mirror of https://github.com/wb2osz/direwolf.git
546 lines
11 KiB
C
546 lines
11 KiB
C
//
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// This file is part of Dire Wolf, an amateur radio packet TNC.
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//
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// Copyright (C) 2013, 2015 John Langner, WB2OSZ
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 2 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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//
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/*------------------------------------------------------------------
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*
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* Module: morse.c
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*
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* Purpose: Generate audio for morse code.
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*
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* Description:
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*
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* Reference:
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*
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*---------------------------------------------------------------*/
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#include "direwolf.h"
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#include <stdio.h>
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#include <unistd.h>
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#include <stdlib.h>
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#include <assert.h>
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#include <string.h>
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#include <ctype.h>
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#include <time.h>
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#include <math.h>
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#include "textcolor.h"
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#include "audio.h"
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#include "ptt.h"
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#include "gen_tone.h" /* for gen_tone_put_sample */
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#include "morse.h"
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/*
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* Might get ambitious and make this adjustable some day.
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* Good enough for now.
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*/
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#define MORSE_TONE 800
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#define TIME_UNITS_TO_MS(tu,wpm) (((tu)*1200.0)/(wpm))
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static const struct morse_s {
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char ch;
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char enc[8]; /* $ has 7 elements */
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} morse[] = {
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{ 'A', ".-" },
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{ 'B', "-..." },
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{ 'C', "-.-." },
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{ 'D', "-.." },
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{ 'E', "." },
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{ 'F', "..-." },
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{ 'G', "--." },
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{ 'H', "...." },
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{ 'I', "." },
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{ 'J', ".---" },
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{ 'K', "-.-" },
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{ 'L', ".-.." },
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{ 'M', "--" },
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{ 'N', "-." },
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{ 'O', "---" },
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{ 'P', ".--." },
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{ 'Q', "--.-" },
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{ 'R', ".-." },
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{ 'S', "..." },
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{ 'T', "-" },
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{ 'U', "..-" },
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{ 'V', "...-" },
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{ 'W', ".--" },
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{ 'X', "-..-" },
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{ 'Y', "-.--" },
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{ 'Z', "--.." },
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{ '1', ".----" },
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{ '2', "..---" },
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{ '3', "...--" },
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{ '4', "....-" },
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{ '5', "....." },
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{ '6', "-...." },
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{ '7', "--..." },
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{ '8', "---.." },
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{ '9', "----." },
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{ '0', "-----" },
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{ '-', "-...-" },
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{ '.', ".-.-.-" },
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{ ',', "--..--" },
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{ '?', "..--.." },
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{ '/', "-..-." },
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{ '=', "-...-" }, /* from ARRL */
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{ '-', "-....-" },
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{ ')', "-.--.-" }, /* does not distinguish open/close */
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{ ':', "---..." },
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{ ';', "-.-.-." },
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{ '"', ".-..-." },
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{ '\'', ".----." },
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{ '$', "...-..-" },
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{ '!', "-.-.--" }, /* more from wikipedia */
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{ '(', "-.--." },
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{ '&', ".-..." },
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{ '+', ".-.-." },
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{ '_', "..--.-" },
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{ '@', ".--.-." },
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};
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#define NUM_MORSE (sizeof(morse) / sizeof(struct morse_s))
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static void morse_tone (int chan, int tu, int wpm);
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static void morse_quiet (int chan, int tu, int wpm);
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static void morse_quiet_ms (int chan, int ms);
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static int morse_lookup (int ch);
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static int morse_units_ch (int ch);
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static int morse_units_str (char *str);
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/*
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* Properties of the digitized sound stream.
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*/
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static struct audio_s *save_audio_config_p;
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/* Constants after initialization. */
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#define TICKS_PER_CYCLE ( 256.0 * 256.0 * 256.0 * 256.0 )
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static short sine_table[256];
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/*------------------------------------------------------------------
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*
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* Name: morse_init
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*
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* Purpose: Initialize for tone generation.
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*
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* Inputs: audio_config_p - Pointer to audio configuration structure.
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*
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* The fields we care about are:
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*
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* samples_per_sec
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*
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* amp - Signal amplitude on scale of 0 .. 100.
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*
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* 100 will produce maximum amplitude of +-32k samples.
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*
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* Returns: 0 for success.
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* -1 for failure.
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*
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* Description: Precompute a sine wave table.
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*
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*----------------------------------------------------------------*/
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int morse_init (struct audio_s *audio_config_p, int amp)
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{
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int j;
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/*
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* Save away modem parameters for later use.
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*/
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save_audio_config_p = audio_config_p;
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for (j=0; j<256; j++) {
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double a;
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int s;
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a = ((double)(j) / 256.0) * (2 * M_PI);
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s = (int) (sin(a) * 32767.0 * amp / 100.0);
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/* 16 bit sound sample is in range of -32768 .. +32767. */
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assert (s >= -32768 && s <= 32767);
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sine_table[j] = s;
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}
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return (0);
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} /* end morse_init */
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/*-------------------------------------------------------------------
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*
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* Name: morse_send
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*
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* Purpose: Given a string, generate appropriate lengths of
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* tone and silence.
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*
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* Inputs: chan - Radio channel number.
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* str - Character string to send.
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* wpm - Speed in words per minute.
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* txdelay - Delay (ms) from PTT to first character.
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* txtail - Delay (ms) from last character to PTT off.
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*
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*
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* Returns: Total number of milliseconds to activate PTT.
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* This includes delays before the first character
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* and after the last to avoid chopping off part of it.
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*
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* Description: xmit_thread calls this instead of the usual hdlc_send
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* when we have a special packet that means send morse
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* code.
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*
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*--------------------------------------------------------------------*/
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int morse_send (int chan, char *str, int wpm, int txdelay, int txtail)
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{
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int time_units;
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char *p;
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time_units = 0;
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morse_quiet_ms (chan, txdelay);
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for (p = str; *p != '\0'; p++) {
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int i;
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i = morse_lookup (*p);
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if (i >= 0) {
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const char *e;
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for (e = morse[i].enc; *e != '\0'; e++) {
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if (*e == '.') {
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morse_tone (chan,1,wpm);
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time_units++;
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}
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else {
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morse_tone (chan,3,wpm);
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time_units += 3;
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}
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if (e[1] != '\0') {
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morse_quiet (chan,1,wpm);
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time_units++;
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}
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}
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}
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else {
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morse_quiet (chan,1,wpm);
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time_units++;
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}
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if (p[1] != '\0') {
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morse_quiet (chan,3,wpm);
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time_units += 3;
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}
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}
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morse_quiet_ms (chan, txtail);
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if (time_units != morse_units_str(str)) {
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dw_printf ("morse: Internal error. Inconsistent length, %d vs. %d calculated.\n",
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time_units, morse_units_str(str));
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}
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audio_flush(ACHAN2ADEV(chan));
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return (txdelay +
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(int) (TIME_UNITS_TO_MS(time_units, wpm) + 0.5) +
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txtail);
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} /* end morse_send */
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/*-------------------------------------------------------------------
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*
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* Name: morse_tone
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*
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* Purpose: Generate tone for specified number of time units.
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*
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* Inputs: chan - Radio channel.
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* tu - Number of time units. Should be 1 or 3.
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* wpm - Speed in WPM.
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*
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*--------------------------------------------------------------------*/
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static void morse_tone (int chan, int tu, int wpm) {
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#if MTEST1
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int n;
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for (n=0; n<tu; n++) {
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dw_printf ("#");
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}
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#else
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int a = ACHAN2ADEV(chan); /* device for channel. */
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int sam;
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int nsamples;
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int j;
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unsigned int tone_phase; // Phase accumulator for tone generation.
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// Upper bits are used as index into sine table.
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int f1_change_per_sample; // How much to advance phase for each audio sample.
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assert (save_audio_config_p->achan[chan].valid);
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tone_phase = 0;
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f1_change_per_sample = (int) (((double)MORSE_TONE * TICKS_PER_CYCLE / (double)save_audio_config_p->adev[a].samples_per_sec ) + 0.5);
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nsamples = (int) ((TIME_UNITS_TO_MS(tu,wpm) * (float)save_audio_config_p->adev[a].samples_per_sec / 1000.) + 0.5);
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for (j=0; j<nsamples; j++) {
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tone_phase += f1_change_per_sample;
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sam = sine_table[(tone_phase >> 24) & 0xff];
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gen_tone_put_sample (chan, a, sam);
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};
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#endif
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} /* end morse_tone */
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/*-------------------------------------------------------------------
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*
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* Name: morse_quiet
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*
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* Purpose: Generate silence for specified number of time units.
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*
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* Inputs: chan - Radio channel.
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* tu - Number of time units.
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* wpm - Speed in WPM.
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*
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*--------------------------------------------------------------------*/
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static void morse_quiet (int chan, int tu, int wpm) {
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#if MTEST1
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int n;
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for (n=0; n<tu; n++) {
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dw_printf (".");
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}
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#else
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int a = ACHAN2ADEV(chan); /* device for channel. */
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int sam = 0;
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int nsamples;
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int j;
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assert (save_audio_config_p->achan[chan].valid);
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nsamples = (int) ((TIME_UNITS_TO_MS(tu,wpm) * (float)save_audio_config_p->adev[a].samples_per_sec / 1000.) + 0.5);
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for (j=0; j<nsamples; j++) {
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gen_tone_put_sample (chan, a, sam);
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};
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#endif
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} /* end morse_quiet */
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/*-------------------------------------------------------------------
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*
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* Name: morse_quiet
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*
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* Purpose: Generate silence for specified number of milliseconds.
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* This is used for the txdelay and txtail times.
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*
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* Inputs: chan - Radio channel.
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* tu - Number of time units.
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*
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*--------------------------------------------------------------------*/
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static void morse_quiet_ms (int chan, int ms) {
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#if MTEST1
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#else
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int a = ACHAN2ADEV(chan); /* device for channel. */
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int sam = 0;
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int nsamples;
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int j;
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assert (save_audio_config_p->achan[chan].valid);
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nsamples = (int) ((ms * (float)save_audio_config_p->adev[a].samples_per_sec / 1000.) + 0.5);
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for (j=0; j<nsamples; j++) {
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gen_tone_put_sample (chan, a, sam);
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};
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#endif
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} /* end morse_quiet_ms */
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/*-------------------------------------------------------------------
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*
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* Name: morse_lookup
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*
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* Purpose: Given a character, find index in table above.
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*
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* Inputs: ch
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*
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* Returns: Index into table above or -1 if not found.
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* Notice that space is not in the table.
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* Any unusual character, that is not in the table,
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* ends up being treated like space.
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*
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*--------------------------------------------------------------------*/
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static int morse_lookup (int ch)
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{
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int i;
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if (islower(ch)) {
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ch = toupper(ch);
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}
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for (i=0; i<NUM_MORSE; i++) {
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if (ch == morse[i].ch) {
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return (i);
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}
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}
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return (-1);
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}
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/*-------------------------------------------------------------------
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*
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* Name: morse_units_ch
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*
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* Purpose: Find number of time units for a character.
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*
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* Inputs: ch
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*
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* Returns: 1 for E (.)
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* 3 for T (-)
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* 3 for I.= (..)
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* etc.
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*
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* The one unexpected result is 1 for space. Why not 7?
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* When a space appears between two other characters,
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* we already have 3 before and after so only 1 more is needed.
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*
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*--------------------------------------------------------------------*/
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static int morse_units_ch (int ch)
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{
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int i;
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int len;
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int k;
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int units;
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i = morse_lookup (ch);
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if (i < 0) {
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return (1); /* space or any invalid character */
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}
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len = strlen(morse[i].enc);
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units = len - 1;
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for (k = 0; k < len; k++) {
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switch (morse[i].enc[k]) {
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case '.': units++; break;
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case '-': units += 3; break;
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default: dw_printf ("ERROR: morse_units_ch: should not be here.\n"); break;
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}
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}
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return (units);
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}
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/*-------------------------------------------------------------------
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*
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* Name: morse_units_str
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*
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* Purpose: Find number of time units for a string of characters.
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*
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* Inputs: str
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*
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* Returns: 1 for E
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* 5 for EE (1 + 3 + 1)
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* 9 for E E (1 + 7 + 1)
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* etc.
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*
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*--------------------------------------------------------------------*/
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static int morse_units_str (char *str)
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{
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//int i;
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int len;
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int k;
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int units;
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len = strlen(str);
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units = (len - 1) * 3;
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for (k = 0; k < len; k++) {
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units += morse_units_ch(str[k]);
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}
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return (units);
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}
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#if MTEST1
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int main (int argc, char *argv[]) {
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dw_printf ("CQ DX\n");
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morse_send (0, "CQ DX", 10, 10, 10);
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dw_printf ("\n\n");
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dw_printf ("wb2osz/9\n");
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morse_send (0, "wb2osz/9", 10, 10, 10);
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dw_printf ("\n\n");
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}
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#endif
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/* end morse.c */
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