Files
mayhem-firmware/firmware/application/external/tpmsrx/tpms_app.cpp
T
jLynx 15df51f976 TPMS TX Application with Enhanced RX Integration (#3001)
* Add TPMS transmit application with editable fields and update linker script

* Fix formatting in application information structure for TPMS TX

* Implement TPMS recent entry detail view and enhance TPMS TX encoding logic

* Refactor TPMS TX UI layout and streamline packet display updates

* Fix formatting by removing unnecessary blank line in TPMSTXView constructor

* Enhance TPMS transmission logic with signal type handling and update UI components

* Add advanced mode toggle and auto-select signal type based on packet type

* Enhance packet display and encoding logic with protocol-specific notes for temperature and ID handling

* Implement baseband switching logic for TPMS transmission based on signal type

* Implement application-level FSK repeat handling and initialize repeat counter

* Add FSK termination function and improve transmission handling

* Remove unused kill_fsk function and clean up whitespace in TPMS transmission logic

* Add pressure and temperature unit conversion functionality in TPMSTXView

* Add temperature and function field visibility handling in TPMSTXView

* Add signal type handling and improve data loading in TPMSTXView

* Fix formatting of pressure unit string in TPMSRecentEntryDetailView

* Add pressure overflow checks and enhance transponder ID handling in TPMSTXView

* Update application information and change icon color to green in TPMS TX

* Update desired menu position for TPMS TX application
2026-02-17 22:02:27 -08:00

381 lines
12 KiB
C++

/*
* Copyright (C) 2015 Jared Boone, ShareBrained Technology, Inc.
* Copyright (C) 2023 Mark Thompson
*
* This file is part of PortaPack.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2, or (at your option)
* any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; see the file COPYING. If not, write to
* the Free Software Foundation, Inc., 51 Franklin Street,
* Boston, MA 02110-1301, USA.
*/
#include "tpms_app.hpp"
#include "baseband_api.hpp"
#include "audio.hpp"
#include "portapack.hpp"
using namespace portapack;
#include "string_format.hpp"
#include "utility.hpp"
#include "file_path.hpp"
namespace pmem = portapack::persistent_memory;
namespace ui::external_app::tpmsrx {
namespace format {
std::string type(tpms::Reading::Type type) {
return to_string_dec_uint(toUType(type), 2);
}
std::string type_name(tpms::Reading::Type type) {
switch (type) {
case tpms::Reading::Type::None:
return "None";
case tpms::Reading::Type::FLM_64:
return "FLM_64";
case tpms::Reading::Type::FLM_72:
return "FLM_72";
case tpms::Reading::Type::FLM_80:
return "FLM_80";
case tpms::Reading::Type::Schrader:
return "Schrader";
case tpms::Reading::Type::GMC_96:
return "GMC_96";
default:
return "Unknown";
}
}
std::string id(tpms::TransponderID id) {
return to_string_hex(id.value(), 8);
}
std::string pressure(Pressure pressure) {
return to_string_dec_int(pressure_unit == PRESSURE_UNIT_PSI ? pressure.psi() : pressure_unit == PRESSURE_UNIT_BAR ? pressure.bar()
: pressure.kilopascal(),
3);
}
std::string temperature(Temperature temperature) {
return to_string_dec_int(temp_unit == TEMP_UNIT_CELSIUS ? temperature.celsius() : temperature.fahrenheit(), 3);
}
std::string flags(tpms::Flags flags) {
return to_string_hex(flags, 2);
}
static std::string signal_type(tpms::SignalType signal_type) {
switch (signal_type) {
case tpms::SignalType::FSK_19k2_Schrader:
return "FSK 38400 19200 Schrader";
case tpms::SignalType::OOK_8k192_Schrader:
return "OOK - 8192 Schrader";
case tpms::SignalType::OOK_8k4_Schrader:
return "OOK - 8400 Schrader";
default:
return "- - - -";
}
}
} /* namespace format */
void TPMSLogger::on_packet(const tpms::Packet& packet, const uint32_t target_frequency) {
const auto hex_formatted = packet.symbols_formatted();
// TODO: function doesn't take uint64_t, so when >= 1<<32, weirdness will ensue!
const auto target_frequency_str = to_string_dec_uint(target_frequency, 10);
std::string entry = target_frequency_str + " " + ui::external_app::tpmsrx::format::signal_type(packet.signal_type()) + " " + hex_formatted.data + "/" + hex_formatted.errors;
log_file.write_entry(packet.received_at(), entry);
}
const TPMSRecentEntry::Key TPMSRecentEntry::invalid_key = {tpms::Reading::Type::None, 0};
void TPMSRecentEntry::update(const tpms::Reading& reading) {
received_count++;
if (reading.pressure().is_valid()) {
last_pressure = reading.pressure();
}
if (reading.temperature().is_valid()) {
last_temperature = reading.temperature();
}
if (reading.flags().is_valid()) {
last_flags = reading.flags();
}
}
TPMSAppView::TPMSAppView(NavigationView& nav)
: nav_{nav} {
// baseband::run_image(portapack::spi_flash::image_tag_tpms);
baseband::run_prepared_image(portapack::memory::map::m4_code.base());
add_children({&rssi,
&field_volume,
&channel,
&options_band,
&options_pressure,
&options_temperature,
&field_rf_amp,
&field_lna,
&field_vga,
&recent_entries_view});
receiver_model.enable();
options_band.on_change = [this](size_t, OptionsField::value_t v) {
receiver_model.set_target_frequency(v);
};
options_band.set_by_value(receiver_model.target_frequency());
options_pressure.on_change = [this](size_t, int32_t i) {
format::pressure_unit = (uint8_t)i;
update_view();
};
options_pressure.set_by_value(format::pressure_unit);
options_temperature.on_change = [this](size_t, int32_t i) {
format::temp_unit = (uint8_t)i;
update_view();
};
options_temperature.set_by_value(format::temp_unit);
// Add on_select handler for entries
recent_entries_view.on_select = [this](const TPMSRecentEntry& entry) {
on_show_detail(entry);
};
logger = std::make_unique<TPMSLogger>();
if (logger) {
logger->append(logs_dir / u"TPMS.TXT");
}
if (pmem::beep_on_packets()) {
audio::set_rate(audio::Rate::Hz_24000);
audio::output::start();
}
}
TPMSAppView::~TPMSAppView() {
audio::output::stop();
receiver_model.disable();
baseband::shutdown();
}
void TPMSAppView::focus() {
options_band.focus();
}
void TPMSAppView::update_view() {
recent_entries_view.set_parent_rect(view_normal_rect);
}
void TPMSAppView::set_parent_rect(const Rect new_parent_rect) {
View::set_parent_rect(new_parent_rect);
view_normal_rect = {0, header_height, new_parent_rect.width(), new_parent_rect.height() - header_height};
update_view();
}
void TPMSAppView::on_packet(const tpms::Packet& packet) {
if (logger) {
logger->on_packet(packet, receiver_model.target_frequency());
}
const auto reading_opt = packet.reading();
if (reading_opt.is_valid()) {
const auto reading = reading_opt.value();
auto& entry = ::on_packet(recent, TPMSRecentEntry::Key{reading.type(), reading.id()});
entry.update(reading);
entry.signal_type = packet.signal_type();
recent_entries_view.set_dirty();
}
if (pmem::beep_on_packets()) {
baseband::request_audio_beep(1000, 24000, 60);
}
}
void TPMSAppView::on_show_list() {
recent_entries_view.hidden(false);
recent_entries_view.focus();
}
void TPMSAppView::on_show_detail(const TPMSRecentEntry& entry) {
nav_.push<TPMSRecentEntryDetailView>(entry);
}
// Detail view implementation
TPMSRecentEntryDetailView::TPMSRecentEntryDetailView(NavigationView& nav, const TPMSRecentEntry& entry)
: nav_{nav},
entry_{entry} {
add_children({&labels,
&text_type,
&text_id,
&text_pressure,
&text_temperature,
&text_flags,
&text_count,
&button_done,
&button_save});
// Display entry data
text_type.set(format::type_name(entry.type));
text_id.set(to_string_hex(entry.id.value(), 8));
if (entry.last_pressure.is_valid()) {
std::string pressure_str = format::pressure(entry.last_pressure.value());
std::string unit_str = format::pressure_unit == PRESSURE_UNIT_PSI ? " PSI" : format::pressure_unit == PRESSURE_UNIT_BAR ? " BAR"
: " kPa";
text_pressure.set(pressure_str + unit_str);
} else {
text_pressure.set("---");
}
if (entry.last_temperature.is_valid()) {
text_temperature.set(to_string_dec_int(entry.last_temperature.value().celsius(), 3) + " C");
} else {
text_temperature.set("---");
}
if (entry.last_flags.is_valid()) {
text_flags.set(to_string_hex(entry.last_flags.value(), 2));
} else {
text_flags.set("--");
}
text_count.set(to_string_dec_uint(entry.received_count, 4));
button_done.on_select = [&nav](Button&) {
nav.pop();
};
button_save.on_select = [this](Button&) {
on_save();
};
}
void TPMSRecentEntryDetailView::focus() {
button_done.focus();
}
void TPMSRecentEntryDetailView::set_entry(const TPMSRecentEntry& entry) {
entry_ = entry;
}
void TPMSRecentEntryDetailView::on_save() {
auto timestamp = to_string_timestamp(rtc_time::now());
std::string file_name = "TPMS_" + timestamp + ".TXT";
ensure_directory(tpms_dir);
auto file_path = tpms_dir / file_name;
if (save_file(file_path)) {
nav_.display_modal("Saved", "Packet saved to:\n" + file_name);
} else {
nav_.display_modal("Error", "Failed to save\npacket");
}
}
bool TPMSRecentEntryDetailView::save_file(const std::filesystem::path& path) {
File f;
auto error = f.create(path);
if (error.is_valid())
return false;
// Save in format compatible with TX app
std::string content = "Type=" + to_string_dec_uint(toUType(entry_.type), 1) + "\n";
content += "ID=" + to_string_hex(entry_.id.value(), 8) + "\n";
if (entry_.last_pressure.is_valid()) {
content += "Pressure=" + to_string_dec_int(entry_.last_pressure.value().kilopascal(), 1) + "\n";
} else {
content += "Pressure=240\n"; // Default value
}
if (entry_.last_temperature.is_valid()) {
content += "Temperature=" + to_string_dec_int(entry_.last_temperature.value().celsius(), 1) + "\n";
} else {
content += "Temperature=25\n"; // Default value
}
if (entry_.last_flags.is_valid()) {
content += "Flags=" + to_string_hex(entry_.last_flags.value(), 2) + "\n";
} else {
content += "Flags=00\n";
}
// Save signal type for proper retransmission
content += "SignalType=" + to_string_dec_uint(toUType(entry_.signal_type), 1) + "\n";
f.write(content.c_str(), content.length());
return true;
}
} // namespace ui::external_app::tpmsrx
namespace ui {
template <>
void RecentEntriesTable<ui::external_app::tpmsrx::TPMSRecentEntries>::draw(
const Entry& entry,
const Rect& target_rect,
Painter& painter,
const Style& style,
RecentEntriesColumns& columns) {
std::string line = ui::external_app::tpmsrx::format::type(entry.type) + " ";
std::string lid = ui::external_app::tpmsrx::format::id(entry.id);
lid.resize(columns.at(1).second, ' ');
line += lid;
if (entry.last_pressure.is_valid()) {
line += " " + ui::external_app::tpmsrx::format::pressure(entry.last_pressure.value());
} else {
line +=
" "
" ";
}
if (entry.last_temperature.is_valid()) {
line += " " + ui::external_app::tpmsrx::format::temperature(entry.last_temperature.value());
} else {
line +=
" "
" ";
}
if (entry.received_count > 999) {
line += " +++";
} else {
line += " " + to_string_dec_uint(entry.received_count, 3);
}
if (entry.last_flags.is_valid()) {
line += " " + ui::external_app::tpmsrx::format::flags(entry.last_flags.value());
} else {
line +=
" "
" ";
}
line.resize(target_rect.width() / 8, ' ');
painter.draw_string(target_rect.location(), style, line);
}
} // namespace ui