
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chan = 0;
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step = 0;
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}*/
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if(base_freq == FREQ_APRS_RECEIVE) {
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TRACE_ERROR("RX > Cannot specify FREQ_APRS_RECEIVE for receiver");
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return;
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}
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/* Open packet radio service. */
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msg_t omsg = pktOpenRadioReceive(radio,
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MOD_AFSK,
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base_freq,
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step);
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if(omsg != MSG_OK) {
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TRACE_ERROR("RX > Open of radio service failed");
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return;
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}
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/* Start the decoder. */
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msg_t smsg = pktEnableDataReception(radio,
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chan,
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rssi,
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mapCallback);
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if(smsg != MSG_OK) {
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pktCloseRadioReceive(radio);
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TRACE_ERROR("RX > Start of radio packet reception failed");
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}
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}
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/*
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*
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*/
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bool transmitOnRadio(packet_t pp, radio_freq_t base_freq,
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channel_hz_t step, radio_ch_t chan,
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radio_pwr_t pwr, mod_t mod, radio_squelch_t cca) {
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/* TODO: This should select a radio by frequency. For now just use 1. */
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radio_unit_t radio = PKT_RADIO_1;
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if(!pktIsTransmitOpen(radio)) {
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TRACE_WARN( "RAD > Transmit is not open on radio");
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pktReleaseBufferChain(pp);
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return false;
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}
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radio_freq_t op_freq = pktComputeOperatingFrequency(radio,
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base_freq,
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step,
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chan,
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RADIO_TX);
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if(op_freq == FREQ_RADIO_INVALID) {
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TRACE_ERROR("RAD > Transmit operating frequency of %d.%03d MHz is invalid",
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op_freq/1000000, (op_freq%1000000)/1000);
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pktReleaseBufferChain(pp);
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return false;
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}
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uint16_t len = ax25_get_info(pp, NULL);
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/* Check information size. */
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if(AX25_MIN_INFO_LEN < len && len <= AX25_MAX_INFO_LEN) {
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TRACE_INFO( "RAD > %s transmit on %d.%03d MHz (ch %d),"
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" PWR %d, %s, CCA %d, data %d",
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(pp->nextp != NULL) ? "Burst" : "Packet",
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op_freq/1000000, (op_freq%1000000)/1000,
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chan, pwr, getModulation(mod), cca, len
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);
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/* TODO: Check size of buf. */
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char buf[1024];
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aprs_debug_getPacket(pp, buf, sizeof(buf));
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TRACE_INFO("TX > %s", buf);
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/* The service object. */
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packet_svc_t *handler = pktGetServiceObject(radio);
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/* Get the saved radio data for this new request. */
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radio_task_object_t rt = handler->radio_tx_config;
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rt.handler = handler;
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rt.command = PKT_RADIO_TX_SEND;
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rt.type = mod;
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rt.base_frequency = base_freq;
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rt.step_hz = step;
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rt.channel = chan;
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rt.tx_power = pwr;
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rt.tx_speed = (mod == MOD_2FSK ? 9600 : 1200);
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rt.squelch = cca;
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rt.packet_out = pp;
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/* Update the task mirror. */
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handler->radio_tx_config = rt;
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msg_t msg = pktSendRadioCommand(radio, &rt, NULL);
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if(msg != MSG_OK) {
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TRACE_ERROR("RAD > Failed to post radio task");
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pktReleaseBufferChain(pp);
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return false;
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}
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} else {
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TRACE_ERROR("RAD > Information size is invalid for transmission, %d.%03d MHz, "
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"Pwr dBm, %s, %d byte",
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base_freq/1000000, (base_freq%1000000)/1000, pwr,
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getModulation(mod), len);
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pktReleaseBufferChain(pp);
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return false;
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}
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return true;
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}
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