mirror of
https://github.com/eried/portapack-mayhem.git
synced 2024-12-20 21:24:22 -05:00
ff54f59d38
* adding ook_file.cpp * aligned GUI, change low_bit to pause, start to use ook_file API * bit duration, pause, fields step, indent * working OOK file loading * revamped GUI with the decided names and units * read, start tx, stop tx in ook_file API * cleanings, using ook_file_data and API to load, save, send, stop tx * renamed text widget * moved set target frequency to start_ook_file_tx function * comments, took out a function to put it in API * removed non working Tesla OOK files * changed space to tab * set author information * Renamed to OOKEditor
159 lines
6.3 KiB
C++
159 lines
6.3 KiB
C++
/*
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* Copyright (C) 2024 gullradriel
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*
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* This file is part of PortaPack.
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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, or (at your option)
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* 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; see the file COPYING. If not, write to
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* the Free Software Foundation, Inc., 51 Franklin Street,
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* Boston, MA 02110-1301, USA.
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*/
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#include "ook_file.hpp"
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using namespace portapack;
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namespace fs = std::filesystem;
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/*
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struct of an OOK file:
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Frequency SampleRate SymbolRate Repeat PauseSymbolDuration Payload
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-Frequency is in hertz
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-SampleRate is one of 250k, 1M, 2M, 5M , 10M ,20M
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-SymbolRate is the number of symbols /s
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-Repeat is the number of times we will repeat the payload
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-PauseSymbolDuration is the duration of the pause between repeat, in usec
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-Payload is the payload in form of a string of 0 and 1
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*/
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bool read_ook_file(const std::filesystem::path& path, ook_file_data& ook_data) {
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File data_file;
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auto open_result = data_file.open(path);
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if (open_result) {
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return false;
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}
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FileLineReader reader(data_file);
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for (const auto& line : reader) {
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// Split the line into segments to extract each value
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size_t first_space = line.find(' ');
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size_t second_space = line.find(' ', first_space + 1);
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size_t third_space = line.find(' ', second_space + 1);
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size_t fourth_space = line.find(' ', third_space + 1);
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size_t fifth_space = line.find(' ', fourth_space + 1);
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// Extract each component of the line
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std::string frequency_str = line.substr(0, first_space);
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std::string sample_rate_str = line.substr(first_space + 1, second_space - first_space - 1);
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std::string symbol_rate_str = line.substr(second_space + 1, third_space - second_space - 1);
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std::string repeat_str = line.substr(third_space + 1, fourth_space - third_space - 1);
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std::string pause_symbol_duration_str = line.substr(fourth_space + 1, fifth_space - fourth_space - 1);
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std::string payload_data = line.substr(fifth_space + 1); // Extract binary payload as final value
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// Convert and assign frequency
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ook_data.frequency = std::stoull(frequency_str);
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// Convert and assign symbol_rate
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ook_data.symbol_rate = static_cast<unsigned int>(atoi(symbol_rate_str.c_str()));
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// Convert and assign repeat count
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ook_data.repeat = static_cast<unsigned int>(atoi(repeat_str.c_str()));
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// Convert and assign pause_symbol_duration
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ook_data.pause_symbol_duration = static_cast<unsigned int>(atoi(pause_symbol_duration_str.c_str()));
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// Select sample rate based on value read from file
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if (sample_rate_str == "250k") {
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ook_data.sample_rate = 250000U;
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} else if (sample_rate_str == "1M") {
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ook_data.sample_rate = 1000000U;
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} else if (sample_rate_str == "2M") {
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ook_data.sample_rate = 2000000U;
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} else if (sample_rate_str == "5M") {
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ook_data.sample_rate = 5000000U;
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} else if (sample_rate_str == "10M") {
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ook_data.sample_rate = 10000000U;
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} else if (sample_rate_str == "20M") {
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ook_data.sample_rate = 20000000U;
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} else {
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return false;
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}
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// Update payload with binary data
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ook_data.payload = std::move(payload_data);
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// Process only the first line
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break;
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}
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return true;
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}
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bool save_ook_file(ook_file_data& ook_data, const std::filesystem::path& path) {
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// delete file if it exists
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delete_file(path);
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// Attempt to open, if it can't be opened. Create new.
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auto src = std::make_unique<File>();
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auto error = src->open(path, false, true);
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if (error) {
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return false;
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}
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std::string sample_rate_str;
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if (ook_data.sample_rate == 250000U) {
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sample_rate_str = "250k";
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} else if (ook_data.sample_rate == 1000000U) {
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sample_rate_str = "1M";
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} else if (ook_data.sample_rate == 2000000U) {
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sample_rate_str = "2M";
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} else if (ook_data.sample_rate == 5000000U) {
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sample_rate_str = "5M";
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} else if (ook_data.sample_rate == 10000000U) {
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sample_rate_str = "10M";
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} else if (ook_data.sample_rate == 20000000U) {
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sample_rate_str = "20M";
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} else {
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return false;
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}
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// write informations
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src->write_line(to_string_dec_uint(ook_data.frequency) + " " +
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sample_rate_str + " " +
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to_string_dec_uint(ook_data.symbol_rate) + " " +
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to_string_dec_uint(ook_data.repeat) + " " +
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to_string_dec_uint(ook_data.pause_symbol_duration) + " " +
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ook_data.payload);
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// Close files
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src.reset();
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return true;
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}
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void start_ook_file_tx(ook_file_data& ook_data) {
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size_t bitstream_length = encoders::make_bitstream(const_cast<std::string&>(ook_data.payload)); // Convert the message into a bitstream
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transmitter_model.set_target_frequency(ook_data.frequency); // Set target frequency
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transmitter_model.set_sampling_rate(ook_data.sample_rate); // Set the OOK sampling rate
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transmitter_model.set_baseband_bandwidth(1750000); // Set the baseband bandwidth
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transmitter_model.enable(); // Enable the transmitter
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// Configure OOK data and transmission characteristics
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baseband::set_ook_data(
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bitstream_length, // Length of the bitstream to transmit
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ook_data.sample_rate / ook_data.symbol_rate, // Calculate symbol period based on repetition rate
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ook_data.repeat, // Set the number of times the whole bitstream is repeated
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ook_data.pause_symbol_duration // Set the pause_symbol between reps
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);
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}
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void stop_ook_file_tx() {
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transmitter_model.disable(); // Disable the transmitter
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}
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