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14 Commits

Author SHA1 Message Date
Mark Thompson a4f6bbda5e Fix compiler warning (#1827)
* Fix compiler warning

* Fix compiler warning

* Friggin C-lang
2024-01-29 18:07:32 -06:00
Totoo 8b2598fdac Call the flasher app when flashing from serial (#1825) 2024-01-29 20:52:35 +01:00
sommermoregentraum c36fe78bd5 pacman: cheat lifes and cheat skip level (#1821)
cheat lives and cheat skip level and fixed review issue. Thanks @NotherNgineer
2024-01-29 00:54:13 +08:00
Mark Thompson bd8385464e Tuner code readability (no functional change) (#1820) 2024-01-28 10:02:11 -06:00
Totoo 8c996b5bc6 Embedded friendly usb (#1817) 2024-01-27 19:33:08 +01:00
Mark Thompson d1901939e1 Fix tuning of 2170-2300 and 2700-2740 MHz (#1819) 2024-01-27 13:30:32 +01:00
Mark Thompson 41ec11fb66 Check app checksums during untar (#1815) 2024-01-27 13:29:24 +01:00
Mark Thompson df47490d85 Allow 3 boot failures before Config Mode starts (#1816)
* Allow 3 boot attempts before Config Mode starts

* Add files via upload
2024-01-26 21:02:52 +13:00
Totoo a2f6d14b15 ISS for aprs, for the request #1810 (#1814) 2024-01-25 21:10:43 +01:00
Mark Thompson 6a6c6d6502 Add Checksums to Firmware & External App images (#1809)
* Pad image to 1MB and add simple checksum

* Test code to verify firmware checksum

* Comment out unneeded zlib

* Add files via upload

* Print space remaining in ROM

* Append checksum to external apps too

* Check external app checksums when loading

* Is it 2024 already?!

* Validate firmware checksum before flashing

* Add files via upload

* Added flash error warning to nav screen

* Clang

* Replaced some hard-coded values with #defines

* Check FW checksum before USB serial flash too

* Add files via upload
2024-01-24 16:37:21 -06:00
Mark Thompson 2d98c5d311 Resolve Soundboard tone key issue (#1806)
* Resolve Soundboard tone key issue
2024-01-23 20:53:04 +01:00
sommermoregentraum 03b13f8ab0 prevent crash when nothing to broadcast in soundbrd app (#1807)
* prevent crash when nothing to broadcast in soundbrd app

* format
2024-01-22 22:15:37 -06:00
E.T 6e74ad942f Gh workflow changelog formatting fix (#1803)
* Remove replacement of newlines with hex codes

Assuming that its unnecessary as we are no longer outputting these via stdout but pipe it into some binary that could handle newlines in its stdin therefore don't need and support this transformation

* Attempt 2 after reading gh docs :D

* Fix changelog for stable release too
2024-01-22 10:50:14 +01:00
Mark Thompson 0f85f247b6 Fix rounding bug when displaying frequencies (#1801) 2024-01-22 07:54:29 +01:00
41 changed files with 469 additions and 160 deletions
+5 -5
View File
@@ -71,11 +71,11 @@ jobs:
env:
GH_TOKEN: ${{ secrets.GITHUB_TOKEN }}
run: |
CHANGELOG=$(python3 .github/workflows/changelog.py)
CHANGELOG="${CHANGELOG//'%'/'%25'}"
CHANGELOG="${CHANGELOG//$'\n'/'%0A'}"
CHANGELOG="${CHANGELOG//$'\r'/'%0D'}"
echo "content=$CHANGELOG" >> $GITHUB_OUTPUT
{
echo 'content<<EOF'
python3 .github/workflows/changelog.py
echo EOF
} >> "$GITHUB_OUTPUT"
id: changelog
- name: Create Release
id: create_release
+5 -5
View File
@@ -55,11 +55,11 @@ jobs:
env:
GH_TOKEN: ${{ secrets.GITHUB_TOKEN }}
run: |
CHANGELOG=$(python3 .github/workflows/changelog.py ${{ steps.past_version.outputs.past_version }})
CHANGELOG="${CHANGELOG//'%'/'%25'}"
CHANGELOG="${CHANGELOG//$'\n'/'%0A'}"
CHANGELOG="${CHANGELOG//$'\r'/'%0D'}"
echo "content=$CHANGELOG" >> $GITHUB_OUTPUT
{
echo 'content<<EOF'
python3 .github/workflows/changelog.py ${{ steps.past_version.outputs.past_version }}
echo EOF
} >> "$GITHUB_OUTPUT"
id: changelog
- name: Create Release
id: create_release
+18 -3
View File
@@ -80,7 +80,13 @@ void SoundBoardView::file_error() {
}
void SoundBoardView::start_tx(const uint32_t id) {
if (file_list.empty()) {
file_error();
return;
}
auto reader = std::make_unique<WAVFileReader>();
uint32_t tone_key_index = options_tone_key.selected_index();
uint32_t sample_rate;
@@ -110,11 +116,11 @@ void SoundBoardView::start_tx(const uint32_t id) {
// TODO: Delete all this and use tx model.
baseband::set_audiotx_config(
1536000 / 20, // Update vu-meter at 20Hz
TONES_SAMPLERATE / 20, // Update vu-meter at 20Hz
transmitter_model.channel_bandwidth(),
0, // Gain is unused
8, // shift_bits_s16, default 8 bits, but also unused
TONES_F2D(tone_key_frequency(tone_key_index), 1536000),
TONES_F2D(tone_key_frequency(tone_key_index), TONES_SAMPLERATE),
0, // AM
0, // DSB
0, // USB
@@ -126,7 +132,8 @@ void SoundBoardView::start_tx(const uint32_t id) {
tx_view.set_transmitting(true);
audio::output::start();
if (tone_key_index == 0)
audio::output::start();
}
/*void SoundBoardView::show_infos() {
@@ -232,6 +239,7 @@ SoundBoardView::SoundBoardView(
//&text_duration,
//&progressbar,
&field_volume,
&text_volume_disabled,
&page_info,
&check_loop,
&check_random,
@@ -257,6 +265,13 @@ SoundBoardView::SoundBoardView(
tone_keys_populate(options_tone_key);
options_tone_key.set_selected_index(0);
text_volume_disabled.hidden(true);
options_tone_key.on_change = [this](size_t index, OptionsField::value_t) {
bool tone_key_enabled = (index != 0);
text_volume_disabled.hidden(!tone_key_enabled);
field_volume.hidden(tone_key_enabled);
};
check_loop.set_value(false);
check_random.set_value(false);
@@ -128,6 +128,9 @@ class SoundBoardView : public View {
AudioVolumeField field_volume{
{28 * 8, 180}};
Text text_volume_disabled{
{28 * 8, 180, 3 * 8, 16},
"--"};
Checkbox check_loop{
{0, 25 * 8 + 4},
+2
View File
@@ -101,6 +101,8 @@ APRSRxView::APRSRxView(NavigationView& nav, Rect parent_rect)
field_frequency.set_value(145175000);
} else if (i == 3) {
field_frequency.set_value(144575000);
} else if (i == 4) {
field_frequency.set_value(145825000);
}
};
+2 -1
View File
@@ -221,7 +221,8 @@ class APRSRxView : public View {
{{"NA ", 0},
{"EUR", 1},
{"AUS", 2},
{"NZ ", 3}}};
{"NZ ", 3},
{"ISS", 4}}};
RxFrequencyField field_frequency{
{3 * 8, 0 * 16},
+37 -12
View File
@@ -21,6 +21,7 @@
*/
#include "ui_flash_utility.hpp"
#include "ui_styles.hpp"
#include "portapack_shared_memory.hpp"
namespace ui {
@@ -30,6 +31,30 @@ static const char16_t* firmware_folder = u"/FIRMWARE";
Thread* FlashUtilityView::thread{nullptr};
static constexpr size_t max_filename_length = 26;
bool valid_firmware_file(std::filesystem::path::string_type path) {
File firmware_file;
uint32_t read_buffer[128];
uint32_t checksum{(uint32_t)~FLASH_EXPECTED_CHECKSUM}; // initializing to invalid checksum in case file can't be read
// test read of the whole file just to validate checksum (baseband flash code will re-read when flashing)
auto result = firmware_file.open(path.c_str());
if (!result.is_valid()) {
checksum = 0;
for (uint32_t i = 0; i < FLASH_ROM_SIZE / sizeof(read_buffer); i++) {
auto readResult = firmware_file.read(&read_buffer, sizeof(read_buffer));
// if file is smaller than 1MB, assume it's a downgrade to an old FW version and ignore the checksum
if ((!readResult) || (readResult.value() != sizeof(read_buffer))) {
checksum = FLASH_EXPECTED_CHECKSUM;
break;
}
checksum += simple_checksum((uint32_t)read_buffer, sizeof(read_buffer));
}
}
return (checksum == FLASH_EXPECTED_CHECKSUM);
}
FlashUtilityView::FlashUtilityView(NavigationView& nav)
: nav_(nav) {
add_children({&labels,
@@ -85,9 +110,8 @@ bool FlashUtilityView::endsWith(const std::u16string& str, const std::u16string&
}
}
std::filesystem::path FlashUtilityView::extract_tar(std::filesystem::path::string_type path) {
std::filesystem::path FlashUtilityView::extract_tar(std::filesystem::path::string_type path, ui::Painter& painter) {
//
ui::Painter painter;
painter.fill_rectangle(
{0, 0, portapack::display.width(), portapack::display.height()},
ui::Color::black());
@@ -98,22 +122,22 @@ std::filesystem::path FlashUtilityView::extract_tar(std::filesystem::path::strin
painter.fill_rectangle({0, 50, portapack::display.width(), 90}, ui::Color::black());
painter.draw_string({0, 60}, this->nav_.style(), fileName);
});
if (res.string().empty()) {
ui::Painter painter;
painter.fill_rectangle({0, 50, portapack::display.width(), 90}, ui::Color::black());
painter.draw_string({0, 60}, this->nav_.style(), "BAD TAR FILE");
chThdSleepMilliseconds(5000);
}
return res;
}
void FlashUtilityView::flash_firmware(std::filesystem::path::string_type path) {
bool FlashUtilityView::flash_firmware(std::filesystem::path::string_type path) {
ui::Painter painter;
if (endsWith(path, u".tar")) {
// extract, then update
path = extract_tar(u'/' + path).native();
if (path.empty()) return;
path = extract_tar(u'/' + path, painter).native();
}
if (path.empty() || !valid_firmware_file(path.c_str())) {
painter.fill_rectangle({0, 50, portapack::display.width(), 90}, ui::Color::black());
painter.draw_string({0, 60}, Styles::red, "BAD FIRMWARE FILE");
chThdSleepMilliseconds(5000);
return false;
}
ui::Painter painter;
painter.fill_rectangle(
{0, 0, portapack::display.width(), portapack::display.height()},
ui::Color::black());
@@ -126,6 +150,7 @@ void FlashUtilityView::flash_firmware(std::filesystem::path::string_type path) {
std::memcpy(&shared_memory.bb_data.data[0], path.c_str(), (path.length() + 1) * 2);
m4_init(portapack::spi_flash::image_tag_flash_utility, portapack::memory::map::m4_code, false);
m0_halt();
return true; // fixes compiler warning (line should not be reached due to halt)
}
void FlashUtilityView::focus() {
@@ -32,8 +32,14 @@
#include "untar.hpp"
#include <cstdint>
#define FLASH_ROM_SIZE 1048576
#define FLASH_STARTING_ADDRESS 0x00000000
#define FLASH_EXPECTED_CHECKSUM 0x00000000
namespace ui {
bool valid_firmware_file(std::filesystem::path::string_type path);
class FlashUtilityView : public View {
public:
FlashUtilityView(NavigationView& nav);
@@ -41,6 +47,7 @@ class FlashUtilityView : public View {
void focus() override;
std::string title() const override { return "Flash Utility"; };
bool flash_firmware(std::filesystem::path::string_type path);
private:
NavigationView& nav_;
@@ -55,9 +62,9 @@ class FlashUtilityView : public View {
{0, 2 * 8, 240, 26 * 8},
true};
std::filesystem::path extract_tar(std::filesystem::path::string_type path); // extracts the tar file, and returns the firmware.bin path from it. empty string if no fw
std::filesystem::path extract_tar(std::filesystem::path::string_type path, ui::Painter& painter); // extracts the tar file, and returns the firmware.bin path from it. empty string if no fw
void firmware_selected(std::filesystem::path::string_type path);
void flash_firmware(std::filesystem::path::string_type path);
bool endsWith(const std::u16string& str, const std::u16string& suffix);
};
+7 -2
View File
@@ -27,14 +27,19 @@
void config_mode_blink_until_dfu();
void config_mode_set() {
portapack::persistent_memory::set_config_mode_storage_direct(CONFIG_MODE_GUARD_VALUE);
uint32_t cms = portapack::persistent_memory::config_mode_storage_direct();
if ((cms >= CONFIG_MODE_GUARD_VALUE) && (cms < CONFIG_MODE_LIMIT_VALUE))
cms += 1;
else
cms = CONFIG_MODE_GUARD_VALUE;
portapack::persistent_memory::set_config_mode_storage_direct(cms);
}
bool config_mode_should_enter() {
if (portapack::persistent_memory::config_disable_config_mode_direct())
return false;
else
return portapack::persistent_memory::config_mode_storage_direct() == CONFIG_MODE_GUARD_VALUE;
return portapack::persistent_memory::config_mode_storage_direct() == CONFIG_MODE_LIMIT_VALUE;
}
void config_mode_clear() {
+7
View File
@@ -28,6 +28,13 @@
#include "portapack_shared_memory.hpp"
#include "portapack_persistent_memory.hpp"
// number of boot failures before entering config menu mode
#define BOOT_FAILURES_BEFORE_CONFIG_MODE 3
#define CONFIG_MODE_GUARD_VALUE 0xbadb0000
#define CONFIG_MODE_LIMIT_VALUE (CONFIG_MODE_GUARD_VALUE + BOOT_FAILURES_BEFORE_CONFIG_MODE - 1)
#define CONFIG_MODE_NORMAL_VALUE 0x000007cf
void config_mode_set();
bool config_mode_should_enter();
void config_mode_clear();
+60 -15
View File
@@ -13,8 +13,8 @@ typedef uint8_t byte;
typedef uint32_t word;
byte SPEED = 2;
byte MAXLIFES = 5;
byte LIFES = START_LIFES;
byte MAXLIFES = 20;
size_t LIFES = START_LIFES;
byte GAMEWIN = 0;
byte GAMEOVER = 0;
byte DEMO = 1;
@@ -25,6 +25,9 @@ byte GAMEPAUSED = 0;
byte PACMANFALLBACK = 0;
bool cheat_level = false;
bool cheat_lifes = false;
#include "DrawIndexedMap.h"
/******************************************************************************/
@@ -901,14 +904,15 @@ class Playfield {
void PackmanDied() { // Noooo... PACMAN DIED :(
if (LIFES <= 0) {
if (LIFES <= 0 && !cheat_lifes) {
GAMEOVER = 1;
LEVEL = START_LEVEL;
LIFES = START_LIFES;
DEMO = 1;
Init();
} else {
LIFES--;
if (!cheat_lifes)
LIFES--;
_inited = true;
_state = ReadyState;
@@ -934,8 +938,14 @@ class Playfield {
_icons[13 - i] = BONUSICON + i;
}
for (byte i = 0; i < LIFES; i++) {
_icons[0 + i] = PACMANICON;
if (!cheat_lifes) {
for (byte i = 0; i < LIFES; i++) {
_icons[0 + i] = PACMANICON;
}
} else {
for (byte i = 0; i < 14; i++) {
_icons[0 + i] = PACMANICON;
}
}
// Draw LIFE and BONUS Icons
@@ -1177,8 +1187,13 @@ class Playfield {
if (GAMEWIN == 1) {
GAMEWIN = 0;
} else {
LEVEL = START_LEVEL;
LIFES = START_LIFES;
if (!cheat_level) {
LEVEL = START_LEVEL;
}
if (!cheat_lifes) {
LIFES = START_LIFES;
}
ACTUALBONUS = 0; // actual bonus icon
ACTIVEBONUS = 0; // status of bonus
@@ -1215,8 +1230,14 @@ class Playfield {
}
// SET Lifes icons
for (byte i = 0; i < LIFES; i++) {
_icons[0 + i] = PACMANICON;
if (cheat_lifes) {
for (byte i = 0; i < 14; i++) { // cuz 14 lives full fills PP's screen
_icons[0 + i] = PACMANICON;
}
} else {
for (byte i = 0; i < LIFES; i++) {
_icons[0 + i] = PACMANICON;
}
}
// Draw LIFE and BONUS Icons
@@ -1243,21 +1264,45 @@ class Playfield {
}
void Step() {
int16_t keys = 0;
if (GAMEWIN == 1) {
cheat_level = false;
cheat_lifes = false;
LEVEL++;
Init();
}
// Start GAME
if (but_A && DEMO == 1 && GAMEPAUSED == 0) {
if (but_A && DEMO == 1 && GAMEPAUSED == 0) { // start
but_A = false;
DEMO = 0;
Init();
} else if (but_A && DEMO == 0 && GAMEPAUSED == 0) { // Or PAUSE GAME
DEMO = 0;
} else if (but_A && DEMO == 0 && GAMEPAUSED == 0) { // pause
but_A = false;
GAMEPAUSED = 1;
} else if (but_LEFT && DEMO == 1 && GAMEPAUSED == 0) { // -level
cheat_level = true;
but_LEFT = false;
if (LEVEL > 1) {
LEVEL--;
}
Init();
} else if (but_RIGHT && DEMO == 1 && GAMEPAUSED == 0) { // +level
cheat_level = true;
but_RIGHT = false;
if (LEVEL < 255) {
LEVEL++;
}
Init();
} else if (but_UP && DEMO == 1 && GAMEPAUSED == 0) { // full of lifes
cheat_lifes = true;
but_UP = false;
Init();
} else if (but_DOWN && DEMO == 1 && GAMEPAUSED == 0) { // reset
cheat_level = false;
cheat_lifes = false;
but_DOWN = false;
LIFES = START_LIFES;
Init();
}
if (GAMEPAUSED && but_A && DEMO == 0) {
+2 -7
View File
@@ -33,10 +33,10 @@ namespace max283x {
namespace lo {
constexpr std::array<rf::FrequencyRange, 4> band{{
{2300000000, 2400000000},
{2170000000, 2400000000},
{2400000000, 2500000000},
{2500000000, 2600000000},
{2600000000, 2700000000},
{2600000000, 2740000000},
}};
} /* namespace lo */
@@ -48,11 +48,6 @@ namespace lna {
constexpr range_t<int8_t> gain_db_range{0, 40};
constexpr int8_t gain_db_step = 8;
constexpr std::array<rf::FrequencyRange, 2> band{{
{2300000000, 2500000000},
{2500000000, 2700000000},
}};
} /* namespace lna */
/*************************************************************************/
+2
View File
@@ -184,11 +184,13 @@ bool set_tuning_frequency(const rf::Frequency frequency) {
if (tuning_config.is_valid()) {
first_if.disable();
// Program first local oscillator frequency (if there is one) into RFFC507x
if (tuning_config.first_lo_frequency) {
first_if.set_frequency(tuning_config.first_lo_frequency);
first_if.enable();
}
// Program second local oscillator frequency into MAX283x
const auto result_second_if = second_if->set_frequency(tuning_config.second_lo_frequency);
rf_path.set_band(tuning_config.rf_path_band);
+2 -2
View File
@@ -39,8 +39,8 @@ enum class Direction {
namespace path {
constexpr FrequencyRange band_low{0, 2170000000};
constexpr FrequencyRange band_high{2740000000, 7250000000};
constexpr FrequencyRange band_low{0, 2170'000'000};
constexpr FrequencyRange band_high{2740'000'000, 7250'000'000};
constexpr FrequencyRange band_mid{band_low.maximum, band_high.minimum};
enum class Band {
+2 -2
View File
@@ -185,7 +185,7 @@ std::string to_string_freq(const uint64_t f) {
// right-justified frequency in MHz, rounded to 4 decimal places, always 9 characters
std::string to_string_short_freq(const uint64_t f) {
auto final_str = to_string_dec_int(f / 1000000, 4) + "." + to_string_dec_int(((f + 50) / 100) % 10000, 4, '0');
auto final_str = to_string_dec_int((f + 50) / 1000000, 4) + "." + to_string_dec_int(((f + 50) / 100) % 10000, 4, '0');
return final_str;
}
@@ -210,7 +210,7 @@ std::string to_string_rounded_freq(const uint64_t f, int8_t precision) {
uint32_t divisor = pow10[6 - precision];
final_str = to_string_dec_uint(f / 1000000) + "." + to_string_dec_int(((f + (divisor / 2)) / divisor) % pow10[precision], precision, '0');
final_str = to_string_dec_uint((f + (divisor / 2)) / 1000000) + "." + to_string_dec_int(((f + (divisor / 2)) / divisor) % pow10[precision], precision, '0');
}
return final_str;
}
+1 -1
View File
@@ -85,7 +85,7 @@ const tone_key_t tone_keys = {
{"Senn. 32.768k", F2Ix100(32768.0)}};
std::string fx100_string(uint32_t f) {
return to_string_dec_uint(f / 100) + "." + to_string_dec_uint(((f + 5) / 10) % 10);
return to_string_dec_uint((f + 5) / 100) + "." + to_string_dec_uint(((f + 5) / 10) % 10);
}
float tone_key_frequency(tone_index index) {
+21 -22
View File
@@ -26,44 +26,43 @@
namespace tuning {
namespace config {
namespace {
// Low band <2170 Mhz:
constexpr rf::Frequency low_band_second_lo_frequency(const rf::Frequency target_frequency) {
return 2650000000 - (target_frequency / 7);
}
constexpr rf::Frequency high_band_second_lo_regions_2_and_3(const rf::Frequency target_frequency) {
return (target_frequency < 5100000000)
? (2350000000 + ((target_frequency - 3600000000) / 5))
: (2500000000 + ((target_frequency - 5100000000) / 9));
}
constexpr rf::Frequency high_band_second_lo_frequency(const rf::Frequency target_frequency) {
return (target_frequency < 3600000000)
? (2170000000 + (((target_frequency - 2740000000) * 57) / 86))
: high_band_second_lo_regions_2_and_3(target_frequency);
return 2650'000'000 - (target_frequency / 7);
}
Config low_band(const rf::Frequency target_frequency) {
const rf::Frequency first_lo_frequency = target_frequency + low_band_second_lo_frequency(target_frequency);
const rf::Frequency second_lo_frequency = first_lo_frequency - target_frequency;
const rf::Frequency second_lo_frequency = low_band_second_lo_frequency(target_frequency);
const rf::Frequency first_lo_frequency = target_frequency + second_lo_frequency;
const bool mixer_invert = true;
return {first_lo_frequency, second_lo_frequency, rf::path::Band::Low, mixer_invert};
}
// Mid band 2170-2740 Mhz:
Config mid_band(const rf::Frequency target_frequency) {
return {0, target_frequency, rf::path::Band::Mid, false};
const rf::Frequency second_lo_frequency = target_frequency;
const rf::Frequency first_lo_frequency = 0;
const bool mixer_invert = false;
return {first_lo_frequency, second_lo_frequency, rf::path::Band::Mid, mixer_invert};
}
// High band >2740 Mhz:
constexpr rf::Frequency high_band_second_lo_frequency(const rf::Frequency target_frequency) {
if (target_frequency < 3600'000'000)
return (2170'000'000 + (((target_frequency - 2740'000'000) * 57) / 86));
else if (target_frequency < 5100'000'000)
return (2350'000'000 + ((target_frequency - 3600'000'000) / 5));
else
return (2500'000'000 + ((target_frequency - 5100'000'000) / 9));
}
Config high_band(const rf::Frequency target_frequency) {
const rf::Frequency first_lo_frequency = target_frequency - high_band_second_lo_frequency(target_frequency);
const rf::Frequency second_lo_frequency = target_frequency - first_lo_frequency;
const rf::Frequency second_lo_frequency = high_band_second_lo_frequency(target_frequency);
const rf::Frequency first_lo_frequency = target_frequency - second_lo_frequency;
const bool mixer_invert = false;
return {first_lo_frequency, second_lo_frequency, rf::path::Band::High, mixer_invert};
}
} /* namespace */
Config create(const rf::Frequency target_frequency) {
/* TODO: This is some lame code. */
if (rf::path::band_low.contains(target_frequency)) {
+2 -1
View File
@@ -498,12 +498,13 @@ void GeoMap::draw_scale(Painter& painter) {
if (m < 1000) {
km_string = to_string_dec_uint(m) + "m";
} else {
m += 50; // (add rounding factor for div by 100 below)
uint32_t km = m / 1000;
m -= km * 1000;
if (m == 0) {
km_string = to_string_dec_uint(km) + " km";
} else {
km_string = to_string_dec_uint(km) + "." + to_string_dec_uint((m + 50) / 100, 1) + "km";
km_string = to_string_dec_uint(km) + "." + to_string_dec_uint(m / 100, 1) + "km";
}
}
@@ -107,6 +107,7 @@ namespace ui {
/* static */ bool ExternalItemsMenuLoader::run_external_app(ui::NavigationView& nav, std::filesystem::path filePath) {
File app;
uint32_t checksum{0};
auto openError = app.open(filePath);
if (openError)
@@ -115,7 +116,6 @@ namespace ui {
application_information_t application_information = {};
auto readResult = app.read(&application_information, sizeof(application_information_t));
if (!readResult)
return false;
@@ -135,6 +135,8 @@ namespace ui {
if (!readResult)
return false;
checksum += simple_checksum((uint32_t)&application_information.memory_location[file_read_index], readResult.value());
if (readResult.value() < std::filesystem::max_file_block_size)
break;
}
@@ -156,6 +158,8 @@ namespace ui {
if (!readResult)
return false;
checksum += simple_checksum((uint32_t)target_memory, readResult.value());
if (readResult.value() != bytes_to_read)
break;
}
@@ -168,11 +172,16 @@ namespace ui {
if (!readResult)
return false;
checksum += simple_checksum((uint32_t)&application_information.memory_location[file_read_index], readResult.value());
if (readResult.value() < std::filesystem::max_file_block_size)
break;
}
}
if (checksum != EXT_APP_EXPECTED_CHECKSUM)
return false;
application_information.externalAppEntry(nav);
return true;
}
@@ -29,6 +29,8 @@
#include "file.hpp"
#define EXT_APP_EXPECTED_CHECKSUM 0x00000000
namespace ui {
template <size_t Width, size_t Height>
+19 -8
View File
@@ -503,8 +503,8 @@ void SystemStatusView::rtc_battery_workaround() {
month = (timestamp.FAT_date >> 5) & 0xF;
day = timestamp.FAT_date & 0x1F;
// bump to next month at 28 days for simplicity
if (++day > 28) {
// bump to next month
if (++day > rtc_time::days_per_month(year, month)) {
day = 1;
if (++month > 12) {
month = 1;
@@ -547,16 +547,16 @@ InformationView::InformationView(
&ltime});
#if GCC_VERSION_MISMATCH
static constexpr Style style_gcc_warning{
.font = font::fixed_8x16,
.background = {33, 33, 33},
.foreground = Color::yellow(),
};
version.set_style(&style_gcc_warning);
version.set_style(&Styles::yellow);
#else
version.set_style(&style_infobar);
#endif
if (firmware_checksum_error()) {
version.set("FLASH ERROR");
version.set_style(&Styles::red);
}
ltime.set_style(&style_infobar);
refresh();
set_dirty();
@@ -568,6 +568,17 @@ void InformationView::refresh() {
ltime.set_date_enabled(pmem::clock_with_date());
}
bool InformationView::firmware_checksum_error() {
static bool fw_checksum_checked{false};
static bool fw_checksum_error{false};
// only checking firmware checksum once per boot
if (!fw_checksum_checked) {
fw_checksum_error = (simple_checksum(FLASH_STARTING_ADDRESS, FLASH_ROM_SIZE) != FLASH_EXPECTED_CHECKSUM);
}
return fw_checksum_error;
}
/* Navigation ************************************************************/
bool NavigationView::is_top() const {
+1
View File
@@ -286,6 +286,7 @@ class InformationView : public View {
public:
InformationView(NavigationView& nav);
void refresh();
bool firmware_checksum_error();
private:
// static constexpr auto version_string = "v1.4.4"; // This is commented out as we are now setting the version via ENV (VERSION_STRING=v1.0.0)
+2 -2
View File
@@ -118,7 +118,7 @@ uint8_t usb_descriptor_configuration_full_speed[] = {
USB_INT_IN_EP_ADDR, // bEndpointAddress
0x03, // bmAttributes: BULK
USB_WORD(16), // wMaxPacketSize
0xFF, // bInterval: no NAK
0x20, // bInterval: no NAK
9, // bLength
USB_DESCRIPTOR_TYPE_INTERFACE, // bDescriptorType
@@ -203,7 +203,7 @@ uint8_t usb_descriptor_configuration_high_speed[] = {
USB_INT_IN_EP_ADDR, // bEndpointAddress
0x03, // bmAttributes: BULK
USB_WORD(16), // wMaxPacketSize
0xFF, // bInterval: no NAK
0x20, // bInterval: no NAK
9, // bLength
USB_DESCRIPTOR_TYPE_INTERFACE, // bDescriptorType
+9 -32
View File
@@ -41,6 +41,7 @@
#include "chprintf.h"
#include "chqueues.h"
#include "ui_external_items_menu_loader.hpp"
#include "ui_flash_utility.hpp"
#include "untar.hpp"
#include "ui_widget.hpp"
@@ -151,39 +152,15 @@ static void cmd_flash(BaseSequentialStream* chp, int argc, char* argv[]) {
if (!top_widget) return;
auto nav = static_cast<ui::SystemView*>(top_widget)->get_navigation_view();
if (!nav) return;
nav->display_modal("Flashing", "Flashing from serial.\r\nPlease wait!\r\nDevice will restart.");
// check file extensions
if (strEndsWith(path.native(), u".ppfw.tar")) {
// extract tar
chprintf(chp, "Extracting TAR file.\r\n");
auto res = UnTar::untar(
path.native(), [chp](const std::string fileName) {
chprintf(chp, fileName.c_str());
chprintf(chp, "\r\n");
});
if (res.empty()) {
chprintf(chp, "error bad TAR file.\r\n");
nav->pop();
return;
}
path = res; // it will contain the last bin file in tar
} else if (strEndsWith(path.native(), u".bin")) {
// nothing to do for this case yet.
} else {
chprintf(chp, "error only .bin or .ppfw.tar files canbe flashed.\r\n");
nav->pop();
return;
}
nav->home(false);
chprintf(chp, "Flashing: ");
chprintf(chp, path.string().c_str());
chprintf(chp, "\r\n");
chThdSleepMilliseconds(50);
std::memcpy(&shared_memory.bb_data.data[0], path.native().c_str(), (path.native().length() + 1) * 2);
m4_request_shutdown();
chThdSleepMilliseconds(50);
m4_init(portapack::spi_flash::image_tag_flash_utility, portapack::memory::map::m4_code, false);
m0_halt();
// call nav with flash
auto open_view = nav->push<ui::FlashUtilityView>();
chprintf(chp, "Flashing started\r\n");
chThdSleepMilliseconds(150); // to give display some time to paint the screen
if (!open_view->flash_firmware(path.native())) {
chprintf(chp, "error\r\n");
}
}
static void cmd_screenshot(BaseSequentialStream* chp, int argc, char* argv[]) {
+6 -3
View File
@@ -215,9 +215,12 @@ void disable() {
gpdma_channel_i2s0_rx.disable();
}
void shrink_tx_buffer() {
single_tx_buffer = true;
lli_tx_loop[0].lli = lli_pointer(&lli_tx_loop[0]);
void shrink_tx_buffer(bool shrink) {
single_tx_buffer = shrink;
if (single_tx_buffer)
lli_tx_loop[0].lli = lli_pointer(&lli_tx_loop[0]);
else
lli_tx_loop[0].lli = lli_pointer(&lli_tx_loop[1]);
}
buffer_t tx_empty_buffer() {
+1 -1
View File
@@ -47,7 +47,7 @@ void init();
void configure();
void enable();
void disable();
void shrink_tx_buffer();
void shrink_tx_buffer(bool shrink);
audio::buffer_t tx_empty_buffer();
audio::buffer_t rx_empty_buffer();
+36 -16
View File
@@ -32,34 +32,34 @@
#include <cstddef>
#include <array>
void AudioOutput::configure(
const bool do_proc) {
void AudioOutput::configure(const bool do_proc) {
do_processing = do_proc;
}
void AudioOutput::configure(
const iir_biquad_config_t& hpf_config,
const iir_biquad_config_t& deemph_config,
const float squelch_threshold) {
void AudioOutput::configure(const iir_biquad_config_t& hpf_config, const iir_biquad_config_t& deemph_config, const float squelch_threshold) {
hpf.configure(hpf_config);
deemph.configure(deemph_config);
squelch.set_threshold(squelch_threshold);
}
void AudioOutput::write(
const buffer_s16_t& audio) {
void AudioOutput::write_unprocessed(const buffer_s16_t& audio) {
block_buffer_s16.feed(
audio,
[this](const buffer_s16_t& buffer) {
audio_present = true;
fill_audio_buffer(buffer, audio_present);
});
}
void AudioOutput::write(const buffer_s16_t& audio) {
std::array<float, 32> audio_f;
for (size_t i = 0; i < audio.count; i++) {
audio_f[i] = audio.p[i] * ki;
}
write(buffer_f32_t{
audio_f.data(),
audio.count,
audio.sampling_rate});
write(buffer_f32_t{audio_f.data(), audio.count, audio.sampling_rate});
}
void AudioOutput::write(
const buffer_f32_t& audio) {
void AudioOutput::write(const buffer_f32_t& audio) {
block_buffer.feed(
audio,
[this](const buffer_f32_t& buffer) {
@@ -67,8 +67,7 @@ void AudioOutput::write(
});
}
void AudioOutput::on_block(
const buffer_f32_t& audio) {
void AudioOutput::on_block(const buffer_f32_t& audio) {
if (do_processing) {
const auto audio_present_now = squelch.execute(audio);
@@ -93,6 +92,18 @@ bool AudioOutput::is_squelched() {
return !audio_present;
}
void AudioOutput::fill_audio_buffer(const buffer_s16_t& audio, const bool send_to_fifo) {
auto audio_buffer = audio::dma::tx_empty_buffer();
for (size_t i = 0; i < audio_buffer.count; i++) {
audio_buffer.p[i].left = audio_buffer.p[i].right = audio.p[i];
}
if (stream && send_to_fifo) {
stream->write(audio.p, audio_buffer.count * sizeof(int16_t));
}
feed_audio_stats(audio);
}
void AudioOutput::fill_audio_buffer(const buffer_f32_t& audio, const bool send_to_fifo) {
std::array<int16_t, 32> audio_int;
@@ -110,6 +121,15 @@ void AudioOutput::fill_audio_buffer(const buffer_f32_t& audio, const bool send_t
feed_audio_stats(audio);
}
void AudioOutput::feed_audio_stats(const buffer_s16_t& audio) {
audio_stats.feed(
audio,
[](const AudioStatistics& statistics) {
const AudioStatisticsMessage audio_stats_message{statistics};
shared_memory.application_queue.push(audio_stats_message);
});
}
void AudioOutput::feed_audio_stats(const buffer_f32_t& audio) {
audio_stats.feed(
audio,
+6
View File
@@ -44,6 +44,7 @@ class AudioOutput {
const iir_biquad_config_t& deemph_config = iir_config_passthrough,
const float squelch_threshold = 0.0f);
void write_unprocessed(const buffer_s16_t& audio);
void write(const buffer_s16_t& audio);
void write(const buffer_f32_t& audio);
@@ -57,6 +58,7 @@ class AudioOutput {
static constexpr float k = 32768.0f;
static constexpr float ki = 1.0f / k;
BlockDecimator<int16_t, 32> block_buffer_s16{1};
BlockDecimator<float, 32> block_buffer{1};
IIRBiquadFilter hpf{};
@@ -73,7 +75,11 @@ class AudioOutput {
bool do_processing = true;
void on_block(const buffer_f32_t& audio);
void fill_audio_buffer(const buffer_s16_t& audio, const bool send_to_fifo);
void fill_audio_buffer(const buffer_f32_t& audio, const bool send_to_fifo);
void feed_audio_stats(const buffer_s16_t& audio);
void feed_audio_stats(const buffer_f32_t& audio);
};
@@ -23,6 +23,19 @@
#include "utility.hpp"
void AudioStatsCollector::consume_audio_buffer(const buffer_s16_t& src) {
auto src_p = src.p;
const auto src_end = &src.p[src.count];
while (src_p < src_end) {
const auto sample = *(src_p++);
const auto sample_squared = sample * sample;
squared_sum += sample_squared;
if (sample_squared > max_squared) {
max_squared = sample_squared;
}
}
}
void AudioStatsCollector::consume_audio_buffer(const buffer_f32_t& src) {
auto src_p = src.p;
const auto src_end = &src.p[src.count];
@@ -56,6 +69,12 @@ bool AudioStatsCollector::update_stats(const size_t sample_count, const size_t s
}
}
bool AudioStatsCollector::feed(const buffer_s16_t& src) {
consume_audio_buffer(src);
return update_stats(src.count, src.sampling_rate);
}
bool AudioStatsCollector::feed(const buffer_f32_t& src) {
consume_audio_buffer(src);
@@ -30,6 +30,13 @@
class AudioStatsCollector {
public:
template <typename Callback>
void feed(const buffer_s16_t& src, Callback callback) {
if (feed(src)) {
callback(statistics);
}
}
template <typename Callback>
void feed(const buffer_f32_t& src, Callback callback) {
if (feed(src)) {
@@ -52,10 +59,12 @@ class AudioStatsCollector {
AudioStatistics statistics{};
void consume_audio_buffer(const buffer_s16_t& src);
void consume_audio_buffer(const buffer_f32_t& src);
bool update_stats(const size_t sample_count, const size_t sampling_rate);
bool feed(const buffer_s16_t& src);
bool feed(const buffer_f32_t& src);
bool mute(const size_t sample_count, const size_t sampling_rate);
};
+13 -7
View File
@@ -41,13 +41,17 @@ void AudioTXProcessor::execute(const buffer_c8_t& buffer) {
}
}
// Output to speaker too
uint32_t imod32 = i & (AUDIO_OUTPUT_BUFFER_SIZE - 1);
audio_data[imod32] = ((int16_t)audio_sample - 0x80) * (1.0f / 128.0f);
if (imod32 == (AUDIO_OUTPUT_BUFFER_SIZE - 1))
audio_output.write(audio_buffer);
sample = audio_sample - 0x80;
sample = tone_gen.process(audio_sample - 0x80);
// Output to speaker too
if (!tone_key_enabled) {
uint32_t imod32 = i & (AUDIO_OUTPUT_BUFFER_SIZE - 1);
audio_data[imod32] = sample * 256;
if (imod32 == (AUDIO_OUTPUT_BUFFER_SIZE - 1))
audio_output.write_unprocessed(audio_buffer);
}
sample = tone_gen.process(sample);
// FM
delta = sample * fm_delta;
@@ -102,7 +106,9 @@ void AudioTXProcessor::audio_config(const AudioTXConfigMessage& message) {
progress_interval_samples = message.divider;
resample_acc = 0;
audio_output.configure(false);
audio::dma::shrink_tx_buffer();
tone_key_enabled = (message.tone_key_delta != 0);
audio::dma::shrink_tx_buffer(!tone_key_enabled);
}
void AudioTXProcessor::replay_config(const ReplayConfigMessage& message) {
+3 -2
View File
@@ -52,14 +52,15 @@ class AudioTXProcessor : public BasebandProcessor {
int32_t sample{0}, delta{};
int8_t re{0}, im{0};
float audio_data[AUDIO_OUTPUT_BUFFER_SIZE];
buffer_f32_t audio_buffer{audio_data, AUDIO_OUTPUT_BUFFER_SIZE, 48000};
int16_t audio_data[AUDIO_OUTPUT_BUFFER_SIZE];
buffer_s16_t audio_buffer{audio_data, AUDIO_OUTPUT_BUFFER_SIZE, 48000};
AudioOutput audio_output{};
size_t progress_interval_samples = 0, progress_samples = 0;
bool configured{false};
uint32_t bytes_read{0};
bool tone_key_enabled{false};
void sample_rate_config(const SampleRateConfigMessage& message);
void audio_config(const AudioTXConfigMessage& message);
+2 -1
View File
@@ -26,7 +26,8 @@
#include "ui_navigation.hpp"
#include "spi_image.hpp"
#define CURRENT_HEADER_VERSION 0x00000001
#define CURRENT_HEADER_VERSION 0x00000002
#define MIN_HEADER_VERSION_FOR_CHECKSUM 0x00000002
typedef void (*externalAppEntry_t)(ui::NavigationView& nav);
@@ -32,6 +32,7 @@
#include "string_format.hpp"
#include "ui_styles.hpp"
#include "ui_painter.hpp"
#include "ui_flash_utility.hpp"
#include "utility.hpp"
#include "rtc_time.hpp"
@@ -1051,6 +1052,9 @@ bool debug_dump() {
pmem_dump_file.write_line("Ext APPS version req'd: 0x" + to_string_hex(VERSION_MD5));
pmem_dump_file.write_line("GCC version: " + to_string_dec_int(__GNUC__) + "." + to_string_dec_int(__GNUC_MINOR__) + "." + to_string_dec_int(__GNUC_PATCHLEVEL__));
// firmware checksum
pmem_dump_file.write_line("Firmware calculated checksum: 0x" + to_string_hex(simple_checksum(FLASH_STARTING_ADDRESS, FLASH_ROM_SIZE), 8));
// write persistent memory
pmem_dump_file.write_line("\n[Persistent Memory]");
@@ -32,6 +32,7 @@
#include "modems.hpp"
#include "serializer.hpp"
#include "volume.hpp"
#include "config_mode.hpp"
// persistent memory from/to sdcard flag file
#define PMEM_FILEFLAG u"/SETTINGS/PMEM_FILEFLAG"
@@ -242,8 +243,6 @@ void set_disable_touchscreen(bool v);
uint8_t config_encoder_dial_sensitivity();
void set_encoder_dial_sensitivity(uint8_t v);
#define CONFIG_MODE_GUARD_VALUE 0x000007d1
#define CONFIG_MODE_NORMAL_VALUE 0x000007cf
uint32_t config_mode_storage_direct();
void set_config_mode_storage_direct(uint32_t v);
bool config_disable_config_mode_direct();
+38 -3
View File
@@ -6,6 +6,8 @@
#include <string.h>
#include "string_format.hpp"
#include "file.hpp"
#include "utility.hpp"
#include "ui_external_items_menu_loader.hpp"
class UnTar {
public:
@@ -86,6 +88,10 @@ class UnTar {
std::string binfile = "";
std::string fn = "";
int filesize;
uint32_t app_checksum;
bool app_file;
bool first_read;
bool corrupt_file{false};
for (;;) {
auto readres = a->read(buff, 512);
if (!readres.is_ok()) return "";
@@ -132,20 +138,49 @@ class UnTar {
delete_file(fn);
auto fres = f.open(fn, false, true);
if (!fres.value().ok()) return "";
app_file = (fn.substr(fn.size() - 5) == ".ppma");
first_read = true;
app_checksum = 0;
corrupt_file = false;
}
while (filesize > 0) {
readres = a->read(buff, 512);
if (!readres.is_ok()) return "";
if (!readres.is_ok()) {
corrupt_file = true;
break;
}
bytes_read = readres.value();
if (bytes_read < 512) {
return "";
corrupt_file = true;
break;
}
if (filesize < 512)
bytes_read = filesize;
if (app_file && first_read) {
// Check app file header for min version for checksum support
struct application_information_t* app_info = (struct application_information_t*)buff;
if (app_info->header_version < MIN_HEADER_VERSION_FOR_CHECKSUM)
app_file = false;
first_read = false;
}
if (app_file) {
app_checksum += simple_checksum((uint32_t)buff, bytes_read);
}
auto fwres = f.write(buff, bytes_read);
if (!fwres.is_ok()) return "";
if (!fwres.is_ok()) {
corrupt_file = true;
break;
}
filesize -= bytes_read;
f.sync();
if ((filesize == 0) && app_file && (app_checksum != EXT_APP_EXPECTED_CHECKSUM)) {
corrupt_file = true;
break;
}
}
if (corrupt_file) {
delete_file(fn);
return "";
}
}
return binfile;
+7
View File
@@ -235,3 +235,10 @@ std::string join(char c, std::initializer_list<std::string_view> strings) {
return result;
}
uint32_t simple_checksum(uint32_t buffer_address, uint32_t length) {
uint32_t checksum = 0;
for (uint32_t i = 0; i < length; i += 4)
checksum += *(uint32_t*)(buffer_address + i);
return checksum;
}
+2
View File
@@ -217,4 +217,6 @@ struct range_t {
std::string join(char c, std::initializer_list<std::string_view> strings);
uint32_t simple_checksum(uint32_t buffer_address, uint32_t length);
#endif /*__UTILITY_H__*/
+16
View File
@@ -104,6 +104,14 @@ for external_image_prefix in sys.argv[4:]:
external_application_image = patch_image(external_application_image, search_address, replace_address)
external_application_image[memory_location_header_position:memory_location_header_position+4] = replace_address.to_bytes(4, byteorder='little')
checksum = 0
for i in range(0, len(external_application_image), 4):
checksum += external_application_image[i] + (external_application_image[i + 1] << 8) + (external_application_image[i + 2] << 16) + (external_application_image[i + 3] << 24)
final_checksum = 0
checksum = (final_checksum - checksum) & 0xFFFFFFFF
external_application_image += checksum.to_bytes(4, 'little')
write_image(external_application_image, "{}/{}.ppma".format(binary_dir, external_image_prefix))
continue
@@ -127,5 +135,13 @@ for external_image_prefix in sys.argv[4:]:
print("application {} can not exceed 32kb: {} bytes used".format(external_image_prefix, len(external_application_image)))
sys.exit(-1)
checksum = 0
for i in range(0, len(external_application_image), 4):
checksum += external_application_image[i] + (external_application_image[i + 1] << 8) + (external_application_image[i + 2] << 16) + (external_application_image[i + 3] << 24)
final_checksum = 0
checksum = (final_checksum - checksum) & 0xFFFFFFFF
external_application_image += checksum.to_bytes(4, 'little')
# write .ppma (portapack mayhem application)
write_image(external_application_image, "{}/{}.ppma".format(binary_dir, external_image_prefix))
+19 -2
View File
@@ -74,7 +74,24 @@ for image in images:
padded_data = image['data'] + (spi_image_default_byte * pad_size)
spi_image += padded_data
if len(spi_image) > spi_size:
raise RuntimeError('SPI flash image size of %d exceeds device size of %d bytes' % (len(spi_image), spi_size))
if len(spi_image) > spi_size - 4:
raise RuntimeError('SPI flash image size of %d exceeds device size of %d bytes' % (len(spi_image) + 4, spi_size))
pad_size = spi_size - 4 - len(spi_image)
for i in range(pad_size):
spi_image += spi_image_default_byte
# quick "add up the words" checksum:
checksum = 0
for i in range(0, len(spi_image), 4):
checksum += (spi_image[i] + (spi_image[i + 1] << 8) + (spi_image[i + 2] << 16) + (spi_image[i + 3] << 24))
final_checksum = 0
checksum = (final_checksum - checksum) & 0xFFFFFFFF
spi_image += checksum.to_bytes(4, 'little')
write_image(spi_image, output_path)
percent_remaining = round(1000 * pad_size / spi_size) / 10;
print ("Space remaining in flash ROM:", pad_size, "bytes (", percent_remaining, "%)")
+57
View File
@@ -0,0 +1,57 @@
#!/usr/bin/env python3
#
# Copyright (C) 2024 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.
#
import sys
import struct
usage_message = """
PortaPack ROM image checksum checker
Usage: <command> <input-file>
"""
def read_image(path):
f = open(path, 'rb')
data = f.read()
f.close()
return data
def write_image(data, path):
f = open(path, 'wb')
f.write(data)
f.close()
if len(sys.argv) != 2:
print(usage_message)
sys.exit(-1)
image = read_image(sys.argv[1])
image = bytearray(image)
# simple "add up the words" checksum:
checksum = 0
for i in range(0, len(image), 4):
checksum += (image[i] + (image[i + 1] << 8) + (image[i + 2] << 16) + (image[i + 3] << 24))
checksum &= 0xFFFFFFFF
print ("Simple checksum =", checksum)