/*
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WEBSERVER MODULE
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Copyright (C) 2016-2019 by Xose Pérez <xose dot perez at gmail dot com>
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*/
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#include "web.h"
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#if WEB_SUPPORT
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#include <algorithm>
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#include <functional>
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#include <memory>
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#include <Schedule.h>
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#include "system.h"
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#include "utils.h"
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#include "ntp.h"
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#if WEB_EMBEDDED
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#if WEBUI_IMAGE == WEBUI_IMAGE_SMALL
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#include "static/index.small.html.gz.h"
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#elif WEBUI_IMAGE == WEBUI_IMAGE_LIGHT
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#include "static/index.light.html.gz.h"
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#elif WEBUI_IMAGE == WEBUI_IMAGE_SENSOR
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#include "static/index.sensor.html.gz.h"
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#elif WEBUI_IMAGE == WEBUI_IMAGE_RFBRIDGE
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#include "static/index.rfbridge.html.gz.h"
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#elif WEBUI_IMAGE == WEBUI_IMAGE_RFM69
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#include "static/index.rfm69.html.gz.h"
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#elif WEBUI_IMAGE == WEBUI_IMAGE_LIGHTFOX
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#include "static/index.lightfox.html.gz.h"
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#elif WEBUI_IMAGE == WEBUI_IMAGE_THERMOSTAT
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#include "static/index.thermostat.html.gz.h"
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#elif WEBUI_IMAGE == WEBUI_IMAGE_CURTAIN
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#include "static/index.curtain.html.gz.h"
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#elif WEBUI_IMAGE == WEBUI_IMAGE_FULL
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#include "static/index.all.html.gz.h"
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#endif
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#endif // WEB_EMBEDDED
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#if WEB_SSL_ENABLED
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#include "static/server.cer.h"
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#include "static/server.key.h"
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#endif // WEB_SSL_ENABLED
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AsyncWebPrint::AsyncWebPrint(const AsyncWebPrintConfig& config, AsyncWebServerRequest* request) :
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mimeType(config.mimeType),
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backlogCountMax(config.backlogCountMax),
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backlogSizeMax(config.backlogSizeMax),
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backlogTimeout(config.backlogTimeout),
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_request(request),
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_state(State::None)
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{}
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bool AsyncWebPrint::_addBuffer() {
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if ((_buffers.size() + 1) > backlogCountMax) {
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if (!_exhaustBuffers()) {
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_state = State::Error;
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return false;
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}
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}
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// Note: c++17, emplace returns created object reference
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// c++11, we need to use .back()
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_buffers.emplace_back(backlogSizeMax, 0);
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_buffers.back().clear();
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return true;
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}
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// Creates response object that will handle the data written into the Print& interface.
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//
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// This API expects a **very** careful approach to context switching between SYS and CONT:
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// - Returning RESPONSE_TRY_AGAIN before buffers are filled will result in invalid size marker being sent on the wire.
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// HTTP client (curl, python requests etc., as discovered in testing) will then drop the connection
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// - Returning 0 will immediatly close the connection from our side
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// - Calling _prepareRequest() **before** _buffers are filled will result in returning 0
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// - Calling yield() / delay() while request AsyncWebPrint is active **may** trigger this callback out of sequence
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// (e.g. Serial.print(..), DEBUG_MSG(...), or any other API trying to switch contexts)
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// - Receiving data (tcp ack from the previous packet) **will** trigger the callback when switching contexts.
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void AsyncWebPrint::_prepareRequest() {
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_state = State::Sending;
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auto *response = _request->beginChunkedResponse(mimeType, [this](uint8_t *buffer, size_t maxLen, size_t index) -> size_t {
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switch (_state) {
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case State::None:
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return RESPONSE_TRY_AGAIN;
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case State::Error:
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case State::Done:
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return 0;
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case State::Sending:
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break;
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}
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size_t written = 0;
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while ((written < maxLen) && !_buffers.empty()) {
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auto& chunk =_buffers.front();
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auto have = maxLen - written;
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if (chunk.size() > have) {
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std::copy(chunk.data(), chunk.data() + have, buffer + written);
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chunk.erase(chunk.begin(), chunk.begin() + have);
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written += have;
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} else {
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std::copy(chunk.data(), chunk.data() + chunk.size(), buffer + written);
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_buffers.pop_front();
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written += chunk.size();
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}
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}
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return written;
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});
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response->addHeader("Connection", "close");
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_request->send(response);
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}
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void AsyncWebPrint::setState(State state) {
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_state = state;
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}
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AsyncWebPrint::State AsyncWebPrint::getState() {
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return _state;
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}
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size_t AsyncWebPrint::write(uint8_t b) {
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const uint8_t tmp[1] {b};
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return write(tmp, 1);
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}
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bool AsyncWebPrint::_exhaustBuffers() {
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// XXX: espasyncwebserver will trigger write callback if we setup response too early
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// exploring code, callback handler responds to a special return value RESPONSE_TRY_AGAIN
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// but, it seemingly breaks chunked response logic
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// XXX: this should be **the only place** that can trigger yield() while we stay in CONT
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if (_state == State::None) {
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_prepareRequest();
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}
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const auto start = millis();
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do {
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if (millis() - start > 5000) {
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_buffers.clear();
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break;
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}
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yield();
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} while (!_buffers.empty());
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return _buffers.empty();
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}
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void AsyncWebPrint::flush() {
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_exhaustBuffers();
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_state = State::Done;
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}
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size_t AsyncWebPrint::write(const uint8_t* data, size_t size) {
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if (_state == State::Error) {
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return 0;
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}
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size_t full_size = size;
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auto* data_ptr = data;
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while (size) {
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if (_buffers.empty() && !_addBuffer()) {
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full_size = 0;
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break;
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}
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auto& current = _buffers.back();
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const auto have = current.capacity() - current.size();
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if (have >= size) {
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current.insert(current.end(), data_ptr, data_ptr + size);
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size = 0;
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} else {
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current.insert(current.end(), data_ptr, data_ptr + have);
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if (!_addBuffer()) {
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full_size = 0;
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break;
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}
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data_ptr += have;
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size -= have;
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}
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}
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return full_size;
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}
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// -----------------------------------------------------------------------------
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AsyncWebServer * _server;
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char _last_modified[50];
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std::vector<uint8_t> * _webConfigBuffer;
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bool _webConfigSuccess = false;
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std::vector<web_request_callback_f> _web_request_callbacks;
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std::vector<web_body_callback_f> _web_body_callbacks;
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constexpr const size_t WEB_CONFIG_BUFFER_MAX = 4096;
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// -----------------------------------------------------------------------------
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// HOOKS
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// -----------------------------------------------------------------------------
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void _onReset(AsyncWebServerRequest *request) {
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webLog(request);
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if (!webAuthenticate(request)) {
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return request->requestAuthentication(getSetting("hostname").c_str());
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}
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deferredReset(100, CUSTOM_RESET_HTTP);
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request->send(200);
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}
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void _onDiscover(AsyncWebServerRequest *request) {
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webLog(request);
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const String device = getBoardName();
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const String hostname = getSetting("hostname");
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StaticJsonBuffer<JSON_OBJECT_SIZE(4)> jsonBuffer;
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JsonObject &root = jsonBuffer.createObject();
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root["app"] = APP_NAME;
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root["version"] = APP_VERSION;
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root["device"] = device.c_str();
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root["hostname"] = hostname.c_str();
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AsyncResponseStream *response = request->beginResponseStream("application/json", root.measureLength() + 1);
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root.printTo(*response);
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request->send(response);
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}
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void _onGetConfig(AsyncWebServerRequest *request) {
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webLog(request);
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if (!webAuthenticate(request)) {
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return request->requestAuthentication(getSetting("hostname").c_str());
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}
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AsyncResponseStream *response = request->beginResponseStream("application/json");
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char buffer[100];
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snprintf_P(buffer, sizeof(buffer), PSTR("attachment; filename=\"%s-backup.json\""), (char *) getSetting("hostname").c_str());
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response->addHeader("Content-Disposition", buffer);
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response->addHeader("X-XSS-Protection", "1; mode=block");
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response->addHeader("X-Content-Type-Options", "nosniff");
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response->addHeader("X-Frame-Options", "deny");
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response->printf("{\n\"app\": \"%s\"", APP_NAME);
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response->printf(",\n\"version\": \"%s\"", APP_VERSION);
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response->printf(",\n\"backup\": \"1\"");
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#if NTP_SUPPORT
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response->printf(",\n\"timestamp\": \"%s\"", ntpDateTime().c_str());
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#endif
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// Write the keys line by line (not sorted)
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unsigned long count = settingsKeyCount();
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for (unsigned int i=0; i<count; i++) {
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String key = settingsKeyName(i);
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String value = getSetting(key);
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response->printf(",\n\"%s\": \"%s\"", key.c_str(), value.c_str());
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}
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response->printf("\n}");
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request->send(response);
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}
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void _onPostConfig(AsyncWebServerRequest *request) {
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webLog(request);
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if (!webAuthenticate(request)) {
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return request->requestAuthentication(getSetting("hostname").c_str());
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}
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request->send(_webConfigSuccess ? 200 : 400);
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}
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void _onPostConfigFile(AsyncWebServerRequest *request, String filename, size_t index, uint8_t *data, size_t len, bool final) {
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if (!webAuthenticate(request)) {
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return request->requestAuthentication(getSetting("hostname").c_str());
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}
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// No buffer
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if (final && (index == 0)) {
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_webConfigSuccess = settingsRestoreJson((char*) data);
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return;
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}
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// Buffer start => reset
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if (index == 0) if (_webConfigBuffer) delete _webConfigBuffer;
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// init buffer if it doesn't exist
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if (!_webConfigBuffer) {
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_webConfigBuffer = new std::vector<uint8_t>();
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_webConfigSuccess = false;
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}
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// Copy
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if (len > 0) {
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if ((_webConfigBuffer->size() + len) > std::min(WEB_CONFIG_BUFFER_MAX, getFreeHeap() - sizeof(std::vector<uint8_t>))) {
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delete _webConfigBuffer;
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_webConfigBuffer = nullptr;
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request->send(500);
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return;
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}
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_webConfigBuffer->reserve(_webConfigBuffer->size() + len);
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_webConfigBuffer->insert(_webConfigBuffer->end(), data, data + len);
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}
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// Ending
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if (final) {
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_webConfigBuffer->push_back(0);
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_webConfigSuccess = settingsRestoreJson((char*) _webConfigBuffer->data());
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delete _webConfigBuffer;
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}
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}
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#if WEB_EMBEDDED
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void _onHome(AsyncWebServerRequest *request) {
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webLog(request);
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if (!webAuthenticate(request)) {
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return request->requestAuthentication(getSetting("hostname").c_str());
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}
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if (request->header("If-Modified-Since").equals(_last_modified)) {
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request->send(304);
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} else {
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#if WEB_SSL_ENABLED
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// Chunked response, we calculate the chunks based on free heap (in multiples of 32)
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// This is necessary when a TLS connection is open since it sucks too much memory
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DEBUG_MSG_P(PSTR("[MAIN] Free heap: %d bytes\n"), getFreeHeap());
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size_t max = (getFreeHeap() / 3) & 0xFFE0;
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AsyncWebServerResponse *response = request->beginChunkedResponse("text/html", [max](uint8_t *buffer, size_t maxLen, size_t index) -> size_t {
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// Get the chunk based on the index and maxLen
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size_t len = webui_image_len - index;
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if (len > maxLen) len = maxLen;
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if (len > max) len = max;
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if (len > 0) memcpy_P(buffer, webui_image + index, len);
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DEBUG_MSG_P(PSTR("[WEB] Sending %d%%%% (max chunk size: %4d)\r"), int(100 * index / webui_image_len), max);
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if (len == 0) DEBUG_MSG_P(PSTR("\n"));
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// Return the actual length of the chunk (0 for end of file)
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return len;
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});
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#else
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AsyncWebServerResponse *response = request->beginResponse_P(200, "text/html", webui_image, webui_image_len);
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#endif
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response->addHeader("Content-Encoding", "gzip");
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response->addHeader("Last-Modified", _last_modified);
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response->addHeader("X-XSS-Protection", "1; mode=block");
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response->addHeader("X-Content-Type-Options", "nosniff");
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response->addHeader("X-Frame-Options", "deny");
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request->send(response);
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}
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}
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#endif
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#if WEB_SSL_ENABLED
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int _onCertificate(void * arg, const char *filename, uint8_t **buf) {
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#if WEB_EMBEDDED
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if (strcmp(filename, "server.cer") == 0) {
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uint8_t * nbuf = (uint8_t*) malloc(server_cer_len);
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memcpy_P(nbuf, server_cer, server_cer_len);
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*buf = nbuf;
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DEBUG_MSG_P(PSTR("[WEB] SSL File: %s - OK\n"), filename);
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return server_cer_len;
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}
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if (strcmp(filename, "server.key") == 0) {
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uint8_t * nbuf = (uint8_t*) malloc(server_key_len);
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memcpy_P(nbuf, server_key, server_key_len);
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*buf = nbuf;
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DEBUG_MSG_P(PSTR("[WEB] SSL File: %s - OK\n"), filename);
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return server_key_len;
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}
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DEBUG_MSG_P(PSTR("[WEB] SSL File: %s - ERROR\n"), filename);
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*buf = 0;
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return 0;
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#else
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File file = SPIFFS.open(filename, "r");
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if (file) {
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size_t size = file.size();
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uint8_t * nbuf = (uint8_t*) malloc(size);
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if (nbuf) {
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size = file.read(nbuf, size);
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file.close();
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*buf = nbuf;
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DEBUG_MSG_P(PSTR("[WEB] SSL File: %s - OK\n"), filename);
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return size;
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}
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file.close();
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}
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DEBUG_MSG_P(PSTR("[WEB] SSL File: %s - ERROR\n"), filename);
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*buf = 0;
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return 0;
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#endif // WEB_EMBEDDED == 1
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}
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#endif // WEB_SSL_ENABLED
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bool _onAPModeRequest(AsyncWebServerRequest *request) {
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if ((WiFi.getMode() & WIFI_AP) > 0) {
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const String domain = getSetting("hostname") + ".";
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const String host = request->header("Host");
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const String ip = WiFi.softAPIP().toString();
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// Only allow requests that use our hostname or ip
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if (host.equals(ip)) return true;
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if (host.startsWith(domain)) return true;
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// Immediatly close the connection, ref: https://github.com/xoseperez/espurna/issues/1660
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// Not doing so will cause memory exhaustion, because the connection will linger
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request->send(404);
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request->client()->close();
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return false;
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}
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return true;
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}
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void _onRequest(AsyncWebServerRequest *request){
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if (!_onAPModeRequest(request)) return;
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// Send request to subscribers
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for (unsigned char i = 0; i < _web_request_callbacks.size(); i++) {
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bool response = (_web_request_callbacks[i])(request);
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if (response) return;
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}
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// No subscriber handled the request, return a 404 with implicit "Connection: close"
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request->send(404);
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// And immediatly close the connection, ref: https://github.com/xoseperez/espurna/issues/1660
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// Not doing so will cause memory exhaustion, because the connection will linger
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request->client()->close();
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}
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void _onBody(AsyncWebServerRequest *request, uint8_t *data, size_t len, size_t index, size_t total) {
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if (!_onAPModeRequest(request)) return;
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// Send request to subscribers
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for (unsigned char i = 0; i < _web_body_callbacks.size(); i++) {
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bool response = (_web_body_callbacks[i])(request, data, len, index, total);
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if (response) return;
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}
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// Same as _onAPModeRequest(...)
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request->send(404);
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request->client()->close();
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}
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// -----------------------------------------------------------------------------
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bool webAuthenticate(AsyncWebServerRequest *request) {
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#if USE_PASSWORD
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return request->authenticate(WEB_USERNAME, getAdminPass().c_str());
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#else
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return true;
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#endif
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}
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// -----------------------------------------------------------------------------
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AsyncWebServer * webServer() {
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return _server;
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}
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void webBodyRegister(web_body_callback_f callback) {
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_web_body_callbacks.push_back(callback);
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}
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void webRequestRegister(web_request_callback_f callback) {
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_web_request_callbacks.push_back(callback);
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}
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uint16_t webPort() {
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#if WEB_SSL_ENABLED
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return 443;
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#else
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constexpr const uint16_t defaultValue(WEB_PORT);
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return getSetting("webPort", defaultValue);
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#endif
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}
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void webLog(AsyncWebServerRequest *request) {
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DEBUG_MSG_P(PSTR("[WEBSERVER] Request: %s %s\n"), request->methodToString(), request->url().c_str());
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}
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void webSetup() {
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// Cache the Last-Modifier header value
|
|
snprintf_P(_last_modified, sizeof(_last_modified), PSTR("%s %s GMT"), __DATE__, __TIME__);
|
|
|
|
// Create server
|
|
unsigned int port = webPort();
|
|
_server = new AsyncWebServer(port);
|
|
|
|
// Rewrites
|
|
_server->rewrite("/", "/index.html");
|
|
|
|
// Serve home (basic authentication protection)
|
|
#if WEB_EMBEDDED
|
|
_server->on("/index.html", HTTP_GET, _onHome);
|
|
#endif
|
|
|
|
// Serve static files (not supported, yet)
|
|
#if SPIFFS_SUPPORT
|
|
_server->serveStatic("/", SPIFFS, "/")
|
|
.setLastModified(_last_modified)
|
|
.setFilter([](AsyncWebServerRequest *request) -> bool {
|
|
webLog(request);
|
|
return true;
|
|
});
|
|
#endif
|
|
|
|
_server->on("/reset", HTTP_GET, _onReset);
|
|
_server->on("/config", HTTP_GET, _onGetConfig);
|
|
_server->on("/config", HTTP_POST | HTTP_PUT, _onPostConfig, _onPostConfigFile);
|
|
_server->on("/discover", HTTP_GET, _onDiscover);
|
|
|
|
// Handle every other request, including 404
|
|
_server->onRequestBody(_onBody);
|
|
_server->onNotFound(_onRequest);
|
|
|
|
// Run server
|
|
#if WEB_SSL_ENABLED
|
|
_server->onSslFileRequest(_onCertificate, NULL);
|
|
_server->beginSecure("server.cer", "server.key", NULL);
|
|
#else
|
|
_server->begin();
|
|
#endif
|
|
|
|
DEBUG_MSG_P(PSTR("[WEBSERVER] Webserver running on port %u\n"), port);
|
|
|
|
}
|
|
|
|
#endif // WEB_SUPPORT
|