2014-06-18 03:34:05 -06:00
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#include <string.h>
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2014-06-19 02:36:16 -06:00
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#include <avr/eeprom.h>
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#define F_CPU 16000000UL
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#include <util/delay.h>
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2014-06-18 03:34:05 -06:00
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#include "protocol/SimpleSerial.h"
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bool PRINT_SRC = true;
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bool PRINT_DST = true;
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bool PRINT_PATH = true;
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bool PRINT_DATA = true;
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bool PRINT_INFO = true;
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2014-06-19 02:36:16 -06:00
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bool VERBOSE = true;
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bool SS_INIT = false;
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bool SS_DEFAULT_CONF = false;
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2014-06-18 03:34:05 -06:00
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AX25Call src;
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AX25Call dst;
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AX25Call path1;
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AX25Call path2;
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2014-06-18 03:40:21 -06:00
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char CALL[6] = DEFAULT_CALLSIGN;
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2014-06-18 03:34:05 -06:00
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int CALL_SSID = 0;
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2014-06-18 03:40:21 -06:00
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char DST[6] = DEFAULT_DESTINATION_CALL;
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2014-06-18 03:34:05 -06:00
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int DST_SSID = 0;
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char PATH1[6] = "WIDE1";
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int PATH1_SSID = 1;
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char PATH2[6] = "WIDE2";
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int PATH2_SSID = 2;
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AX25Call path[4];
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2014-06-19 02:36:16 -06:00
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#define NV_MAGIC_BYTE 0x69
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uint8_t EEMEM nvMagicByte;
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uint8_t EEMEM nvCALL[6];
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uint8_t EEMEM nvDST[6];
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uint8_t EEMEM nvPATH1[6];
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uint8_t EEMEM nvPATH2[6];
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uint8_t EEMEM nvCALL_SSID;
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uint8_t EEMEM nvDST_SSID;
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uint8_t EEMEM nvPATH1_SSID;
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uint8_t EEMEM nvPATH2_SSID;
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bool EEMEM nvPRINT_SRC;
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bool EEMEM nvPRINT_DST;
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bool EEMEM nvPRINT_PATH;
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bool EEMEM nvPRINT_DATA;
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bool EEMEM nvPRINT_INFO;
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bool EEMEM nvVERBOSE;
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void ss_init(void) {
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ss_loadSettings();
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SS_INIT = true;
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if (VERBOSE) {
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_delay_ms(500);
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kprintf("\n---------------\n");
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kprintf("MicroAPRS v0.1a\n");
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if (SS_DEFAULT_CONF) kprintf("Default configuration loaded!\n");
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kprintf("Modem ready\n");
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kprintf("---------------\n");
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}
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}
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void ss_clearSettings(void) {
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eeprom_update_byte((void*)&nvMagicByte, 0xFF);
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if (VERBOSE) kprintf("Settings cleared\n");
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}
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void ss_loadSettings(void) {
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uint8_t verification = eeprom_read_byte((void*)&nvMagicByte);
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if (verification == NV_MAGIC_BYTE) {
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eeprom_read_block((void*)CALL, (void*)nvCALL, 6);
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eeprom_read_block((void*)DST, (void*)nvDST, 6);
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eeprom_read_block((void*)PATH1, (void*)nvPATH1, 6);
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eeprom_read_block((void*)PATH2, (void*)nvPATH2, 6);
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CALL_SSID = eeprom_read_byte((void*)&nvCALL_SSID);
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DST_SSID = eeprom_read_byte((void*)&nvDST_SSID);
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PATH1_SSID = eeprom_read_byte((void*)&nvPATH1_SSID);
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PATH2_SSID = eeprom_read_byte((void*)&nvPATH2_SSID);
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PRINT_SRC = eeprom_read_byte((void*)&nvPRINT_SRC);
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PRINT_DST = eeprom_read_byte((void*)&nvPRINT_DST);
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PRINT_PATH = eeprom_read_byte((void*)&nvPRINT_PATH);
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PRINT_DATA = eeprom_read_byte((void*)&nvPRINT_DATA);
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PRINT_INFO = eeprom_read_byte((void*)&nvPRINT_INFO);
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VERBOSE = eeprom_read_byte((void*)&nvVERBOSE);
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if (VERBOSE && SS_INIT) kprintf("Settings loaded\n");
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} else {
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if (SS_INIT) kprintf("Error: No stored settings to load!\n");
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SS_DEFAULT_CONF = true;
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}
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}
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void ss_saveSettings(void) {
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eeprom_update_block((void*)CALL, (void*)nvCALL, 6);
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eeprom_update_block((void*)DST, (void*)nvDST, 6);
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eeprom_update_block((void*)PATH1, (void*)nvPATH1, 6);
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eeprom_update_block((void*)PATH2, (void*)nvPATH2, 6);
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eeprom_update_byte((void*)&nvCALL_SSID, CALL_SSID);
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eeprom_update_byte((void*)&nvDST_SSID, DST_SSID);
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eeprom_update_byte((void*)&nvPATH1_SSID, PATH1_SSID);
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eeprom_update_byte((void*)&nvPATH2_SSID, PATH2_SSID);
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eeprom_update_byte((void*)&nvPRINT_SRC, PRINT_SRC);
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eeprom_update_byte((void*)&nvPRINT_DST, PRINT_DST);
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eeprom_update_byte((void*)&nvPRINT_PATH, PRINT_PATH);
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eeprom_update_byte((void*)&nvPRINT_DATA, PRINT_DATA);
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eeprom_update_byte((void*)&nvPRINT_INFO, PRINT_INFO);
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eeprom_update_byte((void*)&nvVERBOSE, VERBOSE);
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eeprom_update_byte((void*)&nvMagicByte, NV_MAGIC_BYTE);
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if (VERBOSE) kprintf("Settings saved\n");
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}
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void ss_printSettings(void) {
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kprintf("Configuration:\n");
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kprintf("Callsign: %.6s-%d\n", CALL, CALL_SSID);
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kprintf("Destination: %.6s-%d\n", DST, DST_SSID);
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kprintf("Path1: %.6s-%d\n", PATH1, PATH1_SSID);
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kprintf("Path2: %.6s-%d\n", PATH2, PATH2_SSID);
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}
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2014-06-18 03:34:05 -06:00
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void ss_messageCallback(struct AX25Msg *msg, Serial *ser) {
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if (PRINT_SRC) {
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if (PRINT_INFO) kfile_print(&ser->fd, "SRC: ");
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kfile_printf(&ser->fd, "[%.6s-%d] ", msg->src.call, msg->src.ssid);
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}
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if (PRINT_DST) {
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if (PRINT_INFO) kfile_printf(&ser->fd, "DST: ");
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kfile_printf(&ser->fd, "[%.6s-%d] ", msg->dst.call, msg->dst.ssid);
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}
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if (PRINT_PATH) {
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if (PRINT_INFO) kfile_print(&ser->fd, "PATH: ");
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for (int i = 0; i < msg->rpt_cnt; i++)
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kfile_printf(&ser->fd, "[%.6s-%d] ", msg->rpt_lst[i].call, msg->rpt_lst[i].ssid);
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}
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if (PRINT_DATA) {
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if (PRINT_INFO) kfile_print(&ser->fd, "DATA: ");
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kfile_printf(&ser->fd, "%.*s", msg->len, msg->info);
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}
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kfile_print(&ser->fd, "\r\n");
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}
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void ss_serialCallback(void *_buffer, size_t length, Serial *ser, AX25Ctx *ctx) {
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uint8_t *buffer = (uint8_t *)_buffer;
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if (length > 0) {
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// ! as first char to send packet
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if (buffer[0] == '!' && length > 1) {
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buffer++; length--;
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ss_sendMsg(buffer, length, ctx);
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2014-06-19 02:36:16 -06:00
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} else if (buffer[0] == 'h') {
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ss_printSettings();
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} else if (buffer[0] == 'j') {
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ss_saveSettings();
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} else if (buffer[0] == 'k') {
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ss_clearSettings();
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} else if (buffer[0] == 'l') {
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ss_loadSettings();
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2014-06-18 03:34:05 -06:00
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} else if (buffer[0] == 'c' && length > 3) {
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buffer++; length--;
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int count = 0;
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while (length-- && count < 6) {
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char c = buffer[count];
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if (c != 0 && c != 10 && c != 13) {
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CALL[count] = c;
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} else {
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CALL[count] = 0x00;
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2014-06-18 03:34:05 -06:00
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}
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count++;
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}
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2014-06-19 02:36:16 -06:00
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while (count < 6) {
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CALL[count] = 0x00;
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count++;
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}
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if (VERBOSE) kprintf("Callsign: %.6s-%d\n", CALL, CALL_SSID);
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2014-06-18 03:34:05 -06:00
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} else if (buffer[0] == 'd' && length > 3) {
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buffer++; length--;
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int count = 0;
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while (length-- && count < 6) {
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char c = buffer[count];
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if (c != 0 && c != 10 && c != 13) {
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DST[count] = c;
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} else {
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DST[count] = 0;
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}
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count++;
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}
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2014-06-19 02:36:16 -06:00
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while (count < 6) {
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DST[count] = 0x00;
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count++;
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}
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if (VERBOSE) kprintf("Destination: %.6s-%d\n", DST, DST_SSID);
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2014-06-18 03:34:05 -06:00
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} else if (buffer[0] == '1' && length > 1) {
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buffer++; length--;
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int count = 0;
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while (length-- && count < 6) {
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char c = buffer[count];
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if (c != 0 && c != 10 && c != 13) {
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PATH1[count] = c;
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} else {
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PATH1[count] = 0;
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}
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count++;
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}
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2014-06-19 02:36:16 -06:00
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while (count < 6) {
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PATH1[count] = 0x00;
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count++;
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}
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if (VERBOSE) kprintf("Path1: %.6s-%d\n", PATH1, PATH1_SSID);
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2014-06-18 03:34:05 -06:00
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} else if (buffer[0] == '2' && length > 1) {
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buffer++; length--;
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int count = 0;
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while (length-- && count < 6) {
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char c = buffer[count];
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if (c != 0 && c != 10 && c != 13) {
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PATH2[count] = c;
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} else {
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PATH2[count] = 0;
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}
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count++;
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}
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2014-06-19 02:36:16 -06:00
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while (count < 6) {
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PATH2[count] = 0x00;
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count++;
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}
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if (VERBOSE) kprintf("Path2: %.6s-%d\n", PATH2, PATH2_SSID);
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2014-06-18 03:34:05 -06:00
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} else if (buffer[0] == 's' && length > 2) {
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buffer++; length--;
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2014-06-19 02:36:16 -06:00
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if (buffer[0] == 'c') {
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CALL_SSID = buffer[1]-48;
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if (VERBOSE) kprintf("Callsign: %.6s-%d\n", CALL, CALL_SSID);
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}
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if (buffer[0] == 'd') {
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DST_SSID = buffer[1]-48;
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if (VERBOSE) kprintf("Destination: %.6s-%d\n", DST, DST_SSID);
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}
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if (buffer[0] == '1') {
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PATH1_SSID = buffer[1]-48;
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if (VERBOSE) kprintf("Path1: %.6s-%d\n", PATH1, PATH1_SSID);
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}
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if (buffer[0] == '2') {
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PATH2_SSID = buffer[1]-48;
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if (VERBOSE) kprintf("Path2: %.6s-%d\n", PATH2, PATH2_SSID);
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}
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2014-06-18 03:34:05 -06:00
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} else if (buffer[0] == 'p' && length > 2) {
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buffer++; length--;
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if (buffer[0] == 's') {
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if (buffer[1] == 49) { PRINT_SRC = true; } else { PRINT_SRC = false; }
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}
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if (buffer[0] == 'd') {
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if (buffer[1] == 49) { PRINT_DST = true; } else { PRINT_DST = false; }
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}
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if (buffer[0] == 'p') {
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if (buffer[1] == 49) { PRINT_PATH = true; } else { PRINT_PATH = false; }
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}
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if (buffer[0] == 'm') {
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if (buffer[1] == 49) { PRINT_DATA = true; } else { PRINT_DATA = false; }
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}
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if (buffer[0] == 'i') {
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if (buffer[1] == 49) { PRINT_INFO = true; } else { PRINT_INFO = false; }
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}
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2014-06-19 02:36:16 -06:00
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} else if (buffer[0] == 'v') {
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if (buffer[1] == 49) {
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VERBOSE = true;
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kfile_printf(&ser->fd, "Verbose mode enabled\n");
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} else {
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VERBOSE = false;
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kfile_printf(&ser->fd, "Verbose mode disabled\n");
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}
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2014-06-18 03:34:05 -06:00
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}
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}
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}
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void ss_sendMsg(void *_buffer, size_t length, AX25Ctx *ax25) {
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uint8_t *buffer = (uint8_t *)_buffer;
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memcpy(dst.call, DST, 6);
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dst.ssid = DST_SSID;
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memcpy(src.call, CALL, 6);
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src.ssid = CALL_SSID;
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memcpy(path1.call, PATH1, 6);
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path1.ssid = PATH1_SSID;
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memcpy(path2.call, PATH2, 6);
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path2.ssid = PATH2_SSID;
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path[0] = dst;
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path[1] = src;
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path[2] = path1;
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path[3] = path2;
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ax25_sendVia(ax25, path, countof(path), buffer, length);
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}
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void ss_printSrc(bool val) {
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PRINT_SRC = val;
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}
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void ss_printDst(bool val) {
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PRINT_DST = val;
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}
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void ss_printPath(bool val) {
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PRINT_PATH = val;
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}
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void ss_printData(bool val) {
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PRINT_DATA = val;
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}
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void ss_printInfo(bool val) {
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PRINT_INFO = val;
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}
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