salty ed1542ae11 feat: rewrite UWB firmware for DW1000 (all 3 boards)
Anchor (esp32/uwb_anchor):
- DW1000Ranging library (200m range, MODE_LONGDATA_RANGE_ACCURACY)
- Unique addresses per anchor (anchor0/anchor1 build envs)
- +RANGE output: anchor_id, tag_addr, range_mm, rssi
- ESP-NOW receiver: forwards tag packets + priority E-STOP to Jetson
- AT+ID? command

Tag with Display (esp32/uwb_tag):
- DW1000Ranging as tag, auto-discovers anchors
- SSD1306 OLED: big distance, per-anchor ranges, RSSI bars, link status
- ESP-NOW broadcast: range/heartbeat/estop packets
- E-Stop on GPIO 0 (BOOT button), 10Hz TX while held
- Display at 5Hz, ranging driven by DW1000Ranging.loop()

Shared:
- lib/DW1000/ extracted from mf_DW1000.zip (Makerfabs fork)
- lib_extra_dirs for PlatformIO to find local library
2026-03-14 12:30:26 -04:00

65 lines
2.1 KiB
C++

/*
* Copyright (c) 2015 by Thomas Trojer <thomas@trojer.net>
* Decawave DW1000 library for arduino.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*
* @file BasicConnectivityTest.ino
* Use this to test connectivity with your DW1000 from Arduino.
* It performs an arbitrary setup of the chip and prints some information.
*
* @todo
* - move strings to flash (less RAM consumption)
* - make real check of connection (e.g. change some values on DW1000 and verify)
*/
#include <SPI.h>
#include <DW1000.h>
// connection pins
const uint8_t PIN_RST = 9; // reset pin
const uint8_t PIN_IRQ = 2; // irq pin
const uint8_t PIN_SS = SS; // spi select pin
void setup() {
// DEBUG monitoring
Serial.begin(9600);
// initialize the driver
DW1000.begin(PIN_IRQ, PIN_RST);
DW1000.select(PIN_SS);
Serial.println(F("DW1000 initialized ..."));
// general configuration
DW1000.newConfiguration();
DW1000.setDeviceAddress(5);
DW1000.setNetworkId(10);
DW1000.commitConfiguration();
Serial.println(F("Committed configuration ..."));
// wait a bit
delay(1000);
}
void loop() {
// DEBUG chip info and registers pretty printed
char msg[128];
DW1000.getPrintableDeviceIdentifier(msg);
Serial.print("Device ID: "); Serial.println(msg);
DW1000.getPrintableExtendedUniqueIdentifier(msg);
Serial.print("Unique ID: "); Serial.println(msg);
DW1000.getPrintableNetworkIdAndShortAddress(msg);
Serial.print("Network ID & Device Address: "); Serial.println(msg);
DW1000.getPrintableDeviceMode(msg);
Serial.print("Device mode: "); Serial.println(msg);
// wait a bit
delay(10000);
}