WiFlasher/wiflash_esp32/wiflash_esp32.ino

249 lines
7.9 KiB
C++

/*
WiFlash_esp32 - Concept & electronics: Phil Abeyta
- System design & firmware: Kevin Matz
Uses a GPIO to control a lighting console over OSC, whilst also
controlling an LED strobe light with DMX data recieved over sACN.
Copyright (c) 2020 Kevin Matz (kevin.matz@gmail.com)
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.
*/
#include <Arduino.h>
#include <WiFi.h>
#include <ESPmDNS.h>
#include <SPIFFS.h>
#include <ArduinoOSC.h>
#include <NeoPixelBus.h>
#include <ESPAsyncWebServer.h>
#include "configure.h"
#include "status.h"
#include "sacn.h"
#include "strobe_esp32.h"
#include "dmx_universe.h"
//// device objects
Strobe *strobe;
NeoPixelBus<NeoGrbwFeature, Neo800KbpsMethod> *strip;
ESPsACN *e131 = new ESPsACN();
AsyncWebServer *httpd = new AsyncWebServer(80);
//// Global button variables
bool pressed = false; // track button state
/*
Start the async web server
*/
void startHTTPD() {
httpd->on("/api/config", HTTP_GET, [](AsyncWebServerRequest * request) {
AsyncWebServerResponse *response = request->beginResponse(SPIFFS, "/template/configuration.json", "application/json", false, config::getString);
response->addHeader("Access-Control-Allow-Origin", "*");
request->send(response);
});
httpd->on("/api/status", HTTP_GET, [](AsyncWebServerRequest * request) {
AsyncWebServerResponse *response = request->beginResponse(SPIFFS, "/template/status.json", "application/json", false, status::getString);
response->addHeader("Access-Control-Allow-Origin", "*");
request->send(response);
});
httpd->on("/api/reboot", HTTP_POST, [](AsyncWebServerRequest * request) {
String url = "http://" + config::settings().hostname + ".local";
request->redirect(url.c_str());
httpd->end();
ESP.restart();
});
httpd->on("/api/set", HTTP_POST, [] (AsyncWebServerRequest * request) {
if (!request->hasParam("key", true) ||
!request->hasParam("value", true)) {
request->send(404, "text/plain", "Missing parameter.");
return;
}
String key = request->getParam("key", true)->value();
const String& val = request->getParam("value", true)->value();
key.toUpperCase();
if (val == config::getString(key)) {
// already at value
request->send(204);
} else if (config::set(key, val) > 0) {
// change accepted OK
request->send(205);
} else {
// change failed, return current value
String json = "{\"" + key + "\": \"" + config::getString(key) + "\"}";
request->send(403, "application/json", json);
}
});
httpd->serveStatic("/", SPIFFS, "/www/").setDefaultFile("index.html");
httpd->onNotFound([](AsyncWebServerRequest * request) {
request->send(404, "text/plain", "Not found");
});
httpd->begin();
}
/*
change pixel strip colours on DMX change
*/
void recvPixelData(Universe *universe) {
for (int i = 0; i < config::settings().strip_led_count; i++) {
uint8_t r, g, b, w;
r = universe->data()->data[config::settings().strip_address + (i * 4) + 0];
g = universe->data()->data[config::settings().strip_address + (i * 4) + 1];
b = universe->data()->data[config::settings().strip_address + (i * 4) + 2];
w = universe->data()->data[config::settings().strip_address + (i * 4) + 3];
strip->SetPixelColor(i, RgbwColor(r, g, b, w));
}
strip->Show();
}
/*
Arduino powerup
*/
void setup() {
Serial.begin(115200);
while (!Serial); // wait for serial attach
Serial.println("Serial started!");
Serial.println("Loading Prefferences from NVM.");
config::loadConfig();
//// start WiFi:
// set IPv4
Serial.println("Starting WiFi.");
WiFi.mode(config::settings().mode);
IPAddress ip_, gateway_, subnet_;
if (!config::settings().dhcp) {
ip_.fromString(config::settings().ip);
gateway_.fromString(config::settings().gateway);
subnet_.fromString(config::settings().subnet);
}
switch (config::settings().mode) {
case WIFI_AP: {
WiFi.softAPsetHostname(config::settings().hostname.c_str());
if (!config::settings().dhcp) {
WiFi.softAPConfig(ip_, gateway_, subnet_);
}
WiFi.softAP(config::settings().ssid.c_str(), config::settings().pwd.c_str());
}
break;
case WIFI_STA: {
WiFi.setHostname(config::settings().hostname.c_str());
if (!config::settings().dhcp) {
WiFi.config(ip_, gateway_, subnet_);
}
WiFi.begin(config::settings().ssid.c_str(), config::settings().pwd.c_str());
}
break;
}
Serial.print("Access the configuration web page at http://");
Serial.print(config::settings().hostname.c_str());
Serial.println(".local");
Serial.println("Disabling Bluetooth.");
btStop();
Serial.println("Mounting SPI Flash FS.");
SPIFFS.begin();
Serial.println("Starting HTTP interface.");
startHTTPD();
Serial.println("Starting mDNS responder.");
if (MDNS.begin(config::settings().hostname.c_str())) {
MDNS.addService("http", "tcp", 80);
}
//// start fixtures hardware:
// battery monitor
pinMode(status::battery_sense, INPUT);
// button
if (config::settings().button_enable) {
Serial.println("Initializing OSC button");
pinMode(config::settings().button_pin, INPUT_PULLUP);
}
// strobe
if (config::settings().strobe_enable) {
strobe = new Strobe(config::settings().strobe_address);
Serial.println("Initializing DMX Strobe");
if (!strobe->begin(config::settings().strobe_led_pin, 0)) {
Serial.println("Strobe failed to configure.");
}
if (e131->subscribe(config::settings().strobe_universe)) {
e131->universe(config::settings().strobe_universe)->onData(std::bind(&Strobe::recvData,
strobe, std::placeholders::_1));
}
}
// pixels
if (config::settings().strip_enable) {
Serial.println("Initializing Pixelmapped LEDs.");
strip = new NeoPixelBus<NeoGrbwFeature, Neo800KbpsMethod>(config::settings().strip_led_count, config::settings().strip_data_pin);
strip->Begin();
strip->Show();
if (e131->subscribe(config::settings().strip_universe)) {
e131->universe(config::settings().strip_universe)->onData(std::bind(&recvPixelData,
std::placeholders::_1));
}
}
Serial.println("Setup complete!");
}
/*
Arduino process loop
*/
void loop() {
if (config::settings().mode == WIFI_STA &&
WiFi.status() != WL_CONNECTED) {
Serial.println("Waiting for WiFi...");
delay(1000);
return;
}
// Be a remote trigger
//
bool val = !digitalRead(config::settings().button_pin);
if (val != pressed && config::settings().button_enable) {
pressed = val;
if (pressed) {
Serial.println("Pressed");
OscWiFi.send(config::settings().osc_host, config::settings().osc_port,
config::settings().osc_pressed_addr, config::settings().osc_pressed_value);
} else {
Serial.println("Released");
OscWiFi.send(config::settings().osc_host, config::settings().osc_port,
config::settings().osc_released_addr, config::settings().osc_released_value);
}
}
}