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84 changed files with 476 additions and 1815 deletions
+4 -4
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@@ -9,19 +9,19 @@ plugins:
lint:
enabled:
- checkov@3.2.513
- renovate@43.104.6
- renovate@43.100.0
- prettier@3.8.1
- trufflehog@3.94.2
- trufflehog@3.94.1
- yamllint@1.38.0
- bandit@1.9.4
- trivy@0.69.3
- taplo@0.10.0
- ruff@0.15.9
- ruff@0.15.8
- isort@8.0.1
- markdownlint@0.48.0
- oxipng@10.1.0
- svgo@4.0.1
- actionlint@1.7.12
- actionlint@1.7.11
- flake8@7.3.0
- hadolint@2.14.0
- shfmt@3.6.0
@@ -1,39 +0,0 @@
# MeshAdv-Pi E22-900M30S
# https://github.com/chrismyers2000/MeshAdv-Pi-Hat
Meta:
name: MeshAdv-Pi E22-900M30S
support: community
compatible:
- luckfox-lyra-zero-w # Armbian
Lora:
Module: sx1262
CS: # GPIO0_C2 (physical 40)
pin: 18
gpiochip: 0
line: 18
IRQ: # GPIO1_D1 (physical 36)
pin: 57
gpiochip: 1
line: 25
Busy: # GPIO0_C1 (physical 38)
pin: 17
gpiochip: 0
line: 17
Reset: # GPIO0_B6 (physical 12)
pin: 14
gpiochip: 0
line: 14
TXen: # GPIO1_C2 (physical 33)
pin: 50
gpiochip: 1
line: 18
RXen: # GPIO1_D2 (physical 32)
pin: 58
gpiochip: 1
line: 26
DIO3_TCXO_VOLTAGE: true
# Only for E22-900M33S:
# Limit the output power to 8 dBm
# SX126X_MAX_POWER: 8
spidev: spidev0.0
@@ -1,33 +0,0 @@
# MeshAdv Mini E22-900M22S
# https://github.com/chrismyers2000/MeshAdv-Mini
Meta:
name: MeshAdv Mini E22-900M22S
support: community
compatible:
- luckfox-lyra-zero-w # Armbian
Lora:
Module: sx1262 # Ebyte E22-900M22S
CS: # GPIO0_B2_d (phys 24, RPi CE0)
pin: 10
gpiochip: 0
line: 10
IRQ: # GPIO1_D1_d (phys 36, RPi GPIO16)
pin: 57
gpiochip: 1
line: 25
Busy: # GPIO0_C1_d (phys 38, RPi GPIO20)
pin: 17
gpiochip: 0
line: 17
Reset: # GPIO0_B4_d (phys 18, RPi GPIO24)
pin: 12
gpiochip: 0
line: 12
RXen: # GPIO1_D2_d (phys 32, RPi GPIO12)
pin: 58
gpiochip: 1
line: 26
DIO2_AS_RF_SWITCH: true
DIO3_TCXO_VOLTAGE: true
spidev: spidev0.0
@@ -1,38 +0,0 @@
Meta:
name: RAK6421 + RAK13300 Slot 1
support: community # Promote when tested
compatible:
- luckfox-lyra-zero-w # Armbian
Lora:
Module: sx1262
IRQ: # GPIO0_A5 (IO6)
pin: 5
gpiochip: 0
line: 5
Reset: # GPIO1_D1 (IO4)
pin: 57
gpiochip: 1
line: 25
Busy: # GPIO0_B4 (IO5)
pin: 12
gpiochip: 0
line: 12
# Ant_sw: # GPIO1_C2 (IO3)
# pin: 50
# gpiochip: 1
# line: 18
Enable_Pins:
- pin: 58 # GPIO1_D2
gpiochip: 1
line: 26
- pin: 50 # GPIO1_C2
gpiochip: 1
line: 18
DIO3_TCXO_VOLTAGE: true
DIO2_AS_RF_SWITCH: true
spidev: spidev0.0
# CS: # GPIO0_B2
# pin: 10
# gpiochip: 0
# line: 10
@@ -1,36 +0,0 @@
Meta:
name: RAK6421 + RAK13300 Slot 2
support: community # Promote when tested
compatible:
- luckfox-lyra-zero-w # Armbian
Lora:
Module: sx1262
IRQ: # GPIO0_B6 (IO6)
pin: 14
gpiochip: 0
line: 14
Reset: # GPIO0_B4 (IO4)
pin: 12
gpiochip: 0
line: 12
Busy: # GPIO1_C0 (IO5)
pin: 48
gpiochip: 1
line: 16
# Ant_sw: # GPIO0_B5 (IO3)
# pin: 13
# gpiochip: 0
# line: 13
Enable_Pins:
- pin: 51 # GPIO1_C3
gpiochip: 1
line: 19
- pin: 13 # GPIO0_B5
gpiochip: 0
line: 13
spidev: spidev0.1
# CS: # GPIO0_B1
# pin: 9
# gpiochip: 0
# line: 9
@@ -1,39 +0,0 @@
Meta:
name: RAK6421 + RAK13300 Slot 1
support: community # Promote when tested
compatible:
- luckfox-lyra-zero-w # Armbian
Lora:
Module: sx1262
IRQ: # GPIO0_A5 (IO6)
pin: 5
gpiochip: 0
line: 5
Reset: # GPIO1_D1 (IO4)
pin: 57
gpiochip: 1
line: 25
Busy: # GPIO0_B4 (IO5)
pin: 12
gpiochip: 0
line: 12
# Ant_sw: # GPIO1_C2 (IO3)
# pin: 50
# gpiochip: 1
# line: 18
Enable_Pins:
- pin: 58 # GPIO1_D2
gpiochip: 1
line: 26
- pin: 50 # GPIO1_C2
gpiochip: 1
line: 18
DIO3_TCXO_VOLTAGE: true
DIO2_AS_RF_SWITCH: true
spidev: spidev0.0
# CS: # GPIO0_B2
# pin: 10
# gpiochip: 0
# line: 10
TX_GAIN_LORA: [9, 9, 10, 11, 9, 8, 9, 10, 10, 10, 11, 12, 12, 12, 12, 12, 12, 12, 12, 10, 9, 8]
@@ -1,37 +0,0 @@
Meta:
name: RAK6421 + RAK13300 Slot 2
support: community # Promote when tested
compatible:
- luckfox-lyra-zero-w # Armbian
Lora:
Module: sx1262
IRQ: # GPIO0_B6 (IO6)
pin: 14
gpiochip: 0
line: 14
Reset: # GPIO0_B4 (IO4)
pin: 12
gpiochip: 0
line: 12
Busy: # GPIO1_C0 (IO5)
pin: 48
gpiochip: 1
line: 16
# Ant_sw: # GPIO0_B5 (IO3)
# pin: 13
# gpiochip: 0
# line: 13
Enable_Pins:
- pin: 51 # GPIO1_C3
gpiochip: 1
line: 19
- pin: 13 # GPIO0_B5
gpiochip: 0
line: 13
spidev: spidev0.1
# CS: # GPIO0_B1
# pin: 9
# gpiochip: 0
# line: 9
TX_GAIN_LORA: [9, 9, 10, 11, 9, 8, 9, 10, 10, 10, 11, 12, 12, 12, 12, 12, 12, 12, 12, 10, 9, 8]
@@ -1,30 +0,0 @@
Meta:
name: Waveshare SX1262
support: deprecated
compatible:
- luckfox-lyra-zero-w # Armbian
Lora:
Module: sx1262 # Waveshare SX126X XXXM
DIO2_AS_RF_SWITCH: true
CS: # GPIO0_C2 (physical 40)
pin: 18
gpiochip: 0
line: 18
IRQ: # GPIO1_D1 (physical 36)
pin: 57
gpiochip: 1
line: 25
Busy: # GPIO0_C1 (physical 38)
pin: 17
gpiochip: 0
line: 17
Reset: # GPIO0_B6 (physical 12)
pin: 14
gpiochip: 0
line: 14
SX126X_ANT_SW: # GPIO1_B3 (physical 31)
pin: 43
gpiochip: 1
line: 11
spidev: spidev0.0
@@ -87,9 +87,6 @@
</screenshots>
<releases>
<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>
<release version="2.7.21" date="2026-03-11">
<url type="details">https://github.com/meshtastic/firmware/releases?q=tag%3Av2.7.21</url>
</release>
-6
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@@ -1,9 +1,3 @@
meshtasticd (2.7.22.0) unstable; urgency=medium
* Version 2.7.22
-- GitHub Actions <github-actions[bot]@users.noreply.github.com> Mon, 06 Apr 2026 11:34:12 +0000
meshtasticd (2.7.21.0) unstable; urgency=medium
* Version 2.7.21
+7 -4
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@@ -50,7 +50,6 @@ build_flags = -Wno-missing-field-initializers
-DRADIOLIB_EXCLUDE_APRS=1
-DRADIOLIB_EXCLUDE_LORAWAN=1
-DMESHTASTIC_EXCLUDE_DROPZONE=1
-DMESHTASTIC_EXCLUDE_ZPS=1
-DMESHTASTIC_EXCLUDE_REPLYBOT=1
-DMESHTASTIC_EXCLUDE_REMOTEHARDWARE=1
-DMESHTASTIC_EXCLUDE_HEALTH_TELEMETRY=1
@@ -127,7 +126,7 @@ lib_deps =
[device-ui_base]
lib_deps =
# renovate: datasource=git-refs depName=meshtastic/device-ui packageName=https://github.com/meshtastic/device-ui gitBranch=master
https://github.com/meshtastic/device-ui/archive/1897dd17fceb1f101bb1a3245680aa3439edcfdd.zip
https://github.com/meshtastic/device-ui/archive/7b1485b86c8d55a40e5226749097767e8b87f396.zip
; Common libs for environmental measurements in telemetry module
[environmental_base]
@@ -196,10 +195,16 @@ lib_deps =
adafruit/Adafruit BMP3XX Library@2.1.6
# renovate: datasource=custom.pio depName=Adafruit MAX1704X packageName=adafruit/library/Adafruit MAX1704X
adafruit/Adafruit MAX1704X@1.0.3
# renovate: datasource=custom.pio depName=Adafruit SHTC3 packageName=adafruit/library/Adafruit SHTC3 Library
adafruit/Adafruit SHTC3 Library@1.0.2
# renovate: datasource=custom.pio depName=Adafruit LPS2X packageName=adafruit/library/Adafruit LPS2X
adafruit/Adafruit LPS2X@2.0.6
# renovate: datasource=custom.pio depName=Adafruit SHT31 packageName=adafruit/library/Adafruit SHT31 Library
adafruit/Adafruit SHT31 Library@2.2.2
# renovate: datasource=custom.pio depName=Adafruit VEML7700 packageName=adafruit/library/Adafruit VEML7700 Library
adafruit/Adafruit VEML7700 Library@2.1.6
# renovate: datasource=custom.pio depName=Adafruit SHT4x packageName=adafruit/library/Adafruit SHT4x Library
adafruit/Adafruit SHT4x Library@1.0.5
# renovate: datasource=custom.pio depName=SparkFun Qwiic Scale NAU7802 packageName=sparkfun/library/SparkFun Qwiic Scale NAU7802 Arduino Library
sparkfun/SparkFun Qwiic Scale NAU7802 Arduino Library@1.0.6
# renovate: datasource=custom.pio depName=ClosedCube OPT3001 packageName=closedcube/library/ClosedCube OPT3001
@@ -214,8 +219,6 @@ lib_deps =
sensirion/Sensirion I2C SFA3x@1.0.0
# renovate: datasource=custom.pio depName=Sensirion I2C SCD30 packageName=sensirion/library/Sensirion I2C SCD30
sensirion/Sensirion I2C SCD30@1.0.0
# renovate: datasource=custom.pio depName=arduino-sht packageName=sensirion/library/arduino-sht
sensirion/arduino-sht@1.2.6
; Environmental sensors with BSEC2 (Bosch proprietary IAQ)
[environmental_extra]
+2 -2
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@@ -137,7 +137,7 @@ void RedirectablePrint::log_to_serial(const char *logLevel, const char *format,
if (color) {
::printf("\u001b[0m");
}
::printf("| %02d:%02d:%02d %u.%03u ", hour, min, sec, millis() / 1000, millis() % 1000);
::printf("| %02d:%02d:%02d %u ", hour, min, sec, millis() / 1000);
#else
printf("%s ", logLevel);
if (color) {
@@ -151,7 +151,7 @@ void RedirectablePrint::log_to_serial(const char *logLevel, const char *format,
if (color) {
::printf("\u001b[0m");
}
::printf("| ??:??:?? %u.%03u ", millis() / 1000, millis() % 1000);
::printf("| ??:??:?? %u ", millis() / 1000);
#else
printf("%s ", logLevel);
if (color) {
+3 -3
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@@ -231,7 +231,7 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
#define BME_ADDR 0x76
#define BME_ADDR_ALTERNATE 0x77
#define MCP9808_ADDR 0x18
#define INA_ADDR 0x40 // same as SHT2X
#define INA_ADDR 0x40
#define INA_ADDR_ALTERNATE 0x41
#define INA_ADDR_WAVESHARE_UPS 0x43
#define INA3221_ADDR 0x42
@@ -244,8 +244,8 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
#define LPS22HB_ADDR 0x5C
#define LPS22HB_ADDR_ALT 0x5D
#define SFA30_ADDR 0x5D
#define SHTXX_ADDR 0x44
#define SHTXX_ADDR_ALT 0x45
#define SHT31_4x_ADDR 0x44
#define SHT31_4x_ADDR_ALT 0x45
#define PMSA003I_ADDR 0x12
#define QMA6100P_ADDR 0x12
#define AHT10_ADDR 0x38
+4 -2
View File
@@ -31,6 +31,9 @@ class ScanI2C
INA3221,
MAX17048,
MCP9808,
SHT31,
SHT4X,
SHTC3,
LPS22HB,
QMC6310U,
QMC6310N,
@@ -91,8 +94,7 @@ class ScanI2C
SFA30,
CW2015,
SCD30,
ADS1115,
SHTXX
ADS1115
} DeviceType;
// typedef uint8_t DeviceAddress;
+12 -58
View File
@@ -136,9 +136,7 @@ bool ScanI2CTwoWire::i2cCommandResponseLength(ScanI2C::DeviceAddress addr, uint1
return match;
}
#if HAS_TELEMETRY && !MESHTASTIC_EXCLUDE_AIR_QUALITY_SENSOR
// FIXME Move to a separate file for detection of sensors that require more complex interactions?
// For SEN5X detection
/// for SEN5X detection
// Note, this code needs to be called before setting the I2C bus speed
// for the screen at high speed. The speed needs to be at 100kHz, otherwise
// detection will not work
@@ -176,46 +174,6 @@ String readSEN5xProductName(TwoWire *i2cBus, uint8_t address)
return String(productName);
}
#endif
#if HAS_TELEMETRY && !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR
bool detectSHT21SerialNumber(TwoWire *i2cBus, uint8_t address)
{
i2cBus->beginTransmission(address);
i2cBus->write(0xFA);
i2cBus->write(0x0F);
if (i2cBus->endTransmission() != 0)
return false;
if (i2cBus->requestFrom(address, (uint8_t)8) != 8)
return false;
// Just flush the data
while (i2cBus->available() < 8) {
i2cBus->read();
}
i2cBus->beginTransmission(address);
i2cBus->write(0xFC);
i2cBus->write(0xC9);
if (i2cBus->endTransmission() != 0)
return false;
if (i2cBus->requestFrom(address, (uint8_t)6) != 6)
return false;
// Just flush the data
while (i2cBus->available() < 6) {
i2cBus->read();
}
// Assume we detect the SHT21 if something came back from the request
return true;
}
#endif
#define SCAN_SIMPLE_CASE(ADDR, T, ...) \
case ADDR: \
@@ -413,7 +371,7 @@ void ScanI2CTwoWire::scanPort(I2CPort port, uint8_t *address, uint8_t asize)
break;
#endif
#if !defined(M5STACK_UNITC6L)
case INA_ADDR: // Same as SHT2X
case INA_ADDR:
case INA_ADDR_ALTERNATE:
case INA_ADDR_WAVESHARE_UPS:
registerValue = getRegisterValue(ScanI2CTwoWire::RegisterLocation(addr, 0xFE), 2);
@@ -429,12 +387,7 @@ void ScanI2CTwoWire::scanPort(I2CPort port, uint8_t *address, uint8_t asize)
logFoundDevice("INA260", (uint8_t)addr.address);
type = INA260;
}
#if HAS_TELEMETRY && !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR
} else if (detectSHT21SerialNumber(i2cBus, (uint8_t)addr.address)) {
logFoundDevice("SHTXX (SHT2X)", (uint8_t)addr.address);
type = SHTXX;
#endif
} else { // Assume INA219 if none of the above ones are found
} else { // Assume INA219 if INA260 ID is not found
logFoundDevice("INA219", (uint8_t)addr.address);
type = INA219;
}
@@ -495,19 +448,22 @@ void ScanI2CTwoWire::scanPort(I2CPort port, uint8_t *address, uint8_t asize)
}
break;
}
case SHTXX_ADDR: // same as OPT3001_ADDR_ALT
case SHTXX_ADDR_ALT: // same as OPT3001_ADDR
case SHT31_4x_ADDR: // same as OPT3001_ADDR_ALT
case SHT31_4x_ADDR_ALT: // same as OPT3001_ADDR
if (getRegisterValue(ScanI2CTwoWire::RegisterLocation(addr, 0x7E), 2) == 0x5449) {
type = OPT3001;
logFoundDevice("OPT3001", (uint8_t)addr.address);
} else { // SHTXX
type = SHTXX;
logFoundDevice("SHTXX", (uint8_t)addr.address);
} else if (i2cCommandResponseLength(addr, 0x89, 6)) { // SHT4x serial number (6 bytes inc. CRC)
type = SHT4X;
logFoundDevice("SHT4X", (uint8_t)addr.address);
} else {
type = SHT31;
logFoundDevice("SHT31", (uint8_t)addr.address);
}
break;
SCAN_SIMPLE_CASE(SHTC3_ADDR, SHTXX, "SHTXX", (uint8_t)addr.address)
SCAN_SIMPLE_CASE(SHTC3_ADDR, SHTC3, "SHTC3", (uint8_t)addr.address)
case RCWL9620_ADDR:
// get MAX30102 PARTID
registerValue = getRegisterValue(ScanI2CTwoWire::RegisterLocation(addr, 0xFF), 1);
@@ -719,7 +675,6 @@ void ScanI2CTwoWire::scanPort(I2CPort port, uint8_t *address, uint8_t asize)
logFoundDevice("BMX160", (uint8_t)addr.address);
break;
} else {
#if HAS_TELEMETRY && !MESHTASTIC_EXCLUDE_AIR_QUALITY_SENSOR
String prod = "";
prod = readSEN5xProductName(i2cBus, addr.address);
if (prod.startsWith("SEN55")) {
@@ -735,7 +690,6 @@ void ScanI2CTwoWire::scanPort(I2CPort port, uint8_t *address, uint8_t asize)
logFoundDevice("Sensirion SEN50", addr.address);
break;
}
#endif
if (addr.address == BMX160_ADDR) {
type = BMX160;
logFoundDevice("BMX160", (uint8_t)addr.address);
+7 -15
View File
@@ -1254,14 +1254,14 @@ void TFTDisplay::display(bool fromBlank)
// Did we find a pixel that needs updating on this row?
if (x_FirstPixelUpdate < displayWidth) {
// Align the first pixel for update to an even number so the total alignment of
// the data will be at 32-bit boundary, which is required by GDMA SPI transfers.
x_FirstPixelUpdate &= ~1;
// Step 3a: copy rest of the pixels in this row into the pixel line buffer,
// while also recording the last pixel in the row that needs updating.
// Since the first changed pixel will be looked up, the x_LastPixelUpdate will be set.
for (x = x_FirstPixelUpdate; x < displayWidth; x++) {
// Quickly write out the first changed pixel (saves another array lookup)
linePixelBuffer[x_FirstPixelUpdate] = isset ? colorTftMesh : colorTftBlack;
x_LastPixelUpdate = x_FirstPixelUpdate;
// Step 3: copy all remaining pixels in this row into the pixel line buffer,
// while also recording the last pixel in the row that needs updating
for (x = x_FirstPixelUpdate + 1; x < displayWidth; x++) {
isset = buffer[x + y_byteIndex] & y_byteMask;
linePixelBuffer[x] = isset ? colorTftMesh : colorTftBlack;
@@ -1274,14 +1274,6 @@ void TFTDisplay::display(bool fromBlank)
x_LastPixelUpdate = x;
}
}
// Step 3b: Round up the last pixel to odd number to maintain 32-bit alignment for SPIs.
// Most displays will have even number of pixels in a row -- this will be in bounds
// of the displayWidth. (Hopefully odd displays will just ignore that extra pixel.)
x_LastPixelUpdate |= 1;
// Ensure the last pixel index does not exceed the display width.
if (x_LastPixelUpdate >= displayWidth) {
x_LastPixelUpdate = displayWidth - 1;
}
#if defined(HACKADAY_COMMUNICATOR)
tft->draw16bitBeRGBBitmap(x_FirstPixelUpdate, y, &linePixelBuffer[x_FirstPixelUpdate],
(x_LastPixelUpdate - x_FirstPixelUpdate + 1), 1);
+1 -3
View File
@@ -163,11 +163,9 @@ void menuHandler::LoraRegionPicker(uint32_t duration)
// Guard: without a reboot, reconfigure() applies the region directly.
// Reject LORA_24 on sub-GHz-only hardware — getRadio() used to catch this post-reboot.
// TODO: change this to either use the validateLoraConfig() logic or at least check the region for wideLora
// rather than a hardcoded check for LORA_24.
if (selectedRegion == meshtastic_Config_LoRaConfig_RegionCode_LORA_24 &&
!(RadioLibInterface::instance && RadioLibInterface::instance->wideLora())) {
LOG_WARN("Radio hardware does not support 2.4 GHz; ignoring region selection");
LOG_WARN("Radio hardware does not support 2.4 GHz; ignoring LORA_24 selection");
return;
}
+6 -11
View File
@@ -299,7 +299,6 @@ void InputBroker::Init()
// Buttons. Moved here cause we need NodeDB to be initialized
// If your variant.h has a BUTTON_PIN defined, go ahead and define BUTTON_ACTIVE_LOW and BUTTON_ACTIVE_PULLUP
UserButtonThread = new ButtonThread("UserButton");
#if !MESHTASTIC_EXCLUDE_SCREEN
if (screen) {
ButtonConfig userConfig;
userConfig.pinNumber = (uint8_t)_pinNum;
@@ -318,9 +317,7 @@ void InputBroker::Init()
userConfig.longPressTime = 500;
userConfig.longLongPress = INPUT_BROKER_SHUTDOWN;
UserButtonThread->initButton(userConfig);
} else
#endif
{
} else {
ButtonConfig userConfigNoScreen;
userConfigNoScreen.pinNumber = (uint8_t)_pinNum;
userConfigNoScreen.activeLow = BUTTON_ACTIVE_LOW;
@@ -382,13 +379,11 @@ void InputBroker::Init()
}
#endif // HAS_BUTTON
#if ARCH_PORTDUINO
if (config.display.displaymode != meshtastic_Config_DisplayConfig_DisplayMode_COLOR) {
if (portduino_config.i2cdev != "") {
seesawRotary = new SeesawRotary("SeesawRotary");
if (!seesawRotary->init()) {
delete seesawRotary;
seesawRotary = nullptr;
}
if (config.display.displaymode != meshtastic_Config_DisplayConfig_DisplayMode_COLOR && portduino_config.i2cdev != "") {
seesawRotary = new SeesawRotary("SeesawRotary");
if (!seesawRotary->init()) {
delete seesawRotary;
seesawRotary = nullptr;
}
aLinuxInputImpl = new LinuxInputImpl();
aLinuxInputImpl->init();
+2 -2
View File
@@ -32,8 +32,8 @@
#define default_map_publish_interval_secs 60 * 60
// Traffic management defaults
#define default_traffic_mgmt_position_precision_bits 24 // ~10m grid cells
#define default_traffic_mgmt_position_min_interval_secs (ONE_DAY / 2) // 12 hours between identical positions
#define default_traffic_mgmt_position_precision_bits 24 // ~10m grid cells
#define default_traffic_mgmt_position_min_interval_secs ONE_DAY // 1 day between identical positions
#ifdef USERPREFS_RINGTONE_NAG_SECS
#define default_ringtone_nag_secs USERPREFS_RINGTONE_NAG_SECS
+11 -10
View File
@@ -71,10 +71,12 @@ template <typename T> bool LR11x0Interface<T>::init()
RadioLibInterface::init();
if (config.lora.region == meshtastic_Config_LoRaConfig_RegionCode_LORA_24) { // clamp if wide freq range
limitPower(LR1120_MAX_POWER);
} else {
limitPower(LR1110_MAX_POWER); // default clamp for non-wide freq range
limitPower(LR1110_MAX_POWER);
if ((power > LR1120_MAX_POWER) &&
(config.lora.region == meshtastic_Config_LoRaConfig_RegionCode_LORA_24)) { // clamp again if wide freq range
power = LR1120_MAX_POWER;
preambleLength = 12; // 12 is the default for operation above 2GHz
}
#ifdef LR11X0_RF_SWITCH_SUBGHZ
@@ -175,12 +177,6 @@ template <typename T> bool LR11x0Interface<T>::reconfigure()
err = lora.setSyncWord(syncWord);
assert(err == RADIOLIB_ERR_NONE);
if (config.lora.region == meshtastic_Config_LoRaConfig_RegionCode_LORA_24) { // clamp if wide freq range
limitPower(LR1120_MAX_POWER);
} else {
limitPower(LR1110_MAX_POWER); // default clamp for non-wide freq range
}
err = lora.setPreambleLength(preambleLength);
assert(err == RADIOLIB_ERR_NONE);
@@ -188,6 +184,11 @@ template <typename T> bool LR11x0Interface<T>::reconfigure()
if (err != RADIOLIB_ERR_NONE)
RECORD_CRITICALERROR(meshtastic_CriticalErrorCode_INVALID_RADIO_SETTING);
if (power > LR1110_MAX_POWER) // This chip has lower power limits than some
power = LR1110_MAX_POWER;
if ((power > LR1120_MAX_POWER) && (config.lora.region == meshtastic_Config_LoRaConfig_RegionCode_LORA_24)) // 2.4G power limit
power = LR1120_MAX_POWER;
err = lora.setOutputPower(power);
assert(err == RADIOLIB_ERR_NONE);
+1 -1
View File
@@ -819,7 +819,7 @@ void NodeDB::installDefaultModuleConfig()
moduleConfig.has_store_forward = true;
moduleConfig.has_telemetry = true;
moduleConfig.has_external_notification = true;
#if defined(PIN_BUZZER) || defined(PIN_VIBRATION) || defined(LED_NOTIFICATION) || defined(PCA_LED_NOTIFICATION)
#if defined(PIN_BUZZER) || defined(PIN_VIBRATION) || defined(LED_NOTIFICATION)
moduleConfig.external_notification.enabled = true;
#endif
#if defined(PIN_BUZZER)
+125 -15
View File
@@ -18,10 +18,7 @@
#include "concurrency/LockGuard.h"
#include "main.h"
#include "xmodem.h"
#if FromRadio_size > MAX_TO_FROM_RADIO_SIZE
#error FromRadio is too big
#endif
#include <pb_encode.h>
#if ToRadio_size > MAX_TO_FROM_RADIO_SIZE
#error ToRadio is too big
@@ -61,13 +58,14 @@ void PhoneAPI::handleStartConfig()
onConfigStart();
// even if we were already connected - restart our state machine
if (config_nonce == SPECIAL_NONCE_ONLY_NODES) {
if (config_nonce == SPECIAL_NONCE_ONLY_NODES || config_nonce == SPECIAL_NONCE_BATCH_ONLY_NODES) {
// If client only wants node info, jump directly to sending nodes
state = STATE_SEND_OWN_NODEINFO;
LOG_INFO("Client only wants node info, skipping other config");
} else {
state = STATE_SEND_MY_INFO;
}
batchNodeInfo = (config_nonce == SPECIAL_NONCE_BATCH || config_nonce == SPECIAL_NONCE_BATCH_ONLY_NODES);
pauseBluetoothLogging = true;
spiLock->lock();
filesManifest = getFiles("/", 10);
@@ -223,6 +221,48 @@ bool PhoneAPI::handleToRadio(const uint8_t *buf, size_t bufLength)
STATE_SEND_PACKETS // send packets or debug strings
*/
/// Context passed to the nanopb encoding callback for batched NodeInfo
struct NodeInfoBatchEncodeContext {
std::deque<meshtastic_NodeInfo> *items;
size_t itemCount; // How many items from the front of the deque to encode
};
/// Nanopb encoding callback for repeated NodeInfo items in a NodeInfoBatch.
/// Called by pb_encode during both sizing and actual encoding passes.
static bool nodeInfoBatchEncodeCallback(pb_ostream_t *stream, const pb_field_iter_t *field, void *const *arg)
{
auto *ctx = static_cast<NodeInfoBatchEncodeContext *>(*arg);
for (size_t i = 0; i < ctx->itemCount && i < ctx->items->size(); i++) {
if (!pb_encode_tag_for_field(stream, field))
return false;
if (!pb_encode_submessage(stream, meshtastic_NodeInfo_fields, &(*ctx->items)[i]))
return false;
}
return true;
}
/// Calculate how many NodeInfos from the front of the deque fit within maxPayloadBytes.
/// maxPayloadBytes is the budget for the inner NodeInfoBatch content (repeated field entries).
static size_t calculateBatchCount(std::deque<meshtastic_NodeInfo> &items, size_t maxPayloadBytes)
{
size_t totalSize = 0;
size_t count = 0;
for (const auto &info : items) {
pb_ostream_t sizestream = PB_OSTREAM_SIZING;
if (!pb_encode(&sizestream, meshtastic_NodeInfo_fields, &info))
break;
size_t itemSize = sizestream.bytes_written;
// Per-item overhead: 1 byte tag (field 1, wire type 2) + varint length prefix
size_t overhead = 1 + (itemSize < 128 ? 1 : 2);
if (totalSize + overhead + itemSize > maxPayloadBytes)
break;
totalSize += overhead + itemSize;
count++;
}
// Always include at least 1 item if available (even if it slightly exceeds budget)
return count > 0 ? count : (items.empty() ? 0 : 1);
}
size_t PhoneAPI::getFromRadio(uint8_t *buf)
{
// Respond to heartbeat by sending queue status
@@ -231,7 +271,7 @@ size_t PhoneAPI::getFromRadio(uint8_t *buf)
fromRadioScratch.which_payload_variant = meshtastic_FromRadio_queueStatus_tag;
fromRadioScratch.queueStatus = router->getQueueStatus();
heartbeatReceived = false;
size_t numbytes = pb_encode_to_bytes(buf, meshtastic_FromRadio_size, &meshtastic_FromRadio_msg, &fromRadioScratch);
size_t numbytes = pb_encode_to_bytes(buf, MAX_TO_FROM_RADIO_SIZE, &meshtastic_FromRadio_msg, &fromRadioScratch);
LOG_DEBUG("FromRadio=STATE_SEND_QUEUE_STATUS, numbytes=%u", numbytes);
return numbytes;
}
@@ -286,7 +326,7 @@ size_t PhoneAPI::getFromRadio(uint8_t *buf)
nodeInfoForPhone.num = 0;
}
}
if (config_nonce == SPECIAL_NONCE_ONLY_NODES) {
if (config_nonce == SPECIAL_NONCE_ONLY_NODES || config_nonce == SPECIAL_NONCE_BATCH_ONLY_NODES) {
// If client only wants node info, jump directly to sending nodes
state = STATE_SEND_OTHER_NODEINFOS;
onNowHasData(0);
@@ -479,6 +519,81 @@ size_t PhoneAPI::getFromRadio(uint8_t *buf)
LOG_INFO("Start sending nodeinfos millis=%u", millis());
}
if (batchNodeInfo) {
// Batched path: pack multiple NodeInfos into a single FromRadio packet.
// Consolidate any pending nodeInfoForPhone into the queue, then top it up.
{
concurrency::LockGuard guard(&nodeInfoMutex);
if (nodeInfoForPhone.num != 0) {
nodeInfoQueue.push_front(nodeInfoForPhone);
nodeInfoForPhone = {};
}
}
prefetchNodeInfos();
bool queueEmpty;
{
concurrency::LockGuard guard(&nodeInfoMutex);
queueEmpty = nodeInfoQueue.empty();
}
if (queueEmpty) {
LOG_DEBUG("Done sending %d of %d nodeinfos (batched) millis=%u", readIndex, nodeDB->getNumMeshNodes(), millis());
concurrency::LockGuard guard(&nodeInfoMutex);
nodeInfoQueue.clear();
state = STATE_SEND_FILEMANIFEST;
return getFromRadio(buf);
}
// Fix up user IDs and log progress
{
concurrency::LockGuard guard(&nodeInfoMutex);
for (auto &info : nodeInfoQueue) {
sprintf(info.user.id, "!%08x", info.num);
}
}
// Estimate overhead: FromRadio id (~2B) + oneof tag 18 (~2B) + NodeInfoBatch length varint (~2B) = ~6 bytes
constexpr size_t kFromRadioOverhead = 10; // conservative
size_t batchCount;
{
concurrency::LockGuard guard(&nodeInfoMutex);
batchCount = calculateBatchCount(nodeInfoQueue, MAX_TO_FROM_RADIO_SIZE - kFromRadioOverhead);
}
if (readIndex == 2 || readIndex % 20 == 0) {
concurrency::LockGuard guard(&nodeInfoMutex);
LOG_DEBUG("nodeinfo batch: %d items, %d/%d total", batchCount, readIndex, nodeDB->getNumMeshNodes());
}
// Use a local FromRadio so the callback context pointer doesn't outlive its scope.
meshtastic_FromRadio batchRadio = {};
NodeInfoBatchEncodeContext ctx;
{
concurrency::LockGuard guard(&nodeInfoMutex);
ctx.items = &nodeInfoQueue;
ctx.itemCount = batchCount;
}
batchRadio.which_payload_variant = meshtastic_FromRadio_node_info_batch_tag;
batchRadio.node_info_batch.items.funcs.encode = nodeInfoBatchEncodeCallback;
batchRadio.node_info_batch.items.arg = &ctx;
size_t numbytes = pb_encode_to_bytes(buf, MAX_TO_FROM_RADIO_SIZE, &meshtastic_FromRadio_msg, &batchRadio);
// Remove consumed items from the queue
{
concurrency::LockGuard guard(&nodeInfoMutex);
for (size_t i = 0; i < batchCount && !nodeInfoQueue.empty(); i++) {
nodeInfoQueue.pop_front();
}
}
prefetchNodeInfos();
return numbytes;
}
// Non-batched path: send one NodeInfo per FromRadio packet (legacy behavior)
meshtastic_NodeInfo infoToSend = {};
{
concurrency::LockGuard guard(&nodeInfoMutex);
@@ -496,11 +611,6 @@ size_t PhoneAPI::getFromRadio(uint8_t *buf)
// Just in case we stored a different user.id in the past, but should never happen going forward
sprintf(infoToSend.user.id, "!%08x", infoToSend.num);
// Logging this really slows down sending nodes on initial connection because the serial console is so slow, so only
// uncomment if you really need to:
// LOG_INFO("nodeinfo: num=0x%x, lastseen=%u, id=%s, name=%s", nodeInfoForPhone.num, nodeInfoForPhone.last_heard,
// nodeInfoForPhone.user.id, nodeInfoForPhone.user.long_name);
// Occasional progress logging. (readIndex==2 will be true for the first non-us node)
if (readIndex == 2 || readIndex % 20 == 0) {
LOG_DEBUG("nodeinfo: %d/%d", readIndex, nodeDB->getNumMeshNodes());
@@ -523,8 +633,8 @@ size_t PhoneAPI::getFromRadio(uint8_t *buf)
case STATE_SEND_FILEMANIFEST: {
LOG_DEBUG("FromRadio=STATE_SEND_FILEMANIFEST");
// last element
if (config_state == filesManifest.size() ||
config_nonce == SPECIAL_NONCE_ONLY_NODES) { // also handles an empty filesManifest
if (config_state == filesManifest.size() || config_nonce == SPECIAL_NONCE_ONLY_NODES ||
config_nonce == SPECIAL_NONCE_BATCH_ONLY_NODES) { // also handles an empty filesManifest
config_state = 0;
filesManifest.clear();
// Skip to complete packet
@@ -579,7 +689,7 @@ size_t PhoneAPI::getFromRadio(uint8_t *buf)
// Do we have a message from the mesh?
if (fromRadioScratch.which_payload_variant != 0) {
// Encapsulate as a FromRadio packet
size_t numbytes = pb_encode_to_bytes(buf, meshtastic_FromRadio_size, &meshtastic_FromRadio_msg, &fromRadioScratch);
size_t numbytes = pb_encode_to_bytes(buf, MAX_TO_FROM_RADIO_SIZE, &meshtastic_FromRadio_msg, &fromRadioScratch);
// VERY IMPORTANT to not print debug messages while writing to fromRadioScratch - because we use that same buffer
// for logging (when we are encapsulating with protobufs)
+5 -3
View File
@@ -13,15 +13,14 @@
// Make sure that we never let our packets grow too large for one BLE packet
#define MAX_TO_FROM_RADIO_SIZE 512
#if meshtastic_FromRadio_size > MAX_TO_FROM_RADIO_SIZE
#error "meshtastic_FromRadio_size is too large for our BLE packets"
#endif
#if meshtastic_ToRadio_size > MAX_TO_FROM_RADIO_SIZE
#error "meshtastic_ToRadio_size is too large for our BLE packets"
#endif
#define SPECIAL_NONCE_ONLY_CONFIG 69420
#define SPECIAL_NONCE_ONLY_NODES 69421 // ( ͡° ͜ʖ ͡°)
#define SPECIAL_NONCE_BATCH 69422
#define SPECIAL_NONCE_BATCH_ONLY_NODES 69423
/**
* Provides our protobuf based API which phone/PC clients can use to talk to our device
@@ -88,6 +87,9 @@ class PhoneAPI
// Protect nodeInfoForPhone + nodeInfoQueue because NimBLE callbacks run in a separate FreeRTOS task.
concurrency::Lock nodeInfoMutex;
// When true, bundle multiple NodeInfos per FromRadio packet (opt-in via batch nonce)
bool batchNodeInfo = false;
meshtastic_ToRadio toRadioScratch = {
0}; // this is a static scratch object, any data must be copied elsewhere before returning
+10
View File
@@ -17,4 +17,14 @@ template <class T> class PointerQueue : public TypedQueue<T *>
return this->dequeue(&p, maxWait) ? p : nullptr;
}
#ifdef HAS_FREE_RTOS
// returns a ptr or null if the queue was empty
T *dequeuePtrFromISR(BaseType_t *higherPriWoken)
{
T *p;
return this->dequeueFromISR(&p, higherPriWoken) ? p : nullptr;
}
#endif
};
+2 -1
View File
@@ -240,7 +240,8 @@ bool RF95Interface::reconfigure()
if (err != RADIOLIB_ERR_NONE)
RECORD_CRITICALERROR(meshtastic_CriticalErrorCode_INVALID_RADIO_SETTING);
limitPower(RF95_MAX_POWER);
if (power > RF95_MAX_POWER) // This chip has lower power limits than some
power = RF95_MAX_POWER;
#ifdef USE_RF95_RFO
err = lora->setOutputPower(power, true);
+2 -11
View File
@@ -152,10 +152,8 @@ const RegionInfo regions[] = {
/*
https://lora-alliance.org/wp-content/uploads/2020/11/lorawan_regional_parameters_v1.0.3reva_0.pdf
https://standard.nbtc.go.th/getattachment/Standards/%E0%B8%A1%E0%B8%B2%E0%B8%95%E0%B8%A3%E0%B8%90%E0%B8%B2%E0%B8%99%E0%B8%97%E0%B8%B2%E0%B8%87%E0%B9%80%E0%B8%97%E0%B8%84%E0%B8%99%E0%B8%B4%E0%B8%84%E0%B8%82%E0%B8%AD%E0%B8%87%E0%B9%80%E0%B8%84%E0%B8%A3%E0%B8%B7%E0%B9%88%E0%B8%AD%E0%B8%87%E0%B9%82%E0%B8%97%E0%B8%A3%E0%B8%84%E0%B8%A1%E0%B8%99%E0%B8%B2%E0%B8%84%E0%B8%A1/1033-2565.pdf.aspx?lang=th-TH
Thailand 920–925 MHz set max TX power to 27 dBm and enforce 10% duty cycle, aligned with NBTC regulations.
*/
RDEF(TH, 920.0f, 925.0f, 10, 27, false, false, PROFILE_STD),
RDEF(TH, 920.0f, 925.0f, 100, 16, false, false, PROFILE_STD),
/*
433,05-434,7 Mhz 10 mW
@@ -963,7 +961,7 @@ void RadioInterface::applyModemConfig()
cr = loraConfig.coding_rate;
LOG_INFO("Using custom Coding Rate %u", cr);
} else {
cr = newcr;
cr = loraConfig.coding_rate;
}
} else { // if not using preset, then just use the custom settings
@@ -1038,13 +1036,6 @@ void RadioInterface::applyModemConfig()
saveFreq(freq + loraConfig.frequency_offset);
const char *channelName = channels.getName(channels.getPrimaryIndex());
if (newRegion->wideLora) { // clamp if wide freq range
preambleLength = wideLoraPreambleLengthDefault; // 12 is the default for operation above 2GHz
} else {
preambleLength =
preambleLengthDefault; // 8 is default, but we use longer to increase the amount of sleep time when receiving
}
slotTimeMsec = computeSlotTimeMsec();
preambleTimeMsec = preambleLength * (pow_of_2(sf) / bw);
+8 -13
View File
@@ -92,20 +92,15 @@ class RadioInterface
uint8_t sf = 9;
uint8_t cr = 5;
static constexpr uint8_t NUM_SYM_CAD =
2; // Number of symbols used for CAD, 2 is the default since RadioLib 6.3.0 as per AN1200.48
static constexpr uint8_t NUM_SYM_CAD_24GHZ =
4; // Number of symbols used for CAD in 2.4 GHz, 4 is recommended in AN1200.22 of SX1280
const uint8_t NUM_SYM_CAD = 2; // Number of symbols used for CAD, 2 is the default since RadioLib 6.3.0 as per AN1200.48
const uint8_t NUM_SYM_CAD_24GHZ = 4; // Number of symbols used for CAD in 2.4 GHz, 4 is recommended in AN1200.22 of SX1280
uint32_t slotTimeMsec = computeSlotTimeMsec();
uint16_t preambleLength = 16; // 8 is default, but we use longer to increase the amount of sleep time when receiving
static constexpr uint16_t preambleLengthDefault =
16; // 8 is default, but we use longer to increase the amount of sleep time when receiving
static constexpr uint16_t wideLoraPreambleLengthDefault = 12; // 12 is default for wide Lora
uint32_t preambleTimeMsec = 165; // calculated on startup, this is the default for LongFast
static constexpr uint32_t PROCESSING_TIME_MSEC =
4500; // time to construct, process and construct a packet again (empirically determined)
static constexpr uint8_t CWmin = 3; // minimum CWsize
static constexpr uint8_t CWmax = 8; // maximum CWsize
uint16_t preambleLength = 16; // 8 is default, but we use longer to increase the amount of sleep time when receiving
uint32_t preambleTimeMsec = 165; // calculated on startup, this is the default for LongFast
const uint32_t PROCESSING_TIME_MSEC =
4500; // time to construct, process and construct a packet again (empirically determined)
const uint8_t CWmin = 3; // minimum CWsize
const uint8_t CWmax = 8; // maximum CWsize
meshtastic_MeshPacket *sendingPacket = NULL; // The packet we are currently sending
uint32_t lastTxStart = 0L;
+2 -4
View File
@@ -245,10 +245,8 @@ template <typename T> bool SX126xInterface<T>::reconfigure()
if (err != RADIOLIB_ERR_NONE)
RECORD_CRITICALERROR(meshtastic_CriticalErrorCode_INVALID_RADIO_SETTING);
limitPower(SX126X_MAX_POWER);
// Make sure we reach the minimum power supported to turn the chip on (-9dBm)
if (power < -9)
power = -9;
if (power > SX126X_MAX_POWER) // This chip has lower power limits than some
power = SX126X_MAX_POWER;
err = lora.setOutputPower(power);
if (err != RADIOLIB_ERR_NONE)
+2 -1
View File
@@ -144,7 +144,8 @@ template <typename T> bool SX128xInterface<T>::reconfigure()
if (err != RADIOLIB_ERR_NONE)
RECORD_CRITICALERROR(meshtastic_CriticalErrorCode_INVALID_RADIO_SETTING);
limitPower(SX128X_MAX_POWER);
if (power > SX128X_MAX_POWER) // This chip has lower power limits than some
power = SX128X_MAX_POWER;
err = lora.setOutputPower(power);
if (err != RADIOLIB_ERR_NONE)
+2 -2
View File
@@ -190,7 +190,7 @@ void StreamAPI::emitRebooted()
fromRadioScratch.rebooted = true;
// LOG_DEBUG("Emitting reboot packet for serial shell");
emitTxBuffer(pb_encode_to_bytes(txBuf + HEADER_LEN, meshtastic_FromRadio_size, &meshtastic_FromRadio_msg, &fromRadioScratch));
emitTxBuffer(pb_encode_to_bytes(txBuf + HEADER_LEN, MAX_TO_FROM_RADIO_SIZE, &meshtastic_FromRadio_msg, &fromRadioScratch));
}
void StreamAPI::emitLogRecord(meshtastic_LogRecord_Level level, const char *src, const char *format, va_list arg)
@@ -209,7 +209,7 @@ void StreamAPI::emitLogRecord(meshtastic_LogRecord_Level level, const char *src,
if (num_printed > 0 && fromRadioScratch.log_record.message[num_printed - 1] ==
'\n') // Strip any ending newline, because we have records for framing instead.
fromRadioScratch.log_record.message[num_printed - 1] = '\0';
emitTxBuffer(pb_encode_to_bytes(txBuf + HEADER_LEN, meshtastic_FromRadio_size, &meshtastic_FromRadio_msg, &fromRadioScratch));
emitTxBuffer(pb_encode_to_bytes(txBuf + HEADER_LEN, MAX_TO_FROM_RADIO_SIZE, &meshtastic_FromRadio_msg, &fromRadioScratch));
}
/// Hookable to find out when connection changes
-12
View File
@@ -24,18 +24,6 @@ PB_BIND(meshtastic_Contact, meshtastic_Contact, AUTO)
PB_BIND(meshtastic_PLI, meshtastic_PLI, AUTO)
PB_BIND(meshtastic_AircraftTrack, meshtastic_AircraftTrack, AUTO)
PB_BIND(meshtastic_TAKPacketV2, meshtastic_TAKPacketV2, 2)
+1 -393
View File
@@ -65,197 +65,6 @@ typedef enum _meshtastic_MemberRole {
meshtastic_MemberRole_K9 = 8
} meshtastic_MemberRole;
/* CoT how field values.
Represents how the coordinates were generated. */
typedef enum _meshtastic_CotHow {
/* Unspecified */
meshtastic_CotHow_CotHow_Unspecified = 0,
/* Human entered */
meshtastic_CotHow_CotHow_h_e = 1,
/* Machine generated */
meshtastic_CotHow_CotHow_m_g = 2,
/* Human GPS/INS derived */
meshtastic_CotHow_CotHow_h_g_i_g_o = 3,
/* Machine relayed (imported from another system/gateway) */
meshtastic_CotHow_CotHow_m_r = 4,
/* Machine fused (corroborated from multiple sources) */
meshtastic_CotHow_CotHow_m_f = 5,
/* Machine predicted */
meshtastic_CotHow_CotHow_m_p = 6,
/* Machine simulated */
meshtastic_CotHow_CotHow_m_s = 7
} meshtastic_CotHow;
/* Well-known CoT event types.
When the type is known, use the enum value for efficient encoding.
For unknown types, set cot_type_id to CotType_Other and populate cot_type_str. */
typedef enum _meshtastic_CotType {
/* Unknown or unmapped type, use cot_type_str */
meshtastic_CotType_CotType_Other = 0,
/* a-f-G-U-C: Friendly ground unit combat */
meshtastic_CotType_CotType_a_f_G_U_C = 1,
/* a-f-G-U-C-I: Friendly ground unit combat infantry */
meshtastic_CotType_CotType_a_f_G_U_C_I = 2,
/* a-n-A-C-F: Neutral aircraft civilian fixed-wing */
meshtastic_CotType_CotType_a_n_A_C_F = 3,
/* a-n-A-C-H: Neutral aircraft civilian helicopter */
meshtastic_CotType_CotType_a_n_A_C_H = 4,
/* a-n-A-C: Neutral aircraft civilian */
meshtastic_CotType_CotType_a_n_A_C = 5,
/* a-f-A-M-H: Friendly aircraft military helicopter */
meshtastic_CotType_CotType_a_f_A_M_H = 6,
/* a-f-A-M: Friendly aircraft military */
meshtastic_CotType_CotType_a_f_A_M = 7,
/* a-f-A-M-F-F: Friendly aircraft military fixed-wing fighter */
meshtastic_CotType_CotType_a_f_A_M_F_F = 8,
/* a-f-A-M-H-A: Friendly aircraft military helicopter attack */
meshtastic_CotType_CotType_a_f_A_M_H_A = 9,
/* a-f-A-M-H-U-M: Friendly aircraft military helicopter utility medium */
meshtastic_CotType_CotType_a_f_A_M_H_U_M = 10,
/* a-h-A-M-F-F: Hostile aircraft military fixed-wing fighter */
meshtastic_CotType_CotType_a_h_A_M_F_F = 11,
/* a-h-A-M-H-A: Hostile aircraft military helicopter attack */
meshtastic_CotType_CotType_a_h_A_M_H_A = 12,
/* a-u-A-C: Unknown aircraft civilian */
meshtastic_CotType_CotType_a_u_A_C = 13,
/* t-x-d-d: Tasking delete/disconnect */
meshtastic_CotType_CotType_t_x_d_d = 14,
/* a-f-G-E-S-E: Friendly ground equipment sensor */
meshtastic_CotType_CotType_a_f_G_E_S_E = 15,
/* a-f-G-E-V-C: Friendly ground equipment vehicle */
meshtastic_CotType_CotType_a_f_G_E_V_C = 16,
/* a-f-S: Friendly sea */
meshtastic_CotType_CotType_a_f_S = 17,
/* a-f-A-M-F: Friendly aircraft military fixed-wing */
meshtastic_CotType_CotType_a_f_A_M_F = 18,
/* a-f-A-M-F-C-H: Friendly aircraft military fixed-wing cargo heavy */
meshtastic_CotType_CotType_a_f_A_M_F_C_H = 19,
/* a-f-A-M-F-U-L: Friendly aircraft military fixed-wing utility light */
meshtastic_CotType_CotType_a_f_A_M_F_U_L = 20,
/* a-f-A-M-F-L: Friendly aircraft military fixed-wing liaison */
meshtastic_CotType_CotType_a_f_A_M_F_L = 21,
/* a-f-A-M-F-P: Friendly aircraft military fixed-wing patrol */
meshtastic_CotType_CotType_a_f_A_M_F_P = 22,
/* a-f-A-C-H: Friendly aircraft civilian helicopter */
meshtastic_CotType_CotType_a_f_A_C_H = 23,
/* a-n-A-M-F-Q: Neutral aircraft military fixed-wing drone */
meshtastic_CotType_CotType_a_n_A_M_F_Q = 24,
/* b-t-f: GeoChat message */
meshtastic_CotType_CotType_b_t_f = 25,
/* b-r-f-h-c: CASEVAC/MEDEVAC report */
meshtastic_CotType_CotType_b_r_f_h_c = 26,
/* b-a-o-pan: Ring the bell / alert all */
meshtastic_CotType_CotType_b_a_o_pan = 27,
/* b-a-o-opn: Troops in contact */
meshtastic_CotType_CotType_b_a_o_opn = 28,
/* b-a-o-can: Cancel alert */
meshtastic_CotType_CotType_b_a_o_can = 29,
/* b-a-o-tbl: 911 alert */
meshtastic_CotType_CotType_b_a_o_tbl = 30,
/* b-a-g: Geofence breach alert */
meshtastic_CotType_CotType_b_a_g = 31,
/* a-f-G: Friendly ground (generic) */
meshtastic_CotType_CotType_a_f_G = 32,
/* a-f-G-U: Friendly ground unit (generic) */
meshtastic_CotType_CotType_a_f_G_U = 33,
/* a-h-G: Hostile ground (generic) */
meshtastic_CotType_CotType_a_h_G = 34,
/* a-u-G: Unknown ground (generic) */
meshtastic_CotType_CotType_a_u_G = 35,
/* a-n-G: Neutral ground (generic) */
meshtastic_CotType_CotType_a_n_G = 36,
/* b-m-r: Route */
meshtastic_CotType_CotType_b_m_r = 37,
/* b-m-p-w: Route waypoint */
meshtastic_CotType_CotType_b_m_p_w = 38,
/* b-m-p-s-p-i: Self-position marker */
meshtastic_CotType_CotType_b_m_p_s_p_i = 39,
/* u-d-f: Freeform shape (line/polygon) */
meshtastic_CotType_CotType_u_d_f = 40,
/* u-d-r: Rectangle */
meshtastic_CotType_CotType_u_d_r = 41,
/* u-d-c-c: Circle */
meshtastic_CotType_CotType_u_d_c_c = 42,
/* u-rb-a: Range/bearing line */
meshtastic_CotType_CotType_u_rb_a = 43,
/* a-h-A: Hostile aircraft (generic) */
meshtastic_CotType_CotType_a_h_A = 44,
/* a-u-A: Unknown aircraft (generic) */
meshtastic_CotType_CotType_a_u_A = 45,
/* a-f-A-M-H-Q: Friendly aircraft military helicopter observation */
meshtastic_CotType_CotType_a_f_A_M_H_Q = 46,
/* a-f-A-C-F: Friendly aircraft civilian fixed-wing */
meshtastic_CotType_CotType_a_f_A_C_F = 47,
/* a-f-A-C: Friendly aircraft civilian (generic) */
meshtastic_CotType_CotType_a_f_A_C = 48,
/* a-f-A-C-L: Friendly aircraft civilian lighter-than-air */
meshtastic_CotType_CotType_a_f_A_C_L = 49,
/* a-f-A: Friendly aircraft (generic) */
meshtastic_CotType_CotType_a_f_A = 50,
/* a-f-A-M-H-C: Friendly aircraft military helicopter cargo */
meshtastic_CotType_CotType_a_f_A_M_H_C = 51,
/* a-n-A-M-F-F: Neutral aircraft military fixed-wing fighter */
meshtastic_CotType_CotType_a_n_A_M_F_F = 52,
/* a-u-A-C-F: Unknown aircraft civilian fixed-wing */
meshtastic_CotType_CotType_a_u_A_C_F = 53,
/* a-f-G-U-C-F-T-A: Friendly ground unit combat forces theater aviation */
meshtastic_CotType_CotType_a_f_G_U_C_F_T_A = 54,
/* a-f-G-U-C-V-S: Friendly ground unit combat vehicle support */
meshtastic_CotType_CotType_a_f_G_U_C_V_S = 55,
/* a-f-G-U-C-R-X: Friendly ground unit combat reconnaissance exploitation */
meshtastic_CotType_CotType_a_f_G_U_C_R_X = 56,
/* a-f-G-U-C-I-Z: Friendly ground unit combat infantry mechanized */
meshtastic_CotType_CotType_a_f_G_U_C_I_Z = 57,
/* a-f-G-U-C-E-C-W: Friendly ground unit combat engineer construction wheeled */
meshtastic_CotType_CotType_a_f_G_U_C_E_C_W = 58,
/* a-f-G-U-C-I-L: Friendly ground unit combat infantry light */
meshtastic_CotType_CotType_a_f_G_U_C_I_L = 59,
/* a-f-G-U-C-R-O: Friendly ground unit combat reconnaissance other */
meshtastic_CotType_CotType_a_f_G_U_C_R_O = 60,
/* a-f-G-U-C-R-V: Friendly ground unit combat reconnaissance cavalry */
meshtastic_CotType_CotType_a_f_G_U_C_R_V = 61,
/* a-f-G-U-H: Friendly ground unit headquarters */
meshtastic_CotType_CotType_a_f_G_U_H = 62,
/* a-f-G-U-U-M-S-E: Friendly ground unit support medical surgical evacuation */
meshtastic_CotType_CotType_a_f_G_U_U_M_S_E = 63,
/* a-f-G-U-S-M-C: Friendly ground unit support maintenance collection */
meshtastic_CotType_CotType_a_f_G_U_S_M_C = 64,
/* a-f-G-E-S: Friendly ground equipment sensor (generic) */
meshtastic_CotType_CotType_a_f_G_E_S = 65,
/* a-f-G-E: Friendly ground equipment (generic) */
meshtastic_CotType_CotType_a_f_G_E = 66,
/* a-f-G-E-V-C-U: Friendly ground equipment vehicle utility */
meshtastic_CotType_CotType_a_f_G_E_V_C_U = 67,
/* a-f-G-E-V-C-ps: Friendly ground equipment vehicle public safety */
meshtastic_CotType_CotType_a_f_G_E_V_C_ps = 68,
/* a-u-G-E-V: Unknown ground equipment vehicle */
meshtastic_CotType_CotType_a_u_G_E_V = 69,
/* a-f-S-N-N-R: Friendly sea surface non-naval rescue */
meshtastic_CotType_CotType_a_f_S_N_N_R = 70,
/* a-f-F-B: Friendly force boundary */
meshtastic_CotType_CotType_a_f_F_B = 71,
/* b-m-p-s-p-loc: Self-position location marker */
meshtastic_CotType_CotType_b_m_p_s_p_loc = 72,
/* b-i-v: Imagery/video */
meshtastic_CotType_CotType_b_i_v = 73,
/* b-f-t-r: File transfer request */
meshtastic_CotType_CotType_b_f_t_r = 74,
/* b-f-t-a: File transfer acknowledgment */
meshtastic_CotType_CotType_b_f_t_a = 75
} meshtastic_CotType;
/* Geopoint and altitude source */
typedef enum _meshtastic_GeoPointSource {
/* Unspecified */
meshtastic_GeoPointSource_GeoPointSource_Unspecified = 0,
/* GPS derived */
meshtastic_GeoPointSource_GeoPointSource_GPS = 1,
/* User entered */
meshtastic_GeoPointSource_GeoPointSource_USER = 2,
/* Network/external */
meshtastic_GeoPointSource_GeoPointSource_NETWORK = 3
} meshtastic_GeoPointSource;
/* Struct definitions */
/* ATAK GeoChat message */
typedef struct _meshtastic_GeoChat {
@@ -337,95 +146,6 @@ typedef struct _meshtastic_TAKPacket {
} payload_variant;
} meshtastic_TAKPacket;
/* Aircraft track information from ADS-B or military air tracking.
Covers the majority of observed real-world CoT traffic. */
typedef struct _meshtastic_AircraftTrack {
/* ICAO hex identifier (e.g. "AD237C") */
char icao[8];
/* Aircraft registration (e.g. "N946AK") */
char registration[16];
/* Flight number/callsign (e.g. "ASA864") */
char flight[16];
/* ICAO aircraft type designator (e.g. "B39M") */
char aircraft_type[8];
/* Transponder squawk code (0-7777 octal) */
uint16_t squawk;
/* ADS-B emitter category (e.g. "A3") */
char category[4];
/* Received signal strength * 10 (e.g. -194 for -19.4 dBm) */
int32_t rssi_x10;
/* Whether receiver has GPS fix */
bool gps;
/* CoT host ID for source attribution */
char cot_host_id[64];
} meshtastic_AircraftTrack;
typedef PB_BYTES_ARRAY_T(220) meshtastic_TAKPacketV2_raw_detail_t;
/* ATAK v2 packet with expanded CoT field support and zstd dictionary compression.
Sent on ATAK_PLUGIN_V2 port. The wire payload is:
[1 byte flags][zstd-compressed TAKPacketV2 protobuf]
Flags byte: bits 0-5 = dictionary ID, bits 6-7 = reserved. */
typedef struct _meshtastic_TAKPacketV2 {
/* Well-known CoT event type enum.
Use CotType_Other with cot_type_str for unknown types. */
meshtastic_CotType cot_type_id;
/* How the coordinates were generated */
meshtastic_CotHow how;
/* Callsign */
char callsign[120];
/* Team color assignment */
meshtastic_Team team;
/* Role of the group member */
meshtastic_MemberRole role;
/* Latitude, multiply by 1e-7 to get degrees in floating point */
int32_t latitude_i;
/* Longitude, multiply by 1e-7 to get degrees in floating point */
int32_t longitude_i;
/* Altitude in meters (HAE) */
int32_t altitude;
/* Speed in cm/s */
uint32_t speed;
/* Course in degrees * 100 (0-36000) */
uint16_t course;
/* Battery level 0-100 */
uint8_t battery;
/* Geopoint source */
meshtastic_GeoPointSource geo_src;
/* Altitude source */
meshtastic_GeoPointSource alt_src;
/* Device UID (UUID string or device ID like "ANDROID-xxxx") */
char uid[48];
/* Device callsign */
char device_callsign[120];
/* Stale time as seconds offset from event time */
uint16_t stale_seconds;
/* TAK client version string */
char tak_version[64];
/* TAK device model */
char tak_device[32];
/* TAK platform (ATAK-CIV, WebTAK, etc.) */
char tak_platform[32];
/* TAK OS version */
char tak_os[16];
/* Connection endpoint */
char endpoint[32];
/* Phone number */
char phone[20];
/* CoT event type string, only populated when cot_type_id is CotType_Other */
char cot_type_str[32];
pb_size_t which_payload_variant;
union {
/* Position report (true = PLI, no extra fields beyond the common ones above) */
bool pli;
/* ATAK GeoChat message */
meshtastic_GeoChat chat;
/* Aircraft track data (ADS-B, military air) */
meshtastic_AircraftTrack aircraft;
/* Generic CoT detail XML for unmapped types */
meshtastic_TAKPacketV2_raw_detail_t raw_detail;
} payload_variant;
} meshtastic_TAKPacketV2;
#ifdef __cplusplus
extern "C" {
@@ -440,18 +160,6 @@ extern "C" {
#define _meshtastic_MemberRole_MAX meshtastic_MemberRole_K9
#define _meshtastic_MemberRole_ARRAYSIZE ((meshtastic_MemberRole)(meshtastic_MemberRole_K9+1))
#define _meshtastic_CotHow_MIN meshtastic_CotHow_CotHow_Unspecified
#define _meshtastic_CotHow_MAX meshtastic_CotHow_CotHow_m_s
#define _meshtastic_CotHow_ARRAYSIZE ((meshtastic_CotHow)(meshtastic_CotHow_CotHow_m_s+1))
#define _meshtastic_CotType_MIN meshtastic_CotType_CotType_Other
#define _meshtastic_CotType_MAX meshtastic_CotType_CotType_b_f_t_a
#define _meshtastic_CotType_ARRAYSIZE ((meshtastic_CotType)(meshtastic_CotType_CotType_b_f_t_a+1))
#define _meshtastic_GeoPointSource_MIN meshtastic_GeoPointSource_GeoPointSource_Unspecified
#define _meshtastic_GeoPointSource_MAX meshtastic_GeoPointSource_GeoPointSource_NETWORK
#define _meshtastic_GeoPointSource_ARRAYSIZE ((meshtastic_GeoPointSource)(meshtastic_GeoPointSource_GeoPointSource_NETWORK+1))
#define meshtastic_Group_role_ENUMTYPE meshtastic_MemberRole
@@ -461,14 +169,6 @@ extern "C" {
#define meshtastic_TAKPacketV2_cot_type_id_ENUMTYPE meshtastic_CotType
#define meshtastic_TAKPacketV2_how_ENUMTYPE meshtastic_CotHow
#define meshtastic_TAKPacketV2_team_ENUMTYPE meshtastic_Team
#define meshtastic_TAKPacketV2_role_ENUMTYPE meshtastic_MemberRole
#define meshtastic_TAKPacketV2_geo_src_ENUMTYPE meshtastic_GeoPointSource
#define meshtastic_TAKPacketV2_alt_src_ENUMTYPE meshtastic_GeoPointSource
/* Initializer values for message structs */
#define meshtastic_TAKPacket_init_default {0, false, meshtastic_Contact_init_default, false, meshtastic_Group_init_default, false, meshtastic_Status_init_default, 0, {meshtastic_PLI_init_default}}
#define meshtastic_GeoChat_init_default {"", false, "", false, ""}
@@ -476,16 +176,12 @@ extern "C" {
#define meshtastic_Status_init_default {0}
#define meshtastic_Contact_init_default {"", ""}
#define meshtastic_PLI_init_default {0, 0, 0, 0, 0}
#define meshtastic_AircraftTrack_init_default {"", "", "", "", 0, "", 0, 0, ""}
#define meshtastic_TAKPacketV2_init_default {_meshtastic_CotType_MIN, _meshtastic_CotHow_MIN, "", _meshtastic_Team_MIN, _meshtastic_MemberRole_MIN, 0, 0, 0, 0, 0, 0, _meshtastic_GeoPointSource_MIN, _meshtastic_GeoPointSource_MIN, "", "", 0, "", "", "", "", "", "", "", 0, {0}}
#define meshtastic_TAKPacket_init_zero {0, false, meshtastic_Contact_init_zero, false, meshtastic_Group_init_zero, false, meshtastic_Status_init_zero, 0, {meshtastic_PLI_init_zero}}
#define meshtastic_GeoChat_init_zero {"", false, "", false, ""}
#define meshtastic_Group_init_zero {_meshtastic_MemberRole_MIN, _meshtastic_Team_MIN}
#define meshtastic_Status_init_zero {0}
#define meshtastic_Contact_init_zero {"", ""}
#define meshtastic_PLI_init_zero {0, 0, 0, 0, 0}
#define meshtastic_AircraftTrack_init_zero {"", "", "", "", 0, "", 0, 0, ""}
#define meshtastic_TAKPacketV2_init_zero {_meshtastic_CotType_MIN, _meshtastic_CotHow_MIN, "", _meshtastic_Team_MIN, _meshtastic_MemberRole_MIN, 0, 0, 0, 0, 0, 0, _meshtastic_GeoPointSource_MIN, _meshtastic_GeoPointSource_MIN, "", "", 0, "", "", "", "", "", "", "", 0, {0}}
/* Field tags (for use in manual encoding/decoding) */
#define meshtastic_GeoChat_message_tag 1
@@ -508,42 +204,6 @@ extern "C" {
#define meshtastic_TAKPacket_pli_tag 5
#define meshtastic_TAKPacket_chat_tag 6
#define meshtastic_TAKPacket_detail_tag 7
#define meshtastic_AircraftTrack_icao_tag 1
#define meshtastic_AircraftTrack_registration_tag 2
#define meshtastic_AircraftTrack_flight_tag 3
#define meshtastic_AircraftTrack_aircraft_type_tag 4
#define meshtastic_AircraftTrack_squawk_tag 5
#define meshtastic_AircraftTrack_category_tag 6
#define meshtastic_AircraftTrack_rssi_x10_tag 7
#define meshtastic_AircraftTrack_gps_tag 8
#define meshtastic_AircraftTrack_cot_host_id_tag 9
#define meshtastic_TAKPacketV2_cot_type_id_tag 1
#define meshtastic_TAKPacketV2_how_tag 2
#define meshtastic_TAKPacketV2_callsign_tag 3
#define meshtastic_TAKPacketV2_team_tag 4
#define meshtastic_TAKPacketV2_role_tag 5
#define meshtastic_TAKPacketV2_latitude_i_tag 6
#define meshtastic_TAKPacketV2_longitude_i_tag 7
#define meshtastic_TAKPacketV2_altitude_tag 8
#define meshtastic_TAKPacketV2_speed_tag 9
#define meshtastic_TAKPacketV2_course_tag 10
#define meshtastic_TAKPacketV2_battery_tag 11
#define meshtastic_TAKPacketV2_geo_src_tag 12
#define meshtastic_TAKPacketV2_alt_src_tag 13
#define meshtastic_TAKPacketV2_uid_tag 14
#define meshtastic_TAKPacketV2_device_callsign_tag 15
#define meshtastic_TAKPacketV2_stale_seconds_tag 16
#define meshtastic_TAKPacketV2_tak_version_tag 17
#define meshtastic_TAKPacketV2_tak_device_tag 18
#define meshtastic_TAKPacketV2_tak_platform_tag 19
#define meshtastic_TAKPacketV2_tak_os_tag 20
#define meshtastic_TAKPacketV2_endpoint_tag 21
#define meshtastic_TAKPacketV2_phone_tag 22
#define meshtastic_TAKPacketV2_cot_type_str_tag 23
#define meshtastic_TAKPacketV2_pli_tag 30
#define meshtastic_TAKPacketV2_chat_tag 31
#define meshtastic_TAKPacketV2_aircraft_tag 32
#define meshtastic_TAKPacketV2_raw_detail_tag 33
/* Struct field encoding specification for nanopb */
#define meshtastic_TAKPacket_FIELDLIST(X, a) \
@@ -595,60 +255,12 @@ X(a, STATIC, SINGULAR, UINT32, course, 5)
#define meshtastic_PLI_CALLBACK NULL
#define meshtastic_PLI_DEFAULT NULL
#define meshtastic_AircraftTrack_FIELDLIST(X, a) \
X(a, STATIC, SINGULAR, STRING, icao, 1) \
X(a, STATIC, SINGULAR, STRING, registration, 2) \
X(a, STATIC, SINGULAR, STRING, flight, 3) \
X(a, STATIC, SINGULAR, STRING, aircraft_type, 4) \
X(a, STATIC, SINGULAR, UINT32, squawk, 5) \
X(a, STATIC, SINGULAR, STRING, category, 6) \
X(a, STATIC, SINGULAR, SINT32, rssi_x10, 7) \
X(a, STATIC, SINGULAR, BOOL, gps, 8) \
X(a, STATIC, SINGULAR, STRING, cot_host_id, 9)
#define meshtastic_AircraftTrack_CALLBACK NULL
#define meshtastic_AircraftTrack_DEFAULT NULL
#define meshtastic_TAKPacketV2_FIELDLIST(X, a) \
X(a, STATIC, SINGULAR, UENUM, cot_type_id, 1) \
X(a, STATIC, SINGULAR, UENUM, how, 2) \
X(a, STATIC, SINGULAR, STRING, callsign, 3) \
X(a, STATIC, SINGULAR, UENUM, team, 4) \
X(a, STATIC, SINGULAR, UENUM, role, 5) \
X(a, STATIC, SINGULAR, SFIXED32, latitude_i, 6) \
X(a, STATIC, SINGULAR, SFIXED32, longitude_i, 7) \
X(a, STATIC, SINGULAR, SINT32, altitude, 8) \
X(a, STATIC, SINGULAR, UINT32, speed, 9) \
X(a, STATIC, SINGULAR, UINT32, course, 10) \
X(a, STATIC, SINGULAR, UINT32, battery, 11) \
X(a, STATIC, SINGULAR, UENUM, geo_src, 12) \
X(a, STATIC, SINGULAR, UENUM, alt_src, 13) \
X(a, STATIC, SINGULAR, STRING, uid, 14) \
X(a, STATIC, SINGULAR, STRING, device_callsign, 15) \
X(a, STATIC, SINGULAR, UINT32, stale_seconds, 16) \
X(a, STATIC, SINGULAR, STRING, tak_version, 17) \
X(a, STATIC, SINGULAR, STRING, tak_device, 18) \
X(a, STATIC, SINGULAR, STRING, tak_platform, 19) \
X(a, STATIC, SINGULAR, STRING, tak_os, 20) \
X(a, STATIC, SINGULAR, STRING, endpoint, 21) \
X(a, STATIC, SINGULAR, STRING, phone, 22) \
X(a, STATIC, SINGULAR, STRING, cot_type_str, 23) \
X(a, STATIC, ONEOF, BOOL, (payload_variant,pli,payload_variant.pli), 30) \
X(a, STATIC, ONEOF, MESSAGE, (payload_variant,chat,payload_variant.chat), 31) \
X(a, STATIC, ONEOF, MESSAGE, (payload_variant,aircraft,payload_variant.aircraft), 32) \
X(a, STATIC, ONEOF, BYTES, (payload_variant,raw_detail,payload_variant.raw_detail), 33)
#define meshtastic_TAKPacketV2_CALLBACK NULL
#define meshtastic_TAKPacketV2_DEFAULT NULL
#define meshtastic_TAKPacketV2_payload_variant_chat_MSGTYPE meshtastic_GeoChat
#define meshtastic_TAKPacketV2_payload_variant_aircraft_MSGTYPE meshtastic_AircraftTrack
extern const pb_msgdesc_t meshtastic_TAKPacket_msg;
extern const pb_msgdesc_t meshtastic_GeoChat_msg;
extern const pb_msgdesc_t meshtastic_Group_msg;
extern const pb_msgdesc_t meshtastic_Status_msg;
extern const pb_msgdesc_t meshtastic_Contact_msg;
extern const pb_msgdesc_t meshtastic_PLI_msg;
extern const pb_msgdesc_t meshtastic_AircraftTrack_msg;
extern const pb_msgdesc_t meshtastic_TAKPacketV2_msg;
/* Defines for backwards compatibility with code written before nanopb-0.4.0 */
#define meshtastic_TAKPacket_fields &meshtastic_TAKPacket_msg
@@ -657,18 +269,14 @@ extern const pb_msgdesc_t meshtastic_TAKPacketV2_msg;
#define meshtastic_Status_fields &meshtastic_Status_msg
#define meshtastic_Contact_fields &meshtastic_Contact_msg
#define meshtastic_PLI_fields &meshtastic_PLI_msg
#define meshtastic_AircraftTrack_fields &meshtastic_AircraftTrack_msg
#define meshtastic_TAKPacketV2_fields &meshtastic_TAKPacketV2_msg
/* Maximum encoded size of messages (where known) */
#define MESHTASTIC_MESHTASTIC_ATAK_PB_H_MAX_SIZE meshtastic_TAKPacketV2_size
#define meshtastic_AircraftTrack_size 134
#define MESHTASTIC_MESHTASTIC_ATAK_PB_H_MAX_SIZE meshtastic_TAKPacket_size
#define meshtastic_Contact_size 242
#define meshtastic_GeoChat_size 444
#define meshtastic_Group_size 4
#define meshtastic_PLI_size 31
#define meshtastic_Status_size 3
#define meshtastic_TAKPacketV2_size 1027
#define meshtastic_TAKPacket_size 705
#ifdef __cplusplus
@@ -42,6 +42,9 @@ PB_BIND(meshtastic_MeshPacket, meshtastic_MeshPacket, 2)
PB_BIND(meshtastic_NodeInfo, meshtastic_NodeInfo, 2)
PB_BIND(meshtastic_NodeInfoBatch, meshtastic_NodeInfoBatch, AUTO)
PB_BIND(meshtastic_MyNodeInfo, meshtastic_MyNodeInfo, AUTO)
+28 -5
View File
@@ -308,8 +308,6 @@ typedef enum _meshtastic_HardwareModel {
meshtastic_HardwareModel_TDISPLAY_S3_PRO = 126,
/* Heltec Mesh Node T096 board features an nRF52840 CPU and a TFT screen. */
meshtastic_HardwareModel_HELTEC_MESH_NODE_T096 = 127,
/* Seeed studio T1000-E Pro tracker card. NRF52840 w/ LR2021 radio, GPS, button, buzzer, and sensors. */
meshtastic_HardwareModel_TRACKER_T1000_E_PRO = 128,
/* ------------------------------------------------------------------------------------------------------------------------------------------
Reserved ID For developing private Ports. These will show up in live traffic sparsely, so we can use a high number. Keep it within 8 bits.
------------------------------------------------------------------------------------------------------------------------------------------ */
@@ -1039,6 +1037,12 @@ typedef struct _meshtastic_NodeInfo {
bool is_muted;
} meshtastic_NodeInfo;
/* Batched NodeInfo wrapper for efficient bulk transfer during want_config flow.
Allows multiple NodeInfo messages to be packed into a single FromRadio packet. */
typedef struct _meshtastic_NodeInfoBatch {
pb_callback_t items;
} meshtastic_NodeInfoBatch;
typedef PB_BYTES_ARRAY_T(16) meshtastic_MyNodeInfo_device_id_t;
/* Unique local debugging info for this node
Note: we don't include position or the user info, because that will come in the
@@ -1264,6 +1268,9 @@ typedef struct _meshtastic_FromRadio {
meshtastic_ClientNotification clientNotification;
/* Persistent data for device-ui */
meshtastic_DeviceUIConfig deviceuiConfig;
/* Batched NodeInfo messages for efficient bulk transfer.
Used when client opts in via special nonce value. */
meshtastic_NodeInfoBatch node_info_batch;
};
} meshtastic_FromRadio;
@@ -1423,6 +1430,7 @@ extern "C" {
#define meshtastic_MeshPacket_transport_mechanism_ENUMTYPE meshtastic_MeshPacket_TransportMechanism
#define meshtastic_MyNodeInfo_firmware_edition_ENUMTYPE meshtastic_FirmwareEdition
#define meshtastic_LogRecord_level_ENUMTYPE meshtastic_LogRecord_Level
@@ -1464,6 +1472,7 @@ extern "C" {
#define meshtastic_MqttClientProxyMessage_init_default {"", 0, {{0, {0}}}, 0}
#define meshtastic_MeshPacket_init_default {0, 0, 0, 0, {meshtastic_Data_init_default}, 0, 0, 0, 0, 0, _meshtastic_MeshPacket_Priority_MIN, 0, _meshtastic_MeshPacket_Delayed_MIN, 0, 0, {0, {0}}, 0, 0, 0, 0, _meshtastic_MeshPacket_TransportMechanism_MIN}
#define meshtastic_NodeInfo_init_default {0, false, meshtastic_User_init_default, false, meshtastic_Position_init_default, 0, 0, false, meshtastic_DeviceMetrics_init_default, 0, 0, false, 0, 0, 0, 0, 0}
#define meshtastic_NodeInfoBatch_init_default {{{NULL}, NULL}}
#define meshtastic_MyNodeInfo_init_default {0, 0, 0, {0, {0}}, "", _meshtastic_FirmwareEdition_MIN, 0}
#define meshtastic_LogRecord_init_default {"", 0, "", _meshtastic_LogRecord_Level_MIN}
#define meshtastic_QueueStatus_init_default {0, 0, 0, 0}
@@ -1497,6 +1506,7 @@ extern "C" {
#define meshtastic_MqttClientProxyMessage_init_zero {"", 0, {{0, {0}}}, 0}
#define meshtastic_MeshPacket_init_zero {0, 0, 0, 0, {meshtastic_Data_init_zero}, 0, 0, 0, 0, 0, _meshtastic_MeshPacket_Priority_MIN, 0, _meshtastic_MeshPacket_Delayed_MIN, 0, 0, {0, {0}}, 0, 0, 0, 0, _meshtastic_MeshPacket_TransportMechanism_MIN}
#define meshtastic_NodeInfo_init_zero {0, false, meshtastic_User_init_zero, false, meshtastic_Position_init_zero, 0, 0, false, meshtastic_DeviceMetrics_init_zero, 0, 0, false, 0, 0, 0, 0, 0}
#define meshtastic_NodeInfoBatch_init_zero {{{NULL}, NULL}}
#define meshtastic_MyNodeInfo_init_zero {0, 0, 0, {0, {0}}, "", _meshtastic_FirmwareEdition_MIN, 0}
#define meshtastic_LogRecord_init_zero {"", 0, "", _meshtastic_LogRecord_Level_MIN}
#define meshtastic_QueueStatus_init_zero {0, 0, 0, 0}
@@ -1628,6 +1638,7 @@ extern "C" {
#define meshtastic_NodeInfo_is_ignored_tag 11
#define meshtastic_NodeInfo_is_key_manually_verified_tag 12
#define meshtastic_NodeInfo_is_muted_tag 13
#define meshtastic_NodeInfoBatch_items_tag 1
#define meshtastic_MyNodeInfo_my_node_num_tag 1
#define meshtastic_MyNodeInfo_reboot_count_tag 8
#define meshtastic_MyNodeInfo_min_app_version_tag 11
@@ -1702,6 +1713,7 @@ extern "C" {
#define meshtastic_FromRadio_fileInfo_tag 15
#define meshtastic_FromRadio_clientNotification_tag 16
#define meshtastic_FromRadio_deviceuiConfig_tag 17
#define meshtastic_FromRadio_node_info_batch_tag 18
#define meshtastic_Heartbeat_nonce_tag 1
#define meshtastic_ToRadio_packet_tag 1
#define meshtastic_ToRadio_want_config_id_tag 3
@@ -1884,6 +1896,12 @@ X(a, STATIC, SINGULAR, BOOL, is_muted, 13)
#define meshtastic_NodeInfo_position_MSGTYPE meshtastic_Position
#define meshtastic_NodeInfo_device_metrics_MSGTYPE meshtastic_DeviceMetrics
#define meshtastic_NodeInfoBatch_FIELDLIST(X, a) \
X(a, CALLBACK, REPEATED, MESSAGE, items, 1)
#define meshtastic_NodeInfoBatch_CALLBACK pb_default_field_callback
#define meshtastic_NodeInfoBatch_DEFAULT NULL
#define meshtastic_NodeInfoBatch_items_MSGTYPE meshtastic_NodeInfo
#define meshtastic_MyNodeInfo_FIELDLIST(X, a) \
X(a, STATIC, SINGULAR, UINT32, my_node_num, 1) \
X(a, STATIC, SINGULAR, UINT32, reboot_count, 8) \
@@ -1928,7 +1946,8 @@ X(a, STATIC, ONEOF, MESSAGE, (payload_variant,metadata,metadata), 13) \
X(a, STATIC, ONEOF, MESSAGE, (payload_variant,mqttClientProxyMessage,mqttClientProxyMessage), 14) \
X(a, STATIC, ONEOF, MESSAGE, (payload_variant,fileInfo,fileInfo), 15) \
X(a, STATIC, ONEOF, MESSAGE, (payload_variant,clientNotification,clientNotification), 16) \
X(a, STATIC, ONEOF, MESSAGE, (payload_variant,deviceuiConfig,deviceuiConfig), 17)
X(a, STATIC, ONEOF, MESSAGE, (payload_variant,deviceuiConfig,deviceuiConfig), 17) \
X(a, STATIC, ONEOF, MESSAGE, (payload_variant,node_info_batch,node_info_batch), 18)
#define meshtastic_FromRadio_CALLBACK NULL
#define meshtastic_FromRadio_DEFAULT NULL
#define meshtastic_FromRadio_payload_variant_packet_MSGTYPE meshtastic_MeshPacket
@@ -1945,6 +1964,7 @@ X(a, STATIC, ONEOF, MESSAGE, (payload_variant,deviceuiConfig,deviceuiConfi
#define meshtastic_FromRadio_payload_variant_fileInfo_MSGTYPE meshtastic_FileInfo
#define meshtastic_FromRadio_payload_variant_clientNotification_MSGTYPE meshtastic_ClientNotification
#define meshtastic_FromRadio_payload_variant_deviceuiConfig_MSGTYPE meshtastic_DeviceUIConfig
#define meshtastic_FromRadio_payload_variant_node_info_batch_MSGTYPE meshtastic_NodeInfoBatch
#define meshtastic_ClientNotification_FIELDLIST(X, a) \
X(a, STATIC, OPTIONAL, UINT32, reply_id, 1) \
@@ -2100,6 +2120,7 @@ extern const pb_msgdesc_t meshtastic_StatusMessage_msg;
extern const pb_msgdesc_t meshtastic_MqttClientProxyMessage_msg;
extern const pb_msgdesc_t meshtastic_MeshPacket_msg;
extern const pb_msgdesc_t meshtastic_NodeInfo_msg;
extern const pb_msgdesc_t meshtastic_NodeInfoBatch_msg;
extern const pb_msgdesc_t meshtastic_MyNodeInfo_msg;
extern const pb_msgdesc_t meshtastic_LogRecord_msg;
extern const pb_msgdesc_t meshtastic_QueueStatus_msg;
@@ -2135,6 +2156,7 @@ extern const pb_msgdesc_t meshtastic_ChunkedPayloadResponse_msg;
#define meshtastic_MqttClientProxyMessage_fields &meshtastic_MqttClientProxyMessage_msg
#define meshtastic_MeshPacket_fields &meshtastic_MeshPacket_msg
#define meshtastic_NodeInfo_fields &meshtastic_NodeInfo_msg
#define meshtastic_NodeInfoBatch_fields &meshtastic_NodeInfoBatch_msg
#define meshtastic_MyNodeInfo_fields &meshtastic_MyNodeInfo_msg
#define meshtastic_LogRecord_fields &meshtastic_LogRecord_msg
#define meshtastic_QueueStatus_fields &meshtastic_QueueStatus_msg
@@ -2158,9 +2180,11 @@ extern const pb_msgdesc_t meshtastic_ChunkedPayloadResponse_msg;
#define meshtastic_ChunkedPayloadResponse_fields &meshtastic_ChunkedPayloadResponse_msg
/* Maximum encoded size of messages (where known) */
/* meshtastic_NodeInfoBatch_size depends on runtime parameters */
/* meshtastic_FromRadio_size depends on runtime parameters */
/* meshtastic_resend_chunks_size depends on runtime parameters */
/* meshtastic_ChunkedPayloadResponse_size depends on runtime parameters */
#define MESHTASTIC_MESHTASTIC_MESH_PB_H_MAX_SIZE meshtastic_FromRadio_size
#define MESHTASTIC_MESHTASTIC_MESH_PB_H_MAX_SIZE meshtastic_ToRadio_size
#define meshtastic_ChunkedPayload_size 245
#define meshtastic_ClientNotification_size 482
#define meshtastic_Compressed_size 239
@@ -2168,7 +2192,6 @@ extern const pb_msgdesc_t meshtastic_ChunkedPayloadResponse_msg;
#define meshtastic_DeviceMetadata_size 54
#define meshtastic_DuplicatedPublicKey_size 0
#define meshtastic_FileInfo_size 236
#define meshtastic_FromRadio_size 510
#define meshtastic_Heartbeat_size 6
#define meshtastic_KeyVerificationFinal_size 65
#define meshtastic_KeyVerificationNumberInform_size 58
@@ -150,10 +150,6 @@ typedef enum _meshtastic_PortNum {
arbitrary telemetry over meshtastic that is not covered by telemetry.proto
ENCODING: CayenneLLP */
meshtastic_PortNum_CAYENNE_APP = 77,
/* ATAK Plugin V2
Portnum for payloads from the official Meshtastic ATAK plugin using
TAKPacketV2 with zstd dictionary compression. */
meshtastic_PortNum_ATAK_PLUGIN_V2 = 78,
/* GroupAlarm integration
Used for transporting GroupAlarm-related messages between Meshtastic nodes
and companion applications/services. */
@@ -203,10 +203,6 @@ void ExternalNotificationModule::setExternalState(uint8_t index, bool on)
default:
if (output > 0)
digitalWrite(output, (moduleConfig.external_notification.active ? on : !on));
#ifdef PCA_LED_NOTIFICATION
io.digitalWrite(PCA_LED_NOTIFICATION, on);
#endif
break;
}
-7
View File
@@ -104,10 +104,6 @@
#include "modules/StatusMessageModule.h"
#endif
#if !MESHTASTIC_EXCLUDE_ZPS
#include "modules/esp32/ZPSModule.h"
#endif
#if defined(HAS_HARDWARE_WATCHDOG)
#include "watchdog/watchdogThread.h"
#endif
@@ -178,9 +174,6 @@ void setupModules()
#if !MESHTASTIC_EXCLUDE_STATUS
statusMessageModule = new StatusMessageModule();
#endif
#if !MESHTASTIC_EXCLUDE_ZPS
zpsModule = new ZPSModule();
#endif
#if !MESHTASTIC_EXCLUDE_GENERIC_THREAD_MODULE
new GenericThreadModule();
#endif
+1 -1
View File
@@ -651,7 +651,7 @@ void SerialModule::processWXSerial()
LOG_INFO("WS8X : %i %.1fg%.1f %.1fv %.1fv %.1fC rain: %.1f, %i sum", atoi(windDir), strtof(windVel, nullptr),
strtof(windGust, nullptr), batVoltageF, capVoltageF, temperatureF, rain, rainSum);
}
if (gotwind && !Throttle::isWithinTimespanMs(lastAveraged, averageIntervalMillis) && velCount > 0 && dirCount > 0) {
if (gotwind && !Throttle::isWithinTimespanMs(lastAveraged, averageIntervalMillis)) {
// calculate averages and send to the mesh
float velAvg = 1.0 * velSum / velCount;
+29 -15
View File
@@ -66,10 +66,18 @@ extern void drawCommonHeader(OLEDDisplay *display, int16_t x, int16_t y, const c
#include "Sensor/MCP9808Sensor.h"
#endif
#if __has_include(<Adafruit_SHT31.h>)
#include "Sensor/SHT31Sensor.h"
#endif
#if __has_include(<Adafruit_LPS2X.h>)
#include "Sensor/LPS22HBSensor.h"
#endif
#if __has_include(<Adafruit_SHTC3.h>)
#include "Sensor/SHTC3Sensor.h"
#endif
#if __has_include("RAK12035_SoilMoisture.h") && defined(RAK_4631) && RAK_4631 == 1
#include "Sensor/RAK12035Sensor.h"
#endif
@@ -86,8 +94,8 @@ extern void drawCommonHeader(OLEDDisplay *display, int16_t x, int16_t y, const c
#include "Sensor/OPT3001Sensor.h"
#endif
#if __has_include(<SHTSensor.h>)
#include "Sensor/SHTXXSensor.h"
#if __has_include(<Adafruit_SHT4x.h>)
#include "Sensor/SHT4XSensor.h"
#endif
#if __has_include(<SparkFun_MLX90632_Arduino_Library.h>)
@@ -147,15 +155,6 @@ void EnvironmentTelemetryModule::i2cScanFinished(ScanI2C *i2cScanner)
}
LOG_INFO("Environment Telemetry adding I2C devices...");
/*
Uncomment the preferences below if you want to use the module
without having to configure it from the PythonAPI or WebUI.
*/
// moduleConfig.telemetry.environment_measurement_enabled = 1;
// moduleConfig.telemetry.environment_screen_enabled = 1;
// moduleConfig.telemetry.environment_update_interval = 15;
// order by priority of metrics/values (low top, high bottom)
#if !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR
@@ -203,9 +202,15 @@ void EnvironmentTelemetryModule::i2cScanFinished(ScanI2C *i2cScanner)
#if __has_include(<Adafruit_MCP9808.h>)
addSensor<MCP9808Sensor>(i2cScanner, ScanI2C::DeviceType::MCP9808);
#endif
#if __has_include(<Adafruit_SHT31.h>)
addSensor<SHT31Sensor>(i2cScanner, ScanI2C::DeviceType::SHT31);
#endif
#if __has_include(<Adafruit_LPS2X.h>)
addSensor<LPS22HBSensor>(i2cScanner, ScanI2C::DeviceType::LPS22HB);
#endif
#if __has_include(<Adafruit_SHTC3.h>)
addSensor<SHTC3Sensor>(i2cScanner, ScanI2C::DeviceType::SHTC3);
#endif
#if __has_include("RAK12035_SoilMoisture.h") && defined(RAK_4631) && RAK_4631 == 1
addSensor<RAK12035Sensor>(i2cScanner, ScanI2C::DeviceType::RAK12035);
#endif
@@ -218,9 +223,13 @@ void EnvironmentTelemetryModule::i2cScanFinished(ScanI2C *i2cScanner)
#if __has_include(<ClosedCube_OPT3001.h>)
addSensor<OPT3001Sensor>(i2cScanner, ScanI2C::DeviceType::OPT3001);
#endif
#if __has_include(<Adafruit_SHT4x.h>)
addSensor<SHT4XSensor>(i2cScanner, ScanI2C::DeviceType::SHT4X);
#endif
#if __has_include(<SparkFun_MLX90632_Arduino_Library.h>)
addSensor<MLX90632Sensor>(i2cScanner, ScanI2C::DeviceType::MLX90632);
#endif
#if __has_include(<Adafruit_BMP3XX.h>)
addSensor<BMP3XXSensor>(i2cScanner, ScanI2C::DeviceType::BMP_3XX);
#endif
@@ -236,10 +245,7 @@ void EnvironmentTelemetryModule::i2cScanFinished(ScanI2C *i2cScanner)
#if __has_include(<BH1750_WE.h>)
addSensor<BH1750Sensor>(i2cScanner, ScanI2C::DeviceType::BH1750);
#endif
#if __has_include(<SHTSensor.h>)
// TODO Can we scan for multiple sensors connected on the same bus?
addSensor<SHTXXSensor>(i2cScanner, ScanI2C::DeviceType::SHTXX);
#endif
#endif
}
@@ -254,6 +260,14 @@ int32_t EnvironmentTelemetryModule::runOnce()
}
uint32_t result = UINT32_MAX;
/*
Uncomment the preferences below if you want to use the module
without having to configure it from the PythonAPI or WebUI.
*/
// moduleConfig.telemetry.environment_measurement_enabled = 1;
// moduleConfig.telemetry.environment_screen_enabled = 1;
// moduleConfig.telemetry.environment_update_interval = 15;
if (!(moduleConfig.telemetry.environment_measurement_enabled || moduleConfig.telemetry.environment_screen_enabled ||
ENVIRONMENTAL_TELEMETRY_MODULE_ENABLE)) {
@@ -0,0 +1,31 @@
#include "configuration.h"
#if !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR && __has_include(<Adafruit_SHT31.h>)
#include "../mesh/generated/meshtastic/telemetry.pb.h"
#include "SHT31Sensor.h"
#include "TelemetrySensor.h"
#include <Adafruit_SHT31.h>
SHT31Sensor::SHT31Sensor() : TelemetrySensor(meshtastic_TelemetrySensorType_SHT31, "SHT31") {}
bool SHT31Sensor::initDevice(TwoWire *bus, ScanI2C::FoundDevice *dev)
{
LOG_INFO("Init sensor: %s", sensorName);
sht31 = Adafruit_SHT31(bus);
status = sht31.begin(dev->address.address);
initI2CSensor();
return status;
}
bool SHT31Sensor::getMetrics(meshtastic_Telemetry *measurement)
{
measurement->variant.environment_metrics.has_temperature = true;
measurement->variant.environment_metrics.has_relative_humidity = true;
measurement->variant.environment_metrics.temperature = sht31.readTemperature();
measurement->variant.environment_metrics.relative_humidity = sht31.readHumidity();
return true;
}
#endif
@@ -0,0 +1,20 @@
#include "configuration.h"
#if !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR && __has_include(<Adafruit_SHT31.h>)
#include "../mesh/generated/meshtastic/telemetry.pb.h"
#include "TelemetrySensor.h"
#include <Adafruit_SHT31.h>
class SHT31Sensor : public TelemetrySensor
{
private:
Adafruit_SHT31 sht31;
public:
SHT31Sensor();
virtual bool getMetrics(meshtastic_Telemetry *measurement) override;
virtual bool initDevice(TwoWire *bus, ScanI2C::FoundDevice *dev) override;
};
#endif
@@ -0,0 +1,48 @@
#include "configuration.h"
#if !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR && __has_include(<Adafruit_SHT4x.h>)
#include "../mesh/generated/meshtastic/telemetry.pb.h"
#include "SHT4XSensor.h"
#include "TelemetrySensor.h"
#include <Adafruit_SHT4x.h>
SHT4XSensor::SHT4XSensor() : TelemetrySensor(meshtastic_TelemetrySensorType_SHT4X, "SHT4X") {}
bool SHT4XSensor::initDevice(TwoWire *bus, ScanI2C::FoundDevice *dev)
{
LOG_INFO("Init sensor: %s", sensorName);
uint32_t serialNumber = 0;
status = sht4x.begin(bus);
if (!status) {
return status;
}
serialNumber = sht4x.readSerial();
if (serialNumber != 0) {
LOG_DEBUG("serialNumber : %x", serialNumber);
status = 1;
} else {
LOG_DEBUG("Error trying to execute readSerial(): ");
status = 0;
}
initI2CSensor();
return status;
}
bool SHT4XSensor::getMetrics(meshtastic_Telemetry *measurement)
{
measurement->variant.environment_metrics.has_temperature = true;
measurement->variant.environment_metrics.has_relative_humidity = true;
sensors_event_t humidity, temp;
sht4x.getEvent(&humidity, &temp);
measurement->variant.environment_metrics.temperature = temp.temperature;
measurement->variant.environment_metrics.relative_humidity = humidity.relative_humidity;
return true;
}
#endif
@@ -0,0 +1,20 @@
#include "configuration.h"
#if !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR && __has_include(<Adafruit_SHT4x.h>)
#include "../mesh/generated/meshtastic/telemetry.pb.h"
#include "TelemetrySensor.h"
#include <Adafruit_SHT4x.h>
class SHT4XSensor : public TelemetrySensor
{
private:
Adafruit_SHT4x sht4x = Adafruit_SHT4x();
public:
SHT4XSensor();
virtual bool getMetrics(meshtastic_Telemetry *measurement) override;
virtual bool initDevice(TwoWire *bus, ScanI2C::FoundDevice *dev) override;
};
#endif
@@ -0,0 +1,35 @@
#include "configuration.h"
#if !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR && __has_include(<Adafruit_SHTC3.h>)
#include "../mesh/generated/meshtastic/telemetry.pb.h"
#include "SHTC3Sensor.h"
#include "TelemetrySensor.h"
#include <Adafruit_SHTC3.h>
SHTC3Sensor::SHTC3Sensor() : TelemetrySensor(meshtastic_TelemetrySensorType_SHTC3, "SHTC3") {}
bool SHTC3Sensor::initDevice(TwoWire *bus, ScanI2C::FoundDevice *dev)
{
LOG_INFO("Init sensor: %s", sensorName);
status = shtc3.begin(bus);
initI2CSensor();
return status;
}
bool SHTC3Sensor::getMetrics(meshtastic_Telemetry *measurement)
{
measurement->variant.environment_metrics.has_temperature = true;
measurement->variant.environment_metrics.has_relative_humidity = true;
sensors_event_t humidity, temp;
shtc3.getEvent(&humidity, &temp);
measurement->variant.environment_metrics.temperature = temp.temperature;
measurement->variant.environment_metrics.relative_humidity = humidity.relative_humidity;
return true;
}
#endif
@@ -0,0 +1,20 @@
#include "configuration.h"
#if !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR && __has_include(<Adafruit_SHTC3.h>)
#include "../mesh/generated/meshtastic/telemetry.pb.h"
#include "TelemetrySensor.h"
#include <Adafruit_SHTC3.h>
class SHTC3Sensor : public TelemetrySensor
{
private:
Adafruit_SHTC3 shtc3 = Adafruit_SHTC3();
public:
SHTC3Sensor();
virtual bool getMetrics(meshtastic_Telemetry *measurement) override;
virtual bool initDevice(TwoWire *bus, ScanI2C::FoundDevice *dev) override;
};
#endif
@@ -1,145 +0,0 @@
#include "configuration.h"
#if !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR && __has_include(<SHTSensor.h>)
#include "../mesh/generated/meshtastic/telemetry.pb.h"
#include "SHTXXSensor.h"
#include "TelemetrySensor.h"
#include <SHTSensor.h>
SHTXXSensor::SHTXXSensor() : TelemetrySensor(meshtastic_TelemetrySensorType_SHTXX, "SHTXX") {}
void SHTXXSensor::getSensorVariant(SHTSensor::SHTSensorType sensorType)
{
switch (sensorType) {
case SHTSensor::SHTSensorType::SHT2X:
sensorVariant = "SHT2x";
break;
case SHTSensor::SHTSensorType::SHT3X:
case SHTSensor::SHTSensorType::SHT85:
sensorVariant = "SHT3x/SHT85";
break;
case SHTSensor::SHTSensorType::SHT3X_ALT:
sensorVariant = "SHT3x";
break;
case SHTSensor::SHTSensorType::SHTW1:
case SHTSensor::SHTSensorType::SHTW2:
case SHTSensor::SHTSensorType::SHTC1:
case SHTSensor::SHTSensorType::SHTC3:
sensorVariant = "SHTC1/SHTC3/SHTW1/SHTW2";
break;
case SHTSensor::SHTSensorType::SHT4X:
sensorVariant = "SHT4x";
break;
default:
sensorVariant = "Unknown";
break;
}
}
bool SHTXXSensor::initDevice(TwoWire *bus, ScanI2C::FoundDevice *dev)
{
LOG_INFO("Init sensor: %s", sensorName);
_bus = bus;
_address = dev->address.address;
if (sht.init(*_bus)) {
LOG_INFO("%s: init(): success", sensorName);
getSensorVariant(sht.mSensorType);
LOG_INFO("%s Sensor detected: %s on 0x%x", sensorName, sensorVariant, _address);
status = 1;
} else {
LOG_ERROR("%s: init(): failed", sensorName);
}
initI2CSensor();
return status;
}
/**
* Accuracy setting of measurement.
* Not all sensors support changing the sampling accuracy (only SHT3X and SHT4X)
* SHTAccuracy:
* - SHT_ACCURACY_HIGH: Highest repeatability at the cost of slower measurement
* - SHT_ACCURACY_MEDIUM: Balanced repeatability and speed of measurement
* - SHT_ACCURACY_LOW: Fastest measurement but lowest repeatability
*/
bool SHTXXSensor::setAccuracy(SHTSensor::SHTAccuracy newAccuracy)
{
// Only SHT3X-family (including alternates) and SHT4X support changing accuracy
if (sht.mSensorType != SHTSensor::SHTSensorType::SHT3X && sht.mSensorType != SHTSensor::SHTSensorType::SHT3X_ALT &&
sht.mSensorType != SHTSensor::SHTSensorType::SHT85 && sht.mSensorType != SHTSensor::SHTSensorType::SHT4X) {
LOG_WARN("%s doesn't support accuracy setting", sensorVariant);
return false;
}
LOG_INFO("%s: setting new accuracy setting", sensorVariant);
accuracy = newAccuracy;
return sht.setAccuracy(accuracy);
}
bool SHTXXSensor::getMetrics(meshtastic_Telemetry *measurement)
{
if (sht.readSample()) {
measurement->variant.environment_metrics.has_temperature = true;
measurement->variant.environment_metrics.has_relative_humidity = true;
measurement->variant.environment_metrics.temperature = sht.getTemperature();
measurement->variant.environment_metrics.relative_humidity = sht.getHumidity();
LOG_INFO("%s (%s): Got: temp:%fdegC, hum:%f%%rh", sensorName, sensorVariant,
measurement->variant.environment_metrics.temperature,
measurement->variant.environment_metrics.relative_humidity);
return true;
} else {
LOG_ERROR("%s (%s): read sample failed", sensorName, sensorVariant);
return false;
}
}
AdminMessageHandleResult SHTXXSensor::handleAdminMessage(const meshtastic_MeshPacket &mp, meshtastic_AdminMessage *request,
meshtastic_AdminMessage *response)
{
AdminMessageHandleResult result;
result = AdminMessageHandleResult::NOT_HANDLED;
switch (request->which_payload_variant) {
case meshtastic_AdminMessage_sensor_config_tag:
if (!request->sensor_config.has_shtxx_config) {
result = AdminMessageHandleResult::NOT_HANDLED;
break;
}
// Check for sensor accuracy setting
if (request->sensor_config.shtxx_config.has_set_accuracy) {
SHTSensor::SHTAccuracy newAccuracy;
if (request->sensor_config.shtxx_config.set_accuracy == 0) {
newAccuracy = SHTSensor::SHT_ACCURACY_LOW;
} else if (request->sensor_config.shtxx_config.set_accuracy == 1) {
newAccuracy = SHTSensor::SHT_ACCURACY_MEDIUM;
} else if (request->sensor_config.shtxx_config.set_accuracy == 2) {
newAccuracy = SHTSensor::SHT_ACCURACY_HIGH;
} else {
LOG_ERROR("%s: incorrect accuracy setting", sensorName);
result = AdminMessageHandleResult::HANDLED;
break;
}
this->setAccuracy(newAccuracy);
}
result = AdminMessageHandleResult::HANDLED;
break;
default:
result = AdminMessageHandleResult::NOT_HANDLED;
}
return result;
}
#endif
@@ -1,29 +0,0 @@
#include "configuration.h"
#if !MESHTASTIC_EXCLUDE_ENVIRONMENTAL_SENSOR && __has_include(<SHTSensor.h>)
#include "../mesh/generated/meshtastic/telemetry.pb.h"
#include "TelemetrySensor.h"
#include <SHTSensor.h>
class SHTXXSensor : public TelemetrySensor
{
private:
SHTSensor sht;
TwoWire *_bus{};
uint8_t _address{};
SHTSensor::SHTAccuracy accuracy{};
bool setAccuracy(SHTSensor::SHTAccuracy newAccuracy);
public:
SHTXXSensor();
virtual bool getMetrics(meshtastic_Telemetry *measurement) override;
virtual bool initDevice(TwoWire *bus, ScanI2C::FoundDevice *dev) override;
void getSensorVariant(SHTSensor::SHTSensorType);
const char *sensorVariant{};
AdminMessageHandleResult handleAdminMessage(const meshtastic_MeshPacket &mp, meshtastic_AdminMessage *request,
meshtastic_AdminMessage *response) override;
};
#endif
+1 -6
View File
@@ -7,7 +7,6 @@
#include "NodeDB.h"
#include "Router.h"
#include "TypeConversions.h"
#include "airtime.h"
#include "concurrency/LockGuard.h"
#include "configuration.h"
#include "mesh-pb-constants.h"
@@ -1002,11 +1001,7 @@ void TrafficManagementModule::alterReceived(meshtastic_MeshPacket &mp)
const auto &cfg = moduleConfig.traffic_management;
const bool isTelemetry = mp.decoded.portnum == meshtastic_PortNum_TELEMETRY_APP;
const bool isPosition = mp.decoded.portnum == meshtastic_PortNum_POSITION_APP;
// Only exhaust telemetry hops when channel is actually congested, mirroring the same
// airtime checks that gate self-generated telemetry in the telemetry modules.
const bool channelBusy = airTime && (!airTime->isTxAllowedChannelUtil(true) || !airTime->isTxAllowedAirUtil());
const bool shouldExhaust =
((channelBusy && isTelemetry && cfg.exhaust_hop_telemetry) || (isPosition && cfg.exhaust_hop_position));
const bool shouldExhaust = (isTelemetry && cfg.exhaust_hop_telemetry) || (isPosition && cfg.exhaust_hop_position);
if (!shouldExhaust || !isBroadcast(mp.to))
return;
-419
View File
@@ -1,419 +0,0 @@
/*
* ZPS - Zero-GPS Positioning System for standalone Meshtastic devices
* - experimental tools for estimating own position without a GPS -
*
* Copyright 2021 all rights reserved by https://github.com/a-f-G-U-C
* Released under GPL v3 (see LICENSE file for details)
*/
#include "ZPSModule.h"
#include "Default.h"
#include "MeshService.h"
#include "NodeDB.h"
#include "NodeStatus.h"
#include "Router.h"
#include "configuration.h"
#include "gps/RTC.h"
#include <WiFi.h>
#if !defined(MESHTASTIC_EXCLUDE_BLUETOOTH)
#include "NimBLEDevice.h"
#define BLE_MAX_REC 15
#define BLE_NO_RESULTS -1 // Indicates a BLE scan is in progress
uint8_t bleCounter = 0; // used internally by the ble scanner
uint64_t bleResult[BLE_MAX_REC + 1];
int bleResSize = BLE_NO_RESULTS;
uint64_t scanStart = 0;
ZPSModule *zpsModule;
// Mini BLE scanner, NIMBLE based and modelled loosely after the Wifi scanner
static int ble_scan(uint32_t duration, bool passive = true, bool dedup = true);
// ZPSModule::ZPSModule()
// : ProtobufModule("ZPS", ZPS_PORTNUM, Position_fields), concurrency::OSThread("ZPSModule")
ZPSModule::ZPSModule() : SinglePortModule("ZPS", ZPS_PORTNUM), concurrency::OSThread("ZPSModule")
{
setIntervalFromNow(ZPS_STARTUP_DELAY); // Delay startup by 10 seconds, no need to race :)
wantBSS = true;
wantBLE = true;
WiFi.mode(WIFI_STA);
WiFi.disconnect();
WiFi.scanNetworks(true, true); // nonblock, showhidden
scanState = SCAN_BSS_RUN;
}
ProcessMessage ZPSModule::handleReceived(const meshtastic_MeshPacket &mp)
{
meshtastic_Position pos = meshtastic_Position_init_default;
auto &pd = mp.decoded;
uint8_t nRecs = pd.payload.size >> 3;
LOG_DEBUG("handleReceived %s 0x%0x->0x%0x, id=0x%x, port=%d, len=%d, rec=%d\n", name, mp.from, mp.to, mp.id, pd.portnum,
pd.payload.size, nRecs);
if (nRecs > ZPS_DATAPKT_MAXITEMS)
nRecs = ZPS_DATAPKT_MAXITEMS;
memcpy(&netData, pd.payload.bytes, nRecs << 3);
// Currently we are unable to act as a position server, so we're
// not interested in broadcasts (this will change later)
if (mp.to != nodeDB->getNodeNum()) {
// Message is not for us, won't process
return ProcessMessage::CONTINUE;
}
#ifdef ZPS_EXTRAVERBOSE
for (int i = 0; i < nRecs; i++) {
LOG_DEBUG("ZPS[%d]: %08x"
"%08x\n",
i, (uint32_t)(netData[i] >> 32), (uint32_t)netData[i]);
}
#endif
if ((netData[0] & 0x800000000000) && (nRecs >= 2)) {
// message contains a position
pos.PDOP = (netData[0] >> 40) & 0x7f;
pos.timestamp = netData[0] & 0xffffffff;
// second int64 encodes lat and lon
pos.longitude_i = (int32_t)(netData[1] & 0xffffffff);
pos.latitude_i = (int32_t)((netData[1] >> 32) & 0xffffffff);
// FIXME should be conditional, to ensure we don't overwrite a good GPS fix!
LOG_DEBUG("ZPS lat/lon/dop/pts %d/%d/%d/%d\n", pos.latitude_i, pos.longitude_i, pos.PDOP, pos.timestamp);
// Some required fields
pos.time = getTime();
pos.location_source = meshtastic_Position_LocSource_LOC_EXTERNAL;
// don't update position if my gps fix is valid
if (nodeDB->hasValidPosition(nodeDB->getMeshNode(nodeDB->getNodeNum()))) {
LOG_DEBUG("ZPSModule::handleReceived: ignoring position update, GPS is valid\n");
return ProcessMessage::CONTINUE;
}
nodeDB->updatePosition(nodeDB->getNodeNum(), pos);
} else {
// nothing we can do - for now
return ProcessMessage::CONTINUE;
}
return ProcessMessage::CONTINUE; // Let others look at this message also if they want
}
meshtastic_MeshPacket *ZPSModule::allocReply()
{
meshtastic_MeshPacket *p = allocDataPacket();
p->decoded.payload.size = (netRecs + 2) << 3; // actually can be only +1 if no GPS data
LOG_DEBUG("Allocating dataPacket for %d items, %d bytes\n", netRecs, p->decoded.payload.size);
memcpy(p->decoded.payload.bytes, &netData, p->decoded.payload.size);
return (p);
}
void ZPSModule::sendDataPacket(NodeNum dest, bool wantReplies)
{
// cancel any not yet sent (now stale) position packets
if (prevPacketId)
service->cancelSending(prevPacketId);
meshtastic_MeshPacket *p = allocReply();
p->to = dest;
p->decoded.portnum = meshtastic_PortNum_ZPS_APP;
p->decoded.want_response = wantReplies;
p->priority = meshtastic_MeshPacket_Priority_BACKGROUND;
prevPacketId = p->id;
service->sendToMesh(p, RX_SRC_LOCAL);
}
int32_t ZPSModule::runOnce()
{
meshtastic_NodeInfoLite *node = nodeDB->getMeshNode(nodeDB->getNodeNum());
assert(node);
// LOG_DEBUG("ZPSModule::runOnce() START, scanState: %d\n", (int) scanState);
int numWifi = 0;
if (scanState == SCAN_BSS_RUN) {
// check completion status of any running Wifi scan
numWifi = WiFi.scanComplete();
if (numWifi >= 0) {
// scan is complete
LOG_DEBUG("%d BSS found\n", numWifi);
LOG_DEBUG("BSS scan done in %d millis\n", millis() - scanStart);
if (wantBSS && haveBSS) {
// old data exists, overwrite it
netRecs = 0;
haveBSS = haveBLE = false;
}
for (int i = 0; i < numWifi; i++) {
// pack each Wifi network record into a 64-bit int
uint64_t netBytes = encodeBSS(WiFi.BSSID(i), WiFi.channel(i), abs(WiFi.RSSI(i)));
if (wantBSS) {
// load into outbound array if needed
outBufAdd(netBytes);
haveBSS = true;
}
#ifdef ZPS_EXTRAVERBOSE
LOG_DEBUG("BSS[%02d]: %08x"
"%08x\n",
i, (uint32_t)(netBytes >> 32), (uint32_t)netBytes);
#endif
}
WiFi.scanDelete();
scanState = SCAN_BSS_DONE;
#ifdef ZPS_EXTRAVERBOSE
} else if (numWifi == -1) {
// LOG_DEBUG("BSS scan in-progress\n");
} else {
LOG_DEBUG("BSS scan state=%d\n", numWifi);
#endif
}
}
if ((scanState == SCAN_BLE_RUN) && (bleResSize >= 0)) {
// completion status checked above (bleResSize >= 0)
LOG_DEBUG("BLE scan done in %d millis\n", millis() - scanStart);
scanState = SCAN_BLE_DONE;
if (wantBLE && haveBLE) {
// old data exists, overwrite it
netRecs = 0;
haveBSS = haveBLE = false;
}
for (int i = 0; i < bleResSize; i++) {
// load data into output array if needed
if (wantBLE) {
outBufAdd(bleResult[i]);
haveBLE = true;
}
#ifdef ZPS_EXTRAVERBOSE
LOG_DEBUG("BLE[%d]: %08x"
"%08x\n",
i, (uint32_t)(bleResult[i] >> 32), (uint32_t)bleResult[i]);
#endif
}
// Reset the counter once we're done with the dataset
bleResSize = BLE_NO_RESULTS;
}
// Are we finished assembling that packet? Then send it out
if ((wantBSS == haveBSS) && (wantBLE == haveBLE) &&
airTime->isTxAllowedChannelUtil(config.device.role != meshtastic_Config_DeviceConfig_Role_SENSOR) &&
airTime->isTxAllowedAirUtil() &&
(lastSend == 0 || millis() - lastSend >= Default::getConfiguredOrDefaultMsScaled(config.position.position_broadcast_secs,
default_broadcast_interval_secs,
nodeStatus->getNumOnline()))) {
haveBSS = haveBLE = false;
sendDataPacket(NODENUM_BROADCAST, false); // no replies
lastSend = millis();
netRecs = 0; // reset packet
}
/*
* State machine transitions
*
* FIXME could be managed better, for example: check if we require
* each type of scan (wantBSS/wantBLE), and if not, don't start it!
*/
if (scanState == SCAN_BLE_DONE) {
// BLE done, transition to BSS scanning
scanStart = millis();
LOG_DEBUG("BSS scan start t=%d\n", scanStart);
if (WiFi.scanNetworks(true, true) == WIFI_SCAN_RUNNING) // nonblock, showhidden
scanState = SCAN_BSS_RUN;
} else if (scanState == SCAN_BSS_DONE) {
// BSS done, transition to BLE scanning
scanStart = millis();
LOG_DEBUG("BLE scan start t=%d\n", scanStart);
if (ble_scan(ZPS_BLE_SCANTIME) == 0)
scanState = SCAN_BLE_RUN;
}
// LOG_DEBUG("ZPSModule::runOnce() DONE, scanState=%d\n", scanState);
if ((scanState == SCAN_BSS_RUN) || (scanState == SCAN_BLE_RUN)) {
return 1000; // scan in progress, re-check soon
}
return 5000;
}
uint64_t encodeBSS(uint8_t *bssid, uint8_t chan, uint8_t absRSSI)
{
uint64_t netBytes = absRSSI & 0xff;
netBytes <<= 8;
netBytes |= (chan & 0xff);
for (uint8_t b = 0; b < 6; b++) {
netBytes <<= 8;
netBytes |= bssid[b];
}
return netBytes;
}
uint64_t encodeBLE(uint8_t *addr, uint8_t absRSSI)
{
uint64_t netBytes = absRSSI & 0xff;
netBytes <<= 8;
netBytes |= 0xff; // "channel" byte reserved in BLE records
for (uint8_t b = 0; b < 6; b++) {
netBytes <<= 8;
netBytes |= addr[5 - b] & 0xff;
}
return netBytes;
}
/**
* Event handler
*/
static int ble_gap_event(struct ble_gap_event *event, void *arg)
{
// Adverts matching certain patterns are useless for positioning purposes
// (ephemeral MAC etc), so try excluding them if possible
//
// TODO: Expand the list of reject patterns for BLE adverts.
// There are likely more than 10 patterns to test and reject, including most Apple devices and others.
//
// TODO: Implement full packet search for reject patterns (use memmem() or similar),
// not just at the beginning (currently uses memcmp()).
const uint8_t rejPat[] = {0x1e, 0xff, 0x06, 0x00, 0x01}; // one of many
struct ble_hs_adv_fields fields;
int rc;
int i = 0;
uint64_t netBytes = 0;
switch (event->type) {
case BLE_GAP_EVENT_DISC:
// called once for every BLE advert received
rc = ble_hs_adv_parse_fields(&fields, event->disc.data, event->disc.length_data);
if (rc != 0)
return 0;
if (bleResSize != BLE_NO_RESULTS)
// as far as we know, we're not in the middle of a BLE scan!
LOG_DEBUG("Unexpected BLE_GAP_EVENT_DISC!\n");
#ifdef ZPS_EXTRAVERBOSE
// Dump the advertisement packet
DEBUG_PORT.hexDump("DEBUG", (unsigned char *)event->disc.data, event->disc.length_data);
#endif
// Reject beacons known to be unreliable (ephemeral etc)
if (memcmp(event->disc.data, rejPat, sizeof(rejPat)) == 0) {
LOG_DEBUG("(BLE item filtered by pattern)\n");
return 0; // Processing-wise, it's still a success
}
//
// STORE THE RESULTS IN A SORTED LIST
//
// first, pack each BLE item reading into a 64-bit int
netBytes = encodeBLE(event->disc.addr.val, abs(event->disc.rssi));
// SOME DUPLICATES SURVIVE through filter_duplicates = 1, catch them here
// Duplicate filtering is now handled in the sorting loop below,
// but right now we write for clarity not optimization
for (i = 0; i < bleCounter; i++) {
if ((bleResult[i] & 0xffffffffffff) == (netBytes & 0xffffffffffff)) {
LOG_DEBUG("(BLE duplicate filtered)\n");
return 0;
}
}
#ifdef ZPS_EXTRAVERBOSE
// redundant extraverbosity, but I need it for duplicate hunting
LOG_DEBUG("BL_[%02d]: %08x"
"%08x\n",
bleCounter, (uint32_t)(netBytes >> 32), (uint32_t)netBytes);
#endif
// then insert item into a list (up to BLE_MAX_REC records), sorted by RSSI
for (i = 0; i < bleCounter; i++) {
// find first element greater than ours, that will be our insertion point
if (bleResult[i] > netBytes)
break;
}
// any other records move down one position to vacate res[i]
for (int j = bleCounter; j > i; j--)
bleResult[j] = bleResult[j - 1];
// write new element at insertion point
bleResult[i] = netBytes;
// advance tail of list, but not beyond limit
if (bleCounter < BLE_MAX_REC)
bleCounter++;
return 0; // SUCCESS
case BLE_GAP_EVENT_DISC_COMPLETE:
LOG_DEBUG("EVENT_DISC_COMPLETE in %d millis\n", (millis() - scanStart));
LOG_DEBUG("%d BLE found\n", bleCounter);
bleResSize = bleCounter;
bleCounter = 0; // reset counter
return 0; // SUCCESS
default:
return 0; // SUCCESS
}
}
/**
* Initiates the GAP general discovery procedure (non-blocking)
*/
static int ble_scan(uint32_t duration, bool passive, bool dedup)
{
uint8_t own_addr_type;
struct ble_gap_disc_params disc_params;
int rc;
// Figure out address type to use
rc = ble_hs_id_infer_auto(0, &own_addr_type);
if (rc != 0) {
LOG_DEBUG("error determining address type; rc=%d\n", rc);
return rc;
}
// Scanning parameters, these are mostly default
disc_params.itvl = 0;
disc_params.window = 0;
disc_params.filter_policy = 0;
disc_params.limited = 0;
// These two params are the more interesting ones
disc_params.filter_duplicates = dedup; // self-explanatory
disc_params.passive = passive; // passive uses less power
// Start scanning process (non-blocking) and return
rc = ble_gap_disc(own_addr_type, duration, &disc_params, ble_gap_event, NULL);
if (rc != 0) {
LOG_DEBUG("error initiating GAP discovery; rc=%d\n", rc);
}
return rc;
}
#endif // MESHTASTIC_EXCLUDE_BLUETOOTH
-86
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@@ -1,86 +0,0 @@
#pragma once
#include "SinglePortModule.h"
#include "concurrency/OSThread.h"
#include "gps/RTC.h"
#define ZPS_PORTNUM meshtastic_PortNum_ZPS_APP
#define ZPS_DATAPKT_MAXITEMS 20 // max number of records to pack in an outbound packet (~10)
#define ZPS_STARTUP_DELAY 10000 // Module startup delay in millis
// Duration of a BLE scan in millis.
// We want this number to be SLIGHTLY UNDER an integer number of seconds,
// to be able to catch the result as fresh as possible on a 1-second polling loop
#define ZPS_BLE_SCANTIME 2900 // millis
enum SCANSTATE { SCAN_NONE, SCAN_BSS_RUN, SCAN_BSS_DONE, SCAN_BLE_RUN, SCAN_BLE_DONE };
/*
* Data packing "compression" functions
* Ingest a WiFi BSSID, channel and RSSI (or BLE address and RSSI)
* and encode them into a packed uint64
*/
uint64_t encodeBSS(uint8_t *bssid, uint8_t chan, uint8_t absRSSI);
uint64_t encodeBLE(uint8_t *addr, uint8_t absRSSI);
class ZPSModule : public SinglePortModule, private concurrency::OSThread
{
/// The id of the last packet we sent, to allow us to cancel it if we make something fresher
PacketId prevPacketId = 0;
/// We limit our broadcasts to a max rate
uint32_t lastSend = 0;
bool wantBSS = true;
bool haveBSS = false;
bool wantBLE = true;
bool haveBLE = false;
public:
/** Constructor
* name is for debugging output
*/
ZPSModule();
/**
* Send our radio environment data into the mesh
*/
void sendDataPacket(NodeNum dest = NODENUM_BROADCAST, bool wantReplies = false);
protected:
/** Called to handle a particular incoming message
@return true if you've guaranteed you've handled this message and no other handlers should be considered for it
*/
virtual ProcessMessage handleReceived(const meshtastic_MeshPacket &mp);
/** Messages can be received that have the want_response bit set. If set, this callback will be invoked
* so that subclasses can (optionally) send a response back to the original sender. */
virtual meshtastic_MeshPacket *allocReply();
/** Does our periodic broadcast */
virtual int32_t runOnce();
private:
// outbound data packet staging buffer and record counter
uint64_t netData[ZPS_DATAPKT_MAXITEMS + 2] = {0};
uint8_t netRecs = 0;
// mini state machine to alternate between BSS(Wifi) and BLE scanning
SCANSTATE scanState = SCAN_NONE;
inline void outBufAdd(uint64_t netBytes)
{
// If this is the first record, initialize the header with the current time and reset the record count.
if (!netRecs) {
netData[0] = getTime();
netData[1] = 0;
}
// push to buffer and update counter
if (netRecs < ZPS_DATAPKT_MAXITEMS)
netData[2 + (netRecs++)] = netBytes;
}
};
extern ZPSModule *zpsModule;
+2 -2
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@@ -322,8 +322,8 @@ bool connectPubSub(const PubSubConfig &config, PubSubClient &pubSub, Client &cli
pubSub.setClient(client);
pubSub.setServer(config.serverAddr.c_str(), config.serverPort);
LOG_INFO("Connecting directly to MQTT server %s, port: %d, username: %s, password: ***", config.serverAddr.c_str(),
config.serverPort, config.mqttUsername);
LOG_INFO("Connecting directly to MQTT server %s, port: %d, username: %s, password: %s", config.serverAddr.c_str(),
config.serverPort, config.mqttUsername, config.mqttPassword);
// Generate node ID from nodenum for client identification
std::string nodeId = nodeDB->getNodeId();
+3 -3
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@@ -145,7 +145,7 @@ class BluetoothPhoneAPI : public PhoneAPI, public concurrency::OSThread
std::mutex toPhoneMutex;
std::atomic<size_t> toPhoneQueueSize{0};
// We use array here (and pay the cost of memcpy) to avoid dynamic memory allocations and frees across FreeRTOS tasks.
std::array<std::array<uint8_t, meshtastic_FromRadio_size>, NIMBLE_BLUETOOTH_TO_PHONE_QUEUE_SIZE> toPhoneQueue{};
std::array<std::array<uint8_t, MAX_TO_FROM_RADIO_SIZE>, NIMBLE_BLUETOOTH_TO_PHONE_QUEUE_SIZE> toPhoneQueue{};
std::array<size_t, NIMBLE_BLUETOOTH_TO_PHONE_QUEUE_SIZE> toPhoneQueueByteSizes{};
// The onReadCallbackIsWaitingForData flag provides synchronization between the NimBLE task's onRead callback and our main
// task's runOnce. It's only set by onRead, and only cleared by runOnce.
@@ -245,7 +245,7 @@ class BluetoothPhoneAPI : public PhoneAPI, public concurrency::OSThread
void runOnceHandleToPhoneQueue()
{
// Stack buffer for getFromRadio packet
uint8_t fromRadioBytes[meshtastic_FromRadio_size] = {0};
uint8_t fromRadioBytes[MAX_TO_FROM_RADIO_SIZE] = {0};
size_t numBytes = 0;
if (onReadCallbackIsWaitingForData || runOnceToPhoneCanPreloadNextPacket()) {
@@ -524,7 +524,7 @@ class NimbleBluetoothFromRadioCallback : public NimBLECharacteristicCallbacks
}
// Pop from toPhoneQueue, protected by toPhoneMutex. Hold the mutex as briefly as possible.
uint8_t fromRadioBytes[meshtastic_FromRadio_size] = {0}; // Stack buffer for getFromRadio packet
uint8_t fromRadioBytes[MAX_TO_FROM_RADIO_SIZE] = {0}; // Stack buffer for getFromRadio packet
size_t numBytes = 0;
{ // scope for toPhoneMutex mutex
std::lock_guard<std::mutex> guard(bluetoothPhoneAPI->toPhoneMutex);
+1 -3
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@@ -231,9 +231,7 @@ void cpuDeepSleep(uint32_t msecToWake)
#if SOC_RTCIO_HOLD_SUPPORTED && SOC_PM_SUPPORT_EXT_WAKEUP
uint64_t gpioMask = (1ULL << (config.device.button_gpio ? config.device.button_gpio : BUTTON_PIN));
#endif
#ifdef ALT_BUTTON_WAKE
gpioMask |= (1ULL << BUTTON_PIN_ALT);
#endif
#ifdef BUTTON_NEED_PULLUP
gpio_pullup_en((gpio_num_t)BUTTON_PIN);
#endif
@@ -23,6 +23,5 @@ void lateInitVariant()
cfg.i2s.bits = BIT_LENGTH_16BITS;
cfg.i2s.rate = RATE_44K;
board.begin(cfg);
board.setVolume(75); // 75% volume
}
#endif
+1 -1
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@@ -25,7 +25,7 @@ static BLEDfuSecure bledfusecure; //
// This scratch buffer is used for various bluetooth reads/writes - but it is safe because only one bt operation can be in
// process at once
// static uint8_t trBytes[_max(_max(_max(_max(ToRadio_size, RadioConfig_size), User_size), MyNodeInfo_size), FromRadio_size)];
static uint8_t fromRadioBytes[meshtastic_FromRadio_size];
static uint8_t fromRadioBytes[MAX_TO_FROM_RADIO_SIZE];
static uint8_t toRadioBytes[meshtastic_ToRadio_size];
// Last ToRadio value received from the phone
-11
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@@ -1,11 +0,0 @@
.globl HardFault_Handler
.syntax unified
.thumb
.type HardFault_Handler, %function
HardFault_Handler:
tst lr, #4
ite eq
mrseq r0, msp
mrsne r0, psp
b HardFault_Handler_C
+1 -97
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@@ -1,6 +1,5 @@
#include "RTC.h"
#include "configuration.h"
#include <stdarg.h>
#include <stm32wle5xx.h>
#include <stm32wlxx_hal.h>
@@ -54,99 +53,4 @@ extern "C" void __wrap__tzset_unlocked_r(struct _reent *reent_ptr)
{
return;
}
#endif
// Taken from https://interrupt.memfault.com/blog/cortex-m-hardfault-debug
typedef struct __attribute__((packed)) ContextStateFrame {
uint32_t r0;
uint32_t r1;
uint32_t r2;
uint32_t r3;
uint32_t r12;
uint32_t lr;
uint32_t return_address;
uint32_t xpsr;
} sContextStateFrame;
// NOTE: If you are using CMSIS, the registers can also be
// accessed through CoreDebug->DHCSR & CoreDebug_DHCSR_C_DEBUGEN_Msk
#define HALT_IF_DEBUGGING() \
do { \
if ((*(volatile uint32_t *)0xE000EDF0) & (1 << 0)) { \
__asm("bkpt 1"); \
} \
} while (0)
static char hardfault_message_buffer[256];
// printf directly using srcwrapper's debug UART function.
static void debug_printf(const char *format, ...)
{
va_list args;
va_start(args, format);
int length = vsnprintf(hardfault_message_buffer, sizeof(hardfault_message_buffer), format, args);
va_end(args);
if (length < 0)
return;
uart_debug_write((uint8_t *)hardfault_message_buffer, min((unsigned int)length, sizeof(hardfault_message_buffer) - 1));
}
// N picked by guessing
#define DOT_TIME 1200000
static void dot()
{
digitalWrite(LED_POWER, LED_STATE_ON);
for (volatile int i = 0; i < DOT_TIME; i++) { /* busy wait */
}
digitalWrite(LED_POWER, LED_STATE_OFF);
for (volatile int i = 0; i < DOT_TIME; i++) { /* busy wait */
}
}
static void dash()
{
digitalWrite(LED_POWER, LED_STATE_ON);
for (volatile int i = 0; i < (DOT_TIME * 3); i++) { /* busy wait */
}
digitalWrite(LED_POWER, LED_STATE_OFF);
for (volatile int i = 0; i < DOT_TIME; i++) { /* busy wait */
}
}
static void space()
{
for (volatile int i = 0; i < (DOT_TIME * 3); i++) { /* busy wait */
}
}
// Disable optimizations for this function so "frame" argument
// does not get optimized away
extern "C" __attribute__((optimize("O0"))) void HardFault_Handler_C(sContextStateFrame *frame)
{
debug_printf("HardFault!\r\n");
debug_printf("r0: %08x\r\n", frame->r0);
debug_printf("r1: %08x\r\n", frame->r1);
debug_printf("r2: %08x\r\n", frame->r2);
debug_printf("r3: %08x\r\n", frame->r3);
debug_printf("r12: %08x\r\n", frame->r12);
debug_printf("lr: %08x\r\n", frame->lr);
debug_printf("pc[return address]: %08x\r\n", frame->return_address);
debug_printf("xpsr: %08x\r\n", frame->xpsr);
HALT_IF_DEBUGGING();
// blink SOS forever
while (1) {
dot();
dot();
dot();
dash();
dash();
dash();
dot();
dot();
dot();
space();
}
}
#endif
-95
View File
@@ -14,23 +14,6 @@ class MockMeshService : public MeshService
static MockMeshService *mockMeshService;
// Test shim to expose protected radio parameters set by applyModemConfig()
class TestableRadioInterface : public RadioInterface
{
public:
TestableRadioInterface() : RadioInterface() {}
uint8_t getCr() const { return cr; }
uint8_t getSf() const { return sf; }
float getBw() const { return bw; }
// Override reconfigure to call the base which invokes applyModemConfig()
bool reconfigure() override { return RadioInterface::reconfigure(); }
// Stubs for pure virtual methods required by RadioInterface
uint32_t getPacketTime(uint32_t, bool) override { return 0; }
ErrorCode send(meshtastic_MeshPacket *p) override { return ERRNO_OK; }
};
static void test_bwCodeToKHz_specialMappings()
{
TEST_ASSERT_FLOAT_WITHIN(0.0001f, 31.25f, bwCodeToKHz(31));
@@ -117,87 +100,13 @@ static void test_clampConfigLora_validPresetUnchanged()
TEST_ASSERT_EQUAL(meshtastic_Config_LoRaConfig_ModemPreset_MEDIUM_FAST, cfg.modem_preset);
}
// -----------------------------------------------------------------------
// applyModemConfig() coding rate tests (via reconfigure)
// -----------------------------------------------------------------------
static TestableRadioInterface *testRadio;
// After fresh flash: coding_rate=0, use_preset=true, modem_preset=LONG_FAST
// CR should come from the preset (5 for LONG_FAST), not from the zero default.
static void test_applyModemConfig_freshFlashCodingRateNotZero()
{
config.lora = meshtastic_Config_LoRaConfig_init_zero;
config.lora.region = meshtastic_Config_LoRaConfig_RegionCode_US;
config.lora.use_preset = true;
config.lora.modem_preset = meshtastic_Config_LoRaConfig_ModemPreset_LONG_FAST;
// coding_rate is 0 (default after init_zero, same as fresh flash)
testRadio->reconfigure();
// LONG_FAST preset has cr=5; must never be 0
TEST_ASSERT_EQUAL_UINT8(5, testRadio->getCr());
TEST_ASSERT_EQUAL_UINT8(11, testRadio->getSf());
TEST_ASSERT_FLOAT_WITHIN(0.01f, 250.0f, testRadio->getBw());
}
// When coding_rate matches the preset exactly, should still use the preset value
static void test_applyModemConfig_codingRateMatchesPreset()
{
config.lora = meshtastic_Config_LoRaConfig_init_zero;
config.lora.region = meshtastic_Config_LoRaConfig_RegionCode_US;
config.lora.use_preset = true;
config.lora.modem_preset = meshtastic_Config_LoRaConfig_ModemPreset_LONG_SLOW;
config.lora.coding_rate = 8; // LONG_SLOW default is cr=8
testRadio->reconfigure();
TEST_ASSERT_EQUAL_UINT8(8, testRadio->getCr());
}
// Custom CR higher than preset should be used
static void test_applyModemConfig_customCodingRateHigherThanPreset()
{
config.lora = meshtastic_Config_LoRaConfig_init_zero;
config.lora.region = meshtastic_Config_LoRaConfig_RegionCode_US;
config.lora.use_preset = true;
config.lora.modem_preset = meshtastic_Config_LoRaConfig_ModemPreset_LONG_FAST;
config.lora.coding_rate = 7; // LONG_FAST preset has cr=5, 7 > 5
testRadio->reconfigure();
TEST_ASSERT_EQUAL_UINT8(7, testRadio->getCr());
}
// Custom CR lower than preset: preset wins (higher is more robust)
static void test_applyModemConfig_customCodingRateLowerThanPreset()
{
config.lora = meshtastic_Config_LoRaConfig_init_zero;
config.lora.region = meshtastic_Config_LoRaConfig_RegionCode_US;
config.lora.use_preset = true;
config.lora.modem_preset = meshtastic_Config_LoRaConfig_ModemPreset_LONG_SLOW;
config.lora.coding_rate = 5; // LONG_SLOW preset has cr=8, 5 < 8
testRadio->reconfigure();
TEST_ASSERT_EQUAL_UINT8(8, testRadio->getCr());
}
void setUp(void)
{
mockMeshService = new MockMeshService();
service = mockMeshService;
// RadioInterface computes slotTimeMsec during construction and expects myRegion to be valid.
config.lora.region = meshtastic_Config_LoRaConfig_RegionCode_US;
initRegion();
testRadio = new TestableRadioInterface();
}
void tearDown(void)
{
delete testRadio;
testRadio = nullptr;
service = nullptr;
delete mockMeshService;
mockMeshService = nullptr;
@@ -219,10 +128,6 @@ void setup()
RUN_TEST(test_validateConfigLora_rejectsInvalidPresetForRegion);
RUN_TEST(test_clampConfigLora_invalidPresetClampedToDefault);
RUN_TEST(test_clampConfigLora_validPresetUnchanged);
RUN_TEST(test_applyModemConfig_freshFlashCodingRateNotZero);
RUN_TEST(test_applyModemConfig_codingRateMatchesPreset);
RUN_TEST(test_applyModemConfig_customCodingRateHigherThanPreset);
RUN_TEST(test_applyModemConfig_customCodingRateLowerThanPreset);
exit(UNITY_END());
}
+2 -1
View File
@@ -39,6 +39,7 @@ build_flags =
-Wall
-Wextra
-Isrc/platform/esp32
-include mbedtls/error.h
-std=gnu++17
-DLOG_LOCAL_LEVEL=ESP_LOG_DEBUG
-DCORE_DEBUG_LEVEL=ARDUHAL_LOG_LEVEL_DEBUG
@@ -67,7 +68,7 @@ lib_deps =
${environmental_extra.lib_deps}
${radiolib_base.lib_deps}
# renovate: datasource=git-refs depName=meshtastic-esp32_https_server packageName=https://github.com/meshtastic/esp32_https_server gitBranch=master
https://github.com/meshtastic/esp32_https_server/archive/0c71f380390ad483ff134ad938e07f6cf1226c5b.zip
https://github.com/meshtastic/esp32_https_server/archive/b78f12c86ea65c3ca08968840ff554ff7ed69b60.zip
# renovate: datasource=custom.pio depName=NimBLE-Arduino packageName=h2zero/library/NimBLE-Arduino
h2zero/NimBLE-Arduino@1.4.3
# renovate: datasource=git-refs depName=libpax packageName=https://github.com/dbinfrago/libpax gitBranch=master
@@ -9,11 +9,11 @@ void earlyInitVariant()
io.pinMode(PCA_PIN_EINK_EN, OUTPUT);
io.pinMode(PCA_PIN_POWER_EN, OUTPUT);
io.pinMode(PCA_LED_POWER, OUTPUT);
io.pinMode(PCA_LED_NOTIFICATION, OUTPUT);
io.pinMode(PCA_LED_USER, OUTPUT);
io.pinMode(PCA_LED_ENABLE, OUTPUT);
io.digitalWrite(PCA_PIN_POWER_EN, HIGH);
io.digitalWrite(PCA_LED_NOTIFICATION, LOW);
io.digitalWrite(PCA_LED_USER, LOW);
io.digitalWrite(PCA_LED_ENABLE, LOW);
}
@@ -8,9 +8,9 @@
// LED
// Both of these are on the GPIO expander
#define PCA_LED_NOTIFICATION 1 // the Blue LED
#define PCA_LED_ENABLE 2 // the power supply to the LEDs, in an OR arrangement with VBUS power
#define PCA_LED_POWER 3 // the Red LED? Seems to have hardware logic to blink when USB is plugged in.
#define PCA_LED_USER 1 // the Blue LED
#define PCA_LED_ENABLE 2 // the power supply to the LEDs, in an OR arrangement with VBUS power
#define PCA_LED_POWER 3 // the Red LED? Seems to have hardware logic to blink when USB is plugged in.
#define POWER_LED_HARDWARE_BLINKS_WHILE_CHARGING
// USB_CHECK
@@ -18,7 +18,7 @@
#define BATTERY_PIN 8
#define ADC_CHANNEL ADC1_GPIO8_CHANNEL
#define ADC_MULTIPLIER 2.0 // 2.0 + 10% for correction of display undervoltage.
#define ADC_MULTIPLIER 2.11 // 2.0 + 10% for correction of display undervoltage.
#define PIN_BUZZER 9
@@ -86,7 +86,6 @@
#define BUTTON_PIN PIN_BUTTON1
#define BUTTON_PIN_ALT PIN_BUTTON2
#define ALT_BUTTON_WAKE
#define SERIAL_PRINT_PORT 0
#endif
@@ -84,7 +84,6 @@ custom_meshtastic_images = crowpanel_2_4.svg, crowpanel_2_8.svg
custom_meshtastic_tags = Elecrow
custom_meshtastic_requires_dfu = true
custom_meshtastic_partition_scheme = 16MB
custom_meshtastic_has_mui = true
extends = crowpanel_small_esp32s3_base
build_flags =
@@ -120,7 +119,6 @@ custom_meshtastic_images = crowpanel_3_5.svg
custom_meshtastic_tags = Elecrow
custom_meshtastic_requires_dfu = true
custom_meshtastic_partition_scheme = 16MB
custom_meshtastic_has_mui = true
extends = crowpanel_small_esp32s3_base
board_level = pr
@@ -160,7 +158,6 @@ custom_meshtastic_images = crowpanel_5_0.svg, crowpanel_7_0.svg
custom_meshtastic_tags = Elecrow
custom_meshtastic_requires_dfu = true
custom_meshtastic_partition_scheme = 16MB
custom_meshtastic_has_mui = true
extends = crowpanel_large_esp32s3_base
build_flags =
@@ -22,7 +22,6 @@ custom_meshtastic_images = heltec_v4.svg
custom_meshtastic_tags = Heltec
custom_meshtastic_requires_dfu = true
custom_meshtastic_partition_scheme = 16MB
custom_meshtastic_has_mui = true
extends = heltec_v4_base
build_flags =
@@ -9,7 +9,6 @@ custom_meshtastic_images = heltec-vision-master-e213.svg
custom_meshtastic_tags = Heltec
custom_meshtastic_requires_dfu = true
custom_meshtastic_partition_scheme = 8MB
custom_meshtastic_has_ink_hud = true
extends = esp32s3_base
board = heltec_vision_master_e213
@@ -10,7 +10,6 @@ custom_meshtastic_images = heltec-vision-master-e290.svg
custom_meshtastic_tags = Heltec
custom_meshtastic_requires_dfu = true
custom_meshtastic_partition_scheme = 8MB
custom_meshtastic_has_ink_hud = true
extends = esp32s3_base
board = heltec_vision_master_e290
@@ -9,7 +9,6 @@ custom_meshtastic_display_name = Heltec Wireless Paper
custom_meshtastic_images = heltec-wireless-paper.svg
custom_meshtastic_tags = Heltec
custom_meshtastic_partition_scheme = 8MB
custom_meshtastic_has_ink_hud = true
extends = esp32s3_base
board = heltec_wifi_lora_32_V3
+1 -5
View File
@@ -12,7 +12,6 @@ build_flags = ${esp32s3_base.build_flags}
-D CONFIG_ARDUHAL_ESP_LOG
-D CONFIG_ARDUHAL_LOG_COLORS=1
-D CONFIG_DISABLE_HAL_LOCKS=1
-D MESHTASTIC_EXCLUDE_SCREEN=1
-D MESHTASTIC_EXCLUDE_CANNEDMESSAGES=1
-D MESHTASTIC_EXCLUDE_INPUTBROKER=1
-D MESHTASTIC_EXCLUDE_BLUETOOTH=1
@@ -32,10 +31,7 @@ build_flags = ${esp32s3_base.build_flags}
-D HAS_SCREEN=0
-D HAS_TFT=1
-D USE_PIN_BUZZER
-D MAP_TILES_GREY ; required for 2MB PSRAM
-D RAM_SIZE=1432
-D STBI_ARENA_SIZE=450000
-D LV_CACHE_DEF_SIZE=0
-D RAM_SIZE=1024
-D LGFX_DRIVER_TEMPLATE
-D LGFX_DRIVER=LGFX_GENERIC
-D GFX_DRIVER_INC=\"graphics/LGFX/LGFX_GENERIC.h\"
@@ -1,5 +1,5 @@
[env:mini-epaper-s3]
custom_meshtastic_hw_model = 125
;custom_meshtastic_hw_model =
custom_meshtastic_hw_model_slug = MINI_EPAPER_S3
custom_meshtastic_architecture = esp32-s3
custom_meshtastic_actively_supported = true
@@ -8,7 +8,6 @@ custom_meshtastic_display_name = LILYGO Mini ePaper S3 E-Ink
custom_meshtastic_images = mini-epaper-s3.svg
custom_meshtastic_tags = LilyGo
custom_meshtastic_requires_dfu = no
custom_meshtastic_has_mui = false
extends = esp32s3_base
board = mini-epaper-s3
@@ -6,7 +6,6 @@ custom_meshtastic_actively_supported = true
custom_meshtastic_support_level = 3
custom_meshtastic_display_name = Pi Computer S3
custom_meshtastic_partition_scheme = 8MB
custom_meshtastic_has_mui = true
extends = esp32s3_base
board = bpi_picow_esp32_s3
-1
View File
@@ -9,7 +9,6 @@ custom_meshtastic_images = rak_3312.svg
custom_meshtastic_tags = RAK
custom_meshtastic_requires_dfu = false
custom_meshtastic_partition_scheme = 16MB
custom_meshtastic_has_mui = false
extends = esp32s3_base
board = wiscore_rak3312
@@ -20,7 +20,6 @@ custom_meshtastic_display_name = RAK WisMesh Tap V2
custom_meshtastic_images = rak-wismesh-tap-v2.svg
custom_meshtastic_tags = RAK
custom_meshtastic_partition_scheme = 8MB
custom_meshtastic_has_mui = true
extends = esp32s3_base
board = wiscore_rak3312
@@ -44,7 +43,6 @@ extends = env:rak_wismesh_tap_v2
build_flags =
${env:rak_wismesh_tap_v2.build_flags}
-D MESHTASTIC_EXCLUDE_WEBSERVER=1
-D CONFIG_ARDUHAL_ESP_LOG
-D CONFIG_ARDUHAL_LOG_COLORS=1
-D CONFIG_DISABLE_HAL_LOCKS=1
@@ -9,7 +9,7 @@ custom_meshtastic_display_name = Seeed SenseCAP Indicator
custom_meshtastic_images = seeed-sensecap-indicator.svg
custom_meshtastic_tags = Seeed
custom_meshtastic_partition_scheme = 8MB
custom_meshtastic_has_mui = true
= true
extends = esp32s3_base
platform_packages =
@@ -8,7 +8,6 @@ custom_meshtastic_support_level = 1
custom_meshtastic_display_name = LILYGO T-Beam 1W
custom_meshtastic_images = tbeam-1w.svg
custom_meshtastic_tags = LilyGo
custom_meshtastic_has_mui = false
extends = esp32s3_base
board = t-beam-1w
@@ -9,7 +9,6 @@ custom_meshtastic_images = tdeck_pro.svg
custom_meshtastic_tags = LilyGo
custom_meshtastic_requires_dfu = true
custom_meshtastic_partition_scheme = 16MB
custom_meshtastic_has_mui = false
extends = esp32s3_base
board = t-deck-pro
-1
View File
@@ -10,7 +10,6 @@ custom_meshtastic_images = t-deck.svg
custom_meshtastic_tags = LilyGo
custom_meshtastic_requires_dfu = true
custom_meshtastic_partition_scheme = 16MB
custom_meshtastic_has_mui = true
extends = esp32s3_base
board = t-deck
@@ -10,7 +10,6 @@ custom_meshtastic_images = lilygo-tlora-pager.svg
custom_meshtastic_tags = LilyGo
custom_meshtastic_requires_dfu = true
custom_meshtastic_partition_scheme = 16MB
custom_meshtastic_has_mui = true
extends = esp32s3_base
board = t-deck-pro ; same as T-Deck Pro
@@ -8,7 +8,6 @@ custom_meshtastic_display_name = LILYGO T-LoRa T3-S3 E-Ink
custom_meshtastic_images = tlora-t3s3-epaper.svg
custom_meshtastic_tags = LilyGo
custom_meshtastic_requires_dfu = true
custom_meshtastic_has_ink_hud = true
extends = esp32s3_base
board = tlora-t3s3-v1
@@ -8,7 +8,6 @@ custom_meshtastic_support_level = 1
custom_meshtastic_display_name = ThinkNode M1
custom_meshtastic_images = thinknode_m1.svg
custom_meshtastic_tags = Elecrow
custom_meshtastic_has_ink_hud = true
extends = nrf52840_base
board = ThinkNode-M1
@@ -15,7 +15,6 @@ custom_meshtastic_display_name = Heltec Mesh Pocket
custom_meshtastic_actively_supported = true
custom_meshtastic_variant = 5000mAh
custom_meshtastic_key = heltec_mesh_pocket
custom_meshtastic_has_ink_hud = true
# add -DCFG_SYSVIEW if you want to use the Segger systemview tool for OS profiling.
build_flags = ${nrf52840_base.build_flags}
@@ -79,7 +78,6 @@ custom_meshtastic_display_name = Heltec Mesh Pocket
custom_meshtastic_actively_supported = true
custom_meshtastic_variant = 10000mAh
custom_meshtastic_key = heltec_mesh_pocket
custom_meshtastic_has_ink_hud = true
# add -DCFG_SYSVIEW if you want to use the Segger systemview tool for OS profiling.
build_flags = ${nrf52840_base.build_flags}
@@ -7,7 +7,6 @@ custom_meshtastic_support_level = 1
custom_meshtastic_display_name = Seeed Wio Tracker L1 E-Ink
custom_meshtastic_images = wio_tracker_l1_eink.svg
custom_meshtastic_tags = Seeed
custom_meshtastic_has_ink_hud = true
board = seeed_wio_tracker_L1
extends = nrf52840_base
@@ -1,15 +1,4 @@
[env:t-echo-plus]
custom_meshtastic_hw_model = 33
custom_meshtastic_hw_model_slug = T_ECHO_PLUS
custom_meshtastic_architecture = nrf52840
custom_meshtastic_actively_supported = true
custom_meshtastic_support_level = 1
custom_meshtastic_display_name = LILYGO T-Echo Plus
custom_meshtastic_images = t-echo_plus.svg
custom_meshtastic_tags = LilyGo
custom_meshtastic_requires_dfu = true
custom_meshtastic_has_ink_hud = true
extends = nrf52840_base
board = t-echo
board_level = pr
-1
View File
@@ -8,7 +8,6 @@ custom_meshtastic_support_level = 1
custom_meshtastic_display_name = LILYGO T-Echo
custom_meshtastic_images = t-echo.svg
custom_meshtastic_tags = LilyGo
custom_meshtastic_has_ink_hud = true
extends = nrf52840_base
board = t-echo
+1 -1
View File
@@ -1,4 +1,4 @@
[VERSION]
major = 2
minor = 7
build = 22
build = 21