Compare commits

...
Author SHA1 Message Date
Thomas Göttgens 8a412e5436 Park unused LNA_CTRL_MCU net with pulldown on makerfabs_pucky 2026-05-20 21:22:05 +02:00
Thomas Göttgens 83c16d93a3 Enable LR11X0_DIO_AS_RF_SWITCH for makerfabs_pucky 2026-05-20 20:30:31 +02:00
Kongduino 449bb537c5 Update variant.h (#10405)
Added TX Power curve.
2026-05-19 08:34:54 +02:00
Jonathan Bennett 6238c32d77 Fixes 2026-05-06 11:53:34 -05:00
Jonathan Bennett 7cc404890f Initial support for Pucky 2026-04-16 11:39:48 -05:00
Ben Meadors 23f92c1cbd Add comprehensive guides for new module, sensor, and hardware variant development 2026-04-16 08:01:03 -05:00
renovate[bot] c1bee82baf Update platform-native digest to 71ed55b (#10165)
Co-authored-by: renovate[bot] <29139614+renovate[bot]@users.noreply.github.com>
2026-04-14 21:07:15 -05:00
github-actions[bot]andthebentern 47e129f4bd Automated version bumps (#10159)
Co-authored-by: thebentern <9000580+thebentern@users.noreply.github.com>
2026-04-14 13:13:45 -05:00
Ben MeadorsandCopilot 96dd647882 Fix heap blowout on TBeams (#10155)
* Fix heap blowout on TBeams

* Update src/graphics/draw/MessageRenderer.cpp

Co-authored-by: Copilot <175728472+Copilot@users.noreply.github.com>

* Set MESSAGE_HISTORY_LIMIT to 10 for original ESP32 to optimize RAM usage

* Optimize message frame allocation to prevent excessive memory usage

* Refine message history limits for resource-constrained builds and cap cached lines to prevent heap overflow

* Update src/graphics/draw/MessageRenderer.cpp

Co-authored-by: Copilot <175728472+Copilot@users.noreply.github.com>

---------

Co-authored-by: Copilot <175728472+Copilot@users.noreply.github.com>
2026-04-13 14:50:51 -05:00
Thomas Göttgens e42ff3590c fix last cppcheck issue (#10154) 2026-04-13 15:48:30 +02:00
Ben Meadors 7527233130 Enhance release notes generation with commit range comparison 2026-04-13 06:43:11 -05:00
197226365b fix(native): implement BinarySemaphorePosix with proper pthread synchronization (#9895)
* fix(native): implement BinarySemaphorePosix with proper pthread synchronization

The BinarySemaphorePosix class (used on all Linux/portduino/native builds)
had stub implementations: give() was a no-op and take() just called
delay(msec) and returned false. This broke the cooperative thread scheduler
on native platforms — threads could not wake the main loop, radio RX
interrupts were missed, and telemetry never transmitted over the mesh.

Replace the stubs with a proper binary semaphore using pthread_mutex_t +
pthread_cond_t + bool signaled:

- take(msec): pthread_cond_timedwait with CLOCK_REALTIME timeout, consumes
  signal atomically (binary semaphore semantics)
- give(): sets signaled=true, signals condition variable
- giveFromISR(): delegates to give(), sets pxHigherPriorityTaskWoken

Tested on Raspberry Pi 3 Model B (ARM64, Debian Bookworm) with Adafruit
LoRa Radio Bonnet (SX1276). Before fix: no radio TX/RX, no telemetry on
mesh. After fix: bidirectional LoRa, MQTT gateway, telemetry all working.

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>

* ARCH_PORTDUINO

* Refactor BinarySemaphorePosix header for ARCH_PORTDUINO

* Change preprocessor directive from ifndef to ifdef

* Gate new Semaphore code to Portduino and fix STM compilation

* Binary Semaphore Posix better error handling

---------

Co-authored-by: Claude Opus 4.6 <noreply@anthropic.com>
Co-authored-by: Ben Meadors <benmmeadors@gmail.com>
Co-authored-by: Jonathan Bennett <jbennett@incomsystems.biz>
2026-04-13 06:31:38 -05:00
22 changed files with 1178 additions and 67 deletions
+164 -27
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@@ -4,11 +4,11 @@ This document provides context and guidelines for AI assistants working with the
## Project Overview
Meshtastic is an open-source LoRa mesh networking project for long-range, low-power communication without relying on internet or cellular infrastructure. The firmware enables text messaging, location sharing, and telemetry over a decentralized mesh network.
Meshtastic is an open-source LoRa mesh networking project for long-range, low-power communication without relying on internet or cellular infrastructure. The firmware enables text messaging, location sharing, and telemetry over a decentralized mesh network. The project uses **C++17** as its language standard across all platforms.
### Supported Hardware Platforms
- **ESP32** (ESP32, ESP32-S3, ESP32-C3) - Most common platform
- **ESP32** (ESP32, ESP32-S3, ESP32-C3, ESP32-C6) - Most common platform
- **nRF52** (nRF52840, nRF52833) - Low power Nordic chips
- **RP2040/RP2350** - Raspberry Pi Pico variants
- **STM32WL** - STM32 with integrated LoRa
@@ -80,21 +80,46 @@ firmware/
│ │ ├── NodeDB.* # Node database management
│ │ ├── Router.* # Packet routing
│ │ ├── Channels.* # Channel management
│ │ ├── CryptoEngine.* # AES-CCM encryption
│ │ ├── *Interface.* # Radio interface implementations
│ │ ├── api/ # WiFi/Ethernet server APIs (ServerAPI, PacketAPI)
│ │ ├── http/ # HTTP server (WebServer, ContentHandler)
│ │ ├── wifi/ # WiFi support (WiFiAPClient)
│ │ ├── eth/ # Ethernet support (ethClient)
│ │ ├── udp/ # UDP multicast
│ │ ├── compression/ # Message compression (unishox2)
│ │ └── generated/ # Protobuf generated code
│ ├── modules/ # Feature modules (Position, Telemetry, etc.)
│ │ └── Telemetry/ # Telemetry subsystem
│ │ └── Sensor/ # 50+ I2C sensor drivers
│ ├── gps/ # GPS handling
│ ├── graphics/ # Display drivers and UI
│ ├── platform/ # Platform-specific code
│ ├── input/ # Input device handling
│ └── concurrency/ # Threading utilities
│ │ └── niche/ # Specialized UIs (InkHUD e-ink framework)
│ ├── platform/ # Platform-specific code (esp32, nrf52, rp2xx0, stm32wl, portduino)
│ ├── input/ # Input device handling (InputBroker, keyboards, buttons)
│ ├── detect/ # I2C hardware auto-detection (80+ device types)
│ ├── motion/ # Accelerometer drivers (BMA423, BMI270, MPU6050, etc.)
│ ├── mqtt/ # MQTT bridge client
│ ├── power/ # Power HAL
│ ├── nimble/ # BLE via NimBLE
│ ├── buzz/ # Audio/notification (buzzer, RTTTL)
│ ├── serialization/ # JSON serialization, COBS encoding
│ ├── watchdog/ # Hardware watchdog thread
│ ├── concurrency/ # Threading utilities (OSThread, Lock)
│ ├── PowerFSM.* # Power finite state machine
│ └── Observer.h # Observer/Observable event pattern
├── variants/ # Hardware variant definitions
│ ├── esp32/ # ESP32 variants
│ ├── esp32s3/ # ESP32-S3 variants
│ ├── nrf52/ # nRF52 variants
│ └── rp2xxx/ # RP2040/RP2350 variants
│ ├── esp32c3/ # ESP32-C3 variants
│ ├── esp32c6/ # ESP32-C6 variants
│ ├── nrf52840/ # nRF52 variants
│ ├── rp2040/ # RP2040/RP2350 variants
│ ├── stm32/ # STM32WL variants
│ └── native/ # Linux/Portduino variants
├── protobufs/ # Protocol buffer definitions
├── boards/ # Custom PlatformIO board definitions
├── test/ # Unit tests (12 test suites)
└── bin/ # Build and utility scripts
```
@@ -105,6 +130,7 @@ firmware/
- Follow existing code style - run `trunk fmt` before commits
- Prefer `LOG_DEBUG`, `LOG_INFO`, `LOG_WARN`, `LOG_ERROR` for logging
- Use `assert()` for invariants that should never fail
- C++17 features are available (`std::optional`, structured bindings, `if constexpr`, etc.)
### Naming Conventions
@@ -118,70 +144,151 @@ firmware/
#### Module System
Modules inherit from `MeshModule` or `ProtobufModule<T>` and implement:
Modules use a three-tier class hierarchy:
- `handleReceivedProtobuf()` - Process incoming packets
- `allocReply()` - Generate response packets
- `runOnce()` - Periodic task execution (returns next run interval in ms)
1. **`MeshModule`** - Base class. Implement `wantPacket()` and `handleReceived()`. Returns `ProcessMessage::STOP` or `ProcessMessage::CONTINUE`.
2. **`SinglePortModule`** - Handles a single portnum. Simplified `wantPacket()` that checks `decoded.portnum`.
3. **`ProtobufModule<T>`** - Template for protobuf-based modules. Handles encoding/decoding automatically.
Most modules also inherit from **`OSThread`** for periodic tasks (the "mixin" pattern):
```cpp
class MyModule : public ProtobufModule<meshtastic_MyMessage>
class MyModule : public ProtobufModule<meshtastic_MyMessage>, private concurrency::OSThread
{
public:
MyModule();
protected:
virtual bool handleReceivedProtobuf(const meshtastic_MeshPacket &mp, meshtastic_MyMessage *msg) override;
virtual int32_t runOnce() override;
virtual meshtastic_MeshPacket *allocReply() override; // Generate response packets
virtual int32_t runOnce() override; // Periodic task (returns next interval in ms)
virtual bool alterReceivedProtobuf(meshtastic_MeshPacket &mp, meshtastic_MyMessage *msg); // Modify in-flight
virtual bool wantUIFrame(); // Request a UI display frame
};
```
Modules are registered in `src/modules/Modules.cpp` guarded by `MESHTASTIC_EXCLUDE_*` flags.
#### Observer/Observable Pattern
Event-driven communication between subsystems uses `src/Observer.h`:
```cpp
// Observable emits events
Observable<const meshtastic::Status *> newStatus;
newStatus.notifyObservers(&status);
// Observer receives events via callback
CallbackObserver<MyClass, const meshtastic::Status *> statusObserver =
CallbackObserver<MyClass, const meshtastic::Status *>(this, &MyClass::handleStatusUpdate);
```
#### Configuration Access
- `config.*` - Device configuration (LoRa, position, power, etc.)
- `moduleConfig.*` - Module-specific configuration
- `channels.*` - Channel configuration and management
- `owner` - Device owner info
- `myNodeInfo` - Local node info
#### Default Values
Use the `Default` class helpers in `src/mesh/Default.h`:
- `Default::getConfiguredOrDefaultMs(configured, default)` - Returns ms, using default if configured is 0
- `Default::getConfiguredOrDefault(configured, default)` - Generic configured/default getter
- `Default::getConfiguredOrMinimumValue(configured, min)` - Enforces minimum values
- `Default::getConfiguredOrDefaultMsScaled(configured, default, numNodes)` - Scales based on network size
#### Thread Safety
- Use `concurrency::Lock` for mutex protection
- Use `concurrency::Lock` and `concurrency::LockGuard` for mutex protection
- Radio SPI access uses `SPILock`
- Prefer `OSThread` for background tasks
### Hardware Detection
`src/detect/ScanI2C` automatically enumerates 80+ I2C device types at boot including displays, sensors, RTCs, keyboards, PMUs, and touch controllers. This drives automatic initialization of the correct drivers.
### Graphics/UI System
Multiple display driver families in `src/graphics/`:
- **OLED**: SSD1306, SH1106, ST7567
- **TFT**: TFTDisplay (LovyanGFX-based)
- **E-Ink**: EInkDisplay2, EInkDynamicDisplay, EInkParallelDisplay
**InkHUD** (`src/graphics/niche/InkHUD/`) is an event-driven e-ink UI framework:
- Applet-based architecture — modular display tiles
- Read-only, static display optimized for minimal refreshes and low power
- Configured per-variant via `nicheGraphics.h`
- Separate PlatformIO config: `src/graphics/niche/InkHUD/PlatformioConfig.ini`
### Input System
`src/input/InputBroker` is the centralized input event dispatcher. Supports multiple input sources: buttons, keyboards (BBQ10, Cardputer, TCA8418), touch screens, rotary encoders, and matrix keyboards.
### Power Management
`src/PowerFSM.*` implements a finite state machine with states: `stateON`, `statePOWER`, `stateSERIAL`, `stateDARK`. Key events: `EVENT_PRESS`, `EVENT_WAKE_TIMER`, `EVENT_LOW_BATTERY`, `EVENT_RECEIVED_MSG`, `EVENT_SHUTDOWN`. Conditionally excluded with `MESHTASTIC_EXCLUDE_POWER_FSM` (falls back to `FakeFsm`).
### Motion Sensors
`src/motion/AccelerometerThread` provides background motion monitoring with automatic screen wake and double-tap button press detection. Supports 10+ accelerometer/gyroscope chips (BMA423, BMI270, MPU6050, LIS3DH, LSM6DS3, STK8XXX, QMA6100P, ICM20948, BMX160).
### Telemetry Sensor Library
`src/modules/Telemetry/Sensor/` contains 50+ I2C sensor drivers organized by category:
- **Power monitoring**: INA219/226/260/3221, MAX17048
- **Environmental**: BME280/680, SCD4X (CO₂), SEN5X (particulate)
- **Humidity/Temperature**: SHT3X/4X, AHT10, MCP9808, MLX90614
- **Light**: BH1750, TSL2561/2591, VEML7700, LTR390UV, OPT3001
- **Air quality**: PMSA003I, SFA30
- **Specialized**: CGRadSens (radiation), NAU7802 (weight scale)
### API/Networking
`src/mesh/api/` provides a template-based `ServerAPI` for client communication over WiFi (`WiFiServerAPI`) and Ethernet (`ethServerAPI`). Default port: **4403**. HTTP server in `src/mesh/http/`. JSON serialization in `src/serialization/MeshPacketSerializer`.
### Hardware Variants
Each hardware variant has:
- `variant.h` - Pin definitions and hardware capabilities
- `platformio.ini` - Build configuration
- Optional: `pins_arduino.h`, `rfswitch.h`
- Optional: `pins_arduino.h`, `rfswitch.h`, `nicheGraphics.h` (for InkHUD variants)
Key defines in variant.h:
```cpp
#define USE_SX1262 // Radio chip selection
#define HAS_GPS 1 // Hardware capabilities
#define HAS_SCREEN 1 // Display present
#define LORA_CS 36 // Pin assignments
#define SX126X_DIO1 14 // Radio-specific pins
```
### Protobuf Messages
- Defined in `protobufs/meshtastic/*.proto`
- Generated code in `src/mesh/generated/`
- Defined in `protobufs/meshtastic/*.proto` (~32 proto files)
- Generated code in `src/mesh/generated/meshtastic/`
- Regenerate with `bin/regen-protos.sh`
- Message types prefixed with `meshtastic_`
- Nanopb `.options` files control field sizes and encoding
### Conditional Compilation
```cpp
#if !MESHTASTIC_EXCLUDE_GPS // Feature exclusion
#if !MESHTASTIC_EXCLUDE_WIFI // Network feature exclusion
#if !MESHTASTIC_EXCLUDE_BLUETOOTH // BLE exclusion
#if !MESHTASTIC_EXCLUDE_POWER_FSM // Power FSM exclusion
#ifdef ARCH_ESP32 // Architecture-specific
#ifdef ARCH_NRF52 // Nordic platform
#ifdef ARCH_RP2040 // Raspberry Pi Pico
#ifdef ARCH_PORTDUINO // Linux native
#if defined(USE_SX1262) // Radio-specific
#ifdef HAS_SCREEN // Hardware capability
#if USERPREFS_EVENT_MODE // User preferences
@@ -192,7 +299,7 @@ Key defines in variant.h:
Uses **PlatformIO** with custom scripts:
- `bin/platformio-pre.py` - Pre-build script
- `bin/platformio-custom.py` - Custom build logic
- `bin/platformio-custom.py` - Custom build logic, manifest generation
Build commands:
@@ -202,21 +309,38 @@ pio run -e tbeam -t upload # Build and upload
pio run -e native # Build native/Linux version
```
### Build Manifest
`bin/platformio-custom.py` emits a build manifest with metadata:
- `hasMui`, `hasInkHud` - UI capability flags (overridable via `custom_meshtastic_has_mui`, `custom_meshtastic_has_ink_hud`)
- Architecture normalization (e.g., `esp32s3` → `esp32-s3` for API compatibility)
## Common Tasks
### Adding a New Module
1. Create `src/modules/MyModule.cpp` and `.h`
2. Inherit from appropriate base class
3. Register in `src/modules/Modules.cpp`
4. Add protobuf messages if needed in `protobufs/`
2. Inherit from appropriate base class (`MeshModule`, `SinglePortModule`, or `ProtobufModule<T>`)
3. Mix in `concurrency::OSThread` if periodic work is needed
4. Register in `src/modules/Modules.cpp` guarded by `#if !MESHTASTIC_EXCLUDE_MYMODULE`
5. Add protobuf messages if needed in `protobufs/meshtastic/`
6. Add test suite in `test/test_mymodule/` if applicable
### Adding a New Hardware Variant
1. Create directory under `variants/<arch>/<name>/`
2. Add `variant.h` with pin definitions
3. Add `platformio.ini` with build config
4. Reference common configs with `extends`
2. Add `variant.h` with pin definitions and hardware capability defines
3. Add `platformio.ini` with build config — use `extends` to reference common base (e.g., `esp32s3_base`)
4. Set `custom_meshtastic_support_level = 1` (PR builds) or `2` (merge builds)
5. For e-ink displays, add `nicheGraphics.h` for InkHUD configuration
### Adding a New Telemetry Sensor
1. Create driver in `src/modules/Telemetry/Sensor/` following existing sensor pattern
2. Register I2C address in `src/detect/ScanI2C` for auto-detection
3. Integrate with the appropriate telemetry module (Environment, Health, Power, AirQuality)
4. Add proto fields in `protobufs/meshtastic/telemetry.proto` if new data types are needed
### Modifying Configuration Defaults
@@ -305,9 +429,22 @@ Most workflows can be triggered manually via `workflow_dispatch` for testing.
## Testing
- Unit tests in `test/` directory
- Run with `pio test -e native`
- Use `bin/test-simulator.sh` for simulation testing
Unit tests in `test/` directory with 12 test suites:
- `test_crypto/` - Cryptography
- `test_mqtt/` - MQTT integration
- `test_radio/` - Radio interface
- `test_mesh_module/` - Module framework
- `test_meshpacket_serializer/` - Packet serialization
- `test_transmit_history/` - Retransmission tracking
- `test_atak/` - ATAK integration
- `test_default/` - Default configuration
- `test_http_content_handler/` - HTTP handling
- `test_serial/` - Serial communication
Run with: `pio test -e native`
Simulation testing: `bin/test-simulator.sh`
## Resources
+138
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@@ -0,0 +1,138 @@
# New Meshtastic Module
Guide for developing a new Meshtastic firmware module.
## Module Hierarchy
Choose the appropriate base class:
1. **`MeshModule`** — Raw base class. Override `wantPacket()` and `handleReceived()`. Returns `ProcessMessage::STOP` or `ProcessMessage::CONTINUE`.
2. **`SinglePortModule`** — Handles a single `meshtastic_PortNum`. Constructor takes `(name, portNum)`. Simplified `wantPacket()` checking `decoded.portnum`. Use `allocDataPacket()` to create outgoing packets.
3. **`ProtobufModule<T>`** — Template for protobuf-encoded modules. Constructor takes `(name, portNum, fields)`. Override `handleReceivedProtobuf()`. Use `allocDataProtobuf(payload)` to create outgoing packets.
Most modules also mix in `concurrency::OSThread` for periodic background tasks.
## Implementation Pattern
```cpp
// src/modules/MyModule.h
#pragma once
#include "ProtobufModule.h"
#include "concurrency/OSThread.h"
class MyModule : public ProtobufModule<meshtastic_MyMessage>, private concurrency::OSThread
{
public:
MyModule();
protected:
// Process incoming protobuf packet. Return true to stop further processing.
virtual bool handleReceivedProtobuf(const meshtastic_MeshPacket &mp, meshtastic_MyMessage *msg) override;
// Generate response packet (optional)
virtual meshtastic_MeshPacket *allocReply() override;
// Periodic task — return next run interval in ms, or disable()
virtual int32_t runOnce() override;
// Modify packet in-flight before delivery (optional)
virtual bool alterReceivedProtobuf(meshtastic_MeshPacket &mp, meshtastic_MyMessage *msg);
// Request a UI display frame (optional)
virtual bool wantUIFrame();
};
```
## Registration
Register in `src/modules/Modules.cpp` inside `setupModules()`:
```cpp
#if !MESHTASTIC_EXCLUDE_MYMODULE
new MyModule();
#endif
```
If other code needs to reference the module instance:
```cpp
#if !MESHTASTIC_EXCLUDE_MYMODULE
myModule = new MyModule();
#endif
```
And declare the global in the header:
```cpp
extern MyModule *myModule;
```
Some modules also conditionally instantiate based on `moduleConfig`:
```cpp
#if !MESHTASTIC_EXCLUDE_MYMODULE
if (moduleConfig.has_my_module && moduleConfig.my_module.enabled) {
new MyModule();
}
#endif
```
## Conditional Compilation
Add a `MESHTASTIC_EXCLUDE_MYMODULE` guard. This allows the module to be excluded from constrained builds. The flag name must follow the pattern: `MESHTASTIC_EXCLUDE_` + uppercase module name.
## Protobuf Messages (if needed)
1. Define messages in `protobufs/meshtastic/` (e.g., `mymodule.proto`)
2. Add a `.options` file for nanopb field size constraints
3. Regenerate with `bin/regen-protos.sh`
4. Generated code appears in `src/mesh/generated/meshtastic/`
5. Assign a `meshtastic_PortNum` if the module uses a new port number
## Timing and Defaults
Use `Default` class helpers for configurable intervals:
```cpp
int32_t MyModule::runOnce()
{
uint32_t interval = Default::getConfiguredOrDefaultMs(moduleConfig.my_module.update_interval,
default_my_module_interval);
// ... do work ...
return interval;
}
```
On public/default channels, enforce minimums with `Default::getConfiguredOrMinimumValue()`.
## Observer Pattern
Subscribe to system events:
```cpp
CallbackObserver<MyModule, const meshtastic::Status *> statusObserver =
CallbackObserver<MyModule, const meshtastic::Status *>(this, &MyModule::handleStatusUpdate);
```
## Testing
Add test suite in `test/test_mymodule/`:
```
test/
└── test_mymodule/
└── test_main.cpp
```
Run with: `pio test -e native`
## Checklist
- [ ] Header and implementation files in `src/modules/`
- [ ] Inherit from appropriate base class (MeshModule / SinglePortModule / ProtobufModule)
- [ ] Mix in OSThread if periodic work is needed
- [ ] Register in `src/modules/Modules.cpp` with `MESHTASTIC_EXCLUDE_` guard
- [ ] Add protobuf definitions if needed (`protobufs/meshtastic/`)
- [ ] Use `Default::getConfiguredOrDefaultMs()` for timing
- [ ] Respect bandwidth limits on public channels
- [ ] Add test suite in `test/`
+149
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@@ -0,0 +1,149 @@
# New Telemetry Sensor
Guide for adding a new I2C telemetry sensor driver to Meshtastic firmware.
## Overview
Telemetry sensors live in `src/modules/Telemetry/Sensor/`. There are 50+ existing drivers organized by measurement type. Each sensor integrates with one of the telemetry modules:
- **EnvironmentTelemetryModule** — Temperature, humidity, pressure, gas, light
- **AirQualityTelemetryModule** — Particulate matter, VOCs
- **PowerTelemetryModule** — Voltage, current, power monitoring
- **HealthTelemetryModule** — Heart rate, SpO2, body temperature
## Sensor Driver Pattern
Each sensor has a `.h` and `.cpp` file pair following this pattern:
```cpp
// src/modules/Telemetry/Sensor/MySensor.h
#pragma once
#include "TelemetrySensor.h"
#include <MySensorLibrary.h> // Arduino/PlatformIO library
class MySensor : virtual public TelemetrySensor
{
private:
MySensorLibrary sensor;
public:
MySensor() : TelemetrySensor(meshtastic_TelemetrySensorType_MY_SENSOR, "MySensor") {}
// Initialize sensor hardware. Return true on success.
virtual void setup() override;
// Read sensor data into the telemetry protobuf. Return true on success.
virtual bool getMetrics(meshtastic_Telemetry *measurement) override;
};
```
```cpp
// src/modules/Telemetry/Sensor/MySensor.cpp
#include "MySensor.h"
#include "TelemetrySensor.h"
void MySensor::setup()
{
sensor.begin();
// Configure sensor parameters...
}
bool MySensor::getMetrics(meshtastic_Telemetry *measurement)
{
// Read from hardware
float value = sensor.readValue();
// Populate the appropriate protobuf variant
measurement->variant.environment_metrics.temperature = value;
// ... other fields ...
return true;
}
```
## I2C Address Registration
Register the sensor's I2C address(es) in `src/detect/ScanI2C` so it's auto-detected at boot:
1. Add a `DeviceType` enum entry in `src/detect/ScanI2C.h`
2. Add the I2C address mapping in `src/detect/ScanI2CTwoWire.cpp`
The scan runs at boot and populates a device map that telemetry modules use to decide which sensors to initialize.
## Protobuf Fields
If the sensor provides data not covered by existing telemetry fields:
1. Add fields to the appropriate message in `protobufs/meshtastic/telemetry.proto`:
- `EnvironmentMetrics` — Environmental measurements
- `AirQualityMetrics` — Air quality data
- `PowerMetrics` — Power/energy data
- `HealthMetrics` — Health/biometric data
2. Add a `.options` constraint if needed (field sizes for nanopb)
3. Regenerate: `bin/regen-protos.sh`
## Sensor Type Enum
Add the sensor to `meshtastic_TelemetrySensorType` enum in `protobufs/meshtastic/telemetry.proto`:
```protobuf
enum TelemetrySensorType {
// ... existing entries ...
MY_SENSOR = XX;
}
```
## Integration with Telemetry Module
Wire the sensor into the appropriate telemetry module. For environment sensors, this is typically in `src/modules/Telemetry/EnvironmentTelemetry.cpp`:
1. Include the sensor header
2. Add initialization in `setupSensor()` guarded by detection results
3. Call `getMetrics()` in the measurement collection path
Example pattern from existing sensors:
```cpp
#include "Sensor/MySensor.h"
MySensor mySensor;
// In setup:
if (nodeTelemetrySensorsMap[meshtastic_TelemetrySensorType_MY_SENSOR].first > 0) {
mySensor.setup();
}
// In measurement collection:
if (nodeTelemetrySensorsMap[meshtastic_TelemetrySensorType_MY_SENSOR].first > 0) {
mySensor.getMetrics(&measurement);
}
```
## Library Dependencies
If the sensor needs an external library, add it to the `lib_deps` in the relevant base platformio.ini configs:
```ini
lib_deps =
${env.lib_deps}
mysensorlibrary@^1.0.0
```
Or use a conditional dependency if it's platform-specific.
## Unit Conversions
If the sensor reports values in non-standard units, use `src/modules/Telemetry/UnitConversions.h` for conversion helpers (e.g., Celsius ↔ Fahrenheit, hPa ↔ inHg).
## Checklist
- [ ] Create `src/modules/Telemetry/Sensor/MySensor.h` and `.cpp`
- [ ] Inherit from `TelemetrySensor` base class
- [ ] Implement `setup()` and `getMetrics()` methods
- [ ] Add `meshtastic_TelemetrySensorType` enum entry in `telemetry.proto`
- [ ] Add I2C address to `src/detect/ScanI2C` for auto-detection
- [ ] Add protobuf fields in `telemetry.proto` if new data types needed
- [ ] Regenerate protos: `bin/regen-protos.sh`
- [ ] Wire into the appropriate telemetry module (Environment/AirQuality/Power/Health)
- [ ] Add library dependency if external library required
- [ ] Test on hardware or native build
+178
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@@ -0,0 +1,178 @@
# New Hardware Variant
Guide for adding a new Meshtastic hardware variant to the firmware.
## Directory Structure
Create under `variants/<arch>/<name>/`:
```
variants/
├── esp32/ # ESP32
├── esp32s3/ # ESP32-S3
├── esp32c3/ # ESP32-C3
├── esp32c6/ # ESP32-C6
├── nrf52840/ # nRF52840
├── rp2040/ # RP2040/RP2350
├── stm32/ # STM32WL
└── native/ # Linux/Portduino
```
Each variant needs at minimum:
- `variant.h` — Pin definitions and hardware capabilities
- `platformio.ini` — Build configuration
Optional files:
- `pins_arduino.h` — Arduino pin mapping overrides
- `rfswitch.h` — RF switch control for multi-band radios
- `nicheGraphics.h` — InkHUD e-ink configuration
## variant.h Template
```cpp
// Pin definitions
#define I2C_SDA 21
#define I2C_SCL 22
// LoRa radio
#define USE_SX1262 // Radio chip: USE_SX1262, USE_SX1268, USE_SX1280, USE_RF95, USE_LLCC68, USE_LR1110, USE_LR1120, USE_LR1121
#define LORA_CS 18
#define LORA_SCK 5
#define LORA_MOSI 27
#define LORA_MISO 19
#define LORA_DIO1 33 // SX126x: DIO1, SX128x: DIO1, RF95: IRQ
#define LORA_RESET 23
#define LORA_BUSY 32 // SX126x/SX128x only
#define SX126X_DIO2_AS_RF_SWITCH // Common for SX1262 boards
// GPS
#define HAS_GPS 1
#define GPS_RX_PIN 34
#define GPS_TX_PIN 12
// #define PIN_GPS_EN 47 // Optional GPS enable pin
// #define GPS_BAUDRATE 9600 // Override default 9600
// Display
#define HAS_SCREEN 1
// #define USE_SSD1306 // OLED type
// #define USE_SH1106 // Alternative OLED
// #define USE_ST7789 // TFT type
// #define SCREEN_WIDTH 128
// #define SCREEN_HEIGHT 64
// LEDs
#define LED_PIN 2 // Status LED (optional)
// #define HAS_NEOPIXEL 1 // WS2812 support
// Buttons
#define BUTTON_PIN 38
// #define BUTTON_PIN_ALT 0 // Secondary button
// Power management
// #define HAS_AXP192 1 // AXP192 PMU (T-Beam v1.0)
// #define HAS_AXP2101 1 // AXP2101 PMU (T-Beam v1.2+)
// #define BATTERY_PIN 35 // ADC battery voltage pin
// #define ADC_MULTIPLIER 2.0 // Voltage divider ratio
// Optional I2C devices
// #define HAS_RTC 1 // Real-time clock
// #define HAS_TELEMETRY 1 // Enable telemetry sensor support
// #define HAS_SENSOR 1 // I2C sensors present
```
## platformio.ini Template
```ini
[env:my_variant]
extends = esp32s3_base ; Use architecture-specific base
board = esp32-s3-devkitc-1 ; PlatformIO board definition (or custom in boards/)
board_level = extra ; Build level: extra, or omit for default
custom_meshtastic_support_level = 1 ; 1 = PR builds, 2 = merge builds only
build_flags =
${esp32s3_base.build_flags}
-D MY_VARIANT_SPECIFIC_FLAG=1
-I variants/esp32s3/my_variant ; Include path for variant.h
upload_speed = 921600
```
### Common Base Configs
- `esp32_base` / `esp32-common.ini` — ESP32
- `esp32s3_base` — ESP32-S3
- `esp32c3_base` — ESP32-C3
- `esp32c6_base` — ESP32-C6
- `nrf52840_base` / `nrf52.ini` — nRF52840
- `rp2040_base` — RP2040/RP2350
### Support Levels
- `custom_meshtastic_support_level = 1` — Built on every PR (actively supported)
- `custom_meshtastic_support_level = 2` — Built only on merge to main branches
- `board_level = extra` — Only built on full releases
## Build Manifest Metadata
`bin/platformio-custom.py` emits UI capability flags in the build manifest:
- `custom_meshtastic_has_mui = true/false` — Override MUI detection
- `custom_meshtastic_has_ink_hud = true/false` — Override InkHUD detection
- Architecture names are normalized (e.g., `esp32s3` → `esp32-s3`)
## InkHUD E-Ink Variants
For e-ink display variants using the InkHUD framework, add `nicheGraphics.h`:
```cpp
// nicheGraphics.h — InkHUD configuration for this variant
#define INKHUD // Enable InkHUD
// Configure display, applets, and refresh behavior per device
```
InkHUD has its own PlatformIO config: `src/graphics/niche/InkHUD/PlatformioConfig.ini`
## I2C Device Detection
If the variant has I2C devices, ensure `src/detect/ScanI2C` will detect them. The auto-detection system handles 80+ device types including displays, sensors, RTCs, keyboards, PMUs, and touch controllers at boot.
## Custom Board Definitions
If the PlatformIO board doesn't exist, create a custom board JSON in `boards/`:
```json
{
"build": {
"arduino": { "ldscript": "esp32s3_out.ld" },
"core": "esp32",
"f_cpu": "240000000L",
"f_flash": "80000000L",
"flash_mode": "qio",
"mcu": "esp32s3",
"variant": "esp32s3"
},
"connectivity": ["wifi", "bluetooth"],
"frameworks": ["arduino", "espidf"],
"name": "My Custom Board",
"upload": {
"flash_size": "8MB",
"maximum_ram_size": 327680,
"maximum_size": 8388608
},
"url": "https://example.com",
"vendor": "MyVendor"
}
```
## Checklist
- [ ] Create `variants/<arch>/<name>/variant.h` with pin definitions
- [ ] Create `variants/<arch>/<name>/platformio.ini` extending correct base
- [ ] Set `custom_meshtastic_support_level` (1 or 2)
- [ ] Verify radio chip define matches hardware (`USE_SX1262`, etc.)
- [ ] Set hardware capability flags (`HAS_GPS`, `HAS_SCREEN`, etc.)
- [ ] Add custom board JSON in `boards/` if needed
- [ ] Test build: `pio run -e my_variant`
- [ ] For e-ink: add `nicheGraphics.h` with InkHUD config
+4 -2
View File
@@ -301,10 +301,12 @@ jobs:
id: release_notes
run: |
chmod +x ./bin/generate_release_notes.py
NOTES=$(./bin/generate_release_notes.py ${{ needs.version.outputs.long }})
NOTES=$(./bin/generate_release_notes.py ${{ needs.version.outputs.long }} --compare-ref HEAD 2>release_notes.log)
echo "notes<<EOF" >> $GITHUB_OUTPUT
echo "$NOTES" >> $GITHUB_OUTPUT
echo "EOF" >> $GITHUB_OUTPUT
echo "### Release note range" >> $GITHUB_STEP_SUMMARY
cat release_notes.log >> $GITHUB_STEP_SUMMARY
env:
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
@@ -466,7 +468,7 @@ jobs:
- name: Generate release notes
run: |
chmod +x ./bin/generate_release_notes.py
./bin/generate_release_notes.py ${{ needs.version.outputs.long }} > ./publish/release_notes.md
./bin/generate_release_notes.py ${{ needs.version.outputs.long }} --compare-ref HEAD > ./publish/release_notes.md
env:
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
+54 -29
View File
@@ -1,25 +1,31 @@
#!/usr/bin/env python3
"""
Generate release notes from merged PRs on develop and master branches.
Categorizes PRs into Enhancements and Bug Fixes/Maintenance sections.
"""
"""Generate release notes from the actual release commit range."""
import subprocess
import re
import argparse
import json
import re
import subprocess
import sys
from datetime import datetime
def get_last_release_tag():
"""Get the most recent release tag."""
def get_last_release_tag(compare_ref, exclude_tag=None):
"""Get the most recent version tag merged into compare_ref."""
result = subprocess.run(
["git", "describe", "--tags", "--abbrev=0"],
["git", "tag", "--merged", compare_ref, "--sort=-version:refname", "v*"],
capture_output=True,
text=True,
check=True,
)
return result.stdout.strip()
for line in result.stdout.splitlines():
candidate = line.strip()
if not candidate:
continue
if exclude_tag and candidate == exclude_tag:
continue
return candidate
raise subprocess.CalledProcessError(result.returncode, result.args, output=result.stdout, stderr=result.stderr)
def get_tag_date(tag):
@@ -33,18 +39,18 @@ def get_tag_date(tag):
return result.stdout.strip()
def get_merged_prs_since_tag(tag, branch):
"""Get all merged PRs since the given tag on the specified branch."""
# Get commits since tag on the branch - look for PR numbers in parentheses
def get_merged_prs_in_range(tag, compare_ref):
"""Get all merged PRs in the git range between tag and compare_ref."""
result = subprocess.run(
[
"git",
"log",
f"{tag}..origin/{branch}",
f"{tag}..{compare_ref}",
"--oneline",
],
capture_output=True,
text=True,
check=True,
)
prs = []
@@ -65,6 +71,25 @@ def get_merged_prs_since_tag(tag, branch):
return prs
def parse_args():
"""Parse CLI arguments."""
parser = argparse.ArgumentParser(
description="Generate release notes from the actual release commit range."
)
parser.add_argument("new_version", help="Version that will be tagged for this release")
parser.add_argument(
"--base-tag",
dest="base_tag",
help="Existing version tag to diff from. Defaults to the latest version tag merged into the compare ref.",
)
parser.add_argument(
"--compare-ref",
default="HEAD",
help="Git ref to diff to. Defaults to HEAD.",
)
return parser.parse_args()
def get_pr_details(pr_number):
"""Get PR details from GitHub API via gh CLI."""
try:
@@ -268,28 +293,28 @@ def get_new_contributors(pr_details_list, tag, repo="meshtastic/firmware"):
def main():
if len(sys.argv) < 2:
print("Usage: generate_release_notes.py <new_version>", file=sys.stderr)
sys.exit(1)
new_version = sys.argv[1]
args = parse_args()
new_version = args.new_version
compare_ref = args.compare_ref
current_tag = f"v{new_version}"
# Get last release tag
try:
last_tag = get_last_release_tag()
last_tag = args.base_tag or get_last_release_tag(compare_ref, exclude_tag=current_tag)
except subprocess.CalledProcessError:
print("Error: Could not find last release tag", file=sys.stderr)
sys.exit(1)
# Collect PRs from both branches
all_pr_numbers = set()
print(
f"Resolved release note range: {last_tag}..{compare_ref}",
file=sys.stderr,
)
for branch in ["develop", "master"]:
try:
prs = get_merged_prs_since_tag(last_tag, branch)
all_pr_numbers.update(prs)
except Exception as e:
print(f"Warning: Could not get PRs from {branch}: {e}", file=sys.stderr)
try:
all_pr_numbers = set(get_merged_prs_in_range(last_tag, compare_ref))
except subprocess.CalledProcessError as e:
print(f"Error: Could not get PRs for range {last_tag}..{compare_ref}: {e}", file=sys.stderr)
sys.exit(1)
# Get details for all PRs
enhancements = []
@@ -87,6 +87,9 @@
</screenshots>
<releases>
<release version="2.7.23" date="2026-04-14">
<url type="details">https://github.com/meshtastic/firmware/releases?q=tag%3Av2.7.23</url>
</release>
<release version="2.7.22" date="2026-04-06">
<url type="details">https://github.com/meshtastic/firmware/releases?q=tag%3Av2.7.22</url>
</release>
+52
View File
@@ -0,0 +1,52 @@
{
"build": {
"arduino": {
"ldscript": "nrf52840_s140_v6.ld"
},
"core": "nRF5",
"cpu": "cortex-m4",
"extra_flags": "-DARDUINO_NRF52840_FEATHER -DNRF52840_XXAA",
"f_cpu": "64000000L",
"hwids": [
["0x239A", "0x8029"],
["0x239A", "0x0029"],
["0x239A", "0x002A"],
["0x239A", "0x802A"]
],
"usb_product": "makerfabs_pucky",
"mcu": "nrf52840",
"variant": "makerfabs_pucky",
"bsp": {
"name": "adafruit"
},
"softdevice": {
"sd_flags": "-DS140",
"sd_name": "s140",
"sd_version": "6.1.1",
"sd_fwid": "0x00B6"
},
"bootloader": {
"settings_addr": "0xFF000"
}
},
"connectivity": ["bluetooth"],
"debug": {
"jlink_device": "nRF52840_xxAA",
"svd_path": "nrf52840.svd",
"openocd_target": "nrf52840-mdk-rs"
},
"frameworks": ["arduino", "freertos"],
"name": "makerfabs_pucky",
"upload": {
"maximum_ram_size": 248832,
"maximum_size": 815104,
"speed": 115200,
"protocol": "nrfutil",
"protocols": ["jlink", "nrfjprog", "nrfutil", "stlink"],
"use_1200bps_touch": true,
"require_upload_port": true,
"wait_for_upload_port": true
},
"url": "https://www.makerfabs.com",
"vendor": "Makerfabs"
}
+6
View File
@@ -1,3 +1,9 @@
meshtasticd (2.7.23.0) unstable; urgency=medium
* Version 2.7.23
-- GitHub Actions <github-actions[bot]@users.noreply.github.com> Tue, 14 Apr 2026 12:29:48 +0000
meshtasticd (2.7.22.0) unstable; urgency=medium
* Version 2.7.22
+7
View File
@@ -21,8 +21,15 @@
// How many messages are stored (RAM + flash).
// Define -DMESSAGE_HISTORY_LIMIT=N in build_flags to control memory usage.
#ifndef MESSAGE_HISTORY_LIMIT
#if defined(ARCH_ESP32) && \
!(defined(CONFIG_IDF_TARGET_ESP32C3) || defined(CONFIG_IDF_TARGET_ESP32S3) || defined(CONFIG_IDF_TARGET_ESP32S2))
// Baseline ESP32 (non-PSRAM variants) has limited heap; reduce message history on resource-constrained builds.
// Override with -DMESSAGE_HISTORY_LIMIT=N if needed.
#define MESSAGE_HISTORY_LIMIT 10
#else
#define MESSAGE_HISTORY_LIMIT 20
#endif
#endif
// Internal alias used everywhere in code – do NOT redefine elsewhere.
#define MAX_MESSAGES_SAVED MESSAGE_HISTORY_LIMIT
+1 -1
View File
@@ -473,7 +473,7 @@ class AnalogBatteryLevel : public HasBatteryLevel
// technically speaking this should work for all(?) NRF52 boards
// but needs testing across multiple devices. NRF52 USB would not even work if
// VBUS was not properly connected and detected by the CPU
#elif defined(MUZI_BASE) || defined(PROMICRO_DIY_TCXO)
#elif defined(MUZI_BASE) || defined(PROMICRO_DIY_TCXO) || defined(HOCKEY_PUCK)
return powerHAL_isVBUSConnected();
#endif
return getBattVoltage() > chargingVolt;
+77 -1
View File
@@ -1,10 +1,85 @@
#include "concurrency/BinarySemaphorePosix.h"
#include "configuration.h"
#include <errno.h>
#include <sys/time.h>
#ifndef HAS_FREE_RTOS
namespace concurrency
{
#ifdef ARCH_PORTDUINO
BinarySemaphorePosix::BinarySemaphorePosix()
{
if (pthread_mutex_init(&mutex, NULL) != 0) {
throw std::runtime_error("pthread_mutex_init failed");
}
if (pthread_cond_init(&cond, NULL) != 0) {
pthread_mutex_destroy(&mutex);
throw std::runtime_error("pthread_cond_init failed");
}
signaled = false;
}
BinarySemaphorePosix::~BinarySemaphorePosix()
{
pthread_cond_destroy(&cond);
pthread_mutex_destroy(&mutex);
}
/**
* Returns false if we timed out
*/
bool BinarySemaphorePosix::take(uint32_t msec)
{
pthread_mutex_lock(&mutex);
if (!signaled) {
struct timespec ts;
clock_gettime(CLOCK_REALTIME, &ts);
ts.tv_sec += msec / 1000;
ts.tv_nsec += (msec % 1000) * 1000000L;
if (ts.tv_nsec >= 1000000000L) {
ts.tv_sec += 1;
ts.tv_nsec -= 1000000000L;
}
while (!signaled) {
int rc = pthread_cond_timedwait(&cond, &mutex, &ts);
if (rc == ETIMEDOUT)
break;
if (rc != 0) {
// Some other error occurred
pthread_mutex_unlock(&mutex);
throw std::runtime_error("pthread_cond_timedwait failed: " + std::to_string(rc));
}
}
}
bool wasSignaled = signaled;
signaled = false; // consume the signal (binary semaphore)
pthread_mutex_unlock(&mutex);
return wasSignaled;
}
void BinarySemaphorePosix::give()
{
pthread_mutex_lock(&mutex);
signaled = true;
pthread_cond_signal(&cond);
pthread_mutex_unlock(&mutex);
}
IRAM_ATTR void BinarySemaphorePosix::giveFromISR(BaseType_t *pxHigherPriorityTaskWoken)
{
give();
if (pxHigherPriorityTaskWoken)
*pxHigherPriorityTaskWoken = true;
}
#else
BinarySemaphorePosix::BinarySemaphorePosix() {}
@@ -22,7 +97,8 @@ bool BinarySemaphorePosix::take(uint32_t msec)
void BinarySemaphorePosix::give() {}
IRAM_ATTR void BinarySemaphorePosix::giveFromISR(BaseType_t *pxHigherPriorityTaskWoken) {}
#endif
} // namespace concurrency
#endif
#endif
+11 -2
View File
@@ -2,6 +2,10 @@
#include "../freertosinc.h"
#ifdef ARCH_PORTDUINO
#include <pthread.h>
#endif
namespace concurrency
{
@@ -9,7 +13,12 @@ namespace concurrency
class BinarySemaphorePosix
{
// SemaphoreHandle_t semaphore;
#ifdef ARCH_PORTDUINO
pthread_mutex_t mutex;
pthread_cond_t cond;
bool signaled;
#endif
public:
BinarySemaphorePosix();
@@ -27,4 +36,4 @@ class BinarySemaphorePosix
#endif
} // namespace concurrency
} // namespace concurrency
+20 -2
View File
@@ -422,6 +422,17 @@ void drawTextMessageFrame(OLEDDisplay *display, OLEDDisplayUiState *state, int16
std::vector<bool> isMine; // track alignment
std::vector<bool> isHeader; // track header lines
std::vector<AckStatus> ackForLine;
// Hard limit on total cached lines to prevent unbounded growth from a single long message.
// Reserve to the actual cache cap up front, because a single message can expand to many more
// wrapped display lines than a small per-message estimate would predict. For a display
// rendering only ~5-30 lines at a time, caching more than this limit wastes heap. Stop
// appending once we reach MAX_CACHED_LINES to prevent a single message from blowing out the
// heap.
constexpr size_t MAX_CACHED_LINES = 100U; // ~5-6KB for std::string overhead on 32-bit (if each ~50-60 bytes avg)
allLines.reserve(MAX_CACHED_LINES);
isMine.reserve(MAX_CACHED_LINES);
isHeader.reserve(MAX_CACHED_LINES);
ackForLine.reserve(MAX_CACHED_LINES);
for (auto it = filtered.rbegin(); it != filtered.rend(); ++it) {
const auto &m = *it;
@@ -565,16 +576,23 @@ void drawTextMessageFrame(OLEDDisplay *display, OLEDDisplayUiState *state, int16
int wrapWidth = mine ? rightTextWidth : leftTextWidth;
std::vector<std::string> wrapped = generateLines(display, "", msgText, wrapWidth);
// Per-message wrap-line limit: even if wrapping produces many lines, cap them to prevent
// a single long message from consuming most or all of the cache.
constexpr size_t MAX_WRAPPED_LINES_PER_MSG = 20U;
size_t wrappedCount = 0;
for (auto &ln : wrapped) {
allLines.push_back(ln);
if (allLines.size() >= MAX_CACHED_LINES || wrappedCount >= MAX_WRAPPED_LINES_PER_MSG)
break; // Cache limit or per-message limit reached; stop adding lines from this message
allLines.emplace_back(std::move(ln));
isMine.push_back(mine);
isHeader.push_back(false);
ackForLine.push_back(AckStatus::NONE);
++wrappedCount;
}
}
// Cache lines and heights
cachedLines = allLines;
cachedLines.swap(allLines);
cachedHeights = calculateLineHeights(cachedLines, emotes, isHeader);
std::vector<MessageBlock> blocks = buildMessageBlocks(isHeader, isMine);
-1
View File
@@ -121,7 +121,6 @@ void CardputerKeyboard::pressed(uint8_t key)
modifierFlag = 0;
}
uint8_t next_key = 0;
int row = (key - 1) / 10;
int col = (key - 1) % 10;
+3
View File
@@ -497,6 +497,9 @@ void cpuDeepSleep(uint32_t msecToWake)
;
#endif
#ifdef POWER_ON_OFF
digitalWrite(POWER_ON_OFF, HIGH);
#endif
auto ok = sd_power_system_off();
if (ok != NRF_SUCCESS) {
LOG_ERROR("FIXME: Ignoring soft device (EasyDMA pending?) and forcing system-off!");
+1 -1
View File
@@ -2,7 +2,7 @@
[portduino_base]
platform =
# renovate: datasource=git-refs depName=platform-native packageName=https://github.com/meshtastic/platform-native gitBranch=develop
https://github.com/meshtastic/platform-native/archive/f566d364204416cdbf298e349213f7d551f793d9.zip
https://github.com/meshtastic/platform-native/archive/71ed55bb95feb3c43ebde1ec1e2e17643a424c04.zip
framework = arduino
build_src_filter =
@@ -0,0 +1,68 @@
[env:makerfabs_pucky]
custom_meshtastic_hw_model = 124
custom_meshtastic_hw_model_slug = Hockey_Puck
custom_meshtastic_architecture = nrf52840
custom_meshtastic_actively_supported = true
custom_meshtastic_support_level = 1
custom_meshtastic_display_name = Makerfabs Hockey Puck
custom_meshtastic_images = rak4631.svg, rak4631_case.svg
custom_meshtastic_tags = Makerfabs
extends = nrf52840_base
board = makerfabs_pucky
board_level = pr
board_check = true
build_type = release
build_flags = ${nrf52840_base.build_flags}
-I variants/nrf52840/makerfabs_pucky
-D Hockey_Puck
-DMESHTASTIC_USE_EINK_UI=0
-DMESHTASTIC_HAS_SCREEN=0
-DMESHTASTIC_HAS_GPS=1
-DRADIOLIB_EXCLUDE_SX128X=1
-DRADIOLIB_EXCLUDE_SX127X=1
-DRADIOLIB_EXCLUDE_SX126X=1
-DRADIOLIB_EXCLUDE_LR11X0=0
build_src_filter = ${nrf52_base.build_src_filter} \
+<../variants/nrf52840/makerfabs_pucky> \
+<mesh/api/> \
+<mqtt/> \
lib_deps =
${nrf52840_base.lib_deps}
${networking_base.lib_deps}
# TODO renovate
https://github.com/meshtastic/QMA6100P_Arduino_Library/archive/14c900b8b2e4feaac5007a7e41e0c1b7f0841136.zip
; If not set we will default to uploading over serial (first it forces bootloader entry by talking 1200bps to cdcacm)
; Note: as of 6/2013 the serial/bootloader based programming takes approximately 30 seconds
;upload_protocol = jlink
; Allows programming and debug via the RAK NanoDAP as the default debugger tool for the RAK4631 (it is only $10!)
; programming time is about the same as the bootloader version.
; For information on this see the meshtastic developers documentation for "Development on the NRF52"
[env:makerfabs_pucky_dbg]
extends = env:makerfabs_pucky
board_level = extra
; if the builtin version of openocd has a buggy version of semihosting, so use the external version
; platform_packages = platformio/tool-openocd@3.1200.0
build_flags =
${env:makerfabs_pucky.build_flags}
-D USE_SEMIHOSTING
lib_deps =
${env:makerfabs_pucky.lib_deps}
# TODO renovate
https://github.com/geeksville/Armduino-Semihosting/archive/35b538fdf208c3530c1434cd099a08e486672ee4.zip
; NOTE: the pyocd support for semihosting is buggy. So I switched to using the builtin platformio support for the stlink adapter which worked much better.
; However the built in openocd version in platformio has buggy support for TCP to semihosting.
;
; So I'm now trying the external openocd - but the openocd scripts for nrf52.cfg assume you are using a DAP adapter not an STLINK adapter.
; In theory I could change those scripts. But for now I'm trying going back to a DAP adapter but with the external openocd.
upload_protocol = stlink
; eventually use platformio/tool-pyocd@2.3600.0 instad
;upload_protocol = custom
;upload_command = pyocd flash -t nrf52840 $UPLOADERFLAGS $SOURCE
@@ -0,0 +1,18 @@
#include "RadioLib.h"
#include "nrf.h"
static const uint32_t rfswitch_dio_pins[] = {
RADIOLIB_LR11X0_DIO5, RADIOLIB_LR11X0_DIO6, RADIOLIB_NC, RADIOLIB_NC, RADIOLIB_NC // RADIOLIB_LR11X0_DIO7
};
static const Module::RfSwitchMode_t rfswitch_table[] = {
// mode DIO5 DIO6 // DIO7
{LR11x0::MODE_STBY, {LOW, LOW}}, // { LR11x0::MODE_STBY, { LOW, LOW, LOW } },
{LR11x0::MODE_RX, {HIGH, LOW}}, // { LR11x0::MODE_RX, { HIGH, LOW, LOW } },
{LR11x0::MODE_TX, {HIGH, HIGH}}, // { LR11x0::MODE_TX, { HIGH, HIGH, LOW } },
{LR11x0::MODE_TX_HP, {LOW, HIGH}}, // { LR11x0::MODE_TX_HP, { LOW, HIGH, HIGH } },
{LR11x0::MODE_TX_HF, {LOW, LOW}}, // { LR11x0::MODE_TX_HF, { LOW, LOW, HIGH } },
{LR11x0::MODE_GNSS, {LOW, LOW}}, // { LR11x0::MODE_GNSS, { LOW, LOW, LOW } },
{LR11x0::MODE_WIFI, {LOW, LOW}}, // { LR11x0::MODE_WIFI, { LOW, LOW, LOW } },
END_OF_MODE_TABLE,
};
@@ -0,0 +1,46 @@
/*
Copyright (c) 2014-2015 Arduino LLC. All right reserved.
Copyright (c) 2016 Sandeep Mistry All right reserved.
Copyright (c) 2018, Adafruit Industries (adafruit.com)
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library 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 Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "variant.h"
#include "nrf.h"
#include "wiring_constants.h"
#include "wiring_digital.h"
const uint32_t g_ADigitalPinMap[] = {
// P0
0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31,
// P1
32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47};
void initVariant()
{
// 3V3 Power Rail
pinMode(PIN_3V3_EN, OUTPUT);
digitalWrite(PIN_3V3_EN, HIGH);
// Power latch
pinMode(POWER_ON_OFF, OUTPUT);
digitalWrite(POWER_ON_OFF, HIGH);
// Park the unconnected LNA_CTRL_MCU net so it does not float
pinMode(LNA_CTRL_PIN, INPUT_PULLDOWN);
}
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@@ -0,0 +1,177 @@
/*
Copyright (c) 2014-2015 Arduino LLC. All right reserved.
Copyright (c) 2016 Sandeep Mistry All right reserved.
Copyright (c) 2018, Adafruit Industries (adafruit.com)
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library 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 Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef _VARIANT_RAK4630_
#define _VARIANT_RAK4630_
// #define RAK4630
/** Master clock frequency */
#define VARIANT_MCK (64000000ul)
#define USE_LFXO // Board uses 32khz crystal for LF
/*----------------------------------------------------------------------------
* Headers
*----------------------------------------------------------------------------*/
#include "WVariant.h"
#ifdef __cplusplus
extern "C" {
#endif // __cplusplus
// Number of pins defined in PinDescription array
#define PINS_COUNT (48)
#define NUM_DIGITAL_PINS (48)
#define NUM_ANALOG_INPUTS (6)
#define NUM_ANALOG_OUTPUTS (0)
// #define LED_PIN 16 // This is a LED_WS2812 not a standard LED
#define HAS_NEOPIXEL // Enable the use of neopixels
#define NEOPIXEL_COUNT 1 // How many neopixels are connected
#define NEOPIXEL_DATA 25 // gpio pin used to send data to the neopixels
#define NEOPIXEL_TYPE (NEO_GRB + NEO_KHZ800) // type of neopixels in use
#define RGB_LED_POWER
#define LED_STATE_ON 1
/*
* Buttons
*/
#define BUTTON_PIN 5
#define PIN_BUZZER 22
/*
* Analog pins
*/
#define PIN_A0 (2)
#define PIN_A1 (3)
#define PIN_A2 (4)
#define PIN_A3 (5)
#define PIN_A4 (28)
#define PIN_A5 (29)
#define PIN_A6 (30)
#define PIN_A7 (31)
static const uint8_t A0 = PIN_A0;
static const uint8_t A1 = PIN_A1;
static const uint8_t A2 = PIN_A2;
static const uint8_t A3 = PIN_A3;
static const uint8_t A4 = PIN_A4;
static const uint8_t A5 = PIN_A5;
static const uint8_t A6 = PIN_A6;
static const uint8_t A7 = PIN_A7;
#define ADC_RESOLUTION 14
// Other pins
#define PIN_AREF (2)
static const uint8_t AREF = PIN_AREF;
/*
* Serial interfaces
*/
// GPS on Base Board
#define PIN_SERIAL1_RX (8)
#define PIN_SERIAL1_TX (6)
// DEBUG on Base Board
#define PIN_SERIAL2_RX (38)
#define PIN_SERIAL2_TX (37)
/*
* SPI Interfaces
*/
#define SPI_INTERFACES_COUNT 1
#define PIN_SPI_MISO (47)
#define PIN_SPI_MOSI (46)
#define PIN_SPI_SCK (45)
static const uint8_t SS = 44;
static const uint8_t MOSI = PIN_SPI_MOSI;
static const uint8_t MISO = PIN_SPI_MISO;
static const uint8_t SCK = PIN_SPI_SCK;
#define USE_LR1121
#define LR11X0_POWER_EN (13)
#define LR1121_IRQ_PIN 14
#define LR1121_NRESET_PIN (42)
#define LR1121_BUSY_PIN (43)
#define LR1121_SPI_NSS_PIN SS
#define LR1121_SPI_SCK_PIN PIN_SPI_SCK
#define LR1121_SPI_MOSI_PIN PIN_SPI_MOSI
#define LR1121_SPI_MISO_PIN PIN_SPI_MISO
#define LR11X0_DIO3_TCXO_VOLTAGE 3.3
#define LR11X0_DIO_AS_RF_SWITCH
/*
* Wire Interfaces
*/
#define WIRE_INTERFACES_COUNT 1
#define PIN_WIRE_SDA (26)
#define PIN_WIRE_SCL (27)
#define HAS_QMA6100P
/*
* Power Switches
*/
#define POWER_ON_OFF (30) // P0.30 Power latch control, set high to keep power on, set low to turn off
#define PIN_3V3_EN (16)
#define HAS_GPS 1
#define PIN_GPS_PPS (11) // Pulse per second input from the GPS
#define GPS_RX_PIN PIN_SERIAL1_RX
#define GPS_TX_PIN PIN_SERIAL1_TX
// Battery
#define EXT_CHRG_DETECT (32 + 7) // P1.07
#define HAS_CW2015 1
// RAK4630 AIN0 = nrf52840 AIN3 = Pin 5
// #define BATTERY_LPCOMP_INPUT NRF_LPCOMP_INPUT_3
// We have AIN3 with a VBAT divider so AIN3 = VBAT * (1.5/2.5)
// We have the device going deep sleep under 3.1V, which is AIN3 = 1.86V
// So we can wake up when VBAT>=VDD is restored to 3.3V, where AIN3 = 1.98V
// 1.98/3.3 = 6/10, but that's close to the VBAT divider, so we
// pick 6/8VDD, which means VBAT=4.1V.
// Reference:
// VDD=3.3V AIN3=5/8*VDD=2.06V VBAT=1.66*AIN3=3.41V
// VDD=3.3V AIN3=11/16*VDD=2.26V VBAT=1.66*AIN3=3.76V
// VDD=3.3V AIN3=6/8*VDD=2.47V VBAT=1.66*AIN3=4.1V
// #define BATTERY_LPCOMP_THRESHOLD NRF_LPCOMP_REF_SUPPLY_11_16
#define LNA_CTRL_PIN 4 // P0.04
#define HOCKEY_PUCK 1
#define NUM_PA_POINTS 22
#define TX_GAIN_LORA 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 13, 13, 13, 12, 12, 11, 10, 9, 8, 7
#ifdef __cplusplus
}
#endif
/*----------------------------------------------------------------------------
* Arduino objects - C++ only
*----------------------------------------------------------------------------*/
#endif
+1 -1
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@@ -1,4 +1,4 @@
[VERSION]
major = 2
minor = 7
build = 22
build = 23