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Initial stab at rak6421 autoconf (#7691)
* Initial stab at rak6421 autoconf * trunk * Add crc check to eeprom autoconf * Trunk again
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@ -10,12 +10,3 @@ Lora:
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DIO2_AS_RF_SWITCH: true
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spidev: spidev0.0
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# CS: 8
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### RAK13300in Slot 2 pins
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# IRQ: 18 #IO6
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# Reset: 24 # IO4
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# Busy: 19 # IO5
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# # Ant_sw: 23 # IO3
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# spidev: spidev0.1
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# # CS: 7
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8
bin/config.d/lora-RAK6421-13300-slot2.yaml
Normal file
8
bin/config.d/lora-RAK6421-13300-slot2.yaml
Normal file
@ -0,0 +1,8 @@
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Lora:
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### RAK13300in Slot 2 pins
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IRQ: 18 #IO6
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Reset: 24 # IO4
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Busy: 19 # IO5
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# Ant_sw: 23 # IO3
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spidev: spidev0.1
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# CS: 7
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@ -225,7 +225,11 @@ NodeDB::NodeDB()
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memcpy(myNodeInfo.device_id.bytes + sizeof(device_id_start), &device_id_end, sizeof(device_id_end));
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myNodeInfo.device_id.size = 16;
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// Uncomment below to print the device id
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#elif ARCH_PORTDUINO
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if (portduino_config.has_device_id) {
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memcpy(myNodeInfo.device_id.bytes, portduino_config.device_id, 16);
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myNodeInfo.device_id.size = 16;
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}
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#else
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// FIXME - implement for other platforms
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#endif
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@ -10,6 +10,7 @@
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#include "linux/gpio/LinuxGPIOPin.h"
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#include "meshUtils.h"
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#include "yaml-cpp/yaml.h"
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#include <ErriezCRC32.h>
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#include <Utility.h>
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#include <assert.h>
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#include <bluetooth/bluetooth.h>
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@ -253,16 +254,95 @@ void portduinoSetup()
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std::cout << "autoconf: Could not locate CH341 device" << std::endl;
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}
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// Try Pi HAT+
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std::cout << "autoconf: Looking for Pi HAT+..." << std::endl;
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if (access("/proc/device-tree/hat/product", R_OK) == 0) {
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std::ifstream hatProductFile("/proc/device-tree/hat/product");
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if (hatProductFile.is_open()) {
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hatProductFile.read(autoconf_product, 95);
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hatProductFile.close();
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if (strlen(autoconf_product) < 6) {
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std::cout << "autoconf: Looking for Pi HAT+..." << std::endl;
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if (access("/proc/device-tree/hat/product", R_OK) == 0) {
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std::ifstream hatProductFile("/proc/device-tree/hat/product");
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if (hatProductFile.is_open()) {
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hatProductFile.read(autoconf_product, 95);
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hatProductFile.close();
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}
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std::cout << "autoconf: Found Pi HAT+ " << autoconf_product << " at /proc/device-tree/hat/product" << std::endl;
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} else {
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std::cout << "autoconf: Could not locate Pi HAT+ at /proc/device-tree/hat/product" << std::endl;
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}
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}
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// attempt to load autoconf data from an EEPROM on 0x50
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// RAK6421-13300-S1:aabbcc123456:5ba85807d92138b7519cfb60460573af:3061e8d8
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// <model string>:mac address :<16 random unique bytes in hexidecimal> : crc32
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// crc32 is calculated on the eeprom string up to but not including the final colon
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if (strlen(autoconf_product) < 6) {
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try {
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char *mac_start = nullptr;
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char *devID_start = nullptr;
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char *crc32_start = nullptr;
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Wire.begin();
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Wire.beginTransmission(0x50);
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Wire.write(0x0);
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Wire.write(0x0);
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Wire.endTransmission();
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Wire.requestFrom((uint8_t)0x50, (uint8_t)75);
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uint8_t i = 0;
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delay(100);
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std::string autoconf_raw;
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while (Wire.available() && i < sizeof(autoconf_product)) {
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autoconf_product[i] = Wire.read();
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if (autoconf_product[i] == 0xff) {
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autoconf_product[i] = 0x0;
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break;
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}
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autoconf_raw += autoconf_product[i];
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if (autoconf_product[i] == ':') {
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autoconf_product[i] = 0x0;
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if (mac_start == nullptr) {
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mac_start = autoconf_product + i + 1;
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} else if (devID_start == nullptr) {
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devID_start = autoconf_product + i + 1;
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} else if (crc32_start == nullptr) {
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crc32_start = autoconf_product + i + 1;
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}
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}
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i++;
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}
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if (crc32_start != nullptr && strlen(crc32_start) == 8) {
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std::string crc32_str(crc32_start);
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uint32_t crc32_value = 0;
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// convert crc32 ascii to raw uint32
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for (int j = 0; j < 4; j++) {
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crc32_value += std::stoi(crc32_str.substr(j * 2, 2), nullptr, 16) << (3 - j) * 8;
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}
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std::cout << "autoconf: Found eeprom crc " << crc32_start << std::endl;
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// set the autoconf string to blank and short circuit
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if (crc32_value != crc32Buffer(autoconf_raw.c_str(), i - 9)) {
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std::cout << "autoconf: crc32 mismatch, dropping " << std::endl;
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autoconf_product[0] = 0x0;
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} else {
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std::cout << "autoconf: Found eeprom data " << autoconf_raw << std::endl;
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if (mac_start != nullptr) {
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std::cout << "autoconf: Found mac data " << mac_start << std::endl;
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if (strlen(mac_start) == 12)
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settingsStrings[mac_address] = std::string(mac_start);
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}
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if (devID_start != nullptr) {
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std::cout << "autoconf: Found deviceid data " << devID_start << std::endl;
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if (strlen(devID_start) == 32) {
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std::string devID_str(devID_start);
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for (int j = 0; j < 16; j++) {
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portduino_config.device_id[j] = std::stoi(devID_str.substr(j * 2, 2), nullptr, 16);
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}
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portduino_config.has_device_id = true;
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}
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}
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}
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} else {
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std::cout << "autoconf: crc32 missing " << std::endl;
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autoconf_product[0] = 0x0;
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}
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} catch (...) {
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std::cout << "autoconf: Could not locate EEPROM" << std::endl;
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}
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std::cout << "autoconf: Found Pi HAT+ " << autoconf_product << " at /proc/device-tree/hat/product" << std::endl;
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} else {
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std::cout << "autoconf: Could not locate Pi HAT+ at /proc/device-tree/hat/product" << std::endl;
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}
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// Load the config file based on the product string
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if (strlen(autoconf_product) > 0) {
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@ -10,11 +10,14 @@
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// Product strings for auto-configuration
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// {"PRODUCT_STRING", "CONFIG.YAML"}
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// YAML paths are relative to `meshtastic/available.d`
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inline const std::unordered_map<std::string, std::string> configProducts = {{"MESHTOAD", "lora-usb-meshtoad-e22.yaml"},
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{"MESHSTICK", "lora-meshstick-1262.yaml"},
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{"MESHADV-PI", "lora-MeshAdv-900M30S.yaml"},
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{"MeshAdv Mini", "lora-MeshAdv-Mini-900M22S.yaml"},
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{"POWERPI", "lora-MeshAdv-900M30S.yaml"}};
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inline const std::unordered_map<std::string, std::string> configProducts = {
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{"MESHTOAD", "lora-usb-meshtoad-e22.yaml"},
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{"MESHSTICK", "lora-meshstick-1262.yaml"},
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{"MESHADV-PI", "lora-MeshAdv-900M30S.yaml"},
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{"MeshAdv Mini", "lora-MeshAdv-Mini-900M22S.yaml"},
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{"POWERPI", "lora-MeshAdv-900M30S.yaml"},
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{"RAK6421-13300-S1", "lora-RAK6421-13300-slot1.yaml"},
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{"RAK6421-13300-S2", "lora-RAK6421-13300-slot2.yaml"}};
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enum configNames {
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default_gpiochip,
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@ -135,4 +138,6 @@ extern struct portduino_config_struct {
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uint32_t rfswitch_dio_pins[5] = {RADIOLIB_NC, RADIOLIB_NC, RADIOLIB_NC, RADIOLIB_NC, RADIOLIB_NC};
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Module::RfSwitchMode_t rfswitch_table[8];
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bool force_simradio = false;
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bool has_device_id = false;
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uint8_t device_id[16] = {0};
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} portduino_config;
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